/* objcopy.c -- copy object file from input to output, optionally massaging it. Copyright (C) 1991, 92, 93, 94 Free Software Foundation, Inc. This file is part of GNU Binutils. This program is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; either version 2 of the License, or (at your option) any later version. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program; if not, write to the Free Software Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. */ #include "bfd.h" #include "sysdep.h" #include "progress.h" #include "bucomm.h" #include #include "libiberty.h" static bfd_vma parse_vma PARAMS ((const char *, const char *)); static flagword parse_flags PARAMS ((const char *)); static char *make_tempname PARAMS ((char *)); static struct section_list *find_section_list PARAMS ((const char *, boolean)); static void setup_section PARAMS ((bfd *, asection *, PTR)); static void copy_section PARAMS ((bfd *, asection *, PTR)); static void get_sections PARAMS ((bfd *, asection *, PTR)); static int compare_section_vma PARAMS ((const PTR, const PTR)); static void add_strip_symbol PARAMS ((const char *)); static boolean is_strip_symbol PARAMS ((const char *)); static boolean is_strip_section PARAMS ((bfd *, asection *)); static unsigned int filter_symbols PARAMS ((bfd *, asymbol **, asymbol **, long)); static void mark_symbols_used_in_relocations PARAMS ((bfd *, asection *, PTR)); #define nonfatal(s) {bfd_nonfatal(s); status = 1; return;} static asymbol **isympp = NULL; /* Input symbols */ static asymbol **osympp = NULL; /* Output symbols that survive stripping */ /* If `copy_byte' >= 0, copy only that byte of every `interleave' bytes. */ static int copy_byte = -1; static int interleave = 4; static boolean verbose; /* Print file and target names. */ static int status = 0; /* Exit status. */ enum strip_action { strip_undef, strip_none, /* don't strip */ strip_debug, /* strip all debugger symbols */ strip_all /* strip all symbols */ }; /* Which symbols to remove. */ static enum strip_action strip_symbols; enum locals_action { locals_undef, locals_start_L, /* discard locals starting with L */ locals_all /* discard all locals */ }; /* Which local symbols to remove. Overrides strip_all. */ static enum locals_action discard_locals; /* Structure used to hold lists of sections and actions to take. */ struct section_list { /* Next section to adjust. */ struct section_list *next; /* Section name. */ const char *name; /* Whether this entry was used. */ boolean used; /* Whether to remove this section. */ boolean remove; /* Whether to adjust or set VMA. */ enum { ignore_vma, adjust_vma, set_vma } adjust; /* Amount to adjust by or set to. */ bfd_vma val; /* Whether to set the section flags. */ boolean set_flags; /* What to set the section flags to. */ flagword flags; }; static struct section_list *adjust_sections; static boolean sections_removed; /* Adjustments to the start address. */ static bfd_vma adjust_start = 0; static boolean set_start_set = false; static bfd_vma set_start; /* Adjustments to section VMA's. */ static bfd_vma adjust_section_vma = 0; /* Filling gaps between sections. */ static boolean gap_fill_set = false; static bfd_byte gap_fill = 0; /* Pad to a given address. */ static boolean pad_to_set = false; static bfd_vma pad_to; /* List of sections to add. */ struct section_add { /* Next section to add. */ struct section_add *next; /* Name of section to add. */ const char *name; /* Name of file holding section contents. */ const char *filename; /* Size of file. */ size_t size; /* Contents of file. */ bfd_byte *contents; /* BFD section, after it has been added. */ asection *section; }; static struct section_add *add_sections; /* Options to handle if running as "strip". */ static struct option strip_options[] = { {"discard-all", no_argument, 0, 'x'}, {"discard-locals", no_argument, 0, 'X'}, {"format", required_argument, 0, 'F'}, /* Obsolete */ {"help", no_argument, 0, 'h'}, {"input-format", required_argument, 0, 'I'}, /* Obsolete */ {"input-target", required_argument, 0, 'I'}, {"output-format", required_argument, 0, 'O'}, /* Obsolete */ {"output-target", required_argument, 0, 'O'}, {"remove-section", required_argument, 0, 'R'}, {"strip-all", no_argument, 0, 's'}, {"strip-debug", no_argument, 0, 'S'}, {"strip-symbol", required_argument, 0, 'N'}, {"target", required_argument, 0, 'F'}, {"verbose", no_argument, 0, 'v'}, {"version", no_argument, 0, 'V'}, {0, no_argument, 0, 0} }; /* Options to handle if running as "objcopy". */ /* 150 isn't special; it's just an arbitrary non-ASCII char value. */ #define OPTION_ADD_SECTION 150 #define OPTION_ADJUST_START (OPTION_ADD_SECTION + 1) #define OPTION_ADJUST_VMA (OPTION_ADJUST_START + 1) #define OPTION_ADJUST_SECTION_VMA (OPTION_ADJUST_VMA + 1) #define OPTION_ADJUST_WARNINGS (OPTION_ADJUST_SECTION_VMA + 1) #define OPTION_GAP_FILL (OPTION_ADJUST_WARNINGS + 1) #define OPTION_NO_ADJUST_WARNINGS (OPTION_GAP_FILL + 1) #define OPTION_PAD_TO (OPTION_NO_ADJUST_WARNINGS + 1) #define OPTION_SET_SECTION_FLAGS (OPTION_PAD_TO + 1) #define OPTION_SET_START (OPTION_SET_SECTION_FLAGS + 1) static struct option copy_options[] = { {"add-section", required_argument, 0, OPTION_ADD_SECTION}, {"adjust-start", required_argument, 0, OPTION_ADJUST_START}, {"adjust-vma", required_argument, 0, OPTION_ADJUST_VMA}, {"adjust-section-vma", required_argument, 0, OPTION_ADJUST_SECTION_VMA}, {"adjust-warnings", no_argument, 0, OPTION_ADJUST_WARNINGS}, {"byte", required_argument, 0, 'b'}, {"discard-all", no_argument, 0, 'x'}, {"discard-locals", no_argument, 0, 'X'}, {"format", required_argument, 0, 'F'}, /* Obsolete */ {"gap-fill", required_argument, 0, OPTION_GAP_FILL}, {"help", no_argument, 0, 'h'}, {"input-format", required_argument, 0, 'I'}, /* Obsolete */ {"input-target", required_argument, 0, 'I'}, {"interleave", required_argument, 0, 'i'}, {"no-adjust-warnings", no_argument, 0, OPTION_NO_ADJUST_WARNINGS}, {"output-format", required_argument, 0, 'O'}, /* Obsolete */ {"output-target", required_argument, 0, 'O'}, {"pad-to", required_argument, 0, OPTION_PAD_TO}, {"remove-section", required_argument, 0, 'R'}, {"set-section-flags", required_argument, 0, OPTION_SET_SECTION_FLAGS}, {"set-start", required_argument, 0, OPTION_SET_START}, {"strip-all", no_argument, 0, 'S'}, {"strip-debug", no_argument, 0, 'g'}, {"strip-symbol", required_argument, 0, 'N'}, {"target", required_argument, 0, 'F'}, {"verbose", no_argument, 0, 'v'}, {"version", no_argument, 0, 'V'}, {0, no_argument, 0, 0} }; /* IMPORTS */ extern char *program_name; extern char *program_version; /* This flag distinguishes between strip and objcopy: 1 means this is 'strip'; 0 means this is 'objcopy'. -1 means if we should use argv[0] to decide. */ extern int is_strip; static void copy_usage (stream, exit_status) FILE *stream; int exit_status; { fprintf (stream, "\ Usage: %s [-vVSgxX] [-I bfdname] [-O bfdname] [-F bfdname] [-b byte]\n\ [-R section] [-i interleave] [--interleave=interleave] [--byte=byte]\n\ [--input-target=bfdname] [--output-target=bfdname] [--target=bfdname]\n\ [--strip-all] [--strip-debug] [--discard-all] [--discard-locals]\n\ [--remove-section=section] [--gap-fill=val] [--pad-to=address]\n", program_name); fprintf (stream, "\ [--set-start=val] [--adjust-start=incr] [--adjust-vma=incr]\n\ [--adjust-section-vma=section{=,+,-}val] [--adjust-warnings]\n\ [--no-adjust-warnings] [--set-section-flags=section=flags]\n\ [--add-section=sectionname=filename]\n\ [--strip-symbol symbol] [-N symbol] [--verbose]\n\ [--version] [--help]\n\ in-file [out-file]\n"); exit (exit_status); } static void strip_usage (stream, exit_status) FILE *stream; int exit_status; { fprintf (stream, "\ Usage: %s [-vVsSgxX] [-I bfdname] [-O bfdname] [-F bfdname] [-R section]\n\ [--input-target=bfdname] [--output-target=bfdname] [--target=bfdname]\n\ [--strip-all] [--strip-debug] [--discard-all] [--discard-locals]\n\ [--strip-symbol symbol] [-N symbol]\n\ [--remove-section=section] [--verbose] [--version] [--help] file...\n", program_name); exit (exit_status); } /* Parse a string into a VMA, with a fatal error if it can't be parsed. */ static bfd_vma parse_vma (s, arg) const char *s; const char *arg; { bfd_vma ret; const char *end; ret = bfd_scan_vma (s, &end, 0); if (*end != '\0') { fprintf (stderr, "%s: %s: bad number: %s\n", program_name, arg, s); exit (1); } return ret; } /* Parse section flags into a flagword, with a fatal error if the string can't be parsed. */ static flagword parse_flags (s) const char *s; { flagword ret; const char *snext; int len; ret = SEC_NO_FLAGS; do { snext = strchr (s, ','); if (snext == NULL) len = strlen (s); else { len = snext - s; ++snext; } #define PARSE_FLAG(fname,fval) if (strncmp (fname, s, len) == 0) ret |= fval; PARSE_FLAG ("alloc", SEC_ALLOC); PARSE_FLAG ("load", SEC_LOAD); PARSE_FLAG ("readonly", SEC_READONLY); PARSE_FLAG ("code", SEC_CODE); PARSE_FLAG ("data", SEC_DATA); PARSE_FLAG ("rom", SEC_ROM); #undef PARSE_FLAG s = snext; } while (s != NULL); return ret; } /* Return the name of a temporary file in the same directory as FILENAME. */ static char * make_tempname (filename) char *filename; { static char template[] = "stXXXXXX"; char *tmpname; char *slash = strrchr (filename, '/'); if (slash != (char *) NULL) { *slash = 0; tmpname = xmalloc (strlen (filename) + sizeof (template) + 1); strcpy (tmpname, filename); strcat (tmpname, "/"); strcat (tmpname, template); mktemp (tmpname); *slash = '/'; } else { tmpname = xmalloc (sizeof (template)); strcpy (tmpname, template); mktemp (tmpname); } return tmpname; } /* Find and optionally add an entry in the adjust_sections list. */ static struct section_list * find_section_list (name, add) const char *name; boolean add; { register struct section_list *p; for (p = adjust_sections; p != NULL; p = p->next) if (strcmp (p->name, name) == 0) return p; if (! add) return NULL; p = (struct section_list *) xmalloc (sizeof (struct section_list)); p->name = name; p->used = false; p->remove = false; p->adjust = ignore_vma; p->val = 0; p->set_flags = false; p->flags = 0; p->next = adjust_sections; adjust_sections = p; return p; } /* Make a list of symbols to explicitly strip out. A linked list is good enough for a small number from the command line, but this will slow things down a lot if many symbols are being deleted. */ struct symlist { const char *name; struct symlist *next; }; static struct symlist *strip_specific_list = NULL; static void add_strip_symbol (name) const char *name; { struct symlist *tmp_list; tmp_list = (struct symlist *) xmalloc (sizeof (struct symlist)); tmp_list->name = name; tmp_list->next = strip_specific_list; strip_specific_list = tmp_list; } static boolean is_strip_symbol (name) const char *name; { struct symlist *tmp_list; for (tmp_list = strip_specific_list; tmp_list; tmp_list = tmp_list->next) { if (strcmp (name, tmp_list->name) == 0) return true; } return false; } /* See if a section is being removed. */ static boolean is_strip_section (abfd, sec) bfd *abfd; asection *sec; { struct section_list *p; if (! sections_removed) return false; p = find_section_list (bfd_get_section_name (abfd, sec), false); return p != NULL && p->remove ? true : false; } /* Choose which symbol entries to copy; put the result in OSYMS. We don't copy in place, because that confuses the relocs. Return the number of symbols to print. */ static unsigned int filter_symbols (abfd, osyms, isyms, symcount) bfd *abfd; asymbol **osyms, **isyms; long symcount; { register asymbol **from = isyms, **to = osyms; long src_count = 0, dst_count = 0; for (; src_count < symcount; src_count++) { asymbol *sym = from[src_count]; flagword flags = sym->flags; int keep; if ((flags & BSF_GLOBAL) /* Keep if external. */ || (flags & BSF_KEEP) /* Keep if used in a relocation. */ || bfd_is_und_section (bfd_get_section (sym)) || bfd_is_com_section (bfd_get_section (sym))) keep = 1; else if ((flags & BSF_DEBUGGING) != 0) /* Debugging symbol. */ keep = strip_symbols != strip_debug; else /* Local symbol. */ keep = discard_locals != locals_all && (discard_locals != locals_start_L || ! bfd_is_local_label (abfd, sym)); if (keep && is_strip_symbol (bfd_asymbol_name (sym))) keep = 0; if (keep && is_strip_section (abfd, bfd_get_section (sym))) keep = 0; if (keep) to[dst_count++] = sym; } return dst_count; } /* Keep only every `copy_byte'th byte in MEMHUNK, which is *SIZE bytes long. Adjust *SIZE. */ void filter_bytes (memhunk, size) char *memhunk; bfd_size_type *size; { char *from = memhunk + copy_byte, *to = memhunk, *end = memhunk + *size; for (; from < end; from += interleave) *to++ = *from; *size /= interleave; } /* Copy object file IBFD onto OBFD. */ static void copy_object (ibfd, obfd) bfd *ibfd; bfd *obfd; { bfd_vma start; long symcount; asection **osections = NULL; bfd_size_type *gaps = NULL; bfd_size_type max_gap = 0; if (!bfd_set_format (obfd, bfd_get_format (ibfd))) { nonfatal (bfd_get_filename (obfd)); } if (verbose) printf ("copy from %s(%s) to %s(%s)\n", bfd_get_filename(ibfd), bfd_get_target(ibfd), bfd_get_filename(obfd), bfd_get_target(obfd)); if (set_start_set) start = set_start; else start = bfd_get_start_address (ibfd); start += adjust_start; if (!bfd_set_start_address (obfd, start) || !bfd_set_file_flags (obfd, (bfd_get_file_flags (ibfd) & bfd_applicable_file_flags (obfd)))) { nonfatal (bfd_get_filename (ibfd)); } /* Copy architecture of input file to output file */ if (!bfd_set_arch_mach (obfd, bfd_get_arch (ibfd), bfd_get_mach (ibfd))) { fprintf (stderr, "Output file cannot represent architecture %s\n", bfd_printable_arch_mach (bfd_get_arch (ibfd), bfd_get_mach (ibfd))); } if (!bfd_set_format (obfd, bfd_get_format (ibfd))) { nonfatal (bfd_get_filename(ibfd)); } if (isympp) free (isympp); if (osympp != isympp) free (osympp); /* bfd mandates that all output sections be created and sizes set before any output is done. Thus, we traverse all sections multiple times. */ bfd_map_over_sections (ibfd, setup_section, (void *) obfd); if (add_sections != NULL) { struct section_add *padd; struct section_list *pset; for (padd = add_sections; padd != NULL; padd = padd->next) { padd->section = bfd_make_section (obfd, padd->name); if (padd->section == NULL) { fprintf (stderr, "%s: can't create section `%s': %s\n", program_name, padd->name, bfd_errmsg (bfd_get_error ())); status = 1; return; } else { flagword flags; if (! bfd_set_section_size (obfd, padd->section, padd->size)) nonfatal (bfd_get_filename (obfd)); pset = find_section_list (padd->name, false); if (pset != NULL) pset->used = true; if (pset != NULL && pset->set_flags) flags = pset->flags | SEC_HAS_CONTENTS; else flags = SEC_HAS_CONTENTS | SEC_READONLY | SEC_DATA; if (! bfd_set_section_flags (obfd, padd->section, flags)) nonfatal (bfd_get_filename (obfd)); if (pset != NULL && (pset->adjust == adjust_vma || pset->adjust == set_vma)) { if (! bfd_set_section_vma (obfd, padd->section, pset->val)) nonfatal (bfd_get_filename (obfd)); } } } } if (gap_fill_set || pad_to_set) { asection **set; unsigned int c, i; /* We must fill in gaps between the sections and/or we must pad the last section to a specified address. We do this by grabbing a list of the sections, sorting them by VMA, and increasing the section sizes as required to fill the gaps. We write out the gap contents below. */ c = bfd_count_sections (obfd); osections = (asection **) xmalloc (c * sizeof (asection *)); set = osections; bfd_map_over_sections (obfd, get_sections, (void *) &set); qsort (osections, c, sizeof (asection *), compare_section_vma); gaps = (bfd_size_type *) xmalloc (c * sizeof (bfd_size_type)); memset (gaps, 0, c * sizeof (bfd_size_type)); if (gap_fill_set) { for (i = 0; i < c - 1; i++) { flagword flags; bfd_size_type size; bfd_vma gap_start, gap_stop; flags = bfd_get_section_flags (obfd, osections[i]); if ((flags & SEC_HAS_CONTENTS) == 0 || (flags & SEC_LOAD) == 0) continue; size = bfd_section_size (obfd, osections[i]); gap_start = bfd_section_vma (obfd, osections[i]) + size; gap_stop = bfd_section_vma (obfd, osections[i + 1]); if (gap_start < gap_stop) { if (! bfd_set_section_size (obfd, osections[i], size + (gap_stop - gap_start))) { fprintf (stderr, "%s: Can't fill gap after %s: %s\n", program_name, bfd_get_section_name (obfd, osections[i]), bfd_errmsg (bfd_get_error())); status = 1; break; } gaps[i] = gap_stop - gap_start; if (max_gap < gap_stop - gap_start) max_gap = gap_stop - gap_start; } } } if (pad_to_set) { bfd_vma vma; bfd_size_type size; vma = bfd_section_vma (obfd, osections[c - 1]); size = bfd_section_size (obfd, osections[c - 1]); if (vma + size < pad_to) { if (! bfd_set_section_size (obfd, osections[c - 1], pad_to - vma)) { fprintf (stderr, "%s: Can't add padding to %s: %s\n", program_name, bfd_get_section_name (obfd, osections[c - 1]), bfd_errmsg (bfd_get_error ())); status = 1; } else { gaps[c - 1] = pad_to - (vma + size); if (max_gap < pad_to - (vma + size)) max_gap = pad_to - (vma + size); } } } } /* Symbol filtering must happen after the output sections have been created, but before their contents are set. */ if (strip_symbols == strip_all && discard_locals == locals_undef) { osympp = isympp = NULL; symcount = 0; } else { long symsize; symsize = bfd_get_symtab_upper_bound (ibfd); if (symsize < 0) { nonfatal (bfd_get_filename (ibfd)); } osympp = isympp = (asymbol **) xmalloc (symsize); symcount = bfd_canonicalize_symtab (ibfd, isympp); if (symcount < 0) { nonfatal (bfd_get_filename (ibfd)); } if (strip_symbols == strip_debug || discard_locals != locals_undef || strip_specific_list || sections_removed) { /* Mark symbols used in output relocations so that they are kept, even if they are local labels or static symbols. Note we iterate over the input sections examining their relocations since the relocations for the output sections haven't been set yet. mark_symbols_used_in_relocations will ignore input sections which have no corresponding output section. */ bfd_map_over_sections (ibfd, mark_symbols_used_in_relocations, (PTR)isympp); osympp = (asymbol **) xmalloc (symcount * sizeof (asymbol *)); symcount = filter_symbols (ibfd, osympp, isympp, symcount); } } bfd_set_symtab (obfd, osympp, symcount); /* This has to happen after the symbol table has been set. */ bfd_map_over_sections (ibfd, copy_section, (void *) obfd); if (add_sections != NULL) { struct section_add *padd; for (padd = add_sections; padd != NULL; padd = padd->next) { if (! bfd_set_section_contents (obfd, padd->section, (PTR) padd->contents, (file_ptr) 0, (bfd_size_type) padd->size)) nonfatal (bfd_get_filename (obfd)); } } if (gap_fill_set || pad_to_set) { bfd_byte *buf; int c, i; /* Fill in the gaps. */ if (max_gap > 8192) max_gap = 8192; buf = (bfd_byte *) xmalloc (max_gap); memset (buf, gap_fill, max_gap); c = bfd_count_sections (obfd); for (i = 0; i < c; i++) { if (gaps[i] != 0) { bfd_size_type left; file_ptr off; left = gaps[i]; off = bfd_section_size (obfd, osections[i]) - left; while (left > 0) { bfd_size_type now; if (left > 8192) now = 8192; else now = left; if (! bfd_set_section_contents (obfd, osections[i], buf, off, now)) { nonfatal (bfd_get_filename (obfd)); } left -= now; off += now; } } } } /* Allow the BFD backend to copy any private data it understands from the input BFD to the output BFD. This is done last to permit the routine to look at the filtered symbol table, which is important for the ECOFF code at least. */ if (!bfd_copy_private_bfd_data (ibfd, obfd)) { fprintf (stderr, "%s: %s: error copying private BFD data: %s\n", program_name, bfd_get_filename (obfd), bfd_errmsg (bfd_get_error ())); status = 1; return; } } static char * cat (a, b, c) char *a; char *b; char *c; { size_t size = strlen (a) + strlen (b) + strlen (c); char *r = xmalloc (size + 1); strcpy (r, a); strcat (r, b); strcat (r, c); return r; } /* Read each archive element in turn from IBFD, copy the contents to temp file, and keep the temp file handle. */ static void copy_archive (ibfd, obfd, output_target) bfd *ibfd; bfd *obfd; char *output_target; { struct name_list { struct name_list *next; char *name; } *list, *l; bfd **ptr = &obfd->archive_head; bfd *this_element; char *dir = make_tempname (bfd_get_filename (obfd)); /* Make a temp directory to hold the contents. */ mkdir (dir, 0700); obfd->has_armap = ibfd->has_armap; list = NULL; this_element = bfd_openr_next_archived_file (ibfd, NULL); while (this_element != (bfd *) NULL) { /* Create an output file for this member. */ char *output_name = cat (dir, "/", bfd_get_filename(this_element)); bfd *output_bfd = bfd_openw (output_name, output_target); bfd *last_element; l = (struct name_list *) xmalloc (sizeof (struct name_list)); l->name = output_name; l->next = list; list = l; if (output_bfd == (bfd *) NULL) { nonfatal (output_name); } if (!bfd_set_format (obfd, bfd_get_format (ibfd))) { nonfatal (bfd_get_filename (obfd)); } if (bfd_check_format (this_element, bfd_object) == true) { copy_object (this_element, output_bfd); } bfd_close (output_bfd); /* Open the newly output file and attach to our list. */ output_bfd = bfd_openr (output_name, output_target); *ptr = output_bfd; ptr = &output_bfd->next; last_element = this_element; this_element = bfd_openr_next_archived_file (ibfd, last_element); bfd_close (last_element); } *ptr = (bfd *) NULL; if (!bfd_close (obfd)) { nonfatal (bfd_get_filename (obfd)); } /* Delete all the files that we opened. */ for (l = list; l != NULL; l = l->next) unlink (l->name); rmdir (dir); if (!bfd_close (ibfd)) { nonfatal (bfd_get_filename (ibfd)); } } /* The top-level control. */ static void copy_file (input_filename, output_filename, input_target, output_target) char *input_filename; char *output_filename; char *input_target; char *output_target; { bfd *ibfd; char **matching; /* To allow us to do "strip *" without dying on the first non-object file, failures are nonfatal. */ ibfd = bfd_openr (input_filename, input_target); if (ibfd == NULL) { nonfatal (input_filename); } if (bfd_check_format (ibfd, bfd_archive)) { bfd *obfd; /* bfd_get_target does not return the correct value until bfd_check_format succeeds. */ if (output_target == NULL) output_target = bfd_get_target (ibfd); obfd = bfd_openw (output_filename, output_target); if (obfd == NULL) { nonfatal (output_filename); } copy_archive (ibfd, obfd, output_target); } else if (bfd_check_format_matches (ibfd, bfd_object, &matching)) { bfd *obfd; /* bfd_get_target does not return the correct value until bfd_check_format succeeds. */ if (output_target == NULL) output_target = bfd_get_target (ibfd); obfd = bfd_openw (output_filename, output_target); if (obfd == NULL) { nonfatal (output_filename); } copy_object (ibfd, obfd); if (!bfd_close (obfd)) { nonfatal (output_filename); } if (!bfd_close (ibfd)) { nonfatal (input_filename); } } else { bfd_nonfatal (input_filename); if (bfd_get_error () == bfd_error_file_ambiguously_recognized) { list_matching_formats (matching); free (matching); } status = 1; } } /* Create a section in OBFD with the same name and attributes as ISECTION in IBFD. */ static void setup_section (ibfd, isection, obfdarg) bfd *ibfd; sec_ptr isection; PTR obfdarg; { bfd *obfd = (bfd *) obfdarg; struct section_list *p; sec_ptr osection; bfd_vma vma; flagword flags; char *err; if ((bfd_get_section_flags (ibfd, isection) & SEC_DEBUGGING) != 0 && (strip_symbols == strip_debug || strip_symbols == strip_all || discard_locals == locals_all)) return; p = find_section_list (bfd_section_name (ibfd, isection), false); if (p != NULL) p->used = true; if (p != NULL && p->remove) return; osection = bfd_make_section_anyway (obfd, bfd_section_name (ibfd, isection)); if (osection == NULL) { err = "making"; goto loser; } if (!bfd_set_section_size (obfd, osection, bfd_section_size (ibfd, isection))) { err = "size"; goto loser; } vma = bfd_section_vma (ibfd, isection); if (p != NULL && p->adjust == adjust_vma) vma += p->val; else if (p != NULL && p->adjust == set_vma) vma = p->val; else vma += adjust_section_vma; if (! bfd_set_section_vma (obfd, osection, vma)) { err = "vma"; goto loser; } if (bfd_set_section_alignment (obfd, osection, bfd_section_alignment (ibfd, isection)) == false) { err = "alignment"; goto loser; } if (p != NULL && p->set_flags) flags = p->flags; else flags = bfd_get_section_flags (ibfd, isection); if (!bfd_set_section_flags (obfd, osection, flags)) { err = "flags"; goto loser; } /* This used to be mangle_section; we do here to avoid using bfd_get_section_by_name since some formats allow multiple sections with the same name. */ isection->output_section = osection; isection->output_offset = 0; /* Allow the BFD backend to copy any private data it understands from the input section to the output section. */ if (!bfd_copy_private_section_data (ibfd, isection, obfd, osection)) { err = "private data"; goto loser; } /* All went well */ return; loser: fprintf (stderr, "%s: %s: section `%s': error in %s: %s\n", program_name, bfd_get_filename (ibfd), bfd_section_name (ibfd, isection), err, bfd_errmsg (bfd_get_error ())); status = 1; } /* Copy the data of input section ISECTION of IBFD to an output section with the same name in OBFD. If stripping then don't copy any relocation info. */ static void copy_section (ibfd, isection, obfdarg) bfd *ibfd; sec_ptr isection; PTR obfdarg; { bfd *obfd = (bfd *) obfdarg; struct section_list *p; arelent **relpp; long relcount; sec_ptr osection; bfd_size_type size; if ((bfd_get_section_flags (ibfd, isection) & SEC_DEBUGGING) != 0 && (strip_symbols == strip_debug || strip_symbols == strip_all || discard_locals == locals_all)) { return; } p = find_section_list (bfd_section_name (ibfd, isection), false); if (p != NULL && p->remove) return; osection = isection->output_section; size = bfd_get_section_size_before_reloc (isection); if (size == 0 || osection == 0) return; if (strip_symbols == strip_all) bfd_set_reloc (obfd, osection, (arelent **) NULL, 0); else { long relsize; relsize = bfd_get_reloc_upper_bound (ibfd, isection); if (relsize < 0) { nonfatal (bfd_get_filename (ibfd)); } if (relsize == 0) bfd_set_reloc (obfd, osection, (arelent **) NULL, 0); else { relpp = (arelent **) xmalloc (relsize); relcount = bfd_canonicalize_reloc (ibfd, isection, relpp, isympp); if (relcount < 0) { nonfatal (bfd_get_filename (ibfd)); } bfd_set_reloc (obfd, osection, relpp, relcount); } } isection->_cooked_size = isection->_raw_size; isection->reloc_done = true; if (bfd_get_section_flags (ibfd, isection) & SEC_HAS_CONTENTS) { PTR memhunk = (PTR) xmalloc ((unsigned) size); if (!bfd_get_section_contents (ibfd, isection, memhunk, (file_ptr) 0, size)) { nonfatal (bfd_get_filename (ibfd)); } if (copy_byte >= 0) { filter_bytes (memhunk, &size); /* The section has gotten smaller. */ if (!bfd_set_section_size (obfd, osection, size)) nonfatal (bfd_get_filename (obfd)); } if (!bfd_set_section_contents (obfd, osection, memhunk, (file_ptr) 0, size)) { nonfatal (bfd_get_filename (obfd)); } free (memhunk); } } /* Get all the sections. This is used when --gap-fill or --pad-to is used. */ static void get_sections (obfd, osection, secppparg) bfd *obfd; asection *osection; PTR secppparg; { asection ***secppp = (asection ***) secppparg; **secppp = osection; ++(*secppp); } /* Sort sections by VMA. This is called via qsort, and is used when --gap-fill or --pad-to is used. We force non loadable or empty sections to the front, where they are easier to ignore. */ static int compare_section_vma (arg1, arg2) const PTR arg1; const PTR arg2; { const asection **sec1 = (const asection **) arg1; const asection **sec2 = (const asection **) arg2; flagword flags1, flags2; /* Sort non loadable sections to the front. */ flags1 = (*sec1)->flags; flags2 = (*sec2)->flags; if ((flags1 & SEC_HAS_CONTENTS) == 0 || (flags1 & SEC_LOAD) == 0) { if ((flags2 & SEC_HAS_CONTENTS) != 0 && (flags2 & SEC_LOAD) != 0) return -1; } else { if ((flags2 & SEC_HAS_CONTENTS) == 0 || (flags2 & SEC_LOAD) == 0) return 1; } /* Sort sections by VMA. */ if ((*sec1)->vma > (*sec2)->vma) return 1; else if ((*sec1)->vma < (*sec2)->vma) return -1; /* Sort sections with the same VMA by size. */ if ((*sec1)->_raw_size > (*sec2)->_raw_size) return 1; else if ((*sec1)->_raw_size < (*sec2)->_raw_size) return -1; return 0; } /* Mark all the symbols which will be used in output relocations with the BSF_KEEP flag so that those symbols will not be stripped. Ignore relocations which will not appear in the output file. */ static void mark_symbols_used_in_relocations (ibfd, isection, symbolsarg) bfd *ibfd; sec_ptr isection; PTR symbolsarg; { asymbol **symbols = (asymbol **) symbolsarg; long relsize; arelent **relpp; long relcount, i; /* Ignore an input section with no corresponding output section. */ if (isection->output_section == NULL) return; relsize = bfd_get_reloc_upper_bound (ibfd, isection); if (relsize < 0) bfd_fatal (bfd_get_filename (ibfd)); relpp = (arelent **) xmalloc (relsize); relcount = bfd_canonicalize_reloc (ibfd, isection, relpp, symbols); if (relcount < 0) bfd_fatal (bfd_get_filename (ibfd)); /* Examine each symbol used in a relocation. If it's not one of the special bfd section symbols, then mark it with BSF_KEEP. */ for (i = 0; i < relcount; i++) { if (*relpp[i]->sym_ptr_ptr != bfd_com_section_ptr->symbol && *relpp[i]->sym_ptr_ptr != bfd_abs_section_ptr->symbol && *relpp[i]->sym_ptr_ptr != bfd_und_section_ptr->symbol) (*relpp[i]->sym_ptr_ptr)->flags |= BSF_KEEP; } if (relpp != NULL) free (relpp); } /* The number of bytes to copy at once. */ #define COPY_BUF 8192 /* Copy file FROM to file TO, performing no translations. Return 0 if ok, -1 if error. */ static int simple_copy (from, to) char *from, *to; { int fromfd, tofd, nread; char buf[COPY_BUF]; fromfd = open (from, O_RDONLY); if (fromfd < 0) return -1; tofd = open (to, O_WRONLY | O_CREAT | O_TRUNC); if (tofd < 0) { close (fromfd); return -1; } while ((nread = read (fromfd, buf, sizeof buf)) > 0) { if (write (tofd, buf, nread) != nread) { close (fromfd); close (tofd); return -1; } } close (fromfd); close (tofd); if (nread < 0) return -1; return 0; } #ifndef S_ISLNK #ifdef S_IFLNK #define S_ISLNK(m) (((m) & S_IFMT) == S_IFLNK) #else #define S_ISLNK(m) 0 #define lstat stat #endif #endif /* Rename FROM to TO, copying if TO is a link. Assumes that TO already exists, because FROM is a temp file. Return 0 if ok, -1 if error. */ static int smart_rename (from, to) char *from, *to; { struct stat s; int ret = 0; if (lstat (to, &s)) return -1; /* Use rename only if TO is not a symbolic link and has only one hard link. */ if (!S_ISLNK (s.st_mode) && s.st_nlink == 1) { ret = rename (from, to); if (ret == 0) { /* Try to preserve the permission bits and ownership of TO. */ chmod (to, s.st_mode & 07777); chown (to, s.st_uid, s.st_gid); } } else { ret = simple_copy (from, to); if (ret == 0) unlink (from); } return ret; } static int strip_main (argc, argv) int argc; char *argv[]; { char *input_target = NULL, *output_target = NULL; boolean show_version = false; int c, i; struct section_list *p; while ((c = getopt_long (argc, argv, "I:O:F:R:sSgxXVvN:", strip_options, (int *) 0)) != EOF) { switch (c) { case 'I': input_target = optarg; break; case 'O': output_target = optarg; break; case 'F': input_target = output_target = optarg; break; case 'R': p = find_section_list (optarg, true); p->remove = true; sections_removed = true; break; case 's': strip_symbols = strip_all; break; case 'S': case 'g': strip_symbols = strip_debug; break; case 'N': add_strip_symbol (optarg); break; case 'x': discard_locals = locals_all; break; case 'X': discard_locals = locals_start_L; break; case 'v': verbose = true; break; case 'V': show_version = true; break; case 0: break; /* we've been given a long option */ case 'h': strip_usage (stdout, 0); default: strip_usage (stderr, 1); } } if (show_version) { printf ("GNU %s version %s\n", program_name, program_version); exit (0); } /* Default is to strip all symbols. */ if (strip_symbols == strip_undef && discard_locals == locals_undef && strip_specific_list == NULL) strip_symbols = strip_all; if (output_target == (char *) NULL) output_target = input_target; i = optind; if (i == argc) strip_usage (stderr, 1); for (; i < argc; i++) { int hold_status = status; char *tmpname = make_tempname (argv[i]); status = 0; copy_file (argv[i], tmpname, input_target, output_target); if (status == 0) { smart_rename (tmpname, argv[i]); status = hold_status; } else unlink (tmpname); free (tmpname); } return 0; } static int copy_main (argc, argv) int argc; char *argv[]; { char *input_filename = NULL, *output_filename = NULL; char *input_target = NULL, *output_target = NULL; boolean show_version = false; boolean adjust_warn = true; int c; struct section_list *p; while ((c = getopt_long (argc, argv, "b:i:I:s:O:d:F:R:SgxXVvN:", copy_options, (int *) 0)) != EOF) { switch (c) { case 'b': copy_byte = atoi(optarg); if (copy_byte < 0) { fprintf (stderr, "%s: byte number must be non-negative\n", program_name); exit (1); } break; case 'i': interleave = atoi(optarg); if (interleave < 1) { fprintf(stderr, "%s: interleave must be positive\n", program_name); exit (1); } break; case 'I': case 's': /* "source" - 'I' is preferred */ input_target = optarg; break; case 'O': case 'd': /* "destination" - 'O' is preferred */ output_target = optarg; break; case 'F': input_target = output_target = optarg; break; case 'R': p = find_section_list (optarg, true); p->remove = true; sections_removed = true; break; case 'S': strip_symbols = strip_all; break; case 'g': strip_symbols = strip_debug; break; case 'N': add_strip_symbol (optarg); break; case 'x': discard_locals = locals_all; break; case 'X': discard_locals = locals_start_L; break; case 'v': verbose = true; break; case 'V': show_version = true; break; case OPTION_ADD_SECTION: { const char *s; struct stat st; struct section_add *pa; int len; char *name; FILE *f; s = strchr (optarg, '='); if (s == NULL) { fprintf (stderr, "%s: bad format for --add-section NAME=FILENAME\n", program_name); exit (1); } if (stat (s + 1, &st) < 0) { fprintf (stderr, "%s: ", program_name); perror (s + 1); exit (1); } pa = (struct section_add *) xmalloc (sizeof (struct section_add)); len = s - optarg; name = (char *) xmalloc (len + 1); strncpy (name, optarg, len); name[len] = '\0'; pa->name = name; pa->filename = s + 1; pa->size = st.st_size; pa->contents = xmalloc (pa->size); f = fopen (pa->filename, FOPEN_RB); if (f == NULL) { fprintf (stderr, "%s: ", program_name); perror (pa->filename); exit (1); } if (fread (pa->contents, 1, pa->size, f) == 0 || ferror (f)) { fprintf (stderr, "%s: %s: fread failed\n", program_name, pa->filename); exit (1); } fclose (f); pa->next = add_sections; add_sections = pa; } break; case OPTION_ADJUST_START: adjust_start = parse_vma (optarg, "--adjust-start"); break; case OPTION_ADJUST_SECTION_VMA: { const char *s; int len; char *name; s = strchr (optarg, '='); if (s == NULL) { s = strchr (optarg, '+'); if (s == NULL) { s = strchr (optarg, '-'); if (s == NULL) { fprintf (stderr, "%s: bad format for --adjust-section-vma\n", program_name); exit (1); } } } len = s - optarg; name = (char *) xmalloc (len + 1); strncpy (name, optarg, len); name[len] = '\0'; p = find_section_list (name, true); p->val = parse_vma (s + 1, "--adjust-section-vma"); if (*s == '=') p->adjust = set_vma; else { p->adjust = adjust_vma; if (*s == '-') p->val = - p->val; } } break; case OPTION_ADJUST_VMA: adjust_section_vma = parse_vma (optarg, "--adjust-vma"); adjust_start = adjust_section_vma; break; case OPTION_ADJUST_WARNINGS: adjust_warn = true; break; case OPTION_GAP_FILL: { bfd_vma gap_fill_vma; gap_fill_vma = parse_vma (optarg, "--gap-fill"); gap_fill = (bfd_byte) gap_fill_vma; if ((bfd_vma) gap_fill != gap_fill_vma) { fprintf (stderr, "%s: warning: truncating gap-fill from 0x", program_name); fprintf_vma (stderr, gap_fill_vma); fprintf (stderr, "to 0x%x\n", (unsigned int) gap_fill); } gap_fill_set = true; } break; case OPTION_NO_ADJUST_WARNINGS: adjust_warn = false; break; case OPTION_PAD_TO: pad_to = parse_vma (optarg, "--pad-to"); pad_to_set = true; break; case OPTION_SET_SECTION_FLAGS: { const char *s; int len; char *name; s = strchr (optarg, '='); if (s == NULL) { fprintf (stderr, "%s: bad format for --set-section-flags\n", program_name); exit (1); } len = s - optarg; name = (char *) xmalloc (len + 1); strncpy (name, optarg, len); name[len] = '\0'; p = find_section_list (name, true); p->set_flags = true; p->flags = parse_flags (s + 1); } break; case OPTION_SET_START: set_start = parse_vma (optarg, "--set-start"); set_start_set = true; break; case 0: break; /* we've been given a long option */ case 'h': copy_usage (stdout, 0); default: copy_usage (stderr, 1); } } if (show_version) { printf ("GNU %s version %s\n", program_name, program_version); exit (0); } if (copy_byte >= interleave) { fprintf (stderr, "%s: byte number must be less than interleave\n", program_name); exit (1); } if (optind == argc || optind + 2 < argc) copy_usage (stderr, 1); input_filename = argv[optind]; if (optind + 1 < argc) output_filename = argv[optind + 1]; /* Default is to strip no symbols. */ if (strip_symbols == strip_undef && discard_locals == locals_undef) strip_symbols = strip_none; if (output_target == (char *) NULL) output_target = input_target; /* If there is no destination file then create a temp and rename the result into the input. */ if (output_filename == (char *) NULL) { char *tmpname = make_tempname (input_filename); copy_file (input_filename, tmpname, input_target, output_target); if (status == 0) smart_rename (tmpname, input_filename); else unlink (tmpname); } else { copy_file (input_filename, output_filename, input_target, output_target); } if (adjust_warn) { for (p = adjust_sections; p != NULL; p = p->next) { if (! p->used && p->adjust != ignore_vma) { fprintf (stderr, "%s: warning: --adjust-section-vma %s%c0x", program_name, p->name, p->adjust == set_vma ? '=' : '+'); fprintf_vma (stderr, p->val); fprintf (stderr, " never used\n"); } } } return 0; } int main (argc, argv) int argc; char *argv[]; { program_name = argv[0]; xmalloc_set_program_name (program_name); START_PROGRESS (program_name, 0); strip_symbols = strip_undef; discard_locals = locals_undef; bfd_init (); if (is_strip < 0) { int i = strlen (program_name); is_strip = (i >= 5 && strcmp (program_name + i - 5, "strip") == 0); } if (is_strip) strip_main (argc, argv); else copy_main (argc, argv); END_PROGRESS (program_name); return status; }