| 1 | /* symtab.c
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| 2 |
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| 3 | Copyright 2000, 2001, 2002 Free Software Foundation, Inc.
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| 4 |
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| 5 | This file is part of GNU Binutils.
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| 6 |
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| 7 | This program is free software; you can redistribute it and/or modify
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| 8 | it under the terms of the GNU General Public License as published by
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| 9 | the Free Software Foundation; either version 2 of the License, or
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| 10 | (at your option) any later version.
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| 11 |
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| 12 | This program is distributed in the hope that it will be useful,
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| 13 | but WITHOUT ANY WARRANTY; without even the implied warranty of
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| 14 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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| 15 | GNU General Public License for more details.
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| 16 |
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| 17 | You should have received a copy of the GNU General Public License
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| 18 | along with this program; if not, write to the Free Software
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| 19 | Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA
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| 20 | 02111-1307, USA. */
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| 21 | |
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| 22 |
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| 23 | #include "gprof.h"
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| 24 | #include "search_list.h"
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| 25 | #include "source.h"
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| 26 | #include "symtab.h"
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| 27 | #include "cg_arcs.h"
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| 28 | #include "corefile.h"
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| 29 |
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| 30 | static int cmp_addr PARAMS ((const PTR, const PTR));
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| 31 |
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| 32 | Sym_Table symtab;
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| 33 |
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| 34 |
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| 35 | /* Initialize a symbol (so it's empty). */
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| 36 |
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| 37 | void
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| 38 | sym_init (sym)
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| 39 | Sym *sym;
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| 40 | {
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| 41 | memset (sym, 0, sizeof (*sym));
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| 42 |
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| 43 | /* It is not safe to assume that a binary zero corresponds
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| 44 | to a floating-point 0.0, so initialize floats explicitly. */
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| 45 | sym->hist.time = 0.0;
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| 46 | sym->cg.child_time = 0.0;
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| 47 | sym->cg.prop.fract = 0.0;
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| 48 | sym->cg.prop.self = 0.0;
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| 49 | sym->cg.prop.child = 0.0;
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| 50 | }
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| 51 |
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| 52 |
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| 53 | /* Compare the function entry-point of two symbols and return <0, =0,
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| 54 | or >0 depending on whether the left value is smaller than, equal
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| 55 | to, or greater than the right value. If two symbols are equal
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| 56 | but one has is_func set and the other doesn't, we make the
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| 57 | non-function symbol one "bigger" so that the function symbol will
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| 58 | survive duplicate removal. Finally, if both symbols have the
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| 59 | same is_func value, we discriminate against is_static such that
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| 60 | the global symbol survives. */
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| 61 |
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| 62 | static int
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| 63 | cmp_addr (lp, rp)
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| 64 | const PTR lp;
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| 65 | const PTR rp;
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| 66 | {
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| 67 | const Sym *left = (const Sym *) lp;
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| 68 | const Sym *right = (const Sym *) rp;
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| 69 |
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| 70 | if (left->addr > right->addr)
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| 71 | return 1;
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| 72 | else if (left->addr < right->addr)
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| 73 | return -1;
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| 74 |
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| 75 | if (left->is_func != right->is_func)
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| 76 | return right->is_func - left->is_func;
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| 77 |
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| 78 | return left->is_static - right->is_static;
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| 79 | }
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| 80 |
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| 81 |
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| 82 | void
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| 83 | symtab_finalize (tab)
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| 84 | Sym_Table *tab;
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| 85 | {
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| 86 | Sym *src, *dst;
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| 87 | bfd_vma prev_addr;
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| 88 |
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| 89 | if (!tab->len)
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| 90 | return;
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| 91 |
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| 92 | /* Sort symbol table in order of increasing function addresses. */
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| 93 | qsort (tab->base, tab->len, sizeof (Sym), cmp_addr);
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| 94 |
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| 95 | /* Remove duplicate entries to speed-up later processing and
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| 96 | set end_addr if its not set yet. */
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| 97 | prev_addr = tab->base[0].addr + 1;
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| 98 |
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| 99 | for (src = dst = tab->base; src < tab->limit; ++src)
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| 100 | {
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| 101 | if (src->addr == prev_addr)
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| 102 | {
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| 103 | /* If same address, favor global symbol over static one,
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| 104 | then function over line number. If both symbols are
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| 105 | either static or global and either function or line, check
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| 106 | whether one has name beginning with underscore while
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| 107 | the other doesn't. In such cases, keep sym without
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| 108 | underscore. This takes cares of compiler generated
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| 109 | symbols (such as __gnu_compiled, __c89_used, etc.). */
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| 110 | if ((!src->is_static && dst[-1].is_static)
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| 111 | || ((src->is_static == dst[-1].is_static)
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| 112 | && ((src->is_func && !dst[-1].is_func)
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| 113 | || ((src->is_func == dst[-1].is_func)
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| 114 | && ((src->name[0] != '_' && dst[-1].name[0] == '_')
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| 115 | || (src->name[0]
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| 116 | && src->name[1] != '_'
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| 117 | && dst[-1].name[1] == '_'))))))
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| 118 | {
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| 119 | DBG (AOUTDEBUG | IDDEBUG,
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| 120 | printf ("[symtab_finalize] favor %s@%c%c over %s@%c%c",
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| 121 | src->name, src->is_static ? 't' : 'T',
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| 122 | src->is_func ? 'F' : 'f',
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| 123 | dst[-1].name, dst[-1].is_static ? 't' : 'T',
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| 124 | dst[-1].is_func ? 'F' : 'f');
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| 125 | printf (" (addr=%lx)\n", (unsigned long) src->addr));
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| 126 |
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| 127 | dst[-1] = *src;
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| 128 | }
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| 129 | else
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| 130 | {
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| 131 | DBG (AOUTDEBUG | IDDEBUG,
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| 132 | printf ("[symtab_finalize] favor %s@%c%c over %s@%c%c",
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| 133 | dst[-1].name, dst[-1].is_static ? 't' : 'T',
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| 134 | dst[-1].is_func ? 'F' : 'f',
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| 135 | src->name, src->is_static ? 't' : 'T',
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| 136 | src->is_func ? 'F' : 'f');
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| 137 | printf (" (addr=%lx)\n", (unsigned long) src->addr));
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| 138 | }
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| 139 | }
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| 140 | else
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| 141 | {
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| 142 | if (dst > tab->base && dst[-1].end_addr == 0)
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| 143 | dst[-1].end_addr = src->addr - 1;
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| 144 |
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| 145 | /* Retain sym only if it has a non-empty address range. */
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| 146 | if (!src->end_addr || src->addr <= src->end_addr)
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| 147 | {
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| 148 | *dst = *src;
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| 149 | dst++;
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| 150 | prev_addr = src->addr;
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| 151 | }
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| 152 | }
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| 153 | }
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| 154 |
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| 155 | if (tab->len > 0 && dst[-1].end_addr == 0)
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| 156 | dst[-1].end_addr = core_text_sect->vma + core_text_sect->_raw_size - 1;
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| 157 |
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| 158 | DBG (AOUTDEBUG | IDDEBUG,
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| 159 | printf ("[symtab_finalize]: removed %d duplicate entries\n",
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| 160 | tab->len - (int) (dst - tab->base)));
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| 161 |
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| 162 | tab->limit = dst;
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| 163 | tab->len = tab->limit - tab->base;
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| 164 |
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| 165 | DBG (AOUTDEBUG | IDDEBUG,
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| 166 | unsigned int j;
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| 167 |
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| 168 | for (j = 0; j < tab->len; ++j)
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| 169 | {
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| 170 | printf ("[symtab_finalize] 0x%lx-0x%lx\t%s\n",
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| 171 | (long) tab->base[j].addr, (long) tab->base[j].end_addr,
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| 172 | tab->base[j].name);
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| 173 | }
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| 174 | );
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| 175 | }
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| 176 |
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| 177 |
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| 178 | #ifdef DEBUG
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| 179 |
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| 180 | Sym *
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| 181 | dbg_sym_lookup (sym_tab, address)
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| 182 | Sym_Table *sym_tab;
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| 183 | bfd_vma address;
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| 184 | {
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| 185 | long low, mid, high;
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| 186 | Sym *sym;
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| 187 |
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| 188 | fprintf (stderr, "[dbg_sym_lookup] address 0x%lx\n",
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| 189 | (unsigned long) address);
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| 190 |
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| 191 | sym = sym_tab->base;
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| 192 | for (low = 0, high = sym_tab->len - 1; low != high;)
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| 193 | {
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| 194 | mid = (high + low) >> 1;
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| 195 |
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| 196 | fprintf (stderr, "[dbg_sym_lookup] low=0x%lx, mid=0x%lx, high=0x%lx\n",
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| 197 | low, mid, high);
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| 198 | fprintf (stderr, "[dbg_sym_lookup] sym[m]=0x%lx sym[m + 1]=0x%lx\n",
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| 199 | (unsigned long) sym[mid].addr,
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| 200 | (unsigned long) sym[mid + 1].addr);
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| 201 |
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| 202 | if (sym[mid].addr <= address && sym[mid + 1].addr > address)
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| 203 | return &sym[mid];
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| 204 |
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| 205 | if (sym[mid].addr > address)
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| 206 | high = mid;
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| 207 | else
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| 208 | low = mid + 1;
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| 209 | }
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| 210 |
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| 211 | fprintf (stderr, "[dbg_sym_lookup] binary search fails???\n");
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| 212 |
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| 213 | return 0;
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| 214 | }
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| 215 |
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| 216 | #endif /* DEBUG */
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| 217 |
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| 218 |
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| 219 | /* Look up an address in the symbol-table that is sorted by address.
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| 220 | If address does not hit any symbol, 0 is returned. */
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| 221 | Sym *
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| 222 | sym_lookup (sym_tab, address)
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| 223 | Sym_Table *sym_tab;
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| 224 | bfd_vma address;
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| 225 | {
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| 226 | long low, high;
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| 227 | long mid = -1;
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| 228 | Sym *sym;
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| 229 | #ifdef DEBUG
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| 230 | int probes = 0;
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| 231 | #endif /* DEBUG */
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| 232 |
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| 233 | if (!sym_tab->len)
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| 234 | return 0;
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| 235 |
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| 236 | sym = sym_tab->base;
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| 237 | for (low = 0, high = sym_tab->len - 1; low != high;)
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| 238 | {
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| 239 | DBG (LOOKUPDEBUG, ++probes);
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| 240 | mid = (high + low) / 2;
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| 241 |
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| 242 | if (sym[mid].addr <= address && sym[mid + 1].addr > address)
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| 243 | {
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| 244 | if (address > sym[mid].end_addr)
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| 245 | {
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| 246 | /* Address falls into gap between
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| 247 | sym[mid] and sym[mid + 1]. */
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| 248 | return 0;
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| 249 | }
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| 250 | else
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| 251 | {
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| 252 | DBG (LOOKUPDEBUG,
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| 253 | printf ("[sym_lookup] %d probes (symtab->len=%u)\n",
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| 254 | probes, sym_tab->len - 1));
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| 255 | return &sym[mid];
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| 256 | }
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| 257 | }
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| 258 |
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| 259 | if (sym[mid].addr > address)
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| 260 | high = mid;
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| 261 | else
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| 262 | low = mid + 1;
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| 263 | }
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| 264 |
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| 265 | if (sym[mid + 1].addr <= address)
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| 266 | {
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| 267 | if (address > sym[mid + 1].end_addr)
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| 268 | {
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| 269 | /* Address is beyond end of sym[mid + 1]. */
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| 270 | return 0;
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| 271 | }
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| 272 | else
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| 273 | {
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| 274 | DBG (LOOKUPDEBUG, printf ("[sym_lookup] %d (%u) probes, fall off\n",
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| 275 | probes, sym_tab->len - 1));
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| 276 | return &sym[mid + 1];
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| 277 | }
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| 278 | }
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| 279 |
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| 280 | return 0;
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| 281 | }
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