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224 lines
6.1 KiB
224 lines
6.1 KiB
/* Compute size of an aggregate type from DWARF. |
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Copyright (C) 2010, 2014, 2016 Red Hat, Inc. |
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This file is part of elfutils. |
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This file is free software; you can redistribute it and/or modify |
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it under the terms of either |
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* the GNU Lesser General Public License as published by the Free |
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Software Foundation; either version 3 of the License, or (at |
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your option) any later version |
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or |
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* the GNU General Public License as published by the Free |
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Software Foundation; either version 2 of the License, or (at |
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your option) any later version |
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or both in parallel, as here. |
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elfutils is distributed in the hope that it will be useful, but |
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WITHOUT ANY WARRANTY; without even the implied warranty of |
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU |
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General Public License for more details. |
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You should have received copies of the GNU General Public License and |
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the GNU Lesser General Public License along with this program. If |
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not, see <http://www.gnu.org/licenses/>. */ |
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#ifdef HAVE_CONFIG_H |
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# include <config.h> |
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#endif |
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#include <dwarf.h> |
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#include "libdwP.h" |
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static Dwarf_Die * |
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get_type (Dwarf_Die *die, Dwarf_Attribute *attr_mem, Dwarf_Die *type_mem) |
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{ |
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Dwarf_Die *type = INTUSE(dwarf_formref_die) |
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(INTUSE(dwarf_attr_integrate) (die, DW_AT_type, attr_mem), type_mem); |
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if (INTUSE(dwarf_peel_type) (type, type) != 0) |
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return NULL; |
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return type; |
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} |
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static int aggregate_size (Dwarf_Die *die, Dwarf_Word *size, |
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Dwarf_Die *type_mem, int depth); |
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static int |
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array_size (Dwarf_Die *die, Dwarf_Word *size, |
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Dwarf_Attribute *attr_mem, int depth) |
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{ |
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Dwarf_Word eltsize; |
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Dwarf_Die type_mem, aggregate_type_mem; |
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if (aggregate_size (get_type (die, attr_mem, &type_mem), &eltsize, |
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&aggregate_type_mem, depth) != 0) |
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return -1; |
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/* An array can have DW_TAG_subrange_type or DW_TAG_enumeration_type |
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children instead that give the size of each dimension. */ |
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Dwarf_Die child; |
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if (INTUSE(dwarf_child) (die, &child) != 0) |
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return -1; |
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bool any = false; |
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Dwarf_Word count_total = 1; |
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do |
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{ |
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Dwarf_Word count; |
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switch (INTUSE(dwarf_tag) (&child)) |
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{ |
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case DW_TAG_subrange_type: |
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/* This has either DW_AT_count or DW_AT_upper_bound. */ |
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if (INTUSE(dwarf_attr_integrate) (&child, DW_AT_count, |
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attr_mem) != NULL) |
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{ |
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if (INTUSE(dwarf_formudata) (attr_mem, &count) != 0) |
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return -1; |
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} |
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else |
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{ |
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Dwarf_Sword upper; |
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Dwarf_Sword lower; |
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if (INTUSE(dwarf_formsdata) (INTUSE(dwarf_attr_integrate) |
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(&child, DW_AT_upper_bound, |
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attr_mem), &upper) != 0) |
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return -1; |
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/* Having DW_AT_lower_bound is optional. */ |
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if (INTUSE(dwarf_attr_integrate) (&child, DW_AT_lower_bound, |
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attr_mem) != NULL) |
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{ |
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if (INTUSE(dwarf_formsdata) (attr_mem, &lower) != 0) |
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return -1; |
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} |
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else |
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{ |
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Dwarf_Die cu = CUDIE (die->cu); |
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int lang = INTUSE(dwarf_srclang) (&cu); |
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if (lang == -1 |
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|| INTUSE(dwarf_default_lower_bound) (lang, &lower) != 0) |
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return -1; |
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} |
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if (unlikely (lower > upper)) |
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return -1; |
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count = upper - lower + 1; |
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} |
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break; |
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case DW_TAG_enumeration_type: |
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/* We have to find the DW_TAG_enumerator child with the |
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highest value to know the array's element count. */ |
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count = 0; |
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Dwarf_Die enum_child; |
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int has_children = INTUSE(dwarf_child) (die, &enum_child); |
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if (has_children < 0) |
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return -1; |
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if (has_children > 0) |
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do |
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if (INTUSE(dwarf_tag) (&enum_child) == DW_TAG_enumerator) |
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{ |
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Dwarf_Word value; |
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if (INTUSE(dwarf_formudata) (INTUSE(dwarf_attr_integrate) |
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(&enum_child, DW_AT_const_value, |
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attr_mem), &value) != 0) |
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return -1; |
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if (value >= count) |
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count = value + 1; |
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} |
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while (INTUSE(dwarf_siblingof) (&enum_child, &enum_child) > 0); |
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break; |
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default: |
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continue; |
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} |
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count_total *= count; |
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any = true; |
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} |
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while (INTUSE(dwarf_siblingof) (&child, &child) == 0); |
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if (!any) |
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return -1; |
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/* This is a subrange_type or enumeration_type and we've set COUNT. |
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Now determine the stride for this array. */ |
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Dwarf_Word stride = eltsize; |
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if (INTUSE(dwarf_attr_integrate) (die, DW_AT_byte_stride, |
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attr_mem) != NULL) |
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{ |
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if (INTUSE(dwarf_formudata) (attr_mem, &stride) != 0) |
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return -1; |
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} |
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else if (INTUSE(dwarf_attr_integrate) (die, DW_AT_bit_stride, |
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attr_mem) != NULL) |
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{ |
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if (INTUSE(dwarf_formudata) (attr_mem, &stride) != 0) |
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return -1; |
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if (stride % 8) /* XXX maybe compute in bits? */ |
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return -1; |
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stride /= 8; |
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} |
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*size = count_total * stride; |
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return 0; |
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} |
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static int |
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aggregate_size (Dwarf_Die *die, Dwarf_Word *size, |
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Dwarf_Die *type_mem, int depth) |
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{ |
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Dwarf_Attribute attr_mem; |
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/* Arrays of arrays of subrange types of arrays... Don't recurse too deep. */ |
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#define MAX_DEPTH 256 |
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if (die == NULL || depth++ >= MAX_DEPTH) |
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return -1; |
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if (INTUSE(dwarf_attr_integrate) (die, DW_AT_byte_size, &attr_mem) != NULL) |
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return INTUSE(dwarf_formudata) (&attr_mem, size); |
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switch (INTUSE(dwarf_tag) (die)) |
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{ |
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case DW_TAG_subrange_type: |
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{ |
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Dwarf_Die aggregate_type_mem; |
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return aggregate_size (get_type (die, &attr_mem, type_mem), |
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size, &aggregate_type_mem, depth); |
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} |
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case DW_TAG_array_type: |
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return array_size (die, size, &attr_mem, depth); |
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/* Assume references and pointers have pointer size if not given an |
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explicit DW_AT_byte_size. */ |
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case DW_TAG_pointer_type: |
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case DW_TAG_reference_type: |
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case DW_TAG_rvalue_reference_type: |
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*size = die->cu->address_size; |
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return 0; |
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} |
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/* Most types must give their size directly. */ |
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return -1; |
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} |
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int |
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dwarf_aggregate_size (Dwarf_Die *die, Dwarf_Word *size) |
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{ |
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Dwarf_Die die_mem, type_mem; |
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if (INTUSE (dwarf_peel_type) (die, &die_mem) != 0) |
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return -1; |
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return aggregate_size (&die_mem, size, &type_mem, 0); |
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} |
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INTDEF (dwarf_aggregate_size) |
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OLD_VERSION (dwarf_aggregate_size, ELFUTILS_0.144) |
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NEW_VERSION (dwarf_aggregate_size, ELFUTILS_0.161)
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