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julius |
// resolve.cc -- symbol resolution for gold
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// Copyright 2006, 2007, 2008, 2009 Free Software Foundation, Inc.
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// Written by Ian Lance Taylor <iant@google.com>.
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// This file is part of gold.
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// This program is free software; you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation; either version 3 of the License, or
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// (at your option) any later version.
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with this program; if not, write to the Free Software
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// Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
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// MA 02110-1301, USA.
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#include "gold.h"
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#include "elfcpp.h"
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#include "target.h"
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#include "object.h"
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#include "symtab.h"
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#include "plugin.h"
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namespace gold
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{
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// Symbol methods used in this file.
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// This symbol is being overridden by another symbol whose version is
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// VERSION. Update the VERSION_ field accordingly.
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inline void
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Symbol::override_version(const char* version)
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{
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if (version == NULL)
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{
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// This is the case where this symbol is NAME/VERSION, and the
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// version was not marked as hidden. That makes it the default
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// version, so we create NAME/NULL. Later we see another symbol
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// NAME/NULL, and that symbol is overriding this one. In this
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// case, since NAME/VERSION is the default, we make NAME/NULL
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// override NAME/VERSION as well. They are already the same
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// Symbol structure. Setting the VERSION_ field to NULL ensures
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// that it will be output with the correct, empty, version.
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this->version_ = version;
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}
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else
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{
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// This is the case where this symbol is NAME/VERSION_ONE, and
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// now we see NAME/VERSION_TWO, and NAME/VERSION_TWO is
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// overriding NAME. If VERSION_ONE and VERSION_TWO are
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// different, then this can only happen when VERSION_ONE is NULL
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// and VERSION_TWO is not hidden.
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gold_assert(this->version_ == version || this->version_ == NULL);
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this->version_ = version;
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}
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}
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// This symbol is being overidden by another symbol whose visibility
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// is VISIBILITY. Updated the VISIBILITY_ field accordingly.
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inline void
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Symbol::override_visibility(elfcpp::STV visibility)
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{
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// The rule for combining visibility is that we always choose the
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// most constrained visibility. In order of increasing constraint,
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// visibility goes PROTECTED, HIDDEN, INTERNAL. This is the reverse
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// of the numeric values, so the effect is that we always want the
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// smallest non-zero value.
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if (visibility != elfcpp::STV_DEFAULT)
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{
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if (this->visibility_ == elfcpp::STV_DEFAULT)
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this->visibility_ = visibility;
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else if (this->visibility_ > visibility)
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this->visibility_ = visibility;
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}
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}
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// Override the fields in Symbol.
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template<int size, bool big_endian>
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void
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Symbol::override_base(const elfcpp::Sym<size, big_endian>& sym,
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unsigned int st_shndx, bool is_ordinary,
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Object* object, const char* version)
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{
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gold_assert(this->source_ == FROM_OBJECT);
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this->u_.from_object.object = object;
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this->override_version(version);
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this->u_.from_object.shndx = st_shndx;
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this->is_ordinary_shndx_ = is_ordinary;
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this->type_ = sym.get_st_type();
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this->binding_ = sym.get_st_bind();
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this->override_visibility(sym.get_st_visibility());
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this->nonvis_ = sym.get_st_nonvis();
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if (object->is_dynamic())
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this->in_dyn_ = true;
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else
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this->in_reg_ = true;
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}
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// Override the fields in Sized_symbol.
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template<int size>
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template<bool big_endian>
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void
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Sized_symbol<size>::override(const elfcpp::Sym<size, big_endian>& sym,
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unsigned st_shndx, bool is_ordinary,
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Object* object, const char* version)
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{
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this->override_base(sym, st_shndx, is_ordinary, object, version);
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this->value_ = sym.get_st_value();
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this->symsize_ = sym.get_st_size();
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}
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// Override TOSYM with symbol FROMSYM, defined in OBJECT, with version
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// VERSION. This handles all aliases of TOSYM.
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template<int size, bool big_endian>
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void
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Symbol_table::override(Sized_symbol<size>* tosym,
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const elfcpp::Sym<size, big_endian>& fromsym,
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unsigned int st_shndx, bool is_ordinary,
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Object* object, const char* version)
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{
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tosym->override(fromsym, st_shndx, is_ordinary, object, version);
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if (tosym->has_alias())
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{
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Symbol* sym = this->weak_aliases_[tosym];
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gold_assert(sym != NULL);
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Sized_symbol<size>* ssym = this->get_sized_symbol<size>(sym);
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do
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{
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ssym->override(fromsym, st_shndx, is_ordinary, object, version);
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sym = this->weak_aliases_[ssym];
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gold_assert(sym != NULL);
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ssym = this->get_sized_symbol<size>(sym);
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}
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while (ssym != tosym);
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}
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}
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// The resolve functions build a little code for each symbol.
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// Bit 0: 0 for global, 1 for weak.
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// Bit 1: 0 for regular object, 1 for shared object
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// Bits 2-3: 0 for normal, 1 for undefined, 2 for common
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// This gives us values from 0 to 11.
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static const int global_or_weak_shift = 0;
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static const unsigned int global_flag = 0 << global_or_weak_shift;
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static const unsigned int weak_flag = 1 << global_or_weak_shift;
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static const int regular_or_dynamic_shift = 1;
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static const unsigned int regular_flag = 0 << regular_or_dynamic_shift;
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static const unsigned int dynamic_flag = 1 << regular_or_dynamic_shift;
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static const int def_undef_or_common_shift = 2;
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static const unsigned int def_flag = 0 << def_undef_or_common_shift;
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static const unsigned int undef_flag = 1 << def_undef_or_common_shift;
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static const unsigned int common_flag = 2 << def_undef_or_common_shift;
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// This convenience function combines all the flags based on facts
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// about the symbol.
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static unsigned int
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symbol_to_bits(elfcpp::STB binding, bool is_dynamic,
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unsigned int shndx, bool is_ordinary, elfcpp::STT type)
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{
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unsigned int bits;
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switch (binding)
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{
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case elfcpp::STB_GLOBAL:
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bits = global_flag;
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break;
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case elfcpp::STB_WEAK:
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bits = weak_flag;
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break;
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case elfcpp::STB_LOCAL:
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// We should only see externally visible symbols in the symbol
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// table.
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gold_error(_("invalid STB_LOCAL symbol in external symbols"));
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bits = global_flag;
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default:
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// Any target which wants to handle STB_LOOS, etc., needs to
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// define a resolve method.
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gold_error(_("unsupported symbol binding"));
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bits = global_flag;
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}
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if (is_dynamic)
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bits |= dynamic_flag;
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else
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bits |= regular_flag;
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switch (shndx)
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{
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case elfcpp::SHN_UNDEF:
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bits |= undef_flag;
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break;
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case elfcpp::SHN_COMMON:
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if (!is_ordinary)
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bits |= common_flag;
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break;
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default:
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if (type == elfcpp::STT_COMMON)
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bits |= common_flag;
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else if (!is_ordinary && Symbol::is_common_shndx(shndx))
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bits |= common_flag;
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else
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bits |= def_flag;
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break;
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}
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return bits;
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}
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// Resolve a symbol. This is called the second and subsequent times
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// we see a symbol. TO is the pre-existing symbol. ST_SHNDX is the
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// section index for SYM, possibly adjusted for many sections.
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// IS_ORDINARY is whether ST_SHNDX is a normal section index rather
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// than a special code. ORIG_ST_SHNDX is the original section index,
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// before any munging because of discarded sections, except that all
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// non-ordinary section indexes are mapped to SHN_UNDEF. VERSION is
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// the version of SYM.
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template<int size, bool big_endian>
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void
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Symbol_table::resolve(Sized_symbol<size>* to,
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const elfcpp::Sym<size, big_endian>& sym,
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unsigned int st_shndx, bool is_ordinary,
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unsigned int orig_st_shndx,
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Object* object, const char* version)
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{
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if (parameters->target().has_resolve())
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{
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Sized_target<size, big_endian>* sized_target;
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sized_target = parameters->sized_target<size, big_endian>();
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sized_target->resolve(to, sym, object, version);
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return;
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}
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if (!object->is_dynamic())
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{
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// Record that we've seen this symbol in a regular object.
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to->set_in_reg();
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}
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else if (st_shndx == elfcpp::SHN_UNDEF
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&& (to->visibility() == elfcpp::STV_HIDDEN
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|| to->visibility() == elfcpp::STV_INTERNAL))
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{
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// A dynamic object cannot reference a hidden or internal symbol
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// defined in another object.
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gold_warning(_("%s symbol '%s' in %s is referenced by DSO %s"),
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(to->visibility() == elfcpp::STV_HIDDEN
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? "hidden"
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: "internal"),
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to->demangled_name().c_str(),
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to->object()->name().c_str(),
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object->name().c_str());
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return;
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}
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else
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{
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// Record that we've seen this symbol in a dynamic object.
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to->set_in_dyn();
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}
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// Record if we've seen this symbol in a real ELF object (i.e., the
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// symbol is referenced from outside the world known to the plugin).
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if (object->pluginobj() == NULL)
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to->set_in_real_elf();
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| 285 |
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| 286 |
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// If we're processing replacement files, allow new symbols to override
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| 287 |
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// the placeholders from the plugin objects.
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| 288 |
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if (to->source() == Symbol::FROM_OBJECT)
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{
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| 290 |
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Pluginobj* obj = to->object()->pluginobj();
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| 291 |
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if (obj != NULL
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| 292 |
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&& parameters->options().plugins()->in_replacement_phase())
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| 293 |
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{
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| 294 |
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this->override(to, sym, st_shndx, is_ordinary, object, version);
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| 295 |
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return;
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| 296 |
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}
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| 297 |
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}
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| 298 |
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| 299 |
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unsigned int frombits = symbol_to_bits(sym.get_st_bind(),
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| 300 |
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object->is_dynamic(),
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| 301 |
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st_shndx, is_ordinary,
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| 302 |
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sym.get_st_type());
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| 303 |
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| 304 |
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bool adjust_common_sizes;
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| 305 |
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typename Sized_symbol<size>::Size_type tosize = to->symsize();
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| 306 |
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if (Symbol_table::should_override(to, frombits, object,
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| 307 |
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&adjust_common_sizes))
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| 308 |
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{
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| 309 |
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this->override(to, sym, st_shndx, is_ordinary, object, version);
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| 310 |
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if (adjust_common_sizes && tosize > to->symsize())
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| 311 |
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to->set_symsize(tosize);
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| 312 |
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}
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| 313 |
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else
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| 314 |
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{
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| 315 |
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if (adjust_common_sizes && sym.get_st_size() > tosize)
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| 316 |
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to->set_symsize(sym.get_st_size());
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| 317 |
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// The ELF ABI says that even for a reference to a symbol we
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| 318 |
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// merge the visibility.
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| 319 |
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to->override_visibility(sym.get_st_visibility());
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| 320 |
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}
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| 321 |
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| 322 |
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if (adjust_common_sizes && parameters->options().warn_common())
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| 323 |
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{
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| 324 |
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if (tosize > sym.get_st_size())
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| 325 |
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Symbol_table::report_resolve_problem(false,
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| 326 |
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_("common of '%s' overriding "
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| 327 |
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"smaller common"),
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| 328 |
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to, object);
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| 329 |
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else if (tosize < sym.get_st_size())
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| 330 |
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Symbol_table::report_resolve_problem(false,
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| 331 |
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_("common of '%s' overidden by "
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| 332 |
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"larger common"),
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| 333 |
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to, object);
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| 334 |
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else
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| 335 |
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Symbol_table::report_resolve_problem(false,
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| 336 |
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_("multiple common of '%s'"),
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| 337 |
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to, object);
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| 338 |
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}
|
| 339 |
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| 340 |
|
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// A new weak undefined reference, merging with an old weak
|
| 341 |
|
|
// reference, could be a One Definition Rule (ODR) violation --
|
| 342 |
|
|
// especially if the types or sizes of the references differ. We'll
|
| 343 |
|
|
// store such pairs and look them up later to make sure they
|
| 344 |
|
|
// actually refer to the same lines of code. (Note: not all ODR
|
| 345 |
|
|
// violations can be found this way, and not everything this finds
|
| 346 |
|
|
// is an ODR violation. But it's helpful to warn about.)
|
| 347 |
|
|
bool to_is_ordinary;
|
| 348 |
|
|
if (parameters->options().detect_odr_violations()
|
| 349 |
|
|
&& sym.get_st_bind() == elfcpp::STB_WEAK
|
| 350 |
|
|
&& to->binding() == elfcpp::STB_WEAK
|
| 351 |
|
|
&& orig_st_shndx != elfcpp::SHN_UNDEF
|
| 352 |
|
|
&& to->shndx(&to_is_ordinary) != elfcpp::SHN_UNDEF
|
| 353 |
|
|
&& to_is_ordinary
|
| 354 |
|
|
&& sym.get_st_size() != 0 // Ignore weird 0-sized symbols.
|
| 355 |
|
|
&& to->symsize() != 0
|
| 356 |
|
|
&& (sym.get_st_type() != to->type()
|
| 357 |
|
|
|| sym.get_st_size() != to->symsize())
|
| 358 |
|
|
// C does not have a concept of ODR, so we only need to do this
|
| 359 |
|
|
// on C++ symbols. These have (mangled) names starting with _Z.
|
| 360 |
|
|
&& to->name()[0] == '_' && to->name()[1] == 'Z')
|
| 361 |
|
|
{
|
| 362 |
|
|
Symbol_location fromloc
|
| 363 |
|
|
= { object, orig_st_shndx, sym.get_st_value() };
|
| 364 |
|
|
Symbol_location toloc = { to->object(), to->shndx(&to_is_ordinary),
|
| 365 |
|
|
to->value() };
|
| 366 |
|
|
this->candidate_odr_violations_[to->name()].insert(fromloc);
|
| 367 |
|
|
this->candidate_odr_violations_[to->name()].insert(toloc);
|
| 368 |
|
|
}
|
| 369 |
|
|
}
|
| 370 |
|
|
|
| 371 |
|
|
// Handle the core of symbol resolution. This is called with the
|
| 372 |
|
|
// existing symbol, TO, and a bitflag describing the new symbol. This
|
| 373 |
|
|
// returns true if we should override the existing symbol with the new
|
| 374 |
|
|
// one, and returns false otherwise. It sets *ADJUST_COMMON_SIZES to
|
| 375 |
|
|
// true if we should set the symbol size to the maximum of the TO and
|
| 376 |
|
|
// FROM sizes. It handles error conditions.
|
| 377 |
|
|
|
| 378 |
|
|
bool
|
| 379 |
|
|
Symbol_table::should_override(const Symbol* to, unsigned int frombits,
|
| 380 |
|
|
Object* object, bool* adjust_common_sizes)
|
| 381 |
|
|
{
|
| 382 |
|
|
*adjust_common_sizes = false;
|
| 383 |
|
|
|
| 384 |
|
|
unsigned int tobits;
|
| 385 |
|
|
if (to->source() == Symbol::IS_UNDEFINED)
|
| 386 |
|
|
tobits = symbol_to_bits(to->binding(), false, elfcpp::SHN_UNDEF, true,
|
| 387 |
|
|
to->type());
|
| 388 |
|
|
else if (to->source() != Symbol::FROM_OBJECT)
|
| 389 |
|
|
tobits = symbol_to_bits(to->binding(), false, elfcpp::SHN_ABS, false,
|
| 390 |
|
|
to->type());
|
| 391 |
|
|
else
|
| 392 |
|
|
{
|
| 393 |
|
|
bool is_ordinary;
|
| 394 |
|
|
unsigned int shndx = to->shndx(&is_ordinary);
|
| 395 |
|
|
tobits = symbol_to_bits(to->binding(),
|
| 396 |
|
|
to->object()->is_dynamic(),
|
| 397 |
|
|
shndx,
|
| 398 |
|
|
is_ordinary,
|
| 399 |
|
|
to->type());
|
| 400 |
|
|
}
|
| 401 |
|
|
|
| 402 |
|
|
// FIXME: Warn if either but not both of TO and SYM are STT_TLS.
|
| 403 |
|
|
|
| 404 |
|
|
// We use a giant switch table for symbol resolution. This code is
|
| 405 |
|
|
// unwieldy, but: 1) it is efficient; 2) we definitely handle all
|
| 406 |
|
|
// cases; 3) it is easy to change the handling of a particular case.
|
| 407 |
|
|
// The alternative would be a series of conditionals, but it is easy
|
| 408 |
|
|
// to get the ordering wrong. This could also be done as a table,
|
| 409 |
|
|
// but that is no easier to understand than this large switch
|
| 410 |
|
|
// statement.
|
| 411 |
|
|
|
| 412 |
|
|
// These are the values generated by the bit codes.
|
| 413 |
|
|
enum
|
| 414 |
|
|
{
|
| 415 |
|
|
DEF = global_flag | regular_flag | def_flag,
|
| 416 |
|
|
WEAK_DEF = weak_flag | regular_flag | def_flag,
|
| 417 |
|
|
DYN_DEF = global_flag | dynamic_flag | def_flag,
|
| 418 |
|
|
DYN_WEAK_DEF = weak_flag | dynamic_flag | def_flag,
|
| 419 |
|
|
UNDEF = global_flag | regular_flag | undef_flag,
|
| 420 |
|
|
WEAK_UNDEF = weak_flag | regular_flag | undef_flag,
|
| 421 |
|
|
DYN_UNDEF = global_flag | dynamic_flag | undef_flag,
|
| 422 |
|
|
DYN_WEAK_UNDEF = weak_flag | dynamic_flag | undef_flag,
|
| 423 |
|
|
COMMON = global_flag | regular_flag | common_flag,
|
| 424 |
|
|
WEAK_COMMON = weak_flag | regular_flag | common_flag,
|
| 425 |
|
|
DYN_COMMON = global_flag | dynamic_flag | common_flag,
|
| 426 |
|
|
DYN_WEAK_COMMON = weak_flag | dynamic_flag | common_flag
|
| 427 |
|
|
};
|
| 428 |
|
|
|
| 429 |
|
|
switch (tobits * 16 + frombits)
|
| 430 |
|
|
{
|
| 431 |
|
|
case DEF * 16 + DEF:
|
| 432 |
|
|
// Two definitions of the same symbol.
|
| 433 |
|
|
|
| 434 |
|
|
// If either symbol is defined by an object included using
|
| 435 |
|
|
// --just-symbols, then don't warn. This is for compatibility
|
| 436 |
|
|
// with the GNU linker. FIXME: This is a hack.
|
| 437 |
|
|
if ((to->source() == Symbol::FROM_OBJECT && to->object()->just_symbols())
|
| 438 |
|
|
|| object->just_symbols())
|
| 439 |
|
|
return false;
|
| 440 |
|
|
|
| 441 |
|
|
Symbol_table::report_resolve_problem(true,
|
| 442 |
|
|
_("multiple definition of '%s'"),
|
| 443 |
|
|
to, object);
|
| 444 |
|
|
return false;
|
| 445 |
|
|
|
| 446 |
|
|
case WEAK_DEF * 16 + DEF:
|
| 447 |
|
|
// We've seen a weak definition, and now we see a strong
|
| 448 |
|
|
// definition. In the original SVR4 linker, this was treated as
|
| 449 |
|
|
// a multiple definition error. In the Solaris linker and the
|
| 450 |
|
|
// GNU linker, a weak definition followed by a regular
|
| 451 |
|
|
// definition causes the weak definition to be overridden. We
|
| 452 |
|
|
// are currently compatible with the GNU linker. In the future
|
| 453 |
|
|
// we should add a target specific option to change this.
|
| 454 |
|
|
// FIXME.
|
| 455 |
|
|
return true;
|
| 456 |
|
|
|
| 457 |
|
|
case DYN_DEF * 16 + DEF:
|
| 458 |
|
|
case DYN_WEAK_DEF * 16 + DEF:
|
| 459 |
|
|
// We've seen a definition in a dynamic object, and now we see a
|
| 460 |
|
|
// definition in a regular object. The definition in the
|
| 461 |
|
|
// regular object overrides the definition in the dynamic
|
| 462 |
|
|
// object.
|
| 463 |
|
|
return true;
|
| 464 |
|
|
|
| 465 |
|
|
case UNDEF * 16 + DEF:
|
| 466 |
|
|
case WEAK_UNDEF * 16 + DEF:
|
| 467 |
|
|
case DYN_UNDEF * 16 + DEF:
|
| 468 |
|
|
case DYN_WEAK_UNDEF * 16 + DEF:
|
| 469 |
|
|
// We've seen an undefined reference, and now we see a
|
| 470 |
|
|
// definition. We use the definition.
|
| 471 |
|
|
return true;
|
| 472 |
|
|
|
| 473 |
|
|
case COMMON * 16 + DEF:
|
| 474 |
|
|
case WEAK_COMMON * 16 + DEF:
|
| 475 |
|
|
case DYN_COMMON * 16 + DEF:
|
| 476 |
|
|
case DYN_WEAK_COMMON * 16 + DEF:
|
| 477 |
|
|
// We've seen a common symbol and now we see a definition. The
|
| 478 |
|
|
// definition overrides.
|
| 479 |
|
|
if (parameters->options().warn_common())
|
| 480 |
|
|
Symbol_table::report_resolve_problem(false,
|
| 481 |
|
|
_("definition of '%s' overriding "
|
| 482 |
|
|
"common"),
|
| 483 |
|
|
to, object);
|
| 484 |
|
|
return true;
|
| 485 |
|
|
|
| 486 |
|
|
case DEF * 16 + WEAK_DEF:
|
| 487 |
|
|
case WEAK_DEF * 16 + WEAK_DEF:
|
| 488 |
|
|
// We've seen a definition and now we see a weak definition. We
|
| 489 |
|
|
// ignore the new weak definition.
|
| 490 |
|
|
return false;
|
| 491 |
|
|
|
| 492 |
|
|
case DYN_DEF * 16 + WEAK_DEF:
|
| 493 |
|
|
case DYN_WEAK_DEF * 16 + WEAK_DEF:
|
| 494 |
|
|
// We've seen a dynamic definition and now we see a regular weak
|
| 495 |
|
|
// definition. The regular weak definition overrides.
|
| 496 |
|
|
return true;
|
| 497 |
|
|
|
| 498 |
|
|
case UNDEF * 16 + WEAK_DEF:
|
| 499 |
|
|
case WEAK_UNDEF * 16 + WEAK_DEF:
|
| 500 |
|
|
case DYN_UNDEF * 16 + WEAK_DEF:
|
| 501 |
|
|
case DYN_WEAK_UNDEF * 16 + WEAK_DEF:
|
| 502 |
|
|
// A weak definition of a currently undefined symbol.
|
| 503 |
|
|
return true;
|
| 504 |
|
|
|
| 505 |
|
|
case COMMON * 16 + WEAK_DEF:
|
| 506 |
|
|
case WEAK_COMMON * 16 + WEAK_DEF:
|
| 507 |
|
|
// A weak definition does not override a common definition.
|
| 508 |
|
|
return false;
|
| 509 |
|
|
|
| 510 |
|
|
case DYN_COMMON * 16 + WEAK_DEF:
|
| 511 |
|
|
case DYN_WEAK_COMMON * 16 + WEAK_DEF:
|
| 512 |
|
|
// A weak definition does override a definition in a dynamic
|
| 513 |
|
|
// object.
|
| 514 |
|
|
if (parameters->options().warn_common())
|
| 515 |
|
|
Symbol_table::report_resolve_problem(false,
|
| 516 |
|
|
_("definition of '%s' overriding "
|
| 517 |
|
|
"dynamic common definition"),
|
| 518 |
|
|
to, object);
|
| 519 |
|
|
return true;
|
| 520 |
|
|
|
| 521 |
|
|
case DEF * 16 + DYN_DEF:
|
| 522 |
|
|
case WEAK_DEF * 16 + DYN_DEF:
|
| 523 |
|
|
case DYN_DEF * 16 + DYN_DEF:
|
| 524 |
|
|
case DYN_WEAK_DEF * 16 + DYN_DEF:
|
| 525 |
|
|
// Ignore a dynamic definition if we already have a definition.
|
| 526 |
|
|
return false;
|
| 527 |
|
|
|
| 528 |
|
|
case UNDEF * 16 + DYN_DEF:
|
| 529 |
|
|
case WEAK_UNDEF * 16 + DYN_DEF:
|
| 530 |
|
|
case DYN_UNDEF * 16 + DYN_DEF:
|
| 531 |
|
|
case DYN_WEAK_UNDEF * 16 + DYN_DEF:
|
| 532 |
|
|
// Use a dynamic definition if we have a reference.
|
| 533 |
|
|
return true;
|
| 534 |
|
|
|
| 535 |
|
|
case COMMON * 16 + DYN_DEF:
|
| 536 |
|
|
case WEAK_COMMON * 16 + DYN_DEF:
|
| 537 |
|
|
case DYN_COMMON * 16 + DYN_DEF:
|
| 538 |
|
|
case DYN_WEAK_COMMON * 16 + DYN_DEF:
|
| 539 |
|
|
// Ignore a dynamic definition if we already have a common
|
| 540 |
|
|
// definition.
|
| 541 |
|
|
return false;
|
| 542 |
|
|
|
| 543 |
|
|
case DEF * 16 + DYN_WEAK_DEF:
|
| 544 |
|
|
case WEAK_DEF * 16 + DYN_WEAK_DEF:
|
| 545 |
|
|
case DYN_DEF * 16 + DYN_WEAK_DEF:
|
| 546 |
|
|
case DYN_WEAK_DEF * 16 + DYN_WEAK_DEF:
|
| 547 |
|
|
// Ignore a weak dynamic definition if we already have a
|
| 548 |
|
|
// definition.
|
| 549 |
|
|
return false;
|
| 550 |
|
|
|
| 551 |
|
|
case UNDEF * 16 + DYN_WEAK_DEF:
|
| 552 |
|
|
case WEAK_UNDEF * 16 + DYN_WEAK_DEF:
|
| 553 |
|
|
case DYN_UNDEF * 16 + DYN_WEAK_DEF:
|
| 554 |
|
|
case DYN_WEAK_UNDEF * 16 + DYN_WEAK_DEF:
|
| 555 |
|
|
// Use a weak dynamic definition if we have a reference.
|
| 556 |
|
|
return true;
|
| 557 |
|
|
|
| 558 |
|
|
case COMMON * 16 + DYN_WEAK_DEF:
|
| 559 |
|
|
case WEAK_COMMON * 16 + DYN_WEAK_DEF:
|
| 560 |
|
|
case DYN_COMMON * 16 + DYN_WEAK_DEF:
|
| 561 |
|
|
case DYN_WEAK_COMMON * 16 + DYN_WEAK_DEF:
|
| 562 |
|
|
// Ignore a weak dynamic definition if we already have a common
|
| 563 |
|
|
// definition.
|
| 564 |
|
|
return false;
|
| 565 |
|
|
|
| 566 |
|
|
case DEF * 16 + UNDEF:
|
| 567 |
|
|
case WEAK_DEF * 16 + UNDEF:
|
| 568 |
|
|
case DYN_DEF * 16 + UNDEF:
|
| 569 |
|
|
case DYN_WEAK_DEF * 16 + UNDEF:
|
| 570 |
|
|
case UNDEF * 16 + UNDEF:
|
| 571 |
|
|
// A new undefined reference tells us nothing.
|
| 572 |
|
|
return false;
|
| 573 |
|
|
|
| 574 |
|
|
case WEAK_UNDEF * 16 + UNDEF:
|
| 575 |
|
|
case DYN_UNDEF * 16 + UNDEF:
|
| 576 |
|
|
case DYN_WEAK_UNDEF * 16 + UNDEF:
|
| 577 |
|
|
// A strong undef overrides a dynamic or weak undef.
|
| 578 |
|
|
return true;
|
| 579 |
|
|
|
| 580 |
|
|
case COMMON * 16 + UNDEF:
|
| 581 |
|
|
case WEAK_COMMON * 16 + UNDEF:
|
| 582 |
|
|
case DYN_COMMON * 16 + UNDEF:
|
| 583 |
|
|
case DYN_WEAK_COMMON * 16 + UNDEF:
|
| 584 |
|
|
// A new undefined reference tells us nothing.
|
| 585 |
|
|
return false;
|
| 586 |
|
|
|
| 587 |
|
|
case DEF * 16 + WEAK_UNDEF:
|
| 588 |
|
|
case WEAK_DEF * 16 + WEAK_UNDEF:
|
| 589 |
|
|
case DYN_DEF * 16 + WEAK_UNDEF:
|
| 590 |
|
|
case DYN_WEAK_DEF * 16 + WEAK_UNDEF:
|
| 591 |
|
|
case UNDEF * 16 + WEAK_UNDEF:
|
| 592 |
|
|
case WEAK_UNDEF * 16 + WEAK_UNDEF:
|
| 593 |
|
|
case DYN_UNDEF * 16 + WEAK_UNDEF:
|
| 594 |
|
|
case DYN_WEAK_UNDEF * 16 + WEAK_UNDEF:
|
| 595 |
|
|
case COMMON * 16 + WEAK_UNDEF:
|
| 596 |
|
|
case WEAK_COMMON * 16 + WEAK_UNDEF:
|
| 597 |
|
|
case DYN_COMMON * 16 + WEAK_UNDEF:
|
| 598 |
|
|
case DYN_WEAK_COMMON * 16 + WEAK_UNDEF:
|
| 599 |
|
|
// A new weak undefined reference tells us nothing.
|
| 600 |
|
|
return false;
|
| 601 |
|
|
|
| 602 |
|
|
case DEF * 16 + DYN_UNDEF:
|
| 603 |
|
|
case WEAK_DEF * 16 + DYN_UNDEF:
|
| 604 |
|
|
case DYN_DEF * 16 + DYN_UNDEF:
|
| 605 |
|
|
case DYN_WEAK_DEF * 16 + DYN_UNDEF:
|
| 606 |
|
|
case UNDEF * 16 + DYN_UNDEF:
|
| 607 |
|
|
case WEAK_UNDEF * 16 + DYN_UNDEF:
|
| 608 |
|
|
case DYN_UNDEF * 16 + DYN_UNDEF:
|
| 609 |
|
|
case DYN_WEAK_UNDEF * 16 + DYN_UNDEF:
|
| 610 |
|
|
case COMMON * 16 + DYN_UNDEF:
|
| 611 |
|
|
case WEAK_COMMON * 16 + DYN_UNDEF:
|
| 612 |
|
|
case DYN_COMMON * 16 + DYN_UNDEF:
|
| 613 |
|
|
case DYN_WEAK_COMMON * 16 + DYN_UNDEF:
|
| 614 |
|
|
// A new dynamic undefined reference tells us nothing.
|
| 615 |
|
|
return false;
|
| 616 |
|
|
|
| 617 |
|
|
case DEF * 16 + DYN_WEAK_UNDEF:
|
| 618 |
|
|
case WEAK_DEF * 16 + DYN_WEAK_UNDEF:
|
| 619 |
|
|
case DYN_DEF * 16 + DYN_WEAK_UNDEF:
|
| 620 |
|
|
case DYN_WEAK_DEF * 16 + DYN_WEAK_UNDEF:
|
| 621 |
|
|
case UNDEF * 16 + DYN_WEAK_UNDEF:
|
| 622 |
|
|
case WEAK_UNDEF * 16 + DYN_WEAK_UNDEF:
|
| 623 |
|
|
case DYN_UNDEF * 16 + DYN_WEAK_UNDEF:
|
| 624 |
|
|
case DYN_WEAK_UNDEF * 16 + DYN_WEAK_UNDEF:
|
| 625 |
|
|
case COMMON * 16 + DYN_WEAK_UNDEF:
|
| 626 |
|
|
case WEAK_COMMON * 16 + DYN_WEAK_UNDEF:
|
| 627 |
|
|
case DYN_COMMON * 16 + DYN_WEAK_UNDEF:
|
| 628 |
|
|
case DYN_WEAK_COMMON * 16 + DYN_WEAK_UNDEF:
|
| 629 |
|
|
// A new weak dynamic undefined reference tells us nothing.
|
| 630 |
|
|
return false;
|
| 631 |
|
|
|
| 632 |
|
|
case DEF * 16 + COMMON:
|
| 633 |
|
|
// A common symbol does not override a definition.
|
| 634 |
|
|
if (parameters->options().warn_common())
|
| 635 |
|
|
Symbol_table::report_resolve_problem(false,
|
| 636 |
|
|
_("common '%s' overridden by "
|
| 637 |
|
|
"previous definition"),
|
| 638 |
|
|
to, object);
|
| 639 |
|
|
return false;
|
| 640 |
|
|
|
| 641 |
|
|
case WEAK_DEF * 16 + COMMON:
|
| 642 |
|
|
case DYN_DEF * 16 + COMMON:
|
| 643 |
|
|
case DYN_WEAK_DEF * 16 + COMMON:
|
| 644 |
|
|
// A common symbol does override a weak definition or a dynamic
|
| 645 |
|
|
// definition.
|
| 646 |
|
|
return true;
|
| 647 |
|
|
|
| 648 |
|
|
case UNDEF * 16 + COMMON:
|
| 649 |
|
|
case WEAK_UNDEF * 16 + COMMON:
|
| 650 |
|
|
case DYN_UNDEF * 16 + COMMON:
|
| 651 |
|
|
case DYN_WEAK_UNDEF * 16 + COMMON:
|
| 652 |
|
|
// A common symbol is a definition for a reference.
|
| 653 |
|
|
return true;
|
| 654 |
|
|
|
| 655 |
|
|
case COMMON * 16 + COMMON:
|
| 656 |
|
|
// Set the size to the maximum.
|
| 657 |
|
|
*adjust_common_sizes = true;
|
| 658 |
|
|
return false;
|
| 659 |
|
|
|
| 660 |
|
|
case WEAK_COMMON * 16 + COMMON:
|
| 661 |
|
|
// I'm not sure just what a weak common symbol means, but
|
| 662 |
|
|
// presumably it can be overridden by a regular common symbol.
|
| 663 |
|
|
return true;
|
| 664 |
|
|
|
| 665 |
|
|
case DYN_COMMON * 16 + COMMON:
|
| 666 |
|
|
case DYN_WEAK_COMMON * 16 + COMMON:
|
| 667 |
|
|
// Use the real common symbol, but adjust the size if necessary.
|
| 668 |
|
|
*adjust_common_sizes = true;
|
| 669 |
|
|
return true;
|
| 670 |
|
|
|
| 671 |
|
|
case DEF * 16 + WEAK_COMMON:
|
| 672 |
|
|
case WEAK_DEF * 16 + WEAK_COMMON:
|
| 673 |
|
|
case DYN_DEF * 16 + WEAK_COMMON:
|
| 674 |
|
|
case DYN_WEAK_DEF * 16 + WEAK_COMMON:
|
| 675 |
|
|
// Whatever a weak common symbol is, it won't override a
|
| 676 |
|
|
// definition.
|
| 677 |
|
|
return false;
|
| 678 |
|
|
|
| 679 |
|
|
case UNDEF * 16 + WEAK_COMMON:
|
| 680 |
|
|
case WEAK_UNDEF * 16 + WEAK_COMMON:
|
| 681 |
|
|
case DYN_UNDEF * 16 + WEAK_COMMON:
|
| 682 |
|
|
case DYN_WEAK_UNDEF * 16 + WEAK_COMMON:
|
| 683 |
|
|
// A weak common symbol is better than an undefined symbol.
|
| 684 |
|
|
return true;
|
| 685 |
|
|
|
| 686 |
|
|
case COMMON * 16 + WEAK_COMMON:
|
| 687 |
|
|
case WEAK_COMMON * 16 + WEAK_COMMON:
|
| 688 |
|
|
case DYN_COMMON * 16 + WEAK_COMMON:
|
| 689 |
|
|
case DYN_WEAK_COMMON * 16 + WEAK_COMMON:
|
| 690 |
|
|
// Ignore a weak common symbol in the presence of a real common
|
| 691 |
|
|
// symbol.
|
| 692 |
|
|
return false;
|
| 693 |
|
|
|
| 694 |
|
|
case DEF * 16 + DYN_COMMON:
|
| 695 |
|
|
case WEAK_DEF * 16 + DYN_COMMON:
|
| 696 |
|
|
case DYN_DEF * 16 + DYN_COMMON:
|
| 697 |
|
|
case DYN_WEAK_DEF * 16 + DYN_COMMON:
|
| 698 |
|
|
// Ignore a dynamic common symbol in the presence of a
|
| 699 |
|
|
// definition.
|
| 700 |
|
|
return false;
|
| 701 |
|
|
|
| 702 |
|
|
case UNDEF * 16 + DYN_COMMON:
|
| 703 |
|
|
case WEAK_UNDEF * 16 + DYN_COMMON:
|
| 704 |
|
|
case DYN_UNDEF * 16 + DYN_COMMON:
|
| 705 |
|
|
case DYN_WEAK_UNDEF * 16 + DYN_COMMON:
|
| 706 |
|
|
// A dynamic common symbol is a definition of sorts.
|
| 707 |
|
|
return true;
|
| 708 |
|
|
|
| 709 |
|
|
case COMMON * 16 + DYN_COMMON:
|
| 710 |
|
|
case WEAK_COMMON * 16 + DYN_COMMON:
|
| 711 |
|
|
case DYN_COMMON * 16 + DYN_COMMON:
|
| 712 |
|
|
case DYN_WEAK_COMMON * 16 + DYN_COMMON:
|
| 713 |
|
|
// Set the size to the maximum.
|
| 714 |
|
|
*adjust_common_sizes = true;
|
| 715 |
|
|
return false;
|
| 716 |
|
|
|
| 717 |
|
|
case DEF * 16 + DYN_WEAK_COMMON:
|
| 718 |
|
|
case WEAK_DEF * 16 + DYN_WEAK_COMMON:
|
| 719 |
|
|
case DYN_DEF * 16 + DYN_WEAK_COMMON:
|
| 720 |
|
|
case DYN_WEAK_DEF * 16 + DYN_WEAK_COMMON:
|
| 721 |
|
|
// A common symbol is ignored in the face of a definition.
|
| 722 |
|
|
return false;
|
| 723 |
|
|
|
| 724 |
|
|
case UNDEF * 16 + DYN_WEAK_COMMON:
|
| 725 |
|
|
case WEAK_UNDEF * 16 + DYN_WEAK_COMMON:
|
| 726 |
|
|
case DYN_UNDEF * 16 + DYN_WEAK_COMMON:
|
| 727 |
|
|
case DYN_WEAK_UNDEF * 16 + DYN_WEAK_COMMON:
|
| 728 |
|
|
// I guess a weak common symbol is better than a definition.
|
| 729 |
|
|
return true;
|
| 730 |
|
|
|
| 731 |
|
|
case COMMON * 16 + DYN_WEAK_COMMON:
|
| 732 |
|
|
case WEAK_COMMON * 16 + DYN_WEAK_COMMON:
|
| 733 |
|
|
case DYN_COMMON * 16 + DYN_WEAK_COMMON:
|
| 734 |
|
|
case DYN_WEAK_COMMON * 16 + DYN_WEAK_COMMON:
|
| 735 |
|
|
// Set the size to the maximum.
|
| 736 |
|
|
*adjust_common_sizes = true;
|
| 737 |
|
|
return false;
|
| 738 |
|
|
|
| 739 |
|
|
default:
|
| 740 |
|
|
gold_unreachable();
|
| 741 |
|
|
}
|
| 742 |
|
|
}
|
| 743 |
|
|
|
| 744 |
|
|
// Issue an error or warning due to symbol resolution. IS_ERROR
|
| 745 |
|
|
// indicates an error rather than a warning. MSG is the error
|
| 746 |
|
|
// message; it is expected to have a %s for the symbol name. TO is
|
| 747 |
|
|
// the existing symbol. OBJECT is where the new symbol was found.
|
| 748 |
|
|
|
| 749 |
|
|
// FIXME: We should have better location information here. When the
|
| 750 |
|
|
// symbol is defined, we should be able to pull the location from the
|
| 751 |
|
|
// debug info if there is any.
|
| 752 |
|
|
|
| 753 |
|
|
void
|
| 754 |
|
|
Symbol_table::report_resolve_problem(bool is_error, const char* msg,
|
| 755 |
|
|
const Symbol* to, Object* object)
|
| 756 |
|
|
{
|
| 757 |
|
|
std::string demangled(to->demangled_name());
|
| 758 |
|
|
size_t len = strlen(msg) + demangled.length() + 10;
|
| 759 |
|
|
char* buf = new char[len];
|
| 760 |
|
|
snprintf(buf, len, msg, demangled.c_str());
|
| 761 |
|
|
|
| 762 |
|
|
const char* objname;
|
| 763 |
|
|
if (object != NULL)
|
| 764 |
|
|
objname = object->name().c_str();
|
| 765 |
|
|
else
|
| 766 |
|
|
objname = _("command line");
|
| 767 |
|
|
|
| 768 |
|
|
if (is_error)
|
| 769 |
|
|
gold_error("%s: %s", objname, buf);
|
| 770 |
|
|
else
|
| 771 |
|
|
gold_warning("%s: %s", objname, buf);
|
| 772 |
|
|
|
| 773 |
|
|
delete[] buf;
|
| 774 |
|
|
|
| 775 |
|
|
if (to->source() == Symbol::FROM_OBJECT)
|
| 776 |
|
|
objname = to->object()->name().c_str();
|
| 777 |
|
|
else
|
| 778 |
|
|
objname = _("command line");
|
| 779 |
|
|
gold_info("%s: %s: previous definition here", program_name, objname);
|
| 780 |
|
|
}
|
| 781 |
|
|
|
| 782 |
|
|
// A special case of should_override which is only called for a strong
|
| 783 |
|
|
// defined symbol from a regular object file. This is used when
|
| 784 |
|
|
// defining special symbols.
|
| 785 |
|
|
|
| 786 |
|
|
bool
|
| 787 |
|
|
Symbol_table::should_override_with_special(const Symbol* to)
|
| 788 |
|
|
{
|
| 789 |
|
|
bool adjust_common_sizes;
|
| 790 |
|
|
unsigned int frombits = global_flag | regular_flag | def_flag;
|
| 791 |
|
|
bool ret = Symbol_table::should_override(to, frombits, NULL,
|
| 792 |
|
|
&adjust_common_sizes);
|
| 793 |
|
|
gold_assert(!adjust_common_sizes);
|
| 794 |
|
|
return ret;
|
| 795 |
|
|
}
|
| 796 |
|
|
|
| 797 |
|
|
// Override symbol base with a special symbol.
|
| 798 |
|
|
|
| 799 |
|
|
void
|
| 800 |
|
|
Symbol::override_base_with_special(const Symbol* from)
|
| 801 |
|
|
{
|
| 802 |
|
|
gold_assert(this->name_ == from->name_ || this->has_alias());
|
| 803 |
|
|
|
| 804 |
|
|
this->source_ = from->source_;
|
| 805 |
|
|
switch (from->source_)
|
| 806 |
|
|
{
|
| 807 |
|
|
case FROM_OBJECT:
|
| 808 |
|
|
this->u_.from_object = from->u_.from_object;
|
| 809 |
|
|
break;
|
| 810 |
|
|
case IN_OUTPUT_DATA:
|
| 811 |
|
|
this->u_.in_output_data = from->u_.in_output_data;
|
| 812 |
|
|
break;
|
| 813 |
|
|
case IN_OUTPUT_SEGMENT:
|
| 814 |
|
|
this->u_.in_output_segment = from->u_.in_output_segment;
|
| 815 |
|
|
break;
|
| 816 |
|
|
case IS_CONSTANT:
|
| 817 |
|
|
case IS_UNDEFINED:
|
| 818 |
|
|
break;
|
| 819 |
|
|
default:
|
| 820 |
|
|
gold_unreachable();
|
| 821 |
|
|
break;
|
| 822 |
|
|
}
|
| 823 |
|
|
|
| 824 |
|
|
this->override_version(from->version_);
|
| 825 |
|
|
this->type_ = from->type_;
|
| 826 |
|
|
this->binding_ = from->binding_;
|
| 827 |
|
|
this->override_visibility(from->visibility_);
|
| 828 |
|
|
this->nonvis_ = from->nonvis_;
|
| 829 |
|
|
|
| 830 |
|
|
// Special symbols are always considered to be regular symbols.
|
| 831 |
|
|
this->in_reg_ = true;
|
| 832 |
|
|
|
| 833 |
|
|
if (from->needs_dynsym_entry_)
|
| 834 |
|
|
this->needs_dynsym_entry_ = true;
|
| 835 |
|
|
if (from->needs_dynsym_value_)
|
| 836 |
|
|
this->needs_dynsym_value_ = true;
|
| 837 |
|
|
|
| 838 |
|
|
// We shouldn't see these flags. If we do, we need to handle them
|
| 839 |
|
|
// somehow.
|
| 840 |
|
|
gold_assert(!from->is_target_special_ || this->is_target_special_);
|
| 841 |
|
|
gold_assert(!from->is_forwarder_);
|
| 842 |
|
|
gold_assert(!from->has_plt_offset_);
|
| 843 |
|
|
gold_assert(!from->has_warning_);
|
| 844 |
|
|
gold_assert(!from->is_copied_from_dynobj_);
|
| 845 |
|
|
gold_assert(!from->is_forced_local_);
|
| 846 |
|
|
}
|
| 847 |
|
|
|
| 848 |
|
|
// Override a symbol with a special symbol.
|
| 849 |
|
|
|
| 850 |
|
|
template<int size>
|
| 851 |
|
|
void
|
| 852 |
|
|
Sized_symbol<size>::override_with_special(const Sized_symbol<size>* from)
|
| 853 |
|
|
{
|
| 854 |
|
|
this->override_base_with_special(from);
|
| 855 |
|
|
this->value_ = from->value_;
|
| 856 |
|
|
this->symsize_ = from->symsize_;
|
| 857 |
|
|
}
|
| 858 |
|
|
|
| 859 |
|
|
// Override TOSYM with the special symbol FROMSYM. This handles all
|
| 860 |
|
|
// aliases of TOSYM.
|
| 861 |
|
|
|
| 862 |
|
|
template<int size>
|
| 863 |
|
|
void
|
| 864 |
|
|
Symbol_table::override_with_special(Sized_symbol<size>* tosym,
|
| 865 |
|
|
const Sized_symbol<size>* fromsym)
|
| 866 |
|
|
{
|
| 867 |
|
|
tosym->override_with_special(fromsym);
|
| 868 |
|
|
if (tosym->has_alias())
|
| 869 |
|
|
{
|
| 870 |
|
|
Symbol* sym = this->weak_aliases_[tosym];
|
| 871 |
|
|
gold_assert(sym != NULL);
|
| 872 |
|
|
Sized_symbol<size>* ssym = this->get_sized_symbol<size>(sym);
|
| 873 |
|
|
do
|
| 874 |
|
|
{
|
| 875 |
|
|
ssym->override_with_special(fromsym);
|
| 876 |
|
|
sym = this->weak_aliases_[ssym];
|
| 877 |
|
|
gold_assert(sym != NULL);
|
| 878 |
|
|
ssym = this->get_sized_symbol<size>(sym);
|
| 879 |
|
|
}
|
| 880 |
|
|
while (ssym != tosym);
|
| 881 |
|
|
}
|
| 882 |
|
|
if (tosym->binding() == elfcpp::STB_LOCAL
|
| 883 |
|
|
|| ((tosym->visibility() == elfcpp::STV_HIDDEN
|
| 884 |
|
|
|| tosym->visibility() == elfcpp::STV_INTERNAL)
|
| 885 |
|
|
&& (tosym->binding() == elfcpp::STB_GLOBAL
|
| 886 |
|
|
|| tosym->binding() == elfcpp::STB_WEAK)
|
| 887 |
|
|
&& !parameters->options().relocatable()))
|
| 888 |
|
|
this->force_local(tosym);
|
| 889 |
|
|
}
|
| 890 |
|
|
|
| 891 |
|
|
// Instantiate the templates we need. We could use the configure
|
| 892 |
|
|
// script to restrict this to only the ones needed for implemented
|
| 893 |
|
|
// targets.
|
| 894 |
|
|
|
| 895 |
|
|
#ifdef HAVE_TARGET_32_LITTLE
|
| 896 |
|
|
template
|
| 897 |
|
|
void
|
| 898 |
|
|
Symbol_table::resolve<32, false>(
|
| 899 |
|
|
Sized_symbol<32>* to,
|
| 900 |
|
|
const elfcpp::Sym<32, false>& sym,
|
| 901 |
|
|
unsigned int st_shndx,
|
| 902 |
|
|
bool is_ordinary,
|
| 903 |
|
|
unsigned int orig_st_shndx,
|
| 904 |
|
|
Object* object,
|
| 905 |
|
|
const char* version);
|
| 906 |
|
|
#endif
|
| 907 |
|
|
|
| 908 |
|
|
#ifdef HAVE_TARGET_32_BIG
|
| 909 |
|
|
template
|
| 910 |
|
|
void
|
| 911 |
|
|
Symbol_table::resolve<32, true>(
|
| 912 |
|
|
Sized_symbol<32>* to,
|
| 913 |
|
|
const elfcpp::Sym<32, true>& sym,
|
| 914 |
|
|
unsigned int st_shndx,
|
| 915 |
|
|
bool is_ordinary,
|
| 916 |
|
|
unsigned int orig_st_shndx,
|
| 917 |
|
|
Object* object,
|
| 918 |
|
|
const char* version);
|
| 919 |
|
|
#endif
|
| 920 |
|
|
|
| 921 |
|
|
#ifdef HAVE_TARGET_64_LITTLE
|
| 922 |
|
|
template
|
| 923 |
|
|
void
|
| 924 |
|
|
Symbol_table::resolve<64, false>(
|
| 925 |
|
|
Sized_symbol<64>* to,
|
| 926 |
|
|
const elfcpp::Sym<64, false>& sym,
|
| 927 |
|
|
unsigned int st_shndx,
|
| 928 |
|
|
bool is_ordinary,
|
| 929 |
|
|
unsigned int orig_st_shndx,
|
| 930 |
|
|
Object* object,
|
| 931 |
|
|
const char* version);
|
| 932 |
|
|
#endif
|
| 933 |
|
|
|
| 934 |
|
|
#ifdef HAVE_TARGET_64_BIG
|
| 935 |
|
|
template
|
| 936 |
|
|
void
|
| 937 |
|
|
Symbol_table::resolve<64, true>(
|
| 938 |
|
|
Sized_symbol<64>* to,
|
| 939 |
|
|
const elfcpp::Sym<64, true>& sym,
|
| 940 |
|
|
unsigned int st_shndx,
|
| 941 |
|
|
bool is_ordinary,
|
| 942 |
|
|
unsigned int orig_st_shndx,
|
| 943 |
|
|
Object* object,
|
| 944 |
|
|
const char* version);
|
| 945 |
|
|
#endif
|
| 946 |
|
|
|
| 947 |
|
|
#if defined(HAVE_TARGET_32_LITTLE) || defined(HAVE_TARGET_32_BIG)
|
| 948 |
|
|
template
|
| 949 |
|
|
void
|
| 950 |
|
|
Symbol_table::override_with_special<32>(Sized_symbol<32>*,
|
| 951 |
|
|
const Sized_symbol<32>*);
|
| 952 |
|
|
#endif
|
| 953 |
|
|
|
| 954 |
|
|
#if defined(HAVE_TARGET_64_LITTLE) || defined(HAVE_TARGET_64_BIG)
|
| 955 |
|
|
template
|
| 956 |
|
|
void
|
| 957 |
|
|
Symbol_table::override_with_special<64>(Sized_symbol<64>*,
|
| 958 |
|
|
const Sized_symbol<64>*);
|
| 959 |
|
|
#endif
|
| 960 |
|
|
|
| 961 |
|
|
} // End namespace gold.
|