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author | Ian Lance Taylor <ian@airs.com> | 2010-01-11 07:09:48 +0000 |
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committer | Ian Lance Taylor <ian@airs.com> | 2010-01-11 07:09:48 +0000 |
commit | ba4d53bf2b70e0c5adf55bd3e4f815651d372c14 (patch) | |
tree | e95a4a70368c4d465941289464806aaf0a46e5cb /gold/resolve.cc | |
parent | 7198066bc1e788f08e3a3fd1435ea50a610b8999 (diff) | |
download | gdb-ba4d53bf2b70e0c5adf55bd3e4f815651d372c14.zip gdb-ba4d53bf2b70e0c5adf55bd3e4f815651d372c14.tar.gz gdb-ba4d53bf2b70e0c5adf55bd3e4f815651d372c14.tar.bz2 |
* resolve.cc (Symbol_table::resolve): Add symbols to list of ODR
candidates before doing symbol resolution.
Diffstat (limited to 'gold/resolve.cc')
-rw-r--r-- | gold/resolve.cc | 64 |
1 files changed, 32 insertions, 32 deletions
diff --git a/gold/resolve.cc b/gold/resolve.cc index 408e83b..3c7c7a8 100644 --- a/gold/resolve.cc +++ b/gold/resolve.cc @@ -297,6 +297,38 @@ Symbol_table::resolve(Sized_symbol<size>* to, } } + // A new weak undefined reference, merging with an old weak + // reference, could be a One Definition Rule (ODR) violation -- + // especially if the types or sizes of the references differ. We'll + // store such pairs and look them up later to make sure they + // actually refer to the same lines of code. We also check + // combinations of weak and strong, which might occur if one case is + // inline and the other is not. (Note: not all ODR violations can + // be found this way, and not everything this finds is an ODR + // violation. But it's helpful to warn about.) + bool to_is_ordinary; + if (parameters->options().detect_odr_violations() + && (sym.get_st_bind() == elfcpp::STB_WEAK + || to->binding() == elfcpp::STB_WEAK) + && orig_st_shndx != elfcpp::SHN_UNDEF + && to->shndx(&to_is_ordinary) != elfcpp::SHN_UNDEF + && to_is_ordinary + && sym.get_st_size() != 0 // Ignore weird 0-sized symbols. + && to->symsize() != 0 + && (sym.get_st_type() != to->type() + || sym.get_st_size() != to->symsize()) + // C does not have a concept of ODR, so we only need to do this + // on C++ symbols. These have (mangled) names starting with _Z. + && to->name()[0] == '_' && to->name()[1] == 'Z') + { + Symbol_location fromloc + = { object, orig_st_shndx, sym.get_st_value() }; + Symbol_location toloc = { to->object(), to->shndx(&to_is_ordinary), + to->value() }; + this->candidate_odr_violations_[to->name()].insert(fromloc); + this->candidate_odr_violations_[to->name()].insert(toloc); + } + unsigned int frombits = symbol_to_bits(sym.get_st_bind(), object->is_dynamic(), st_shndx, is_ordinary, @@ -337,38 +369,6 @@ Symbol_table::resolve(Sized_symbol<size>* to, _("multiple common of '%s'"), to, OBJECT, object); } - - // A new weak undefined reference, merging with an old weak - // reference, could be a One Definition Rule (ODR) violation -- - // especially if the types or sizes of the references differ. We'll - // store such pairs and look them up later to make sure they - // actually refer to the same lines of code. We also check - // combinations of weak and strong, which might occur if one case is - // inline and the other is not. (Note: not all ODR violations can - // be found this way, and not everything this finds is an ODR - // violation. But it's helpful to warn about.) - bool to_is_ordinary; - if (parameters->options().detect_odr_violations() - && (sym.get_st_bind() == elfcpp::STB_WEAK - || to->binding() == elfcpp::STB_WEAK) - && orig_st_shndx != elfcpp::SHN_UNDEF - && to->shndx(&to_is_ordinary) != elfcpp::SHN_UNDEF - && to_is_ordinary - && sym.get_st_size() != 0 // Ignore weird 0-sized symbols. - && to->symsize() != 0 - && (sym.get_st_type() != to->type() - || sym.get_st_size() != to->symsize()) - // C does not have a concept of ODR, so we only need to do this - // on C++ symbols. These have (mangled) names starting with _Z. - && to->name()[0] == '_' && to->name()[1] == 'Z') - { - Symbol_location fromloc - = { object, orig_st_shndx, sym.get_st_value() }; - Symbol_location toloc = { to->object(), to->shndx(&to_is_ordinary), - to->value() }; - this->candidate_odr_violations_[to->name()].insert(fromloc); - this->candidate_odr_violations_[to->name()].insert(toloc); - } } // Handle the core of symbol resolution. This is called with the |