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It doesn't make sense to move symbol relocations to section relocations when
relocations are resolved. It's much more reasonable to do this decision when relocations are just being added - we have all the information at that point. Also a bit of renaming and extra comments to clarify extensions. git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@155819 91177308-0d34-0410-b5e6-96231b3b80d8
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@ -39,7 +39,7 @@ namespace {
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// Resolve the relocations for all symbols we currently know about.
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void RuntimeDyldImpl::resolveRelocations() {
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// First, resolve relocations associated with external symbols.
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resolveSymbols();
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resolveExternalSymbols();
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// Just iterate over the sections we have and resolve all the relocations
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// in them. Gross overkill, but it gets the job done.
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@ -324,12 +324,20 @@ void RuntimeDyldImpl::addRelocation(const RelocationValueRef &Value,
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Offset,
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RelType,
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Value.Addend));
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} else
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SymbolRelocations[Value.SymbolName].push_back(RelocationEntry(
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SectionID,
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Offset,
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RelType,
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Value.Addend));
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} else {
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// Relocation by symbol. If the symbol is found in the global symbol table,
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// create an appropriate section relocation. Otherwise, add it to
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// ExternalSymbolRelocations.
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RelocationEntry RE(SectionID, Offset, RelType, Value.Addend);
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StringMap<SymbolLoc>::const_iterator Loc = SymbolTable.find(Value.SymbolName);
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if (Loc == SymbolTable.end()) {
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ExternalSymbolRelocations[Value.SymbolName].push_back(RE);
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} else {
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RE.Addend += Loc->second.second;
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Relocations[Loc->second.first].push_back(RE);
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}
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}
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}
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uint8_t *RuntimeDyldImpl::createStubFunction(uint8_t *Addr) {
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@ -386,11 +394,9 @@ void RuntimeDyldImpl::resolveRelocationList(const RelocationList &Relocs,
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}
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}
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// resolveSymbols - Resolve any relocations to the specified symbols if
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// we know where it lives.
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void RuntimeDyldImpl::resolveSymbols() {
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StringMap<RelocationList>::iterator i = SymbolRelocations.begin(),
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e = SymbolRelocations.end();
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void RuntimeDyldImpl::resolveExternalSymbols() {
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StringMap<RelocationList>::iterator i = ExternalSymbolRelocations.begin(),
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e = ExternalSymbolRelocations.end();
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for (; i != e; i++) {
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StringRef Name = i->first();
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RelocationList &Relocs = i->second;
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@ -405,15 +411,7 @@ void RuntimeDyldImpl::resolveSymbols() {
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<< "\n");
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resolveRelocationList(Relocs, (uintptr_t)Addr);
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} else {
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// Change the relocation to be section relative rather than symbol
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// relative and move it to the resolved relocation list.
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DEBUG(dbgs() << "Resolving symbol '" << Name << "'\n");
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for (int i = 0, e = Relocs.size(); i != e; ++i) {
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RelocationEntry Entry = Relocs[i];
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Entry.Addend += Loc->second.second;
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Relocations[Loc->second.first].push_back(Entry);
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}
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Relocs.clear();
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report_fatal_error("Expected external symbol");
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}
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}
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}
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@ -129,7 +129,7 @@ protected:
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// references it.
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typedef std::map<SectionRef, unsigned> ObjSectionToIDMap;
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// Master symbol table. As modules are loaded and external symbols are
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// Master symbol table. As modules are loaded and symbols are
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// resolved, their addresses are stored here as a SectionID/Offset pair.
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typedef std::pair<unsigned, uintptr_t> SymbolLoc;
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StringMap<SymbolLoc> SymbolTable;
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@ -148,9 +148,11 @@ protected:
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// source of the address. The target where the address will be writen is
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// SectionID/Offset in the relocation itself.
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DenseMap<unsigned, RelocationList> Relocations;
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// Relocations to external symbols that are not yet resolved.
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// Indexed by symbol name.
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StringMap<RelocationList> SymbolRelocations;
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// Relocations to external symbols that are not yet resolved. Symbols are
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// external when they aren't found in the global symbol table of all loaded
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// modules. This map is indexed by symbol name.
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StringMap<RelocationList> ExternalSymbolRelocations;
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typedef std::map<RelocationValueRef, uintptr_t> StubMap;
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@ -235,7 +237,8 @@ protected:
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LocalSymbolMap &Symbols,
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StubMap &Stubs) = 0;
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void resolveSymbols();
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/// \brief Resolve relocations to external symbols.
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void resolveExternalSymbols();
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virtual ObjectImage *createObjectImage(const MemoryBuffer *InputBuffer);
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virtual void handleObjectLoaded(ObjectImage *Obj)
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{
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