forked from OSchip/llvm-project
Adding multiple object support to MCJIT EH frame handling
llvm-svn: 192504
This commit is contained in:
parent
71814b4465
commit
7bb1344c67
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@ -53,7 +53,12 @@ public:
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StringRef SectionName, bool IsReadOnly) = 0;
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/// Register the EH frames with the runtime so that c++ exceptions work.
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virtual void registerEHFrames(StringRef SectionData);
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///
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/// \p Addr parameter provides the local address of the EH frame section
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/// data, while \p LoadAddr provides the address of the data in the target
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/// address space. If the section has not been remapped (which will usually
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/// be the case for local execution) these two values will be the same.
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virtual void registerEHFrames(uint8_t *Addr, uint64_t LoadAddr, size_t Size);
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/// This method returns the address of the specified function or variable.
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/// It is used to resolve symbols during module linking.
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@ -64,9 +64,14 @@ public:
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/// This is the address which will be used for relocation resolution.
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void mapSectionAddress(const void *LocalAddress, uint64_t TargetAddress);
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StringRef getErrorString();
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/// Register any EH frame sections that have been loaded but not previously
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/// registered with the memory manager. Note, RuntimeDyld is responsible
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/// for identifying the EH frame and calling the memory manager with the
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/// EH frame section data. However, the memory manager itself will handle
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/// the actual target-specific EH frame registration.
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void registerEHFrames();
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StringRef getEHFrameSection();
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StringRef getErrorString();
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};
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} // end namespace llvm
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@ -178,14 +178,12 @@ void MCJIT::finalizeLoadedModules() {
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if (ModuleStates[M].hasBeenLoaded() &&
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!ModuleStates[M].hasBeenFinalized()) {
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// FIXME: This should be module specific!
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StringRef EHData = Dyld.getEHFrameSection();
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if (!EHData.empty())
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MemMgr.registerEHFrames(EHData);
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ModuleStates[M] = ModuleFinalized;
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}
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}
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Dyld.registerEHFrames();
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// Set page permissions.
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MemMgr.finalizeMemory();
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}
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@ -221,14 +219,12 @@ void MCJIT::finalizeObject() {
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if (ModuleStates[M].hasBeenLoaded() &&
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!ModuleStates[M].hasBeenFinalized()) {
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// FIXME: This should be module specific!
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StringRef EHData = Dyld.getEHFrameSection();
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if (!EHData.empty())
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MemMgr.registerEHFrames(EHData);
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ModuleStates[M] = ModuleFinalized;
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}
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}
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Dyld.registerEHFrames();
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// Set page permissions.
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MemMgr.finalizeMemory();
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}
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@ -248,10 +244,7 @@ void MCJIT::finalizeModule(Module *M) {
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// Resolve any outstanding relocations.
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Dyld.resolveRelocations();
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// FIXME: Should this be module specific?
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StringRef EHData = Dyld.getEHFrameSection();
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if (!EHData.empty())
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MemMgr.registerEHFrames(EHData);
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Dyld.registerEHFrames();
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// Set page permissions.
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MemMgr.finalizeMemory();
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@ -51,8 +51,8 @@ public:
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ClientMM->notifyObjectLoaded(EE, Obj);
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}
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virtual void registerEHFrames(StringRef SectionData) {
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ClientMM->registerEHFrames(SectionData);
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virtual void registerEHFrames(uint8_t *Addr, uint64_t LoadAddr, size_t Size) {
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ClientMM->registerEHFrames(Addr, LoadAddr, Size);
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}
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virtual bool finalizeMemory(std::string *ErrMsg = 0) {
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@ -54,10 +54,15 @@ static const char *processFDE(const char *Entry) {
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}
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#endif
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void RTDyldMemoryManager::registerEHFrames(StringRef SectionData) {
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// This implementation handles frame registration for local targets.
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// Memory managers for remote targets should re-implement this function
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// and use the LoadAddr parameter.
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void RTDyldMemoryManager::registerEHFrames(uint8_t *Addr,
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uint64_t LoadAddr,
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size_t Size) {
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#if HAVE_EHTABLE_SUPPORT
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const char *P = SectionData.data();
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const char *End = SectionData.data() + SectionData.size();
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const char *P = (const char *)Addr;
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const char *End = P + Size;
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do {
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P = processFDE(P);
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} while(P != End);
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@ -29,8 +29,7 @@ RuntimeDyldImpl::~RuntimeDyldImpl() {}
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namespace llvm {
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StringRef RuntimeDyldImpl::getEHFrameSection() {
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return StringRef();
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void RuntimeDyldImpl::registerEHFrames() {
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}
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// Resolve the relocations for all symbols we currently know about.
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@ -171,7 +170,7 @@ ObjectImage *RuntimeDyldImpl::loadObject(ObjectBuffer *InputBuffer) {
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}
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// Give the subclasses a chance to tie-up any loose ends.
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finalizeLoad();
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finalizeLoad(LocalSections);
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return obj.take();
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}
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@ -592,8 +591,8 @@ StringRef RuntimeDyld::getErrorString() {
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return Dyld->getErrorString();
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}
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StringRef RuntimeDyld::getEHFrameSection() {
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return Dyld->getEHFrameSection();
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void RuntimeDyld::registerEHFrames() {
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return Dyld->registerEHFrames();
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}
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} // end namespace llvm
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@ -151,12 +151,17 @@ void DyldELFObject<ELFT>::updateSymbolAddress(const SymbolRef &SymRef,
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namespace llvm {
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StringRef RuntimeDyldELF::getEHFrameSection() {
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for (int i = 0, e = Sections.size(); i != e; ++i) {
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if (Sections[i].Name == ".eh_frame")
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return StringRef((const char*)Sections[i].Address, Sections[i].Size);
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void RuntimeDyldELF::registerEHFrames() {
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if (!MemMgr)
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return;
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for (int i = 0, e = UnregisteredEHFrameSections.size(); i != e; ++i) {
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SID EHFrameSID = UnregisteredEHFrameSections[i];
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uint8_t *EHFrameAddr = Sections[EHFrameSID].Address;
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uint64_t EHFrameLoadAddr = Sections[EHFrameSID].LoadAddress;
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size_t EHFrameSize = Sections[EHFrameSID].Size;
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MemMgr->registerEHFrames(EHFrameAddr, EHFrameLoadAddr, EHFrameSize);
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}
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return StringRef();
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UnregisteredEHFrameSections.clear();
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}
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ObjectImage *RuntimeDyldELF::createObjectImage(ObjectBuffer *Buffer) {
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@ -1342,7 +1347,8 @@ uint64_t RuntimeDyldELF::findGOTEntry(uint64_t LoadAddress,
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return 0;
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}
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void RuntimeDyldELF::finalizeLoad() {
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void RuntimeDyldELF::finalizeLoad(ObjSectionToIDMap &SectionMap) {
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// If necessary, allocate the global offset table
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if (MemMgr) {
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// Allocate the GOT if necessary
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size_t numGOTEntries = GOTEntries.size();
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@ -1365,6 +1371,18 @@ void RuntimeDyldELF::finalizeLoad() {
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else {
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report_fatal_error("Unable to allocate memory for GOT!");
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}
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// Look for and record the EH frame section.
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ObjSectionToIDMap::iterator i, e;
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for (i = SectionMap.begin(), e = SectionMap.end(); i != e; ++i) {
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const SectionRef &Section = i->first;
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StringRef Name;
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Section.getName(Name);
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if (Name == ".eh_frame") {
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UnregisteredEHFrameSections.push_back(i->second);
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break;
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}
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}
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}
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bool RuntimeDyldELF::isCompatibleFormat(const ObjectBuffer *Buffer) const {
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@ -94,11 +94,15 @@ class RuntimeDyldELF : public RuntimeDyldImpl {
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// Relocation entries for symbols whose position-independant offset is
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// updated in a global offset table.
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typedef unsigned SID; // Type for SectionIDs
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typedef SmallVector<RelocationValueRef, 2> GOTRelocations;
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GOTRelocations GOTEntries; // List of entries requiring finalization.
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SmallVector<std::pair<SID, GOTRelocations>, 8> GOTs; // Allocated tables.
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// When a module is loaded we save the SectionID of the EH frame section
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// in a table until we receive a request to register all unregistered
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// EH frame sections with the memory manager.
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SmallVector<SID, 2> UnregisteredEHFrameSections;
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public:
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RuntimeDyldELF(RTDyldMemoryManager *mm) : RuntimeDyldImpl(mm)
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{}
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@ -112,8 +116,8 @@ public:
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StubMap &Stubs);
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virtual bool isCompatibleFormat(const ObjectBuffer *Buffer) const;
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virtual ObjectImage *createObjectImage(ObjectBuffer *InputBuffer);
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virtual StringRef getEHFrameSection();
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virtual void finalizeLoad();
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virtual void registerEHFrames();
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virtual void finalizeLoad(ObjSectionToIDMap &SectionMap);
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virtual ~RuntimeDyldELF();
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};
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@ -147,6 +147,9 @@ protected:
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typedef SmallVector<SectionEntry, 64> SectionList;
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SectionList Sections;
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typedef unsigned SID; // Type for SectionIDs
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#define RTDYLD_INVALID_SECTION_ID ((SID)(-1))
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// Keep a map of sections from object file to the SectionID which
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// references it.
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typedef std::map<SectionRef, unsigned> ObjSectionToIDMap;
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@ -357,9 +360,9 @@ public:
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virtual bool isCompatibleFormat(const ObjectBuffer *Buffer) const = 0;
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virtual StringRef getEHFrameSection();
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virtual void registerEHFrames();
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virtual void finalizeLoad() {}
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virtual void finalizeLoad(ObjSectionToIDMap &SectionMap) {}
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};
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} // end namespace llvm
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@ -55,33 +55,58 @@ static intptr_t computeDelta(SectionEntry *A, SectionEntry *B) {
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return ObjDistance - MemDistance;
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}
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StringRef RuntimeDyldMachO::getEHFrameSection() {
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SectionEntry *Text = NULL;
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SectionEntry *EHFrame = NULL;
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SectionEntry *ExceptTab = NULL;
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for (int i = 0, e = Sections.size(); i != e; ++i) {
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if (Sections[i].Name == "__eh_frame")
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EHFrame = &Sections[i];
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else if (Sections[i].Name == "__text")
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Text = &Sections[i];
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else if (Sections[i].Name == "__gcc_except_tab")
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ExceptTab = &Sections[i];
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void RuntimeDyldMachO::registerEHFrames() {
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if (!MemMgr)
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return;
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for (int i = 0, e = UnregisteredEHFrameSections.size(); i != e; ++i) {
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EHFrameRelatedSections &SectionInfo = UnregisteredEHFrameSections[i];
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if (SectionInfo.EHFrameSID == RTDYLD_INVALID_SECTION_ID ||
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SectionInfo.TextSID == RTDYLD_INVALID_SECTION_ID)
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continue;
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SectionEntry *Text = &Sections[SectionInfo.TextSID];
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SectionEntry *EHFrame = &Sections[SectionInfo.EHFrameSID];
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SectionEntry *ExceptTab = NULL;
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if (SectionInfo.ExceptTabSID != RTDYLD_INVALID_SECTION_ID)
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ExceptTab = &Sections[SectionInfo.ExceptTabSID];
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intptr_t DeltaForText = computeDelta(Text, EHFrame);
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intptr_t DeltaForEH = 0;
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if (ExceptTab)
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DeltaForEH = computeDelta(ExceptTab, EHFrame);
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unsigned char *P = EHFrame->Address;
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unsigned char *End = P + EHFrame->Size;
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do {
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P = processFDE(P, DeltaForText, DeltaForEH);
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} while(P != End);
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MemMgr->registerEHFrames(EHFrame->Address,
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EHFrame->LoadAddress,
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EHFrame->Size);
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}
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if (Text == NULL || EHFrame == NULL)
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return StringRef();
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UnregisteredEHFrameSections.clear();
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}
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intptr_t DeltaForText = computeDelta(Text, EHFrame);
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intptr_t DeltaForEH = 0;
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if (ExceptTab)
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DeltaForEH = computeDelta(ExceptTab, EHFrame);
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unsigned char *P = EHFrame->Address;
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unsigned char *End = P + EHFrame->Size;
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do {
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P = processFDE(P, DeltaForText, DeltaForEH);
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} while(P != End);
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return StringRef((char*)EHFrame->Address, EHFrame->Size);
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void RuntimeDyldMachO::finalizeLoad(ObjSectionToIDMap &SectionMap) {
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unsigned EHFrameSID = RTDYLD_INVALID_SECTION_ID;
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unsigned TextSID = RTDYLD_INVALID_SECTION_ID;
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unsigned ExceptTabSID = RTDYLD_INVALID_SECTION_ID;
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ObjSectionToIDMap::iterator i, e;
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for (i = SectionMap.begin(), e = SectionMap.end(); i != e; ++i) {
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const SectionRef &Section = i->first;
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StringRef Name;
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Section.getName(Name);
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if (Name == "__eh_frame")
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EHFrameSID = i->second;
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else if (Name == "__text")
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TextSID = i->second;
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else if (Name == "__gcc_except_tab")
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ExceptTabSID = i->second;
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}
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UnregisteredEHFrameSections.push_back(EHFrameRelatedSections(EHFrameSID,
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TextSID,
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ExceptTabSID));
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}
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// The target location for the relocation is described by RE.SectionID and
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@ -54,6 +54,22 @@ class RuntimeDyldMachO : public RuntimeDyldImpl {
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int64_t Addend,
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bool isPCRel,
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unsigned Size);
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struct EHFrameRelatedSections {
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EHFrameRelatedSections() : EHFrameSID(RTDYLD_INVALID_SECTION_ID),
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TextSID(RTDYLD_INVALID_SECTION_ID),
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ExceptTabSID(RTDYLD_INVALID_SECTION_ID) {}
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EHFrameRelatedSections(SID EH, SID T, SID Ex)
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: EHFrameSID(EH), TextSID(T), ExceptTabSID(Ex) {}
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SID EHFrameSID;
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SID TextSID;
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SID ExceptTabSID;
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};
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// When a module is loaded we save the SectionID of the EH frame section
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// in a table until we receive a request to register all unregistered
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// EH frame sections with the memory manager.
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SmallVector<EHFrameRelatedSections, 2> UnregisteredEHFrameSections;
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public:
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RuntimeDyldMachO(RTDyldMemoryManager *mm) : RuntimeDyldImpl(mm) {}
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@ -65,7 +81,8 @@ public:
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const SymbolTableMap &Symbols,
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StubMap &Stubs);
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virtual bool isCompatibleFormat(const ObjectBuffer *Buffer) const;
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virtual StringRef getEHFrameSection();
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virtual void registerEHFrames();
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virtual void finalizeLoad(ObjSectionToIDMap &SectionMap);
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};
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} // end namespace llvm
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@ -0,0 +1,35 @@
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; RUN: %lli_mcjit -extra-modules=%p/multi-module-eh-b.ir %s
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; XFAIL: arm, cygwin, win32, mingw
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declare i8* @__cxa_allocate_exception(i64)
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declare void @__cxa_throw(i8*, i8*, i8*)
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declare i32 @__gxx_personality_v0(...)
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declare void @__cxa_end_catch()
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declare i8* @__cxa_begin_catch(i8*)
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@_ZTIi = external constant i8*
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declare i32 @FB()
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define void @throwException() {
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%exception = tail call i8* @__cxa_allocate_exception(i64 4)
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call void @__cxa_throw(i8* %exception, i8* bitcast (i8** @_ZTIi to i8*), i8* null)
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unreachable
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}
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define i32 @main() {
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entry:
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invoke void @throwException()
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to label %try.cont unwind label %lpad
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lpad:
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%p = landingpad { i8*, i32 } personality i8* bitcast (i32 (...)* @__gxx_personality_v0 to i8*)
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catch i8* bitcast (i8** @_ZTIi to i8*)
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%e = extractvalue { i8*, i32 } %p, 0
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call i8* @__cxa_begin_catch(i8* %e)
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call void @__cxa_end_catch()
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br label %try.cont
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try.cont:
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%r = call i32 @FB( )
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ret i32 %r
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}
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@ -0,0 +1,30 @@
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declare i8* @__cxa_allocate_exception(i64)
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declare void @__cxa_throw(i8*, i8*, i8*)
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declare i32 @__gxx_personality_v0(...)
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declare void @__cxa_end_catch()
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declare i8* @__cxa_begin_catch(i8*)
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@_ZTIi = external constant i8*
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define void @throwException_B() {
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%exception = tail call i8* @__cxa_allocate_exception(i64 4)
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call void @__cxa_throw(i8* %exception, i8* bitcast (i8** @_ZTIi to i8*), i8* null)
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unreachable
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}
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define i32 @FB() {
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entry:
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invoke void @throwException_B()
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to label %try.cont unwind label %lpad
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lpad:
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%p = landingpad { i8*, i32 } personality i8* bitcast (i32 (...)* @__gxx_personality_v0 to i8*)
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catch i8* bitcast (i8** @_ZTIi to i8*)
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%e = extractvalue { i8*, i32 } %p, 0
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call i8* @__cxa_begin_catch(i8* %e)
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call void @__cxa_end_catch()
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br label %try.cont
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try.cont:
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ret i32 0
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}
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@ -204,27 +204,3 @@ uint8_t *RemoteMemoryManager::allocateGlobal(uintptr_t Size, unsigned Alignment)
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void RemoteMemoryManager::deallocateFunctionBody(void *Body) {
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llvm_unreachable("Unexpected!");
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}
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static int jit_noop() {
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return 0;
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}
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void *RemoteMemoryManager::getPointerToNamedFunction(const std::string &Name,
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bool AbortOnFailure) {
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// We should not invoke parent's ctors/dtors from generated main()!
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// On Mingw and Cygwin, the symbol __main is resolved to
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// callee's(eg. tools/lli) one, to invoke wrong duplicated ctors
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// (and register wrong callee's dtors with atexit(3)).
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// We expect ExecutionEngine::runStaticConstructorsDestructors()
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// is called before ExecutionEngine::runFunctionAsMain() is called.
|
||||
if (Name == "__main") return (void*)(intptr_t)&jit_noop;
|
||||
|
||||
// FIXME: Would it be responsible to provide GOT?
|
||||
if (AbortOnFailure) {
|
||||
if (Name == "_GLOBAL_OFFSET_TABLE_")
|
||||
report_fatal_error("Program used external function '" + Name +
|
||||
"' which could not be resolved!");
|
||||
}
|
||||
|
||||
return NULL;
|
||||
}
|
||||
|
|
|
@ -74,13 +74,20 @@ public:
|
|||
unsigned SectionID, StringRef SectionName,
|
||||
bool IsReadOnly);
|
||||
|
||||
void *getPointerToNamedFunction(const std::string &Name,
|
||||
bool AbortOnFailure = true);
|
||||
// For now, remote symbol resolution is not support in lli. The MCJIT
|
||||
// interface does support this, but clients must provide their own
|
||||
// mechanism for finding remote symbol addresses. MCJIT will resolve
|
||||
// symbols from Modules it contains.
|
||||
uint64_t getSymbolAddress(const std::string &Name) {}
|
||||
|
||||
void notifyObjectLoaded(ExecutionEngine *EE, const ObjectImage *Obj);
|
||||
|
||||
bool finalizeMemory(std::string *ErrMsg);
|
||||
|
||||
// For now, remote EH frame registration isn't supported. Remote symbol
|
||||
// resolution is a prerequisite to supporting remote EH frame registration.
|
||||
void registerEHFrames(uint8_t *Addr, uint64_t LoadAddr, size_t Size) {}
|
||||
|
||||
// This is a non-interface function used by lli
|
||||
void setRemoteTarget(RemoteTarget *T) { Target = T; }
|
||||
|
||||
|
|
Loading…
Reference in New Issue