8006005: Fix constant pool index validation and alignment trap for method parameter reflection
Summary: This patch addresses an alignment trap due to the storage format of method parameters data in constMethod. It also adds code to validate constant pool indexes for method parameters data.
Reviewed-by: jrose, dholmes
Contributed-by: eric.mccorkle@oracle.com
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#ifndef SHARE_VM_SHARK_SHARKCOMPILER_HPP
#define SHARE_VM_SHARK_SHARKCOMPILER_HPP
#include "ci/ciEnv.hpp"
#include "ci/ciMethod.hpp"
#include "compiler/abstractCompiler.hpp"
#include "compiler/compileBroker.hpp"
#include "shark/llvmHeaders.hpp"
#include "shark/sharkMemoryManager.hpp"
class SharkContext;
class SharkCompiler : public AbstractCompiler {
public:
// Creation
SharkCompiler();
// Name of this compiler
const char *name() { return "shark"; }
// Missing feature tests
bool supports_native() { return true; }
bool supports_osr() { return true; }
// Customization
bool needs_adapters() { return false; }
bool needs_stubs() { return false; }
// Initialization
void initialize();
// Compile a normal (bytecode) method and install it in the VM
void compile_method(ciEnv* env, ciMethod* target, int entry_bci);
// Generate a wrapper for a native (JNI) method
nmethod* generate_native_wrapper(MacroAssembler* masm,
methodHandle target,
int compile_id,
BasicType* arg_types,
BasicType return_type);
// Free compiled methods (and native wrappers)
void free_compiled_method(address code);
// Each thread generating IR needs its own context. The normal
// context is used for bytecode methods, and is protected from
// multiple simultaneous accesses by being restricted to the
// compiler thread. The native context is used for JNI methods,
// and is protected from multiple simultaneous accesses by the
// adapter handler library lock.
private:
SharkContext* _normal_context;
SharkContext* _native_context;
public:
SharkContext* context() const {
if (JavaThread::current()->is_Compiler_thread()) {
return _normal_context;
}
else {
assert(AdapterHandlerLibrary_lock->owned_by_self(), "should be");
return _native_context;
}
}
// The LLVM execution engine is the JIT we use to generate native
// code. It is thread safe, but we need to protect it with a lock
// of our own because otherwise LLVM's lock and HotSpot's locks
// interleave and deadlock. The SharkMemoryManager is not thread
// safe, and is protected by the same lock as the execution engine.
private:
Monitor* _execution_engine_lock;
SharkMemoryManager* _memory_manager;
llvm::ExecutionEngine* _execution_engine;
private:
Monitor* execution_engine_lock() const {
return _execution_engine_lock;
}
SharkMemoryManager* memory_manager() const {
assert(execution_engine_lock()->owned_by_self(), "should be");
return _memory_manager;
}
llvm::ExecutionEngine* execution_engine() const {
assert(execution_engine_lock()->owned_by_self(), "should be");
return _execution_engine;
}
// Global access
public:
static SharkCompiler* compiler() {
AbstractCompiler *compiler =
CompileBroker::compiler(CompLevel_full_optimization);
assert(compiler->is_shark() && compiler->is_initialized(), "should be");
return (SharkCompiler *) compiler;
}
// Helpers
private:
static const char* methodname(const char* klass, const char* method);
void generate_native_code(SharkEntry* entry,
llvm::Function* function,
const char* name);
void free_queued_methods();
};
#endif // SHARE_VM_SHARK_SHARKCOMPILER_HPP