//===-- JIT.cpp - LLVM Just in Time Compiler ------------------------------===// // // This file implements the top-level support for creating a Just-In-Time // compiler for the current architecture. // //===----------------------------------------------------------------------===// #include "VM.h" #include "llvm/Target/TargetMachine.h" #include "llvm/Target/TargetMachineImpls.h" #include "llvm/Module.h" #include "Support/CommandLine.h" namespace { cl::opt Arch("march", cl::desc("Architecture: `x86' or `sparc'"), cl::Prefix, cl::value_desc("machine architecture")); static std::string DefaultArch = #if defined(i386) || defined(__i386__) || defined(__x86__) "x86"; #elif defined(sparc) || defined(__sparc__) || defined(__sparcv9) "sparc"; #else ""; #endif } /// createJIT - Create an return a new JIT compiler if there is one available /// for the current target. Otherwise it returns null. /// ExecutionEngine *ExecutionEngine::createJIT(Module *M, unsigned Config) { TargetMachine* (*TargetMachineAllocator)(unsigned) = 0; if (Arch == "") Arch = DefaultArch; // Allow a command-line switch to override what *should* be the default target // machine for this platform. This allows for debugging a Sparc JIT on X86 -- // our X86 machines are much faster at recompiling LLVM and linking lli. if (Arch == "x86") { TargetMachineAllocator = allocateX86TargetMachine; } else if (Arch == "sparc") { TargetMachineAllocator = allocateSparcTargetMachine; } if (TargetMachineAllocator) { // Allocate a target... TargetMachine *Target = (*TargetMachineAllocator)(Config); assert(Target && "Could not allocate target machine!"); // Create the virtual machine object... return new VM(M, Target); } else { return 0; } } VM::VM(Module *M, TargetMachine *tm) : ExecutionEngine(M), TM(*tm) { setTargetData(TM.getTargetData()); // Initialize MCE if (Arch == "x86") { MCE = createX86Emitter(*this); } else if (Arch == "sparc") { MCE = createSparcEmitter(*this); } setupPassManager(); registerCallback(); emitGlobals(); } int VM::run(const std::string &FnName, const std::vector &Args) { Function *F = getModule().getNamedFunction(FnName); if (F == 0) { std::cerr << "Could not find function '" << FnName <<"' in module!\n"; return 1; } int(*PF)(int, char**) = (int(*)(int, char**))getPointerToFunction(F); assert(PF != 0 && "Null pointer to function?"); // Build an argv vector... char **Argv = (char**)CreateArgv(Args); // Call the main function... int Result = PF(Args.size(), Argv); // Run any atexit handlers now! runAtExitHandlers(); return Result; }