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			166 lines
		
	
	
		
			5.2 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			166 lines
		
	
	
		
			5.2 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
//===-- SparcJITInfo.cpp - Implement the Sparc JIT Interface --------------===//
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//
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//                     The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// This file implements the JIT interfaces for the Sparc target.
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//
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//===----------------------------------------------------------------------===//
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#define DEBUG_TYPE "jit"
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#include "SparcJITInfo.h"
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#include "SparcRelocations.h"
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#include "llvm/CodeGen/JITCodeEmitter.h"
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#include "llvm/Support/Memory.h"
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using namespace llvm;
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/// JITCompilerFunction - This contains the address of the JIT function used to
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/// compile a function lazily.
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static TargetJITInfo::JITCompilerFn JITCompilerFunction;
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extern "C" void SparcCompilationCallback();
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extern "C" {
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#if defined (__sparc__)
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  asm(
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      ".text\n"
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      "\t.align 4\n"
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      "\t.global SparcCompilationCallback\n"
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      "\t.type SparcCompilationCallback, #function\n"
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      "SparcCompilationCallback:\n"
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      // Save current register window.
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      "\tsave %sp, -192, %sp\n"
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      // stubaddr+4 is in %g1.
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      "\tcall SparcCompilationCallbackC\n"
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      "\t  sub %g1, 4, %o0\n"
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      // restore original register window and
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      // copy %o0 to %g1
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      "\t  restore %o0, 0, %g1\n"
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      // call the new stub
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      "\tjmp %g1\n"
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      "\t  nop\n"
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      "\t.size   SparcCompilationCallback, .-SparcCompilationCallback"
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      );
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#else
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  void SparcCompilationCallback() {
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    llvm_unreachable(
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      "Cannot call SparcCompilationCallback() on a non-sparc arch!");
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  }
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#endif
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}
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#define HI(Val) (((unsigned)(Val)) >> 10)
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#define LO(Val) (((unsigned)(Val)) & 0x3FF)
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#define SETHI_INST(imm, rd)    (0x01000000 | ((rd) << 25) | ((imm) & 0x3FFFFF))
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#define JMP_INST(rs1, imm, rd) (0x80000000 | ((rd) << 25) | (0x38 << 19) \
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                                | ((rs1) << 14) | (1 << 13) | ((imm) & 0x1FFF))
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#define NOP_INST               SETHI_INST(0, 0)
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extern "C" void *SparcCompilationCallbackC(intptr_t StubAddr) {
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  // Get the address of the compiled code for this function.
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  intptr_t NewVal = (intptr_t) JITCompilerFunction((void*) StubAddr);
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  // Rewrite the function stub so that we don't end up here every time we
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  // execute the call. We're replacing the first three instructions of the
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  // stub with code that jumps to the compiled function:
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  //   sethi %hi(NewVal), %g1
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  //   jmp %g1+%lo(NewVal)
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  //   nop
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  *(intptr_t *)(StubAddr)      = SETHI_INST(HI(NewVal), 1);
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  *(intptr_t *)(StubAddr + 4)  = JMP_INST(1, LO(NewVal), 0);
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  *(intptr_t *)(StubAddr + 8)  = NOP_INST;
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  sys::Memory::InvalidateInstructionCache((void*) StubAddr, 12);
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  return (void*)StubAddr;
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}
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void SparcJITInfo::replaceMachineCodeForFunction(void *Old, void *New) {
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  assert(0 && "FIXME: Implement SparcJITInfo::replaceMachineCodeForFunction");
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}
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TargetJITInfo::StubLayout SparcJITInfo::getStubLayout() {
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  // The stub contains 3 4-byte instructions, aligned at 4 bytes. See
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  // emitFunctionStub for details.
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  StubLayout Result = { 3*4, 4 };
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  return Result;
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}
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void *SparcJITInfo::emitFunctionStub(const Function *F, void *Fn,
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                                     JITCodeEmitter &JCE)
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{
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  JCE.emitAlignment(4);
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  void *Addr = (void*) (JCE.getCurrentPCValue());
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  if (!sys::Memory::setRangeWritable(Addr, 12))
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    llvm_unreachable("ERROR: Unable to mark stub writable.");
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  intptr_t EmittedAddr;
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  if (Fn != (void*)(intptr_t)SparcCompilationCallback)
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    EmittedAddr = (intptr_t)Fn;
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  else
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    EmittedAddr = (intptr_t)SparcCompilationCallback;
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  // sethi %hi(EmittedAddr), %g1
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  // jmp   %g1+%lo(EmittedAddr), %g1
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  // nop
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  JCE.emitWordBE(SETHI_INST(HI(EmittedAddr), 1));
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  JCE.emitWordBE(JMP_INST(1, LO(EmittedAddr), 1));
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  JCE.emitWordBE(NOP_INST);
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  sys::Memory::InvalidateInstructionCache(Addr, 12);
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  if (!sys::Memory::setRangeExecutable(Addr, 12))
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    llvm_unreachable("ERROR: Unable to mark stub executable.");
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  return Addr;
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}
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TargetJITInfo::LazyResolverFn
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SparcJITInfo::getLazyResolverFunction(JITCompilerFn F) {
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  JITCompilerFunction = F;
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  return SparcCompilationCallback;
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}
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/// relocate - Before the JIT can run a block of code that has been emitted,
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/// it must rewrite the code to contain the actual addresses of any
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/// referenced global symbols.
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void SparcJITInfo::relocate(void *Function, MachineRelocation *MR,
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                            unsigned NumRelocs, unsigned char *GOTBase) {
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  for (unsigned i = 0; i != NumRelocs; ++i, ++MR) {
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    void *RelocPos = (char*) Function + MR->getMachineCodeOffset();
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    intptr_t ResultPtr = (intptr_t) MR->getResultPointer();
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    switch ((SP::RelocationType) MR->getRelocationType()) {
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    case SP::reloc_sparc_hi:
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      ResultPtr = (ResultPtr >> 10) & 0x3fffff;
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      break;
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    case SP::reloc_sparc_lo:
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      ResultPtr = (ResultPtr & 0x3ff);
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      break;
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    case SP::reloc_sparc_pc30:
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      ResultPtr = ((ResultPtr - (intptr_t)RelocPos) >> 2) & 0x3fffffff;
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      break;
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    case SP::reloc_sparc_pc22:
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      ResultPtr = ((ResultPtr - (intptr_t)RelocPos) >> 2) & 0x3fffff;
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      break;
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    case SP::reloc_sparc_pc19:
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      ResultPtr = ((ResultPtr - (intptr_t)RelocPos) >> 2) & 0x7ffff;
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      break;
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    }
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    *((unsigned*) RelocPos) |= (unsigned) ResultPtr;
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  }
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}
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