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	Move EmitTargetCodeForMemcpy, EmitTargetCodeForMemset, and EmitTargetCodeForMemmove out of TargetLowering and into SelectionDAGInfo to exercise this. git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@103481 91177308-0d34-0410-b5e6-96231b3b80d8
		
			
				
	
	
		
			135 lines
		
	
	
		
			4.6 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			135 lines
		
	
	
		
			4.6 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| //===-- ARMSelectionDAGInfo.cpp - ARM SelectionDAG Info -------------------===//
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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 ARMSelectionDAGInfo class.
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| //
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| //===----------------------------------------------------------------------===//
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| 
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| #define DEBUG_TYPE "arm-selectiondag-info"
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| #include "ARMTargetMachine.h"
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| using namespace llvm;
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| 
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| ARMSelectionDAGInfo::ARMSelectionDAGInfo(const TargetMachine &TM)
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|   : TargetSelectionDAGInfo(TM),
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|     Subtarget(&TM.getSubtarget<ARMSubtarget>()) {
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| }
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| 
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| ARMSelectionDAGInfo::~ARMSelectionDAGInfo() {
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| }
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| 
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| SDValue
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| ARMSelectionDAGInfo::EmitTargetCodeForMemcpy(SelectionDAG &DAG, DebugLoc dl,
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|                                              SDValue Chain,
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|                                              SDValue Dst, SDValue Src,
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|                                              SDValue Size, unsigned Align,
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|                                              bool isVolatile, bool AlwaysInline,
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|                                              const Value *DstSV,
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|                                              uint64_t DstSVOff,
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|                                              const Value *SrcSV,
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|                                              uint64_t SrcSVOff) const {
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|   // Do repeated 4-byte loads and stores. To be improved.
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|   // This requires 4-byte alignment.
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|   if ((Align & 3) != 0)
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|     return SDValue();
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|   // This requires the copy size to be a constant, preferrably
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|   // within a subtarget-specific limit.
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|   ConstantSDNode *ConstantSize = dyn_cast<ConstantSDNode>(Size);
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|   if (!ConstantSize)
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|     return SDValue();
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|   uint64_t SizeVal = ConstantSize->getZExtValue();
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|   if (!AlwaysInline && SizeVal > Subtarget->getMaxInlineSizeThreshold())
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|     return SDValue();
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| 
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|   unsigned BytesLeft = SizeVal & 3;
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|   unsigned NumMemOps = SizeVal >> 2;
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|   unsigned EmittedNumMemOps = 0;
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|   EVT VT = MVT::i32;
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|   unsigned VTSize = 4;
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|   unsigned i = 0;
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|   const unsigned MAX_LOADS_IN_LDM = 6;
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|   SDValue TFOps[MAX_LOADS_IN_LDM];
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|   SDValue Loads[MAX_LOADS_IN_LDM];
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|   uint64_t SrcOff = 0, DstOff = 0;
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| 
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|   // Emit up to MAX_LOADS_IN_LDM loads, then a TokenFactor barrier, then the
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|   // same number of stores.  The loads and stores will get combined into
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|   // ldm/stm later on.
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|   while (EmittedNumMemOps < NumMemOps) {
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|     for (i = 0;
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|          i < MAX_LOADS_IN_LDM && EmittedNumMemOps + i < NumMemOps; ++i) {
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|       Loads[i] = DAG.getLoad(VT, dl, Chain,
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|                              DAG.getNode(ISD::ADD, dl, MVT::i32, Src,
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|                                          DAG.getConstant(SrcOff, MVT::i32)),
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|                              SrcSV, SrcSVOff + SrcOff, isVolatile, false, 0);
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|       TFOps[i] = Loads[i].getValue(1);
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|       SrcOff += VTSize;
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|     }
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|     Chain = DAG.getNode(ISD::TokenFactor, dl, MVT::Other, &TFOps[0], i);
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| 
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|     for (i = 0;
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|          i < MAX_LOADS_IN_LDM && EmittedNumMemOps + i < NumMemOps; ++i) {
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|       TFOps[i] = DAG.getStore(Chain, dl, Loads[i],
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|                               DAG.getNode(ISD::ADD, dl, MVT::i32, Dst,
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|                                           DAG.getConstant(DstOff, MVT::i32)),
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|                               DstSV, DstSVOff + DstOff, isVolatile, false, 0);
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|       DstOff += VTSize;
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|     }
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|     Chain = DAG.getNode(ISD::TokenFactor, dl, MVT::Other, &TFOps[0], i);
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| 
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|     EmittedNumMemOps += i;
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|   }
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| 
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|   if (BytesLeft == 0)
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|     return Chain;
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| 
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|   // Issue loads / stores for the trailing (1 - 3) bytes.
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|   unsigned BytesLeftSave = BytesLeft;
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|   i = 0;
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|   while (BytesLeft) {
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|     if (BytesLeft >= 2) {
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|       VT = MVT::i16;
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|       VTSize = 2;
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|     } else {
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|       VT = MVT::i8;
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|       VTSize = 1;
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|     }
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| 
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|     Loads[i] = DAG.getLoad(VT, dl, Chain,
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|                            DAG.getNode(ISD::ADD, dl, MVT::i32, Src,
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|                                        DAG.getConstant(SrcOff, MVT::i32)),
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|                            SrcSV, SrcSVOff + SrcOff, false, false, 0);
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|     TFOps[i] = Loads[i].getValue(1);
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|     ++i;
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|     SrcOff += VTSize;
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|     BytesLeft -= VTSize;
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|   }
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|   Chain = DAG.getNode(ISD::TokenFactor, dl, MVT::Other, &TFOps[0], i);
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| 
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|   i = 0;
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|   BytesLeft = BytesLeftSave;
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|   while (BytesLeft) {
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|     if (BytesLeft >= 2) {
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|       VT = MVT::i16;
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|       VTSize = 2;
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|     } else {
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|       VT = MVT::i8;
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|       VTSize = 1;
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|     }
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| 
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|     TFOps[i] = DAG.getStore(Chain, dl, Loads[i],
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|                             DAG.getNode(ISD::ADD, dl, MVT::i32, Dst,
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|                                         DAG.getConstant(DstOff, MVT::i32)),
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|                             DstSV, DstSVOff + DstOff, false, false, 0);
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|     ++i;
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|     DstOff += VTSize;
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|     BytesLeft -= VTSize;
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|   }
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|   return DAG.getNode(ISD::TokenFactor, dl, MVT::Other, &TFOps[0], i);
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| }
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