001/* 002 * Copyright (c) 2015, 2015, Oracle and/or its affiliates. All rights reserved. 003 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. 004 * 005 * This code is free software; you can redistribute it and/or modify it 006 * under the terms of the GNU General Public License version 2 only, as 007 * published by the Free Software Foundation. 008 * 009 * This code is distributed in the hope that it will be useful, but WITHOUT 010 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or 011 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License 012 * version 2 for more details (a copy is included in the LICENSE file that 013 * accompanied this code). 014 * 015 * You should have received a copy of the GNU General Public License version 016 * 2 along with this work; if not, write to the Free Software Foundation, 017 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. 018 * 019 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA 020 * or visit www.oracle.com if you need additional information or have any 021 * questions. 022 */ 023package com.oracle.graal.lir.alloc.lsra.ssi; 024 025import static jdk.internal.jvmci.code.ValueUtil.*; 026 027import java.util.*; 028 029import jdk.internal.jvmci.meta.*; 030 031import com.oracle.graal.compiler.common.*; 032import com.oracle.graal.compiler.common.cfg.*; 033import com.oracle.graal.debug.*; 034import com.oracle.graal.lir.*; 035import com.oracle.graal.lir.alloc.lsra.*; 036import com.oracle.graal.lir.ssa.SSAUtil.PhiValueVisitor; 037import com.oracle.graal.lir.ssi.*; 038 039public class SSILinearScanResolveDataFlowPhase extends LinearScanResolveDataFlowPhase { 040 041 private static final DebugMetric numSSIResolutionMoves = Debug.metric("SSI LSRA[numSSIResolutionMoves]"); 042 private static final DebugMetric numStackToStackMoves = Debug.metric("SSI LSRA[numStackToStackMoves]"); 043 044 public SSILinearScanResolveDataFlowPhase(LinearScan allocator) { 045 super(allocator); 046 } 047 048 @Override 049 protected void resolveDataFlow() { 050 super.resolveDataFlow(); 051 /* 052 * Incoming Values are needed for the RegisterVerifier, otherwise SIGMAs/PHIs where the Out 053 * and In value matches (ie. there is no resolution move) are falsely detected as errors. 054 */ 055 for (AbstractBlockBase<?> toBlock : allocator.sortedBlocks()) { 056 if (toBlock.getPredecessorCount() != 0) { 057 SSIUtil.removeIncoming(allocator.getLIR(), toBlock); 058 } else { 059 assert allocator.getLIR().getControlFlowGraph().getStartBlock().equals(toBlock); 060 } 061 SSIUtil.removeOutgoing(allocator.getLIR(), toBlock); 062 } 063 } 064 065 @Override 066 protected void resolveCollectMappings(AbstractBlockBase<?> fromBlock, AbstractBlockBase<?> toBlock, AbstractBlockBase<?> midBlock, MoveResolver moveResolver) { 067 super.resolveCollectMappings(fromBlock, toBlock, midBlock, moveResolver); 068 069 if (midBlock != null) { 070 HashMap<Value, Value> map = CollectionsFactory.newMap(); 071 SSIUtil.forEachValuePair(allocator.getLIR(), midBlock, fromBlock, (to, from) -> map.put(to, from)); 072 073 MyPhiValueVisitor visitor = new MyPhiValueVisitor(moveResolver, toBlock, fromBlock); 074 SSIUtil.forEachValuePair(allocator.getLIR(), toBlock, midBlock, (to, from) -> { 075 Value phiOut = isConstant(from) ? from : map.get(from); 076 assert phiOut != null : "No entry for " + from; 077 visitor.visit(to, phiOut); 078 }); 079 } else { 080 // default case 081 SSIUtil.forEachValuePair(allocator.getLIR(), toBlock, fromBlock, new MyPhiValueVisitor(moveResolver, toBlock, fromBlock)); 082 } 083 084 } 085 086 private class MyPhiValueVisitor implements PhiValueVisitor { 087 final MoveResolver moveResolver; 088 final int toId; 089 final int fromId; 090 091 public MyPhiValueVisitor(MoveResolver moveResolver, AbstractBlockBase<?> toBlock, AbstractBlockBase<?> fromBlock) { 092 this.moveResolver = moveResolver; 093 toId = allocator.getFirstLirInstructionId(toBlock); 094 fromId = allocator.getLastLirInstructionId(fromBlock); 095 assert fromId >= 0; 096 } 097 098 public void visit(Value phiIn, Value phiOut) { 099 assert !isRegister(phiOut) : "Out is a register: " + phiOut; 100 assert !isRegister(phiIn) : "In is a register: " + phiIn; 101 if (Value.ILLEGAL.equals(phiIn)) { 102 // The value not needed in this branch. 103 return; 104 } 105 if (isVirtualStackSlot(phiIn) && isVirtualStackSlot(phiOut) && phiIn.equals(phiOut)) { 106 // no need to handle virtual stack slots 107 return; 108 } 109 Interval toInterval = allocator.splitChildAtOpId(allocator.intervalFor(phiIn), toId, LIRInstruction.OperandMode.DEF); 110 if (isConstant(phiOut)) { 111 numSSIResolutionMoves.increment(); 112 moveResolver.addMapping(phiOut, toInterval); 113 } else { 114 Interval fromInterval = allocator.splitChildAtOpId(allocator.intervalFor(phiOut), fromId, LIRInstruction.OperandMode.DEF); 115 if (fromInterval != toInterval) { 116 numSSIResolutionMoves.increment(); 117 if (!(isStackSlotValue(toInterval.location()) && isStackSlotValue(fromInterval.location()))) { 118 moveResolver.addMapping(fromInterval, toInterval); 119 } else { 120 numStackToStackMoves.increment(); 121 moveResolver.addMapping(fromInterval, toInterval); 122 } 123 } 124 } 125 } 126 } 127 128}