/* * Copyright (c) 2013, 2019, Oracle and/or its affiliates. All rights reserved. * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. * * This code is free software; you can redistribute it and/or modify it * under the terms of the GNU General Public License version 2 only, as * published by the Free Software Foundation. * * This code is distributed in the hope that it will be useful, but WITHOUT * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License * version 2 for more details (a copy is included in the LICENSE file that * accompanied this code). * * You should have received a copy of the GNU General Public License version * 2 along with this work; if not, write to the Free Software Foundation, * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. * * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA * or visit www.oracle.com if you need additional information or have any * questions. */ package org.graalvm.compiler.replacements.nodes.arithmetic; import static org.graalvm.compiler.nodeinfo.NodeCycles.CYCLES_4; import static org.graalvm.compiler.nodeinfo.NodeSize.SIZE_2; import org.graalvm.compiler.core.common.type.IntegerStamp; import org.graalvm.compiler.graph.NodeClass; import org.graalvm.compiler.graph.spi.CanonicalizerTool; import org.graalvm.compiler.nodeinfo.InputType; import org.graalvm.compiler.nodeinfo.NodeInfo; import org.graalvm.compiler.nodes.ConstantNode; import org.graalvm.compiler.nodes.NodeView; import org.graalvm.compiler.nodes.ValueNode; import org.graalvm.compiler.nodes.calc.MulNode; import org.graalvm.compiler.nodes.extended.GuardedNode; import org.graalvm.compiler.nodes.extended.GuardingNode; import jdk.vm.ci.meta.JavaConstant; import jdk.vm.ci.meta.JavaKind; /** * Node representing an exact integer multiplication that will throw an {@link ArithmeticException} * in case the addition would overflow the 32 bit range. */ @NodeInfo(cycles = CYCLES_4, cyclesRationale = "mul+cmp", size = SIZE_2) public final class IntegerMulExactNode extends MulNode implements GuardedNode, IntegerExactArithmeticNode { public static final NodeClass TYPE = NodeClass.create(IntegerMulExactNode.class); @Input(InputType.Guard) protected GuardingNode guard; public IntegerMulExactNode(ValueNode x, ValueNode y, GuardingNode guard) { super(TYPE, x, y); setStamp(x.stamp(NodeView.DEFAULT).unrestricted()); assert x.stamp(NodeView.DEFAULT).isCompatible(y.stamp(NodeView.DEFAULT)) && x.stamp(NodeView.DEFAULT) instanceof IntegerStamp; this.guard = guard; } @Override public boolean inferStamp() { /* * Note: it is not allowed to use the foldStamp method of the regular mul node as we do not * know the result stamp of this node if we do not know whether we may deopt. If we know we * can never overflow we will replace this node with its non overflow checking counterpart * anyway. */ return false; } @Override public ValueNode canonical(CanonicalizerTool tool, ValueNode forX, ValueNode forY) { if (forX.isConstant() && !forY.isConstant()) { return new IntegerMulExactNode(forY, forX, guard).canonical(tool); } if (forX.isConstant() && forY.isConstant()) { return canonicalXYconstant(forX, forY); } else if (forY.isConstant()) { long c = forY.asJavaConstant().asLong(); if (c == 1) { return forX; } if (c == 0) { return ConstantNode.forIntegerStamp(stamp(NodeView.DEFAULT), 0); } } if (!IntegerStamp.multiplicationCanOverflow((IntegerStamp) x.stamp(NodeView.DEFAULT), (IntegerStamp) y.stamp(NodeView.DEFAULT))) { return new MulNode(x, y).canonical(tool); } return this; } private ValueNode canonicalXYconstant(ValueNode forX, ValueNode forY) { JavaConstant xConst = forX.asJavaConstant(); JavaConstant yConst = forY.asJavaConstant(); assert xConst.getJavaKind() == yConst.getJavaKind(); try { if (xConst.getJavaKind() == JavaKind.Int) { return ConstantNode.forInt(Math.multiplyExact(xConst.asInt(), yConst.asInt())); } else { assert xConst.getJavaKind() == JavaKind.Long; return ConstantNode.forLong(Math.multiplyExact(xConst.asLong(), yConst.asLong())); } } catch (ArithmeticException ex) { // The operation will result in an overflow exception, so do not canonicalize. } return this; } @Override public GuardingNode getGuard() { return guard; } @Override public void setGuard(GuardingNode guard) { updateUsagesInterface(this.guard, guard); this.guard = guard; } }