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 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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 * 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).
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 * 2 along with this work; if not, write to the Free Software Foundation,
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package org.graalvm.compiler.nodes.calc;

import static org.graalvm.compiler.nodeinfo.NodeSize.SIZE_2;

import org.graalvm.compiler.core.common.calc.CanonicalCondition;
import org.graalvm.compiler.core.common.type.Stamp;
import org.graalvm.compiler.core.common.type.StampFactory;
import org.graalvm.compiler.graph.IterableNodeType;
import org.graalvm.compiler.graph.NodeClass;
import org.graalvm.compiler.graph.spi.CanonicalizerTool;
import org.graalvm.compiler.nodeinfo.NodeCycles;
import org.graalvm.compiler.nodeinfo.NodeInfo;
import org.graalvm.compiler.nodes.ConstantNode;
import org.graalvm.compiler.nodes.LogicConstantNode;
import org.graalvm.compiler.nodes.LogicNode;
import org.graalvm.compiler.nodes.NodeView;
import org.graalvm.compiler.nodes.ValueNode;

import jdk.vm.ci.meta.ConstantReflectionProvider;
import jdk.vm.ci.meta.JavaKind;

Returns -1, 0, or 1 if either x < y, x == y, or x > y. If the comparison is undecided (one of the inputs is NaN), the result is 1 if isUnorderedLess is false and -1 if isUnorderedLess is true.
/** * Returns -1, 0, or 1 if either x &lt; y, x == y, or x &gt; y. If the comparison is undecided (one * of the inputs is NaN), the result is 1 if isUnorderedLess is false and -1 if isUnorderedLess is * true. */
@NodeInfo(cycles = NodeCycles.CYCLES_2, size = SIZE_2) public final class NormalizeCompareNode extends BinaryNode implements IterableNodeType { public static final NodeClass<NormalizeCompareNode> TYPE = NodeClass.create(NormalizeCompareNode.class); protected final boolean isUnorderedLess; public NormalizeCompareNode(ValueNode x, ValueNode y, JavaKind kind, boolean isUnorderedLess) { super(TYPE, StampFactory.forInteger(kind, -1, 1), x, y); this.isUnorderedLess = isUnorderedLess; } public static ValueNode create(ValueNode x, ValueNode y, boolean isUnorderedLess, JavaKind kind, ConstantReflectionProvider constantReflection) { ValueNode result = tryConstantFold(x, y, isUnorderedLess, kind, constantReflection); if (result != null) { return result; } return new NormalizeCompareNode(x, y, kind, isUnorderedLess); } protected static ValueNode tryConstantFold(ValueNode x, ValueNode y, boolean isUnorderedLess, JavaKind kind, ConstantReflectionProvider constantReflection) { LogicNode result = CompareNode.tryConstantFold(CanonicalCondition.EQ, x, y, null, false); if (result instanceof LogicConstantNode) { LogicConstantNode logicConstantNode = (LogicConstantNode) result; LogicNode resultLT = CompareNode.tryConstantFold(CanonicalCondition.LT, x, y, constantReflection, isUnorderedLess); if (resultLT instanceof LogicConstantNode) { LogicConstantNode logicConstantNodeLT = (LogicConstantNode) resultLT; if (logicConstantNodeLT.getValue()) { return ConstantNode.forIntegerKind(kind, -1); } else if (logicConstantNode.getValue()) { return ConstantNode.forIntegerKind(kind, 0); } else { return ConstantNode.forIntegerKind(kind, 1); } } } return null; } @Override public ValueNode canonical(CanonicalizerTool tool, ValueNode forX, ValueNode forY) { NodeView view = NodeView.from(tool); ValueNode result = tryConstantFold(x, y, isUnorderedLess, stamp(view).getStackKind(), tool.getConstantReflection()); if (result != null) { return result; } return this; } @Override public boolean inferStamp() { return false; } @Override public Stamp foldStamp(Stamp stampX, Stamp stampY) { return stamp(NodeView.DEFAULT); } public boolean isUnorderedLess() { return isUnorderedLess; } }