package org.graalvm.compiler.nodes.calc;
import static org.graalvm.compiler.nodeinfo.NodeCycles.CYCLES_32;
import static org.graalvm.compiler.nodeinfo.NodeSize.SIZE_1;
import org.graalvm.compiler.core.common.type.IntegerStamp;
import org.graalvm.compiler.core.common.type.Stamp;
import org.graalvm.compiler.graph.IterableNodeType;
import org.graalvm.compiler.graph.NodeClass;
import org.graalvm.compiler.nodeinfo.InputType;
import org.graalvm.compiler.nodeinfo.NodeInfo;
import org.graalvm.compiler.nodes.NodeView;
import org.graalvm.compiler.nodes.ValueNode;
import org.graalvm.compiler.nodes.extended.GuardingNode;
import org.graalvm.compiler.nodes.spi.Lowerable;
@NodeInfo(cycles = CYCLES_32, size = SIZE_1)
public abstract class IntegerDivRemNode extends FixedBinaryNode implements Lowerable, IterableNodeType {
public static final NodeClass<IntegerDivRemNode> TYPE = NodeClass.create(IntegerDivRemNode.class);
public enum Op {
DIV,
REM
}
public enum Type {
SIGNED,
UNSIGNED
}
@OptionalInput(InputType.Guard) private GuardingNode zeroCheck;
private final Op op;
private final Type type;
private final boolean canDeopt;
protected IntegerDivRemNode(NodeClass<? extends IntegerDivRemNode> c, Stamp stamp, Op op, Type type, ValueNode x, ValueNode y, GuardingNode zeroCheck) {
super(c, stamp, x, y);
this.zeroCheck = zeroCheck;
this.op = op;
this.type = type;
IntegerStamp yStamp = (IntegerStamp) getY().stamp(NodeView.DEFAULT);
this.canDeopt = (yStamp.contains(0) && zeroCheck == null) || yStamp.contains(-1);
}
public final GuardingNode getZeroCheck() {
return zeroCheck;
}
public final Op getOp() {
return op;
}
public final Type getType() {
return type;
}
@Override
public boolean canDeoptimize() {
return canDeopt;
}
}