blob: 0049baa53d5c5835f8ad0f62b5f79a64cb74e2b7 [file] [log] [blame]
// Copyright (c) 2017, the R8 project authors. Please see the AUTHORS file
// for details. All rights reserved. Use of this source code is governed by a
// BSD-style license that can be found in the LICENSE file.
package com.android.tools.r8.ir.code;
import com.android.tools.r8.code.FilledNewArray;
import com.android.tools.r8.code.FilledNewArrayRange;
import com.android.tools.r8.graph.AppInfoWithSubtyping;
import com.android.tools.r8.graph.DexEncodedMethod;
import com.android.tools.r8.graph.DexType;
import com.android.tools.r8.ir.conversion.DexBuilder;
import com.android.tools.r8.ir.optimize.Inliner.Constraint;
import java.util.List;
public class InvokeNewArray extends Invoke {
private DexType type;
public InvokeNewArray(DexType type, Value result, List<Value> arguments) {
super(result, arguments);
this.type = type;
}
public DexType getArrayType() {
return type;
}
@Override
public Type getType() {
return Type.NEW_ARRAY;
}
@Override
protected String getTypeString() {
return "NewArray";
}
@Override
public String toString() {
return super.toString() + "; type: " + type.toSourceString();
}
@Override
public DexEncodedMethod computeSingleTarget(AppInfoWithSubtyping appInfo) {
return null;
}
@Override
public void buildDex(DexBuilder builder) {
com.android.tools.r8.code.Instruction instruction;
int argumentRegisters = requiredArgumentRegisters();
builder.requestOutgoingRegisters(argumentRegisters);
if (needsRangedInvoke(builder)) {
assert argumentsConsecutive(builder);
int firstRegister = argumentRegisterValue(0, builder);
instruction = new FilledNewArrayRange(firstRegister, argumentRegisters, type);
} else {
int[] individualArgumentRegisters = new int[5];
int argumentRegistersCount = fillArgumentRegisters(builder, individualArgumentRegisters);
instruction = new FilledNewArray(
argumentRegistersCount,
type,
individualArgumentRegisters[0], // C
individualArgumentRegisters[1], // D
individualArgumentRegisters[2], // E
individualArgumentRegisters[3], // F
individualArgumentRegisters[4]); // G
}
addInvokeAndMoveResult(instruction, builder);
}
@Override
public boolean identicalNonValueParts(Instruction other) {
if (!other.isInvokeNewArray()) {
return false;
}
return type == other.asInvokeNewArray().type;
}
@Override
public int compareNonValueParts(Instruction other) {
if (!other.isInvokeNewArray()) {
return -1;
}
return type.slowCompareTo(other.asInvokeNewArray().type);
}
@Override
public boolean isInvokeNewArray() {
return true;
}
@Override
public InvokeNewArray asInvokeNewArray() {
return this;
}
@Override
public Constraint inliningConstraint(AppInfoWithSubtyping info, DexType holder) {
return Constraint.classIsVisible(holder, type, info);
}
}