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/*
* Copyright 2016-present Open Networking Laboratory
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
package org.onosproject.yangutils.datamodel;
import java.util.LinkedList;
import java.util.List;
import org.onosproject.yangutils.datamodel.exceptions.DataModelException;
import org.onosproject.yangutils.parser.Parsable;
import org.onosproject.yangutils.utils.YangConstructType;
import static org.onosproject.yangutils.datamodel.utils.DataModelUtils.detectCollidingChildUtil;
/*
* Reference RFC 6020.
*
* The "output" statement, which is optional, is used to define output
* parameters to the RPC operation. It does not take an argument. The
* substatements to "output" define nodes under the RPC's output node.
*
* If a leaf in the output tree has a "mandatory" statement with the
* value "true", the leaf MUST be present in a NETCONF RPC reply.
*
* If a leaf in the output tree has a default value, the NETCONF client
* MUST use this value in the same cases as described in Section 7.6.1.
* In these cases, the client MUST operationally behave as if the leaf
* was present in the NETCONF RPC reply with the default value as its
* value.
*
* If a "config" statement is present for any node in the output tree,
* the "config" statement is ignored.
*
* If any node has a "when" statement that would evaluate to false, then
* this node MUST NOT be present in the output tree.
*
* The output substatements
*
* +--------------+---------+-------------+------------------+
* | substatement | section | cardinality |data model mapping|
* +--------------+---------+-------------+------------------+
* | anyxml | 7.10 | 0..n | -not supported |
* | choice | 7.9 | 0..n | -child nodes |
* | container | 7.5 | 0..n | -child nodes |
* | grouping | 7.11 | 0..n | -child nodes |
* | leaf | 7.6 | 0..n | -YangLeaf |
* | leaf-list | 7.7 | 0..n | -YangLeafList |
* | list | 7.8 | 0..n | -child nodes |
* | typedef | 7.3 | 0..n | -child nodes |
* | uses | 7.12 | 0..n | -child nodes |
* +--------------+---------+-------------+------------------+
*/
/**
* Represents data model node to maintain information defined in YANG output.
*/
public class YangOutput
extends YangNode
implements YangLeavesHolder, Parsable, CollisionDetector, YangAugmentationHolder {
/**
* Name of the output.
*/
private String name;
/**
* List of leaves contained.
*/
private List<YangLeaf> listOfLeaf;
/**
* List of leaf-lists contained.
*/
private List<YangLeafList> listOfLeafList;
/**
* Create a rpc output node.
*/
public YangOutput() {
super(YangNodeType.OUTPUT_NODE);
listOfLeaf = new LinkedList<YangLeaf>();
listOfLeafList = new LinkedList<YangLeafList>();
}
@Override
public void detectCollidingChild(String identifierName, YangConstructType dataType)
throws DataModelException {
// Detect colliding child.
detectCollidingChildUtil(identifierName, dataType, this);
}
@Override
public void detectSelfCollision(String identifierName, YangConstructType dataType)
throws DataModelException {
if (this.getName().equals(identifierName)) {
throw new DataModelException("YANG file error: Duplicate identifier detected, same as output \""
+ this.getName() + "\"");
}
}
@Override
public YangConstructType getYangConstructType() {
return YangConstructType.OUTPUT_DATA;
}
@Override
public void validateDataOnEntry()
throws DataModelException {
//TODO: implement the method.
}
@Override
public void validateDataOnExit()
throws DataModelException {
//TODO: implement the method.
}
@Override
public List<YangLeaf> getListOfLeaf() {
return listOfLeaf;
}
@Override
public void addLeaf(YangLeaf leaf) {
getListOfLeaf().add(leaf);
}
@Override
public void setListOfLeaf(List<YangLeaf> leafsList) {
listOfLeaf = leafsList;
}
@Override
public List<YangLeafList> getListOfLeafList() {
return listOfLeafList;
}
@Override
public void setListOfLeafList(List<YangLeafList> listOfLeafList) {
this.listOfLeafList = listOfLeafList;
}
@Override
public void addLeafList(YangLeafList leafList) {
getListOfLeafList().add(leafList);
}
@Override
public String getName() {
return name;
}
@Override
public void setName(String name) {
this.name = name;
}
}