blob: 251bcd95711e0347d98eab5b1380b0c55d1f20db [file] [log] [blame]
/*
* Copyright 2017-present Open Networking Foundation
*
* 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.soam.web;
import com.fasterxml.jackson.databind.JsonNode;
import com.fasterxml.jackson.databind.node.ArrayNode;
import com.fasterxml.jackson.databind.node.ObjectNode;
import org.onosproject.codec.CodecContext;
import org.onosproject.codec.JsonCodec;
import org.onosproject.incubator.net.l2monitoring.soam.loss.LossMeasurementEntry;
import java.util.Iterator;
import java.util.Map.Entry;
import static com.google.common.base.Preconditions.checkNotNull;
/**
* Encode and decode to/from JSON to LossMeasurementEntry object.
*/
public class LmEntryCodec extends JsonCodec<LossMeasurementEntry> {
@Override
public ObjectNode encode(LossMeasurementEntry lm, CodecContext context) {
checkNotNull(lm, "LM cannot be null");
ObjectNode result = context.mapper().createObjectNode()
.put("lmId", lm.lmId().toString());
if (lm.measuredForwardFlr() != null) {
result.put("measuredForwardFlr", lm.measuredForwardFlr().percentValue());
}
if (lm.measuredBackwardFlr() != null) {
result.put("measuredBackwardFlr", lm.measuredBackwardFlr().percentValue());
}
if (lm.measuredAvailabilityForwardStatus() != null) {
result.put("measuredAvailabilityForwardStatus",
lm.measuredAvailabilityForwardStatus().name());
}
if (lm.measuredAvailabilityBackwardStatus() != null) {
result.put("measuredAvailabilityBackwardStatus",
lm.measuredAvailabilityBackwardStatus().name());
}
if (lm.measuredForwardLastTransitionTime() != null) {
result.put("measuredForwardLastTransitionTime",
lm.measuredForwardLastTransitionTime().toString());
}
if (lm.measuredBackwardLastTransitionTime() != null) {
result.put("measuredBackwardLastTransitionTime",
lm.measuredBackwardLastTransitionTime().toString());
}
ObjectNode lmAttrs = new LmCreateCodec().encode(lm, context);
Iterator<Entry<String, JsonNode>> elements = lmAttrs.fields();
while (elements.hasNext()) {
Entry<String, JsonNode> element = elements.next();
result.set(element.getKey(), element.getValue());
}
if (lm.measurementCurrent() != null) {
result.set("measurementCurrent", new LossMeasurementStatCurrentCodec()
.encode(lm.measurementCurrent(), context));
}
if (lm.measurementHistories() != null) {
result.set("measurementHistories", new LossMeasurementStatHistoryCodec()
.encode(lm.measurementHistories(), context));
}
if (lm.availabilityCurrent() != null) {
result.set("availabilityCurrent", new LossAvailabilityStatCurrentCodec()
.encode(lm.availabilityCurrent(), context));
}
if (lm.availabilityHistories() != null) {
result.set("availabilityHistories", new LossAvailabilityStatHistoryCodec()
.encode(lm.availabilityHistories(), context));
}
return result;
}
@Override
public ArrayNode encode(Iterable<LossMeasurementEntry> lmEntities, CodecContext context) {
ArrayNode an = context.mapper().createArrayNode();
lmEntities.forEach(dm -> an.add(encode(dm, context)));
return an;
}
}