2 * Copyright © 2016 AT&T and others. All rights reserved.
4 * This program and the accompanying materials are made available under the
5 * terms of the Eclipse Public License v1.0 which accompanies this distribution,
6 * and is available at http://www.eclipse.org/legal/epl-v10.html
9 package org.opendaylight.transportpce.networkmodel.util;
11 import java.util.ArrayList;
12 import java.util.Collections;
13 import java.util.List;
14 import java.util.Optional;
15 import java.util.concurrent.ExecutionException;
16 import java.util.concurrent.TimeUnit;
17 import java.util.concurrent.TimeoutException;
19 import org.opendaylight.controller.md.sal.common.api.data.LogicalDatastoreType;
20 import org.opendaylight.transportpce.common.NetworkUtils;
21 import org.opendaylight.transportpce.common.Timeouts;
22 import org.opendaylight.transportpce.common.device.DeviceTransactionManager;
23 import org.opendaylight.transportpce.common.network.NetworkTransactionService;
24 import org.opendaylight.transportpce.networkmodel.dto.NodeData;
25 import org.opendaylight.transportpce.networkmodel.dto.TopologyShard;
26 import org.opendaylight.yang.gen.v1.http.org.openroadm.common.types.rev161014.NodeTypes;
27 import org.opendaylight.yang.gen.v1.http.org.openroadm.degree.rev170929.degree.node.attributes.AvailableWavelengths;
28 import org.opendaylight.yang.gen.v1.http.org.openroadm.degree.rev170929.degree.node.attributes.AvailableWavelengthsBuilder;
29 import org.opendaylight.yang.gen.v1.http.org.openroadm.degree.rev170929.degree.node.attributes.AvailableWavelengthsKey;
30 import org.opendaylight.yang.gen.v1.http.org.openroadm.device.rev170206.circuit.pack.Ports;
31 import org.opendaylight.yang.gen.v1.http.org.openroadm.device.rev170206.circuit.pack.PortsKey;
32 import org.opendaylight.yang.gen.v1.http.org.openroadm.device.rev170206.circuit.packs.CircuitPacks;
33 import org.opendaylight.yang.gen.v1.http.org.openroadm.device.rev170206.circuit.packs.CircuitPacksKey;
34 import org.opendaylight.yang.gen.v1.http.org.openroadm.device.rev170206.degree.ConnectionPorts;
35 import org.opendaylight.yang.gen.v1.http.org.openroadm.device.rev170206.org.openroadm.device.container.OrgOpenroadmDevice;
36 import org.opendaylight.yang.gen.v1.http.org.openroadm.device.rev170206.org.openroadm.device.container.org.openroadm.device.Degree;
37 import org.opendaylight.yang.gen.v1.http.org.openroadm.device.rev170206.org.openroadm.device.container.org.openroadm.device.DegreeKey;
38 import org.opendaylight.yang.gen.v1.http.org.openroadm.device.rev170206.org.openroadm.device.container.org.openroadm.device.Info;
39 import org.opendaylight.yang.gen.v1.http.org.openroadm.device.rev170206.org.openroadm.device.container.org.openroadm.device.SharedRiskGroup;
40 import org.opendaylight.yang.gen.v1.http.org.openroadm.device.rev170206.org.openroadm.device.container.org.openroadm.device.SharedRiskGroupKey;
41 import org.opendaylight.yang.gen.v1.http.org.openroadm.network.topology.rev170929.Link1;
42 import org.opendaylight.yang.gen.v1.http.org.openroadm.network.topology.rev170929.Link1Builder;
43 import org.opendaylight.yang.gen.v1.http.org.openroadm.network.topology.rev170929.NetworkTypes1;
44 import org.opendaylight.yang.gen.v1.http.org.openroadm.network.topology.rev170929.NetworkTypes1Builder;
45 import org.opendaylight.yang.gen.v1.http.org.openroadm.network.topology.rev170929.Node1;
46 import org.opendaylight.yang.gen.v1.http.org.openroadm.network.topology.rev170929.Node1Builder;
47 import org.opendaylight.yang.gen.v1.http.org.openroadm.network.topology.rev170929.TerminationPoint1;
48 import org.opendaylight.yang.gen.v1.http.org.openroadm.network.topology.rev170929.TerminationPoint1Builder;
49 import org.opendaylight.yang.gen.v1.http.org.openroadm.network.topology.rev170929.network.network.types.OpenroadmTopologyBuilder;
50 import org.opendaylight.yang.gen.v1.http.org.openroadm.network.topology.rev170929.network.node.DegreeAttributesBuilder;
51 import org.opendaylight.yang.gen.v1.http.org.openroadm.network.topology.rev170929.network.node.SrgAttributesBuilder;
52 import org.opendaylight.yang.gen.v1.http.org.openroadm.network.topology.rev170929.network.node.termination.point.XpdrClientAttributesBuilder;
53 import org.opendaylight.yang.gen.v1.http.org.openroadm.network.topology.rev170929.network.node.termination.point.XpdrNetworkAttributesBuilder;
54 import org.opendaylight.yang.gen.v1.http.org.openroadm.network.types.rev170929.OpenroadmLinkType;
55 import org.opendaylight.yang.gen.v1.http.org.openroadm.network.types.rev170929.OpenroadmNodeType;
56 import org.opendaylight.yang.gen.v1.http.org.openroadm.network.types.rev170929.OpenroadmTpType;
57 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.rev150608.Network;
58 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.rev150608.NetworkBuilder;
59 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.rev150608.NetworkId;
60 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.rev150608.NetworkKey;
61 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.rev150608.NodeId;
62 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.rev150608.network.NetworkTypesBuilder;
63 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.rev150608.network.Node;
64 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.rev150608.network.NodeBuilder;
65 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.rev150608.network.NodeKey;
66 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.rev150608.network.node.SupportingNode;
67 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.rev150608.network.node.SupportingNodeBuilder;
68 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.rev150608.network.node.SupportingNodeKey;
69 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.topology.rev150608.LinkId;
70 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.topology.rev150608.Network1;
71 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.topology.rev150608.Network1Builder;
72 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.topology.rev150608.TpId;
73 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.topology.rev150608.network.Link;
74 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.topology.rev150608.network.LinkBuilder;
75 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.topology.rev150608.network.LinkKey;
76 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.topology.rev150608.network.link.DestinationBuilder;
77 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.topology.rev150608.network.link.SourceBuilder;
78 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.topology.rev150608.network.node.TerminationPoint;
79 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.topology.rev150608.network.node.TerminationPointBuilder;
80 import org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.topology.rev150608.network.node.TerminationPointKey;
81 import org.opendaylight.yangtools.yang.binding.InstanceIdentifier;
82 import org.opendaylight.yangtools.yang.binding.InstanceIdentifier.InstanceIdentifierBuilder;
83 import org.slf4j.Logger;
84 import org.slf4j.LoggerFactory;
86 public class OpenRoadmTopology121 {
88 private static final Logger LOG = LoggerFactory.getLogger(OpenRoadmTopology121.class);
89 private static final int DEFAULT_PORT_DIRECTION = -1;
90 private static final int MAX_DEGREE = 20;
91 private static final int MAX_SRG = 20;
93 private NetworkTransactionService networkTransactionService;
94 private final DeviceTransactionManager deviceTransactionManager;
96 public OpenRoadmTopology121(NetworkTransactionService networkTransactionService,
97 DeviceTransactionManager deviceTransactionManager) {
98 this.networkTransactionService = networkTransactionService;
99 this.deviceTransactionManager = deviceTransactionManager;
103 * This public method creates the OpenROADM Topology Layer and posts it to
106 public void createTopoLayer() {
108 Network openRoadmTopology = createOpenRoadmTopology();
109 InstanceIdentifierBuilder<Network> nwIID = InstanceIdentifier.builder(Network.class,
110 new NetworkKey(new NetworkId(NetworkUtils.OVERLAY_NETWORK_ID)));
111 this.networkTransactionService.put(LogicalDatastoreType.CONFIGURATION, nwIID.build(), openRoadmTopology);
112 this.networkTransactionService.submit().get(1, TimeUnit.SECONDS);
113 LOG.info("OpenRoadm-Topology created successfully.");
114 } catch (ExecutionException | TimeoutException | InterruptedException e) {
115 LOG.warn("Failed to create OpenRoadm-Topology", e);
120 * Create empty OpenROADM topology.
122 private Network createOpenRoadmTopology() {
123 NetworkBuilder nwBuilder = new NetworkBuilder();
124 NetworkId nwId = new NetworkId(NetworkUtils.OVERLAY_NETWORK_ID);
125 nwBuilder.setNetworkId(nwId);
126 nwBuilder.withKey(new NetworkKey(nwId));
127 // set network type to Transport Underlay
128 NetworkTypes1Builder topoNetworkTypesBldr = new NetworkTypes1Builder();
129 topoNetworkTypesBldr.setOpenroadmTopology(new OpenroadmTopologyBuilder().build());
130 NetworkTypesBuilder nwTypeBuilder = new NetworkTypesBuilder();
131 nwTypeBuilder.addAugmentation(NetworkTypes1.class, topoNetworkTypesBldr.build());
132 nwBuilder.setNetworkTypes(nwTypeBuilder.build());
133 // Array to store nodes in the topolayer of a roadm/Xponder
134 Network1Builder nwBldr1 = new Network1Builder();
135 // adding expressLinks
136 nwBldr1.setLink(Collections.emptyList());
137 nwBuilder.addAugmentation(Network1.class, nwBldr1.build());
138 nwBuilder.setNode(Collections.emptyList());
139 return nwBuilder.build();
142 public TopologyShard createTopologyShard(String nodeId) {
145 int portDirectionEnum = DEFAULT_PORT_DIRECTION;
147 InstanceIdentifier<Info> infoIID = InstanceIdentifier.create(OrgOpenroadmDevice.class).child(Info.class);
148 java.util.Optional<Info> deviceInfoOpt =
149 deviceTransactionManager.getDataFromDevice(nodeId, LogicalDatastoreType.OPERATIONAL, infoIID,
150 Timeouts.DEVICE_READ_TIMEOUT, Timeouts.DEVICE_READ_TIMEOUT_UNIT);
152 if (deviceInfoOpt.isPresent()) {
153 deviceInfo = deviceInfoOpt.get();
155 LOG.error("Unable to get device info for device {}!", nodeId);
158 List<Node> nodes = new ArrayList<>();
160 // Check if node is ROADM
161 if (NodeTypes.Rdm.equals(deviceInfo.getNodeType())) {
164 * Adding Degree Node Get Degree Number -> x then get connection ports then find the port directions
165 * to decide whether TX/RX/TXRX Get value for max degree from info subtree, required for iteration
166 * if not present assume to be 20 (temporary)
170 if (deviceInfo.getMaxDegrees() != null) {
171 maxDegree = deviceInfo.getMaxDegrees();
173 maxDegree = MAX_DEGREE;
176 // Starting with degree Number = 1
177 Integer degreeCounter = 1;
179 while (degreeCounter <= maxDegree) {
180 LOG.info("creating degree node {}/{}", degreeCounter, maxDegree);
181 NodeData nodeData = createDegreeNode(nodeId, degreeCounter);
182 if (nodeData != null) {
183 NodeBuilder tempNode = nodeData.getNodeBuilder();
184 portDirectionEnum = nodeData.getPortDirectionEnum();
185 nodes.add(tempNode.build());
188 // null returned if Degree number= degreeCounter not present in the device
193 numOfDegrees = degreeCounter - 1;
196 if (deviceInfo.getMaxSrgs() != null) {
197 maxSrg = deviceInfo.getMaxSrgs();
202 // Starting with degree Number = 1
203 Integer srgCounter = 1;
205 while (srgCounter <= maxSrg) {
206 LOG.info("creating SRG node {}/{}", srgCounter, maxSrg);
207 NodeBuilder tempNode = createSrgNode(nodeId, srgCounter, portDirectionEnum);
209 if (tempNode != null) {
210 nodes.add(tempNode.build());
213 // null returned if Degree number= degreeCounter not present in the device
217 numOfSrgs = srgCounter - 1;
220 LOG.info("adding links numOfDegrees={} numOfSrgs={}", numOfDegrees, numOfSrgs);
221 List<Link> links = new ArrayList<>();
222 links.addAll(createExpressLinks(nodeId, numOfDegrees, portDirectionEnum));
223 links.addAll(createAddDropLinks(nodeId, numOfDegrees, numOfSrgs, portDirectionEnum));
224 LOG.info("created nodes/links: {}/{}", nodes.size(), links.size());
225 return new TopologyShard(nodes, links);
226 } else if (NodeTypes.Xpdr.equals(deviceInfo.getNodeType())) {
227 // Check if node is XPONDER
228 Integer clientport = getNoOfClientPorts(nodeId);
229 List<Link> links = new ArrayList<>();
230 Integer clientCounter = 1;
231 Integer lineCounter = 1;
232 while (clientCounter <= clientport) {
233 NodeBuilder tempNode = createXpdr(clientCounter, lineCounter, nodeId);
234 if (tempNode == null) {
237 nodes.add(tempNode.build());
240 LOG.info("Entered this loop");
242 return new TopologyShard(nodes, links);
249 * This private method gets the list of circuit packs on a xponder. For each circuit pack on a
250 * Xponder, it does a get on circuit-pack subtree with circuit-pack-name as key in order to get the
251 * list of ports. It then iterates over the list of ports to get ports with port-qual as
252 * xpdr-network/xpdr-client. The line and client ports are saved as:
260 private int getNoOfClientPorts(String deviceId) {
261 // Creating for Xponder Line and Client Ports
262 InstanceIdentifier<OrgOpenroadmDevice> deviceIID = InstanceIdentifier.create(OrgOpenroadmDevice.class);
263 Optional<OrgOpenroadmDevice> deviceObject =
264 deviceTransactionManager.getDataFromDevice(deviceId, LogicalDatastoreType.OPERATIONAL, deviceIID,
265 Timeouts.DEVICE_READ_TIMEOUT, Timeouts.DEVICE_READ_TIMEOUT_UNIT);
267 // Variable to keep track of number of client ports
269 if (deviceObject.isPresent()) {
270 for (CircuitPacks cp : deviceObject.get().getCircuitPacks()) {
271 if (cp.getPorts() != null) {
272 for (Ports port : cp.getPorts()) {
273 if (port.getPortQual() != null) {
274 if (port.getPortQual().getIntValue() == 4) {
287 private NodeBuilder createXpdr(Integer clientCounter, Integer lineCounter, String nodeId) {
288 // Create a generic Topo Layer node
289 NodeBuilder nodebldr = createTopoLayerNode(nodeId);
290 // Create augmentation node to inorder to add degree
291 Node1Builder node1bldr = new Node1Builder();
292 TerminationPoint1Builder tp1Bldr = new TerminationPoint1Builder();
293 TerminationPointBuilder tempTpBldr;
295 // set node type to Xponder
296 node1bldr.setNodeType(OpenroadmNodeType.XPONDER);
297 List<TerminationPoint> tpList = new ArrayList<>();
298 String nodeIdtopo = new StringBuilder().append(nodeId).append("-XPDR1").toString();
301 nodebldr.setNodeId(new NodeId(nodeIdtopo));
302 nodebldr.withKey(new NodeKey(new NodeId(nodeIdtopo)));
303 nodebldr.addAugmentation(Node1.class, node1bldr.build());
304 while (clientCounter != 0) {
305 // Create CLNT-TX termination
306 tempTpBldr = createTpBldr("XPDR1-CLIENT" + clientCounter);
307 tp1Bldr.setTpType(OpenroadmTpType.XPONDERCLIENT);
308 XpdrClientAttributesBuilder xpdrClntBldr = new XpdrClientAttributesBuilder();
309 xpdrClntBldr.setTailEquipmentId("XPDR1-NETWORK" + clientCounter);
310 tp1Bldr.setXpdrClientAttributes(xpdrClntBldr.build());
311 tempTpBldr.addAugmentation(TerminationPoint1.class, tp1Bldr.build());
312 tpList.add(tempTpBldr.build());
315 while (lineCounter != 0) {
316 // Create LINE-TX termination
317 tempTpBldr = (createTpBldr("XPDR1-NETWORK" + lineCounter));
318 tp1Bldr.setTpType(OpenroadmTpType.XPONDERNETWORK);
319 XpdrNetworkAttributesBuilder xpdrNwAttrBldr = new XpdrNetworkAttributesBuilder();
320 xpdrNwAttrBldr.setTailEquipmentId("XPDR1-CLIENT" + lineCounter);
321 tp1Bldr.setXpdrNetworkAttributes(xpdrNwAttrBldr.build());
322 tempTpBldr.addAugmentation(TerminationPoint1.class, tp1Bldr.build());
323 tpList.add(tempTpBldr.build());
326 LOG.info("printing tpList {}",tpList);
327 org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.topology.rev150608
328 .Node1Builder tpNode1 = new org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf
329 .network.topology.rev150608.Node1Builder();
330 tpNode1.setTerminationPoint(tpList);
331 nodebldr.addAugmentation(
332 org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.topology.rev150608.Node1.class,
334 LOG.info("The nodebldr {}",nodebldr);
339 private NodeData createDegreeNode(String nodeId, int degreeCounter) {
340 // Create augmentation node to inorder to add degree
341 Node1Builder node1bldr = new Node1Builder();
342 // set node type to degree
343 node1bldr.setNodeType(OpenroadmNodeType.DEGREE);
345 // Get connection ports on degree number = degreeCounter in order to get port
347 List<ConnectionPorts> degreeConPorts = getDegreePorts(nodeId, degreeCounter);
348 if (degreeConPorts == null || degreeConPorts.isEmpty()) {
352 DegreeAttributesBuilder degAttBldr = new DegreeAttributesBuilder();
353 degAttBldr.setDegreeNumber(degreeCounter);
354 degAttBldr.setAvailableWavelengths(create96AvalWaveDegree());
355 node1bldr.setDegreeAttributes(degAttBldr.build());
357 String nodeIdtopo = new StringBuilder(nodeId).append("-DEG").append(degreeCounter).toString();
358 // Create a generic Topo Layer node
359 NodeBuilder nodebldr = createTopoLayerNode(nodeId);
360 nodebldr.setNodeId(new NodeId(nodeIdtopo));
361 // Ad degree node specific augmentation
362 nodebldr.addAugmentation(Node1.class, node1bldr.build());
363 // Get Port direction
364 int portDirectionEnum = getPortDirection(nodeId, degreeConPorts.get(0).getCircuitPackName(),
365 degreeConPorts.get(0).getPortName().toString());
368 * if bi-directional then create 2 tp's :
370 * --> TTP-TXRX --> CTP-TXRX
372 * if uni-directional :
379 TerminationPoint1Builder tp1Bldr = new TerminationPoint1Builder();
380 TerminationPointBuilder tempTpBldr;
382 List<TerminationPoint> tpList = new ArrayList<>();
383 if (portDirectionEnum == 1 || portDirectionEnum == 2) {
384 // ports are uni Directional on a degree, therefore 4 termination points
385 // Create TTP-TX termination
387 tempTpBldr = createTpBldr("DEG" + degreeCounter + "-TTP-TX");
388 tp1Bldr.setTpType(OpenroadmTpType.DEGREETXTTP);
389 tempTpBldr.addAugmentation(TerminationPoint1.class, tp1Bldr.build());
390 tpList.add(tempTpBldr.build());
392 // Create TTP-RX termination
393 tp1Bldr = new TerminationPoint1Builder();
394 tempTpBldr = createTpBldr("DEG" + degreeCounter + "-TTP-RX");
395 tp1Bldr.setTpType(OpenroadmTpType.DEGREERXTTP);
397 tempTpBldr.addAugmentation(TerminationPoint1.class,tp1Bldr.build());
398 tpList.add(tempTpBldr.build());
400 // Create CTP-TX termination
401 tp1Bldr = new TerminationPoint1Builder();
402 tempTpBldr = createTpBldr("DEG" + degreeCounter + "-CTP-TX");
403 tp1Bldr.setTpType(OpenroadmTpType.DEGREETXCTP);
404 tempTpBldr.addAugmentation(TerminationPoint1.class,tp1Bldr.build());
405 tpList.add(tempTpBldr.build());
407 // Create CTP-RX termination
408 tp1Bldr = new TerminationPoint1Builder();
409 tempTpBldr = createTpBldr("DEG" + degreeCounter + "-CTP-RX");
410 tp1Bldr.setTpType(OpenroadmTpType.DEGREERXCTP);
411 tempTpBldr.addAugmentation(TerminationPoint1.class,tp1Bldr.build());
412 tpList.add(tempTpBldr.build());
414 } else if (portDirectionEnum == 3) {
415 // Ports are bi directional therefore 2 termination points
416 // Create TTP-TXRX termination
417 tp1Bldr = new TerminationPoint1Builder();
418 tempTpBldr = createTpBldr("DEG" + degreeCounter + "-TTP-TXRX");
419 tp1Bldr.setTpType(OpenroadmTpType.DEGREETXRXTTP);
420 tempTpBldr.addAugmentation(TerminationPoint1.class,tp1Bldr.build());
421 tpList.add(tempTpBldr.build());
423 // Create CTP-TXRX termination
424 tp1Bldr = new TerminationPoint1Builder();
425 tempTpBldr = createTpBldr("DEG" + degreeCounter + "-CTP-TXRX");
426 tp1Bldr.setTpType(OpenroadmTpType.DEGREETXRXCTP);
427 tempTpBldr.addAugmentation(TerminationPoint1.class,tp1Bldr.build());
428 tpList.add(tempTpBldr.build());
432 org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.topology.rev150608
433 .Node1Builder tpNode1
434 = new org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network
435 .topology.rev150608.Node1Builder();
437 tpNode1.setTerminationPoint(tpList);
439 nodebldr.addAugmentation(
440 org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.topology.rev150608.Node1.class,
442 return new NodeData(nodebldr, portDirectionEnum);
446 private NodeBuilder createSrgNode(String nodeId, int srgCounter, int portDirectionEnum) {
447 // Create augmentation node to in order to add srg
448 Node1Builder node1bldr = new Node1Builder();
449 // set node type to SRG
450 node1bldr.setNodeType(OpenroadmNodeType.SRG);
452 node1bldr.setNodeType(OpenroadmNodeType.SRG);
454 SrgAttributesBuilder srgAttrBldr = new SrgAttributesBuilder();
455 srgAttrBldr.setAvailableWavelengths(create96AvalWaveSrg());
456 node1bldr.setSrgAttributes(srgAttrBldr.build());
458 // Create a generic Topo Layer node
459 NodeBuilder nodebldr = createTopoLayerNode(nodeId);
460 nodebldr.addAugmentation(Node1.class, node1bldr.build());
463 // Get connection ports on degree number = degreeCounter in order to get port
465 int maxPpPorts = getMaxPp(nodeId, srgCounter);
466 if (maxPpPorts == -1) {
471 String nodeIdtopo = new StringBuilder().append(nodeId).append("-SRG").append(srgCounter).toString();
472 nodebldr.setNodeId(new NodeId(nodeIdtopo));
473 List<TerminationPoint> tpList = new ArrayList<>();
475 TerminationPoint1Builder tp1Bldr;
476 TerminationPointBuilder tempTpBldr;
478 for (int i = 1; i <= maxPpPorts; i++) {
479 if (portDirectionEnum == 1 || portDirectionEnum == 2) {
480 if (i >= maxPpPorts / 2) {
483 // ports are uni Directional on a degree, therefore 4 termination points
484 // Create PP-TX termination
485 tempTpBldr = createTpBldr("SRG" + srgCounter + "-PP" + i + "-TX");
486 tp1Bldr = new TerminationPoint1Builder();
487 tp1Bldr.setTpType(OpenroadmTpType.SRGTXPP);
488 tempTpBldr.addAugmentation(TerminationPoint1.class, tp1Bldr.build());
489 tpList.add(tempTpBldr.build());
491 // Create PP-RX termination
492 tempTpBldr = createTpBldr("SRG" + srgCounter + "-PP" + i + "-RX");
493 tp1Bldr = new TerminationPoint1Builder();
494 tp1Bldr.setTpType(OpenroadmTpType.SRGRXPP);
495 tempTpBldr.addAugmentation(TerminationPoint1.class, tp1Bldr.build());
496 tpList.add(tempTpBldr.build());
498 } else if (portDirectionEnum == 3) {
499 // Ports are bi directional therefore 2 termination points
500 // Create PP-TXRX termination
501 tempTpBldr = createTpBldr("SRG" + srgCounter + "-PP" + i + "-TXRX");
502 tp1Bldr = new TerminationPoint1Builder();
503 tp1Bldr.setTpType(OpenroadmTpType.SRGTXRXPP);
504 tempTpBldr.addAugmentation(TerminationPoint1.class, tp1Bldr.build());
505 tpList.add(tempTpBldr.build());
509 switch (portDirectionEnum) {
510 case 1: // ports are uni Directional on a degree
512 // Create CP-TX termination
513 tempTpBldr = createTpBldr("SRG" + srgCounter + "-CP" + "-TX");
514 tp1Bldr = new TerminationPoint1Builder();
515 tp1Bldr.setTpType(OpenroadmTpType.SRGTXCP);
516 tempTpBldr.addAugmentation(TerminationPoint1.class, tp1Bldr.build());
517 tpList.add(tempTpBldr.build());
518 // Create CP-RX termination
519 tempTpBldr = createTpBldr("SRG" + srgCounter + "-CP" + "-RX");
520 tp1Bldr = new TerminationPoint1Builder();
521 tp1Bldr.setTpType(OpenroadmTpType.SRGRXCP);
522 tempTpBldr.addAugmentation(TerminationPoint1.class, tp1Bldr.build());
523 tpList.add(tempTpBldr.build());
526 // Ports are bi directional therefore 2 termination points
527 // Create CP-TXRX termination
528 tempTpBldr = createTpBldr("SRG" + srgCounter + "-CP" + "-TXRX");
529 tp1Bldr = new TerminationPoint1Builder();
530 tp1Bldr.setTpType(OpenroadmTpType.SRGTXRXCP);
531 tempTpBldr.addAugmentation(TerminationPoint1.class, tp1Bldr.build());
532 tpList.add(tempTpBldr.build());
535 LOG.error("No correponsding direction to the value: {}", portDirectionEnum);
539 org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.topology.rev150608.Node1Builder tpNode1 =
540 new org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.topology.rev150608.Node1Builder();
542 tpNode1.setTerminationPoint(tpList);
544 nodebldr.addAugmentation(
545 org.opendaylight.yang.gen.v1.urn.ietf.params.xml.ns.yang.ietf.network.topology.rev150608.Node1.class,
552 * This method will return the TTP ports in the device for a given degree number to be used by the
553 * node to create TTP and CTP termination point on the device
555 private List<ConnectionPorts> getDegreePorts(String deviceId, Integer degreeCounter) {
556 List<ConnectionPorts> degreeConPorts = new ArrayList<>();
557 LOG.info("Getting Connection ports for Degree Number {}", degreeCounter);
558 InstanceIdentifier<Degree> deviceIID =
559 InstanceIdentifier.create(OrgOpenroadmDevice.class).child(Degree.class, new DegreeKey(degreeCounter));
561 Optional<Degree> ordmDegreeObject =
562 deviceTransactionManager.getDataFromDevice(deviceId, LogicalDatastoreType.CONFIGURATION, deviceIID,
563 Timeouts.DEVICE_READ_TIMEOUT, Timeouts.DEVICE_READ_TIMEOUT_UNIT);
565 if (ordmDegreeObject.isPresent()) {
566 degreeConPorts.addAll(new ArrayList<>(ordmDegreeObject.get().getConnectionPorts()));
568 LOG.info("Device has {} degree", (degreeCounter - 1));
569 return Collections.emptyList();
571 return degreeConPorts;
574 private int getMaxPp(String deviceId, Integer srgCounter) {
576 LOG.info("Getting max pp ports for Srg Number {}", srgCounter);
577 InstanceIdentifier<SharedRiskGroup> deviceIID = InstanceIdentifier.create(OrgOpenroadmDevice.class)
578 .child(SharedRiskGroup.class, new SharedRiskGroupKey(srgCounter));
579 Optional<SharedRiskGroup> ordmSrgObject =
580 deviceTransactionManager.getDataFromDevice(deviceId, LogicalDatastoreType.OPERATIONAL, deviceIID,
581 Timeouts.DEVICE_READ_TIMEOUT, Timeouts.DEVICE_READ_TIMEOUT_UNIT);
582 if (ordmSrgObject.isPresent()) {
583 if (ordmSrgObject.get().getMaxAddDropPorts() != null) {
584 maxPpPorts = ordmSrgObject.get().getMaxAddDropPorts();
586 LOG.info("Max add drop ports absent");
590 LOG.info("SRG absent");
596 private NodeBuilder createTopoLayerNode(String nodeId) {
597 // Sets the value of Network-ref and Node-ref as a part of the supporting node
599 SupportingNodeBuilder supportbldr = new SupportingNodeBuilder();
600 supportbldr.withKey(new SupportingNodeKey(new NetworkId(NetworkUtils.UNDERLAY_NETWORK_ID), new NodeId(nodeId)));
601 supportbldr.setNetworkRef(new NetworkId(NetworkUtils.UNDERLAY_NETWORK_ID));
602 supportbldr.setNodeRef(new NodeId(nodeId));
603 ArrayList<SupportingNode> supportlist = new ArrayList<>();
604 supportlist.add(supportbldr.build());
605 NodeBuilder nodebldr = new NodeBuilder();
606 nodebldr.setSupportingNode(supportlist);
610 // Return 0 for null/error values
613 // Return 3 for bi-directional
615 private int getPortDirection(String deviceId, String circuitPackName, String portName) {
616 InstanceIdentifier<Ports> portIID = InstanceIdentifier.create(OrgOpenroadmDevice.class)
617 .child(CircuitPacks.class, new CircuitPacksKey(circuitPackName))
618 .child(Ports.class, new PortsKey(portName));
619 LOG.info("Fetching Port Direction for port {} at circuit pack {}", portName, circuitPackName);
620 Optional<Ports> portObject =
621 deviceTransactionManager.getDataFromDevice(deviceId, LogicalDatastoreType.OPERATIONAL, portIID,
622 Timeouts.DEVICE_READ_TIMEOUT, Timeouts.DEVICE_READ_TIMEOUT_UNIT);
623 if (portObject.isPresent()) {
624 Ports port = portObject.get();
625 if (port.getPortDirection() != null) {
626 return port.getPortDirection().getIntValue();
628 LOG.warn("Port direction value missing for {} {}", circuitPackName, port.getPortName());
635 // This method returns a generic termination point builder for a given tpid
636 private TerminationPointBuilder createTpBldr(String tpId) {
637 TerminationPointBuilder tpBldr = new TerminationPointBuilder();
638 TpId tp = new TpId(tpId);
639 TerminationPointKey tpKey = new TerminationPointKey(tp);
640 tpBldr.withKey(tpKey);
645 // This method returns the linkBuilder object for given source and destination
646 public LinkBuilder createLink(String srcNode, String dstNode, String srcTp, String destTp) {
647 LOG.info("creating link for {}-{}", srcNode, dstNode);
648 // Create Destination for link
649 DestinationBuilder dstNodeBldr = new DestinationBuilder();
650 dstNodeBldr.setDestTp(destTp);
651 dstNodeBldr.setDestNode(new NodeId(dstNode));
652 // Create Source for the link
653 SourceBuilder srcNodeBldr = new SourceBuilder();
654 srcNodeBldr.setSourceNode(new NodeId(srcNode));
655 srcNodeBldr.setSourceTp(srcTp);
656 // set link builder attribute
657 LinkBuilder lnkBldr = new LinkBuilder();
658 lnkBldr.setDestination(dstNodeBldr.build());
659 lnkBldr.setSource(srcNodeBldr.build());
660 lnkBldr.setLinkId(LinkIdUtil.buildLinkId(srcNode, srcTp, dstNode, destTp));
661 lnkBldr.withKey(new LinkKey(lnkBldr.getLinkId()));
663 org.opendaylight.yang.gen.v1.http.org.openroadm.opposite.links.rev170929.Link1Builder lnk1Bldr =
664 new org.opendaylight.yang.gen.v1.http.org.openroadm.opposite.links.rev170929.Link1Builder();
665 LinkId oppositeLinkId = LinkIdUtil.getOppositeLinkId(srcNode, srcTp, dstNode, destTp);
666 lnk1Bldr.setOppositeLink(oppositeLinkId);
667 lnkBldr.addAugmentation(org.opendaylight.yang.gen.v1.http.org.openroadm.opposite.links.rev170929.Link1.class,
674 private List<Link> createExpressLinks(String nodeId, int numOfDegrees, int portDirectionEnum) {
675 LOG.info("creating express links {} {} {}", nodeId, numOfDegrees, portDirectionEnum);
676 List<Link> links = new ArrayList<>();
684 // ports are uni-directional
685 if (portDirectionEnum == 1 || portDirectionEnum == 2) {
686 LOG.info("creating uni-directional express links");
687 for (int i = 1; i <= numOfDegrees; i++) {
688 for (int j = i + 1; j <= numOfDegrees; j++) {
690 srcNode = nodeId + "-DEG" + i;
691 destNode = nodeId + "-DEG" + j;
694 srcTp = "DEG" + i + "-CTP-TX";
695 destTp = "DEG" + j + "-CTP-RX";
697 LinkBuilder expLinkBldr = createLink(srcNode, destNode, srcTp, destTp);
699 Link1Builder lnk1Bldr = new Link1Builder();
700 lnk1Bldr.setLinkType(OpenroadmLinkType.EXPRESSLINK);
701 expLinkBldr.addAugmentation(Link1.class, lnk1Bldr.build());
702 links.add(expLinkBldr.build());
705 srcTp = "DEG" + i + "-CTP-RX";
706 destTp = "DEG" + j + "-CTP-TX";
708 expLinkBldr = createLink(destNode, srcNode, destTp, srcTp);
709 expLinkBldr.addAugmentation(Link1.class, lnk1Bldr.build());
711 links.add(expLinkBldr.build());
717 // ports are bi-directional
718 if (portDirectionEnum == 3) {
719 LOG.info("creating bi-directional express links");
720 for (int i = 1; i <= numOfDegrees; i++) {
721 for (int j = i + 1; j <= numOfDegrees; j++) {
723 srcNode = nodeId + "-DEG" + i;
724 destNode = nodeId + "-DEG" + j;
727 srcTp = "DEG" + i + "-CTP-TXRX";
728 destTp = "DEG" + j + "-CTP-TXRX";
730 Link1Builder lnk1Bldr = new Link1Builder();
731 lnk1Bldr.setLinkType(OpenroadmLinkType.EXPRESSLINK);
732 LinkBuilder expLinkBldr = createLink(srcNode, destNode, srcTp, destTp);
733 expLinkBldr.addAugmentation(Link1.class, lnk1Bldr.build());
734 links.add(expLinkBldr.build());
737 expLinkBldr = createLink(destNode, srcNode, destTp, srcTp);
738 expLinkBldr.addAugmentation(Link1.class, lnk1Bldr.build());
739 links.add(expLinkBldr.build());
746 private List<Link> createAddDropLinks(String nodeId, int numOfDegrees, int numOfSrgs, int portDirectionEnum) {
747 LOG.info("creating add-drop links {} {} {} {}", nodeId, numOfDegrees, numOfSrgs, portDirectionEnum);
748 List<Link> links = new ArrayList<>();
756 // ports are uni-directional
757 if (portDirectionEnum == 1 || portDirectionEnum == 2) {
758 LOG.info("creating uni-directional add-drop links");
759 for (int i = 1; i <= numOfDegrees; i++) {
760 for (int j = 1; j <= numOfSrgs; j++) {
762 srcNode = nodeId + "-DEG" + i;
763 destNode = nodeId + "-SRG" + j;
766 srcTp = "DEG" + i + "-CTP-TX";
767 destTp = "SRG" + j + "-CP-RX";
769 LinkBuilder addDropLinkBldr = createLink(srcNode, destNode, srcTp, destTp);
770 Link1Builder lnk1Bldr = new Link1Builder();
771 lnk1Bldr.setLinkType(OpenroadmLinkType.DROPLINK);
772 addDropLinkBldr.addAugmentation(Link1.class, lnk1Bldr.build());
773 links.add(addDropLinkBldr.build());
775 // add links direction
776 srcTp = "DEG" + i + "-CTP-RX";
777 destTp = "SRG" + j + "-CP-TX";
779 addDropLinkBldr = createLink(destNode, srcNode, destTp, srcTp);
780 lnk1Bldr.setLinkType(OpenroadmLinkType.ADDLINK);
781 addDropLinkBldr.addAugmentation(Link1.class, lnk1Bldr.build());
782 links.add(addDropLinkBldr.build());
787 // ports are bi-directional
788 if (portDirectionEnum == 3) {
789 LOG.info("creating bi-directional add-drop links");
790 for (int i = 1; i <= numOfDegrees; i++) {
791 for (int j = 1; j <= numOfSrgs; j++) {
793 srcNode = nodeId + "-DEG" + i;
794 destNode = nodeId + "-SRG" + j;
797 srcTp = "DEG" + i + "-CTP-TXRX";
798 destTp = "SRG" + j + "-CP-TXRX";
800 LinkBuilder addDropLinkBldr = createLink(srcNode, destNode, srcTp, destTp);
801 Link1Builder lnk1Bldr = new Link1Builder();
802 lnk1Bldr.setLinkType(OpenroadmLinkType.DROPLINK);
803 addDropLinkBldr.addAugmentation(Link1.class, lnk1Bldr.build());
805 links.add(addDropLinkBldr.build());
808 addDropLinkBldr = createLink(destNode, srcNode, destTp, srcTp);
809 lnk1Bldr.setLinkType(OpenroadmLinkType.ADDLINK);
810 addDropLinkBldr.addAugmentation(Link1.class, lnk1Bldr.build());
811 links.add(addDropLinkBldr.build());
819 private List<AvailableWavelengths> create96AvalWaveDegree() {
820 List<AvailableWavelengths> waveList = new ArrayList<>();
822 for (int i = 1; i < 97; i++) {
823 AvailableWavelengthsBuilder avalBldr = new AvailableWavelengthsBuilder();
824 avalBldr.setIndex((long) i);
825 avalBldr.withKey(new AvailableWavelengthsKey((long) i));
826 waveList.add(avalBldr.build());
832 private List<org.opendaylight.yang.gen.v1.http.org.openroadm.srg.rev170929.srg.node.attributes
833 .AvailableWavelengths> create96AvalWaveSrg() {
835 List<org.opendaylight.yang.gen.v1.http.org.openroadm.srg.rev170929.srg.node.attributes
836 .AvailableWavelengths> waveList = new ArrayList<>();
838 for (int i = 1; i < 97; i++) {
839 org.opendaylight.yang.gen.v1.http.org.openroadm.srg.rev170929.srg.node.attributes
840 .AvailableWavelengthsBuilder avalBldr =
841 new org.opendaylight.yang.gen.v1.http.org.openroadm.srg.rev170929.srg.node.attributes
842 .AvailableWavelengthsBuilder();
843 avalBldr.setIndex((long) i);
845 new org.opendaylight.yang.gen.v1.http.org.openroadm.srg.rev170929.srg.node.attributes
846 .AvailableWavelengthsKey((long) i));
847 waveList.add(avalBldr.build());