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manikkaraj kbf256be2019-03-25 00:13:48 +05301/*
2 * Copyright 2018-present Open Networking Foundation
3
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7
8 * http://www.apache.org/licenses/LICENSE-2.0
9
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17package adaptercore
18
19import (
20 "context"
21 "crypto/md5"
22 "encoding/json"
23 "errors"
24 "fmt"
manikkaraj kbf256be2019-03-25 00:13:48 +053025 "github.com/opencord/voltha-go/common/log"
26 tp "github.com/opencord/voltha-go/common/techprofile"
27 fd "github.com/opencord/voltha-go/rw_core/flow_decomposition"
Manikkaraj k884c1242019-04-11 16:26:42 +053028 rsrcMgr "github.com/opencord/voltha-openolt-adapter/adaptercore/resourcemanager"
manikkaraj k17652a72019-05-06 09:06:36 -040029 ic "github.com/opencord/voltha-protos/go/inter_container"
manikkaraj kbf256be2019-03-25 00:13:48 +053030 ofp "github.com/opencord/voltha-protos/go/openflow_13"
31 openolt_pb2 "github.com/opencord/voltha-protos/go/openolt"
32 voltha "github.com/opencord/voltha-protos/go/voltha"
manikkaraj k17652a72019-05-06 09:06:36 -040033 "math/big"
manikkaraj kbf256be2019-03-25 00:13:48 +053034)
35
36const (
37 // Flow categories
38 HSIA_FLOW = "HSIA_FLOW"
39 EAPOL_FLOW = "EAPOL_FLOW"
40
41 IP_PROTO_DHCP = 17
42
43 IP_PROTO_IGMP = 2
44
45 EAP_ETH_TYPE = 0x888e
46 LLDP_ETH_TYPE = 0x88cc
47
48 IGMP_PROTO = 2
49
50 //FIXME - see also BRDCM_DEFAULT_VLAN in broadcom_onu.py
51 DEFAULT_MGMT_VLAN = 4091
52
53 DEFAULT_NETWORK_INTERFACE_ID = 0
54
55 // Openolt Flow
56 UPSTREAM = "upstream"
57 DOWNSTREAM = "downstream"
58 PACKET_TAG_TYPE = "pkt_tag_type"
59 UNTAGGED = "untagged"
60 SINGLE_TAG = "single_tag"
61 DOUBLE_TAG = "double_tag"
62
63 // classifierInfo
manikkaraj k17652a72019-05-06 09:06:36 -040064 ETH_TYPE = "eth_type"
65 TPID = "tpid"
66 IP_PROTO = "ip_proto"
67 IN_PORT = "in_port"
68 VLAN_VID = "vlan_vid"
69 VLAN_PCP = "vlan_pcp"
70 UDP_DST = "udp_dst"
71 UDP_SRC = "udp_src"
72 IPV4_DST = "ipv4_dst"
73 IPV4_SRC = "ipv4_src"
74 METADATA = "metadata"
75 TUNNEL_ID = "tunnel_id"
76 OUTPUT = "output"
manikkaraj kbf256be2019-03-25 00:13:48 +053077 // Action
78 POP_VLAN = "pop_vlan"
79 PUSH_VLAN = "push_vlan"
80 TRAP_TO_HOST = "trap_to_host"
81)
82
83type OpenOltFlowMgr struct {
84 techprofile []*tp.TechProfileMgr
85 deviceHandler *DeviceHandler
86 resourceMgr *rsrcMgr.OpenOltResourceMgr
87}
88
89func NewFlowManager(dh *DeviceHandler, rsrcMgr *rsrcMgr.OpenOltResourceMgr) *OpenOltFlowMgr {
90 log.Info("Initializing flow manager")
91 var flowMgr OpenOltFlowMgr
92 flowMgr.deviceHandler = dh
93 flowMgr.resourceMgr = rsrcMgr
94 if err := flowMgr.populateTechProfilePerPonPort(); err != nil {
95 log.Error("Error while populating tech profile mgr\n")
96 return nil
97 }
98 log.Info("Initialization of flow manager success!!")
99 return &flowMgr
100}
101
102func (f *OpenOltFlowMgr) divideAndAddFlow(intfId uint32, onuId uint32, uniId uint32, portNo uint32, classifierInfo map[string]interface{}, actionInfo map[string]interface{}, flow *ofp.OfpFlowStats) {
103 var allocId []uint32
104 var gemPorts []uint32
105
106 log.Infow("Dividing flow", log.Fields{"intfId": intfId, "onuId": onuId, "uniId": uniId, "portNo": portNo, "classifier": classifierInfo, "action": actionInfo})
107
108 log.Infow("sorting flow", log.Fields{"intfId": intfId, "onuId": onuId, "uniId": uniId, "portNo": portNo,
109 "classifierInfo": classifierInfo, "actionInfo": actionInfo})
110
111 uni := getUniPortPath(intfId, onuId, uniId)
112 log.Debugw("Uni port name", log.Fields{"uni": uni})
113 allocId, gemPorts = f.createTcontGemports(intfId, onuId, uniId, uni, portNo, flow.GetTableId())
114 if allocId == nil || gemPorts == nil {
115 log.Error("alloc-id-gem-ports-unavailable")
116 return
117 }
118
119 /* Flows can't be added specific to gemport unless p-bits are received.
120 * Hence adding flows for all gemports
121 */
122 for _, gemPort := range gemPorts {
123 if ipProto, ok := classifierInfo[IP_PROTO]; ok {
124 if ipProto.(uint32) == IP_PROTO_DHCP {
125 log.Info("Adding DHCP flow")
126 f.addDHCPTrapFlow(intfId, onuId, uniId, portNo, classifierInfo, actionInfo, flow, allocId[0], gemPort)
127 } else if ipProto == IP_PROTO_IGMP {
128 log.Info("igmp flow add ignored, not implemented yet")
129 } else {
130 log.Errorw("Invalid-Classifier-to-handle", log.Fields{"classifier": classifierInfo, "action": actionInfo})
131 //return errors.New("Invalid-Classifier-to-handle")
132 }
133 } else if ethType, ok := classifierInfo[ETH_TYPE]; ok {
134 if ethType.(uint32) == EAP_ETH_TYPE {
135 log.Info("Adding EAPOL flow")
136 f.addEAPOLFlow(intfId, onuId, uniId, portNo, flow, allocId[0], gemPort, DEFAULT_MGMT_VLAN)
137 if vlan := getSubscriberVlan(fd.GetInPort(flow)); vlan != 0 {
138 f.addEAPOLFlow(intfId, onuId, uniId, portNo, flow, allocId[0], gemPort, vlan)
139 }
140 // Send Techprofile download event to child device in go routine as it takes time
141 go f.sendTPDownloadMsgToChild(intfId, onuId, uniId, uni)
142 }
143 if ethType == LLDP_ETH_TYPE {
144 log.Info("Adding LLDP flow")
145 addLLDPFlow(flow, portNo)
146 }
147 } else if _, ok := actionInfo[PUSH_VLAN]; ok {
148 log.Info("Adding upstream data rule")
149 f.addUpstreamDataFlow(intfId, onuId, uniId, portNo, classifierInfo, actionInfo, flow, allocId[0], gemPort)
150 } else if _, ok := actionInfo[POP_VLAN]; ok {
151 log.Info("Adding Downstream data rule")
152 f.addDownstreamDataFlow(intfId, onuId, uniId, portNo, classifierInfo, actionInfo, flow, allocId[0], gemPort)
153 } else {
154 log.Errorw("Invalid-flow-type-to-handle", log.Fields{"classifier": classifierInfo, "action": actionInfo, "flow": flow})
155 }
156 }
157}
158
159// This function allocates tconts and GEM ports for an ONU, currently one TCONT is supported per ONU
160func (f *OpenOltFlowMgr) createTcontGemports(intfId uint32, onuId uint32, uniId uint32, uni string, uniPort uint32, tableID uint32) ([]uint32, []uint32) {
161 var allocID []uint32
162 var gemPortIDs []uint32
163 //If we already have allocated earlier for this onu, render them
Abhilash S.L8ee90712019-04-29 16:24:22 +0530164 if tcontId := f.resourceMgr.GetCurrentAllocIDForOnu(intfId, onuId, uniId); tcontId != 0 {
manikkaraj kbf256be2019-03-25 00:13:48 +0530165 allocID = append(allocID, tcontId)
166 }
167 gemPortIDs = f.resourceMgr.GetCurrentGEMPortIDsForOnu(intfId, onuId, uniId)
168 if len(allocID) != 0 && len(gemPortIDs) != 0 {
169 log.Debug("Rendered Tcont and GEM ports from resource manager", log.Fields{"intfId": intfId, "onuId": onuId, "uniPort": uniId,
170 "allocID": allocID, "gemPortIDs": gemPortIDs})
171 return allocID, gemPortIDs
172 }
173 log.Debug("Creating New TConts and Gem ports", log.Fields{"pon": intfId, "onu": onuId, "uni": uniId})
174
175 //FIXME: If table id is <= 63 using 64 as table id
176 if tableID < tp.DEFAULT_TECH_PROFILE_TABLE_ID {
177 tableID = tp.DEFAULT_TECH_PROFILE_TABLE_ID
178 }
179 tpPath := f.getTPpath(intfId, uni)
180 // Check tech profile instance already exists for derived port name
181 tech_profile_instance, err := f.techprofile[intfId].GetTPInstanceFromKVStore(tableID, tpPath)
182 if err != nil { // This should not happen, something wrong in KV backend transaction
183 log.Errorw("Error in fetching tech profile instance from KV store", log.Fields{"tableID": tableID, "path": tpPath})
184 return nil, nil
185 }
186 if tech_profile_instance == nil {
187 log.Info("Creating tech profile instance", log.Fields{"path": tpPath})
188 tech_profile_instance = f.techprofile[intfId].CreateTechProfInstance(tableID, uni, intfId)
189 if tech_profile_instance == nil {
190 log.Error("Tech-profile-instance-creation-failed")
191 return nil, nil
192 }
193 } else {
194 log.Debugw("Tech-profile-instance-already-exist-for-given port-name", log.Fields{"uni": uni})
195 }
196 // Get upstream and downstream scheduler protos
197 us_scheduler := f.techprofile[intfId].GetUsScheduler(tech_profile_instance)
198 ds_scheduler := f.techprofile[intfId].GetDsScheduler(tech_profile_instance)
199 // Get TCONTS protos
200 tconts := f.techprofile[intfId].GetTconts(tech_profile_instance, us_scheduler, ds_scheduler)
201 if len(tconts) == 0 {
202 log.Error("TCONTS not found ")
203 return nil, nil
204 }
205 log.Debugw("Sending Create tcont to device",
206 log.Fields{"onu": onuId, "uni": uniId, "portNo": "", "tconts": tconts})
207 if _, err := f.deviceHandler.Client.CreateTconts(context.Background(),
208 &openolt_pb2.Tconts{IntfId: intfId,
209 OnuId: onuId,
210 UniId: uniId,
211 PortNo: uniPort,
212 Tconts: tconts}); err != nil {
manikkaraj k17652a72019-05-06 09:06:36 -0400213 log.Errorw("Error while creating TCONT in device", log.Fields{"error": err})
manikkaraj kbf256be2019-03-25 00:13:48 +0530214 return nil, nil
215 }
216 allocID = append(allocID, tech_profile_instance.UsScheduler.AllocID)
217 for _, gem := range tech_profile_instance.UpstreamGemPortAttributeList {
218 gemPortIDs = append(gemPortIDs, gem.GemportID)
219 }
220 log.Debugw("Allocated Tcont and GEM ports", log.Fields{"allocID": allocID, "gemports": gemPortIDs})
221 // Send Tconts and GEM ports to KV store
222 f.storeTcontsGEMPortsIntoKVStore(intfId, onuId, uniId, allocID, gemPortIDs)
223 return allocID, gemPortIDs
224}
225
226func (f *OpenOltFlowMgr) storeTcontsGEMPortsIntoKVStore(intfId uint32, onuId uint32, uniId uint32, allocID []uint32, gemPortIDs []uint32) {
227
228 log.Debugw("Storing allocated Tconts and GEM ports into KV store",
229 log.Fields{"intfId": intfId, "onuId": onuId, "uniId": uniId, "allocID": allocID, "gemPortIDs": gemPortIDs})
230 /* Update the allocated alloc_id and gem_port_id for the ONU/UNI to KV store */
231 if err := f.resourceMgr.UpdateAllocIdsForOnu(intfId, onuId, uniId, allocID); err != nil {
232 log.Error("Errow while uploading allocID to KV store")
233 }
234 if err := f.resourceMgr.UpdateGEMPortIDsForOnu(intfId, onuId, uniId, gemPortIDs); err != nil {
235 log.Error("Errow while uploading GEMports to KV store")
236 }
237 if err := f.resourceMgr.UpdateGEMportsPonportToOnuMapOnKVStore(gemPortIDs, intfId, onuId, uniId); err != nil {
238 log.Error("Errow while uploading gemtopon map to KV store")
239 }
240 log.Debug("Stored tconts and GEM into KV store successfully")
241}
242
243func (f *OpenOltFlowMgr) populateTechProfilePerPonPort() error {
244 for _, techRange := range f.resourceMgr.DevInfo.Ranges {
245 for intfId := range techRange.IntfIds {
246 f.techprofile = append(f.techprofile, f.resourceMgr.ResourceMgrs[uint32(intfId)].TechProfileMgr)
247 }
248 }
249 //Make sure we have as many tech_profiles as there are pon ports on the device
250 if len(f.techprofile) != int(f.resourceMgr.DevInfo.GetPonPorts()) {
251 log.Errorw("Error while populating techprofile",
252 log.Fields{"numofTech": len(f.techprofile), "numPonPorts": f.resourceMgr.DevInfo.GetPonPorts()})
253 return errors.New("Error while populating techprofile mgrs")
254 }
255 log.Infow("Populated techprofile per ponport successfully",
256 log.Fields{"numofTech": len(f.techprofile), "numPonPorts": f.resourceMgr.DevInfo.GetPonPorts()})
257 return nil
258}
259
Manikkaraj k884c1242019-04-11 16:26:42 +0530260func (f *OpenOltFlowMgr) addUpstreamDataFlow(intfId uint32, onuId uint32, uniId uint32,
261 portNo uint32, uplinkClassifier map[string]interface{},
262 uplinkAction map[string]interface{}, logicalFlow *ofp.OfpFlowStats,
263 allocId uint32, gemportId uint32) {
264 uplinkClassifier[PACKET_TAG_TYPE] = SINGLE_TAG
265 log.Debugw("Adding upstream data flow", log.Fields{"uplinkClassifier": uplinkClassifier, "uplinkAction": uplinkAction})
266 f.addHSIAFlow(intfId, onuId, uniId, portNo, uplinkClassifier, uplinkAction,
267 UPSTREAM, logicalFlow, allocId, gemportId)
268 /* TODO: Install Secondary EAP on the subscriber vlan */
manikkaraj kbf256be2019-03-25 00:13:48 +0530269}
270
Manikkaraj k884c1242019-04-11 16:26:42 +0530271func (f *OpenOltFlowMgr) addDownstreamDataFlow(intfId uint32, onuId uint32, uniId uint32,
272 portNo uint32, downlinkClassifier map[string]interface{},
273 downlinkAction map[string]interface{}, logicalFlow *ofp.OfpFlowStats,
274 allocId uint32, gemportId uint32) {
275 downlinkClassifier[PACKET_TAG_TYPE] = DOUBLE_TAG
276 log.Debugw("Adding downstream data flow", log.Fields{"downlinkClassifier": downlinkClassifier,
277 "downlinkAction": downlinkAction})
manikkaraj k17652a72019-05-06 09:06:36 -0400278 // Ignore private VLAN flow given by decomposer, cannot do anything with this flow
Manikkaraj k884c1242019-04-11 16:26:42 +0530279 if uint32(downlinkClassifier[METADATA].(uint64)) == MkUniPortNum(intfId, onuId, uniId) &&
280 downlinkClassifier[VLAN_VID] == (uint32(ofp.OfpVlanId_OFPVID_PRESENT)|4000) {
281 log.Infow("EAPOL DL flow , Already added ,ignoring it", log.Fields{"downlinkClassifier": downlinkClassifier,
282 "downlinkAction": downlinkAction})
283 return
284 }
285 /* Already this info available classifier? */
286 downlinkAction[POP_VLAN] = true
287 downlinkAction[VLAN_VID] = downlinkClassifier[VLAN_VID]
288 f.addHSIAFlow(intfId, onuId, uniId, portNo, downlinkClassifier, downlinkAction,
289 DOWNSTREAM, logicalFlow, allocId, gemportId)
manikkaraj kbf256be2019-03-25 00:13:48 +0530290}
291
Manikkaraj k884c1242019-04-11 16:26:42 +0530292func (f *OpenOltFlowMgr) addHSIAFlow(intfId uint32, onuId uint32, uniId uint32, portNo uint32, classifier map[string]interface{},
293 action map[string]interface{}, direction string, logicalFlow *ofp.OfpFlowStats,
294 allocId uint32, gemPortId uint32) {
295 /* One of the OLT platform (Broadcom BAL) requires that symmetric
296 flows require the same flow_id to be used across UL and DL.
297 Since HSIA flow is the only symmetric flow currently, we need to
298 re-use the flow_id across both direction. The 'flow_category'
299 takes priority over flow_cookie to find any available HSIA_FLOW
300 id for the ONU.
301 */
302 log.Debugw("Adding HSIA flow", log.Fields{"intfId": intfId, "onuId": onuId, "uniId": uniId, "classifier": classifier,
303 "action": action, "direction": direction, "allocId": allocId, "gemPortId": gemPortId,
304 "logicalFlow": *logicalFlow})
305 flowStoreCookie := getFlowStoreCookie(classifier, gemPortId)
306 flowId, err := f.resourceMgr.GetFlowID(intfId, onuId, uniId, flowStoreCookie, "HSIA")
307 if err != nil {
308 log.Errorw("Flow id unavailable for HSIA flow", log.Fields{"direction": direction})
309 return
310 }
311 var classifierProto *openolt_pb2.Classifier
312 var actionProto *openolt_pb2.Action
313 if classifierProto = makeOpenOltClassifierField(classifier); classifierProto == nil {
314 log.Error("Error in making classifier protobuf for hsia flow")
315 return
316 }
317 log.Debugw("Created classifier proto", log.Fields{"classifier": *classifierProto})
318 if actionProto = makeOpenOltActionField(action); actionProto == nil {
319 log.Errorw("Error in making action protobuf for hsia flow", log.Fields{"direction": direction})
320 return
321 }
322 log.Debugw("Created action proto", log.Fields{"action": *actionProto})
323 flow := openolt_pb2.Flow{AccessIntfId: int32(intfId),
324 OnuId: int32(onuId),
325 UniId: int32(uniId),
326 FlowId: flowId,
327 FlowType: direction,
328 AllocId: int32(allocId),
329 NetworkIntfId: DEFAULT_NETWORK_INTERFACE_ID, // one NNI port is supported now
330 GemportId: int32(gemPortId),
331 Classifier: classifierProto,
332 Action: actionProto,
333 Priority: int32(logicalFlow.Priority),
334 Cookie: logicalFlow.Cookie,
335 PortNo: portNo}
336 if ok := f.addFlowToDevice(&flow); ok {
337 log.Debug("HSIA flow added to device successfully", log.Fields{"direction": direction})
338 flowsToKVStore := f.getUpdatedFlowInfo(&flow, flowStoreCookie, "HSIA")
339 if err := f.updateFlowInfoToKVStore(flow.AccessIntfId,
340 flow.OnuId,
341 flow.UniId,
342 flow.FlowId, flowsToKVStore); err != nil {
343 log.Errorw("Error uploading HSIA flow into KV store", log.Fields{"flow": flow, "direction": direction, "error": err})
344 return
345 }
346 }
347}
manikkaraj kbf256be2019-03-25 00:13:48 +0530348func (f *OpenOltFlowMgr) addDHCPTrapFlow(intfId uint32, onuId uint32, uniId uint32, portNo uint32, classifier map[string]interface{}, action map[string]interface{}, logicalFlow *ofp.OfpFlowStats, allocId uint32, gemPortId uint32) {
Manjunath Vanarajuluadc57d12019-04-23 11:07:21 +0530349
350 var dhcpFlow openolt_pb2.Flow
351 var actionProto *openolt_pb2.Action
352 var classifierProto *openolt_pb2.Classifier
353
354 // Clear the action map
355 for k := range action {
356 delete(action, k)
357 }
358
359 action[TRAP_TO_HOST] = true
360 classifier[UDP_SRC] = 68
361 classifier[UDP_DST] = 67
362 classifier[PACKET_TAG_TYPE] = SINGLE_TAG
363 delete(classifier, VLAN_VID)
364
365 flowStoreCookie := getFlowStoreCookie(classifier, gemPortId)
366
367 flowID, err := f.resourceMgr.GetFlowID(intfId, onuId, uniId, flowStoreCookie, "")
368
369 if err != nil {
370 log.Errorw("flowId unavailable for UL EAPOL", log.Fields{"intfId": intfId, "onuId": onuId, "flowStoreCookie": flowStoreCookie})
371 return
372 }
373
374 log.Debugw("Creating UL DHCP flow", log.Fields{"ul_classifier": classifier, "ul_action": action, "uplinkFlowId": flowID})
375
376 if classifierProto = makeOpenOltClassifierField(classifier); classifierProto == nil {
377 log.Error("Error in making classifier protobuf for ul flow")
378 return
379 }
380 log.Debugw("Created classifier proto", log.Fields{"classifier": *classifierProto})
381 if actionProto = makeOpenOltActionField(action); actionProto == nil {
382 log.Error("Error in making action protobuf for ul flow")
383 return
384 }
385
386 dhcpFlow = openolt_pb2.Flow{AccessIntfId: int32(intfId),
387 OnuId: int32(onuId),
388 UniId: int32(uniId),
389 FlowId: flowID,
390 FlowType: UPSTREAM,
391 AllocId: int32(allocId),
392 NetworkIntfId: DEFAULT_NETWORK_INTERFACE_ID, // one NNI port is supported now
393 GemportId: int32(gemPortId),
394 Classifier: classifierProto,
395 Action: actionProto,
396 Priority: int32(logicalFlow.Priority),
397 Cookie: logicalFlow.Cookie,
398 PortNo: portNo}
399
400 if ok := f.addFlowToDevice(&dhcpFlow); ok {
401 log.Debug("DHCP UL flow added to device successfully")
402 flowsToKVStore := f.getUpdatedFlowInfo(&dhcpFlow, flowStoreCookie, "DHCP")
403 if err := f.updateFlowInfoToKVStore(dhcpFlow.AccessIntfId,
404 dhcpFlow.OnuId,
405 dhcpFlow.UniId,
406 dhcpFlow.FlowId, flowsToKVStore); err != nil {
407 log.Errorw("Error uploading DHCP UL flow into KV store", log.Fields{"flow": dhcpFlow, "error": err})
408 return
409 }
410 }
411
manikkaraj kbf256be2019-03-25 00:13:48 +0530412 return
413}
414
415// Add EAPOL to device
416func (f *OpenOltFlowMgr) addEAPOLFlow(intfId uint32, onuId uint32, uniId uint32, portNo uint32, logicalFlow *ofp.OfpFlowStats, allocId uint32, gemPortId uint32, vlanId uint32) {
417 log.Debugw("Adding EAPOL to device", log.Fields{"intfId": intfId, "onuId": onuId, "portNo": portNo, "allocId": allocId, "gemPortId": gemPortId, "vlanId": vlanId, "flow": logicalFlow})
418
419 uplinkClassifier := make(map[string]interface{})
420 uplinkAction := make(map[string]interface{})
421 downlinkClassifier := make(map[string]interface{})
422 downlinkAction := make(map[string]interface{})
423 var upstreamFlow openolt_pb2.Flow
424 var downstreamFlow openolt_pb2.Flow
425
426 // Fill Classfier
427 uplinkClassifier[ETH_TYPE] = uint32(EAP_ETH_TYPE)
428 uplinkClassifier[PACKET_TAG_TYPE] = SINGLE_TAG
429 uplinkClassifier[VLAN_VID] = vlanId
430 // Fill action
431 uplinkAction[TRAP_TO_HOST] = true
432 flowStoreCookie := getFlowStoreCookie(uplinkClassifier, gemPortId)
433 //Add Uplink EAPOL Flow
434 uplinkFlowId, err := f.resourceMgr.GetFlowID(intfId, onuId, uniId, flowStoreCookie, "")
435 if err != nil {
Manikkaraj k884c1242019-04-11 16:26:42 +0530436 log.Errorw("flowId unavailable for UL EAPOL", log.Fields{"intfId": intfId, "onuId": onuId, "flowStoreCookie": flowStoreCookie})
437 return
manikkaraj kbf256be2019-03-25 00:13:48 +0530438 }
439 var classifierProto *openolt_pb2.Classifier
440 var actionProto *openolt_pb2.Action
441 log.Debugw("Creating UL EAPOL flow", log.Fields{"ul_classifier": uplinkClassifier, "ul_action": uplinkAction, "uplinkFlowId": uplinkFlowId})
442
443 if classifierProto = makeOpenOltClassifierField(uplinkClassifier); classifierProto == nil {
444 log.Error("Error in making classifier protobuf for ul flow")
445 return
446 }
447 log.Debugw("Created classifier proto", log.Fields{"classifier": *classifierProto})
448 if actionProto = makeOpenOltActionField(uplinkAction); actionProto == nil {
449 log.Error("Error in making action protobuf for ul flow")
450 return
451 }
452 log.Debugw("Created action proto", log.Fields{"action": *actionProto})
453 upstreamFlow = openolt_pb2.Flow{AccessIntfId: int32(intfId),
454 OnuId: int32(onuId),
455 UniId: int32(uniId),
456 FlowId: uplinkFlowId,
457 FlowType: UPSTREAM,
458 AllocId: int32(allocId),
459 NetworkIntfId: DEFAULT_NETWORK_INTERFACE_ID, // one NNI port is supported now
460 GemportId: int32(gemPortId),
461 Classifier: classifierProto,
462 Action: actionProto,
463 Priority: int32(logicalFlow.Priority),
464 Cookie: logicalFlow.Cookie,
465 PortNo: portNo}
466 if ok := f.addFlowToDevice(&upstreamFlow); ok {
467 log.Debug("EAPOL UL flow added to device successfully")
468 flowsToKVStore := f.getUpdatedFlowInfo(&upstreamFlow, flowStoreCookie, "EAPOL")
469 if err := f.updateFlowInfoToKVStore(upstreamFlow.AccessIntfId,
470 upstreamFlow.OnuId,
471 upstreamFlow.UniId,
472 upstreamFlow.FlowId, flowsToKVStore); err != nil {
473 log.Errorw("Error uploading EAPOL UL flow into KV store", log.Fields{"flow": upstreamFlow, "error": err})
474 return
475 }
476 }
477
478 if vlanId == DEFAULT_MGMT_VLAN {
479 /* Add Downstream EAPOL Flow, Only for first EAP flow (BAL
480 # requirement)
481 # On one of the platforms (Broadcom BAL), when same DL classifier
482 # vlan was used across multiple ONUs, eapol flow re-adds after
483 # flow delete (cases of onu reboot/disable) fails.
484 # In order to generate unique vlan, a combination of intf_id
485 # onu_id and uniId is used.
486 # uniId defaults to 0, so add 1 to it.
487 */
488 log.Debugw("Creating DL EAPOL flow with default vlan", log.Fields{"vlan": vlanId})
489 specialVlanDlFlow := 4090 - intfId*onuId*(uniId+1)
490 // Assert that we do not generate invalid vlans under no condition
491 if specialVlanDlFlow <= 2 {
492 log.Fatalw("invalid-vlan-generated", log.Fields{"vlan": specialVlanDlFlow})
493 return
494 }
495 log.Debugw("specialVlanEAPOLDlFlow:", log.Fields{"dl_vlan": specialVlanDlFlow})
496 // Fill Classfier
497 downlinkClassifier[PACKET_TAG_TYPE] = SINGLE_TAG
498 downlinkClassifier[VLAN_VID] = uint32(specialVlanDlFlow)
499 // Fill action
500 downlinkAction[PUSH_VLAN] = true
501 downlinkAction[VLAN_VID] = vlanId
502 flowStoreCookie := getFlowStoreCookie(downlinkClassifier, gemPortId)
503 downlinkFlowId, err := f.resourceMgr.GetFlowID(intfId, onuId, uniId, flowStoreCookie, "")
504 if err != nil {
Manikkaraj k884c1242019-04-11 16:26:42 +0530505 log.Errorw("flowId unavailable for DL EAPOL",
manikkaraj kbf256be2019-03-25 00:13:48 +0530506 log.Fields{"intfId": intfId, "onuId": onuId, "flowStoreCookie": flowStoreCookie})
507 return
508 }
509 log.Debugw("Creating DL EAPOL flow",
510 log.Fields{"dl_classifier": downlinkClassifier, "dl_action": downlinkAction, "downlinkFlowId": downlinkFlowId})
511 if classifierProto = makeOpenOltClassifierField(downlinkClassifier); classifierProto == nil {
512 log.Error("Error in making classifier protobuf for downlink flow")
513 return
514 }
515 if actionProto = makeOpenOltActionField(downlinkAction); actionProto == nil {
516 log.Error("Error in making action protobuf for dl flow")
517 return
518 }
519 // Downstream flow in grpc protobuf
520 downstreamFlow = openolt_pb2.Flow{AccessIntfId: int32(intfId),
521 OnuId: int32(onuId),
522 UniId: int32(uniId),
523 FlowId: downlinkFlowId,
524 FlowType: DOWNSTREAM,
525 AllocId: int32(allocId),
526 NetworkIntfId: DEFAULT_NETWORK_INTERFACE_ID,
527 GemportId: int32(gemPortId),
528 Classifier: classifierProto,
529 Action: actionProto,
530 Priority: int32(logicalFlow.Priority),
531 Cookie: logicalFlow.Cookie,
532 PortNo: portNo}
533 if ok := f.addFlowToDevice(&downstreamFlow); ok {
534 log.Debug("EAPOL DL flow added to device successfully")
535 flowsToKVStore := f.getUpdatedFlowInfo(&downstreamFlow, flowStoreCookie, "")
536 if err := f.updateFlowInfoToKVStore(downstreamFlow.AccessIntfId,
537 downstreamFlow.OnuId,
538 downstreamFlow.UniId,
539 downstreamFlow.FlowId, flowsToKVStore); err != nil {
540 log.Errorw("Error uploading EAPOL DL flow into KV store", log.Fields{"flow": upstreamFlow, "error": err})
541 return
542 }
543 }
544 } else {
545 log.Infow("EAPOL flow with non-default mgmt vlan is not supported", log.Fields{"vlanId": vlanId})
546 return
547 }
548 log.Debugw("Added EAPOL flows to device successfully", log.Fields{"flow": logicalFlow})
549}
550
551func makeOpenOltClassifierField(classifierInfo map[string]interface{}) *openolt_pb2.Classifier {
552 var classifier openolt_pb2.Classifier
553 if etherType, ok := classifierInfo[ETH_TYPE]; ok {
554 classifier.EthType = etherType.(uint32)
555 }
556 if ipProto, ok := classifierInfo[IP_PROTO]; ok {
557 classifier.IpProto = ipProto.(uint32)
558 }
559 if vlanId, ok := classifierInfo[VLAN_VID]; ok {
560 classifier.OVid = vlanId.(uint32)
561 }
Manikkaraj k884c1242019-04-11 16:26:42 +0530562 if metadata, ok := classifierInfo[METADATA]; ok { // TODO: Revisit
563 classifier.IVid = uint32(metadata.(uint64))
manikkaraj kbf256be2019-03-25 00:13:48 +0530564 }
565 if vlanPcp, ok := classifierInfo[VLAN_PCP]; ok {
566 classifier.OPbits = vlanPcp.(uint32)
567 }
568 if udpSrc, ok := classifierInfo[UDP_SRC]; ok {
569 classifier.SrcPort = udpSrc.(uint32)
570 }
571 if udpDst, ok := classifierInfo[UDP_DST]; ok {
572 classifier.DstPort = udpDst.(uint32)
573 }
574 if ipv4Dst, ok := classifierInfo[IPV4_DST]; ok {
575 classifier.DstIp = ipv4Dst.(uint32)
576 }
577 if ipv4Src, ok := classifierInfo[IPV4_SRC]; ok {
578 classifier.SrcIp = ipv4Src.(uint32)
579 }
580 if pktTagType, ok := classifierInfo[PACKET_TAG_TYPE]; ok {
581 if pktTagType.(string) == SINGLE_TAG {
582 classifier.PktTagType = SINGLE_TAG
583 } else if pktTagType.(string) == DOUBLE_TAG {
584 classifier.PktTagType = DOUBLE_TAG
585 } else if pktTagType.(string) == UNTAGGED {
586 classifier.PktTagType = UNTAGGED
587 } else {
588 log.Error("Invalid tag type in classifier") // should not hit
589 return nil
590 }
591 }
592 return &classifier
593}
594
595func makeOpenOltActionField(actionInfo map[string]interface{}) *openolt_pb2.Action {
596 var actionCmd openolt_pb2.ActionCmd
597 var action openolt_pb2.Action
598 action.Cmd = &actionCmd
599 if _, ok := actionInfo[POP_VLAN]; ok {
600 action.OVid = actionInfo[VLAN_VID].(uint32)
601 action.Cmd.RemoveOuterTag = true
602 } else if _, ok := actionInfo[PUSH_VLAN]; ok {
603 action.OVid = actionInfo[VLAN_VID].(uint32)
604 action.Cmd.AddOuterTag = true
605 } else if _, ok := actionInfo[TRAP_TO_HOST]; ok {
606 action.Cmd.TrapToHost = actionInfo[TRAP_TO_HOST].(bool)
607 } else {
608 log.Errorw("Invalid-action-field", log.Fields{"action": actionInfo})
609 return nil
610 }
611 return &action
612}
613
614func (f *OpenOltFlowMgr) getTPpath(intfId uint32, uni string) string {
615 /*
616 FIXME
617 Should get Table id form the flow, as of now hardcoded to DEFAULT_TECH_PROFILE_TABLE_ID (64)
618 'tp_path' contains the suffix part of the tech_profile_instance path. The prefix to the 'tp_path' should be set to
619 TechProfile.KV_STORE_TECH_PROFILE_PATH_PREFIX by the ONU adapter.
620 */
621 return f.techprofile[intfId].GetTechProfileInstanceKVPath(tp.DEFAULT_TECH_PROFILE_TABLE_ID, uni)
622}
623
624func getFlowStoreCookie(classifier map[string]interface{}, gemPortId uint32) uint64 {
625 if len(classifier) == 0 { // should never happen
626 log.Error("Invalid classfier object")
627 return 0
628 }
629 var jsonData []byte
630 var flowString string
631 var err error
632 // TODO: Do we need to marshall ??
633 if jsonData, err = json.Marshal(classifier); err != nil {
634 log.Error("Failed to encode classifier")
635 return 0
636 }
637 flowString = string(jsonData)
638 if gemPortId != 0 {
639 flowString = fmt.Sprintf("%s%s", string(jsonData), string(gemPortId))
640 }
641 h := md5.New()
642 h.Write([]byte(flowString))
643 hash := big.NewInt(0)
644 hash.SetBytes(h.Sum(nil))
645 return hash.Uint64()
646}
647
manikkaraj k17652a72019-05-06 09:06:36 -0400648func (f *OpenOltFlowMgr) getUpdatedFlowInfo(flow *openolt_pb2.Flow, flowStoreCookie uint64, flowCategory string) *[]rsrcMgr.FlowInfo {
649 var flows []rsrcMgr.FlowInfo = []rsrcMgr.FlowInfo{rsrcMgr.FlowInfo{Flow: flow, FlowCategory: flowCategory, FlowStoreCookie: flowStoreCookie}}
650 // Get existing flow for flowid for given subscriber from KV store
651 existingFlows := f.resourceMgr.GetFlowIDInfo(uint32(flow.AccessIntfId), uint32(flow.OnuId), uint32(flow.UniId), flow.FlowId)
652 if existingFlows != nil {
653 log.Debugw("Flow exists for given flowID, appending it to current flow", log.Fields{"flowID": flow.FlowId})
654 for _, f := range *existingFlows {
655 flows = append(flows, f)
656 }
657 }
658 log.Debugw("Updated flows for given flowID and onuid", log.Fields{"updatedflow": flows, "flowid": flow.FlowId, "onu": flow.OnuId})
manikkaraj kbf256be2019-03-25 00:13:48 +0530659 return &flows
660}
661
manikkaraj k17652a72019-05-06 09:06:36 -0400662func (f *OpenOltFlowMgr) updateFlowInfoToKVStore(intfId int32, onuId int32, uniId int32, flowId uint32, flows *[]rsrcMgr.FlowInfo) error {
663 log.Debugw("Storing flow(s) into KV store", log.Fields{"flows": *flows})
664 if err := f.resourceMgr.UpdateFlowIDInfo(intfId, onuId, uniId, flowId, flows); err != nil {
665 log.Debug("Error while Storing flow into KV store")
666 return err
667 }
668 log.Info("Stored flow(s) into KV store successfully!")
manikkaraj kbf256be2019-03-25 00:13:48 +0530669 return nil
670}
671
672func (f *OpenOltFlowMgr) addFlowToDevice(deviceFlow *openolt_pb2.Flow) bool {
673 log.Debugw("Sending flow to device via grpc", log.Fields{"flow": *deviceFlow})
674 _, err := f.deviceHandler.Client.FlowAdd(context.Background(), deviceFlow)
675 if err != nil {
676 log.Errorw("Failed to Add flow to device", log.Fields{"err": err, "deviceFlow": deviceFlow})
677 return false
678 }
679 log.Debugw("Flow added to device successfuly ", log.Fields{"flow": *deviceFlow})
680 return true
681}
682
683/*func register_flow(deviceFlow *openolt_pb2.Flow, logicalFlow *ofp.OfpFlowStats){
684 //update core flows_proxy : flows_proxy.update('/', flows)
685}
686
687func generateStoredId(flowId uint32, direction string)uint32{
688
689 if direction == UPSTREAM{
690 log.Debug("Upstream flow shifting flowid")
691 return ((0x1 << 15) | flowId)
692 }else if direction == DOWNSTREAM{
693 log.Debug("Downstream flow not shifting flowid")
694 return flowId
695 }else{
696 log.Errorw("Unrecognized direction",log.Fields{"direction": direction})
697 return flowId
698 }
699}
700
701*/
702
703func addLLDPFlow(flow *ofp.OfpFlowStats, portNo uint32) {
704 log.Info("Unimplemented")
705}
706func getUniPortPath(intfId uint32, onuId uint32, uniId uint32) string {
707 return fmt.Sprintf("pon-{%d}/onu-{%d}/uni-{%d}", intfId, onuId, uniId)
708}
709
Manikkaraj k884c1242019-04-11 16:26:42 +0530710func (f *OpenOltFlowMgr) getOnuChildDevice(intfId uint32, onuId uint32) (*voltha.Device, error) {
711 log.Debugw("GetChildDevice", log.Fields{"pon port": intfId, "onuId": onuId})
712 //parentPortNo := IntfIdToPortNo(intfId, voltha.Port_PON_OLT)
713 parentPortNo := intfId
714 onuDevice := f.deviceHandler.GetChildDevice(parentPortNo, onuId)
715 if onuDevice == nil {
716 log.Errorw("onu not found", log.Fields{"intfId": parentPortNo, "onuId": onuId})
717 return nil, errors.New("onu not found")
manikkaraj kbf256be2019-03-25 00:13:48 +0530718 }
Manikkaraj k884c1242019-04-11 16:26:42 +0530719 log.Debugw("Successfully received child device from core", log.Fields{"child_device": *onuDevice})
720 return onuDevice, nil
manikkaraj kbf256be2019-03-25 00:13:48 +0530721}
722
723func findNextFlow(flow *ofp.OfpFlowStats) *ofp.OfpFlowStats {
724 log.Info("Unimplemented")
725 return nil
726}
727
728func getSubscriberVlan(inPort uint32) uint32 {
729 /* For EAPOL case we will use default VLAN , so will implement later if required */
730 log.Info("Unimplemented")
731 return 0
732}
733
734func (f *OpenOltFlowMgr) clear_flows_and_scheduler_for_logical_port(childDevice *voltha.Device, logicalPort *voltha.LogicalPort) {
735 log.Info("Unimplemented")
736}
737
738func (f *OpenOltFlowMgr) AddFlow(flow *ofp.OfpFlowStats) {
739 classifierInfo := make(map[string]interface{}, 0)
740 actionInfo := make(map[string]interface{}, 0)
741 log.Debug("Adding Flow", log.Fields{"flow": flow})
742 for _, field := range fd.GetOfbFields(flow) {
743 if field.Type == fd.ETH_TYPE {
744 classifierInfo[ETH_TYPE] = field.GetEthType()
745 log.Debug("field-type-eth-type", log.Fields{"classifierInfo[ETH_TYPE]": classifierInfo[ETH_TYPE].(uint32)})
746 } else if field.Type == fd.IP_PROTO {
747 classifierInfo[IP_PROTO] = field.GetIpProto()
748 log.Debug("field-type-ip-proto", log.Fields{"classifierInfo[IP_PROTO]": classifierInfo[IP_PROTO].(uint32)})
749 } else if field.Type == fd.IN_PORT {
750 classifierInfo[IN_PORT] = field.GetPort()
751 log.Debug("field-type-in-port", log.Fields{"classifierInfo[IN_PORT]": classifierInfo[IN_PORT].(uint32)})
752 } else if field.Type == fd.VLAN_VID {
753 classifierInfo[VLAN_VID] = field.GetVlanVid()
754 log.Debug("field-type-vlan-vid", log.Fields{"classifierInfo[VLAN_VID]": classifierInfo[VLAN_VID].(uint32)})
755 } else if field.Type == fd.VLAN_PCP {
756 classifierInfo[VLAN_PCP] = field.GetVlanPcp()
757 log.Debug("field-type-vlan-pcp", log.Fields{"classifierInfo[VLAN_PCP]": classifierInfo[VLAN_PCP].(uint32)})
758 } else if field.Type == fd.UDP_DST {
759 classifierInfo[UDP_DST] = field.GetUdpDst()
760 log.Debug("field-type-udp-dst", log.Fields{"classifierInfo[UDP_DST]": classifierInfo[UDP_DST].(uint32)})
761 } else if field.Type == fd.UDP_SRC {
762 classifierInfo[UDP_SRC] = field.GetUdpSrc()
763 log.Debug("field-type-udp-src", log.Fields{"classifierInfo[UDP_SRC]": classifierInfo[UDP_SRC].(uint32)})
764 } else if field.Type == fd.IPV4_DST {
765 classifierInfo[IPV4_DST] = field.GetIpv4Dst()
766 log.Debug("field-type-ipv4-dst", log.Fields{"classifierInfo[IPV4_DST]": classifierInfo[IPV4_DST].(uint32)})
767 } else if field.Type == fd.IPV4_SRC {
768 classifierInfo[IPV4_SRC] = field.GetIpv4Src()
769 log.Debug("field-type-ipv4-src", log.Fields{"classifierInfo[IPV4_SRC]": classifierInfo[IPV4_SRC].(uint32)})
770 } else if field.Type == fd.METADATA {
771 classifierInfo[METADATA] = field.GetTableMetadata()
772 log.Debug("field-type-metadata", log.Fields{"classifierInfo[METADATA]": classifierInfo[METADATA].(uint64)})
manikkaraj k17652a72019-05-06 09:06:36 -0400773 } else if field.Type == fd.TUNNEL_ID {
774 classifierInfo[TUNNEL_ID] = field.GetTunnelId()
775 log.Debug("field-type-tunnelId", log.Fields{"classifierInfo[TUNNEL_ID]": classifierInfo[TUNNEL_ID].(uint64)})
manikkaraj kbf256be2019-03-25 00:13:48 +0530776 } else {
777 log.Errorw("Un supported field type", log.Fields{"type": field.Type})
778 return
779 }
780 }
781 for _, action := range fd.GetActions(flow) {
782 if action.Type == fd.OUTPUT {
783 if out := action.GetOutput(); out != nil {
784 actionInfo[OUTPUT] = out.GetPort()
785 log.Debugw("action-type-output", log.Fields{"out_port": actionInfo[OUTPUT].(uint32)})
786 } else {
787 log.Error("Invalid output port in action")
788 return
789 }
790 } else if action.Type == fd.POP_VLAN {
manikkaraj kbf256be2019-03-25 00:13:48 +0530791 actionInfo[POP_VLAN] = true
792 log.Debugw("action-type-pop-vlan", log.Fields{"in_port": classifierInfo[IN_PORT].(uint32)})
793 } else if action.Type == fd.PUSH_VLAN {
794 if out := action.GetPush(); out != nil {
795 if tpid := out.GetEthertype(); tpid != 0x8100 {
796 log.Errorw("Invalid ethertype in push action", log.Fields{"ethertype": actionInfo[PUSH_VLAN].(int32)})
797 } else {
798 actionInfo[PUSH_VLAN] = true
799 actionInfo[TPID] = tpid
800 log.Debugw("action-type-push-vlan",
801 log.Fields{"push_tpid": actionInfo[TPID].(uint32), "in_port": classifierInfo[IN_PORT].(uint32)})
802 }
803 }
804 } else if action.Type == fd.SET_FIELD {
805 if out := action.GetSetField(); out != nil {
806 if field := out.GetField(); field != nil {
807 if ofClass := field.GetOxmClass(); ofClass != ofp.OfpOxmClass_OFPXMC_OPENFLOW_BASIC {
808 log.Errorw("Invalid openflow class", log.Fields{"class": ofClass})
809 return
810 }
811 /*log.Debugw("action-type-set-field",log.Fields{"field": field, "in_port": classifierInfo[IN_PORT].(uint32)})*/
812 if ofbField := field.GetOfbField(); ofbField != nil {
813 if fieldtype := ofbField.GetType(); fieldtype == ofp.OxmOfbFieldTypes_OFPXMT_OFB_VLAN_VID {
814 if vlan := ofbField.GetVlanVid(); vlan != 0 {
815 actionInfo[VLAN_VID] = vlan & 0xfff
816 log.Debugw("action-set-vlan-vid", log.Fields{"actionInfo[VLAN_VID]": actionInfo[VLAN_VID].(uint32)})
817 } else {
818 log.Error("No Invalid vlan id in set vlan-vid action")
819 }
820 } else {
821 log.Errorw("unsupported-action-set-field-type", log.Fields{"type": fieldtype})
822 }
823 }
824 }
825 }
826 } else {
827 log.Errorw("Un supported action type", log.Fields{"type": action.Type})
828 return
829 }
830 }
manikkaraj k17652a72019-05-06 09:06:36 -0400831 /* Controller bound trap flows */
832 if isControllerFlow := IsControllerBoundFlow(actionInfo[OUTPUT].(uint32)); isControllerFlow {
833 log.Debug("Controller bound trap flows, getting inport from tunnelid")
834 /* Get UNI port/ IN Port from tunnel ID field for upstream controller bound flows */
835 if portType := IntfIdToPortTypeName(classifierInfo[IN_PORT].(uint32)); portType == voltha.Port_PON_OLT {
836 if uniPort := fd.GetChildPortFromTunnelId(flow); uniPort != 0 {
837 classifierInfo[IN_PORT] = uniPort
838 log.Debugw("upstream pon-to-controller-flow,inport-in-tunnelid", log.Fields{"newInPort": classifierInfo[IN_PORT].(uint32), "outPort": actionInfo[OUTPUT].(uint32)})
manikkaraj kbf256be2019-03-25 00:13:48 +0530839 } else {
manikkaraj k17652a72019-05-06 09:06:36 -0400840 log.Error("upstream pon-to-controller-flow, NO-inport-in-tunnelid")
841 return
manikkaraj kbf256be2019-03-25 00:13:48 +0530842 }
843 }
manikkaraj k17652a72019-05-06 09:06:36 -0400844 } else {
845 log.Debug("Non-Controller flows, getting uniport from tunnelid")
846 // Downstream flow from NNI to PON port , Use tunnel ID as new OUT port / UNI port
847 if portType := IntfIdToPortTypeName(actionInfo[OUTPUT].(uint32)); portType == voltha.Port_PON_OLT {
848 if uniPort := fd.GetChildPortFromTunnelId(flow); uniPort != 0 {
849 actionInfo[OUTPUT] = uniPort
850 log.Debugw("downstream-nni-to-pon-port-flow, outport-in-tunnelid", log.Fields{"newOutPort": actionInfo[OUTPUT].(uint32), "outPort": actionInfo[OUTPUT].(uint32)})
851 } else {
852 log.Debug("downstream-nni-to-pon-port-flow, no-outport-in-tunnelid", log.Fields{"InPort": classifierInfo[IN_PORT].(uint32), "outPort": actionInfo[OUTPUT].(uint32)})
853 return
854 }
855 // Upstream flow from PON to NNI port , Use tunnel ID as new IN port / UNI port
856 } else if portType := IntfIdToPortTypeName(classifierInfo[IN_PORT].(uint32)); portType == voltha.Port_PON_OLT {
857 if uniPort := fd.GetChildPortFromTunnelId(flow); uniPort != 0 {
858 classifierInfo[IN_PORT] = uniPort
859 log.Debugw("upstream-pon-to-nni-port-flow, inport-in-tunnelid", log.Fields{"newInPort": actionInfo[OUTPUT].(uint32),
860 "outport": actionInfo[OUTPUT].(uint32)})
861 } else {
862 log.Debug("upstream-pon-to-nni-port-flow, no-inport-in-tunnelid", log.Fields{"InPort": classifierInfo[IN_PORT].(uint32),
863 "outPort": actionInfo[OUTPUT].(uint32)})
864 return
865 }
866 }
867 }
manikkaraj kbf256be2019-03-25 00:13:48 +0530868 log.Infow("Flow ports", log.Fields{"classifierInfo_inport": classifierInfo[IN_PORT], "action_output": actionInfo[OUTPUT]})
869 portNo, intfId, onuId, uniId := ExtractAccessFromFlow(classifierInfo[IN_PORT].(uint32), actionInfo[OUTPUT].(uint32))
870 f.divideAndAddFlow(intfId, onuId, uniId, portNo, classifierInfo, actionInfo, flow)
871}
872
Manikkaraj k884c1242019-04-11 16:26:42 +0530873func (f *OpenOltFlowMgr) sendTPDownloadMsgToChild(intfId uint32, onuId uint32, uniId uint32, uni string) error {
manikkaraj kbf256be2019-03-25 00:13:48 +0530874
Manikkaraj k884c1242019-04-11 16:26:42 +0530875 onuDevice, err := f.getOnuChildDevice(intfId, onuId)
876 if err != nil {
877 log.Errorw("Error while fetching Child device from core", log.Fields{"onuId": onuId})
878 return err
manikkaraj kbf256be2019-03-25 00:13:48 +0530879 }
Manikkaraj k884c1242019-04-11 16:26:42 +0530880 log.Debugw("Got child device from OLT device handler", log.Fields{"device": *onuDevice})
manikkaraj k17652a72019-05-06 09:06:36 -0400881
882 tpPath := f.getTPpath(intfId, uni)
883 tpDownloadMsg := &ic.InterAdapterTechProfileDownloadMessage{UniId: uniId, Path: tpPath}
884 log.Infow("Sending Load-tech-profile-request-to-brcm-onu-adapter", log.Fields{"msg": *tpDownloadMsg})
885 sendErr := f.deviceHandler.AdapterProxy.SendInterAdapterMessage(context.Background(),
886 tpDownloadMsg,
887 ic.InterAdapterMessageType_TECH_PROFILE_DOWNLOAD_REQUEST,
888 f.deviceHandler.deviceType,
889 onuDevice.Type,
890 onuDevice.Id,
891 onuDevice.ProxyAddress.DeviceId, "")
892 if sendErr != nil {
893 log.Errorw("send techprofile-download request error", log.Fields{"fromAdapter": f.deviceHandler.deviceType,
894 "toAdapter": onuDevice.Type, "onuId": onuDevice.Id,
895 "proxyDeviceId": onuDevice.ProxyAddress.DeviceId})
896 return sendErr
897 }
898 log.Debugw("success Sending Load-tech-profile-request-to-brcm-onu-adapter", log.Fields{"msg": tpDownloadMsg})
Manikkaraj k884c1242019-04-11 16:26:42 +0530899 return nil
manikkaraj kbf256be2019-03-25 00:13:48 +0530900}