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03:53
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build.main.Main.on_link_up()   A

Complexity

Conditions 1

Size

Total Lines 4
Code Lines 3

Duplication

Lines 0
Ratio 0 %

Code Coverage

Tests 2
CRAP Score 1.037

Importance

Changes 0
Metric Value
cc 1
eloc 3
nop 2
dl 0
loc 4
ccs 2
cts 3
cp 0.6667
crap 1.037
rs 10
c 0
b 0
f 0
1
# pylint: disable=protected-access, too-many-lines
2
"""Main module of kytos/mef_eline Kytos Network Application.
3
4
NApp to provision circuits from user request.
5
"""
6 1
import pathlib
7 1
import time
8 1
import traceback
9 1
from collections import defaultdict
10 1
from threading import Lock
11 1
from typing import Optional
12
13 1
from pydantic import ValidationError
14
15 1
from kytos.core import KytosNApp, log, rest
16 1
from kytos.core.events import KytosEvent
17 1
from kytos.core.exceptions import KytosTagError
18 1
from kytos.core.helpers import (alisten_to, listen_to, load_spec, now,
19
                                validate_openapi)
20 1
from kytos.core.interface import TAG, UNI, TAGRange
21 1
from kytos.core.link import Link
22 1
from kytos.core.rest_api import (HTTPException, JSONResponse, Request,
23
                                 get_json_or_400)
24 1
from kytos.core.tag_ranges import get_tag_ranges
25 1
from napps.kytos.mef_eline import controllers, settings
26 1
from napps.kytos.mef_eline.exceptions import (DisabledSwitch,
27
                                              DuplicatedNoTagUNI, InvalidPath)
28 1
from napps.kytos.mef_eline.models import (EVC, DynamicPathManager, EVCDeploy,
29
                                          Path)
30 1
from napps.kytos.mef_eline.scheduler import CircuitSchedule, Scheduler
31 1
from napps.kytos.mef_eline.utils import (aemit_event, check_disabled_component,
32
                                         emit_event, get_vlan_tags_and_masks,
33
                                         map_evc_event_content)
34
35
36
# pylint: disable=too-many-public-methods
37 1
class Main(KytosNApp):
38
    """Main class of amlight/mef_eline NApp.
39
40
    This class is the entry point for this napp.
41
    """
42
43 1
    spec = load_spec(pathlib.Path(__file__).parent / "openapi.yml")
44
45 1
    def setup(self):
46
        """Replace the '__init__' method for the KytosNApp subclass.
47
48
        The setup method is automatically called by the controller when your
49
        application is loaded.
50
51
        So, if you have any setup routine, insert it here.
52
        """
53
        # object used to scheduler circuit events
54 1
        self.sched = Scheduler()
55
56
        # object to save and load circuits
57 1
        self.mongo_controller = self.get_eline_controller()
58 1
        self.mongo_controller.bootstrap_indexes()
59
60
        # set the controller that will manager the dynamic paths
61 1
        DynamicPathManager.set_controller(self.controller)
62
63
        # dictionary of EVCs created. It acts as a circuit buffer.
64
        # Every create/update/delete must be synced to mongodb.
65 1
        self.circuits = {}
66
67 1
        self._intf_events = defaultdict(dict)
68 1
        self._lock_interfaces = defaultdict(Lock)
69 1
        self.table_group = {"epl": 0, "evpl": 0}
70 1
        self._lock = Lock()
71 1
        self.execute_as_loop(settings.DEPLOY_EVCS_INTERVAL)
72
73 1
        self.load_all_evcs()
74 1
        self._topology_updated_at = None
75
76 1
    def get_evcs_by_svc_level(self, enable_filter: bool = True) -> list:
77
        """Get circuits sorted by desc service level and asc creation_time.
78
79
        In the future, as more ops are offloaded it should be get from the DB.
80
        """
81 1
        if enable_filter:
82 1
            return sorted(
83
                          [circuit for circuit in self.circuits.values()
84
                           if circuit.is_enabled()],
85
                          key=lambda x: (-x.service_level, x.creation_time),
86
            )
87 1
        return sorted(self.circuits.values(),
88
                      key=lambda x: (-x.service_level, x.creation_time))
89
90 1
    @staticmethod
91 1
    def get_eline_controller():
92
        """Return the ELineController instance."""
93
        return controllers.ELineController()
94
95 1
    def execute(self):
96
        """Execute once when the napp is running."""
97 1
        if self._lock.locked():
98 1
            return
99 1
        log.debug("Starting consistency routine")
100 1
        with self._lock:
101 1
            self.execute_consistency()
102 1
        log.debug("Finished consistency routine")
103
104 1
    def should_be_checked(self, circuit):
105
        "Verify if the circuit meets the necessary conditions to be checked"
106
        # pylint: disable=too-many-boolean-expressions
107 1
        if (
108
                circuit.is_enabled()
109
                and not circuit.is_active()
110
                and not circuit.lock.locked()
111
                and not circuit.has_recent_removed_flow()
112
                and not circuit.is_recent_updated()
113
                and circuit.are_unis_active(self.controller.switches)
114
                # if a inter-switch EVC does not have current_path, it does not
115
                # make sense to run sdntrace on it
116
                and (circuit.is_intra_switch() or circuit.current_path)
117
                ):
118 1
            return True
119
        return False
120
121 1
    def execute_consistency(self):
122
        """Execute consistency routine."""
123 1
        circuits_to_check = []
124 1
        stored_circuits = self.mongo_controller.get_circuits()['circuits']
125 1
        for circuit in self.get_evcs_by_svc_level(enable_filter=False):
126 1
            stored_circuits.pop(circuit.id, None)
127 1
            if self.should_be_checked(circuit):
128 1
                circuits_to_check.append(circuit)
129 1
            circuit.try_setup_failover_path()
130 1
        circuits_checked = EVCDeploy.check_list_traces(circuits_to_check)
131 1
        for circuit in circuits_to_check:
132 1
            is_checked = circuits_checked.get(circuit.id)
133 1
            if is_checked:
134 1
                circuit.execution_rounds = 0
135 1
                log.info(f"{circuit} enabled but inactive - activating")
136 1
                with circuit.lock:
137 1
                    circuit.activate()
138 1
                    circuit.sync()
139
            else:
140 1
                circuit.execution_rounds += 1
141 1
                if circuit.execution_rounds > settings.WAIT_FOR_OLD_PATH:
142 1
                    log.info(f"{circuit} enabled but inactive - redeploy")
143 1
                    with circuit.lock:
144 1
                        circuit.deploy()
145
146 1
    def shutdown(self):
147
        """Execute when your napp is unloaded.
148
149
        If you have some cleanup procedure, insert it here.
150
        """
151
152 1
    @rest("/v2/evc/", methods=["GET"])
153 1
    def list_circuits(self, request: Request) -> JSONResponse:
154
        """Endpoint to return circuits stored.
155
156
        archive query arg if defined (not null) will be filtered
157
        accordingly, by default only non archived evcs will be listed
158
        """
159 1
        log.debug("list_circuits /v2/evc")
160 1
        args = request.query_params
161 1
        archived = args.get("archived", "false").lower()
162 1
        args = {k: v for k, v in args.items() if k not in {"archived"}}
163 1
        circuits = self.mongo_controller.get_circuits(archived=archived,
164
                                                      metadata=args)
165 1
        circuits = circuits['circuits']
166 1
        return JSONResponse(circuits)
167
168 1
    @rest("/v2/evc/schedule", methods=["GET"])
169 1
    def list_schedules(self, _request: Request) -> JSONResponse:
170
        """Endpoint to return all schedules stored for all circuits.
171
172
        Return a JSON with the following template:
173
        [{"schedule_id": <schedule_id>,
174
         "circuit_id": <circuit_id>,
175
         "schedule": <schedule object>}]
176
        """
177 1
        log.debug("list_schedules /v2/evc/schedule")
178 1
        circuits = self.mongo_controller.get_circuits()['circuits'].values()
179 1
        if not circuits:
180 1
            result = {}
181 1
            status = 200
182 1
            return JSONResponse(result, status_code=status)
183
184 1
        result = []
185 1
        status = 200
186 1
        for circuit in circuits:
187 1
            circuit_scheduler = circuit.get("circuit_scheduler")
188 1
            if circuit_scheduler:
189 1
                for scheduler in circuit_scheduler:
190 1
                    value = {
191
                        "schedule_id": scheduler.get("id"),
192
                        "circuit_id": circuit.get("id"),
193
                        "schedule": scheduler,
194
                    }
195 1
                    result.append(value)
196
197 1
        log.debug("list_schedules result %s %s", result, status)
198 1
        return JSONResponse(result, status_code=status)
199
200 1
    @rest("/v2/evc/{circuit_id}", methods=["GET"])
201 1
    def get_circuit(self, request: Request) -> JSONResponse:
202
        """Endpoint to return a circuit based on id."""
203 1
        circuit_id = request.path_params["circuit_id"]
204 1
        log.debug("get_circuit /v2/evc/%s", circuit_id)
205 1
        circuit = self.mongo_controller.get_circuit(circuit_id)
206 1
        if not circuit:
207 1
            result = f"circuit_id {circuit_id} not found"
208 1
            log.debug("get_circuit result %s %s", result, 404)
209 1
            raise HTTPException(404, detail=result)
210 1
        status = 200
211 1
        log.debug("get_circuit result %s %s", circuit, status)
212 1
        return JSONResponse(circuit, status_code=status)
213
214
    # pylint: disable=too-many-branches, too-many-statements
215 1
    @rest("/v2/evc/", methods=["POST"])
216 1
    @validate_openapi(spec)
217 1
    def create_circuit(self, request: Request) -> JSONResponse:
218
        """Try to create a new circuit.
219
220
        Firstly, for EVPL: E-Line NApp verifies if UNI_A's requested C-VID and
221
        UNI_Z's requested C-VID are available from the interfaces' pools. This
222
        is checked when creating the UNI object.
223
224
        Then, E-Line NApp requests a primary and a backup path to the
225
        Pathfinder NApp using the attributes primary_links and backup_links
226
        submitted via REST
227
228
        # For each link composing paths in #3:
229
        #  - E-Line NApp requests a S-VID available from the link VLAN pool.
230
        #  - Using the S-VID obtained, generate abstract flow entries to be
231
        #    sent to FlowManager
232
233
        Push abstract flow entries to FlowManager and FlowManager pushes
234
        OpenFlow entries to datapaths
235
236
        E-Line NApp generates an event to notify all Kytos NApps of a new EVC
237
        creation
238
239
        Finnaly, notify user of the status of its request.
240
        """
241
        # Try to create the circuit object
242 1
        log.debug("create_circuit /v2/evc/")
243 1
        data = get_json_or_400(request, self.controller.loop)
244
245 1
        try:
246 1
            evc = self._evc_from_dict(data)
247 1
        except (ValueError, KytosTagError) as exception:
248 1
            log.debug("create_circuit result %s %s", exception, 400)
249 1
            raise HTTPException(400, detail=str(exception)) from exception
250 1
        try:
251 1
            check_disabled_component(evc.uni_a, evc.uni_z)
252 1
        except DisabledSwitch as exception:
253 1
            log.debug("create_circuit result %s %s", exception, 409)
254 1
            raise HTTPException(
255
                    409,
256
                    detail=f"Path is not valid: {exception}"
257
                ) from exception
258
259 1
        if evc.primary_path:
260 1
            try:
261 1
                evc.primary_path.is_valid(
262
                    evc.uni_a.interface.switch,
263
                    evc.uni_z.interface.switch,
264
                    bool(evc.circuit_scheduler),
265
                )
266 1
            except InvalidPath as exception:
267 1
                raise HTTPException(
268
                    400,
269
                    detail=f"primary_path is not valid: {exception}"
270
                ) from exception
271 1
        if evc.backup_path:
272 1
            try:
273 1
                evc.backup_path.is_valid(
274
                    evc.uni_a.interface.switch,
275
                    evc.uni_z.interface.switch,
276
                    bool(evc.circuit_scheduler),
277
                )
278 1
            except InvalidPath as exception:
279 1
                raise HTTPException(
280
                    400,
281
                    detail=f"backup_path is not valid: {exception}"
282
                ) from exception
283
284 1
        if not evc._tag_lists_equal():
285 1
            detail = "UNI_A and UNI_Z tag lists should be the same."
286 1
            raise HTTPException(400, detail=detail)
287
288 1
        try:
289 1
            evc._validate_has_primary_or_dynamic()
290 1
        except ValueError as exception:
291 1
            raise HTTPException(400, detail=str(exception)) from exception
292
293 1
        try:
294 1
            self._check_no_tag_duplication(evc.id, evc.uni_a, evc.uni_z)
295
        except DuplicatedNoTagUNI as exception:
296
            log.debug("create_circuit result %s %s", exception, 409)
297
            raise HTTPException(409, detail=str(exception)) from exception
298
299 1
        try:
300 1
            self._use_uni_tags(evc)
301 1
        except KytosTagError as exception:
302 1
            raise HTTPException(400, detail=str(exception)) from exception
303
304
        # save circuit
305 1
        try:
306 1
            evc.sync()
307
        except ValidationError as exception:
308
            raise HTTPException(400, detail=str(exception)) from exception
309
310
        # store circuit in dictionary
311 1
        self.circuits[evc.id] = evc
312
313
        # Schedule the circuit deploy
314 1
        self.sched.add(evc)
315
316
        # Circuit has no schedule, deploy now
317 1
        if not evc.circuit_scheduler:
318 1
            with evc.lock:
319 1
                evc.deploy()
320
321
        # Notify users
322 1
        result = {"circuit_id": evc.id}
323 1
        status = 201
324 1
        log.debug("create_circuit result %s %s", result, status)
325 1
        emit_event(self.controller, name="created",
326
                   content=map_evc_event_content(evc))
327 1
        return JSONResponse(result, status_code=status)
328
329 1
    @staticmethod
330 1
    def _use_uni_tags(evc):
331 1
        uni_a = evc.uni_a
332 1
        evc._use_uni_vlan(uni_a)
333 1
        try:
334 1
            uni_z = evc.uni_z
335 1
            evc._use_uni_vlan(uni_z)
336 1
        except KytosTagError as err:
337 1
            evc.make_uni_vlan_available(uni_a)
338 1
            raise err
339
340 1
    @listen_to('kytos/flow_manager.flow.removed')
341 1
    def on_flow_delete(self, event):
342
        """Capture delete messages to keep track when flows got removed."""
343
        self.handle_flow_delete(event)
344
345 1
    def handle_flow_delete(self, event):
346
        """Keep track when the EVC got flows removed by deriving its cookie."""
347 1
        flow = event.content["flow"]
348 1
        evc = self.circuits.get(EVC.get_id_from_cookie(flow.cookie))
349 1
        if evc:
350 1
            log.debug("Flow removed in EVC %s", evc.id)
351 1
            evc.set_flow_removed_at()
352
353 1
    @rest("/v2/evc/{circuit_id}", methods=["PATCH"])
354 1
    @validate_openapi(spec)
355 1
    def update(self, request: Request) -> JSONResponse:
356
        """Update a circuit based on payload.
357
358
        The EVC attributes (creation_time, active, current_path,
359
        failover_path, _id, archived) can't be updated.
360
        """
361 1
        data = get_json_or_400(request, self.controller.loop)
362 1
        circuit_id = request.path_params["circuit_id"]
363 1
        log.debug("update /v2/evc/%s", circuit_id)
364 1
        try:
365 1
            evc = self.circuits[circuit_id]
366 1
        except KeyError:
367 1
            result = f"circuit_id {circuit_id} not found"
368 1
            log.debug("update result %s %s", result, 404)
369 1
            raise HTTPException(404, detail=result) from KeyError
370
371 1
        try:
372 1
            updated_data = self._evc_dict_with_instances(data)
373 1
            self._check_no_tag_duplication(
374
                circuit_id, updated_data.get("uni_a"),
375
                updated_data.get("uni_z")
376
            )
377 1
            enable, redeploy = evc.update(**updated_data)
378 1
        except (ValueError, KytosTagError, ValidationError) as exception:
379 1
            log.debug("update result %s %s", exception, 400)
380 1
            raise HTTPException(400, detail=str(exception)) from exception
381 1
        except DuplicatedNoTagUNI as exception:
382
            log.debug("update result %s %s", exception, 409)
383
            raise HTTPException(409, detail=str(exception)) from exception
384 1
        except DisabledSwitch as exception:
385 1
            log.debug("update result %s %s", exception, 409)
386 1
            raise HTTPException(
387
                    409,
388
                    detail=f"Path is not valid: {exception}"
389
                ) from exception
390
391 1
        if evc.is_active():
392
            if enable is False:  # disable if active
393
                with evc.lock:
394
                    evc.remove()
395
            elif redeploy is not None:  # redeploy if active
396
                with evc.lock:
397
                    evc.remove()
398
                    evc.deploy()
399
        else:
400 1
            if enable is True:  # enable if inactive
401 1
                with evc.lock:
402 1
                    evc.deploy()
403 1
            elif evc.is_enabled() and redeploy:
404 1
                with evc.lock:
405 1
                    evc.remove()
406 1
                    evc.deploy()
407 1
        result = {evc.id: evc.as_dict()}
408 1
        status = 200
409
410 1
        log.debug("update result %s %s", result, status)
411 1
        emit_event(self.controller, "updated",
412
                   content=map_evc_event_content(evc, **data))
413 1
        return JSONResponse(result, status_code=status)
414
415 1
    @rest("/v2/evc/{circuit_id}", methods=["DELETE"])
416 1
    def delete_circuit(self, request: Request) -> JSONResponse:
417
        """Remove a circuit.
418
419
        First, the flows are removed from the switches, and then the EVC is
420
        disabled.
421
        """
422 1
        circuit_id = request.path_params["circuit_id"]
423 1
        log.debug("delete_circuit /v2/evc/%s", circuit_id)
424 1
        try:
425 1
            evc = self.circuits.pop(circuit_id)
426 1
        except KeyError:
427 1
            result = f"circuit_id {circuit_id} not found"
428 1
            log.debug("delete_circuit result %s %s", result, 404)
429 1
            raise HTTPException(404, detail=result) from KeyError
430 1
        log.info("Removing %s", evc)
431
432 1
        with evc.lock:
433 1
            if not evc.archived:
434
                evc.remove_current_flows()
435
                evc.remove_failover_flows(sync=False)
436
                evc.deactivate()
437
                evc.disable()
438
                self.sched.remove(evc)
439
                evc.archive()
440
                evc.remove_uni_tags()
441
                evc.sync()
442
                emit_event(
443
                    self.controller, "deleted",
444
                    content=map_evc_event_content(evc)
445
                )
446
447 1
        log.info("EVC removed. %s", evc)
448 1
        result = {"response": f"Circuit {circuit_id} removed"}
449 1
        status = 200
450 1
        log.debug("delete_circuit result %s %s", result, status)
451
452 1
        return JSONResponse(result, status_code=status)
453
454 1
    @rest("/v2/evc/{circuit_id}/metadata", methods=["GET"])
455 1
    def get_metadata(self, request: Request) -> JSONResponse:
456
        """Get metadata from an EVC."""
457 1
        circuit_id = request.path_params["circuit_id"]
458 1
        try:
459 1
            return (
460
                JSONResponse({"metadata": self.circuits[circuit_id].metadata})
461
            )
462
        except KeyError as error:
463
            raise HTTPException(
464
                404,
465
                detail=f"circuit_id {circuit_id} not found."
466
            ) from error
467
468 1 View Code Duplication
    @rest("/v2/evc/metadata", methods=["POST"])
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469 1
    @validate_openapi(spec)
470 1
    def bulk_add_metadata(self, request: Request) -> JSONResponse:
471
        """Add metadata to a bulk of EVCs."""
472 1
        data = get_json_or_400(request, self.controller.loop)
473 1
        circuit_ids = data.pop("circuit_ids")
474
475 1
        self.mongo_controller.update_evcs_metadata(circuit_ids, data, "add")
476
477 1
        fail_evcs = []
478 1
        for _id in circuit_ids:
479 1
            try:
480 1
                evc = self.circuits[_id]
481 1
                evc.extend_metadata(data)
482 1
            except KeyError:
483 1
                fail_evcs.append(_id)
484
485 1
        if fail_evcs:
486 1
            raise HTTPException(404, detail=fail_evcs)
487 1
        return JSONResponse("Operation successful", status_code=201)
488
489 1
    @rest("/v2/evc/{circuit_id}/metadata", methods=["POST"])
490 1
    @validate_openapi(spec)
491 1
    def add_metadata(self, request: Request) -> JSONResponse:
492
        """Add metadata to an EVC."""
493 1
        circuit_id = request.path_params["circuit_id"]
494 1
        metadata = get_json_or_400(request, self.controller.loop)
495 1
        if not isinstance(metadata, dict):
496
            raise HTTPException(400, "Invalid metadata value: {metadata}")
497 1
        try:
498 1
            evc = self.circuits[circuit_id]
499 1
        except KeyError as error:
500 1
            raise HTTPException(
501
                404,
502
                detail=f"circuit_id {circuit_id} not found."
503
            ) from error
504
505 1
        evc.extend_metadata(metadata)
506 1
        evc.sync()
507 1
        return JSONResponse("Operation successful", status_code=201)
508
509 1 View Code Duplication
    @rest("/v2/evc/metadata/{key}", methods=["DELETE"])
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510 1
    @validate_openapi(spec)
511 1
    def bulk_delete_metadata(self, request: Request) -> JSONResponse:
512
        """Delete metada from a bulk of EVCs"""
513 1
        data = get_json_or_400(request, self.controller.loop)
514 1
        key = request.path_params["key"]
515 1
        circuit_ids = data.pop("circuit_ids")
516 1
        self.mongo_controller.update_evcs_metadata(
517
            circuit_ids, {key: ""}, "del"
518
        )
519
520 1
        fail_evcs = []
521 1
        for _id in circuit_ids:
522 1
            try:
523 1
                evc = self.circuits[_id]
524 1
                evc.remove_metadata(key)
525 1
            except KeyError:
526 1
                fail_evcs.append(_id)
527
528 1
        if fail_evcs:
529 1
            raise HTTPException(404, detail=fail_evcs)
530 1
        return JSONResponse("Operation successful")
531
532 1
    @rest("/v2/evc/{circuit_id}/metadata/{key}", methods=["DELETE"])
533 1
    def delete_metadata(self, request: Request) -> JSONResponse:
534
        """Delete metadata from an EVC."""
535 1
        circuit_id = request.path_params["circuit_id"]
536 1
        key = request.path_params["key"]
537 1
        try:
538 1
            evc = self.circuits[circuit_id]
539 1
        except KeyError as error:
540 1
            raise HTTPException(
541
                404,
542
                detail=f"circuit_id {circuit_id} not found."
543
            ) from error
544
545 1
        evc.remove_metadata(key)
546 1
        evc.sync()
547 1
        return JSONResponse("Operation successful")
548
549 1
    @rest("/v2/evc/{circuit_id}/redeploy", methods=["PATCH"])
550 1
    def redeploy(self, request: Request) -> JSONResponse:
551
        """Endpoint to force the redeployment of an EVC."""
552 1
        circuit_id = request.path_params["circuit_id"]
553 1
        log.debug("redeploy /v2/evc/%s/redeploy", circuit_id)
554 1
        try:
555 1
            evc = self.circuits[circuit_id]
556 1
        except KeyError:
557 1
            raise HTTPException(
558
                404,
559
                detail=f"circuit_id {circuit_id} not found"
560
            ) from KeyError
561 1
        if evc.is_enabled():
562 1
            with evc.lock:
563 1
                evc.remove_failover_flows(sync=False)
564 1
                evc.remove_current_flows(sync=True)
565 1
                evc.deploy()
566 1
            result = {"response": f"Circuit {circuit_id} redeploy received."}
567 1
            status = 202
568
        else:
569 1
            result = {"response": f"Circuit {circuit_id} is disabled."}
570 1
            status = 409
571
572 1
        return JSONResponse(result, status_code=status)
573
574 1
    @rest("/v2/evc/schedule/", methods=["POST"])
575 1
    @validate_openapi(spec)
576 1
    def create_schedule(self, request: Request) -> JSONResponse:
577
        """
578
        Create a new schedule for a given circuit.
579
580
        This service do no check if there are conflicts with another schedule.
581
        Payload example:
582
            {
583
              "circuit_id":"aa:bb:cc",
584
              "schedule": {
585
                "date": "2019-08-07T14:52:10.967Z",
586
                "interval": "string",
587
                "frequency": "1 * * * *",
588
                "action": "create"
589
              }
590
            }
591
        """
592 1
        log.debug("create_schedule /v2/evc/schedule/")
593 1
        data = get_json_or_400(request, self.controller.loop)
594 1
        circuit_id = data["circuit_id"]
595 1
        schedule_data = data["schedule"]
596
597
        # Get EVC from circuits buffer
598 1
        circuits = self._get_circuits_buffer()
599
600
        # get the circuit
601 1
        evc = circuits.get(circuit_id)
602
603
        # get the circuit
604 1
        if not evc:
605 1
            result = f"circuit_id {circuit_id} not found"
606 1
            log.debug("create_schedule result %s %s", result, 404)
607 1
            raise HTTPException(404, detail=result)
608
609
        # new schedule from dict
610 1
        new_schedule = CircuitSchedule.from_dict(schedule_data)
611
612
        # If there is no schedule, create the list
613 1
        if not evc.circuit_scheduler:
614 1
            evc.circuit_scheduler = []
615
616
        # Add the new schedule
617 1
        evc.circuit_scheduler.append(new_schedule)
618
619
        # Add schedule job
620 1
        self.sched.add_circuit_job(evc, new_schedule)
621
622
        # save circuit to mongodb
623 1
        evc.sync()
624
625 1
        result = new_schedule.as_dict()
626 1
        status = 201
627
628 1
        log.debug("create_schedule result %s %s", result, status)
629 1
        return JSONResponse(result, status_code=status)
630
631 1
    @rest("/v2/evc/schedule/{schedule_id}", methods=["PATCH"])
632 1
    @validate_openapi(spec)
633 1
    def update_schedule(self, request: Request) -> JSONResponse:
634
        """Update a schedule.
635
636
        Change all attributes from the given schedule from a EVC circuit.
637
        The schedule ID is preserved as default.
638
        Payload example:
639
            {
640
              "date": "2019-08-07T14:52:10.967Z",
641
              "interval": "string",
642
              "frequency": "1 * * *",
643
              "action": "create"
644
            }
645
        """
646 1
        data = get_json_or_400(request, self.controller.loop)
647 1
        schedule_id = request.path_params["schedule_id"]
648 1
        log.debug("update_schedule /v2/evc/schedule/%s", schedule_id)
649
650
        # Try to find a circuit schedule
651 1
        evc, found_schedule = self._find_evc_by_schedule_id(schedule_id)
652
653
        # Can not modify circuits deleted and archived
654 1
        if not found_schedule:
655 1
            result = f"schedule_id {schedule_id} not found"
656 1
            log.debug("update_schedule result %s %s", result, 404)
657 1
            raise HTTPException(404, detail=result)
658
659 1
        new_schedule = CircuitSchedule.from_dict(data)
660 1
        new_schedule.id = found_schedule.id
661
        # Remove the old schedule
662 1
        evc.circuit_scheduler.remove(found_schedule)
663
        # Append the modified schedule
664 1
        evc.circuit_scheduler.append(new_schedule)
665
666
        # Cancel all schedule jobs
667 1
        self.sched.cancel_job(found_schedule.id)
668
        # Add the new circuit schedule
669 1
        self.sched.add_circuit_job(evc, new_schedule)
670
        # Save EVC to mongodb
671 1
        evc.sync()
672
673 1
        result = new_schedule.as_dict()
674 1
        status = 200
675
676 1
        log.debug("update_schedule result %s %s", result, status)
677 1
        return JSONResponse(result, status_code=status)
678
679 1
    @rest("/v2/evc/schedule/{schedule_id}", methods=["DELETE"])
680 1
    def delete_schedule(self, request: Request) -> JSONResponse:
681
        """Remove a circuit schedule.
682
683
        Remove the Schedule from EVC.
684
        Remove the Schedule from cron job.
685
        Save the EVC to the Storehouse.
686
        """
687 1
        schedule_id = request.path_params["schedule_id"]
688 1
        log.debug("delete_schedule /v2/evc/schedule/%s", schedule_id)
689 1
        evc, found_schedule = self._find_evc_by_schedule_id(schedule_id)
690
691
        # Can not modify circuits deleted and archived
692 1
        if not found_schedule:
693 1
            result = f"schedule_id {schedule_id} not found"
694 1
            log.debug("delete_schedule result %s %s", result, 404)
695 1
            raise HTTPException(404, detail=result)
696
697
        # Remove the old schedule
698 1
        evc.circuit_scheduler.remove(found_schedule)
699
700
        # Cancel all schedule jobs
701 1
        self.sched.cancel_job(found_schedule.id)
702
        # Save EVC to mongodb
703 1
        evc.sync()
704
705 1
        result = "Schedule removed"
706 1
        status = 200
707
708 1
        log.debug("delete_schedule result %s %s", result, status)
709 1
        return JSONResponse(result, status_code=status)
710
711 1
    def _check_no_tag_duplication(
712
        self,
713
        evc_id: str,
714
        uni_a: Optional[UNI] = None,
715
        uni_z: Optional[UNI] = None
716
    ):
717
        """Check if the given EVC has UNIs with no tag and if these are
718
         duplicated. Raise DuplicatedNoTagUNI if duplication is found.
719
        Args:
720
            evc (dict): EVC to be analyzed.
721
        """
722
723
        # No UNIs
724 1
        if not (uni_a or uni_z):
725 1
            return
726
727 1
        if (not (uni_a and not uni_a.user_tag) and
728
                not (uni_z and not uni_z.user_tag)):
729 1
            return
730 1
        for circuit in self.circuits.copy().values():
731 1
            if (not circuit.archived and circuit._id != evc_id):
732 1
                if uni_a and uni_a.user_tag is None:
733 1
                    circuit.check_no_tag_duplicate(uni_a)
734 1
                if uni_z and uni_z.user_tag is None:
735 1
                    circuit.check_no_tag_duplicate(uni_z)
736
737 1
    @listen_to("kytos/topology.link_up")
738 1
    def on_link_up(self, event):
739
        """Change circuit when link is up or end_maintenance."""
740
        self.handle_link_up(event)
741
742 1
    def handle_link_up(self, event):
743
        """Change circuit when link is up or end_maintenance."""
744 1
        log.info("Event handle_link_up %s", event.content["link"])
745 1
        for evc in self.get_evcs_by_svc_level():
746 1
            if evc.is_enabled() and not evc.archived:
747 1
                with evc.lock:
748 1
                    evc.handle_link_up(event.content["link"])
749
750
    # Possibly replace this with interruptions?
751 1
    @listen_to(
752
        '.*.switch.interface.(link_up|link_down|created|deleted)'
753
    )
754 1
    def on_interface_link_change(self, event: KytosEvent):
755
        """
756
        Handler for interface link_up and link_down events.
757
        """
758
        self.handle_on_interface_link_change(event)
759
760 1
    def handle_on_interface_link_change(self, event: KytosEvent):
761
        """
762
        Handler to sort interface events {link_(up, down), create, deleted}
763
764
        To avoid multiple database updated (link flap):
765
        Every interface is identfied and processed in parallel.
766
        Once an interface event is received a time is started.
767
        While time is running self._intf_events will be updated.
768
        After time has passed last received event will be processed.
769
        """
770 1
        iface = event.content.get("interface")
771 1
        with self._lock_interfaces[iface.id]:
772 1
            _now = event.timestamp
773
            # Return out of order events
774 1
            if (
775
                iface.id in self._intf_events
776
                and self._intf_events[iface.id]["event"].timestamp > _now
777
            ):
778 1
                return
779 1
            self._intf_events[iface.id].update({"event": event})
780 1
            if "last_acquired" in self._intf_events[iface.id]:
781 1
                return
782 1
            self._intf_events[iface.id].update({"last_acquired": now()})
783 1
        time.sleep(settings.UNI_STATE_CHANGE_DELAY)
784 1
        with self._lock_interfaces[iface.id]:
785 1
            event = self._intf_events[iface.id]["event"]
786 1
            self._intf_events[iface.id].pop('last_acquired', None)
787 1
            _, _, event_type = event.name.rpartition('.')
788 1
            if event_type in ('link_up', 'created'):
789 1
                self.handle_interface_link_up(iface)
790 1
            elif event_type in ('link_down', 'deleted'):
791 1
                self.handle_interface_link_down(iface)
792
793 1
    def handle_interface_link_up(self, interface):
794
        """
795
        Handler for interface link_up events
796
        """
797
        for evc in self.get_evcs_by_svc_level():
798
            with evc.lock:
799
                log.info("Event handle_interface_link_up %s", interface)
800
                evc.handle_interface_link_up(
801
                    interface
802
                )
803
804 1
    def handle_interface_link_down(self, interface):
805
        """
806
        Handler for interface link_down events
807
        """
808
        log.info("Event handle_interface_link_down %s", interface)
809
        for evc in self.get_evcs_by_svc_level():
810
            with evc.lock:
811
                evc.handle_interface_link_down(
812
                    interface
813
                )
814
815 1
    @listen_to("kytos/topology.link_down", pool="dynamic_single")
816 1
    def on_link_down(self, event):
817
        """Change circuit when link is down or under_mantenance."""
818
        self.handle_link_down(event)
819
820
    # pylint: disable=too-many-branches
821
    # pylint: disable=too-many-locals
822 1
    def handle_link_down(self, event):
823
        """Change circuit when link is down or under_mantenance."""
824 1
        link = event.content["link"]
825 1
        log.info("Event handle_link_down %s", link)
826 1
        switch_flows = {}
827 1
        evcs_with_failover = []
828 1
        evcs_normal = []
829 1
        check_failover = []
830 1
        failover_event_contents = {}
831
832 1
        for evc in self.get_evcs_by_svc_level():
833 1
            with evc.lock:
834 1
                if evc.is_affected_by_link(link):
835 1
                    evc.affected_by_link_at = event.timestamp
836
                    # if there is no failover path, handles link down the
837
                    # tradditional way
838 1
                    if (
839
                        not evc.failover_path or
840
                        evc.is_failover_path_affected_by_link(link)
841
                    ):
842 1
                        evcs_normal.append(evc)
843 1
                        continue
844 1
                    try:
845 1
                        dpid_flows = evc.get_failover_flows()
846 1
                        evc.old_path = evc.current_path
847 1
                        evc.current_path = evc.failover_path
848 1
                        evc.failover_path = Path([])
849
                    # pylint: disable=broad-except
850 1
                    except Exception:
851 1
                        err = traceback.format_exc().replace("\n", ", ")
852 1
                        log.error(
853
                            "Ignore Failover path for "
854
                            f"{evc} due to error: {err}"
855
                        )
856 1
                        evcs_normal.append(evc)
857 1
                        continue
858 1
                    for dpid, flows in dpid_flows.items():
859 1
                        switch_flows.setdefault(dpid, [])
860 1
                        switch_flows[dpid].extend(flows)
861 1
                    evcs_with_failover.append(evc)
862 1
                    failover_event_contents[evc.id] = map_evc_event_content(
863
                        evc,
864
                        flows={k: v.copy() for k, v in switch_flows.items()}
865
                    )
866 1
                elif evc.is_failover_path_affected_by_link(link):
867 1
                    evc.old_path = evc.failover_path
868 1
                    evc.failover_path = Path([])
869 1
                    check_failover.append(evc)
870
871 1
        if failover_event_contents:
872 1
            emit_event(self.controller, "failover_link_down",
873
                       content=failover_event_contents)
874
875 1
        for dpid, flows in switch_flows.items():
876 1
            emit_event(
877
                self.controller,
878
                context="kytos.flow_manager",
879
                name="flows.install",
880
                content={
881
                    "dpid": dpid,
882
                    "flow_dict": {"flows": flows},
883
                }
884
            )
885
886 1
        for evc in evcs_normal:
887 1
            emit_event(
888
                self.controller,
889
                "evc_affected_by_link_down",
890
                content={"link": link} | map_evc_event_content(evc)
891
            )
892
893 1
        evcs_to_update = []
894 1
        for evc in evcs_with_failover:
895 1
            evcs_to_update.append(evc.as_dict())
896 1
            log.info(
897
                f"{evc} redeployed with failover due to link down {link.id}"
898
            )
899 1
        for evc in check_failover:
900 1
            evcs_to_update.append(evc.as_dict())
901
902 1
        self.mongo_controller.update_evcs(evcs_to_update)
903
904 1
        emit_event(
905
            self.controller,
906
            "cleanup_evcs_old_path",
907
            content={"evcs": evcs_with_failover + check_failover}
908
        )
909
910 1
    @listen_to("kytos/mef_eline.evc_affected_by_link_down")
911 1
    def on_evc_affected_by_link_down(self, event):
912
        """Change circuit when link is down or under_mantenance."""
913
        self.handle_evc_affected_by_link_down(event)
914
915 1
    def handle_evc_affected_by_link_down(self, event):
916
        """Change circuit when link is down or under_mantenance."""
917 1
        evc = self.circuits.get(event.content["evc_id"])
918 1
        link = event.content['link']
919 1
        if not evc:
920 1
            return
921 1
        with evc.lock:
922 1
            if not evc.is_affected_by_link(link):
923
                return
924 1
            result = evc.handle_link_down()
925 1
        event_name = "error_redeploy_link_down"
926 1
        if result:
927 1
            log.info(f"{evc} redeployed due to link down {link.id}")
928 1
            event_name = "redeployed_link_down"
929 1
        emit_event(self.controller, event_name,
930
                   content=map_evc_event_content(evc))
931
932 1
    @listen_to("kytos/mef_eline.(redeployed_link_(up|down)|deployed)")
933 1
    def on_evc_deployed(self, event):
934
        """Handle EVC deployed|redeployed_link_down."""
935
        self.handle_evc_deployed(event)
936
937 1
    def handle_evc_deployed(self, event):
938
        """Setup failover path on evc deployed."""
939
        evc = self.circuits.get(event.content["evc_id"])
940
        if not evc:
941
            return
942
        evc.try_setup_failover_path()
943
944 1
    @listen_to("kytos/mef_eline.cleanup_evcs_old_path")
945 1
    def on_cleanup_evcs_old_path(self, event):
946
        """Handle cleanup evcs old path."""
947
        self.handle_cleanup_evcs_old_path(event)
948
949 1
    def handle_cleanup_evcs_old_path(self, event):
950
        """Handle cleanup evcs old path."""
951 1
        evcs = event.content.get("evcs", [])
952 1
        event_contents: dict[str, list[dict]] = {}
953 1
        for evc in evcs:
954 1
            if not evc.old_path:
955 1
                continue
956 1
            removed_flows = evc.remove_path_flows(evc.old_path)
957 1
            content = map_evc_event_content(
958
                evc,
959
                removed_flows=removed_flows,
960
                current_path=evc.current_path.as_dict(),
961
            )
962 1
            event_contents[evc.id] = content
963 1
            evc.old_path = Path([])
964 1
        if event_contents:
965 1
            emit_event(self.controller, "failover_old_path",
966
                       content=event_contents)
967
968 1
    @listen_to("kytos/topology.topology_loaded")
969 1
    def on_topology_loaded(self, event):  # pylint: disable=unused-argument
970
        """Load EVCs once the topology is available."""
971
        self.load_all_evcs()
972
973 1
    def load_all_evcs(self):
974
        """Try to load all EVCs on startup."""
975 1
        circuits = self.mongo_controller.get_circuits()['circuits'].items()
976 1
        for circuit_id, circuit in circuits:
977 1
            if circuit_id not in self.circuits:
978 1
                self._load_evc(circuit)
979 1
        emit_event(self.controller, "evcs_loaded", content=dict(circuits),
980
                   timeout=1)
981
982 1
    def _load_evc(self, circuit_dict):
983
        """Load one EVC from mongodb to memory."""
984 1
        try:
985 1
            evc = self._evc_from_dict(circuit_dict)
986 1
        except (ValueError, KytosTagError) as exception:
987 1
            log.error(
988
                f"Could not load EVC: dict={circuit_dict} error={exception}"
989
            )
990 1
            return None
991 1
        if evc.archived:
992 1
            return None
993
994 1
        self.circuits.setdefault(evc.id, evc)
995 1
        self.sched.add(evc)
996 1
        return evc
997
998 1
    @listen_to("kytos/flow_manager.flow.error")
999 1
    def on_flow_mod_error(self, event):
1000
        """Handle flow mod errors related to an EVC."""
1001
        self.handle_flow_mod_error(event)
1002
1003 1
    def handle_flow_mod_error(self, event):
1004
        """Handle flow mod errors related to an EVC."""
1005 1
        flow = event.content["flow"]
1006 1
        command = event.content.get("error_command")
1007 1
        if command != "add":
1008
            return
1009 1
        evc = self.circuits.get(EVC.get_id_from_cookie(flow.cookie))
1010 1
        if evc:
1011 1
            with evc.lock:
1012 1
                evc.remove_current_flows()
1013
1014 1
    def _evc_dict_with_instances(self, evc_dict):
1015
        """Convert some dict values to instance of EVC classes.
1016
1017
        This method will convert: [UNI, Link]
1018
        """
1019 1
        data = evc_dict.copy()  # Do not modify the original dict
1020 1
        for attribute, value in data.items():
1021
            # Get multiple attributes.
1022
            # Ex: uni_a, uni_z
1023 1
            if "uni" in attribute:
1024 1
                try:
1025 1
                    data[attribute] = self._uni_from_dict(value)
1026 1
                except ValueError as exception:
1027 1
                    result = "Error creating UNI: Invalid value"
1028 1
                    raise ValueError(result) from exception
1029
1030 1
            if attribute == "circuit_scheduler":
1031 1
                data[attribute] = []
1032 1
                for schedule in value:
1033 1
                    data[attribute].append(CircuitSchedule.from_dict(schedule))
1034
1035
            # Get multiple attributes.
1036
            # Ex: primary_links,
1037
            #     backup_links,
1038
            #     current_links_cache,
1039
            #     primary_links_cache,
1040
            #     backup_links_cache
1041 1
            if "links" in attribute:
1042 1
                data[attribute] = [
1043
                    self._link_from_dict(link) for link in value
1044
                ]
1045
1046
            # Ex: current_path,
1047
            #     primary_path,
1048
            #     backup_path
1049 1
            if "path" in attribute and attribute != "dynamic_backup_path":
1050 1
                data[attribute] = Path(
1051
                    [self._link_from_dict(link) for link in value]
1052
                )
1053
1054 1
        return data
1055
1056 1
    def _evc_from_dict(self, evc_dict):
1057 1
        data = self._evc_dict_with_instances(evc_dict)
1058 1
        data["table_group"] = self.table_group
1059 1
        return EVC(self.controller, **data)
1060
1061 1
    def _uni_from_dict(self, uni_dict):
1062
        """Return a UNI object from python dict."""
1063 1
        if uni_dict is None:
1064 1
            return False
1065
1066 1
        interface_id = uni_dict.get("interface_id")
1067 1
        interface = self.controller.get_interface_by_id(interface_id)
1068 1
        if interface is None:
1069 1
            result = (
1070
                "Error creating UNI:"
1071
                + f"Could not instantiate interface {interface_id}"
1072
            )
1073 1
            raise ValueError(result) from ValueError
1074 1
        tag_convert = {1: "vlan"}
1075 1
        tag_dict = uni_dict.get("tag", None)
1076 1
        if tag_dict:
1077 1
            tag_type = tag_dict.get("tag_type")
1078 1
            tag_type = tag_convert.get(tag_type, tag_type)
1079 1
            tag_value = tag_dict.get("value")
1080 1
            if isinstance(tag_value, list):
1081 1
                tag_value = get_tag_ranges(tag_value)
1082 1
                mask_list = get_vlan_tags_and_masks(tag_value)
1083 1
                tag = TAGRange(tag_type, tag_value, mask_list)
1084
            else:
1085 1
                tag = TAG(tag_type, tag_value)
1086
        else:
1087 1
            tag = None
1088 1
        uni = UNI(interface, tag)
1089 1
        return uni
1090
1091 1
    def _link_from_dict(self, link_dict):
1092
        """Return a Link object from python dict."""
1093 1
        id_a = link_dict.get("endpoint_a").get("id")
1094 1
        id_b = link_dict.get("endpoint_b").get("id")
1095
1096 1
        endpoint_a = self.controller.get_interface_by_id(id_a)
1097 1
        endpoint_b = self.controller.get_interface_by_id(id_b)
1098 1
        if not endpoint_a:
1099 1
            error_msg = f"Could not get interface endpoint_a id {id_a}"
1100 1
            raise ValueError(error_msg)
1101 1
        if not endpoint_b:
1102
            error_msg = f"Could not get interface endpoint_b id {id_b}"
1103
            raise ValueError(error_msg)
1104
1105 1
        link = Link(endpoint_a, endpoint_b)
1106 1
        if "metadata" in link_dict:
1107 1
            link.extend_metadata(link_dict.get("metadata"))
1108
1109 1
        s_vlan = link.get_metadata("s_vlan")
1110 1
        if s_vlan:
1111 1
            tag = TAG.from_dict(s_vlan)
1112 1
            if tag is False:
1113
                error_msg = f"Could not instantiate tag from dict {s_vlan}"
1114
                raise ValueError(error_msg)
1115 1
            link.update_metadata("s_vlan", tag)
1116 1
        return link
1117
1118 1
    def _find_evc_by_schedule_id(self, schedule_id):
1119
        """
1120
        Find an EVC and CircuitSchedule based on schedule_id.
1121
1122
        :param schedule_id: Schedule ID
1123
        :return: EVC and Schedule
1124
        """
1125 1
        circuits = self._get_circuits_buffer()
1126 1
        found_schedule = None
1127 1
        evc = None
1128
1129
        # pylint: disable=unused-variable
1130 1
        for c_id, circuit in circuits.items():
1131 1
            for schedule in circuit.circuit_scheduler:
1132 1
                if schedule.id == schedule_id:
1133 1
                    found_schedule = schedule
1134 1
                    evc = circuit
1135 1
                    break
1136 1
            if found_schedule:
1137 1
                break
1138 1
        return evc, found_schedule
1139
1140 1
    def _get_circuits_buffer(self):
1141
        """
1142
        Return the circuit buffer.
1143
1144
        If the buffer is empty, try to load data from mongodb.
1145
        """
1146 1
        if not self.circuits:
1147
            # Load circuits from mongodb to buffer
1148 1
            circuits = self.mongo_controller.get_circuits()['circuits']
1149 1
            for c_id, circuit in circuits.items():
1150 1
                evc = self._evc_from_dict(circuit)
1151 1
                self.circuits[c_id] = evc
1152 1
        return self.circuits
1153
1154
    # pylint: disable=attribute-defined-outside-init
1155 1
    @alisten_to("kytos/of_multi_table.enable_table")
1156 1
    async def on_table_enabled(self, event):
1157
        """Handle a recently table enabled."""
1158 1
        table_group = event.content.get("mef_eline", None)
1159 1
        if not table_group:
1160 1
            return
1161 1
        for group in table_group:
1162 1
            if group not in settings.TABLE_GROUP_ALLOWED:
1163 1
                log.error(f'The table group "{group}" is not allowed for '
1164
                          f'mef_eline. Allowed table groups are '
1165
                          f'{settings.TABLE_GROUP_ALLOWED}')
1166 1
                return
1167 1
        self.table_group.update(table_group)
1168 1
        content = {"group_table": self.table_group}
1169 1
        name = "kytos/mef_eline.enable_table"
1170
        await aemit_event(self.controller, name, content)
1171