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build.models.evc.EVCDeploy._send_flow_mods()   B

Complexity

Conditions 7

Size

Total Lines 39
Code Lines 26

Duplication

Lines 0
Ratio 0 %

Code Coverage

Tests 16
CRAP Score 7

Importance

Changes 0
Metric Value
cc 7
eloc 26
nop 4
dl 0
loc 39
ccs 16
cts 16
cp 1
crap 7
rs 7.856
c 0
b 0
f 0
1
"""Classes used in the main application."""  # pylint: disable=too-many-lines
2 1
import traceback
3 1
from collections import OrderedDict, defaultdict
4 1
from copy import deepcopy
5 1
from datetime import datetime
6 1
from operator import eq, ne
7 1
from threading import Lock
8 1
from typing import Union
9 1
from uuid import uuid4
10
11 1
import httpx
12 1
from glom import glom
13 1
from tenacity import (retry, retry_if_exception_type, stop_after_attempt,
14
                      wait_combine, wait_fixed, wait_random)
15
16 1
from kytos.core import log
17 1
from kytos.core.common import EntityStatus, GenericEntity
18 1
from kytos.core.exceptions import KytosNoTagAvailableError, KytosTagError
19 1
from kytos.core.helpers import get_time, now
20 1
from kytos.core.interface import UNI, Interface, TAGRange
21 1
from kytos.core.link import Link
22 1
from kytos.core.retry import before_sleep
23 1
from kytos.core.tag_ranges import range_difference
24 1
from napps.kytos.mef_eline import controllers, settings
25 1
from napps.kytos.mef_eline.exceptions import (DuplicatedNoTagUNI,
26
                                              EVCPathNotInstalled,
27
                                              FlowModException, InvalidPath)
28 1
from napps.kytos.mef_eline.utils import (check_disabled_component,
29
                                         compare_endpoint_trace,
30
                                         compare_uni_out_trace, emit_event,
31
                                         make_uni_list, map_dl_vlan,
32
                                         map_evc_event_content,
33
                                         merge_flow_dicts)
34
35 1
from .path import DynamicPathManager, Path
36
37
38 1
class EVCBase(GenericEntity):
39
    """Class to represent a circuit."""
40
41 1
    attributes_requiring_redeploy = [
42
        "primary_path",
43
        "backup_path",
44
        "dynamic_backup_path",
45
        "queue_id",
46
        "sb_priority",
47
        "primary_constraints",
48
        "secondary_constraints",
49
        "uni_a",
50
        "uni_z",
51
    ]
52 1
    required_attributes = ["name", "uni_a", "uni_z"]
53
54 1
    updatable_attributes = {
55
        "uni_a",
56
        "uni_z",
57
        "name",
58
        "start_date",
59
        "end_date",
60
        "queue_id",
61
        "bandwidth",
62
        "primary_path",
63
        "backup_path",
64
        "dynamic_backup_path",
65
        "primary_constraints",
66
        "secondary_constraints",
67
        "owner",
68
        "sb_priority",
69
        "service_level",
70
        "circuit_scheduler",
71
        "metadata",
72
        "enabled"
73
    }
74
75
    # pylint: disable=too-many-statements
76 1
    def __init__(self, controller, **kwargs):
77
        """Create an EVC instance with the provided parameters.
78
79
        Args:
80
            id(str): EVC identifier. Whether it's None an ID will be genereted.
81
                     Only the first 14 bytes passed will be used.
82
            name: represents an EVC name.(Required)
83
            uni_a (UNI): Endpoint A for User Network Interface.(Required)
84
            uni_z (UNI): Endpoint Z for User Network Interface.(Required)
85
            start_date(datetime|str): Date when the EVC was registred.
86
                                      Default is now().
87
            end_date(datetime|str): Final date that the EVC will be fineshed.
88
                                    Default is None.
89
            bandwidth(int): Bandwidth used by EVC instance. Default is 0.
90
            primary_links(list): Primary links used by evc. Default is []
91
            backup_links(list): Backups links used by evc. Default is []
92
            current_path(list): Circuit being used at the moment if this is an
93
                                active circuit. Default is [].
94
            failover_path(list): Path being used to provide EVC protection via
95
                                failover during link failures. Default is [].
96
            primary_path(list): primary circuit offered to user IF one or more
97
                                links were provided. Default is [].
98
            backup_path(list): backup circuit offered to the user IF one or
99
                               more links were provided. Default is [].
100
            dynamic_backup_path(bool): Enable computer backup path dynamically.
101
                                       Dafault is False.
102
            creation_time(datetime|str): datetime when the circuit should be
103
                                         activated. default is now().
104
            enabled(Boolean): attribute to indicate the administrative state;
105
                              default is False.
106
            active(Boolean): attribute to indicate the operational state;
107
                             default is False.
108
            archived(Boolean): indicate the EVC has been deleted and is
109
                               archived; default is False.
110
            owner(str): The EVC owner. Default is None.
111
            sb_priority(int): Service level provided in the request.
112
                              Default is None.
113
            service_level(int): Service level provided. The higher the better.
114
                                Default is 0.
115
116
        Raises:
117
            ValueError: raised when object attributes are invalid.
118
119
        """
120 1
        self._controller = controller
121 1
        self._validate(**kwargs)
122 1
        super().__init__()
123
124
        # required attributes
125 1
        self._id = kwargs.get("id", uuid4().hex)[:14]
126 1
        self.uni_a: UNI = kwargs.get("uni_a")
127 1
        self.uni_z: UNI = kwargs.get("uni_z")
128 1
        self.name = kwargs.get("name")
129
130
        # optional attributes
131 1
        self.start_date = get_time(kwargs.get("start_date")) or now()
132 1
        self.end_date = get_time(kwargs.get("end_date")) or None
133 1
        self.queue_id = kwargs.get("queue_id", -1)
134
135 1
        self.bandwidth = kwargs.get("bandwidth", 0)
136 1
        self.primary_links = Path(kwargs.get("primary_links", []))
137 1
        self.backup_links = Path(kwargs.get("backup_links", []))
138 1
        self.current_path = Path(kwargs.get("current_path", []))
139 1
        self.failover_path = Path(kwargs.get("failover_path", []))
140 1
        self.primary_path = Path(kwargs.get("primary_path", []))
141 1
        self.backup_path = Path(kwargs.get("backup_path", []))
142 1
        self.dynamic_backup_path = kwargs.get("dynamic_backup_path", False)
143 1
        self.primary_constraints = kwargs.get("primary_constraints", {})
144 1
        self.secondary_constraints = kwargs.get("secondary_constraints", {})
145 1
        self.creation_time = get_time(kwargs.get("creation_time")) or now()
146 1
        self.owner = kwargs.get("owner", None)
147 1
        self.sb_priority = kwargs.get("sb_priority", None) or kwargs.get(
148
            "priority", None
149
        )
150 1
        self.service_level = kwargs.get("service_level", 0)
151 1
        self.circuit_scheduler = kwargs.get("circuit_scheduler", [])
152 1
        self.flow_removed_at = get_time(kwargs.get("flow_removed_at")) or None
153 1
        self.updated_at = get_time(kwargs.get("updated_at")) or now()
154 1
        self.execution_rounds = kwargs.get("execution_rounds", 0)
155 1
        self.current_links_cache = set()
156 1
        self.primary_links_cache = set()
157 1
        self.backup_links_cache = set()
158 1
        self.affected_by_link_at = get_time("0001-01-01T00:00:00")
159 1
        self.old_path = Path([])
160
161 1
        self.lock = Lock()
162
163 1
        self.archived = kwargs.get("archived", False)
164
165 1
        self.metadata = kwargs.get("metadata", {})
166
167 1
        self._mongo_controller = controllers.ELineController()
168
169 1
        if kwargs.get("active", False):
170 1
            self.activate()
171
        else:
172 1
            self.deactivate()
173
174 1
        if kwargs.get("enabled", False):
175 1
            self.enable()
176
        else:
177 1
            self.disable()
178
179
        # datetime of user request for a EVC (or datetime when object was
180
        # created)
181 1
        self.request_time = kwargs.get("request_time", now())
182
        # dict with the user original request (input)
183 1
        self._requested = kwargs
184
185
        # Special cases: No tag, any, untagged
186 1
        self.special_cases = {None, "4096/4096", 0}
187 1
        self.table_group = kwargs.get("table_group")
188
189 1
    def sync(self, keys: set = None):
190
        """Sync this EVC in the MongoDB."""
191 1
        self.updated_at = now()
192 1
        if keys:
193 1
            self._mongo_controller.update_evc(self.as_dict(keys))
194 1
            return
195 1
        self._mongo_controller.upsert_evc(self.as_dict())
196
197 1
    def _get_unis_use_tags(self, **kwargs) -> tuple[UNI, UNI]:
198
        """Obtain both UNIs (uni_a, uni_z).
199
        If a UNI is changing, verify tags"""
200 1
        uni_a = kwargs.get("uni_a", None)
201 1
        uni_a_flag = False
202 1
        if uni_a and uni_a != self.uni_a:
203 1
            uni_a_flag = True
204 1
            self._use_uni_vlan(uni_a, uni_dif=self.uni_a)
205
206 1
        uni_z = kwargs.get("uni_z", None)
207 1
        if uni_z and uni_z != self.uni_z:
208 1
            try:
209 1
                self._use_uni_vlan(uni_z, uni_dif=self.uni_z)
210 1
                self.make_uni_vlan_available(self.uni_z, uni_dif=uni_z)
211 1
            except KytosTagError as err:
212 1
                if uni_a_flag:
213 1
                    self.make_uni_vlan_available(uni_a, uni_dif=self.uni_a)
214 1
                raise err
215
        else:
216 1
            uni_z = self.uni_z
217
218 1
        if uni_a_flag:
219 1
            self.make_uni_vlan_available(self.uni_a, uni_dif=uni_a)
220
        else:
221 1
            uni_a = self.uni_a
222 1
        return uni_a, uni_z
223
224 1
    def update(self, **kwargs):
225
        """Update evc attributes.
226
227
        This method will raises an error trying to change the following
228
        attributes: [creation_time, active, current_path, failover_path,
229
        _id, archived]
230
        [name, uni_a and uni_z]
231
232
        Returns:
233
            the values for enable and a redeploy attribute, if exists and None
234
            otherwise
235
        Raises:
236
            ValueError: message with error detail.
237
238
        """
239 1
        enable, redeploy = (None, None)
240 1
        if not self._tag_lists_equal(**kwargs):
241 1
            raise ValueError(
242
                "UNI_A and UNI_Z tag lists should be the same."
243
            )
244 1
        uni_a, uni_z = self._get_unis_use_tags(**kwargs)
245 1
        check_disabled_component(uni_a, uni_z)
246 1
        self._validate_has_primary_or_dynamic(
247
            primary_path=kwargs.get("primary_path"),
248
            dynamic_backup_path=kwargs.get("dynamic_backup_path"),
249
            uni_a=uni_a,
250
            uni_z=uni_z,
251
        )
252 1
        for attribute, value in kwargs.items():
253 1
            if attribute not in self.updatable_attributes:
254 1
                raise ValueError(f"{attribute} can't be updated.")
255 1
            if attribute in ("primary_path", "backup_path"):
256 1
                try:
257 1
                    value.is_valid(
258
                        uni_a.interface.switch, uni_z.interface.switch
259
                    )
260 1
                except InvalidPath as exception:
261 1
                    raise ValueError(  # pylint: disable=raise-missing-from
262
                        f"{attribute} is not a " f"valid path: {exception}"
263
                    )
264 1
        for attribute, value in kwargs.items():
265 1
            if attribute == "enabled":
266 1
                if value:
267 1
                    self.enable()
268
                else:
269 1
                    self.disable()
270 1
                enable = value
271
            else:
272 1
                setattr(self, attribute, value)
273 1
                if attribute in self.attributes_requiring_redeploy:
274 1
                    redeploy = True
275 1
        self.sync(set(kwargs.keys()))
276 1
        return enable, redeploy
277
278 1
    def set_flow_removed_at(self):
279
        """Update flow_removed_at attribute."""
280
        self.flow_removed_at = now()
281
282 1
    def has_recent_removed_flow(self, setting=settings):
283
        """Check if any flow has been removed from the evc"""
284
        if self.flow_removed_at is None:
285
            return False
286
        res_seconds = (now() - self.flow_removed_at).seconds
287
        return res_seconds < setting.TIME_RECENT_DELETED_FLOWS
288
289 1
    def is_recent_updated(self, setting=settings):
290
        """Check if the evc has been updated recently"""
291
        res_seconds = (now() - self.updated_at).seconds
292
        return res_seconds < setting.TIME_RECENT_UPDATED
293
294 1
    def __repr__(self):
295
        """Repr method."""
296 1
        return f"EVC({self._id}, {self.name})"
297
298 1
    def _validate(self, **kwargs):
299
        """Do Basic validations.
300
301
        Verify required attributes: name, uni_a, uni_z
302
303
        Raises:
304
            ValueError: message with error detail.
305
306
        """
307 1
        for attribute in self.required_attributes:
308
309 1
            if attribute not in kwargs:
310 1
                raise ValueError(f"{attribute} is required.")
311
312 1
            if "uni" in attribute:
313 1
                uni = kwargs.get(attribute)
314 1
                if not isinstance(uni, UNI):
315
                    raise ValueError(f"{attribute} is an invalid UNI.")
316
317 1
    def _tag_lists_equal(self, **kwargs):
318
        """Verify that tag lists are the same."""
319 1
        uni_a = kwargs.get("uni_a") or self.uni_a
320 1
        uni_z = kwargs.get("uni_z") or self.uni_z
321 1
        uni_a_list = uni_z_list = False
322 1
        if (uni_a.user_tag and isinstance(uni_a.user_tag, TAGRange)):
323 1
            uni_a_list = True
324 1
        if (uni_z.user_tag and isinstance(uni_z.user_tag, TAGRange)):
325 1
            uni_z_list = True
326 1
        if uni_a_list and uni_z_list:
327 1
            return uni_a.user_tag.value == uni_z.user_tag.value
328 1
        return uni_a_list == uni_z_list
329
330 1
    def _validate_has_primary_or_dynamic(
331
        self,
332
        primary_path=None,
333
        dynamic_backup_path=None,
334
        uni_a=None,
335
        uni_z=None,
336
    ) -> None:
337
        """Validate that it must have a primary path or allow dynamic paths."""
338 1
        primary_path = (
339
            primary_path
340
            if primary_path is not None
341
            else self.primary_path
342
        )
343 1
        dynamic_backup_path = (
344
            dynamic_backup_path
345
            if dynamic_backup_path is not None
346
            else self.dynamic_backup_path
347
        )
348 1
        uni_a = uni_a if uni_a is not None else self.uni_a
349 1
        uni_z = uni_z if uni_z is not None else self.uni_z
350 1
        if (
351
            not primary_path
352
            and not dynamic_backup_path
353
            and uni_a and uni_z
354
            and uni_a.interface.switch != uni_z.interface.switch
355
        ):
356 1
            msg = "The EVC must have a primary path or allow dynamic paths."
357 1
            raise ValueError(msg)
358
359 1
    def __eq__(self, other):
360
        """Override the default implementation."""
361 1
        if not isinstance(other, EVC):
362
            return False
363
364 1
        attrs_to_compare = ["name", "uni_a", "uni_z", "owner", "bandwidth"]
365 1
        for attribute in attrs_to_compare:
366 1
            if getattr(other, attribute) != getattr(self, attribute):
367 1
                return False
368 1
        return True
369
370 1
    def is_intra_switch(self):
371
        """Check if the UNIs are in the same switch."""
372 1
        return self.uni_a.interface.switch == self.uni_z.interface.switch
373
374 1
    def check_no_tag_duplicate(self, other_uni: UNI):
375
        """Check if a no tag UNI is duplicated."""
376 1
        if other_uni in (self.uni_a, self.uni_z):
377 1
            msg = f"UNI with interface {other_uni.interface.id} is"\
378
                  f" duplicated with {self}."
379 1
            raise DuplicatedNoTagUNI(msg)
380
381 1
    def as_dict(self, keys: set = None):
382
        """Return a dictionary representing an EVC object.
383
            keys: Only fields on this variable will be
384
                  returned in the dictionary"""
385 1
        evc_dict = {
386
            "id": self.id,
387
            "name": self.name,
388
            "uni_a": self.uni_a.as_dict(),
389
            "uni_z": self.uni_z.as_dict(),
390
        }
391
392 1
        time_fmt = "%Y-%m-%dT%H:%M:%S"
393
394 1
        evc_dict["start_date"] = self.start_date
395 1
        if isinstance(self.start_date, datetime):
396 1
            evc_dict["start_date"] = self.start_date.strftime(time_fmt)
397
398 1
        evc_dict["end_date"] = self.end_date
399 1
        if isinstance(self.end_date, datetime):
400 1
            evc_dict["end_date"] = self.end_date.strftime(time_fmt)
401
402 1
        evc_dict["queue_id"] = self.queue_id
403 1
        evc_dict["bandwidth"] = self.bandwidth
404 1
        evc_dict["primary_links"] = self.primary_links.as_dict()
405 1
        evc_dict["backup_links"] = self.backup_links.as_dict()
406 1
        evc_dict["current_path"] = self.current_path.as_dict()
407 1
        evc_dict["failover_path"] = self.failover_path.as_dict()
408 1
        evc_dict["primary_path"] = self.primary_path.as_dict()
409 1
        evc_dict["backup_path"] = self.backup_path.as_dict()
410 1
        evc_dict["dynamic_backup_path"] = self.dynamic_backup_path
411 1
        evc_dict["metadata"] = self.metadata
412
413 1
        evc_dict["request_time"] = self.request_time
414 1
        if isinstance(self.request_time, datetime):
415 1
            evc_dict["request_time"] = self.request_time.strftime(time_fmt)
416
417 1
        time = self.creation_time.strftime(time_fmt)
418 1
        evc_dict["creation_time"] = time
419
420 1
        evc_dict["owner"] = self.owner
421 1
        evc_dict["circuit_scheduler"] = [
422
            sc.as_dict() for sc in self.circuit_scheduler
423
        ]
424
425 1
        evc_dict["active"] = self.is_active()
426 1
        evc_dict["enabled"] = self.is_enabled()
427 1
        evc_dict["archived"] = self.archived
428 1
        evc_dict["sb_priority"] = self.sb_priority
429 1
        evc_dict["service_level"] = self.service_level
430 1
        evc_dict["primary_constraints"] = self.primary_constraints
431 1
        evc_dict["secondary_constraints"] = self.secondary_constraints
432 1
        evc_dict["flow_removed_at"] = self.flow_removed_at
433 1
        evc_dict["updated_at"] = self.updated_at
434
435 1
        if keys:
436 1
            selected = {}
437 1
            for key in keys:
438 1
                selected[key] = evc_dict[key]
439 1
            selected["id"] = evc_dict["id"]
440 1
            return selected
441 1
        return evc_dict
442
443 1
    @property
444 1
    def id(self):  # pylint: disable=invalid-name
445
        """Return this EVC's ID."""
446 1
        return self._id
447
448 1
    def archive(self):
449
        """Archive this EVC on deletion."""
450 1
        self.archived = True
451
452 1
    def _use_uni_vlan(
453
        self,
454
        uni: UNI,
455
        uni_dif: Union[None, UNI] = None
456
    ):
457
        """Use tags from UNI"""
458 1
        if uni.user_tag is None:
459 1
            return
460 1
        tag = uni.user_tag.value
461 1
        tag_type = uni.user_tag.tag_type
462 1
        if (uni_dif and isinstance(tag, list) and
463
                isinstance(uni_dif.user_tag.value, list)):
464 1
            tag = range_difference(tag, uni_dif.user_tag.value)
465 1
            if not tag:
466 1
                return
467 1
        uni.interface.use_tags(
468
            self._controller, tag, tag_type, use_lock=True, check_order=False
469
        )
470
471 1
    def make_uni_vlan_available(
472
        self,
473
        uni: UNI,
474
        uni_dif: Union[None, UNI] = None,
475
    ):
476
        """Make available tag from UNI"""
477 1
        if uni.user_tag is None:
478 1
            return
479 1
        tag = uni.user_tag.value
480 1
        tag_type = uni.user_tag.tag_type
481 1
        if (uni_dif and isinstance(tag, list) and
482
                isinstance(uni_dif.user_tag.value, list)):
483 1
            tag = range_difference(tag, uni_dif.user_tag.value)
484 1
            if not tag:
485
                return
486 1
        try:
487 1
            conflict = uni.interface.make_tags_available(
488
                self._controller, tag, tag_type, use_lock=True,
489
                check_order=False
490
            )
491 1
        except KytosTagError as err:
492 1
            log.error(f"Error in {self}: {err}")
493 1
            return
494 1
        if conflict:
495 1
            intf = uni.interface.id
496 1
            log.warning(f"Tags {conflict} was already available in {intf}")
497
498 1
    def remove_uni_tags(self):
499
        """Remove both UNI usage of a tag"""
500 1
        self.make_uni_vlan_available(self.uni_a)
501 1
        self.make_uni_vlan_available(self.uni_z)
502
503
504
# pylint: disable=fixme, too-many-public-methods
505 1
class EVCDeploy(EVCBase):
506
    """Class to handle the deploy procedures."""
507
508 1
    def create(self):
509
        """Create a EVC."""
510
511 1
    def discover_new_paths(self):
512
        """Discover new paths to satisfy this circuit and deploy it."""
513
        return DynamicPathManager.get_best_paths(self,
514
                                                 **self.primary_constraints)
515
516 1
    def get_failover_path_candidates(self):
517
        """Get failover paths to satisfy this EVC."""
518
        # in the future we can return primary/backup paths as well
519
        # we just have to properly handle link_up and failover paths
520
        # if (
521
        #     self.is_using_primary_path() and
522
        #     self.backup_path.status is EntityStatus.UP
523
        # ):
524
        #     yield self.backup_path
525 1
        return DynamicPathManager.get_disjoint_paths(self, self.current_path)
526
527 1
    def change_path(self):
528
        """Change EVC path."""
529
530 1
    def reprovision(self):
531
        """Force the EVC (re-)provisioning."""
532
533 1
    def is_affected_by_link(self, link):
534
        """Return True if this EVC has the given link on its current path."""
535 1
        return link in self.current_path
536
537 1
    def link_affected_by_interface(self, interface):
538
        """Return True if this EVC has the given link on its current path."""
539
        return self.current_path.link_affected_by_interface(interface)
540
541 1
    def is_backup_path_affected_by_link(self, link):
542
        """Return True if the backup path of this EVC uses the given link."""
543 1
        return link in self.backup_path
544
545
    # pylint: disable=invalid-name
546 1
    def is_primary_path_affected_by_link(self, link):
547
        """Return True if the primary path of this EVC uses the given link."""
548 1
        return link in self.primary_path
549
550 1
    def is_failover_path_affected_by_link(self, link):
551
        """Return True if this EVC has the given link on its failover path."""
552 1
        return link in self.failover_path
553
554 1
    def is_eligible_for_failover_path(self):
555
        """Verify if this EVC is eligible for failover path (EP029)"""
556
        # In the future this function can be augmented to consider
557
        # primary/backup, primary/dynamic, and other path combinations
558 1
        return (
559
            self.dynamic_backup_path and
560
            not self.primary_path and not self.backup_path
561
        )
562
563 1
    def is_using_primary_path(self):
564
        """Verify if the current deployed path is self.primary_path."""
565 1
        return self.primary_path and (self.current_path == self.primary_path)
566
567 1
    def is_using_backup_path(self):
568
        """Verify if the current deployed path is self.backup_path."""
569 1
        return self.backup_path and (self.current_path == self.backup_path)
570
571 1
    def is_using_dynamic_path(self):
572
        """Verify if the current deployed path is a dynamic path."""
573 1
        if (
574
            self.current_path
575
            and not self.is_using_primary_path()
576
            and not self.is_using_backup_path()
577
            and self.current_path.status == EntityStatus.UP
578
        ):
579
            return True
580 1
        return False
581
582 1
    def deploy_to_backup_path(self):
583
        """Deploy the backup path into the datapaths of this circuit.
584
585
        If the backup_path attribute is valid and up, this method will try to
586
        deploy this backup_path.
587
588
        If everything fails and dynamic_backup_path is True, then tries to
589
        deploy a dynamic path.
590
        """
591
        # TODO: Remove flows from current (cookies)
592 1
        if self.is_using_backup_path():
593
            # TODO: Log to say that cannot move backup to backup
594
            return True
595
596 1
        success = False
597 1
        if self.backup_path.status is EntityStatus.UP:
598 1
            success = self.deploy_to_path(self.backup_path)
599
600 1
        if success:
601 1
            return True
602
603 1
        if self.dynamic_backup_path or self.is_intra_switch():
604 1
            return self.deploy_to_path()
605
606
        return False
607
608 1
    def deploy_to_primary_path(self):
609
        """Deploy the primary path into the datapaths of this circuit.
610
611
        If the primary_path attribute is valid and up, this method will try to
612
        deploy this primary_path.
613
        """
614
        # TODO: Remove flows from current (cookies)
615 1
        if self.is_using_primary_path():
616
            # TODO: Log to say that cannot move primary to primary
617
            return True
618
619 1
        if self.primary_path.status is EntityStatus.UP:
620 1
            return self.deploy_to_path(self.primary_path)
621 1
        return False
622
623 1
    def deploy(self):
624
        """Deploy EVC to best path.
625
626
        Best path can be the primary path, if available. If not, the backup
627
        path, and, if it is also not available, a dynamic path.
628
        """
629 1
        if self.archived:
630 1
            return False
631 1
        self.enable()
632 1
        success = self.deploy_to_primary_path()
633 1
        if not success:
634 1
            success = self.deploy_to_backup_path()
635
636 1
        if success:
637 1
            emit_event(self._controller, "deployed",
638
                       content=map_evc_event_content(self))
639 1
        return success
640
641 1
    @staticmethod
642 1
    def get_path_status(path):
643
        """Check for the current status of a path.
644
645
        If any link in this path is down, the path is considered down.
646
        """
647 1
        if not path:
648 1
            return EntityStatus.DISABLED
649
650 1
        for link in path:
651 1
            if link.status is not EntityStatus.UP:
652 1
                return link.status
653 1
        return EntityStatus.UP
654
655
    #    def discover_new_path(self):
656
    #        # TODO: discover a new path to satisfy this circuit and deploy
657
658 1
    def remove(self):
659
        """Remove EVC path and disable it."""
660 1
        self.remove_current_flows(sync=False)
661 1
        self.remove_failover_flows(sync=False)
662 1
        self.disable()
663 1
        self.sync()
664 1
        emit_event(self._controller, "undeployed",
665
                   content=map_evc_event_content(self))
666
667 1
    def remove_failover_flows(self, exclude_uni_switches=True,
668
                              force=True, sync=True) -> None:
669
        """Remove failover_flows.
670
671
        By default, it'll exclude UNI switches, if mef_eline has already
672
        called remove_current_flows before then this minimizes the number
673
        of FlowMods and IO.
674
        """
675 1
        if not self.failover_path:
676 1
            return
677 1
        switches, cookie, excluded = set(), self.get_cookie(), set()
678 1
        if exclude_uni_switches:
679 1
            excluded.add(self.uni_a.interface.switch.id)
680 1
            excluded.add(self.uni_z.interface.switch.id)
681 1
        for link in self.failover_path:
682 1
            if link.endpoint_a.switch.id not in excluded:
683 1
                switches.add(link.endpoint_a.switch.id)
684 1
            if link.endpoint_b.switch.id not in excluded:
685 1
                switches.add(link.endpoint_b.switch.id)
686 1
        flow_mods = {
687
            "switches": list(switches),
688
            "flows": [{
689
                "cookie": cookie,
690
                "cookie_mask": int(0xffffffffffffffff),
691
                "owner": "mef_eline",
692
            }]
693
        }
694 1
        try:
695 1
            self._send_flow_mods(
696
                flow_mods,
697
                "delete",
698
                force=force,
699
            )
700
        except FlowModException as err:
701
            log.error(f"Error deleting {self} failover_path flows, {err}")
702 1
        try:
703 1
            self.failover_path.make_vlans_available(self._controller)
704
        except KytosTagError as err:
705
            log.error(f"Error removing {self} failover_path: {err}")
706 1
        self.failover_path = Path([])
707 1
        if sync:
708 1
            self.sync()
709
710 1
    def remove_current_flows(self, force=True, sync=True):
711
        """Remove all flows from current path or path intended for
712
         current path if exists."""
713 1
        switches = set()
714
715 1
        if not self.current_path and not self.is_intra_switch():
716 1
            return
717 1
        current_path = self.current_path
718 1
        for link in current_path:
719 1
            switches.add(link.endpoint_a.switch.id)
720 1
            switches.add(link.endpoint_b.switch.id)
721 1
        switches.add(self.uni_a.interface.switch.id)
722 1
        switches.add(self.uni_z.interface.switch.id)
723 1
        flow_mods = {
724
            "switches": list(switches),
725
            "flows": [{
726
                "cookie": self.get_cookie(),
727
                "cookie_mask": int(0xffffffffffffffff),
728
                "owner": "mef_eline",
729
            }]
730
        }
731
732 1
        try:
733 1
            self._send_flow_mods(flow_mods, "delete", force=force)
734 1
        except FlowModException as err:
735 1
            log.error(f"Error deleting {self} current_path flows, {err}")
736
737 1
        try:
738 1
            current_path.make_vlans_available(self._controller)
739
        except KytosTagError as err:
740
            log.error(f"Error removing {self} current_path: {err}")
741 1
        self.current_path = Path([])
742 1
        self.deactivate()
743 1
        if sync:
744 1
            self.sync()
745
746 1
    def remove_path_flows(
747
        self, path=None, force=True
748
    ) -> dict[str, list[dict]]:
749
        """Remove all flows from path, and return the removed flows."""
750 1
        dpid_flows_match: dict[str, dict] = defaultdict(lambda: {"flows": []})
751 1
        out_flows: dict[str, list[dict]] = defaultdict(list)
752
753 1
        if not path:
754 1
            return dpid_flows_match
755
756 1
        try:
757 1
            nni_flows = self._prepare_nni_flows(path)
758
        # pylint: disable=broad-except
759
        except Exception:
760
            err = traceback.format_exc().replace("\n", ", ")
761
            log.error(f"Fail to remove NNI failover flows for {self}: {err}")
762
            nni_flows = {}
763
764 1
        for dpid, flows in nni_flows.items():
765 1
            for flow in flows:
766 1
                flow_mod = {
767
                    "cookie": flow["cookie"],
768
                    "match": flow["match"],
769
                    "owner": "mef_eline",
770
                    "cookie_mask": int(0xffffffffffffffff)
771
                }
772 1
                dpid_flows_match[dpid]["flows"].append(flow_mod)
773 1
                out_flows[dpid].append(flow_mod)
774
775 1
        try:
776 1
            uni_flows = self._prepare_uni_flows(path, skip_in=True)
777
        # pylint: disable=broad-except
778
        except Exception:
779
            err = traceback.format_exc().replace("\n", ", ")
780
            log.error(f"Fail to remove UNI failover flows for {self}: {err}")
781
            uni_flows = {}
782
783 1
        for dpid, flows in uni_flows.items():
784 1
            for flow in flows:
785 1
                flow_mod = {
786
                    "cookie": flow["cookie"],
787
                    "match": flow["match"],
788
                    "owner": "mef_eline",
789
                    "cookie_mask": int(0xffffffffffffffff)
790
                }
791 1
                dpid_flows_match[dpid]["flows"].append(flow_mod)
792 1
                out_flows[dpid].append(flow_mod)
793
794 1
        try:
795 1
            self._send_flow_mods(
796
                dpid_flows_match, 'delete', force=force, by_switch=True
797
            )
798 1
        except FlowModException as err:
799 1
            log.error(
800
                f"Error deleting {self} path flows, path:{path}, error={err}"
801
            )
802
803 1
        try:
804 1
            path.make_vlans_available(self._controller)
805
        except KytosTagError as err:
806
            log.error(f"Error removing {self} path: {err}")
807
808 1
        return out_flows
809
810 1
    @staticmethod
811 1
    def links_zipped(path=None):
812
        """Return an iterator which yields pairs of links in order."""
813 1
        if not path:
814 1
            return []
815 1
        return zip(path[:-1], path[1:])
816
817 1
    def should_deploy(self, path=None):
818
        """Verify if the circuit should be deployed."""
819 1
        if not path:
820 1
            log.debug("Path is empty.")
821 1
            return False
822
823 1
        if not self.is_enabled():
824 1
            log.debug(f"{self} is disabled.")
825 1
            return False
826
827 1
        if not self.is_active():
828 1
            log.debug(f"{self} will be deployed.")
829 1
            return True
830
831 1
        return False
832
833
    # pylint: disable=too-many-branches, too-many-statements
834 1
    def deploy_to_path(self, path=None):
835
        """Install the flows for this circuit.
836
837
        Procedures to deploy:
838
839
        0. Remove current flows installed
840
        1. Decide if will deploy "path" or discover a new path
841
        2. Choose vlan
842
        3. Install NNI flows
843
        4. Install UNI flows
844
        5. Activate
845
        6. Update current_path
846
        7. Update links caches(primary, current, backup)
847
848
        """
849 1
        self.remove_current_flows(sync=False)
850 1
        use_path = path or Path([])
851 1
        tag_errors = []
852 1
        if self.should_deploy(use_path):
853 1
            try:
854 1
                use_path.choose_vlans(self._controller)
855 1
            except KytosNoTagAvailableError as e:
856 1
                tag_errors.append(str(e))
857 1
                use_path = None
858
        else:
859 1
            for use_path in self.discover_new_paths():
860 1
                if use_path is None:
861
                    continue
862 1
                try:
863 1
                    use_path.choose_vlans(self._controller)
864 1
                    break
865 1
                except KytosNoTagAvailableError as e:
866 1
                    tag_errors.append(str(e))
867
            else:
868 1
                use_path = None
869
870 1
        try:
871 1
            if use_path:
872 1
                self._install_flows(use_path)
873 1
            elif self.is_intra_switch():
874 1
                use_path = Path()
875 1
                self._install_direct_uni_flows()
876
            else:
877 1
                msg = f"{self} was not deployed. No available path was found."
878 1
                if tag_errors:
879 1
                    msg = self.add_tag_errors(msg, tag_errors)
880 1
                    log.error(msg)
881
                else:
882 1
                    log.warning(msg)
883 1
                return False
884 1
        except EVCPathNotInstalled as err:
885 1
            log.error(
886
                f"Error deploying EVC {self} when calling flow_manager: {err}"
887
            )
888 1
            self.remove_current_flows(use_path, sync=True)
889 1
            return False
890 1
        self.activate()
891 1
        self.current_path = use_path
892 1
        self.sync()
893 1
        log.info(f"{self} was deployed.")
894 1
        return True
895
896 1
    def try_setup_failover_path(self, wait=settings.DEPLOY_EVCS_INTERVAL):
897
        """Try setup failover_path whenever possible."""
898 1
        if (
899
                self.failover_path or not self.current_path
900
                or not self.is_active()
901
                ):
902 1
            return
903 1
        if (now() - self.affected_by_link_at).seconds >= wait:
904 1
            with self.lock:
905 1
                self.setup_failover_path()
906
907
    # pylint: disable=too-many-statements
908 1
    def setup_failover_path(self):
909
        """Install flows for the failover path of this EVC.
910
911
        Procedures to deploy:
912
913
        0. Remove flows currently installed for failover_path (if any)
914
        1. Discover a disjoint path from current_path
915
        2. Choose vlans
916
        3. Install NNI flows
917
        4. Install UNI egress flows
918
        5. Update failover_path
919
        """
920
        # Intra-switch EVCs have no failover_path
921 1
        if self.is_intra_switch():
922 1
            return False
923
924
        # For not only setup failover path for totally dynamic EVCs
925 1
        if not self.is_eligible_for_failover_path():
926 1
            return False
927
928 1
        out_new_flows: dict[str, list[dict]] = {}
929 1
        reason = ""
930 1
        tag_errors = []
931 1
        out_removed_flows = self.remove_path_flows(self.failover_path)
932 1
        self.failover_path = Path([])
933
934 1
        for use_path in self.get_failover_path_candidates():
935 1
            if not use_path:
936 1
                continue
937 1
            try:
938 1
                use_path.choose_vlans(self._controller)
939 1
                break
940 1
            except KytosNoTagAvailableError as e:
941 1
                tag_errors.append(str(e))
942
        else:
943 1
            use_path = Path([])
944 1
            reason = "No available path was found"
945
946 1
        try:
947 1
            if use_path:
948 1
                out_new_flows = self._install_flows(
949
                    use_path, skip_in=True
950
                )
951 1
        except EVCPathNotInstalled as err:
952 1
            reason = "Error deploying failover path"
953 1
            log.error(
954
                f"{reason} for {self}. FlowManager error: {err}"
955
            )
956 1
            _rmed_flows = self.remove_path_flows(use_path)
957 1
            out_removed_flows = merge_flow_dicts(
958
                out_removed_flows, _rmed_flows
959
            )
960 1
            use_path = Path([])
961
962 1
        self.failover_path = use_path
963 1
        self.sync()
964
965 1
        if out_new_flows or out_removed_flows:
966 1
            emit_event(self._controller, "failover_deployed", content={
967
                self.id: map_evc_event_content(
968
                    self,
969
                    flows=deepcopy(out_new_flows),
970
                    removed_flows=deepcopy(out_removed_flows),
971
                    error_reason=reason,
972
                    current_path=self.current_path.as_dict(),
973
                )
974
            })
975
976 1
        if not use_path:
977 1
            msg = f"Failover path for {self} was not deployed: {reason}."
978 1
            if tag_errors:
979 1
                msg = self.add_tag_errors(msg, tag_errors)
980 1
                log.error(msg)
981
            else:
982 1
                log.warning(msg)
983 1
            return False
984 1
        log.info(f"Failover path for {self} was deployed.")
985 1
        return True
986
987 1
    @staticmethod
988 1
    def add_tag_errors(msg: str, tag_errors: list):
989
        """Add to msg the tag errors ecountered when chossing path."""
990 1
        path = ['path', 'paths']
991 1
        was = ['was', 'were']
992 1
        message = ['message', 'messages']
993
994
        # Choose either singular(0) or plural(1) words
995 1
        n = 1
996 1
        if len(tag_errors) == 1:
997 1
            n = 0
998
999 1
        msg += f" {len(tag_errors)} {path[n]} {was[n]} rejected"
1000 1
        msg += f" with {message[n]}: {tag_errors}"
1001 1
        return msg
1002
1003 1
    def get_failover_flows(self):
1004
        """Return the flows needed to make the failover path active, i.e. the
1005
        flows for ingress forwarding.
1006
1007
        Return:
1008
            dict: A dict of flows indexed by the switch_id will be returned, or
1009
                an empty dict if no failover_path is available.
1010
        """
1011 1
        if not self.failover_path:
1012 1
            return {}
1013 1
        return self._prepare_uni_flows(self.failover_path, skip_out=True)
1014
1015
    # pylint: disable=too-many-branches
1016 1
    def _prepare_direct_uni_flows(self):
1017
        """Prepare flows connecting two UNIs for intra-switch EVC."""
1018 1
        vlan_a = self._get_value_from_uni_tag(self.uni_a)
1019 1
        vlan_z = self._get_value_from_uni_tag(self.uni_z)
1020
1021 1
        flow_mod_az = self._prepare_flow_mod(
1022
            self.uni_a.interface, self.uni_z.interface,
1023
            self.queue_id, vlan_a
1024
        )
1025 1
        flow_mod_za = self._prepare_flow_mod(
1026
            self.uni_z.interface, self.uni_a.interface,
1027
            self.queue_id, vlan_z
1028
        )
1029
1030 1 View Code Duplication
        if not isinstance(vlan_z, list) and vlan_z not in self.special_cases:
0 ignored issues
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1031 1
            flow_mod_az["actions"].insert(
1032
                0, {"action_type": "set_vlan", "vlan_id": vlan_z}
1033
            )
1034 1
            if not vlan_a:
1035 1
                flow_mod_az["actions"].insert(
1036
                    0, {"action_type": "push_vlan", "tag_type": "c"}
1037
                )
1038 1
            if vlan_a == 0:
1039 1
                flow_mod_za["actions"].insert(0, {"action_type": "pop_vlan"})
1040 1
        elif vlan_a == 0 and vlan_z == "4096/4096":
1041 1
            flow_mod_za["actions"].insert(0, {"action_type": "pop_vlan"})
1042
1043 1 View Code Duplication
        if not isinstance(vlan_a, list) and vlan_a not in self.special_cases:
0 ignored issues
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Duplication introduced by
This code seems to be duplicated in your project.
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1044 1
            flow_mod_za["actions"].insert(
1045
                    0, {"action_type": "set_vlan", "vlan_id": vlan_a}
1046
                )
1047 1
            if not vlan_z:
1048 1
                flow_mod_za["actions"].insert(
1049
                    0, {"action_type": "push_vlan", "tag_type": "c"}
1050
                )
1051 1
            if vlan_z == 0:
1052 1
                flow_mod_az["actions"].insert(0, {"action_type": "pop_vlan"})
1053 1
        elif vlan_a == "4096/4096" and vlan_z == 0:
1054 1
            flow_mod_az["actions"].insert(0, {"action_type": "pop_vlan"})
1055
1056 1
        flows = []
1057 1
        if isinstance(vlan_a, list):
1058 1
            for mask_a in vlan_a:
1059 1
                flow_aux = deepcopy(flow_mod_az)
1060 1
                flow_aux["match"]["dl_vlan"] = mask_a
1061 1
                flows.append(flow_aux)
1062
        else:
1063 1
            if vlan_a is not None:
1064 1
                flow_mod_az["match"]["dl_vlan"] = vlan_a
1065 1
            flows.append(flow_mod_az)
1066
1067 1
        if isinstance(vlan_z, list):
1068 1
            for mask_z in vlan_z:
1069 1
                flow_aux = deepcopy(flow_mod_za)
1070 1
                flow_aux["match"]["dl_vlan"] = mask_z
1071 1
                flows.append(flow_aux)
1072
        else:
1073 1
            if vlan_z is not None:
1074 1
                flow_mod_za["match"]["dl_vlan"] = vlan_z
1075 1
            flows.append(flow_mod_za)
1076 1
        return (
1077
            self.uni_a.interface.switch.id, flows
1078
        )
1079
1080 1
    def _install_direct_uni_flows(self):
1081
        """Install flows connecting two UNIs.
1082
1083
        This case happens when the circuit is between UNIs in the
1084
        same switch.
1085
        """
1086 1
        (dpid, flows) = self._prepare_direct_uni_flows()
1087 1
        flow_mods = {"switches": [dpid], "flows": flows}
1088 1
        try:
1089 1
            self._send_flow_mods(flow_mods, "install")
1090 1
        except FlowModException as err:
1091 1
            raise EVCPathNotInstalled(str(err)) from err
1092
1093 1
    def _prepare_nni_flows(self, path=None):
1094
        """Prepare NNI flows."""
1095 1
        nni_flows = OrderedDict()
1096 1
        previous = self.uni_a.interface.switch.dpid
1097 1
        for incoming, outcoming in self.links_zipped(path):
1098 1
            in_vlan = incoming.get_metadata("s_vlan").value
1099 1
            out_vlan = outcoming.get_metadata("s_vlan").value
1100 1
            in_endpoint = self.get_endpoint_by_id(incoming, previous, ne)
1101 1
            out_endpoint = self.get_endpoint_by_id(
1102
                outcoming, in_endpoint.switch.id, eq
1103
            )
1104
1105 1
            flows = []
1106
            # Flow for one direction
1107 1
            flows.append(
1108
                self._prepare_nni_flow(
1109
                    in_endpoint,
1110
                    out_endpoint,
1111
                    in_vlan,
1112
                    out_vlan,
1113
                    queue_id=self.queue_id,
1114
                )
1115
            )
1116
1117
            # Flow for the other direction
1118 1
            flows.append(
1119
                self._prepare_nni_flow(
1120
                    out_endpoint,
1121
                    in_endpoint,
1122
                    out_vlan,
1123
                    in_vlan,
1124
                    queue_id=self.queue_id,
1125
                )
1126
            )
1127 1
            previous = in_endpoint.switch.id
1128 1
            nni_flows[in_endpoint.switch.id] = flows
1129 1
        return nni_flows
1130
1131 1
    def _install_flows(
1132
        self, path=None, skip_in=False, skip_out=False
1133
    ) -> dict[str, list[dict]]:
1134
        """Install uni and nni flows"""
1135 1
        flows_by_switch = defaultdict(lambda: {"flows": []})
1136 1
        new_flows = defaultdict(list)
1137 1
        for dpid, flows in self._prepare_nni_flows(path).items():
1138 1
            flows_by_switch[dpid]["flows"].extend(flows)
1139 1
            new_flows[dpid].extend(flows)
1140 1
        for dpid, flows in self._prepare_uni_flows(
1141
            path, skip_in, skip_out
1142
        ).items():
1143 1
            flows_by_switch[dpid]["flows"].extend(flows)
1144 1
            new_flows[dpid].extend(flows)
1145
1146 1
        try:
1147 1
            self._send_flow_mods(flows_by_switch, "install", by_switch=True)
1148 1
        except FlowModException as err:
1149 1
            raise EVCPathNotInstalled(str(err)) from err
1150
1151 1
        return new_flows
1152
1153 1
    @staticmethod
1154 1
    def _get_value_from_uni_tag(uni: UNI):
1155
        """Returns the value from tag. In case of any and untagged
1156
        it should return 4096/4096 and 0 respectively"""
1157 1
        special = {"any": "4096/4096", "untagged": 0}
1158 1
        if uni.user_tag:
1159 1
            value = uni.user_tag.value
1160 1
            if isinstance(value, list):
1161 1
                return uni.user_tag.mask_list
1162 1
            return special.get(value, value)
1163 1
        return None
1164
1165
    # pylint: disable=too-many-locals
1166 1
    def _prepare_uni_flows(self, path=None, skip_in=False, skip_out=False):
1167
        """Prepare flows to install UNIs."""
1168 1
        uni_flows = {}
1169 1
        if not path:
1170
            log.info("install uni flows without path.")
1171
            return uni_flows
1172
1173
        # Determine VLANs
1174 1
        in_vlan_a = self._get_value_from_uni_tag(self.uni_a)
1175 1
        out_vlan_a = path[0].get_metadata("s_vlan").value
1176
1177 1
        in_vlan_z = self._get_value_from_uni_tag(self.uni_z)
1178 1
        out_vlan_z = path[-1].get_metadata("s_vlan").value
1179
1180
        # Get endpoints from path
1181 1
        endpoint_a = self.get_endpoint_by_id(
1182
            path[0], self.uni_a.interface.switch.id, eq
1183
        )
1184 1
        endpoint_z = self.get_endpoint_by_id(
1185
            path[-1], self.uni_z.interface.switch.id, eq
1186
        )
1187
1188
        # Flows for the first UNI
1189 1
        flows_a = []
1190
1191
        # Flow for one direction, pushing the service tag
1192 1
        if not skip_in:
1193 1
            if isinstance(in_vlan_a, list):
1194 1
                for in_mask_a in in_vlan_a:
1195 1
                    push_flow = self._prepare_push_flow(
1196
                        self.uni_a.interface,
1197
                        endpoint_a,
1198
                        in_mask_a,
1199
                        out_vlan_a,
1200
                        in_vlan_z,
1201
                        queue_id=self.queue_id,
1202
                    )
1203 1
                    flows_a.append(push_flow)
1204
            else:
1205
                push_flow = self._prepare_push_flow(
1206
                    self.uni_a.interface,
1207
                    endpoint_a,
1208
                    in_vlan_a,
1209
                    out_vlan_a,
1210
                    in_vlan_z,
1211
                    queue_id=self.queue_id,
1212
                )
1213
                flows_a.append(push_flow)
1214
1215
        # Flow for the other direction, popping the service tag
1216 1
        if not skip_out:
1217 1
            pop_flow = self._prepare_pop_flow(
1218
                endpoint_a,
1219
                self.uni_a.interface,
1220
                out_vlan_a,
1221
                queue_id=self.queue_id,
1222
            )
1223 1
            flows_a.append(pop_flow)
1224
1225 1
        uni_flows[self.uni_a.interface.switch.id] = flows_a
1226
1227
        # Flows for the second UNI
1228 1
        flows_z = []
1229
1230
        # Flow for one direction, pushing the service tag
1231 1
        if not skip_in:
1232 1
            if isinstance(in_vlan_z, list):
1233 1
                for in_mask_z in in_vlan_z:
1234 1
                    push_flow = self._prepare_push_flow(
1235
                        self.uni_z.interface,
1236
                        endpoint_z,
1237
                        in_mask_z,
1238
                        out_vlan_z,
1239
                        in_vlan_a,
1240
                        queue_id=self.queue_id,
1241
                    )
1242 1
                    flows_z.append(push_flow)
1243
            else:
1244
                push_flow = self._prepare_push_flow(
1245
                    self.uni_z.interface,
1246
                    endpoint_z,
1247
                    in_vlan_z,
1248
                    out_vlan_z,
1249
                    in_vlan_a,
1250
                    queue_id=self.queue_id,
1251
                )
1252
                flows_z.append(push_flow)
1253
1254
        # Flow for the other direction, popping the service tag
1255 1
        if not skip_out:
1256 1
            pop_flow = self._prepare_pop_flow(
1257
                endpoint_z,
1258
                self.uni_z.interface,
1259
                out_vlan_z,
1260
                queue_id=self.queue_id,
1261
            )
1262 1
            flows_z.append(pop_flow)
1263
1264 1
        uni_flows[self.uni_z.interface.switch.id] = flows_z
1265
1266 1
        return uni_flows
1267
1268 1
    @staticmethod
1269 1
    @retry(
1270
        stop=stop_after_attempt(3),
1271
        wait=wait_combine(wait_fixed(3), wait_random(min=2, max=7)),
1272
        retry=retry_if_exception_type(FlowModException),
1273
        before_sleep=before_sleep,
1274
        reraise=True,
1275
    )
1276 1
    def _send_flow_mods(
1277
        data_content: dict,
1278
        command="install",
1279
        force=False,
1280
        by_switch=False
1281
    ):
1282
        """Send a flow_mod list to a specific switch.
1283
1284
        Args:
1285
            dpid(str): The target of flows (i.e. Switch.id).
1286
            flow_mods(dict): Python dictionary with flow_mods.
1287
            command(str): By default is 'flows'. To remove a flow is 'remove'.
1288
            force(bool): True to send via consistency check in case of errors.
1289
            by_switch(bool): True to send to 'flows_by_switch' request instead.
1290
        """
1291 1
        if by_switch:
1292 1
            endpoint = f"{settings.MANAGER_URL}/flows_by_switch/?force={force}"
1293
        else:
1294 1
            endpoint = f"{settings.MANAGER_URL}/flows"
1295 1
            data_content["force"] = force
1296 1
        try:
1297 1
            if command == "install":
1298 1
                res = httpx.post(endpoint, json=data_content, timeout=30)
1299 1
            elif command == "delete":
1300 1
                res = httpx.request(
1301
                    "DELETE", endpoint, json=data_content, timeout=30
1302
                )
1303 1
        except httpx.RequestError as err:
1304 1
            raise FlowModException(str(err)) from err
1305 1
        if res.is_server_error or res.status_code >= 400:
1306 1
            raise FlowModException(res.text)
1307
1308 1
    def get_cookie(self):
1309
        """Return the cookie integer from evc id."""
1310 1
        return int(self.id, 16) + (settings.COOKIE_PREFIX << 56)
1311
1312 1
    @staticmethod
1313 1
    def get_id_from_cookie(cookie):
1314
        """Return the evc id given a cookie value."""
1315 1
        evc_id = cookie - (settings.COOKIE_PREFIX << 56)
1316 1
        return f"{evc_id:x}".zfill(14)
1317
1318 1
    def set_flow_table_group_id(self, flow_mod: dict, vlan) -> dict:
1319
        """Set table_group and table_id"""
1320 1
        table_group = "epl" if vlan is None else "evpl"
1321 1
        flow_mod["table_group"] = table_group
1322 1
        flow_mod["table_id"] = self.table_group[table_group]
1323 1
        return flow_mod
1324
1325 1
    @staticmethod
1326 1
    def get_priority(vlan):
1327
        """Return priority value depending on vlan value"""
1328 1
        if isinstance(vlan, list):
1329 1
            return settings.EVPL_SB_PRIORITY
1330 1
        if vlan not in {None, "4096/4096", 0}:
1331 1
            return settings.EVPL_SB_PRIORITY
1332 1
        if vlan == 0:
1333 1
            return settings.UNTAGGED_SB_PRIORITY
1334 1
        if vlan == "4096/4096":
1335 1
            return settings.ANY_SB_PRIORITY
1336 1
        return settings.EPL_SB_PRIORITY
1337
1338 1
    def _prepare_flow_mod(self, in_interface, out_interface,
1339
                          queue_id=None, vlan=True):
1340
        """Prepare a common flow mod."""
1341 1
        default_actions = [
1342
            {"action_type": "output", "port": out_interface.port_number}
1343
        ]
1344 1
        queue_id = settings.QUEUE_ID if queue_id == -1 else queue_id
1345 1
        if queue_id is not None:
1346 1
            default_actions.append(
1347
                {"action_type": "set_queue", "queue_id": queue_id}
1348
            )
1349
1350 1
        flow_mod = {
1351
            "match": {"in_port": in_interface.port_number},
1352
            "cookie": self.get_cookie(),
1353
            "actions": default_actions,
1354
            "owner": "mef_eline",
1355
        }
1356
1357 1
        self.set_flow_table_group_id(flow_mod, vlan)
1358 1
        if self.sb_priority:
1359 1
            flow_mod["priority"] = self.sb_priority
1360
        else:
1361 1
            flow_mod["priority"] = self.get_priority(vlan)
1362 1
        return flow_mod
1363
1364 1
    def _prepare_nni_flow(self, *args, queue_id=None):
1365
        """Create NNI flows."""
1366 1
        in_interface, out_interface, in_vlan, out_vlan = args
1367 1
        flow_mod = self._prepare_flow_mod(
1368
            in_interface, out_interface, queue_id
1369
        )
1370 1
        flow_mod["match"]["dl_vlan"] = in_vlan
1371 1
        new_action = {"action_type": "set_vlan", "vlan_id": out_vlan}
1372 1
        flow_mod["actions"].insert(0, new_action)
1373
1374 1
        return flow_mod
1375
1376 1
    def _prepare_push_flow(self, *args, queue_id=None):
1377
        """Prepare push flow.
1378
1379
        Arguments:
1380
            in_interface(str): Interface input.
1381
            out_interface(str): Interface output.
1382
            in_vlan(int,str,None): Vlan input.
1383
            out_vlan(str): Vlan output.
1384
            new_c_vlan(int,str,list,None): New client vlan.
1385
1386
        Return:
1387
            dict: An python dictionary representing a FlowMod
1388
1389
        """
1390
        # assign all arguments
1391 1
        in_interface, out_interface, in_vlan, out_vlan, new_c_vlan = args
1392 1
        vlan_pri = in_vlan if not isinstance(new_c_vlan, list) else new_c_vlan
1393 1
        flow_mod = self._prepare_flow_mod(
1394
            in_interface, out_interface, queue_id, vlan_pri
1395
        )
1396
        # the service tag must be always pushed
1397 1
        new_action = {"action_type": "set_vlan", "vlan_id": out_vlan}
1398 1
        flow_mod["actions"].insert(0, new_action)
1399
1400 1
        new_action = {"action_type": "push_vlan", "tag_type": "s"}
1401 1
        flow_mod["actions"].insert(0, new_action)
1402
1403 1
        if in_vlan is not None:
1404
            # if in_vlan is set, it must be included in the match
1405 1
            flow_mod["match"]["dl_vlan"] = in_vlan
1406
1407 1
        if (not isinstance(new_c_vlan, list) and in_vlan != new_c_vlan and
1408
                new_c_vlan not in self.special_cases):
1409
            # new_in_vlan is an integer but zero, action to set is required
1410 1
            new_action = {"action_type": "set_vlan", "vlan_id": new_c_vlan}
1411 1
            flow_mod["actions"].insert(0, new_action)
1412
1413 1
        if in_vlan not in self.special_cases and new_c_vlan == 0:
1414
            # # new_in_vlan is an integer but zero and new_c_vlan does not
1415
            # a pop action is required
1416 1
            new_action = {"action_type": "pop_vlan"}
1417 1
            flow_mod["actions"].insert(0, new_action)
1418
1419 1
        elif in_vlan == "4096/4096" and new_c_vlan == 0:
1420
            # if in_vlan match with any tags and new_c_vlan does not
1421
            # a pop action is required
1422 1
            new_action = {"action_type": "pop_vlan"}
1423 1
            flow_mod["actions"].insert(0, new_action)
1424
1425 1
        elif (not in_vlan and
1426
                (not isinstance(new_c_vlan, list) and
1427
                 new_c_vlan not in self.special_cases)):
1428
            # new_in_vlan is an integer but zero and in_vlan is not set
1429
            # then it is set now
1430 1
            new_action = {"action_type": "push_vlan", "tag_type": "c"}
1431 1
            flow_mod["actions"].insert(0, new_action)
1432
1433 1
        return flow_mod
1434
1435 1
    def _prepare_pop_flow(
1436
        self, in_interface, out_interface, out_vlan, queue_id=None
1437
    ):
1438
        # pylint: disable=too-many-arguments
1439
        """Prepare pop flow."""
1440 1
        flow_mod = self._prepare_flow_mod(
1441
            in_interface, out_interface, queue_id
1442
        )
1443 1
        flow_mod["match"]["dl_vlan"] = out_vlan
1444 1
        new_action = {"action_type": "pop_vlan"}
1445 1
        flow_mod["actions"].insert(0, new_action)
1446 1
        return flow_mod
1447
1448 1
    @staticmethod
1449 1
    def run_bulk_sdntraces(
1450
        uni_list: list[tuple[Interface, Union[str, int, None]]]
1451
    ) -> dict:
1452
        """Run SDN traces on control plane starting from EVC UNIs."""
1453 1
        endpoint = f"{settings.SDN_TRACE_CP_URL}/traces"
1454 1
        data = []
1455 1
        for interface, tag_value in uni_list:
1456 1
            data_uni = {
1457
                "trace": {
1458
                            "switch": {
1459
                                "dpid": interface.switch.dpid,
1460
                                "in_port": interface.port_number,
1461
                            }
1462
                        }
1463
                }
1464 1
            if tag_value:
1465 1
                uni_dl_vlan = map_dl_vlan(tag_value)
1466 1
                if uni_dl_vlan:
1467 1
                    data_uni["trace"]["eth"] = {
1468
                                            "dl_type": 0x8100,
1469
                                            "dl_vlan": uni_dl_vlan,
1470
                                            }
1471 1
            data.append(data_uni)
1472 1
        try:
1473 1
            response = httpx.put(endpoint, json=data, timeout=30)
1474 1
        except httpx.TimeoutException as exception:
1475 1
            log.error(f"Request has timed out: {exception}")
1476 1
            return {"result": []}
1477 1
        if response.status_code >= 400:
1478 1
            log.error(f"Failed to run sdntrace-cp: {response.text}")
1479 1
            return {"result": []}
1480 1
        return response.json()
1481
1482
    # pylint: disable=too-many-return-statements, too-many-arguments
1483 1
    @staticmethod
1484 1
    def check_trace(
1485
        evc_id: str,
1486
        evc_name: str,
1487
        tag_a: Union[None, int, str],
1488
        tag_z: Union[None, int, str],
1489
        interface_a: Interface,
1490
        interface_z: Interface,
1491
        current_path: list,
1492
        trace_a: list,
1493
        trace_z: list
1494
    ) -> bool:
1495
        """Auxiliar function to check an individual trace"""
1496 1
        if (
1497
            len(trace_a) != len(current_path) + 1
1498
            or not compare_uni_out_trace(tag_z, interface_z, trace_a[-1])
1499
        ):
1500 1
            log.warning(f"From EVC({evc_id}) named '{evc_name}'. "
1501
                        f"Invalid trace from uni_a: {trace_a}")
1502 1
            return False
1503 1
        if (
1504
            len(trace_z) != len(current_path) + 1
1505
            or not compare_uni_out_trace(tag_a, interface_a, trace_z[-1])
1506
        ):
1507 1
            log.warning(f"From EVC({evc_id}) named '{evc_name}'. "
1508
                        f"Invalid trace from uni_z: {trace_z}")
1509 1
            return False
1510
1511 1
        if not current_path:
1512
            return True
1513
1514 1
        first_link, trace_path_begin, trace_path_end = current_path[0], [], []
1515 1
        if (
1516
            first_link.endpoint_a.switch.id == trace_a[0]["dpid"]
1517
        ):
1518 1
            trace_path_begin, trace_path_end = trace_a, trace_z
1519 1
        elif (
1520
            first_link.endpoint_a.switch.id == trace_z[0]["dpid"]
1521
        ):
1522 1
            trace_path_begin, trace_path_end = trace_z, trace_a
1523
        else:
1524
            msg = (
1525
                f"first link {first_link} endpoint_a didn't match the first "
1526
                f"step of trace_a {trace_a} or trace_z {trace_z}"
1527
            )
1528
            log.warning(msg)
1529
            return False
1530
1531 1
        for link, trace1, trace2 in zip(current_path,
1532
                                        trace_path_begin[1:],
1533
                                        trace_path_end[:0:-1]):
1534 1
            metadata_vlan = None
1535 1
            if link.metadata:
1536 1
                metadata_vlan = glom(link.metadata, 's_vlan.value')
1537 1
            if compare_endpoint_trace(
1538
                                        link.endpoint_a,
1539
                                        metadata_vlan,
1540
                                        trace2
1541
                                    ) is False:
1542 1
                log.warning(f"From EVC({evc_id}) named '{evc_name}'. "
1543
                            f"Invalid trace from uni_a: {trace_a}")
1544 1
                return False
1545 1
            if compare_endpoint_trace(
1546
                                        link.endpoint_b,
1547
                                        metadata_vlan,
1548
                                        trace1
1549
                                    ) is False:
1550 1
                log.warning(f"From EVC({evc_id}) named '{evc_name}'. "
1551
                            f"Invalid trace from uni_z: {trace_z}")
1552 1
                return False
1553
1554 1
        return True
1555
1556 1
    @staticmethod
1557 1
    def check_range(circuit, traces: list) -> bool:
1558
        """Check traces when for UNI with TAGRange"""
1559 1
        check = True
1560 1
        for i, mask in enumerate(circuit.uni_a.user_tag.mask_list):
1561 1
            trace_a = traces[i*2]
1562 1
            trace_z = traces[i*2+1]
1563 1
            check &= EVCDeploy.check_trace(
1564
                circuit.id, circuit.name,
1565
                mask, mask,
1566
                circuit.uni_a.interface,
1567
                circuit.uni_z.interface,
1568
                circuit.current_path,
1569
                trace_a, trace_z,
1570
            )
1571 1
        return check
1572
1573 1
    @staticmethod
1574 1
    def check_list_traces(list_circuits: list) -> dict:
1575
        """Check if current_path is deployed comparing with SDN traces."""
1576 1
        if not list_circuits:
1577 1
            return {}
1578 1
        uni_list = make_uni_list(list_circuits)
1579 1
        traces = EVCDeploy.run_bulk_sdntraces(uni_list)["result"]
1580
1581 1
        if not traces:
1582 1
            return {}
1583
1584 1
        try:
1585 1
            circuits_checked = {}
1586 1
            i = 0
1587 1
            for circuit in list_circuits:
1588 1
                if isinstance(circuit.uni_a.user_tag, TAGRange):
1589 1
                    length = len(circuit.uni_a.user_tag.mask_list)
1590 1
                    circuits_checked[circuit.id] = EVCDeploy.check_range(
1591
                        circuit, traces[i:i+length*2]
1592
                    )
1593 1
                    i += length*2
1594
                else:
1595 1
                    trace_a = traces[i]
1596 1
                    trace_z = traces[i+1]
1597 1
                    tag_a = None
1598 1
                    if circuit.uni_a.user_tag:
1599 1
                        tag_a = circuit.uni_a.user_tag.value
1600 1
                    tag_z = None
1601 1
                    if circuit.uni_z.user_tag:
1602 1
                        tag_z = circuit.uni_z.user_tag.value
1603 1
                    circuits_checked[circuit.id] = EVCDeploy.check_trace(
1604
                        circuit.id, circuit.name,
1605
                        tag_a, tag_z,
1606
                        circuit.uni_a.interface,
1607
                        circuit.uni_z.interface,
1608
                        circuit.current_path,
1609
                        trace_a, trace_z
1610
                    )
1611 1
                    i += 2
1612 1
        except IndexError as err:
1613 1
            log.error(
1614
                f"Bulk sdntraces returned fewer items than expected."
1615
                f"Error = {err}"
1616
            )
1617 1
            return {}
1618
1619 1
        return circuits_checked
1620
1621 1
    @staticmethod
1622 1
    def get_endpoint_by_id(
1623
        link: Link,
1624
        id_: str,
1625
        operator: Union[eq, ne]
1626
    ) -> Interface:
1627
        """Return endpoint from link
1628
        either equal(eq) or not equal(ne) to id"""
1629 1
        if operator(link.endpoint_a.switch.id, id_):
1630 1
            return link.endpoint_a
1631 1
        return link.endpoint_b
1632
1633
1634 1
class LinkProtection(EVCDeploy):
1635
    """Class to handle link protection."""
1636
1637 1
    def is_affected_by_link(self, link=None):
1638
        """Verify if the current path is affected by link down event."""
1639
        return self.current_path.is_affected_by_link(link)
1640
1641 1
    def is_using_primary_path(self):
1642
        """Verify if the current deployed path is self.primary_path."""
1643 1
        return self.current_path == self.primary_path
1644
1645 1
    def is_using_backup_path(self):
1646
        """Verify if the current deployed path is self.backup_path."""
1647 1
        return self.current_path == self.backup_path
1648
1649 1
    def is_using_dynamic_path(self):
1650
        """Verify if the current deployed path is dynamic."""
1651 1
        if (
1652
            self.current_path
1653
            and not self.is_using_primary_path()
1654
            and not self.is_using_backup_path()
1655
            and self.current_path.status is EntityStatus.UP
1656
        ):
1657
            return True
1658 1
        return False
1659
1660 1
    def handle_link_up(self, link):
1661
        """Handle circuit when link up.
1662
1663
        Args:
1664
            link(Link): Link affected by link.up event.
1665
1666
        """
1667 1
        condition_pairs = [
1668
            (
1669
                lambda me: me.is_using_primary_path(),
1670
                lambda _: (True, 'nothing')
1671
            ),
1672
            (
1673
                lambda me: me.is_intra_switch(),
1674
                lambda _: (True, 'nothing')
1675
            ),
1676
            (
1677
                lambda me: me.primary_path.is_affected_by_link(link),
1678
                lambda me: (me.deploy_to_primary_path(), 'redeploy')
1679
            ),
1680
            # We tried to deploy(primary_path) without success.
1681
            # And in this case is up by some how. Nothing to do.
1682
            (
1683
                lambda me: me.is_using_backup_path(),
1684
                lambda _: (True, 'nothing')
1685
            ),
1686
            (
1687
                lambda me:  me.is_using_dynamic_path(),
1688
                lambda _: (True, 'nothing')
1689
            ),
1690
            # In this case, probably the circuit is not being used and
1691
            # we can move to backup
1692
            (
1693
                lambda me: me.backup_path.is_affected_by_link(link),
1694
                lambda me: (me.deploy_to_backup_path(), 'redeploy')
1695
            ),
1696
            # In this case, the circuit is not being used and we should
1697
            # try a dynamic path
1698
            (
1699
                lambda me: me.dynamic_backup_path and not me.is_active(),
1700
                lambda me: (me.deploy_to_path(), 'redeploy')
1701
            )
1702
        ]
1703 1
        for predicate, action in condition_pairs:
1704 1
            if not predicate(self):
1705 1
                continue
1706 1
            success, succcess_type = action(self)
1707 1
            if success:
1708 1
                if succcess_type == 'redeploy':
1709 1
                    emit_event(
1710
                        self._controller,
1711
                        "redeployed_link_up",
1712
                        content=map_evc_event_content(self)
1713
                    )
1714 1
                return True
1715 1
        return False
1716
1717 1
    def handle_link_down(self):
1718
        """Handle circuit when link down.
1719
1720
        Returns:
1721
            bool: True if the re-deploy was successly otherwise False.
1722
1723
        """
1724 1
        success = False
1725 1
        if self.is_using_primary_path():
1726 1
            success = self.deploy_to_backup_path()
1727 1
        elif self.is_using_backup_path():
1728 1
            success = self.deploy_to_primary_path()
1729
1730 1
        if not success and self.dynamic_backup_path:
1731 1
            success = self.deploy_to_path()
1732
1733 1
        if success:
1734 1
            log.debug(f"{self} deployed after link down.")
1735
        else:
1736 1
            self.remove_current_flows(sync=False)
1737 1
            self.deactivate()
1738 1
            self.sync()
1739 1
            log.debug(f"Failed to re-deploy {self} after link down.")
1740
1741 1
        return success
1742
1743 1
    @staticmethod
1744 1
    def get_interface_from_switch(uni: UNI, switches: dict) -> Interface:
1745
        """Get interface from switch by uni"""
1746 1
        switch = switches[uni.interface.switch.dpid]
1747 1
        interface = switch.interfaces[uni.interface.port_number]
1748 1
        return interface
1749
1750 1
    def are_unis_active(self, switches: dict) -> bool:
1751
        """Determine whether this EVC should be active"""
1752 1
        interface_a = self.get_interface_from_switch(self.uni_a, switches)
1753 1
        interface_z = self.get_interface_from_switch(self.uni_z, switches)
1754 1
        active, _ = self.is_uni_interface_active(interface_a, interface_z)
1755 1
        return active
1756
1757 1
    @staticmethod
1758 1
    def is_uni_interface_active(
1759
        *interfaces: Interface
1760
    ) -> tuple[bool, dict]:
1761
        """Determine whether a UNI should be active"""
1762 1
        active = True
1763 1
        bad_interfaces = [
1764
            interface
1765
            for interface in interfaces
1766
            if interface.status != EntityStatus.UP
1767
        ]
1768 1
        if bad_interfaces:
1769 1
            active = False
1770 1
            interfaces = bad_interfaces
1771 1
        return active, {
1772
            interface.id: {
1773
                'status': interface.status.value,
1774
                'status_reason': interface.status_reason,
1775
            }
1776
            for interface in interfaces
1777
        }
1778
1779 1
    def handle_interface_link_up(self, interface: Interface):
1780
        """
1781
        Handler for interface link_up events
1782
        """
1783 1
        if self.is_active():
1784 1
            return
1785 1
        interfaces = (self.uni_a.interface, self.uni_z.interface)
1786 1
        if interface not in interfaces:
1787
            return
1788 1
        down_interfaces = [
1789
            interface
1790
            for interface in interfaces
1791
            if interface.status != EntityStatus.UP
1792
        ]
1793 1
        if down_interfaces:
1794
            return
1795 1
        interface_dicts = {
1796
            interface.id: {
1797
                'status': interface.status.value,
1798
                'status_reason': interface.status_reason,
1799
            }
1800
            for interface in interfaces
1801
        }
1802 1
        self.activate()
1803 1
        log.info(
1804
            f"Activating {self}. Interfaces: "
1805
            f"{interface_dicts}."
1806
        )
1807 1
        emit_event(self._controller, "uni_active_updated",
1808
                   content=map_evc_event_content(self))
1809 1
        self.sync()
1810
1811 1
    def handle_interface_link_down(self, interface):
1812
        """
1813
        Handler for interface link_down events
1814
        """
1815 1
        if not self.is_active():
1816 1
            return
1817 1
        interfaces = (self.uni_a.interface, self.uni_z.interface)
1818 1
        if interface not in interfaces:
1819
            return
1820 1
        down_interfaces = [
1821
            interface
1822
            for interface in interfaces
1823
            if interface.status != EntityStatus.UP
1824
        ]
1825 1
        if not down_interfaces:
1826
            return
1827 1
        interface_dicts = {
1828
            interface.id: {
1829
                'status': interface.status.value,
1830
                'status_reason': interface.status_reason,
1831
            }
1832
            for interface in down_interfaces
1833
        }
1834 1
        self.deactivate()
1835 1
        log.info(
1836
            f"Deactivating {self}. Interfaces: "
1837
            f"{interface_dicts}."
1838
        )
1839 1
        emit_event(self._controller, "uni_active_updated",
1840
                   content=map_evc_event_content(self))
1841 1
        self.sync()
1842
1843
1844 1
class EVC(LinkProtection):
1845
    """Class that represents a E-Line Virtual Connection."""
1846