Passed
Pull Request — master (#475)
by Aldo
05:02
created

build.models.evc.EVCDeploy.check_trace()   D

Complexity

Conditions 12

Size

Total Lines 72
Code Lines 55

Duplication

Lines 0
Ratio 0 %

Code Coverage

Tests 25
CRAP Score 12.3775

Importance

Changes 0
Metric Value
cc 12
eloc 55
nop 9
dl 0
loc 72
ccs 25
cts 29
cp 0.8621
crap 12.3775
rs 4.8
c 0
b 0
f 0

How to fix   Long Method    Complexity    Many Parameters   

Long Method

Small methods make your code easier to understand, in particular if combined with a good name. Besides, if your method is small, finding a good name is usually much easier.

For example, if you find yourself adding comments to a method's body, this is usually a good sign to extract the commented part to a new method, and use the comment as a starting point when coming up with a good name for this new method.

Commonly applied refactorings include:

Complexity

Complex classes like build.models.evc.EVCDeploy.check_trace() often do a lot of different things. To break such a class down, we need to identify a cohesive component within that class. A common approach to find such a component is to look for fields/methods that share the same prefixes, or suffixes.

Once you have determined the fields that belong together, you can apply the Extract Class refactoring. If the component makes sense as a sub-class, Extract Subclass is also a candidate, and is often faster.

Many Parameters

Methods with many parameters are not only hard to understand, but their parameters also often become inconsistent when you need more, or different data.

There are several approaches to avoid long parameter lists:

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