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* module docstrings * db schema graph * dev docs first pass * dev docs pass 2 * add generated notification to top of generated docs files * linting * regen docs Co-authored-by: Stefan Pratter <stefan@20c.com> Co-authored-by: Sunshine Buchholz <sunshine@20c.com>
315 lines
8.5 KiB
Python
315 lines
8.5 KiB
Python
"""
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peeringdb model / field validators
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"""
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import ipaddress
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import re
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import phonenumbers
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from django.conf import settings
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from django.core.exceptions import ValidationError
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from django.utils.translation import ugettext_lazy as _
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import peeringdb_server.models
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from peeringdb_server.inet import IRR_SOURCE, network_is_pdb_valid
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from peeringdb_server.request import bypass_validation
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def validate_poc_visible(visible):
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# we no longer allow "Private" network contacts
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# however until all private network contacts have
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# been either changed or deleted we cannot remove
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# the value from the choices set for the field
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#
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# for now we handle validation here (see #944)
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if visible == "Private":
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raise ValidationError(_("Private contacts are no longer supported."))
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return visible
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def validate_phonenumber(phonenumber, country=None):
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"""
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Validate a phonenumber to E.164
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Arguments:
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- phonenumber (str)
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Raises:
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- ValidationError if phone number isn't valid E.164 and cannot
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be made E.164 valid
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Returns:
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- str: validated phonenumber
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"""
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if not phonenumber:
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return ""
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try:
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parsed_number = phonenumbers.parse(phonenumber, country)
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validated_number = phonenumbers.format_number(
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parsed_number, phonenumbers.PhoneNumberFormat.E164
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)
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return f"{validated_number}"
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except phonenumbers.phonenumberutil.NumberParseException:
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raise ValidationError(_("Not a valid phone number (E.164)"))
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def validate_zipcode(zipcode, country):
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"""
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Validate a zipcode for a country. If a country has zipcodes, a zipcode
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is required. If a country does not have zipcodes, it's not required.
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Arguments:
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- zipcode (can be Str or None at this point)
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- country (two-letter country-code provided in data)
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Raises:
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- ValidationError if Zipcode is missing from a country WITH
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zipcodes
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Returns:
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- str: zipcode
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"""
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if country in settings.NON_ZIPCODE_COUNTRIES:
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return ""
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else:
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if (zipcode is None) or (zipcode == ""):
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raise ValidationError(_("Input required"))
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else:
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return zipcode
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def validate_prefix(prefix):
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"""
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Validate ip prefix.
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Arguments:
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- prefix: ipaddress.IPv4Network or an ipaddress.IPv6Network
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Raises:
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- ValidationError on failed validation
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Returns:
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- ipaddress.ip_network instance
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"""
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if isinstance(prefix, str):
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try:
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prefix = ipaddress.ip_network(prefix)
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except ValueError:
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raise ValidationError(_("Invalid prefix: {}").format(prefix))
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return prefix
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def validate_address_space(prefix):
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"""
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Validate an ip prefix according to peeringdb specs.
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Arguments:
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- prefix: ipaddress.IPv4Network or an ipaddress.IPv6Network
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Raises:
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- ValidationError on failed validation
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"""
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prefix = validate_prefix(prefix)
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if not network_is_pdb_valid(prefix):
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raise ValidationError(_("Address space invalid: {}").format(prefix))
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# bypass validation according to #741
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if bypass_validation():
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return
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prefixlen_min = getattr(settings, f"DATA_QUALITY_MIN_PREFIXLEN_V{prefix.version}")
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prefixlen_max = getattr(settings, f"DATA_QUALITY_MAX_PREFIXLEN_V{prefix.version}")
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if prefix.prefixlen < prefixlen_min:
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raise ValidationError(
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_("Maximum allowed prefix length is {}").format(prefixlen_min)
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)
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elif prefix.prefixlen > prefixlen_max:
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raise ValidationError(
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_("Minimum allowed prefix length is {}").format(prefixlen_max)
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)
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def validate_info_prefixes4(value):
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if not value:
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value = 0
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if value < 0:
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raise ValidationError(_("Negative value not allowed"))
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# bypass validation according to #741
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if bypass_validation():
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return value
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if value > settings.DATA_QUALITY_MAX_PREFIX_V4_LIMIT:
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raise ValidationError(
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_("Maximum value allowed {}").format(
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settings.DATA_QUALITY_MAX_PREFIX_V4_LIMIT
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)
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)
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return value
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def validate_info_prefixes6(value):
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if not value:
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value = 0
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if value < 0:
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raise ValidationError(_("Negative value not allowed"))
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# bypass validation according to #741
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if bypass_validation():
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return value
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if value > settings.DATA_QUALITY_MAX_PREFIX_V6_LIMIT:
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raise ValidationError(
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_("Maximum value allowed {}").format(
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settings.DATA_QUALITY_MAX_PREFIX_V6_LIMIT
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)
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)
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return value
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def validate_prefix_overlap(prefix):
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"""
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Validate that a prefix does not overlap with another prefix
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on an already existing ixlan.
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Arguments:
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- prefix: ipaddress.IPv4Network or an ipaddress.IPv6Network
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Raises:
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- ValidationError on failed validation
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"""
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prefix = validate_prefix(prefix)
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qs = peeringdb_server.models.IXLanPrefix.objects.filter(
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protocol=f"IPv{prefix.version}", status="ok"
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)
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qs = qs.exclude(prefix=prefix)
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for ixpfx in qs:
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if ixpfx.prefix.overlaps(prefix):
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raise ValidationError(
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_(
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"Prefix overlaps with {}'s prefix: {}".format(
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ixpfx.ixlan.ix.name, ixpfx.prefix
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)
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)
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)
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def validate_irr_as_set(value):
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"""
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Validate irr as-set string.
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- the as-set/rs-set name has to conform to RFC 2622 (5.1 and 5.2)
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- the source may be specified by AS-SET@SOURCE or SOURCE::AS-SET
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- multiple values must be separated by either comma, space or comma followed by space
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Arguments:
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- value: irr as-set string
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Returns:
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- str: validated irr as-set string
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"""
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if not isinstance(value, str):
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raise ValueError(_("IRR AS-SET value must be string type"))
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# split multiple values
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# normalize value separation to commas
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value = value.replace(", ", ",")
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value = value.replace(" ", ",")
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validated = []
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# validate
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for item in value.split(","):
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item = item.upper()
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source = None
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as_set = None
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# <name>@<source>
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parts_match = re.match(r"^([\w\d\-:]+)@(\w+)$", item)
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if parts_match:
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source = parts_match.group(2)
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as_set = parts_match.group(1)
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# <source>::<name>
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else:
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parts_match = re.match(r"^(\w+)::([\w\d\-:]+)$", item)
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if parts_match:
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source = parts_match.group(1)
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as_set = parts_match.group(2)
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else:
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sourceless_match = re.match(r"^([\w\d\-:]+)$", item)
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if not sourceless_match:
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raise ValidationError(
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_(
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"Invalid formatting: {} - should be AS-SET, ASx, AS-SET@SOURCE or SOURCE::AS-SET"
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).format(item)
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)
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as_set = sourceless_match.group(1)
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if source and source not in IRR_SOURCE:
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raise ValidationError(_("Unknown IRR source: {}").format(source))
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# validate set name and as hierarchy
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as_parts = as_set.split(":")
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# validate max depth (superusers are allowed to bypass this validation, see #741)
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if (
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len(as_parts) > settings.DATA_QUALITY_MAX_IRR_DEPTH
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and not bypass_validation()
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):
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raise ValidationError(
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_("Maximum AS-SET hierarchy depth: {}").format(
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settings.DATA_QUALITY_MAX_IRR_DEPTH
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)
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)
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set_found = False
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types = []
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for part in as_parts:
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match_set = re.match(r"^(AS|RS)-[\w\d\-]+$", part)
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match_as = re.match(r"^(AS)[\d]+$", part)
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# set name found
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if match_set:
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set_found = True
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types.append(match_set.group(1))
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elif not match_as:
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raise ValidationError(
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_(
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"Invalid formatting: {} - should be RS-SET, AS-SET or AS123"
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).format(part)
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)
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if len(list(set(types))) > 1:
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raise ValidationError(
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_("All parts of an hierarchical name have to be of the same type")
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)
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if not set_found and len(as_parts) > 1:
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raise ValidationError(
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_("At least one component must be an actual set name")
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)
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validated.append(item)
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return " ".join(validated)
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