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fix(ipam): Avoid allocating IPv6 subnet-router anycast address (#21547)
Ensure available IP selection for IPv6 non-pool prefixes excludes the subnet-router anycast address (RFC 4291), so allocation starts at ::1 for typical prefixes (e.g. /64). Add tests for IPv4/IPv6 pools and special cases (/31-/32, /127-/128). Fixes #21347
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@@ -432,9 +432,11 @@ class Prefix(ContactsMixin, GetAvailablePrefixesMixin, CachedScopeMixin, Primary
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])
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available_ips = prefix - child_ips - child_ranges
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# IPv6 /127's, pool, or IPv4 /31-/32 sets are fully usable
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if (self.family == 6 and self.prefix.prefixlen >= 127) or self.is_pool or (
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self.family == 4 and self.prefix.prefixlen >= 31
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# Pool, IPv4 /31-/32 or IPv6 /127-/128 sets are fully usable
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if (
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self.is_pool
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or (self.family == 4 and self.prefix.prefixlen >= 31)
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or (self.family == 6 and self.prefix.prefixlen >= 127)
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):
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return available_ips
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@@ -39,3 +39,132 @@ class AnnotatedIPAddressTableTest(TestCase):
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iprange_checkbox_count = html.count(f'name="pk" value="{self.ip_range.pk}"')
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self.assertEqual(iprange_checkbox_count, 0)
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def test_annotate_ip_space_ipv4_non_pool_excludes_network_and_broadcast(self):
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prefix = Prefix.objects.create(
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prefix=IPNetwork('192.0.2.0/29'), # 8 addresses total
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status='active',
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is_pool=False,
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)
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data = annotate_ip_space(prefix)
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self.assertEqual(len(data), 1)
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available = data[0]
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# /29 non-pool: exclude .0 (network) and .7 (broadcast)
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self.assertEqual(available.first_ip, '192.0.2.1/29')
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self.assertEqual(available.size, 6)
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def test_annotate_ip_space_ipv4_pool_includes_network_and_broadcast(self):
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prefix = Prefix.objects.create(
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prefix=IPNetwork('192.0.2.8/29'), # 8 addresses total
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status='active',
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is_pool=True,
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)
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data = annotate_ip_space(prefix)
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self.assertEqual(len(data), 1)
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available = data[0]
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# Pool: all addresses are usable, including network/broadcast
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self.assertEqual(available.first_ip, '192.0.2.8/29')
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self.assertEqual(available.size, 8)
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def test_annotate_ip_space_ipv4_31_includes_all_ips(self):
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prefix = Prefix.objects.create(
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prefix=IPNetwork('192.0.2.16/31'), # 2 addresses total
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status='active',
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is_pool=False,
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)
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data = annotate_ip_space(prefix)
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self.assertEqual(len(data), 1)
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available = data[0]
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# /31: fully usable
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self.assertEqual(available.first_ip, '192.0.2.16/31')
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self.assertEqual(available.size, 2)
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def test_annotate_ip_space_ipv4_32_includes_single_ip(self):
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prefix = Prefix.objects.create(
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prefix=IPNetwork('192.0.2.100/32'), # 1 address total
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status='active',
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is_pool=False,
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)
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data = annotate_ip_space(prefix)
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self.assertEqual(len(data), 1)
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available = data[0]
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# /32: single usable address
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self.assertEqual(available.first_ip, '192.0.2.100/32')
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self.assertEqual(available.size, 1)
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def test_annotate_ip_space_ipv6_non_pool_excludes_anycast_first_ip(self):
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prefix = Prefix.objects.create(
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prefix=IPNetwork('2001:db8::/126'), # 4 addresses total
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status='active',
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is_pool=False,
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)
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data = annotate_ip_space(prefix)
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# No child records -> expect one AvailableIPSpace entry
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self.assertEqual(len(data), 1)
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available = data[0]
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# For IPv6 non-pool prefixes (except /127-/128), the first address is reserved (subnet-router anycast)
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self.assertEqual(available.first_ip, '2001:db8::1/126')
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self.assertEqual(available.size, 3) # 4 total - 1 reserved anycast
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def test_annotate_ip_space_ipv6_127_includes_all_ips(self):
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prefix = Prefix.objects.create(
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prefix=IPNetwork('2001:db8::/127'), # 2 addresses total
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status='active',
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is_pool=False,
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)
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data = annotate_ip_space(prefix)
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self.assertEqual(len(data), 1)
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available = data[0]
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# /127 is fully usable (no anycast exclusion)
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self.assertEqual(available.first_ip, '2001:db8::/127')
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self.assertEqual(available.size, 2)
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def test_annotate_ip_space_ipv6_128_includes_single_ip(self):
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prefix = Prefix.objects.create(
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prefix=IPNetwork('2001:db8::1/128'), # 1 address total
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status='active',
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is_pool=False,
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)
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data = annotate_ip_space(prefix)
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self.assertEqual(len(data), 1)
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available = data[0]
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# /128 is fully usable (single host address)
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self.assertEqual(available.first_ip, '2001:db8::1/128')
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self.assertEqual(available.size, 1)
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def test_annotate_ip_space_ipv6_pool_includes_anycast_first_ip(self):
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prefix = Prefix.objects.create(
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prefix=IPNetwork('2001:db8:1::/126'), # 4 addresses total
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status='active',
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is_pool=True,
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)
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data = annotate_ip_space(prefix)
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self.assertEqual(len(data), 1)
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available = data[0]
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# Pools are fully usable
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self.assertEqual(available.first_ip, '2001:db8:1::/126')
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self.assertEqual(available.size, 4)
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+11
-2
@@ -78,12 +78,21 @@ def annotate_ip_space(prefix):
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records = sorted(records, key=lambda x: x[0])
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# Determine the first & last valid IP addresses in the prefix
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if prefix.family == 4 and prefix.mask_length < 31 and not prefix.is_pool:
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if (
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prefix.is_pool
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or (prefix.family == 4 and prefix.mask_length >= 31)
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or (prefix.family == 6 and prefix.mask_length >= 127)
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):
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# Pool, IPv4 /31-/32 or IPv6 /127-/128 sets are fully usable
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first_ip_in_prefix = netaddr.IPAddress(prefix.prefix.first)
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last_ip_in_prefix = netaddr.IPAddress(prefix.prefix.last)
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elif prefix.family == 4:
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# Ignore the network and broadcast addresses for non-pool IPv4 prefixes larger than /31
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first_ip_in_prefix = netaddr.IPAddress(prefix.prefix.first + 1)
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last_ip_in_prefix = netaddr.IPAddress(prefix.prefix.last - 1)
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else:
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first_ip_in_prefix = netaddr.IPAddress(prefix.prefix.first)
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# For IPv6 prefixes, omit the Subnet-Router anycast address (RFC 4291)
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first_ip_in_prefix = netaddr.IPAddress(prefix.prefix.first + 1)
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last_ip_in_prefix = netaddr.IPAddress(prefix.prefix.last)
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if not records:
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