348 lines
8.5 KiB
Python
Executable file
348 lines
8.5 KiB
Python
Executable file
#!/usr/bin/env python3
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from argparse import ArgumentParser, FileType
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from dataclasses import dataclass
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from enum import Enum
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from graphlib import TopologicalSorter
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from ipaddress import IPv4Network, IPv6Network
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from nftables import Nftables
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from pydantic import (
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BaseModel,
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Extra,
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FilePath,
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IPvAnyNetwork,
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conint,
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parse_obj_as,
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validator,
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root_validator,
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)
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from typing import Generator, TypeAlias
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from yaml import safe_load
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import nft
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# ==========[ YAML MODEL ]======================================================
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class RestrictiveBaseModel(BaseModel):
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class Config:
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allow_mutation = False
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extra = Extra.forbid
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# Ports
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Port: TypeAlias = conint(ge=0, le=2**16)
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class PortRange(str):
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@classmethod
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def __get_validators__(cls):
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yield cls.validate
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@classmethod
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def validate(cls, v):
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try:
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start, end = v.split("..")
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except AttributeError:
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parse_obj_as(Port, v) # This is the expected error
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raise ValueError(
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"invalid port range: must be in the form start..end"
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)
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except ValueError:
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raise ValueError(
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"invalid port range: must be in the form start..end"
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)
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start, end = parse_obj_as(Port, start), parse_obj_as(Port, end)
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if start > end:
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raise ValueError("invalid port range: start must be less than end")
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return range(start, end)
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# Zones
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ZoneName: TypeAlias = str
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class ZoneEntry(RestrictiveBaseModel):
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addrs: set[IPvAnyNetwork] = set()
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file: FilePath | None = None
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negate: bool = False
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zones: set[ZoneName] = set()
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@root_validator()
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def validate_mutually_exactly_one(cls, values):
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fields = ["addrs", "file", "zones"]
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if sum(1 for field in fields if values.get(field)) != 1:
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raise ValueError(f"exactly one of {fields} must be set")
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return values
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# Blacklist
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class Blacklist(RestrictiveBaseModel):
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blocked: set[IPvAnyNetwork | ZoneName] = set()
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# Reverse Path Filter
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class ReversePathFilter(RestrictiveBaseModel):
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interfaces: set[str] = set()
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# Filters
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class Verdict(str, Enum):
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accept = "accept"
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drop = "drop"
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reject = "reject"
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class TcpProtocol(RestrictiveBaseModel):
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dport: set[Port | PortRange] = set()
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sport: set[Port | PortRange] = set()
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class UdpProtocol(RestrictiveBaseModel):
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dport: set[Port | PortRange] = set()
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sport: set[Port | PortRange] = set()
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class Protocols(RestrictiveBaseModel):
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icmp: bool = False
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ospf: bool = False
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tcp: TcpProtocol = TcpProtocol()
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udp: UdpProtocol = UdpProtocol()
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vrrp: bool = False
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class Rule(RestrictiveBaseModel):
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iif: str | None
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oif: str | None
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protocols: Protocols = Protocols()
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src: IPvAnyNetwork | ZoneName | set[IPvAnyNetwork | ZoneName] | None
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dst: IPvAnyNetwork | ZoneName | set[IPvAnyNetwork | ZoneName] | None
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verdict: Verdict = Verdict.accept
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class ForwardRule(Rule):
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dest: IPvAnyNetwork | ZoneName | set[IPvAnyNetwork | ZoneName] | None
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class Filter(RestrictiveBaseModel):
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input: list[Rule] = list()
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output: list[Rule] = list()
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forward: list[ForwardRule] = list()
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# Nat
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class SNat(RestrictiveBaseModel):
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addr: IPvAnyNetwork
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persistent: bool = True
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class Nat(RestrictiveBaseModel):
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src: ZoneName
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snat: SNat
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# Root model
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class Firewall(RestrictiveBaseModel):
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zones: dict[ZoneName, ZoneEntry] = dict()
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blacklist: Blacklist = Blacklist()
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reverse_path_filter: ReversePathFilter = ReversePathFilter()
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filter: Filter = Filter()
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nat: list[Nat] = list()
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# ==========[ ZONES ]===========================================================
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class ZoneFile(RestrictiveBaseModel):
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__root__: set[IPvAnyNetwork]
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@dataclass
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class ResolvedZone:
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addrs: set[IPvAnyNetwork]
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negate: bool
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Zones: TypeAlias = dict[ZoneName, ResolvedZone]
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def resolve_zones(yaml_zones: dict[ZoneName, ZoneEntry]) -> Zones:
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zones: Zones = {}
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zone_graph = {name: entry.zones for (name, entry) in yaml_zones.items()}
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for name in TopologicalSorter(zone_graph).static_order():
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if yaml_zones[name].addrs:
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zones[name] = ResolvedZone(
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yaml_zones[name].addrs, yaml_zones[name].negate
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)
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elif yaml_zones[name].file is not None:
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with open(yaml_zones[name].file, "r") as file:
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try:
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yaml_addrs = ZoneFile(__root__=safe_load(file))
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except Exception as e:
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raise Exception(
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f"YAML parsing failed of the included file '{yaml_zones[name].file}': {e}"
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)
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zones[name] = ResolvedZone(
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yaml_addrs.__root__, yaml_zones[name].negate
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)
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elif yaml_zones[name].zones:
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addrs: set[IPvAnyNetwork] = set()
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for zone in yaml_zones[name].zones:
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addrs.update(yaml_zones[zone].addrs)
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zones[name] = ResolvedZone(addrs, yaml_zones[name].negate)
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return zones
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# ==========[ PARSER ]==========================================================
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def split_v4_v6(
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addrs: Generator[IPvAnyNetwork, None, None]
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) -> tuple[set[nft.Immediate[IPv4Network]], set[nft.Immediate[IPv6Network]]]:
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v4, v6 = set(), set()
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for addr in addrs:
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match addr:
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case IPv4Network():
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v4.add(nft.Immediate(addr))
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case IPv6Network():
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v6.add(nft.Immediate(addr))
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return v4, v6
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def zones_blacklist(
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blacklist: Blacklist, zones: Zones
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) -> Generator[IPvAnyNetwork, None, None]:
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for blocked in blacklist.blocked:
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match blocked:
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case ZoneName():
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zone = zones[blocked]
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if zone.negate:
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raise ValueError(
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f"zone '{blocked}' cannot be negated in the blacklist"
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)
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yield from zone.addrs
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case IPv4Network() | IPv6Network():
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yield blocked
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def parse_blacklist(blacklist: Blacklist, zones: Zones) -> nft.Table:
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# Sets
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set_v4 = nft.Set(name="blacklist_v4", type="ipv4_addr", flags=["interval"])
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set_v6 = nft.Set(name="blacklist_v6", type="ipv6_addr", flags=["interval"])
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# Elements
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ip_v4, ip_v6 = split_v4_v6(zones_blacklist(blacklist, zones))
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set_v4.elements.extend(ip_v4)
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set_v6.elements.extend(ip_v6)
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# Chains
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chain_filter = nft.Chain(
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name="filter",
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type="filter",
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hook="prerouting",
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policy="accept",
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priority=-310,
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)
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chain_v4 = nft.Match(
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op="==",
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left=nft.Payload(protocol="ip", field="saddr"),
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right=nft.Immediate("@blacklist_v4"),
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)
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chain_v6 = nft.Match(
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op="==",
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left=nft.Payload(protocol="ip6", field="saddr"),
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right=nft.Immediate("@blacklist_v6"),
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)
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chain_filter.rules.append(nft.Rule([chain_v4, nft.Verdict("drop")]))
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chain_filter.rules.append(nft.Rule([chain_v6, nft.Verdict("drop")]))
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# Generate elements
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table = nft.Table(name="blacklist", family="inet")
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table.chains.extend([chain_filter])
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table.sets.extend([set_v4, set_v6])
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return table
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def parse_firewall(firewall: Firewall, zones: Zones) -> nft.Ruleset:
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ruleset = nft.Ruleset(flush=True)
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blacklist = parse_blacklist(firewall.blacklist, zones)
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ruleset.tables.extend([blacklist])
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return ruleset
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# ==========[ MAIN ]============================================================
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def send_to_nftables(cmd: nft.JsonNftables) -> int:
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nft = Nftables()
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try:
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nft.json_validate(cmd)
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except Exception as e:
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print(f"JSON validation failed: {e}")
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return 1
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rc, output, error = nft.json_cmd(cmd)
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if rc != 0:
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print(f"nft returned {rc}: {error}")
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return 1
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if len(output) != 0:
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print(output)
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return 0
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def main() -> int:
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parser = ArgumentParser()
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parser.add_argument("file", type=FileType("r"), help="YAML rule file")
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args = parser.parse_args()
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try:
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firewall = Firewall(**safe_load(args.file))
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except Exception as e:
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print(f"YAML parsing failed of the file '{args.file}': {e}")
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return 1
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try:
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zones = resolve_zones(firewall.zones)
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except Exception as e:
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print(f"Zone resolution failed: {e}")
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return 1
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try:
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json = parse_firewall(firewall, zones)
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except Exception as e:
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print(f"Firewall translation failed: {e}")
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return 1
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return send_to_nftables(json.to_nft())
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if __name__ == "__main__":
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exit(main())
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