Create modules in nftables.ml
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298
nftables.ml
298
nftables.ml
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@ -1,146 +1,144 @@
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open Utils
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open Ipaddr
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type _ udp = UdpDport : int udp | UdpSport : int udp
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type _ tcp = TcpDport : int tcp | TcpSport : int tcp
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type _ ipv4 = Ipv4Saddr : V4.Prefix.t ipv4 | Ipv4Daddr : V4.Prefix.t ipv4
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type _ ipv6 = Ipv6Saddr : V6.Prefix.t ipv6 | Ipv6Daddr : V6.Prefix.t ipv6
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type _ payload =
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| Udp : 'a udp -> 'a payload
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| Tcp : 'a tcp -> 'a payload
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| Ipv4 : 'a ipv4 -> 'a payload
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| Ipv6 : 'a ipv6 -> 'a payload
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type _ expr =
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| String : string -> string expr
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| Number : int -> int expr
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| Boolean : bool -> int expr
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| Ipv4 : V4.Prefix.t -> V4.Prefix.t expr
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| Ipv6 : V6.Prefix.t -> V6.Prefix.t expr
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| List : 'a expr list -> 'a expr
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| Set : 'a expr list -> 'a expr
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| Range : 'a expr * 'a expr -> 'a expr
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| Payload : 'a payload -> 'a expr
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type (_, _) match_op = Eq : ('a, 'a) match_op | NotEq : ('a, 'a) match_op
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type counter = Named of string | Anon of { packets : int; bytes : int }
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type verdict =
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| Accept
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| Drop
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| Continue
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| Return
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| Jump of string
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| Goto of string
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type _ stmt =
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| Match : (('a, 'b) match_op * 'a expr * 'b expr) -> unit stmt
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| Counter : counter -> unit stmt
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| Verdict : verdict -> unit stmt
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| NoTrack : unit stmt
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| Log : { prefix : string option; group : int option } -> unit stmt
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type family = FamilyIpv6 | FamilyIpv4 | FamilyInet
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type table = { family : family; table_name : string }
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type chain = { family : family; table : string; chain_name : string }
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type rule = {
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family : family;
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table : string;
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chain : string;
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expr : unit stmt list;
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}
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type command =
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| FlushRuleset
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| AddTable of table
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| FlushTable of table
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| AddChain of chain
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| FlushChain of chain
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| AddRule of rule
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let string_of_udp : type a. a udp -> string = function
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| UdpSport -> "sport"
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| UdpDport -> "dport"
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let string_of_tcp : type a. a tcp -> string = function
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| TcpSport -> "sport"
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| TcpDport -> "dport"
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let string_of_ipv4 : type a. a ipv4 -> string = function
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| Ipv4Saddr -> "saddr"
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| Ipv4Daddr -> "daddr"
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let string_of_ipv6 : type a. a ipv6 -> string = function
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| Ipv6Saddr -> "saddr"
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| Ipv6Daddr -> "daddr"
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let assoc_one key value = `Assoc [ (key, value) ]
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let json_of_payload (type a) (payload : a payload) =
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module Payload = struct
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module Udp = struct
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type _ t = Sport : int t | Dport : int t
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let to_string : type a. a t -> string = function
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| Sport -> "sport"
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| Dport -> "dport"
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end
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module Tcp = struct
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type _ t = Sport : int t | Dport : int t
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let to_string : type a. a t -> string = function
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| Sport -> "sport"
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| Dport -> "dport"
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end
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module Ipv4 = struct
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type _ t = Saddr : V4.Prefix.t t | Daddr : V4.Prefix.t t
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let to_string : type a. a t -> string = function
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| Saddr -> "saddr"
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| Daddr -> "saddr"
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end
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module Ipv6 = struct
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type _ t = Saddr : V6.Prefix.t t | Daddr : V6.Prefix.t t
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let to_string : type a. a t -> string = function
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| Saddr -> "saddr"
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| Daddr -> "saddr"
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end
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type _ t =
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| Udp : 'a Udp.t -> 'a t
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| Tcp : 'a Tcp.t -> 'a t
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| Ipv4 : 'a Ipv4.t -> 'a t
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| Ipv6 : 'a Ipv6.t -> 'a t
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let to_json (type a) (payload : a t) =
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let protocol, field =
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match payload with
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| Ipv4 ipv4 -> ("ip", string_of_ipv4 ipv4)
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| Ipv6 ipv6 -> ("ip6", string_of_ipv6 ipv6)
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| Udp udp -> ("udp", string_of_udp udp)
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| Tcp tcp -> ("tcp", string_of_tcp tcp)
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| Udp udp -> ("udp", Udp.to_string udp)
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| Tcp tcp -> ("tcp", Tcp.to_string tcp)
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| Ipv4 ipv4 -> ("ip", Ipv4.to_string ipv4)
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| Ipv6 ipv6 -> ("ip6", Ipv6.to_string ipv6)
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in
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assoc_one "payload"
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(`Assoc [ ("protocol", `String protocol); ("field", `String field) ])
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end
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let rec json_of_expr : type a. a expr -> Yojson.Basic.t = function
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| String s -> `String s
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| Number n -> `Int n
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| Boolean b -> `Bool b
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| Ipv4 i ->
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assoc_one "prefix"
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(`Assoc
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[
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("addr", `String V4.(to_string (Prefix.network i)));
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("len", `Int (V4.Prefix.bits i));
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])
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| Ipv6 i ->
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assoc_one "prefix"
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(`Assoc
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[
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("addr", `String V6.(to_string (Prefix.network i)));
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("len", `Int (V6.Prefix.bits i));
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])
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| List l -> `List (List.map json_of_expr l)
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| Set s -> assoc_one "set" (`List (List.map json_of_expr s))
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| Range (a, b) -> assoc_one "range" (`List [ json_of_expr a; json_of_expr b ])
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| Payload p -> json_of_payload p
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module Expr = struct
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type _ t =
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| String : string -> string t
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| Number : int -> int t
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| Boolean : bool -> int t
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| Ipv4 : V4.Prefix.t -> V4.Prefix.t t
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| Ipv6 : V6.Prefix.t -> V6.Prefix.t t
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| List : 'a t list -> 'a t
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| Set : 'a t list -> 'a t
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| Range : 'a t * 'a t -> 'a t
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| Payload : 'a Payload.t -> 'a t
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let string_of_match_op : type a b. (a, b) match_op -> string = function
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let rec to_json : type a. a t -> Yojson.Basic.t = function
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| String str -> `String str
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| Number num -> `Int num
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| Boolean bool -> `Bool bool
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| Ipv4 ipv4 ->
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let network = V4.(to_string (Prefix.network ipv4)) in
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let len = V4.Prefix.bits ipv4 in
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assoc_one "prefix"
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(`Assoc [ ("addr", `String network); ("len", `Int len) ])
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| Ipv6 ipv6 ->
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let network = V6.(to_string (Prefix.network ipv6)) in
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let len = V6.Prefix.bits ipv6 in
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assoc_one "prefix"
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(`Assoc [ ("addr", `String network); ("len", `Int len) ])
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| List list -> `List (List.map to_json list)
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| Set set -> assoc_one "set" (`List (List.map to_json set))
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| Range (a, b) -> assoc_one "range" (`List [ to_json a; to_json b ])
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| Payload payload -> Payload.to_json payload
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end
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module Match = struct
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type (_, _) t = Eq : ('a, 'a) t | NotEq : ('a, 'a) t
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let to_string : type a b. (a, b) t -> string = function
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| Eq -> "=="
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| NotEq -> "!="
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let json_of_counter = function
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| Named n -> assoc_one "counter" (`String n)
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| Anon { packets; bytes } ->
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let to_json (type a b) (op : (a, b) t) = `String (to_string op)
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end
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module Counter = struct
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type t =
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| NamedCounter of string
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| AnonCounter of { packets : int; bytes : int }
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let to_json = function
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| NamedCounter n -> assoc_one "counter" (`String n)
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| AnonCounter { packets; bytes } ->
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assoc_one "counter"
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(`Assoc [ ("packets", `Int packets); ("bytes", `Int bytes) ])
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end
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let json_of_verdict = function
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module Verdict = struct
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type t = Accept | Drop | Continue | Return | Jump of string | Goto of string
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let to_json = function
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| Accept -> assoc_one "accept" `Null
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| Drop -> assoc_one "drop" `Null
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| Continue -> assoc_one "continue" `Null
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| Return -> assoc_one "return" `Null
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| Jump s -> assoc_one "jump" (assoc_one "target" (`String s))
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| Goto s -> assoc_one "goto" (assoc_one "target" (`String s))
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end
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let json_of_stmt : type a. a stmt -> Yojson.Basic.t = function
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module Stmt = struct
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type _ t =
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| Match : (('a, 'b) Match.t * 'a Expr.t * 'b Expr.t) -> unit t
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| Counter : Counter.t -> unit t
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| Verdict : Verdict.t -> unit t
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| NoTrack : unit t
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| Log : { prefix : string option; group : int option } -> unit t
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let to_json : type a. a t -> Yojson.Basic.t = function
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| Match (op, left, right) ->
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assoc_one "match"
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(`Assoc
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[
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("left", json_of_expr left);
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("right", json_of_expr right);
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("op", `String (string_of_match_op op));
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("left", Expr.to_json left);
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("right", Expr.to_json right);
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("op", Match.to_json op);
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])
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| Counter c -> json_of_counter c
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| Verdict v -> json_of_verdict v
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| Counter counter -> Counter.to_json counter
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| Verdict verdict -> Verdict.to_json verdict
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| NoTrack -> assoc_one "notrack" `Null
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| Log { prefix; group } ->
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let elems =
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@ -150,46 +148,72 @@ let json_of_stmt : type a. a stmt -> Yojson.Basic.t = function
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]
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in
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assoc_one "log" (`Assoc (deoptionalise elems))
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end
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let string_of_family = function
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| FamilyIpv4 -> "ip"
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| FamilyIpv6 -> "ip6"
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| FamilyInet -> "inet"
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module Family = struct
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type t = Ipv4 | Ipv6 | Inet
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let json_of_table { family; table_name } =
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let to_string = function Ipv4 -> "ip" | Ipv6 -> "ip6" | Inet -> "inet"
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let to_json f = `String (to_string f)
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end
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module Table = struct
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type t = { family : Family.t; name : string }
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let to_json { family; name } =
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assoc_one "table"
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(`Assoc
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[
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("family", `String (string_of_family family));
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("name", `String table_name);
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])
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(`Assoc [ ("family", Family.to_json family); ("name", `String name) ])
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end
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let json_of_chain { family; table; chain_name } =
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module Chain = struct
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type t = { family : Family.t; table : string; name : string }
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let to_json { family; table; name } =
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assoc_one "chain"
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(`Assoc
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[
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("family", `String (string_of_family family));
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("family", Family.to_json family);
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("table", `String table);
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("name", `String chain_name);
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("name", `String name);
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])
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end
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let json_of_rule { family; table; chain; expr } =
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module Rule = struct
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type t = {
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family : Family.t;
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table : string;
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chain : string;
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expr : unit Stmt.t list;
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}
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let to_json { family; table; chain; expr } =
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assoc_one "rule"
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(`Assoc
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[
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("family", `String (string_of_family family));
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("family", Family.to_json family);
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("table", `String table);
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("chain", `String chain);
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("expr", `List (List.map json_of_stmt expr));
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("expr", `List (List.map Stmt.to_json expr));
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])
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end
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let json_of_command = function
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module Command = struct
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type t =
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| FlushRuleset
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| AddTable of Table.t
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| FlushTable of Table.t
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| AddChain of Chain.t
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| FlushChain of Chain.t
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| AddRule of Rule.t
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let to_json = function
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| FlushRuleset -> assoc_one "flush" (assoc_one "ruleset" `Null)
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| AddTable t -> assoc_one "add" (json_of_table t)
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| FlushTable t -> assoc_one "flush" (json_of_table t)
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| AddChain c -> assoc_one "add" (json_of_chain c)
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| FlushChain c -> assoc_one "flush" (json_of_chain c)
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| AddRule r -> assoc_one "add" (json_of_rule r)
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| AddTable table -> assoc_one "add" (Table.to_json table)
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| FlushTable table -> assoc_one "flush" (Table.to_json table)
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| AddChain chain -> assoc_one "add" (Chain.to_json chain)
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| FlushChain chain -> assoc_one "flush" (Chain.to_json chain)
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| AddRule rule -> assoc_one "add" (Rule.to_json rule)
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end
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let json_of_nftables n =
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assoc_one "nftables" (`List (List.map json_of_command n))
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let to_json commands =
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assoc_one "nftables" (`List (List.map Command.to_json commands))
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