package happy-eyeballs-mirage
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Connecting to a remote host via IP version 4 or 6 using Mirage
Install
dune-project
Dependency
Authors
Maintainers
Sources
happy-eyeballs-0.6.0.tbz
sha256=e587908776ac52603740363efd625b0767162521ab2d63b745e64056184c0429
sha512=2de6632aa32eea4ca865747fad7db1043baca8f9e14ab798224873926636d11c233c3c093237222118731a5dd00a0de804c3942bfe003f18c8f2c39159883018
doc/src/happy-eyeballs-mirage/happy_eyeballs_mirage.ml.html
Source file happy_eyeballs_mirage.ml
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246module type S = sig module Transport : Dns_client.S with type io_addr = [ `Plaintext of Ipaddr.t * int | `Tls of Tls.Config.client * Ipaddr.t * int ] and type +'a io = 'a Lwt.t type t type dns type flow val create : ?happy_eyeballs:Happy_eyeballs.t -> ?dns:dns -> ?timer_interval:int64 -> Transport.stack -> t val connect_host : t -> [`host] Domain_name.t -> int list -> ((Ipaddr.t * int) * flow, [> `Msg of string ]) result Lwt.t val connect_ip : t -> (Ipaddr.t * int) list -> ((Ipaddr.t * int) * flow, [> `Msg of string ]) result Lwt.t val connect : t -> string -> int list -> ((Ipaddr.t * int) * flow, [> `Msg of string ]) result Lwt.t end (* Lwt tasks are spawned: - create starts an asynchronous timer task - the actions resulting from timer are scheduled in one separate task - the actions returned from Happy_eyeballs.connect/event are scheduled in respective separate tasks *) let src = Logs.Src.create "happy-eyeballs.mirage" ~doc:"Happy Eyeballs Mirage" module Log = (val Logs.src_log src : Logs.LOG) module Make (T : Mirage_time.S) (C : Mirage_clock.MCLOCK) (S : Tcpip.Stack.V4V6) (DNS : Dns_client_mirage.S with type Transport.stack = S.t) : sig include S with module Transport = DNS.Transport and type dns = DNS.t and type flow = S.TCP.flow (* note: the v6_connect_timeout is kept until 1.0.0 since it is referenced in mirage *) val connect_device : ?aaaa_timeout:int64 -> ?connect_delay:int64 -> ?v6_connect_timeout:int64 -> ?connect_timeout:int64 -> ?resolve_timeout:int64 -> ?resolve_retries:int -> ?timer_interval:int64 -> dns -> Transport.stack -> t Lwt.t end = struct module Transport = DNS.Transport type dns = DNS.t type flow = S.TCP.flow type t = { dns : DNS.t ; stack : S.t ; mutable waiters : ((Ipaddr.t * int) * S.TCP.flow, [ `Msg of string ]) result Lwt.u Happy_eyeballs.Waiter_map.t ; mutable cancel_connecting : (int * unit Lwt.u) list Happy_eyeballs.Waiter_map.t; mutable he : Happy_eyeballs.t ; timer_interval : int64 ; timer_condition : unit Lwt_condition.t ; } let try_connect stack addr = let open Lwt.Infix in S.TCP.create_connection (S.tcp stack) addr >|= fun r -> Result.map_error (fun err -> `Msg (Fmt.to_to_string S.TCP.pp_error err)) r let rec act t action = let open Lwt.Infix in Log.debug (fun m -> m "action %a" Happy_eyeballs.pp_action action); begin match action with | Happy_eyeballs.Resolve_a host -> begin DNS.getaddrinfo t.dns Dns.Rr_map.A host >|= function | Ok (_, res) -> Ok (Happy_eyeballs.Resolved_a (host, res)) | Error `Msg msg -> Ok (Happy_eyeballs.Resolved_a_failed (host, msg)) end | Happy_eyeballs.Resolve_aaaa host -> begin DNS.getaddrinfo t.dns Dns.Rr_map.Aaaa host >|= function | Ok (_, res) -> Ok (Happy_eyeballs.Resolved_aaaa (host, res)) | Error `Msg msg -> Ok (Happy_eyeballs.Resolved_aaaa_failed (host, msg)) end | Happy_eyeballs.Connect (host, id, attempt, addr) -> begin let cancelled, cancel = Lwt.task () in let entry = attempt, cancel in t.cancel_connecting <- Happy_eyeballs.Waiter_map.update id (function None -> Some [ entry ] | Some c -> Some (entry :: c)) t.cancel_connecting; let conn = try_connect t.stack addr >>= function | Ok flow -> let cancel_connecting, others = Happy_eyeballs.Waiter_map.find_and_remove id t.cancel_connecting in t.cancel_connecting <- cancel_connecting; List.iter (fun (att, u) -> if att <> attempt then Lwt.wakeup_later u ()) (Option.value ~default:[] others); let waiters, r = Happy_eyeballs.Waiter_map.find_and_remove id t.waiters in t.waiters <- waiters; begin match r with | Some waiter -> Lwt.wakeup_later waiter (Ok (addr, flow)); Lwt.return (Ok (Happy_eyeballs.Connected (host, id, addr))) | None -> (* waiter already vanished *) S.TCP.close flow >>= fun () -> Lwt.return (Error ()) end | Error `Msg msg -> t.cancel_connecting <- Happy_eyeballs.Waiter_map.update id (function None -> None | Some c -> match List.filter (fun (att, _) -> not (att = attempt)) c with | [] -> None | c -> Some c) t.cancel_connecting; Lwt.return (Ok (Happy_eyeballs.Connection_failed (host, id, addr, msg))) in Lwt.pick [ conn ; (cancelled >|= fun () -> Error ()); ] end | Happy_eyeballs.Connect_failed (host, id, msg) -> let cancel_connecting, others = Happy_eyeballs.Waiter_map.find_and_remove id t.cancel_connecting in t.cancel_connecting <- cancel_connecting; List.iter (fun (_, u) -> Lwt.wakeup_later u ()) (Option.value ~default:[] others); let waiters, r = Happy_eyeballs.Waiter_map.find_and_remove id t.waiters in t.waiters <- waiters; begin match r with | Some waiter -> let err = Fmt.str "connection to %s failed: %s" (match Ipaddr.of_domain_name host with | None -> Domain_name.to_string host | Some ip -> Ipaddr.to_string ip) msg in Lwt.wakeup_later waiter (Error (`Msg err)); Lwt.return (Error ()) | None -> (* waiter already vanished *) Lwt.return (Error ()) end end >>= function | Error _ -> Lwt.return_unit | Ok ev -> let he, actions = Happy_eyeballs.event t.he (C.elapsed_ns ()) ev in t.he <- he; Lwt_list.iter_p (act t) actions let handle_timer_actions t actions = Lwt.async (fun () -> Lwt_list.iter_p (fun a -> act t a) actions) let rec timer t = let open Lwt.Infix in let rec loop () = let he, cont, actions = Happy_eyeballs.timer t.he (C.elapsed_ns ()) in t.he <- he ; handle_timer_actions t actions ; match cont with | `Suspend -> timer t | `Act -> T.sleep_ns t.timer_interval >>= fun () -> loop () in Lwt_condition.wait t.timer_condition >>= fun () -> loop () let create ?(happy_eyeballs = Happy_eyeballs.create (C.elapsed_ns ())) ?dns ?(timer_interval = Duration.of_ms 10) stack = let dns = Option.value ~default: (let timeout = Happy_eyeballs.resolve_timeout happy_eyeballs in DNS.create ~timeout stack) dns and waiters = Happy_eyeballs.Waiter_map.empty and cancel_connecting = Happy_eyeballs.Waiter_map.empty and timer_condition = Lwt_condition.create () in let t = { dns ; stack ; waiters ; cancel_connecting ; he = happy_eyeballs ; timer_interval ; timer_condition } in Lwt.async (fun () -> timer t); t let handle_actions t actions = List.iter (fun a -> Lwt.async (fun () -> act t a)) actions let open_msg_error = function | Ok _ as r -> r | Error (`Msg _) as r -> r let connect_host t host ports = let waiter, notify = Lwt.task () in let waiters, id = Happy_eyeballs.Waiter_map.register notify t.waiters in t.waiters <- waiters; let ts = C.elapsed_ns () in let he, actions = Happy_eyeballs.connect t.he ts ~id host ports in t.he <- he; Lwt_condition.signal t.timer_condition (); handle_actions t actions; let open Lwt.Infix in waiter >|= fun r -> Log.debug (fun m -> m "connection %s to %a after %a" (match r with Ok _ -> "ok" | Error _ -> "failed") Domain_name.pp host Duration.pp (Int64.sub (C.elapsed_ns ()) ts)); open_msg_error r let connect_ip t addresses = let waiter, notify = Lwt.task () in let waiters, id = Happy_eyeballs.Waiter_map.register notify t.waiters in t.waiters <- waiters; let ts = C.elapsed_ns () in let he, actions = Happy_eyeballs.connect_ip t.he ts ~id addresses in t.he <- he; Lwt_condition.signal t.timer_condition (); handle_actions t actions; let open Lwt.Infix in waiter >|= fun r -> Log.debug (fun m -> m "connection %s to %a after %a" (match r with Ok _ -> "ok" | Error _ -> "failed") Fmt.(list ~sep:(any ", ") (pair ~sep:(any ":") Ipaddr.pp int)) addresses Duration.pp (Int64.sub (C.elapsed_ns ()) ts)); open_msg_error r let connect t host ports = match Ipaddr.of_string host with | Ok ip -> connect_ip t (List.map (fun p -> (ip, p)) ports) | Error _ -> let open Lwt_result.Infix in Lwt_result.lift (Result.bind (Domain_name.of_string host) Domain_name.host) >>= fun h -> connect_host t h ports (* note: the v6_connect_timeout is kept until 1.0.0 since it is referenced in mirage *) let connect_device ?aaaa_timeout ?connect_delay ?v6_connect_timeout:_ ?connect_timeout ?resolve_timeout ?resolve_retries ?timer_interval dns stack = let happy_eyeballs = Happy_eyeballs.create ?aaaa_timeout ?connect_delay ?connect_timeout ?resolve_timeout ?resolve_retries (C.elapsed_ns ()) in let happy_eyeballs = create ~happy_eyeballs ~dns ?timer_interval stack in Lwt.return happy_eyeballs end
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