package git
Git format and protocol in pure OCaml
Install
Dune Dependency
Authors
Maintainers
Sources
git-3.13.0.tbz
sha256=f7cc36026cdefc1f9837f10d7d26f457c236cb21547fcad210e71483561b55d3
sha512=728f21c3483bdead9420767cb3e57901be1cff428fceb814be3cad817b2d78511d35f559962469e85d3919c59577884d353cb883ac749e6e2b92fb7d0deec4f4
doc/src/smart_git/smart_git.ml.html
Source file smart_git.ml
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include Smart_git_intf module Verbose = struct type 'a fiber = 'a Lwt.t let succ () = Lwt.return_unit let print () = Lwt.return_unit end type handshake = uri0:Uri.t -> uri1:Uri.t -> Mimic.flow -> unit Lwt.t let git_capabilities = Mimic.make ~name:"git-capabilities" let git_scheme = Mimic.make ~name:"git-scheme" let git_path = Mimic.make ~name:"git-path" let git_hostname = Mimic.make ~name:"git-hostname" let git_ssh_user = Mimic.make ~name:"git-ssh-user" let git_port = Mimic.make ~name:"git-port" let git_http_headers = Mimic.make ~name:"git-http-headers" let git_transmission : [ `Git | `Exec | `HTTP of Uri.t * handshake ] Mimic.value = Mimic.make ~name:"git-transmission" let git_uri = Mimic.make ~name:"git-uri" module Endpoint = struct type t = { scheme : [ `SSH of string | `Git | `HTTP of (string * string) list | `HTTPS of (string * string) list | `Scheme of string ]; port : int option; path : string; hostname : string; } let pp ppf edn = match edn with | { scheme = `SSH user; path; hostname; _ } -> Fmt.pf ppf "%s@%s:%s" user hostname path | { scheme = `Git; port; path; hostname } -> Fmt.pf ppf "git://%s%a/%s" hostname Fmt.(option (const string ":" ++ int)) port path | { scheme = `HTTP _; path; port; hostname } -> Fmt.pf ppf "http://%s%a%s" hostname Fmt.(option (const string ":" ++ int)) port path | { scheme = `HTTPS _; path; port; hostname } -> Fmt.pf ppf "https://%s%a%s" hostname Fmt.(option (const string ":" ++ int)) port path | { scheme = `Scheme scheme; path; port; hostname } -> Fmt.pf ppf "%s://%s%a/%s" scheme hostname Fmt.(option (const string ":" ++ int)) port path let headers_from_uri uri = match Uri.user uri, Uri.password uri with | Some user, Some password -> let raw = Base64.encode_exn (Fmt.str "%s:%s" user password) in [ "Authorization", Fmt.str "Basic %s" raw ] | _ -> [] let of_string str = let open Rresult in let parse_ssh str = let len = String.length str in Emile.of_string_raw ~off:0 ~len str |> R.reword_error (R.msgf "%a" Emile.pp_error) >>= fun (consumed, m) -> match Astring.String.cut ~sep:":" (String.sub str consumed (len - consumed)) with | Some ("", path) -> let local = List.map (function `Atom x -> x | `String x -> Fmt.str "%S" x) m.Emile.local in let user = String.concat "." local in let hostname = match fst m.Emile.domain with | `Domain vs -> String.concat "." vs | `Literal v -> v | `Addr (Emile.IPv4 v) -> Ipaddr.V4.to_string v | `Addr (Emile.IPv6 v) -> Ipaddr.V6.to_string v | `Addr (Emile.Ext (k, v)) -> Fmt.str "%s:%s" k v in R.ok { scheme = `SSH user; path; port = None; hostname } | _ -> R.error_msg "Invalid SSH pattern" in let parse_uri str = let uri = Uri.of_string str in let path = Uri.path uri in match Uri.scheme uri, Uri.host uri, Uri.port uri with | Some "git", Some hostname, port -> R.ok { scheme = `Git; path; port; hostname } | Some "http", Some hostname, port -> R.ok { scheme = `HTTP (headers_from_uri uri); path; port; hostname } | Some "https", Some hostname, port -> R.ok { scheme = `HTTPS (headers_from_uri uri); path; port; hostname } | Some scheme, Some hostname, port -> R.ok { scheme = `Scheme scheme; path; port; hostname } | _ -> R.error_msgf "Invalid uri: %a" Uri.pp uri in match parse_ssh str, parse_uri str with | Ok v, _ -> Ok v | _, Ok v -> Ok v | Error _, Error _ -> R.error_msgf "Invalid endpoint: %s\n\ The format of it corresponds to:\n\ 1) a SSH endpoint like: user@hostname:repository\n\ 2) a Git endpoint like: git://hostname(:port)?/repository\n\ 3) a HTTP endpoint like: \ http(s)?://(user:password@)?hostname(:port)?/repository\n\ 4) an URI with a special scheme like: \ [scheme]://hostname(:port)?/repository\n\n\ It's not possible to specify a port if you use an SSH endpoint and \ it's not\n\ possible to specify an user and its password if you use a Git or an \ URI with\n\ a special scheme endpoint." str let with_headers_if_http headers ({ scheme; _ } as edn) = match scheme with | `SSH _ | `Git | `Scheme _ -> edn | `HTTP _ -> { edn with scheme = `HTTP headers } | `HTTPS _ -> { edn with scheme = `HTTPS headers } let to_ctx edn ctx = let scheme = match edn.scheme with | `Git -> `Git | `SSH _ -> `SSH | `HTTP _ -> `HTTP | `HTTPS _ -> `HTTPS | `Scheme scheme -> `Scheme scheme in let headers = match edn.scheme with | `HTTP headers | `HTTPS headers -> Some headers | _ -> None in let ssh_user = match edn.scheme with `SSH user -> Some user | _ -> None in (* XXX(dinosaure): I don't like the reconstruction of the given [Uri.t] when we can miss some informations. *) let uri = match edn.scheme with | `HTTP _ -> Some (Uri.of_string (Fmt.str "http://%s%a%s" edn.hostname Fmt.(option (const string ":" ++ int)) edn.port edn.path)) | `HTTPS _ -> Some (Uri.of_string (Fmt.str "https://%s%a%s" edn.hostname Fmt.(option (const string ":" ++ int)) edn.port edn.path)) | _ -> None in ctx |> Mimic.add git_scheme scheme |> Mimic.add git_path edn.path |> Mimic.add git_hostname edn.hostname |> fun ctx -> Option.fold ~none:ctx ~some:(fun v -> Mimic.add git_ssh_user v ctx) ssh_user |> fun ctx -> Option.fold ~none:ctx ~some:(fun v -> Mimic.add git_port v ctx) edn.port |> fun ctx -> Option.fold ~none:ctx ~some:(fun v -> Mimic.add git_uri v ctx) uri |> fun ctx -> Option.fold ~none:ctx ~some:(fun v -> Mimic.add git_http_headers v ctx) headers end module Make (Scheduler : Sigs.SCHED with type +'a s = 'a Lwt.t) (Pack : APPEND with type +'a fiber = 'a Lwt.t) (Index : APPEND with type +'a fiber = 'a Lwt.t) (Uid : UID) (Ref : Sigs.REF) = struct let src = Logs.Src.create "git-fetch" module Log = (val Logs.src_log src : Logs.LOG) module Thin = Carton_lwt.Thin.Make (Uid) let fs = let open Rresult in let open Lwt.Infix in Thin. { create = (fun ?trunc t path -> Pack.create ?trunc ~mode:Pack.RdWr t path >|= R.reword_error (R.msgf "%a" Pack.pp_error)); append = Pack.append; map = Pack.map; close = (fun t fd -> Pack.close t fd >|= R.reword_error (R.msgf "%a" Pack.pp_error)); } (* XXX(dinosaure): abstract it? *) let digest : kind:[ `A | `B | `C | `D ] -> ?off:int -> ?len:int -> Bigstringaf.t -> Uid.t = fun ~kind ?(off = 0) ?len buf -> let len = match len with Some len -> len | None -> Bigstringaf.length buf - off in let ctx = Uid.empty in let feed_string ctx str = let off = 0 and len = String.length str in Uid.feed ctx (Bigstringaf.of_string ~off ~len str) in let ctx = match kind with | `A -> feed_string ctx (Fmt.str "commit %d\000" len) | `B -> feed_string ctx (Fmt.str "tree %d\000" len) | `C -> feed_string ctx (Fmt.str "blob %d\000" len) | `D -> feed_string ctx (Fmt.str "tag %d\000" len) in let ctx = Uid.feed ctx ~off ~len buf in Uid.get ctx let ( >>? ) = Lwt_result.bind module CartonSched = Carton.Make (Lwt) let finish_it t ~pack ~weight ~where offsets = let open Lwt.Infix in Log.debug (fun m -> m "Start to finish the canonicalized PACK file."); Pack.create ~trunc:false ~mode:Pack.Rd t pack >>? fun fd -> let zl_buffer = De.bigstring_create De.io_buffer_size in let allocate bits = De.make_window ~bits in let pack = Carton.Dec.make fd ~allocate ~z:zl_buffer ~uid_ln:Uid.length ~uid_rw:Uid.of_raw_string (fun uid -> Hashtbl.find where uid) in let map fd ~pos len = let max = Int64.sub weight pos in let len = min max (Int64.of_int len) in let len = Int64.to_int len in Pack.map t fd ~pos len in let rec go entries = function | [] -> Lwt.return entries | (offset, crc) :: offsets -> Lwt.catch (fun () -> Log.debug (fun m -> m "Get object at %08Lx." offset); let weight = Carton.Dec.weight_of_offset ~map pack ~weight:Carton.Dec.null offset in let raw = Carton.Dec.make_raw ~weight in let v = Carton.Dec.of_offset ~map pack raw ~cursor:offset in let kind = Carton.Dec.kind v in let raw = Carton.Dec.raw v in let len = Carton.Dec.len v in let uid = digest ~kind ~off:0 ~len raw in go ({ Carton.Dec.Idx.offset; crc; uid } :: entries) offsets) (fun exn -> Printexc.print_backtrace stdout; Lwt.fail exn) in go [] offsets >>= fun entries -> Pack.close t fd >>? fun () -> Lwt.return_ok entries let run_pck ?threads ~light_load ~heavy_load stream t ~src ~dst = let open Rresult in let open Lwt.Infix in Lwt.catch (fun () -> Log.debug (fun m -> m "Start to verify the given stream."); Thin.verify ~digest ?threads t src fs stream) (function | Failure err -> Lwt.return_error (R.msg err) | Invalid_argument err -> Lwt.return_error (R.msg err) | exn -> Printexc.print_backtrace stdout; Lwt.return_error (`Exn exn)) >>= function | Error _ as err -> Lwt.return err | Ok (_, [], [], entries, _weight, uid) -> Log.debug (fun m -> m "Given PACK file is not thin, move it!"); Pack.move t ~src ~dst >|= R.reword_error (R.msgf "%a" Pack.pp_error) >>? fun () -> Lwt.return_ok (uid, Array.of_list entries) | Ok (n, uids, unresolveds, entries, weight, _uid) -> Log.debug (fun m -> m "Given PACK file is thin, canonicalize!"); Thin.canonicalize ~light_load ~heavy_load ~src ~dst t fs n uids weight >>? fun (shift, weight, uid, entries') -> let where = Hashtbl.create 0x100 in let entries = let fold ({ Carton.Dec.Idx.offset; uid; _ } as entry) = let offset = Int64.add offset shift in Hashtbl.add where uid offset; { entry with Carton.Dec.Idx.offset } in List.map fold entries in List.iter (fun { Carton.Dec.Idx.offset; uid; _ } -> Hashtbl.add where uid offset) entries'; let unresolveds = let fold (offset, crc) = Int64.add offset shift, crc in List.map fold unresolveds in finish_it ~pack:dst ~weight ~where t unresolveds >|= R.reword_error (R.msgf "%a" Pack.pp_error) >>? fun entries'' -> Log.debug (fun m -> m "PACK canonicalized."); let entries = List.rev_append entries' entries in let entries = List.rev_append entries'' entries in Lwt.return_ok (uid, Array.of_list entries) module Enc = Carton.Dec.Idx.N (Uid) let run_idx t ~dst ~pack entries = let open Lwt.Infix in let encoder = Enc.encoder `Manual ~pack entries in let buf = Bigstringaf.create De.io_buffer_size in Enc.dst encoder buf 0 (Bigstringaf.length buf); Index.create ~trunc:true ~mode:Index.Wr t dst >>? fun fd -> let rec go = function | `Partial -> let len = Bigstringaf.length buf - Enc.dst_rem encoder in Index.append t fd (Bigstringaf.substring buf ~off:0 ~len) >>= fun () -> Enc.dst encoder buf 0 (Bigstringaf.length buf); go (Enc.encode encoder `Await) | `Ok -> Lwt.return_ok () in go (Enc.encode encoder `Await) >>? fun () -> Index.close t fd let run ?threads ~light_load ~heavy_load stream t_pck t_idx ~src ~dst ~idx = let open Rresult in let open Lwt.Infix in run_pck ?threads ~light_load ~heavy_load stream t_pck ~src ~dst >>? fun (pack, entries) -> run_idx t_idx ~dst:idx ~pack entries >|= R.reword_error (R.msgf "%a" Index.pp_error) >>? fun () -> Lwt.return_ok pack module Flow = Unixiz.Make (Mimic) module Fetch = Nss.Fetch.Make (Scheduler) (Lwt) (Flow) (Uid) (Ref) module Push = Nss.Push.Make (Scheduler) (Lwt) (Flow) (Uid) (Ref) let fetch_v1 ?(uses_git_transport = false) ~push_stdout ~push_stderr ~capabilities path flow ?deepen ?want hostname store access fetch_cfg pack = let open Lwt.Infix in Lwt.try_bind (fun () -> Fetch.fetch_v1 ~uses_git_transport ~push_stdout ~push_stderr ~capabilities ?deepen ?want ~host:hostname path (Flow.make flow) store access fetch_cfg @@ fun (payload, off, len) -> let v = String.sub payload off len in pack (Some (v, 0, len))) (fun refs -> pack None >>= fun () -> Mimic.close flow >>= fun () -> Lwt.return_ok refs) @@ fun exn -> pack None >>= fun () -> Mimic.close flow >>= fun () -> Lwt.fail exn let default_capabilities = [ `Side_band_64k; `Multi_ack_detailed; `Ofs_delta; `Thin_pack; `Report_status; ] type transmission = [ `Git | `Exec ] let rec get_transmission : Mimic.edn list -> [ `Git | `Exec | `HTTP of Uri.t * handshake ] option = function | Mimic.Edn (k, v) :: r -> ( match Mimic.equal k git_transmission with | Some Mimic.Refl -> Some v | None -> get_transmission r) | [] -> None let add_unless lst k v = match List.assoc_opt (String.lowercase_ascii k) lst with | Some _ -> lst | None -> (String.lowercase_ascii k, v) :: lst let pp_version ppf = function | `V1 -> Fmt.pf ppf "1" | _ -> Fmt.pf ppf "unknown" let add_headers_for_fetching ?(version = `V1) ctx = let headers = Option.value ~default:[] (Mimic.get git_http_headers ctx) in let headers = add_unless headers "content-type" "application/x-git-upload-pack-request" in let headers = add_unless headers "accept" "application/x-git-upload-pack-result" in let headers = add_unless headers "git-protocol" (Fmt.str "version=%a" pp_version version) in Mimic.replace git_http_headers headers ctx let fetch ?(push_stdout = ignore) ?(push_stderr = ignore) ?(bounds = 10) ?threads ~ctx (access, light_load, heavy_load) store edn ?(version = `V1) ?(capabilities = default_capabilities) ?deepen want t_pck t_idx ~src ~dst ~idx = let open Rresult in let open Lwt.Infix in let hostname = edn.Endpoint.hostname in let path = edn.Endpoint.path in let stream, emitter = Lwt_stream.create_bounded bounds in let pusher_with_logging = function | Some (str, off, len) -> Log.debug (fun m -> m "Download %d byte(s) of the PACK file." len); emitter#push (str, off, len) | None -> Log.debug (fun m -> m "End of pack."); emitter#close; Lwt.return_unit in let stream () = Lwt_stream.get stream in let ctx = Mimic.add git_capabilities `Rd (Endpoint.to_ctx edn ctx) in let ctx = add_headers_for_fetching ~version ctx in Lwt.catch (fun () -> Mimic.unfold ctx >>? fun ress -> Mimic.connect ress >>= fun flow -> match flow, get_transmission ress, version with | Ok flow, Some (#transmission as transmission), `V1 -> ( let fetch_cfg = Nss.Fetch.configuration capabilities in let uses_git_transport = match transmission with `Git -> true | `Exec -> false in Lwt.both (fetch_v1 ~push_stdout ~push_stderr ~uses_git_transport ~capabilities path flow ?deepen ~want hostname store access fetch_cfg pusher_with_logging) (run ?threads ~light_load ~heavy_load stream t_pck t_idx ~src ~dst ~idx) >>= fun (refs, idx) -> match refs, idx with | Ok refs, Ok uid -> Lwt.return_ok (`Pack (uid, refs)) | (Error _ as err), _ -> Lwt.return err | Ok [], _ -> Lwt.return_ok `Empty | Ok _refs, (Error _ as err) -> Lwt.return err) | Ok flow, Some (`HTTP (uri, handshake)), `V1 -> ( let fetch_cfg = Nss.Fetch.configuration ~stateless:true capabilities in let uri0 = Fmt.str "%a/info/refs?service=git-upload-pack" Uri.pp uri |> Uri.of_string in let uri1 = Fmt.str "%a/git-upload-pack" Uri.pp uri |> Uri.of_string in Lwt.both ( handshake ~uri0 ~uri1 flow >>= fun () -> fetch_v1 ~push_stdout ~push_stderr ~capabilities path flow ?deepen ~want hostname store access fetch_cfg pusher_with_logging ) (run ~light_load ~heavy_load stream t_pck t_idx ~src ~dst ~idx) >>= fun (refs, idx) -> match refs, idx with | Ok refs, Ok uid -> Lwt.return_ok (`Pack (uid, refs)) | (Error _ as err), _ -> Lwt.return err | Ok [], _ -> Lwt.return_ok `Empty | Ok _refs, (Error _ as err) -> Lwt.return err) | Ok flow, Some _, _ -> Log.err (fun m -> m "The protocol version is uninmplemented."); Mimic.close flow >>= fun () -> Lwt.return_error (`Msg "Version protocol unimplemented") | Ok flow, None, _ -> Log.err (fun m -> m "A flow was allocated but we can not recognize the \ transmission."); Mimic.close flow >>= fun () -> Lwt.return_error (`Msg "Unrecognized protocol") | Error err, _, _ -> Log.err (fun m -> m "The Git peer is not reachable."); Lwt.return_error err) @@ function | Failure err -> Lwt.return_error (R.msg err) | exn -> Lwt.return_error (`Exn exn) module Delta = Carton_lwt.Enc.Delta (Uid) (Verbose) let deltify ~light_load ~heavy_load ?(threads = 4) (uids : Uid.t list) = let open Lwt.Infix in let fold (uid : Uid.t) = light_load uid >|= fun (kind, length) -> Carton_lwt.Enc.make_entry ~kind ~length uid in Lwt_list.map_p fold uids >|= Array.of_list >>= fun entries -> Delta.delta ~threads:(List.init threads (fun _thread -> heavy_load)) ~weight:10 ~uid_ln:Uid.length entries >>= fun targets -> Lwt.return (entries, targets) let header = Bigstringaf.create 12 let pack ~(heavy_load : Uid.t Carton_lwt.Enc.load) stream targets = let open Lwt.Infix in let offsets = Hashtbl.create (Array.length targets) in let find uid = match Hashtbl.find offsets uid with | v -> Lwt.return_some v | exception Not_found -> Lwt.return_none in let uid = { Carton.Enc.uid_ln = Uid.length; Carton.Enc.uid_rw = Uid.to_raw_string } in let b = { Carton.Enc.o = Bigstringaf.create De.io_buffer_size; Carton.Enc.i = Bigstringaf.create De.io_buffer_size; Carton.Enc.q = De.Queue.create 0x10000; Carton.Enc.w = De.Lz77.make_window ~bits:15; } in let ctx = ref Uid.empty in let cursor = ref 0 in Carton.Enc.header_of_pack ~length:(Array.length targets) header 0 12; stream (Some (Bigstringaf.to_string header)); ctx := Uid.feed !ctx header ~off:0 ~len:12; cursor := !cursor + 12; let encode_targets targets = let encode_target idx = Hashtbl.add offsets (Carton.Enc.target_uid targets.(idx)) !cursor; Carton_lwt.Enc.encode_target ~b ~find ~load:heavy_load ~uid targets.(idx) ~cursor:!cursor >>= fun (len, encoder) -> let rec go encoder = match Carton.Enc.N.encode ~o:b.o encoder with | `Flush (encoder, len) -> let payload = Bigstringaf.substring b.o ~off:0 ~len in stream (Some payload); ctx := Uid.feed !ctx b.o ~off:0 ~len; cursor := !cursor + len; let encoder = Carton.Enc.N.dst encoder b.o 0 (Bigstringaf.length b.o) in go encoder | `End -> Lwt.return () in let payload = Bigstringaf.substring b.o ~off:0 ~len in stream (Some payload); ctx := Uid.feed !ctx b.o ~off:0 ~len; cursor := !cursor + len; let encoder = Carton.Enc.N.dst encoder b.o 0 (Bigstringaf.length b.o) in go encoder in let rec go idx = if idx < Array.length targets then encode_target idx >>= fun () -> go (succ idx) else Lwt.return () in go 0 in encode_targets targets >>= fun () -> let uid = Uid.get !ctx |> Uid.to_raw_string in stream (Some uid); stream None; Lwt.return_unit let pack ~light_load ~heavy_load uids = let open Lwt.Infix in let stream, pusher = Lwt_stream.create () in let fiber () = deltify ~light_load ~heavy_load uids >>= fun (_, targets) -> pack ~heavy_load pusher targets in let stream () = Lwt_stream.get stream in Lwt.async fiber; stream let push_v1 ?uses_git_transport flow ~capabilities path cmds hostname store access push_cfg pack = let open Lwt.Infix in Push.push ?uses_git_transport ~capabilities cmds ~host:hostname path (Flow.make flow) store access push_cfg pack >>= fun () -> Mimic.close flow >>= fun () -> Lwt.return_ok () let add_headers_for_pushing ?(version = `V1) ctx = let headers = Option.value ~default:[] (Mimic.get git_http_headers ctx) in let headers = add_unless headers "content-type" "application/x-git-receive-pack-request" in let headers = add_unless headers "accept" "application/x-git-receive-pack-result" in let headers = add_unless headers "git-protocol" (Fmt.str "version=%a" pp_version version) in Mimic.replace git_http_headers headers ctx let push ~ctx (access, light_load, heavy_load) store edn ?(version = `V1) ?(capabilities = default_capabilities) cmds = let open Rresult in let open Lwt.Infix in let hostname = edn.Endpoint.hostname in let path = edn.Endpoint.path in let ctx = Mimic.add git_capabilities `Wr (Endpoint.to_ctx edn ctx) in let ctx = add_headers_for_pushing ~version ctx in Lwt.catch (fun () -> Mimic.unfold ctx >>? fun ress -> Mimic.connect ress >>= fun res -> match res, get_transmission ress, version with | Ok flow, Some (#transmission as transmission), `V1 -> let push_cfg = Nss.Push.configuration () in let uses_git_transport = match transmission with `Git -> true | `Exec -> false in push_v1 ~uses_git_transport flow ~capabilities path cmds hostname store access push_cfg (pack ~light_load ~heavy_load) | Ok flow, Some (`HTTP (uri, handshake)), `V1 -> let push_cfg = Nss.Push.configuration ~stateless:true () in let uri0 = Fmt.str "%a/info/refs?service=git-receive-pack" Uri.pp uri |> Uri.of_string in let uri1 = Fmt.str "%a/git-receive-pack" Uri.pp uri |> Uri.of_string in handshake ~uri0 ~uri1 flow >>= fun () -> push_v1 flow ~capabilities path cmds hostname store access push_cfg (pack ~light_load ~heavy_load) | Ok flow, Some _, _ -> Log.err (fun m -> m "The protocol version is uninmplemented."); Mimic.close flow >>= fun () -> Lwt.return_error (`Msg "Version protocol unimplemented") | Ok flow, None, _ -> Log.err (fun m -> m "A flow was allocated but we can not recognize the \ transmission."); Mimic.close flow >>= fun () -> Lwt.return_error (`Msg "Unrecognized protocol") | Error err, _, _ -> Log.err (fun m -> m "The Git peer is not reachable."); Lwt.return_error err) @@ function | Failure err -> Lwt.return_error (R.msg err) | exn -> Lwt.return_error (`Exn exn) end
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