mirror of
https://github.com/LCPQ/quantum_package
synced 2024-11-13 01:23:57 +01:00
767 lines
22 KiB
OCaml
767 lines
22 KiB
OCaml
open Core.Std
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open Qptypes
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(** New job : Request to create a new multi-tasked job *)
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module State : sig
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type t
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val of_string : string -> t
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val to_string : t -> string
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end = struct
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type t = string
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let of_string x = x
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let to_string x = x
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end
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module Newjob_msg : sig
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type t =
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{ state: State.t;
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address_tcp: Address.Tcp.t ;
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address_inproc: Address.Inproc.t;
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}
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val create : address_tcp:string -> address_inproc:string -> state:string -> t
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val to_string : t -> string
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end = struct
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type t =
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{ state: State.t;
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address_tcp: Address.Tcp.t ;
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address_inproc: Address.Inproc.t;
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}
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let create ~address_tcp ~address_inproc ~state =
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{ state = State.of_string state;
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address_tcp = Address.Tcp.of_string address_tcp ;
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address_inproc = Address.Inproc.of_string address_inproc ;
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}
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let to_string t =
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Printf.sprintf "new_job %s %s %s"
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( State.to_string t.state )
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( Address.Tcp.to_string t.address_tcp )
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( Address.Inproc.to_string t.address_inproc )
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end
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module Endjob_msg : sig
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type t =
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{ state: State.t;
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}
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val create : state:string -> t
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val to_string : t -> string
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end = struct
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type t =
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{ state: State.t;
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}
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let create ~state =
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{ state = State.of_string state;
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}
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let to_string t =
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Printf.sprintf "end_job %s"
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( State.to_string t.state )
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end
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(** Connect : connect a new client to the task server *)
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module Connect_msg : sig
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type t = Tcp | Inproc | Ipc
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val create : typ:string -> t
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val to_string : t -> string
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end = struct
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type t = Tcp | Inproc | Ipc
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let create ~typ =
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match typ with
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| "tcp" -> Tcp
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| "inproc" -> Inproc
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| "ipc" -> Ipc
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| _ -> assert false
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let to_string = function
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| Tcp -> "connect tcp"
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| Inproc -> "connect inproc"
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| Ipc -> "connect ipc"
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end
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(** ConnectReply : Reply to the connect messsage *)
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module ConnectReply_msg : sig
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type t =
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{ client_id: Id.Client.t ;
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state: State.t ;
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push_address: Address.t;
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}
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val create : state:State.t -> client_id:Id.Client.t -> push_address:Address.t -> t
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val to_string : t -> string
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end = struct
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type t =
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{ client_id: Id.Client.t ;
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state: State.t ;
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push_address: Address.t;
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}
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let create ~state ~client_id ~push_address =
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{ client_id ; state ; push_address }
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let to_string x =
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Printf.sprintf "connect_reply %s %d %s"
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(State.to_string x.state)
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(Id.Client.to_int x.client_id)
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(Address.to_string x.push_address)
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end
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(** Disconnect : disconnect a client from the task server *)
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module Disconnect_msg : sig
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type t =
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{ client_id: Id.Client.t ;
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state: State.t ;
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}
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val create : state:string -> client_id:int -> t
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val to_string : t -> string
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end = struct
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type t =
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{ client_id: Id.Client.t ;
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state: State.t ;
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}
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let create ~state ~client_id =
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{ client_id = Id.Client.of_int client_id ; state = State.of_string state }
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let to_string x =
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Printf.sprintf "disconnect %s %d"
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(State.to_string x.state)
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(Id.Client.to_int x.client_id)
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end
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module DisconnectReply_msg : sig
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type t =
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{
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state: State.t ;
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}
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val create : state:State.t -> t
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val to_string : t -> string
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end = struct
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type t =
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{
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state: State.t ;
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}
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let create ~state =
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{ state }
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let to_string x =
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Printf.sprintf "disconnect_reply %s"
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(State.to_string x.state)
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end
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(** AddTask : Add a new task to the queue *)
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module AddTask_msg : sig
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type t =
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{ state: State.t;
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tasks: string list;
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}
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val create : state:string -> tasks:string list -> t
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val to_string : t -> string
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end = struct
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type t =
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{ state: State.t;
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tasks: string list;
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}
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let create ~state ~tasks = { state = State.of_string state ; tasks }
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let to_string x =
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Printf.sprintf "add_task %s %s" (State.to_string x.state) (String.concat ~sep:"|" x.tasks)
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end
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(** AddTaskReply : Reply to the AddTask message *)
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module AddTaskReply_msg : sig
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type t
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val create : task_id:Id.Task.t -> t
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val to_string : t -> string
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end = struct
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type t = Id.Task.t
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let create ~task_id = task_id
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let to_string x =
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Printf.sprintf "add_task_reply %d" (Id.Task.to_int x)
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end
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(** DelTask : Remove a task from the queue *)
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module DelTask_msg : sig
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type t =
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{ state: State.t;
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task_ids: Id.Task.t list
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}
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val create : state:string -> task_ids:int list -> t
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val to_string : t -> string
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end = struct
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type t =
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{ state: State.t;
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task_ids: Id.Task.t list
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}
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let create ~state ~task_ids =
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{ state = State.of_string state ;
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task_ids = List.map ~f:Id.Task.of_int task_ids
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}
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let to_string x =
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Printf.sprintf "del_task %s %s"
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(State.to_string x.state)
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(String.concat ~sep:"|" @@ List.map ~f:Id.Task.to_string x.task_ids)
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end
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(** DelTaskReply : Reply to the DelTask message *)
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module DelTaskReply_msg : sig
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type t
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val create : task_ids:Id.Task.t list -> more:bool -> t
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val to_string : t -> string
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end = struct
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type t = {
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task_ids : Id.Task.t list;
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more : bool;
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}
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let create ~task_ids ~more = { task_ids ; more }
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let to_string x =
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let more =
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if x.more then "more"
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else "done"
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in
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Printf.sprintf "del_task_reply %s %s"
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more (String.concat ~sep:"|" @@ List.map ~f:Id.Task.to_string x.task_ids)
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end
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(** GetTask : get a new task to do *)
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module GetTask_msg : sig
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type t =
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{ client_id: Id.Client.t ;
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state: State.t ;
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}
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val create : state:string -> client_id:int -> t
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val to_string : t -> string
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end = struct
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type t =
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{ client_id: Id.Client.t ;
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state: State.t ;
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}
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let create ~state ~client_id =
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{ client_id = Id.Client.of_int client_id ; state = State.of_string state }
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let to_string x =
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Printf.sprintf "get_task %s %d"
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(State.to_string x.state)
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(Id.Client.to_int x.client_id)
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end
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(** GetTaskReply : Reply to the GetTask message *)
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module GetTaskReply_msg : sig
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type t
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val create : task_id:Id.Task.t option -> task:string option -> t
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val to_string : t -> string
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end = struct
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type t =
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{ task_id: Id.Task.t option ;
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task : string option ;
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}
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let create ~task_id ~task = { task_id ; task }
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let to_string x =
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match x.task_id, x.task with
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| Some task_id, Some task ->
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Printf.sprintf "get_task_reply %d %s" (Id.Task.to_int task_id) task
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| _ ->
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Printf.sprintf "get_task_reply 0"
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end
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(** GetPsi : get the current variational wave function *)
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module GetPsi_msg : sig
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type t =
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{ client_id: Id.Client.t ;
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}
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val create : client_id:int -> t
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val to_string : t -> string
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end = struct
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type t =
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{ client_id: Id.Client.t ;
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}
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let create ~client_id =
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{ client_id = Id.Client.of_int client_id }
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let to_string x =
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Printf.sprintf "get_psi %d"
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(Id.Client.to_int x.client_id)
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end
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module Psi : sig
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type t =
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{
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n_state : Strictly_positive_int.t ;
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n_det : Strictly_positive_int.t ;
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psi_det_size : Strictly_positive_int.t ;
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n_det_generators : Strictly_positive_int.t option;
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n_det_selectors : Strictly_positive_int.t option;
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psi_det : string ;
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psi_coef : string ;
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energy : string;
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}
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val create : n_state:Strictly_positive_int.t
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-> n_det:Strictly_positive_int.t
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-> psi_det_size:Strictly_positive_int.t
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-> n_det_generators:Strictly_positive_int.t option
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-> n_det_selectors:Strictly_positive_int.t option
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-> psi_det:string -> psi_coef:string -> energy:string -> t
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end = struct
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type t =
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{
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n_state : Strictly_positive_int.t ;
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n_det : Strictly_positive_int.t ;
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psi_det_size : Strictly_positive_int.t ;
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n_det_generators : Strictly_positive_int.t option;
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n_det_selectors : Strictly_positive_int.t option;
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psi_det : string ;
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psi_coef : string ;
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energy : string ;
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}
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let create ~n_state ~n_det ~psi_det_size
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~n_det_generators ~n_det_selectors ~psi_det ~psi_coef
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~energy =
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assert (Strictly_positive_int.to_int n_det <=
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Strictly_positive_int.to_int psi_det_size );
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{ n_state; n_det ; psi_det_size ;
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n_det_generators ; n_det_selectors ;
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psi_det ; psi_coef ; energy }
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end
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(** GetPsiReply_msg : Reply to the GetPsi message *)
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module GetPsiReply_msg : sig
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type t =
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{ client_id : Id.Client.t ;
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psi : Psi.t }
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val create : client_id:Id.Client.t -> psi:Psi.t -> t
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val to_string_list : t -> string list
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val to_string : t -> string
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end = struct
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type t =
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{ client_id : Id.Client.t ;
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psi : Psi.t }
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let create ~client_id ~psi =
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{ client_id ; psi }
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let to_string x =
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let g, s =
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match x.psi.Psi.n_det_generators, x.psi.Psi.n_det_selectors with
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| Some g, Some s -> Strictly_positive_int.to_int g, Strictly_positive_int.to_int s
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| _ -> -1, -1
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in
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Printf.sprintf "get_psi_reply %d %d %d %d %d %d"
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(Id.Client.to_int x.client_id)
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(Strictly_positive_int.to_int x.psi.Psi.n_state)
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(Strictly_positive_int.to_int x.psi.Psi.n_det)
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(Strictly_positive_int.to_int x.psi.Psi.psi_det_size)
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g s
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let to_string_list x =
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[ to_string x ;
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x.psi.Psi.psi_det ; x.psi.Psi.psi_coef ; x.psi.Psi.energy ]
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end
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(** PutPsi : put the current variational wave function *)
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module PutPsi_msg : sig
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type t =
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{ client_id : Id.Client.t ;
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n_state : Strictly_positive_int.t ;
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n_det : Strictly_positive_int.t ;
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psi_det_size : Strictly_positive_int.t ;
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n_det_generators : Strictly_positive_int.t option;
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n_det_selectors : Strictly_positive_int.t option;
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psi : Psi.t option }
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val create :
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client_id:int ->
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n_state:int ->
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n_det:int ->
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psi_det_size:int ->
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psi_det:string option ->
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psi_coef:string option ->
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n_det_generators: int option ->
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n_det_selectors:int option ->
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energy:string option -> t
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val to_string_list : t -> string list
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val to_string : t -> string
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end = struct
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type t =
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{ client_id : Id.Client.t ;
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n_state : Strictly_positive_int.t ;
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n_det : Strictly_positive_int.t ;
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psi_det_size : Strictly_positive_int.t ;
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n_det_generators : Strictly_positive_int.t option;
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n_det_selectors : Strictly_positive_int.t option;
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psi : Psi.t option }
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let create ~client_id ~n_state ~n_det ~psi_det_size ~psi_det ~psi_coef
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~n_det_generators ~n_det_selectors ~energy =
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let n_state, n_det, psi_det_size =
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Strictly_positive_int.of_int n_state,
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Strictly_positive_int.of_int n_det,
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Strictly_positive_int.of_int psi_det_size
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in
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assert (Strictly_positive_int.to_int psi_det_size >=
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Strictly_positive_int.to_int n_det);
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let n_det_generators, n_det_selectors =
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match n_det_generators, n_det_selectors with
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| Some x, Some y ->
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Some (Strictly_positive_int.of_int x),
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Some (Strictly_positive_int.of_int y)
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| _ -> None, None
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in
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let psi =
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match (psi_det, psi_coef, energy) with
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| (Some psi_det, Some psi_coef, Some energy) ->
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Some (Psi.create ~n_state ~n_det ~psi_det_size ~psi_det
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~psi_coef ~n_det_generators ~n_det_selectors ~energy)
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| _ -> None
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in
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{ client_id = Id.Client.of_int client_id ;
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n_state ; n_det ; psi_det_size ; n_det_generators ;
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n_det_selectors ; psi }
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let to_string x =
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match x.n_det_generators, x.n_det_selectors with
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| Some g, Some s ->
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Printf.sprintf "put_psi %d %d %d %d %d %d"
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(Id.Client.to_int x.client_id)
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(Strictly_positive_int.to_int x.n_state)
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(Strictly_positive_int.to_int x.n_det)
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(Strictly_positive_int.to_int x.psi_det_size)
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(Strictly_positive_int.to_int g)
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(Strictly_positive_int.to_int s)
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| _, _ ->
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Printf.sprintf "put_psi %d %d %d %d %d %d"
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(Id.Client.to_int x.client_id)
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(Strictly_positive_int.to_int x.n_state)
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(Strictly_positive_int.to_int x.n_det)
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(Strictly_positive_int.to_int x.psi_det_size)
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(-1) (-1)
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let to_string_list x =
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match x.psi with
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| Some psi ->
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[ to_string x ; psi.Psi.psi_det ; psi.Psi.psi_coef ; psi.Psi.energy ]
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| None ->
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[ to_string x ; "None" ; "None" ; "None" ]
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end
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(** PutPsiReply_msg : Reply to the PutPsi message *)
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module PutPsiReply_msg : sig
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type t
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val create : client_id:Id.Client.t -> t
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val to_string : t -> string
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end = struct
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type t =
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{ client_id : Id.Client.t ;
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}
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let create ~client_id =
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{ client_id; }
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let to_string x =
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Printf.sprintf "put_psi_reply %d"
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(Id.Client.to_int x.client_id)
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end
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(** GetVector : get the current vector (Davidson) *)
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module GetVector_msg : sig
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type t =
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{ client_id: Id.Client.t ;
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}
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val create : client_id:int -> t
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val to_string : t -> string
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end = struct
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type t =
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{ client_id: Id.Client.t ;
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}
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let create ~client_id =
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{ client_id = Id.Client.of_int client_id }
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let to_string x =
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Printf.sprintf "get_vector %d"
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(Id.Client.to_int x.client_id)
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end
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module Vector : sig
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type t =
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{
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size : Strictly_positive_int.t;
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data : string;
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}
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val create : size:Strictly_positive_int.t -> data:string -> t
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end = struct
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type t =
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{
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size : Strictly_positive_int.t;
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data : string;
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}
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let create ~size ~data =
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{ size ; data }
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end
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(** GetVectorReply_msg : Reply to the GetVector message *)
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module GetVectorReply_msg : sig
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type t =
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{ client_id : Id.Client.t ;
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vector : Vector.t }
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val create : client_id:Id.Client.t -> vector:Vector.t -> t
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val to_string : t -> string
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val to_string_list : t -> string list
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end = struct
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type t =
|
|
{ client_id : Id.Client.t ;
|
|
vector : Vector.t }
|
|
let create ~client_id ~vector =
|
|
{ client_id ; vector }
|
|
let to_string x =
|
|
Printf.sprintf "get_vector_reply %d %d"
|
|
(Id.Client.to_int x.client_id)
|
|
(Strictly_positive_int.to_int x.vector.Vector.size)
|
|
let to_string_list x =
|
|
[ to_string x ; x.vector.Vector.data ]
|
|
end
|
|
|
|
(** PutVector : put the current variational wave function *)
|
|
module PutVector_msg : sig
|
|
type t =
|
|
{ client_id : Id.Client.t ;
|
|
size : Strictly_positive_int.t ;
|
|
vector : Vector.t option;
|
|
}
|
|
val create :
|
|
client_id:int -> size:int -> data:string option -> t
|
|
val to_string_list : t -> string list
|
|
val to_string : t -> string
|
|
end = struct
|
|
type t =
|
|
{ client_id : Id.Client.t ;
|
|
size : Strictly_positive_int.t ;
|
|
vector : Vector.t option;
|
|
}
|
|
let create ~client_id ~size ~data =
|
|
let size =
|
|
Strictly_positive_int.of_int size
|
|
in
|
|
let vector =
|
|
match data with
|
|
| None -> None
|
|
| Some s -> Some (Vector.create ~size ~data:s)
|
|
in
|
|
{ client_id = Id.Client.of_int client_id ;
|
|
vector ; size
|
|
}
|
|
|
|
let to_string x =
|
|
Printf.sprintf "put_vector %d %d"
|
|
(Id.Client.to_int x.client_id)
|
|
(Strictly_positive_int.to_int x.size)
|
|
|
|
let to_string_list x =
|
|
match x.vector with
|
|
| Some v -> [ to_string x ; v.Vector.data ]
|
|
| None -> failwith "Empty vector"
|
|
end
|
|
|
|
(** PutVectorReply_msg : Reply to the PutVector message *)
|
|
module PutVectorReply_msg : sig
|
|
type t
|
|
val create : client_id:Id.Client.t -> t
|
|
val to_string : t -> string
|
|
end = struct
|
|
type t =
|
|
{ client_id : Id.Client.t ;
|
|
}
|
|
let create ~client_id =
|
|
{ client_id; }
|
|
let to_string x =
|
|
Printf.sprintf "put_vector_reply %d"
|
|
(Id.Client.to_int x.client_id)
|
|
end
|
|
|
|
|
|
|
|
(** TaskDone : Inform the server that a task is finished *)
|
|
module TaskDone_msg : sig
|
|
type t =
|
|
{ client_id: Id.Client.t ;
|
|
state: State.t ;
|
|
task_ids: Id.Task.t list ;
|
|
}
|
|
val create : state:string -> client_id:int -> task_ids:int list -> t
|
|
val to_string : t -> string
|
|
end = struct
|
|
type t =
|
|
{ client_id: Id.Client.t ;
|
|
state: State.t ;
|
|
task_ids: Id.Task.t list;
|
|
}
|
|
let create ~state ~client_id ~task_ids =
|
|
{ client_id = Id.Client.of_int client_id ;
|
|
state = State.of_string state ;
|
|
task_ids = List.map ~f:Id.Task.of_int task_ids;
|
|
}
|
|
|
|
let to_string x =
|
|
Printf.sprintf "task_done %s %d %s"
|
|
(State.to_string x.state)
|
|
(Id.Client.to_int x.client_id)
|
|
(String.concat ~sep:"|" @@ List.map ~f:Id.Task.to_string x.task_ids)
|
|
end
|
|
|
|
(** Terminate *)
|
|
module Terminate_msg : sig
|
|
type t
|
|
val create : t
|
|
val to_string : t -> string
|
|
end = struct
|
|
type t = Terminate
|
|
let create = Terminate
|
|
let to_string x = "terminate"
|
|
end
|
|
|
|
(** Abort *)
|
|
module Abort_msg : sig
|
|
type t
|
|
val create : t
|
|
val to_string : t -> string
|
|
end = struct
|
|
type t = Abort
|
|
let create = Abort
|
|
let to_string x = "abort"
|
|
end
|
|
|
|
(** OK *)
|
|
module Ok_msg : sig
|
|
type t
|
|
val create : t
|
|
val to_string : t -> string
|
|
end = struct
|
|
type t = Ok
|
|
let create = Ok
|
|
let to_string x = "ok"
|
|
end
|
|
|
|
(** Error *)
|
|
module Error_msg : sig
|
|
type t
|
|
val create : string -> t
|
|
val to_string : t -> string
|
|
end = struct
|
|
type t = string
|
|
let create x = x
|
|
let to_string x =
|
|
String.concat ~sep:" " [ "error" ; x ]
|
|
end
|
|
|
|
|
|
|
|
(** Message *)
|
|
|
|
type t =
|
|
| GetPsi of GetPsi_msg.t
|
|
| PutPsi of PutPsi_msg.t
|
|
| GetPsiReply of GetPsiReply_msg.t
|
|
| PutPsiReply of PutPsiReply_msg.t
|
|
| GetVector of GetVector_msg.t
|
|
| PutVector of PutVector_msg.t
|
|
| GetVectorReply of GetVectorReply_msg.t
|
|
| PutVectorReply of PutVectorReply_msg.t
|
|
| Newjob of Newjob_msg.t
|
|
| Endjob of Endjob_msg.t
|
|
| Connect of Connect_msg.t
|
|
| ConnectReply of ConnectReply_msg.t
|
|
| Disconnect of Disconnect_msg.t
|
|
| DisconnectReply of DisconnectReply_msg.t
|
|
| GetTask of GetTask_msg.t
|
|
| GetTaskReply of GetTaskReply_msg.t
|
|
| DelTask of DelTask_msg.t
|
|
| DelTaskReply of DelTaskReply_msg.t
|
|
| AddTask of AddTask_msg.t
|
|
| AddTaskReply of AddTaskReply_msg.t
|
|
| TaskDone of TaskDone_msg.t
|
|
| Terminate of Terminate_msg.t
|
|
| Abort of Abort_msg.t
|
|
| Ok of Ok_msg.t
|
|
| Error of Error_msg.t
|
|
| SetStopped
|
|
| SetWaiting
|
|
| SetRunning
|
|
|
|
|
|
let of_string s =
|
|
let open Message_lexer in
|
|
match parse s with
|
|
| AddTask_ { state ; tasks } ->
|
|
AddTask (AddTask_msg.create ~state ~tasks)
|
|
| DelTask_ { state ; task_ids } ->
|
|
DelTask (DelTask_msg.create ~state ~task_ids)
|
|
| GetTask_ { state ; client_id } ->
|
|
GetTask (GetTask_msg.create ~state ~client_id)
|
|
| TaskDone_ { state ; task_ids ; client_id } ->
|
|
TaskDone (TaskDone_msg.create ~state ~client_id ~task_ids)
|
|
| Disconnect_ { state ; client_id } ->
|
|
Disconnect (Disconnect_msg.create ~state ~client_id)
|
|
| Connect_ socket ->
|
|
Connect (Connect_msg.create socket)
|
|
| NewJob_ { state ; push_address_tcp ; push_address_inproc } ->
|
|
Newjob (Newjob_msg.create push_address_tcp push_address_inproc state)
|
|
| EndJob_ state ->
|
|
Endjob (Endjob_msg.create state)
|
|
| GetPsi_ client_id ->
|
|
GetPsi (GetPsi_msg.create ~client_id)
|
|
| PutPsi_ { client_id ; n_state ; n_det ; psi_det_size ; n_det_generators ; n_det_selectors } ->
|
|
begin
|
|
match n_det_selectors, n_det_generators with
|
|
| Some s, Some g ->
|
|
PutPsi (PutPsi_msg.create ~client_id ~n_state ~n_det ~psi_det_size
|
|
~n_det_generators:(Some g) ~n_det_selectors:(Some s)
|
|
~psi_det:None ~psi_coef:None ~energy:None )
|
|
| _ ->
|
|
PutPsi (PutPsi_msg.create ~client_id ~n_state ~n_det ~psi_det_size
|
|
~n_det_generators:None ~n_det_selectors:None
|
|
~psi_det:None ~psi_coef:None ~energy:None )
|
|
end
|
|
| GetVector_ client_id ->
|
|
GetVector (GetVector_msg.create ~client_id)
|
|
| PutVector_ { client_id ; size } ->
|
|
PutVector (PutVector_msg.create ~client_id ~size ~data:None )
|
|
| Terminate_ -> Terminate (Terminate_msg.create )
|
|
| Abort_ -> Abort (Abort_msg.create )
|
|
| SetWaiting_ -> SetWaiting
|
|
| SetStopped_ -> SetStopped
|
|
| SetRunning_ -> SetRunning
|
|
| Ok_ -> Ok (Ok_msg.create)
|
|
| Error_ m -> Error (Error_msg.create m)
|
|
|
|
|
|
|
|
let to_string = function
|
|
| GetPsi x -> GetPsi_msg.to_string x
|
|
| PutPsiReply x -> PutPsiReply_msg.to_string x
|
|
| GetVector x -> GetVector_msg.to_string x
|
|
| PutVectorReply x -> PutVectorReply_msg.to_string x
|
|
| Newjob x -> Newjob_msg.to_string x
|
|
| Endjob x -> Endjob_msg.to_string x
|
|
| Connect x -> Connect_msg.to_string x
|
|
| ConnectReply x -> ConnectReply_msg.to_string x
|
|
| Disconnect x -> Disconnect_msg.to_string x
|
|
| DisconnectReply x -> DisconnectReply_msg.to_string x
|
|
| GetTask x -> GetTask_msg.to_string x
|
|
| GetTaskReply x -> GetTaskReply_msg.to_string x
|
|
| DelTask x -> DelTask_msg.to_string x
|
|
| DelTaskReply x -> DelTaskReply_msg.to_string x
|
|
| AddTask x -> AddTask_msg.to_string x
|
|
| AddTaskReply x -> AddTaskReply_msg.to_string x
|
|
| TaskDone x -> TaskDone_msg.to_string x
|
|
| Terminate x -> Terminate_msg.to_string x
|
|
| Abort x -> Abort_msg.to_string x
|
|
| Ok x -> Ok_msg.to_string x
|
|
| Error x -> Error_msg.to_string x
|
|
| PutPsi x -> PutPsi_msg.to_string x
|
|
| GetPsiReply x -> GetPsiReply_msg.to_string x
|
|
| PutVector x -> PutVector_msg.to_string x
|
|
| GetVectorReply x -> GetVectorReply_msg.to_string x
|
|
| SetStopped -> "set_stopped"
|
|
| SetRunning -> "set_running"
|
|
| SetWaiting -> "set_waiting"
|
|
|
|
|
|
let to_string_list = function
|
|
| PutPsi x -> PutPsi_msg.to_string_list x
|
|
| GetPsiReply x -> GetPsiReply_msg.to_string_list x
|
|
| PutVector x -> PutVector_msg.to_string_list x
|
|
| GetVectorReply x -> GetVectorReply_msg.to_string_list x
|
|
| _ -> assert false
|
|
|