b6449cae87
* `lib_stdlib`: basic extended OCaml stdlib and generic data structures * `lib_data_encoding`: almost independant 'Data_encoding' * `lib_error_monad`: almost independant 'Error_monad' * `lib_stdlib_lwt`: extended Lwt library * `lib_crypto`: all the crypto stuff (hashing, signing, cryptobox). * `lib_base`: - basic type definitions (Block_header, Operation, ...) - a module `TzPervasives` to bind them all and to be the single module opened everywhere. In the process, I splitted `Tezos_data` and `Hash` in multiple submodules, thus removing a lot of `-open`. The following two modules may not have found their place yet: - Base58 (currently in `lib_crypto`) - Cli_entries (currently in `lib_stdlib_lwt`)
157 lines
5.7 KiB
OCaml
157 lines
5.7 KiB
OCaml
(**************************************************************************)
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(* *)
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(* Copyright (c) 2014 - 2017. *)
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(* Dynamic Ledger Solutions, Inc. <contact@tezos.com> *)
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(* *)
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(* All rights reserved. No warranty, explicit or implicit, provided. *)
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(* *)
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(**************************************************************************)
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(** Categories of error *)
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type error_category =
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[ `Branch (** Errors that may not happen in another context *)
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| `Temporary (** Errors that may not happen in a later context *)
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| `Permanent (** Errors that will happen no matter the context *)
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]
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module type S = sig
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type error = ..
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val pp: Format.formatter -> error -> unit
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val pp_print_error: Format.formatter -> error list -> unit
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(** An error serializer *)
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val error_encoding : error Data_encoding.t
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val json_of_error : error -> Data_encoding.json
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val error_of_json : Data_encoding.json -> error
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(** {2 Error classification} ***********************************************)
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(** For other modules to register specialized error serializers *)
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val register_error_kind :
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error_category ->
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id:string -> title:string -> description:string ->
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?pp:(Format.formatter -> 'err -> unit) ->
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'err Data_encoding.t ->
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(error -> 'err option) -> ('err -> error) ->
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unit
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val register_wrapped_error_kind :
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('err -> error_category) ->
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id:string -> title:string -> description:string ->
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?pp:(Format.formatter -> 'err -> unit) ->
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'err Data_encoding.t ->
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(error -> 'err option) -> ('err -> error) ->
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unit
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(** Classify an error using the registered kinds *)
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val classify_errors : error list -> error_category
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(** {2 Monad definition} ***************************************************)
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(** The error monad wrapper type, the error case holds a stack of
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error, initialized by the first call to {!fail} and completed by
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each call to {!trace} as the stack is rewinded. The most general
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error is thus at the top of the error stack, going down to the
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specific error that actually caused the failure. *)
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type 'a tzresult = ('a, error list) result
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(** A serializer for result of a given type *)
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val result_encoding :
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'a Data_encoding.t ->
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'a tzresult Data_encoding.t
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(** Sucessful result *)
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val ok : 'a -> 'a tzresult
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(** Sucessful return *)
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val return : 'a -> 'a tzresult Lwt.t
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(** Erroneous result *)
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val error : error -> 'a tzresult
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(** Erroneous return *)
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val fail : error -> 'a tzresult Lwt.t
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(** Non-Lwt bind operator *)
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val (>>?) : 'a tzresult -> ('a -> 'b tzresult) -> 'b tzresult
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(** Bind operator *)
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val (>>=?) :
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'a tzresult Lwt.t -> ('a -> 'b tzresult Lwt.t) -> 'b tzresult Lwt.t
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(** Lwt's bind reexported *)
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val (>>=) : 'a Lwt.t -> ('a -> 'b Lwt.t) -> 'b Lwt.t
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val (>|=) : 'a Lwt.t -> ('a -> 'b) -> 'b Lwt.t
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(** To operator *)
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val (>>|?) : 'a tzresult Lwt.t -> ('a -> 'b) -> 'b tzresult Lwt.t
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(** Non-Lwt to operator *)
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val (>|?) : 'a tzresult -> ('a -> 'b) -> 'b tzresult
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(** Enrich an error report (or do nothing on a successful result) manually *)
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val record_trace : error -> 'a tzresult -> 'a tzresult
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(** Automatically enrich error reporting on stack rewind *)
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val trace : error -> 'b tzresult Lwt.t -> 'b tzresult Lwt.t
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(** Erroneous return on failed assertion *)
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val fail_unless : bool -> error -> unit tzresult Lwt.t
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val fail_when : bool -> error -> unit tzresult Lwt.t
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val unless : bool -> (unit -> unit tzresult Lwt.t) -> unit tzresult Lwt.t
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val _when : bool -> (unit -> unit tzresult Lwt.t) -> unit tzresult Lwt.t
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(* Usage: [_assert cond __LOC__ "<fmt>" ...] *)
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val _assert :
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bool -> string ->
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('a, Format.formatter, unit, unit tzresult Lwt.t) format4 -> 'a
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val protect :
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on_error: (error list -> 'a tzresult Lwt.t) ->
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'a tzresult Lwt.t -> 'a tzresult Lwt.t
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(** {2 In-monad list iterators} ********************************************)
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(** A {!List.iter} in the monad *)
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val iter_s : ('a -> unit tzresult Lwt.t) -> 'a list -> unit tzresult Lwt.t
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val iter_p : ('a -> unit tzresult Lwt.t) -> 'a list -> unit tzresult Lwt.t
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val iter2_p : ('a -> 'b -> unit tzresult Lwt.t) -> 'a list -> 'b list -> unit tzresult Lwt.t
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val iteri2_p : (int -> 'a -> 'b -> unit tzresult Lwt.t) -> 'a list -> 'b list -> unit tzresult Lwt.t
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(** A {!List.map} in the monad *)
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val map_s : ('a -> 'b tzresult Lwt.t) -> 'a list -> 'b list tzresult Lwt.t
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val map_p : ('a -> 'b tzresult Lwt.t) -> 'a list -> 'b list tzresult Lwt.t
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val mapi_s : (int -> 'a -> 'b tzresult Lwt.t) -> 'a list -> 'b list tzresult Lwt.t
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val mapi_p : (int -> 'a -> 'b tzresult Lwt.t) -> 'a list -> 'b list tzresult Lwt.t
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(** A {!List.map2} in the monad *)
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val map2 :
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('a -> 'b -> 'c tzresult) -> 'a list -> 'b list -> 'c list tzresult
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(** A {!List.map2} in the monad *)
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val map2_s :
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('a -> 'b -> 'c tzresult Lwt.t) -> 'a list -> 'b list ->
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'c list tzresult Lwt.t
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(** A {!List.filter_map} in the monad *)
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val filter_map_s :
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('a -> 'b option tzresult Lwt.t) -> 'a list -> 'b list tzresult Lwt.t
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val filter_map_p :
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('a -> 'b option tzresult Lwt.t) -> 'a list -> 'b list tzresult Lwt.t
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(** A {!List.fold_left} in the monad *)
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val fold_left_s :
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('a -> 'b -> 'a tzresult Lwt.t) -> 'a -> 'b list -> 'a tzresult Lwt.t
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(** A {!List.fold_right} in the monad *)
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val fold_right_s :
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('a -> 'b -> 'b tzresult Lwt.t) -> 'a list -> 'b -> 'b tzresult Lwt.t
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(** A {!Lwt.join} in the monad *)
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val join : unit tzresult Lwt.t list -> unit tzresult Lwt.t
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end
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