393 lines
15 KiB
OCaml
393 lines
15 KiB
OCaml
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(*****************************************************************************)
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(* *)
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(* Open Source License *)
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(* Copyright (c) 2018 Dynamic Ledger Solutions, Inc. <contact@tezos.com> *)
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(* *)
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(* Permission is hereby granted, free of charge, to any person obtaining a *)
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(* copy of this software and associated documentation files (the "Software"),*)
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(* to deal in the Software without restriction, including without limitation *)
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(* the rights to use, copy, modify, merge, publish, distribute, sublicense, *)
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(* and/or sell copies of the Software, and to permit persons to whom the *)
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(* Software is furnished to do so, subject to the following conditions: *)
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(* *)
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(* The above copyright notice and this permission notice shall be included *)
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(* in all copies or substantial portions of the Software. *)
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(* *)
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(* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR*)
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(* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, *)
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(* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL *)
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(* THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER*)
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(* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING *)
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(* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER *)
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(* DEALINGS IN THE SOFTWARE. *)
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(* *)
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(*****************************************************************************)
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(** {1 Entity Accessor Signatures} ****************************************)
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(** The generic signature of a single data accessor (a single value
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bound to a specific key in the hierarchical (key x value)
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database). *)
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module type Single_data_storage = sig
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type t
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type context = t
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(** The type of the value *)
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type value
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(** Tells if the data is already defined *)
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val mem: context -> bool Lwt.t
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(** Retrieve the value from the storage bucket ; returns a
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{!Storage_error} if the key is not set or if the deserialisation
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fails *)
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val get: context -> value tzresult Lwt.t
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(** Retrieves the value from the storage bucket ; returns [None] if
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the data is not initialized, or {!Storage_helpers.Storage_error}
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if the deserialisation fails *)
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val get_option: context -> value option tzresult Lwt.t
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(** Allocates the storage bucket and initializes it ; returns a
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{!Storage_error Existing_key} if the bucket exists *)
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val init: context -> value -> Raw_context.t tzresult Lwt.t
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(** Updates the content of the bucket ; returns a {!Storage_Error
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Missing_key} if the value does not exists *)
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val set: context -> value -> Raw_context.t tzresult Lwt.t
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(** Allocates the data and initializes it with a value ; just
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updates it if the bucket exists *)
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val init_set: context -> value -> Raw_context.t Lwt.t
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(** When the value is [Some v], allocates the data and initializes
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it with [v] ; just updates it if the bucket exists. When the
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valus is [None], delete the storage bucket when the value ; does
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nothing if the bucket does not exists. *)
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val set_option: context -> value option -> Raw_context.t Lwt.t
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(** Delete the storage bucket ; returns a {!Storage_error
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Missing_key} if the bucket does not exists *)
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val delete: context -> Raw_context.t tzresult Lwt.t
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(** Removes the storage bucket and its contents ; does nothing if
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the bucket does not exists *)
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val remove: context -> Raw_context.t Lwt.t
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end
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(** Variant of {!Single_data_storage} with gas accounting. *)
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module type Single_carbonated_data_storage = sig
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type t
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type context = t
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(** The type of the value *)
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type value
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(** Tells if the data is already defined.
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Consumes [Gas_repr.read_bytes_cost Z.zero]. *)
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val mem: context -> (Raw_context.t * bool) tzresult Lwt.t
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(** Retrieve the value from the storage bucket ; returns a
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{!Storage_error} if the key is not set or if the deserialisation
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fails.
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Consumes [Gas_repr.read_bytes_cost <size of the value>]. *)
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val get: context -> (Raw_context.t * value) tzresult Lwt.t
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(** Retrieves the value from the storage bucket ; returns [None] if
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the data is not initialized, or {!Storage_helpers.Storage_error}
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if the deserialisation fails.
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Consumes [Gas_repr.read_bytes_cost <size of the value>] if present
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or [Gas_repr.read_bytes_cost Z.zero]. *)
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val get_option: context -> (Raw_context.t * value option) tzresult Lwt.t
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(** Allocates the storage bucket and initializes it ; returns a
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{!Storage_error Missing_key} if the bucket exists.
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Consumes [Gas_repr.write_bytes_cost <size of the value>].
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Returns the size. *)
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val init: context -> value -> (Raw_context.t * int) tzresult Lwt.t
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(** Updates the content of the bucket ; returns a {!Storage_Error
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Existing_key} if the value does not exists.
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Consumes [Gas_repr.write_bytes_cost <size of the new value>].
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Returns the difference from the old to the new size. *)
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val set: context -> value -> (Raw_context.t * int) tzresult Lwt.t
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(** Allocates the data and initializes it with a value ; just
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updates it if the bucket exists.
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Consumes [Gas_repr.write_bytes_cost <size of the new value>].
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Returns the difference from the old (maybe 0) to the new size. *)
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val init_set: context -> value -> (Raw_context.t * int) tzresult Lwt.t
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(** When the value is [Some v], allocates the data and initializes
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it with [v] ; just updates it if the bucket exists. When the
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valus is [None], delete the storage bucket when the value ; does
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nothing if the bucket does not exists.
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Consumes the same gas cost as either {!remove} or {!init_set}.
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Returns the difference from the old (maybe 0) to the new size. *)
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val set_option: context -> value option -> (Raw_context.t * int) tzresult Lwt.t
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(** Delete the storage bucket ; returns a {!Storage_error
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Missing_key} if the bucket does not exists.
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Consumes [Gas_repr.write_bytes_cost Z.zero].
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Returns the freed size. *)
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val delete: context -> (Raw_context.t * int) tzresult Lwt.t
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(** Removes the storage bucket and its contents ; does nothing if
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the bucket does not exists.
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Consumes [Gas_repr.write_bytes_cost Z.zero].
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Returns the freed size. *)
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val remove: context -> (Raw_context.t * int) tzresult Lwt.t
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end
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(** Restricted version of {!Indexed_data_storage} w/o iterators. *)
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module type Non_iterable_indexed_data_storage = sig
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type t
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type context = t
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(** An abstract type for keys *)
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type key
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(** The type of values *)
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type value
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(** Tells if a given key is already bound to a storage bucket *)
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val mem: context -> key -> bool Lwt.t
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(** Retrieve a value from the storage bucket at a given key ;
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returns {!Storage_error Missing_key} if the key is not set ;
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returns {!Storage_error Corrupted_data} if the deserialisation
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fails. *)
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val get: context -> key -> value tzresult Lwt.t
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(** Retrieve a value from the storage bucket at a given key ;
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returns [None] if the value is not set ; returns {!Storage_error
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Corrupted_data} if the deserialisation fails. *)
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val get_option: context -> key -> value option tzresult Lwt.t
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(** Updates the content of a bucket ; returns A {!Storage_Error
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Missing_key} if the value does not exists. *)
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val set: context -> key -> value -> Raw_context.t tzresult Lwt.t
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(** Allocates a storage bucket at the given key and initializes it ;
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returns a {!Storage_error Existing_key} if the bucket exists. *)
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val init: context -> key -> value -> Raw_context.t tzresult Lwt.t
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(** Allocates a storage bucket at the given key and initializes it
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with a value ; just updates it if the bucket exists. *)
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val init_set: context -> key -> value -> Raw_context.t Lwt.t
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(** When the value is [Some v], allocates the data and initializes
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it with [v] ; just updates it if the bucket exists. When the
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valus is [None], delete the storage bucket when the value ; does
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nothing if the bucket does not exists. *)
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val set_option: context -> key -> value option -> Raw_context.t Lwt.t
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(** Delete a storage bucket and its contents ; returns a
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{!Storage_error Missing_key} if the bucket does not exists. *)
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val delete: context -> key -> Raw_context.t tzresult Lwt.t
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(** Removes a storage bucket and its contents ; does nothing if the
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bucket does not exists. *)
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val remove: context -> key -> Raw_context.t Lwt.t
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end
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(** Variant of {!Non_iterable_indexed_data_storage} with gas accounting. *)
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module type Non_iterable_indexed_carbonated_data_storage = sig
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type t
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type context = t
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(** An abstract type for keys *)
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type key
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(** The type of values *)
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type value
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(** Tells if a given key is already bound to a storage bucket.
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Consumes [Gas_repr.read_bytes_cost Z.zero]. *)
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val mem: context -> key -> (Raw_context.t * bool) tzresult Lwt.t
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(** Retrieve a value from the storage bucket at a given key ;
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returns {!Storage_error Missing_key} if the key is not set ;
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returns {!Storage_error Corrupted_data} if the deserialisation
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fails.
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Consumes [Gas_repr.read_bytes_cost <size of the value>]. *)
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val get: context -> key -> (Raw_context.t * value) tzresult Lwt.t
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(** Retrieve a value from the storage bucket at a given key ;
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returns [None] if the value is not set ; returns {!Storage_error
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Corrupted_data} if the deserialisation fails.
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Consumes [Gas_repr.read_bytes_cost <size of the value>] if present
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or [Gas_repr.read_bytes_cost Z.zero]. *)
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val get_option: context -> key -> (Raw_context.t * value option) tzresult Lwt.t
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(** Updates the content of a bucket ; returns A {!Storage_Error
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Missing_key} if the value does not exists.
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Consumes serialization cost.
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Consumes [Gas_repr.write_bytes_cost <size of the new value>].
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Returns the difference from the old to the new size. *)
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val set: context -> key -> value -> (Raw_context.t * int) tzresult Lwt.t
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(** Allocates a storage bucket at the given key and initializes it ;
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returns a {!Storage_error Existing_key} if the bucket exists.
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Consumes serialization cost.
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Consumes [Gas_repr.write_bytes_cost <size of the value>].
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Returns the size. *)
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val init: context -> key -> value -> (Raw_context.t * int) tzresult Lwt.t
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(** Allocates a storage bucket at the given key and initializes it
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with a value ; just updates it if the bucket exists.
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Consumes serialization cost.
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Consumes [Gas_repr.write_bytes_cost <size of the new value>].
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Returns the difference from the old (maybe 0) to the new size. *)
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val init_set: context -> key -> value -> (Raw_context.t * int) tzresult Lwt.t
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(** When the value is [Some v], allocates the data and initializes
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it with [v] ; just updates it if the bucket exists. When the
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valus is [None], delete the storage bucket when the value ; does
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nothing if the bucket does not exists.
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Consumes serialization cost.
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Consumes the same gas cost as either {!remove} or {!init_set}.
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Returns the difference from the old (maybe 0) to the new size. *)
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val set_option: context -> key -> value option -> (Raw_context.t * int) tzresult Lwt.t
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(** Delete a storage bucket and its contents ; returns a
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{!Storage_error Missing_key} if the bucket does not exists.
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Consumes [Gas_repr.write_bytes_cost Z.zero].
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Returns the freed size. *)
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val delete: context -> key -> (Raw_context.t * int) tzresult Lwt.t
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(** Removes a storage bucket and its contents ; does nothing if the
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bucket does not exists.
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Consumes [Gas_repr.write_bytes_cost Z.zero].
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Returns the freed size. *)
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val remove: context -> key -> (Raw_context.t * int) tzresult Lwt.t
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end
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(** The generic signature of indexed data accessors (a set of values
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of the same type indexed by keys of the same form in the
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hierarchical (key x value) database). *)
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module type Indexed_data_storage = sig
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include Non_iterable_indexed_data_storage
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(** Empties all the keys and associated data. *)
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val clear: context -> Raw_context.t Lwt.t
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(** Lists all the keys. *)
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val keys: context -> key list Lwt.t
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(** Lists all the keys and associated data. *)
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val bindings: context -> (key * value) list Lwt.t
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(** Iterates over all the keys and associated data. *)
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val fold:
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context -> init:'a -> f:(key -> value -> 'a -> 'a Lwt.t) -> 'a Lwt.t
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(** Iterate over all the keys. *)
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val fold_keys:
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context -> init:'a -> f:(key -> 'a -> 'a Lwt.t) -> 'a Lwt.t
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end
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module type Indexed_data_snapshotable_storage = sig
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type snapshot
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type key
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include Indexed_data_storage with type key := key
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module Snapshot : Indexed_data_storage
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with type key = (snapshot * key)
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and type value = value
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and type t = t
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val snapshot_exists : context -> snapshot -> bool Lwt.t
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val snapshot : context -> snapshot -> Raw_context.t tzresult Lwt.t
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val delete_snapshot : context -> snapshot -> Raw_context.t Lwt.t
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end
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(** The generic signature of a data set accessor (a set of values
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bound to a specific key prefix in the hierarchical (key x value)
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database). *)
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module type Data_set_storage = sig
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type t
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type context = t
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(** The type of elements. *)
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type elt
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(** Tells if a elt is a member of the set *)
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val mem: context -> elt -> bool Lwt.t
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(** Adds a elt is a member of the set *)
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val add: context -> elt -> Raw_context.t Lwt.t
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(** Removes a elt of the set ; does nothing if not a member *)
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val del: context -> elt -> Raw_context.t Lwt.t
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(** Adds/Removes a elt of the set *)
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val set: context -> elt -> bool -> Raw_context.t Lwt.t
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(** Returns the elements of the set, deserialized in a list in no
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particular order. *)
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val elements: context -> elt list Lwt.t
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(** Iterates over the elements of the set. *)
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val fold: context -> init:'a -> f:(elt -> 'a -> 'a Lwt.t) -> 'a Lwt.t
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(** Removes all elements in the set *)
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val clear: context -> Raw_context.t Lwt.t
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end
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module type NAME = sig
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val name: Raw_context.key
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end
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module type VALUE = sig
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type t
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val encoding: t Data_encoding.t
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end
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module type Indexed_raw_context = sig
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type t
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type context = t
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type key
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type 'a ipath
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val clear: context -> Raw_context.t Lwt.t
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val fold_keys:
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context -> init:'a -> f:(key -> 'a -> 'a Lwt.t) -> 'a Lwt.t
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val keys: context -> key list Lwt.t
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val resolve: context -> string list -> key list Lwt.t
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module Make_set (N : NAME)
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: Data_set_storage with type t = t
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and type elt = key
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module Make_map (N : NAME) (V : VALUE)
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: Indexed_data_storage with type t = t
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and type key = key
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and type value = V.t
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module Make_carbonated_map (N : NAME) (V : VALUE)
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: Non_iterable_indexed_carbonated_data_storage with type t = t
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and type key = key
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and type value = V.t
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module Raw_context : Raw_context.T with type t = t ipath
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end
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