package octez-proto-libs
Octez protocol libraries
Install
Dune Dependency
Authors
Maintainers
Sources
octez-19.1.tar.gz
sha256=55ea1fb8bb3273a7fc270ca8f650d45c56449665619482aad9bc12f3ea736b7e
sha512=fec850fc2d17d7490bbabd5147d62aad13b3aaed8774270f8a38ab419670ed03e0fd30cf8642a97984eca5c2446726fe590ad99c015f7ec50919dc7652f25053
doc/src/octez-proto-libs.protocol-environment/environment_context_intf.ml.html
Source file environment_context_intf.ml
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(*****************************************************************************) (* *) (* Open Source License *) (* Copyright (c) 2018 Dynamic Ledger Solutions, Inc. <contact@tezos.com> *) (* Copyright (c) 2021 Tarides <contact@tarides.com> *) (* Copyright (c) 2021 Nomadic Labs, <contact@nomadic-labs.com> *) (* *) (* Permission is hereby granted, free of charge, to any person obtaining a *) (* copy of this software and associated documentation files (the "Software"),*) (* to deal in the Software without restriction, including without limitation *) (* the rights to use, copy, modify, merge, publish, distribute, sublicense, *) (* and/or sell copies of the Software, and to permit persons to whom the *) (* Software is furnished to do so, subject to the following conditions: *) (* *) (* The above copyright notice and this permission notice shall be included *) (* in all copies or substantial portions of the Software. *) (* *) (* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR*) (* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, *) (* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL *) (* THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER*) (* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING *) (* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER *) (* DEALINGS IN THE SOFTWARE. *) (* *) (*****************************************************************************) module Kind = struct type t = [`Value | `Tree] end module type VIEW = sig (** @inline *) include Tezos_context_sigs.Context.VIEW end module type TREE = sig (** @inline *) include Tezos_context_sigs.Context.TREE end module type PROOF = sig (** @inline *) include Tezos_context_sigs.Context.PROOF end module type PROOF_ENCODING = sig (** @inline *) include Tezos_context_sigs.Context.PROOF_ENCODING end module type HASH_VERSION = sig (** @inline *) include Tezos_context_sigs.Context.HASH_VERSION end (* Copy of sigs/v3/context.mli:CACHE *) module type CACHE = sig type t type size type index type identifier type key type value = .. val key_of_identifier : cache_index:index -> identifier -> key val identifier_of_key : key -> identifier val pp : Format.formatter -> t -> unit val find : t -> key -> value option Lwt.t val set_cache_layout : t -> size list -> t Lwt.t val update : t -> key -> (value * size) option -> t val sync : t -> cache_nonce:Bytes.t -> t Lwt.t val clear : t -> t val list_keys : t -> cache_index:index -> (key * size) list option val key_rank : t -> key -> int option val future_cache_expectation : t -> time_in_blocks:int -> t val cache_size : t -> cache_index:index -> size option val cache_size_limit : t -> cache_index:index -> size option end module type CORE = sig type t val set_protocol : t -> Tezos_crypto.Hashed.Protocol_hash.t -> t Lwt.t val get_protocol : t -> Tezos_crypto.Hashed.Protocol_hash.t Lwt.t val fork_test_chain : t -> protocol:Tezos_crypto.Hashed.Protocol_hash.t -> expiration:Time.Protocol.t -> t Lwt.t val set_hash_version : t -> Tezos_crypto.Hashed.Context_hash.Version.t -> t tzresult Lwt.t val get_hash_version : t -> Tezos_crypto.Hashed.Context_hash.Version.t end module type TREE_CORE = sig type t type tree type value val empty : t -> tree val is_empty : tree -> bool val kind : tree -> Kind.t val to_value : tree -> value option Lwt.t val of_value : t -> value -> tree Lwt.t val hash : tree -> Tezos_crypto.Hashed.Context_hash.t val equal : tree -> tree -> bool val clear : ?depth:int -> tree -> unit end module V2 = struct type depth = [`Eq of int | `Le of int | `Lt of int | `Ge of int | `Gt of int] module type VIEW = sig type t type key type value type tree val mem : t -> key -> bool Lwt.t val mem_tree : t -> key -> bool Lwt.t val find : t -> key -> value option Lwt.t val find_tree : t -> key -> tree option Lwt.t val list : t -> ?offset:int -> ?length:int -> key -> (string * tree) trace Lwt.t val add : t -> key -> value -> t Lwt.t val add_tree : t -> key -> tree -> t Lwt.t val remove : t -> key -> t Lwt.t val fold : ?depth:depth -> t -> key -> init:'a -> f:(key -> tree -> 'a -> 'a Lwt.t) -> 'a Lwt.t end module Kind = Kind module type TREE = sig type t type tree include VIEW with type t := tree and type tree := tree include TREE_CORE with type t := t and type tree := tree and type value := value end module type S = sig include VIEW with type key = string list and type value = bytes module Tree : sig include TREE with type t := t and type key := key and type value := value and type tree := tree val pp : Format.formatter -> tree -> unit end include CORE with type t := t end end module V3 = V2 module V4 = struct type depth = V3.depth module type VIEW = sig include V3.VIEW val fold : ?depth:depth -> t -> key -> order:[`Sorted | `Undefined] -> init:'a -> f:(key -> tree -> 'a -> 'a Lwt.t) -> 'a Lwt.t end module Kind = Kind module type TREE = sig type t type tree include VIEW with type t := tree and type tree := tree include TREE_CORE with type t := t and type tree := tree and type value := value end module type S = sig include VIEW with type key = string list and type value = bytes module Tree : sig include TREE with type t := t and type key := key and type value := value and type tree := tree val pp : Format.formatter -> tree -> unit end include CORE with type t := t end module type CACHE = CACHE end module V5 = struct type depth = V4.depth type config = Tezos_context_sigs.Config.t let equal_config = Tezos_context_sigs.Config.equal module type VIEW = VIEW module Kind = Kind module type TREE = TREE module type S = sig val equal_config : config -> config -> bool include VIEW with type key = string list and type value = bytes module Tree : sig include TREE with type t := t and type key := key and type value := value and type tree := tree val pp : Format.formatter -> tree -> unit end include CORE with type t := t module Proof : PROOF type tree_proof := Proof.tree Proof.t type stream_proof := Proof.stream Proof.t type ('proof, 'result) verifier := 'proof -> (tree -> (tree * 'result) Lwt.t) -> ( tree * 'result, [ `Proof_mismatch of string | `Stream_too_long of string | `Stream_too_short of string ] ) result Lwt.t val verify_tree_proof : (tree_proof, 'a) verifier val verify_stream_proof : (stream_proof, 'a) verifier end module type CACHE = CACHE end module V6 = V5 module V7 = V6 module V8 = V7 module V9 = V8 module V10 = V9 module V11 = V10 module type S = V7.S module type Sigs = sig module V2 = V2 module V3 = V3 module V4 = V4 module V5 = V5 module V6 = V6 module V7 = V7 module V8 = V8 module V9 = V9 module V10 = V10 module V11 = V11 module type VIEW = VIEW module type TREE = TREE module type S = S module type HASH_VERSION = HASH_VERSION module type CACHE = CACHE end
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