package tezos-context
Tezos: on-disk context abstraction for `tezos-node`
Install
Dune Dependency
Authors
Maintainers
Sources
tezos-v12.3.tar.bz2
sha256=296bb5674bc6050afe6330326fbdd0dfc2255d414bfd6b79cc7666ac6b39316d
sha512=c061cd300a9410300851158d77bf8e56ca3c568b0b1161b38305e5b2efdcd9c746d391f832fdb2826f9a1d6babce10a9b764a4b04f5df42699f7314b9863123a
doc/src/tezos-context.memory/context.ml.html
Source file context.ml
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(*****************************************************************************) (* *) (* Open Source License *) (* Copyright (c) 2018-2021 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. *) (* *) (*****************************************************************************) open Tezos_context_encoding.Context module Store = Irmin_pack_mem.Make (Node) (Commit) (Conf) (Metadata) (Contents) (Path) (Branch) (Hash) type index = Store.Repo.t type context = {repo : index; parents : Store.Commit.t list; tree : Store.tree} type t = context type tree = Store.tree type key = string list type value = bytes module Tree = Tezos_context_helpers.Context.Make_tree (Store) include Tree let index {repo; _} = repo let exists index key = Store.Commit.of_hash index (Hash.of_context_hash key) >|= function | None -> false | Some _ -> true let checkout index key = Store.Commit.of_hash index (Hash.of_context_hash key) >>= function | None -> Lwt.return_none | Some commit -> let tree = Store.Commit.tree commit in let ctxt = {repo = index; tree; parents = [commit]} in Lwt.return_some ctxt let checkout_exn index key = checkout index key >>= function | None -> Lwt.fail Not_found | Some p -> Lwt.return p (* unshallow possible 1-st level objects from previous partial checkouts ; might be better to pass directly the list of shallow objects. *) let unshallow context = Store.Tree.list context.tree [] >>= fun children -> Store.Private.Repo.batch context.repo (fun x y _ -> List.iter_s (fun (s, k) -> match Store.Tree.destruct k with | `Contents _ -> Lwt.return () | `Node _ -> Store.Tree.get_tree context.tree [s] >>= fun tree -> Store.save_tree ~clear:true context.repo x y tree >|= fun _ -> ()) children) let raw_commit ~time ?(message = "") context = let info = Irmin.Info.v ~date:(Time.Protocol.to_seconds time) ~author:"Tezos" message in let parents = List.map Store.Commit.hash context.parents in unshallow context >>= fun () -> Store.Commit.v context.repo ~info ~parents context.tree >|= fun h -> Store.Tree.clear context.tree ; h let hash ~time ?(message = "") context = let info = Irmin.Info.v ~date:(Time.Protocol.to_seconds time) ~author:"Tezos" message in let parents = List.map (fun c -> Store.Commit.hash c) context.parents in let node = Store.Tree.hash context.tree in let commit = Store.Private.Commit.Val.v ~parents ~node ~info in let x = Store.Private.Commit.Key.hash commit in Hash.to_context_hash x let commit ~time ?message context = raw_commit ~time ?message context >|= fun commit -> Hash.to_context_hash (Store.Commit.hash commit) (*-- Generic Store Primitives ------------------------------------------------*) let data_key key = "data" :: key let mem ctxt key = Tree.mem ctxt.tree (data_key key) let mem_tree ctxt key = Tree.mem_tree ctxt.tree (data_key key) let list ctxt ?offset ?length key = Tree.list ctxt.tree ?offset ?length (data_key key) let find ctxt key = Tree.find ctxt.tree (data_key key) let raw_add ctxt key data = Tree.add ctxt.tree key data >|= fun tree -> {ctxt with tree} let add ctxt key data = raw_add ctxt (data_key key) data let raw_remove ctxt k = Tree.remove ctxt.tree k >|= fun tree -> {ctxt with tree} let remove ctxt key = raw_remove ctxt (data_key key) let find_tree ctxt key = Tree.find_tree ctxt.tree (data_key key) let add_tree ctxt key tree = Tree.add_tree ctxt.tree (data_key key) tree >|= fun tree -> {ctxt with tree} let fold ?depth ctxt key ~order ~init ~f = Tree.fold ?depth ctxt.tree (data_key key) ~order ~init ~f let current_protocol_key = ["protocol"] let current_predecessor_block_metadata_hash_key = ["predecessor_block_metadata_hash"] let current_predecessor_ops_metadata_hash_key = ["predecessor_ops_metadata_hash"] let get_protocol ctxt = Tree.find ctxt.tree current_protocol_key >>= function | None -> assert false | Some data -> Lwt.return (Protocol_hash.of_bytes_exn data) let add_protocol ctxt key = let key = Protocol_hash.to_bytes key in raw_add ctxt current_protocol_key key let get_hash_version _c = Context_hash.Version.of_int 0 let set_hash_version c v = if Context_hash.Version.(of_int 0 = v) then return c else fail (Tezos_context_helpers.Context.Unsupported_context_hash_version v) let add_predecessor_block_metadata_hash v hash = let data = Data_encoding.Binary.to_bytes_exn Block_metadata_hash.encoding hash in raw_add v current_predecessor_block_metadata_hash_key data let add_predecessor_ops_metadata_hash v hash = let data = Data_encoding.Binary.to_bytes_exn Operation_metadata_list_list_hash.encoding hash in raw_add v current_predecessor_ops_metadata_hash_key data let create () = let cfg = Irmin_pack.config "/tmp" in let promise = Store.Repo.v cfg >>= fun repo -> Lwt.return {repo; parents = []; tree = Store.Tree.empty} in match Lwt.state promise with | Lwt.Return result -> result | Lwt.Fail exn -> raise exn | Lwt.Sleep -> (* The in-memory context should never block *) assert false let empty = create () let concrete_encoding : Store.Tree.concrete Data_encoding.t = let open Data_encoding in mu "memory_context" (fun encoding -> let map_encoding = list (tup2 string encoding) in union [ case ~title:"tree" (Tag 0) map_encoding (function `Tree map -> Some map | `Contents _ -> None) (fun map -> `Tree map); case ~title:"value" (Tag 1) bytes (function `Contents (v, _) -> Some v | `Tree _ -> None) (fun v -> `Contents (v, ())); ]) let encoding : t Data_encoding.t = Data_encoding.conv (fun t -> let tree = Store.Tree.to_concrete t.tree in let tree = (* This is safe as store.Tree will never call any blocking functions. *) match Lwt.state tree with Return t -> t | _ -> assert false in tree) (fun t -> let tree = Store.Tree.of_concrete t in let ctxt = create () in {ctxt with tree}) concrete_encoding let current_test_chain_key = ["test_chain"] let get_test_chain v = Tree.find v.tree current_test_chain_key >>= function | None -> Lwt.fail (Failure "Unexpected error (Context.get_test_chain)") | Some data -> ( match Data_encoding.Binary.of_bytes Test_chain_status.encoding data with | Error re -> Format.kasprintf (fun s -> Lwt.fail (Failure s)) "Error in Context.get_test_chain: %a" Data_encoding.Binary.pp_read_error re | Ok r -> Lwt.return r) let add_test_chain v id = let id = Data_encoding.Binary.to_bytes_exn Test_chain_status.encoding id in raw_add v current_test_chain_key id
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