2016-09-08 21:13:10 +04:00
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(**************************************************************************)
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(* *)
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(* Copyright (c) 2014 - 2016. *)
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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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2017-02-24 20:17:53 +04:00
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open Store_sigs
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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type t = Raw_store.t
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type global_store = t
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let init = Raw_store.init
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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(**************************************************************************
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* Net store under "net/"
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**************************************************************************)
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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module Net_id = struct
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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module T = struct
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type t = Id of Block_hash.t
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type net_id = t
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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let encoding =
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let open Data_encoding in
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conv
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(fun (Id net_id) -> net_id)
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(fun net_id -> Id net_id)
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Block_hash.encoding
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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let pp ppf (Id id) = Block_hash.pp_short ppf id
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let compare (Id id1) (Id id2) = Block_hash.compare id1 id2
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let equal (Id id1) (Id id2) = Block_hash.equal id1 id2
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let hash (Id id) =
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let raw_hash = Block_hash.to_string id in
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let int64_hash = EndianString.BigEndian.get_int64 raw_hash 0 in
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Int64.to_int int64_hash
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let to_path (Id id) = Block_hash.to_path id
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let of_path p =
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match Block_hash.of_path p with
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| None -> None
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| Some id -> Some (Id id)
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let path_length = Block_hash.path_length
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let of_bytes_exn data = Id (Block_hash.of_bytes_exn data)
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let to_bytes (Id id) = Block_hash.to_bytes id
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end
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include T
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module Set = Set.Make(T)
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module Map = Map.Make(T)
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module Table = Hashtbl.Make(T)
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2016-09-08 21:13:10 +04:00
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end
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2017-02-24 20:17:53 +04:00
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module Net = struct
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type store = global_store * Net_id.t
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let get s id = (s, id)
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module Indexed_store =
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Store_helpers.Make_indexed_substore
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(Store_helpers.Make_substore(Raw_store)(struct let name = ["net"] end))
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(Net_id)
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let destroy = Indexed_store.remove_all
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let list t =
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Indexed_store.fold_indexes t ~init:[]
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~f:(fun h acc -> Lwt.return (h :: acc))
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module Genesis_time =
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Store_helpers.Make_single_store
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(Indexed_store.Store)
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(struct let name = ["genesis" ; "time"] end)
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(Store_helpers.Make_value(Time))
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module Genesis_protocol =
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Store_helpers.Make_single_store
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(Indexed_store.Store)
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(struct let name = ["genesis" ; "protocol"] end)
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(Store_helpers.Make_value(Protocol_hash))
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module Genesis_test_protocol =
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Store_helpers.Make_single_store
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(Indexed_store.Store)
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(struct let name = ["genesis" ; "test_protocol"] end)
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(Store_helpers.Make_value(Protocol_hash))
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module Expiration =
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Store_helpers.Make_single_store
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(Indexed_store.Store)
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(struct let name = ["expiration"] end)
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(Store_helpers.Make_value(Time))
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module Forked_network_ttl =
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Store_helpers.Make_single_store
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(Indexed_store.Store)
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(struct let name = ["forked_network_ttl"] end)
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(Store_helpers.Make_value(struct
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type t = Int64.t
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let encoding = Data_encoding.int64
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end))
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2016-09-08 21:13:10 +04:00
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end
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2017-02-24 20:17:53 +04:00
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(**************************************************************************
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* Generic store for "tracked" data: discovery_time, invalidity,
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* incoming peers,... (for operations, block_headers, and protocols).
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**************************************************************************)
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module type DATA_STORE = sig
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type store
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2016-09-08 21:13:10 +04:00
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type key
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2017-02-24 20:17:53 +04:00
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type key_set
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2016-09-08 21:13:10 +04:00
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type value
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2016-10-21 16:01:20 +04:00
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2017-02-24 20:17:53 +04:00
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val encoding: value Data_encoding.t
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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val compare: value -> value -> int
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val equal: value -> value -> bool
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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val hash: value -> key
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val hash_raw: MBytes.t -> key
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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module Discovery_time : MAP_STORE
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with type t := store
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and type key := key
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and type value := Time.t
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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module Contents : SINGLE_STORE
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with type t = store * key
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and type value := value
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2016-10-21 16:01:20 +04:00
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2017-02-24 20:17:53 +04:00
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module RawContents : SINGLE_STORE
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with type t = store * key
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and type value := MBytes.t
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module Validation_time : SINGLE_STORE
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with type t = store * key
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and type value := Time.t
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module Errors : MAP_STORE
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with type t := store
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and type key := key
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and type value = error list
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module Pending : BUFFERED_SET_STORE
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with type t = store
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and type elt := key
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and type Set.t = key_set
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2016-09-08 21:13:10 +04:00
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end
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2017-02-24 20:17:53 +04:00
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module Errors_value =
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Store_helpers.Make_value(struct
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type t = error list
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let encoding = (Data_encoding.list (Error_monad.error_encoding ()))
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end)
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2016-09-08 21:13:10 +04:00
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module Raw_value = struct
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type t = MBytes.t
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2017-02-24 20:17:53 +04:00
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let of_bytes b = ok b
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2016-09-08 21:13:10 +04:00
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let to_bytes b = b
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end
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2017-02-24 20:17:53 +04:00
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module Make_data_store
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(S : STORE) (I : INDEX) (V : VALUE)
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(Set : Set.S with type elt = I.t) = struct
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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type key = I.t
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type value = V.t
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type key_set = Set.t
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let of_bytes = V.of_bytes
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let to_bytes = V.to_bytes
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module Indexed_store =
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Store_helpers.Make_indexed_substore
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(Store_helpers.Make_substore (S) (struct let name = ["data"] end))
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(I)
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module Discovery_time =
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Indexed_store.Make_map
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(struct let name = ["discovery_time"] end)
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(Store_helpers.Make_value(Time))
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module Contents =
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Store_helpers.Make_single_store
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(Indexed_store.Store)
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(struct let name = ["contents"] end)
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(V)
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module RawContents =
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Store_helpers.Make_single_store
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(Indexed_store.Store)
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(struct let name = ["contents"] end)
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(Raw_value)
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module Errors =
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Store_helpers.Make_map
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(Store_helpers.Make_substore (S) (struct let name = ["invalids"] end))
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(I)
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(Errors_value)
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module Pending =
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Store_helpers.Make_buffered_set
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(Store_helpers.Make_substore (S) (struct let name = ["pending"] end))
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(I)
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(Set)
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module Validation_time =
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Store_helpers.Make_single_store
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(Indexed_store.Store)
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(struct let name = ["validation_time"] end)
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(Store_helpers.Make_value(Time))
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end
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(**************************************************************************
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* Operation store under "net/<id>/operations/"
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**************************************************************************)
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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module Operation = struct
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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type shell_header = {
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net_id: Net_id.t ;
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}
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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let shell_header_encoding =
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let open Data_encoding in
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conv
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(fun { net_id } -> net_id)
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(fun net_id -> { net_id })
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(obj1 (req "net_id" Net_id.encoding))
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module Encoding = struct
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type t = {
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shell: shell_header ;
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proto: MBytes.t ;
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}
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let encoding =
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let open Data_encoding in
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conv
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(fun { shell ; proto } -> (shell, proto))
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(fun (shell, proto) -> { shell ; proto })
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(merge_objs
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shell_header_encoding
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(obj1 (req "data" Variable.bytes)))
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end
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module Value = Store_helpers.Make_value(Encoding)
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include Encoding
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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let compare o1 o2 =
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let (>>) x y = if x = 0 then y () else x in
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Net_id.compare o1.shell.net_id o1.shell.net_id >> fun () ->
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MBytes.compare o1.proto o2.proto
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let equal b1 b2 = compare b1 b2 = 0
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let hash op = Operation_hash.hash_bytes [Value.to_bytes op]
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let hash_raw bytes = Operation_hash.hash_bytes [bytes]
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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type store = Net.store
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let get x = x
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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include
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Make_data_store
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(Store_helpers.Make_substore
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(Net.Indexed_store.Store)
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(struct let name = ["operations"] end))
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(Operation_hash)
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(Value)
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(Operation_hash.Set)
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2016-09-08 21:13:10 +04:00
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end
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2017-02-24 20:17:53 +04:00
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(**************************************************************************
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* Block_header store under "net/<id>/blocks/"
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**************************************************************************)
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module Block_header = struct
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type shell_header = {
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net_id: Net_id.t ;
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predecessor: Block_hash.t ;
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timestamp: Time.t ;
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2017-03-30 15:16:21 +04:00
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operations: Operation_list_list_hash.t ;
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2017-02-24 20:17:53 +04:00
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fitness: MBytes.t list ;
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}
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let shell_header_encoding =
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let open Data_encoding in
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conv
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2017-03-30 15:16:21 +04:00
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(fun { net_id ; predecessor ; timestamp ; operations ; fitness } ->
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(net_id, predecessor, timestamp, operations, fitness))
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(fun (net_id, predecessor, timestamp, operations, fitness) ->
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{ net_id ; predecessor ; timestamp ; operations ; fitness })
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2017-02-24 20:17:53 +04:00
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(obj5
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(req "net_id" Net_id.encoding)
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(req "predecessor" Block_hash.encoding)
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(req "timestamp" Time.encoding)
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2017-03-30 15:16:21 +04:00
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(req "operations" Operation_list_list_hash.encoding)
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(req "fitness" Fitness.encoding))
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2017-02-24 20:17:53 +04:00
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module Encoding = struct
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type t = {
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shell: shell_header ;
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proto: MBytes.t ;
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}
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let encoding =
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let open Data_encoding in
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conv
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(fun { shell ; proto } -> (shell, proto))
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(fun (shell, proto) -> { shell ; proto })
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(merge_objs
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shell_header_encoding
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(obj1 (req "data" Variable.bytes)))
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end
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module Value = Store_helpers.Make_value(Encoding)
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include Encoding
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2016-09-08 21:13:10 +04:00
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let compare b1 b2 =
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let (>>) x y = if x = 0 then y () else x in
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let rec list compare xs ys =
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match xs, ys with
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| [], [] -> 0
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| _ :: _, [] -> -1
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| [], _ :: _ -> 1
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| x :: xs, y :: ys ->
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compare x y >> fun () -> list compare xs ys in
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Block_hash.compare b1.shell.predecessor b2.shell.predecessor >> fun () ->
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compare b1.proto b2.proto >> fun () ->
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2017-03-30 15:16:21 +04:00
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Operation_list_list_hash.compare
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2016-09-08 21:13:10 +04:00
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b1.shell.operations b2.shell.operations >> fun () ->
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Time.compare b1.shell.timestamp b2.shell.timestamp >> fun () ->
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list compare b1.shell.fitness b2.shell.fitness
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let equal b1 b2 = compare b1 b2 = 0
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2017-02-24 20:17:53 +04:00
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let hash block = Block_hash.hash_bytes [Value.to_bytes block]
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let hash_raw bytes = Block_hash.hash_bytes [bytes]
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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type store = Net.store
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let get x = x
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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include Make_data_store
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(Store_helpers.Make_substore
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(Net.Indexed_store.Store)
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(struct let name = ["blocks"] end))
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(Block_hash)
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(Value)
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(Block_hash.Set)
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2016-09-08 21:13:10 +04:00
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2017-03-30 15:16:21 +04:00
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module Operation_list_count =
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Store_helpers.Make_single_store
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(Indexed_store.Store)
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(struct let name = ["operation_list_count"] end)
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(Store_helpers.Make_value(struct
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type t = int
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let encoding = Data_encoding.int8
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end))
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module Operations_index =
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Store_helpers.Make_indexed_substore
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(Store_helpers.Make_substore
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(Indexed_store.Store)
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(struct let name = ["operations"] end))
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(Store_helpers.Integer_index)
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module Operation_list =
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Operations_index.Make_map
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(struct let name = ["list"] end)
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(Store_helpers.Make_value(struct
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type t = Operation_hash.t list
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let encoding = Data_encoding.list Operation_hash.encoding
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end))
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module Operation_list_path =
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Operations_index.Make_map
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(struct let name = ["path"] end)
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(Store_helpers.Make_value(struct
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type t = Operation_list_list_hash.path
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let encoding = Operation_list_list_hash.path_encoding
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end))
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2016-09-08 21:13:10 +04:00
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end
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2017-02-24 20:17:53 +04:00
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(**************************************************************************
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* Blockchain data
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**************************************************************************)
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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module Chain = struct
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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type store = Net.store
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let get s = s
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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module Known_heads =
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Store_helpers.Make_buffered_set
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(Store_helpers.Make_substore
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(Net.Indexed_store.Store)
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(struct let name = ["known_heads"] end))
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(Block_hash)
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(Block_hash.Set)
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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module Current_head =
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Store_helpers.Make_single_store
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(Net.Indexed_store.Store)
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(struct let name = ["current_head"] end)
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(Store_helpers.Make_value(Block_hash))
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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module Valid_successors =
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Store_helpers.Make_buffered_set
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(Store_helpers.Make_substore
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(Block_header.Indexed_store.Store)
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(struct let name = ["known_successors" ; "valid" ] end))
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(Block_hash)
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(Block_hash.Set)
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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module Invalid_successors =
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Store_helpers.Make_buffered_set
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(Store_helpers.Make_substore
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(Block_header.Indexed_store.Store)
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(struct let name = ["known_successors" ; "invalid"] end))
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(Block_hash)
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(Block_hash.Set)
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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module Successor_in_chain =
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Store_helpers.Make_single_store
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(Block_header.Indexed_store.Store)
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(struct let name = ["successor_in_chain"] end)
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(Store_helpers.Make_value(Block_hash))
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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module In_chain_insertion_time =
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Store_helpers.Make_single_store
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(Block_header.Indexed_store.Store)
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(struct let name = ["in_chain_insertion_time"] end)
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(Store_helpers.Make_value(Time))
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2016-10-21 16:01:20 +04:00
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end
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2017-02-24 20:17:53 +04:00
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(**************************************************************************
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* Protocol store under "protocols/"
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**************************************************************************)
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2016-10-21 16:01:20 +04:00
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module Protocol = struct
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2017-02-24 20:17:53 +04:00
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include Tezos_compiler.Protocol
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let hash_raw bytes = Protocol_hash.hash_bytes [bytes]
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2016-09-08 21:13:10 +04:00
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2017-02-24 20:17:53 +04:00
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type store = global_store
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let get x = x
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2016-09-08 21:13:10 +04:00
|
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2017-02-24 20:17:53 +04:00
|
|
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include Make_data_store
|
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(Store_helpers.Make_substore
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(Raw_store)
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(struct let name = ["protocols"] end))
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(Protocol_hash)
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(Store_helpers.Make_value(Tezos_compiler.Protocol))
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(Protocol_hash.Set)
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2016-09-08 21:13:10 +04:00
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end
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2017-02-24 20:17:53 +04:00
|
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