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`)
60 lines
2.0 KiB
Standard ML
60 lines
2.0 KiB
Standard ML
(**************************************************************************)
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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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type shell_header = {
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branch: Block_hash.t ;
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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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(fun { branch } -> branch)
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(fun branch -> { branch })
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(obj1 (req "branch" Block_hash.encoding))
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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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let pp fmt op =
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Format.pp_print_string fmt @@
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Data_encoding_ezjsonm.to_string (Data_encoding.Json.construct encoding op)
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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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Block_hash.compare o1.shell.branch o1.shell.branch >> 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 (=) = equal
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let (<>) x y = compare x y <> 0
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let (<) x y = compare x y < 0
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let (<=) x y = compare x y <= 0
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let (>=) x y = compare x y >= 0
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let (>) x y = compare x y > 0
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let min x y = if x <= y then x else y
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let max x y = if x <= y then y else x
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let to_bytes v = Data_encoding.Binary.to_bytes encoding v
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let of_bytes b = Data_encoding.Binary.of_bytes encoding b
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let of_bytes_exn b = Data_encoding.Binary.of_bytes_exn encoding b
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let hash op = Operation_hash.hash_bytes [to_bytes op]
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let hash_raw bytes = Operation_hash.hash_bytes [bytes]
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