package tezos-store
Tezos: store for `octez-node`
Install
Dune Dependency
Authors
Maintainers
Sources
tezos-17.3.tar.gz
sha256=7062cd57addd452852598a2214ade393130efa087b99068d53713bdf912b3680
sha512=08e4091144a03ce3c107fb91a66501bd8b65ca3278917c455a2eaac6df3e108ade63f6ab8340a4bb152d60f404326e464d0ec95d26cafe8e82f870465d24a5fc
doc/src/tezos-store.shared/block_repr.ml.html
Source file block_repr.ml
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(*****************************************************************************) (* *) (* Open Source License *) (* Copyright (c) 2020-2021 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 Store_errors type contents = { header : Block_header.t; operations : Operation.t list list; block_metadata_hash : Block_metadata_hash.t option; operations_metadata_hashes : Operation_metadata_hash.t list list option; } type metadata = { message : string option; max_operations_ttl : int; last_allowed_fork_level : Int32.t; block_metadata : Bytes.t; operations_metadata : Block_validation.operation_metadata list list; } type legacy_metadata = { legacy_message : string option; legacy_max_operations_ttl : int; legacy_last_allowed_fork_level : Int32.t; legacy_block_metadata : Bytes.t; legacy_operations_metadata : Bytes.t list list; } type legacy_block = { legacy_hash : Block_hash.t; legacy_contents : contents; mutable legacy_metadata : legacy_metadata option; (* allows updating metadata field when loading cemented metadata *) } type block = { hash : Block_hash.t; contents : contents; mutable metadata : metadata option; (* allows updating metadata field when loading cemented metadata *) } type t = block let create_genesis_block ~genesis context = let shell : Block_header.shell_header = { level = 0l; proto_level = 0; predecessor = genesis.Genesis.block; (* genesis' predecessor is genesis *) timestamp = genesis.Genesis.time; fitness = []; validation_passes = 0; operations_hash = Operation_list_list_hash.empty; context; } in let header : Block_header.t = {shell; protocol_data = Bytes.create 0} in let contents = { header; operations = []; block_metadata_hash = None; operations_metadata_hashes = None; } in let metadata = Some { message = Some "Genesis"; max_operations_ttl = 0; last_allowed_fork_level = 0l; block_metadata = Bytes.create 0; operations_metadata = []; } in {hash = genesis.block; contents; metadata} let contents_encoding = let open Data_encoding in def "store.block_repr.contents" @@ conv (fun { header; operations; block_metadata_hash; operations_metadata_hashes; } -> (header, operations, block_metadata_hash, operations_metadata_hashes)) (fun (header, operations, block_metadata_hash, operations_metadata_hashes) -> {header; operations; block_metadata_hash; operations_metadata_hashes}) (obj4 (req "header" (dynamic_size Block_header.encoding)) (req "operations" (list (list (dynamic_size Operation.encoding)))) (opt "block_metadata_hash" Block_metadata_hash.encoding) (opt "operations_metadata_hashes" (list (list Operation_metadata_hash.encoding)))) let metadata_encoding : metadata Data_encoding.t = let open Data_encoding in def "store.block_repr.metadata" @@ conv (fun { message; max_operations_ttl; last_allowed_fork_level; block_metadata; operations_metadata; } -> ( message, max_operations_ttl, last_allowed_fork_level, block_metadata, operations_metadata )) (fun ( message, max_operations_ttl, last_allowed_fork_level, block_metadata, operations_metadata ) -> { message; max_operations_ttl; last_allowed_fork_level; block_metadata; operations_metadata; }) (obj5 (opt "message" string) (req "max_operations_ttl" uint16) (req "last_allowed_fork_level" int32) (req "block_metadata" bytes) (req "operations_metadata" (list (list Block_validation.operation_metadata_encoding)))) let legacy_metadata_encoding : legacy_metadata Data_encoding.t = let open Data_encoding in def "store.block_repr.legacy_metadata" @@ conv (fun { legacy_message; legacy_max_operations_ttl; legacy_last_allowed_fork_level; legacy_block_metadata; legacy_operations_metadata; } -> ( legacy_message, legacy_max_operations_ttl, legacy_last_allowed_fork_level, legacy_block_metadata, legacy_operations_metadata )) (fun ( legacy_message, legacy_max_operations_ttl, legacy_last_allowed_fork_level, legacy_block_metadata, legacy_operations_metadata ) -> { legacy_message; legacy_max_operations_ttl; legacy_last_allowed_fork_level; legacy_block_metadata; legacy_operations_metadata; }) (obj5 (opt "legacy_message" string) (req "legacy_max_operations_ttl" uint16) (req "legacy_last_allowed_fork_level" int32) (req "legacy_block_metadata" bytes) (req "legacy_operations_metadata" (list (list bytes)))) let encoding = let open Data_encoding in def "store.block_repr" @@ conv (fun {hash; contents; metadata} -> (hash, contents, metadata)) (fun (hash, contents, metadata) -> {hash; contents; metadata}) (dynamic_size ~kind:`Uint30 (obj3 (req "hash" Block_hash.encoding) (req "contents" contents_encoding) (varopt "metadata" metadata_encoding))) let legacy_encoding = let open Data_encoding in def "store.legacy_block_repr" @@ conv (fun {legacy_hash; legacy_contents; legacy_metadata} -> (legacy_hash, legacy_contents, legacy_metadata)) (fun (legacy_hash, legacy_contents, legacy_metadata) -> {legacy_hash; legacy_contents; legacy_metadata}) (dynamic_size ~kind:`Uint30 (obj3 (req "legacy_hash" Block_hash.encoding) (req "legacy_contents" contents_encoding) (varopt "legacy_metadata" legacy_metadata_encoding))) let with_contents {header; operations; block_metadata_hash; operations_metadata_hashes} f = f header operations block_metadata_hash operations_metadata_hashes [@@ocaml.inline] let with_metadata { message; max_operations_ttl; last_allowed_fork_level; block_metadata; operations_metadata; } f = f message max_operations_ttl last_allowed_fork_level block_metadata operations_metadata [@@ocaml.inline] let contents_equal c1 c2 = with_contents c1 @@ fun h1 o1 b1 omh1 -> with_contents c2 @@ fun h2 o2 b2 omh2 -> Block_header.equal h1 h2 && List.equal (List.equal Operation.equal) o1 o2 && Option.equal Block_metadata_hash.equal b1 b2 && Option.equal (List.equal (List.equal Operation_metadata_hash.equal)) omh1 omh2 let metadata_equal m1 m2 = with_metadata m1 @@ fun m1 mot1 lafl1 bm1 om1 -> with_metadata m2 @@ fun m2 mot2 lafl2 bm2 om2 -> Option.equal String.equal m1 m2 && Int.equal mot1 mot2 && Int32.equal lafl1 lafl2 && Bytes.equal bm1 bm2 && List.equal (List.equal Block_validation.operation_metadata_equal) om1 om2 let equal b1 b2 = let {hash = h1; contents = c1; metadata = m1} = b1 in let {hash = h2; contents = c2; metadata = m2} = b2 in Block_hash.equal h1 h2 && contents_equal c1 c2 && Option.equal metadata_equal m1 m2 let pp_json fmt b = let json = Data_encoding.Json.construct encoding b in Data_encoding.Json.pp fmt json (* Contents accessors *) let descriptor blk = (blk.hash, blk.contents.header.Block_header.shell.level) let hash blk = blk.hash let header blk = blk.contents.header let operations blk = blk.contents.operations let block_metadata_hash blk = blk.contents.block_metadata_hash let operations_metadata_hashes blk = blk.contents.operations_metadata_hashes let shell_header blk = blk.contents.header.Block_header.shell let level blk = blk.contents.header.Block_header.shell.level let proto_level blk = blk.contents.header.Block_header.shell.proto_level let predecessor blk = blk.contents.header.Block_header.shell.predecessor let timestamp blk = blk.contents.header.Block_header.shell.timestamp let validation_passes blk = blk.contents.header.Block_header.shell.validation_passes let operations_hash blk = blk.contents.header.Block_header.shell.operations_hash let fitness blk = blk.contents.header.Block_header.shell.fitness let context blk = blk.contents.header.Block_header.shell.context let protocol_data blk = blk.contents.header.Block_header.protocol_data (* Metadata accessors *) let metadata blk = blk.metadata let message metadata = metadata.message let max_operations_ttl metadata = metadata.max_operations_ttl let last_allowed_fork_level metadata = metadata.last_allowed_fork_level let block_metadata metadata = metadata.block_metadata let operations_metadata metadata = metadata.operations_metadata let check_block_consistency ?genesis_hash ?pred_block block = let open Lwt_result_syntax in let block_header = header block in let block_hash = hash block in let result_hash = Block_header.hash block_header in let* () = fail_unless (Block_hash.equal block_hash result_hash || match genesis_hash with | Some genesis_hash -> Block_hash.equal block_hash genesis_hash | None -> false) (Inconsistent_block_hash { level = level block; expected_hash = block_hash; computed_hash = result_hash; }) in let* () = match pred_block with | None -> return_unit | Some pred_block -> fail_unless (Block_hash.equal (hash pred_block) (predecessor block) && Compare.Int32.(level block = Int32.succ (level pred_block))) (Inconsistent_block_predecessor { block_hash; level = level block; expected_hash = hash pred_block; computed_hash = predecessor block; }) in let computed_operations_hash = Operation_list_list_hash.compute (List.map Operation_list_hash.compute (List.map (List.map Operation.hash) (operations block))) in let* () = fail_unless (Operation_list_list_hash.equal computed_operations_hash (operations_hash block)) (Store_errors.Inconsistent_operations_hash {expected = operations_hash block; got = computed_operations_hash}) in return_unit let convert_legacy_metadata (legacy_metadata : legacy_metadata) : metadata = let { legacy_message; legacy_max_operations_ttl; legacy_last_allowed_fork_level; legacy_block_metadata; legacy_operations_metadata; } = legacy_metadata in { message = legacy_message; max_operations_ttl = legacy_max_operations_ttl; last_allowed_fork_level = legacy_last_allowed_fork_level; block_metadata = legacy_block_metadata; operations_metadata = List.map (List.map (fun b -> Block_validation.Metadata b)) legacy_operations_metadata; } let decode_metadata b = Data_encoding.Binary.of_string_opt metadata_encoding b |> function | Some metadata -> Some metadata | None -> Option.map convert_legacy_metadata (Data_encoding.Binary.of_string_opt legacy_metadata_encoding b)
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