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.unix/store.ml.html
Source file store.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_types open Store_errors type store = { store_dir : [`Store_dir] Naming.directory; (* Mutability allows a back-reference from chain_store to store: not to be modified. *) (* Invariant : main_chain_store <> None *) mutable main_chain_store : chain_store option; context_index : Context_ops.index; protocol_store : Protocol_store.t; allow_testchains : bool; protocol_watcher : Protocol_hash.t Lwt_watcher.input; global_block_watcher : (chain_store * block) Lwt_watcher.input; } and chain_store = { global_store : store; chain_id : Chain_id.t; chain_dir : [`Chain_dir] Naming.directory; chain_config : chain_config; block_store : Block_store.t; chain_state : chain_state Shared.t; (* Genesis is only on-disk: read-only except at creation *) genesis_block_data : block Stored_data.t; block_watcher : block Lwt_watcher.input; validated_block_watcher : block Lwt_watcher.input; block_rpc_directories : (chain_store * block) Tezos_rpc.Directory.t Protocol_hash.Map.t Protocol_hash.Table.t; lockfile : Lwt_unix.file_descr; } and chain_state = { (* Following fields are not safe to update concurrently and must be manipulated carefuly: *) current_head_data : block_descriptor Stored_data.t; cementing_highwatermark_data : int32 option Stored_data.t; target_data : block_descriptor option Stored_data.t; checkpoint_data : block_descriptor Stored_data.t; (* Following fields are safe to update directly *) protocol_levels_data : Protocol_levels.protocol_info Protocol_levels.t Stored_data.t; invalid_blocks_data : invalid_block Block_hash.Map.t Stored_data.t; forked_chains_data : Block_hash.t Chain_id.Map.t Stored_data.t; (* In memory-only: *) current_head : Block_repr.t; active_testchain : testchain option; mempool : Mempool.t; live_blocks : Block_hash.Set.t; live_operations : Operation_hash.Set.t; mutable live_data_cache : (Block_hash.t * Operation_hash.Set.t) Ringo.Ring.t option; validated_blocks : Block_repr.t Block_lru_cache.t; } and testchain = {forked_block : Block_hash.t; testchain_store : chain_store} and block = Block_repr.t type t = store let current_head chain_store = Shared.use chain_store.chain_state (fun {current_head; _} -> Lwt.return current_head) let caboose chain_store = Block_store.caboose chain_store.block_store let checkpoint chain_store = Shared.use chain_store.chain_state (fun {checkpoint_data; _} -> Stored_data.get checkpoint_data) let target chain_store = Shared.use chain_store.chain_state (fun {target_data; _} -> Stored_data.get target_data) let savepoint chain_store = Block_store.savepoint chain_store.block_store let genesis chain_store = chain_store.chain_config.genesis let history_mode chain_store = chain_store.chain_config.history_mode let read_ancestor_hash {block_store; _} ~distance hash = Block_store.get_hash block_store (Block (hash, distance)) let read_ancestor_hash_by_level chain_store head level = let open Lwt_syntax in let distance = Int32.(to_int (sub (Block_repr.level head) level)) in let* ro = read_ancestor_hash chain_store ~distance (Block_repr.hash head) in match ro with Ok (Some x) -> Lwt.return_some x | _ -> Lwt.return_none (* Will that block be compatible with the current checkpoint and target. *) let locked_is_acceptable_block chain_state (hash, level) = let open Lwt_syntax in let* _checkpoint_hash, checkpoint_level = Stored_data.get chain_state.checkpoint_data in (* The block must be above the checkpoint. *) if Compare.Int32.(checkpoint_level >= level) then Lwt.return_false else (* FIXME? should we read its predecessor at checkpoint level to see if it's the same? *) let* o = Stored_data.get chain_state.target_data in match o with | None -> Lwt.return_true | Some (target_hash, target_level) -> if Compare.Int32.(level = target_level) then Lwt.return @@ Block_hash.equal hash target_hash else Lwt.return_true (* Shared protocols accessors *) let find_protocol_info chain_store ~protocol_level = let open Lwt_syntax in Shared.use chain_store.chain_state (fun {protocol_levels_data; _} -> let* protocol_levels = Stored_data.get protocol_levels_data in return (Protocol_levels.find protocol_level protocol_levels)) let find_activation_block chain_store ~protocol_level = let open Lwt_syntax in let* protocol_info = find_protocol_info chain_store ~protocol_level in match protocol_info with | Some {activation_block; _} -> return_some activation_block | None -> return_none let find_protocol chain_store ~protocol_level = let open Lwt_syntax in let* o = find_protocol_info chain_store ~protocol_level in match o with | None -> return_none | Some {Protocol_levels.protocol; _} -> return_some protocol let expect_predecessor_context_hash_exn chain_store protocol_level = let open Lwt_syntax in let* protocol_info = find_protocol_info chain_store ~protocol_level in match protocol_info with | Some {expect_predecessor_context; _} -> return expect_predecessor_context | None -> Format.ksprintf Stdlib.failwith "cannot find protocol info for level: %d" protocol_level let expect_predecessor_context_hash chain_store ~protocol_level = let open Lwt_result_syntax in Lwt.catch (fun () -> let*! b = expect_predecessor_context_hash_exn chain_store protocol_level in return b) (fun _ -> tzfail (Protocol_not_found {protocol_level})) let create_lockfile chain_dir = let open Lwt_syntax in protect (fun () -> let* fd = Lwt_unix.openfile (Naming.lock_file chain_dir |> Naming.file_path) [Unix.O_CREAT; O_RDWR; O_CLOEXEC; O_SYNC] 0o644 in return_ok fd) let lock_for_write lockfile = Lwt_unix.lockf lockfile Unix.F_LOCK 0 let lock_for_read lockfile = Lwt_unix.lockf lockfile Unix.F_RLOCK 0 let unlock lockfile = Lwt_unix.lockf lockfile Unix.F_ULOCK 0 let try_lock_for_write lockfile = let open Lwt_syntax in Lwt.catch (fun () -> let* () = Lwt_unix.lockf lockfile Unix.F_TLOCK 0 in Lwt.return_true) (fun _ -> Lwt.return_false) let may_unlock lockfile = Unit.catch_s (fun () -> unlock lockfile) module Block = struct type nonrec block = block type t = block type metadata = Block_repr.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; } let equal b b' = Block_hash.equal (Block_repr.hash b) (Block_repr.hash b') let descriptor blk = Block_repr.descriptor blk (* I/O operations *) let is_known_valid {block_store; _} hash = let open Lwt_syntax in let* r = Block_store.(mem block_store (Block (hash, 0))) in match r with | Ok k -> Lwt.return k | Error _ -> (* should never happen : (0 \in N) *) Lwt.return_false let locked_is_known_invalid chain_state hash = let open Lwt_syntax in let* invalid_blocks = Stored_data.get chain_state.invalid_blocks_data in Lwt.return (Block_hash.Map.mem hash invalid_blocks) let is_known_invalid {chain_state; _} hash = Shared.use chain_state (fun chain_state -> locked_is_known_invalid chain_state hash) let is_known_validated {chain_state; _} hash = Shared.use chain_state (fun {validated_blocks; _} -> Option.value ~default:Lwt.return_false @@ Block_lru_cache.bind validated_blocks hash (function | None -> Lwt.return_false | Some _ -> Lwt.return_true)) let is_known chain_store hash = let open Lwt_syntax in let* is_known = is_known_valid chain_store hash in if is_known then Lwt.return_true else is_known_invalid chain_store hash let validity chain_store hash = let open Lwt_syntax in let* b = is_known chain_store hash in match b with | false -> Lwt.return Block_locator.Unknown | true -> ( let* b = is_known_invalid chain_store hash in match b with | true -> Lwt.return Block_locator.Known_invalid | false -> Lwt.return Block_locator.Known_valid) let is_genesis chain_store hash = let genesis = genesis chain_store in Block_hash.equal hash genesis.Genesis.block let read_block {block_store; _} ?(distance = 0) hash = let open Lwt_result_syntax in let* o = Block_store.read_block ~read_metadata:false block_store (Block (hash, distance)) in match o with | None -> tzfail @@ Block_not_found {hash; distance} | Some block -> return block let read_block_metadata ?(distance = 0) chain_store hash = Block_store.read_block_metadata chain_store.block_store (Block (hash, distance)) let read_block_metadata_opt ?distance chain_store hash = let open Lwt_syntax in let* r = read_block_metadata ?distance chain_store hash in match r with Ok v -> Lwt.return v | Error _ -> Lwt.return_none let get_block_metadata_opt chain_store block = let open Lwt_syntax in match Block_repr.metadata block with | Some metadata -> Lwt.return_some metadata | None -> ( let* o = read_block_metadata_opt chain_store block.hash in match o with | Some metadata -> (* Put the metadata in cache *) block.metadata <- Some metadata ; Lwt.return_some metadata | None -> Lwt.return_none) let get_block_metadata chain_store block = let open Lwt_result_syntax in let*! o = get_block_metadata_opt chain_store block in match o with | Some metadata -> return metadata | None -> tzfail (Block_metadata_not_found (Block_repr.hash block)) let read_block_opt chain_store ?(distance = 0) hash = let open Lwt_syntax in let* r = read_block chain_store ~distance hash in match r with | Ok block -> Lwt.return_some block | Error _ -> Lwt.return_none let read_predecessor chain_store block = read_block chain_store (Block_repr.predecessor block) let read_predecessor_opt chain_store block = let open Lwt_syntax in let* r = read_predecessor chain_store block in match r with | Ok block -> Lwt.return_some block | Error _ -> Lwt.return_none let read_ancestor_hash chain_store ~distance hash = read_ancestor_hash chain_store ~distance hash let read_ancestor_hash_opt chain_store ~distance hash = let open Lwt_syntax in let* r = read_ancestor_hash chain_store ~distance hash in match r with Ok v -> Lwt.return v | Error _ -> Lwt.return_none let read_predecessor_of_hash_opt chain_store hash = let open Lwt_syntax in let* o = read_ancestor_hash_opt chain_store ~distance:1 hash in match o with | Some hash -> read_block_opt chain_store hash | None -> Lwt.return_none let read_predecessor_of_hash chain_store hash = let open Lwt_result_syntax in let*! o = read_predecessor_of_hash_opt chain_store hash in match o with | Some b -> return b | None -> tzfail @@ Block_not_found {hash; distance = 0} let locked_read_block_by_level chain_store head level = let open Lwt_result_syntax in let distance = Int32.(to_int (sub (Block_repr.level head) level)) in if distance < 0 then tzfail (Bad_level { head_level = Block_repr.level head; given_level = Int32.of_int distance; }) else read_block chain_store ~distance (Block_repr.hash head) let locked_read_block_by_level_opt chain_store head level = let open Lwt_syntax in let* r = locked_read_block_by_level chain_store head level in match r with Error _ -> Lwt.return_none | Ok b -> Lwt.return_some b let read_block_by_level chain_store level = let open Lwt_syntax in let* current_head = current_head chain_store in locked_read_block_by_level chain_store current_head level let read_block_by_level_opt chain_store level = let open Lwt_syntax in let* current_head = current_head chain_store in locked_read_block_by_level_opt chain_store current_head level let read_validated_block_opt {chain_state; _} hash = Shared.use chain_state (fun {validated_blocks; _} -> Option.value ~default:Lwt.return_none @@ Block_lru_cache.bind validated_blocks hash Lwt.return) let read_validated_block chain_store hash = let open Lwt_result_syntax in let*! o = read_validated_block_opt chain_store hash in match o with | Some b -> return b | None -> tzfail (Block_not_found {hash; distance = 0}) let check_metadata_list ~block_hash ~operations ~ops_metadata = fail_unless (List.for_all2 ~when_different_lengths:(`X "unreachable") (fun l1 l2 -> Compare.List_lengths.(l1 = l2)) operations ops_metadata |> function | Ok b -> b | _ -> assert false) (let to_string l = Format.asprintf "[%a]" (Format.pp_print_list ~pp_sep:(fun fmt () -> Format.fprintf fmt "; ") (fun ppf l -> Format.fprintf ppf "[%d]" (List.length l))) l in Cannot_store_block ( block_hash, Inconsistent_operations_lengths { operations_lengths = to_string operations; operations_data_lengths = to_string ops_metadata; } )) let store_block chain_store ~block_header ~operations validation_result = let open Lwt_result_syntax in let { Block_validation.validation_store = { resulting_context_hash; timestamp = _; message; max_operations_ttl; last_allowed_fork_level; }; block_metadata; ops_metadata; shell_header_hash = _; } = validation_result in let bytes = Block_header.to_bytes block_header in let hash = Block_header.hash_raw bytes in let operations_length = List.length operations in let operation_metadata_length = match ops_metadata with | Block_validation.No_metadata_hash x -> List.length x | Block_validation.Metadata_hash x -> List.length x in let validation_passes = block_header.shell.validation_passes in let* () = fail_unless (validation_passes = operations_length) (Cannot_store_block ( hash, Invalid_operations_length {validation_passes; operations = operations_length} )) in let* () = fail_unless (validation_passes = operation_metadata_length) (Cannot_store_block ( hash, Invalid_operations_length {validation_passes; operations = operation_metadata_length} )) in let* () = match ops_metadata with | No_metadata_hash ops_metadata -> check_metadata_list ~block_hash:hash ~operations ~ops_metadata | Metadata_hash ops_metadata -> check_metadata_list ~block_hash:hash ~operations ~ops_metadata in let*! genesis_block = Stored_data.get chain_store.genesis_block_data in let is_main_chain = Chain_id.equal chain_store.chain_id (WithExceptions.Option.get ~loc:__LOC__ chain_store.global_store.main_chain_store) .chain_id in let genesis_level = Block_repr.level genesis_block in let* last_allowed_fork_level = if is_main_chain then let* () = fail_unless Compare.Int32.(last_allowed_fork_level >= genesis_level) (Cannot_store_block ( hash, Invalid_last_allowed_fork_level {last_allowed_fork_level; genesis_level} )) in return last_allowed_fork_level else if Compare.Int32.(last_allowed_fork_level < genesis_level) then (* Hack: on the testchain, the block's lafl depends on the lafl and is not max(genesis_level, expected_lafl) *) return genesis_level else return last_allowed_fork_level in let*! b = is_known_valid chain_store hash in match b with | true -> return_none | false -> (* Safety check: never ever commit a block that is not compatible with the current checkpoint/target. *) let*! acceptable_block, known_invalid = Shared.use chain_store.chain_state (fun chain_state -> let*! acceptable_block = locked_is_acceptable_block chain_state (hash, block_header.shell.level) in let*! known_invalid = locked_is_known_invalid chain_state hash in Lwt.return (acceptable_block, known_invalid)) in let* () = fail_unless acceptable_block (Validation_errors.Checkpoint_error (hash, None)) in let* () = fail_when known_invalid Store_errors.(Cannot_store_block (hash, Invalid_block)) in let contents = { Block_repr.header = block_header; operations; block_metadata_hash = snd block_metadata; operations_metadata_hashes = (match ops_metadata with | Block_validation.No_metadata_hash _ -> None | Block_validation.Metadata_hash ops_metadata -> Some (List.map (List.map snd) ops_metadata)); } in let metadata = Some { message; max_operations_ttl; last_allowed_fork_level; block_metadata = fst block_metadata; operations_metadata = (match ops_metadata with | Block_validation.No_metadata_hash ops_metadata -> ops_metadata | Block_validation.Metadata_hash ops_metadata -> List.map (List.map fst) ops_metadata); } in let block = {Block_repr.hash; contents; metadata} in let* () = Block_store.store_block chain_store.block_store block resulting_context_hash in let*! () = Store_events.(emit store_block) (hash, block_header.shell.level) in let*! () = Shared.use chain_store.chain_state (fun {validated_blocks; _} -> Block_lru_cache.remove validated_blocks hash ; Lwt.return_unit) in Lwt_watcher.notify chain_store.block_watcher block ; Lwt_watcher.notify chain_store.global_store.global_block_watcher (chain_store, block) ; return_some block let store_validated_block chain_store ~hash ~block_header ~operations = let open Lwt_result_syntax in let operations_length = List.length operations in let validation_passes = block_header.Block_header.shell.validation_passes in let* () = fail_unless (validation_passes = operations_length) (Cannot_store_block ( hash, Invalid_operations_length {validation_passes; operations = operations_length} )) in let block = { Block_repr.hash; contents = { header = block_header; operations; block_metadata_hash = None; operations_metadata_hashes = None; }; metadata = None; } in let*! () = Shared.use chain_store.chain_state (fun {validated_blocks; _} -> Block_lru_cache.put validated_blocks hash (Lwt.return_some block) ; Lwt.return_unit) in let*! () = Store_events.(emit store_validated_block) (hash, block_header.shell.level) in Lwt_watcher.notify chain_store.validated_block_watcher block ; return_unit let resulting_context_hash chain_store block = let open Lwt_result_syntax in let fetch_expect_predecessor_context () = expect_predecessor_context_hash chain_store ~protocol_level:(Block_repr.proto_level block) in let hash = Block_repr.hash block in let* resulting_context_hash_opt = Block_store.resulting_context_hash ~fetch_expect_predecessor_context chain_store.block_store (Block (hash, 0)) in match resulting_context_hash_opt with | None -> tzfail (Resulting_context_hash_not_found {hash; level = Block_repr.level block}) | Some resulting_context_hash -> return resulting_context_hash let context_exn chain_store block = let open Lwt_syntax in let context_index = chain_store.global_store.context_index in let fetch_expect_predecessor_context () = let* expect_pred_context_opt = expect_predecessor_context_hash chain_store ~protocol_level:(Block_repr.proto_level block) in match expect_pred_context_opt with | Ok expect_pred_context -> Lwt.return_ok expect_pred_context | Error _ -> Format.kasprintf Stdlib.failwith "cannot find the resulting context of block %a" pp_block_descriptor (Block_repr.descriptor block) in let* context_to_checkout = let* r = Block_store.resulting_context_hash chain_store.block_store ~fetch_expect_predecessor_context (Block (Block_repr.hash block, 0)) in match r with | Ok (Some resulting_context) -> return resulting_context | Ok None | Error _ -> Format.kasprintf Stdlib.failwith "cannot find the resulting context of block %a" pp_block_descriptor (Block_repr.descriptor block) in Context_ops.checkout_exn context_index context_to_checkout let context_opt chain_store block = let open Lwt_syntax in Lwt.catch (fun () -> let* ctxt = context_exn chain_store block in return_some ctxt) (fun _exn -> Lwt.return_none) let context chain_store block = let open Lwt_result_syntax in let*! o = context_opt chain_store block in match o with | Some context -> return context | None -> tzfail (Cannot_checkout_context (Block_repr.hash block, Block_repr.context block)) let context_exists chain_store block = let context_index = chain_store.global_store.context_index in Context_ops.exists context_index (Block_repr.context block) let testchain_status chain_store block = let open Lwt_result_syntax in let* context = let*! o = context_opt chain_store block in match o with | Some ctxt -> return ctxt | None -> tzfail (Cannot_checkout_context (Block_repr.hash block, Block_repr.context block)) in let*! status = Context_ops.get_test_chain context in match status with | Running {genesis; _} -> Shared.use chain_store.chain_state (fun chain_state -> let*! forked_chains = Stored_data.get chain_state.forked_chains_data in let testchain_id = Context.compute_testchain_chain_id genesis in let forked_hash_opt = Chain_id.Map.find testchain_id forked_chains in return (status, forked_hash_opt)) | Forking _ -> return (status, Some (Block_repr.hash block)) | Not_running -> return (status, None) let protocol_hash chain_store block = let open Lwt_result_syntax in Shared.use chain_store.chain_state (fun chain_state -> let*! protocol_levels = Stored_data.get chain_state.protocol_levels_data in let open Protocol_levels in let proto_level = Block_repr.proto_level block in match find proto_level protocol_levels with | Some {protocol; _} -> return protocol | None -> tzfail (Cannot_find_protocol proto_level)) let protocol_hash_exn chain_store block = let open Lwt_syntax in let* r = protocol_hash chain_store block in match r with Ok ph -> Lwt.return ph | Error _ -> Lwt.fail Not_found (** Operations on invalid blocks *) let read_invalid_block_opt {chain_state; _} hash = let open Lwt_syntax in Shared.use chain_state (fun chain_state -> let* invalid_blocks = Stored_data.get chain_state.invalid_blocks_data in Lwt.return (Block_hash.Map.find hash invalid_blocks)) let read_invalid_blocks {chain_state; _} = Shared.use chain_state (fun chain_state -> Stored_data.get chain_state.invalid_blocks_data) let mark_invalid chain_store hash ~level errors = let open Lwt_result_syntax in if is_genesis chain_store hash then tzfail Invalid_genesis_marking else let* () = Shared.use chain_store.chain_state (fun chain_state -> Stored_data.update_with chain_state.invalid_blocks_data (fun invalid_blocks -> Lwt.return (Block_hash.Map.add hash {level; errors} invalid_blocks))) in return_unit let unmark_invalid {chain_state; _} hash = Shared.use chain_state (fun chain_state -> Stored_data.update_with chain_state.invalid_blocks_data (fun invalid_blocks -> Lwt.return (Block_hash.Map.remove hash invalid_blocks))) (** Accessors *) let hash blk = Block_repr.hash blk let header blk = Block_repr.header blk let operations blk = Block_repr.operations blk let shell_header blk = Block_repr.shell_header blk let level blk = Block_repr.level blk let proto_level blk = Block_repr.proto_level blk let predecessor blk = Block_repr.predecessor blk let timestamp blk = Block_repr.timestamp blk let operations_hash blk = Block_repr.operations_hash blk let validation_passes blk = Block_repr.validation_passes blk let fitness blk = Block_repr.fitness blk let context_hash blk = Block_repr.context blk let protocol_data blk = Block_repr.protocol_data blk let block_metadata_hash blk = Block_repr.block_metadata_hash blk let operations_metadata_hashes blk = Block_repr.operations_metadata_hashes blk let operations_metadata_hashes_path block i = if i < 0 || (header block).shell.validation_passes <= i then invalid_arg "operations_metadata_hashes_path" ; Option.map (fun ll -> List.nth ll i |> WithExceptions.Option.get ~loc:__LOC__) (Block_repr.operations_metadata_hashes block) let all_operations_metadata_hash blk = (* Special case: for genesis, do not commit operation metadatas *) if validation_passes blk = 0 then None else Option.map (fun ll -> Operation_metadata_list_list_hash.compute (List.map Operation_metadata_list_hash.compute ll)) (Block_repr.operations_metadata_hashes blk) (** Metadata accessors *) let message metadata = Block_repr.message metadata let max_operations_ttl metadata = Block_repr.max_operations_ttl metadata let last_allowed_fork_level metadata = Block_repr.last_allowed_fork_level metadata let block_metadata metadata = Block_repr.block_metadata metadata let operations_metadata metadata = Block_repr.operations_metadata metadata let compute_operation_path hashes = let list_hashes = List.map Operation_list_hash.compute hashes in Operation_list_list_hash.compute_path list_hashes let operations_path block i = if i < 0 || validation_passes block <= i then invalid_arg "operations_path" ; let ops = operations block in let hashes = List.(map (map Operation.hash)) ops in let path = compute_operation_path hashes in (List.nth ops i |> WithExceptions.Option.get ~loc:__LOC__, path i) let operations_hashes_path block i = if i < 0 || (header block).shell.validation_passes <= i then invalid_arg "operations_hashes_path" ; let opss = operations block in let hashes = List.(map (map Operation.hash)) opss in let path = compute_operation_path hashes in (List.nth hashes i |> WithExceptions.Option.get ~loc:__LOC__, path i) let all_operation_hashes block = List.(map (map Operation.hash)) (operations block) end module Chain_traversal = struct let path chain_store ~from_block ~to_block = let open Lwt_syntax in if not Compare.Int32.(Block.level from_block <= Block.level to_block) then invalid_arg "Chain_traversal.path" ; let rec loop acc current = if Block.equal from_block current then Lwt.return_some acc else let* o = Block.read_predecessor_opt chain_store current in match o with | Some pred -> loop (current :: acc) pred | None -> Lwt.return_none in loop [] to_block let common_ancestor chain_store b1 b2 = let open Lwt_syntax in let rec loop b1 b2 = if Block.equal b1 b2 then Lwt.return_some b1 else if Compare.Int32.(Block.level b1 <= Block.level b2) then let* o = Block.read_predecessor_opt chain_store b2 in match o with None -> Lwt.return_none | Some b2 -> loop b1 b2 else let* o = Block.read_predecessor_opt chain_store b1 in match o with None -> Lwt.return_none | Some b1 -> loop b1 b2 in loop b1 b2 let new_blocks chain_store ~from_block ~to_block = let open Lwt_syntax in let* o = common_ancestor chain_store from_block to_block in match o with | None -> assert false | Some ancestor -> ( let* o = path chain_store ~from_block:ancestor ~to_block in match o with | None -> Lwt.return (ancestor, []) | Some path -> Lwt.return (ancestor, path)) let folder chain_store block n f init = let open Lwt_syntax in let rec loop acc block_head n = let hashes = Block.all_operation_hashes block_head in let acc = f acc (Block.hash block_head, hashes) in if n = 0 then Lwt.return acc else let* o = Block.read_predecessor_opt chain_store block_head in match o with | None -> Lwt.return acc | Some predecessor -> loop acc predecessor (pred n) in loop init block n let live_blocks chain_store block n = let fold (bacc, oacc) (head_hash, op_hashes) = let bacc = Block_hash.Set.add head_hash bacc in let oacc = List.fold_left (List.fold_left (fun oacc op -> Operation_hash.Set.add op oacc)) oacc op_hashes in (bacc, oacc) in let init = (Block_hash.Set.empty, Operation_hash.Set.empty) in folder chain_store block n fold init let live_blocks_with_ring chain_store block n ring = let open Lwt_syntax in let fold acc (head_hash, op_hashes) = let op_hash_set = Operation_hash.Set.(of_list (List.flatten op_hashes)) in (head_hash, op_hash_set) :: acc in let* l = folder chain_store block n fold [] in (* Don't revert the list so we can add them in the correct order. *) Ringo.Ring.add_list ring l ; Lwt.return_unit end module Chain = struct type nonrec chain_store = chain_store type t = chain_store type nonrec testchain = testchain type block_identifier = Block_services.block let global_store {global_store; _} = global_store let chain_id chain_store = chain_store.chain_id let chain_dir chain_store = chain_store.chain_dir let history_mode chain_store = history_mode chain_store let set_history_mode chain_store history_mode = let chain_config = {chain_store.chain_config with history_mode} in Stored_data.write_file (Naming.chain_config_file chain_store.chain_dir) chain_config let genesis chain_store = genesis chain_store let genesis_block chain_store = Stored_data.get chain_store.genesis_block_data let expiration chain_store = chain_store.chain_config.expiration let checkpoint chain_store = checkpoint chain_store let target chain_store = target chain_store let savepoint chain_store = savepoint chain_store let unsafe_set_savepoint chain_store new_savepoint = Block_store.write_savepoint chain_store.block_store new_savepoint let caboose chain_store = caboose chain_store let unsafe_set_caboose chain_store new_caboose = Block_store.write_caboose chain_store.block_store new_caboose let current_head chain_store = current_head chain_store let mempool chain_store = Shared.use chain_store.chain_state (fun {mempool; _} -> Lwt.return mempool) let block_of_identifier chain_store = let open Lwt_result_syntax in let not_found () = fail_with_exn Not_found in function | `Genesis -> let*! block = genesis_block chain_store in return block | `Head n -> let*! current_head = current_head chain_store in if n < 0 then not_found () else if n = 0 then return current_head else Block.read_block chain_store ~distance:n (Block.hash current_head) | (`Alias (_, n) | `Hash (_, n)) as b -> let*! hash = match b with | `Alias (`Checkpoint, _) -> let*! t = checkpoint chain_store in Lwt.return @@ fst t | `Alias (`Savepoint, _) -> let*! t = savepoint chain_store in Lwt.return @@ fst t | `Alias (`Caboose, _) -> let*! t = caboose chain_store in Lwt.return @@ fst t | `Hash (h, _) -> Lwt.return h in if n < 0 then let* block = Block.read_block chain_store hash in let*! current_head = current_head chain_store in let head_level = Block.level current_head in let block_level = Block.level block in let distance = Int32.(to_int (sub head_level (sub block_level (of_int n)))) in if distance < 0 then not_found () else Block.read_block chain_store ~distance (Block.hash current_head) else Block.read_block chain_store ~distance:n hash | `Level i -> if Compare.Int32.(i < 0l) then not_found () else Block.read_block_by_level chain_store i let block_of_identifier_opt chain_store identifier = let open Lwt_syntax in let* r = block_of_identifier chain_store identifier in match r with | Ok block -> Lwt.return_some block | Error _ -> Lwt.return_none let set_mempool chain_store ~head mempool = let open Lwt_result_syntax in Shared.update_with chain_store.chain_state (fun chain_state -> let*! current_head_descr = Stored_data.get chain_state.current_head_data in if Block_hash.equal head (fst current_head_descr) then return (Some {chain_state with mempool}, ()) else return (None, ())) let live_blocks chain_store = Shared.use chain_store.chain_state (fun {live_blocks; live_operations; _} -> Lwt.return (live_blocks, live_operations)) let locked_compute_live_blocks ?(force = false) ?(update_cache = true) chain_store chain_state block metadata = let open Lwt_syntax in let {current_head; live_blocks; live_operations; live_data_cache; _} = chain_state in if Block.equal current_head block && not force then Lwt.return (live_blocks, live_operations) else (* We actually compute max_op_ttl + 1... *) let expected_capacity = Block.max_operations_ttl metadata + 1 in match live_data_cache with | Some live_data_cache when update_cache && Block_hash.equal (Block.predecessor block) (Block.hash current_head) && Ringo.Ring.capacity live_data_cache = expected_capacity -> ( let most_recent_block = Block.hash block in let most_recent_ops = Block.all_operation_hashes block |> List.flatten |> Operation_hash.Set.of_list in let new_live_blocks = Block_hash.Set.add most_recent_block live_blocks in let new_live_operations = Operation_hash.Set.union most_recent_ops live_operations in match Ringo.Ring.add_and_return_erased live_data_cache (most_recent_block, most_recent_ops) with | None -> Lwt.return (new_live_blocks, new_live_operations) | Some (last_block, last_ops) -> let diffed_new_live_blocks = Block_hash.Set.remove last_block new_live_blocks in let diffed_new_live_operations = Operation_hash.Set.diff new_live_operations last_ops in Lwt.return (diffed_new_live_blocks, diffed_new_live_operations)) | _ when update_cache -> let new_cache = Ringo.Ring.create expected_capacity in let* () = Chain_traversal.live_blocks_with_ring chain_store block expected_capacity new_cache in chain_state.live_data_cache <- Some new_cache ; let live_blocks, live_ops = Ringo.Ring.fold new_cache ~init:(Block_hash.Set.empty, Operation_hash.Set.empty) ~f:(fun (bhs, opss) (bh, ops) -> (Block_hash.Set.add bh bhs, Operation_hash.Set.union ops opss)) in Lwt.return (live_blocks, live_ops) | _ -> Chain_traversal.live_blocks chain_store block expected_capacity let compute_live_blocks chain_store ~block = let open Lwt_result_syntax in Shared.use chain_store.chain_state (fun chain_state -> let* metadata = Block.get_block_metadata chain_store block in let*! r = locked_compute_live_blocks ~update_cache:false chain_store chain_state block metadata in return r) let is_ancestor chain_store ~head:(hash, lvl) ~ancestor:(hash', lvl') = let open Lwt_syntax in if Compare.Int32.(lvl' > lvl) then Lwt.return_false else if Compare.Int32.(lvl = lvl') then Lwt.return (Block_hash.equal hash hash') else let* o = Block.read_ancestor_hash_opt chain_store hash ~distance:Int32.(to_int (sub lvl lvl')) in match o with | None -> Lwt.return_false | Some hash_found -> Lwt.return (Block_hash.equal hash' hash_found) let is_in_chain chain_store (hash, level) = let open Lwt_syntax in let* current_head = current_head chain_store in is_ancestor chain_store ~head:Block.(hash current_head, level current_head) ~ancestor:(hash, level) (* FIXME: this should not be hard-coded *) let max_locator_size = 200 let compute_locator_from_hash chain_store ?(max_size = max_locator_size) ?min_level (head_hash, head_header) seed = let open Lwt_syntax in let* caboose, _ = Shared.use chain_store.chain_state (fun chain_state -> match min_level with | None -> Block_store.caboose chain_store.block_store | Some min_level -> ( let* o = Block.locked_read_block_by_level_opt chain_store chain_state.current_head min_level in match o with | None -> (* should not happen *) Block_store.caboose chain_store.block_store | Some b -> Lwt.return (Block_repr.descriptor b))) in let get_predecessor = match min_level with | None -> fun h n -> Block.read_ancestor_hash_opt chain_store h ~distance:n | Some min_level -> ( fun h n -> let* o = Block.read_block_opt chain_store h ~distance:n in match o with | None -> Lwt.return_none | Some pred -> if Compare.Int32.(Block_repr.level pred < min_level) then Lwt.return_none else Lwt.return_some (Block_repr.hash pred)) in Block_locator.compute ~get_predecessor ~caboose ~size:max_size head_hash head_header seed let compute_locator chain_store ?(max_size = 200) head seed = let open Lwt_syntax in let* caboose, _caboose_level = caboose chain_store in Block_locator.compute ~get_predecessor:(fun h n -> Block.read_ancestor_hash_opt chain_store h ~distance:n) ~caboose ~size:max_size head.Block_repr.hash head.Block_repr.contents.header seed let compute_protocol_locator chain_store ?max_size ~proto_level seed = let open Lwt_syntax in let* o = Shared.use chain_store.chain_state (fun chain_state -> let* protocol_levels = Stored_data.get chain_state.protocol_levels_data in match Protocol_levels.find proto_level protocol_levels with | None -> Lwt.return_none | Some {activation_block; _} -> ( let block_activation_level = snd activation_block in (* proto level's lower bound found, now retrieving the upper bound *) let head_proto_level = Block_repr.proto_level chain_state.current_head in if Compare.Int.(proto_level = head_proto_level) then Lwt.return_some ( block_activation_level, Block_repr. ( hash chain_state.current_head, header chain_state.current_head ) ) else match Protocol_levels.find (succ proto_level) protocol_levels with | None -> Lwt.return_none | Some {activation_block; _} -> ( let next_activation_level = snd activation_block in let last_level_in_protocol = Int32.(pred next_activation_level) in let* o = Block.locked_read_block_by_level_opt chain_store chain_state.current_head last_level_in_protocol in match o with | None -> Lwt.return_none | Some pred -> Lwt.return_some ( block_activation_level, Block_repr.(hash pred, header pred) )))) in match o with | None -> Lwt.return_none | Some (block_activation_level, upper_block) -> let* l = compute_locator_from_hash chain_store ?max_size ~min_level:block_activation_level upper_block seed in Lwt.return_some l let merge_finalizer chain_store (new_highest_cemented_level : int32) = let open Lwt_syntax in (* Assumed invariant: two merges cannot occur concurrently *) (* new_highest_cemented_block should be set, even after a merge 0 *) (* Take the lock on the chain_state to avoid concurrent updates *) Shared.locked_use chain_store.chain_state (fun chain_state -> let* current_cementing_highwatermark = Stored_data.get chain_state.cementing_highwatermark_data in match current_cementing_highwatermark with | None -> Stored_data.write chain_state.cementing_highwatermark_data (Some new_highest_cemented_level) | Some current_cementing_highwatermark -> if Compare.Int32.( current_cementing_highwatermark > new_highest_cemented_level) then (* Invariant error: should not happen but if it does, don't mess anything by modifying the value. *) return_ok_unit else Stored_data.write chain_state.cementing_highwatermark_data (Some new_highest_cemented_level)) let may_update_checkpoint_and_target chain_store ~new_head ~new_head_lafl ~checkpoint ~target = let open Lwt_result_syntax in let new_checkpoint = if Compare.Int32.(snd new_head_lafl > snd checkpoint) then new_head_lafl else checkpoint in match target with | None -> return (new_checkpoint, None) | Some target -> if Compare.Int32.(snd target < snd new_checkpoint) then assert false else if Compare.Int32.(snd target <= snd new_head) then let*! b = is_ancestor chain_store ~head:new_head ~ancestor:target in match b with | true -> return (new_checkpoint, None) | false -> (* Impossible: a block is not acceptable to be stored if it's not compatible with the target *) tzfail Target_mismatch else return (new_checkpoint, Some target) let locked_determine_cementing_highwatermark chain_store chain_state head_lafl = let open Lwt_syntax in let* cementing_highwatermark = Stored_data.get chain_state.cementing_highwatermark_data in match cementing_highwatermark with | Some cementing_highwatermark -> Lwt.return_some cementing_highwatermark | None -> ( (* May result from a store recently imported from a snapshot *) let block_store = chain_store.block_store in let cemented_store = Block_store.cemented_block_store block_store in match Cemented_block_store.get_highest_cemented_level cemented_store with | Some hcb -> (* If we have cemented blocks, take the highest cemented level *) Lwt.return_some hcb | None -> (* If we don't, check that the head lafl is > caboose *) let* _, caboose_level = Block_store.caboose block_store in if Compare.Int32.(head_lafl >= caboose_level) then Lwt.return_some head_lafl else Lwt.return_none) let locked_may_update_cementing_highwatermark chain_state new_cementing_highwatermark = let open Lwt_syntax in let* o = Stored_data.get chain_state.cementing_highwatermark_data in match o with | None when new_cementing_highwatermark <> None -> Stored_data.write chain_state.cementing_highwatermark_data new_cementing_highwatermark | _ -> return_ok_unit let write_checkpoint chain_state new_checkpoint = let open Lwt_result_syntax in let* () = Stored_data.write chain_state.checkpoint_data new_checkpoint in let*! () = Store_events.(emit set_checkpoint) new_checkpoint in Prometheus.Gauge.set Store_metrics.metrics.checkpoint_level (Int32.to_float (snd new_checkpoint)) ; return_unit (* Calls a context split when reaching the dawn of a cycle. See {!Lib_context.Context.split} for details. In the context of full and rolling nodes, the split function is expected to be called just after committing the first block of a cycle, i.e, a future savepoint. Thus, that commit will end a chunk and will be an optimal candidate for a GC call. The call of split is triggered when the last allowed fork level of the new head changes. This is not ensuring that the created chunk will be ended by a commit that will be the target of a future gc call as reorganization may occur above the last allowed fork level. Most of the time, and as reorganization are often short, this will lead to the optimal behaviour. *) let may_split_context chain_store new_head_lafl previous_head = let open Lwt_result_syntax in match history_mode chain_store with | Archive -> return_unit | Full _ | Rolling _ -> let* previous_head_metadata = Block.get_block_metadata chain_store previous_head in if not (Int32.equal new_head_lafl (Block.last_allowed_fork_level previous_head_metadata)) then let block_store = chain_store.block_store in Block_store.split_context block_store new_head_lafl else return_unit let set_head chain_store new_head = let open Lwt_result_syntax in Shared.update_with chain_store.chain_state (fun chain_state -> (* The merge cannot finish until we release the lock on the chain state so its status cannot change while this function is executed. *) (* Also check the status to be extra-safe *) let*! store_status = Block_store.status chain_store.block_store in let* is_merge_ongoing = match Block_store.get_merge_status chain_store.block_store with | Merge_failed errs -> (* If the merge has failed, notify in the logs but don't trigger any merge. *) let*! () = Store_events.(emit notify_merge_error errs) in (* We mark the merge as on-going to prevent the merge from being triggered and to update on-disk values. *) return_true | Not_running when store_status <> Idle -> (* Degenerate case, do the same as the Merge_failed case *) let*! () = Store_events.(emit notify_merge_error []) in return_true | Not_running -> return_false | Running -> return_true in let previous_head = chain_state.current_head in let*! checkpoint = Stored_data.get chain_state.checkpoint_data in let new_head_descr = Block.descriptor new_head in (* Check that the new_head is consistent with the checkpoint *) let* () = fail_unless Compare.Int32.(Block.level new_head >= snd checkpoint) (Invalid_head_switch {checkpoint_level = snd checkpoint; given_head = new_head_descr}) in (* Check that its predecessor exists and has metadata *) let predecessor = Block.predecessor new_head in let* new_head_metadata = trace Bad_head_invariant (let* pred_block = Block.read_block chain_store predecessor in (* check that prededecessor's block metadata are available *) let* _pred_head_metadata = Block.get_block_metadata chain_store pred_block in Block.get_block_metadata chain_store new_head) in let*! target = Stored_data.get chain_state.target_data in let new_head_lafl = Block.last_allowed_fork_level new_head_metadata in let* () = may_split_context chain_store new_head_lafl previous_head in let*! cementing_highwatermark = locked_determine_cementing_highwatermark chain_store chain_state new_head_lafl in (* This write call will initialize the cementing highwatermark when it is not yet set or do nothing otherwise. *) let* () = locked_may_update_cementing_highwatermark chain_state cementing_highwatermark in let*! lafl_block_opt = Block.locked_read_block_by_level_opt chain_store new_head new_head_lafl in let* new_checkpoint, new_target = match lafl_block_opt with | None -> (* This case may occur when importing a rolling snapshot where the lafl block is not known. We may use the checkpoint instead. *) return (checkpoint, target) | Some lafl_block -> may_update_checkpoint_and_target chain_store ~new_head:new_head_descr ~new_head_lafl:(Block.descriptor lafl_block) ~checkpoint ~target in let should_merge = (* Make sure that the previous merge is completed before starting a new merge. If the lock on the chain_state is retained, the merge thread will never be able to complete. *) (not is_merge_ongoing) && match cementing_highwatermark with | None -> (* Do not merge if the cementing highwatermark is not set. *) false | Some cementing_highwatermark -> Compare.Int32.(new_head_lafl > cementing_highwatermark) in let* new_cementing_highwatermark = if should_merge then let*! b = try_lock_for_write chain_store.lockfile in match b with | false -> (* Delay the merge until the lock is available *) return cementing_highwatermark | true -> (* Lock on lockfile is now taken *) let finalizer new_highest_cemented_level = let* () = merge_finalizer chain_store new_highest_cemented_level in let*! () = may_unlock chain_store.lockfile in return_unit in let on_error errs = (* Release the lockfile *) let*! () = may_unlock chain_store.lockfile in Lwt.return (Error errs) in (* Notes: - The lock will be released when the merge terminates. i.e. in [finalizer] or in [on_error]. - The heavy-work of this function is asynchronously done so this call is expected to return quickly. *) let* () = Block_store.merge_stores chain_store.block_store ~on_error ~finalizer ~history_mode:(history_mode chain_store) ~new_head ~new_head_metadata ~cementing_highwatermark: (WithExceptions.Option.get ~loc:__LOC__ cementing_highwatermark) in (* The new memory highwatermark is new_head_lafl, the disk value will be updated after the merge completion. *) return (Some new_head_lafl) else return cementing_highwatermark in let*! new_checkpoint = match new_cementing_highwatermark with | None -> Lwt.return new_checkpoint | Some new_cementing_highwatermark -> ( if Compare.Int32.( snd new_checkpoint >= new_cementing_highwatermark) then Lwt.return new_checkpoint else let*! o = read_ancestor_hash_by_level chain_store new_head new_cementing_highwatermark in match o with | None -> Lwt.return new_checkpoint | Some h -> Lwt.return (h, new_cementing_highwatermark)) in let* () = if Compare.Int32.(snd new_checkpoint > snd checkpoint) then (* Remove potentially outdated invalid blocks if the checkpoint changed *) let* () = Stored_data.update_with chain_state.invalid_blocks_data (fun invalid_blocks -> Lwt.return (Block_hash.Map.filter (fun _k {level; _} -> level > snd new_checkpoint) invalid_blocks)) in write_checkpoint chain_state new_checkpoint else return_unit in (* Update values on disk but not the cementing highwatermark which will be updated by the merge finalizer. *) let* () = Stored_data.write chain_state.current_head_data new_head_descr in let* () = Stored_data.write chain_state.target_data new_target in (* Update live_data *) let*! live_blocks, live_operations = locked_compute_live_blocks ~update_cache:true chain_store chain_state new_head new_head_metadata in let new_chain_state = { chain_state with live_blocks; live_operations; current_head = new_head; } in let*! () = Store_events.(emit set_head) new_head_descr in return (Some new_chain_state, previous_head)) let set_target chain_store new_target = let open Lwt_result_syntax in let*! () = Block_store.await_merging chain_store.block_store in Shared.use chain_store.chain_state (fun chain_state -> let*! checkpoint = Stored_data.get chain_state.checkpoint_data in if Compare.Int32.(snd checkpoint > snd new_target) then let*! b = is_ancestor chain_store ~head:checkpoint ~ancestor:new_target in match b with | true -> return_unit | false -> tzfail (Cannot_set_target new_target) else (* new_target > checkpoint *) let*! b = Block.is_known_valid chain_store (fst new_target) in match b with | false -> ( let*! b = Block.locked_is_known_invalid chain_state (fst new_target) in match b with | true -> tzfail (Cannot_set_target new_target) | false -> (* unknown block => new_target > current_head *) (* Write future-block as target, [set_head] will update it correctly *) let* () = Stored_data.write chain_state.target_data (Some new_target) in let*! () = Store_events.(emit set_target) new_target in return_unit) | true -> trace (Cannot_set_target new_target) (* Do not store the target but update the chain data according to the following cases: 1. Target is below current_head; 2. Target has no head as ancestor: the new_target becomes the head. *) (let*! current_head_descr = Stored_data.get chain_state.current_head_data in let*! is_target_an_ancestor_of_current_head = is_ancestor chain_store ~head:current_head_descr ~ancestor:new_target in let* new_current_head, new_checkpoint = if is_target_an_ancestor_of_current_head then return (current_head_descr, new_target) else let* target_block = Block.read_block chain_store (fst new_target) in return (Block.descriptor target_block, new_target) in let* () = Stored_data.write chain_state.current_head_data new_current_head in let* () = Stored_data.write chain_state.checkpoint_data new_checkpoint in Stored_data.write chain_state.target_data None)) let is_acceptable_block chain_store block_descr = Shared.use chain_store.chain_state (fun chain_state -> locked_is_acceptable_block chain_state block_descr) (* Create / Load / Close *) let create_testchain_genesis_block ~genesis_hash ~genesis_header = let header = genesis_header in let contents = { Block_repr.header; operations = []; block_metadata_hash = None; operations_metadata_hashes = None; } in let metadata = Some { Block_repr.message = Some "Genesis"; max_operations_ttl = 0; last_allowed_fork_level = genesis_header.shell.level; block_metadata = Bytes.create 0; operations_metadata = []; } in {Block_repr.hash = genesis_hash; contents; metadata} let create_chain_state ?target ~genesis_block ~genesis_protocol chain_dir = let open Lwt_result_syntax in let genesis_proto_level = Block_repr.proto_level genesis_block in let ((_, genesis_level) as genesis_descr) = Block_repr.descriptor genesis_block in let cementing_highwatermark = Option.fold ~none:0l ~some:(fun metadata -> Block.last_allowed_fork_level metadata) (Block_repr.metadata genesis_block) in let activation_block = genesis_descr in let* expect_predecessor_context = let open Lwt_result_syntax in let* (module Proto) = Registered_protocol.get_result genesis_protocol in return (Proto.expected_context_hash = Predecessor_resulting_context) in let* protocol_levels_data = Stored_data.init (Naming.protocol_levels_file chain_dir) ~initial_data: Protocol_levels.( add genesis_proto_level { protocol = genesis_protocol; activation_block; expect_predecessor_context; } empty) in let* current_head_data = Stored_data.init (Naming.current_head_file chain_dir) ~initial_data:genesis_descr in let* cementing_highwatermark_data = Stored_data.init (Naming.cementing_highwatermark_file chain_dir) ~initial_data:(Some cementing_highwatermark) in let* checkpoint_data = Stored_data.init (Naming.checkpoint_file chain_dir) ~initial_data:(genesis_block.hash, genesis_level) in let* target_data = Stored_data.init (Naming.target_file chain_dir) ~initial_data:target in let* invalid_blocks_data = Stored_data.init (Naming.invalid_blocks_file chain_dir) ~initial_data:Block_hash.Map.empty in let* forked_chains_data = Stored_data.init (Naming.forked_chains_file chain_dir) ~initial_data:Chain_id.Map.empty in let current_head = genesis_block in let active_testchain = None in let mempool = Mempool.empty in let live_blocks = Block_hash.Set.singleton genesis_block.hash in let live_operations = Operation_hash.Set.empty in let live_data_cache = None in let validated_blocks = Block_lru_cache.create 10 in return { current_head_data; cementing_highwatermark_data; target_data; checkpoint_data; protocol_levels_data; invalid_blocks_data; forked_chains_data; active_testchain; current_head; mempool; live_blocks; live_operations; live_data_cache; validated_blocks; } (* In some case, when a merge was interrupted, the highest cemented block level might be higher than the cementing highwatermark. When this case occurs, we trust the cemented store and adapt our cementing_highwatermark to it. *) let may_update_cementing_highwatermark_data block_store cementing_highwatermark_data = let open Lwt_syntax in let* cementing_highwatermark = Stored_data.get cementing_highwatermark_data in let cemented_store = Block_store.cemented_block_store block_store in match ( Cemented_block_store.get_highest_cemented_level cemented_store, cementing_highwatermark ) with | None, (Some _ | None) -> return_ok_unit | Some highest_cemented_level, None -> (* This case only happens after the store has been imported from a snapshot. *) Stored_data.write cementing_highwatermark_data (Some highest_cemented_level) | Some highest_cemented_level, Some cementing_highwatermark -> (* Invariant: the cemented blocks are always correct *) if Compare.Int32.(highest_cemented_level > cementing_highwatermark) then Stored_data.write cementing_highwatermark_data (Some highest_cemented_level) else return_ok_unit (* TODO add integrity check to ensure that files are present? *) (* Files are expected to be present *) let load_chain_state chain_dir block_store = let open Lwt_result_syntax in let* protocol_levels_data = Stored_data.load (Naming.protocol_levels_file chain_dir) in let* current_head_data = Stored_data.load (Naming.current_head_file chain_dir) in let* cementing_highwatermark_data = Stored_data.load (Naming.cementing_highwatermark_file chain_dir) in let* () = may_update_cementing_highwatermark_data block_store cementing_highwatermark_data in let* checkpoint_data = Stored_data.load (Naming.checkpoint_file chain_dir) in let*! _, checkpoint_level = Stored_data.get checkpoint_data in Prometheus.Gauge.set Store_metrics.metrics.checkpoint_level (Int32.to_float checkpoint_level) ; let* target_data = Stored_data.load (Naming.target_file chain_dir) in let* invalid_blocks_data = Stored_data.load (Naming.invalid_blocks_file chain_dir) in let* forked_chains_data = Stored_data.load (Naming.forked_chains_file chain_dir) in let*! current_head_hash, _ = Stored_data.get current_head_data in let* o = Block_store.read_block ~read_metadata:true block_store (Block (current_head_hash, 0)) in match o with | None -> failwith "load_store: cannot read head" | Some current_head -> let active_testchain = None in let mempool = Mempool.empty in let live_blocks = Block_hash.Set.empty in let live_operations = Operation_hash.Set.empty in let live_data_cache = None in let validated_blocks = Block_lru_cache.create 10 in return { current_head_data; cementing_highwatermark_data; target_data; checkpoint_data; protocol_levels_data; invalid_blocks_data; forked_chains_data; current_head; active_testchain; mempool; live_blocks; live_operations; live_data_cache; validated_blocks; } let create_chain_store ?block_cache_limit global_store chain_dir ?target ~chain_id ?(expiration = None) ?genesis_block ~genesis ~genesis_context history_mode = let open Lwt_result_syntax in (* Chain directory *) let genesis_block = match genesis_block with | None -> Block_repr.create_genesis_block ~genesis genesis_context | Some genesis_block -> genesis_block in (* Block_store.create also stores genesis *) let* block_store = Block_store.create ?block_cache_limit chain_dir ~genesis_block in let chain_config = {history_mode; genesis; expiration} in let* () = Stored_data.write_file (Naming.chain_config_file chain_dir) chain_config in let* chain_state = create_chain_state chain_dir ?target ~genesis_block ~genesis_protocol:genesis.Genesis.protocol in let* genesis_block_data = Stored_data.init (Naming.genesis_block_file chain_dir) ~initial_data:genesis_block in let chain_state = Shared.create chain_state in let block_watcher = Lwt_watcher.create_input () in let validated_block_watcher = Lwt_watcher.create_input () in let block_rpc_directories = Protocol_hash.Table.create 7 in let* lockfile = create_lockfile chain_dir in let chain_store : chain_store = { global_store; chain_id; chain_dir; chain_config; chain_state; genesis_block_data; block_store; block_watcher; validated_block_watcher; block_rpc_directories; lockfile; } in return chain_store let load_chain_store ?block_cache_limit global_store chain_dir ~chain_id ~readonly = let open Lwt_result_syntax in let* chain_config_data = Stored_data.load (Naming.chain_config_file chain_dir) in let*! chain_config = Stored_data.get chain_config_data in let* genesis_block_data = Stored_data.load (Naming.genesis_block_file chain_dir) in let*! genesis_block = Stored_data.get genesis_block_data in let* block_store = Block_store.load ?block_cache_limit chain_dir ~genesis_block ~readonly in let* chain_state = load_chain_state chain_dir block_store in let chain_state = Shared.create chain_state in let block_watcher = Lwt_watcher.create_input () in let validated_block_watcher = Lwt_watcher.create_input () in let block_rpc_directories = Protocol_hash.Table.create 7 in let* lockfile = create_lockfile chain_dir in let chain_store = { global_store; chain_id; chain_dir; chain_config; (* let the state handle the test chain initialization *) block_store; chain_state; genesis_block_data; block_watcher; validated_block_watcher; block_rpc_directories; lockfile; } in (* Also initalize the live blocks *) let*! head = current_head chain_store in let*! o = Block.get_block_metadata_opt chain_store head in match o with | None -> tzfail Inconsistent_chain_store | Some metadata -> Shared.update_with chain_state (fun chain_state -> let*! live_blocks, live_operations = locked_compute_live_blocks ~force:true ~update_cache:true chain_store chain_state head metadata in return (Some {chain_state with live_blocks; live_operations}, chain_store)) (* Recursively closes all test chain stores *) let close_chain_store chain_store = let open Lwt_syntax in Lwt_watcher.shutdown_input chain_store.block_watcher ; let rec loop = function | {block_store; lockfile; chain_state; _} -> (* Do not lock the chain_state before closing the block_store, it would prevent an eventual merge from finishing *) let* () = Block_store.close block_store in Shared.locked_use chain_state (fun {active_testchain; _} -> let* () = match active_testchain with | Some {testchain_store; _} -> loop testchain_store | None -> Lwt.return_unit in let* () = may_unlock chain_store.lockfile in let* _ = Lwt_utils_unix.safe_close lockfile in Lwt.return_unit) in loop chain_store (* Test chain *) let testchain chain_store = Shared.use chain_store.chain_state (fun {active_testchain; _} -> Lwt.return active_testchain) let testchain_forked_block {forked_block; _} = forked_block let testchain_store {testchain_store; _} = testchain_store let locked_load_testchain chain_store chain_state ~chain_id = let open Lwt_result_syntax in let {forked_chains_data; active_testchain; _} = chain_state in match active_testchain with | Some testchain when Chain_id.equal chain_id testchain.testchain_store.chain_id -> return_some testchain | _ -> ( let chain_dir = chain_store.chain_dir in let testchains_dir = Naming.testchains_dir chain_dir in let testchain_dir = Naming.chain_dir testchains_dir chain_id in let*! forked_chains = Stored_data.get forked_chains_data in match Chain_id.Map.find chain_id forked_chains with | None -> return_none | Some forked_block -> let* testchain_store = load_chain_store chain_store.global_store testchain_dir ~chain_id ~readonly:false in let testchain = {forked_block; testchain_store} in return_some testchain) let fork_testchain chain_store ~testchain_id ~forked_block ~genesis_hash ~genesis_header ~test_protocol ~expiration = let open Lwt_result_syntax in let forked_block_hash = Block.hash forked_block in let genesis_hash' = Context.compute_testchain_genesis forked_block_hash in assert (Block_hash.equal genesis_hash genesis_hash') ; let* () = fail_unless chain_store.global_store.allow_testchains Fork_testchain_not_allowed in Shared.update_with chain_store.chain_state (fun ({active_testchain; _} as chain_state) -> match active_testchain with | Some ({testchain_store; forked_block} as testchain) -> (* Already forked and active *) if Chain_id.equal testchain_store.chain_id testchain_id then ( assert (Block_hash.equal forked_block forked_block_hash) ; return (None, testchain)) else tzfail (Cannot_fork_testchain testchain_id) | None -> let chain_dir = chain_store.chain_dir in let testchains_dir = Naming.testchains_dir chain_dir in let testchain_dir = Naming.chain_dir testchains_dir testchain_id in let testchain_dir_path = Naming.dir_path testchains_dir in let*! valid_testchain_dir_path = Lwt_utils_unix.dir_exists testchain_dir_path in if valid_testchain_dir_path then let* o = locked_load_testchain chain_store chain_state ~chain_id:testchain_id in match o with | None -> tzfail (Cannot_load_testchain testchain_dir_path) | Some testchain -> return ( Some {chain_state with active_testchain = Some testchain}, testchain ) else (* Inherit history mode *) let history_mode = history_mode chain_store in let genesis_block = create_testchain_genesis_block ~genesis_hash ~genesis_header in let genesis = { Genesis.block = genesis_hash; time = Block.timestamp genesis_block; protocol = test_protocol; } in let genesis_context = Block.context_hash genesis_block in let* testchain_store = create_chain_store chain_store.global_store testchain_dir ~chain_id:testchain_id ~expiration:(Some expiration) ~genesis_block ~genesis ~genesis_context history_mode in let* () = Stored_data.update_with chain_state.forked_chains_data (fun forked_chains -> Lwt.return (Chain_id.Map.add testchain_id forked_block_hash forked_chains)) in let*! () = Store_events.(emit fork_testchain) ( testchain_id, test_protocol, genesis_hash, Block.descriptor forked_block ) in let testchain = {forked_block = forked_block_hash; testchain_store} in return ( Some {chain_state with active_testchain = Some testchain}, testchain )) (* Look for chain_store's testchains - does not look recursively *) let load_testchain chain_store ~chain_id = Shared.locked_use chain_store.chain_state (fun chain_state -> locked_load_testchain chain_store chain_state ~chain_id) (* TODO (later) Also garbage-collect testchains store/context. *) let shutdown_testchain chain_store = let open Lwt_syntax in Shared.update_with chain_store.chain_state (fun ({active_testchain; _} as chain_state) -> match active_testchain with | Some testchain -> let* () = close_chain_store testchain.testchain_store in return_ok (Some {chain_state with active_testchain = None}, ()) | None -> return_ok (None, ())) (* Protocols *) let find_protocol_info chain_store ~protocol_level = find_protocol_info chain_store ~protocol_level let find_activation_block chain_store ~protocol_level = find_activation_block chain_store ~protocol_level let find_protocol chain_store ~protocol_level = find_protocol chain_store ~protocol_level let expect_predecessor_context_hash chain_store ~protocol_level = expect_predecessor_context_hash chain_store ~protocol_level let set_protocol_level chain_store ~protocol_level (block, protocol_hash, expect_predecessor_context) = let open Lwt_result_syntax in Shared.locked_use chain_store.chain_state (fun {protocol_levels_data; _} -> let* () = Stored_data.update_with protocol_levels_data (fun protocol_levels -> let activation_block = Block.descriptor block in Lwt.return Protocol_levels.( add protocol_level { protocol = protocol_hash; activation_block; expect_predecessor_context; } protocol_levels)) in let*! () = Store_events.( emit update_protocol_table ( protocol_hash, protocol_level, Block.hash block, Block.level block )) in return_unit) let may_update_protocol_level chain_store ?pred ?protocol_level ~expect_predecessor_context (block, protocol_hash) = let open Lwt_result_syntax in let* pred = match pred with | None -> Block.read_predecessor chain_store block | Some pred -> return pred in let prev_proto_level = Block.proto_level pred in let protocol_level = Option.value ~default:(Block.proto_level block) protocol_level in if Compare.Int.(prev_proto_level < protocol_level) then let*! o = find_activation_block chain_store ~protocol_level in match o with | Some (bh, _) -> if Block_hash.(bh <> Block.hash block) then set_protocol_level chain_store ~protocol_level (block, protocol_hash, expect_predecessor_context) else return_unit | None -> set_protocol_level chain_store ~protocol_level (block, protocol_hash, expect_predecessor_context) else return_unit let may_update_ancestor_protocol_level chain_store ~head = let open Lwt_result_syntax in let head_proto_level = Block.proto_level head in let*! o = find_protocol_info chain_store ~protocol_level:head_proto_level in match o with | None -> (* If no activation block is registered for a given protocol level, we search for the activation block. This activation block is expected to be found above the savepoint. If not, the savepoint will be considered as the activation block. *) let*! _, savepoint_level = savepoint chain_store in let rec find_activation_block lower_bound block = let*! pred = Block.read_predecessor_opt chain_store block in match pred with | None -> return block | Some pred -> let pred_proto_level = Block.proto_level pred in if Compare.Int.(pred_proto_level <= Int.pred head_proto_level) then return block else if Compare.Int32.(Block.level pred <= lower_bound) then return pred else find_activation_block lower_bound pred in let* activation_block = find_activation_block savepoint_level head in let protocol_level = Block.proto_level head in (* The head must have an associated context stored. *) let* context = Block.context chain_store head in let*! activated_protocol = Context_ops.get_protocol context in let* (module Proto) = Registered_protocol.get_result activated_protocol in let expected_context_hash = Proto.expected_context_hash = Predecessor_resulting_context in set_protocol_level chain_store ~protocol_level (activation_block, activated_protocol, expected_context_hash) | Some {Protocol_levels.protocol; activation_block; expect_predecessor_context} -> ( let activation_block_level = snd activation_block in let*! _, savepoint_level = savepoint chain_store in if Compare.Int32.(savepoint_level > activation_block_level) then (* the block is too far in the past *) return_unit else let*! b = is_ancestor chain_store ~head:(Block.descriptor head) ~ancestor:activation_block in match b with | true -> (* nothing to do *) return_unit | false -> ( let distance = Int32.(sub (Block.level head) activation_block_level |> to_int) in let*! o = Block.read_block_opt chain_store ~distance (Block.hash head) in match o with | None -> return_unit | Some ancestor -> may_update_protocol_level chain_store (ancestor, protocol) ~expect_predecessor_context)) let all_protocol_levels chain_store = Shared.use chain_store.chain_state (fun {protocol_levels_data; _} -> Stored_data.get protocol_levels_data) let validated_watcher chain_store = Lwt_watcher.create_stream chain_store.validated_block_watcher let watcher chain_store = Lwt_watcher.create_stream chain_store.block_watcher let get_rpc_directory chain_store block = let open Lwt_syntax in let* o = Block.read_predecessor_opt chain_store block in match o with | None -> Lwt.return_none (* genesis *) | Some pred when Block_hash.equal (Block.hash pred) (Block.hash block) -> Lwt.return_none (* genesis *) | Some pred -> ( let* _, save_point_level = savepoint chain_store in let* protocol = if Compare.Int32.(Block.level pred < save_point_level) then let* o = find_protocol_info chain_store ~protocol_level:(Block.proto_level pred) in match o with | Some {Protocol_levels.protocol; _} -> Lwt.return protocol | None -> Lwt.fail Not_found else Block.protocol_hash_exn chain_store pred in match Protocol_hash.Table.find chain_store.block_rpc_directories protocol with | None -> Lwt.return_none | Some map -> let* next_protocol = Block.protocol_hash_exn chain_store block in Lwt.return (Protocol_hash.Map.find next_protocol map)) let set_rpc_directory chain_store ~protocol_hash ~next_protocol_hash dir = let map = Option.value ~default:Protocol_hash.Map.empty (Protocol_hash.Table.find chain_store.block_rpc_directories protocol_hash) in Protocol_hash.Table.replace chain_store.block_rpc_directories protocol_hash (Protocol_hash.Map.add next_protocol_hash dir map) ; Lwt.return_unit let register_gc_callback chain_store callback = Block_store.register_gc_callback chain_store.block_store callback let register_split_callback chain_store callback = Block_store.register_split_callback chain_store.block_store callback end module Protocol = struct let all {protocol_store; _} = Protocol_store.all protocol_store let store {protocol_store; protocol_watcher; _} protocol_hash protocol = let open Lwt_syntax in let* o = Protocol_store.store protocol_store protocol_hash protocol in match o with | None -> Lwt.return_none | p -> Lwt_watcher.notify protocol_watcher protocol_hash ; Lwt.return p let store_raw {protocol_store; protocol_watcher; _} protocol_hash raw_protocol = let open Lwt_syntax in let* o = Protocol_store.raw_store protocol_store protocol_hash raw_protocol in match o with | None -> Lwt.return_none | p -> Lwt_watcher.notify protocol_watcher protocol_hash ; Lwt.return p let read {protocol_store; _} protocol_hash = Protocol_store.read protocol_store protocol_hash let mem {protocol_store; _} protocol_hash = Protocol_store.mem protocol_store protocol_hash let protocol_watcher {protocol_watcher; _} = Lwt_watcher.create_stream protocol_watcher end let create_store ?block_cache_limit ~context_index ~chain_id ~genesis ~genesis_context ?(history_mode = History_mode.default) ~allow_testchains store_dir = let open Lwt_result_syntax in let store_dir_path = Naming.dir_path store_dir in let*! () = Lwt_utils_unix.create_dir store_dir_path in let*! protocol_store = Protocol_store.init store_dir in let protocol_watcher = Lwt_watcher.create_input () in let global_block_watcher = Lwt_watcher.create_input () in let chain_dir = Naming.chain_dir store_dir chain_id in let global_store = { store_dir; context_index; main_chain_store = None; protocol_store; allow_testchains; protocol_watcher; global_block_watcher; } in let* main_chain_store = Chain.create_chain_store ?block_cache_limit global_store chain_dir ~chain_id ~expiration:None ~genesis ~genesis_context history_mode in global_store.main_chain_store <- Some main_chain_store ; return global_store let load_store ?history_mode ?block_cache_limit store_dir ~context_index ~genesis ~chain_id ~allow_testchains ~readonly () = let open Lwt_result_syntax in let chain_dir = Naming.chain_dir store_dir chain_id in let* () = protect (fun () -> let* () = Consistency.check_consistency chain_dir genesis in let*! () = Store_events.(emit store_is_consistent ()) in return_unit) ~on_error:(function | err when List.exists (function | Store_errors.Corrupted_store _ -> true | _ -> false) err || readonly -> (* Corrupted_store errors cannot be fixed automatically. The store is irremediably corrupted. If the store is in readonly, we are not allowed to write in it. *) Lwt.return_error err | err -> let*! () = Store_events.(emit inconsistent_store err) in let* () = Consistency.fix_consistency chain_dir context_index genesis ?history_mode in let*! () = Store_events.(emit store_was_fixed ()) in return_unit) in let*! protocol_store = Protocol_store.init store_dir in let protocol_watcher = Lwt_watcher.create_input () in let global_block_watcher = Lwt_watcher.create_input () in let global_store = { store_dir; context_index = Context_ops.Disk_index context_index; main_chain_store = None; protocol_store; allow_testchains; protocol_watcher; global_block_watcher; } in let* main_chain_store = Chain.load_chain_store ?block_cache_limit global_store chain_dir ~chain_id ~readonly in let stored_genesis = Chain.genesis main_chain_store in let* () = fail_unless (Block_hash.equal genesis.Genesis.block stored_genesis.block) (Inconsistent_genesis {expected = stored_genesis.block; got = genesis.block}) in global_store.main_chain_store <- Some main_chain_store ; return global_store let main_chain_store store = WithExceptions.Option.get ~loc:__LOC__ store.main_chain_store (* Checks that the history mode stored in the store's configuration file (if any) is consistent with the one given (if any) to initialize the store. *) let check_history_mode_consistency chain_dir history_mode = let open Lwt_result_syntax in match history_mode with | None -> (* No hint, no need to check. *) return_unit | Some history_mode -> let chain_config_path = Naming.chain_config_file chain_dir in let*! chain_config_path_exists = Lwt_unix.file_exists (Naming.encoded_file_path chain_config_path) in if chain_config_path_exists then let* chain_config_data = Stored_data.load chain_config_path in let*! chain_config = Stored_data.get chain_config_data in let stored_history_mode = chain_config.history_mode in fail_unless (History_mode.equal history_mode stored_history_mode) (Cannot_switch_history_mode {previous_mode = stored_history_mode; next_mode = history_mode}) else (* Store is not yet initialized. *) return_unit let init ?patch_context ?commit_genesis ?history_mode ?(readonly = false) ?block_cache_limit ~store_dir ~context_dir ~allow_testchains genesis = let open Lwt_result_syntax in let patch_context = Option.map (fun f ctxt -> let open Tezos_shell_context in let ctxt = Shell_context.wrap_disk_context ctxt in let+ ctxt = f ctxt in Shell_context.unwrap_disk_context ctxt) patch_context in let store_dir = Naming.store_dir ~dir_path:store_dir in let chain_id = Chain_id.of_block_hash genesis.Genesis.block in let chain_dir = Naming.chain_dir store_dir chain_id in let* () = check_history_mode_consistency chain_dir history_mode in let*! context_index, commit_genesis = match commit_genesis with | Some commit_genesis -> let*! context_index = Context.init ~readonly:true ?patch_context context_dir in Lwt.return (context_index, commit_genesis) | None -> let*! context_index = Context.init ~readonly ?patch_context context_dir in let commit_genesis ~chain_id = Context.commit_genesis context_index ~chain_id ~time:genesis.time ~protocol:genesis.protocol in Lwt.return (context_index, commit_genesis) in let chain_dir_path = Naming.dir_path chain_dir in let*! valid_chain_dir_path = Lwt_utils_unix.dir_exists chain_dir_path in (* FIXME should be checked with the store's consistency check (along with load_chain_state checks) *) let* store = if valid_chain_dir_path then load_store ?history_mode ?block_cache_limit store_dir ~context_index ~genesis ~chain_id ~allow_testchains ~readonly () else (* Fresh store *) let* genesis_context = commit_genesis ~chain_id in create_store ?block_cache_limit store_dir ~context_index:(Context_ops.Disk_index context_index) ~chain_id ~genesis ~genesis_context ?history_mode ~allow_testchains in let main_chain_store = main_chain_store store in (* Emit a warning if context GC is not allowed. *) let*! () = if (not (Chain.history_mode main_chain_store = Archive)) && not (Context.is_gc_allowed context_index) then Store_events.(emit context_gc_is_not_allowed) () else Lwt.return_unit in let invalid_blocks_collector () = let*! invalid_blocks = Shared.use main_chain_store.chain_state (fun state -> Stored_data.get state.invalid_blocks_data) in Lwt.return @@ float_of_int @@ Block_hash.Map.cardinal invalid_blocks in Store_metrics.set_invalid_blocks_collector invalid_blocks_collector ; return store let close_store global_store = let open Lwt_syntax in Lwt_watcher.shutdown_input global_store.protocol_watcher ; Lwt_watcher.shutdown_input global_store.global_block_watcher ; let main_chain_store = WithExceptions.Option.get ~loc:__LOC__ global_store.main_chain_store in let* () = Chain.close_chain_store main_chain_store in Context_ops.close global_store.context_index let may_switch_history_mode ~store_dir ~context_dir genesis ~new_history_mode = let open Lwt_result_syntax in let store_dir = Naming.store_dir ~dir_path:store_dir in let chain_id = Chain_id.of_block_hash genesis.Genesis.block in let chain_dir = Naming.chain_dir store_dir chain_id in let chain_dir_path = Naming.dir_path chain_dir in let*! valid_chain_dir_path = Lwt_utils_unix.dir_exists chain_dir_path in if not valid_chain_dir_path then (* Nothing to do, the store is not set *) return_unit else let*! context_index = Context.init ~readonly:false context_dir in let* store = load_store store_dir ~context_index ~genesis ~chain_id ~allow_testchains:true ~readonly:false () in let chain_store = main_chain_store store in Lwt.finalize (fun () -> let block_store = chain_store.block_store in let*! current_head = Chain.current_head chain_store in let previous_history_mode = Chain.history_mode chain_store in if History_mode.equal previous_history_mode new_history_mode then return_unit else let is_valid_switch = match (previous_history_mode, new_history_mode) with | (Full n, Full m | Rolling n, Rolling m) when n = m -> false | Archive, Full _ | Archive, Rolling _ | Full _, Full _ | Full _, Rolling _ | Rolling _, Rolling _ -> true | _ -> (* The remaining combinations are invalid switches *) false in let* () = fail_unless is_valid_switch (Cannot_switch_history_mode { previous_mode = previous_history_mode; next_mode = new_history_mode; }) in let*! () = lock_for_write chain_store.lockfile in let* () = Block_store.switch_history_mode block_store ~current_head ~previous_history_mode ~new_history_mode in let* () = Chain.set_history_mode chain_store new_history_mode in let*! () = Store_events.( emit switch_history_mode (previous_history_mode, new_history_mode)) in return_unit) (fun () -> let*! () = unlock chain_store.lockfile in close_store store) let get_chain_store store chain_id = let chain_store = main_chain_store store in let rec loop chain_store = let open Lwt_result_syntax in if Chain_id.equal (Chain.chain_id chain_store) chain_id then return chain_store else Shared.use chain_store.chain_state (fun {active_testchain; _} -> match active_testchain with | None -> tzfail (Validation_errors.Unknown_chain chain_id) | Some {testchain_store; _} -> loop testchain_store) in loop chain_store let get_chain_store_opt store chain_id = let open Lwt_syntax in let* r = get_chain_store store chain_id in match r with | Ok chain_store -> Lwt.return_some chain_store | Error _ -> Lwt.return_none let all_chain_stores store = let chain_store = main_chain_store store in let rec loop acc chain_store = let acc = chain_store :: acc in Shared.use chain_store.chain_state (fun {active_testchain; _} -> match active_testchain with | None -> Lwt.return acc | Some {testchain_store; _} -> loop acc testchain_store) in loop [] chain_store let directory store = store.store_dir let context_index store = store.context_index let allow_testchains {allow_testchains; _} = allow_testchains let global_block_watcher {global_block_watcher; _} = Lwt_watcher.create_stream global_block_watcher let option_pp ~default pp fmt = function | None -> Format.fprintf fmt "%s" default | Some x -> Format.fprintf fmt "%a" pp x let rec make_pp_chain_store (chain_store : chain_store) = let open Lwt_syntax in let {chain_id; chain_dir; chain_config; chain_state; block_store; _} = chain_store in let chain_config_json = Data_encoding.Json.construct chain_config_encoding chain_config in let* ( current_head, cementing_highwatermark, target, checkpoint, caboose, savepoint, first_block_in_floating, merge_status, highest_cemented_level, lowest_cemented_level, protocol_levels_data, invalid_blocks_data, forked_chains_data, active_test_chain ) = Shared.locked_use chain_state (fun { current_head; cementing_highwatermark_data; target_data; checkpoint_data; protocol_levels_data; invalid_blocks_data; forked_chains_data; active_testchain; _; } -> let* cementing_highwatermark = Stored_data.get cementing_highwatermark_data in let* target = Stored_data.get target_data in let* checkpoint = Stored_data.get checkpoint_data in let* protocol_levels = Stored_data.get protocol_levels_data in let* invalid_blocks = Stored_data.get invalid_blocks_data in let* forked_chains = Stored_data.get forked_chains_data in let* savepoint = Block_store.savepoint block_store in let* caboose = Block_store.caboose block_store in let highest_cemented_level = Cemented_block_store.get_highest_cemented_level (Block_store.cemented_block_store block_store) in let lowest_cemented_level = Cemented_block_store.get_lowest_cemented_level (Block_store.cemented_block_store block_store) in let exception First of Block_repr.t in let* first_block_in_floating = Lwt.catch (fun () -> let find_store kind' = let floating_stores = Block_store.floating_block_stores block_store in List.find (fun floating_store -> Floating_block_store.(kind floating_store = kind')) floating_stores |> WithExceptions.Option.get ~loc:__LOC__ in let ro_store = find_store Floating_block_store.RO in let* _ = Floating_block_store.iter_s (fun block -> Lwt.fail (First block)) ro_store in let rw_store = find_store Floating_block_store.RW in let* _ = Floating_block_store.iter_s (fun block -> Lwt.fail (First block)) rw_store in assert false) (function | First b -> Lwt.return b | _exn -> (* There should always be a block in the floatings stores *) assert false) in Lwt.return ( current_head, cementing_highwatermark, target, checkpoint, caboose, savepoint, first_block_in_floating, Block_store.get_merge_status block_store, highest_cemented_level, lowest_cemented_level, protocol_levels, invalid_blocks, forked_chains, active_testchain )) in let pp_proto_info fmt (proto_level, {Protocol_levels.protocol; activation_block; _}) = Format.fprintf fmt "proto level: %d, transition block: %a, protocol: %a" proto_level pp_block_descriptor activation_block Protocol_hash.pp protocol in let make_pp_test_chain_opt = function | None -> Lwt.return (fun fmt () -> Format.fprintf fmt "n/a") | Some {testchain_store; _} -> let* pp = make_pp_chain_store testchain_store in Lwt.return (fun fmt () -> Format.fprintf fmt "@ %a" pp ()) in let* pp_testchain_opt = make_pp_test_chain_opt active_test_chain in Lwt.return (fun fmt () -> Format.fprintf fmt "@[<v 2>chain id: %a@ chain directory: %s@ chain config: %a@ current \ head: %a@ checkpoint: %a@ cementing highwatermark: %a@ savepoint: %a@ \ caboose: %a@ first block in floating: %a@ interval of cemented \ blocks: [%a, %a]@ merge status: %a@ target: %a@ @[<v 2>protocol \ levels:@ %a@]@ @[<v 2>invalid blocks:@ %a@]@ @[<v 2>forked chains:@ \ %a@]@ @[<v 2>active testchain: %a@]@]" Chain_id.pp chain_id (Naming.dir_path chain_dir) Data_encoding.Json.pp chain_config_json (fun fmt block -> let metadata = WithExceptions.Option.get ~loc:__LOC__ (Block_repr.metadata block) in Format.fprintf fmt "%a (lafl: %ld) (max_op_ttl: %d)" pp_block_descriptor (Block.descriptor block) (Block.last_allowed_fork_level metadata) (Block.max_operations_ttl metadata)) current_head pp_block_descriptor checkpoint (fun fmt opt -> option_pp ~default:"n/a" (fun fmt i -> Format.fprintf fmt "%ld" i) fmt opt) cementing_highwatermark pp_block_descriptor savepoint pp_block_descriptor caboose pp_block_descriptor (Block.descriptor first_block_in_floating) (option_pp ~default:"n/a" (fun fmt i -> Format.fprintf fmt "%ld" i)) lowest_cemented_level (option_pp ~default:"n/a" (fun fmt i -> Format.fprintf fmt "%ld" i)) highest_cemented_level Block_store.pp_merge_status merge_status (option_pp ~default:"n/a" pp_block_descriptor) target (Format.pp_print_list ~pp_sep:Format.pp_print_cut pp_proto_info) (Protocol_levels.bindings protocol_levels_data) (Format.pp_print_list ~pp_sep:Format.pp_print_cut Block_hash.pp) (Block_hash.Map.bindings invalid_blocks_data |> List.map fst) (Format.pp_print_list ~pp_sep:Format.pp_print_cut (fun fmt (chain_id, block_hash) -> Format.fprintf fmt "testchain's chain id: %a, forked block: %a" Chain_id.pp chain_id Block_hash.pp block_hash)) (Chain_id.Map.bindings forked_chains_data) pp_testchain_opt ()) let make_pp_store (store : store) = let open Lwt_syntax in let {store_dir; allow_testchains; main_chain_store; _} = store in let* pp_testchain_store = make_pp_chain_store (WithExceptions.Option.get ~loc:__LOC__ main_chain_store) in Lwt.return (fun fmt () -> Format.fprintf fmt "@[<v 2>Store state:@ store directory: %s@ allow testchains: %b@ @[<v \ 2>main chain:@ %a@]@])" (Naming.dir_path store_dir) allow_testchains pp_testchain_store ()) let upgrade_protocol_levels ~chain_dir ~cleanups ~finalizers = let open Lwt_result_syntax in let cleanup ~tmp_protocol_levels_path ~protocol_levels_path = let*! exists = Lwt_unix.file_exists tmp_protocol_levels_path in if exists then Lwt_unix.rename tmp_protocol_levels_path protocol_levels_path else Lwt.return_unit in let protocol_levels_path = Naming.legacy_protocol_levels_file chain_dir |> Naming.encoded_file_path in let tmp_protocol_levels_path = protocol_levels_path ^ ".tmp" in let*! () = cleanup ~tmp_protocol_levels_path ~protocol_levels_path in let* legacy_protocol_levels_data = Stored_data.load (Naming.legacy_protocol_levels_file chain_dir) in let*! legacy_protocol_levels = Stored_data.get legacy_protocol_levels_data in let bindings = Protocol_levels.Legacy.bindings legacy_protocol_levels in let*! protocol_levels = List.fold_left_s (fun map ( level, (legacy_activation_block : Protocol_levels.Legacy.activation_block) ) -> let protocol_info = Protocol_levels. { protocol = legacy_activation_block.protocol; activation_block = legacy_activation_block.block; expect_predecessor_context = false (* the shell cannot have stored blocks that use the new semantics *); } in Lwt.return (Protocol_levels.add level protocol_info map)) Protocol_levels.empty bindings in cleanups := (fun () -> cleanup ~tmp_protocol_levels_path ~protocol_levels_path) :: !cleanups ; finalizers := (fun () -> let*! () = Lwt_unix.rename protocol_levels_path tmp_protocol_levels_path in let*! _unit_error = Stored_data.write_file (Naming.protocol_levels_file chain_dir) protocol_levels in let*! () = Lwt_unix.unlink tmp_protocol_levels_path in Lwt.return_unit) :: !finalizers ; return_unit let v_3_0_upgrade ~store_dir genesis = let open Lwt_result_syntax in (* Hypothesis: all present blocks were validated with the preexisting semantics *) let*! () = Store_events.(emit upgrade_store_started ()) in let cleanups : (unit -> unit Lwt.t) list ref = ref [] in let finalizers : (unit -> unit Lwt.t) list ref = ref [] in let chain_id = Chain_id.of_block_hash genesis.Genesis.block in let chain_dir = Naming.chain_dir (Naming.store_dir ~dir_path:store_dir) chain_id in protect ~on_error:(fun err -> let*! () = Store_events.(emit upgrade_store_failed) () in let*! () = List.iter_s (fun f -> f ()) !cleanups in Lwt.return_error err) (fun () -> let* () = let chain_dir_path = Naming.dir_path chain_dir in let*! chain_dir_exists = Lwt_unix.file_exists chain_dir_path in fail_unless chain_dir_exists (Cannot_find_chain_dir chain_dir_path) in let* () = upgrade_protocol_levels ~chain_dir ~cleanups ~finalizers in let* () = Block_store.v_3_0_upgrade chain_dir ~cleanups ~finalizers in let*! () = List.iter_s (fun f -> f ()) !finalizers in return_unit) (************ For testing and internal purposes only **************) module Unsafe = struct let repr_of_block b = b let block_of_repr b = b let get_block_store chain_store = chain_store.block_store let set_head chain_store new_head = let open Lwt_result_syntax in Shared.update_with chain_store.chain_state (fun chain_state -> let* () = Stored_data.write chain_state.current_head_data (Block.descriptor new_head) in return (Some {chain_state with current_head = new_head}, ())) let set_checkpoint chain_store new_checkpoint = Shared.use chain_store.chain_state (fun chain_state -> Stored_data.write chain_state.checkpoint_data new_checkpoint) let set_cementing_highwatermark chain_store new_cementing_highwatermark = Shared.use chain_store.chain_state (fun chain_state -> Stored_data.write chain_state.cementing_highwatermark_data new_cementing_highwatermark) let set_history_mode = Chain.set_history_mode let set_savepoint chain_store new_savepoint = Chain.unsafe_set_savepoint chain_store new_savepoint let set_caboose chain_store new_caboose = Chain.unsafe_set_caboose chain_store new_caboose let set_protocol_level chain_store ~protocol_level (b, ph, epc) = Chain.set_protocol_level chain_store ~protocol_level (b, ph, epc) let load_testchain = Chain.load_testchain let open_for_snapshot_export ~store_dir ~context_dir genesis ~(locked_f : chain_store -> 'a tzresult Lwt.t) = let open Lwt_result_syntax in let store_dir = Naming.store_dir ~dir_path:store_dir in let chain_id = Chain_id.of_block_hash genesis.Genesis.block in let chain_dir = Naming.chain_dir store_dir chain_id in let* lockfile = create_lockfile chain_dir in let*! () = lock_for_read lockfile in protect (fun () -> let*! context_index = Context.init ~readonly:true context_dir in let*! fd = Lwt_unix.openfile (Naming.gc_lockfile chain_dir |> Naming.file_path) [Unix.O_CREAT; O_RDWR; O_CLOEXEC; O_SYNC] 0o644 in let*! is_locked = Lwt.catch (fun () -> let*! () = Lwt_unix.lockf fd Unix.F_TEST 0o644 in Lwt.return_false) (fun (_ : exn) -> Lwt.return_true) in let*! () = Lwt.finalize (fun () -> if not is_locked then Lwt.return_unit else Animation.three_dots ~progress_display_mode:Auto ~msg: "The storage is locked by a context prunning. Waiting for \ it to finish before exporting the snapshot" @@ fun () -> Lwt_unix.lockf fd Unix.F_RLOCK 0o644) (fun () -> Lwt_unix.close fd) in let* store = load_store store_dir ~context_index ~genesis ~chain_id ~allow_testchains:false ~readonly:true () in let chain_store = main_chain_store store in Lwt.finalize (fun () -> locked_f chain_store) (fun () -> let*! () = may_unlock lockfile in let*! () = Lwt_unix.close lockfile in close_store store)) ~on_error:(fun errs -> let*! () = may_unlock lockfile in Lwt.return (Error errs)) let restore_from_snapshot ?(notify = fun () -> Lwt.return_unit) store_dir ~genesis ~genesis_context_hash ~floating_blocks_stream ~new_head_with_metadata ~new_head_resulting_context_hash ~predecessor_header ~protocol_levels ~history_mode = let open Lwt_result_syntax in let chain_id = Chain_id.of_block_hash genesis.Genesis.block in let chain_dir = Naming.chain_dir store_dir chain_id in let genesis_block = Block_repr.create_genesis_block ~genesis genesis_context_hash in let new_head_descr = ( Block_repr.hash new_head_with_metadata, Block_repr.level new_head_with_metadata ) in (* Write consistent stored data *) let* () = Stored_data.write_file (Naming.protocol_levels_file chain_dir) protocol_levels in let* () = Stored_data.write_file (Naming.current_head_file chain_dir) (Block.descriptor new_head_with_metadata) in (* Checkpoint is the new head *) let* () = Stored_data.write_file (Naming.checkpoint_file chain_dir) new_head_descr in (* Cementing highwatermark is set to None *) let* () = Stored_data.write_file (Naming.cementing_highwatermark_file chain_dir) None in let* () = Stored_data.write_file (Naming.target_file chain_dir) None in (* Savepoint is the head *) let* () = Stored_data.write_file (Naming.savepoint_file chain_dir) new_head_descr in (* Depending on the history mode, set the caboose properly *) let* caboose_descr = match history_mode with | History_mode.Archive | Full _ -> return (Block_repr.hash genesis_block, Block_repr.level genesis_block) | Rolling _ -> ( let*! o = Lwt_stream.peek floating_blocks_stream in match o with | None -> (* This should not happen. The floating store of a snapshot exported at highest_cemented_block + 1 should have a floating store populated with the cemented cycle. *) assert false | Some caboose -> ( match Block_repr.metadata new_head_with_metadata with | None -> assert false | Some metadata -> if Int32.sub (Block_repr.level new_head_with_metadata) (Int32.of_int metadata.max_operations_ttl) <= 0l then return (genesis.block, 0l) else return (Block_repr.hash caboose, Block_repr.level caboose) )) in let* () = Stored_data.write_file (Naming.caboose_file chain_dir) caboose_descr in let* () = Stored_data.write_file (Naming.invalid_blocks_file chain_dir) Block_hash.Map.empty in let* () = Stored_data.write_file (Naming.forked_chains_file chain_dir) Chain_id.Map.empty in let* () = Stored_data.write_file (Naming.genesis_block_file chain_dir) genesis_block in (* Load the store (containing the cemented if relevant) *) let* block_store = Block_store.load chain_dir ~genesis_block ~readonly:false in (* Store the floating (in the correct order!) *) let predecessor_block_hash = Block_header.hash predecessor_header in let*! () = Lwt_stream.iter_s (fun block -> let hash = Block_repr.hash block in let*! (_ : unit tzresult) = (* Depending on the block's context hash semantic, we store the right context hash for the predecessor of the imported block so that the invariant which states that the savepoint can be the target of a snapshot export is maintained. This is needed only when the block contains the resulting context hash. For other blocks, and as their contexts won't be accessible, we do not need to store consistent resulting context hash. *) if Block_hash.equal predecessor_block_hash hash then let predecessor_context_hash = match Protocol_levels.find predecessor_header.shell.proto_level protocol_levels with | None -> Stdlib.failwith "unknown protocol" | Some {Protocol_levels.expect_predecessor_context; _} -> if expect_predecessor_context then Block_repr.context new_head_with_metadata else predecessor_header.Block_header.shell.context in Block_store.store_block block_store block predecessor_context_hash else Block_store.store_block block_store block Context_hash.zero in notify ()) floating_blocks_stream in (* Store the head *) let* () = Block_store.store_block block_store new_head_with_metadata new_head_resulting_context_hash in let*! () = Block_store.close block_store in let chain_config = {history_mode; genesis; expiration = None} in let* () = Stored_data.write_file (Naming.chain_config_file chain_dir) chain_config in return_unit end
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