package octez-protocol-017-PtNairob-libs
Octez protocol 017-PtNairob libraries
Install
Dune Dependency
Authors
Maintainers
Sources
octez-19.1.tar.gz
sha256=55ea1fb8bb3273a7fc270ca8f650d45c56449665619482aad9bc12f3ea736b7e
sha512=fec850fc2d17d7490bbabd5147d62aad13b3aaed8774270f8a38ab419670ed03e0fd30cf8642a97984eca5c2446726fe590ad99c015f7ec50919dc7652f25053
doc/src/octez-protocol-017-PtNairob-libs.baking/baking_actions.ml.html
Source file baking_actions.ml
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(*****************************************************************************) (* *) (* Open Source License *) (* Copyright (c) 2021 Nomadic Labs <contact@nomadic-labs.com> *) (* *) (* Permission is hereby granted, free of charge, to any person obtaining a *) (* copy of this software and associated documentation files (the "Software"),*) (* to deal in the Software without restriction, including without limitation *) (* the rights to use, copy, modify, merge, publish, distribute, sublicense, *) (* and/or sell copies of the Software, and to permit persons to whom the *) (* Software is furnished to do so, subject to the following conditions: *) (* *) (* The above copyright notice and this permission notice shall be included *) (* in all copies or substantial portions of the Software. *) (* *) (* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR*) (* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, *) (* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL *) (* THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER*) (* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING *) (* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER *) (* DEALINGS IN THE SOFTWARE. *) (* *) (*****************************************************************************) open Protocol open Alpha_context open Baking_state module Events = Baking_events.Actions module Operations_source = struct type error += | Failed_operations_fetch of { path : string; reason : string; details : Data_encoding.json option; } let operations_encoding = Data_encoding.(list (dynamic_size Operation.encoding)) let retrieve = function | None -> Lwt.return_none | Some operations -> ( let fail reason details = let path = match operations with | Baking_configuration.Operations_source.Local {filename} -> filename | Baking_configuration.Operations_source.Remote {uri; _} -> Uri.to_string uri in fail (Failed_operations_fetch {path; reason; details}) in let decode_operations json = protect ~on_error:(fun _ -> fail "cannot decode the received JSON into operations" (Some json)) (fun () -> return (Data_encoding.Json.destruct operations_encoding json)) in match operations with | Baking_configuration.Operations_source.Local {filename} -> if Sys.file_exists filename then Tezos_stdlib_unix.Lwt_utils_unix.Json.read_file filename >>= function | Error _ -> Events.(emit invalid_json_file filename) >>= fun () -> Lwt.return_none | Ok json -> ( decode_operations json >>= function | Ok operations -> Lwt.return_some operations | Error errs -> Events.(emit cannot_fetch_operations errs) >>= fun () -> Lwt.return_none) else Events.(emit no_operations_found_in_file filename) >>= fun () -> Lwt.return_none | Baking_configuration.Operations_source.Remote {uri; http_headers} -> ( ( ((with_timeout (Systime_os.sleep (Time.System.Span.of_seconds_exn 5.)) (fun _ -> Tezos_rpc_http_client_unix.RPC_client_unix .generic_media_type_call ~accept:[Media_type.json] ?headers:http_headers `GET uri) >>=? function | `Json json -> return json | _ -> fail "json not returned" None) >>=? function | `Ok json -> return json | `Unauthorized json -> fail "unauthorized request" json | `Gone json -> fail "gone" json | `Error json -> fail "error" json | `Not_found json -> fail "not found" json | `Forbidden json -> fail "forbidden" json | `Conflict json -> fail "conflict" json) >>=? fun json -> decode_operations json ) >>= function | Ok operations -> Lwt.return_some operations | Error errs -> Events.(emit cannot_fetch_operations errs) >>= fun () -> Lwt.return_none)) end type block_kind = | Fresh of Operation_pool.pool | Reproposal of { consensus_operations : packed_operation list; payload_hash : Block_payload_hash.t; payload_round : Round.t; payload : Operation_pool.payload; } type block_to_bake = { predecessor : block_info; round : Round.t; delegate : Baking_state.consensus_key_and_delegate; kind : block_kind; force_apply : bool; } type action = | Do_nothing | Inject_block of {block_to_bake : block_to_bake; updated_state : state} | Inject_preendorsements of { preendorsements : (consensus_key_and_delegate * consensus_content) list; } | Inject_endorsements of { endorsements : (consensus_key_and_delegate * consensus_content) list; } | Update_to_level of level_update | Synchronize_round of round_update | Watch_proposal and level_update = { new_level_proposal : proposal; compute_new_state : current_round:Round.t -> delegate_slots:delegate_slots -> next_level_delegate_slots:delegate_slots -> (state * action) Lwt.t; } and round_update = { new_round_proposal : proposal; handle_proposal : state -> (state * action) Lwt.t; } type t = action let pp_action fmt = function | Do_nothing -> Format.fprintf fmt "do nothing" | Inject_block _ -> Format.fprintf fmt "inject block" | Inject_preendorsements _ -> Format.fprintf fmt "inject preendorsements" | Inject_endorsements _ -> Format.fprintf fmt "inject endorsements" | Update_to_level _ -> Format.fprintf fmt "update to level" | Synchronize_round _ -> Format.fprintf fmt "synchronize round" | Watch_proposal -> Format.fprintf fmt "watch proposal" let generate_seed_nonce_hash config delegate level = if level.Level.expected_commitment then Baking_nonces.generate_seed_nonce config delegate level.level >>=? fun seed_nonce -> return_some seed_nonce else return_none let sign_block_header state proposer unsigned_block_header = let cctxt = state.global_state.cctxt in let chain_id = state.global_state.chain_id in let force = state.global_state.config.force in let {Block_header.shell; protocol_data = {contents; _}} = unsigned_block_header in let unsigned_header = Data_encoding.Binary.to_bytes_exn Alpha_context.Block_header.unsigned_encoding (shell, contents) in let level = shell.level in Baking_state.round_of_shell_header shell >>?= fun round -> let open Baking_highwatermarks in cctxt#with_lock (fun () -> let block_location = Baking_files.resolve_location ~chain_id `Highwatermarks in may_sign_block cctxt block_location ~delegate:proposer.public_key_hash ~level ~round >>=? function | true -> record_block cctxt block_location ~delegate:proposer.public_key_hash ~level ~round >>=? fun () -> return_true | false -> Events.(emit potential_double_baking (level, round)) >>= fun () -> return force) >>=? function | false -> fail (Block_previously_baked {level; round}) | true -> Client_keys.sign cctxt proposer.secret_key_uri ~watermark:Block_header.(to_watermark (Block_header chain_id)) unsigned_header >>=? fun signature -> return {Block_header.shell; protocol_data = {contents; signature}} let inject_block ~state_recorder state block_to_bake ~updated_state = let open Lwt_result_syntax in let { predecessor; round; delegate = (consensus_key, _) as delegate; kind; force_apply; } = block_to_bake in Events.( emit prepare_forging_block (Int32.succ predecessor.shell.level, round, delegate)) >>= fun () -> let cctxt = state.global_state.cctxt in let chain_id = state.global_state.chain_id in let simulation_mode = state.global_state.validation_mode in let round_durations = state.global_state.round_durations in Environment.wrap_tzresult (Round.timestamp_of_round round_durations ~predecessor_timestamp:predecessor.shell.timestamp ~predecessor_round:predecessor.round ~round) >>?= fun timestamp -> let external_operation_source = state.global_state.config.extra_operations in Operations_source.retrieve external_operation_source >>= fun extern_ops -> let simulation_kind, payload_round = match kind with | Fresh pool -> let pool = let node_pool = Operation_pool.Prioritized.of_pool pool in match extern_ops with | None -> node_pool | Some ops -> Operation_pool.Prioritized.merge_external_operations node_pool ops in (Block_forge.Filter pool, round) | Reproposal {consensus_operations; payload_hash; payload_round; payload} -> ( Block_forge.Apply { ordered_pool = Operation_pool.ordered_pool_of_payload ~consensus_operations payload; payload_hash; }, payload_round ) in Events.( emit forging_block (Int32.succ predecessor.shell.level, round, delegate)) >>= fun () -> Plugin.RPC.current_level cctxt ~offset:1l (`Hash state.global_state.chain_id, `Hash (predecessor.hash, 0)) >>=? fun injection_level -> generate_seed_nonce_hash state.global_state.config.Baking_configuration.nonce consensus_key injection_level >>=? fun seed_nonce_opt -> let seed_nonce_hash = Option.map fst seed_nonce_opt in let user_activated_upgrades = state.global_state.config.user_activated_upgrades in (* Set liquidity_baking_toggle_vote for this block *) let {Baking_configuration.vote_file; liquidity_baking_vote} = state.global_state.config.liquidity_baking in (* Prioritize reading from the [vote_file] if it exists. *) (match vote_file with | Some per_block_vote_file -> Liquidity_baking_vote.read_liquidity_baking_toggle_vote_no_fail ~default_liquidity_baking_vote:liquidity_baking_vote ~per_block_vote_file | None -> Lwt.return liquidity_baking_vote) >>= fun liquidity_baking_toggle_vote -> (* Cache last toggle vote to use in case of vote file errors *) let updated_state = { updated_state with global_state = { updated_state.global_state with config = { updated_state.global_state.config with liquidity_baking = { updated_state.global_state.config.liquidity_baking with liquidity_baking_vote = liquidity_baking_toggle_vote; }; }; }; } in Events.(emit vote_for_liquidity_baking_toggle) liquidity_baking_toggle_vote >>= fun () -> let chain = `Hash state.global_state.chain_id in let pred_block = `Hash (predecessor.hash, 0) in let* pred_resulting_context_hash = Shell_services.Blocks.resulting_context_hash cctxt ~chain ~block:pred_block () in let* pred_live_blocks = Chain_services.Blocks.live_blocks cctxt ~chain ~block:pred_block () in Block_forge.forge cctxt ~chain_id ~pred_info:predecessor ~pred_live_blocks ~pred_resulting_context_hash ~timestamp ~round ~seed_nonce_hash ~payload_round ~liquidity_baking_toggle_vote ~user_activated_upgrades ~force_apply state.global_state.config.fees simulation_mode simulation_kind state.global_state.constants.parametric >>=? fun {unsigned_block_header; operations} -> sign_block_header state consensus_key unsigned_block_header >>=? fun signed_block_header -> (match seed_nonce_opt with | None -> (* Nothing to do *) return_unit | Some (_, nonce) -> let block_hash = Block_header.hash signed_block_header in Baking_nonces.register_nonce cctxt ~chain_id block_hash nonce) >>=? fun () -> state_recorder ~new_state:updated_state >>=? fun () -> Events.( emit injecting_block (signed_block_header.shell.level, round, delegate)) >>= fun () -> Node_rpc.inject_block cctxt ~force:state.global_state.config.force ~chain:(`Hash state.global_state.chain_id) signed_block_header operations >>=? fun bh -> Events.( emit block_injected (bh, signed_block_header.shell.level, round, delegate)) >>= fun () -> return updated_state let sign_consensus_votes state operations kind = let open Lwt_result_syntax in let cctxt = state.global_state.cctxt in let chain_id = state.global_state.chain_id in (* N.b. signing a lot of operations may take some time *) (* Don't parallelize signatures: the signer might not be able to handle concurrent requests *) let block_location = Baking_files.resolve_location ~chain_id `Highwatermarks in (* Hypothesis: all consensus votes have the same round and level *) match operations with | [] -> return_nil | (_, (consensus_content : consensus_content)) :: _ -> let level = Raw_level.to_int32 consensus_content.level in let round = consensus_content.round in (* Filter all operations that don't satisfy the highwatermark *) let* = cctxt#with_lock @@ fun () -> let* highwatermarks = Baking_highwatermarks.load cctxt block_location in let may_sign_consensus_vote = match kind with | `Preendorsement -> Baking_highwatermarks.may_sign_preendorsement | `Endorsement -> Baking_highwatermarks.may_sign_endorsement in let*! = List.filter_s (fun (((consensus_key, _delegate_pkh) as delegate), _) -> let may_sign = may_sign_consensus_vote highwatermarks ~delegate:consensus_key.public_key_hash ~level ~round in if may_sign || state.global_state.config.force then Lwt.return_true else let*! () = match kind with | `Preendorsement -> Events.( emit skipping_preendorsement ( delegate, [ Baking_highwatermarks.Block_previously_preendorsed {round; level}; ] )) | `Endorsement -> Events.( emit skipping_endorsement ( delegate, [ Baking_highwatermarks.Block_previously_endorsed {round; level}; ] )) in Lwt.return_false) operations in (* Record all consensus votes new highwatermarks as one batch *) let* () = let delegates = List.map (fun ((ck, _), _) -> ck.public_key_hash) authorized_operations in let record_all_consensus_vote = match kind with | `Preendorsement -> Baking_highwatermarks.record_all_preendorsements | `Endorsement -> Baking_highwatermarks.record_all_endorsements in record_all_consensus_vote highwatermarks cctxt block_location ~delegates ~level ~round in return authorized_operations in let forge_and_sign_consensus_vote : type a. _ -> a contents_list -> _ = fun ((consensus_key, _) as delegate) contents -> let shell = (* The branch is the latest finalized block. *) { Tezos_base.Operation.branch = state.level_state.latest_proposal.predecessor.shell.predecessor; } in let watermark = match kind with | `Preendorsement -> Operation.(to_watermark (Preendorsement chain_id)) | `Endorsement -> Operation.(to_watermark (Endorsement chain_id)) in let unsigned_operation = (shell, Contents_list contents) in let unsigned_operation_bytes = Data_encoding.Binary.to_bytes_exn Operation.unsigned_encoding unsigned_operation in let level = Raw_level.to_int32 consensus_content.level in let round = consensus_content.round in let sk_uri = consensus_key.secret_key_uri in Client_keys.sign cctxt ~watermark sk_uri unsigned_operation_bytes >>= function | Error err -> (match kind with | `Preendorsement -> Events.(emit skipping_preendorsement (delegate, err)) | `Endorsement -> Events.(emit skipping_endorsement (delegate, err))) >>= fun () -> return_none | Ok signature -> let protocol_data = Operation_data {contents; signature = Some signature} in let operation : Operation.packed = {shell; protocol_data} in return_some (delegate, operation, level, round) in List.filter_map_es (fun (delegate, consensus_content) -> let event = match kind with | `Preendorsement -> Events.signing_preendorsement | `Endorsement -> Events.signing_endorsement in Events.(emit event delegate) >>= fun () -> match kind with | `Endorsement -> forge_and_sign_consensus_vote delegate (Single (Endorsement consensus_content)) | `Preendorsement -> forge_and_sign_consensus_vote delegate (Single (Preendorsement consensus_content))) authorized_consensus_votes let inject_consensus_vote state preendorsements kind = let cctxt = state.global_state.cctxt in let chain_id = state.global_state.chain_id in sign_consensus_votes state preendorsements kind >>=? fun signed_operations -> (* TODO: add a RPC to inject multiple operations *) let fail_inject_event, injected_event = match kind with | `Preendorsement -> (Events.failed_to_inject_preendorsement, Events.preendorsement_injected) | `Endorsement -> (Events.failed_to_inject_endorsement, Events.endorsement_injected) in List.iter_ep (fun (delegate, operation, level, round) -> protect ~on_error:(fun err -> Events.(emit fail_inject_event (delegate, err)) >>= fun () -> return_unit) (fun () -> Node_rpc.inject_operation cctxt ~chain:(`Hash chain_id) operation >>=? fun oph -> Events.(emit injected_event (oph, delegate, level, round)) >>= fun () -> return_unit)) signed_operations let sign_dal_attestations state attestations = let cctxt = state.global_state.cctxt in let chain_id = state.global_state.chain_id in (* N.b. signing a lot of operations may take some time *) (* Don't parallelize signatures: the signer might not be able to handle concurrent requests *) let shell = { Tezos_base.Operation.branch = state.level_state.latest_proposal.predecessor.hash; } in List.filter_map_es (fun (((consensus_key, _) as delegate), consensus_content) -> let watermark = Operation.(to_watermark (Dal_attestation chain_id)) in let contents = Single (Dal_attestation consensus_content) in let unsigned_operation = (shell, Contents_list contents) in let unsigned_operation_bytes = Data_encoding.Binary.to_bytes_exn Operation.unsigned_encoding unsigned_operation in Client_keys.sign cctxt ~watermark consensus_key.secret_key_uri unsigned_operation_bytes >>= function | Error err -> Events.(emit skipping_attestation (delegate, err)) >>= fun () -> return_none | Ok signature -> let protocol_data = Operation_data {contents; signature = Some signature} in let operation : Operation.packed = {shell; protocol_data} in return_some (delegate, operation, consensus_content.Dal.Attestation.attestation)) attestations let inject_dal_attestations state attestations = let cctxt = state.global_state.cctxt in let chain_id = state.global_state.chain_id in sign_dal_attestations state attestations >>=? fun signed_operations -> List.iter_ep (fun (delegate, signed_operation, (attestation : Dal.Attestation.t)) -> let encoded_op = Data_encoding.Binary.to_bytes_exn Operation.encoding signed_operation in Shell_services.Injection.operation cctxt ~chain:(`Hash chain_id) encoded_op >>=? fun oph -> let bitset_int = Bitset.to_z (attestation :> Bitset.t) in Events.(emit attestation_injected (oph, delegate, bitset_int)) >>= fun () -> return_unit) signed_operations let no_dal_node_warning_counter = ref 0 let only_if_dal_feature_enabled state ~default_value f = let open Constants in let Parametric.{dal = {feature_enable; _}; _} = state.global_state.constants.parametric in if feature_enable then match state.global_state.dal_node_rpc_ctxt with | None -> incr no_dal_node_warning_counter ; (if !no_dal_node_warning_counter mod 10 = 1 then Events.(emit no_dal_node ()) else Lwt.return_unit) >>= fun () -> return default_value | Some ctxt -> f ctxt else return default_value let get_dal_attestations state ~level = only_if_dal_feature_enabled state ~default_value:[] (fun dal_node_rpc_ctxt -> let delegates = SlotMap.bindings state.level_state.delegate_slots.own_delegate_slots |> List.map (fun (_slot, (consensus_key_and_delegate, _slots)) -> consensus_key_and_delegate) |> List.sort_uniq compare (* TODO: https://gitlab.com/tezos/tezos/-/issues/4666 This sorting can be avoided. *) in let signing_key delegate = (fst delegate).public_key_hash in List.fold_left_es (fun acc delegate -> Node_rpc.get_attestable_slots dal_node_rpc_ctxt (signing_key delegate) ~level >>=? fun res -> match res with | Tezos_dal_node_services.Types.Not_in_committee -> return acc | Attestable_slots {slots = attestation; published_level = _} -> return ((delegate, attestation) :: acc)) [] delegates >>=? fun attestations -> List.map (fun (delegate, attestation_flags) -> let attestation = List.fold_left_i (fun i acc flag -> match Dal.Slot_index.of_int_opt i with | Some index when flag -> Dal.Attestation.commit acc index | None | Some _ -> acc) Dal.Attestation.empty attestation_flags in ( delegate, Dal.Attestation. { attestor = signing_key delegate; attestation; level = Raw_level.of_int32_exn level; } )) attestations |> return) let get_and_inject_dal_attestations state = let level = Int32.succ state.level_state.current_level in get_dal_attestations state ~level >>=? fun attestations -> inject_dal_attestations state attestations let prepare_waiting_for_quorum state = let consensus_threshold = state.global_state.constants.parametric.consensus_threshold in let get_slot_voting_power ~slot = match SlotMap.find slot state.level_state.delegate_slots.all_delegate_slots with | Some {endorsing_power; first_slot} when Slot.equal slot first_slot -> Some endorsing_power | Some _ | None (* cannot happen if the map is correctly populated *) -> None in let latest_proposal = state.level_state.latest_proposal.block in (* assert (latest_proposal.block.round = state.round_state.current_round) ; *) let candidate = { Operation_worker.hash = latest_proposal.hash; round_watched = latest_proposal.round; payload_hash_watched = latest_proposal.payload_hash; } in (consensus_threshold, get_slot_voting_power, candidate) let start_waiting_for_preendorsement_quorum state = let consensus_threshold, get_slot_voting_power, candidate = prepare_waiting_for_quorum state in let operation_worker = state.global_state.operation_worker in Operation_worker.monitor_preendorsement_quorum operation_worker ~consensus_threshold ~get_slot_voting_power candidate let start_waiting_for_endorsement_quorum state = let consensus_threshold, get_slot_voting_power, candidate = prepare_waiting_for_quorum state in let operation_worker = state.global_state.operation_worker in Operation_worker.monitor_endorsement_quorum operation_worker ~consensus_threshold ~get_slot_voting_power candidate let compute_round proposal round_durations = let open Protocol in let open Baking_state in let timestamp = Time.System.now () |> Time.System.to_protocol in let predecessor_block = proposal.predecessor in Environment.wrap_tzresult @@ Alpha_context.Round.round_of_timestamp round_durations ~predecessor_timestamp:predecessor_block.shell.timestamp ~predecessor_round:predecessor_block.round ~timestamp let update_to_level state level_update = let {new_level_proposal; compute_new_state} = level_update in let cctxt = state.global_state.cctxt in let delegates = state.global_state.delegates in let new_level = new_level_proposal.block.shell.level in let chain = `Hash state.global_state.chain_id in (* Sync the context to clean-up potential GC artifacts *) (match state.global_state.validation_mode with | Node -> Lwt.return_unit | Local index -> index.sync_fun ()) >>= fun () -> (if Int32.(new_level = succ state.level_state.current_level) then return state.level_state.next_level_delegate_slots else Baking_state.compute_delegate_slots cctxt delegates ~level:new_level ~chain) >>=? fun delegate_slots -> Baking_state.compute_delegate_slots cctxt delegates ~level:(Int32.succ new_level) ~chain >>=? fun next_level_delegate_slots -> let round_durations = state.global_state.round_durations in compute_round new_level_proposal round_durations >>?= fun current_round -> compute_new_state ~current_round ~delegate_slots ~next_level_delegate_slots >>= return let synchronize_round state {new_round_proposal; handle_proposal} = Events.(emit synchronizing_round new_round_proposal.predecessor.hash) >>= fun () -> let round_durations = state.global_state.round_durations in compute_round new_round_proposal round_durations >>?= fun current_round -> if Round.(current_round < new_round_proposal.block.round) then (* impossible *) failwith "synchronize_round: current round (%a) is behind the new proposal's \ round (%a)" Round.pp current_round Round.pp new_round_proposal.block.round else let new_round_state = {current_round; current_phase = Idle; delayed_quorum = None} in let new_state = {state with round_state = new_round_state} in handle_proposal new_state >>= return (* TODO: https://gitlab.com/tezos/tezos/-/issues/4539 Avoid updating the state here. (See also comment in {!State_transitions.step}.) TODO: https://gitlab.com/tezos/tezos/-/issues/4538 Improve/clarify when the state is recorded. *) let rec perform_action ~state_recorder state (action : action) = match action with | Do_nothing -> state_recorder ~new_state:state >>=? fun () -> return state | Inject_block {block_to_bake; updated_state} -> inject_block state ~state_recorder block_to_bake ~updated_state | Inject_preendorsements {preendorsements} -> inject_consensus_vote state preendorsements `Preendorsement >>=? fun () -> perform_action ~state_recorder state Watch_proposal | Inject_endorsements {endorsements} -> state_recorder ~new_state:state >>=? fun () -> inject_consensus_vote state endorsements `Endorsement >>=? fun () -> (* We wait for endorsements to trigger the [Quorum_reached] event *) start_waiting_for_endorsement_quorum state >>= fun () -> (* TODO: https://gitlab.com/tezos/tezos/-/issues/4667 Also inject attestations for the migration block. *) (* TODO: https://gitlab.com/tezos/tezos/-/issues/4671 Don't inject multiple attestations? *) get_and_inject_dal_attestations state >>=? fun () -> return state | Update_to_level level_update -> update_to_level state level_update >>=? fun (new_state, new_action) -> perform_action ~state_recorder new_state new_action | Synchronize_round round_update -> synchronize_round state round_update >>=? fun (new_state, new_action) -> perform_action ~state_recorder new_state new_action | Watch_proposal -> (* We wait for preendorsements to trigger the [Prequorum_reached] event *) start_waiting_for_preendorsement_quorum state >>= fun () -> return state
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