package tezos-protocol-020-PsParisC
Tezos protocol 020-PsParisC package
Install
Dune Dependency
Authors
Maintainers
Sources
tezos-octez-v20.1.tag.bz2
sha256=ddfb5076eeb0b32ac21c1eed44e8fc86a6743ef18ab23fff02d36e365bb73d61
sha512=d22a827df5146e0aa274df48bc2150b098177ff7e5eab52c6109e867eb0a1f0ec63e6bfbb0e3645a6c2112de3877c91a17df32ccbff301891ce4ba630c997a65
doc/src/tezos_raw_protocol_020_PsParisC/dal_apply.ml.html
Source file dal_apply.ml
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(*****************************************************************************) (* *) (* Open Source License *) (* Copyright (c) 2022 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. *) (* *) (*****************************************************************************) (* Every function of this file should check the feature flag. *) open Alpha_context open Dal_errors let assert_dal_feature_enabled ctxt = let open Constants in let Parametric.{dal = {feature_enable; _}; _} = parametric ctxt in error_unless Compare.Bool.(feature_enable = true) Dal_feature_disabled let only_if_dal_feature_enabled ctxt ~default f = let open Constants in let Parametric.{dal = {feature_enable; _}; _} = parametric ctxt in if feature_enable then f ctxt else default ctxt let slot_of_int_e ~number_of_slots n = let open Result_syntax in match Dal.Slot_index.of_int_opt ~number_of_slots n with | None -> tzfail @@ Dal_errors.Dal_slot_index_above_hard_limit {given = n; limit = number_of_slots - 1} | Some slot_index -> return slot_index (* Use this function to select the pkh used in the DAL committee. As long as an epoch does not span across multiple cycles, we could use as well the pkh of the consensus key. *) let pkh_of_consensus_key (consensus_key : Consensus_key.pk) = consensus_key.delegate let validate_attestation ctxt level slot consensus_key attestation = let open Lwt_result_syntax in let*? () = assert_dal_feature_enabled ctxt in let number_of_slots = Dal.number_of_slots ctxt in let*? max_index = number_of_slots - 1 |> slot_of_int_e ~number_of_slots in let maximum_size = Dal.Attestation.expected_size_in_bits ~max_index in let size = Dal.Attestation.occupied_size_in_bits attestation in let*? () = error_unless Compare.Int.(size <= maximum_size) (Dal_attestation_size_limit_exceeded {maximum_size; got = size}) in let number_of_shards = Dal.number_of_shards ctxt in fail_when Compare.Int.(Slot.to_int slot >= number_of_shards) (let attester = pkh_of_consensus_key consensus_key in Dal_data_availibility_attester_not_in_committee {attester; level; slot}) let apply_attestation ctxt attestation ~power = let open Result_syntax in let* () = assert_dal_feature_enabled ctxt in return (Dal.Attestation.record_number_of_attested_shards ctxt attestation power) (* This function should fail if we don't want the operation to be propagated over the L1 gossip network. Because this is a manager operation, there are already checks to ensure the source of operation has enough fees. Among the various checks, there are checks that cannot fail unless the source of the operation is malicious (or if there is a bug). In that case, it is better to ensure fees will be taken. *) let validate_publish_commitment ctxt _operation = assert_dal_feature_enabled ctxt let apply_publish_commitment ctxt operation = let open Result_syntax in let* ctxt = Gas.consume ctxt Dal_costs.cost_Dal_publish_commitment in let number_of_slots = Dal.number_of_slots ctxt in let* ctxt, cryptobox = Dal.make ctxt in let current_level = (Level.current ctxt).level in let* slot_header = Dal.Operations.Publish_commitment.slot_header ~cryptobox ~number_of_slots ~current_level operation in let* ctxt = Dal.Slot.register_slot_header ctxt slot_header in return (ctxt, slot_header) let finalisation ctxt = let open Lwt_result_syntax in only_if_dal_feature_enabled ctxt ~default:(fun ctxt -> return (ctxt, Dal.Attestation.empty)) (fun ctxt -> let*! ctxt = Dal.Slot.finalize_current_slot_headers ctxt in (* The fact that slots confirmation is done at finalization is very important for the assumptions made by the Dal refutation game. In fact: - {!Dal.Slot.finalize_current_slot_headers} updates the Dal skip list at block finalization, by inserting newly confirmed slots; - {!Sc_rollup.Game.initial}, called when applying a manager operation that starts a refutation game, makes a snapshot of the Dal skip list to use it as a reference if the refutation proof involves a Dal input. If confirmed Dal slots are inserted into the skip list during operations application, adapting how refutation games are made might be needed to e.g., - use the same snapshotted skip list as a reference by L1 and rollup-node; - disallow proofs involving pages of slots that have been confirmed at the level where the game started. *) let number_of_slots = (Constants.parametric ctxt).dal.number_of_slots in let+ ctxt, attestation = Dal.Slot.finalize_pending_slot_headers ctxt ~number_of_slots in (ctxt, attestation))
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