package tezos-protocol-014-PtKathma
Tezos protocol 014-PtKathma package
Install
Dune Dependency
Authors
Maintainers
Sources
tezos-octez-v20.1.tag.bz2
sha256=ddfb5076eeb0b32ac21c1eed44e8fc86a6743ef18ab23fff02d36e365bb73d61
sha512=d22a827df5146e0aa274df48bc2150b098177ff7e5eab52c6109e867eb0a1f0ec63e6bfbb0e3645a6c2112de3877c91a17df32ccbff301891ce4ba630c997a65
doc/src/tezos_raw_protocol_014_PtKathma/sc_rollup_proof_repr.ml.html
Source file sc_rollup_proof_repr.ml
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(*****************************************************************************) (* *) (* Open Source License *) (* Copyright (c) 2022 Nomadic Labs <contact@nomadic-labs.com> *) (* Copyright (c) 2022 Trili Tech, <contact@trili.tech> *) (* *) (* 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. *) (* *) (*****************************************************************************) type t = { pvm_step : Sc_rollups.wrapped_proof; inbox : Sc_rollup_inbox_repr.Proof.t option; } let encoding = let open Data_encoding in conv (fun {pvm_step; inbox} -> (pvm_step, inbox)) (fun (pvm_step, inbox) -> {pvm_step; inbox}) (obj2 (req "pvm_step" Sc_rollups.wrapped_proof_encoding) (req "inbox" (option Sc_rollup_inbox_repr.Proof.encoding))) let pp ppf _ = Format.fprintf ppf "Refutation game proof" let start proof = let (module P) = Sc_rollups.wrapped_proof_module proof.pvm_step in P.proof_start_state P.proof let stop proof = let (module P) = Sc_rollups.wrapped_proof_module proof.pvm_step in P.proof_stop_state P.proof (* This takes an [input] and checks if it is at or above the given level. It returns [None] if this is the case. We use this to check that the PVM proof is obeying [commit_level] correctly---if the message obtained from the inbox proof is at or above [commit_level] the [input_given] in the PVM proof should be [None]. *) let cut_at_level level input = let input_level = Sc_rollup_PVM_sem.(input.inbox_level) in if Raw_level_repr.(level <= input_level) then None else Some input type error += Sc_rollup_proof_check of string let proof_error reason = let open Lwt_result_syntax in fail (Sc_rollup_proof_check reason) let check p reason = let open Lwt_result_syntax in if p then return () else proof_error reason let valid snapshot commit_level ~pvm_name proof = let (module P) = Sc_rollups.wrapped_proof_module proof.pvm_step in let open Lwt_result_syntax in let* _ = check (String.equal P.name pvm_name) "Incorrect PVM kind" in let input_requested = P.proof_input_requested P.proof in let input_given = P.proof_input_given P.proof in let* input = match (input_requested, proof.inbox) with | Sc_rollup_PVM_sem.No_input_required, None -> return None | Sc_rollup_PVM_sem.Initial, Some inbox_proof -> Sc_rollup_inbox_repr.Proof.valid {inbox_level = Raw_level_repr.root; message_counter = Z.zero} snapshot inbox_proof | Sc_rollup_PVM_sem.First_after (level, counter), Some inbox_proof -> Sc_rollup_inbox_repr.Proof.valid {inbox_level = level; message_counter = Z.succ counter} snapshot inbox_proof | _ -> proof_error (Format.asprintf "input_requested is %a, inbox proof is %a" Sc_rollup_PVM_sem.pp_input_request input_requested (Format.pp_print_option Sc_rollup_inbox_repr.Proof.pp) proof.inbox) in let* _ = check (Option.equal Sc_rollup_PVM_sem.input_equal (Option.bind input (cut_at_level commit_level)) input_given) "Input given is not what inbox proof expects" in Lwt.map Result.ok (P.verify_proof P.proof) module type PVM_with_context_and_state = sig include Sc_rollups.PVM.S val context : context val state : state end type error += Proof_cannot_be_wrapped let produce pvm_and_state inbox commit_level = let open Lwt_result_syntax in let (module P : PVM_with_context_and_state) = pvm_and_state in let*! request = P.is_input_state P.state in let* inbox, input_given = match request with | Sc_rollup_PVM_sem.No_input_required -> return (None, None) | Sc_rollup_PVM_sem.Initial -> let* p, i = Sc_rollup_inbox_repr.Proof.produce_proof inbox (Raw_level_repr.root, Z.zero) in return (Some p, i) | Sc_rollup_PVM_sem.First_after (l, n) -> let* p, i = Sc_rollup_inbox_repr.Proof.produce_proof inbox (l, n) in return (Some p, i) in let input_given = Option.bind input_given (cut_at_level commit_level) in let* pvm_step_proof = P.produce_proof P.context input_given P.state in let module P_with_proof = struct include P let proof = pvm_step_proof end in match Sc_rollups.wrap_proof (module P_with_proof) with | Some pvm_step -> return {pvm_step; inbox} | None -> fail Proof_cannot_be_wrapped
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