2019-09-05 17:21:01 +04:00
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(*****************************************************************************)
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(* *)
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(* Open Source License *)
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(* Copyright (c) 2018 Dynamic Ledger Solutions, Inc. <contact@tezos.com> *)
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(* *)
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(* Permission is hereby granted, free of charge, to any person obtaining a *)
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(* copy of this software and associated documentation files (the "Software"),*)
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(* to deal in the Software without restriction, including without limitation *)
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(* the rights to use, copy, modify, merge, publish, distribute, sublicense, *)
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(* and/or sell copies of the Software, and to permit persons to whom the *)
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(* Software is furnished to do so, subject to the following conditions: *)
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(* *)
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(* The above copyright notice and this permission notice shall be included *)
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(* in all copies or substantial portions of the Software. *)
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(* *)
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(* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR*)
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(* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, *)
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(* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL *)
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(* THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER*)
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(* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING *)
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(* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER *)
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(* DEALINGS IN THE SOFTWARE. *)
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(* *)
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(*****************************************************************************)
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open Alpha_context
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(** Returns the proposal submitted by the most delegates.
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Returns None in case of a tie, if proposal quorum is below required
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minimum or if there are no proposals. *)
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let select_winning_proposal ctxt =
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Vote.get_proposals ctxt >>=? fun proposals ->
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let merge proposal vote winners =
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match winners with
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| None -> Some ([proposal], vote)
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| Some (winners, winners_vote) as previous ->
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if Compare.Int32.(vote = winners_vote) then
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Some (proposal :: winners, winners_vote)
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else if Compare.Int32.(vote > winners_vote) then
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Some ([proposal], vote)
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else
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previous in
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match Protocol_hash.Map.fold merge proposals None with
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| Some ([proposal], vote) ->
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Vote.listing_size ctxt >>=? fun max_vote ->
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let min_proposal_quorum = Constants.min_proposal_quorum ctxt in
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let min_vote_to_pass =
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Int32.div (Int32.mul min_proposal_quorum max_vote) 100_00l in
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if Compare.Int32.(vote >= min_vote_to_pass) then
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return_some proposal
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else
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return_none
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| _ ->
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return_none (* in case of a tie, let's do nothing. *)
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(** A proposal is approved if it has supermajority and the participation reaches
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the current quorum.
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Supermajority means the yays are more 8/10 of casted votes.
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The participation is the ratio of all received votes, including passes, with
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respect to the number of possible votes.
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The participation EMA (exponential moving average) uses the last
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participation EMA and the current participation./
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The expected quorum is calculated using the last participation EMA, capped
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by the min/max quorum protocol constants. *)
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let check_approval_and_update_participation_ema ctxt =
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Vote.get_ballots ctxt >>=? fun ballots ->
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Vote.listing_size ctxt >>=? fun maximum_vote ->
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Vote.get_participation_ema ctxt >>=? fun participation_ema ->
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Vote.get_current_quorum ctxt >>=? fun expected_quorum ->
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(* Note overflows: considering a maximum of 8e8 tokens, with roll size as
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small as 1e3, there is a maximum of 8e5 rolls and thus votes.
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In 'participation' an Int64 is used because in the worst case 'all_votes is
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8e5 and after the multiplication is 8e9, making it potentially overflow a
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signed Int32 which is 2e9. *)
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let casted_votes = Int32.add ballots.yay ballots.nay in
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let all_votes = Int32.add casted_votes ballots.pass in
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let supermajority = Int32.div (Int32.mul 8l casted_votes) 10l in
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let participation = (* in centile of percentage *)
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Int64.(to_int32
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(div
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(mul (of_int32 all_votes) 100_00L)
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(of_int32 maximum_vote))) in
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let outcome = Compare.Int32.(participation >= expected_quorum &&
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ballots.yay >= supermajority) in
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let new_participation_ema =
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Int32.(div (add
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(mul 8l participation_ema)
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(mul 2l participation))
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10l) in
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Vote.set_participation_ema ctxt new_participation_ema >>=? fun ctxt ->
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return (ctxt, outcome)
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(** Implements the state machine of the amendment procedure.
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Note that [freeze_listings], that computes the vote weight of each delegate,
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is run at the beginning of each voting period.
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*)
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let start_new_voting_period ctxt =
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Vote.get_current_period_kind ctxt >>=? function
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| Proposal -> begin
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select_winning_proposal ctxt >>=? fun proposal ->
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Vote.clear_proposals ctxt >>= fun ctxt ->
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Vote.clear_listings ctxt >>=? fun ctxt ->
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match proposal with
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| None ->
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Vote.freeze_listings ctxt >>=? fun ctxt ->
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return ctxt
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| Some proposal ->
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Vote.init_current_proposal ctxt proposal >>=? fun ctxt ->
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Vote.freeze_listings ctxt >>=? fun ctxt ->
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Vote.set_current_period_kind ctxt Testing_vote >>=? fun ctxt ->
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return ctxt
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end
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| Testing_vote ->
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check_approval_and_update_participation_ema ctxt >>=? fun (ctxt, approved) ->
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Vote.clear_ballots ctxt >>= fun ctxt ->
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Vote.clear_listings ctxt >>=? fun ctxt ->
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if approved then
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let expiration = (* in two days maximum... *)
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Time.add (Timestamp.current ctxt) (Constants.test_chain_duration ctxt) in
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Vote.get_current_proposal ctxt >>=? fun proposal ->
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fork_test_chain ctxt proposal expiration >>= fun ctxt ->
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Vote.set_current_period_kind ctxt Testing >>=? fun ctxt ->
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return ctxt
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else
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Vote.clear_current_proposal ctxt >>=? fun ctxt ->
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Vote.freeze_listings ctxt >>=? fun ctxt ->
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Vote.set_current_period_kind ctxt Proposal >>=? fun ctxt ->
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return ctxt
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| Testing ->
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Vote.freeze_listings ctxt >>=? fun ctxt ->
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Vote.set_current_period_kind ctxt Promotion_vote >>=? fun ctxt ->
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return ctxt
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| Promotion_vote ->
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check_approval_and_update_participation_ema ctxt >>=? fun (ctxt, approved) ->
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begin
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if approved then
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Vote.get_current_proposal ctxt >>=? fun proposal ->
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activate ctxt proposal >>= fun ctxt ->
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return ctxt
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else
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return ctxt
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end >>=? fun ctxt ->
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Vote.clear_ballots ctxt >>= fun ctxt ->
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Vote.clear_listings ctxt >>=? fun ctxt ->
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Vote.clear_current_proposal ctxt >>=? fun ctxt ->
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Vote.freeze_listings ctxt >>=? fun ctxt ->
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Vote.set_current_period_kind ctxt Proposal >>=? fun ctxt ->
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return ctxt
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type error += (* `Branch *)
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| Invalid_proposal
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| Unexpected_proposal
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| Unauthorized_proposal
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| Too_many_proposals
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| Empty_proposal
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| Unexpected_ballot
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| Unauthorized_ballot
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let () =
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let open Data_encoding in
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(* Invalid proposal *)
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register_error_kind
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`Branch
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~id:"invalid_proposal"
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~title:"Invalid proposal"
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~description:"Ballot provided for a proposal that is not the current one."
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~pp:(fun ppf () -> Format.fprintf ppf "Invalid proposal")
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empty
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(function Invalid_proposal -> Some () | _ -> None)
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(fun () -> Invalid_proposal) ;
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(* Unexpected proposal *)
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register_error_kind
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`Branch
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~id:"unexpected_proposal"
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~title:"Unexpected proposal"
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~description:"Proposal recorded outside of a proposal period."
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~pp:(fun ppf () -> Format.fprintf ppf "Unexpected proposal")
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empty
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(function Unexpected_proposal -> Some () | _ -> None)
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(fun () -> Unexpected_proposal) ;
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(* Unauthorized proposal *)
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register_error_kind
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`Branch
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~id:"unauthorized_proposal"
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~title:"Unauthorized proposal"
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~description:"The delegate provided for the proposal is not in the voting listings."
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~pp:(fun ppf () -> Format.fprintf ppf "Unauthorized proposal")
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empty
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(function Unauthorized_proposal -> Some () | _ -> None)
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(fun () -> Unauthorized_proposal) ;
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(* Unexpected ballot *)
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register_error_kind
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`Branch
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~id:"unexpected_ballot"
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~title:"Unexpected ballot"
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~description:"Ballot recorded outside of a voting period."
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~pp:(fun ppf () -> Format.fprintf ppf "Unexpected ballot")
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empty
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(function Unexpected_ballot -> Some () | _ -> None)
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(fun () -> Unexpected_ballot) ;
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(* Unauthorized ballot *)
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register_error_kind
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`Branch
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~id:"unauthorized_ballot"
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~title:"Unauthorized ballot"
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~description:"The delegate provided for the ballot is not in the voting listings."
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~pp:(fun ppf () -> Format.fprintf ppf "Unauthorized ballot")
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empty
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(function Unauthorized_ballot -> Some () | _ -> None)
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(fun () -> Unauthorized_ballot) ;
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(* Too many proposals *)
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register_error_kind
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`Branch
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~id:"too_many_proposals"
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~title:"Too many proposals"
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~description:"The delegate reached the maximum number of allowed proposals."
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~pp:(fun ppf () -> Format.fprintf ppf "Too many proposals")
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empty
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(function Too_many_proposals -> Some () | _ -> None)
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(fun () -> Too_many_proposals) ;
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(* Empty proposal *)
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register_error_kind
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`Branch
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~id:"empty_proposal"
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~title:"Empty proposal"
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~description:"Proposal lists cannot be empty."
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~pp:(fun ppf () -> Format.fprintf ppf "Empty proposal")
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empty
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(function Empty_proposal -> Some () | _ -> None)
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(fun () -> Empty_proposal)
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(* @return [true] if [List.length l] > [n] w/o computing length *)
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let rec longer_than l n =
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if Compare.Int.(n < 0) then assert false else
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match l with
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| [] -> false
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| _ :: rest ->
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if Compare.Int.(n = 0) then true
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else (* n > 0 *)
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longer_than rest (n-1)
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let record_proposals ctxt delegate proposals =
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begin match proposals with
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| [] -> fail Empty_proposal
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| _ :: _ -> return_unit
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end >>=? fun () ->
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Vote.get_current_period_kind ctxt >>=? function
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| Proposal ->
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Vote.in_listings ctxt delegate >>= fun in_listings ->
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if in_listings then
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Vote.recorded_proposal_count_for_delegate ctxt delegate >>=? fun count ->
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fail_when
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(longer_than proposals (Constants.max_proposals_per_delegate - count))
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Too_many_proposals >>=? fun () ->
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fold_left_s
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(fun ctxt proposal ->
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Vote.record_proposal ctxt proposal delegate)
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ctxt proposals >>=? fun ctxt ->
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return ctxt
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else
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fail Unauthorized_proposal
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| Testing_vote | Testing | Promotion_vote ->
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fail Unexpected_proposal
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let record_ballot ctxt delegate proposal ballot =
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Vote.get_current_period_kind ctxt >>=? function
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| Testing_vote | Promotion_vote ->
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Vote.get_current_proposal ctxt >>=? fun current_proposal ->
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fail_unless (Protocol_hash.equal proposal current_proposal)
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Invalid_proposal >>=? fun () ->
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Vote.has_recorded_ballot ctxt delegate >>= fun has_ballot ->
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fail_when has_ballot Unauthorized_ballot >>=? fun () ->
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Vote.in_listings ctxt delegate >>= fun in_listings ->
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if in_listings then
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Vote.record_ballot ctxt delegate ballot
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else
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fail Unauthorized_ballot
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| Testing | Proposal ->
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fail Unexpected_ballot
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let last_of_a_voting_period ctxt l =
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Compare.Int32.(Int32.succ l.Level.voting_period_position =
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Constants.blocks_per_voting_period ctxt )
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let may_start_new_voting_period ctxt =
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let level = Level.current ctxt in
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if last_of_a_voting_period ctxt level then
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start_new_voting_period ctxt
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else
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return ctxt
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