The pending_block member of database was a premature optimization and had an unfortunate tendency to get out of sync, especially when switching forks. This commit removes it, and substantially improves the handling of transactions when switching forks. Specifically, flooding or forking no longer causes nodes to discard valid transactions.
546 lines
22 KiB
C++
546 lines
22 KiB
C++
/*
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* Copyright (c) 2015, Cryptonomex, Inc.
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* All rights reserved.
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*
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* This source code is provided for evaluation in private test networks only, until September 8, 2015. After this date, this license expires and
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* the code may not be used, modified or distributed for any purpose. Redistribution and use in source and binary forms, with or without modification,
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* are permitted until September 8, 2015, provided that the following conditions are met:
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*
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* 1. The code and/or derivative works are used only for private test networks consisting of no more than 10 P2P nodes.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO,
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* THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR
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* CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
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* WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
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* ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include <boost/multiprecision/integer.hpp>
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#include <fc/smart_ref_impl.hpp>
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#include <fc/uint128.hpp>
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#include <graphene/chain/database.hpp>
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#include <graphene/chain/account_object.hpp>
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#include <graphene/chain/asset_object.hpp>
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#include <graphene/chain/committee_member_object.hpp>
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#include <graphene/chain/global_property_object.hpp>
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#include <graphene/chain/vesting_balance_object.hpp>
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#include <graphene/chain/witness_object.hpp>
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#include <graphene/chain/worker_evaluator.hpp>
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namespace graphene { namespace chain {
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template<class Index>
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vector<std::reference_wrapper<const typename Index::object_type>> database::sort_votable_objects(size_t count) const
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{
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using ObjectType = typename Index::object_type;
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const auto& all_objects = get_index_type<Index>().indices();
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count = std::min(count, all_objects.size());
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vector<std::reference_wrapper<const ObjectType>> refs;
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refs.reserve(all_objects.size());
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std::transform(all_objects.begin(), all_objects.end(),
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std::back_inserter(refs),
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[](const ObjectType& o) { return std::cref(o); });
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std::partial_sort(refs.begin(), refs.begin() + count, refs.end(),
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[this](const ObjectType& a, const ObjectType& b)->bool {
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share_type oa_vote = _vote_tally_buffer[a.vote_id];
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share_type ob_vote = _vote_tally_buffer[b.vote_id];
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if( oa_vote != ob_vote )
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return oa_vote > ob_vote;
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return a.vote_id < b.vote_id;
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});
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refs.resize(count, refs.front());
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return refs;
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}
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template<class... Types>
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void database::perform_account_maintenance(std::tuple<Types...> helpers)
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{
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const auto& idx = get_index_type<account_index>().indices();
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for( const account_object& a : idx )
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detail::for_each(helpers, a, detail::gen_seq<sizeof...(Types)>());
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}
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/// @brief A visitor for @ref worker_type which calls pay_worker on the worker within
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struct worker_pay_visitor
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{
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private:
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share_type pay;
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database& db;
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public:
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worker_pay_visitor(share_type pay, database& db)
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: pay(pay), db(db) {}
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typedef void result_type;
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template<typename W>
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void operator()(W& worker)const
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{
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worker.pay_worker(pay, db);
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}
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};
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void database::update_worker_votes()
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{
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auto& idx = get_index_type<worker_index>();
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auto itr = idx.indices().get<by_account>().begin();
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while( itr != idx.indices().get<by_account>().end() )
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{
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modify( *itr, [&]( worker_object& obj ){
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obj.total_votes_for = _vote_tally_buffer[obj.vote_for];
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obj.total_votes_against = _vote_tally_buffer[obj.vote_against];
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});
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++itr;
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}
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}
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void database::pay_workers( share_type& budget )
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{
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// ilog("Processing payroll! Available budget is ${b}", ("b", budget));
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vector<std::reference_wrapper<const worker_object>> active_workers;
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get_index_type<worker_index>().inspect_all_objects([this, &active_workers](const object& o) {
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const worker_object& w = static_cast<const worker_object&>(o);
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auto now = head_block_time();
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if( w.is_active(now) && w.approving_stake(_vote_tally_buffer) > 0 )
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active_workers.emplace_back(w);
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});
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// worker with more votes is preferred
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// if two workers exactly tie for votes, worker with lower ID is preferred
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std::sort(active_workers.begin(), active_workers.end(), [this](const worker_object& wa, const worker_object& wb) {
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share_type wa_vote = wa.approving_stake(_vote_tally_buffer);
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share_type wb_vote = wb.approving_stake(_vote_tally_buffer);
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if( wa_vote != wb_vote )
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return wa_vote > wb_vote;
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return wa.id < wb.id;
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});
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for( uint32_t i = 0; i < active_workers.size() && budget > 0; ++i )
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{
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const worker_object& active_worker = active_workers[i];
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share_type requested_pay = active_worker.daily_pay;
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if( head_block_time() - get_dynamic_global_properties().last_budget_time != fc::days(1) )
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{
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fc::uint128 pay(requested_pay.value);
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pay *= (head_block_time() - get_dynamic_global_properties().last_budget_time).count();
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pay /= fc::days(1).count();
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requested_pay = pay.to_uint64();
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}
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share_type actual_pay = std::min(budget, requested_pay);
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//ilog(" ==> Paying ${a} to worker ${w}", ("w", active_worker.id)("a", actual_pay));
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modify(active_worker, [&](worker_object& w) {
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w.worker.visit(worker_pay_visitor(actual_pay, *this));
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});
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budget -= actual_pay;
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}
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}
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void database::update_active_witnesses()
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{ try {
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assert( _witness_count_histogram_buffer.size() > 0 );
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share_type stake_target = _total_voting_stake / 2;
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share_type stake_tally = _witness_count_histogram_buffer[0];
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size_t witness_count = 0;
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if( stake_target > 0 )
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while( (witness_count < _witness_count_histogram_buffer.size() - 1)
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&& (stake_tally <= stake_target) )
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stake_tally += _witness_count_histogram_buffer[++witness_count];
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const chain_property_object& cpo = get_chain_properties();
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auto wits = sort_votable_objects<witness_index>(std::max(witness_count*2+1, (size_t)cpo.immutable_parameters.min_witness_count));
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const global_property_object& gpo = get_global_properties();
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for( const witness_object& wit : wits )
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{
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modify( wit, [&]( witness_object& obj ){
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obj.total_votes = _vote_tally_buffer[wit.vote_id];
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});
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}
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// Update witness authority
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modify( get(GRAPHENE_WITNESS_ACCOUNT), [&]( account_object& a ) {
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uint64_t total_votes = 0;
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map<account_id_type, uint64_t> weights;
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a.active.weight_threshold = 0;
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a.active.clear();
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for( const witness_object& wit : wits )
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{
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weights.emplace(wit.witness_account, _vote_tally_buffer[wit.vote_id]);
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total_votes += _vote_tally_buffer[wit.vote_id];
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}
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// total_votes is 64 bits. Subtract the number of leading low bits from 64 to get the number of useful bits,
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// then I want to keep the most significant 16 bits of what's left.
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int8_t bits_to_drop = std::max(int(boost::multiprecision::detail::find_msb(total_votes)) - 15, 0);
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for( const auto& weight : weights )
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{
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// Ensure that everyone has at least one vote. Zero weights aren't allowed.
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uint16_t votes = std::max((weight.second >> bits_to_drop), uint64_t(1) );
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a.active.account_auths[weight.first] += votes;
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a.active.weight_threshold += votes;
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}
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a.active.weight_threshold /= 2;
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a.active.weight_threshold += 1;
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});
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modify(gpo, [&]( global_property_object& gp ){
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gp.active_witnesses.clear();
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gp.active_witnesses.reserve(wits.size());
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std::transform(wits.begin(), wits.end(),
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std::inserter(gp.active_witnesses, gp.active_witnesses.end()),
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[](const witness_object& w) {
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return w.id;
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});
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gp.witness_accounts.clear();
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gp.witness_accounts.reserve(wits.size());
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std::transform(wits.begin(), wits.end(),
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std::inserter(gp.witness_accounts, gp.witness_accounts.end()),
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[](const witness_object& w) {
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return w.witness_account;
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});
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});
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} FC_CAPTURE_AND_RETHROW() }
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void database::update_active_committee_members()
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{ try {
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assert( _committee_count_histogram_buffer.size() > 0 );
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uint64_t stake_target = _total_voting_stake / 2;
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uint64_t stake_tally = _committee_count_histogram_buffer[0];
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size_t committee_member_count = 0;
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if( stake_target > 0 )
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while( (committee_member_count < _committee_count_histogram_buffer.size() - 1)
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&& (stake_tally <= stake_target) )
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stake_tally += _committee_count_histogram_buffer[++committee_member_count];
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const chain_property_object& cpo = get_chain_properties();
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auto committee_members = sort_votable_objects<committee_member_index>(std::max(committee_member_count*2+1, (size_t)cpo.immutable_parameters.min_committee_member_count));
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for( const committee_member_object& del : committee_members )
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{
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modify( del, [&]( committee_member_object& obj ){
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obj.total_votes = _vote_tally_buffer[del.vote_id];
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});
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}
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// Update committee authorities
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if( !committee_members.empty() )
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{
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modify(get(GRAPHENE_COMMITTEE_ACCOUNT), [&](account_object& a) {
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uint64_t total_votes = 0;
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map<account_id_type, uint64_t> weights;
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a.active.weight_threshold = 0;
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a.active.clear();
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for( const committee_member_object& del : committee_members )
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{
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weights.emplace(del.committee_member_account, _vote_tally_buffer[del.vote_id]);
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total_votes += _vote_tally_buffer[del.vote_id];
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}
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// total_votes is 64 bits. Subtract the number of leading low bits from 64 to get the number of useful bits,
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// then I want to keep the most significant 16 bits of what's left.
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int8_t bits_to_drop = std::max(int(boost::multiprecision::detail::find_msb(total_votes)) - 15, 0);
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for( const auto& weight : weights )
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{
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// Ensure that everyone has at least one vote. Zero weights aren't allowed.
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uint16_t votes = std::max((weight.second >> bits_to_drop), uint64_t(1) );
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a.active.account_auths[weight.first] += votes;
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a.active.weight_threshold += votes;
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}
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a.active.weight_threshold /= 2;
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a.active.weight_threshold += 1;
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});
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modify(get(GRAPHENE_RELAXED_COMMITTEE_ACCOUNT), [&](account_object& a) {
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a.active = get(GRAPHENE_COMMITTEE_ACCOUNT).active;
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});
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}
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modify(get_global_properties(), [&](global_property_object& gp) {
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gp.active_committee_members.clear();
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std::transform(committee_members.begin(), committee_members.end(),
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std::inserter(gp.active_committee_members, gp.active_committee_members.begin()),
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[](const committee_member_object& d) { return d.id; });
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});
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} FC_CAPTURE_AND_RETHROW() }
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share_type database::get_max_budget( fc::time_point_sec now )const
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{
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const dynamic_global_property_object& dpo = get_dynamic_global_properties();
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const asset_object& core = asset_id_type(0)(*this);
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const asset_dynamic_data_object& core_dd = core.dynamic_asset_data_id(*this);
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if( (dpo.last_budget_time == fc::time_point_sec())
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|| (now <= dpo.last_budget_time) )
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return share_type(0);
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int64_t dt = (now - dpo.last_budget_time).to_seconds();
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// We'll consider accumulated_fees to be reserved at the BEGINNING
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// of the maintenance interval. However, for speed we only
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// call modify() on the asset_dynamic_data_object once at the
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// end of the maintenance interval. Thus the accumulated_fees
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// are available for the budget at this point, but not included
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// in core.reserved().
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share_type reserve = core.reserved(*this) + core_dd.accumulated_fees;
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// Similarly, we consider leftover witness_budget to be burned
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// at the BEGINNING of the maintenance interval.
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reserve += dpo.witness_budget;
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fc::uint128_t budget_u128 = reserve.value;
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budget_u128 *= uint64_t(dt);
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budget_u128 *= GRAPHENE_CORE_ASSET_CYCLE_RATE;
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//round up to the nearest satoshi -- this is necessary to ensure
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// there isn't an "untouchable" reserve, and we will eventually
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// be able to use the entire reserve
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budget_u128 += ((uint64_t(1) << GRAPHENE_CORE_ASSET_CYCLE_RATE_BITS) - 1);
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budget_u128 >>= GRAPHENE_CORE_ASSET_CYCLE_RATE_BITS;
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share_type budget;
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if( budget_u128 < reserve.value )
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budget = share_type(budget_u128.to_uint64());
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else
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budget = reserve;
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return budget;
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}
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/**
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* Update the budget for witnesses and workers.
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*/
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void database::process_budget()
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{
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try
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{
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const global_property_object& gpo = get_global_properties();
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const dynamic_global_property_object& dpo = get_dynamic_global_properties();
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const asset_dynamic_data_object& core =
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asset_id_type(0)(*this).dynamic_asset_data_id(*this);
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fc::time_point_sec now = head_block_time();
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int64_t time_to_maint = (dpo.next_maintenance_time - now).to_seconds();
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//
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// The code that generates the next maintenance time should
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// only produce a result in the future. If this assert
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// fails, then the next maintenance time algorithm is buggy.
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//
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assert( time_to_maint > 0 );
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//
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// Code for setting chain parameters should validate
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// block_interval > 0 (as well as the humans proposing /
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// voting on changes to block interval).
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//
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assert( gpo.parameters.block_interval > 0 );
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uint64_t blocks_to_maint = (uint64_t(time_to_maint) + gpo.parameters.block_interval - 1) / gpo.parameters.block_interval;
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// blocks_to_maint > 0 because time_to_maint > 0,
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// which means numerator is at least equal to block_interval
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share_type available_funds = get_max_budget(now);
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share_type witness_budget = gpo.parameters.witness_pay_per_block.value * blocks_to_maint;
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witness_budget = std::min(witness_budget, available_funds);
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available_funds -= witness_budget;
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fc::uint128_t worker_budget_u128 = gpo.parameters.worker_budget_per_day.value;
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worker_budget_u128 *= uint64_t(time_to_maint);
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worker_budget_u128 /= 60*60*24;
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share_type worker_budget;
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if( worker_budget_u128 >= available_funds.value )
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worker_budget = available_funds;
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else
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worker_budget = worker_budget_u128.to_uint64();
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available_funds -= worker_budget;
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share_type leftover_worker_funds = worker_budget;
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pay_workers(leftover_worker_funds);
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available_funds += leftover_worker_funds;
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share_type unused_prev_witness_budget = dpo.witness_budget;
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modify(core, [&]( asset_dynamic_data_object& _core )
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{
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_core.current_supply = (_core.current_supply
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+ witness_budget
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+ worker_budget
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- leftover_worker_funds
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- _core.accumulated_fees
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- unused_prev_witness_budget
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);
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_core.accumulated_fees = 0;
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});
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modify(dpo, [&]( dynamic_global_property_object& _dpo )
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{
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// Since initial witness_budget was rolled into
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// available_funds, we replace it with witness_budget
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// instead of adding it.
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_dpo.witness_budget = witness_budget;
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_dpo.last_budget_time = now;
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});
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// available_funds is money we could spend, but don't want to.
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// we simply let it evaporate back into the reserve.
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}
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FC_CAPTURE_AND_RETHROW()
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}
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void database::perform_chain_maintenance(const signed_block& next_block, const global_property_object& global_props)
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{
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const auto& gpo = get_global_properties();
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struct vote_tally_helper {
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database& d;
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const global_property_object& props;
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vote_tally_helper(database& d, const global_property_object& gpo)
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: d(d), props(gpo)
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{
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d._vote_tally_buffer.resize(props.next_available_vote_id);
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d._witness_count_histogram_buffer.resize(props.parameters.maximum_witness_count / 2 + 1);
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d._committee_count_histogram_buffer.resize(props.parameters.maximum_committee_count / 2 + 1);
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d._total_voting_stake = 0;
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}
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void operator()(const account_object& stake_account) {
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if( props.parameters.count_non_member_votes || stake_account.is_member(d.head_block_time()) )
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{
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// There may be a difference between the account whose stake is voting and the one specifying opinions.
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// Usually they're the same, but if the stake account has specified a voting_account, that account is the one
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// specifying the opinions.
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const account_object& opinion_account =
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(stake_account.options.voting_account ==
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GRAPHENE_PROXY_TO_SELF_ACCOUNT)? stake_account
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: d.get(stake_account.options.voting_account);
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const auto& stats = stake_account.statistics(d);
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uint64_t voting_stake = stats.total_core_in_orders.value
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+ (stake_account.cashback_vb.valid() ? (*stake_account.cashback_vb)(d).balance.amount.value: 0)
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+ d.get_balance(stake_account.get_id(), asset_id_type()).amount.value;
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|
|
for( vote_id_type id : opinion_account.options.votes )
|
|
{
|
|
uint32_t offset = id.instance();
|
|
// if they somehow managed to specify an illegal offset, ignore it.
|
|
if( offset < d._vote_tally_buffer.size() )
|
|
d._vote_tally_buffer[offset] += voting_stake;
|
|
}
|
|
|
|
if( opinion_account.options.num_witness <= props.parameters.maximum_witness_count )
|
|
{
|
|
uint16_t offset = std::min(size_t(opinion_account.options.num_witness/2),
|
|
d._witness_count_histogram_buffer.size() - 1);
|
|
// votes for a number greater than maximum_witness_count
|
|
// are turned into votes for maximum_witness_count.
|
|
//
|
|
// in particular, this takes care of the case where a
|
|
// member was voting for a high number, then the
|
|
// parameter was lowered.
|
|
d._witness_count_histogram_buffer[offset] += voting_stake;
|
|
}
|
|
if( opinion_account.options.num_committee <= props.parameters.maximum_committee_count )
|
|
{
|
|
uint16_t offset = std::min(size_t(opinion_account.options.num_committee/2),
|
|
d._committee_count_histogram_buffer.size() - 1);
|
|
// votes for a number greater than maximum_committee_count
|
|
// are turned into votes for maximum_committee_count.
|
|
//
|
|
// same rationale as for witnesses
|
|
d._committee_count_histogram_buffer[offset] += voting_stake;
|
|
}
|
|
|
|
d._total_voting_stake += voting_stake;
|
|
}
|
|
}
|
|
} tally_helper(*this, gpo);
|
|
struct process_fees_helper {
|
|
database& d;
|
|
const global_property_object& props;
|
|
|
|
process_fees_helper(database& d, const global_property_object& gpo)
|
|
: d(d), props(gpo) {}
|
|
|
|
void operator()(const account_object& a) {
|
|
a.statistics(d).process_fees(a, d);
|
|
}
|
|
} fee_helper(*this, gpo);
|
|
|
|
perform_account_maintenance(std::tie(tally_helper, fee_helper));
|
|
|
|
struct clear_canary {
|
|
clear_canary(vector<uint64_t>& target): target(target){}
|
|
~clear_canary() { target.clear(); }
|
|
private:
|
|
vector<uint64_t>& target;
|
|
};
|
|
clear_canary a(_witness_count_histogram_buffer),
|
|
b(_committee_count_histogram_buffer),
|
|
c(_vote_tally_buffer);
|
|
|
|
update_active_witnesses();
|
|
update_active_committee_members();
|
|
update_worker_votes();
|
|
|
|
modify(gpo, [this](global_property_object& p) {
|
|
// Remove scaling of account registration fee
|
|
const auto& dgpo = get_dynamic_global_properties();
|
|
p.parameters.current_fees->get<account_create_operation>().basic_fee >>= p.parameters.account_fee_scale_bitshifts *
|
|
(dgpo.accounts_registered_this_interval / p.parameters.accounts_per_fee_scale);
|
|
|
|
if( p.pending_parameters )
|
|
{
|
|
p.parameters = std::move(*p.pending_parameters);
|
|
p.pending_parameters.reset();
|
|
}
|
|
});
|
|
|
|
auto next_maintenance_time = get<dynamic_global_property_object>(dynamic_global_property_id_type()).next_maintenance_time;
|
|
auto maintenance_interval = gpo.parameters.maintenance_interval;
|
|
|
|
if( next_maintenance_time <= next_block.timestamp )
|
|
{
|
|
if( next_block.block_num() == 1 )
|
|
next_maintenance_time = time_point_sec() +
|
|
(((next_block.timestamp.sec_since_epoch() / maintenance_interval) + 1) * maintenance_interval);
|
|
else
|
|
{
|
|
// We want to find the smallest k such that next_maintenance_time + k * maintenance_interval > head_block_time()
|
|
// This implies k > ( head_block_time() - next_maintenance_time ) / maintenance_interval
|
|
//
|
|
// Let y be the right-hand side of this inequality, i.e.
|
|
// y = ( head_block_time() - next_maintenance_time ) / maintenance_interval
|
|
//
|
|
// and let the fractional part f be y-floor(y). Clearly 0 <= f < 1.
|
|
// We can rewrite f = y-floor(y) as floor(y) = y-f.
|
|
//
|
|
// Clearly k = floor(y)+1 has k > y as desired. Now we must
|
|
// show that this is the least such k, i.e. k-1 <= y.
|
|
//
|
|
// But k-1 = floor(y)+1-1 = floor(y) = y-f <= y.
|
|
// So this k suffices.
|
|
//
|
|
auto y = (head_block_time() - next_maintenance_time).to_seconds() / maintenance_interval;
|
|
next_maintenance_time += (y+1) * maintenance_interval;
|
|
}
|
|
}
|
|
|
|
modify(get_dynamic_global_properties(), [next_maintenance_time](dynamic_global_property_object& d) {
|
|
d.next_maintenance_time = next_maintenance_time;
|
|
d.accounts_registered_this_interval = 0;
|
|
});
|
|
|
|
// Reset all BitAsset force settlement volumes to zero
|
|
for( const asset_bitasset_data_object* d : get_index_type<asset_bitasset_data_index>() )
|
|
modify(*d, [](asset_bitasset_data_object& d) { d.force_settled_volume = 0; });
|
|
|
|
// process_budget needs to run at the bottom because
|
|
// it needs to know the next_maintenance_time
|
|
process_budget();
|
|
}
|
|
|
|
} }
|