cryptonote_core: dandelion - use local height or median height if syncing
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@ -1510,6 +1510,11 @@ namespace cryptonote
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return true;
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}
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//-----------------------------------------------------------------------------------------------
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bool core::is_synchronized() const
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{
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return m_pprotocol != nullptr && m_pprotocol->is_synchronized();
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}
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//-----------------------------------------------------------------------------------------------
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void core::on_synchronized()
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{
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m_miner.on_synchronized();
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@ -329,7 +329,7 @@ namespace cryptonote
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*
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* @note see Blockchain::get_current_blockchain_height()
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*/
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uint64_t get_current_blockchain_height() const;
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virtual uint64_t get_current_blockchain_height() const final;
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/**
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* @brief get the hash and height of the most recent block
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@ -637,6 +637,13 @@ namespace cryptonote
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*/
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std::string print_pool(bool short_format) const;
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/**
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* @brief gets the core synchronization status
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*
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* @return core synchronization status
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*/
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virtual bool is_synchronized() const final;
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/**
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* @copydoc miner::on_synchronized
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*
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@ -663,7 +670,7 @@ namespace cryptonote
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*
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* @param target_blockchain_height the target height
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*/
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virtual uint64_t get_target_blockchain_height() const override;
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uint64_t get_target_blockchain_height() const;
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/**
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* @brief returns the newest hardfork version known to the blockchain
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@ -39,7 +39,8 @@ namespace cryptonote
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virtual ~i_core_events() noexcept
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{}
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virtual uint64_t get_target_blockchain_height() const = 0;
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virtual uint64_t get_current_blockchain_height() const = 0;
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virtual bool is_synchronized() const = 0;
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virtual void on_transactions_relayed(epee::span<const cryptonote::blobdata> tx_blobs, relay_method tx_relay) = 0;
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};
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}
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@ -104,7 +104,7 @@ namespace cryptonote
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bool get_payload_sync_data(CORE_SYNC_DATA& hshd);
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bool on_callback(cryptonote_connection_context& context);
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t_core& get_core(){return m_core;}
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bool is_synchronized(){return m_synchronized;}
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virtual bool is_synchronized() const final { return !no_sync() && m_synchronized; }
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void log_connections();
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std::list<connection_info> get_connections();
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const block_queue &get_block_queue() const { return m_block_queue; }
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@ -430,7 +430,7 @@ namespace cryptonote
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MLOGIF_P2P_MESSAGE(crypto::hash hash; cryptonote::block b; bool ret = cryptonote::parse_and_validate_block_from_blob(arg.b.block, b, &hash);, ret, "Received NOTIFY_NEW_BLOCK " << hash << " (height " << arg.current_blockchain_height << ", " << arg.b.txs.size() << " txes)");
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if(context.m_state != cryptonote_connection_context::state_normal)
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return 1;
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if(!is_synchronized() || m_no_sync) // can happen if a peer connection goes to normal but another thread still hasn't finished adding queued blocks
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if(!is_synchronized()) // can happen if a peer connection goes to normal but another thread still hasn't finished adding queued blocks
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{
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LOG_DEBUG_CC(context, "Received new block while syncing, ignored");
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return 1;
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@ -501,7 +501,7 @@ namespace cryptonote
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MLOGIF_P2P_MESSAGE(crypto::hash hash; cryptonote::block b; bool ret = cryptonote::parse_and_validate_block_from_blob(arg.b.block, b, &hash);, ret, "Received NOTIFY_NEW_FLUFFY_BLOCK " << hash << " (height " << arg.current_blockchain_height << ", " << arg.b.txs.size() << " txes)");
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if(context.m_state != cryptonote_connection_context::state_normal)
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return 1;
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if(!is_synchronized() || m_no_sync) // can happen if a peer connection goes to normal but another thread still hasn't finished adding queued blocks
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if(!is_synchronized()) // can happen if a peer connection goes to normal but another thread still hasn't finished adding queued blocks
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{
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LOG_DEBUG_CC(context, "Received new block while syncing, ignored");
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return 1;
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@ -929,7 +929,7 @@ namespace cryptonote
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// while syncing, core will lock for a long time, so we ignore
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// those txes as they aren't really needed anyway, and avoid a
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// long block before replying
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if(!is_synchronized() || m_no_sync)
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if(!is_synchronized())
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{
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LOG_DEBUG_CC(context, "Received new tx while syncing, ignored");
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return 1;
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@ -40,6 +40,7 @@ namespace cryptonote
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/************************************************************************/
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struct i_cryptonote_protocol
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{
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virtual bool is_synchronized() const = 0;
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virtual bool relay_block(NOTIFY_NEW_BLOCK::request& arg, cryptonote_connection_context& exclude_context)=0;
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virtual bool relay_transactions(NOTIFY_NEW_TRANSACTIONS::request& arg, const boost::uuids::uuid& source, epee::net_utils::zone zone, relay_method tx_relay)=0;
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//virtual bool request_objects(NOTIFY_REQUEST_GET_OBJECTS::request& arg, cryptonote_connection_context& context)=0;
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@ -50,6 +51,10 @@ namespace cryptonote
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/************************************************************************/
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struct cryptonote_protocol_stub: public i_cryptonote_protocol
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{
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virtual bool is_synchronized() const final
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{
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return false;
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}
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virtual bool relay_block(NOTIFY_NEW_BLOCK::request& arg, cryptonote_connection_context& exclude_context)
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{
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return false;
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@ -105,8 +105,44 @@ namespace levin
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return std::chrono::steady_clock::duration{crypto::rand_range(rep(0), range.count())};
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}
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//! \return Outgoing connections supporting fragments in `connections` filtered by remote blockchain height.
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std::vector<boost::uuids::uuid> get_out_connections(connections& p2p, uint64_t min_blockchain_height)
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uint64_t get_median_remote_height(connections& p2p)
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{
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std::vector<uint64_t> remote_heights;
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remote_heights.reserve(connection_id_reserve_size);
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p2p.foreach_connection([&remote_heights] (detail::p2p_context& context) {
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if (!context.m_is_income)
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{
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remote_heights.emplace_back(context.m_remote_blockchain_height);
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}
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return true;
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});
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if (remote_heights.empty())
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{
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return 0;
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}
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const size_t n = remote_heights.size() / 2;
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std::sort(remote_heights.begin(), remote_heights.end());
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if (remote_heights.size() % 2 != 0)
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{
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return remote_heights[n];
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}
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return remote_heights[n-1];
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}
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uint64_t get_blockchain_height(connections& p2p, const i_core_events* core)
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{
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const uint64_t local_blockchain_height = core->get_current_blockchain_height();
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if (core->is_synchronized())
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{
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return local_blockchain_height;
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}
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return std::max(local_blockchain_height, get_median_remote_height(p2p));
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}
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//! \return Outgoing connections supporting fragments in `connections` filtered by blockchain height.
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std::vector<boost::uuids::uuid> get_out_connections(connections& p2p, uint64_t blockchain_height)
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{
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std::vector<boost::uuids::uuid> outs;
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outs.reserve(connection_id_reserve_size);
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@ -115,15 +151,21 @@ namespace levin
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the reserve call so a strand is not used. Investigate if there is lots
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of waiting in here. */
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p2p.foreach_connection([&outs, min_blockchain_height] (detail::p2p_context& context) {
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if (!context.m_is_income && context.m_remote_blockchain_height >= min_blockchain_height)
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p2p.foreach_connection([&outs, blockchain_height] (detail::p2p_context& context) {
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if (!context.m_is_income && context.m_remote_blockchain_height >= blockchain_height)
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outs.emplace_back(context.m_connection_id);
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return true;
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});
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MDEBUG("Found " << outs.size() << " out connections having height >= " << blockchain_height);
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return outs;
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}
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std::vector<boost::uuids::uuid> get_out_connections(connections& p2p, const i_core_events* core)
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{
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return get_out_connections(p2p, get_blockchain_height(p2p, core));
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}
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std::string make_tx_payload(std::vector<blobdata>&& txs, const bool pad, const bool fluff)
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{
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NOTIFY_NEW_TRANSACTIONS::request request{};
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@ -545,7 +587,7 @@ namespace levin
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}
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// connection list may be outdated, try again
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update_channels::run(zone_, get_out_connections(*zone_->p2p, core_->get_target_blockchain_height()));
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update_channels::run(zone_, get_out_connections(*zone_->p2p, core_));
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}
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MERROR("Unable to send transaction(s) via Dandelion++ stem");
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@ -646,7 +688,7 @@ namespace levin
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{
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channel.active = nullptr;
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channel.connection = boost::uuids::nil_uuid();
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auto height = core_->get_target_blockchain_height();
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auto height = get_blockchain_height(*zone_->p2p, core_);
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auto connections = get_out_connections(*zone_->p2p, height);
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if (connections.empty())
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@ -682,7 +724,7 @@ namespace levin
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const bool fluffing = crypto::rand_idx(unsigned(100)) < CRYPTONOTE_DANDELIONPP_FLUFF_PROBABILITY;
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const auto start = std::chrono::steady_clock::now();
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auto connections = get_out_connections(*(zone_->p2p), core_->get_target_blockchain_height());
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auto connections = get_out_connections(*(zone_->p2p), core_);
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zone_->strand.dispatch(
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change_channels{zone_, net::dandelionpp::connection_map{std::move(connections), count_}, fluffing}
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);
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@ -733,7 +775,7 @@ namespace levin
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return;
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zone_->strand.dispatch(
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update_channels{zone_, get_out_connections(*(zone_->p2p), core_->get_target_blockchain_height())}
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update_channels{zone_, get_out_connections(*(zone_->p2p), core_)}
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);
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}
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@ -66,9 +66,10 @@ namespace tests
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public:
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virtual bool is_synchronized() const final { return true; }
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void on_synchronized(){}
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void safesyncmode(const bool){}
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uint64_t get_current_blockchain_height(){return 1;}
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virtual uint64_t get_current_blockchain_height() const final {return 1;}
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void set_target_blockchain_height(uint64_t) {}
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bool init(const boost::program_options::variables_map& vm);
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bool deinit(){return true;}
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@ -120,7 +120,12 @@ namespace
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{
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std::map<cryptonote::relay_method, std::vector<cryptonote::blobdata>> relayed_;
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uint64_t get_target_blockchain_height() const override
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virtual bool is_synchronized() const final
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{
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return false;
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}
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virtual uint64_t get_current_blockchain_height() const final
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{
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return 0;
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}
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@ -47,9 +47,10 @@ namespace cryptonote {
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class test_core : public cryptonote::i_core_events
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{
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public:
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virtual bool is_synchronized() const final { return true; }
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void on_synchronized(){}
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void safesyncmode(const bool){}
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uint64_t get_current_blockchain_height() const {return 1;}
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virtual uint64_t get_current_blockchain_height() const final {return 1;}
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void set_target_blockchain_height(uint64_t) {}
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bool init(const boost::program_options::variables_map& vm) {return true ;}
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bool deinit(){return true;}
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