Fixed i2p/tor tx flooding bug (white noise disabled)
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2c171a9b02
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2a7d91523b
@ -187,14 +187,15 @@ namespace levin
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{
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{
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struct zone
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struct zone
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{
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{
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explicit zone(boost::asio::io_service& io_service, std::shared_ptr<connections> p2p, epee::byte_slice noise_in)
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explicit zone(boost::asio::io_service& io_service, std::shared_ptr<connections> p2p, epee::byte_slice noise_in, bool is_public)
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: p2p(std::move(p2p)),
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: p2p(std::move(p2p)),
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noise(std::move(noise_in)),
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noise(std::move(noise_in)),
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next_epoch(io_service),
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next_epoch(io_service),
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strand(io_service),
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strand(io_service),
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map(),
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map(),
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channels(),
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channels(),
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connection_count(0)
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connection_count(0),
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is_public(is_public)
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{
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{
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for (std::size_t count = 0; !noise.empty() && count < CRYPTONOTE_NOISE_CHANNELS; ++count)
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for (std::size_t count = 0; !noise.empty() && count < CRYPTONOTE_NOISE_CHANNELS; ++count)
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channels.emplace_back(io_service);
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channels.emplace_back(io_service);
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@ -207,6 +208,7 @@ namespace levin
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net::dandelionpp::connection_map map;//!< Tracks outgoing uuid's for noise channels or Dandelion++ stems
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net::dandelionpp::connection_map map;//!< Tracks outgoing uuid's for noise channels or Dandelion++ stems
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std::deque<noise_channel> channels; //!< Never touch after init; only update elements on `noise_channel.strand`
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std::deque<noise_channel> channels; //!< Never touch after init; only update elements on `noise_channel.strand`
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std::atomic<std::size_t> connection_count; //!< Only update in strand, can be read at any time
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std::atomic<std::size_t> connection_count; //!< Only update in strand, can be read at any time
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const bool is_public; //!< Zone is public ipv4/ipv6 connections
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};
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};
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} // detail
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} // detail
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@ -276,7 +278,10 @@ namespace levin
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std::vector<boost::uuids::uuid> connections;
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std::vector<boost::uuids::uuid> connections;
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connections.reserve(connection_id_reserve_size);
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connections.reserve(connection_id_reserve_size);
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zone_->p2p->foreach_connection([this, &connections] (detail::p2p_context& context) {
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zone_->p2p->foreach_connection([this, &connections] (detail::p2p_context& context) {
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if (this->source_ != context.m_connection_id)
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/* Only send to outgoing connections when "flooding" over i2p/tor.
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Otherwise this makes the tx linkable to a hidden service address,
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making things linkable across connections. */
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if (this->source_ != context.m_connection_id && (this->zone_->is_public || !context.m_is_income))
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connections.emplace_back(context.m_connection_id);
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connections.emplace_back(context.m_connection_id);
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return true;
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return true;
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});
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});
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@ -476,8 +481,8 @@ namespace levin
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};
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};
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} // anonymous
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} // anonymous
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notify::notify(boost::asio::io_service& service, std::shared_ptr<connections> p2p, epee::byte_slice noise)
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notify::notify(boost::asio::io_service& service, std::shared_ptr<connections> p2p, epee::byte_slice noise, bool is_public)
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: zone_(std::make_shared<detail::zone>(service, std::move(p2p), std::move(noise)))
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: zone_(std::make_shared<detail::zone>(service, std::move(p2p), std::move(noise), is_public))
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{
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{
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if (!zone_->p2p)
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if (!zone_->p2p)
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throw std::logic_error{"cryptonote::levin::notify cannot have nullptr p2p argument"};
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throw std::logic_error{"cryptonote::levin::notify cannot have nullptr p2p argument"};
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@ -528,7 +533,7 @@ namespace levin
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channel.next_noise.cancel();
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channel.next_noise.cancel();
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}
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}
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bool notify::send_txs(std::vector<cryptonote::blobdata> txs, const boost::uuids::uuid& source, const bool pad_txs)
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bool notify::send_txs(std::vector<blobdata> txs, const boost::uuids::uuid& source, const bool pad_txs)
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{
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{
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if (!zone_)
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if (!zone_)
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return false;
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return false;
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@ -86,7 +86,7 @@ namespace levin
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{}
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{}
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//! Construct an instance with available notification `zones`.
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//! Construct an instance with available notification `zones`.
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explicit notify(boost::asio::io_service& service, std::shared_ptr<connections> p2p, epee::byte_slice noise);
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explicit notify(boost::asio::io_service& service, std::shared_ptr<connections> p2p, epee::byte_slice noise, bool is_public);
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notify(const notify&) = delete;
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notify(const notify&) = delete;
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notify(notify&&) = default;
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notify(notify&&) = default;
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@ -384,7 +384,7 @@ namespace nodetool
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m_use_ipv6 = command_line::get_arg(vm, arg_p2p_use_ipv6);
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m_use_ipv6 = command_line::get_arg(vm, arg_p2p_use_ipv6);
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m_require_ipv4 = command_line::get_arg(vm, arg_p2p_require_ipv4);
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m_require_ipv4 = command_line::get_arg(vm, arg_p2p_require_ipv4);
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public_zone.m_notifier = cryptonote::levin::notify{
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public_zone.m_notifier = cryptonote::levin::notify{
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public_zone.m_net_server.get_io_service(), public_zone.m_net_server.get_config_shared(), nullptr
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public_zone.m_net_server.get_io_service(), public_zone.m_net_server.get_config_shared(), nullptr, true
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};
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};
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if (command_line::has_arg(vm, arg_p2p_add_peer))
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if (command_line::has_arg(vm, arg_p2p_add_peer))
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@ -495,7 +495,7 @@ namespace nodetool
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}
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}
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zone.m_notifier = cryptonote::levin::notify{
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zone.m_notifier = cryptonote::levin::notify{
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zone.m_net_server.get_io_service(), zone.m_net_server.get_config_shared(), std::move(this_noise)
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zone.m_net_server.get_io_service(), zone.m_net_server.get_config_shared(), std::move(this_noise), false
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};
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};
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}
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}
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@ -38,6 +38,7 @@
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#include "byte_slice.h"
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#include "byte_slice.h"
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#include "crypto/crypto.h"
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#include "crypto/crypto.h"
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#include "cryptonote_basic/connection_context.h"
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#include "cryptonote_basic/connection_context.h"
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#include "cryptonote_core/cryptonote_core.h"
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#include "cryptonote_protocol/cryptonote_protocol_defs.h"
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#include "cryptonote_protocol/cryptonote_protocol_defs.h"
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#include "cryptonote_protocol/levin_notify.h"
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#include "cryptonote_protocol/levin_notify.h"
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#include "int-util.h"
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#include "int-util.h"
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@ -119,12 +120,13 @@ namespace
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epee::levin::async_protocol_handler<cryptonote::levin::detail::p2p_context> handler_;
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epee::levin::async_protocol_handler<cryptonote::levin::detail::p2p_context> handler_;
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public:
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public:
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test_connection(boost::asio::io_service& io_service, cryptonote::levin::connections& connections, boost::uuids::random_generator& random_generator)
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test_connection(boost::asio::io_service& io_service, cryptonote::levin::connections& connections, boost::uuids::random_generator& random_generator, const bool is_incoming)
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: context_(),
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: endpoint_(io_service),
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endpoint_(io_service),
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context_(),
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handler_(std::addressof(endpoint_), connections, context_)
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handler_(std::addressof(endpoint_), connections, context_)
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{
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{
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const_cast<boost::uuids::uuid&>(context_.m_connection_id) = random_generator();
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using base_type = epee::net_utils::connection_context_base;
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static_cast<base_type&>(context_) = base_type{random_generator(), {}, is_incoming, false};
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handler_.after_init_connection();
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handler_.after_init_connection();
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}
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}
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@ -262,19 +264,19 @@ namespace
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EXPECT_EQ(0u, receiver_.notified_size());
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EXPECT_EQ(0u, receiver_.notified_size());
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}
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}
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void add_connection()
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void add_connection(const bool is_incoming)
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{
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{
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contexts_.emplace_back(io_service_, *connections_, random_generator_);
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contexts_.emplace_back(io_service_, *connections_, random_generator_, is_incoming);
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EXPECT_TRUE(connection_ids_.emplace(contexts_.back().get_id()).second);
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EXPECT_TRUE(connection_ids_.emplace(contexts_.back().get_id()).second);
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EXPECT_EQ(connection_ids_.size(), connections_->get_connections_count());
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EXPECT_EQ(connection_ids_.size(), connections_->get_connections_count());
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}
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}
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cryptonote::levin::notify make_notifier(const std::size_t noise_size)
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cryptonote::levin::notify make_notifier(const std::size_t noise_size, bool is_public)
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{
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{
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epee::byte_slice noise = nullptr;
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epee::byte_slice noise = nullptr;
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if (noise_size)
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if (noise_size)
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noise = epee::levin::make_noise_notify(noise_size);
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noise = epee::levin::make_noise_notify(noise_size);
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return cryptonote::levin::notify{io_service_, connections_, std::move(noise)};
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return cryptonote::levin::notify{io_service_, connections_, std::move(noise), is_public};
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}
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}
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boost::uuids::random_generator random_generator_;
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boost::uuids::random_generator random_generator_;
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@ -437,10 +439,10 @@ TEST_F(levin_notify, defaulted)
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TEST_F(levin_notify, flood)
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TEST_F(levin_notify, flood)
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{
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{
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cryptonote::levin::notify notifier = make_notifier(0);
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cryptonote::levin::notify notifier = make_notifier(0, true);
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for (unsigned count = 0; count < 10; ++count)
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for (unsigned count = 0; count < 10; ++count)
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add_connection();
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add_connection(count % 2 == 0);
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{
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{
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const auto status = notifier.get_status();
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const auto status = notifier.get_status();
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@ -500,16 +502,87 @@ TEST_F(levin_notify, flood)
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}
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}
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}
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}
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TEST_F(levin_notify, private_flood)
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{
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cryptonote::levin::notify notifier = make_notifier(0, false);
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for (unsigned count = 0; count < 10; ++count)
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add_connection(count % 2 == 0);
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{
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const auto status = notifier.get_status();
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EXPECT_FALSE(status.has_noise);
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EXPECT_FALSE(status.connections_filled);
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}
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notifier.new_out_connection();
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io_service_.poll();
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{
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const auto status = notifier.get_status();
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EXPECT_FALSE(status.has_noise);
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EXPECT_FALSE(status.connections_filled); // not tracked
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}
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std::vector<cryptonote::blobdata> txs(2);
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txs[0].resize(100, 'e');
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txs[1].resize(200, 'f');
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ASSERT_EQ(10u, contexts_.size());
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{
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auto context = contexts_.begin();
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EXPECT_TRUE(notifier.send_txs(txs, context->get_id(), false));
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io_service_.reset();
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ASSERT_LT(0u, io_service_.poll());
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EXPECT_EQ(0u, context->process_send_queue());
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for (++context; context != contexts_.end(); ++context)
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{
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const bool is_incoming = ((context - contexts_.begin()) % 2 == 0);
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EXPECT_EQ(is_incoming ? 0u : 1u, context->process_send_queue());
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}
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ASSERT_EQ(5u, receiver_.notified_size());
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for (unsigned count = 0; count < 5; ++count)
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{
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auto notification = receiver_.get_notification<cryptonote::NOTIFY_NEW_TRANSACTIONS>().second;
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EXPECT_EQ(txs, notification.txs);
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EXPECT_TRUE(notification._.empty());
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}
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}
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ASSERT_EQ(10u, contexts_.size());
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{
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auto context = contexts_.begin();
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EXPECT_TRUE(notifier.send_txs(txs, context->get_id(), true));
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io_service_.reset();
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ASSERT_LT(0u, io_service_.poll());
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EXPECT_EQ(0u, context->process_send_queue());
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for (++context; context != contexts_.end(); ++context)
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{
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const bool is_incoming = ((context - contexts_.begin()) % 2 == 0);
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EXPECT_EQ(is_incoming ? 0u : 1u, context->process_send_queue());
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}
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ASSERT_EQ(5u, receiver_.notified_size());
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for (unsigned count = 0; count < 5; ++count)
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{
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auto notification = receiver_.get_notification<cryptonote::NOTIFY_NEW_TRANSACTIONS>().second;
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EXPECT_EQ(txs, notification.txs);
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EXPECT_FALSE(notification._.empty());
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}
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}
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}
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TEST_F(levin_notify, noise)
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TEST_F(levin_notify, noise)
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{
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{
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for (unsigned count = 0; count < 10; ++count)
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for (unsigned count = 0; count < 10; ++count)
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add_connection();
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add_connection(count % 2 == 0);
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std::vector<cryptonote::blobdata> txs(1);
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std::vector<cryptonote::blobdata> txs(1);
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txs[0].resize(1900, 'h');
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txs[0].resize(1900, 'h');
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const boost::uuids::uuid incoming_id = random_generator_();
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const boost::uuids::uuid incoming_id = random_generator_();
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cryptonote::levin::notify notifier = make_notifier(2048);
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cryptonote::levin::notify notifier = make_notifier(2048, false);
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{
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{
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const auto status = notifier.get_status();
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const auto status = notifier.get_status();
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