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authorLuca Muscariello <muscariello@ieee.org>2021-04-15 09:05:46 +0200
committerMauro Sardara <msardara@cisco.com>2021-04-15 16:36:16 +0200
commite92e9e839ca2cf42b56322b2489ccc0d8bf767af (patch)
tree9f1647c83a87fbf982ae329e800af25dbfb226b5 /libtransport/src/io_modules/memif/memif_connector.h
parent3e541d7c947cc2f9db145f26c9274efd29a6fb56 (diff)
[HICN-690] Transport Library Major Refactory
The current patch provides a major refactory of the transportlibrary. A summary of the different components that underwent major modifications is reported below. - Transport protocol updates The hierarchy of classes has been optimized to have common transport services across different transport protocols. This can allow to customize a transport protocol with new features. - A new real-time communication protocol The RTC protocol has been optimized in terms of algorithms to reduce consumer-producer synchronization latency. - A novel socket API The API has been reworked to be easier to consumer but also to have a more efficient integration in L4 proxies. - Several performance improvements A large number of performance improvements have been included in particular to make the entire stack zero-copy and optimize cache miss. - New memory buffer framework Memory management has been reworked entirely to provide a more efficient infra with a richer API. Buffers are now allocated in blocks and a single buffer holds the memory for (1) the shared_ptr control block, (2) the metadata of the packet (e.g. name, pointer to other buffers if buffer is chained and relevant offsets), and (3) the packet itself, as it is sent/received over the network. - A new slab allocator Dynamic memory allocation is now managed by a novel slab allocator that is optimised for packet processing and connection management. Memory is organized in pools of blocks all of the same size which are used during the processing of outgoing/incoming packets. When a memory block Is allocated is always taken from a global pool and when it is deallocated is returned to the pool, thus avoiding the cost of any heap allocation in the data path. - New transport connectors Consumer and producer end-points can communication either using an hicn packet forwarder or with direct connector based on shared memories or sockets. The usage of transport connectors typically for unit and funcitonal testing but may have additional usage. - Support for FEC/ECC for transport services FEC/ECC via reed solomon is supported by default and made available to transport services as a modular component. Reed solomon block codes is a default FEC model that can be replaced in a modular way by many other codes including RLNC not avaiable in this distribution. The current FEC framework support variable size padding and efficiently makes use of the infra memory buffers to avoid additiona copies. - Secure transport framework for signature computation and verification Crypto support is nativelty used in hICN for integrity and authenticity. Novel support that includes RTC has been implemented and made modular and reusable acrosso different transport protocols. - TLS - Transport layer security over hicn Point to point confidentiality is provided by integrating TLS on top of hICN reliable and non-reliable transport. The integration is common and makes a different use of the TLS record. - MLS - Messaging layer security over hicn MLS integration on top of hICN is made by using the MLSPP implemetation open sourced by Cisco. We have included instrumentation tools to deploy performance and functional tests of groups of end-points. - Android support The overall code has been heavily tested in Android environments and has received heavy lifting to better run natively in recent Android OS. Co-authored-by: Mauro Sardara <msardara@cisco.com> Co-authored-by: Michele Papalini <micpapal@cisco.com> Co-authored-by: Olivier Roques <oroques+fdio@cisco.com> Co-authored-by: Giulio Grassi <gigrassi@cisco.com> Change-Id: If477ba2fa686e6f47bdf96307ac60938766aef69 Signed-off-by: Luca Muscariello <muscariello@ieee.org>
Diffstat (limited to 'libtransport/src/io_modules/memif/memif_connector.h')
-rw-r--r--libtransport/src/io_modules/memif/memif_connector.h130
1 files changed, 130 insertions, 0 deletions
diff --git a/libtransport/src/io_modules/memif/memif_connector.h b/libtransport/src/io_modules/memif/memif_connector.h
new file mode 100644
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+++ b/libtransport/src/io_modules/memif/memif_connector.h
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+/*
+ * Copyright (c) 2017-2019 Cisco and/or its affiliates.
+ * Licensed under the Apache License, Version 2.0 (the "License");
+ * you may not use this file except in compliance with the License.
+ * You may obtain a copy of the License at:
+ *
+ * http://www.apache.org/licenses/LICENSE-2.0
+ *
+ * Unless required by applicable law or agreed to in writing, software
+ * distributed under the License is distributed on an "AS IS" BASIS,
+ * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
+ * See the License for the specific language governing permissions and
+ * limitations under the License.
+ */
+
+#pragma once
+
+#include <hicn/transport/config.h>
+#include <hicn/transport/core/connector.h>
+#include <hicn/transport/portability/portability.h>
+#include <hicn/transport/utils/ring_buffer.h>
+//#include <hicn/transport/core/hicn_vapi.h>
+#include <utils/epoll_event_reactor.h>
+#include <utils/fd_deadline_timer.h>
+
+#include <asio.hpp>
+#include <deque>
+#include <mutex>
+#include <thread>
+
+#define _Static_assert static_assert
+
+namespace transport {
+
+namespace core {
+
+typedef struct memif_connection memif_connection_t;
+
+#define APP_NAME "libtransport"
+#define IF_NAME "vpp_connection"
+
+#define MEMIF_BUF_SIZE 2048
+#define MEMIF_LOG2_RING_SIZE 13
+#define MAX_MEMIF_BUFS (1 << MEMIF_LOG2_RING_SIZE)
+
+class MemifConnector : public Connector {
+ using memif_conn_handle_t = void *;
+ using PacketRing = utils::CircularFifo<utils::MemBuf::Ptr, queue_size>;
+
+ public:
+ MemifConnector(PacketReceivedCallback &&receive_callback,
+ PacketSentCallback &&packet_sent,
+ OnCloseCallback &&close_callback,
+ OnReconnectCallback &&on_reconnect,
+ asio::io_service &io_service,
+ std::string app_name = "Libtransport");
+
+ ~MemifConnector() override;
+
+ void send(Packet &packet) override;
+
+ void send(const uint8_t *packet, std::size_t len) override;
+
+ void close() override;
+
+ void connect(uint32_t memif_id, long memif_mode);
+
+ TRANSPORT_ALWAYS_INLINE uint32_t getMemifId() { return memif_id_; };
+
+ private:
+ void init();
+
+ int doSend();
+
+ int createMemif(uint32_t index, uint8_t mode, char *s);
+
+ uint32_t getMemifConfiguration();
+
+ int deleteMemif();
+
+ static int controlFdUpdate(int fd, uint8_t events, void *private_ctx);
+
+ static int onConnect(memif_conn_handle_t conn, void *private_ctx);
+
+ static int onDisconnect(memif_conn_handle_t conn, void *private_ctx);
+
+ static int onInterrupt(memif_conn_handle_t conn, void *private_ctx,
+ uint16_t qid);
+
+ void threadMain();
+
+ int txBurst(uint16_t qid);
+
+ int bufferAlloc(long n, uint16_t qid);
+
+ void sendCallback(const std::error_code &ec);
+
+ void processInputBuffer(std::uint16_t total_packets);
+
+ private:
+ static utils::EpollEventReactor main_event_reactor_;
+ static std::unique_ptr<std::thread> main_worker_;
+
+ int epfd;
+ std::unique_ptr<std::thread> memif_worker_;
+ utils::EpollEventReactor event_reactor_;
+ std::atomic_bool timer_set_;
+ std::unique_ptr<utils::FdDeadlineTimer> send_timer_;
+ std::unique_ptr<utils::FdDeadlineTimer> disconnect_timer_;
+ asio::io_service &io_service_;
+ std::unique_ptr<asio::io_service::work> work_;
+ std::unique_ptr<memif_connection_t> memif_connection_;
+ uint16_t tx_buf_counter_;
+
+ PacketRing input_buffer_;
+ bool is_reconnection_;
+ bool data_available_;
+ uint32_t memif_id_;
+ uint8_t memif_mode_;
+ std::string app_name_;
+ uint16_t transmission_index_;
+ utils::SpinLock write_msgs_lock_;
+ std::string socket_filename_;
+
+ static std::once_flag flag_;
+};
+
+} // end namespace core
+
+} // end namespace transport