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Change-Id: Iab68f157d9dde478ff10e39faa50d3f43949be7f
Signed-off-by: Jordan Augé <jordan.auge+fdio@cisco.com>
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Signed-off-by: Angelo Mantellini <angelo.mantellini@cisco.com>
Change-Id: Ie408cf35737b8c66d6de3ef49c2990ff4c868a50
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Signed-off-by: Angelo Mantellini <@ngelo.mantellini@cisco.com>
Change-Id: I05e4c92ce7de3640f0272afae127e1377862bd3e
Signed-off-by: Angelo Mantellini <angelo.mantellini@cisco.com>
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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>
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HICN_TYPE_IPV4_ICMP_AH
Signed-off-by: Mauro Sardara <msardara@cisco.com>
Change-Id: I3a9f3a26bafd0d3711090dc151f587148851f5b6
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from network layer
Signed-off-by: Mauro Sardara <msardara@cisco.com>
Change-Id: I082e3c1b5fc9f535089114cfe14940f094947b66
Signed-off-by: Mauro Sardara <msardara@cisco.com>
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Signed-off-by: Angelo Mantellini <angelo.mantellini@cisco.com>
Change-Id: I8d5d5c37eaab3f84a920f1753591fa4ab09f4799
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Signed-off-by: Mauro Sardara <msardara@cisco.com>
Change-Id: I42d69455542f3def0076fe58020f8f10347ef83f
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service
Signed-off-by: Mauro Sardara <msardara@cisco.com>
Change-Id: I1810d96e001a4e6e097e1efa331b682af750925d
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Signed-off-by: Mauro Sardara <msardara@cisco.com>
Change-Id: I8d8fdffef31a7013265d6529c5f52f3d5ec70d18
Signed-off-by: Mauro Sardara <msardara@cisco.com>
Signed-off-by: Mauro <you@example.com>
Signed-off-by: Mauro Sardara <msardara@cisco.com>
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Change-Id: Ica8db44e27c3a4911ea869e91f96b781809373d8
Signed-off-by: Mauro Sardara <msardara@cisco.com>
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Change-Id: I9263a65f3f151d55cdefcd14d39df4a70df9a83c
Signed-off-by: Mauro Sardara <msardara@cisco.com>
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Change-Id: I1106211d3cac63d0817d4908bd03d6a0ccd2b8e0
Signed-off-by: Mauro Sardara <msardara@cisco.com>
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Signed-off-by: Angelo Mantellini <angelo.mantellini@cisco.com>
Change-Id: Ic5cfeae600fde8140a076807fa1e411da1933a02
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P2P confidential communications exploit the TLS 1.3 protocol to let a consumer to
establish a secure communication on an hICN name. Currently we don't support the
consumer authentication (mutual authentication in TLS) and the 0-rtt session
establishment.
Change-Id: I2be073847c08a17f28c837d444081920c5e57a07
Signed-off-by: Alberto Compagno <acompagn+fdio@cisco.com>
Signed-off-by: Olivier Roques <oroques+fdio@cisco.com>
Signed-off-by: Mauro Sardara <msardara@cisco.com>
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Signed-off-by: Angelo Mantellini <angelo.mantellini@cisco.com>
Change-Id: I8fa8c4eaa3218eb4be46f713b15ab789c6930aa0
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Change-Id: I19a442080b6ca8b0477a8f92f161282288c395ee
Signed-off-by: Alberto Compagno <acompagn+fdio@cisco.com>
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Change-Id: I6487fbec0607464a625daa01455ddac8fdd75ee2
Signed-off-by: Jordan Augé <jordan.auge+fdio@cisco.com>
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Change-Id: I8f2287a262412bacc50f3c89756ec9fd6ce30d33
Signed-off-by: Jordan Augé <jordan.auge+fdio@cisco.com>
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Change-Id: I3f5e3840303265ccc3d4b864d026b63a2ccb7fdf
Signed-off-by: Jordan Augé <jordan.auge+fdio@cisco.com>
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Change-Id: I332e74ebcd89798c93de50ae7a20f7af8f59f54c
Signed-off-by: Jordan Augé <jordan.auge+fdio@cisco.com>
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Change-Id: I5c24f687e8e815d0e2f437ff8ce7fbb2c76e0579
Signed-off-by: Jordan Augé <jordan.auge+fdio@cisco.com>
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control api
Change-Id: Id097368dcde993775f206623195cc5aa57b4fe12
Signed-off-by: Jordan Augé <jordan.auge+fdio@cisco.com>
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Change-Id: If3f9a7db1e1310fdc08d1003b28e5e1d4006b61e
Signed-off-by: Alberto Compagno <acompagn+fdio@cisco.com>
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Change-Id: I16c8059ce537f338c15434acc87ac0e4baf87049
Signed-off-by: Jordan Augé <jordan.auge+fdio@cisco.com>
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Change-Id: I43adc62fadf00690b687078d739788dffdc5e566
Signed-off-by: Jordan Augé <jordan.auge+fdio@cisco.com>
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