Carmine Scarpitta

dblp:256/9608 · DBLP profile ↗
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5ranked-venue papers
1as first author
4since 2021 · last 2024
0000-0001-8634-5103ORCID · corroborated

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Computer networks · 4 · 1 first-author · 4 since 2021
YearPublicationVenuePosition
2024 High Performance Delay Monitoring for SRv6-Based SD-WANs
abstract
Software-Defined Wide Area Networks (SD-WANs) are used to provide services to enterprises with geographically dispersed locations in a flexible and efficient way. We focus on SD-WAN services based on the Segment Routing over IPv6 (SRv6) technology. Performance Monitoring solutions are needed in SD-WANs to detect performance degradation and outages, and optimize network operations. In this paper, we describe a high performance solution for end-to-end delay monitoring for SRv6 based SD-WAN services. The proposed solution leverages the Simple Two-way Active Measurement Protocol (STAMP) to monitor the delay of an SRv6 path between two nodes called STAMP Session-Sender and Session-Reflector. We describe three implementations of the STAMP Session-Sender and Session-Reflector for a Linux software router and compare their performance. In particular, two implementations are based on user space processing and one is based on eBPF. The results show that the eBPF-based implementation outperforms the user space implementations and has a negligible impact on the forwarding capacity of the Linux software router.
Carmine Scarpitta, Giulio Sidoretti, Andrea Mayer, Stefano Salsano, Ahmed Abdelsalam, Clarence Filsfils
IEEE Trans. Netw. Serv. Manag.1
2023 Micro SIDs: A Solution for Efficient Representation of Segment IDs in SRv6 Networks
abstract
The Segment Routing (SR) architecture is based on source routing. Within an SR enabled network, a list of instructions called segments can be added to the packet headers to influence the forwarding and the processing of the packets. In SRv6 (Segment Routing over IPv6 data plane) the segments are represented with IPv6 addresses, which are 16 bytes long. There are some SRv6 service scenarios that may require to carry a large number of segments in the IPv6 packet headers. Reducing the size of these overheads is useful to minimize the impact on MTU (Maximum Transfer Unit) and to enable SRv6 on legacy hardware devices with limited processing capabilities that could suffer from the long headers. In this paper we present the Micro SID solution for the efficient representation of segment identifiers. The proposed Micro SID solution has been implemented on three different architectures (VPP, Linux, P4) and interoperability tests have been performed. We also analyze the reduction of the header size that can be achieved with Micro SIDs and compare it with other proposals for segment list compression. Our results show that the header size can be reduced up to 75%. Finally, we mention that a fundamental asset of the proposed Micro SID solution is the full compatibility and seamless interoperability with existing SRv6 architecture.
Angelo Tulumello, Andrea Mayer, Marco Bonola, Paolo Lungaroni, Carmine Scarpitta, Stefano Salsano, Ahmed Abdelsalam, Pablo Camarillo, Darren Dukes, François Clad, Clarence Filsfils
IEEE Trans. Netw. Serv. Manag.5
2021 SRPerf: A Performance Evaluation Framework for IPv6 Segment Routing
abstract
Segment Routing (SR) is a form of loose source routing. It provides the ability to include a list of instructions, called segments, in the packet header. The SR architecture has been first implemented with the MPLS (SR-MPLS) data plane and then, quite recently, with the IPv6 data plane (SRv6). SRv6 is a promising solution to support advanced services such as Traffic Engineering, Service Function Chaining and Virtual Private Networks. The SRv6 data plane is supported in many different software forwarding engines including the Linux kernel and the Vector Packet Processor (VPP), as well as in hardware devices. In this paper, we present SRPerf, a performance evaluation framework for software and hardware implementations of SRv6. SRPerf is able to perform different benchmarking tests such as throughput and latency. The architecture of SRPerf can be easily extended to support new benchmarking methodologies as well as different SRv6 implementations. We have used SRPerf to evaluate the performance of two SRv6 implementations: Linux kernel and VPP. SRPerf is a valuable tool in the context of modern forwarding engines where new features can be added at fast pace, as it helps experimenters to validate their work. In this work, we have leveraged SRPerf to validate the implementation of some SRv6 behaviors in the Linux kernel and we have discovered and fixed some implementation flaws, making available the fixed code.
Ahmed Abdelsalam, Pier Luigi Ventre, Carmine Scarpitta, Andrea Mayer, Stefano Salsano, Pablo Camarillo, François Clad, Clarence Filsfils
IEEE Trans. Netw. Serv. Manag.3
2021 SRv6-PM: A Cloud-Native Architecture for Performance Monitoring of SRv6 Networks
abstract
Segment Routing over IPv6 (SRv6 in short) is a networking architecture suitable for both IP backbones and datacenters. The research, standardization and implementation of this architecture are actively progressing and SRv6 is already adopted in a number of large scale deployments. Effective solutions for Performance Monitoring (PM) of SRv6 networks are strongly needed and there is a lot of activity in this area. A full blown Performance Monitoring solution needs to include: i) Data Plane (as needed to measure metrics such as packet loss and delay); ii) Control Plane (to send commands to the monitoring entities in the nodes); iii) Management Plane (e.g., to collect the measured metrics). Moreover, Big-Data tools and solutions can be applied inside or above the traditional Management Plane boundaries to store and analyze the collected data. In this article we describe SRv6-PM, a solution for Performance Monitoring of SRv6 networks that deals with all the aspects discussed above. SRv6-PM features a cloud-native architecture that supports: i) the ingestion, processing, storage and visualization of PM data using Big-Data tools; ii) the SDN-based control of network routers to drive the performance monitoring operations. In particular, we focus on Loss Monitoring and consider a solution capable of tracking single packet loss events operating in near-real time (e.g., with a time granularity in the order of 10-20 seconds). SRv6-PM is released as open source. We offer a re-usable and extensible platform that can be automatically deployed in different environments, from a single host to multiple servers on private/public clouds and includes a set of Big-Data tools and the SDN control plane. We also provide a reproducible Data Plane environment for PM experiments in SRv6 networks based on the Mininet emulator.
Pierpaolo Loreti, Andrea Mayer, Paolo Lungaroni, Francesco Lombardo, Carmine Scarpitta, Giulio Sidoretti, Lorenzo Bracciale, Stefano Salsano, Ahmed Abdelsalam, Rakesh Gandhi, Clarence Filsfils
IEEE Trans. Netw. Serv. Manag.5
2020 Micro SIDs: a solution for Efficient Representation of Segment IDs in SRv6 Networks
abstract
The Segment Routing (SR) architecture is based on loose source routing. A list of instructions, called segments can be added to the packet headers, to influence the forwarding and the processing of the packets in an SR enabled network. In SRv6 (Segment Routing over IPv6 data plane) the segments are represented with IPv6 addresses, which are 16 bytes long. There are some SRv6 service scenarios that may require to carry a large number of segments in the IPv6 packet headers. Reducing the size of these overheads is useful to minimize the impact on MTU (Maximum Transfer Unit) and to enable SRv6 on legacy hardware devices with limited processing capabilities that could suffer the long headers. In this paper we present the Micro SID solution for the efficient representation of segment identifiers. With this solution, the length of the segment list can be drastically reduced.
Angelo Tulumello, Andrea Mayer, Marco Bonola, Paolo Lungaroni, Carmine Scarpitta, Stefano Salsano, Ahmed Abdelsalam, Pablo Camarillo, Darren Dukes, François Clad, Clarence Filsfils
CNSM5