The Experts below are selected from a list of 42 Experts worldwide ranked by ideXlab platform

James Mccauley - One of the best experts on this subject based on the ideXlab platform.

  • Leveraging SDN layering to systematically troubleshoot Networks
    2013
    Co-Authors: Brandon Heller, Peyman Kazemian, Hongyi Zeng, James Mccauley, Kyriakos Zarifis, Colin Scott, Scott Shenker, Andreas Wundsam, Nick Mckeown, Sam Whitlock
    Abstract:

    Today's Networks are maintained by "masters of complexity": Network Admins who have accumulated the wisdom to troubleshoot complex problems, despite a limiting toolset. This position paper advocates a more structured troubleshooting approach that leverages architectural layering in Software-Defined Networks (SDNs). In all Networks, high-level intent (policy) must correctly map to low-level forwarding behavior (hardware configuration). In SDNs, intent is explicitly expressed, forwarding semantics are explicitly defined, and each architectural layer fully specifies the behavior of the Network. Building on these observations, we show how recently-developed troubleshooting tools fit into a coherent workflow that detects mistranslations between layers to precisely localize sources of errant control logic. Our goals are to explain the overall picture, show how the pieces fit together to enable a systematic workflow, and highlight the questions that remain. Once this workflow is realized, Network Admins can formally verify that their Network is operating correctly, automatically troubleshoot bugs, and systematically track down their root cause -- freeing Admins to fix problems, rather than diagnose their symptoms.

  • HotSDN - Leveraging SDN layering to systematically troubleshoot Networks
    Proceedings of the second ACM SIGCOMM workshop on Hot topics in software defined networking - HotSDN '13, 2013
    Co-Authors: Brandon Heller, Hongyi Zeng, Sam Whitlock, Colin Scott, Scott Shenker, Andreas Wundsam, Nick Mckeown, Vimalkumar Jeyakumar, Nikhil Handigol, James Mccauley
    Abstract:

    Today's Networks are maintained by "masters of complexity": Network Admins who have accumulated the wisdom to troubleshoot complex problems, despite a limiting toolset. This position paper advocates a more structured troubleshooting approach that leverages architectural layering in Software-Defined Networks (SDNs). In all Networks, high-level intent (policy) must correctly map to low-level forwarding behavior (hardware configuration). In SDNs, intent is explicitly expressed, forwarding semantics are explicitly defined, and each architectural layer fully specifies the behavior of the Network. Building on these observations, we show how recently-developed troubleshooting tools fit into a coherent workflow that detects mistranslations between layers to precisely localize sources of errant control logic. Our goals are to explain the overall picture, show how the pieces fit together to enable a systematic workflow, and highlight the questions that remain. Once this workflow is realized, Network Admins can formally verify that their Network is operating correctly, automatically troubleshoot bugs, and systematically track down their root cause -- freeing Admins to fix problems, rather than diagnose their symptoms.

Brandon Heller - One of the best experts on this subject based on the ideXlab platform.

  • Leveraging SDN layering to systematically troubleshoot Networks
    2013
    Co-Authors: Brandon Heller, Peyman Kazemian, Hongyi Zeng, James Mccauley, Kyriakos Zarifis, Colin Scott, Scott Shenker, Andreas Wundsam, Nick Mckeown, Sam Whitlock
    Abstract:

    Today's Networks are maintained by "masters of complexity": Network Admins who have accumulated the wisdom to troubleshoot complex problems, despite a limiting toolset. This position paper advocates a more structured troubleshooting approach that leverages architectural layering in Software-Defined Networks (SDNs). In all Networks, high-level intent (policy) must correctly map to low-level forwarding behavior (hardware configuration). In SDNs, intent is explicitly expressed, forwarding semantics are explicitly defined, and each architectural layer fully specifies the behavior of the Network. Building on these observations, we show how recently-developed troubleshooting tools fit into a coherent workflow that detects mistranslations between layers to precisely localize sources of errant control logic. Our goals are to explain the overall picture, show how the pieces fit together to enable a systematic workflow, and highlight the questions that remain. Once this workflow is realized, Network Admins can formally verify that their Network is operating correctly, automatically troubleshoot bugs, and systematically track down their root cause -- freeing Admins to fix problems, rather than diagnose their symptoms.

  • HotSDN - Leveraging SDN layering to systematically troubleshoot Networks
    Proceedings of the second ACM SIGCOMM workshop on Hot topics in software defined networking - HotSDN '13, 2013
    Co-Authors: Brandon Heller, Hongyi Zeng, Sam Whitlock, Colin Scott, Scott Shenker, Andreas Wundsam, Nick Mckeown, Vimalkumar Jeyakumar, Nikhil Handigol, James Mccauley
    Abstract:

    Today's Networks are maintained by "masters of complexity": Network Admins who have accumulated the wisdom to troubleshoot complex problems, despite a limiting toolset. This position paper advocates a more structured troubleshooting approach that leverages architectural layering in Software-Defined Networks (SDNs). In all Networks, high-level intent (policy) must correctly map to low-level forwarding behavior (hardware configuration). In SDNs, intent is explicitly expressed, forwarding semantics are explicitly defined, and each architectural layer fully specifies the behavior of the Network. Building on these observations, we show how recently-developed troubleshooting tools fit into a coherent workflow that detects mistranslations between layers to precisely localize sources of errant control logic. Our goals are to explain the overall picture, show how the pieces fit together to enable a systematic workflow, and highlight the questions that remain. Once this workflow is realized, Network Admins can formally verify that their Network is operating correctly, automatically troubleshoot bugs, and systematically track down their root cause -- freeing Admins to fix problems, rather than diagnose their symptoms.

Sam Whitlock - One of the best experts on this subject based on the ideXlab platform.

  • Leveraging SDN layering to systematically troubleshoot Networks
    2013
    Co-Authors: Brandon Heller, Peyman Kazemian, Hongyi Zeng, James Mccauley, Kyriakos Zarifis, Colin Scott, Scott Shenker, Andreas Wundsam, Nick Mckeown, Sam Whitlock
    Abstract:

    Today's Networks are maintained by "masters of complexity": Network Admins who have accumulated the wisdom to troubleshoot complex problems, despite a limiting toolset. This position paper advocates a more structured troubleshooting approach that leverages architectural layering in Software-Defined Networks (SDNs). In all Networks, high-level intent (policy) must correctly map to low-level forwarding behavior (hardware configuration). In SDNs, intent is explicitly expressed, forwarding semantics are explicitly defined, and each architectural layer fully specifies the behavior of the Network. Building on these observations, we show how recently-developed troubleshooting tools fit into a coherent workflow that detects mistranslations between layers to precisely localize sources of errant control logic. Our goals are to explain the overall picture, show how the pieces fit together to enable a systematic workflow, and highlight the questions that remain. Once this workflow is realized, Network Admins can formally verify that their Network is operating correctly, automatically troubleshoot bugs, and systematically track down their root cause -- freeing Admins to fix problems, rather than diagnose their symptoms.

  • HotSDN - Leveraging SDN layering to systematically troubleshoot Networks
    Proceedings of the second ACM SIGCOMM workshop on Hot topics in software defined networking - HotSDN '13, 2013
    Co-Authors: Brandon Heller, Hongyi Zeng, Sam Whitlock, Colin Scott, Scott Shenker, Andreas Wundsam, Nick Mckeown, Vimalkumar Jeyakumar, Nikhil Handigol, James Mccauley
    Abstract:

    Today's Networks are maintained by "masters of complexity": Network Admins who have accumulated the wisdom to troubleshoot complex problems, despite a limiting toolset. This position paper advocates a more structured troubleshooting approach that leverages architectural layering in Software-Defined Networks (SDNs). In all Networks, high-level intent (policy) must correctly map to low-level forwarding behavior (hardware configuration). In SDNs, intent is explicitly expressed, forwarding semantics are explicitly defined, and each architectural layer fully specifies the behavior of the Network. Building on these observations, we show how recently-developed troubleshooting tools fit into a coherent workflow that detects mistranslations between layers to precisely localize sources of errant control logic. Our goals are to explain the overall picture, show how the pieces fit together to enable a systematic workflow, and highlight the questions that remain. Once this workflow is realized, Network Admins can formally verify that their Network is operating correctly, automatically troubleshoot bugs, and systematically track down their root cause -- freeing Admins to fix problems, rather than diagnose their symptoms.

Nick Mckeown - One of the best experts on this subject based on the ideXlab platform.

  • Leveraging SDN layering to systematically troubleshoot Networks
    2013
    Co-Authors: Brandon Heller, Peyman Kazemian, Hongyi Zeng, James Mccauley, Kyriakos Zarifis, Colin Scott, Scott Shenker, Andreas Wundsam, Nick Mckeown, Sam Whitlock
    Abstract:

    Today's Networks are maintained by "masters of complexity": Network Admins who have accumulated the wisdom to troubleshoot complex problems, despite a limiting toolset. This position paper advocates a more structured troubleshooting approach that leverages architectural layering in Software-Defined Networks (SDNs). In all Networks, high-level intent (policy) must correctly map to low-level forwarding behavior (hardware configuration). In SDNs, intent is explicitly expressed, forwarding semantics are explicitly defined, and each architectural layer fully specifies the behavior of the Network. Building on these observations, we show how recently-developed troubleshooting tools fit into a coherent workflow that detects mistranslations between layers to precisely localize sources of errant control logic. Our goals are to explain the overall picture, show how the pieces fit together to enable a systematic workflow, and highlight the questions that remain. Once this workflow is realized, Network Admins can formally verify that their Network is operating correctly, automatically troubleshoot bugs, and systematically track down their root cause -- freeing Admins to fix problems, rather than diagnose their symptoms.

  • HotSDN - Leveraging SDN layering to systematically troubleshoot Networks
    Proceedings of the second ACM SIGCOMM workshop on Hot topics in software defined networking - HotSDN '13, 2013
    Co-Authors: Brandon Heller, Hongyi Zeng, Sam Whitlock, Colin Scott, Scott Shenker, Andreas Wundsam, Nick Mckeown, Vimalkumar Jeyakumar, Nikhil Handigol, James Mccauley
    Abstract:

    Today's Networks are maintained by "masters of complexity": Network Admins who have accumulated the wisdom to troubleshoot complex problems, despite a limiting toolset. This position paper advocates a more structured troubleshooting approach that leverages architectural layering in Software-Defined Networks (SDNs). In all Networks, high-level intent (policy) must correctly map to low-level forwarding behavior (hardware configuration). In SDNs, intent is explicitly expressed, forwarding semantics are explicitly defined, and each architectural layer fully specifies the behavior of the Network. Building on these observations, we show how recently-developed troubleshooting tools fit into a coherent workflow that detects mistranslations between layers to precisely localize sources of errant control logic. Our goals are to explain the overall picture, show how the pieces fit together to enable a systematic workflow, and highlight the questions that remain. Once this workflow is realized, Network Admins can formally verify that their Network is operating correctly, automatically troubleshoot bugs, and systematically track down their root cause -- freeing Admins to fix problems, rather than diagnose their symptoms.

Andreas Wundsam - One of the best experts on this subject based on the ideXlab platform.

  • Leveraging SDN layering to systematically troubleshoot Networks
    2013
    Co-Authors: Brandon Heller, Peyman Kazemian, Hongyi Zeng, James Mccauley, Kyriakos Zarifis, Colin Scott, Scott Shenker, Andreas Wundsam, Nick Mckeown, Sam Whitlock
    Abstract:

    Today's Networks are maintained by "masters of complexity": Network Admins who have accumulated the wisdom to troubleshoot complex problems, despite a limiting toolset. This position paper advocates a more structured troubleshooting approach that leverages architectural layering in Software-Defined Networks (SDNs). In all Networks, high-level intent (policy) must correctly map to low-level forwarding behavior (hardware configuration). In SDNs, intent is explicitly expressed, forwarding semantics are explicitly defined, and each architectural layer fully specifies the behavior of the Network. Building on these observations, we show how recently-developed troubleshooting tools fit into a coherent workflow that detects mistranslations between layers to precisely localize sources of errant control logic. Our goals are to explain the overall picture, show how the pieces fit together to enable a systematic workflow, and highlight the questions that remain. Once this workflow is realized, Network Admins can formally verify that their Network is operating correctly, automatically troubleshoot bugs, and systematically track down their root cause -- freeing Admins to fix problems, rather than diagnose their symptoms.

  • HotSDN - Leveraging SDN layering to systematically troubleshoot Networks
    Proceedings of the second ACM SIGCOMM workshop on Hot topics in software defined networking - HotSDN '13, 2013
    Co-Authors: Brandon Heller, Hongyi Zeng, Sam Whitlock, Colin Scott, Scott Shenker, Andreas Wundsam, Nick Mckeown, Vimalkumar Jeyakumar, Nikhil Handigol, James Mccauley
    Abstract:

    Today's Networks are maintained by "masters of complexity": Network Admins who have accumulated the wisdom to troubleshoot complex problems, despite a limiting toolset. This position paper advocates a more structured troubleshooting approach that leverages architectural layering in Software-Defined Networks (SDNs). In all Networks, high-level intent (policy) must correctly map to low-level forwarding behavior (hardware configuration). In SDNs, intent is explicitly expressed, forwarding semantics are explicitly defined, and each architectural layer fully specifies the behavior of the Network. Building on these observations, we show how recently-developed troubleshooting tools fit into a coherent workflow that detects mistranslations between layers to precisely localize sources of errant control logic. Our goals are to explain the overall picture, show how the pieces fit together to enable a systematic workflow, and highlight the questions that remain. Once this workflow is realized, Network Admins can formally verify that their Network is operating correctly, automatically troubleshoot bugs, and systematically track down their root cause -- freeing Admins to fix problems, rather than diagnose their symptoms.