Comp. Develop., 2013, no. 49, pp. 1–2.
[32] R. Narayanan et al., “Macroflows and microflows: Enabling rapid net-
work innovation through a split SDN data plane,” in Proc. Eur. Workshop
Softw. Defined Netw., Oct. 2012, pp. 79–84.
[33] B. Boughzala, R. Ben Ali, M. Lemay, Y. Lemieux, and O. Cherkaoui,
“OpenFlow supporting inter-domain virtual machine migration,” in
Proc. Int. Conf. Wireless Opt. Commun. Netw. (WOCN), May 2011,
pp. 1–7.
[34] C. Baker, A. Anjum, R. Hill, N. Bessis, and S. L. Kiani, “Improving
cloud datacenter scalability, agility and performance using OpenFlow,”
in Proc. Int. Conf. Int. Netw. Collaborative Syst., Sep. 2012, pp. 20–27.
[35] A. Gember, C. Dragga, and A. Akella, “ECOS: Leveraging software-
defined networks to support mobile application offloading,” in Proc.
Eighth ACM/IEEE Symp. Architectures Netw. Commun. Syst., 2012,
pp. 199–210.
[36] V. Mann, A. Vishnoi, K. Kannan, and S. Kalyanaraman, “CrossRoads:
Seamless VM mobility across data centers through software defined
networking,” in Proc. IEEE Netw. Operations Manage. Symp., 2012,
pp. 88–96.
[37] P. A. A. Gutiérrez and D. R. Lopez, “An OpenFlow network design
cycle,” in Netw. Innovation through OpenFlow SDN: Principles Design.
New York, NY, USA: Taylor & Francis LLC, CRC Press, 2014.
[38] R. Stallman, R. Pesch, and S. Shebs, Debugging With GDB: The Source
Level Debugger. Boston, USA: GNU Press, 2002.
[39] The Eclipse Foundation. [Online]. Available: http://www.eclipse.org
[40] G. T. Heineman and W. T. Councill, Eds., Component-Based Soft-
ware Engineering: Putting the Pieces Together. Reading, MA, USA:
Addison-Wesley, 2001.
[41] L. M. Correia, Ed., Architecture and Design for the Future Internet.
New York, NY, USA: Springer-Verlag, 2011.
[42] A. de C. Alves, OSGi Application Frameworks. Shelter Island, NY,
USA: Manning Publications, 2009.
[43] J. Highsmith and A. Cockburn, “Agile software development: The Busi-
ness of Innovation,” Computer, vol. 34, no. 9, pp. 120–122, Sep. 2001.
[44] K. Petersen, C. Wohlin, and D. Baca, “The waterfall model in large-
scale development,” in Proc. Int. Conf. Prod.-Focused Softw. Process
Improvement, 2009, pp. 386–400.
[45] OpenVSwitch.
[Online].
Available:
http://openvswitch.org/
development/openflow-1-x-plan
[46] Pica8 Open Network Fabric. [Online]. Available: http://www.pica8.org/
solutions/openflow.php
[47] Indigo—Open Source OpenFlow Switches. [Online]. Available: http://
www.openflowhub.org/display/Indigo/
[48] NOX. [Online]. Available: http://www.noxrepo.org/nox/about-nox/
[49] POX. [Online]. Available: http://www.noxrepo.org/pox/about-pox/
[50] Trema: Full-Stack OpenFlow Framework in Ruby and C. [Online].
Available: https://github.com/trema/
[51] Floodlight: A Java-Based OpenFlow Controller. [Online]. Available:
http://floodlight.openflowhub.org/
[52] D. Erickson. [Online]. Available: https://openflow.stanford.edu/display/
Beacon/Home
[53] Floodlight is an Open SDN Controller. [Online]. Available: http://
floodlight.openflowhub.org/
[54] OpenStack: Open Source Software for Building Private and Public
Clouds, 2012. [Online]. Available: http://www.openstack.org/
[55] A. Orebaugh, G. Ramirez, J. Burke, and L. Pesce, Wireshark & Ethereal
Network Protocol Analyzer Toolkit (Jay Beale’s Open Source Security).
Sebastopol, CA, USA: Syngress Publishing, 2006.
[56] ns3. [Online]. Available: http://www.nsnam.org
[57] J. Pelkey, OpenFlow Software Implementation Distribution. [Online].
Available: http://code.nsnam.org/jpelkey3/openflow
[58] T. L. Hinrichs, N. S. Gude, M. Casado, J. C. Mitchell, and S. Shenker,
“Practical declarative network management,” in Proc. ACM Workshop
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