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Monosek

MONOSEK is a Network Processor based Network Packet Processing and Network Session Analysis system”.For designers of communications equipment whose network processing requirements extend beyond simple forwarding, the NFP-32xx delivers high performance packet processing with intelligence, security and virtualization for millions of simultaneous flows. Unlike network processors and multicore CPUs that lack L4-L7 programmability or cannot scale to 10 Gbps and beyond, the NFP-32xx is powered by 40 programmable flow processing cores that deliver 2,000 instructions and 50 flow operations per packet at 30 million pps, enabling up to 40Gbps of L2-L7 processing.

Performance
Over 40 Gbps wire speed programmable stateful flow and packet processing
56 billion instructions per second
30M packets per second
1,800 instructions per packet
1.84 billion instructions per watt

Monosek Brochure

Product Highlights NFP-3240

  • 70-million enqueue/dequeue packet operations per second
  • More than 70 Gbps of total memory bandwidth
  • SRAM with support for more than 300 MQOps (queuing operations/second)
  • Source-code and backward compatibility with Intel® IXP28XX microengines
  • High-performance solution with low power consumption for a broad range of L2-L7 applications
  • Delivering up to 30 Mpps/20 Gbps packet forwarding, policing, scheduling, queue management
  • Enhanced flow processing cores (v2.7) derived from Intel microengine version (v2.6)
  • 40 fully programmable flow processing cores with eight threads each running up to 1.4GHz.
  • High-speed PCIe 2.0 interface to multicore x86 or external control plane processor
  • Standards-based interfaces for easy integration (e.g., QDRII, DDR3, PCIe 2.0, XAUI, Interlaken)
  • Integrated cryptography engine
  • High-performance 32-bit ARM11

NFE-3240 Features

  • Up to 40 flow processing cores
  • OpenFlow 1.3 support with 42 match fields
  • OVS 2.0 acceleration
  • Packet classification and filtering
  • Stateful flow analysis and action processing for up to 8 million flows in hardware
  • Hardware-based cryptography and PKI operations
  • Extremely low latency
  • I/O virtualization
  • Packet timestamping with 11ns accuracy
  • GPS time synchronization
  • Dynamic load balancing to parallelize application performance
  • Layer 2 switching
  • Layer 3 routing
  • Network address and port translation (NAPT)
  • Full programming flexibility to support network or protocol changes
  • APIs controlling flow processing cores

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