Generic crossbar network on chip for FPGA MPSoCs
David Bafumba-Lokilo, Yvon Savaria, Jean‐Pierre David · 2008
Networks-on-chip (NoCs) have emerged as a new design paradigm to implement MPSoCs that competes with the standard bus approach. They offer more scalability, flexibility, and bandwidth. Nevertheless, FPGA manufacturers still use the bus paradigm in their development frameworks. In this paper, we study the complexity and performances of a FPGA implementation for a crossbar NoC. We propose a generic architecture and characterize its complexity, maximum frequency of operation, and global throughput for NoCs supporting 2 to 8 nodes. Results show that FPGA-based designs would benefit from such architecture when high throughput must be reached. Finally, we present a fully functional 3times3 NoC interconnecting a PowerPC and 2 Xtensa processors implemented in a VirtexII Pro FPGA.