Chip multiprocessors (CMPs) combine increasingly many general-purpose processor cores on a single chip. These cores run several tasks with unpredictable communication needs, resulting in uncertain and often-changing traffic patterns. This unpredictability leads network-on-chip (NoC) designers to plan for the worst case traffic patterns, and significantly overprovision link capacities. In this paper, we provide NoC designers with an alternative statistical approach. We first present the traffic-load distribution plots (T-Plots), illustrating how much capacity overprovisioning is needed to service 90, 99, or 100 percent of all traffic patterns. We prove that in the general case, plotting T-Plots is #P-complete, and therefore extremely complex...
Networks on Chips (NoCs) have evolved as the communication design paradigm of future Systems on Chip...
[[abstract]]Power and thermal distribution are critical issues in chip multiprocessors (CMPs). Most ...
Networks-on-chip (NoCs) are becoming increasingly important in general-purpose and application-speci...
Chip multiprocessors (CMPs) combine increasingly many general-purpose processor cores on a single ch...
Chip multiprocessors (CMPs) combine increasingly many general-purpose processor cores on a single ch...
Today, chip multiprocessors (CMPs) that accommodate multiple processor cores on the same chip have b...
As benchmark programs for microprocessor architectures, network-on-chip (NoC) traffic patterns are e...
Abstract—A continuing technology scaling and the increasing requirements of modern embedded applicat...
With the increasing number of processing cores in many- core chip-multiprocessors (CMPs) and with th...
Networks-on-chip (NoCs) are emerging as the de facto on- chip interconnection fabric of choice for b...
In this paper, we present network-on-chip (NoC) design and con-trast it to traditional network desig...
As technology scaling down allows multiple processing components to be integrated on a single chip, ...
Mainstream electronic designs are realized by Systems-on-Chips (SoCs) that push the limits of integr...
The Kalray MPPA2-256 processor integrates 256 processing cores and 32 management cores on a chip. Th...
We propose a chapter focused on multi-processor system on chip (MPSoC) traffic modeling for embedded...
Networks on Chips (NoCs) have evolved as the communication design paradigm of future Systems on Chip...
[[abstract]]Power and thermal distribution are critical issues in chip multiprocessors (CMPs). Most ...
Networks-on-chip (NoCs) are becoming increasingly important in general-purpose and application-speci...
Chip multiprocessors (CMPs) combine increasingly many general-purpose processor cores on a single ch...
Chip multiprocessors (CMPs) combine increasingly many general-purpose processor cores on a single ch...
Today, chip multiprocessors (CMPs) that accommodate multiple processor cores on the same chip have b...
As benchmark programs for microprocessor architectures, network-on-chip (NoC) traffic patterns are e...
Abstract—A continuing technology scaling and the increasing requirements of modern embedded applicat...
With the increasing number of processing cores in many- core chip-multiprocessors (CMPs) and with th...
Networks-on-chip (NoCs) are emerging as the de facto on- chip interconnection fabric of choice for b...
In this paper, we present network-on-chip (NoC) design and con-trast it to traditional network desig...
As technology scaling down allows multiple processing components to be integrated on a single chip, ...
Mainstream electronic designs are realized by Systems-on-Chips (SoCs) that push the limits of integr...
The Kalray MPPA2-256 processor integrates 256 processing cores and 32 management cores on a chip. Th...
We propose a chapter focused on multi-processor system on chip (MPSoC) traffic modeling for embedded...
Networks on Chips (NoCs) have evolved as the communication design paradigm of future Systems on Chip...
[[abstract]]Power and thermal distribution are critical issues in chip multiprocessors (CMPs). Most ...
Networks-on-chip (NoCs) are becoming increasingly important in general-purpose and application-speci...