Darpa Funds Development of New Type of Processor
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Re: Darpa Funds Development of New Type of Processor
#2Re: Darpa Funds Development of New Type of Processor
#3"Darpa Funds Development of New Type of Processor: Worlds First Non-Von-Neumann " https://en.wikipedia.org/wiki/Harvard_architecture ?
> "This non-von-Neumann approach allows one big map that can be accessed by many processors at the same time, each using its own local scratch-pad memory while simultaneously performing scatter-and-gather operations across global memory."
Re: Darpa Funds Development of New Type of Processor
#4"Darpa Funds Development of New Type of Processor: Worlds First Non-Von-Neumann " https://en.wikipedia.org/wiki/Harvard_architecture ?
cheap clickbait title.
Re: Darpa Funds Development of New Type of Processor
#5An interesting approach to non-Von Neumann computing is to put ALUs in memory, to take advantage of the fact that DRAMs have far more internal bandwidth than what is exposed in traditional systems: http://researcher.ibm.com/researcher/files/us-leejinho/tvlsi....
Re: Darpa Funds Development of New Type of Processor
#6"Darpa Funds Development of New Type of Processor: Worlds First Non-Von-Neumann " https://en.wikipedia.org/wiki/Harvard_architecture ?
Re: Darpa Funds Development of New Type of Processor
#7Re: Darpa Funds Development of New Type of Processor
#8Re: Darpa Funds Development of New Type of Processor
#9What does the memory interface look like for this? None of the papers I can find indicate how you can get so much parallelism out of the CPU memory interface. An interesting approach to non-Von Neumann computing is to put ALUs in memory, to take advantage of the fact that DRAMs have far more internal bandwidth than what is exposed in traditional systems: http://researcher.ibm.com/researcher/files/us-leejinho/tvlsi...…