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It is really interesting that they're applying this to FPGA's. Reconfigurable computing would be great, if it was a) easy to program for and b) cheaper. This co
by shader 18y ago
It is really interesting that they're applying this to FPGA's. Reconfigurable computing would be great, if it was a) easy to program for and b) cheaper. This could solve the cheaper part, and make it even more powerful at the same time. However, I don't know how hard it is to program reconfigurable computers.
FYI: Reconfigurable computing is like parallel computing, but instead of running all of the threads on commodity hardware, they are each dynamically implemented on a FPGA. This makes a super computer with thousands of simultaneous processes much cheaper, and take far less space, if you can program the system.
http://en.wikipedia.org/wiki/Reconfigurable_computing http://en.wikipedia.org/wiki/Reconfigurable_computing
Wikipedia says that reconfigurable computing systems commonly increase speed 4 orders of magnitude and decrease power consumption by one order of magnitude. (that's right, order of magnitude) However, this is in spite of the fact that FPGAs are behind commodity hardware by almost the same amount. If memristors make a decent dent in the hardware disparities, then reconfigurable computing could be huge.
- mleonhard 18y agoI'm excited about FPGAs, too! I think FPGA co-processors will be very useful in servers. There are a lot of software and OS problems to solve first.