http://www.pcworld.com/article/id,13...1/article.html
http://ati.amd.com/products/streamprocessor/specs.html
The things I liked:
Optimized for Computation
Double-precision floating point for scientific and engineering codes
2GB on-board memory
320 stream cores drive up to 500 GFLOPS single-precision performance
Asynchronous DMA, allowing data transfers without interrupting streams processor or CPU
Accelerating data-parallel algorithms in a variety of applications
Seismic processing
Financial analysis
Engineering analysis
Rendering
Computational chemistry
Genetic research
Physics
Video editing
Security
==============
I wonder where are its bottlenecks and when would it be actually useful for rendering, since there has to be some sort of rewriting of the core code.
I also wonder how it's going to be available since if everything would work OK there will be quite a high demand from everybody from everywhere...
I really thought it wouldn't be possible that soon, but how about dreaming of Realtime VRAY
http://ati.amd.com/products/streamprocessor/specs.html
The things I liked:
Optimized for Computation
Double-precision floating point for scientific and engineering codes
2GB on-board memory
320 stream cores drive up to 500 GFLOPS single-precision performance
Asynchronous DMA, allowing data transfers without interrupting streams processor or CPU
Accelerating data-parallel algorithms in a variety of applications
Seismic processing
Financial analysis
Engineering analysis
Rendering
Computational chemistry
Genetic research
Physics
Video editing
Security
==============
I wonder where are its bottlenecks and when would it be actually useful for rendering, since there has to be some sort of rewriting of the core code.
I also wonder how it's going to be available since if everything would work OK there will be quite a high demand from everybody from everywhere...
I really thought it wouldn't be possible that soon, but how about dreaming of Realtime VRAY

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