Matrix Multiplication Inches Closer To Mythic Goal
quantamagazine.org
Matrix Multiplication Inches Closer To Mythic Goal
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Re: Matrix Multiplication Inches Closer To Mythic Goal
#2> The result, by Josh Alman, a postdoctoral researcher at Harvard University, and Virginia Vassilevska Williams of the Massachusetts Institute of Technology, shaves about one-hundred-thousandth off the exponent of the previous best mark. It’s typical of the recent painstaking gains in the field.
Re: Matrix Multiplication Inches Closer To Mythic Goal
#3Re: Matrix Multiplication Inches Closer To Mythic Goal
#4Re: Matrix Multiplication Inches Closer To Mythic Goal
#5Which one of these algos does Intel/Nvidia/Google use in their AVX/Cuda/TPU implementations?
Re: Matrix Multiplication Inches Closer To Mythic Goal
#6Which one of these algos does Intel/Nvidia/Google use in their AVX/Cuda/TPU implementations?
https://developer.nvidia.com/blog/cutlass-linear-algebra-cud...
Re: Matrix Multiplication Inches Closer To Mythic Goal
#7Re: Matrix Multiplication Inches Closer To Mythic Goal
#8Earlier quoted context omitted.
Strassen's method is the only one practical on modern hardware
And only in fixed precision.
Re: Matrix Multiplication Inches Closer To Mythic Goal
#9Earlier quoted context omitted.
And only in fixed precision.
What makes you say that? I've had good speedups with Strassen multiplication in variable precision (or with floating-point, in case you meant fixed-point arithmetic).