Supported by the National High Technology Research and Development Program of China(No.2015AA015308);the National Key Research and Development Plan of China(No.2016YFB1000600,2016YFB1000601);the Major Program of National Natural Science Foundation of China(No.61432006)
With high computational capacity, e.g. many-core and wide floating point SIMD units, Intel Xeon Phi shows promising prospect to accelerate high-performance computing(HPC) applications. But the application of Intel Xeo...
The paper describes an efficient direct method to solve an equation Ax = b, where A is a sparse matrix, on the Intel®Xeon PhiTM coprocessor. The main challenge for such a system is how to engage all available thre...
supported by the National Natural Science Foundation of China under Grant Nos.61133005,61272136,61221062,61402441,61432018;the National High Technology Research and Development 863 Program of China under Grant No.2012AA010903;the Chinese Academy of Sciences Special Grant for Postgraduate Research,Innovation and Practice under Grant No.11000GBF01
Equipped with 512-bit wide SIMD inst d large numbers of computing cores, the emerging x86-based Intel(R) Many Integrated Core (MIC) Architecture ot only high floating-point performance, but also substantial ...