Result for 399C66BCC00A7F52B810CD8B473AF2C2007CAB1E

Query result

Key Value
FileName./usr/lib64/python3.6/site-packages/pyfftw/interfaces/__pycache__/scipy_fft.cpython-36.pyc
FileSize9222
MD5949394469B173B6CAE14011931F0EDA8
SHA-1399C66BCC00A7F52B810CD8B473AF2C2007CAB1E
SHA-25637867F9324544F8ADE22186A3D07AC7A3B8231A1321690520EADB8EA6564973A
SSDEEP96:Hnhx0WyFrCcbS7BZpDbLPjeV1yv1U2vjNFmJYTJ2JYSNXJLJRNJv0JqtJwNoMJxS:HTuCB1Di1sa2j02fY1gnb9TA
TLSHT1001273432E803EF7F0C3F5F0349B87A1871041A6758B8087695481B66EEBCD989A7DBD
hashlookup:parent-total1
hashlookup:trust55

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Parents (Total: 1)

The searched file hash is included in 1 parent files which include package known and seen by metalookup. A sample is included below:

Key Value
MD538695A81C27FC369CA5CCCA9419FC8D1
PackageArchx86_64
PackageDescriptionpyFFTW is a pythonic wrapper around the FFTW libary. An interface for all the possible transforms that FFTW can perform is provided. Both the complex DFT and the real DFT are supported, as well as arbitrary axes of abitrary shaped and strided arrays, which makes it almost feature equivalent to standard and real FFT functions of ``numpy.fft`` (indeed, it supports the ``clongdouble`` dtype which ``numpy.fft`` does not). Operating FFTW in multithreaded mode is supported. A comprehensive unittest suite can be found with the source on the github repository.
PackageNamepython3-pyFFTW
PackageRelease3.69
PackageVersion0.12.0
SHA-13D7E9A37D75B0AABF9CB1FE2180EFDBB2AA6D4EA
SHA-256A8440B4D437AE2723D5B47482C2E4043783D72524D3C8A1D1A021B458E9C13A5