Result for 204F2BE4B5BC031533BA9C4614205AE88DAE0B52

Query result

Key Value
FileName./usr/lib/python3.8/site-packages/pyfftw/interfaces/__pycache__/scipy_fftpack.cpython-38.pyc
FileSize7929
MD531D75B103107F0984E23A4A186587D0D
SHA-1204F2BE4B5BC031533BA9C4614205AE88DAE0B52
SHA-256B266955EB73DA4FE7E62868930F93E75D4BA9C99C5C26019880040E4C9300B71
SSDEEP192:8tScciXYP9jfWhpefG8jjvfqe+ddk+dX0gBTxJf343GqCDCDffqQ9eN:8tScciXYP9TZlqe+d2+dXnTnfM9k
TLSHT1A6F1950327C07AEBF857F5F4A0A69224D732D2AB399BC100A45040617EF7DD656B9EAC
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
MD5A6C5C6B369B912562EF9FA0F96EBB37B
PackageArchi586
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.
PackageNamepython38-pyFFTW
PackageRelease12.152
PackageVersion0.12.0
SHA-126B70B18BBAE4B3D87D7264C886D89F6CFCB39AB
SHA-25649C0BEFFD96CD830AF955AC0F148D0FA71EA673DBEB36722C23BFB97FAAFD3DC