Result for 011FF73408836588EEC788058822B1C16FEDCEDA

Query result

Key Value
FileName./usr/lib64/python3.10/site-packages/pyfftw/interfaces/__pycache__/scipy_fft.cpython-310.pyc
FileSize7976
MD577CB08E3DBB10D211517DAF5509CEFBA
SHA-1011FF73408836588EEC788058822B1C16FEDCEDA
SHA-2567E9A96C074E7BB662D69EEB883CB4E8CAA9454755A9EC87C222348F243B11EB2
SSDEEP96:9vLXz0WyFrCcbS7BZLDiKzpJ4umjNF6EJYaJxJ7SNEJZJncEJO0JEmJRNTVrJ0JY:B/uCB1BBJ4uVExihKVDxL69vEFFFq+Z
TLSHT125F1840329502EE3F8C3F5F4309BC555C72142AAB987C08A691C41F95FE7CDE1692F9A
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
MD589D712C5D99F65A291144EE27D2D42B0
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.
PackageNamepython310-pyFFTW
PackageRelease12.152
PackageVersion0.12.0
SHA-19870CF3039080C121DF1A93FE861669F327B2310
SHA-25617F72CD848B1C86E2B5A6614209DD707B2660216567A2C75FE75220E6C2A0BD6