Result for 10C1C4EF08B91353C10D0B241EBB19DC9C0CA40D

Query result

Key Value
FileName./usr/lib64/python3.8/site-packages/pyproj/__pycache__/transformer.cpython-38.pyc
FileSize28125
MD502DADA2B1A73838D7289F514EDC90CED
SHA-110C1C4EF08B91353C10D0B241EBB19DC9C0CA40D
SHA-256C7EA51F303A6AF7415315C591A4A64EE802330DB261D6B332CF8A2959CE823EE
SSDEEP384:AfvBaZ5Yq19MELaHYKEC5g3/ElQE/2E6N/FejtMP8PxX9JZ:Af5a/4FEEGe2rtItMP8Pt9X
TLSHT1E8C2A5877C811471F592F1F265EF8B046739C7A36249106EB18C50AE2FC162C67B9B6F
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
MD56C007DB26FDE4505056FE83BDD7B54A8
PackageArchx86_64
PackageDescriptionPerforms cartographic transformations and geodetic computations. The Proj class can convert from geographic (longitude,latitude) to native map projection (x,y) coordinates and vice versa, or from one map projection coordinate system directly to another. The Geod class can perform forward and inverse geodetic, or Great Circle, computations. The forward computation involves determining latitude, longitude and back azimuth of a terminus point given the latitude and longitude of an initial point, plus azimuth and distance. The inverse computation involves determining the forward and back azimuths and distance given the latitudes and longitudes of an initial and terminus point. Input coordinates can be given as python arrays, lists/tuples, scalars or numpy/Numeric/numarray arrays. Optimized for objects that support the Python buffer protocol (regular python and numpy array objects). This project has a git repository https://github.com/pyproj4/pyproj where you may access the most up-to-date source.
PackageNamepython3-pyproj
PackageRelease2.6
PackageVersion2.6.0
SHA-13DB4DC4FCBB6264CCB2FC555EE2BA6304A183D65
SHA-25663CB9C393C61B75A1D23F10D9C92D9C1BDE39ACAC1EB36370AC8711E081FDEC8