Result for 2A75D80712A3BD572CE48CBC1BB6D0E5411A5A58

Query result

Key Value
FileName./usr/lib/python3.8/site-packages/pyproj/_geod.cpython-38-i386-linux-gnu.so
FileSize89380
MD53993AE618F8C783BA777A7FFBE354F2E
SHA-12A75D80712A3BD572CE48CBC1BB6D0E5411A5A58
SHA-256B5672B076095A2FB514288CF51C14206ECC0249A9969C42B729A7A47B11EB5C8
SSDEEP1536:yNtXXdcDjb4S0O2zq+ikpxVBQE0RX3iLKK1yKldCx:yN10HO8bYV/3Cx
TLSHT1A293190AFBD7C5B3F5A74CB1208E2B266611940161A3F7C5F91533466E722907F2EAF4
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
MD55522CDE7443A85ED7BAD093728431393
PackageArchi586
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.
PackageMaintainerhttps://bugs.opensuse.org
PackageNamepython38-pyproj
PackageRelease1.1
PackageVersion3.3.0
SHA-17FDEB3EE90A568720D325DCF17DD7C4BFABBFF68
SHA-2561B5ECE181F06B9BDD4E335FC9E5BA7203415D9FC4E07895C92F005CBBEF5D5E3