Key | Value |
---|---|
FileName | libgslcblas.so.0.0.0 |
FileSize | 202060 |
MD5 | 72A10090BD93D0124FB8BCE084900C07 |
RDS:package_id | 288653 |
SHA-1 | 84940986C43BA77AB881F7DCEACCFF7E9FFA9AF4 |
SHA-256 | 754974B98F7524A02682711B040938964B7437274AE2140F11B69F255F221CC0 |
SSDEEP | 3072:5jubeKNkdPn8IOsbFCU11184Rv6RVeNiaRKgXqIvZtx/EDM/LmLcLHtv1q7fP6k2:5juCK+PPB1DRrNXeRAuYpP9 |
TLSH | T1A8146DB09CA09040C09A90F7D18B3BB960997F77993160FFADBDD9947A45EC1D9CC3A2 |
insert-timestamp | 1671037070.0716405 |
source | legacy.db |
hashlookup:parent-total | 1 |
hashlookup:trust | 55 |
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 |
---|---|
FileSize | 898724 |
MD5 | 25EA19BAA5FAD2F61437711D3BB4165C |
PackageDescription | GNU Scientific Library (GSL) -- library package The GNU Scientific Library (GSL) is a collection of routines for numerical analysis. The routines are written from scratch by the GSL team in C, and present a modern API for C programmers, while allowing wrappers to be written for very high level languages. . GSL includes data types and routines for complex numbers, vectors, matrices, basic linear algebra subroutines (BLAS), eigensystems, simulated annealing, minimization, root finding, pseudo-random numbers, least-squares fitting, fast Fourier transforms (FFT), differential equations, quadrature, Monte Carlo integration, special functions, physical constants, and much more. . This package provides the shared libraries required to run programs compiled with GNU GSL. To compile your own programs you also need to install libgsl0-dev. |
PackageMaintainer | Ubuntu Developers <ubuntu-devel-discuss@lists.ubuntu.com> |
PackageName | libgsl0ldbl |
PackageSection | math |
PackageVersion | 1.14+dfsg-1 |
SHA-1 | 625C40623EF30253C0A2DD0FB5137E38B35063E8 |
SHA-256 | 88B0FAFA863A7DF697EBEC3B1167C4226C3808397D64C4A28DD7D89D34263491 |