Result for 2968710DD83E68C48C12DB2871EEFF04571B70E0

Query result

Key Value
FileName./usr/lib/powerpc64le-linux-gnu/superlu-dist/tests/TEST/CTestTestfile.cmake
FileSize4115
MD51485BCF85443B40985B1765BF2C9F680
SHA-12968710DD83E68C48C12DB2871EEFF04571B70E0
SHA-25624260AD27F50402A1209E93D125D50208E434A411403FF0E693BC6344CE9E00F
SSDEEP96:PdD58If+uBmyuIf+gmyHfKGmylfTmyfpuemydpvmyUPZmyCNmi:PR58If+uUyuIf+byHfKNylfSyfpuVydr
TLSHT181814CBEE2477450C1D73ADA8081A632FBFCB6F28F52DD18EF95C8E5619FAD92016100
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
FileSize253604
MD525FB1B7606C7953FA7C1906F7221DCCA
PackageDescriptionHighly distributed solution of sparse linear equations SuperLU is a general purpose library for the direct solution of large, sparse, nonsymmetric systems of linear equations. The library is written in C and is callable from either C or Fortran program. It uses MPI, OpenMP and CUDA to support various forms of parallelism. It supports both real and complex datatypes, both single and double precision, and 64-bit integer indexing. The library routines performs an LU decomposition with partial pivoting and triangular system solves through forward and back substitution. The LU factorization routines can handle non-square matrices but the triangular solves are performed only for square matrices. The matrix columns may be preordered (before factorization) either through library or user supplied routines. This preordering for sparsity is completely separate from the factorization. Working precision iterative refinement subroutines are provided for improved backward stability. Routines are also provided to equilibrate the system, estimate the condition number, calculate the relative backward error, and estimate error bounds for the refined solutions. . SuperLU_DIST implements the algorithms for distributed memory, targetting highly parallel distributed memory hybrid systems. The numerical factorization routines are already implemented for hybrid systems with multiple GPUs. Further work will be needed to implement the other phases of the algorithms on the hybrid systems and to enhance strong scaling to extreme scale. . This package provides development files for building client applications against superlu-dist.
PackageMaintainerDebian Science Maintainers <debian-science-maintainers@lists.alioth.debian.org>
PackageNamelibsuperlu-dist-dev
PackageSectionlibdevel
PackageVersion6.2.0+dfsg1-3
SHA-19C247BC2A2B392C8005867B7B89238C9CCD46182
SHA-2562B89956B69449AA42649E70C690EEC055522E2111281EC683B5324515E0F1F84