Result for 24EF8F96CF3D4F9F11E445D423F78F762909D762

Query result

Key Value
FileName./usr/lib/pmix/mca_bfrops_v12.so
FileSize57580
MD5E5FA4F794C40378C9C9C5F2B7F3E7F9C
SHA-124EF8F96CF3D4F9F11E445D423F78F762909D762
SHA-256F7F68E861655684804E000B71DD5EB1C3663ED32EC814B4587CDBDD5862EBE8D
SSDEEP1536:nBsonEJ8wivoi8fecNohl8KscfViCOmq9JPEBEJDpG3mubJbeJciyiobzDh1Dz4B:nBsbjJc5xb/hdz41
TLSHT1B14394197841C6E0C9D0A5B97B0E876DB3139BA8E3DE23069A0153313BAB91F5F77706
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
MD5BEB4787990FE5525A03262D3A0F1185F
PackageArcharmv7hl
PackageDescriptionThe Process Management Interface (PMI) has been used for quite some time as a means of exchanging wireup information needed for interprocess communication. Two versions (PMI-1 and PMI-2) have been released as part of the MPICH effort. While PMI-2 demonstrates better scaling properties than its PMI-1 predecessor, attaining rapid launch and wireup of the roughly 1M processes executing across 100k nodes expected for exascale operations remains challenging. PMI Exascale (PMIx) represents an attempt to resolve these questions by providing an extended version of the PMI standard specifically designed to support clusters up to and including exascale sizes. The overall objective of the project is not to branch the existing pseudo-standard definitions - in fact, PMIx fully supports both of the existing PMI-1 and PMI-2 APIs - but rather to (a) augment and extend those APIs to eliminate some current restrictions that impact scalability, and (b) provide a reference implementation of the PMI-server that demonstrates the desired level of scalability.
PackageMaintainerFedora Project
PackageNamepmix
PackageRelease0.1.rc1.fc33
PackageVersion3.1.6
SHA-161BF069851ABD6C9F37DA32364EA7A1DDD6CAE33
SHA-256CA2BB547C3C193BEBA50927C64652871EB3A03A0FC74FF9AADDB5064F19B2428