Result for 0F6B801E4FD2A09DA1D791160CD835C3B695AA27

Query result

Key Value
FileName./usr/share/maven-metadata/lz4-java.xml
FileSize775
MD59B674AC6F1D5D2BD88C1D8AF06761237
SHA-10F6B801E4FD2A09DA1D791160CD835C3B695AA27
SHA-25682F9A490F3A5B8A9AF29C1BBAA172426DF5918805C5FABAC306BF0DC728AE7F4
SSDEEP12:TMHdm47hk5Z1PGnHeuKJG/LjNhtOyizu+UwbuKJG/LjNheOyiAEaqAnY6N:2dmKhuZ1PGcG/NhtYzdVG/NheYARBnYW
TLSHT11E014CE0B8ED51B032C44BC4EE32EA6ABF4A406B94215E4CF0CD29445F9ACCC0563582
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
MD5DB29DA10BD3A52E93B45BDFCBEA3C081
PackageArchaarch64
PackageDescriptionLZ4 compression for Java, based on Yann Collet's work. This library provides access to two compression methods that both generate a valid LZ4 stream: * fast scan (LZ4): ° low memory footprint (~ 16 KB), ° very fast (fast scan with skipping heuristics in case the input looks incompressible), ° reasonable compression ratio (depending on the redundancy of the input). * high compression (LZ4 HC): ° medium memory footprint (~ 256 KB), ° rather slow (~ 10 times slower than LZ4), ° good compression ratio (depending on the size and the redundancy of the input). The streams produced by those 2 compression algorithms use the same compression format, are very fast to decompress and can be decompressed by the same decompressor instance.
PackageMaintainerFedora Project
PackageNamelz4-java
PackageRelease2.fc24
PackageVersion1.3.0
SHA-115417EC3A861530C8A5FF456F30BC729E1A0F736
SHA-2567006DAE6EC88D357B137414D92BD90DBC9D6943F7E32F773409251BE75B9F71F