Result for 1090E015094D628B02E7C2AAB88A2AE0721C1D61

Query result

Key Value
FileName./usr/share/doc/Random123-doc/examples/pi_microurng.cpp
FileSize4248
MD53580AB66006ECBC14F447EE35B4F3625
SHA-11090E015094D628B02E7C2AAB88A2AE0721C1D61
SHA-256D3BFFB07DAF3B7C6611FB58127F64ADC6A1B84518AFA3F0B201BDD82E1374423
SSDEEP96:X0YrYH0FrYHKrN3B53hpYTcP/Yb87dGRlRet6XsQhCato:EYrU0FrUKrN3r3LacXO80Et6XsQFto
TLSHT14891B45511544BA55FC302A66F8665C8E509909F3B33FA063C5F53582F1B02FE1BB2D7
hashlookup:parent-total5
hashlookup:trust75

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Parents (Total: 5)

The searched file hash is included in 5 parent files which include package known and seen by metalookup. A sample is included below:

Key Value
MD531457C2C6C739136E9B0BC10F618A1B3
PackageArchnoarch
PackageDescriptionDocumentation for Random123 Random123 is a library of "counter-based" random number generators (CBRNGs), in which the Nth random number can be obtained by applying a stateless mixing function to N instead of the conventional approach of using N iterations of a stateful transformation. CBRNGs were originally developed for use in MD applications on Anton, but they are ideal for a wide range of applications on modern multi-core CPUs, GPUs, clusters, and special-purpose hardware. Three families of non-cryptographic CBRNGs are described in a paper presented at the SC11 conference: ARS (based on the Advanced Encryption System (AES)), Threefry (based on the Threefish encryption function), and Philox (based on integer multiplication). They all satisfy rigorous statistical testing (passing BigCrush in TestU01), vectorize and parallelize well (each generator can produce at least 264 independent streams), have long periods (the period of each stream is at least 2128), require little or no memory or state, and have excellent performance (a few clock cycles per byte of random output). The Random123 library can be used with CPU (C and C++) and GPU (CUDA and OpenCL) applications.
PackageMaintainerFedora Project
PackageNameRandom123-doc
PackageRelease3.fc23
PackageVersion1.08
SHA-1E70DF4DBBA91C2B139FF7AAB9EFBE8F0A525C0F9
SHA-2561F9137A07A282D868FF64808E1CBDA5D6B2489F9E472C081D0437E3CC133A801
Key Value
MD56EE43E6D56DD0647096547964239243A
PackageArchppc64
PackageDescriptionDocumentation for Random123 Random123 is a library of "counter-based" random number generators (CBRNGs), in which the Nth random number can be obtained by applying a stateless mixing function to N instead of the conventional approach of using N iterations of a stateful transformation. CBRNGs were originally developed for use in MD applications on Anton, but they are ideal for a wide range of applications on modern multi-core CPUs, GPUs, clusters, and special-purpose hardware. Three families of non-cryptographic CBRNGs are described in a paper presented at the SC11 conference: ARS (based on the Advanced Encryption System (AES)), Threefry (based on the Threefish encryption function), and Philox (based on integer multiplication). They all satisfy rigorous statistical testing (passing BigCrush in TestU01), vectorize and parallelize well (each generator can produce at least 264 independent streams), have long periods (the period of each stream is at least 2128), require little or no memory or state, and have excellent performance (a few clock cycles per byte of random output). The Random123 library can be used with CPU (C and C++) and GPU (CUDA and OpenCL) applications.
PackageMaintainerFedora Project
PackageNameRandom123-doc
PackageRelease1.fc24
PackageVersion1.09
SHA-1F5AE0F81FE0D16220B98002C2F6863113A44D9C6
SHA-2562BE6CC6311D9E747207A539E3F0FB3BD22DB7ABB4B1CBE292D5065ECEB9ED56E
Key Value
MD507488EA99D5958F6D00F19DEE48E9864
PackageArchaarch64
PackageDescriptionDocumentation for Random123 Random123 is a library of "counter-based" random number generators (CBRNGs), in which the Nth random number can be obtained by applying a stateless mixing function to N instead of the conventional approach of using N iterations of a stateful transformation. CBRNGs were originally developed for use in MD applications on Anton, but they are ideal for a wide range of applications on modern multi-core CPUs, GPUs, clusters, and special-purpose hardware. Three families of non-cryptographic CBRNGs are described in a paper presented at the SC11 conference: ARS (based on the Advanced Encryption System (AES)), Threefry (based on the Threefish encryption function), and Philox (based on integer multiplication). They all satisfy rigorous statistical testing (passing BigCrush in TestU01), vectorize and parallelize well (each generator can produce at least 264 independent streams), have long periods (the period of each stream is at least 2128), require little or no memory or state, and have excellent performance (a few clock cycles per byte of random output). The Random123 library can be used with CPU (C and C++) and GPU (CUDA and OpenCL) applications.
PackageMaintainerFedora Project
PackageNameRandom123-doc
PackageRelease1.fc24
PackageVersion1.09
SHA-1FE55B1FF4D4F09DA9A763AD8A2248C7971233620
SHA-256037914F6E96A3A247839C173F0EB82506A66C22178CFBFBA26D6D828A90BFC12
Key Value
MD5FC508ACFD7C1175D14091DEFC79A3AF8
PackageArchnoarch
PackageDescriptionDocumentation for Random123 Random123 is a library of "counter-based" random number generators (CBRNGs), in which the Nth random number can be obtained by applying a stateless mixing function to N instead of the conventional approach of using N iterations of a stateful transformation. CBRNGs were originally developed for use in MD applications on Anton, but they are ideal for a wide range of applications on modern multi-core CPUs, GPUs, clusters, and special-purpose hardware. Three families of non-cryptographic CBRNGs are described in a paper presented at the SC11 conference: ARS (based on the Advanced Encryption System (AES)), Threefry (based on the Threefish encryption function), and Philox (based on integer multiplication). They all satisfy rigorous statistical testing (passing BigCrush in TestU01), vectorize and parallelize well (each generator can produce at least 264 independent streams), have long periods (the period of each stream is at least 2128), require little or no memory or state, and have excellent performance (a few clock cycles per byte of random output). The Random123 library can be used with CPU (C and C++) and GPU (CUDA and OpenCL) applications.
PackageMaintainerFedora Project
PackageNameRandom123-doc
PackageRelease3.fc23
PackageVersion1.08
SHA-1462B91A25CFA1336651E70CEE01F967A6262C51B
SHA-25649D284618DCBCF3A52BB5CC3869180FE92416A52C03130EF9DD3A46507ECE3AF
Key Value
MD552B50AD090D59BD26D964C93C92FDA74
PackageArchnoarch
PackageDescriptionDocumentation for Random123 Random123 is a library of "counter-based" random number generators (CBRNGs), in which the Nth random number can be obtained by applying a stateless mixing function to N instead of the conventional approach of using N iterations of a stateful transformation. CBRNGs were originally developed for use in MD applications on Anton, but they are ideal for a wide range of applications on modern multi-core CPUs, GPUs, clusters, and special-purpose hardware. Three families of non-cryptographic CBRNGs are described in a paper presented at the SC11 conference: ARS (based on the Advanced Encryption System (AES)), Threefry (based on the Threefish encryption function), and Philox (based on integer multiplication). They all satisfy rigorous statistical testing (passing BigCrush in TestU01), vectorize and parallelize well (each generator can produce at least 264 independent streams), have long periods (the period of each stream is at least 2128), require little or no memory or state, and have excellent performance (a few clock cycles per byte of random output). The Random123 library can be used with CPU (C and C++) and GPU (CUDA and OpenCL) applications.
PackageMaintainerFedora Project
PackageNameRandom123-doc
PackageRelease3.fc23
PackageVersion1.08
SHA-164A74308ABBC54741749FF0341787B3783A1C6EC
SHA-25647B0164DDBDB6568D9EE9620DF651C4943B3A5E1758A63F7B1E6A7A920C8E978