Result for 0FBEAF4371EA4A169649742824FB59C26183ADD1

Query result

Key Value
FileName./usr/lib64/ocaml/zarith/big_int_Z.cmi
FileSize5716
MD555C32E5F95309EB26BF3D895FF2FC676
SHA-10FBEAF4371EA4A169649742824FB59C26183ADD1
SHA-2560C4AB5B8F602ABA215F6FA43D47F58F6A28E71ADEAF976E8DCEA0D5AA17343D9
SSDEEP96:ISVK9l+soZ8CBAZU3I4GDNZAtFtxy2GHgzqm96KzDzwcscWNunjUy01PnprA0cbb:IYK9lOZ8CBAZUY4GDNZAtFtxy2GHgzqA
TLSHT187C12BDD9418A4ED0599ED7C818AF6571500ABBF89D31D33033B2CA9DEA481EC343C93
hashlookup:parent-total4
hashlookup:trust70

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Parents (Total: 4)

The searched file hash is included in 4 parent files which include package known and seen by metalookup. A sample is included below:

Key Value
MD500CBA3FD7BF3259D5B21DE4C5E949ACD
PackageArchppc64
PackageDescriptionThis library implements arithmetic and logical operations over arbitrary-precision integers. The module is simply named "Z". Its interface is similar to that of the Int32, Int64 and Nativeint modules from the OCaml standard library, with some additional functions. See the file z.mlip for documentation. The implementation uses GMP (the GNU Multiple Precision arithmetic library) to compute over big integers. However, small integers are represented as unboxed Caml integers, to save space and improve performance. Big integers are allocated in the Caml heap, bypassing GMP's memory management and achieving better GC behavior than e.g. the MLGMP library. Computations on small integers use a special, faster path (coded in assembly for some platforms and functions) eschewing calls to GMP, while computations on large integers use the low-level MPN functions from GMP. Arbitrary-precision integers can be compared correctly using OCaml's polymorphic comparison operators (=, <, >, etc.). Additional features include: - a module Q for rationals, built on top of Z (see q.mli) - a compatibility layer Big_int_Z that implements the same API as Big_int, but uses Z internally
PackageMaintainerFedora Project
PackageNameocaml-zarith
PackageRelease1.fc19
PackageVersion1.2
SHA-159CFC72957B1C1E3DD0E03EBE4995672846787E2
SHA-256FF09AA4BDC92D6DB92D77F1922A8148484610E60C7A9036AE4DE04F92472F692
Key Value
MD5CAD416DE9D6509FD05B42BDA4A34350E
PackageArchppc64
PackageDescriptionThis library implements arithmetic and logical operations over arbitrary-precision integers. The module is simply named "Z". Its interface is similar to that of the Int32, Int64 and Nativeint modules from the OCaml standard library, with some additional functions. See the file z.mlip for documentation. The implementation uses GMP (the GNU Multiple Precision arithmetic library) to compute over big integers. However, small integers are represented as unboxed Caml integers, to save space and improve performance. Big integers are allocated in the Caml heap, bypassing GMP's memory management and achieving better GC behavior than e.g. the MLGMP library. Computations on small integers use a special, faster path (coded in assembly for some platforms and functions) eschewing calls to GMP, while computations on large integers use the low-level MPN functions from GMP. Arbitrary-precision integers can be compared correctly using OCaml's polymorphic comparison operators (=, <, >, etc.). Additional features include: - a module Q for rationals, built on top of Z (see q.mli) - a compatibility layer Big_int_Z that implements the same API as Big_int, but uses Z internally
PackageMaintainerFedora Project
PackageNameocaml-zarith
PackageRelease2.fc20
PackageVersion1.2.1
SHA-1C5B28EC514458CC1603232E9E3C9F2CB9FB2ADFA
SHA-2568322AC70994119427B09BE0D3188EFF407F39F7ADBAB170AEEDE35985B8F384E
Key Value
MD52F04EF9AED262DBF5A7FC8E6065A3099
PackageArchppc
PackageDescriptionThis library implements arithmetic and logical operations over arbitrary-precision integers. The module is simply named "Z". Its interface is similar to that of the Int32, Int64 and Nativeint modules from the OCaml standard library, with some additional functions. See the file z.mlip for documentation. The implementation uses GMP (the GNU Multiple Precision arithmetic library) to compute over big integers. However, small integers are represented as unboxed Caml integers, to save space and improve performance. Big integers are allocated in the Caml heap, bypassing GMP's memory management and achieving better GC behavior than e.g. the MLGMP library. Computations on small integers use a special, faster path (coded in assembly for some platforms and functions) eschewing calls to GMP, while computations on large integers use the low-level MPN functions from GMP. Arbitrary-precision integers can be compared correctly using OCaml's polymorphic comparison operators (=, <, >, etc.). Additional features include: - a module Q for rationals, built on top of Z (see q.mli) - a compatibility layer Big_int_Z that implements the same API as Big_int, but uses Z internally
PackageMaintainerFedora Project
PackageNameocaml-zarith
PackageRelease1.fc19
PackageVersion1.2
SHA-18F6734AF440951E97848DBBE33142C25B5DF06EF
SHA-2565228F640E6DD473CCABD0D73DA2AE195475AE9995B1013BB4628362B6FD31414
Key Value
MD51FCA71ADAB8A1B6D6DD05615BFE3A422
PackageArchppc
PackageDescriptionThis library implements arithmetic and logical operations over arbitrary-precision integers. The module is simply named "Z". Its interface is similar to that of the Int32, Int64 and Nativeint modules from the OCaml standard library, with some additional functions. See the file z.mlip for documentation. The implementation uses GMP (the GNU Multiple Precision arithmetic library) to compute over big integers. However, small integers are represented as unboxed Caml integers, to save space and improve performance. Big integers are allocated in the Caml heap, bypassing GMP's memory management and achieving better GC behavior than e.g. the MLGMP library. Computations on small integers use a special, faster path (coded in assembly for some platforms and functions) eschewing calls to GMP, while computations on large integers use the low-level MPN functions from GMP. Arbitrary-precision integers can be compared correctly using OCaml's polymorphic comparison operators (=, <, >, etc.). Additional features include: - a module Q for rationals, built on top of Z (see q.mli) - a compatibility layer Big_int_Z that implements the same API as Big_int, but uses Z internally
PackageMaintainerFedora Project
PackageNameocaml-zarith
PackageRelease2.fc20
PackageVersion1.2.1
SHA-1D39948E613CFD39DE7E920D42F48B06461A09C2E
SHA-256C69CF0E2BE238D5287DAB33E8633F5E3FDBB4663060E9BA134C41349E7E5A5D5