Result for 7C1B35396A108637C3CAC3D65FA41A306404AB4A

Query result

Key Value
FileName./usr/share/doc/ocaml-zarith/README.md
FileSize4759
MD5D3FD182D74E32FCA9EC31E576B65A572
SHA-17C1B35396A108637C3CAC3D65FA41A306404AB4A
SHA-2560F8573BE2E2EBE2D4B365405A8B20E3A6141CF15323BA1A45502423B3670EB4D
SSDEEP96:QvadGLqeZbczZGNEYRZkWQlWaNOjhDGT0GTp3D43j2PcgGRU+GUHLiIIoJ+KAuGb:QQG+JZ/WqW4O9I5hjUHfIoMKZGb
TLSHT168A1A732AF4493712AEBC6A2901F51E4EE32C16C36967445387C83A61313D2B93BFB58
hashlookup:parent-total8
hashlookup:trust90

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Parents (Total: 8)

The searched file hash is included in 8 parent files which include package known and seen by metalookup. A sample is included below:

Key Value
MD5057ACD1C55E9DDA6D38DC4D03D38055F
PackageArchx86_64
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
PackageRelease7.fc32.1
PackageVersion1.9.1
SHA-1CA04589C1D66550992200C1FC8CE58C900BD6C3F
SHA-256FDBE13D9D3309549F64BEF0B32F5280E9B1845FFE4FE89E2269A62BC4D39DB4B
Key Value
MD51285DC6062D3379DE0E7DF185A0ED9CC
PackageArchi686
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
PackageRelease7.fc32.1
PackageVersion1.9.1
SHA-1C306F67E6646B52B9623361DFDBF8DD08D561F35
SHA-2564D1BCB127CFFF87940340A4C1E002829C0F7CE047EF97C3914FBD3EDEF955FDC
Key Value
MD59E868FD8DD4DC01A611FBF6DD72F0C4E
PackageArcharmv7hl
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
PackageRelease7.fc32.1
PackageVersion1.9.1
SHA-1DC03A8177BFAF4187CF0BAFC418D6A08A91018F7
SHA-256A0576B5E60ADE3E8D3CF7ADDA981AAFA34BB27AFD83EF8B28D969BA4BF643539
Key Value
MD539ED079BAAEF3C5B7E7ABCB712D3B500
PackageArchaarch64
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.fc33
PackageVersion1.10
SHA-1914EA53B3BAF199B8B5A5BE555CDCBFC6AEF2DB6
SHA-25689B6B7C8AC8F3B9F44B5EBC3C18B684FAFF820DA390BA0E8E56AC9ACE051687D
Key Value
MD535C465BF2F36277090B58DE10DB0C823
PackageArcharmv7hl
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.fc33
PackageVersion1.10
SHA-1AEECB951809A68AF676E2E608E883079E34DC44E
SHA-256202B219EEE63C6A902554FE61254E09A5098A5B24D7EB9C06B63D9494C62BA66
Key Value
MD58AA10C11CE7E6B35108255468BA1E986
PackageArchaarch64
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
PackageRelease7.fc32.1
PackageVersion1.9.1
SHA-116B4816EEC8336A8F04CC8CDBB796299E1572234
SHA-256DDE96BE17EDE947419AA0703318B267A9B1D46749D8F39A679F4070C9EA9DF68
Key Value
MD58876F9DB5C3E354747C7F8D425485F76
PackageArchx86_64
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.fc33
PackageVersion1.10
SHA-15D3EB48C6E7421239C009B3BED819146835CC1E0
SHA-256705C494F438716FA814470E7E5687FF77916C072DA8D43CCE3B8656C6FCDDD13
Key Value
MD5775EB8A935C1B3FBD3C47CB57E5134AD
PackageArchi686
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.fc33
PackageVersion1.10
SHA-1A01BB19FFF338B28EDFB37B4CC6969C7A69DDBE3
SHA-256C6B29F8A6F2BCC5BCB518EF8400BF7A9215F834033942607C6A22086EEA7553F