Key | Value |
---|---|
FileName | ./usr/lib64/ocaml/coq/theories/Numbers/Integer/Abstract/ZMaxMin.vo |
FileSize | 130213 |
MD5 | F19541D08C6EAA96021E03EA52BF5C63 |
SHA-1 | 0042D3F9F32EA39D08F14B0F2B325BA4F465BB47 |
SHA-256 | DC87C9E8AF9C077BB2852301B4BF2DE59E42E706C9A0E70FEFEC54312B9EED5A |
SSDEEP | 3072:aaZ6pb0y1MrY5WJRniAVqIeAqk7hvcX7K8fE2H3lZ1dphF29Mdm2V:Ju0y1MrY5ci2qNZk7hvcX7K8fE2H3lZ9 |
TLSH | T1E1D3F705FA9FB0B1D6712DB4F36CF72CC0A40ABF427C89468D6CD55887DB89AA0812DD |
hashlookup:parent-total | 1 |
hashlookup:trust | 55 |
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 |
---|---|
MD5 | 6D8820A5FE46154DB1CB1D0E46ACA3B9 |
PackageArch | x86_64 |
PackageDescription | The Coq proof assistant provides a formal language to write mathematical definitions, executable algorithms, and theorems, together with an environment for semi-interactive development of machine-checked proofs. Typical applications include the certification of properties of programming languages (e.g., the CompCert compiler certification project and the Bedrock verified low-level programming library), the formalization of mathematics (e.g., the full formalization of the Feit-Thompson theorem and homotopy type theory) and teaching. |
PackageName | ocaml-coq |
PackageRelease | lp151.1.1 |
PackageVersion | 8.15.0 |
SHA-1 | C91BB175393846005D04768298FAAEB6246E9FFF |
SHA-256 | 945FEEE17DE1B43C2282951AAAB81260C1C6E9C512F8BEBB318FF380689D3954 |