Key | Value |
---|---|
FileName | ./usr/lib/rustlib/s390x-unknown-linux-gnu/lib/librustc_std_workspace_alloc-c95d030bd6cf2b30.rlib |
FileSize | 5788 |
MD5 | 3F4BDEE46E45400DDF403997E96C6F14 |
SHA-1 | 21137393F701A241D3E10ABB52174E9FED989B38 |
SHA-256 | BD72F6A51270E614AC81C0DEEE4960FA9F3CD94CAD11E19A496F4A5AA87CAB31 |
SSDEEP | 96:fAgzxkBrrCyMuI3v2b6sm82/tSg19fr95KtZDy+uoQcYDjnJAdq8:fWFrqn3v2b6sZKSStr95KtTuoQA |
TLSH | T15FC17318B3004DAAF020573218BF1B66A376C6357A4B9B5F35AD722DBFA13D54E215C1 |
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 | 9A0B2BF6D4C5DA02E4B5110660911BC0 |
PackageArch | s390x |
PackageDescription | Rust is a systems programming language focused on three goals: safety, speed, and concurrency. It maintains these goals without having a garbage collector, making it a useful language for a number of use cases other languages are not good at: embedding in other languages, programs with specific space and time requirements, and writing low-level code, like device drivers and operating systems. It improves on current languages targeting this space by having a number of compile-time safety checks that produce no runtime overhead, while eliminating all data races. Rust also aims to achieve "zero-cost abstractions", even though some of these abstractions feel like those of a high-level language. Even then, Rust still allows precise control like a low-level language would. |
PackageMaintainer | https://www.suse.com/ |
PackageName | rust1.73 |
PackageRelease | 150400.9.3.1 |
PackageVersion | 1.73.0 |
SHA-1 | E35EBB34B8208D835C2A09241BECD25CC5A6A66B |
SHA-256 | 5CA2215FEDB7BDBC69C36B9DA5E12B966EE0C07980DB141E68ACC566635B9F5B |