How to Install and Uninstall gappalib-coq.x86_64 Package on Fedora 39
Last updated: January 28,2025
1. Install "gappalib-coq.x86_64" package
Here is a brief guide to show you how to install gappalib-coq.x86_64 on Fedora 39
$
sudo dnf update
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$
sudo dnf install
gappalib-coq.x86_64
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2. Uninstall "gappalib-coq.x86_64" package
This guide covers the steps necessary to uninstall gappalib-coq.x86_64 on Fedora 39:
$
sudo dnf remove
gappalib-coq.x86_64
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$
sudo dnf autoremove
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3. Information about the gappalib-coq.x86_64 package on Fedora 39
Last metadata expiration check: 3:52:16 ago on Thu Mar 7 11:44:58 2024.
Available Packages
Name : gappalib-coq
Version : 1.5.4
Release : 1.fc39
Architecture : x86_64
Size : 675 k
Source : gappalib-coq-1.5.4-1.fc39.src.rpm
Repository : updates
Summary : Coq support library for gappa
URL : https://gitlab.inria.fr/gappa/coq
License : LGPL-3.0-or-later
Description : This support library provides vernacular files so that the certificates
: Gappa generates can be imported by the Coq proof assistant. It also
: provides a "gappa" tactic that calls Gappa on the current Coq goal.
:
: Gappa (Génération Automatique de Preuves de Propriétés Arithmétiques --
: automatic proof generation of arithmetic properties) is a tool intended
: to help verifying and formally proving properties on numerical programs
: dealing with floating-point or fixed-point arithmetic.
Available Packages
Name : gappalib-coq
Version : 1.5.4
Release : 1.fc39
Architecture : x86_64
Size : 675 k
Source : gappalib-coq-1.5.4-1.fc39.src.rpm
Repository : updates
Summary : Coq support library for gappa
URL : https://gitlab.inria.fr/gappa/coq
License : LGPL-3.0-or-later
Description : This support library provides vernacular files so that the certificates
: Gappa generates can be imported by the Coq proof assistant. It also
: provides a "gappa" tactic that calls Gappa on the current Coq goal.
:
: Gappa (Génération Automatique de Preuves de Propriétés Arithmétiques --
: automatic proof generation of arithmetic properties) is a tool intended
: to help verifying and formally proving properties on numerical programs
: dealing with floating-point or fixed-point arithmetic.