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meta.yml
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fullname: A Coq formalization of information theory and linear error correcting codes
shortname: infotheo
organization: affeldt-aist
opam_name: coq-infotheo
community: false
action: true
coqdoc: false
synopsis: >-
Discrete probabilities and information theory for Coq
description: |-
Infotheo is a Coq library for reasoning about discrete probabilities,
information theory, and linear error-correcting codes.
authors:
- name: Reynald Affeldt, AIST
initial: true
- name: Manabu Hagiwara, Chiba U. (previously AIST)
initial: true
- name: Jonas Senizergues, ENS Cachan (internship at AIST)
initial: true
- name: Jacques Garrigue, Nagoya U.
initial: false
- name: Kazuhiko Sakaguchi, Tsukuba U.
initial: false
- name: Taku Asai, Nagoya U. (M2)
initial: false
- name: Takafumi Saikawa, Nagoya U.
initial: false
- name: Naruomi Obata, Titech (M2)
initial: false
opam-file-maintainer: Reynald Affeldt <[email protected]>
#opam-file-version: dev
license:
fullname: LGPL-2.1-or-later
identifier: LGPL-2.1-or-later
file: LICENSE
nix: true
supported_coq_versions:
text: Coq 8.17
opam: '{ (>= "8.17" & < "8.18~") | (= "dev") }'
tested_coq_opam_versions:
- version: '1.16.0-coq-8.17'
repo: 'mathcomp/mathcomp'
- version: '1.17.0-coq-8.17'
repo: 'mathcomp/mathcomp'
dependencies:
- opam:
name: coq-mathcomp-ssreflect
version: '{ (>= "1.16.0" & < "1.18~") | (= "dev") }'
description: |-
[MathComp ssreflect](https://math-comp.github.io)
- opam:
name: coq-mathcomp-fingroup
version: '{ (>= "1.16.0" & < "1.18~") | (= "dev") }'
description: |-
[MathComp fingroup](https://math-comp.github.io)
- opam:
name: coq-mathcomp-algebra
version: '{ (>= "1.16.0" & < "1.18~") | (= "dev") }'
description: |-
[MathComp algebra](https://math-comp.github.io)
- opam:
name: coq-mathcomp-solvable
version: '{ (>= "1.16.0" & < "1.18~") | (= "dev") }'
description: |-
[MathComp solvable](https://math-comp.github.io)
- opam:
name: coq-mathcomp-field
version: '{ (>= "1.16.0" & < "1.18~") | (= "dev") }'
description: |-
[MathComp field](https://math-comp.github.io)
- opam:
name: coq-mathcomp-analysis
version: '{ (>= "0.5.4") & (< "0.7~")}'
description: |-
[MathComp analysis](https://github.com/math-comp/analysis)
- opam:
name: coq-hierarchy-builder
version: '{ >= "1.3.0" }'
description: |-
[Hierarchy Builder](https://github.com/math-comp/hierarchy-builder)
namespace: infotheo
keywords:
- name: information theory
- name: probability
- name: error-correcting codes
- name: convexity
publications:
- pub_url: https://arxiv.org/abs/2004.12713
pub_title: Formal Adventures in Convex and Conical Spaces
pub_doi: 10.1007/978-3-030-53518-6_2
- pub_url: https://link.springer.com/article/10.1007/s10817-019-09538-8
pub_title: A Library for Formalization of Linear Error-Correcting Codes
pub_doi: 10.1007/s10817-019-09538-8
- pub_url: https://www.jstage.jst.go.jp/article/jssst/37/3/37_3_79/_article/-char/en
pub_title: Reasoning with Conditional Probabilities and Joint Distributions in Coq
pub_doi: 10.11309/jssst.37.3_79
- pub_url: http://staff.aist.go.jp/reynald.affeldt/documents/compression-isita2018.pdf
pub_title: Examples of formal proofs about data compression
pub_doi: 10.23919/ISITA.2018.8664276
- pub_url: http://staff.aist.go.jp/reynald.affeldt/documents/rs_isita2016_author_version.pdf
pub_title: Formalization of Reed-Solomon codes and progress report on formalization of LDPC codes
- pub_url: http://staff.aist.go.jp/reynald.affeldt/documents/eccITP2015_authorsversion.pdf
pub_title: Formalization of error-correcting codes---from Hamming to modern coding theory
pub_doi: 10.1007/978-3-319-22102-1_2
- pub_url: https://link.springer.com/article/10.1007%2Fs10817-013-9298-1
pub_title: Formalization of Shannon’s Theorems
pub_doi: 10.1007/s10817-013-9298-1
#make_target: [
# [make "-j%{jobs}%" ]
# [make "-C" "extraction" "tests"] {with-test}
# ]
build: |-
## Building and installation instructions
The easiest way to install the latest released version of A Coq formalization of information theory and linear error correcting codes
is via [OPAM](https://opam.ocaml.org/doc/Install.html):
```shell
opam repo add coq-released https://coq.inria.fr/opam/released
opam install coq-infotheo
```
To instead build and install manually, do (using GNU `make`):
``` shell
git clone https://github.com/affeldt-aist/infotheo.git
cd infotheo
make # or make -j <number-of-cores-on-your-machine>
make -C extraction tests
make install
```
documentation: |-
## Acknowledgments
Many thanks to several [contributors](https://github.com/affeldt-aist/infotheo/graphs/contributors).
The principle of inclusion-exclusion is a contribution by
Erik Martin-Dorel (University Toulouse III Paul Sabatier, IRIT research laboratory)
(main theorem: Pr_bigcup_incl_excl; commit 956096859ed89325b2bb74033690ac882bbcd64e)
The variable-length source coding theorems are a contribution by
Ryosuke Obi (Chiba U. (M2))
(commit a67da5e24eaaabb345d225a5bd0f5e86d35413a8)
(with Manabu Hagiwara and Mitsuharu Yamamoto)
Commit 64814f529c1819684c4b8060d0779c24c6339041 was originally by Karl Palmskog
The formalization of modern coding theory is a collaboration with
K. Kasai, S. Kuzuoka, R. Obi
Y. Takahashi collaborated to the formalization of linear error-correcting codes
This work was partially supported by a JSPS Grant-in-Aid for Scientific
Research (Project Number: 25289118), a JSPS Grand-in-Aid for Scientific Research (Project Number: 18H03204)
## Documentation
Each file is documented in its header.
Changes are documented in [changelog.txt](changelog.txt).
## Installation with Windows 10 & 11
Installation of infotheo on Windows is less simple.
See [this page](https://github.com/affeldt-aist/mathcomp-install/blob/master/install-windows-en.org)
for instructions to install MathComp on Windows 10 & 11
(or [this page](https://staff.aist.go.jp/reynald.affeldt/ssrcoq/install.html) for instructions in Japanese).
Once MathComp is installed (with opam), do
`opam install coq-infotheo` or `git clone [email protected]:affeldt-aist/infotheo.git; opam install .`
## Original License
Before version 0.2, infotheo was distributed under the terms of the
`GPL-3.0-or-later` license.