ion VS fault-tree

Compare ion vs fault-tree and see what are their differences.

ion

An Ivory library inspired by Atom (by HaskellEmbedded)

fault-tree

A fault tree analysis library. (by tomahawkins)
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ion fault-tree
- -
12 3
- -
0.0 0.0
over 7 years ago over 13 years ago
Haskell Haskell
BSD 3-clause "New" or "Revised" License BSD 3-clause "New" or "Revised" License
The number of mentions indicates the total number of mentions that we've tracked plus the number of user suggested alternatives.
Stars - the number of stars that a project has on GitHub. Growth - month over month growth in stars.
Activity is a relative number indicating how actively a project is being developed. Recent commits have higher weight than older ones.
For example, an activity of 9.0 indicates that a project is amongst the top 10% of the most actively developed projects that we are tracking.

ion

Posts with mentions or reviews of ion. We have used some of these posts to build our list of alternatives and similar projects.

We haven't tracked posts mentioning ion yet.
Tracking mentions began in Dec 2020.

fault-tree

Posts with mentions or reviews of fault-tree. We have used some of these posts to build our list of alternatives and similar projects.

We haven't tracked posts mentioning fault-tree yet.
Tracking mentions began in Dec 2020.

What are some alternatives?

When comparing ion and fault-tree you can also consider the following projects:

verilog - A Verilog parser for Haskell.

processor-creative-kit - haskell prrocessor-creative-kit

atom - A DSL for embedded hard realtime applications.

copilot - A (Haskell DSL) stream language for generating hard real-time C code.

copilot-sbv - SBV backend for Copilot.

copilot-language

improve - An imperative programming language in Haskell for high assurance embedded applications. ImProve programs are verified with model checking. ImProve compiles to C and Simulink.

copilot-cbmc - cbmc based tool for verifying copilot programs

copilot-core - Intermediate representation for CoPilot. Strictly follows Haskell 2010 except for universal and existential quantification.