awesome-lisp-companies VS go

Compare awesome-lisp-companies vs go and see what are their differences.

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awesome-lisp-companies go
51 2,079
580 119,900
- 0.9%
6.8 10.0
about 1 month ago 3 days ago
Go
- 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.

awesome-lisp-companies

Posts with mentions or reviews of awesome-lisp-companies. We have used some of these posts to build our list of alternatives and similar projects. The last one was on 2024-04-16.
  • Google Common Lisp Style Guide
    3 projects | news.ycombinator.com | 16 Apr 2024
    Thanks to ITA Software (powering Kayak and Orbitz), Google dedicates resources to open-source Common Lisp development. More specifically, to SBCL:

    > Doug Katzman talked about his work at Google getting SBCL to work with Unix better. For those of you who don’t know, he’s done a lot of work on SBCL over the past couple of years, not only adding a lot of new features to the GC and making it play better with applications which have alien parts to them, but also has done a tremendous amount of cleanup on the internals and has helped SBCL become even more Sanely Bootstrappable. That’s a topic for another time, and I hope Doug or Christophe will have the time to write up about the recent improvements to the process, since it really is quite interesting.

    > Anyway, what Doug talked about was his work on making SBCL more amenable to external debugging tools, such as gdb and external profilers. It seems like they interface with aliens a lot from Lisp at Google, so it’s nice to have backtraces from alien tools understand Lisp. It turns out a lot of prerequisite work was needed to make SBCL play nice like this, including implementing a non-moving GC runtime, so that Lisp objects and especially Lisp code (which are normally dynamic space objects and move around just like everything else) can’t evade the aliens and will always have known locations.

    https://mstmetent.blogspot.com/2020/01/sbcl20-in-vienna-last...

    https://lisp-journey.gitlab.io/blog/yes-google-develops-comm...

    The ASDF system definition facility, at the heart of CL projects, also comes from Google developers.

    While we're at it, some more companies using CL today: https://github.com/azzamsa/awesome-lisp-companies/

  • Why Is Common Lisp Not the Most Popular Programming Language?
    8 projects | news.ycombinator.com | 14 Feb 2024
    Everyone, if you don't have a clue on how's Common Lisp going these days, I suggest:

    https://lisp-journey.gitlab.io/blog/these-years-in-common-li... (https://www.reddit.com/r/lisp/comments/107oejk/these_years_i...)

    A curated list of libraries: https://github.com/CodyReichert/awesome-cl

    Some companies, the ones we hear about: https://github.com/azzamsa/awesome-lisp-companies/

    and oh, some more editors besides Emacs or Vim: https://lispcookbook.github.io/cl-cookbook/editor-support.ht... (Atom/Pulsar support is good, VSCode support less so, Jetbrains one getting good, Lem is a modern Emacsy built in CL, Jupyter notebooks, cl-repl for a terminal REPL, etc)

  • We need to talk about parentheses
    6 projects | news.ycombinator.com | 12 Feb 2024
    Examples (for Common Lisp, so not citing Emacs): reddit v1, Google's ITA Software that powers airfare search engines (Kayak, Orbitz…), Postgres' pgloader (http://pgloader.io/), which was re-written from Python to Common Lisp, Opus Modus for music composition, the Maxima CAS, PTC 3D designer CAD software (used by big brands worldwide), Grammarly, Mirai, the 3D editor that designed Gollum's face, the ScoreCloud app that lets you whistle or play an instrument and get the music score,

    but also the ACL2 theorem prover, used in the industry since the 90s, NASA's PVS provers and SPIKE scheduler used for Hubble and JWT, many companies in Quantum Computing, companies like SISCOG, who plans the transportation systems of european metropolis' underground since the 80s, Ravenpack who's into big-data analysis for financial services (they might be hiring), Keepit (https://www.keepit.com/), Pocket Change (Japan, https://www.pocket-change.jp/en/), the new Feetr in trading (https://feetr.io/, you can search HN), Airbus, Alstom, Planisware (https://planisware.com),

    or also the open-source screenshotbot (https://screenshotbot.io), the Kandria game (https://kandria.com/),

    and the companies in https://github.com/azzamsa/awesome-lisp-companies and on LispWorks and Allegro's Success Stories.

    https://github.com/tamurashingo/reddit1.0/

    http://opusmodus.com/

    https://www.ptc.com/en/products/cad/3d-design

    http://www.izware.com/mirai

    https://apps.apple.com/us/app/scorecloud-express/id566535238

  • A Tour of Lisps
    8 projects | news.ycombinator.com | 29 Jan 2024
  • All of Mark Watson's Lisp Books
    6 projects | news.ycombinator.com | 24 Jul 2023
    > but there doesn't seem to be one that really stands out as pragmatic, industrial

    disagree ;) This industrial language is Common Lisp.

    Some industrial uses:

    - http://www.lispworks.com/success-stories/index.html

    - https://github.com/azzamsa/awesome-lisp-companies/

    - https://lisp-lang.org/success/

    Example companies: Intel's programmable chips, the ACL2 theorem prover (https://royalsocietypublishing.org/doi/10.1098/rsta.2015.039...), urban transportation planning systems (SISCOG), Quantum Computing (HRL Labs, Rigetti…), big data financial analysis (Ravenpack, they might be hiring), Google, Boeing, the NASA, etc.

    ps: Python competing? strong disagree^^

  • Why Common Lisp is used to implement commercial products at Secure Outcomes (2010)
    1 project | /r/lisp | 9 Jul 2023
    and of course, a quite recent list of companies, in addition of LW's success stories page: https://github.com/azzamsa/awesome-lisp-companies/
  • Steel Bank Common Lisp
    9 projects | news.ycombinator.com | 30 Jun 2023
    Hey there, newer member of the first group here. Please see https://github.com/azzamsa/awesome-lisp-companies/ to update your meta-comment. So, is CL used in the industry today, yes or no?

    Personal note: I much prefer to maintain a long-living software in Common Lisp rather than in Python, thank you very much. May all the new programmers learn easily and all the teams have lots of ~~burden~~ work with Python, good for them.

  • Racket: The Lisp for the Modern Day
    6 projects | news.ycombinator.com | 29 Jun 2023
    Common Lisp has many industrial uses though.

    (https://github.com/azzamsa/awesome-lisp-companies/

    https://lisp-lang.org/success/

    http://www.lispworks.com/success-stories/index.html

    such as

    https://www.cs.utexas.edu/users/moore/acl2/ (theorem prover used by big corp©)

    https://allegrograph.com/press_room/barefoot-networks-uses-f... (Intel programmable chip)

    quantum compilers https://news.ycombinator.com/item?id=32741928

    etc, etc, etc)

  • Why Lisp Syntax Works
    5 projects | news.ycombinator.com | 5 Jun 2023
    A few more that we know of, using CL today: https://github.com/azzamsa/awesome-lisp-companies/

    Others: https://lisp-lang.org/success/

  • How to Understand and Use Common Lisp
    5 projects | news.ycombinator.com | 14 May 2023
    yes

    https://github.com/azzamsa/awesome-lisp-companies

    http://lisp-lang.org/success/

    industrial theorem prover, design of Intel chips, quantum compilers...

    and little me, being more productive and having more fun than with python to deploy boring tools (read a DB, format the data, send to FTP servers, show a web interface...).

go

Posts with mentions or reviews of go. We have used some of these posts to build our list of alternatives and similar projects. The last one was on 2024-05-08.
  • Arena-Based Parsers
    4 projects | news.ycombinator.com | 8 May 2024
    The description indicates it is not production ready, and is archived at the same time.

    If you pull all stops in each respective language, C# will always end up winning at parsing text as it offers C structs, pointers, zero-cost interop, Rust-style struct generics, cross-platform SIMD API and simply has better compiler. You can win back some performance in Go by writing hot parts in Go's ASM dialect at much greater effort for a specific platform.

    For example, Go has to resort to this https://github.com/golang/go/blob/4ed358b57efdad9ed710be7f4f... in order to efficiently scan memory, while in C# you write the following once and it compiles to all supported ISAs with their respective SIMD instructions for a given vector width: https://github.com/dotnet/runtime/blob/56e67a7aacb8a644cc6b8... (there is a lot of code because C# covers much wider range of scenarios and does not accept sacrificing performance in odd lengths and edge cases, which Go does).

    Another example is computing CRC32: you have to write ASM for Go https://github.com/golang/go/blob/4ed358b57efdad9ed710be7f4f..., in C# you simply write standard vectorized routine once https://github.com/dotnet/runtime/blob/56e67a7aacb8a644cc6b8... (its codegen is competitive with hand-intrinsified C++ code).

    There is a lot more of this. Performance and low-level primitives to achieve it have been an area of focus of .NET for a long time, so it is disheartening to see one tenth of effort in Go to receive so much spotlight.

  • Go: the future encoding/json/v2 module
    2 projects | dev.to | 2 May 2024
    A Discussion about including this package in Go as encoding/json/v2 has been started on the Go Github project on 2023-10-05. Please provide your feedback there.
  • Evolving the Go Standard Library with math/rand/v2
    2 projects | news.ycombinator.com | 1 May 2024
    I like the Principles section. Very measured and practical approach to releasing new stdlib packages. https://go.dev/blog/randv2#principles

    The end of the post they mention that an encoding/json/v2 package is in the works: https://github.com/golang/go/discussions/63397

  • Microsoft Maintains Go Fork for FIPS 140-2 Support
    5 projects | news.ycombinator.com | 30 Apr 2024
    There used to be the GO FIPS branch :

    https://github.com/golang/go/tree/dev.boringcrypto/misc/bori...

    But it looks dead.

    And it looks like https://github.com/golang-fips/go as well.

  • Borgo is a statically typed language that compiles to Go
    21 projects | news.ycombinator.com | 30 Apr 2024
    I'm not sure what exactly you mean by acknowledgement, but here are some counterexamples:

    - A proposal for sum types by a Go team member: https://github.com/golang/go/issues/57644

    - The community proposal with some comments from the Go team: https://github.com/golang/go/issues/19412

    Here are some excerpts from the latest Go survey [1]:

    - "The top responses in the closed-form were learning how to write Go effectively (15%) and the verbosity of error handling (13%)."

    - "The most common response mentioned Go’s type system, and often asked specifically for enums, option types, or sum types in Go."

    I think the problem is not the lack of will on the part of the Go team, but rather that these issues are not easy to fix in a way that fits the language and doesn't cause too many issues with backwards compatibility.

    [1]: https://go.dev/blog/survey2024-h1-results

  • AWS Serverless Diversity: Multi-Language Strategies for Optimal Solutions
    4 projects | dev.to | 28 Apr 2024
    Now, I’m not going to use C++ again; I left that chapter years ago, and it’s not going to happen. C++ isn’t memory safe and easy to use and would require extended time for developers to adapt. Rust is the new kid on the block, but I’ve heard mixed opinions about its developer experience, and there aren’t many libraries around it yet. LLRD is too new for my taste, but **Go** caught my attention.
  • How to use Retrieval Augmented Generation (RAG) for Go applications
    3 projects | dev.to | 28 Apr 2024
    Generative AI development has been democratised, thanks to powerful Machine Learning models (specifically Large Language Models such as Claude, Meta's LLama 2, etc.) being exposed by managed platforms/services as API calls. This frees developers from the infrastructure concerns and lets them focus on the core business problems. This also means that developers are free to use the programming language best suited for their solution. Python has typically been the go-to language when it comes to AI/ML solutions, but there is more flexibility in this area. In this post you will see how to leverage the Go programming language to use Vector Databases and techniques such as Retrieval Augmented Generation (RAG) with langchaingo. If you are a Go developer who wants to how to build learn generative AI applications, you are in the right place!
  • From Homemade HTTP Router to New ServeMux
    4 projects | dev.to | 26 Apr 2024
    net/http: add methods and path variables to ServeMux patterns Discussion about ServeMux enhancements
  • Building a Playful File Locker with GoFr
    4 projects | dev.to | 19 Apr 2024
    Make sure you have Go installed https://go.dev/.
  • Fastest way to get IPv4 address from string
    1 project | news.ycombinator.com | 14 Apr 2024

What are some alternatives?

When comparing awesome-lisp-companies and go you can also consider the following projects:

Carp - A statically typed lisp, without a GC, for real-time applications.

v - Simple, fast, safe, compiled language for developing maintainable software. Compiles itself in <1s with zero library dependencies. Supports automatic C => V translation. https://vlang.io

portacle - A portable common lisp development environment

TinyGo - Go compiler for small places. Microcontrollers, WebAssembly (WASM/WASI), and command-line tools. Based on LLVM.

julia - The Julia Programming Language

zig - General-purpose programming language and toolchain for maintaining robust, optimal, and reusable software.

coalton - Coalton is an efficient, statically typed functional programming language that supercharges Common Lisp.

Nim - Nim is a statically typed compiled systems programming language. It combines successful concepts from mature languages like Python, Ada and Modula. Its design focuses on efficiency, expressiveness, and elegance (in that order of priority).

Fennel - Lua Lisp Language

Angular - Deliver web apps with confidence 🚀

kandria - A post-apocalyptic actionRPG. Now on Steam!

golang-developer-roadmap - Roadmap to becoming a Go developer in 2020