libunifex
Oat++
libunifex | Oat++ | |
---|---|---|
22 | 21 | |
1,366 | 7,433 | |
4.5% | 2.0% | |
7.6 | 8.4 | |
7 days ago | 7 days ago | |
C++ | C++ | |
GNU General Public License v3.0 or later | Apache License 2.0 |
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libunifex
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Comparing asio to unifex
I'm curious what led you to this conclusion. If you ran into scalability issues with its static_thread_pool, then that's a known issue. If it's something else, the authors (of which I'm one) would love to know.
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How does one actually build a C++ project
Instead of calling add_executable you will call add_library. Here is a (only moderately complicated) production example of a library that can be built standalone (along with tests and example executables), or as a subproject, where it builds only the library
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How to write networking code now that will be easiest to adapt to the upcoming standard?
My original thought was to build my DDS implementation on top of libunifex in anticipation for standardization: https://github.com/facebookexperimental/libunifex
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Executors/libunifex example project
I'm trying to understand how to work with the proposed executors in a project, but after watching Eric Niebler's cppcon talks (https://youtu.be/xLboNIf7BTg) and looking at the libunifex examples (https://github.com/facebookexperimental/libunifex/tree/main/examples) I still have a hard time wrapping my head around how to employ the sender/receiver pattern in a larger project.
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Async/Await pattern in C++
You have coroutines in C++20 but there is also the executives proposal that's making it's way into C++23 that is available as a library under the name unifex that only requires C++14
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Using Asio for asynchronous gRPC clients and servers
Asio-grpc makes exactly that possible by providing an Asio execution_context compatible interface to the CompletionQueue. It supports all types of RPCs (including generic ones), completion tokens, cancellation, as well as libunifex sender/receiver (if you want to try out what might become std::execution). The latest release (v1.7.0) also introduced a GrpcStream class for writing Rust/Golang select-style code.
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My thoughts and dreams about a standard user-space I/O scheduler
P2300: they are trying to standardize facebookexperimental/libunifex
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"C++ makes it harder to shoot yourself, but when you do it blows your whole leg off"
All the network handling for Instagram and all other Meta apps on all platforms is handled by their own C++ library https://github.com/facebookexperimental/libunifex.
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State of the art for CPOs (customization points) in C++?
This. I'd also like to mention libunifex. It's entirely based on tag_invoke and is a testament as to how much power it actually provides. On the other hand, it also proves how cumbersome it is to define CPOs with tag_invoke. But IMO it's a lot better than anything else anyone has ever created, and users usually don't need to define new CPOs, only library writers do, so there's that.
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Why do we need networking, executors, linear algebra, etc in the Standard Library?
A work in progress implementation of the library: https://github.com/facebookexperimental/libunifex
Oat++
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Experience using crow as web server
I looked at oatpp and drogon, which are both great, but feel too high-level for my purposes. I tried drogon and got something working, but it feels like too much for my requirements, as in particular I'd like to slot in my choice of Json and message-body handling. C.f. the simple approach in Crow, which I easily understand and build on.
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What isn't cpp used on web servers as much as other languages?
With the right libraries, C++ could be a good fit for applications that want to expose a fast web API to things that need lots of compute (simulators, for instance) or I/O (interactive editing of large datasets). Projects like Oat++ and Crow give me hope that we might see such an ecosystem develop.
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REST APIs using C++. (Is this even done much?)
Lots of other options have been mentioned, but I'll throw Oat++ into the mix. I used it for this purpose and it was reasonably painless.
- C/C++ framework for REST API implementation
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People talking about C++ and Java as bad languages. Let me introduce to you: Java++
https://github.com/oatpp/oatpp +WASM ;)
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Server with oat++. Installation. CmakeLists.txt
cd "some/temp/path/for/repositories" git clone https://github.com/oatpp/oatpp.git cd oatpp mkdir build && cd build cmake .. (sudo) make install
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How to use C++ as the backend for web dev?
Maybe use something like https://oatpp.io to create a REST API: C++ in the backend with this library to create a REST server, and the JavaScript/TypeScript frontend to ask for the information.
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making a web server in c++?
I've used OATPP ( https://github.com/oatpp/oatpp ) which worked nicely for setting up simple rest interfaces. Supports things like swagger & websockets out of the box. It's also on Conan which is nice if you use cmake. I can't speak to it's performance but it has about a 1mb binary size footprint.
- Not mine but the pain of c++
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learning c++: looking for structured project tutorial (web app/api? or other?)
As for your web problem, I have only used https://oatpp.io/ in the past but I'm sure there are more frameworks like that on the internet.
What are some alternatives?
cppcoro - A library of C++ coroutine abstractions for the coroutines TS
drogon - Drogon: A C++14/17 based HTTP web application framework running on Linux/macOS/Unix/Windows [Moved to: https://github.com/drogonframework/drogon]
concurrencpp - Modern concurrency for C++. Tasks, executors, timers and C++20 coroutines to rule them all
Crow - Crow is very fast and easy to use C++ micro web framework (inspired by Python Flask)
Taskflow - A General-purpose Parallel and Heterogeneous Task Programming System
Pistache - A high-performance REST toolkit written in C++
Restbed - Corvusoft's Restbed framework brings asynchronous RESTful functionality to C++14 applications.
Boost.Asio - Asio C++ Library
corrade - C++11 multiplatform utility library
Crow - A Fast and Easy to use microframework for the web.
Boost.Beast - HTTP and WebSocket built on Boost.Asio in C++11
Wt - Wt, C++ Web Toolkit