filament
rust-gpu
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filament | rust-gpu | |
---|---|---|
27 | 82 | |
17,052 | 6,930 | |
1.1% | 1.7% | |
9.8 | 8.2 | |
6 days ago | 1 day ago | |
C++ | Rust | |
Apache License 2.0 | Apache License 2.0 |
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.
filament
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Filament β A Language for Fearless Hardware Design
Also: Filament is a real-time physically-based renderer written in C++. It is mobile-first, but also multi-platform.
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Looking for resources / mentor
Also beginner here, I think you can learn other's codes to get a better understanding of the API by learning how others can abstract these concept into higher level. They're many great projects out there like Google's pbr renderer filament https://github.com/google/filament, AMD's gltf sample https://github.com/GPUOpen-LibrariesAndSDKs/glTFSample and also as many suggested, the Sascha Willems's repos https://github.com/SaschaWillems and the official sample https://github.com/KhronosGroup/Vulkan-Samples
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Flutter and Apple Vision Pro
In the Flame discussions page, there is a request for 3D, and Flame developers write that they will be happy to start working on support once when Impeller is stable on most major platforms. So what can the community do? 1) Create discussion topics, just like these posts. Or in other discussion forums. 2) Learn about Impeller, Filament, Flame, and Flutter and be willing to contribute to their development. 3) Join Flame now and try to do something or contribute. 4) Study the implementation of Flutter 3D, and try to do something together with ARCore or ARKit plugins.
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Appleseed β open-source, physically-based global illumination rendering engine
Anyone know much about how this compares to Filament by Google?
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Searching for Reliable Cross-Platform Rendering Framework (C/C++)
Have you tried Filament? https://google.github.io/filament/
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What is this C++ trick called? It looks a bit like PIMPL.
I was looking through the Google Filament repo and I noticed that the classes in include/filament use a trick I haven't seen before that hide implementation details similar to PIMPL.
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Why aren't there constantly more shading languages popping up all the time like other languages?
There are a handful of other examples out there of high-level shading languages - Cg (long deprecated), whatever Filament Material system uses (example), and various GLSL preprocessors (example).
- Fence callback system
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OpenGL displays the color of an image different from the system color profile;
I'm loading a texture using OpenGL enjoy this glTexImage2D( GL_TEXTURE_2D, 0, GL_RGBA, texture.width, texture.height, 0, GL_RGBA, GL_UNSIGNED_BYTE, texture.pixels.data()); The issue is that the color of the image looks different from the one I see when I open the file on the system image viewer. On the screenshot you can see the yellow on the face displayed on the system image viewer has the color #FEDE57 but the one that is displayed in the OpenGL window is #FEE262 Is there any flag or format I could use to match the same color calibration? Displaying this same image as a Vulkan texture looks fine, so I can discard there is not an issue in how I load the image data. [EDIT] In the end it seems likeββββββββββββΒthe framebuffer in OpenGL doesn't gets color corrected, so you have to tell the OS to do it for you #include void prepareNativeWindow(SDL_Window *sdlWindow) { SDL_SysWMinfo wmi; SDL_VERSION(&wmi.version); SDL_GetWindowWMInfo(sdlWindow, &wmi); NSWindow *win = wmi.info.cocoa.window; [win setColorSpace:[NSColorSpace sRGBColorSpace]]; } I found this solution here https://github.com/google/filament/blob/main/libs/filamentapp/src/NativeWindowHelperCocoa.mm https://preview.redd.it/2td3rs19p4f71.jpg?width=1476&format=pjpg&auto=webp&s=454d4e554d47e3a4e11a16c938304f1125ed7622
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Weird Vulkan Bug
I found this issue on github https://github.com/google/filament/pull/3190/files
rust-gpu
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Vcc β The Vulkan Clang Compiler
Sounds cool, but this requires yet another language to learn[0]. As someone who only has limited knowledge in this space, could someone tell me how comparable is the compute functionality of rust-gpu[1], where I can just write rust?
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Candle: Torch Replacement in Rust
I don't do anything related to data science, but I feel like doing it in Rust would be nice.
You get operator overloading, so you can have ergonomic matrix operations that are typed also. Processing data on the CPU is fast, and crates like https://github.com/EmbarkStudios/rust-gpu make it very ergonomic to leverage the GPU.
I like this library for creating typed coordinate spaces for graphics programming (https://github.com/servo/euclid), I imagine something similar could be done to create refined types for matrices so you don't do matrix multiplication matrices of invalid sizes
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What's the coolest Rust project you've seen that made you go, 'Wow, I didn't know Rust could do that!'?
Do you mean rust-gpu?
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How a Nerdsnipe Led to a Fast Implementation of Game of Life
And https://github.com/EmbarkStudios/rust-gpu/tree/main/examples with the wgpu runner (here it runs the compute shader)
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What is Rust's potential in game development?
I don't know how major they are considered, but Embark Studios is doing quite a bit of Rust in the open source space, most notably (IMO) rust-gpu and kajiya
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[rust-gpu] How do I run/build my own shaders locally?
The examples in the rust-gpu repository are a good place to start
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Posh: Type-Safe Graphics Programming in Rust
There's another project that's similar that's being used by an actual game company: https://github.com/EmbarkStudios/rust-gpu
They see specific advantages here that would outweigh that negative. It's not my space (I play games, but know next to nothing about graphics programming), but there's at least one argument in the other direction.
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Introducing posh: Type-Safe Graphics Programming in Rust
Could this approach work for compute shaders (GPGPU) as well? So far, I think https://github.com/EmbarkStudios/rust-gpu is the state of the art in that area, but it adds a specific Rust compiler backend for generating SPIR-V rather than leaving that up to the driver. That seems more complicated than it needs to be... but maybe it has advantages too? Thoughts?
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Looking for high level GPU computing crate
https://github.com/embarkstudios/rust-gpu Allows you to create shaders (kernals) in Rust.
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With what languages are video games like League of Legends (most likely) programmed?
Also Embark Studios (formers DICE people) is doing a lot of work with Rust, all open source like Rust GPU https://github.com/EmbarkStudios/rust-gpu
What are some alternatives?
android-3D-model-viewer - Android OpenGL 2.0 application to view 3D models. Published on Play Store
llama.cpp - LLM inference in C/C++
THREE.js-PathTracing-Renderer - Real-time PathTracing with global illumination and progressive rendering, all on top of the Three.js WebGL framework. Click here for Live Demo: https://erichlof.github.io/THREE.js-PathTracing-Renderer/Geometry_Showcase.html
wgpu - Cross-platform, safe, pure-rust graphics api.
compose-samples - Official Jetpack Compose samples.
Rust-CUDA - Ecosystem of libraries and tools for writing and executing fast GPU code fully in Rust.
The-Forge - The Forge Cross-Platform Rendering Framework PC Windows, Steamdeck (native), Ray Tracing, macOS / iOS, Android, XBOX, PS4, PS5, Switch, Quest 2
onnxruntime-rs - Rust wrapper for Microsoft's ONNX Runtime (version 1.8)
rust-skia - Rust Bindings for the Skia Graphics Library
kompute - General purpose GPU compute framework built on Vulkan to support 1000s of cross vendor graphics cards (AMD, Qualcomm, NVIDIA & friends). Blazing fast, mobile-enabled, asynchronous and optimized for advanced GPU data processing usecases. Backed by the Linux Foundation.
OpenSceneGraph - OpenSceneGraph git repository
DiligentEngine - A modern cross-platform low-level graphics library and rendering framework