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Release date: March 11, 2010 OpenGL 4.0 was released alongside version 3.3. It was designed for hardware able to support Direct3D 11. As in OpenGL 3.0, this version of OpenGL contains a high number of fairly inconsequential extensions, designed to thoroughly expose the abilities of Direct3D 11-class hardware.
Originally introduced as an extension to OpenGL 1.4, GLSL was formally included into the OpenGL 2.0 core in 2004 by the OpenGL ARB. It was the first major revision to OpenGL since the creation of OpenGL 1.0 in 1992. Some benefits of using GLSL are: Cross-platform compatibility on multiple operating systems, including Linux, macOS and Windows.
ANGLE is currently used in a number of programs and software. Chromium and Google Chrome. [9] Chrome uses ANGLE not only for WebGL, but also for its implementation of the 2D HTML5 canvas and for the graphics layer of the Google Native Client (which is OpenGL ES 2.0 compatible).
OpenGL for Embedded Systems (OpenGL ES or GLES) is a subset of the OpenGL computer graphics rendering application programming interface (API) for rendering 2D and 3D computer graphics such as those used by video games, typically hardware-accelerated using a graphics processing unit (GPU). It is designed for embedded systems like smartphones ...
2016-11-01: Mesa 13 with OpenGL 4.4 and OpenGL ES 3.2 2017-02-13: Mesa 17.0 with OpenGL 4.5 and freedreno driver with OpenGL 3.0 and 3.1 2017-05-10: Mesa 17.1 OpenGL 4.2+ for Intel Ivy Bridge (more than Intel driver for Windows, OpenGL 3.3+ for Intel Open SWR Rasterizer (important for cluster Computer for huge simulations)
It is a default backend for both Google Chrome and Mozilla Firefox on Windows platforms and works by translating WebGL and OpenGL calls to available platform-specific APIs. ANGLE currently provides access to OpenGL ES 2.0 and 3.0 to desktop OpenGL, OpenGL ES, Direct3D 9, and Direct3D 11 APIs. [ 17 ] ″[
EGL is an interface between Khronos rendering APIs (such as OpenGL, OpenGL ES or OpenVG) and the underlying native platform windowing system.EGL handles graphics context management, surface/buffer binding, rendering synchronization, and enables "high-performance, accelerated, mixed-mode 2D and 3D rendering using other Khronos APIs."
The 3.1 update added an OpenGL ES 2.0 renderer aimed at mobile hardware, as mobile support for ES 3.0 by manufacturers was then limited. [ 48 ] In 2019 two teams were formed, with Linietsky's team focusing on the Vulkan branch (later released as 4.0) and Verschelde's team covering further updates to the 3.x branch.