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  2. Shader - Wikipedia

    en.wikipedia.org/wiki/Shader

    Pixel shaders may also be applied in intermediate stages to any two-dimensional images—sprites or textures—in the pipeline, whereas vertex shaders always require a 3D scene. For instance, a pixel shader is the only kind of shader that can act as a postprocessor or filter for a video stream after it has been rasterized.

  3. Unified shader model - Wikipedia

    en.wikipedia.org/wiki/Unified_shader_model

    The unified shader model uses the same hardware resources for both vertex and fragment processing. In the field of 3D computer graphics, the unified shader model (known in Direct3D 10 as "Shader Model 4.0") refers to a form of shader hardware in a graphical processing unit (GPU) where all of the shader stages in the rendering pipeline (geometry, vertex, pixel, etc.) have the same capabilities.

  4. TeraScale (microarchitecture) - Wikipedia

    en.wikipedia.org/wiki/TeraScale_(microarchitecture)

    The R600 core processes vertex, geometry, and pixel shaders as outlined by the Direct3D 10.0 specification for Shader Model 4.0 in addition to full OpenGL 3.0 support. [8] The new unified shader functionality is based upon a very long instruction word (VLIW) architecture in which the core executes operations in parallel. [9]

  5. Deferred shading - Wikipedia

    en.wikipedia.org/wiki/Deferred_shading

    In the field of 3D computer graphics, deferred shading is a screen-space shading technique that is performed on a second rendering pass, after the vertex and pixel shaders are rendered. [2] It was first suggested by Michael Deering in 1988. [3] On the first pass of a deferred shader, only data that is required for shading computation is gathered.

  6. Shading language - Wikipedia

    en.wikipedia.org/wiki/Shading_language

    The shader assembly language in Direct3D 8 and 9 is the main programming language for vertex and pixel shaders in Shader Model 1.0/1.1, 2.0, and 3.0. It is a direct representation of the intermediate shader bytecode which is passed to the graphics driver for execution.

  7. Pixel-art scaling algorithms - Wikipedia

    en.wikipedia.org/wiki/Pixel-art_scaling_algorithms

    The newest xBR versions are multi-pass and can preserve small details better. There is also a version of xBR combined with Reverse-AA shader called xBR-Hybrid. [16] xBR+3D is a version with a 3D mask that only filters 2D elements. xBRZ by Zenju is a modified version of xBR. It is implemented from scratch as a CPU-based filter in C++. [17]

  8. Cg (programming language) - Wikipedia

    en.wikipedia.org/wiki/Cg_(programming_language)

    For instance there might be a profile for a graphics card that supports complex pixel shaders, and another profile for one that supports only minimal pixel shaders. By creating a pixel shader for each of these profiles a supporting program enlarges the number of supported hardware platforms without sacrificing picture quality on powerful systems.'

  9. Isometric video game graphics - Wikipedia

    en.wikipedia.org/wiki/Isometric_video_game_graphics

    Isometric video game graphics are graphics employed in video games and pixel art that use a parallel projection, but which angle the viewpoint to reveal facets of the environment that would otherwise not be visible from a top-down perspective or side view, thereby producing a three-dimensional (3D) effect.