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  2. Micro stuttering - Wikipedia

    en.wikipedia.org/wiki/Micro_stuttering

    Micro stuttering is a quality defect that manifests as irregular delays between frames rendered by a graphics processing unit (GPU). It causes the instantaneous frame rate of the longest delay to be significantly lower than the frame rate reported by benchmarking applications such as 3DMark , which usually calculate the average frame rate over ...

  3. Deferred shading - Wikipedia

    en.wikipedia.org/wiki/Deferred_shading

    [1] 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 ...

  4. Physically based rendering - Wikipedia

    en.wikipedia.org/wiki/Physically_based_rendering

    Specular highlights are high and realistically modeled at the appropriate edge of the tread using a normal map. Physically based rendering ( PBR ) is a computer graphics approach that seeks to render images in a way that models the lights and surfaces with optics in the real world.

  5. Shader - Wikipedia

    en.wikipedia.org/wiki/Shader

    This shader works by replacing all light areas of the image with white, and all dark areas with a brightly colored texture. In computer graphics, a shader is a computer program that calculates the appropriate levels of light, darkness, and color during the rendering of a 3D scene—a process known as shading.

  6. High-Level Shader Language - Wikipedia

    en.wikipedia.org/wiki/High-Level_Shader_Language

    The High-Level Shader Language [1] or High-Level Shading Language [2] (HLSL) is a proprietary shading language developed by Microsoft for the Direct3D 9 API to augment the shader assembly language, and went on to become the required shading language for the unified shader model of Direct3D 10 and higher.

  7. 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.

  8. Z-buffering - Wikipedia

    en.wikipedia.org/wiki/Z-buffering

    In the end, the z-buffer will allow correct reproduction of the usual depth perception: a close object hides one further away. This is called z-culling . The z-buffer has the same internal data structure as an image, namely a 2D-array, with the only difference being that it stores a single value for each screen pixel instead of color images ...

  9. 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.

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