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Titlebook: Algorithms for Parallel Polygon Rendering; T. Theoharis Book 1989 Springer-Verlag Berlin Heidelberg 1989 Clipping.Geometrische Algorithmen

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https://doi.org/10.1007/3-540-51394-9Clipping; Geometrische Algorithmen; Occam; Polygon-Anordnung; Shading; Transputer; processor; rendering
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978-3-540-51394-0Springer-Verlag Berlin Heidelberg 1989
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Lecture Notes in Computer Sciencehttp://image.papertrans.cn/a/image/153230.jpg
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https://doi.org/10.1007/978-3-642-91553-6ng arbitrary polygons, the case of convex polygons being particularly simple. It uses precomputed surface patches which represent the intersection of a window with a particular halfplane or equivalently the sign plane of the planar integer that contains the evaluation of a linear function within a w
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6 Control parallel versus data parallel polygon clipping,gorithmic complexity and processor utilisation) and the optimal algorithms for each task and parallel processor are rarely known. Comparisons are further complicated by differences in the size, vintage and cost of the relevant machines.
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0302-9743 ssors; the aim is to provide a speed-up over sequential implementations of the graphics operations concerned, and the resulting software can be viewed as a subset of the application suites of the relevant parallel machines. A literature review and a brief description of the architectures considered
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3 A parallel incremental rendering method,ose. Our algorithms map very naturally onto the processor array because they are based on the window which is the processor array‘s primitive graphical object. The evaluation method can be extended to non-linear functions at a cost which is dependent on the order of the function.
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