IEEE Transactions on Visualization and Computer Graphics · 2014 · 32 citations · 15 references
Cluster ComputingReal-time VisualizationEngineeringComputer ArchitectureComputer-aided DesignHigh Performance ComputingGpu ComputingInteractive VisualizationData ScienceDistributed Heterogeneous SystemsVolume ProcessingComputational VisualizationData IntegrationParallel ComputingComputational GeometryGpu AcceleratorsMassively-parallel ComputingLarge Volumetric DataComputer EngineeringDistributed SystemsComputer ScienceDomain-specific LanguageGpu ClusterVolume RenderingParallel VisualizationSteep Learning CurveParallel ProgrammingSystem Software
As the size of image data from microscopes and telescopes increases, the need for high-throughput processing and visualization of large volumetric data has become more pressing. At the same time, many-core processors and GPU accelerators are commonplace, making high-performance distributed heterogeneous computing systems affordable. However, effectively utilizing GPU clusters is difficult for novice programmers, and even experienced programmers often fail to fully leverage the computing power of new parallel architectures due to their steep learning curve and programming complexity. In this paper, we propose Vivaldi, a new domain-specific language for volume processing and visualization on distributed heterogeneous computing systems. Vivaldi's Python-like grammar and parallel processing abstractions provide flexible programming tools for non-experts to easily write high-performance parallel computing code. Vivaldi provides commonly used functions and numerical operators for customized visualization and high-throughput image processing applications. We demonstrate the performance and usability of Vivaldi on several examples ranging from volume rendering to image segmentation.
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Ian Buck, Daniel Reiter Horn, Jeremy Sugerman et al. · ACM Transactions on Graphics · 2004 · 1.2K citations
Robert L. Cook · 1984 · 456 citations
Geometric Modeling, Computer Imagery, Realistic Rendering +13
A language for shading and lighting calculations
Pat Hanrahan, Jim Lawson · 1990 · 178 citations
Geometric Modeling, Illumination Modeling, Realistic Rendering +12