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A Deeply Pipelined CABAC Decoder for HEVC Supporting Level 6.2 High-tier Applications

机译:用于HEVC的深度流水线CaBaC解码器,支持6.2级高级应用

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摘要

High Efficiency Video Coding (HEVC) is the latest video coding standard that specifies video resolutions up to 8K Ultra-HD (UHD) at 120 fps to support the next decade of video applications. This results in high-throughput requirements for the context adaptive binary arithmetic coding (CABAC) entropy decoder, which was already a well-known bottleneck in H.264/AVC. To address the throughput challenges, several modifications were made to CABAC during the standardization of HEVC. This work leverages these improvements in the design of a high-throughput HEVC CABAC decoder. It also supports the high-level parallel processing tools introduced by HEVC, including tile and wavefront parallel processing. The proposed design uses a deeply pipelined architecture to achieve a high clock rate. Additional techniques such as the state prefetch logic, latched-based context memory, and separate finite state machines are applied to minimize stall cycles, while multibypass- bin decoding is used to further increase the throughput. The design is implemented in an IBM 45nm SOI process. After place-and-route, its operating frequency reaches 1.6 GHz. The corresponding throughputs achieve up to 1696 and 2314 Mbin/s under common and theoretical worst-case test conditions, respectively. The results show that the design is sufficient to decode in real-time high-tier video bitstreams at level 6.2 (8K UHD at 120 fps), or main-tier bitstreams at level 5.1 (4K UHD at 60 fps) for applications requiring sub-frame latency, such as video conferencing.
机译:高效视频编码(HEVC)是最新的视频编码标准,该标准规定了120 fps的高达8K Ultra-HD(UHD)的视频分辨率,以支持未来十年的视频应用。这导致对上下文自适应二进制算术编码(CABAC)熵解码器的高吞吐量要求,而这已经是H.264 / AVC中的众所周知的瓶颈。为了解决吞吐量挑战,在HEVC标准化期间对CABAC进行了几处修改。这项工作利用了高吞吐量HEVC CABAC解码器设计中的这些改进。它还支持HEVC引入的高级并行处理工具,包括平铺和波前并行处理。提出的设计使用深度流水线架构来实现高时钟速率。应用了其他技术,例如状态预取逻辑,基于锁存的上下文存储器和单独的有限状态机,以最大程度地减少停顿周期,同时使用多旁路bin解码来进一步提高吞吐量。该设计在IBM 45nm SOI流程中实现。经过布局布线后,其工作频率达到1.6 GHz。在普通和理论上的最坏情况下,相应的吞吐量分别达到1696和2314 Mbin / s。结果表明,该设计足以以6.2级(120 fps的8K UHD)的实时高层视频比特流或5.1级(60 fps的4K UHD)的主层比特流进行解码。帧等待时间,例如视频会议。

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  • 作者

    Chen Yu-Hsin; Sze Vivienne;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 en_US
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