【24h】

Trident: A Scalable Architecture for Scalar, Vector, and Matrix Operations

机译:Trident:用于标量,向量和矩阵运算的可伸缩体系结构

获取原文
获取原文并翻译 | 示例

摘要

Within a few years it will be possible to integrate a billion transistors on a single chip. At this integration level, we propose using a high level ISA to express parallelism to hardware instead of using a huge transistor budget to dynamically extract it. Since the fundamental data structures for a wide variety of applications are scalar, vector, and matrix, our proposed Trident processor extends the classical vector ISA with matrix operations. The Trident processor consists of a set of parallel vector pipelines (PVPs) combined with a fast in order scalar core. The PVPs can access both vector and matrix register files to perform vector, matrix, and matrix-vector operations. One key point of our design is the exploitation of up to three levels of data parallelism. Another key point is the ring register files for storing vector and matrix data. The ring structure of the register files reduces the number and size of the address decoders, the number of ports, the area overhead caused by the address bus, and the number of registers attached to bit lines, as well as providing local communication between PVPs. The scalability of the Trident processor does not require more fetch, decode, or issue bandwidth, but requires replication of PVPs and increasing the register file size. Scientific, engineering, multimedia, and many other applications, which are based on a mixture of scalar, vector, and matrix operations, can be speeded up on the Trident processor.
机译:几年之内,将有可能在单个芯片上集成十亿个晶体管。在此集成级别上,我们建议使用高级ISA来表示与硬件的并行性,而不是使用大量的晶体管预算来动态提取它。由于适用于各种应用的基本数据结构是标量,向量和矩阵,因此我们提出的Trident处理器使用矩阵运算扩展了经典向量ISA。 Trident处理器由一组并行矢量流水线(PVP)和快速按顺序标量核组成。 PVP可以访问矢量和矩阵寄存器文件,以执行矢量,矩阵和矩阵矢量运算。我们设计的关键点是利用多达三个级别的数据并行性。另一个关键点是用于存储向量和矩阵数据的环形寄存器文件。寄存器文件的环形结构减少了地址解码器的数量和大小,端口的数量,由地址总线引起的区域开销以及连接到位线的寄存器的数量,以及提供了PVP之间的本地通信。 Trident处理器的可扩展性不需要更多的获取,解码或发布带宽,但需要复制PVP并增加寄存器文件的大小。可以在Trident处理器上加快基于标量,矢量和矩阵运算混合的科学,工程,多媒体和许多其他应用程序。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号