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MOVE-Pro: A low power and high code density TTA architecture

机译:Move-Pro:低功耗和高码密度TTA架构

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Transport Triggered Architectures (TTAs) possess many advantageous, such as modularity, flexibility, and scalability. As an exposed datapath architecture, TTAs can effectively reduce the register file (RF) pressure in both number of accesses and number of RF ports. However, the conventional TTAs also have some evident disadvantages, such as relative low code density, dynamic-power wasting due to separate scheduling of source operands, and inefficient support for variant immediate values. In order to preserve the merit of conventional TTAs, while solving these aforementioned issues, we propose, MOVE-Pro, a novel low power and high code density TTA architecture. With optimizations at instruction set architecture (ISA), architecture, circuit, and compiler levels, the low-power potential of TTAs is fully exploited. Moreover, with a much denser code size, TTAs performance is also improved accordingly. In a head-to-head comparison between a two-issue MOVE-Pro processor and its RISC counterpart, we shown that up to 80% of RF accesses can be reduced, and the reduction in RF power is successfully transferred to the total core power saving. Up to 11% reduction of the total core power is achieved by our MOVE-Pro processor, while the code density is almost the same as its RISC counterpart.
机译:传输触发架构(TTA)具有许多有利的,如模块化,灵活性和可扩展性。作为暴露的DataPath架构,TTA可以有效地减少两个访问数和RF端口数的寄存器文件(RF)压力。然而,传统的TTA也具有一些明显的缺点,例如相对低码密度,由于源操作数的单独调度而导致的动态功率浪费,并且对变体立即值的低效支持。为了保留传统TTA的优点,同时解决这些上述问题,我们提出了移动 - Pro,一种新型低功率和高码密度TTA架构。通过在指令集架构(ISA),架构,电路和编译器级别的优化,TTA的低功耗电位完全被利用。此外,通过更密集的代码大小,TTA性能也得到了相应的改善。在两个问题移动式Pro处理器及其RISC对应物之间的头部比较中,我们证明可以减少高达80%的RF接入,并且RF功率的降低成功转移到总核心功率保存。通过我们的移动Pro处理器实现总核心功率的高达11%,而代码密度与其RISC对应物几乎相同。

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