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Hiding message delivery latency using Direct-to-Cache-Transfer techniques in message passing environments

机译:在消息传递环境中使用直接缓存传输技术隐藏消息传递延迟

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摘要

Communication overhead is the key obstacle to reaching hardware performance limits. The majority is associated with software overhead, a significant portion of which is attributed to message copying. To reduce this copying overhead, we have devised techniques that do not require to copy a received message in order for it to be bound to its final destination. Rather, a late-binding mechanism, which involves address translation and a dedicated cache, facilitates fast access to received messages by the consuming process/thread.rnWe have introduced two policies namely Direct to Cache Transfer (DTCT) and lazy DTCT that determine whether a message after it is bound needs to be transferred into the data cache. We have studied the proposed methods in simulation and have shown their effectiveness in reducing access times to message payloads by the consuming process.
机译:通信开销是达到硬件性能极限的主要障碍。大多数与软件开销相关,其中很大一部分归因于消息复制。为了减少这种复制开销,我们设计了一些技术,这些技术不需要复制接收到的消息即可将其绑定到其最终目的地。相反,一种后绑定机制(涉及地址转换和专用缓存)有助于使用进程/线程快速访问接收到的消息。rn我们引入了两种策略,即直接缓存传输(DTCT)和惰性DTCT,它们确定绑定后的消息需要传输到数据缓存中。我们已经在仿真中研究了所提出的方法,并显示了它们在减少消耗过程对消息有效负载的访问时间方面的有效性。

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