Most of users are accustomed to utilizing virtual address in their parallel programs running at the scalable high-performance parallel computing systems.Therefore a virtual and physical address translation mechanism i...Most of users are accustomed to utilizing virtual address in their parallel programs running at the scalable high-performance parallel computing systems.Therefore a virtual and physical address translation mechanism is necessary and crucial to bridge the hardware interface and software application.In this paper,a new virtual and physical translation mechanism is proposed,which includes an address validity checker,an address translation cache(ATC),a complete refresh scheme and many reliability designs.The ATC employs a large capacity embedded dynamic random access memory(eDRAM)to meet the high hit ratio requirement.It also can switch the cache and buffer mode to avoid the high latency of accessing the main memory outside.Many tests have been conducted on the real chip,which implements the address translation mechanism.The results show that the ATC has a high hit ratio while running the well-known benchmarks,and additionally demonstrates that the new high-performance mechanism is well designed.展开更多
Network virtualization is a promising way for network innovation. Efforts have been made to develop virtual network platforms for both network researches and business applications. In this paper, we aim to provide a n...Network virtualization is a promising way for network innovation. Efforts have been made to develop virtual network platforms for both network researches and business applications. In this paper, we aim to provide a new solution to address the shortcomings of existing solutions. We propose MAVIN- a MAC address coding based virtual network platform. MAVIN avoids changing the nodes of the current Internet, and can provide high performance virtual networks with user-specified network protocols and link performance parameters. Comparing to existing network virtualization schemes, MAVIN can achieve layer-2 virtualization which has no extra forwarding overhead. We implement the virtual router prototype of MAVIN and establish a real MAVIN platform to evaluate its performance. Evaluation results show that MAVIN can support high performance virtual networks with excellent scalability.展开更多
基金Supported by the National Natural Science Foundation of China(61103083,61133007)National High Technology Research and Development Program of China(863Program)(2012AA01A301,2015AA01A301)
文摘Most of users are accustomed to utilizing virtual address in their parallel programs running at the scalable high-performance parallel computing systems.Therefore a virtual and physical address translation mechanism is necessary and crucial to bridge the hardware interface and software application.In this paper,a new virtual and physical translation mechanism is proposed,which includes an address validity checker,an address translation cache(ATC),a complete refresh scheme and many reliability designs.The ATC employs a large capacity embedded dynamic random access memory(eDRAM)to meet the high hit ratio requirement.It also can switch the cache and buffer mode to avoid the high latency of accessing the main memory outside.Many tests have been conducted on the real chip,which implements the address translation mechanism.The results show that the ATC has a high hit ratio while running the well-known benchmarks,and additionally demonstrates that the new high-performance mechanism is well designed.
基金supported by the National High-Tech Research and Development Program of China(863 Program) under Grant 2015AA015701
文摘Network virtualization is a promising way for network innovation. Efforts have been made to develop virtual network platforms for both network researches and business applications. In this paper, we aim to provide a new solution to address the shortcomings of existing solutions. We propose MAVIN- a MAC address coding based virtual network platform. MAVIN avoids changing the nodes of the current Internet, and can provide high performance virtual networks with user-specified network protocols and link performance parameters. Comparing to existing network virtualization schemes, MAVIN can achieve layer-2 virtualization which has no extra forwarding overhead. We implement the virtual router prototype of MAVIN and establish a real MAVIN platform to evaluate its performance. Evaluation results show that MAVIN can support high performance virtual networks with excellent scalability.