Conference of 4th International Workshop on Adaptive Self-Tuning Computing Systems, ADAPT 2014 ; Conference Date: 22 January 2014 Through 22 January 2014; Conference Code:102654International audienceFunctionally Asymmetric Multi-Processor (FAMP) design represents a tradeoff between the programmability of a symmetric multi-processor and the exploitation of the workload heterogeneity of multi-processor system-on-chip. The functional asymmetry's management is a crucial issue in finding the potential power efficiency of the FAMP design. In this work-in-progress we propose a FAMP power model and extract some guidelines that take advantage of the asymmetric design. By analysing the behaviour of a SIMD hardware extension on the PARSEC benchmark su...
Multiprocessor architecture is becoming popular in both desktop processors and mobile processors. Es...
Abstract—Several studies and real world designs have advocated the sharing of large execution units ...
Asymmetric multicore architectures (AMC) with single-ISA can accelerate multi-threaded applications ...
Conference of 4th International Workshop on Adaptive Self-Tuning Computing Systems, ADAPT 2014 ; Con...
This paper evaluates asymmetric cluster chip multiprocessor (ACCMP) architectures as a mechanism to ...
Chip Multiprocessors are becoming common as the cost of increasing chip power begins to limit single...
Abstract—Asymmetric chip multiprocessors (ACMPs) have multiple core types that are instruction-set c...
Faced with the challenge of finding ways to use an ever-growing transistor budget, microarchitects h...
Asymmetric chip multiprocessors (ACMPs) have multiple core types that are instruction-set compatible...
Conference of 9th IEEE International Symposium on Embedded Multicore/Manycore SoCs, MCSoC 2015 ; Con...
10.1109/CASES.2013.66625192013 International Conference on Compilers, Architecture and Synthesis for...
Asymmetric multi-cores (AMCs) are a successful architectural solution for both mobile devices and su...
International audienceAmdahl’s law is a fundamental tool for understanding the evolution of performa...
As the number of cores in a processor increases, asymmetrically distributed memory architecture is e...
As transistor densities increase, it is becoming ever more difficult to gain significant performance ...
Multiprocessor architecture is becoming popular in both desktop processors and mobile processors. Es...
Abstract—Several studies and real world designs have advocated the sharing of large execution units ...
Asymmetric multicore architectures (AMC) with single-ISA can accelerate multi-threaded applications ...
Conference of 4th International Workshop on Adaptive Self-Tuning Computing Systems, ADAPT 2014 ; Con...
This paper evaluates asymmetric cluster chip multiprocessor (ACCMP) architectures as a mechanism to ...
Chip Multiprocessors are becoming common as the cost of increasing chip power begins to limit single...
Abstract—Asymmetric chip multiprocessors (ACMPs) have multiple core types that are instruction-set c...
Faced with the challenge of finding ways to use an ever-growing transistor budget, microarchitects h...
Asymmetric chip multiprocessors (ACMPs) have multiple core types that are instruction-set compatible...
Conference of 9th IEEE International Symposium on Embedded Multicore/Manycore SoCs, MCSoC 2015 ; Con...
10.1109/CASES.2013.66625192013 International Conference on Compilers, Architecture and Synthesis for...
Asymmetric multi-cores (AMCs) are a successful architectural solution for both mobile devices and su...
International audienceAmdahl’s law is a fundamental tool for understanding the evolution of performa...
As the number of cores in a processor increases, asymmetrically distributed memory architecture is e...
As transistor densities increase, it is becoming ever more difficult to gain significant performance ...
Multiprocessor architecture is becoming popular in both desktop processors and mobile processors. Es...
Abstract—Several studies and real world designs have advocated the sharing of large execution units ...
Asymmetric multicore architectures (AMC) with single-ISA can accelerate multi-threaded applications ...