Title :
Compilation Accelerator on Silicon
Author :
Nagarajan, Venkateswaran ; Srinivasan, Vinesh ; Kannan, Ramsrivatsa ; Thinakaran, Prashanth ; Hariharan, Rajagopal ; Vasudevan, Bharanidharan ; Nachiappan, Nachiappan Chidambaram ; Saravanan, Karthikeyan Palavedu ; Sridharan, Aswin ; Sankaran, Vigneshwara
Author_Institution :
Waran Res. Found. [WARFT], Chennai, India
Abstract :
Current day processors utilize a complex and finely tuned system software to map applications across their cores and extract optimal performance. However with increasing core counts and the rise of heterogeneity among cores, tremendous stress will be exerted on the software stack leading to bottlenecks and underutilization of resources. We propose an architecture for a Compilation Accelerator on Silicon (CAS) coupled with a hardware instruction scheduler to tackle the complexity involved in analyzing dependencies among instructions dynamically, accelerate machine code generation and obtain optimum resource utilization across the cores by effective and efficient scheduling. The CAS is realized as a two-level hierarchical subsystem employing the Primary Compiler on Silicon (PCOS) and Secondary Compiler on Silicon (SCOS) with the hardware instruction scheduler as an integral part of it. A comparative analysis with the conventional GCC compiler is presented for a real world brain modeling application and higher instruction generation rates along with improved scheduling efficiency is observed resulting in a corresponding increase in resource utilization.
Keywords :
processor scheduling; program compilers; resource allocation; application mapping; compilation accelerator on silicon; hardware instruction scheduler; instruction generation rate; machine code generation; optimum resource utilization; primary compiler on silicon; processor; resource underutilization; secondary compiler on silicon; software stack; system software; two-level hierarchical subsystem; Computer architecture; Hardware; Libraries; Probability; Program processors; Resource management; Silicon; Hardware Compiler; Hardware Scheduler; Heterogeneous Multi-Cores;
Conference_Titel :
VLSI (ISVLSI), 2012 IEEE Computer Society Annual Symposium on
Conference_Location :
Amherst, MA
Print_ISBN :
978-1-4673-2234-8
DOI :
10.1109/ISVLSI.2012.76