Reconfigurable acceleration and dynamic partial self-reconfiguration in general purpose computing

Conference Paper (2011)
Author(s)

Ioannis Sourdis (Chalmers University of Technology)

Abhijit Nandy (Student TU Delft)

Venkatasubramanian Viswanathan (Student TU Delft)

Anthony Brandon (TU Delft - Computer Engineering)

D Theodoropoulos (TU Delft - Computer Engineering)

Georgi N. Gaydadjiev (TU Delft - Computer Engineering)

Research Group
Computer Engineering
DOI related publication
https://doi.org/10.1109/FPT.2011.6132666
More Info
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Publication Year
2011
Language
English
Research Group
Computer Engineering
ISBN (print)
978-1-4577-1741-3
ISBN (electronic)
978-1-4577-1740-6

Abstract

In this paper, we describe a generic approach for integrating a dynamically reconfigurable device into a general purpose system interconnected with a high-speed link. The system can dynamically install and execute hardware instances of functions to accelerate parts of a given software code. The hardware descriptions of the functions (bitstreams) are inserted into the executable binary running on the system. Our compiler further inserts system-calls to the software code to control the reconfigurable device. Thereby, the general purpose host-processor of the system manages the hardware reconfiguration and execution through a Linux device driver. The device has direct access to the main memory (DMA) operating in the virtual address space; it further supports memory mapped IO for data and control, and is able to raise and handle interrupts for synchronization. The above system is implemented on a general purpose machine providing a HyperTransport bus to connect a Xilinx Virtex4-100 FPGA, an AMD Opteron-244, and 1 GB of DDR main memory. We evaluate our proposal using a secure audio processing application. We accelerate in hardware the Audio processing kernel as well as the subsequent AES encryption function via dynamic partial self-reconfiguration. The proposed system achieves a 12 speedup over a software for the application at hand.

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