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UID:submissions.supercomputing.org_SC25_sess236_ws_risc102@linklings.com
SUMMARY:Dyninst on the RISC-V: Binary Instrumentation in Support of Perfor
 mance, Debugging, and Other Tools
DESCRIPTION:Cheng-Hsun Angus He, Ronak Chauhan, James A. Kupsch, Hsuan-Hen
 g Wu, and Barton P. Miller (University of Wisconsin-Madison)\n\nBinary ins
 trumentation provides the ability to instrument and modify a program after
  the compilation process has completed. Operating on the binary level allo
 ws instrumentation of the program as it was produced by the compiler. In a
 ddition, it can operate on programs or libraries for which you may not hav
 e the source code. Binary instrumentation is the foundation for a wide var
 iety of tools, including those for performance profiling, debugging, traci
 ng, architectural simulation, and digital forensics. Dyninst is a free and
  open-source suite of toolkits for building binary analysis and instrument
 ation tools for architectures that include the x86, ARM, and Power. It is 
 used in tools produced by industry, academia and research labs. This paper
  describes our efforts to port Dyninst to the RISC-V architecture. We disc
 uss the challenges presented by the RISC-V, our approaches to solving them
 , and the status of Dyninst on the RISC-V.\n\nRecording: Livestreamed, Rec
 orded\n\nRegistration Category: Technical Program Reg Pass, Workshop Reg P
 ass\n\nSession Chairs: Nick Brown (Edinburgh Parallel Computing Centre (EP
 CC); University of Edinburgh, Scotland); David Donofrio (Tactical Computin
 g Laboratories LLC, Lawrence Berkeley National Laboratory (LBNL)); Teresa 
 Cervero (Barcelona Supercomputing Center (BSC)); Daniele Gregori (E4 Compu
 ter Engineering); and Matthew Turner (Hewlett Packard Enterprise (HPE))\n\
 n
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