DocumentCode :
1669351
Title :
Efficient on-the-fly data race detection in multithreaded C++ programs
Author :
Pozniansky, Eli ; Schuster, Assaf
Author_Institution :
Comput. Sci. Dept., Technion-Israel Inst. of Technol., Haifa, Israel
fYear :
2003
Abstract :
Data race detection is highly essential for debugging multithreaded programs and assuring their correctness. Nevertheless, there is no single universal technique capable of handling the task efficiently, since the data race detection problem is computationally hard in the general case. Thus, all currently available tools, when applied to some general case program, usually result in excessive false alarms or in a large number of undetected races. Another major drawback of currently available tools is that they are restricted, for performance reasons, to detection units of fixed size. Thus, they all suffer from the same problem - choosing a small unit might result in missing some of the data races, while choosing a large one might lead to false detection. We present a novel testing tool, called MultiRace, which combines improved versions of Djit and Lockset - two very powerful on-the-fly algorithms for dynamic detection of apparent data races. Both extended algorithms detect races in multithreaded programs that may execute on weak consistency systems, and may use two-way as well as global synchronization primitives. By employing novel technologies, MultiRace adjusts its detection to the native granularity of objects and variables in the program under examination. In order to monitor all accesses to each of the shared locations, MultiRace instruments the C++ source code of the program. It lets the user fine-tune the detection process, but otherwise is completely automatic and transparent. This paper describes the algorithms employed in MultiRace, gives highlights of its implementation issues, and suggests some optimizations. It shows that the overheads imposed by MultiRace are often much smaller (orders of magnitude) than those obtained by other existing tools.
Keywords :
C++ language; multi-threading; program debugging; program testing; program verification; software tools; Djit; Lockset; MultiRace; correctness; debugging; fine tuning; multithreaded C++ programs; on-the-fly data race detection; source code; testing tool; weak consistency systems; Computer science; Debugging; Heuristic algorithms; Instruments; Monitoring; Multithreading; Object detection; Parallel processing; Parallel programming; Testing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Parallel and Distributed Processing Symposium, 2003. Proceedings. International
ISSN :
1530-2075
Print_ISBN :
0-7695-1926-1
Type :
conf
DOI :
10.1109/IPDPS.2003.1213513
Filename :
1213513
Link To Document :
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