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1.
Random testing of open source C compilers
by Yang, Xuejun, Ph.D.  The University of Utah. 2015: 145 pages; 3704288.
2.
Fully countering trusting trust through Diverse Double-Compiling
by Wheeler, David A., Ph.D.  George Mason University. 2010: 199 pages; 3393623.
3.
Nanopass compiler infrastructure
by Sarkar, Dipanwita, Ph.D.  Indiana University. 2008: 176 pages; 3337263.
4.
Detecting Fine-Grained Similarity in Binaries
by Saebjornsen, Andreas, Ph.D.  University of California, Davis. 2014: 107 pages; 3646391.
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A nanopass framework for commercial compiler development
by Keep, Andrew W., Ph.D.  Indiana University. 2013: 173 pages; 3560746.
8.
Search-based optimization for compiler machine-code generation
by Clauson, Aran, Ph.D.  University of Oregon. 2013: 121 pages; 3600071.
9.
Decoupled Vector-Fetch Architecture with a Scalarizing Compiler
by Lee, Yunsup, Ph.D.  University of California, Berkeley. 2016: 157 pages; 10151006.
10.
Multi-Port Automation for SRAM Compiler Design
by Grimes, Michael T., M.S.  University of California, Santa Cruz. 2018: 42 pages; 13423318.
11.
Finding common development mistakes in Apache Struts 2 projects
by Rosecrans, Aaron, M.S.  State University of New York at Binghamton. 2012: 57 pages; 1516652.
12.
Hardware Support for Productive Partitioned Global Address Space (PGAS) Programming
by Serres, Olivier, Ph.D.  The George Washington University. 2016: 122 pages; 3746724.
13.
Peephole superoptimization
by Bansal, Sorav, Ph.D.  Stanford University. 2008: 95 pages; 3332986.
14.
The Brandstetter tunebook: shape-note dissemination and the Germans of Western Maryland
by Barnett, Joshua Rush, M.A.  University of Maryland, College Park. 2012: 107 pages; 1514897.
15.
Tidebast och Vändelrot: Magical representations in the Swedish black art book tradition
by Johnson, Thomas K., Ph.D.  University of Washington. 2010: 777 pages; 3406109.
16.
Flexible Debugging with Controllable Overhead
by Callanan, Sean, Ph.D.  State University of New York at Stony Brook. 2009: 85 pages; 3448464.
18.
Integrated hardware/software approaches to software security for embedded systems
by Gelbart, Olga, D.Sc.  The George Washington University. 2008: 137 pages; 3297440.
19.
Toward a software pipelining framework for many-core chips
by Ributzka, Juergen, M.S.  University of Delaware. 2009: 97 pages; 1469538.
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A language for specifying compiler optimizations for generic software
by Willcock, Jeremiah J., Ph.D.  Indiana University. 2007: 134 pages; 3297114.
22.
Dissertation beyond shared memory loop parallelism in the polyhedral model
by Yuki, Tomofumi, Ph.D.  Colorado State University. 2013: 137 pages; 3565471.
23.
Reusable Software Infrastructure for Stream Processing
by Soule, Robert, Ph.D.  New York University. 2012: 178 pages; 3524263.
24.
Software Reverse Engineering education
by Cipresso, Teodoro, M.S.  San Jose State University. 2009: 112 pages; 1478574.
25.
Defeating memory error exploits using automated software diversity
by Bhatkar, Sandeep, Ph.D.  State University of New York at Stony Brook. 2007: 123 pages; 3337612.
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A formal semantics of C with applications
by Ellison, Charles McEwen, III, Ph.D.  University of Illinois at Urbana-Champaign. 2012: 428 pages; 3600342.
28.
PLC code vulnerabilities through SCADA systems
by Valentine, Sidney E., Ph.D.  University of South Carolina. 2013: 136 pages; 3561883.
29.
Introspective pushdown analysis and Nebo
by Earl, Christopher, Ph.D.  The University of Utah. 2014: 154 pages; 3621541.
30.
Formal reasoning in software-defined networks
by Reitblatt, Mark, Ph.D.  Cornell University. 2017: 179 pages; 10254203.
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