Static Analysis of Executables to Detect Malicious Patterns Christodorescu M, Jha S. 2003. Static Analysis of Executables to Detect Malicious Patterns. 12th USENIX Security Symposium (USENIX Security 03). Read more about Static Analysis of Executables to Detect Malicious PatternsDBLPLog in to post commentsGoogle ScholarBibTeX
{PHYSICAL} {SECURITY}: {THE} {GOOD}, {THE} {BAD}, {AND} {THE} {UGLY} Seiden M. 2003. {PHYSICAL} {SECURITY}: {THE} {GOOD}, {THE} {BAD}, {AND} {THE} {UGLY}. 12th USENIX Security Symposium (USENIX Security 03). Read more about {PHYSICAL} {SECURITY}: {THE} {GOOD}, {THE} {BAD}, {AND} {THE} {UGLY}DBLPLog in to post commentsGoogle ScholarBibTeX
{APPLICATION-LEVEL} {SECURITY} {PROTOCOLS}: {PGP}, {S/MIME}, {SSL}, {AND} {SSH} Gutmann P. 2003. {APPLICATION-LEVEL} {SECURITY} {PROTOCOLS}: {PGP}, {S/MIME}, {SSL}, {AND} {SSH}. 12th USENIX Security Symposium (USENIX Security 03). Read more about {APPLICATION-LEVEL} {SECURITY} {PROTOCOLS}: {PGP}, {S/MIME}, {SSL}, {AND} {SSH}DBLPLog in to post commentsGoogle ScholarBibTeX
{PointGuard™}: Protecting Pointers from Buffer Overflow Vulnerabilities Cowan C, Beattie S, Johansen J, Wagle P. 2003. {PointGuard™}: Protecting Pointers from Buffer Overflow Vulnerabilities. 12th USENIX Security Symposium (USENIX Security 03). Read more about {PointGuard™}: Protecting Pointers from Buffer Overflow VulnerabilitiesDBLPLog in to post commentsGoogle ScholarBibTeX
Address Obfuscation: An Efficient Approach to Combat a Broad Range of Memory Error Exploits Bhatkar S, DuVarney DC, Sekar R.. 2003. Address Obfuscation: An Efficient Approach to Combat a Broad Range of Memory Error Exploits. 12th USENIX Security Symposium (USENIX Security 03). Read more about Address Obfuscation: An Efficient Approach to Combat a Broad Range of Memory Error ExploitsDBLPLog in to post commentsGoogle ScholarBibTeX
High Coverage Detection of {Input-Related} Security Faults Larson E, Austin T. 2003. High Coverage Detection of {Input-Related} Security Faults. 12th USENIX Security Symposium (USENIX Security 03). Read more about High Coverage Detection of {Input-Related} Security FaultsDBLPLog in to post commentsGoogle ScholarBibTeX
{WHEN} {POLICIES} {COLLIDE}: {WILL} {THE} {COPYRIGHT} {WARS} {ROLL} {BACK} {THE} {COMPUTER} {REVOLUTION}? Godwin M. 2003. {WHEN} {POLICIES} {COLLIDE}: {WILL} {THE} {COPYRIGHT} {WARS} {ROLL} {BACK} {THE} {COMPUTER} {REVOLUTION}? 12th USENIX Security Symposium (USENIX Security 03). Read more about {WHEN} {POLICIES} {COLLIDE}: {WILL} {THE} {COPYRIGHT} {WARS} {ROLL} {BACK} {THE} {COMPUTER} {REVOLUTION}?DBLPLog in to post commentsGoogle ScholarBibTeX
{PKI} {MODELS}, {DISTRIBUTED} {NESTED} {GROUPS}, {AND} {REVOCATION} Perlman R. 2003. {PKI} {MODELS}, {DISTRIBUTED} {NESTED} {GROUPS}, {AND} {REVOCATION}. 12th USENIX Security Symposium (USENIX Security 03). Read more about {PKI} {MODELS}, {DISTRIBUTED} {NESTED} {GROUPS}, {AND} {REVOCATION}DBLPLog in to post commentsGoogle ScholarBibTeX
{PANEL}: {ELECTRONIC} {VOTING} Elliot D, Dill D, Jones D, Morganstein S, Adler J, O'Connor B, Rubin A. 2003. {PANEL}: {ELECTRONIC} {VOTING}. 12th USENIX Security Symposium (USENIX Security 03). Read more about {PANEL}: {ELECTRONIC} {VOTING}DBLPLog in to post commentsGoogle ScholarBibTeX
Analysis of an Electronic Voting System Stubblefield A. 2003. Analysis of an Electronic Voting System. Read more about Analysis of an Electronic Voting SystemDBLPLog in to post commentsGoogle ScholarBibTeX