| 2009 | ||
|---|---|---|
| 42 | Philipp Grabher, Johann Großschädl, Dan Page: Non-deterministic processors: FPGA-based analysis of area, performance and security. WESS 2009 | |
| 41 | Christian Lederer, Roland Mader, Manuel Koschuch, Johann Großschädl, Alexander Szekely, Stefan Tillich: Energy-Efficient Implementation of ECDH Key Exchange for Wireless Sensor Networks. WISTP 2009: 112-127 | |
| 40 | Francesco Regazzoni, Thomas Eisenbarth, Axel Poschmann, Johann Großschädl, Frank K. Gürkaynak, Marco Macchetti, Zeynep Toprak Deniz, Laura Pozzi, Christof Paar, Yusuf Leblebici, Paolo Ienne: Evaluating Resistance of MCML Technology to Power Analysis Attacks Using a Simulation-Based Methodology. Transactions on Computational Science 4: 230-243 (2009) | |
| 2008 | ||
| 39 | Manuel Koschuch, Johann Großschädl, Udo Payer, Matthias Hudler, Michael Krüger: Workload Characterization of a Lightweight SSL Implementation Resistant to Side-Channel Attacks. CANS 2008: 349-365 | |
| 38 | Philipp Grabher, Johann Großschädl, Dan Page: Light-Weight Instruction Set Extensions for Bit-Sliced Cryptography. CHES 2008: 331-345 | |
| 37 | Johann Großschädl, Tobias Vejda, Dan Page: Reassessing the TCG Specifications for Trusted Computing in Mobile and Embedded Systems. HOST 2008: 84-90 | |
| 36 | Stefan Tillich, Martin Feldhofer, Thomas Popp, Johann Großschädl: Area, Delay, and Power Characteristics of Standard-Cell Implementations of the AES S-Box. Signal Processing Systems 50(2): 251-261 (2008) | |
| 2007 | ||
| 35 | Johann Großschädl, Alexander Szekely, Stefan Tillich: The energy cost of cryptographic key establishment in wireless sensor networks. ASIACCS 2007: 380-382 | |
| 34 | Stefan Tillich, Johann Großschädl: Power Analysis Resistant AES Implementation with Instruction Set Extensions. CHES 2007: 303-319 | |
| 33 | Johann Großschädl, Stefan Tillich, Christian Rechberger, Michael Hofmann, Marcel Medwed: Energy evaluation of software implementations of block ciphers under memory constraints. DATE 2007: 1110-1115 | |
| 32 | Francesco Regazzoni, Thomas Eisenbarth, Johann Großschädl, Luca Breveglieri, Paolo Ienne, Israel Koren, Christof Paar: Power Attacks Resistance of Cryptographic S-Boxes with Added Error Detection Circuits. DFT 2007: 508-516 | |
| 31 | Johann Großschädl, Stefan Tillich, Alexander Szekely: Performance Evaluation of Instruction Set Extensions for Long Integer Modular Arithmetic on a SPARC V8 Processor. DSD 2007: 680-689 | |
| 30 | Francesco Regazzoni, Stéphane Badel, Thomas Eisenbarth, Johann Großschädl, Axel Poschmann, Zeynep Toprak Deniz, Marco Macchetti, Laura Pozzi, Christof Paar, Yusuf Leblebici, Paolo Ienne: A Simulation-Based Methodology for Evaluating the DPA-Resistance of Cryptographic Functional Units with Application to CMOS and MCML Technologies. ICSAMOS 2007: 209-214 | |
| 29 | Philipp Grabher, Johann Großschädl, Dan Page: Cryptographic Side-Channels from Low-Power Cache Memory. IMA Int. Conf. 2007: 170-184 | |
| 28 | Tobias Vejda, Dan Page, Johann Großschädl: Instruction Set Extensions for Pairing-Based Cryptography. Pairing 2007: 208-224 | |
| 27 | Stefan Tillich, Johann Großschädl: VLSI Implementation of a Functional Unit to Accelerate ECC and AES on 32-Bit Processors. WAIFI 2007: 40-54 | |
| 2006 | ||
| 26 | Stefan Tillich, Johann Großschädl: Instruction Set Extensions for Efficient AES Implementation on 32-bit Processors. CHES 2006: 270-284 | |
| 25 | Manuel Koschuch, Joachim Lechner, Andreas Weitzer, Johann Großschädl, Alexander Szekely, Stefan Tillich, Johannes Wolkerstorfer: Hardware/Software Co-design of Elliptic Curve Cryptography on an 8051 Microcontroller. CHES 2006: 430-444 | |
| 24 | Johann Großschädl: TinySA: a security architecture for wireless sensor networks. CoNEXT 2006: 55 | |
| 23 | Johann Großschädl, Paolo Ienne, Laura Pozzi, Stefan Tillich, Ajay K. Verma: Combining algorithm exploration with instruction set design: a case study in elliptic curve cryptography. DATE 2006: 218-223 | |
| 22 | Stefan Tillich, Martin Feldhofer, Johann Großschädl: Area, Delay, and Power Characteristics of Standard-Cell Implementations of the AES S-Box. SAMOS 2006: 457-466 | |
| 2005 | ||
| 21 | Johann Großschädl, Roberto Maria Avanzi, Erkay Savas, Stefan Tillich: Energy-Efficient Software Implementation of Long Integer Modular Arithmetic. CHES 2005: 75-90 | |
| 20 | Stefan Tillich, Johann Großschädl, Alexander Szekely: An Instruction Set Extension for Fast and Memory-Efficient AES Implementation. Communications and Multimedia Security 2005: 11-21 | |
| 19 | Stefan Tillich, Johann Großschädl: Accelerating AES Using Instruction Set Extensions for Elliptic Curve Cryptography. ICCSA (2) 2005: 665-675 | |
| 2004 | ||
| 18 | Johann Großschädl, Sandeep S. Kumar, Christof Paar: Architectural Support for Arithmetic in Optimal Extension Fields. ASAP 2004: 111-124 | |
| 17 | Stefan Tillich, Johann Großschädl: A Simple Architectural Enhancement for Fast and Flexible Elliptic Curve Cryptography over Binary Finite Fields GF(2m). Asia-Pacific Computer Systems Architecture Conference 2004: 282-295 | |
| 16 | Johann Großschädl, Erkay Savas: Instruction Set Extensions for Fast Arithmetic in Finite Fields GF( p) and GF(2m). CHES 2004: 133-147 | |
| 15 | Stefan Tillich, Johann Großschädl: A Survey of Public-Key Cryptography on J2ME-Enabled Mobile Devices. ISCIS 2004: 935-944 | |
| 14 | Johann Großschädl, Karl C. Posch, Stefan Tillich: Architectural Enhancements to Support Digital Signal Processing and Public-Key Cryptography. WISES 2004: 129-143 | |
| 2003 | ||
| 13 | Johann Großschädl, Guy-Armand Kamendje: Architectural Enhancements for Montgomery Multiplication on Embedded RISC Processors. ACNS 2003: 418-434 | |
| 12 | Johann Großschädl, Guy-Armand Kamendje: Instruction Set Extension for Fast Elliptic Curve Cryptography over Binary Finite Fields GF(2m). ASAP 2003: 455- | |
| 11 | Markus Hütter, Johann Großschädl, Guy-Armand Kamendje: A Versatile and Scalable Digit-Serial/Parallel Multiplier Architecture for Finite Fields GF(2m). ITCC 2003: 692-700 | |
| 10 | Johann Großschädl, Guy-Armand Kamendje: Optimized RISC Architecture for Multiple-Precision Modular Arithmetic. SPC 2003: 253-270 | |
| 9 | Johann Großschädl, Guy-Armand Kamendje: Low-Power Design of a Functional Unit for Arithmetic in Finite Fields GF(p) and GF(2m). WISA 2003: 227-243 | |
| 8 | Johann Großschädl: Architectural Support for Long Integer Modulo Arithmetic on Risc-Based Smart Cards. IJHPCA 17(2): 135-146 (2003) | |
| 2002 | ||
| 7 | Johann Großschädl: A unified radix-4 partial product generator for integers and binary polynomials. ISCAS (3) 2002: 567-570 | |
| 6 | Johann Großschädl: Instruction Set Extension for Long Integer Modulo Arithmetic on RISC-Based Smart Cards. SBAC-PAD 2002: 13-19 | |
| 2001 | ||
| 5 | Johann Großschädl: A Bit-Serial Unified Multiplier Architecture for Finite Fields GF(p) and GF(2m). CHES 2001: 202-219 | |
| 4 | Johann Großschädl: A low-power bit-serial multiplier for finite fields GF(2m). ISCAS (4) 2001: 37-40 | |
| 2000 | ||
| 3 | Johann Großschädl: The Chinese Remainder Theorem and its Application in a High-Speed RSA Crypto Chip. ACSAC 2000: 384-393 | |
| 2 | Johann Großschädl: High-Speed RSA Hardware Based on Barret's Modular Reduction Method. CHES 2000: 191-203 | |
| 1 | Johann Großschädl: A New Serial/Parallel Architecture for a Low Power Modular Multiplier. SEC 2000: 251-260 | |