We present a fast involutional block cipher optimized for reconfigurable hardware implementations. ICEBERG uses 64-bit text blocks and 128-bit keys. All components are involutional and allow very efficient combinations of encryption/decryption. Hardware implementations of ICEBERG allow to change the key at every clock cycle without any performance loss and its round keys are derived "on-the-fly" in encryption and decryption modes (no storage of round keys is needed). The resulting design offers better hardware efficiency than other recent 128-key-bit block ciphers. Resistance against side-channel cryptanalysis was also considered as a design criteria for ICEBERG
In this paper we present two approaches to combine recent results of cryptographic research with the...
Abstract—SEA is a scalable encryption algorithm targeted for small embedded applications. It was ini...
This paper introduces our dedicated authenticated encryption scheme ICEPOLE. ICEPOLE is a high-speed...
Abstract. We present a fast involutional block cipher optimized for reconfigurable hardware implemen...
This paper presents field programmable gate array (FPGA) implementations of ICEBERG, a block cipher ...
Reprogrammable devices such as Field Programmable Gate Arrays (FPGA’s) are highly attractive options...
Encryption is being used more than ever before. It is used to prevent eavesdropping on our communica...
ABSTRACT The new design methodology for secret-key block ciphers, based on introducing an optimum nu...
Reconfigurable computing is gaining rising attention as an alternative to traditional processing for...
The technical analysis used in determining which of the NESSIE candidates will be selected as a stan...
NESSIE is a 3-year research project (2000-2002). The goal of the project is to put forward some algo...
Abstract. The technical analysis used in determining which of the NESSIE candidates will be selected...
AbstractThis paper present a new hardware design of WelchGong (WG)128 cipher. The proposed WG Stream...
NESSIE is a 3-year research project (2000-2002). The goal of the project is to put forward some algo...
This thesis presents work on the efficiency and security of cryptographic software. First it describ...
In this paper we present two approaches to combine recent results of cryptographic research with the...
Abstract—SEA is a scalable encryption algorithm targeted for small embedded applications. It was ini...
This paper introduces our dedicated authenticated encryption scheme ICEPOLE. ICEPOLE is a high-speed...
Abstract. We present a fast involutional block cipher optimized for reconfigurable hardware implemen...
This paper presents field programmable gate array (FPGA) implementations of ICEBERG, a block cipher ...
Reprogrammable devices such as Field Programmable Gate Arrays (FPGA’s) are highly attractive options...
Encryption is being used more than ever before. It is used to prevent eavesdropping on our communica...
ABSTRACT The new design methodology for secret-key block ciphers, based on introducing an optimum nu...
Reconfigurable computing is gaining rising attention as an alternative to traditional processing for...
The technical analysis used in determining which of the NESSIE candidates will be selected as a stan...
NESSIE is a 3-year research project (2000-2002). The goal of the project is to put forward some algo...
Abstract. The technical analysis used in determining which of the NESSIE candidates will be selected...
AbstractThis paper present a new hardware design of WelchGong (WG)128 cipher. The proposed WG Stream...
NESSIE is a 3-year research project (2000-2002). The goal of the project is to put forward some algo...
This thesis presents work on the efficiency and security of cryptographic software. First it describ...
In this paper we present two approaches to combine recent results of cryptographic research with the...
Abstract—SEA is a scalable encryption algorithm targeted for small embedded applications. It was ini...
This paper introduces our dedicated authenticated encryption scheme ICEPOLE. ICEPOLE is a high-speed...