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Assembling (Electronic computers) --- Compiling (Electronic computers) --- Translators (Computer programs) --- Compilation (Informatique) --- Traducteurs (Logiciels) --- #TCPW P4.0 --- #TCPW P4.1 --- 681.3*D30 --- Computerwetenschap--?*D30 --- Langages de programmation --- Macro Processor --- Compiler --- Loader --- Assembler
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Computer science --- Compilers (Computer programs) --- Congresses --- -681.3*D34 --- Processors: code generation; compilers; interpreters; optimization; parsing; preprocessors; run-time environments; translator writing systems and compilergenerators (Programming languages) --- Congresses. --- 681.3*D34 Processors: code generation; compilers; interpreters; optimization; parsing; preprocessors; run-time environments; translator writing systems and compilergenerators (Programming languages) --- 681.3*D34 --- Compilers (Computer programs) - Congresses --- Compiler
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Compilers (Computer programs) --- Programming languages (Electronic computers) --- Compilateurs (Logiciels) --- Langages de programmation --- Programming languages (Electronic computers). --- Compilers (Computer programs). --- Compiling programs (Computer programs) --- Computer programs --- Programming software --- Systems software --- Computer languages --- Computer program languages --- Computer programming languages --- Machine language --- Electronic data processing --- Languages, Artificial --- Computer systems --- High level languages --- Design --- Language Structure --- High Level Language --- Regular Grammar --- Compiler --- Grammar
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SPICE --- Electric circuit analysis --- Circuits électriques --- SPICE (Computer file) --- -Electronic circuit design --- -Electronic circuits --- Circuit analysis, Electric --- Electric circuits --- Electric network analysis --- elektrische netwerken --- Electronics --- Electrical engineering --- Electronic circuit design --- Data processing --- Simulation program with integrated circuit emphasis --- Electric circuit analysis-data processing --- Spice (compiler file)
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programmeren (informatica) --- Computer architecture. Operating systems --- Structured programming --- Programmation structurée --- 681.3*D10 --- 681.3*D34 --- Computer programming --- Electronic data processing --- Computerwetenschap--?*D10 --- Processors: code generation; compilers; interpreters; optimization; parsing; preprocessors; run-time environments; translator writing systems and compilergenerators (Programming languages) --- Structured techniques --- Structured programming. --- 681.3*D34 Processors: code generation; compilers; interpreters; optimization; parsing; preprocessors; run-time environments; translator writing systems and compilergenerators (Programming languages) --- Structured Programming --- Operating System --- Pascal (langage de programmation) --- Compiler
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Mathematical linguistics --- Computer. Automation --- 681.3*D32 --- language classifications: applicative languages; data-flow languages; design languages; extensible languages; macro and assembly languages; nonprocedural languages; specialized application and very high-level languages (Programminglanguages) --- 681.3*D32 language classifications: applicative languages; data-flow languages; design languages; extensible languages; macro and assembly languages; nonprocedural languages; specialized application and very high-level languages (Programminglanguages) --- Computer science. --- Software engineering. --- Programming Languages, Compilers, Interpreters. --- Software Engineering/Programming and Operating Systems. --- Computer software engineering --- Engineering --- Informatics --- Science --- Compiler --- Language --- Language Description --- Lncs --- Ada
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Electronic digital computers --- Integrated circuits --- Algorithms. --- Ordinateurs --- Circuits intégrés à très grande échelle --- Algorithmes --- Circuits. --- Very large scale integration. --- Circuits --- Algorithms --- Very large scale integration --- 621.3'7 --- -Integrated circuits --- #TELE:d.d. Prof. A. J. J. Oosterlinck --- #TELE:SISTA --- Algorism --- Algebra --- Arithmetic --- Very large scale integration of circuits --- VLSI circuits --- Automatic digital computers --- Computers, Electronic digital --- Digital computers, Electronic --- Computers --- Hybrid computers --- Sequential machine theory --- Electrical engineering--?'7 --- Foundations --- 621.3'7 Electrical engineering--?'7 --- Digital computer circuits --- Digital electronics --- Electronic circuits --- Electronic digital computers - Circuits --- Integrated circuits - Very large scale integration --- Vlsi --- Silicon Compiler
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681.3*D34 --- 681.3*D34 Processors: code generation compilers interpreters optimization parsing preprocessors run-time environments translator writing systems and compilergenerators (Programming languages) --- Processors: code generation compilers interpreters optimization parsing preprocessors run-time environments translator writing systems and compilergenerators (Programming languages) --- 681.3*D34 Processors: code generation; compilers; interpreters; optimization; parsing; preprocessors; run-time environments; translator writing systems and compilergenerators (Programming languages) --- Processors: code generation; compilers; interpreters; optimization; parsing; preprocessors; run-time environments; translator writing systems and compilergenerators (Programming languages) --- Compilers (Computer programs) --- Compiling programs (Computer programs) --- Computer programs --- Programming software --- Systems software --- compiler --- hardware --- Compilers (Computer programs). --- Compilateurs (Logiciels)
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Cryptography lies at the heart of most technologies deployed today for secure communications. At the same time, mathematics lies at the heart of cryptography, as cryptographic constructions are based on algebraic scenarios ruled by group or number theoretical laws. Understanding the involved algebraic structures is, thus, essential to design robust cryptographic schemes. This Special Issue is concerned with the interplay between group theory, symmetry and cryptography. The book highlights four exciting areas of research in which these fields intertwine: post-quantum cryptography, coding theory, computational group theory and symmetric cryptography. The articles presented demonstrate the relevance of rigorously analyzing the computational hardness of the mathematical problems used as a base for cryptographic constructions. For instance, decoding problems related to algebraic codes and rewriting problems in non-abelian groups are explored with cryptographic applications in mind. New results on the algebraic properties or symmetric cryptographic tools are also presented, moving ahead in the understanding of their security properties. In addition, post-quantum constructions for digital signatures and key exchange are explored in this Special Issue, exemplifying how (and how not) group theory may be used for developing robust cryptographic tools to withstand quantum attacks.
NP-Completeness --- protocol compiler --- post-quantum cryptography --- Reed–Solomon codes --- key equation --- euclidean algorithm --- permutation group --- t-modified self-shrinking generator --- ideal cipher model --- algorithms in groups --- lightweight cryptography --- generalized self-shrinking generator --- numerical semigroup --- pseudo-random number generator --- symmetry --- pseudorandom permutation --- Berlekamp–Massey algorithm --- semigroup ideal --- algebraic-geometry code --- non-commutative cryptography --- provable security --- Engel words --- block cipher --- cryptography --- beyond birthday bound --- Weierstrass semigroup --- group theory --- braid groups --- statistical randomness tests --- group-based cryptography --- alternating group --- WalnutDSA --- Sugiyama et al. algorithm --- cryptanalysis --- digital signatures --- one-way functions --- key agreement protocol --- error-correcting code --- group key establishment
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The increasing demand of processing a higher number of applications and related data on computing platforms has resulted in reliance on multi-/many-core chips as they facilitate parallel processing. However, there is a desire for these platforms to be energy-efficient and reliable, and they need to perform secure computations for the interest of the whole community. This book provides perspectives on the aforementioned aspects from leading researchers in terms of state-of-the-art contributions and upcoming trends.
embedded computer systems --- cyber security --- system-level design and design-space exploration --- multi-objective optimization --- system trade-offs --- energy-efficient computing --- run-time management --- machine learning --- concurrent workloads --- multi-core systems --- processing-in-memory --- near-memory processing --- resource management --- code annotation --- compiler optimizations --- online heuristics --- energy efficiency --- 3D-stacked memories --- non-volatile memories --- peak-power management --- many-core --- directed acyclic task graphs --- high performance computing --- data centers --- resource allocation --- profit --- energy consumption --- reinforcement learning --- server consolidation --- RF --- NoC --- OFDMA --- simulator --- routing --- reconfigurable --- Hybrid Application Mapping (HAM) --- many-core systems --- embedded systems --- composability --- design space exploration (DSE) --- Network-on-Chip (NoC) --- real-time guarantees --- predictability --- multi/many-core platforms --- reliability --- mixed-criticality