Field-programmable gate arrayA field-programmable gate array (FPGA) is an integrated circuit designed to be configured after manufacturing. The FPGA configuration is generally specified using a hardware description language (HDL), similar to that used for an application-specific integrated circuit (ASIC). Circuit diagrams were previously used to specify the configuration, but this is increasingly rare due to the advent of electronic design automation tools. FPGAs contain an array of programmable logic blocks, and a hierarchy of reconfigurable interconnects allowing blocks to be wired together.
Reconfigurable computingReconfigurable computing is a computer architecture combining some of the flexibility of software with the high performance of hardware by processing with very flexible high speed computing fabrics like field-programmable gate arrays (FPGAs). The principal difference when compared to using ordinary microprocessors is the ability to make substantial changes to the datapath itself in addition to the control flow. On the other hand, the main difference from custom hardware, i.e.
Circuit logique programmableUn circuit logique programmable ou PLD (Programmable Logical Device), est un circuit intégré logique qui peut être programmé après sa fabrication. Il se compose de nombreuses cellules logiques élémentaires contenant des bascules logiques librement connectables. L'utilisateur doit donc programmer le circuit avant de l'utiliser. Les différentes logiques de programmation (unique, reprogrammable) et d'architecture ont conduit à la création de sous-familles dont les plus connues sont les FPGA et les CPLD.
Programmable logic arrayA programmable logic array (PLA) is a kind of programmable logic device used to implement combinational logic circuits. The PLA has a set of programmable AND gate planes, which link to a set of programmable OR gate planes, which can then be conditionally complemented to produce an output. It has 2N AND gates for N input variables, and for M outputs from PLA, there should be M OR gates, each with programmable inputs from all of the AND gates. This layout allows for many logic functions to be synthesized in the sum of products canonical forms.
Gate arrayA gate array is an approach to the design and manufacture of application-specific integrated circuits (ASICs) using a prefabricated chip with components that are later interconnected into logic devices (e.g. NAND gates, flip-flops, etc.) according to custom order by adding metal interconnect layers in the factory. It was popular during the upheaval in the semiconductor industry in the 1980s, and its usage declined by the end of the 1990s.
Programmable Array LogicProgrammable Array Logic (PAL) is a family of programmable logic device semiconductors used to implement logic functions in digital circuits introduced by Monolithic Memories, Inc. (MMI) in March 1978. MMI obtained a registered trademark on the term PAL for use in "Programmable Semiconductor Logic Circuits". The trademark is currently held by Lattice Semiconductor. PAL devices consisted of a small PROM (programmable read-only memory) core and additional output logic used to implement particular desired logic functions with few components.
Accélération matérielleL'accélération matérielle consiste à confier une fonction spécifique effectuée par le processeur à un circuit intégré dédié qui effectuera cette fonction de façon plus efficace. Pendant longtemps, les calculs effectués par les ordinateurs grand public étaient entièrement pris en charge par le processeur central (CPU). Or, ce processeur s'avérait insuffisant dans un certain nombre de domaines. On eut l'idée de créer des circuits plus efficaces que le processeur pour ces tâches afin de le décharger.
Exploration spatialevignette|Les premiers pas d'humains sur la Lune : Buzz Aldrin photographié par Neil Armstrong sur la surface lunaire le pour la mission Apollo 11. L'exploration spatiale est l'ensemble des activités qui sont réalisées dans l'espace. Elles reposent sur des techniques spécifiques relevant de l'astronautique qui permettent la réalisation de lanceurs, de satellites, de sondes spatiales, d'équipements et d'instruments spécifiques. L'exploration de l'espace remplit des objectifs scientifiques, économiques, ou militaires.
Calcul hétérogèneHeterogeneous computing refers to systems that use more than one kind of processor or core. These systems gain performance or energy efficiency not just by adding the same type of processors, but by adding dissimilar coprocessors, usually incorporating specialized processing capabilities to handle particular tasks. Usually heterogeneity in the context of computing referred to different instruction-set architectures (ISA), where the main processor has one and other processors have another - usually a very different - architecture (maybe more than one), not just a different microarchitecture (floating point number processing is a special case of this - not usually referred to as heterogeneous).
Heterogeneous System ArchitectureHeterogeneous System Architecture (HSA) is a cross-vendor set of specifications that allow for the integration of central processing units and graphics processors on the same bus, with shared memory and tasks. The HSA is being developed by the HSA Foundation, which includes (among many others) AMD and ARM. The platform's stated aim is to reduce communication latency between CPUs, GPUs and other compute devices, and make these various devices more compatible from a programmer's perspective, relieving the programmer of the task of planning the moving of data between devices' disjoint memories (as must currently be done with OpenCL or CUDA).