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.
Architecture de processeurUne architecture externe de processeur ou architecture de jeu d'instructions (ISA, de l'anglais instruction set architecture), ou tout simplement architecture (de processeur), est la spécification fonctionnelle d'un processeur, du point de vue du programmeur en langage machine. L'architecture comprend notamment la donnée d'un jeu d'instructions, d'un ensemble de registres visibles par le programmeur, d'une organisation de la mémoire et des entrées sorties, des modalités d'un éventuel support multiprocesseur, etc.
Multitraitement asymétriquevignette|Les processeurs multicœurs asymétriques ont souvent des mémoires séparés par type de cœurs. On parle de multitraitement asymétrique (en anglais, asymmetric multiprocessing ou AMP ou ASMP) dans le cas d'une architecture multiprocesseur où tous les processeurs ne sont pas traités de la même façon par le système d'exploitation. Par exemple, certains périphériques ou certains processus du système d'exploitation peuvent être attachés exclusivement à un processeur particulier.
Bus snoopingBus snooping or bus sniffing is a scheme by which a coherency controller (snooper) in a cache (a snoopy cache) monitors or snoops the bus transactions, and its goal is to maintain a cache coherency in distributed shared memory systems. This scheme was introduced by Ravishankar and Goodman in 1983, under the name "write-once" cache coherency. A cache containing a coherency controller (snooper) is called a snoopy cache.
Microprocesseur multi-cœurvignette|Un processeur quad-core AMD Opteron. vignette|L’Intel Core 2 Duo E6300 est un processeur double cœur. Un microprocesseur multi-cœur (multi-core en anglais) est un microprocesseur possédant plusieurs cœurs physiques fonctionnant simultanément. Il se distingue d'architectures plus anciennes (360/91) où un processeur unique commandait plusieurs circuits de calcul simultanés. Un cœur (en anglais, core) est un ensemble de circuits capables d’exécuter des programmes de façon autonome.
Manycore processorManycore processors are special kinds of multi-core processors designed for a high degree of parallel processing, containing numerous simpler, independent processor cores (from a few tens of cores to thousands or more). Manycore processors are used extensively in embedded computers and high-performance computing. Manycore processors are distinct from multi-core processors in being optimized from the outset for a higher degree of explicit parallelism, and for higher throughput (or lower power consumption) at the expense of latency and lower single-thread performance.
Intel CoreIntel Core is a line of streamlined midrange consumer, workstation and enthusiast computer central processing units (CPUs) marketed by Intel Corporation. These processors displaced the existing mid- to high-end Pentium processors at the time of their introduction, moving the Pentium to the entry level. Identical or more capable versions of Core processors are also sold as Xeon processors for the server and workstation markets. The lineup of Core processors includes the Intel Core i3, Intel Core i5, Intel Core i7, and Intel Core i9, along with the X-series of Intel Core CPUs.
Central processing unitA central processing unit (CPU)—also called a central processor or main processor—is the most important processor in a given computer. Its electronic circuitry executes instructions of a computer program, such as arithmetic, logic, controlling, and input/output (I/O) operations. This role contrasts with that of external components, such as main memory and I/O circuitry, and specialized coprocessors such as graphics processing units (GPUs). The form, design, and implementation of CPUs have changed over time, but their fundamental operation remains almost unchanged.
Parallélisme de donnéeLe parallélisme par distribution de donnée ou parallélisme de donnée (data parallelism en anglais) est un paradigme de la programmation parallèle. Autrement dit, c'est une manière particulière d'écrire des programmes pour des machines parallèles. Les algorithmes des programmes qui entrent dans cette catégorie cherchent à distribuer les données au sein des processus et à y opérer les mêmes opérations à l'instar des SIMD. Le paradigme opposé est celui du parallélisme de tâche. Catégorie:Programmation concurr
Cache hierarchyCache hierarchy, or multi-level caches, refers to a memory architecture that uses a hierarchy of memory stores based on varying access speeds to cache data. Highly requested data is cached in high-speed access memory stores, allowing swifter access by central processing unit (CPU) cores. Cache hierarchy is a form and part of memory hierarchy and can be considered a form of tiered storage. This design was intended to allow CPU cores to process faster despite the memory latency of main memory access.
Mémoire (psychologie)thumb|350px|Les formes et fonctions de la mémoire en sciences. En psychologie, la mémoire est la faculté de l'esprit d'enregistrer, conserver et rappeler les expériences passées. Son investigation est réalisée par différentes disciplines : psychologie cognitive, neuropsychologie, et psychanalyse. thumb|Pyramide des cinq systèmes de mémoire. Le courant cognitiviste classique regroupe habituellement sous le terme de mémoire les processus dencodage, de stockage et de récupération des représentations mentales.
Transistor countThe transistor count is the number of transistors in an electronic device (typically on a single substrate or "chip"). It is the most common measure of integrated circuit complexity (although the majority of transistors in modern microprocessors are contained in the cache memories, which consist mostly of the same memory cell circuits replicated many times). The rate at which MOS transistor counts have increased generally follows Moore's law, which observed that the transistor count doubles approximately every two years.