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.
Processeur à jeu d'instructions réduitUn processeur à jeu d'instructions réduit (en anglais RISC pour Reduced instruction set computer) est un type d'architecture de processeur qui se caractérise par un jeu d'instructions visant la rapidité d'exécution grâce à la facilité de décodage et d'exécution en pipeline des instructions machine. À la fin des années 1980 et au début des années 1990, cette stratégie permet aux microprocesseurs RISC d'obtenir de meilleures performances que les architectures anciennes, de type CISC (de l'anglais complex instruction-set computer).
Processeur graphiqueUn processeur graphique, ou GPU (de l'anglais Graphics Processing Unit), également appelé coprocesseur graphique sur certains systèmes, est une unité de calcul assurant les fonctions de calcul d'image. Il peut être présent sous forme de circuit intégré (ou puce) indépendant, soit sur une carte graphique ou sur la carte mère, ou encore intégré au même circuit intégré que le microprocesseur général (on parle d'un SoC lorsqu'il comporte toutes les puces spécialisées).
Cache control instructionIn computing, a cache control instruction is a hint embedded in the instruction stream of a processor intended to improve the performance of hardware caches, using foreknowledge of the memory access pattern supplied by the programmer or compiler. They may reduce cache pollution, reduce bandwidth requirement, bypass latencies, by providing better control over the working set. Most cache control instructions do not affect the semantics of a program, although some can.
Power managementPower management is a feature of some electrical appliances, especially copiers, computers, computer CPUs, computer GPUs and computer peripherals such as monitors and printers, that turns off the power or switches the system to a low-power state when inactive. In computing this is known as PC power management and is built around a standard called ACPI, this supersedes APM. All recent computers have ACPI support.
Database transactionA database transaction symbolizes a unit of work, performed within a database management system (or similar system) against a database, that is treated in a coherent and reliable way independent of other transactions. A transaction generally represents any change in a database. Transactions in a database environment have two main purposes: To provide reliable units of work that allow correct recovery from failures and keep a database consistent even in cases of system failure.
Distributed transactionA distributed transaction is a database transaction in which two or more network hosts are involved. Usually, hosts provide transactional resources, while the transaction manager is responsible for creating and managing a global transaction that encompasses all operations against such resources. Distributed transactions, as any other transactions, must have all four ACID (atomicity, consistency, isolation, durability) properties, where atomicity guarantees all-or-nothing outcomes for the unit of work (operations bundle).
Hardware virtualizationHardware virtualization is the virtualization of computers as complete hardware platforms, certain logical abstractions of their componentry, or only the functionality required to run various operating systems. Virtualization hides the physical characteristics of a computing platform from the users, presenting instead an abstract computing platform. At its origins, the software that controlled virtualization was called a "control program", but the terms "hypervisor" or "virtual machine monitor" became preferred over time.
Soft systems methodologySoft systems methodology (SSM) is an organised way of thinking that's applicable to problematic social situations and in the management of change by using action. It was developed in England by academics at the Lancaster Systems Department on the basis of a ten-year action research programme. The Soft Systems Methodology was developed primarily by Peter Checkland, through 10 years of research with his colleagues, such as Brian Wilson.
Architecturevignette|upright=1.2|La cathédrale Saint-Pierre de Beauvais, , toute en pierre de taille, est l’exemple le plus aérien et dématérialisé de l'architecture gothique qui atteint là ses limites techniques. vignette|upright=1.2|La coupole du Panthéon, construit dans l'Antiquité romaine au début du , est restée de loin la plus large coupole du monde durant de nombreux siècles. Elle ne sera égalée qu'au par le dôme de la cathédrale de Florence qui marque de ce fait le début de la Renaissance, pour n'être dépassée qu'à partir du par les dômes contemporains.