Comparison of programming languagesProgramming languages are used for controlling the behavior of a machine (often a computer). Like natural languages, programming languages follow rules for syntax and semantics. There are thousands of programming languages and new ones are created every year. Few languages ever become sufficiently popular that they are used by more than a few people, but professional programmers may use dozens of languages in a career. Most programming languages are not standardized by an international (or national) standard, even widely used ones, such as Perl or Standard ML (despite the name).
System programming languageA system programming language is a programming language used for system programming; such languages are designed for writing system software, which usually requires different development approaches when compared with application software. Edsger Dijkstra refers to these languages as machine oriented high order languages, or mohol. General-purpose programming languages tend to focus on generic features to allow programs written in the language to use the same code on different platforms.
IEEE 754En informatique, l’IEEE 754 est une norme sur l'arithmétique à virgule flottante mise au point par le Institute of Electrical and Electronics Engineers. Elle est la norme la plus employée actuellement pour le calcul des nombres à virgule flottante avec les CPU et les FPU. La norme définit les formats de représentation des nombres à virgule flottante (signe, mantisse, exposant, nombres dénormalisés) et valeurs spéciales (infinis et NaN), en même temps qu’un ensemble d’opérations sur les nombres flottants.
Théorie des langages de programmationvignette|La lettre grecque minuscule λ (lambda) est un symbole non officiel de la théorie des langages de programmation. Cet usage dérive du lambda-calcul, un modèle de calcul introduit par Alonzo Church dans les années 1930 et largement utilisé par les chercheurs en langage de programmation. Il orne la couverture du texte classique Structure et interprétation des programmes informatiques, et apparaît dans le titre des fameux Lambda Papers de 1975 à 1980, écrits par Gerald Jay Sussman et Guy Steele, les développeurs du langage de programmation Scheme.
Bfloat16 floating-point formatThe bfloat16 (brain floating point) floating-point format is a computer number format occupying 16 bits in computer memory; it represents a wide dynamic range of numeric values by using a floating radix point. This format is a truncated (16-bit) version of the 32-bit IEEE 754 single-precision floating-point format (binary32) with the intent of accelerating machine learning and near-sensor computing. It preserves the approximate dynamic range of 32-bit floating-point numbers by retaining 8 exponent bits, but supports only an 8-bit precision rather than the 24-bit significand of the binary32 format.
Résidu (statistiques)In statistics and optimization, errors and residuals are two closely related and easily confused measures of the deviation of an observed value of an element of a statistical sample from its "true value" (not necessarily observable). The error of an observation is the deviation of the observed value from the true value of a quantity of interest (for example, a population mean). The residual is the difference between the observed value and the estimated value of the quantity of interest (for example, a sample mean).
Erreur d'arrondiUne erreur d'arrondi est la différence entre la valeur approchée calculée d'un nombre et sa valeur mathématique exacte. Des erreurs d'arrondi naissent généralement lorsque des nombres exacts sont représentés dans un système incapable de les exprimer exactement. Les erreurs d'arrondi se propagent au cours des calculs avec des valeurs approchées ce qui peut augmenter l'erreur du résultat final. Dans le système décimal des erreurs d'arrondi sont engendrées, lorsqu'avec une troncature, un grand nombre (peut-être une infinité) de décimales ne sont pas prises en considération.
Quadruple-precision floating-point formatIn computing, quadruple precision (or quad precision) is a binary floating point–based computer number format that occupies 16 bytes (128 bits) with precision at least twice the 53-bit double precision. This 128-bit quadruple precision is designed not only for applications requiring results in higher than double precision, but also, as a primary function, to allow the computation of double precision results more reliably and accurately by minimising overflow and round-off errors in intermediate calculations and scratch variables.
Half-precision floating-point formatIn computing, half precision (sometimes called FP16 or float16) is a binary floating-point computer number format that occupies 16 bits (two bytes in modern computers) in computer memory. It is intended for storage of floating-point values in applications where higher precision is not essential, in particular and neural networks. Almost all modern uses follow the IEEE 754-2008 standard, where the 16-bit base-2 format is referred to as binary16, and the exponent uses 5 bits.
Extensible programmingExtensible programming is a term used in computer science to describe a style of computer programming that focuses on mechanisms to extend the programming language, compiler and runtime environment. Extensible programming languages, supporting this style of programming, were an active area of work in the 1960s, but the movement was marginalized in the 1970s. Extensible programming has become a topic of renewed interest in the 21st century. The first paper usually associated with the extensible programming language movement is M.