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# Copyright (C) 2001-2018, Python Software Foundation
# For licence information, see README file.
#
msgid ""
msgstr ""
"Project-Id-Version: Python 3\n"
"Report-Msgid-Bugs-To: \n"
"POT-Creation-Date: 2020-10-01 16:00+0200\n"
"PO-Revision-Date: 2018-10-07 18:55+0200\n"
"Last-Translator: \n"
"Language-Team: FRENCH <traductions@lists.afpy.org>\n"
"Language: fr\n"
"MIME-Version: 1.0\n"
"Content-Type: text/plain; charset=UTF-8\n"
"Content-Transfer-Encoding: 8bit\n"
"X-Generator: Poedit 1.8.11\n"
#: library/decimal.rst:2
msgid ":mod:`decimal` --- Decimal fixed point and floating point arithmetic"
msgstr ":mod:`decimal` — Arithmétique décimale en virgule fixe et flottante"
#: library/decimal.rst:15
msgid "**Source code:** :source:`Lib/decimal.py`"
msgstr "**Code source :** :source:`Lib/decimal.py`"
#: library/decimal.rst:33
msgid ""
"The :mod:`decimal` module provides support for fast correctly-rounded "
"decimal floating point arithmetic. It offers several advantages over the :"
"class:`float` datatype:"
msgstr ""
"Le module :mod:`decimal` fournit une arithmétique en virgule flottante "
"rapide et produisant des arrondis mathématiquement corrects. Il possède "
"plusieurs avantages en comparaison au type :class:`float` :"
#: library/decimal.rst:37
msgid ""
"Decimal \"is based on a floating-point model which was designed with people "
"in mind, and necessarily has a paramount guiding principle -- computers must "
"provide an arithmetic that works in the same way as the arithmetic that "
"people learn at school.\" -- excerpt from the decimal arithmetic "
"specification."
msgstr ""
"Le module ``decimal`` « est basé sur un modèle en virgule flottante conçu "
"pour les humains, qui suit ce principe directeur : l'ordinateur doit fournir "
"un modèle de calcul qui fonctionne de la même manière que le calcul qu'on "
"apprend à l'école » -- extrait (traduit) de la spécification de "
"l'arithmétique décimale."
#: library/decimal.rst:42
msgid ""
"Decimal numbers can be represented exactly. In contrast, numbers like :"
"const:`1.1` and :const:`2.2` do not have exact representations in binary "
"floating point. End users typically would not expect ``1.1 + 2.2`` to "
"display as :const:`3.3000000000000003` as it does with binary floating point."
msgstr ""
"Les nombres décimaux peuvent être représentés exactement en base décimale "
"flottante. En revanche, des nombres tels que :const:`1.1` ou :const:`1.2` "
"n'ont pas de représentation exacte en base binaire flottante. L'utilisateur "
"final ne s'attend typiquement pas à obtenir :const:`3.3000000000000003` "
"lorsqu'il saisit ``1.1 + 2.2``, ce qui se passe en arithmétique binaire à "
"virgule flottante."
#: library/decimal.rst:47
msgid ""
"The exactness carries over into arithmetic. In decimal floating point, "
"``0.1 + 0.1 + 0.1 - 0.3`` is exactly equal to zero. In binary floating "
"point, the result is :const:`5.5511151231257827e-017`. While near to zero, "
"the differences prevent reliable equality testing and differences can "
"accumulate. For this reason, decimal is preferred in accounting applications "
"which have strict equality invariants."
msgstr ""
"Ces inexactitudes ont des conséquences en arithmétique. En base décimale à "
"virgule flottante, ``0.1 + 0.1 + 0.1 - 0.3`` est exactement égal à zéro. En "
"virgule flottante binaire, l'ordinateur l'évalue à :const:"
"`5.5511151231257827e-017`. Bien que très proche de zéro, cette différence "
"induit des erreurs lors des tests d'égalité, erreurs qui peuvent "
"s'accumuler. Pour ces raisons ``decimal`` est le module utilisé pour des "
"applications comptables ayant des contraintes strictes de fiabilité."
#: library/decimal.rst:54
msgid ""
"The decimal module incorporates a notion of significant places so that "
"``1.30 + 1.20`` is :const:`2.50`. The trailing zero is kept to indicate "
"significance. This is the customary presentation for monetary applications. "
"For multiplication, the \"schoolbook\" approach uses all the figures in the "
"multiplicands. For instance, ``1.3 * 1.2`` gives :const:`1.56` while ``1.30 "
"* 1.20`` gives :const:`1.5600`."
msgstr ""
"Le module ``decimal`` incorpore la notion de chiffres significatifs, tels "
"que ``1.30 + 1.20`` est égal à :const:`2.50`. Le dernier zéro n'est conservé "
"que pour respecter le nombre de chiffres significatifs. C'est également "
"l'affichage préféré pour représenter des sommes d'argent. Pour la "
"multiplication, l'approche « scolaire » utilise tout les chiffres présents "
"dans les facteurs. Par exemple, ``1.3 * 1.2`` donnerait :const:`1.56` tandis "
"que ``1.30 * 1.20`` donnerait :const:`1.5600`."
#: library/decimal.rst:61
msgid ""
"Unlike hardware based binary floating point, the decimal module has a user "
"alterable precision (defaulting to 28 places) which can be as large as "
"needed for a given problem:"
msgstr ""
"Contrairement à l'arithmétique en virgule flottante binaire, le module "
"``decimal`` possède un paramètre de précision ajustable (par défaut à 28 "
"chiffres significatifs) qui peut être aussi élevée que nécessaire pour un "
"problème donné :"
#: library/decimal.rst:73
msgid ""
"Both binary and decimal floating point are implemented in terms of published "
"standards. While the built-in float type exposes only a modest portion of "
"its capabilities, the decimal module exposes all required parts of the "
"standard. When needed, the programmer has full control over rounding and "
"signal handling. This includes an option to enforce exact arithmetic by "
"using exceptions to block any inexact operations."
msgstr ""
"L'arithmétique binaire et décimale en virgule flottante sont implémentées "
"selon des standards publiés. Alors que le type ``float`` n'expose qu'une "
"faible portion de ses capacités, le module ``decimal`` expose tous les "
"composants nécessaires du standard. Lorsque nécessaire, le développeur a un "
"contrôle total de la gestion de signal et de l'arrondi. Cela inclut la "
"possibilité de forcer une arithmétique exacte en utilisant des exceptions "
"pour bloquer toute opération inexacte."
#: library/decimal.rst:80
msgid ""
"The decimal module was designed to support \"without prejudice, both exact "
"unrounded decimal arithmetic (sometimes called fixed-point arithmetic) and "
"rounded floating-point arithmetic.\" -- excerpt from the decimal arithmetic "
"specification."
msgstr ""
"Le module ``decimal`` a été conçu pour gérer « sans préjugé, à la fois une "
"arithmétique décimale non-arrondie (aussi appelée arithmétique en virgule "
"fixe) et à la fois une arithmétique en virgule flottante. » (extrait traduit "
"de la spécification de l'arithmétique décimale)."
#: library/decimal.rst:85
msgid ""
"The module design is centered around three concepts: the decimal number, "
"the context for arithmetic, and signals."
msgstr ""
"Le module est conçu autour de trois concepts : le nombre décimal, le "
"contexte arithmétique et les signaux."
#: library/decimal.rst:88
msgid ""
"A decimal number is immutable. It has a sign, coefficient digits, and an "
"exponent. To preserve significance, the coefficient digits do not truncate "
"trailing zeros. Decimals also include special values such as :const:"
"`Infinity`, :const:`-Infinity`, and :const:`NaN`. The standard also "
"differentiates :const:`-0` from :const:`+0`."
msgstr ""
"Un ``Decimal`` est immuable. Il a un signe, un coefficient, et un exposant. "
"Pour préserver le nombre de chiffres significatifs, les zéros en fin de "
"chaîne ne sont pas tronqués. Les décimaux incluent aussi des valeurs "
"spéciales telles que :const:`Infinity`, :const:`-Infinity`, et :const:`NaN`. "
"Le standard fait également la différence entre :const:`-0` et :const:`+0`."
#: library/decimal.rst:94
msgid ""
"The context for arithmetic is an environment specifying precision, rounding "
"rules, limits on exponents, flags indicating the results of operations, and "
"trap enablers which determine whether signals are treated as exceptions. "
"Rounding options include :const:`ROUND_CEILING`, :const:`ROUND_DOWN`, :const:"
"`ROUND_FLOOR`, :const:`ROUND_HALF_DOWN`, :const:`ROUND_HALF_EVEN`, :const:"
"`ROUND_HALF_UP`, :const:`ROUND_UP`, and :const:`ROUND_05UP`."
msgstr ""
"Le contexte de l'arithmétique est un environnement qui permet de configurer "
"une précision, une règle pour l'arrondi, des limites sur l'exposant, des "
"options indiquant le résultat des opérations et si les signaux (remontés "
"lors d'opérations illégales) sont traités comme des exceptions Python. Les "
"options d'arrondi incluent :const:`ROUND_CEILING`, :const:`ROUND_DOWN`, :"
"const:`ROUND_FLOOR`, :const:`ROUND_HALF_DOWN`, :const:`ROUND_HALF_EVEN`, :"
"const:`ROUND_HALF_UP`, :const:`ROUND_UP`, et :const:`ROUND_05UP`."
#: library/decimal.rst:101
msgid ""
"Signals are groups of exceptional conditions arising during the course of "
"computation. Depending on the needs of the application, signals may be "
"ignored, considered as informational, or treated as exceptions. The signals "
"in the decimal module are: :const:`Clamped`, :const:`InvalidOperation`, :"
"const:`DivisionByZero`, :const:`Inexact`, :const:`Rounded`, :const:"
"`Subnormal`, :const:`Overflow`, :const:`Underflow` and :const:"
"`FloatOperation`."
msgstr ""
"Les signaux sont des groupes de conditions exceptionnelles qui surviennent "
"durant le calcul. Selon les besoins de l'application, les signaux peuvent "
"être ignorés, considérés comme de l'information, ou bien traités comme des "
"exceptions. Les signaux dans le module ``decimal`` sont : :const:`Clamped`, :"
"const:`InvalidOperation`, :const:`DivisionByZero`, :const:`Inexact`, :const:"
"`Rounded`, :const:`Subnormal`, :const:`Overflow`, :const:`Underflow` et :"
"const:`FloatOperation`."
#: library/decimal.rst:108
msgid ""
"For each signal there is a flag and a trap enabler. When a signal is "
"encountered, its flag is set to one, then, if the trap enabler is set to "
"one, an exception is raised. Flags are sticky, so the user needs to reset "
"them before monitoring a calculation."
msgstr ""
"Chaque signal est configurable indépendamment. Quand une opération illégale "
"survient, le signal est mis à ``1``, puis s'il est configuré pour, une "
"exception est levée. La mise à ``1`` est persistante, l'utilisateur doit "
"donc les remettre à zéro avant de commencer un calcul qu'il souhaite "
"surveiller."
#: library/decimal.rst:116
msgid ""
"IBM's General Decimal Arithmetic Specification, `The General Decimal "
"Arithmetic Specification <http://speleotrove.com/decimal/decarith.html>`_."
msgstr ""
"La spécification d'IBM sur l'arithmétique décimale : `The General Decimal "
"Arithmetic Specification <http://speleotrove.com/decimal/decarith.html>`_."
#: library/decimal.rst:125
msgid "Quick-start Tutorial"
msgstr "Introduction pratique"
#: library/decimal.rst:127
msgid ""
"The usual start to using decimals is importing the module, viewing the "
"current context with :func:`getcontext` and, if necessary, setting new "
"values for precision, rounding, or enabled traps::"
msgstr ""
"Commençons par importer le module, regarder le contexte actuel avec :func:"
"`getcontext`, et si nécessaire configurer la précision, l'arrondi, et la "
"gestion des signaux ::"
#: library/decimal.rst:139
msgid ""
"Decimal instances can be constructed from integers, strings, floats, or "
"tuples. Construction from an integer or a float performs an exact conversion "
"of the value of that integer or float. Decimal numbers include special "
"values such as :const:`NaN` which stands for \"Not a number\", positive and "
"negative :const:`Infinity`, and :const:`-0`::"
msgstr ""
"Les instances de ``Decimal`` peuvent être construites avec des ``int``, des "
"``str``, des ``floats`` ou des ``tuples``. La construction depuis un entier "
"ou un ``float`` effectue la conversion exacte de cet entier ou de ce "
"``float``. Les nombres décimaux incluent des valeurs spéciales telles que :"
"const:`NaN` qui signifie en anglais « *Not a number* », en français « pas un "
"nombre », des :const:`Infinity` positifs ou négatifs et :const:`-0` ::"
#: library/decimal.rst:163
msgid ""
"If the :exc:`FloatOperation` signal is trapped, accidental mixing of "
"decimals and floats in constructors or ordering comparisons raises an "
"exception::"
msgstr ""
"Si un signal :exc:`FloatOperation` est détecté, un mélange accidentel "
"d'objets ``Decimal`` et de ``float`` dans les constructeurs ou des "
"opérations de comparaisons, une exception est levée ::"
#: library/decimal.rst:182
msgid ""
"The significance of a new Decimal is determined solely by the number of "
"digits input. Context precision and rounding only come into play during "
"arithmetic operations."
msgstr ""
"Le nombre de chiffres significatifs d'un nouvel objet ``Decimal`` est "
"déterminé entièrement par le nombre de chiffres saisis. La précision et les "
"règles d'arrondis n'interviennent que lors d'opérations arithmétiques."
#: library/decimal.rst:199
msgid ""
"If the internal limits of the C version are exceeded, constructing a decimal "
"raises :class:`InvalidOperation`::"
msgstr ""
"Si les limites internes de la version en C sont dépassées, la construction "
"d'un objet décimal lève l'exception :class:`InvalidOperation` ::"
#: library/decimal.rst:209
msgid ""
"Decimals interact well with much of the rest of Python. Here is a small "
"decimal floating point flying circus:"
msgstr ""
"Les objets ``Decimal`` interagissent très bien avec le reste de Python. "
"Voici quelques exemple d'opérations avec des décimaux :"
#: library/decimal.rst:241
msgid "And some mathematical functions are also available to Decimal:"
msgstr ""
"Et certaines fonctions mathématiques sont également disponibles sur des "
"instances de ``Decimal`` :"
#: library/decimal.rst:253
msgid ""
"The :meth:`quantize` method rounds a number to a fixed exponent. This "
"method is useful for monetary applications that often round results to a "
"fixed number of places:"
msgstr ""
"La méthode :meth:`quantize` arrondit un nombre à un exposant fixe. Cette "
"méthode est utile pour des applications monétaires qui arrondissent souvent "
"un résultat à un nombre de chiffres significatifs exact :"
#: library/decimal.rst:262
msgid ""
"As shown above, the :func:`getcontext` function accesses the current context "
"and allows the settings to be changed. This approach meets the needs of "
"most applications."
msgstr ""
"Comme montré plus haut, la fonction :func:`getcontext` accède au contexte "
"actuel et permet de modifier les paramètres. Cette approche répond aux "
"besoins de la plupart des applications."
#: library/decimal.rst:266
msgid ""
"For more advanced work, it may be useful to create alternate contexts using "
"the Context() constructor. To make an alternate active, use the :func:"
"`setcontext` function."
msgstr ""
"Pour un travail plus avancé, il peut être utile de créer des contextes "
"alternatifs en utilisant le constructeur de ``Context``. Pour activer cet "
"objet ``Context``, utilisez la fonction :func:`setcontext`."
#: library/decimal.rst:270
msgid ""
"In accordance with the standard, the :mod:`decimal` module provides two "
"ready to use standard contexts, :const:`BasicContext` and :const:"
"`ExtendedContext`. The former is especially useful for debugging because "
"many of the traps are enabled:"
msgstr ""
"En accord avec le standard, le module :mod:`decimal` fournit des objets "
"Context standards, :const:`BasicContext` et :const:`ExtendedContext`. Le "
"premier est particulièrement utile pour le débogage car beaucoup des pièges "
"sont activés dans cet objet."
#: library/decimal.rst:299
msgid ""
"Contexts also have signal flags for monitoring exceptional conditions "
"encountered during computations. The flags remain set until explicitly "
"cleared, so it is best to clear the flags before each set of monitored "
"computations by using the :meth:`clear_flags` method. ::"
msgstr ""
"Les objets ``Context`` ont aussi des options pour détecter des opérations "
"illégales lors des calculs. Ces options restent activées jusqu'à ce qu'elles "
"soit remises à zéro de manière explicite. Il convient donc de remettre à "
"zéro ces options avant chaque inspection de chaque calcul, avec la méthode :"
"meth:`clear_flags`. ::"
#: library/decimal.rst:312
msgid ""
"The *flags* entry shows that the rational approximation to :const:`Pi` was "
"rounded (digits beyond the context precision were thrown away) and that the "
"result is inexact (some of the discarded digits were non-zero)."
msgstr ""
"Les options montrent que l'approximation de :const:`Pi` par une fraction a "
"été arrondie (les chiffres au delà de la précision spécifiée par l'objet "
"Context ont été tronqués) et que le résultat est différent (certains des "
"chiffres tronqués étaient différents de zéro)."
#: library/decimal.rst:316
msgid ""
"Individual traps are set using the dictionary in the :attr:`traps` field of "
"a context:"
msgstr ""
"L'activation des pièges se fait en utilisant un dictionnaire dans "
"l'attribut :attr:`traps` de l'objet Context :"
#: library/decimal.rst:331
msgid ""
"Most programs adjust the current context only once, at the beginning of the "
"program. And, in many applications, data is converted to :class:`Decimal` "
"with a single cast inside a loop. With context set and decimals created, "
"the bulk of the program manipulates the data no differently than with other "
"Python numeric types."
msgstr ""
"La plupart des applications n'ajustent l'objet ``Context`` qu'une seule "
"fois, au démarrage. Et, dans beaucoup d'applications, les données sont "
"convertie une fois pour toutes en :class:`Decimal`. Une fois le ``Context`` "
"initialisé, et les objets ``Decimal`` créés, l'essentiel du programme "
"manipule la donnée de la même manière qu'avec les autres types numériques "
"Python."
#: library/decimal.rst:343
msgid "Decimal objects"
msgstr "Les objets Decimal"
#: library/decimal.rst:348
msgid "Construct a new :class:`Decimal` object based from *value*."
msgstr "Construire un nouvel objet :class:`Decimal` à partir de *value*."
#: library/decimal.rst:350
msgid ""
"*value* can be an integer, string, tuple, :class:`float`, or another :class:"
"`Decimal` object. If no *value* is given, returns ``Decimal('0')``. If "
"*value* is a string, it should conform to the decimal numeric string syntax "
"after leading and trailing whitespace characters, as well as underscores "
"throughout, are removed::"
msgstr ""
"*value* peut être un entier, une chaîne de caractères, un *n*-uplet, :class:"
"`float`, ou une autre instance de :class:`Decimal`. Si *value* n'est pas "
"fourni, le constructeur renvoie ``Decimal('0')``. Si *value* est une chaîne "
"de caractère, elle doit correspondre à la syntaxe décimale en dehors des "
"espaces de début et de fin, ou des tirets bas, qui sont enlevés ::"
#: library/decimal.rst:366
msgid ""
"Other Unicode decimal digits are also permitted where ``digit`` appears "
"above. These include decimal digits from various other alphabets (for "
"example, Arabic-Indic and Devanāgarī digits) along with the fullwidth digits "
"``'\\uff10'`` through ``'\\uff19'``."
msgstr ""
"Les chiffres codés en Unicode sont aussi autorisés, là ou ``digit`` "
"apparaît. Cela inclut des chiffres décimaux venant d'autres alphabets (par "
"exemple les chiffres indo-arabes ou Devanagari) ainsi que les chiffres de "
"pleine largeur ``'\\uff10'`` jusqu'à ``'\\uff19'``."
#: library/decimal.rst:371
msgid ""
"If *value* is a :class:`tuple`, it should have three components, a sign (:"
"const:`0` for positive or :const:`1` for negative), a :class:`tuple` of "
"digits, and an integer exponent. For example, ``Decimal((0, (1, 4, 1, 4), "
"-3))`` returns ``Decimal('1.414')``."
msgstr ""
"Si *value* est un :class:`tuple`, il doit avoir 3 éléments, le signe (:const:"
"`0` pour positif ou :const:`1` pour négatif), un :class:`tuple` de chiffres, "
"et un entier représentant l'exposant. Par exemple, ``Decimal((0, (1, 4, 1, "
"4), -3))`` construit l'objet ``Decimal('1.414')``."
#: library/decimal.rst:376
msgid ""
"If *value* is a :class:`float`, the binary floating point value is "
"losslessly converted to its exact decimal equivalent. This conversion can "
"often require 53 or more digits of precision. For example, "
"``Decimal(float('1.1'))`` converts to "
"``Decimal('1.100000000000000088817841970012523233890533447265625')``."
msgstr ""
"Si *value* est un :class:`float`, la valeur en binaire flottant est "
"convertie exactement à son équivalent décimal. Cette conversion peut parfois "
"nécessiter 53 chiffres significatifs ou plus. Par exemple, "
"``Decimal(float('1.1'))`` devient "
"``Decimal('1.100000000000000088817841970012523233890533447265625')``."
#: library/decimal.rst:382
msgid ""
"The *context* precision does not affect how many digits are stored. That is "
"determined exclusively by the number of digits in *value*. For example, "
"``Decimal('3.00000')`` records all five zeros even if the context precision "
"is only three."
msgstr ""
"La précision spécifiée dans Context n'affecte pas le nombre de chiffres "
"stockés. Cette valeur est déterminée exclusivement par le nombre de chiffres "
"dans *value*. Par exemple, ``Decimal('3.00000')`` enregistre les 5 zéros "
"même si la précision du contexte est de 3."
#: library/decimal.rst:387
msgid ""
"The purpose of the *context* argument is determining what to do if *value* "
"is a malformed string. If the context traps :const:`InvalidOperation`, an "
"exception is raised; otherwise, the constructor returns a new Decimal with "
"the value of :const:`NaN`."
msgstr ""
"L'objectif de l'argument *context* est de déterminer ce que Python doit "
"faire si *value* est une chaîne avec un mauvais format. Si l'option :const:"
"`InvalidOperation` est activée, une exception est levée, sinon le "
"constructeur renvoie un objet ``Decimal`` avec la valeur :const:`NaN`."
#: library/decimal.rst:392
msgid "Once constructed, :class:`Decimal` objects are immutable."
msgstr "Une fois construit, les objets :class:`Decimal` sont immuables."
#: library/decimal.rst:394
msgid ""
"The argument to the constructor is now permitted to be a :class:`float` "
"instance."
msgstr ""
"L'argument du constructeur peut désormais être un objet :class:`float`."
#: library/decimal.rst:398
msgid ""
":class:`float` arguments raise an exception if the :exc:`FloatOperation` "
"trap is set. By default the trap is off."
msgstr ""
"Un argument :class:`float` lève une exception si l'option :exc:"
"`FloatOperation` est activé. Par défaut l'option ne l'est pas."
#: library/decimal.rst:402
msgid ""
"Underscores are allowed for grouping, as with integral and floating-point "
"literals in code."
msgstr ""
"Les tirets bas sont autorisés pour regrouper, tout comme pour l'arithmétique "
"en virgule fixe et flottante."
#: library/decimal.rst:406
msgid ""
"Decimal floating point objects share many properties with the other built-in "
"numeric types such as :class:`float` and :class:`int`. All of the usual "
"math operations and special methods apply. Likewise, decimal objects can be "
"copied, pickled, printed, used as dictionary keys, used as set elements, "
"compared, sorted, and coerced to another type (such as :class:`float` or :"
"class:`int`)."
msgstr ""
"Les objets ``Decimal`` partagent beaucoup de propriétés avec les autres "
"types numériques natifs tels que :class:`float` et :class:`int`. Toutes les "
"opérations mathématiques et méthodes sont conservées. De même les objets "
"``Decimal`` peuvent être copiés, sérialisés via le module ``pickle``, "
"affichés, utilisés comme clé de dictionnaire, éléments d'ensembles, "
"comparés, classés, et convertis vers un autre type (tel que :class:`float` "
"ou :class:`int`)."
#: library/decimal.rst:413
msgid ""
"There are some small differences between arithmetic on Decimal objects and "
"arithmetic on integers and floats. When the remainder operator ``%`` is "
"applied to Decimal objects, the sign of the result is the sign of the "
"*dividend* rather than the sign of the divisor::"
msgstr ""
"Il existe quelques différences mineures entre l'arithmétique entre les "
"objets décimaux et l'arithmétique avec les entiers et les ``float``. Quand "
"l'opérateur modulo ``%`` est appliqué sur des objets décimaux, le signe du "
"résultat est le signe du *dividend* plutôt que le signe du diviseur ::"
#: library/decimal.rst:423
msgid ""
"The integer division operator ``//`` behaves analogously, returning the "
"integer part of the true quotient (truncating towards zero) rather than its "
"floor, so as to preserve the usual identity ``x == (x // y) * y + x % y``::"
msgstr ""
"L'opérateur division entière, ``//`` se comporte de la même manière, "
"retournant la partie entière du quotient, plutôt que son arrondi, de manière "
"à préserver l'identité d'Euclide ``x == (x // y) * y + x % y`` ::"
#: library/decimal.rst:432
msgid ""
"The ``%`` and ``//`` operators implement the ``remainder`` and ``divide-"
"integer`` operations (respectively) as described in the specification."
msgstr ""
"Les opérateurs ``//`` et ``%`` implémentent la division entière et le reste "
"(ou modulo), respectivement, tel que décrit dans la spécification."
#: library/decimal.rst:436
msgid ""
"Decimal objects cannot generally be combined with floats or instances of :"
"class:`fractions.Fraction` in arithmetic operations: an attempt to add a :"
"class:`Decimal` to a :class:`float`, for example, will raise a :exc:"
"`TypeError`. However, it is possible to use Python's comparison operators "
"to compare a :class:`Decimal` instance ``x`` with another number ``y``. "
"This avoids confusing results when doing equality comparisons between "
"numbers of different types."
msgstr ""
"Les objets ``Decimal`` ne peuvent généralement pas être combinés avec des "
"``float`` ou des objets :class:`fractions.Fraction` lors d'opérations "
"arithmétiques : tout addition entre un :class:`Decimal` avec un :class:"
"`float`, par exemple, lève une exception :exc:`TypeError`. Cependant, il est "
"possible d'utiliser les opérateurs de comparaison entre instances de :class:"
"`Decimal` avec les autres types numériques. Cela évite d'avoir des résultats "
"absurdes lors des tests d'égalité entre différents types."
#: library/decimal.rst:444
msgid ""
"Mixed-type comparisons between :class:`Decimal` instances and other numeric "
"types are now fully supported."
msgstr ""
"Les comparaisons inter-types entre :class:`Decimal` et les autres types "
"numériques sont désormais intégralement gérés."
#: library/decimal.rst:448
msgid ""
"In addition to the standard numeric properties, decimal floating point "
"objects also have a number of specialized methods:"
msgstr ""
#: library/decimal.rst:454
msgid ""
"Return the adjusted exponent after shifting out the coefficient's rightmost "
"digits until only the lead digit remains: ``Decimal('321e+5').adjusted()`` "
"returns seven. Used for determining the position of the most significant "
"digit with respect to the decimal point."
msgstr ""
#: library/decimal.rst:461
msgid ""
"Return a pair ``(n, d)`` of integers that represent the given :class:"
"`Decimal` instance as a fraction, in lowest terms and with a positive "
"denominator::"
msgstr ""
#: library/decimal.rst:468
msgid ""
"The conversion is exact. Raise OverflowError on infinities and ValueError "
"on NaNs."
msgstr ""
"La conversion est exacte. Lève une ``OverflowError`` sur l'infini et "
"``ValueError`` sur les ``Nan``'s."
#: library/decimal.rst:475
msgid ""
"Return a :term:`named tuple` representation of the number: "
"``DecimalTuple(sign, digits, exponent)``."
msgstr ""
#: library/decimal.rst:481
msgid ""
"Return the canonical encoding of the argument. Currently, the encoding of "
"a :class:`Decimal` instance is always canonical, so this operation returns "
"its argument unchanged."
msgstr ""
#: library/decimal.rst:487
msgid ""
"Compare the values of two Decimal instances. :meth:`compare` returns a "
"Decimal instance, and if either operand is a NaN then the result is a NaN::"
msgstr ""
#: library/decimal.rst:498
msgid ""
"This operation is identical to the :meth:`compare` method, except that all "
"NaNs signal. That is, if neither operand is a signaling NaN then any quiet "
"NaN operand is treated as though it were a signaling NaN."
msgstr ""
#: library/decimal.rst:504
msgid ""
"Compare two operands using their abstract representation rather than their "
"numerical value. Similar to the :meth:`compare` method, but the result "
"gives a total ordering on :class:`Decimal` instances. Two :class:`Decimal` "
"instances with the same numeric value but different representations compare "
"unequal in this ordering:"
msgstr ""
#: library/decimal.rst:513
msgid ""
"Quiet and signaling NaNs are also included in the total ordering. The "
"result of this function is ``Decimal('0')`` if both operands have the same "
"representation, ``Decimal('-1')`` if the first operand is lower in the total "
"order than the second, and ``Decimal('1')`` if the first operand is higher "
"in the total order than the second operand. See the specification for "
"details of the total order."
msgstr ""
#: library/decimal.rst:531 library/decimal.rst:834
msgid ""
"This operation is unaffected by context and is quiet: no flags are changed "
"and no rounding is performed. As an exception, the C version may raise "
"InvalidOperation if the second operand cannot be converted exactly."
msgstr ""
#: library/decimal.rst:526
msgid ""
"Compare two operands using their abstract representation rather than their "
"value as in :meth:`compare_total`, but ignoring the sign of each operand. "
"``x.compare_total_mag(y)`` is equivalent to ``x.copy_abs().compare_total(y."
"copy_abs())``."
msgstr ""
#: library/decimal.rst:537
msgid ""
"Just returns self, this method is only to comply with the Decimal "
"Specification."
msgstr ""
#: library/decimal.rst:542
msgid ""
"Return the absolute value of the argument. This operation is unaffected by "
"the context and is quiet: no flags are changed and no rounding is performed."
msgstr ""
#: library/decimal.rst:548
msgid ""
"Return the negation of the argument. This operation is unaffected by the "
"context and is quiet: no flags are changed and no rounding is performed."
msgstr ""
#: library/decimal.rst:553
msgid ""
"Return a copy of the first operand with the sign set to be the same as the "
"sign of the second operand. For example:"
msgstr ""
#: library/decimal.rst:565
msgid ""
"Return the value of the (natural) exponential function ``e**x`` at the given "
"number. The result is correctly rounded using the :const:`ROUND_HALF_EVEN` "
"rounding mode."
msgstr ""
#: library/decimal.rst:576
msgid "Classmethod that converts a float to a decimal number, exactly."
msgstr ""
#: library/decimal.rst:578
msgid ""
"Note `Decimal.from_float(0.1)` is not the same as `Decimal('0.1')`. Since "
"0.1 is not exactly representable in binary floating point, the value is "
"stored as the nearest representable value which is `0x1.999999999999ap-4`. "
"That equivalent value in decimal is "
"`0.1000000000000000055511151231257827021181583404541015625`."
msgstr ""
#: library/decimal.rst:584
msgid ""
"From Python 3.2 onwards, a :class:`Decimal` instance can also be constructed "
"directly from a :class:`float`."
msgstr ""
#: library/decimal.rst:602
msgid ""
"Fused multiply-add. Return self*other+third with no rounding of the "
"intermediate product self*other."
msgstr ""
#: library/decimal.rst:610
msgid ""
"Return :const:`True` if the argument is canonical and :const:`False` "
"otherwise. Currently, a :class:`Decimal` instance is always canonical, so "
"this operation always returns :const:`True`."
msgstr ""
#: library/decimal.rst:616
msgid ""
"Return :const:`True` if the argument is a finite number, and :const:`False` "
"if the argument is an infinity or a NaN."
msgstr ""
#: library/decimal.rst:621
msgid ""
"Return :const:`True` if the argument is either positive or negative infinity "
"and :const:`False` otherwise."
msgstr ""
#: library/decimal.rst:626
msgid ""
"Return :const:`True` if the argument is a (quiet or signaling) NaN and :"
"const:`False` otherwise."
msgstr ""
#: library/decimal.rst:631
msgid ""
"Return :const:`True` if the argument is a *normal* finite number. Return :"
"const:`False` if the argument is zero, subnormal, infinite or a NaN."
msgstr ""
#: library/decimal.rst:636
msgid ""
"Return :const:`True` if the argument is a quiet NaN, and :const:`False` "
"otherwise."
msgstr ""
#: library/decimal.rst:641
msgid ""
"Return :const:`True` if the argument has a negative sign and :const:`False` "
"otherwise. Note that zeros and NaNs can both carry signs."
msgstr ""
#: library/decimal.rst:646
msgid ""
"Return :const:`True` if the argument is a signaling NaN and :const:`False` "
"otherwise."
msgstr ""
#: library/decimal.rst:651
msgid ""
"Return :const:`True` if the argument is subnormal, and :const:`False` "
"otherwise."
msgstr ""
#: library/decimal.rst:656
msgid ""
"Return :const:`True` if the argument is a (positive or negative) zero and :"
"const:`False` otherwise."
msgstr ""
#: library/decimal.rst:661
msgid ""
"Return the natural (base e) logarithm of the operand. The result is "
"correctly rounded using the :const:`ROUND_HALF_EVEN` rounding mode."
msgstr ""
#: library/decimal.rst:666
msgid ""
"Return the base ten logarithm of the operand. The result is correctly "
"rounded using the :const:`ROUND_HALF_EVEN` rounding mode."
msgstr ""
#: library/decimal.rst:671
msgid ""
"For a nonzero number, return the adjusted exponent of its operand as a :"
"class:`Decimal` instance. If the operand is a zero then ``Decimal('-"
"Infinity')`` is returned and the :const:`DivisionByZero` flag is raised. If "
"the operand is an infinity then ``Decimal('Infinity')`` is returned."
msgstr ""
#: library/decimal.rst:679
msgid ""
":meth:`logical_and` is a logical operation which takes two *logical "
"operands* (see :ref:`logical_operands_label`). The result is the digit-wise "
"``and`` of the two operands."
msgstr ""
#: library/decimal.rst:685
msgid ""
":meth:`logical_invert` is a logical operation. The result is the digit-wise "
"inversion of the operand."
msgstr ""
#: library/decimal.rst:690
msgid ""
":meth:`logical_or` is a logical operation which takes two *logical operands* "
"(see :ref:`logical_operands_label`). The result is the digit-wise ``or`` of "
"the two operands."
msgstr ""
#: library/decimal.rst:696
msgid ""
":meth:`logical_xor` is a logical operation which takes two *logical "
"operands* (see :ref:`logical_operands_label`). The result is the digit-wise "
"exclusive or of the two operands."
msgstr ""
#: library/decimal.rst:702
msgid ""
"Like ``max(self, other)`` except that the context rounding rule is applied "
"before returning and that :const:`NaN` values are either signaled or ignored "
"(depending on the context and whether they are signaling or quiet)."
msgstr ""
#: library/decimal.rst:709
msgid ""
"Similar to the :meth:`.max` method, but the comparison is done using the "
"absolute values of the operands."
msgstr ""
#: library/decimal.rst:714
msgid ""
"Like ``min(self, other)`` except that the context rounding rule is applied "
"before returning and that :const:`NaN` values are either signaled or ignored "
"(depending on the context and whether they are signaling or quiet)."
msgstr ""
#: library/decimal.rst:721
msgid ""
"Similar to the :meth:`.min` method, but the comparison is done using the "
"absolute values of the operands."
msgstr ""
#: library/decimal.rst:726
msgid ""
"Return the largest number representable in the given context (or in the "
"current thread's context if no context is given) that is smaller than the "
"given operand."
msgstr ""
#: library/decimal.rst:732
msgid ""
"Return the smallest number representable in the given context (or in the "
"current thread's context if no context is given) that is larger than the "
"given operand."
msgstr ""
#: library/decimal.rst:738
msgid ""
"If the two operands are unequal, return the number closest to the first "
"operand in the direction of the second operand. If both operands are "
"numerically equal, return a copy of the first operand with the sign set to "
"be the same as the sign of the second operand."
msgstr ""
#: library/decimal.rst:745
msgid ""
"Normalize the number by stripping the rightmost trailing zeros and "
"converting any result equal to :const:`Decimal('0')` to :const:"
"`Decimal('0e0')`. Used for producing canonical values for attributes of an "
"equivalence class. For example, ``Decimal('32.100')`` and "
"``Decimal('0.321000e+2')`` both normalize to the equivalent value "
"``Decimal('32.1')``."
msgstr ""
#: library/decimal.rst:754
msgid ""
"Return a string describing the *class* of the operand. The returned value "
"is one of the following ten strings."
msgstr ""
#: library/decimal.rst:757
msgid "``\"-Infinity\"``, indicating that the operand is negative infinity."
msgstr ""
#: library/decimal.rst:758
msgid ""
"``\"-Normal\"``, indicating that the operand is a negative normal number."
msgstr ""
#: library/decimal.rst:759
msgid ""
"``\"-Subnormal\"``, indicating that the operand is negative and subnormal."
msgstr ""
#: library/decimal.rst:760
msgid "``\"-Zero\"``, indicating that the operand is a negative zero."
msgstr ""
#: library/decimal.rst:761
msgid "``\"+Zero\"``, indicating that the operand is a positive zero."
msgstr ""
#: library/decimal.rst:762
msgid ""
"``\"+Subnormal\"``, indicating that the operand is positive and subnormal."
msgstr ""
#: library/decimal.rst:763
msgid ""
"``\"+Normal\"``, indicating that the operand is a positive normal number."
msgstr ""
#: library/decimal.rst:764
msgid "``\"+Infinity\"``, indicating that the operand is positive infinity."
msgstr ""
#: library/decimal.rst:765
msgid "``\"NaN\"``, indicating that the operand is a quiet NaN (Not a Number)."
msgstr ""
#: library/decimal.rst:766
msgid "``\"sNaN\"``, indicating that the operand is a signaling NaN."
msgstr ""
#: library/decimal.rst:770
msgid ""
"Return a value equal to the first operand after rounding and having the "
"exponent of the second operand."
msgstr ""
#: library/decimal.rst:776
msgid ""
"Unlike other operations, if the length of the coefficient after the quantize "
"operation would be greater than precision, then an :const:`InvalidOperation` "
"is signaled. This guarantees that, unless there is an error condition, the "
"quantized exponent is always equal to that of the right-hand operand."
msgstr ""
#: library/decimal.rst:782
msgid ""
"Also unlike other operations, quantize never signals Underflow, even if the "
"result is subnormal and inexact."
msgstr ""
#: library/decimal.rst:785
msgid ""
"If the exponent of the second operand is larger than that of the first then "
"rounding may be necessary. In this case, the rounding mode is determined by "
"the ``rounding`` argument if given, else by the given ``context`` argument; "
"if neither argument is given the rounding mode of the current thread's "
"context is used."
msgstr ""
#: library/decimal.rst:791
msgid ""
"An error is returned whenever the resulting exponent is greater than :attr:"
"`Emax` or less than :attr:`Etiny`."
msgstr ""
#: library/decimal.rst:796
msgid ""
"Return ``Decimal(10)``, the radix (base) in which the :class:`Decimal` class "
"does all its arithmetic. Included for compatibility with the specification."
msgstr ""
#: library/decimal.rst:802
msgid ""
"Return the remainder from dividing *self* by *other*. This differs from "
"``self % other`` in that the sign of the remainder is chosen so as to "
"minimize its absolute value. More precisely, the return value is ``self - n "
"* other`` where ``n`` is the integer nearest to the exact value of ``self / "
"other``, and if two integers are equally near then the even one is chosen."
msgstr ""
#: library/decimal.rst:809
msgid "If the result is zero then its sign will be the sign of *self*."
msgstr ""
#: library/decimal.rst:820
msgid ""
"Return the result of rotating the digits of the first operand by an amount "
"specified by the second operand. The second operand must be an integer in "
"the range -precision through precision. The absolute value of the second "
"operand gives the number of places to rotate. If the second operand is "
"positive then rotation is to the left; otherwise rotation is to the right. "
"The coefficient of the first operand is padded on the left with zeros to "
"length precision if necessary. The sign and exponent of the first operand "
"are unchanged."
msgstr ""
#: library/decimal.rst:831
msgid ""
"Test whether self and other have the same exponent or whether both are :"
"const:`NaN`."
msgstr ""
#: library/decimal.rst:840
msgid ""
"Return the first operand with exponent adjusted by the second. Equivalently, "
"return the first operand multiplied by ``10**other``. The second operand "
"must be an integer."
msgstr ""
#: library/decimal.rst:846