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  84. <ul>
  85. <li><a class="reference internal" href="#"><code class="xref py py-mod docutils literal notranslate"><span class="pre">decimal</span></code> — Decimal fixed point and floating point arithmetic</a><ul>
  86. <li><a class="reference internal" href="#quick-start-tutorial">Quick-start Tutorial</a></li>
  87. <li><a class="reference internal" href="#decimal-objects">Decimal objects</a><ul>
  88. <li><a class="reference internal" href="#logical-operands">Logical operands</a></li>
  89. </ul>
  90. </li>
  91. <li><a class="reference internal" href="#context-objects">Context objects</a></li>
  92. <li><a class="reference internal" href="#constants">Constants</a></li>
  93. <li><a class="reference internal" href="#rounding-modes">Rounding modes</a></li>
  94. <li><a class="reference internal" href="#signals">Signals</a></li>
  95. <li><a class="reference internal" href="#floating-point-notes">Floating Point Notes</a><ul>
  96. <li><a class="reference internal" href="#mitigating-round-off-error-with-increased-precision">Mitigating round-off error with increased precision</a></li>
  97. <li><a class="reference internal" href="#special-values">Special values</a></li>
  98. </ul>
  99. </li>
  100. <li><a class="reference internal" href="#working-with-threads">Working with threads</a></li>
  101. <li><a class="reference internal" href="#recipes">Recipes</a></li>
  102. <li><a class="reference internal" href="#decimal-faq">Decimal FAQ</a></li>
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  184. <section id="module-decimal">
  185. <span id="decimal-decimal-fixed-point-and-floating-point-arithmetic"></span><h1><a class="reference internal" href="#module-decimal" title="decimal: Implementation of the General Decimal Arithmetic Specification."><code class="xref py py-mod docutils literal notranslate"><span class="pre">decimal</span></code></a> — Decimal fixed point and floating point arithmetic<a class="headerlink" href="#module-decimal" title="Link to this heading">¶</a></h1>
  186. <p><strong>Source code:</strong> <a class="reference external" href="https://github.com/python/cpython/tree/3.12/Lib/decimal.py">Lib/decimal.py</a></p>
  187. <hr class="docutils" />
  188. <p>The <a class="reference internal" href="#module-decimal" title="decimal: Implementation of the General Decimal Arithmetic Specification."><code class="xref py py-mod docutils literal notranslate"><span class="pre">decimal</span></code></a> module provides support for fast correctly rounded
  189. decimal floating point arithmetic. It offers several advantages over the
  190. <a class="reference internal" href="functions.html#float" title="float"><code class="xref py py-class docutils literal notranslate"><span class="pre">float</span></code></a> datatype:</p>
  191. <ul>
  192. <li><p>Decimal “is based on a floating-point model which was designed with people
  193. in mind, and necessarily has a paramount guiding principle – computers must
  194. provide an arithmetic that works in the same way as the arithmetic that
  195. people learn at school.” – excerpt from the decimal arithmetic specification.</p></li>
  196. <li><p>Decimal numbers can be represented exactly. In contrast, numbers like
  197. <code class="docutils literal notranslate"><span class="pre">1.1</span></code> and <code class="docutils literal notranslate"><span class="pre">2.2</span></code> do not have exact representations in binary
  198. floating point. End users typically would not expect <code class="docutils literal notranslate"><span class="pre">1.1</span> <span class="pre">+</span> <span class="pre">2.2</span></code> to display
  199. as <code class="docutils literal notranslate"><span class="pre">3.3000000000000003</span></code> as it does with binary floating point.</p></li>
  200. <li><p>The exactness carries over into arithmetic. In decimal floating point, <code class="docutils literal notranslate"><span class="pre">0.1</span>
  201. <span class="pre">+</span> <span class="pre">0.1</span> <span class="pre">+</span> <span class="pre">0.1</span> <span class="pre">-</span> <span class="pre">0.3</span></code> is exactly equal to zero. In binary floating point, the result
  202. is <code class="docutils literal notranslate"><span class="pre">5.5511151231257827e-017</span></code>. While near to zero, the differences
  203. prevent reliable equality testing and differences can accumulate. For this
  204. reason, decimal is preferred in accounting applications which have strict
  205. equality invariants.</p></li>
  206. <li><p>The decimal module incorporates a notion of significant places so that <code class="docutils literal notranslate"><span class="pre">1.30</span>
  207. <span class="pre">+</span> <span class="pre">1.20</span></code> is <code class="docutils literal notranslate"><span class="pre">2.50</span></code>. The trailing zero is kept to indicate significance.
  208. This is the customary presentation for monetary applications. For
  209. multiplication, the “schoolbook” approach uses all the figures in the
  210. multiplicands. For instance, <code class="docutils literal notranslate"><span class="pre">1.3</span> <span class="pre">*</span> <span class="pre">1.2</span></code> gives <code class="docutils literal notranslate"><span class="pre">1.56</span></code> while <code class="docutils literal notranslate"><span class="pre">1.30</span> <span class="pre">*</span>
  211. <span class="pre">1.20</span></code> gives <code class="docutils literal notranslate"><span class="pre">1.5600</span></code>.</p></li>
  212. <li><p>Unlike hardware based binary floating point, the decimal module has a user
  213. alterable precision (defaulting to 28 places) which can be as large as needed for
  214. a given problem:</p>
  215. <div class="doctest highlight-default notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="kn">from</span> <span class="nn">decimal</span> <span class="kn">import</span> <span class="o">*</span>
  216. <span class="gp">&gt;&gt;&gt; </span><span class="n">getcontext</span><span class="p">()</span><span class="o">.</span><span class="n">prec</span> <span class="o">=</span> <span class="mi">6</span>
  217. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="mi">1</span><span class="p">)</span> <span class="o">/</span> <span class="n">Decimal</span><span class="p">(</span><span class="mi">7</span><span class="p">)</span>
  218. <span class="go">Decimal(&#39;0.142857&#39;)</span>
  219. <span class="gp">&gt;&gt;&gt; </span><span class="n">getcontext</span><span class="p">()</span><span class="o">.</span><span class="n">prec</span> <span class="o">=</span> <span class="mi">28</span>
  220. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="mi">1</span><span class="p">)</span> <span class="o">/</span> <span class="n">Decimal</span><span class="p">(</span><span class="mi">7</span><span class="p">)</span>
  221. <span class="go">Decimal(&#39;0.1428571428571428571428571429&#39;)</span>
  222. </pre></div>
  223. </div>
  224. </li>
  225. <li><p>Both binary and decimal floating point are implemented in terms of published
  226. standards. While the built-in float type exposes only a modest portion of its
  227. capabilities, the decimal module exposes all required parts of the standard.
  228. When needed, the programmer has full control over rounding and signal handling.
  229. This includes an option to enforce exact arithmetic by using exceptions
  230. to block any inexact operations.</p></li>
  231. <li><p>The decimal module was designed to support “without prejudice, both exact
  232. unrounded decimal arithmetic (sometimes called fixed-point arithmetic)
  233. and rounded floating-point arithmetic.” – excerpt from the decimal
  234. arithmetic specification.</p></li>
  235. </ul>
  236. <p>The module design is centered around three concepts: the decimal number, the
  237. context for arithmetic, and signals.</p>
  238. <p>A decimal number is immutable. It has a sign, coefficient digits, and an
  239. exponent. To preserve significance, the coefficient digits do not truncate
  240. trailing zeros. Decimals also include special values such as
  241. <code class="docutils literal notranslate"><span class="pre">Infinity</span></code>, <code class="docutils literal notranslate"><span class="pre">-Infinity</span></code>, and <code class="docutils literal notranslate"><span class="pre">NaN</span></code>. The standard also
  242. differentiates <code class="docutils literal notranslate"><span class="pre">-0</span></code> from <code class="docutils literal notranslate"><span class="pre">+0</span></code>.</p>
  243. <p>The context for arithmetic is an environment specifying precision, rounding
  244. rules, limits on exponents, flags indicating the results of operations, and trap
  245. enablers which determine whether signals are treated as exceptions. Rounding
  246. options include <a class="reference internal" href="#decimal.ROUND_CEILING" title="decimal.ROUND_CEILING"><code class="xref py py-const docutils literal notranslate"><span class="pre">ROUND_CEILING</span></code></a>, <a class="reference internal" href="#decimal.ROUND_DOWN" title="decimal.ROUND_DOWN"><code class="xref py py-const docutils literal notranslate"><span class="pre">ROUND_DOWN</span></code></a>,
  247. <a class="reference internal" href="#decimal.ROUND_FLOOR" title="decimal.ROUND_FLOOR"><code class="xref py py-const docutils literal notranslate"><span class="pre">ROUND_FLOOR</span></code></a>, <a class="reference internal" href="#decimal.ROUND_HALF_DOWN" title="decimal.ROUND_HALF_DOWN"><code class="xref py py-const docutils literal notranslate"><span class="pre">ROUND_HALF_DOWN</span></code></a>, <a class="reference internal" href="#decimal.ROUND_HALF_EVEN" title="decimal.ROUND_HALF_EVEN"><code class="xref py py-const docutils literal notranslate"><span class="pre">ROUND_HALF_EVEN</span></code></a>,
  248. <a class="reference internal" href="#decimal.ROUND_HALF_UP" title="decimal.ROUND_HALF_UP"><code class="xref py py-const docutils literal notranslate"><span class="pre">ROUND_HALF_UP</span></code></a>, <a class="reference internal" href="#decimal.ROUND_UP" title="decimal.ROUND_UP"><code class="xref py py-const docutils literal notranslate"><span class="pre">ROUND_UP</span></code></a>, and <a class="reference internal" href="#decimal.ROUND_05UP" title="decimal.ROUND_05UP"><code class="xref py py-const docutils literal notranslate"><span class="pre">ROUND_05UP</span></code></a>.</p>
  249. <p>Signals are groups of exceptional conditions arising during the course of
  250. computation. Depending on the needs of the application, signals may be ignored,
  251. considered as informational, or treated as exceptions. The signals in the
  252. decimal module are: <a class="reference internal" href="#decimal.Clamped" title="decimal.Clamped"><code class="xref py py-const docutils literal notranslate"><span class="pre">Clamped</span></code></a>, <a class="reference internal" href="#decimal.InvalidOperation" title="decimal.InvalidOperation"><code class="xref py py-const docutils literal notranslate"><span class="pre">InvalidOperation</span></code></a>,
  253. <a class="reference internal" href="#decimal.DivisionByZero" title="decimal.DivisionByZero"><code class="xref py py-const docutils literal notranslate"><span class="pre">DivisionByZero</span></code></a>, <a class="reference internal" href="#decimal.Inexact" title="decimal.Inexact"><code class="xref py py-const docutils literal notranslate"><span class="pre">Inexact</span></code></a>, <a class="reference internal" href="#decimal.Rounded" title="decimal.Rounded"><code class="xref py py-const docutils literal notranslate"><span class="pre">Rounded</span></code></a>, <a class="reference internal" href="#decimal.Subnormal" title="decimal.Subnormal"><code class="xref py py-const docutils literal notranslate"><span class="pre">Subnormal</span></code></a>,
  254. <a class="reference internal" href="#decimal.Overflow" title="decimal.Overflow"><code class="xref py py-const docutils literal notranslate"><span class="pre">Overflow</span></code></a>, <a class="reference internal" href="#decimal.Underflow" title="decimal.Underflow"><code class="xref py py-const docutils literal notranslate"><span class="pre">Underflow</span></code></a> and <a class="reference internal" href="#decimal.FloatOperation" title="decimal.FloatOperation"><code class="xref py py-const docutils literal notranslate"><span class="pre">FloatOperation</span></code></a>.</p>
  255. <p>For each signal there is a flag and a trap enabler. When a signal is
  256. encountered, its flag is set to one, then, if the trap enabler is
  257. set to one, an exception is raised. Flags are sticky, so the user needs to
  258. reset them before monitoring a calculation.</p>
  259. <div class="admonition seealso">
  260. <p class="admonition-title">See also</p>
  261. <ul class="simple">
  262. <li><p>IBM’s General Decimal Arithmetic Specification, <a class="reference external" href="https://speleotrove.com/decimal/decarith.html">The General Decimal Arithmetic
  263. Specification</a>.</p></li>
  264. </ul>
  265. </div>
  266. <section id="quick-start-tutorial">
  267. <span id="decimal-tutorial"></span><h2>Quick-start Tutorial<a class="headerlink" href="#quick-start-tutorial" title="Link to this heading">¶</a></h2>
  268. <p>The usual start to using decimals is importing the module, viewing the current
  269. context with <a class="reference internal" href="#decimal.getcontext" title="decimal.getcontext"><code class="xref py py-func docutils literal notranslate"><span class="pre">getcontext()</span></code></a> and, if necessary, setting new values for
  270. precision, rounding, or enabled traps:</p>
  271. <div class="highlight-python3 notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="kn">from</span> <span class="nn">decimal</span> <span class="kn">import</span> <span class="o">*</span>
  272. <span class="gp">&gt;&gt;&gt; </span><span class="n">getcontext</span><span class="p">()</span>
  273. <span class="go">Context(prec=28, rounding=ROUND_HALF_EVEN, Emin=-999999, Emax=999999,</span>
  274. <span class="go"> capitals=1, clamp=0, flags=[], traps=[Overflow, DivisionByZero,</span>
  275. <span class="go"> InvalidOperation])</span>
  276. <span class="gp">&gt;&gt;&gt; </span><span class="n">getcontext</span><span class="p">()</span><span class="o">.</span><span class="n">prec</span> <span class="o">=</span> <span class="mi">7</span> <span class="c1"># Set a new precision</span>
  277. </pre></div>
  278. </div>
  279. <p>Decimal instances can be constructed from integers, strings, floats, or tuples.
  280. Construction from an integer or a float performs an exact conversion of the
  281. value of that integer or float. Decimal numbers include special values such as
  282. <code class="docutils literal notranslate"><span class="pre">NaN</span></code> which stands for “Not a number”, positive and negative
  283. <code class="docutils literal notranslate"><span class="pre">Infinity</span></code>, and <code class="docutils literal notranslate"><span class="pre">-0</span></code>:</p>
  284. <div class="highlight-python3 notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">getcontext</span><span class="p">()</span><span class="o">.</span><span class="n">prec</span> <span class="o">=</span> <span class="mi">28</span>
  285. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="mi">10</span><span class="p">)</span>
  286. <span class="go">Decimal(&#39;10&#39;)</span>
  287. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;3.14&#39;</span><span class="p">)</span>
  288. <span class="go">Decimal(&#39;3.14&#39;)</span>
  289. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="mf">3.14</span><span class="p">)</span>
  290. <span class="go">Decimal(&#39;3.140000000000000124344978758017532527446746826171875&#39;)</span>
  291. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">((</span><span class="mi">0</span><span class="p">,</span> <span class="p">(</span><span class="mi">3</span><span class="p">,</span> <span class="mi">1</span><span class="p">,</span> <span class="mi">4</span><span class="p">),</span> <span class="o">-</span><span class="mi">2</span><span class="p">))</span>
  292. <span class="go">Decimal(&#39;3.14&#39;)</span>
  293. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="nb">str</span><span class="p">(</span><span class="mf">2.0</span> <span class="o">**</span> <span class="mf">0.5</span><span class="p">))</span>
  294. <span class="go">Decimal(&#39;1.4142135623730951&#39;)</span>
  295. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="mi">2</span><span class="p">)</span> <span class="o">**</span> <span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;0.5&#39;</span><span class="p">)</span>
  296. <span class="go">Decimal(&#39;1.414213562373095048801688724&#39;)</span>
  297. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;NaN&#39;</span><span class="p">)</span>
  298. <span class="go">Decimal(&#39;NaN&#39;)</span>
  299. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;-Infinity&#39;</span><span class="p">)</span>
  300. <span class="go">Decimal(&#39;-Infinity&#39;)</span>
  301. </pre></div>
  302. </div>
  303. <p>If the <a class="reference internal" href="#decimal.FloatOperation" title="decimal.FloatOperation"><code class="xref py py-exc docutils literal notranslate"><span class="pre">FloatOperation</span></code></a> signal is trapped, accidental mixing of
  304. decimals and floats in constructors or ordering comparisons raises
  305. an exception:</p>
  306. <div class="highlight-python3 notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">c</span> <span class="o">=</span> <span class="n">getcontext</span><span class="p">()</span>
  307. <span class="gp">&gt;&gt;&gt; </span><span class="n">c</span><span class="o">.</span><span class="n">traps</span><span class="p">[</span><span class="n">FloatOperation</span><span class="p">]</span> <span class="o">=</span> <span class="kc">True</span>
  308. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="mf">3.14</span><span class="p">)</span>
  309. <span class="gt">Traceback (most recent call last):</span>
  310. File <span class="nb">&quot;&lt;stdin&gt;&quot;</span>, line <span class="m">1</span>, in <span class="n">&lt;module&gt;</span>
  311. <span class="gr">decimal.FloatOperation</span>: <span class="n">[&lt;class &#39;decimal.FloatOperation&#39;&gt;]</span>
  312. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;3.5&#39;</span><span class="p">)</span> <span class="o">&lt;</span> <span class="mf">3.7</span>
  313. <span class="gt">Traceback (most recent call last):</span>
  314. File <span class="nb">&quot;&lt;stdin&gt;&quot;</span>, line <span class="m">1</span>, in <span class="n">&lt;module&gt;</span>
  315. <span class="gr">decimal.FloatOperation</span>: <span class="n">[&lt;class &#39;decimal.FloatOperation&#39;&gt;]</span>
  316. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;3.5&#39;</span><span class="p">)</span> <span class="o">==</span> <span class="mf">3.5</span>
  317. <span class="go">True</span>
  318. </pre></div>
  319. </div>
  320. <div class="versionadded">
  321. <p><span class="versionmodified added">New in version 3.3.</span></p>
  322. </div>
  323. <p>The significance of a new Decimal is determined solely by the number of digits
  324. input. Context precision and rounding only come into play during arithmetic
  325. operations.</p>
  326. <div class="highlight-pycon notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">getcontext</span><span class="p">()</span><span class="o">.</span><span class="n">prec</span> <span class="o">=</span> <span class="mi">6</span>
  327. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;3.0&#39;</span><span class="p">)</span>
  328. <span class="go">Decimal(&#39;3.0&#39;)</span>
  329. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;3.1415926535&#39;</span><span class="p">)</span>
  330. <span class="go">Decimal(&#39;3.1415926535&#39;)</span>
  331. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;3.1415926535&#39;</span><span class="p">)</span> <span class="o">+</span> <span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;2.7182818285&#39;</span><span class="p">)</span>
  332. <span class="go">Decimal(&#39;5.85987&#39;)</span>
  333. <span class="gp">&gt;&gt;&gt; </span><span class="n">getcontext</span><span class="p">()</span><span class="o">.</span><span class="n">rounding</span> <span class="o">=</span> <span class="n">ROUND_UP</span>
  334. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;3.1415926535&#39;</span><span class="p">)</span> <span class="o">+</span> <span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;2.7182818285&#39;</span><span class="p">)</span>
  335. <span class="go">Decimal(&#39;5.85988&#39;)</span>
  336. </pre></div>
  337. </div>
  338. <p>If the internal limits of the C version are exceeded, constructing
  339. a decimal raises <a class="reference internal" href="#decimal.InvalidOperation" title="decimal.InvalidOperation"><code class="xref py py-class docutils literal notranslate"><span class="pre">InvalidOperation</span></code></a>:</p>
  340. <div class="highlight-python3 notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s2">&quot;1e9999999999999999999&quot;</span><span class="p">)</span>
  341. <span class="gt">Traceback (most recent call last):</span>
  342. File <span class="nb">&quot;&lt;stdin&gt;&quot;</span>, line <span class="m">1</span>, in <span class="n">&lt;module&gt;</span>
  343. <span class="gr">decimal.InvalidOperation</span>: <span class="n">[&lt;class &#39;decimal.InvalidOperation&#39;&gt;]</span>
  344. </pre></div>
  345. </div>
  346. <div class="versionchanged">
  347. <p><span class="versionmodified changed">Changed in version 3.3.</span></p>
  348. </div>
  349. <p>Decimals interact well with much of the rest of Python. Here is a small decimal
  350. floating point flying circus:</p>
  351. <div class="highlight-pycon notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">data</span> <span class="o">=</span> <span class="nb">list</span><span class="p">(</span><span class="nb">map</span><span class="p">(</span><span class="n">Decimal</span><span class="p">,</span> <span class="s1">&#39;1.34 1.87 3.45 2.35 1.00 0.03 9.25&#39;</span><span class="o">.</span><span class="n">split</span><span class="p">()))</span>
  352. <span class="gp">&gt;&gt;&gt; </span><span class="nb">max</span><span class="p">(</span><span class="n">data</span><span class="p">)</span>
  353. <span class="go">Decimal(&#39;9.25&#39;)</span>
  354. <span class="gp">&gt;&gt;&gt; </span><span class="nb">min</span><span class="p">(</span><span class="n">data</span><span class="p">)</span>
  355. <span class="go">Decimal(&#39;0.03&#39;)</span>
  356. <span class="gp">&gt;&gt;&gt; </span><span class="nb">sorted</span><span class="p">(</span><span class="n">data</span><span class="p">)</span>
  357. <span class="go">[Decimal(&#39;0.03&#39;), Decimal(&#39;1.00&#39;), Decimal(&#39;1.34&#39;), Decimal(&#39;1.87&#39;),</span>
  358. <span class="go"> Decimal(&#39;2.35&#39;), Decimal(&#39;3.45&#39;), Decimal(&#39;9.25&#39;)]</span>
  359. <span class="gp">&gt;&gt;&gt; </span><span class="nb">sum</span><span class="p">(</span><span class="n">data</span><span class="p">)</span>
  360. <span class="go">Decimal(&#39;19.29&#39;)</span>
  361. <span class="gp">&gt;&gt;&gt; </span><span class="n">a</span><span class="p">,</span><span class="n">b</span><span class="p">,</span><span class="n">c</span> <span class="o">=</span> <span class="n">data</span><span class="p">[:</span><span class="mi">3</span><span class="p">]</span>
  362. <span class="gp">&gt;&gt;&gt; </span><span class="nb">str</span><span class="p">(</span><span class="n">a</span><span class="p">)</span>
  363. <span class="go">&#39;1.34&#39;</span>
  364. <span class="gp">&gt;&gt;&gt; </span><span class="nb">float</span><span class="p">(</span><span class="n">a</span><span class="p">)</span>
  365. <span class="go">1.34</span>
  366. <span class="gp">&gt;&gt;&gt; </span><span class="nb">round</span><span class="p">(</span><span class="n">a</span><span class="p">,</span> <span class="mi">1</span><span class="p">)</span>
  367. <span class="go">Decimal(&#39;1.3&#39;)</span>
  368. <span class="gp">&gt;&gt;&gt; </span><span class="nb">int</span><span class="p">(</span><span class="n">a</span><span class="p">)</span>
  369. <span class="go">1</span>
  370. <span class="gp">&gt;&gt;&gt; </span><span class="n">a</span> <span class="o">*</span> <span class="mi">5</span>
  371. <span class="go">Decimal(&#39;6.70&#39;)</span>
  372. <span class="gp">&gt;&gt;&gt; </span><span class="n">a</span> <span class="o">*</span> <span class="n">b</span>
  373. <span class="go">Decimal(&#39;2.5058&#39;)</span>
  374. <span class="gp">&gt;&gt;&gt; </span><span class="n">c</span> <span class="o">%</span> <span class="n">a</span>
  375. <span class="go">Decimal(&#39;0.77&#39;)</span>
  376. </pre></div>
  377. </div>
  378. <p>And some mathematical functions are also available to Decimal:</p>
  379. <div class="doctest highlight-default notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">getcontext</span><span class="p">()</span><span class="o">.</span><span class="n">prec</span> <span class="o">=</span> <span class="mi">28</span>
  380. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="mi">2</span><span class="p">)</span><span class="o">.</span><span class="n">sqrt</span><span class="p">()</span>
  381. <span class="go">Decimal(&#39;1.414213562373095048801688724&#39;)</span>
  382. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="mi">1</span><span class="p">)</span><span class="o">.</span><span class="n">exp</span><span class="p">()</span>
  383. <span class="go">Decimal(&#39;2.718281828459045235360287471&#39;)</span>
  384. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;10&#39;</span><span class="p">)</span><span class="o">.</span><span class="n">ln</span><span class="p">()</span>
  385. <span class="go">Decimal(&#39;2.302585092994045684017991455&#39;)</span>
  386. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;10&#39;</span><span class="p">)</span><span class="o">.</span><span class="n">log10</span><span class="p">()</span>
  387. <span class="go">Decimal(&#39;1&#39;)</span>
  388. </pre></div>
  389. </div>
  390. <p>The <a class="reference internal" href="#decimal.Decimal.quantize" title="decimal.Decimal.quantize"><code class="xref py py-meth docutils literal notranslate"><span class="pre">quantize()</span></code></a> method rounds a number to a fixed exponent. This method is
  391. useful for monetary applications that often round results to a fixed number of
  392. places:</p>
  393. <div class="doctest highlight-default notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;7.325&#39;</span><span class="p">)</span><span class="o">.</span><span class="n">quantize</span><span class="p">(</span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;.01&#39;</span><span class="p">),</span> <span class="n">rounding</span><span class="o">=</span><span class="n">ROUND_DOWN</span><span class="p">)</span>
  394. <span class="go">Decimal(&#39;7.32&#39;)</span>
  395. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;7.325&#39;</span><span class="p">)</span><span class="o">.</span><span class="n">quantize</span><span class="p">(</span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;1.&#39;</span><span class="p">),</span> <span class="n">rounding</span><span class="o">=</span><span class="n">ROUND_UP</span><span class="p">)</span>
  396. <span class="go">Decimal(&#39;8&#39;)</span>
  397. </pre></div>
  398. </div>
  399. <p>As shown above, the <a class="reference internal" href="#decimal.getcontext" title="decimal.getcontext"><code class="xref py py-func docutils literal notranslate"><span class="pre">getcontext()</span></code></a> function accesses the current context and
  400. allows the settings to be changed. This approach meets the needs of most
  401. applications.</p>
  402. <p>For more advanced work, it may be useful to create alternate contexts using the
  403. Context() constructor. To make an alternate active, use the <a class="reference internal" href="#decimal.setcontext" title="decimal.setcontext"><code class="xref py py-func docutils literal notranslate"><span class="pre">setcontext()</span></code></a>
  404. function.</p>
  405. <p>In accordance with the standard, the <a class="reference internal" href="#module-decimal" title="decimal: Implementation of the General Decimal Arithmetic Specification."><code class="xref py py-mod docutils literal notranslate"><span class="pre">decimal</span></code></a> module provides two ready to
  406. use standard contexts, <a class="reference internal" href="#decimal.BasicContext" title="decimal.BasicContext"><code class="xref py py-const docutils literal notranslate"><span class="pre">BasicContext</span></code></a> and <a class="reference internal" href="#decimal.ExtendedContext" title="decimal.ExtendedContext"><code class="xref py py-const docutils literal notranslate"><span class="pre">ExtendedContext</span></code></a>. The
  407. former is especially useful for debugging because many of the traps are
  408. enabled:</p>
  409. <div class="highlight-pycon notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">myothercontext</span> <span class="o">=</span> <span class="n">Context</span><span class="p">(</span><span class="n">prec</span><span class="o">=</span><span class="mi">60</span><span class="p">,</span> <span class="n">rounding</span><span class="o">=</span><span class="n">ROUND_HALF_DOWN</span><span class="p">)</span>
  410. <span class="gp">&gt;&gt;&gt; </span><span class="n">setcontext</span><span class="p">(</span><span class="n">myothercontext</span><span class="p">)</span>
  411. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="mi">1</span><span class="p">)</span> <span class="o">/</span> <span class="n">Decimal</span><span class="p">(</span><span class="mi">7</span><span class="p">)</span>
  412. <span class="go">Decimal(&#39;0.142857142857142857142857142857142857142857142857142857142857&#39;)</span>
  413. <span class="gp">&gt;&gt;&gt; </span><span class="n">ExtendedContext</span>
  414. <span class="go">Context(prec=9, rounding=ROUND_HALF_EVEN, Emin=-999999, Emax=999999,</span>
  415. <span class="go"> capitals=1, clamp=0, flags=[], traps=[])</span>
  416. <span class="gp">&gt;&gt;&gt; </span><span class="n">setcontext</span><span class="p">(</span><span class="n">ExtendedContext</span><span class="p">)</span>
  417. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="mi">1</span><span class="p">)</span> <span class="o">/</span> <span class="n">Decimal</span><span class="p">(</span><span class="mi">7</span><span class="p">)</span>
  418. <span class="go">Decimal(&#39;0.142857143&#39;)</span>
  419. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="mi">42</span><span class="p">)</span> <span class="o">/</span> <span class="n">Decimal</span><span class="p">(</span><span class="mi">0</span><span class="p">)</span>
  420. <span class="go">Decimal(&#39;Infinity&#39;)</span>
  421. <span class="gp">&gt;&gt;&gt; </span><span class="n">setcontext</span><span class="p">(</span><span class="n">BasicContext</span><span class="p">)</span>
  422. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="mi">42</span><span class="p">)</span> <span class="o">/</span> <span class="n">Decimal</span><span class="p">(</span><span class="mi">0</span><span class="p">)</span>
  423. <span class="gt">Traceback (most recent call last):</span>
  424. File <span class="nb">&quot;&lt;pyshell#143&gt;&quot;</span>, line <span class="m">1</span>, in <span class="n">-toplevel-</span>
  425. <span class="w"> </span><span class="n">Decimal</span><span class="p">(</span><span class="mi">42</span><span class="p">)</span> <span class="o">/</span> <span class="n">Decimal</span><span class="p">(</span><span class="mi">0</span><span class="p">)</span>
  426. <span class="gr">DivisionByZero</span>: <span class="n">x / 0</span>
  427. </pre></div>
  428. </div>
  429. <p>Contexts also have signal flags for monitoring exceptional conditions
  430. encountered during computations. The flags remain set until explicitly cleared,
  431. so it is best to clear the flags before each set of monitored computations by
  432. using the <a class="reference internal" href="#decimal.Context.clear_flags" title="decimal.Context.clear_flags"><code class="xref py py-meth docutils literal notranslate"><span class="pre">clear_flags()</span></code></a> method.</p>
  433. <div class="highlight-python3 notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">setcontext</span><span class="p">(</span><span class="n">ExtendedContext</span><span class="p">)</span>
  434. <span class="gp">&gt;&gt;&gt; </span><span class="n">getcontext</span><span class="p">()</span><span class="o">.</span><span class="n">clear_flags</span><span class="p">()</span>
  435. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="mi">355</span><span class="p">)</span> <span class="o">/</span> <span class="n">Decimal</span><span class="p">(</span><span class="mi">113</span><span class="p">)</span>
  436. <span class="go">Decimal(&#39;3.14159292&#39;)</span>
  437. <span class="gp">&gt;&gt;&gt; </span><span class="n">getcontext</span><span class="p">()</span>
  438. <span class="go">Context(prec=9, rounding=ROUND_HALF_EVEN, Emin=-999999, Emax=999999,</span>
  439. <span class="go"> capitals=1, clamp=0, flags=[Inexact, Rounded], traps=[])</span>
  440. </pre></div>
  441. </div>
  442. <p>The <em>flags</em> entry shows that the rational approximation to pi was
  443. rounded (digits beyond the context precision were thrown away) and that the
  444. result is inexact (some of the discarded digits were non-zero).</p>
  445. <p>Individual traps are set using the dictionary in the <code class="xref py py-attr docutils literal notranslate"><span class="pre">traps</span></code>
  446. attribute of a context:</p>
  447. <div class="highlight-pycon notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">setcontext</span><span class="p">(</span><span class="n">ExtendedContext</span><span class="p">)</span>
  448. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="mi">1</span><span class="p">)</span> <span class="o">/</span> <span class="n">Decimal</span><span class="p">(</span><span class="mi">0</span><span class="p">)</span>
  449. <span class="go">Decimal(&#39;Infinity&#39;)</span>
  450. <span class="gp">&gt;&gt;&gt; </span><span class="n">getcontext</span><span class="p">()</span><span class="o">.</span><span class="n">traps</span><span class="p">[</span><span class="n">DivisionByZero</span><span class="p">]</span> <span class="o">=</span> <span class="mi">1</span>
  451. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="mi">1</span><span class="p">)</span> <span class="o">/</span> <span class="n">Decimal</span><span class="p">(</span><span class="mi">0</span><span class="p">)</span>
  452. <span class="gt">Traceback (most recent call last):</span>
  453. File <span class="nb">&quot;&lt;pyshell#112&gt;&quot;</span>, line <span class="m">1</span>, in <span class="n">-toplevel-</span>
  454. <span class="w"> </span><span class="n">Decimal</span><span class="p">(</span><span class="mi">1</span><span class="p">)</span> <span class="o">/</span> <span class="n">Decimal</span><span class="p">(</span><span class="mi">0</span><span class="p">)</span>
  455. <span class="gr">DivisionByZero</span>: <span class="n">x / 0</span>
  456. </pre></div>
  457. </div>
  458. <p>Most programs adjust the current context only once, at the beginning of the
  459. program. And, in many applications, data is converted to <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a> with
  460. a single cast inside a loop. With context set and decimals created, the bulk of
  461. the program manipulates the data no differently than with other Python numeric
  462. types.</p>
  463. </section>
  464. <section id="decimal-objects">
  465. <span id="decimal-decimal"></span><h2>Decimal objects<a class="headerlink" href="#decimal-objects" title="Link to this heading">¶</a></h2>
  466. <dl class="py class">
  467. <dt class="sig sig-object py" id="decimal.Decimal">
  468. <em class="property"><span class="pre">class</span><span class="w"> </span></em><span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">Decimal</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">value</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">'0'</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal" title="Link to this definition">¶</a></dt>
  469. <dd><p>Construct a new <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a> object based from <em>value</em>.</p>
  470. <p><em>value</em> can be an integer, string, tuple, <a class="reference internal" href="functions.html#float" title="float"><code class="xref py py-class docutils literal notranslate"><span class="pre">float</span></code></a>, or another <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a>
  471. object. If no <em>value</em> is given, returns <code class="docutils literal notranslate"><span class="pre">Decimal('0')</span></code>. If <em>value</em> is a
  472. string, it should conform to the decimal numeric string syntax after leading
  473. and trailing whitespace characters, as well as underscores throughout, are removed:</p>
  474. <div class="highlight-python3 notranslate"><div class="highlight"><pre><span></span><span class="n">sign</span> <span class="p">:</span><span class="o">:=</span> <span class="s1">&#39;+&#39;</span> <span class="o">|</span> <span class="s1">&#39;-&#39;</span>
  475. <span class="n">digit</span> <span class="p">:</span><span class="o">:=</span> <span class="s1">&#39;0&#39;</span> <span class="o">|</span> <span class="s1">&#39;1&#39;</span> <span class="o">|</span> <span class="s1">&#39;2&#39;</span> <span class="o">|</span> <span class="s1">&#39;3&#39;</span> <span class="o">|</span> <span class="s1">&#39;4&#39;</span> <span class="o">|</span> <span class="s1">&#39;5&#39;</span> <span class="o">|</span> <span class="s1">&#39;6&#39;</span> <span class="o">|</span> <span class="s1">&#39;7&#39;</span> <span class="o">|</span> <span class="s1">&#39;8&#39;</span> <span class="o">|</span> <span class="s1">&#39;9&#39;</span>
  476. <span class="n">indicator</span> <span class="p">:</span><span class="o">:=</span> <span class="s1">&#39;e&#39;</span> <span class="o">|</span> <span class="s1">&#39;E&#39;</span>
  477. <span class="n">digits</span> <span class="p">:</span><span class="o">:=</span> <span class="n">digit</span> <span class="p">[</span><span class="n">digit</span><span class="p">]</span><span class="o">...</span>
  478. <span class="n">decimal</span><span class="o">-</span><span class="n">part</span> <span class="p">:</span><span class="o">:=</span> <span class="n">digits</span> <span class="s1">&#39;.&#39;</span> <span class="p">[</span><span class="n">digits</span><span class="p">]</span> <span class="o">|</span> <span class="p">[</span><span class="s1">&#39;.&#39;</span><span class="p">]</span> <span class="n">digits</span>
  479. <span class="n">exponent</span><span class="o">-</span><span class="n">part</span> <span class="p">:</span><span class="o">:=</span> <span class="n">indicator</span> <span class="p">[</span><span class="n">sign</span><span class="p">]</span> <span class="n">digits</span>
  480. <span class="n">infinity</span> <span class="p">:</span><span class="o">:=</span> <span class="s1">&#39;Infinity&#39;</span> <span class="o">|</span> <span class="s1">&#39;Inf&#39;</span>
  481. <span class="n">nan</span> <span class="p">:</span><span class="o">:=</span> <span class="s1">&#39;NaN&#39;</span> <span class="p">[</span><span class="n">digits</span><span class="p">]</span> <span class="o">|</span> <span class="s1">&#39;sNaN&#39;</span> <span class="p">[</span><span class="n">digits</span><span class="p">]</span>
  482. <span class="n">numeric</span><span class="o">-</span><span class="n">value</span> <span class="p">:</span><span class="o">:=</span> <span class="n">decimal</span><span class="o">-</span><span class="n">part</span> <span class="p">[</span><span class="n">exponent</span><span class="o">-</span><span class="n">part</span><span class="p">]</span> <span class="o">|</span> <span class="n">infinity</span>
  483. <span class="n">numeric</span><span class="o">-</span><span class="n">string</span> <span class="p">:</span><span class="o">:=</span> <span class="p">[</span><span class="n">sign</span><span class="p">]</span> <span class="n">numeric</span><span class="o">-</span><span class="n">value</span> <span class="o">|</span> <span class="p">[</span><span class="n">sign</span><span class="p">]</span> <span class="n">nan</span>
  484. </pre></div>
  485. </div>
  486. <p>Other Unicode decimal digits are also permitted where <code class="docutils literal notranslate"><span class="pre">digit</span></code>
  487. appears above. These include decimal digits from various other
  488. alphabets (for example, Arabic-Indic and Devanāgarī digits) along
  489. with the fullwidth digits <code class="docutils literal notranslate"><span class="pre">'\uff10'</span></code> through <code class="docutils literal notranslate"><span class="pre">'\uff19'</span></code>.</p>
  490. <p>If <em>value</em> is a <a class="reference internal" href="stdtypes.html#tuple" title="tuple"><code class="xref py py-class docutils literal notranslate"><span class="pre">tuple</span></code></a>, it should have three components, a sign
  491. (<code class="docutils literal notranslate"><span class="pre">0</span></code> for positive or <code class="docutils literal notranslate"><span class="pre">1</span></code> for negative), a <a class="reference internal" href="stdtypes.html#tuple" title="tuple"><code class="xref py py-class docutils literal notranslate"><span class="pre">tuple</span></code></a> of
  492. digits, and an integer exponent. For example, <code class="docutils literal notranslate"><span class="pre">Decimal((0,</span> <span class="pre">(1,</span> <span class="pre">4,</span> <span class="pre">1,</span> <span class="pre">4),</span> <span class="pre">-3))</span></code>
  493. returns <code class="docutils literal notranslate"><span class="pre">Decimal('1.414')</span></code>.</p>
  494. <p>If <em>value</em> is a <a class="reference internal" href="functions.html#float" title="float"><code class="xref py py-class docutils literal notranslate"><span class="pre">float</span></code></a>, the binary floating point value is losslessly
  495. converted to its exact decimal equivalent. This conversion can often require
  496. 53 or more digits of precision. For example, <code class="docutils literal notranslate"><span class="pre">Decimal(float('1.1'))</span></code>
  497. converts to
  498. <code class="docutils literal notranslate"><span class="pre">Decimal('1.100000000000000088817841970012523233890533447265625')</span></code>.</p>
  499. <p>The <em>context</em> precision does not affect how many digits are stored. That is
  500. determined exclusively by the number of digits in <em>value</em>. For example,
  501. <code class="docutils literal notranslate"><span class="pre">Decimal('3.00000')</span></code> records all five zeros even if the context precision is
  502. only three.</p>
  503. <p>The purpose of the <em>context</em> argument is determining what to do if <em>value</em> is a
  504. malformed string. If the context traps <a class="reference internal" href="#decimal.InvalidOperation" title="decimal.InvalidOperation"><code class="xref py py-const docutils literal notranslate"><span class="pre">InvalidOperation</span></code></a>, an exception
  505. is raised; otherwise, the constructor returns a new Decimal with the value of
  506. <code class="docutils literal notranslate"><span class="pre">NaN</span></code>.</p>
  507. <p>Once constructed, <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a> objects are immutable.</p>
  508. <div class="versionchanged">
  509. <p><span class="versionmodified changed">Changed in version 3.2: </span>The argument to the constructor is now permitted to be a <a class="reference internal" href="functions.html#float" title="float"><code class="xref py py-class docutils literal notranslate"><span class="pre">float</span></code></a>
  510. instance.</p>
  511. </div>
  512. <div class="versionchanged">
  513. <p><span class="versionmodified changed">Changed in version 3.3: </span><a class="reference internal" href="functions.html#float" title="float"><code class="xref py py-class docutils literal notranslate"><span class="pre">float</span></code></a> arguments raise an exception if the <a class="reference internal" href="#decimal.FloatOperation" title="decimal.FloatOperation"><code class="xref py py-exc docutils literal notranslate"><span class="pre">FloatOperation</span></code></a>
  514. trap is set. By default the trap is off.</p>
  515. </div>
  516. <div class="versionchanged">
  517. <p><span class="versionmodified changed">Changed in version 3.6: </span>Underscores are allowed for grouping, as with integral and floating-point
  518. literals in code.</p>
  519. </div>
  520. <p>Decimal floating point objects share many properties with the other built-in
  521. numeric types such as <a class="reference internal" href="functions.html#float" title="float"><code class="xref py py-class docutils literal notranslate"><span class="pre">float</span></code></a> and <a class="reference internal" href="functions.html#int" title="int"><code class="xref py py-class docutils literal notranslate"><span class="pre">int</span></code></a>. All of the usual math
  522. operations and special methods apply. Likewise, decimal objects can be
  523. copied, pickled, printed, used as dictionary keys, used as set elements,
  524. compared, sorted, and coerced to another type (such as <a class="reference internal" href="functions.html#float" title="float"><code class="xref py py-class docutils literal notranslate"><span class="pre">float</span></code></a> or
  525. <a class="reference internal" href="functions.html#int" title="int"><code class="xref py py-class docutils literal notranslate"><span class="pre">int</span></code></a>).</p>
  526. <p>There are some small differences between arithmetic on Decimal objects and
  527. arithmetic on integers and floats. When the remainder operator <code class="docutils literal notranslate"><span class="pre">%</span></code> is
  528. applied to Decimal objects, the sign of the result is the sign of the
  529. <em>dividend</em> rather than the sign of the divisor:</p>
  530. <div class="highlight-python3 notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="p">(</span><span class="o">-</span><span class="mi">7</span><span class="p">)</span> <span class="o">%</span> <span class="mi">4</span>
  531. <span class="go">1</span>
  532. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="o">-</span><span class="mi">7</span><span class="p">)</span> <span class="o">%</span> <span class="n">Decimal</span><span class="p">(</span><span class="mi">4</span><span class="p">)</span>
  533. <span class="go">Decimal(&#39;-3&#39;)</span>
  534. </pre></div>
  535. </div>
  536. <p>The integer division operator <code class="docutils literal notranslate"><span class="pre">//</span></code> behaves analogously, returning the
  537. integer part of the true quotient (truncating towards zero) rather than its
  538. floor, so as to preserve the usual identity <code class="docutils literal notranslate"><span class="pre">x</span> <span class="pre">==</span> <span class="pre">(x</span> <span class="pre">//</span> <span class="pre">y)</span> <span class="pre">*</span> <span class="pre">y</span> <span class="pre">+</span> <span class="pre">x</span> <span class="pre">%</span> <span class="pre">y</span></code>:</p>
  539. <div class="highlight-python3 notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="o">-</span><span class="mi">7</span> <span class="o">//</span> <span class="mi">4</span>
  540. <span class="go">-2</span>
  541. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="o">-</span><span class="mi">7</span><span class="p">)</span> <span class="o">//</span> <span class="n">Decimal</span><span class="p">(</span><span class="mi">4</span><span class="p">)</span>
  542. <span class="go">Decimal(&#39;-1&#39;)</span>
  543. </pre></div>
  544. </div>
  545. <p>The <code class="docutils literal notranslate"><span class="pre">%</span></code> and <code class="docutils literal notranslate"><span class="pre">//</span></code> operators implement the <code class="docutils literal notranslate"><span class="pre">remainder</span></code> and
  546. <code class="docutils literal notranslate"><span class="pre">divide-integer</span></code> operations (respectively) as described in the
  547. specification.</p>
  548. <p>Decimal objects cannot generally be combined with floats or
  549. instances of <a class="reference internal" href="fractions.html#fractions.Fraction" title="fractions.Fraction"><code class="xref py py-class docutils literal notranslate"><span class="pre">fractions.Fraction</span></code></a> in arithmetic operations:
  550. an attempt to add a <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a> to a <a class="reference internal" href="functions.html#float" title="float"><code class="xref py py-class docutils literal notranslate"><span class="pre">float</span></code></a>, for
  551. example, will raise a <a class="reference internal" href="exceptions.html#TypeError" title="TypeError"><code class="xref py py-exc docutils literal notranslate"><span class="pre">TypeError</span></code></a>. However, it is possible to
  552. use Python’s comparison operators to compare a <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a>
  553. instance <code class="docutils literal notranslate"><span class="pre">x</span></code> with another number <code class="docutils literal notranslate"><span class="pre">y</span></code>. This avoids confusing results
  554. when doing equality comparisons between numbers of different types.</p>
  555. <div class="versionchanged">
  556. <p><span class="versionmodified changed">Changed in version 3.2: </span>Mixed-type comparisons between <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a> instances and other
  557. numeric types are now fully supported.</p>
  558. </div>
  559. <p>In addition to the standard numeric properties, decimal floating point
  560. objects also have a number of specialized methods:</p>
  561. <dl class="py method">
  562. <dt class="sig sig-object py" id="decimal.Decimal.adjusted">
  563. <span class="sig-name descname"><span class="pre">adjusted</span></span><span class="sig-paren">(</span><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.adjusted" title="Link to this definition">¶</a></dt>
  564. <dd><p>Return the adjusted exponent after shifting out the coefficient’s
  565. rightmost digits until only the lead digit remains:
  566. <code class="docutils literal notranslate"><span class="pre">Decimal('321e+5').adjusted()</span></code> returns seven. Used for determining the
  567. position of the most significant digit with respect to the decimal point.</p>
  568. </dd></dl>
  569. <dl class="py method">
  570. <dt class="sig sig-object py" id="decimal.Decimal.as_integer_ratio">
  571. <span class="sig-name descname"><span class="pre">as_integer_ratio</span></span><span class="sig-paren">(</span><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.as_integer_ratio" title="Link to this definition">¶</a></dt>
  572. <dd><p>Return a pair <code class="docutils literal notranslate"><span class="pre">(n,</span> <span class="pre">d)</span></code> of integers that represent the given
  573. <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a> instance as a fraction, in lowest terms and
  574. with a positive denominator:</p>
  575. <div class="highlight-python3 notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;-3.14&#39;</span><span class="p">)</span><span class="o">.</span><span class="n">as_integer_ratio</span><span class="p">()</span>
  576. <span class="go">(-157, 50)</span>
  577. </pre></div>
  578. </div>
  579. <p>The conversion is exact. Raise OverflowError on infinities and ValueError
  580. on NaNs.</p>
  581. </dd></dl>
  582. <div class="versionadded">
  583. <p><span class="versionmodified added">New in version 3.6.</span></p>
  584. </div>
  585. <dl class="py method">
  586. <dt class="sig sig-object py" id="decimal.Decimal.as_tuple">
  587. <span class="sig-name descname"><span class="pre">as_tuple</span></span><span class="sig-paren">(</span><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.as_tuple" title="Link to this definition">¶</a></dt>
  588. <dd><p>Return a <a class="reference internal" href="../glossary.html#term-named-tuple"><span class="xref std std-term">named tuple</span></a> representation of the number:
  589. <code class="docutils literal notranslate"><span class="pre">DecimalTuple(sign,</span> <span class="pre">digits,</span> <span class="pre">exponent)</span></code>.</p>
  590. </dd></dl>
  591. <dl class="py method">
  592. <dt class="sig sig-object py" id="decimal.Decimal.canonical">
  593. <span class="sig-name descname"><span class="pre">canonical</span></span><span class="sig-paren">(</span><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.canonical" title="Link to this definition">¶</a></dt>
  594. <dd><p>Return the canonical encoding of the argument. Currently, the encoding of
  595. a <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a> instance is always canonical, so this operation returns
  596. its argument unchanged.</p>
  597. </dd></dl>
  598. <dl class="py method">
  599. <dt class="sig sig-object py" id="decimal.Decimal.compare">
  600. <span class="sig-name descname"><span class="pre">compare</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">other</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.compare" title="Link to this definition">¶</a></dt>
  601. <dd><p>Compare the values of two Decimal instances. <a class="reference internal" href="#decimal.Decimal.compare" title="decimal.Decimal.compare"><code class="xref py py-meth docutils literal notranslate"><span class="pre">compare()</span></code></a> returns a
  602. Decimal instance, and if either operand is a NaN then the result is a
  603. NaN:</p>
  604. <div class="highlight-python3 notranslate"><div class="highlight"><pre><span></span><span class="n">a</span> <span class="ow">or</span> <span class="n">b</span> <span class="ow">is</span> <span class="n">a</span> <span class="n">NaN</span> <span class="o">==&gt;</span> <span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;NaN&#39;</span><span class="p">)</span>
  605. <span class="n">a</span> <span class="o">&lt;</span> <span class="n">b</span> <span class="o">==&gt;</span> <span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;-1&#39;</span><span class="p">)</span>
  606. <span class="n">a</span> <span class="o">==</span> <span class="n">b</span> <span class="o">==&gt;</span> <span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;0&#39;</span><span class="p">)</span>
  607. <span class="n">a</span> <span class="o">&gt;</span> <span class="n">b</span> <span class="o">==&gt;</span> <span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;1&#39;</span><span class="p">)</span>
  608. </pre></div>
  609. </div>
  610. </dd></dl>
  611. <dl class="py method">
  612. <dt class="sig sig-object py" id="decimal.Decimal.compare_signal">
  613. <span class="sig-name descname"><span class="pre">compare_signal</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">other</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.compare_signal" title="Link to this definition">¶</a></dt>
  614. <dd><p>This operation is identical to the <a class="reference internal" href="#decimal.Decimal.compare" title="decimal.Decimal.compare"><code class="xref py py-meth docutils literal notranslate"><span class="pre">compare()</span></code></a> method, except that all
  615. NaNs signal. That is, if neither operand is a signaling NaN then any
  616. quiet NaN operand is treated as though it were a signaling NaN.</p>
  617. </dd></dl>
  618. <dl class="py method">
  619. <dt class="sig sig-object py" id="decimal.Decimal.compare_total">
  620. <span class="sig-name descname"><span class="pre">compare_total</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">other</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.compare_total" title="Link to this definition">¶</a></dt>
  621. <dd><p>Compare two operands using their abstract representation rather than their
  622. numerical value. Similar to the <a class="reference internal" href="#decimal.Decimal.compare" title="decimal.Decimal.compare"><code class="xref py py-meth docutils literal notranslate"><span class="pre">compare()</span></code></a> method, but the result
  623. gives a total ordering on <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a> instances. Two
  624. <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a> instances with the same numeric value but different
  625. representations compare unequal in this ordering:</p>
  626. <div class="doctest highlight-default notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;12.0&#39;</span><span class="p">)</span><span class="o">.</span><span class="n">compare_total</span><span class="p">(</span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;12&#39;</span><span class="p">))</span>
  627. <span class="go">Decimal(&#39;-1&#39;)</span>
  628. </pre></div>
  629. </div>
  630. <p>Quiet and signaling NaNs are also included in the total ordering. The
  631. result of this function is <code class="docutils literal notranslate"><span class="pre">Decimal('0')</span></code> if both operands have the same
  632. representation, <code class="docutils literal notranslate"><span class="pre">Decimal('-1')</span></code> if the first operand is lower in the
  633. total order than the second, and <code class="docutils literal notranslate"><span class="pre">Decimal('1')</span></code> if the first operand is
  634. higher in the total order than the second operand. See the specification
  635. for details of the total order.</p>
  636. <p>This operation is unaffected by context and is quiet: no flags are changed
  637. and no rounding is performed. As an exception, the C version may raise
  638. InvalidOperation if the second operand cannot be converted exactly.</p>
  639. </dd></dl>
  640. <dl class="py method">
  641. <dt class="sig sig-object py" id="decimal.Decimal.compare_total_mag">
  642. <span class="sig-name descname"><span class="pre">compare_total_mag</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">other</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.compare_total_mag" title="Link to this definition">¶</a></dt>
  643. <dd><p>Compare two operands using their abstract representation rather than their
  644. value as in <a class="reference internal" href="#decimal.Decimal.compare_total" title="decimal.Decimal.compare_total"><code class="xref py py-meth docutils literal notranslate"><span class="pre">compare_total()</span></code></a>, but ignoring the sign of each operand.
  645. <code class="docutils literal notranslate"><span class="pre">x.compare_total_mag(y)</span></code> is equivalent to
  646. <code class="docutils literal notranslate"><span class="pre">x.copy_abs().compare_total(y.copy_abs())</span></code>.</p>
  647. <p>This operation is unaffected by context and is quiet: no flags are changed
  648. and no rounding is performed. As an exception, the C version may raise
  649. InvalidOperation if the second operand cannot be converted exactly.</p>
  650. </dd></dl>
  651. <dl class="py method">
  652. <dt class="sig sig-object py" id="decimal.Decimal.conjugate">
  653. <span class="sig-name descname"><span class="pre">conjugate</span></span><span class="sig-paren">(</span><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.conjugate" title="Link to this definition">¶</a></dt>
  654. <dd><p>Just returns self, this method is only to comply with the Decimal
  655. Specification.</p>
  656. </dd></dl>
  657. <dl class="py method">
  658. <dt class="sig sig-object py" id="decimal.Decimal.copy_abs">
  659. <span class="sig-name descname"><span class="pre">copy_abs</span></span><span class="sig-paren">(</span><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.copy_abs" title="Link to this definition">¶</a></dt>
  660. <dd><p>Return the absolute value of the argument. This operation is unaffected
  661. by the context and is quiet: no flags are changed and no rounding is
  662. performed.</p>
  663. </dd></dl>
  664. <dl class="py method">
  665. <dt class="sig sig-object py" id="decimal.Decimal.copy_negate">
  666. <span class="sig-name descname"><span class="pre">copy_negate</span></span><span class="sig-paren">(</span><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.copy_negate" title="Link to this definition">¶</a></dt>
  667. <dd><p>Return the negation of the argument. This operation is unaffected by the
  668. context and is quiet: no flags are changed and no rounding is performed.</p>
  669. </dd></dl>
  670. <dl class="py method">
  671. <dt class="sig sig-object py" id="decimal.Decimal.copy_sign">
  672. <span class="sig-name descname"><span class="pre">copy_sign</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">other</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.copy_sign" title="Link to this definition">¶</a></dt>
  673. <dd><p>Return a copy of the first operand with the sign set to be the same as the
  674. sign of the second operand. For example:</p>
  675. <div class="doctest highlight-default notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;2.3&#39;</span><span class="p">)</span><span class="o">.</span><span class="n">copy_sign</span><span class="p">(</span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;-1.5&#39;</span><span class="p">))</span>
  676. <span class="go">Decimal(&#39;-2.3&#39;)</span>
  677. </pre></div>
  678. </div>
  679. <p>This operation is unaffected by context and is quiet: no flags are changed
  680. and no rounding is performed. As an exception, the C version may raise
  681. InvalidOperation if the second operand cannot be converted exactly.</p>
  682. </dd></dl>
  683. <dl class="py method">
  684. <dt class="sig sig-object py" id="decimal.Decimal.exp">
  685. <span class="sig-name descname"><span class="pre">exp</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.exp" title="Link to this definition">¶</a></dt>
  686. <dd><p>Return the value of the (natural) exponential function <code class="docutils literal notranslate"><span class="pre">e**x</span></code> at the
  687. given number. The result is correctly rounded using the
  688. <a class="reference internal" href="#decimal.ROUND_HALF_EVEN" title="decimal.ROUND_HALF_EVEN"><code class="xref py py-const docutils literal notranslate"><span class="pre">ROUND_HALF_EVEN</span></code></a> rounding mode.</p>
  689. <div class="doctest highlight-default notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="mi">1</span><span class="p">)</span><span class="o">.</span><span class="n">exp</span><span class="p">()</span>
  690. <span class="go">Decimal(&#39;2.718281828459045235360287471&#39;)</span>
  691. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="mi">321</span><span class="p">)</span><span class="o">.</span><span class="n">exp</span><span class="p">()</span>
  692. <span class="go">Decimal(&#39;2.561702493119680037517373933E+139&#39;)</span>
  693. </pre></div>
  694. </div>
  695. </dd></dl>
  696. <dl class="py method">
  697. <dt class="sig sig-object py" id="decimal.Decimal.from_float">
  698. <em class="property"><span class="pre">classmethod</span><span class="w"> </span></em><span class="sig-name descname"><span class="pre">from_float</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">f</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.from_float" title="Link to this definition">¶</a></dt>
  699. <dd><p>Alternative constructor that only accepts instances of <a class="reference internal" href="functions.html#float" title="float"><code class="xref py py-class docutils literal notranslate"><span class="pre">float</span></code></a> or
  700. <a class="reference internal" href="functions.html#int" title="int"><code class="xref py py-class docutils literal notranslate"><span class="pre">int</span></code></a>.</p>
  701. <p>Note <code class="docutils literal notranslate"><span class="pre">Decimal.from_float(0.1)</span></code> is not the same as <code class="docutils literal notranslate"><span class="pre">Decimal('0.1')</span></code>.
  702. Since 0.1 is not exactly representable in binary floating point, the
  703. value is stored as the nearest representable value which is
  704. <code class="docutils literal notranslate"><span class="pre">0x1.999999999999ap-4</span></code>. That equivalent value in decimal is
  705. <code class="docutils literal notranslate"><span class="pre">0.1000000000000000055511151231257827021181583404541015625</span></code>.</p>
  706. <div class="admonition note">
  707. <p class="admonition-title">Note</p>
  708. <p>From Python 3.2 onwards, a <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a> instance
  709. can also be constructed directly from a <a class="reference internal" href="functions.html#float" title="float"><code class="xref py py-class docutils literal notranslate"><span class="pre">float</span></code></a>.</p>
  710. </div>
  711. <div class="highlight-pycon notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="o">.</span><span class="n">from_float</span><span class="p">(</span><span class="mf">0.1</span><span class="p">)</span>
  712. <span class="go">Decimal(&#39;0.1000000000000000055511151231257827021181583404541015625&#39;)</span>
  713. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="o">.</span><span class="n">from_float</span><span class="p">(</span><span class="nb">float</span><span class="p">(</span><span class="s1">&#39;nan&#39;</span><span class="p">))</span>
  714. <span class="go">Decimal(&#39;NaN&#39;)</span>
  715. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="o">.</span><span class="n">from_float</span><span class="p">(</span><span class="nb">float</span><span class="p">(</span><span class="s1">&#39;inf&#39;</span><span class="p">))</span>
  716. <span class="go">Decimal(&#39;Infinity&#39;)</span>
  717. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="o">.</span><span class="n">from_float</span><span class="p">(</span><span class="nb">float</span><span class="p">(</span><span class="s1">&#39;-inf&#39;</span><span class="p">))</span>
  718. <span class="go">Decimal(&#39;-Infinity&#39;)</span>
  719. </pre></div>
  720. </div>
  721. <div class="versionadded">
  722. <p><span class="versionmodified added">New in version 3.1.</span></p>
  723. </div>
  724. </dd></dl>
  725. <dl class="py method">
  726. <dt class="sig sig-object py" id="decimal.Decimal.fma">
  727. <span class="sig-name descname"><span class="pre">fma</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">other</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">third</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.fma" title="Link to this definition">¶</a></dt>
  728. <dd><p>Fused multiply-add. Return self*other+third with no rounding of the
  729. intermediate product self*other.</p>
  730. <div class="doctest highlight-default notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="mi">2</span><span class="p">)</span><span class="o">.</span><span class="n">fma</span><span class="p">(</span><span class="mi">3</span><span class="p">,</span> <span class="mi">5</span><span class="p">)</span>
  731. <span class="go">Decimal(&#39;11&#39;)</span>
  732. </pre></div>
  733. </div>
  734. </dd></dl>
  735. <dl class="py method">
  736. <dt class="sig sig-object py" id="decimal.Decimal.is_canonical">
  737. <span class="sig-name descname"><span class="pre">is_canonical</span></span><span class="sig-paren">(</span><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.is_canonical" title="Link to this definition">¶</a></dt>
  738. <dd><p>Return <a class="reference internal" href="constants.html#True" title="True"><code class="xref py py-const docutils literal notranslate"><span class="pre">True</span></code></a> if the argument is canonical and <a class="reference internal" href="constants.html#False" title="False"><code class="xref py py-const docutils literal notranslate"><span class="pre">False</span></code></a>
  739. otherwise. Currently, a <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a> instance is always canonical, so
  740. this operation always returns <a class="reference internal" href="constants.html#True" title="True"><code class="xref py py-const docutils literal notranslate"><span class="pre">True</span></code></a>.</p>
  741. </dd></dl>
  742. <dl class="py method">
  743. <dt class="sig sig-object py" id="decimal.Decimal.is_finite">
  744. <span class="sig-name descname"><span class="pre">is_finite</span></span><span class="sig-paren">(</span><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.is_finite" title="Link to this definition">¶</a></dt>
  745. <dd><p>Return <a class="reference internal" href="constants.html#True" title="True"><code class="xref py py-const docutils literal notranslate"><span class="pre">True</span></code></a> if the argument is a finite number, and
  746. <a class="reference internal" href="constants.html#False" title="False"><code class="xref py py-const docutils literal notranslate"><span class="pre">False</span></code></a> if the argument is an infinity or a NaN.</p>
  747. </dd></dl>
  748. <dl class="py method">
  749. <dt class="sig sig-object py" id="decimal.Decimal.is_infinite">
  750. <span class="sig-name descname"><span class="pre">is_infinite</span></span><span class="sig-paren">(</span><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.is_infinite" title="Link to this definition">¶</a></dt>
  751. <dd><p>Return <a class="reference internal" href="constants.html#True" title="True"><code class="xref py py-const docutils literal notranslate"><span class="pre">True</span></code></a> if the argument is either positive or negative
  752. infinity and <a class="reference internal" href="constants.html#False" title="False"><code class="xref py py-const docutils literal notranslate"><span class="pre">False</span></code></a> otherwise.</p>
  753. </dd></dl>
  754. <dl class="py method">
  755. <dt class="sig sig-object py" id="decimal.Decimal.is_nan">
  756. <span class="sig-name descname"><span class="pre">is_nan</span></span><span class="sig-paren">(</span><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.is_nan" title="Link to this definition">¶</a></dt>
  757. <dd><p>Return <a class="reference internal" href="constants.html#True" title="True"><code class="xref py py-const docutils literal notranslate"><span class="pre">True</span></code></a> if the argument is a (quiet or signaling) NaN and
  758. <a class="reference internal" href="constants.html#False" title="False"><code class="xref py py-const docutils literal notranslate"><span class="pre">False</span></code></a> otherwise.</p>
  759. </dd></dl>
  760. <dl class="py method">
  761. <dt class="sig sig-object py" id="decimal.Decimal.is_normal">
  762. <span class="sig-name descname"><span class="pre">is_normal</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.is_normal" title="Link to this definition">¶</a></dt>
  763. <dd><p>Return <a class="reference internal" href="constants.html#True" title="True"><code class="xref py py-const docutils literal notranslate"><span class="pre">True</span></code></a> if the argument is a <em>normal</em> finite number. Return
  764. <a class="reference internal" href="constants.html#False" title="False"><code class="xref py py-const docutils literal notranslate"><span class="pre">False</span></code></a> if the argument is zero, subnormal, infinite or a NaN.</p>
  765. </dd></dl>
  766. <dl class="py method">
  767. <dt class="sig sig-object py" id="decimal.Decimal.is_qnan">
  768. <span class="sig-name descname"><span class="pre">is_qnan</span></span><span class="sig-paren">(</span><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.is_qnan" title="Link to this definition">¶</a></dt>
  769. <dd><p>Return <a class="reference internal" href="constants.html#True" title="True"><code class="xref py py-const docutils literal notranslate"><span class="pre">True</span></code></a> if the argument is a quiet NaN, and
  770. <a class="reference internal" href="constants.html#False" title="False"><code class="xref py py-const docutils literal notranslate"><span class="pre">False</span></code></a> otherwise.</p>
  771. </dd></dl>
  772. <dl class="py method">
  773. <dt class="sig sig-object py" id="decimal.Decimal.is_signed">
  774. <span class="sig-name descname"><span class="pre">is_signed</span></span><span class="sig-paren">(</span><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.is_signed" title="Link to this definition">¶</a></dt>
  775. <dd><p>Return <a class="reference internal" href="constants.html#True" title="True"><code class="xref py py-const docutils literal notranslate"><span class="pre">True</span></code></a> if the argument has a negative sign and
  776. <a class="reference internal" href="constants.html#False" title="False"><code class="xref py py-const docutils literal notranslate"><span class="pre">False</span></code></a> otherwise. Note that zeros and NaNs can both carry signs.</p>
  777. </dd></dl>
  778. <dl class="py method">
  779. <dt class="sig sig-object py" id="decimal.Decimal.is_snan">
  780. <span class="sig-name descname"><span class="pre">is_snan</span></span><span class="sig-paren">(</span><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.is_snan" title="Link to this definition">¶</a></dt>
  781. <dd><p>Return <a class="reference internal" href="constants.html#True" title="True"><code class="xref py py-const docutils literal notranslate"><span class="pre">True</span></code></a> if the argument is a signaling NaN and <a class="reference internal" href="constants.html#False" title="False"><code class="xref py py-const docutils literal notranslate"><span class="pre">False</span></code></a>
  782. otherwise.</p>
  783. </dd></dl>
  784. <dl class="py method">
  785. <dt class="sig sig-object py" id="decimal.Decimal.is_subnormal">
  786. <span class="sig-name descname"><span class="pre">is_subnormal</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.is_subnormal" title="Link to this definition">¶</a></dt>
  787. <dd><p>Return <a class="reference internal" href="constants.html#True" title="True"><code class="xref py py-const docutils literal notranslate"><span class="pre">True</span></code></a> if the argument is subnormal, and <a class="reference internal" href="constants.html#False" title="False"><code class="xref py py-const docutils literal notranslate"><span class="pre">False</span></code></a>
  788. otherwise.</p>
  789. </dd></dl>
  790. <dl class="py method">
  791. <dt class="sig sig-object py" id="decimal.Decimal.is_zero">
  792. <span class="sig-name descname"><span class="pre">is_zero</span></span><span class="sig-paren">(</span><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.is_zero" title="Link to this definition">¶</a></dt>
  793. <dd><p>Return <a class="reference internal" href="constants.html#True" title="True"><code class="xref py py-const docutils literal notranslate"><span class="pre">True</span></code></a> if the argument is a (positive or negative) zero and
  794. <a class="reference internal" href="constants.html#False" title="False"><code class="xref py py-const docutils literal notranslate"><span class="pre">False</span></code></a> otherwise.</p>
  795. </dd></dl>
  796. <dl class="py method">
  797. <dt class="sig sig-object py" id="decimal.Decimal.ln">
  798. <span class="sig-name descname"><span class="pre">ln</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.ln" title="Link to this definition">¶</a></dt>
  799. <dd><p>Return the natural (base e) logarithm of the operand. The result is
  800. correctly rounded using the <a class="reference internal" href="#decimal.ROUND_HALF_EVEN" title="decimal.ROUND_HALF_EVEN"><code class="xref py py-const docutils literal notranslate"><span class="pre">ROUND_HALF_EVEN</span></code></a> rounding mode.</p>
  801. </dd></dl>
  802. <dl class="py method">
  803. <dt class="sig sig-object py" id="decimal.Decimal.log10">
  804. <span class="sig-name descname"><span class="pre">log10</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.log10" title="Link to this definition">¶</a></dt>
  805. <dd><p>Return the base ten logarithm of the operand. The result is correctly
  806. rounded using the <a class="reference internal" href="#decimal.ROUND_HALF_EVEN" title="decimal.ROUND_HALF_EVEN"><code class="xref py py-const docutils literal notranslate"><span class="pre">ROUND_HALF_EVEN</span></code></a> rounding mode.</p>
  807. </dd></dl>
  808. <dl class="py method">
  809. <dt class="sig sig-object py" id="decimal.Decimal.logb">
  810. <span class="sig-name descname"><span class="pre">logb</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.logb" title="Link to this definition">¶</a></dt>
  811. <dd><p>For a nonzero number, return the adjusted exponent of its operand as a
  812. <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a> instance. If the operand is a zero then
  813. <code class="docutils literal notranslate"><span class="pre">Decimal('-Infinity')</span></code> is returned and the <a class="reference internal" href="#decimal.DivisionByZero" title="decimal.DivisionByZero"><code class="xref py py-const docutils literal notranslate"><span class="pre">DivisionByZero</span></code></a> flag
  814. is raised. If the operand is an infinity then <code class="docutils literal notranslate"><span class="pre">Decimal('Infinity')</span></code> is
  815. returned.</p>
  816. </dd></dl>
  817. <dl class="py method">
  818. <dt class="sig sig-object py" id="decimal.Decimal.logical_and">
  819. <span class="sig-name descname"><span class="pre">logical_and</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">other</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.logical_and" title="Link to this definition">¶</a></dt>
  820. <dd><p><a class="reference internal" href="#decimal.Decimal.logical_and" title="decimal.Decimal.logical_and"><code class="xref py py-meth docutils literal notranslate"><span class="pre">logical_and()</span></code></a> is a logical operation which takes two <em>logical
  821. operands</em> (see <a class="reference internal" href="#logical-operands-label"><span class="std std-ref">Logical operands</span></a>). The result is the
  822. digit-wise <code class="docutils literal notranslate"><span class="pre">and</span></code> of the two operands.</p>
  823. </dd></dl>
  824. <dl class="py method">
  825. <dt class="sig sig-object py" id="decimal.Decimal.logical_invert">
  826. <span class="sig-name descname"><span class="pre">logical_invert</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.logical_invert" title="Link to this definition">¶</a></dt>
  827. <dd><p><a class="reference internal" href="#decimal.Decimal.logical_invert" title="decimal.Decimal.logical_invert"><code class="xref py py-meth docutils literal notranslate"><span class="pre">logical_invert()</span></code></a> is a logical operation. The
  828. result is the digit-wise inversion of the operand.</p>
  829. </dd></dl>
  830. <dl class="py method">
  831. <dt class="sig sig-object py" id="decimal.Decimal.logical_or">
  832. <span class="sig-name descname"><span class="pre">logical_or</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">other</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.logical_or" title="Link to this definition">¶</a></dt>
  833. <dd><p><a class="reference internal" href="#decimal.Decimal.logical_or" title="decimal.Decimal.logical_or"><code class="xref py py-meth docutils literal notranslate"><span class="pre">logical_or()</span></code></a> is a logical operation which takes two <em>logical
  834. operands</em> (see <a class="reference internal" href="#logical-operands-label"><span class="std std-ref">Logical operands</span></a>). The result is the
  835. digit-wise <code class="docutils literal notranslate"><span class="pre">or</span></code> of the two operands.</p>
  836. </dd></dl>
  837. <dl class="py method">
  838. <dt class="sig sig-object py" id="decimal.Decimal.logical_xor">
  839. <span class="sig-name descname"><span class="pre">logical_xor</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">other</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.logical_xor" title="Link to this definition">¶</a></dt>
  840. <dd><p><a class="reference internal" href="#decimal.Decimal.logical_xor" title="decimal.Decimal.logical_xor"><code class="xref py py-meth docutils literal notranslate"><span class="pre">logical_xor()</span></code></a> is a logical operation which takes two <em>logical
  841. operands</em> (see <a class="reference internal" href="#logical-operands-label"><span class="std std-ref">Logical operands</span></a>). The result is the
  842. digit-wise exclusive or of the two operands.</p>
  843. </dd></dl>
  844. <dl class="py method">
  845. <dt class="sig sig-object py" id="decimal.Decimal.max">
  846. <span class="sig-name descname"><span class="pre">max</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">other</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.max" title="Link to this definition">¶</a></dt>
  847. <dd><p>Like <code class="docutils literal notranslate"><span class="pre">max(self,</span> <span class="pre">other)</span></code> except that the context rounding rule is applied
  848. before returning and that <code class="docutils literal notranslate"><span class="pre">NaN</span></code> values are either signaled or
  849. ignored (depending on the context and whether they are signaling or
  850. quiet).</p>
  851. </dd></dl>
  852. <dl class="py method">
  853. <dt class="sig sig-object py" id="decimal.Decimal.max_mag">
  854. <span class="sig-name descname"><span class="pre">max_mag</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">other</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.max_mag" title="Link to this definition">¶</a></dt>
  855. <dd><p>Similar to the <a class="reference internal" href="#decimal.Decimal.max" title="decimal.Decimal.max"><code class="xref py py-meth docutils literal notranslate"><span class="pre">max()</span></code></a> method, but the comparison is done using the
  856. absolute values of the operands.</p>
  857. </dd></dl>
  858. <dl class="py method">
  859. <dt class="sig sig-object py" id="decimal.Decimal.min">
  860. <span class="sig-name descname"><span class="pre">min</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">other</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.min" title="Link to this definition">¶</a></dt>
  861. <dd><p>Like <code class="docutils literal notranslate"><span class="pre">min(self,</span> <span class="pre">other)</span></code> except that the context rounding rule is applied
  862. before returning and that <code class="docutils literal notranslate"><span class="pre">NaN</span></code> values are either signaled or
  863. ignored (depending on the context and whether they are signaling or
  864. quiet).</p>
  865. </dd></dl>
  866. <dl class="py method">
  867. <dt class="sig sig-object py" id="decimal.Decimal.min_mag">
  868. <span class="sig-name descname"><span class="pre">min_mag</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">other</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.min_mag" title="Link to this definition">¶</a></dt>
  869. <dd><p>Similar to the <a class="reference internal" href="#decimal.Decimal.min" title="decimal.Decimal.min"><code class="xref py py-meth docutils literal notranslate"><span class="pre">min()</span></code></a> method, but the comparison is done using the
  870. absolute values of the operands.</p>
  871. </dd></dl>
  872. <dl class="py method">
  873. <dt class="sig sig-object py" id="decimal.Decimal.next_minus">
  874. <span class="sig-name descname"><span class="pre">next_minus</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.next_minus" title="Link to this definition">¶</a></dt>
  875. <dd><p>Return the largest number representable in the given context (or in the
  876. current thread’s context if no context is given) that is smaller than the
  877. given operand.</p>
  878. </dd></dl>
  879. <dl class="py method">
  880. <dt class="sig sig-object py" id="decimal.Decimal.next_plus">
  881. <span class="sig-name descname"><span class="pre">next_plus</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.next_plus" title="Link to this definition">¶</a></dt>
  882. <dd><p>Return the smallest number representable in the given context (or in the
  883. current thread’s context if no context is given) that is larger than the
  884. given operand.</p>
  885. </dd></dl>
  886. <dl class="py method">
  887. <dt class="sig sig-object py" id="decimal.Decimal.next_toward">
  888. <span class="sig-name descname"><span class="pre">next_toward</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">other</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.next_toward" title="Link to this definition">¶</a></dt>
  889. <dd><p>If the two operands are unequal, return the number closest to the first
  890. operand in the direction of the second operand. If both operands are
  891. numerically equal, return a copy of the first operand with the sign set to
  892. be the same as the sign of the second operand.</p>
  893. </dd></dl>
  894. <dl class="py method">
  895. <dt class="sig sig-object py" id="decimal.Decimal.normalize">
  896. <span class="sig-name descname"><span class="pre">normalize</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.normalize" title="Link to this definition">¶</a></dt>
  897. <dd><p>Used for producing canonical values of an equivalence
  898. class within either the current context or the specified context.</p>
  899. <p>This has the same semantics as the unary plus operation, except that if
  900. the final result is finite it is reduced to its simplest form, with all
  901. trailing zeros removed and its sign preserved. That is, while the
  902. coefficient is non-zero and a multiple of ten the coefficient is divided
  903. by ten and the exponent is incremented by 1. Otherwise (the coefficient is
  904. zero) the exponent is set to 0. In all cases the sign is unchanged.</p>
  905. <p>For example, <code class="docutils literal notranslate"><span class="pre">Decimal('32.100')</span></code> and <code class="docutils literal notranslate"><span class="pre">Decimal('0.321000e+2')</span></code> both
  906. normalize to the equivalent value <code class="docutils literal notranslate"><span class="pre">Decimal('32.1')</span></code>.</p>
  907. <p>Note that rounding is applied <em>before</em> reducing to simplest form.</p>
  908. <p>In the latest versions of the specification, this operation is also known
  909. as <code class="docutils literal notranslate"><span class="pre">reduce</span></code>.</p>
  910. </dd></dl>
  911. <dl class="py method">
  912. <dt class="sig sig-object py" id="decimal.Decimal.number_class">
  913. <span class="sig-name descname"><span class="pre">number_class</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.number_class" title="Link to this definition">¶</a></dt>
  914. <dd><p>Return a string describing the <em>class</em> of the operand. The returned value
  915. is one of the following ten strings.</p>
  916. <ul class="simple">
  917. <li><p><code class="docutils literal notranslate"><span class="pre">&quot;-Infinity&quot;</span></code>, indicating that the operand is negative infinity.</p></li>
  918. <li><p><code class="docutils literal notranslate"><span class="pre">&quot;-Normal&quot;</span></code>, indicating that the operand is a negative normal number.</p></li>
  919. <li><p><code class="docutils literal notranslate"><span class="pre">&quot;-Subnormal&quot;</span></code>, indicating that the operand is negative and subnormal.</p></li>
  920. <li><p><code class="docutils literal notranslate"><span class="pre">&quot;-Zero&quot;</span></code>, indicating that the operand is a negative zero.</p></li>
  921. <li><p><code class="docutils literal notranslate"><span class="pre">&quot;+Zero&quot;</span></code>, indicating that the operand is a positive zero.</p></li>
  922. <li><p><code class="docutils literal notranslate"><span class="pre">&quot;+Subnormal&quot;</span></code>, indicating that the operand is positive and subnormal.</p></li>
  923. <li><p><code class="docutils literal notranslate"><span class="pre">&quot;+Normal&quot;</span></code>, indicating that the operand is a positive normal number.</p></li>
  924. <li><p><code class="docutils literal notranslate"><span class="pre">&quot;+Infinity&quot;</span></code>, indicating that the operand is positive infinity.</p></li>
  925. <li><p><code class="docutils literal notranslate"><span class="pre">&quot;NaN&quot;</span></code>, indicating that the operand is a quiet NaN (Not a Number).</p></li>
  926. <li><p><code class="docutils literal notranslate"><span class="pre">&quot;sNaN&quot;</span></code>, indicating that the operand is a signaling NaN.</p></li>
  927. </ul>
  928. </dd></dl>
  929. <dl class="py method">
  930. <dt class="sig sig-object py" id="decimal.Decimal.quantize">
  931. <span class="sig-name descname"><span class="pre">quantize</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">exp</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">rounding</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.quantize" title="Link to this definition">¶</a></dt>
  932. <dd><p>Return a value equal to the first operand after rounding and having the
  933. exponent of the second operand.</p>
  934. <div class="doctest highlight-default notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;1.41421356&#39;</span><span class="p">)</span><span class="o">.</span><span class="n">quantize</span><span class="p">(</span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;1.000&#39;</span><span class="p">))</span>
  935. <span class="go">Decimal(&#39;1.414&#39;)</span>
  936. </pre></div>
  937. </div>
  938. <p>Unlike other operations, if the length of the coefficient after the
  939. quantize operation would be greater than precision, then an
  940. <a class="reference internal" href="#decimal.InvalidOperation" title="decimal.InvalidOperation"><code class="xref py py-const docutils literal notranslate"><span class="pre">InvalidOperation</span></code></a> is signaled. This guarantees that, unless there
  941. is an error condition, the quantized exponent is always equal to that of
  942. the right-hand operand.</p>
  943. <p>Also unlike other operations, quantize never signals Underflow, even if
  944. the result is subnormal and inexact.</p>
  945. <p>If the exponent of the second operand is larger than that of the first
  946. then rounding may be necessary. In this case, the rounding mode is
  947. determined by the <code class="docutils literal notranslate"><span class="pre">rounding</span></code> argument if given, else by the given
  948. <code class="docutils literal notranslate"><span class="pre">context</span></code> argument; if neither argument is given the rounding mode of
  949. the current thread’s context is used.</p>
  950. <p>An error is returned whenever the resulting exponent is greater than
  951. <code class="xref py py-attr docutils literal notranslate"><span class="pre">Emax</span></code> or less than <a class="reference internal" href="#decimal.Context.Etiny" title="decimal.Context.Etiny"><code class="xref py py-meth docutils literal notranslate"><span class="pre">Etiny()</span></code></a>.</p>
  952. </dd></dl>
  953. <dl class="py method">
  954. <dt class="sig sig-object py" id="decimal.Decimal.radix">
  955. <span class="sig-name descname"><span class="pre">radix</span></span><span class="sig-paren">(</span><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.radix" title="Link to this definition">¶</a></dt>
  956. <dd><p>Return <code class="docutils literal notranslate"><span class="pre">Decimal(10)</span></code>, the radix (base) in which the <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a>
  957. class does all its arithmetic. Included for compatibility with the
  958. specification.</p>
  959. </dd></dl>
  960. <dl class="py method">
  961. <dt class="sig sig-object py" id="decimal.Decimal.remainder_near">
  962. <span class="sig-name descname"><span class="pre">remainder_near</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">other</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.remainder_near" title="Link to this definition">¶</a></dt>
  963. <dd><p>Return the remainder from dividing <em>self</em> by <em>other</em>. This differs from
  964. <code class="docutils literal notranslate"><span class="pre">self</span> <span class="pre">%</span> <span class="pre">other</span></code> in that the sign of the remainder is chosen so as to
  965. minimize its absolute value. More precisely, the return value is
  966. <code class="docutils literal notranslate"><span class="pre">self</span> <span class="pre">-</span> <span class="pre">n</span> <span class="pre">*</span> <span class="pre">other</span></code> where <code class="docutils literal notranslate"><span class="pre">n</span></code> is the integer nearest to the exact
  967. value of <code class="docutils literal notranslate"><span class="pre">self</span> <span class="pre">/</span> <span class="pre">other</span></code>, and if two integers are equally near then the
  968. even one is chosen.</p>
  969. <p>If the result is zero then its sign will be the sign of <em>self</em>.</p>
  970. <div class="doctest highlight-default notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="mi">18</span><span class="p">)</span><span class="o">.</span><span class="n">remainder_near</span><span class="p">(</span><span class="n">Decimal</span><span class="p">(</span><span class="mi">10</span><span class="p">))</span>
  971. <span class="go">Decimal(&#39;-2&#39;)</span>
  972. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="mi">25</span><span class="p">)</span><span class="o">.</span><span class="n">remainder_near</span><span class="p">(</span><span class="n">Decimal</span><span class="p">(</span><span class="mi">10</span><span class="p">))</span>
  973. <span class="go">Decimal(&#39;5&#39;)</span>
  974. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="mi">35</span><span class="p">)</span><span class="o">.</span><span class="n">remainder_near</span><span class="p">(</span><span class="n">Decimal</span><span class="p">(</span><span class="mi">10</span><span class="p">))</span>
  975. <span class="go">Decimal(&#39;-5&#39;)</span>
  976. </pre></div>
  977. </div>
  978. </dd></dl>
  979. <dl class="py method">
  980. <dt class="sig sig-object py" id="decimal.Decimal.rotate">
  981. <span class="sig-name descname"><span class="pre">rotate</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">other</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.rotate" title="Link to this definition">¶</a></dt>
  982. <dd><p>Return the result of rotating the digits of the first operand by an amount
  983. specified by the second operand. The second operand must be an integer in
  984. the range -precision through precision. The absolute value of the second
  985. operand gives the number of places to rotate. If the second operand is
  986. positive then rotation is to the left; otherwise rotation is to the right.
  987. The coefficient of the first operand is padded on the left with zeros to
  988. length precision if necessary. The sign and exponent of the first operand
  989. are unchanged.</p>
  990. </dd></dl>
  991. <dl class="py method">
  992. <dt class="sig sig-object py" id="decimal.Decimal.same_quantum">
  993. <span class="sig-name descname"><span class="pre">same_quantum</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">other</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.same_quantum" title="Link to this definition">¶</a></dt>
  994. <dd><p>Test whether self and other have the same exponent or whether both are
  995. <code class="docutils literal notranslate"><span class="pre">NaN</span></code>.</p>
  996. <p>This operation is unaffected by context and is quiet: no flags are changed
  997. and no rounding is performed. As an exception, the C version may raise
  998. InvalidOperation if the second operand cannot be converted exactly.</p>
  999. </dd></dl>
  1000. <dl class="py method">
  1001. <dt class="sig sig-object py" id="decimal.Decimal.scaleb">
  1002. <span class="sig-name descname"><span class="pre">scaleb</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">other</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.scaleb" title="Link to this definition">¶</a></dt>
  1003. <dd><p>Return the first operand with exponent adjusted by the second.
  1004. Equivalently, return the first operand multiplied by <code class="docutils literal notranslate"><span class="pre">10**other</span></code>. The
  1005. second operand must be an integer.</p>
  1006. </dd></dl>
  1007. <dl class="py method">
  1008. <dt class="sig sig-object py" id="decimal.Decimal.shift">
  1009. <span class="sig-name descname"><span class="pre">shift</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">other</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.shift" title="Link to this definition">¶</a></dt>
  1010. <dd><p>Return the result of shifting the digits of the first operand by an amount
  1011. specified by the second operand. The second operand must be an integer in
  1012. the range -precision through precision. The absolute value of the second
  1013. operand gives the number of places to shift. If the second operand is
  1014. positive then the shift is to the left; otherwise the shift is to the
  1015. right. Digits shifted into the coefficient are zeros. The sign and
  1016. exponent of the first operand are unchanged.</p>
  1017. </dd></dl>
  1018. <dl class="py method">
  1019. <dt class="sig sig-object py" id="decimal.Decimal.sqrt">
  1020. <span class="sig-name descname"><span class="pre">sqrt</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.sqrt" title="Link to this definition">¶</a></dt>
  1021. <dd><p>Return the square root of the argument to full precision.</p>
  1022. </dd></dl>
  1023. <dl class="py method">
  1024. <dt class="sig sig-object py" id="decimal.Decimal.to_eng_string">
  1025. <span class="sig-name descname"><span class="pre">to_eng_string</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.to_eng_string" title="Link to this definition">¶</a></dt>
  1026. <dd><p>Convert to a string, using engineering notation if an exponent is needed.</p>
  1027. <p>Engineering notation has an exponent which is a multiple of 3. This
  1028. can leave up to 3 digits to the left of the decimal place and may
  1029. require the addition of either one or two trailing zeros.</p>
  1030. <p>For example, this converts <code class="docutils literal notranslate"><span class="pre">Decimal('123E+1')</span></code> to <code class="docutils literal notranslate"><span class="pre">Decimal('1.23E+3')</span></code>.</p>
  1031. </dd></dl>
  1032. <dl class="py method">
  1033. <dt class="sig sig-object py" id="decimal.Decimal.to_integral">
  1034. <span class="sig-name descname"><span class="pre">to_integral</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">rounding</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.to_integral" title="Link to this definition">¶</a></dt>
  1035. <dd><p>Identical to the <a class="reference internal" href="#decimal.Decimal.to_integral_value" title="decimal.Decimal.to_integral_value"><code class="xref py py-meth docutils literal notranslate"><span class="pre">to_integral_value()</span></code></a> method. The <code class="docutils literal notranslate"><span class="pre">to_integral</span></code>
  1036. name has been kept for compatibility with older versions.</p>
  1037. </dd></dl>
  1038. <dl class="py method">
  1039. <dt class="sig sig-object py" id="decimal.Decimal.to_integral_exact">
  1040. <span class="sig-name descname"><span class="pre">to_integral_exact</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">rounding</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.to_integral_exact" title="Link to this definition">¶</a></dt>
  1041. <dd><p>Round to the nearest integer, signaling <a class="reference internal" href="#decimal.Inexact" title="decimal.Inexact"><code class="xref py py-const docutils literal notranslate"><span class="pre">Inexact</span></code></a> or
  1042. <a class="reference internal" href="#decimal.Rounded" title="decimal.Rounded"><code class="xref py py-const docutils literal notranslate"><span class="pre">Rounded</span></code></a> as appropriate if rounding occurs. The rounding mode is
  1043. determined by the <code class="docutils literal notranslate"><span class="pre">rounding</span></code> parameter if given, else by the given
  1044. <code class="docutils literal notranslate"><span class="pre">context</span></code>. If neither parameter is given then the rounding mode of the
  1045. current context is used.</p>
  1046. </dd></dl>
  1047. <dl class="py method">
  1048. <dt class="sig sig-object py" id="decimal.Decimal.to_integral_value">
  1049. <span class="sig-name descname"><span class="pre">to_integral_value</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">rounding</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">context</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Decimal.to_integral_value" title="Link to this definition">¶</a></dt>
  1050. <dd><p>Round to the nearest integer without signaling <a class="reference internal" href="#decimal.Inexact" title="decimal.Inexact"><code class="xref py py-const docutils literal notranslate"><span class="pre">Inexact</span></code></a> or
  1051. <a class="reference internal" href="#decimal.Rounded" title="decimal.Rounded"><code class="xref py py-const docutils literal notranslate"><span class="pre">Rounded</span></code></a>. If given, applies <em>rounding</em>; otherwise, uses the
  1052. rounding method in either the supplied <em>context</em> or the current context.</p>
  1053. </dd></dl>
  1054. </dd></dl>
  1055. <section id="logical-operands">
  1056. <span id="logical-operands-label"></span><h3>Logical operands<a class="headerlink" href="#logical-operands" title="Link to this heading">¶</a></h3>
  1057. <p>The <a class="reference internal" href="#decimal.Decimal.logical_and" title="decimal.Decimal.logical_and"><code class="xref py py-meth docutils literal notranslate"><span class="pre">logical_and()</span></code></a>, <a class="reference internal" href="#decimal.Decimal.logical_invert" title="decimal.Decimal.logical_invert"><code class="xref py py-meth docutils literal notranslate"><span class="pre">logical_invert()</span></code></a>, <a class="reference internal" href="#decimal.Decimal.logical_or" title="decimal.Decimal.logical_or"><code class="xref py py-meth docutils literal notranslate"><span class="pre">logical_or()</span></code></a>,
  1058. and <a class="reference internal" href="#decimal.Decimal.logical_xor" title="decimal.Decimal.logical_xor"><code class="xref py py-meth docutils literal notranslate"><span class="pre">logical_xor()</span></code></a> methods expect their arguments to be <em>logical
  1059. operands</em>. A <em>logical operand</em> is a <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a> instance whose
  1060. exponent and sign are both zero, and whose digits are all either
  1061. <code class="docutils literal notranslate"><span class="pre">0</span></code> or <code class="docutils literal notranslate"><span class="pre">1</span></code>.</p>
  1062. </section>
  1063. </section>
  1064. <section id="context-objects">
  1065. <span id="decimal-context"></span><h2>Context objects<a class="headerlink" href="#context-objects" title="Link to this heading">¶</a></h2>
  1066. <p>Contexts are environments for arithmetic operations. They govern precision, set
  1067. rules for rounding, determine which signals are treated as exceptions, and limit
  1068. the range for exponents.</p>
  1069. <p>Each thread has its own current context which is accessed or changed using the
  1070. <a class="reference internal" href="#decimal.getcontext" title="decimal.getcontext"><code class="xref py py-func docutils literal notranslate"><span class="pre">getcontext()</span></code></a> and <a class="reference internal" href="#decimal.setcontext" title="decimal.setcontext"><code class="xref py py-func docutils literal notranslate"><span class="pre">setcontext()</span></code></a> functions:</p>
  1071. <dl class="py function">
  1072. <dt class="sig sig-object py" id="decimal.getcontext">
  1073. <span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">getcontext</span></span><span class="sig-paren">(</span><span class="sig-paren">)</span><a class="headerlink" href="#decimal.getcontext" title="Link to this definition">¶</a></dt>
  1074. <dd><p>Return the current context for the active thread.</p>
  1075. </dd></dl>
  1076. <dl class="py function">
  1077. <dt class="sig sig-object py" id="decimal.setcontext">
  1078. <span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">setcontext</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">c</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.setcontext" title="Link to this definition">¶</a></dt>
  1079. <dd><p>Set the current context for the active thread to <em>c</em>.</p>
  1080. </dd></dl>
  1081. <p>You can also use the <a class="reference internal" href="../reference/compound_stmts.html#with"><code class="xref std std-keyword docutils literal notranslate"><span class="pre">with</span></code></a> statement and the <a class="reference internal" href="#decimal.localcontext" title="decimal.localcontext"><code class="xref py py-func docutils literal notranslate"><span class="pre">localcontext()</span></code></a>
  1082. function to temporarily change the active context.</p>
  1083. <dl class="py function">
  1084. <dt class="sig sig-object py" id="decimal.localcontext">
  1085. <span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">localcontext</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">ctx</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em>, <em class="sig-param"><span class="o"><span class="pre">**</span></span><span class="n"><span class="pre">kwargs</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.localcontext" title="Link to this definition">¶</a></dt>
  1086. <dd><p>Return a context manager that will set the current context for the active thread
  1087. to a copy of <em>ctx</em> on entry to the with-statement and restore the previous context
  1088. when exiting the with-statement. If no context is specified, a copy of the
  1089. current context is used. The <em>kwargs</em> argument is used to set the attributes
  1090. of the new context.</p>
  1091. <p>For example, the following code sets the current decimal precision to 42 places,
  1092. performs a calculation, and then automatically restores the previous context:</p>
  1093. <div class="highlight-python3 notranslate"><div class="highlight"><pre><span></span><span class="kn">from</span> <span class="nn">decimal</span> <span class="kn">import</span> <span class="n">localcontext</span>
  1094. <span class="k">with</span> <span class="n">localcontext</span><span class="p">()</span> <span class="k">as</span> <span class="n">ctx</span><span class="p">:</span>
  1095. <span class="n">ctx</span><span class="o">.</span><span class="n">prec</span> <span class="o">=</span> <span class="mi">42</span> <span class="c1"># Perform a high precision calculation</span>
  1096. <span class="n">s</span> <span class="o">=</span> <span class="n">calculate_something</span><span class="p">()</span>
  1097. <span class="n">s</span> <span class="o">=</span> <span class="o">+</span><span class="n">s</span> <span class="c1"># Round the final result back to the default precision</span>
  1098. </pre></div>
  1099. </div>
  1100. <p>Using keyword arguments, the code would be the following:</p>
  1101. <div class="highlight-python3 notranslate"><div class="highlight"><pre><span></span><span class="kn">from</span> <span class="nn">decimal</span> <span class="kn">import</span> <span class="n">localcontext</span>
  1102. <span class="k">with</span> <span class="n">localcontext</span><span class="p">(</span><span class="n">prec</span><span class="o">=</span><span class="mi">42</span><span class="p">)</span> <span class="k">as</span> <span class="n">ctx</span><span class="p">:</span>
  1103. <span class="n">s</span> <span class="o">=</span> <span class="n">calculate_something</span><span class="p">()</span>
  1104. <span class="n">s</span> <span class="o">=</span> <span class="o">+</span><span class="n">s</span>
  1105. </pre></div>
  1106. </div>
  1107. <p>Raises <a class="reference internal" href="exceptions.html#TypeError" title="TypeError"><code class="xref py py-exc docutils literal notranslate"><span class="pre">TypeError</span></code></a> if <em>kwargs</em> supplies an attribute that <a class="reference internal" href="#decimal.Context" title="decimal.Context"><code class="xref py py-class docutils literal notranslate"><span class="pre">Context</span></code></a> doesn’t
  1108. support. Raises either <a class="reference internal" href="exceptions.html#TypeError" title="TypeError"><code class="xref py py-exc docutils literal notranslate"><span class="pre">TypeError</span></code></a> or <a class="reference internal" href="exceptions.html#ValueError" title="ValueError"><code class="xref py py-exc docutils literal notranslate"><span class="pre">ValueError</span></code></a> if <em>kwargs</em> supplies an
  1109. invalid value for an attribute.</p>
  1110. <div class="versionchanged">
  1111. <p><span class="versionmodified changed">Changed in version 3.11: </span><a class="reference internal" href="#decimal.localcontext" title="decimal.localcontext"><code class="xref py py-meth docutils literal notranslate"><span class="pre">localcontext()</span></code></a> now supports setting context attributes through the use of keyword arguments.</p>
  1112. </div>
  1113. </dd></dl>
  1114. <p>New contexts can also be created using the <a class="reference internal" href="#decimal.Context" title="decimal.Context"><code class="xref py py-class docutils literal notranslate"><span class="pre">Context</span></code></a> constructor
  1115. described below. In addition, the module provides three pre-made contexts:</p>
  1116. <dl class="py class">
  1117. <dt class="sig sig-object py" id="decimal.BasicContext">
  1118. <em class="property"><span class="pre">class</span><span class="w"> </span></em><span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">BasicContext</span></span><a class="headerlink" href="#decimal.BasicContext" title="Link to this definition">¶</a></dt>
  1119. <dd><p>This is a standard context defined by the General Decimal Arithmetic
  1120. Specification. Precision is set to nine. Rounding is set to
  1121. <a class="reference internal" href="#decimal.ROUND_HALF_UP" title="decimal.ROUND_HALF_UP"><code class="xref py py-const docutils literal notranslate"><span class="pre">ROUND_HALF_UP</span></code></a>. All flags are cleared. All traps are enabled (treated
  1122. as exceptions) except <a class="reference internal" href="#decimal.Inexact" title="decimal.Inexact"><code class="xref py py-const docutils literal notranslate"><span class="pre">Inexact</span></code></a>, <a class="reference internal" href="#decimal.Rounded" title="decimal.Rounded"><code class="xref py py-const docutils literal notranslate"><span class="pre">Rounded</span></code></a>, and
  1123. <a class="reference internal" href="#decimal.Subnormal" title="decimal.Subnormal"><code class="xref py py-const docutils literal notranslate"><span class="pre">Subnormal</span></code></a>.</p>
  1124. <p>Because many of the traps are enabled, this context is useful for debugging.</p>
  1125. </dd></dl>
  1126. <dl class="py class">
  1127. <dt class="sig sig-object py" id="decimal.ExtendedContext">
  1128. <em class="property"><span class="pre">class</span><span class="w"> </span></em><span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">ExtendedContext</span></span><a class="headerlink" href="#decimal.ExtendedContext" title="Link to this definition">¶</a></dt>
  1129. <dd><p>This is a standard context defined by the General Decimal Arithmetic
  1130. Specification. Precision is set to nine. Rounding is set to
  1131. <a class="reference internal" href="#decimal.ROUND_HALF_EVEN" title="decimal.ROUND_HALF_EVEN"><code class="xref py py-const docutils literal notranslate"><span class="pre">ROUND_HALF_EVEN</span></code></a>. All flags are cleared. No traps are enabled (so that
  1132. exceptions are not raised during computations).</p>
  1133. <p>Because the traps are disabled, this context is useful for applications that
  1134. prefer to have result value of <code class="docutils literal notranslate"><span class="pre">NaN</span></code> or <code class="docutils literal notranslate"><span class="pre">Infinity</span></code> instead of
  1135. raising exceptions. This allows an application to complete a run in the
  1136. presence of conditions that would otherwise halt the program.</p>
  1137. </dd></dl>
  1138. <dl class="py class">
  1139. <dt class="sig sig-object py" id="decimal.DefaultContext">
  1140. <em class="property"><span class="pre">class</span><span class="w"> </span></em><span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">DefaultContext</span></span><a class="headerlink" href="#decimal.DefaultContext" title="Link to this definition">¶</a></dt>
  1141. <dd><p>This context is used by the <a class="reference internal" href="#decimal.Context" title="decimal.Context"><code class="xref py py-class docutils literal notranslate"><span class="pre">Context</span></code></a> constructor as a prototype for new
  1142. contexts. Changing a field (such a precision) has the effect of changing the
  1143. default for new contexts created by the <a class="reference internal" href="#decimal.Context" title="decimal.Context"><code class="xref py py-class docutils literal notranslate"><span class="pre">Context</span></code></a> constructor.</p>
  1144. <p>This context is most useful in multi-threaded environments. Changing one of the
  1145. fields before threads are started has the effect of setting system-wide
  1146. defaults. Changing the fields after threads have started is not recommended as
  1147. it would require thread synchronization to prevent race conditions.</p>
  1148. <p>In single threaded environments, it is preferable to not use this context at
  1149. all. Instead, simply create contexts explicitly as described below.</p>
  1150. <p>The default values are <code class="xref py py-attr docutils literal notranslate"><span class="pre">Context.prec</span></code>=<code class="docutils literal notranslate"><span class="pre">28</span></code>,
  1151. <code class="xref py py-attr docutils literal notranslate"><span class="pre">Context.rounding</span></code>=<a class="reference internal" href="#decimal.ROUND_HALF_EVEN" title="decimal.ROUND_HALF_EVEN"><code class="xref py py-const docutils literal notranslate"><span class="pre">ROUND_HALF_EVEN</span></code></a>,
  1152. and enabled traps for <a class="reference internal" href="#decimal.Overflow" title="decimal.Overflow"><code class="xref py py-class docutils literal notranslate"><span class="pre">Overflow</span></code></a>, <a class="reference internal" href="#decimal.InvalidOperation" title="decimal.InvalidOperation"><code class="xref py py-class docutils literal notranslate"><span class="pre">InvalidOperation</span></code></a>, and
  1153. <a class="reference internal" href="#decimal.DivisionByZero" title="decimal.DivisionByZero"><code class="xref py py-class docutils literal notranslate"><span class="pre">DivisionByZero</span></code></a>.</p>
  1154. </dd></dl>
  1155. <p>In addition to the three supplied contexts, new contexts can be created with the
  1156. <a class="reference internal" href="#decimal.Context" title="decimal.Context"><code class="xref py py-class docutils literal notranslate"><span class="pre">Context</span></code></a> constructor.</p>
  1157. <dl class="py class">
  1158. <dt class="sig sig-object py" id="decimal.Context">
  1159. <em class="property"><span class="pre">class</span><span class="w"> </span></em><span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">Context</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">prec</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">rounding</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">Emin</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">Emax</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">capitals</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">clamp</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">flags</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">traps</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context" title="Link to this definition">¶</a></dt>
  1160. <dd><p>Creates a new context. If a field is not specified or is <a class="reference internal" href="constants.html#None" title="None"><code class="xref py py-const docutils literal notranslate"><span class="pre">None</span></code></a>, the
  1161. default values are copied from the <a class="reference internal" href="#decimal.DefaultContext" title="decimal.DefaultContext"><code class="xref py py-const docutils literal notranslate"><span class="pre">DefaultContext</span></code></a>. If the <em>flags</em>
  1162. field is not specified or is <a class="reference internal" href="constants.html#None" title="None"><code class="xref py py-const docutils literal notranslate"><span class="pre">None</span></code></a>, all flags are cleared.</p>
  1163. <p><em>prec</em> is an integer in the range [<code class="docutils literal notranslate"><span class="pre">1</span></code>, <a class="reference internal" href="#decimal.MAX_PREC" title="decimal.MAX_PREC"><code class="xref py py-const docutils literal notranslate"><span class="pre">MAX_PREC</span></code></a>] that sets
  1164. the precision for arithmetic operations in the context.</p>
  1165. <p>The <em>rounding</em> option is one of the constants listed in the section
  1166. <a class="reference internal" href="#rounding-modes">Rounding Modes</a>.</p>
  1167. <p>The <em>traps</em> and <em>flags</em> fields list any signals to be set. Generally, new
  1168. contexts should only set traps and leave the flags clear.</p>
  1169. <p>The <em>Emin</em> and <em>Emax</em> fields are integers specifying the outer limits allowable
  1170. for exponents. <em>Emin</em> must be in the range [<a class="reference internal" href="#decimal.MIN_EMIN" title="decimal.MIN_EMIN"><code class="xref py py-const docutils literal notranslate"><span class="pre">MIN_EMIN</span></code></a>, <code class="docutils literal notranslate"><span class="pre">0</span></code>],
  1171. <em>Emax</em> in the range [<code class="docutils literal notranslate"><span class="pre">0</span></code>, <a class="reference internal" href="#decimal.MAX_EMAX" title="decimal.MAX_EMAX"><code class="xref py py-const docutils literal notranslate"><span class="pre">MAX_EMAX</span></code></a>].</p>
  1172. <p>The <em>capitals</em> field is either <code class="docutils literal notranslate"><span class="pre">0</span></code> or <code class="docutils literal notranslate"><span class="pre">1</span></code> (the default). If set to
  1173. <code class="docutils literal notranslate"><span class="pre">1</span></code>, exponents are printed with a capital <code class="docutils literal notranslate"><span class="pre">E</span></code>; otherwise, a
  1174. lowercase <code class="docutils literal notranslate"><span class="pre">e</span></code> is used: <code class="docutils literal notranslate"><span class="pre">Decimal('6.02e+23')</span></code>.</p>
  1175. <p>The <em>clamp</em> field is either <code class="docutils literal notranslate"><span class="pre">0</span></code> (the default) or <code class="docutils literal notranslate"><span class="pre">1</span></code>.
  1176. If set to <code class="docutils literal notranslate"><span class="pre">1</span></code>, the exponent <code class="docutils literal notranslate"><span class="pre">e</span></code> of a <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a>
  1177. instance representable in this context is strictly limited to the
  1178. range <code class="docutils literal notranslate"><span class="pre">Emin</span> <span class="pre">-</span> <span class="pre">prec</span> <span class="pre">+</span> <span class="pre">1</span> <span class="pre">&lt;=</span> <span class="pre">e</span> <span class="pre">&lt;=</span> <span class="pre">Emax</span> <span class="pre">-</span> <span class="pre">prec</span> <span class="pre">+</span> <span class="pre">1</span></code>. If <em>clamp</em> is
  1179. <code class="docutils literal notranslate"><span class="pre">0</span></code> then a weaker condition holds: the adjusted exponent of
  1180. the <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a> instance is at most <code class="xref py py-attr docutils literal notranslate"><span class="pre">Emax</span></code>. When <em>clamp</em> is
  1181. <code class="docutils literal notranslate"><span class="pre">1</span></code>, a large normal number will, where possible, have its
  1182. exponent reduced and a corresponding number of zeros added to its
  1183. coefficient, in order to fit the exponent constraints; this
  1184. preserves the value of the number but loses information about
  1185. significant trailing zeros. For example:</p>
  1186. <div class="highlight-python3 notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">Context</span><span class="p">(</span><span class="n">prec</span><span class="o">=</span><span class="mi">6</span><span class="p">,</span> <span class="n">Emax</span><span class="o">=</span><span class="mi">999</span><span class="p">,</span> <span class="n">clamp</span><span class="o">=</span><span class="mi">1</span><span class="p">)</span><span class="o">.</span><span class="n">create_decimal</span><span class="p">(</span><span class="s1">&#39;1.23e999&#39;</span><span class="p">)</span>
  1187. <span class="go">Decimal(&#39;1.23000E+999&#39;)</span>
  1188. </pre></div>
  1189. </div>
  1190. <p>A <em>clamp</em> value of <code class="docutils literal notranslate"><span class="pre">1</span></code> allows compatibility with the
  1191. fixed-width decimal interchange formats specified in IEEE 754.</p>
  1192. <p>The <a class="reference internal" href="#decimal.Context" title="decimal.Context"><code class="xref py py-class docutils literal notranslate"><span class="pre">Context</span></code></a> class defines several general purpose methods as well as
  1193. a large number of methods for doing arithmetic directly in a given context.
  1194. In addition, for each of the <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a> methods described above (with
  1195. the exception of the <a class="reference internal" href="#decimal.Decimal.adjusted" title="decimal.Decimal.adjusted"><code class="xref py py-meth docutils literal notranslate"><span class="pre">adjusted()</span></code></a> and <a class="reference internal" href="#decimal.Decimal.as_tuple" title="decimal.Decimal.as_tuple"><code class="xref py py-meth docutils literal notranslate"><span class="pre">as_tuple()</span></code></a> methods) there is
  1196. a corresponding <a class="reference internal" href="#decimal.Context" title="decimal.Context"><code class="xref py py-class docutils literal notranslate"><span class="pre">Context</span></code></a> method. For example, for a <a class="reference internal" href="#decimal.Context" title="decimal.Context"><code class="xref py py-class docutils literal notranslate"><span class="pre">Context</span></code></a>
  1197. instance <code class="docutils literal notranslate"><span class="pre">C</span></code> and <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a> instance <code class="docutils literal notranslate"><span class="pre">x</span></code>, <code class="docutils literal notranslate"><span class="pre">C.exp(x)</span></code> is
  1198. equivalent to <code class="docutils literal notranslate"><span class="pre">x.exp(context=C)</span></code>. Each <a class="reference internal" href="#decimal.Context" title="decimal.Context"><code class="xref py py-class docutils literal notranslate"><span class="pre">Context</span></code></a> method accepts a
  1199. Python integer (an instance of <a class="reference internal" href="functions.html#int" title="int"><code class="xref py py-class docutils literal notranslate"><span class="pre">int</span></code></a>) anywhere that a
  1200. Decimal instance is accepted.</p>
  1201. <dl class="py method">
  1202. <dt class="sig sig-object py" id="decimal.Context.clear_flags">
  1203. <span class="sig-name descname"><span class="pre">clear_flags</span></span><span class="sig-paren">(</span><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.clear_flags" title="Link to this definition">¶</a></dt>
  1204. <dd><p>Resets all of the flags to <code class="docutils literal notranslate"><span class="pre">0</span></code>.</p>
  1205. </dd></dl>
  1206. <dl class="py method">
  1207. <dt class="sig sig-object py" id="decimal.Context.clear_traps">
  1208. <span class="sig-name descname"><span class="pre">clear_traps</span></span><span class="sig-paren">(</span><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.clear_traps" title="Link to this definition">¶</a></dt>
  1209. <dd><p>Resets all of the traps to <code class="docutils literal notranslate"><span class="pre">0</span></code>.</p>
  1210. <div class="versionadded">
  1211. <p><span class="versionmodified added">New in version 3.3.</span></p>
  1212. </div>
  1213. </dd></dl>
  1214. <dl class="py method">
  1215. <dt class="sig sig-object py" id="decimal.Context.copy">
  1216. <span class="sig-name descname"><span class="pre">copy</span></span><span class="sig-paren">(</span><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.copy" title="Link to this definition">¶</a></dt>
  1217. <dd><p>Return a duplicate of the context.</p>
  1218. </dd></dl>
  1219. <dl class="py method">
  1220. <dt class="sig sig-object py" id="decimal.Context.copy_decimal">
  1221. <span class="sig-name descname"><span class="pre">copy_decimal</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">num</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.copy_decimal" title="Link to this definition">¶</a></dt>
  1222. <dd><p>Return a copy of the Decimal instance num.</p>
  1223. </dd></dl>
  1224. <dl class="py method">
  1225. <dt class="sig sig-object py" id="decimal.Context.create_decimal">
  1226. <span class="sig-name descname"><span class="pre">create_decimal</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">num</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.create_decimal" title="Link to this definition">¶</a></dt>
  1227. <dd><p>Creates a new Decimal instance from <em>num</em> but using <em>self</em> as
  1228. context. Unlike the <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a> constructor, the context precision,
  1229. rounding method, flags, and traps are applied to the conversion.</p>
  1230. <p>This is useful because constants are often given to a greater precision
  1231. than is needed by the application. Another benefit is that rounding
  1232. immediately eliminates unintended effects from digits beyond the current
  1233. precision. In the following example, using unrounded inputs means that
  1234. adding zero to a sum can change the result:</p>
  1235. <div class="highlight-pycon notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">getcontext</span><span class="p">()</span><span class="o">.</span><span class="n">prec</span> <span class="o">=</span> <span class="mi">3</span>
  1236. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;3.4445&#39;</span><span class="p">)</span> <span class="o">+</span> <span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;1.0023&#39;</span><span class="p">)</span>
  1237. <span class="go">Decimal(&#39;4.45&#39;)</span>
  1238. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;3.4445&#39;</span><span class="p">)</span> <span class="o">+</span> <span class="n">Decimal</span><span class="p">(</span><span class="mi">0</span><span class="p">)</span> <span class="o">+</span> <span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;1.0023&#39;</span><span class="p">)</span>
  1239. <span class="go">Decimal(&#39;4.44&#39;)</span>
  1240. </pre></div>
  1241. </div>
  1242. <p>This method implements the to-number operation of the IBM specification.
  1243. If the argument is a string, no leading or trailing whitespace or
  1244. underscores are permitted.</p>
  1245. </dd></dl>
  1246. <dl class="py method">
  1247. <dt class="sig sig-object py" id="decimal.Context.create_decimal_from_float">
  1248. <span class="sig-name descname"><span class="pre">create_decimal_from_float</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">f</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.create_decimal_from_float" title="Link to this definition">¶</a></dt>
  1249. <dd><p>Creates a new Decimal instance from a float <em>f</em> but rounding using <em>self</em>
  1250. as the context. Unlike the <a class="reference internal" href="#decimal.Decimal.from_float" title="decimal.Decimal.from_float"><code class="xref py py-meth docutils literal notranslate"><span class="pre">Decimal.from_float()</span></code></a> class method,
  1251. the context precision, rounding method, flags, and traps are applied to
  1252. the conversion.</p>
  1253. <div class="highlight-pycon notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">context</span> <span class="o">=</span> <span class="n">Context</span><span class="p">(</span><span class="n">prec</span><span class="o">=</span><span class="mi">5</span><span class="p">,</span> <span class="n">rounding</span><span class="o">=</span><span class="n">ROUND_DOWN</span><span class="p">)</span>
  1254. <span class="gp">&gt;&gt;&gt; </span><span class="n">context</span><span class="o">.</span><span class="n">create_decimal_from_float</span><span class="p">(</span><span class="n">math</span><span class="o">.</span><span class="n">pi</span><span class="p">)</span>
  1255. <span class="go">Decimal(&#39;3.1415&#39;)</span>
  1256. <span class="gp">&gt;&gt;&gt; </span><span class="n">context</span> <span class="o">=</span> <span class="n">Context</span><span class="p">(</span><span class="n">prec</span><span class="o">=</span><span class="mi">5</span><span class="p">,</span> <span class="n">traps</span><span class="o">=</span><span class="p">[</span><span class="n">Inexact</span><span class="p">])</span>
  1257. <span class="gp">&gt;&gt;&gt; </span><span class="n">context</span><span class="o">.</span><span class="n">create_decimal_from_float</span><span class="p">(</span><span class="n">math</span><span class="o">.</span><span class="n">pi</span><span class="p">)</span>
  1258. <span class="gt">Traceback (most recent call last):</span>
  1259. <span class="w"> </span><span class="o">...</span>
  1260. <span class="gr">decimal.Inexact</span>: <span class="n">None</span>
  1261. </pre></div>
  1262. </div>
  1263. <div class="versionadded">
  1264. <p><span class="versionmodified added">New in version 3.1.</span></p>
  1265. </div>
  1266. </dd></dl>
  1267. <dl class="py method">
  1268. <dt class="sig sig-object py" id="decimal.Context.Etiny">
  1269. <span class="sig-name descname"><span class="pre">Etiny</span></span><span class="sig-paren">(</span><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.Etiny" title="Link to this definition">¶</a></dt>
  1270. <dd><p>Returns a value equal to <code class="docutils literal notranslate"><span class="pre">Emin</span> <span class="pre">-</span> <span class="pre">prec</span> <span class="pre">+</span> <span class="pre">1</span></code> which is the minimum exponent
  1271. value for subnormal results. When underflow occurs, the exponent is set
  1272. to <a class="reference internal" href="#decimal.Context.Etiny" title="decimal.Context.Etiny"><code class="xref py py-const docutils literal notranslate"><span class="pre">Etiny</span></code></a>.</p>
  1273. </dd></dl>
  1274. <dl class="py method">
  1275. <dt class="sig sig-object py" id="decimal.Context.Etop">
  1276. <span class="sig-name descname"><span class="pre">Etop</span></span><span class="sig-paren">(</span><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.Etop" title="Link to this definition">¶</a></dt>
  1277. <dd><p>Returns a value equal to <code class="docutils literal notranslate"><span class="pre">Emax</span> <span class="pre">-</span> <span class="pre">prec</span> <span class="pre">+</span> <span class="pre">1</span></code>.</p>
  1278. </dd></dl>
  1279. <p>The usual approach to working with decimals is to create <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a>
  1280. instances and then apply arithmetic operations which take place within the
  1281. current context for the active thread. An alternative approach is to use
  1282. context methods for calculating within a specific context. The methods are
  1283. similar to those for the <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a> class and are only briefly
  1284. recounted here.</p>
  1285. <dl class="py method">
  1286. <dt class="sig sig-object py" id="decimal.Context.abs">
  1287. <span class="sig-name descname"><span class="pre">abs</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.abs" title="Link to this definition">¶</a></dt>
  1288. <dd><p>Returns the absolute value of <em>x</em>.</p>
  1289. </dd></dl>
  1290. <dl class="py method">
  1291. <dt class="sig sig-object py" id="decimal.Context.add">
  1292. <span class="sig-name descname"><span class="pre">add</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.add" title="Link to this definition">¶</a></dt>
  1293. <dd><p>Return the sum of <em>x</em> and <em>y</em>.</p>
  1294. </dd></dl>
  1295. <dl class="py method">
  1296. <dt class="sig sig-object py" id="decimal.Context.canonical">
  1297. <span class="sig-name descname"><span class="pre">canonical</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.canonical" title="Link to this definition">¶</a></dt>
  1298. <dd><p>Returns the same Decimal object <em>x</em>.</p>
  1299. </dd></dl>
  1300. <dl class="py method">
  1301. <dt class="sig sig-object py" id="decimal.Context.compare">
  1302. <span class="sig-name descname"><span class="pre">compare</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.compare" title="Link to this definition">¶</a></dt>
  1303. <dd><p>Compares <em>x</em> and <em>y</em> numerically.</p>
  1304. </dd></dl>
  1305. <dl class="py method">
  1306. <dt class="sig sig-object py" id="decimal.Context.compare_signal">
  1307. <span class="sig-name descname"><span class="pre">compare_signal</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.compare_signal" title="Link to this definition">¶</a></dt>
  1308. <dd><p>Compares the values of the two operands numerically.</p>
  1309. </dd></dl>
  1310. <dl class="py method">
  1311. <dt class="sig sig-object py" id="decimal.Context.compare_total">
  1312. <span class="sig-name descname"><span class="pre">compare_total</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.compare_total" title="Link to this definition">¶</a></dt>
  1313. <dd><p>Compares two operands using their abstract representation.</p>
  1314. </dd></dl>
  1315. <dl class="py method">
  1316. <dt class="sig sig-object py" id="decimal.Context.compare_total_mag">
  1317. <span class="sig-name descname"><span class="pre">compare_total_mag</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.compare_total_mag" title="Link to this definition">¶</a></dt>
  1318. <dd><p>Compares two operands using their abstract representation, ignoring sign.</p>
  1319. </dd></dl>
  1320. <dl class="py method">
  1321. <dt class="sig sig-object py" id="decimal.Context.copy_abs">
  1322. <span class="sig-name descname"><span class="pre">copy_abs</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.copy_abs" title="Link to this definition">¶</a></dt>
  1323. <dd><p>Returns a copy of <em>x</em> with the sign set to 0.</p>
  1324. </dd></dl>
  1325. <dl class="py method">
  1326. <dt class="sig sig-object py" id="decimal.Context.copy_negate">
  1327. <span class="sig-name descname"><span class="pre">copy_negate</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.copy_negate" title="Link to this definition">¶</a></dt>
  1328. <dd><p>Returns a copy of <em>x</em> with the sign inverted.</p>
  1329. </dd></dl>
  1330. <dl class="py method">
  1331. <dt class="sig sig-object py" id="decimal.Context.copy_sign">
  1332. <span class="sig-name descname"><span class="pre">copy_sign</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.copy_sign" title="Link to this definition">¶</a></dt>
  1333. <dd><p>Copies the sign from <em>y</em> to <em>x</em>.</p>
  1334. </dd></dl>
  1335. <dl class="py method">
  1336. <dt class="sig sig-object py" id="decimal.Context.divide">
  1337. <span class="sig-name descname"><span class="pre">divide</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.divide" title="Link to this definition">¶</a></dt>
  1338. <dd><p>Return <em>x</em> divided by <em>y</em>.</p>
  1339. </dd></dl>
  1340. <dl class="py method">
  1341. <dt class="sig sig-object py" id="decimal.Context.divide_int">
  1342. <span class="sig-name descname"><span class="pre">divide_int</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.divide_int" title="Link to this definition">¶</a></dt>
  1343. <dd><p>Return <em>x</em> divided by <em>y</em>, truncated to an integer.</p>
  1344. </dd></dl>
  1345. <dl class="py method">
  1346. <dt class="sig sig-object py" id="decimal.Context.divmod">
  1347. <span class="sig-name descname"><span class="pre">divmod</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.divmod" title="Link to this definition">¶</a></dt>
  1348. <dd><p>Divides two numbers and returns the integer part of the result.</p>
  1349. </dd></dl>
  1350. <dl class="py method">
  1351. <dt class="sig sig-object py" id="decimal.Context.exp">
  1352. <span class="sig-name descname"><span class="pre">exp</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.exp" title="Link to this definition">¶</a></dt>
  1353. <dd><p>Returns <code class="docutils literal notranslate"><span class="pre">e</span> <span class="pre">**</span> <span class="pre">x</span></code>.</p>
  1354. </dd></dl>
  1355. <dl class="py method">
  1356. <dt class="sig sig-object py" id="decimal.Context.fma">
  1357. <span class="sig-name descname"><span class="pre">fma</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">z</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.fma" title="Link to this definition">¶</a></dt>
  1358. <dd><p>Returns <em>x</em> multiplied by <em>y</em>, plus <em>z</em>.</p>
  1359. </dd></dl>
  1360. <dl class="py method">
  1361. <dt class="sig sig-object py" id="decimal.Context.is_canonical">
  1362. <span class="sig-name descname"><span class="pre">is_canonical</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.is_canonical" title="Link to this definition">¶</a></dt>
  1363. <dd><p>Returns <code class="docutils literal notranslate"><span class="pre">True</span></code> if <em>x</em> is canonical; otherwise returns <code class="docutils literal notranslate"><span class="pre">False</span></code>.</p>
  1364. </dd></dl>
  1365. <dl class="py method">
  1366. <dt class="sig sig-object py" id="decimal.Context.is_finite">
  1367. <span class="sig-name descname"><span class="pre">is_finite</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.is_finite" title="Link to this definition">¶</a></dt>
  1368. <dd><p>Returns <code class="docutils literal notranslate"><span class="pre">True</span></code> if <em>x</em> is finite; otherwise returns <code class="docutils literal notranslate"><span class="pre">False</span></code>.</p>
  1369. </dd></dl>
  1370. <dl class="py method">
  1371. <dt class="sig sig-object py" id="decimal.Context.is_infinite">
  1372. <span class="sig-name descname"><span class="pre">is_infinite</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.is_infinite" title="Link to this definition">¶</a></dt>
  1373. <dd><p>Returns <code class="docutils literal notranslate"><span class="pre">True</span></code> if <em>x</em> is infinite; otherwise returns <code class="docutils literal notranslate"><span class="pre">False</span></code>.</p>
  1374. </dd></dl>
  1375. <dl class="py method">
  1376. <dt class="sig sig-object py" id="decimal.Context.is_nan">
  1377. <span class="sig-name descname"><span class="pre">is_nan</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.is_nan" title="Link to this definition">¶</a></dt>
  1378. <dd><p>Returns <code class="docutils literal notranslate"><span class="pre">True</span></code> if <em>x</em> is a qNaN or sNaN; otherwise returns <code class="docutils literal notranslate"><span class="pre">False</span></code>.</p>
  1379. </dd></dl>
  1380. <dl class="py method">
  1381. <dt class="sig sig-object py" id="decimal.Context.is_normal">
  1382. <span class="sig-name descname"><span class="pre">is_normal</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.is_normal" title="Link to this definition">¶</a></dt>
  1383. <dd><p>Returns <code class="docutils literal notranslate"><span class="pre">True</span></code> if <em>x</em> is a normal number; otherwise returns <code class="docutils literal notranslate"><span class="pre">False</span></code>.</p>
  1384. </dd></dl>
  1385. <dl class="py method">
  1386. <dt class="sig sig-object py" id="decimal.Context.is_qnan">
  1387. <span class="sig-name descname"><span class="pre">is_qnan</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.is_qnan" title="Link to this definition">¶</a></dt>
  1388. <dd><p>Returns <code class="docutils literal notranslate"><span class="pre">True</span></code> if <em>x</em> is a quiet NaN; otherwise returns <code class="docutils literal notranslate"><span class="pre">False</span></code>.</p>
  1389. </dd></dl>
  1390. <dl class="py method">
  1391. <dt class="sig sig-object py" id="decimal.Context.is_signed">
  1392. <span class="sig-name descname"><span class="pre">is_signed</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.is_signed" title="Link to this definition">¶</a></dt>
  1393. <dd><p>Returns <code class="docutils literal notranslate"><span class="pre">True</span></code> if <em>x</em> is negative; otherwise returns <code class="docutils literal notranslate"><span class="pre">False</span></code>.</p>
  1394. </dd></dl>
  1395. <dl class="py method">
  1396. <dt class="sig sig-object py" id="decimal.Context.is_snan">
  1397. <span class="sig-name descname"><span class="pre">is_snan</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.is_snan" title="Link to this definition">¶</a></dt>
  1398. <dd><p>Returns <code class="docutils literal notranslate"><span class="pre">True</span></code> if <em>x</em> is a signaling NaN; otherwise returns <code class="docutils literal notranslate"><span class="pre">False</span></code>.</p>
  1399. </dd></dl>
  1400. <dl class="py method">
  1401. <dt class="sig sig-object py" id="decimal.Context.is_subnormal">
  1402. <span class="sig-name descname"><span class="pre">is_subnormal</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.is_subnormal" title="Link to this definition">¶</a></dt>
  1403. <dd><p>Returns <code class="docutils literal notranslate"><span class="pre">True</span></code> if <em>x</em> is subnormal; otherwise returns <code class="docutils literal notranslate"><span class="pre">False</span></code>.</p>
  1404. </dd></dl>
  1405. <dl class="py method">
  1406. <dt class="sig sig-object py" id="decimal.Context.is_zero">
  1407. <span class="sig-name descname"><span class="pre">is_zero</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.is_zero" title="Link to this definition">¶</a></dt>
  1408. <dd><p>Returns <code class="docutils literal notranslate"><span class="pre">True</span></code> if <em>x</em> is a zero; otherwise returns <code class="docutils literal notranslate"><span class="pre">False</span></code>.</p>
  1409. </dd></dl>
  1410. <dl class="py method">
  1411. <dt class="sig sig-object py" id="decimal.Context.ln">
  1412. <span class="sig-name descname"><span class="pre">ln</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.ln" title="Link to this definition">¶</a></dt>
  1413. <dd><p>Returns the natural (base e) logarithm of <em>x</em>.</p>
  1414. </dd></dl>
  1415. <dl class="py method">
  1416. <dt class="sig sig-object py" id="decimal.Context.log10">
  1417. <span class="sig-name descname"><span class="pre">log10</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.log10" title="Link to this definition">¶</a></dt>
  1418. <dd><p>Returns the base 10 logarithm of <em>x</em>.</p>
  1419. </dd></dl>
  1420. <dl class="py method">
  1421. <dt class="sig sig-object py" id="decimal.Context.logb">
  1422. <span class="sig-name descname"><span class="pre">logb</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.logb" title="Link to this definition">¶</a></dt>
  1423. <dd><p>Returns the exponent of the magnitude of the operand’s MSD.</p>
  1424. </dd></dl>
  1425. <dl class="py method">
  1426. <dt class="sig sig-object py" id="decimal.Context.logical_and">
  1427. <span class="sig-name descname"><span class="pre">logical_and</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.logical_and" title="Link to this definition">¶</a></dt>
  1428. <dd><p>Applies the logical operation <em>and</em> between each operand’s digits.</p>
  1429. </dd></dl>
  1430. <dl class="py method">
  1431. <dt class="sig sig-object py" id="decimal.Context.logical_invert">
  1432. <span class="sig-name descname"><span class="pre">logical_invert</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.logical_invert" title="Link to this definition">¶</a></dt>
  1433. <dd><p>Invert all the digits in <em>x</em>.</p>
  1434. </dd></dl>
  1435. <dl class="py method">
  1436. <dt class="sig sig-object py" id="decimal.Context.logical_or">
  1437. <span class="sig-name descname"><span class="pre">logical_or</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.logical_or" title="Link to this definition">¶</a></dt>
  1438. <dd><p>Applies the logical operation <em>or</em> between each operand’s digits.</p>
  1439. </dd></dl>
  1440. <dl class="py method">
  1441. <dt class="sig sig-object py" id="decimal.Context.logical_xor">
  1442. <span class="sig-name descname"><span class="pre">logical_xor</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.logical_xor" title="Link to this definition">¶</a></dt>
  1443. <dd><p>Applies the logical operation <em>xor</em> between each operand’s digits.</p>
  1444. </dd></dl>
  1445. <dl class="py method">
  1446. <dt class="sig sig-object py" id="decimal.Context.max">
  1447. <span class="sig-name descname"><span class="pre">max</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.max" title="Link to this definition">¶</a></dt>
  1448. <dd><p>Compares two values numerically and returns the maximum.</p>
  1449. </dd></dl>
  1450. <dl class="py method">
  1451. <dt class="sig sig-object py" id="decimal.Context.max_mag">
  1452. <span class="sig-name descname"><span class="pre">max_mag</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.max_mag" title="Link to this definition">¶</a></dt>
  1453. <dd><p>Compares the values numerically with their sign ignored.</p>
  1454. </dd></dl>
  1455. <dl class="py method">
  1456. <dt class="sig sig-object py" id="decimal.Context.min">
  1457. <span class="sig-name descname"><span class="pre">min</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.min" title="Link to this definition">¶</a></dt>
  1458. <dd><p>Compares two values numerically and returns the minimum.</p>
  1459. </dd></dl>
  1460. <dl class="py method">
  1461. <dt class="sig sig-object py" id="decimal.Context.min_mag">
  1462. <span class="sig-name descname"><span class="pre">min_mag</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.min_mag" title="Link to this definition">¶</a></dt>
  1463. <dd><p>Compares the values numerically with their sign ignored.</p>
  1464. </dd></dl>
  1465. <dl class="py method">
  1466. <dt class="sig sig-object py" id="decimal.Context.minus">
  1467. <span class="sig-name descname"><span class="pre">minus</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.minus" title="Link to this definition">¶</a></dt>
  1468. <dd><p>Minus corresponds to the unary prefix minus operator in Python.</p>
  1469. </dd></dl>
  1470. <dl class="py method">
  1471. <dt class="sig sig-object py" id="decimal.Context.multiply">
  1472. <span class="sig-name descname"><span class="pre">multiply</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.multiply" title="Link to this definition">¶</a></dt>
  1473. <dd><p>Return the product of <em>x</em> and <em>y</em>.</p>
  1474. </dd></dl>
  1475. <dl class="py method">
  1476. <dt class="sig sig-object py" id="decimal.Context.next_minus">
  1477. <span class="sig-name descname"><span class="pre">next_minus</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.next_minus" title="Link to this definition">¶</a></dt>
  1478. <dd><p>Returns the largest representable number smaller than <em>x</em>.</p>
  1479. </dd></dl>
  1480. <dl class="py method">
  1481. <dt class="sig sig-object py" id="decimal.Context.next_plus">
  1482. <span class="sig-name descname"><span class="pre">next_plus</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.next_plus" title="Link to this definition">¶</a></dt>
  1483. <dd><p>Returns the smallest representable number larger than <em>x</em>.</p>
  1484. </dd></dl>
  1485. <dl class="py method">
  1486. <dt class="sig sig-object py" id="decimal.Context.next_toward">
  1487. <span class="sig-name descname"><span class="pre">next_toward</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.next_toward" title="Link to this definition">¶</a></dt>
  1488. <dd><p>Returns the number closest to <em>x</em>, in direction towards <em>y</em>.</p>
  1489. </dd></dl>
  1490. <dl class="py method">
  1491. <dt class="sig sig-object py" id="decimal.Context.normalize">
  1492. <span class="sig-name descname"><span class="pre">normalize</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.normalize" title="Link to this definition">¶</a></dt>
  1493. <dd><p>Reduces <em>x</em> to its simplest form.</p>
  1494. </dd></dl>
  1495. <dl class="py method">
  1496. <dt class="sig sig-object py" id="decimal.Context.number_class">
  1497. <span class="sig-name descname"><span class="pre">number_class</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.number_class" title="Link to this definition">¶</a></dt>
  1498. <dd><p>Returns an indication of the class of <em>x</em>.</p>
  1499. </dd></dl>
  1500. <dl class="py method">
  1501. <dt class="sig sig-object py" id="decimal.Context.plus">
  1502. <span class="sig-name descname"><span class="pre">plus</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.plus" title="Link to this definition">¶</a></dt>
  1503. <dd><p>Plus corresponds to the unary prefix plus operator in Python. This
  1504. operation applies the context precision and rounding, so it is <em>not</em> an
  1505. identity operation.</p>
  1506. </dd></dl>
  1507. <dl class="py method">
  1508. <dt class="sig sig-object py" id="decimal.Context.power">
  1509. <span class="sig-name descname"><span class="pre">power</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">modulo</span></span><span class="o"><span class="pre">=</span></span><span class="default_value"><span class="pre">None</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.power" title="Link to this definition">¶</a></dt>
  1510. <dd><p>Return <code class="docutils literal notranslate"><span class="pre">x</span></code> to the power of <code class="docutils literal notranslate"><span class="pre">y</span></code>, reduced modulo <code class="docutils literal notranslate"><span class="pre">modulo</span></code> if given.</p>
  1511. <p>With two arguments, compute <code class="docutils literal notranslate"><span class="pre">x**y</span></code>. If <code class="docutils literal notranslate"><span class="pre">x</span></code> is negative then <code class="docutils literal notranslate"><span class="pre">y</span></code>
  1512. must be integral. The result will be inexact unless <code class="docutils literal notranslate"><span class="pre">y</span></code> is integral and
  1513. the result is finite and can be expressed exactly in ‘precision’ digits.
  1514. The rounding mode of the context is used. Results are always correctly rounded
  1515. in the Python version.</p>
  1516. <p><code class="docutils literal notranslate"><span class="pre">Decimal(0)</span> <span class="pre">**</span> <span class="pre">Decimal(0)</span></code> results in <code class="docutils literal notranslate"><span class="pre">InvalidOperation</span></code>, and if <code class="docutils literal notranslate"><span class="pre">InvalidOperation</span></code>
  1517. is not trapped, then results in <code class="docutils literal notranslate"><span class="pre">Decimal('NaN')</span></code>.</p>
  1518. <div class="versionchanged">
  1519. <p><span class="versionmodified changed">Changed in version 3.3: </span>The C module computes <a class="reference internal" href="#decimal.Context.power" title="decimal.Context.power"><code class="xref py py-meth docutils literal notranslate"><span class="pre">power()</span></code></a> in terms of the correctly rounded
  1520. <a class="reference internal" href="#decimal.Context.exp" title="decimal.Context.exp"><code class="xref py py-meth docutils literal notranslate"><span class="pre">exp()</span></code></a> and <a class="reference internal" href="#decimal.Context.ln" title="decimal.Context.ln"><code class="xref py py-meth docutils literal notranslate"><span class="pre">ln()</span></code></a> functions. The result is well-defined but
  1521. only “almost always correctly rounded”.</p>
  1522. </div>
  1523. <p>With three arguments, compute <code class="docutils literal notranslate"><span class="pre">(x**y)</span> <span class="pre">%</span> <span class="pre">modulo</span></code>. For the three argument
  1524. form, the following restrictions on the arguments hold:</p>
  1525. <ul class="simple">
  1526. <li><p>all three arguments must be integral</p></li>
  1527. <li><p><code class="docutils literal notranslate"><span class="pre">y</span></code> must be nonnegative</p></li>
  1528. <li><p>at least one of <code class="docutils literal notranslate"><span class="pre">x</span></code> or <code class="docutils literal notranslate"><span class="pre">y</span></code> must be nonzero</p></li>
  1529. <li><p><code class="docutils literal notranslate"><span class="pre">modulo</span></code> must be nonzero and have at most ‘precision’ digits</p></li>
  1530. </ul>
  1531. <p>The value resulting from <code class="docutils literal notranslate"><span class="pre">Context.power(x,</span> <span class="pre">y,</span> <span class="pre">modulo)</span></code> is
  1532. equal to the value that would be obtained by computing <code class="docutils literal notranslate"><span class="pre">(x**y)</span>
  1533. <span class="pre">%</span> <span class="pre">modulo</span></code> with unbounded precision, but is computed more
  1534. efficiently. The exponent of the result is zero, regardless of
  1535. the exponents of <code class="docutils literal notranslate"><span class="pre">x</span></code>, <code class="docutils literal notranslate"><span class="pre">y</span></code> and <code class="docutils literal notranslate"><span class="pre">modulo</span></code>. The result is
  1536. always exact.</p>
  1537. </dd></dl>
  1538. <dl class="py method">
  1539. <dt class="sig sig-object py" id="decimal.Context.quantize">
  1540. <span class="sig-name descname"><span class="pre">quantize</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.quantize" title="Link to this definition">¶</a></dt>
  1541. <dd><p>Returns a value equal to <em>x</em> (rounded), having the exponent of <em>y</em>.</p>
  1542. </dd></dl>
  1543. <dl class="py method">
  1544. <dt class="sig sig-object py" id="decimal.Context.radix">
  1545. <span class="sig-name descname"><span class="pre">radix</span></span><span class="sig-paren">(</span><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.radix" title="Link to this definition">¶</a></dt>
  1546. <dd><p>Just returns 10, as this is Decimal, :)</p>
  1547. </dd></dl>
  1548. <dl class="py method">
  1549. <dt class="sig sig-object py" id="decimal.Context.remainder">
  1550. <span class="sig-name descname"><span class="pre">remainder</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.remainder" title="Link to this definition">¶</a></dt>
  1551. <dd><p>Returns the remainder from integer division.</p>
  1552. <p>The sign of the result, if non-zero, is the same as that of the original
  1553. dividend.</p>
  1554. </dd></dl>
  1555. <dl class="py method">
  1556. <dt class="sig sig-object py" id="decimal.Context.remainder_near">
  1557. <span class="sig-name descname"><span class="pre">remainder_near</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.remainder_near" title="Link to this definition">¶</a></dt>
  1558. <dd><p>Returns <code class="docutils literal notranslate"><span class="pre">x</span> <span class="pre">-</span> <span class="pre">y</span> <span class="pre">*</span> <span class="pre">n</span></code>, where <em>n</em> is the integer nearest the exact value
  1559. of <code class="docutils literal notranslate"><span class="pre">x</span> <span class="pre">/</span> <span class="pre">y</span></code> (if the result is 0 then its sign will be the sign of <em>x</em>).</p>
  1560. </dd></dl>
  1561. <dl class="py method">
  1562. <dt class="sig sig-object py" id="decimal.Context.rotate">
  1563. <span class="sig-name descname"><span class="pre">rotate</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.rotate" title="Link to this definition">¶</a></dt>
  1564. <dd><p>Returns a rotated copy of <em>x</em>, <em>y</em> times.</p>
  1565. </dd></dl>
  1566. <dl class="py method">
  1567. <dt class="sig sig-object py" id="decimal.Context.same_quantum">
  1568. <span class="sig-name descname"><span class="pre">same_quantum</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.same_quantum" title="Link to this definition">¶</a></dt>
  1569. <dd><p>Returns <code class="docutils literal notranslate"><span class="pre">True</span></code> if the two operands have the same exponent.</p>
  1570. </dd></dl>
  1571. <dl class="py method">
  1572. <dt class="sig sig-object py" id="decimal.Context.scaleb">
  1573. <span class="sig-name descname"><span class="pre">scaleb</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.scaleb" title="Link to this definition">¶</a></dt>
  1574. <dd><p>Returns the first operand after adding the second value its exp.</p>
  1575. </dd></dl>
  1576. <dl class="py method">
  1577. <dt class="sig sig-object py" id="decimal.Context.shift">
  1578. <span class="sig-name descname"><span class="pre">shift</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.shift" title="Link to this definition">¶</a></dt>
  1579. <dd><p>Returns a shifted copy of <em>x</em>, <em>y</em> times.</p>
  1580. </dd></dl>
  1581. <dl class="py method">
  1582. <dt class="sig sig-object py" id="decimal.Context.sqrt">
  1583. <span class="sig-name descname"><span class="pre">sqrt</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.sqrt" title="Link to this definition">¶</a></dt>
  1584. <dd><p>Square root of a non-negative number to context precision.</p>
  1585. </dd></dl>
  1586. <dl class="py method">
  1587. <dt class="sig sig-object py" id="decimal.Context.subtract">
  1588. <span class="sig-name descname"><span class="pre">subtract</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em>, <em class="sig-param"><span class="n"><span class="pre">y</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.subtract" title="Link to this definition">¶</a></dt>
  1589. <dd><p>Return the difference between <em>x</em> and <em>y</em>.</p>
  1590. </dd></dl>
  1591. <dl class="py method">
  1592. <dt class="sig sig-object py" id="decimal.Context.to_eng_string">
  1593. <span class="sig-name descname"><span class="pre">to_eng_string</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.to_eng_string" title="Link to this definition">¶</a></dt>
  1594. <dd><p>Convert to a string, using engineering notation if an exponent is needed.</p>
  1595. <p>Engineering notation has an exponent which is a multiple of 3. This
  1596. can leave up to 3 digits to the left of the decimal place and may
  1597. require the addition of either one or two trailing zeros.</p>
  1598. </dd></dl>
  1599. <dl class="py method">
  1600. <dt class="sig sig-object py" id="decimal.Context.to_integral_exact">
  1601. <span class="sig-name descname"><span class="pre">to_integral_exact</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.to_integral_exact" title="Link to this definition">¶</a></dt>
  1602. <dd><p>Rounds to an integer.</p>
  1603. </dd></dl>
  1604. <dl class="py method">
  1605. <dt class="sig sig-object py" id="decimal.Context.to_sci_string">
  1606. <span class="sig-name descname"><span class="pre">to_sci_string</span></span><span class="sig-paren">(</span><em class="sig-param"><span class="n"><span class="pre">x</span></span></em><span class="sig-paren">)</span><a class="headerlink" href="#decimal.Context.to_sci_string" title="Link to this definition">¶</a></dt>
  1607. <dd><p>Converts a number to a string using scientific notation.</p>
  1608. </dd></dl>
  1609. </dd></dl>
  1610. </section>
  1611. <section id="constants">
  1612. <span id="decimal-rounding-modes"></span><h2>Constants<a class="headerlink" href="#constants" title="Link to this heading">¶</a></h2>
  1613. <p>The constants in this section are only relevant for the C module. They
  1614. are also included in the pure Python version for compatibility.</p>
  1615. <table class="docutils align-default">
  1616. <thead>
  1617. <tr class="row-odd"><th class="head"></th>
  1618. <th class="head"><p>32-bit</p></th>
  1619. <th class="head"><p>64-bit</p></th>
  1620. </tr>
  1621. </thead>
  1622. <tbody>
  1623. <tr class="row-even"><td><dl class="py data">
  1624. <dt class="sig sig-object py" id="decimal.MAX_PREC">
  1625. <span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">MAX_PREC</span></span><a class="headerlink" href="#decimal.MAX_PREC" title="Link to this definition">¶</a></dt>
  1626. <dd></dd></dl>
  1627. </td>
  1628. <td><p><code class="docutils literal notranslate"><span class="pre">425000000</span></code></p></td>
  1629. <td><p><code class="docutils literal notranslate"><span class="pre">999999999999999999</span></code></p></td>
  1630. </tr>
  1631. <tr class="row-odd"><td><dl class="py data">
  1632. <dt class="sig sig-object py" id="decimal.MAX_EMAX">
  1633. <span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">MAX_EMAX</span></span><a class="headerlink" href="#decimal.MAX_EMAX" title="Link to this definition">¶</a></dt>
  1634. <dd></dd></dl>
  1635. </td>
  1636. <td><p><code class="docutils literal notranslate"><span class="pre">425000000</span></code></p></td>
  1637. <td><p><code class="docutils literal notranslate"><span class="pre">999999999999999999</span></code></p></td>
  1638. </tr>
  1639. <tr class="row-even"><td><dl class="py data">
  1640. <dt class="sig sig-object py" id="decimal.MIN_EMIN">
  1641. <span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">MIN_EMIN</span></span><a class="headerlink" href="#decimal.MIN_EMIN" title="Link to this definition">¶</a></dt>
  1642. <dd></dd></dl>
  1643. </td>
  1644. <td><p><code class="docutils literal notranslate"><span class="pre">-425000000</span></code></p></td>
  1645. <td><p><code class="docutils literal notranslate"><span class="pre">-999999999999999999</span></code></p></td>
  1646. </tr>
  1647. <tr class="row-odd"><td><dl class="py data">
  1648. <dt class="sig sig-object py" id="decimal.MIN_ETINY">
  1649. <span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">MIN_ETINY</span></span><a class="headerlink" href="#decimal.MIN_ETINY" title="Link to this definition">¶</a></dt>
  1650. <dd></dd></dl>
  1651. </td>
  1652. <td><p><code class="docutils literal notranslate"><span class="pre">-849999999</span></code></p></td>
  1653. <td><p><code class="docutils literal notranslate"><span class="pre">-1999999999999999997</span></code></p></td>
  1654. </tr>
  1655. </tbody>
  1656. </table>
  1657. <dl class="py data">
  1658. <dt class="sig sig-object py" id="decimal.HAVE_THREADS">
  1659. <span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">HAVE_THREADS</span></span><a class="headerlink" href="#decimal.HAVE_THREADS" title="Link to this definition">¶</a></dt>
  1660. <dd><p>The value is <code class="docutils literal notranslate"><span class="pre">True</span></code>. Deprecated, because Python now always has threads.</p>
  1661. </dd></dl>
  1662. <div class="deprecated">
  1663. <p><span class="versionmodified deprecated">Deprecated since version 3.9.</span></p>
  1664. </div>
  1665. <dl class="py data">
  1666. <dt class="sig sig-object py" id="decimal.HAVE_CONTEXTVAR">
  1667. <span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">HAVE_CONTEXTVAR</span></span><a class="headerlink" href="#decimal.HAVE_CONTEXTVAR" title="Link to this definition">¶</a></dt>
  1668. <dd><p>The default value is <code class="docutils literal notranslate"><span class="pre">True</span></code>. If Python is <a class="reference internal" href="../using/configure.html#cmdoption-without-decimal-contextvar"><code class="xref std std-option docutils literal notranslate"><span class="pre">configured</span> <span class="pre">using</span>
  1669. <span class="pre">the</span> <span class="pre">--without-decimal-contextvar</span> <span class="pre">option</span></code></a>,
  1670. the C version uses a thread-local rather than a coroutine-local context and the value
  1671. is <code class="docutils literal notranslate"><span class="pre">False</span></code>. This is slightly faster in some nested context scenarios.</p>
  1672. </dd></dl>
  1673. <div class="versionadded">
  1674. <p><span class="versionmodified added">New in version 3.8.3.</span></p>
  1675. </div>
  1676. </section>
  1677. <section id="rounding-modes">
  1678. <h2>Rounding modes<a class="headerlink" href="#rounding-modes" title="Link to this heading">¶</a></h2>
  1679. <dl class="py data">
  1680. <dt class="sig sig-object py" id="decimal.ROUND_CEILING">
  1681. <span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">ROUND_CEILING</span></span><a class="headerlink" href="#decimal.ROUND_CEILING" title="Link to this definition">¶</a></dt>
  1682. <dd><p>Round towards <code class="docutils literal notranslate"><span class="pre">Infinity</span></code>.</p>
  1683. </dd></dl>
  1684. <dl class="py data">
  1685. <dt class="sig sig-object py" id="decimal.ROUND_DOWN">
  1686. <span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">ROUND_DOWN</span></span><a class="headerlink" href="#decimal.ROUND_DOWN" title="Link to this definition">¶</a></dt>
  1687. <dd><p>Round towards zero.</p>
  1688. </dd></dl>
  1689. <dl class="py data">
  1690. <dt class="sig sig-object py" id="decimal.ROUND_FLOOR">
  1691. <span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">ROUND_FLOOR</span></span><a class="headerlink" href="#decimal.ROUND_FLOOR" title="Link to this definition">¶</a></dt>
  1692. <dd><p>Round towards <code class="docutils literal notranslate"><span class="pre">-Infinity</span></code>.</p>
  1693. </dd></dl>
  1694. <dl class="py data">
  1695. <dt class="sig sig-object py" id="decimal.ROUND_HALF_DOWN">
  1696. <span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">ROUND_HALF_DOWN</span></span><a class="headerlink" href="#decimal.ROUND_HALF_DOWN" title="Link to this definition">¶</a></dt>
  1697. <dd><p>Round to nearest with ties going towards zero.</p>
  1698. </dd></dl>
  1699. <dl class="py data">
  1700. <dt class="sig sig-object py" id="decimal.ROUND_HALF_EVEN">
  1701. <span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">ROUND_HALF_EVEN</span></span><a class="headerlink" href="#decimal.ROUND_HALF_EVEN" title="Link to this definition">¶</a></dt>
  1702. <dd><p>Round to nearest with ties going to nearest even integer.</p>
  1703. </dd></dl>
  1704. <dl class="py data">
  1705. <dt class="sig sig-object py" id="decimal.ROUND_HALF_UP">
  1706. <span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">ROUND_HALF_UP</span></span><a class="headerlink" href="#decimal.ROUND_HALF_UP" title="Link to this definition">¶</a></dt>
  1707. <dd><p>Round to nearest with ties going away from zero.</p>
  1708. </dd></dl>
  1709. <dl class="py data">
  1710. <dt class="sig sig-object py" id="decimal.ROUND_UP">
  1711. <span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">ROUND_UP</span></span><a class="headerlink" href="#decimal.ROUND_UP" title="Link to this definition">¶</a></dt>
  1712. <dd><p>Round away from zero.</p>
  1713. </dd></dl>
  1714. <dl class="py data">
  1715. <dt class="sig sig-object py" id="decimal.ROUND_05UP">
  1716. <span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">ROUND_05UP</span></span><a class="headerlink" href="#decimal.ROUND_05UP" title="Link to this definition">¶</a></dt>
  1717. <dd><p>Round away from zero if last digit after rounding towards zero would have
  1718. been 0 or 5; otherwise round towards zero.</p>
  1719. </dd></dl>
  1720. </section>
  1721. <section id="signals">
  1722. <span id="decimal-signals"></span><h2>Signals<a class="headerlink" href="#signals" title="Link to this heading">¶</a></h2>
  1723. <p>Signals represent conditions that arise during computation. Each corresponds to
  1724. one context flag and one context trap enabler.</p>
  1725. <p>The context flag is set whenever the condition is encountered. After the
  1726. computation, flags may be checked for informational purposes (for instance, to
  1727. determine whether a computation was exact). After checking the flags, be sure to
  1728. clear all flags before starting the next computation.</p>
  1729. <p>If the context’s trap enabler is set for the signal, then the condition causes a
  1730. Python exception to be raised. For example, if the <a class="reference internal" href="#decimal.DivisionByZero" title="decimal.DivisionByZero"><code class="xref py py-class docutils literal notranslate"><span class="pre">DivisionByZero</span></code></a> trap
  1731. is set, then a <a class="reference internal" href="#decimal.DivisionByZero" title="decimal.DivisionByZero"><code class="xref py py-exc docutils literal notranslate"><span class="pre">DivisionByZero</span></code></a> exception is raised upon encountering the
  1732. condition.</p>
  1733. <dl class="py class">
  1734. <dt class="sig sig-object py" id="decimal.Clamped">
  1735. <em class="property"><span class="pre">class</span><span class="w"> </span></em><span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">Clamped</span></span><a class="headerlink" href="#decimal.Clamped" title="Link to this definition">¶</a></dt>
  1736. <dd><p>Altered an exponent to fit representation constraints.</p>
  1737. <p>Typically, clamping occurs when an exponent falls outside the context’s
  1738. <code class="xref py py-attr docutils literal notranslate"><span class="pre">Emin</span></code> and <code class="xref py py-attr docutils literal notranslate"><span class="pre">Emax</span></code> limits. If possible, the exponent is reduced to
  1739. fit by adding zeros to the coefficient.</p>
  1740. </dd></dl>
  1741. <dl class="py class">
  1742. <dt class="sig sig-object py" id="decimal.DecimalException">
  1743. <em class="property"><span class="pre">class</span><span class="w"> </span></em><span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">DecimalException</span></span><a class="headerlink" href="#decimal.DecimalException" title="Link to this definition">¶</a></dt>
  1744. <dd><p>Base class for other signals and a subclass of <a class="reference internal" href="exceptions.html#ArithmeticError" title="ArithmeticError"><code class="xref py py-exc docutils literal notranslate"><span class="pre">ArithmeticError</span></code></a>.</p>
  1745. </dd></dl>
  1746. <dl class="py class">
  1747. <dt class="sig sig-object py" id="decimal.DivisionByZero">
  1748. <em class="property"><span class="pre">class</span><span class="w"> </span></em><span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">DivisionByZero</span></span><a class="headerlink" href="#decimal.DivisionByZero" title="Link to this definition">¶</a></dt>
  1749. <dd><p>Signals the division of a non-infinite number by zero.</p>
  1750. <p>Can occur with division, modulo division, or when raising a number to a negative
  1751. power. If this signal is not trapped, returns <code class="docutils literal notranslate"><span class="pre">Infinity</span></code> or
  1752. <code class="docutils literal notranslate"><span class="pre">-Infinity</span></code> with the sign determined by the inputs to the calculation.</p>
  1753. </dd></dl>
  1754. <dl class="py class">
  1755. <dt class="sig sig-object py" id="decimal.Inexact">
  1756. <em class="property"><span class="pre">class</span><span class="w"> </span></em><span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">Inexact</span></span><a class="headerlink" href="#decimal.Inexact" title="Link to this definition">¶</a></dt>
  1757. <dd><p>Indicates that rounding occurred and the result is not exact.</p>
  1758. <p>Signals when non-zero digits were discarded during rounding. The rounded result
  1759. is returned. The signal flag or trap is used to detect when results are
  1760. inexact.</p>
  1761. </dd></dl>
  1762. <dl class="py class">
  1763. <dt class="sig sig-object py" id="decimal.InvalidOperation">
  1764. <em class="property"><span class="pre">class</span><span class="w"> </span></em><span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">InvalidOperation</span></span><a class="headerlink" href="#decimal.InvalidOperation" title="Link to this definition">¶</a></dt>
  1765. <dd><p>An invalid operation was performed.</p>
  1766. <p>Indicates that an operation was requested that does not make sense. If not
  1767. trapped, returns <code class="docutils literal notranslate"><span class="pre">NaN</span></code>. Possible causes include:</p>
  1768. <div class="highlight-python3 notranslate"><div class="highlight"><pre><span></span><span class="n">Infinity</span> <span class="o">-</span> <span class="n">Infinity</span>
  1769. <span class="mi">0</span> <span class="o">*</span> <span class="n">Infinity</span>
  1770. <span class="n">Infinity</span> <span class="o">/</span> <span class="n">Infinity</span>
  1771. <span class="n">x</span> <span class="o">%</span> <span class="mi">0</span>
  1772. <span class="n">Infinity</span> <span class="o">%</span> <span class="n">x</span>
  1773. <span class="n">sqrt</span><span class="p">(</span><span class="o">-</span><span class="n">x</span><span class="p">)</span> <span class="ow">and</span> <span class="n">x</span> <span class="o">&gt;</span> <span class="mi">0</span>
  1774. <span class="mi">0</span> <span class="o">**</span> <span class="mi">0</span>
  1775. <span class="n">x</span> <span class="o">**</span> <span class="p">(</span><span class="n">non</span><span class="o">-</span><span class="n">integer</span><span class="p">)</span>
  1776. <span class="n">x</span> <span class="o">**</span> <span class="n">Infinity</span>
  1777. </pre></div>
  1778. </div>
  1779. </dd></dl>
  1780. <dl class="py class">
  1781. <dt class="sig sig-object py" id="decimal.Overflow">
  1782. <em class="property"><span class="pre">class</span><span class="w"> </span></em><span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">Overflow</span></span><a class="headerlink" href="#decimal.Overflow" title="Link to this definition">¶</a></dt>
  1783. <dd><p>Numerical overflow.</p>
  1784. <p>Indicates the exponent is larger than <code class="xref py py-attr docutils literal notranslate"><span class="pre">Context.Emax</span></code> after rounding has
  1785. occurred. If not trapped, the result depends on the rounding mode, either
  1786. pulling inward to the largest representable finite number or rounding outward
  1787. to <code class="docutils literal notranslate"><span class="pre">Infinity</span></code>. In either case, <a class="reference internal" href="#decimal.Inexact" title="decimal.Inexact"><code class="xref py py-class docutils literal notranslate"><span class="pre">Inexact</span></code></a> and <a class="reference internal" href="#decimal.Rounded" title="decimal.Rounded"><code class="xref py py-class docutils literal notranslate"><span class="pre">Rounded</span></code></a>
  1788. are also signaled.</p>
  1789. </dd></dl>
  1790. <dl class="py class">
  1791. <dt class="sig sig-object py" id="decimal.Rounded">
  1792. <em class="property"><span class="pre">class</span><span class="w"> </span></em><span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">Rounded</span></span><a class="headerlink" href="#decimal.Rounded" title="Link to this definition">¶</a></dt>
  1793. <dd><p>Rounding occurred though possibly no information was lost.</p>
  1794. <p>Signaled whenever rounding discards digits; even if those digits are zero
  1795. (such as rounding <code class="docutils literal notranslate"><span class="pre">5.00</span></code> to <code class="docutils literal notranslate"><span class="pre">5.0</span></code>). If not trapped, returns
  1796. the result unchanged. This signal is used to detect loss of significant
  1797. digits.</p>
  1798. </dd></dl>
  1799. <dl class="py class">
  1800. <dt class="sig sig-object py" id="decimal.Subnormal">
  1801. <em class="property"><span class="pre">class</span><span class="w"> </span></em><span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">Subnormal</span></span><a class="headerlink" href="#decimal.Subnormal" title="Link to this definition">¶</a></dt>
  1802. <dd><p>Exponent was lower than <code class="xref py py-attr docutils literal notranslate"><span class="pre">Emin</span></code> prior to rounding.</p>
  1803. <p>Occurs when an operation result is subnormal (the exponent is too small). If
  1804. not trapped, returns the result unchanged.</p>
  1805. </dd></dl>
  1806. <dl class="py class">
  1807. <dt class="sig sig-object py" id="decimal.Underflow">
  1808. <em class="property"><span class="pre">class</span><span class="w"> </span></em><span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">Underflow</span></span><a class="headerlink" href="#decimal.Underflow" title="Link to this definition">¶</a></dt>
  1809. <dd><p>Numerical underflow with result rounded to zero.</p>
  1810. <p>Occurs when a subnormal result is pushed to zero by rounding. <a class="reference internal" href="#decimal.Inexact" title="decimal.Inexact"><code class="xref py py-class docutils literal notranslate"><span class="pre">Inexact</span></code></a>
  1811. and <a class="reference internal" href="#decimal.Subnormal" title="decimal.Subnormal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Subnormal</span></code></a> are also signaled.</p>
  1812. </dd></dl>
  1813. <dl class="py class">
  1814. <dt class="sig sig-object py" id="decimal.FloatOperation">
  1815. <em class="property"><span class="pre">class</span><span class="w"> </span></em><span class="sig-prename descclassname"><span class="pre">decimal.</span></span><span class="sig-name descname"><span class="pre">FloatOperation</span></span><a class="headerlink" href="#decimal.FloatOperation" title="Link to this definition">¶</a></dt>
  1816. <dd><p>Enable stricter semantics for mixing floats and Decimals.</p>
  1817. <p>If the signal is not trapped (default), mixing floats and Decimals is
  1818. permitted in the <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a> constructor,
  1819. <a class="reference internal" href="#decimal.Context.create_decimal" title="decimal.Context.create_decimal"><code class="xref py py-meth docutils literal notranslate"><span class="pre">create_decimal()</span></code></a> and all comparison operators.
  1820. Both conversion and comparisons are exact. Any occurrence of a mixed
  1821. operation is silently recorded by setting <a class="reference internal" href="#decimal.FloatOperation" title="decimal.FloatOperation"><code class="xref py py-exc docutils literal notranslate"><span class="pre">FloatOperation</span></code></a> in the
  1822. context flags. Explicit conversions with <a class="reference internal" href="#decimal.Decimal.from_float" title="decimal.Decimal.from_float"><code class="xref py py-meth docutils literal notranslate"><span class="pre">from_float()</span></code></a>
  1823. or <a class="reference internal" href="#decimal.Context.create_decimal_from_float" title="decimal.Context.create_decimal_from_float"><code class="xref py py-meth docutils literal notranslate"><span class="pre">create_decimal_from_float()</span></code></a> do not set the flag.</p>
  1824. <p>Otherwise (the signal is trapped), only equality comparisons and explicit
  1825. conversions are silent. All other mixed operations raise <a class="reference internal" href="#decimal.FloatOperation" title="decimal.FloatOperation"><code class="xref py py-exc docutils literal notranslate"><span class="pre">FloatOperation</span></code></a>.</p>
  1826. </dd></dl>
  1827. <p>The following table summarizes the hierarchy of signals:</p>
  1828. <div class="highlight-python3 notranslate"><div class="highlight"><pre><span></span><span class="n">exceptions</span><span class="o">.</span><span class="n">ArithmeticError</span><span class="p">(</span><span class="n">exceptions</span><span class="o">.</span><span class="n">Exception</span><span class="p">)</span>
  1829. <span class="n">DecimalException</span>
  1830. <span class="n">Clamped</span>
  1831. <span class="n">DivisionByZero</span><span class="p">(</span><span class="n">DecimalException</span><span class="p">,</span> <span class="n">exceptions</span><span class="o">.</span><span class="n">ZeroDivisionError</span><span class="p">)</span>
  1832. <span class="n">Inexact</span>
  1833. <span class="n">Overflow</span><span class="p">(</span><span class="n">Inexact</span><span class="p">,</span> <span class="n">Rounded</span><span class="p">)</span>
  1834. <span class="n">Underflow</span><span class="p">(</span><span class="n">Inexact</span><span class="p">,</span> <span class="n">Rounded</span><span class="p">,</span> <span class="n">Subnormal</span><span class="p">)</span>
  1835. <span class="n">InvalidOperation</span>
  1836. <span class="n">Rounded</span>
  1837. <span class="n">Subnormal</span>
  1838. <span class="n">FloatOperation</span><span class="p">(</span><span class="n">DecimalException</span><span class="p">,</span> <span class="n">exceptions</span><span class="o">.</span><span class="n">TypeError</span><span class="p">)</span>
  1839. </pre></div>
  1840. </div>
  1841. </section>
  1842. <section id="floating-point-notes">
  1843. <span id="decimal-notes"></span><h2>Floating Point Notes<a class="headerlink" href="#floating-point-notes" title="Link to this heading">¶</a></h2>
  1844. <section id="mitigating-round-off-error-with-increased-precision">
  1845. <h3>Mitigating round-off error with increased precision<a class="headerlink" href="#mitigating-round-off-error-with-increased-precision" title="Link to this heading">¶</a></h3>
  1846. <p>The use of decimal floating point eliminates decimal representation error
  1847. (making it possible to represent <code class="docutils literal notranslate"><span class="pre">0.1</span></code> exactly); however, some operations
  1848. can still incur round-off error when non-zero digits exceed the fixed precision.</p>
  1849. <p>The effects of round-off error can be amplified by the addition or subtraction
  1850. of nearly offsetting quantities resulting in loss of significance. Knuth
  1851. provides two instructive examples where rounded floating point arithmetic with
  1852. insufficient precision causes the breakdown of the associative and distributive
  1853. properties of addition:</p>
  1854. <div class="highlight-pycon notranslate"><div class="highlight"><pre><span></span><span class="go"># Examples from Seminumerical Algorithms, Section 4.2.2.</span>
  1855. <span class="gp">&gt;&gt;&gt; </span><span class="kn">from</span> <span class="nn">decimal</span> <span class="kn">import</span> <span class="n">Decimal</span><span class="p">,</span> <span class="n">getcontext</span>
  1856. <span class="gp">&gt;&gt;&gt; </span><span class="n">getcontext</span><span class="p">()</span><span class="o">.</span><span class="n">prec</span> <span class="o">=</span> <span class="mi">8</span>
  1857. <span class="gp">&gt;&gt;&gt; </span><span class="n">u</span><span class="p">,</span> <span class="n">v</span><span class="p">,</span> <span class="n">w</span> <span class="o">=</span> <span class="n">Decimal</span><span class="p">(</span><span class="mi">11111113</span><span class="p">),</span> <span class="n">Decimal</span><span class="p">(</span><span class="o">-</span><span class="mi">11111111</span><span class="p">),</span> <span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;7.51111111&#39;</span><span class="p">)</span>
  1858. <span class="gp">&gt;&gt;&gt; </span><span class="p">(</span><span class="n">u</span> <span class="o">+</span> <span class="n">v</span><span class="p">)</span> <span class="o">+</span> <span class="n">w</span>
  1859. <span class="go">Decimal(&#39;9.5111111&#39;)</span>
  1860. <span class="gp">&gt;&gt;&gt; </span><span class="n">u</span> <span class="o">+</span> <span class="p">(</span><span class="n">v</span> <span class="o">+</span> <span class="n">w</span><span class="p">)</span>
  1861. <span class="go">Decimal(&#39;10&#39;)</span>
  1862. <span class="gp">&gt;&gt;&gt; </span><span class="n">u</span><span class="p">,</span> <span class="n">v</span><span class="p">,</span> <span class="n">w</span> <span class="o">=</span> <span class="n">Decimal</span><span class="p">(</span><span class="mi">20000</span><span class="p">),</span> <span class="n">Decimal</span><span class="p">(</span><span class="o">-</span><span class="mi">6</span><span class="p">),</span> <span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;6.0000003&#39;</span><span class="p">)</span>
  1863. <span class="gp">&gt;&gt;&gt; </span><span class="p">(</span><span class="n">u</span><span class="o">*</span><span class="n">v</span><span class="p">)</span> <span class="o">+</span> <span class="p">(</span><span class="n">u</span><span class="o">*</span><span class="n">w</span><span class="p">)</span>
  1864. <span class="go">Decimal(&#39;0.01&#39;)</span>
  1865. <span class="gp">&gt;&gt;&gt; </span><span class="n">u</span> <span class="o">*</span> <span class="p">(</span><span class="n">v</span><span class="o">+</span><span class="n">w</span><span class="p">)</span>
  1866. <span class="go">Decimal(&#39;0.0060000&#39;)</span>
  1867. </pre></div>
  1868. </div>
  1869. <p>The <a class="reference internal" href="#module-decimal" title="decimal: Implementation of the General Decimal Arithmetic Specification."><code class="xref py py-mod docutils literal notranslate"><span class="pre">decimal</span></code></a> module makes it possible to restore the identities by
  1870. expanding the precision sufficiently to avoid loss of significance:</p>
  1871. <div class="highlight-pycon notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">getcontext</span><span class="p">()</span><span class="o">.</span><span class="n">prec</span> <span class="o">=</span> <span class="mi">20</span>
  1872. <span class="gp">&gt;&gt;&gt; </span><span class="n">u</span><span class="p">,</span> <span class="n">v</span><span class="p">,</span> <span class="n">w</span> <span class="o">=</span> <span class="n">Decimal</span><span class="p">(</span><span class="mi">11111113</span><span class="p">),</span> <span class="n">Decimal</span><span class="p">(</span><span class="o">-</span><span class="mi">11111111</span><span class="p">),</span> <span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;7.51111111&#39;</span><span class="p">)</span>
  1873. <span class="gp">&gt;&gt;&gt; </span><span class="p">(</span><span class="n">u</span> <span class="o">+</span> <span class="n">v</span><span class="p">)</span> <span class="o">+</span> <span class="n">w</span>
  1874. <span class="go">Decimal(&#39;9.51111111&#39;)</span>
  1875. <span class="gp">&gt;&gt;&gt; </span><span class="n">u</span> <span class="o">+</span> <span class="p">(</span><span class="n">v</span> <span class="o">+</span> <span class="n">w</span><span class="p">)</span>
  1876. <span class="go">Decimal(&#39;9.51111111&#39;)</span>
  1877. <span class="gp">&gt;&gt;&gt;</span>
  1878. <span class="gp">&gt;&gt;&gt; </span><span class="n">u</span><span class="p">,</span> <span class="n">v</span><span class="p">,</span> <span class="n">w</span> <span class="o">=</span> <span class="n">Decimal</span><span class="p">(</span><span class="mi">20000</span><span class="p">),</span> <span class="n">Decimal</span><span class="p">(</span><span class="o">-</span><span class="mi">6</span><span class="p">),</span> <span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;6.0000003&#39;</span><span class="p">)</span>
  1879. <span class="gp">&gt;&gt;&gt; </span><span class="p">(</span><span class="n">u</span><span class="o">*</span><span class="n">v</span><span class="p">)</span> <span class="o">+</span> <span class="p">(</span><span class="n">u</span><span class="o">*</span><span class="n">w</span><span class="p">)</span>
  1880. <span class="go">Decimal(&#39;0.0060000&#39;)</span>
  1881. <span class="gp">&gt;&gt;&gt; </span><span class="n">u</span> <span class="o">*</span> <span class="p">(</span><span class="n">v</span><span class="o">+</span><span class="n">w</span><span class="p">)</span>
  1882. <span class="go">Decimal(&#39;0.0060000&#39;)</span>
  1883. </pre></div>
  1884. </div>
  1885. </section>
  1886. <section id="special-values">
  1887. <h3>Special values<a class="headerlink" href="#special-values" title="Link to this heading">¶</a></h3>
  1888. <p>The number system for the <a class="reference internal" href="#module-decimal" title="decimal: Implementation of the General Decimal Arithmetic Specification."><code class="xref py py-mod docutils literal notranslate"><span class="pre">decimal</span></code></a> module provides special values
  1889. including <code class="docutils literal notranslate"><span class="pre">NaN</span></code>, <code class="docutils literal notranslate"><span class="pre">sNaN</span></code>, <code class="docutils literal notranslate"><span class="pre">-Infinity</span></code>, <code class="docutils literal notranslate"><span class="pre">Infinity</span></code>,
  1890. and two zeros, <code class="docutils literal notranslate"><span class="pre">+0</span></code> and <code class="docutils literal notranslate"><span class="pre">-0</span></code>.</p>
  1891. <p>Infinities can be constructed directly with: <code class="docutils literal notranslate"><span class="pre">Decimal('Infinity')</span></code>. Also,
  1892. they can arise from dividing by zero when the <a class="reference internal" href="#decimal.DivisionByZero" title="decimal.DivisionByZero"><code class="xref py py-exc docutils literal notranslate"><span class="pre">DivisionByZero</span></code></a> signal is
  1893. not trapped. Likewise, when the <a class="reference internal" href="#decimal.Overflow" title="decimal.Overflow"><code class="xref py py-exc docutils literal notranslate"><span class="pre">Overflow</span></code></a> signal is not trapped, infinity
  1894. can result from rounding beyond the limits of the largest representable number.</p>
  1895. <p>The infinities are signed (affine) and can be used in arithmetic operations
  1896. where they get treated as very large, indeterminate numbers. For instance,
  1897. adding a constant to infinity gives another infinite result.</p>
  1898. <p>Some operations are indeterminate and return <code class="docutils literal notranslate"><span class="pre">NaN</span></code>, or if the
  1899. <a class="reference internal" href="#decimal.InvalidOperation" title="decimal.InvalidOperation"><code class="xref py py-exc docutils literal notranslate"><span class="pre">InvalidOperation</span></code></a> signal is trapped, raise an exception. For example,
  1900. <code class="docutils literal notranslate"><span class="pre">0/0</span></code> returns <code class="docutils literal notranslate"><span class="pre">NaN</span></code> which means “not a number”. This variety of
  1901. <code class="docutils literal notranslate"><span class="pre">NaN</span></code> is quiet and, once created, will flow through other computations
  1902. always resulting in another <code class="docutils literal notranslate"><span class="pre">NaN</span></code>. This behavior can be useful for a
  1903. series of computations that occasionally have missing inputs — it allows the
  1904. calculation to proceed while flagging specific results as invalid.</p>
  1905. <p>A variant is <code class="docutils literal notranslate"><span class="pre">sNaN</span></code> which signals rather than remaining quiet after every
  1906. operation. This is a useful return value when an invalid result needs to
  1907. interrupt a calculation for special handling.</p>
  1908. <p>The behavior of Python’s comparison operators can be a little surprising where a
  1909. <code class="docutils literal notranslate"><span class="pre">NaN</span></code> is involved. A test for equality where one of the operands is a
  1910. quiet or signaling <code class="docutils literal notranslate"><span class="pre">NaN</span></code> always returns <a class="reference internal" href="constants.html#False" title="False"><code class="xref py py-const docutils literal notranslate"><span class="pre">False</span></code></a> (even when doing
  1911. <code class="docutils literal notranslate"><span class="pre">Decimal('NaN')==Decimal('NaN')</span></code>), while a test for inequality always returns
  1912. <a class="reference internal" href="constants.html#True" title="True"><code class="xref py py-const docutils literal notranslate"><span class="pre">True</span></code></a>. An attempt to compare two Decimals using any of the <code class="docutils literal notranslate"><span class="pre">&lt;</span></code>,
  1913. <code class="docutils literal notranslate"><span class="pre">&lt;=</span></code>, <code class="docutils literal notranslate"><span class="pre">&gt;</span></code> or <code class="docutils literal notranslate"><span class="pre">&gt;=</span></code> operators will raise the <a class="reference internal" href="#decimal.InvalidOperation" title="decimal.InvalidOperation"><code class="xref py py-exc docutils literal notranslate"><span class="pre">InvalidOperation</span></code></a> signal
  1914. if either operand is a <code class="docutils literal notranslate"><span class="pre">NaN</span></code>, and return <a class="reference internal" href="constants.html#False" title="False"><code class="xref py py-const docutils literal notranslate"><span class="pre">False</span></code></a> if this signal is
  1915. not trapped. Note that the General Decimal Arithmetic specification does not
  1916. specify the behavior of direct comparisons; these rules for comparisons
  1917. involving a <code class="docutils literal notranslate"><span class="pre">NaN</span></code> were taken from the IEEE 854 standard (see Table 3 in
  1918. section 5.7). To ensure strict standards-compliance, use the <a class="reference internal" href="#decimal.Decimal.compare" title="decimal.Decimal.compare"><code class="xref py py-meth docutils literal notranslate"><span class="pre">compare()</span></code></a>
  1919. and <a class="reference internal" href="#decimal.Decimal.compare_signal" title="decimal.Decimal.compare_signal"><code class="xref py py-meth docutils literal notranslate"><span class="pre">compare_signal()</span></code></a> methods instead.</p>
  1920. <p>The signed zeros can result from calculations that underflow. They keep the sign
  1921. that would have resulted if the calculation had been carried out to greater
  1922. precision. Since their magnitude is zero, both positive and negative zeros are
  1923. treated as equal and their sign is informational.</p>
  1924. <p>In addition to the two signed zeros which are distinct yet equal, there are
  1925. various representations of zero with differing precisions yet equivalent in
  1926. value. This takes a bit of getting used to. For an eye accustomed to
  1927. normalized floating point representations, it is not immediately obvious that
  1928. the following calculation returns a value equal to zero:</p>
  1929. <div class="doctest highlight-default notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="mi">1</span> <span class="o">/</span> <span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;Infinity&#39;</span><span class="p">)</span>
  1930. <span class="go">Decimal(&#39;0E-1000026&#39;)</span>
  1931. </pre></div>
  1932. </div>
  1933. </section>
  1934. </section>
  1935. <section id="working-with-threads">
  1936. <span id="decimal-threads"></span><h2>Working with threads<a class="headerlink" href="#working-with-threads" title="Link to this heading">¶</a></h2>
  1937. <p>The <a class="reference internal" href="#decimal.getcontext" title="decimal.getcontext"><code class="xref py py-func docutils literal notranslate"><span class="pre">getcontext()</span></code></a> function accesses a different <a class="reference internal" href="#decimal.Context" title="decimal.Context"><code class="xref py py-class docutils literal notranslate"><span class="pre">Context</span></code></a> object for
  1938. each thread. Having separate thread contexts means that threads may make
  1939. changes (such as <code class="docutils literal notranslate"><span class="pre">getcontext().prec=10</span></code>) without interfering with other threads.</p>
  1940. <p>Likewise, the <a class="reference internal" href="#decimal.setcontext" title="decimal.setcontext"><code class="xref py py-func docutils literal notranslate"><span class="pre">setcontext()</span></code></a> function automatically assigns its target to
  1941. the current thread.</p>
  1942. <p>If <a class="reference internal" href="#decimal.setcontext" title="decimal.setcontext"><code class="xref py py-func docutils literal notranslate"><span class="pre">setcontext()</span></code></a> has not been called before <a class="reference internal" href="#decimal.getcontext" title="decimal.getcontext"><code class="xref py py-func docutils literal notranslate"><span class="pre">getcontext()</span></code></a>, then
  1943. <a class="reference internal" href="#decimal.getcontext" title="decimal.getcontext"><code class="xref py py-func docutils literal notranslate"><span class="pre">getcontext()</span></code></a> will automatically create a new context for use in the
  1944. current thread.</p>
  1945. <p>The new context is copied from a prototype context called <em>DefaultContext</em>. To
  1946. control the defaults so that each thread will use the same values throughout the
  1947. application, directly modify the <em>DefaultContext</em> object. This should be done
  1948. <em>before</em> any threads are started so that there won’t be a race condition between
  1949. threads calling <a class="reference internal" href="#decimal.getcontext" title="decimal.getcontext"><code class="xref py py-func docutils literal notranslate"><span class="pre">getcontext()</span></code></a>. For example:</p>
  1950. <div class="highlight-python3 notranslate"><div class="highlight"><pre><span></span><span class="c1"># Set applicationwide defaults for all threads about to be launched</span>
  1951. <span class="n">DefaultContext</span><span class="o">.</span><span class="n">prec</span> <span class="o">=</span> <span class="mi">12</span>
  1952. <span class="n">DefaultContext</span><span class="o">.</span><span class="n">rounding</span> <span class="o">=</span> <span class="n">ROUND_DOWN</span>
  1953. <span class="n">DefaultContext</span><span class="o">.</span><span class="n">traps</span> <span class="o">=</span> <span class="n">ExtendedContext</span><span class="o">.</span><span class="n">traps</span><span class="o">.</span><span class="n">copy</span><span class="p">()</span>
  1954. <span class="n">DefaultContext</span><span class="o">.</span><span class="n">traps</span><span class="p">[</span><span class="n">InvalidOperation</span><span class="p">]</span> <span class="o">=</span> <span class="mi">1</span>
  1955. <span class="n">setcontext</span><span class="p">(</span><span class="n">DefaultContext</span><span class="p">)</span>
  1956. <span class="c1"># Afterwards, the threads can be started</span>
  1957. <span class="n">t1</span><span class="o">.</span><span class="n">start</span><span class="p">()</span>
  1958. <span class="n">t2</span><span class="o">.</span><span class="n">start</span><span class="p">()</span>
  1959. <span class="n">t3</span><span class="o">.</span><span class="n">start</span><span class="p">()</span>
  1960. <span class="o">.</span> <span class="o">.</span> <span class="o">.</span>
  1961. </pre></div>
  1962. </div>
  1963. </section>
  1964. <section id="recipes">
  1965. <span id="decimal-recipes"></span><h2>Recipes<a class="headerlink" href="#recipes" title="Link to this heading">¶</a></h2>
  1966. <p>Here are a few recipes that serve as utility functions and that demonstrate ways
  1967. to work with the <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a> class:</p>
  1968. <div class="highlight-python3 notranslate"><div class="highlight"><pre><span></span><span class="k">def</span> <span class="nf">moneyfmt</span><span class="p">(</span><span class="n">value</span><span class="p">,</span> <span class="n">places</span><span class="o">=</span><span class="mi">2</span><span class="p">,</span> <span class="n">curr</span><span class="o">=</span><span class="s1">&#39;&#39;</span><span class="p">,</span> <span class="n">sep</span><span class="o">=</span><span class="s1">&#39;,&#39;</span><span class="p">,</span> <span class="n">dp</span><span class="o">=</span><span class="s1">&#39;.&#39;</span><span class="p">,</span>
  1969. <span class="n">pos</span><span class="o">=</span><span class="s1">&#39;&#39;</span><span class="p">,</span> <span class="n">neg</span><span class="o">=</span><span class="s1">&#39;-&#39;</span><span class="p">,</span> <span class="n">trailneg</span><span class="o">=</span><span class="s1">&#39;&#39;</span><span class="p">):</span>
  1970. <span class="w"> </span><span class="sd">&quot;&quot;&quot;Convert Decimal to a money formatted string.</span>
  1971. <span class="sd"> places: required number of places after the decimal point</span>
  1972. <span class="sd"> curr: optional currency symbol before the sign (may be blank)</span>
  1973. <span class="sd"> sep: optional grouping separator (comma, period, space, or blank)</span>
  1974. <span class="sd"> dp: decimal point indicator (comma or period)</span>
  1975. <span class="sd"> only specify as blank when places is zero</span>
  1976. <span class="sd"> pos: optional sign for positive numbers: &#39;+&#39;, space or blank</span>
  1977. <span class="sd"> neg: optional sign for negative numbers: &#39;-&#39;, &#39;(&#39;, space or blank</span>
  1978. <span class="sd"> trailneg:optional trailing minus indicator: &#39;-&#39;, &#39;)&#39;, space or blank</span>
  1979. <span class="sd"> &gt;&gt;&gt; d = Decimal(&#39;-1234567.8901&#39;)</span>
  1980. <span class="sd"> &gt;&gt;&gt; moneyfmt(d, curr=&#39;$&#39;)</span>
  1981. <span class="sd"> &#39;-$1,234,567.89&#39;</span>
  1982. <span class="sd"> &gt;&gt;&gt; moneyfmt(d, places=0, sep=&#39;.&#39;, dp=&#39;&#39;, neg=&#39;&#39;, trailneg=&#39;-&#39;)</span>
  1983. <span class="sd"> &#39;1.234.568-&#39;</span>
  1984. <span class="sd"> &gt;&gt;&gt; moneyfmt(d, curr=&#39;$&#39;, neg=&#39;(&#39;, trailneg=&#39;)&#39;)</span>
  1985. <span class="sd"> &#39;($1,234,567.89)&#39;</span>
  1986. <span class="sd"> &gt;&gt;&gt; moneyfmt(Decimal(123456789), sep=&#39; &#39;)</span>
  1987. <span class="sd"> &#39;123 456 789.00&#39;</span>
  1988. <span class="sd"> &gt;&gt;&gt; moneyfmt(Decimal(&#39;-0.02&#39;), neg=&#39;&lt;&#39;, trailneg=&#39;&gt;&#39;)</span>
  1989. <span class="sd"> &#39;&lt;0.02&gt;&#39;</span>
  1990. <span class="sd"> &quot;&quot;&quot;</span>
  1991. <span class="n">q</span> <span class="o">=</span> <span class="n">Decimal</span><span class="p">(</span><span class="mi">10</span><span class="p">)</span> <span class="o">**</span> <span class="o">-</span><span class="n">places</span> <span class="c1"># 2 places --&gt; &#39;0.01&#39;</span>
  1992. <span class="n">sign</span><span class="p">,</span> <span class="n">digits</span><span class="p">,</span> <span class="n">exp</span> <span class="o">=</span> <span class="n">value</span><span class="o">.</span><span class="n">quantize</span><span class="p">(</span><span class="n">q</span><span class="p">)</span><span class="o">.</span><span class="n">as_tuple</span><span class="p">()</span>
  1993. <span class="n">result</span> <span class="o">=</span> <span class="p">[]</span>
  1994. <span class="n">digits</span> <span class="o">=</span> <span class="nb">list</span><span class="p">(</span><span class="nb">map</span><span class="p">(</span><span class="nb">str</span><span class="p">,</span> <span class="n">digits</span><span class="p">))</span>
  1995. <span class="n">build</span><span class="p">,</span> <span class="nb">next</span> <span class="o">=</span> <span class="n">result</span><span class="o">.</span><span class="n">append</span><span class="p">,</span> <span class="n">digits</span><span class="o">.</span><span class="n">pop</span>
  1996. <span class="k">if</span> <span class="n">sign</span><span class="p">:</span>
  1997. <span class="n">build</span><span class="p">(</span><span class="n">trailneg</span><span class="p">)</span>
  1998. <span class="k">for</span> <span class="n">i</span> <span class="ow">in</span> <span class="nb">range</span><span class="p">(</span><span class="n">places</span><span class="p">):</span>
  1999. <span class="n">build</span><span class="p">(</span><span class="nb">next</span><span class="p">()</span> <span class="k">if</span> <span class="n">digits</span> <span class="k">else</span> <span class="s1">&#39;0&#39;</span><span class="p">)</span>
  2000. <span class="k">if</span> <span class="n">places</span><span class="p">:</span>
  2001. <span class="n">build</span><span class="p">(</span><span class="n">dp</span><span class="p">)</span>
  2002. <span class="k">if</span> <span class="ow">not</span> <span class="n">digits</span><span class="p">:</span>
  2003. <span class="n">build</span><span class="p">(</span><span class="s1">&#39;0&#39;</span><span class="p">)</span>
  2004. <span class="n">i</span> <span class="o">=</span> <span class="mi">0</span>
  2005. <span class="k">while</span> <span class="n">digits</span><span class="p">:</span>
  2006. <span class="n">build</span><span class="p">(</span><span class="nb">next</span><span class="p">())</span>
  2007. <span class="n">i</span> <span class="o">+=</span> <span class="mi">1</span>
  2008. <span class="k">if</span> <span class="n">i</span> <span class="o">==</span> <span class="mi">3</span> <span class="ow">and</span> <span class="n">digits</span><span class="p">:</span>
  2009. <span class="n">i</span> <span class="o">=</span> <span class="mi">0</span>
  2010. <span class="n">build</span><span class="p">(</span><span class="n">sep</span><span class="p">)</span>
  2011. <span class="n">build</span><span class="p">(</span><span class="n">curr</span><span class="p">)</span>
  2012. <span class="n">build</span><span class="p">(</span><span class="n">neg</span> <span class="k">if</span> <span class="n">sign</span> <span class="k">else</span> <span class="n">pos</span><span class="p">)</span>
  2013. <span class="k">return</span> <span class="s1">&#39;&#39;</span><span class="o">.</span><span class="n">join</span><span class="p">(</span><span class="nb">reversed</span><span class="p">(</span><span class="n">result</span><span class="p">))</span>
  2014. <span class="k">def</span> <span class="nf">pi</span><span class="p">():</span>
  2015. <span class="w"> </span><span class="sd">&quot;&quot;&quot;Compute Pi to the current precision.</span>
  2016. <span class="sd"> &gt;&gt;&gt; print(pi())</span>
  2017. <span class="sd"> 3.141592653589793238462643383</span>
  2018. <span class="sd"> &quot;&quot;&quot;</span>
  2019. <span class="n">getcontext</span><span class="p">()</span><span class="o">.</span><span class="n">prec</span> <span class="o">+=</span> <span class="mi">2</span> <span class="c1"># extra digits for intermediate steps</span>
  2020. <span class="n">three</span> <span class="o">=</span> <span class="n">Decimal</span><span class="p">(</span><span class="mi">3</span><span class="p">)</span> <span class="c1"># substitute &quot;three=3.0&quot; for regular floats</span>
  2021. <span class="n">lasts</span><span class="p">,</span> <span class="n">t</span><span class="p">,</span> <span class="n">s</span><span class="p">,</span> <span class="n">n</span><span class="p">,</span> <span class="n">na</span><span class="p">,</span> <span class="n">d</span><span class="p">,</span> <span class="n">da</span> <span class="o">=</span> <span class="mi">0</span><span class="p">,</span> <span class="n">three</span><span class="p">,</span> <span class="mi">3</span><span class="p">,</span> <span class="mi">1</span><span class="p">,</span> <span class="mi">0</span><span class="p">,</span> <span class="mi">0</span><span class="p">,</span> <span class="mi">24</span>
  2022. <span class="k">while</span> <span class="n">s</span> <span class="o">!=</span> <span class="n">lasts</span><span class="p">:</span>
  2023. <span class="n">lasts</span> <span class="o">=</span> <span class="n">s</span>
  2024. <span class="n">n</span><span class="p">,</span> <span class="n">na</span> <span class="o">=</span> <span class="n">n</span><span class="o">+</span><span class="n">na</span><span class="p">,</span> <span class="n">na</span><span class="o">+</span><span class="mi">8</span>
  2025. <span class="n">d</span><span class="p">,</span> <span class="n">da</span> <span class="o">=</span> <span class="n">d</span><span class="o">+</span><span class="n">da</span><span class="p">,</span> <span class="n">da</span><span class="o">+</span><span class="mi">32</span>
  2026. <span class="n">t</span> <span class="o">=</span> <span class="p">(</span><span class="n">t</span> <span class="o">*</span> <span class="n">n</span><span class="p">)</span> <span class="o">/</span> <span class="n">d</span>
  2027. <span class="n">s</span> <span class="o">+=</span> <span class="n">t</span>
  2028. <span class="n">getcontext</span><span class="p">()</span><span class="o">.</span><span class="n">prec</span> <span class="o">-=</span> <span class="mi">2</span>
  2029. <span class="k">return</span> <span class="o">+</span><span class="n">s</span> <span class="c1"># unary plus applies the new precision</span>
  2030. <span class="k">def</span> <span class="nf">exp</span><span class="p">(</span><span class="n">x</span><span class="p">):</span>
  2031. <span class="w"> </span><span class="sd">&quot;&quot;&quot;Return e raised to the power of x. Result type matches input type.</span>
  2032. <span class="sd"> &gt;&gt;&gt; print(exp(Decimal(1)))</span>
  2033. <span class="sd"> 2.718281828459045235360287471</span>
  2034. <span class="sd"> &gt;&gt;&gt; print(exp(Decimal(2)))</span>
  2035. <span class="sd"> 7.389056098930650227230427461</span>
  2036. <span class="sd"> &gt;&gt;&gt; print(exp(2.0))</span>
  2037. <span class="sd"> 7.38905609893</span>
  2038. <span class="sd"> &gt;&gt;&gt; print(exp(2+0j))</span>
  2039. <span class="sd"> (7.38905609893+0j)</span>
  2040. <span class="sd"> &quot;&quot;&quot;</span>
  2041. <span class="n">getcontext</span><span class="p">()</span><span class="o">.</span><span class="n">prec</span> <span class="o">+=</span> <span class="mi">2</span>
  2042. <span class="n">i</span><span class="p">,</span> <span class="n">lasts</span><span class="p">,</span> <span class="n">s</span><span class="p">,</span> <span class="n">fact</span><span class="p">,</span> <span class="n">num</span> <span class="o">=</span> <span class="mi">0</span><span class="p">,</span> <span class="mi">0</span><span class="p">,</span> <span class="mi">1</span><span class="p">,</span> <span class="mi">1</span><span class="p">,</span> <span class="mi">1</span>
  2043. <span class="k">while</span> <span class="n">s</span> <span class="o">!=</span> <span class="n">lasts</span><span class="p">:</span>
  2044. <span class="n">lasts</span> <span class="o">=</span> <span class="n">s</span>
  2045. <span class="n">i</span> <span class="o">+=</span> <span class="mi">1</span>
  2046. <span class="n">fact</span> <span class="o">*=</span> <span class="n">i</span>
  2047. <span class="n">num</span> <span class="o">*=</span> <span class="n">x</span>
  2048. <span class="n">s</span> <span class="o">+=</span> <span class="n">num</span> <span class="o">/</span> <span class="n">fact</span>
  2049. <span class="n">getcontext</span><span class="p">()</span><span class="o">.</span><span class="n">prec</span> <span class="o">-=</span> <span class="mi">2</span>
  2050. <span class="k">return</span> <span class="o">+</span><span class="n">s</span>
  2051. <span class="k">def</span> <span class="nf">cos</span><span class="p">(</span><span class="n">x</span><span class="p">):</span>
  2052. <span class="w"> </span><span class="sd">&quot;&quot;&quot;Return the cosine of x as measured in radians.</span>
  2053. <span class="sd"> The Taylor series approximation works best for a small value of x.</span>
  2054. <span class="sd"> For larger values, first compute x = x % (2 * pi).</span>
  2055. <span class="sd"> &gt;&gt;&gt; print(cos(Decimal(&#39;0.5&#39;)))</span>
  2056. <span class="sd"> 0.8775825618903727161162815826</span>
  2057. <span class="sd"> &gt;&gt;&gt; print(cos(0.5))</span>
  2058. <span class="sd"> 0.87758256189</span>
  2059. <span class="sd"> &gt;&gt;&gt; print(cos(0.5+0j))</span>
  2060. <span class="sd"> (0.87758256189+0j)</span>
  2061. <span class="sd"> &quot;&quot;&quot;</span>
  2062. <span class="n">getcontext</span><span class="p">()</span><span class="o">.</span><span class="n">prec</span> <span class="o">+=</span> <span class="mi">2</span>
  2063. <span class="n">i</span><span class="p">,</span> <span class="n">lasts</span><span class="p">,</span> <span class="n">s</span><span class="p">,</span> <span class="n">fact</span><span class="p">,</span> <span class="n">num</span><span class="p">,</span> <span class="n">sign</span> <span class="o">=</span> <span class="mi">0</span><span class="p">,</span> <span class="mi">0</span><span class="p">,</span> <span class="mi">1</span><span class="p">,</span> <span class="mi">1</span><span class="p">,</span> <span class="mi">1</span><span class="p">,</span> <span class="mi">1</span>
  2064. <span class="k">while</span> <span class="n">s</span> <span class="o">!=</span> <span class="n">lasts</span><span class="p">:</span>
  2065. <span class="n">lasts</span> <span class="o">=</span> <span class="n">s</span>
  2066. <span class="n">i</span> <span class="o">+=</span> <span class="mi">2</span>
  2067. <span class="n">fact</span> <span class="o">*=</span> <span class="n">i</span> <span class="o">*</span> <span class="p">(</span><span class="n">i</span><span class="o">-</span><span class="mi">1</span><span class="p">)</span>
  2068. <span class="n">num</span> <span class="o">*=</span> <span class="n">x</span> <span class="o">*</span> <span class="n">x</span>
  2069. <span class="n">sign</span> <span class="o">*=</span> <span class="o">-</span><span class="mi">1</span>
  2070. <span class="n">s</span> <span class="o">+=</span> <span class="n">num</span> <span class="o">/</span> <span class="n">fact</span> <span class="o">*</span> <span class="n">sign</span>
  2071. <span class="n">getcontext</span><span class="p">()</span><span class="o">.</span><span class="n">prec</span> <span class="o">-=</span> <span class="mi">2</span>
  2072. <span class="k">return</span> <span class="o">+</span><span class="n">s</span>
  2073. <span class="k">def</span> <span class="nf">sin</span><span class="p">(</span><span class="n">x</span><span class="p">):</span>
  2074. <span class="w"> </span><span class="sd">&quot;&quot;&quot;Return the sine of x as measured in radians.</span>
  2075. <span class="sd"> The Taylor series approximation works best for a small value of x.</span>
  2076. <span class="sd"> For larger values, first compute x = x % (2 * pi).</span>
  2077. <span class="sd"> &gt;&gt;&gt; print(sin(Decimal(&#39;0.5&#39;)))</span>
  2078. <span class="sd"> 0.4794255386042030002732879352</span>
  2079. <span class="sd"> &gt;&gt;&gt; print(sin(0.5))</span>
  2080. <span class="sd"> 0.479425538604</span>
  2081. <span class="sd"> &gt;&gt;&gt; print(sin(0.5+0j))</span>
  2082. <span class="sd"> (0.479425538604+0j)</span>
  2083. <span class="sd"> &quot;&quot;&quot;</span>
  2084. <span class="n">getcontext</span><span class="p">()</span><span class="o">.</span><span class="n">prec</span> <span class="o">+=</span> <span class="mi">2</span>
  2085. <span class="n">i</span><span class="p">,</span> <span class="n">lasts</span><span class="p">,</span> <span class="n">s</span><span class="p">,</span> <span class="n">fact</span><span class="p">,</span> <span class="n">num</span><span class="p">,</span> <span class="n">sign</span> <span class="o">=</span> <span class="mi">1</span><span class="p">,</span> <span class="mi">0</span><span class="p">,</span> <span class="n">x</span><span class="p">,</span> <span class="mi">1</span><span class="p">,</span> <span class="n">x</span><span class="p">,</span> <span class="mi">1</span>
  2086. <span class="k">while</span> <span class="n">s</span> <span class="o">!=</span> <span class="n">lasts</span><span class="p">:</span>
  2087. <span class="n">lasts</span> <span class="o">=</span> <span class="n">s</span>
  2088. <span class="n">i</span> <span class="o">+=</span> <span class="mi">2</span>
  2089. <span class="n">fact</span> <span class="o">*=</span> <span class="n">i</span> <span class="o">*</span> <span class="p">(</span><span class="n">i</span><span class="o">-</span><span class="mi">1</span><span class="p">)</span>
  2090. <span class="n">num</span> <span class="o">*=</span> <span class="n">x</span> <span class="o">*</span> <span class="n">x</span>
  2091. <span class="n">sign</span> <span class="o">*=</span> <span class="o">-</span><span class="mi">1</span>
  2092. <span class="n">s</span> <span class="o">+=</span> <span class="n">num</span> <span class="o">/</span> <span class="n">fact</span> <span class="o">*</span> <span class="n">sign</span>
  2093. <span class="n">getcontext</span><span class="p">()</span><span class="o">.</span><span class="n">prec</span> <span class="o">-=</span> <span class="mi">2</span>
  2094. <span class="k">return</span> <span class="o">+</span><span class="n">s</span>
  2095. </pre></div>
  2096. </div>
  2097. </section>
  2098. <section id="decimal-faq">
  2099. <span id="id1"></span><h2>Decimal FAQ<a class="headerlink" href="#decimal-faq" title="Link to this heading">¶</a></h2>
  2100. <p>Q. It is cumbersome to type <code class="docutils literal notranslate"><span class="pre">decimal.Decimal('1234.5')</span></code>. Is there a way to
  2101. minimize typing when using the interactive interpreter?</p>
  2102. <p>A. Some users abbreviate the constructor to just a single letter:</p>
  2103. <div class="doctest highlight-default notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">D</span> <span class="o">=</span> <span class="n">decimal</span><span class="o">.</span><span class="n">Decimal</span>
  2104. <span class="gp">&gt;&gt;&gt; </span><span class="n">D</span><span class="p">(</span><span class="s1">&#39;1.23&#39;</span><span class="p">)</span> <span class="o">+</span> <span class="n">D</span><span class="p">(</span><span class="s1">&#39;3.45&#39;</span><span class="p">)</span>
  2105. <span class="go">Decimal(&#39;4.68&#39;)</span>
  2106. </pre></div>
  2107. </div>
  2108. <p>Q. In a fixed-point application with two decimal places, some inputs have many
  2109. places and need to be rounded. Others are not supposed to have excess digits
  2110. and need to be validated. What methods should be used?</p>
  2111. <p>A. The <a class="reference internal" href="#decimal.Decimal.quantize" title="decimal.Decimal.quantize"><code class="xref py py-meth docutils literal notranslate"><span class="pre">quantize()</span></code></a> method rounds to a fixed number of decimal places. If
  2112. the <a class="reference internal" href="#decimal.Inexact" title="decimal.Inexact"><code class="xref py py-const docutils literal notranslate"><span class="pre">Inexact</span></code></a> trap is set, it is also useful for validation:</p>
  2113. <div class="doctest highlight-default notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">TWOPLACES</span> <span class="o">=</span> <span class="n">Decimal</span><span class="p">(</span><span class="mi">10</span><span class="p">)</span> <span class="o">**</span> <span class="o">-</span><span class="mi">2</span> <span class="c1"># same as Decimal(&#39;0.01&#39;)</span>
  2114. </pre></div>
  2115. </div>
  2116. <div class="doctest highlight-default notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="c1"># Round to two places</span>
  2117. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;3.214&#39;</span><span class="p">)</span><span class="o">.</span><span class="n">quantize</span><span class="p">(</span><span class="n">TWOPLACES</span><span class="p">)</span>
  2118. <span class="go">Decimal(&#39;3.21&#39;)</span>
  2119. </pre></div>
  2120. </div>
  2121. <div class="doctest highlight-default notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="c1"># Validate that a number does not exceed two places</span>
  2122. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;3.21&#39;</span><span class="p">)</span><span class="o">.</span><span class="n">quantize</span><span class="p">(</span><span class="n">TWOPLACES</span><span class="p">,</span> <span class="n">context</span><span class="o">=</span><span class="n">Context</span><span class="p">(</span><span class="n">traps</span><span class="o">=</span><span class="p">[</span><span class="n">Inexact</span><span class="p">]))</span>
  2123. <span class="go">Decimal(&#39;3.21&#39;)</span>
  2124. </pre></div>
  2125. </div>
  2126. <div class="doctest highlight-default notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;3.214&#39;</span><span class="p">)</span><span class="o">.</span><span class="n">quantize</span><span class="p">(</span><span class="n">TWOPLACES</span><span class="p">,</span> <span class="n">context</span><span class="o">=</span><span class="n">Context</span><span class="p">(</span><span class="n">traps</span><span class="o">=</span><span class="p">[</span><span class="n">Inexact</span><span class="p">]))</span>
  2127. <span class="gt">Traceback (most recent call last):</span>
  2128. <span class="w"> </span><span class="c">...</span>
  2129. <span class="gr">Inexact</span>: <span class="n">None</span>
  2130. </pre></div>
  2131. </div>
  2132. <p>Q. Once I have valid two place inputs, how do I maintain that invariant
  2133. throughout an application?</p>
  2134. <p>A. Some operations like addition, subtraction, and multiplication by an integer
  2135. will automatically preserve fixed point. Others operations, like division and
  2136. non-integer multiplication, will change the number of decimal places and need to
  2137. be followed-up with a <a class="reference internal" href="#decimal.Decimal.quantize" title="decimal.Decimal.quantize"><code class="xref py py-meth docutils literal notranslate"><span class="pre">quantize()</span></code></a> step:</p>
  2138. <div class="doctest highlight-default notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">a</span> <span class="o">=</span> <span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;102.72&#39;</span><span class="p">)</span> <span class="c1"># Initial fixed-point values</span>
  2139. <span class="gp">&gt;&gt;&gt; </span><span class="n">b</span> <span class="o">=</span> <span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;3.17&#39;</span><span class="p">)</span>
  2140. <span class="gp">&gt;&gt;&gt; </span><span class="n">a</span> <span class="o">+</span> <span class="n">b</span> <span class="c1"># Addition preserves fixed-point</span>
  2141. <span class="go">Decimal(&#39;105.89&#39;)</span>
  2142. <span class="gp">&gt;&gt;&gt; </span><span class="n">a</span> <span class="o">-</span> <span class="n">b</span>
  2143. <span class="go">Decimal(&#39;99.55&#39;)</span>
  2144. <span class="gp">&gt;&gt;&gt; </span><span class="n">a</span> <span class="o">*</span> <span class="mi">42</span> <span class="c1"># So does integer multiplication</span>
  2145. <span class="go">Decimal(&#39;4314.24&#39;)</span>
  2146. <span class="gp">&gt;&gt;&gt; </span><span class="p">(</span><span class="n">a</span> <span class="o">*</span> <span class="n">b</span><span class="p">)</span><span class="o">.</span><span class="n">quantize</span><span class="p">(</span><span class="n">TWOPLACES</span><span class="p">)</span> <span class="c1"># Must quantize non-integer multiplication</span>
  2147. <span class="go">Decimal(&#39;325.62&#39;)</span>
  2148. <span class="gp">&gt;&gt;&gt; </span><span class="p">(</span><span class="n">b</span> <span class="o">/</span> <span class="n">a</span><span class="p">)</span><span class="o">.</span><span class="n">quantize</span><span class="p">(</span><span class="n">TWOPLACES</span><span class="p">)</span> <span class="c1"># And quantize division</span>
  2149. <span class="go">Decimal(&#39;0.03&#39;)</span>
  2150. </pre></div>
  2151. </div>
  2152. <p>In developing fixed-point applications, it is convenient to define functions
  2153. to handle the <a class="reference internal" href="#decimal.Decimal.quantize" title="decimal.Decimal.quantize"><code class="xref py py-meth docutils literal notranslate"><span class="pre">quantize()</span></code></a> step:</p>
  2154. <div class="doctest highlight-default notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="k">def</span> <span class="nf">mul</span><span class="p">(</span><span class="n">x</span><span class="p">,</span> <span class="n">y</span><span class="p">,</span> <span class="n">fp</span><span class="o">=</span><span class="n">TWOPLACES</span><span class="p">):</span>
  2155. <span class="gp">... </span> <span class="k">return</span> <span class="p">(</span><span class="n">x</span> <span class="o">*</span> <span class="n">y</span><span class="p">)</span><span class="o">.</span><span class="n">quantize</span><span class="p">(</span><span class="n">fp</span><span class="p">)</span>
  2156. <span class="gp">...</span>
  2157. <span class="gp">&gt;&gt;&gt; </span><span class="k">def</span> <span class="nf">div</span><span class="p">(</span><span class="n">x</span><span class="p">,</span> <span class="n">y</span><span class="p">,</span> <span class="n">fp</span><span class="o">=</span><span class="n">TWOPLACES</span><span class="p">):</span>
  2158. <span class="gp">... </span> <span class="k">return</span> <span class="p">(</span><span class="n">x</span> <span class="o">/</span> <span class="n">y</span><span class="p">)</span><span class="o">.</span><span class="n">quantize</span><span class="p">(</span><span class="n">fp</span><span class="p">)</span>
  2159. </pre></div>
  2160. </div>
  2161. <div class="doctest highlight-default notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">mul</span><span class="p">(</span><span class="n">a</span><span class="p">,</span> <span class="n">b</span><span class="p">)</span> <span class="c1"># Automatically preserve fixed-point</span>
  2162. <span class="go">Decimal(&#39;325.62&#39;)</span>
  2163. <span class="gp">&gt;&gt;&gt; </span><span class="n">div</span><span class="p">(</span><span class="n">b</span><span class="p">,</span> <span class="n">a</span><span class="p">)</span>
  2164. <span class="go">Decimal(&#39;0.03&#39;)</span>
  2165. </pre></div>
  2166. </div>
  2167. <p>Q. There are many ways to express the same value. The numbers <code class="docutils literal notranslate"><span class="pre">200</span></code>,
  2168. <code class="docutils literal notranslate"><span class="pre">200.000</span></code>, <code class="docutils literal notranslate"><span class="pre">2E2</span></code>, and <code class="docutils literal notranslate"><span class="pre">.02E+4</span></code> all have the same value at
  2169. various precisions. Is there a way to transform them to a single recognizable
  2170. canonical value?</p>
  2171. <p>A. The <a class="reference internal" href="#decimal.Decimal.normalize" title="decimal.Decimal.normalize"><code class="xref py py-meth docutils literal notranslate"><span class="pre">normalize()</span></code></a> method maps all equivalent values to a single
  2172. representative:</p>
  2173. <div class="doctest highlight-default notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">values</span> <span class="o">=</span> <span class="nb">map</span><span class="p">(</span><span class="n">Decimal</span><span class="p">,</span> <span class="s1">&#39;200 200.000 2E2 .02E+4&#39;</span><span class="o">.</span><span class="n">split</span><span class="p">())</span>
  2174. <span class="gp">&gt;&gt;&gt; </span><span class="p">[</span><span class="n">v</span><span class="o">.</span><span class="n">normalize</span><span class="p">()</span> <span class="k">for</span> <span class="n">v</span> <span class="ow">in</span> <span class="n">values</span><span class="p">]</span>
  2175. <span class="go">[Decimal(&#39;2E+2&#39;), Decimal(&#39;2E+2&#39;), Decimal(&#39;2E+2&#39;), Decimal(&#39;2E+2&#39;)]</span>
  2176. </pre></div>
  2177. </div>
  2178. <p>Q. When does rounding occur in a computation?</p>
  2179. <p>A. It occurs <em>after</em> the computation. The philosophy of the decimal
  2180. specification is that numbers are considered exact and are created
  2181. independent of the current context. They can even have greater
  2182. precision than current context. Computations process with those
  2183. exact inputs and then rounding (or other context operations) is
  2184. applied to the <em>result</em> of the computation:</p>
  2185. <div class="highlight-python3 notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">getcontext</span><span class="p">()</span><span class="o">.</span><span class="n">prec</span> <span class="o">=</span> <span class="mi">5</span>
  2186. <span class="gp">&gt;&gt;&gt; </span><span class="n">pi</span> <span class="o">=</span> <span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;3.1415926535&#39;</span><span class="p">)</span> <span class="c1"># More than 5 digits</span>
  2187. <span class="gp">&gt;&gt;&gt; </span><span class="n">pi</span> <span class="c1"># All digits are retained</span>
  2188. <span class="go">Decimal(&#39;3.1415926535&#39;)</span>
  2189. <span class="gp">&gt;&gt;&gt; </span><span class="n">pi</span> <span class="o">+</span> <span class="mi">0</span> <span class="c1"># Rounded after an addition</span>
  2190. <span class="go">Decimal(&#39;3.1416&#39;)</span>
  2191. <span class="gp">&gt;&gt;&gt; </span><span class="n">pi</span> <span class="o">-</span> <span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;0.00005&#39;</span><span class="p">)</span> <span class="c1"># Subtract unrounded numbers, then round</span>
  2192. <span class="go">Decimal(&#39;3.1415&#39;)</span>
  2193. <span class="gp">&gt;&gt;&gt; </span><span class="n">pi</span> <span class="o">+</span> <span class="mi">0</span> <span class="o">-</span> <span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;0.00005&#39;</span><span class="p">)</span><span class="o">.</span> <span class="c1"># Intermediate values are rounded</span>
  2194. <span class="go">Decimal(&#39;3.1416&#39;)</span>
  2195. </pre></div>
  2196. </div>
  2197. <p>Q. Some decimal values always print with exponential notation. Is there a way
  2198. to get a non-exponential representation?</p>
  2199. <p>A. For some values, exponential notation is the only way to express the number
  2200. of significant places in the coefficient. For example, expressing
  2201. <code class="docutils literal notranslate"><span class="pre">5.0E+3</span></code> as <code class="docutils literal notranslate"><span class="pre">5000</span></code> keeps the value constant but cannot show the
  2202. original’s two-place significance.</p>
  2203. <p>If an application does not care about tracking significance, it is easy to
  2204. remove the exponent and trailing zeroes, losing significance, but keeping the
  2205. value unchanged:</p>
  2206. <div class="doctest highlight-default notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="k">def</span> <span class="nf">remove_exponent</span><span class="p">(</span><span class="n">d</span><span class="p">):</span>
  2207. <span class="gp">... </span> <span class="k">return</span> <span class="n">d</span><span class="o">.</span><span class="n">quantize</span><span class="p">(</span><span class="n">Decimal</span><span class="p">(</span><span class="mi">1</span><span class="p">))</span> <span class="k">if</span> <span class="n">d</span> <span class="o">==</span> <span class="n">d</span><span class="o">.</span><span class="n">to_integral</span><span class="p">()</span> <span class="k">else</span> <span class="n">d</span><span class="o">.</span><span class="n">normalize</span><span class="p">()</span>
  2208. </pre></div>
  2209. </div>
  2210. <div class="doctest highlight-default notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">remove_exponent</span><span class="p">(</span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;5E+3&#39;</span><span class="p">))</span>
  2211. <span class="go">Decimal(&#39;5000&#39;)</span>
  2212. </pre></div>
  2213. </div>
  2214. <p>Q. Is there a way to convert a regular float to a <a class="reference internal" href="#decimal.Decimal" title="decimal.Decimal"><code class="xref py py-class docutils literal notranslate"><span class="pre">Decimal</span></code></a>?</p>
  2215. <p>A. Yes, any binary floating point number can be exactly expressed as a
  2216. Decimal though an exact conversion may take more precision than intuition would
  2217. suggest:</p>
  2218. <div class="highlight-pycon notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="n">math</span><span class="o">.</span><span class="n">pi</span><span class="p">)</span>
  2219. <span class="go">Decimal(&#39;3.141592653589793115997963468544185161590576171875&#39;)</span>
  2220. </pre></div>
  2221. </div>
  2222. <p>Q. Within a complex calculation, how can I make sure that I haven’t gotten a
  2223. spurious result because of insufficient precision or rounding anomalies.</p>
  2224. <p>A. The decimal module makes it easy to test results. A best practice is to
  2225. re-run calculations using greater precision and with various rounding modes.
  2226. Widely differing results indicate insufficient precision, rounding mode issues,
  2227. ill-conditioned inputs, or a numerically unstable algorithm.</p>
  2228. <p>Q. I noticed that context precision is applied to the results of operations but
  2229. not to the inputs. Is there anything to watch out for when mixing values of
  2230. different precisions?</p>
  2231. <p>A. Yes. The principle is that all values are considered to be exact and so is
  2232. the arithmetic on those values. Only the results are rounded. The advantage
  2233. for inputs is that “what you type is what you get”. A disadvantage is that the
  2234. results can look odd if you forget that the inputs haven’t been rounded:</p>
  2235. <div class="highlight-pycon notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">getcontext</span><span class="p">()</span><span class="o">.</span><span class="n">prec</span> <span class="o">=</span> <span class="mi">3</span>
  2236. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;3.104&#39;</span><span class="p">)</span> <span class="o">+</span> <span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;2.104&#39;</span><span class="p">)</span>
  2237. <span class="go">Decimal(&#39;5.21&#39;)</span>
  2238. <span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;3.104&#39;</span><span class="p">)</span> <span class="o">+</span> <span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;0.000&#39;</span><span class="p">)</span> <span class="o">+</span> <span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;2.104&#39;</span><span class="p">)</span>
  2239. <span class="go">Decimal(&#39;5.20&#39;)</span>
  2240. </pre></div>
  2241. </div>
  2242. <p>The solution is either to increase precision or to force rounding of inputs
  2243. using the unary plus operation:</p>
  2244. <div class="highlight-pycon notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">getcontext</span><span class="p">()</span><span class="o">.</span><span class="n">prec</span> <span class="o">=</span> <span class="mi">3</span>
  2245. <span class="gp">&gt;&gt;&gt; </span><span class="o">+</span><span class="n">Decimal</span><span class="p">(</span><span class="s1">&#39;1.23456789&#39;</span><span class="p">)</span> <span class="c1"># unary plus triggers rounding</span>
  2246. <span class="go">Decimal(&#39;1.23&#39;)</span>
  2247. </pre></div>
  2248. </div>
  2249. <p>Alternatively, inputs can be rounded upon creation using the
  2250. <a class="reference internal" href="#decimal.Context.create_decimal" title="decimal.Context.create_decimal"><code class="xref py py-meth docutils literal notranslate"><span class="pre">Context.create_decimal()</span></code></a> method:</p>
  2251. <div class="doctest highlight-default notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">Context</span><span class="p">(</span><span class="n">prec</span><span class="o">=</span><span class="mi">5</span><span class="p">,</span> <span class="n">rounding</span><span class="o">=</span><span class="n">ROUND_DOWN</span><span class="p">)</span><span class="o">.</span><span class="n">create_decimal</span><span class="p">(</span><span class="s1">&#39;1.2345678&#39;</span><span class="p">)</span>
  2252. <span class="go">Decimal(&#39;1.2345&#39;)</span>
  2253. </pre></div>
  2254. </div>
  2255. <p>Q. Is the CPython implementation fast for large numbers?</p>
  2256. <p>A. Yes. In the CPython and PyPy3 implementations, the C/CFFI versions of
  2257. the decimal module integrate the high speed <a class="reference external" href="https://www.bytereef.org/mpdecimal/doc/libmpdec/index.html">libmpdec</a> library for
  2258. arbitrary precision correctly rounded decimal floating point arithmetic <a class="footnote-reference brackets" href="#id4" id="id2" role="doc-noteref"><span class="fn-bracket">[</span>1<span class="fn-bracket">]</span></a>.
  2259. <code class="docutils literal notranslate"><span class="pre">libmpdec</span></code> uses <a class="reference external" href="https://en.wikipedia.org/wiki/Karatsuba_algorithm">Karatsuba multiplication</a>
  2260. for medium-sized numbers and the <a class="reference external" href="https://en.wikipedia.org/wiki/Discrete_Fourier_transform_(general)#Number-theoretic_transform">Number Theoretic Transform</a>
  2261. for very large numbers.</p>
  2262. <p>The context must be adapted for exact arbitrary precision arithmetic. <code class="xref py py-attr docutils literal notranslate"><span class="pre">Emin</span></code>
  2263. and <code class="xref py py-attr docutils literal notranslate"><span class="pre">Emax</span></code> should always be set to the maximum values, <code class="xref py py-attr docutils literal notranslate"><span class="pre">clamp</span></code>
  2264. should always be 0 (the default). Setting <code class="xref py py-attr docutils literal notranslate"><span class="pre">prec</span></code> requires some care.</p>
  2265. <p>The easiest approach for trying out bignum arithmetic is to use the maximum
  2266. value for <code class="xref py py-attr docutils literal notranslate"><span class="pre">prec</span></code> as well <a class="footnote-reference brackets" href="#id5" id="id3" role="doc-noteref"><span class="fn-bracket">[</span>2<span class="fn-bracket">]</span></a>:</p>
  2267. <div class="highlight-python3 notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">setcontext</span><span class="p">(</span><span class="n">Context</span><span class="p">(</span><span class="n">prec</span><span class="o">=</span><span class="n">MAX_PREC</span><span class="p">,</span> <span class="n">Emax</span><span class="o">=</span><span class="n">MAX_EMAX</span><span class="p">,</span> <span class="n">Emin</span><span class="o">=</span><span class="n">MIN_EMIN</span><span class="p">))</span>
  2268. <span class="gp">&gt;&gt;&gt; </span><span class="n">x</span> <span class="o">=</span> <span class="n">Decimal</span><span class="p">(</span><span class="mi">2</span><span class="p">)</span> <span class="o">**</span> <span class="mi">256</span>
  2269. <span class="gp">&gt;&gt;&gt; </span><span class="n">x</span> <span class="o">/</span> <span class="mi">128</span>
  2270. <span class="go">Decimal(&#39;904625697166532776746648320380374280103671755200316906558262375061821325312&#39;)</span>
  2271. </pre></div>
  2272. </div>
  2273. <p>For inexact results, <a class="reference internal" href="#decimal.MAX_PREC" title="decimal.MAX_PREC"><code class="xref py py-attr docutils literal notranslate"><span class="pre">MAX_PREC</span></code></a> is far too large on 64-bit platforms and
  2274. the available memory will be insufficient:</p>
  2275. <div class="highlight-python3 notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="n">Decimal</span><span class="p">(</span><span class="mi">1</span><span class="p">)</span> <span class="o">/</span> <span class="mi">3</span>
  2276. <span class="gt">Traceback (most recent call last):</span>
  2277. File <span class="nb">&quot;&lt;stdin&gt;&quot;</span>, line <span class="m">1</span>, in <span class="n">&lt;module&gt;</span>
  2278. <span class="gr">MemoryError</span>
  2279. </pre></div>
  2280. </div>
  2281. <p>On systems with overallocation (e.g. Linux), a more sophisticated approach is to
  2282. adjust <code class="xref py py-attr docutils literal notranslate"><span class="pre">prec</span></code> to the amount of available RAM. Suppose that you have 8GB of
  2283. RAM and expect 10 simultaneous operands using a maximum of 500MB each:</p>
  2284. <div class="highlight-python3 notranslate"><div class="highlight"><pre><span></span><span class="gp">&gt;&gt;&gt; </span><span class="kn">import</span> <span class="nn">sys</span>
  2285. <span class="gp">&gt;&gt;&gt;</span>
  2286. <span class="gp">&gt;&gt;&gt; </span><span class="c1"># Maximum number of digits for a single operand using 500MB in 8-byte words</span>
  2287. <span class="gp">&gt;&gt;&gt; </span><span class="c1"># with 19 digits per word (4-byte and 9 digits for the 32-bit build):</span>
  2288. <span class="gp">&gt;&gt;&gt; </span><span class="n">maxdigits</span> <span class="o">=</span> <span class="mi">19</span> <span class="o">*</span> <span class="p">((</span><span class="mi">500</span> <span class="o">*</span> <span class="mi">1024</span><span class="o">**</span><span class="mi">2</span><span class="p">)</span> <span class="o">//</span> <span class="mi">8</span><span class="p">)</span>
  2289. <span class="gp">&gt;&gt;&gt;</span>
  2290. <span class="gp">&gt;&gt;&gt; </span><span class="c1"># Check that this works:</span>
  2291. <span class="gp">&gt;&gt;&gt; </span><span class="n">c</span> <span class="o">=</span> <span class="n">Context</span><span class="p">(</span><span class="n">prec</span><span class="o">=</span><span class="n">maxdigits</span><span class="p">,</span> <span class="n">Emax</span><span class="o">=</span><span class="n">MAX_EMAX</span><span class="p">,</span> <span class="n">Emin</span><span class="o">=</span><span class="n">MIN_EMIN</span><span class="p">)</span>
  2292. <span class="gp">&gt;&gt;&gt; </span><span class="n">c</span><span class="o">.</span><span class="n">traps</span><span class="p">[</span><span class="n">Inexact</span><span class="p">]</span> <span class="o">=</span> <span class="kc">True</span>
  2293. <span class="gp">&gt;&gt;&gt; </span><span class="n">setcontext</span><span class="p">(</span><span class="n">c</span><span class="p">)</span>
  2294. <span class="gp">&gt;&gt;&gt;</span>
  2295. <span class="gp">&gt;&gt;&gt; </span><span class="c1"># Fill the available precision with nines:</span>
  2296. <span class="gp">&gt;&gt;&gt; </span><span class="n">x</span> <span class="o">=</span> <span class="n">Decimal</span><span class="p">(</span><span class="mi">0</span><span class="p">)</span><span class="o">.</span><span class="n">logical_invert</span><span class="p">()</span> <span class="o">*</span> <span class="mi">9</span>
  2297. <span class="gp">&gt;&gt;&gt; </span><span class="n">sys</span><span class="o">.</span><span class="n">getsizeof</span><span class="p">(</span><span class="n">x</span><span class="p">)</span>
  2298. <span class="go">524288112</span>
  2299. <span class="gp">&gt;&gt;&gt; </span><span class="n">x</span> <span class="o">+</span> <span class="mi">2</span>
  2300. <span class="gt">Traceback (most recent call last):</span>
  2301. File <span class="nb">&quot;&lt;stdin&gt;&quot;</span>, line <span class="m">1</span>, in <span class="n">&lt;module&gt;</span>
  2302. <span class="gr"> decimal.Inexact</span>: <span class="n">[&lt;class &#39;decimal.Inexact&#39;&gt;]</span>
  2303. </pre></div>
  2304. </div>
  2305. <p>In general (and especially on systems without overallocation), it is recommended
  2306. to estimate even tighter bounds and set the <a class="reference internal" href="#decimal.Inexact" title="decimal.Inexact"><code class="xref py py-attr docutils literal notranslate"><span class="pre">Inexact</span></code></a> trap if all calculations
  2307. are expected to be exact.</p>
  2308. <aside class="footnote-list brackets">
  2309. <aside class="footnote brackets" id="id4" role="doc-footnote">
  2310. <span class="label"><span class="fn-bracket">[</span><a role="doc-backlink" href="#id2">1</a><span class="fn-bracket">]</span></span>
  2311. <div class="versionadded">
  2312. <p><span class="versionmodified added">New in version 3.3.</span></p>
  2313. </div>
  2314. </aside>
  2315. <aside class="footnote brackets" id="id5" role="doc-footnote">
  2316. <span class="label"><span class="fn-bracket">[</span><a role="doc-backlink" href="#id3">2</a><span class="fn-bracket">]</span></span>
  2317. <div class="versionchanged">
  2318. <p><span class="versionmodified changed">Changed in version 3.9: </span>This approach now works for all exact results except for non-integer powers.</p>
  2319. </div>
  2320. </aside>
  2321. </aside>
  2322. </section>
  2323. </section>
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  2332. <ul>
  2333. <li><a class="reference internal" href="#"><code class="xref py py-mod docutils literal notranslate"><span class="pre">decimal</span></code> — Decimal fixed point and floating point arithmetic</a><ul>
  2334. <li><a class="reference internal" href="#quick-start-tutorial">Quick-start Tutorial</a></li>
  2335. <li><a class="reference internal" href="#decimal-objects">Decimal objects</a><ul>
  2336. <li><a class="reference internal" href="#logical-operands">Logical operands</a></li>
  2337. </ul>
  2338. </li>
  2339. <li><a class="reference internal" href="#context-objects">Context objects</a></li>
  2340. <li><a class="reference internal" href="#constants">Constants</a></li>
  2341. <li><a class="reference internal" href="#rounding-modes">Rounding modes</a></li>
  2342. <li><a class="reference internal" href="#signals">Signals</a></li>
  2343. <li><a class="reference internal" href="#floating-point-notes">Floating Point Notes</a><ul>
  2344. <li><a class="reference internal" href="#mitigating-round-off-error-with-increased-precision">Mitigating round-off error with increased precision</a></li>
  2345. <li><a class="reference internal" href="#special-values">Special values</a></li>
  2346. </ul>
  2347. </li>
  2348. <li><a class="reference internal" href="#working-with-threads">Working with threads</a></li>
  2349. <li><a class="reference internal" href="#recipes">Recipes</a></li>
  2350. <li><a class="reference internal" href="#decimal-faq">Decimal FAQ</a></li>
  2351. </ul>
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