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Static Public Attributes</h2></td></tr>
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<a name="details" id="details"></a><h2 class="groupheader">Detailed Description</h2>
<div class="textblock"><p>Part of std::numeric_limits. </p>
<p>The <code>static</code> <code>const</code> members are usable as integral constant expressions.</p>
<dl class="section note"><dt>Note</dt><dd>This is a separate class for purposes of efficiency; you should only access these members as part of an instantiation of the std::numeric_limits class. </dd></dl>

<p>Definition at line <a class="el" href="a01334_source.html#l00191">191</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>
</div><h2 class="groupheader">Member Data Documentation</h2>
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<p>The number of <code>radix</code> digits that be represented without change: for integer types, the number of non-sign bits in the mantissa; for floating types, the number of <code>radix</code> digits in the mantissa. </p>

<p>Definition at line <a class="el" href="a01334_source.html#l00200">200</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>

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<p>The number of base 10 digits that can be represented without change. </p>

<p>Definition at line <a class="el" href="a01334_source.html#l00203">203</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>

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          <td class="memname">constexpr <a class="el" href="a01662.html#a5d4e3dd02abab45dde95b5bb4ae7fdbf">float_denorm_style</a> std::__numeric_limits_base::has_denorm</td>
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<p>See std::float_denorm_style for more information. </p>

<p>Definition at line <a class="el" href="a01334_source.html#l00255">255</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>

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<p>True if loss of accuracy is detected as a denormalization loss, rather than as an inexact result. </p>

<p>Definition at line <a class="el" href="a01334_source.html#l00259">259</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>

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<p>True if the type has a representation for positive infinity. </p>

<p>Definition at line <a class="el" href="a01334_source.html#l00244">244</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>

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<p>True if the type has a representation for a quiet (non-signaling) Not a Number. </p>

<p>Definition at line <a class="el" href="a01334_source.html#l00248">248</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>

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<p>True if the type has a representation for a signaling Not a Number. </p>

<p>Definition at line <a class="el" href="a01334_source.html#l00252">252</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>

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<p>True if the set of values representable by the type is finite. All built-in types are bounded, this member would be false for arbitrary precision types. </p>

<p>Definition at line <a class="el" href="a01334_source.html#l00268">268</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>

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<p>True if the type uses an exact representation. All integer types are exact, but not all exact types are integer. For example, rational and fixed-exponent representations are exact but not integer. </p>

<p>Definition at line <a class="el" href="a01334_source.html#l00220">220</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>

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<p>True if-and-only-if the type adheres to the IEC 559 standard, also known as IEEE 754. (Only makes sense for floating point types.) </p>

<p>Definition at line <a class="el" href="a01334_source.html#l00263">263</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>

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<p>True if the type is integer. </p>

<p>Definition at line <a class="el" href="a01334_source.html#l00215">215</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>

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<p>True if the type is <em>modulo</em>. A type is modulo if, for any operation involving +, -, or * on values of that type whose result would fall outside the range [min(),max()], the value returned differs from the true value by an integer multiple of max() - min() + 1. On most machines, this is false for floating types, true for unsigned integers, and true for signed integers. See PR22200 about signed integers. </p>

<p>Definition at line <a class="el" href="a01334_source.html#l00277">277</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>

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<p>True if the type is signed. </p>

<p>Definition at line <a class="el" href="a01334_source.html#l00212">212</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>

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<p>This will be true for all fundamental types (which have specializations), and false for everything else. </p>

<p>Definition at line <a class="el" href="a01334_source.html#l00195">195</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>

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<p>The number of base 10 digits required to ensure that values which differ are always differentiated. </p>

<p>Definition at line <a class="el" href="a01334_source.html#l00208">208</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>

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<p>The maximum positive integer such that <code>radix</code> raised to the power of (one less than that integer) is a representable finite floating point number. </p>

<p>Definition at line <a class="el" href="a01334_source.html#l00237">237</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>

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<p>The maximum positive integer such that 10 raised to that power is in the range of representable finite floating point numbers. </p>

<p>Definition at line <a class="el" href="a01334_source.html#l00241">241</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>

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<p>The minimum negative integer such that <code>radix</code> raised to the power of (one less than that integer) is a normalized floating point number. </p>

<p>Definition at line <a class="el" href="a01334_source.html#l00228">228</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>

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<p>The minimum negative integer such that 10 raised to that power is in the range of normalized floating point numbers. </p>

<p>Definition at line <a class="el" href="a01334_source.html#l00232">232</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>

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<p>For integer types, specifies the base of the representation. For floating types, specifies the base of the exponent representation. </p>

<p>Definition at line <a class="el" href="a01334_source.html#l00224">224</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>

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<p>See std::float_round_style for more information. This is only meaningful for floating types; integer types will all be round_toward_zero. </p>

<p>Definition at line <a class="el" href="a01334_source.html#l00288">288</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>

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<p>True if tininess is detected before rounding. (see IEC 559) </p>

<p>Definition at line <a class="el" href="a01334_source.html#l00283">283</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>

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<p>True if trapping is implemented for this type. </p>

<p>Definition at line <a class="el" href="a01334_source.html#l00280">280</a> of file <a class="el" href="a01334_source.html">limits</a>.</p>

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<hr/>The documentation for this struct was generated from the following file:<ul>
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