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- <a name="fma_002c-fmaf_002d_002d_002dfloating-multiply-add"></a>
- <h3 class="section">1.22 <code>fma</code>, <code>fmaf</code>—floating multiply add</h3>
- <a name="index-fma"></a>
- <a name="index-fmaf"></a>
- <p><strong>Synopsis</strong>
- </p><div class="example">
- <pre class="example">#include <math.h>
- double fma(double <var>x</var>, double <var>y</var>, double <var>z</var>);
- float fmaf(float <var>x</var>, float <var>y</var>, float <var>z</var>);
-
- </pre></div>
- <p><strong>Description</strong><br>
- The <code>fma</code> functions compute (<var>x</var> * <var>y</var>) + <var>z</var>, rounded as one ternary
- operation: they compute the value (as if) to infinite precision and round once
- to the result format, according to the rounding mode characterized by the value
- of FLT_ROUNDS. That is, they are supposed to do this: see below.
- </p>
- <br>
- <p><strong>Returns</strong><br>
- The <code>fma</code> functions return (<var>x</var> * <var>y</var>) + <var>z</var>, rounded as one ternary
- operation.
- </p>
- <br>
- <p><strong>Bugs</strong><br>
- This implementation does not provide the function that it should, purely
- returning "(<var>x</var> * <var>y</var>) + <var>z</var>;" with no attempt at all to provide the
- simulated infinite precision intermediates which are required. DO NOT USE THEM.
- </p>
- <p>If double has enough more precision than float, then <code>fmaf</code> should provide
- the expected numeric results, as it does use double for the calculation. But
- since this is not the case for all platforms, this manual cannot determine
- if it is so for your case.
- </p>
- <br>
- <p><strong>Portability</strong><br>
- ANSI C, POSIX.
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