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<a name="Loop_002dSpecific-Pragmas"></a>
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Previous: <a href="Function-Specific-Option-Pragmas.html#Function-Specific-Option-Pragmas" accesskey="p" rel="prev">Function Specific Option Pragmas</a>, Up: <a href="Pragmas.html#Pragmas" accesskey="u" rel="up">Pragmas</a> &nbsp; [<a href="index.html#SEC_Contents" title="Table of contents" rel="contents">Contents</a>][<a href="Option-Index.html#Option-Index" title="Index" rel="index">Index</a>]</p>
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<a name="Loop_002dSpecific-Pragmas-1"></a>
<h4 class="subsection">6.61.16 Loop-Specific Pragmas</h4>
<dl compact="compact">
<dt><code>#pragma GCC ivdep</code></dt>
<dd><a name="index-pragma-GCC-ivdep"></a>
</dd>
</dl>
<p>With this pragma, the programmer asserts that there are no loop-carried
dependencies which would prevent consecutive iterations of
the following loop from executing concurrently with SIMD
(single instruction multiple data) instructions.
</p>
<p>For example, the compiler can only unconditionally vectorize the following
loop with the pragma:
</p>
<div class="smallexample">
<pre class="smallexample">void foo (int n, int *a, int *b, int *c)
{
int i, j;
#pragma GCC ivdep
for (i = 0; i &lt; n; ++i)
a[i] = b[i] + c[i];
}
</pre></div>
<p>In this example, using the <code>restrict</code> qualifier had the same
effect. In the following example, that would not be possible. Assume
<em>k &lt; -m</em> or <em>k &gt;= m</em>. Only with the pragma, the compiler knows
that it can unconditionally vectorize the following loop:
</p>
<div class="smallexample">
<pre class="smallexample">void ignore_vec_dep (int *a, int k, int c, int m)
{
#pragma GCC ivdep
for (int i = 0; i &lt; m; i++)
a[i] = a[i + k] * c;
}
</pre></div>
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