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<title>GLM_GTX_simd_mat4: SIMD mat4 type and functions</title>
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<a href="#func-members">Functions</a> </div>
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<div class="title">GLM_GTX_simd_mat4: SIMD mat4 type and functions</div> </div>
<div class="ingroups"><a class="el" href="a00248.html">GTX Extensions (Experimental)</a></div></div>
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<p>SIMD implementation of mat4 type.
<a href="#details">More...</a></p>
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Functions</h2></td></tr>
<tr><td class="memItemLeft" align="right" valign="top">float&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="a00291.html#ga9be926c258e64bf2413671d104b393e8">determinant</a> (detail::fmat4x4SIMD const &amp;m)</td></tr>
<tr><td class="memItemLeft" align="right" valign="top">&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="a00291.html#ga7210a12f9861ab5585662dc1bf5a8221">GLM_ALIGNED_STRUCT</a> (16) fmat4x4SIMD</td></tr>
<tr><td class="memItemLeft" align="right" valign="top">detail::fmat4x4SIMD&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="a00291.html#gace9ca056446fc614a846bac6a3ee1a1e">inverse</a> (detail::fmat4x4SIMD const &amp;m)</td></tr>
<tr><td class="memItemLeft" align="right" valign="top">detail::tmat4x4&lt; float &gt;&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="a00291.html#ga8759e2cf163948c9c7ff138c1f56d501">mat4_cast</a> (detail::fmat4x4SIMD const &amp;x)</td></tr>
<tr><td class="memItemLeft" align="right" valign="top">detail::fmat4x4SIMD&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="a00291.html#ga5ae5a4950d3e354236390edfaa25301a">matrixCompMult</a> (detail::fmat4x4SIMD const &amp;x, detail::fmat4x4SIMD const &amp;y)</td></tr>
<tr><td class="memItemLeft" align="right" valign="top">detail::fmat4x4SIMD&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="a00291.html#gafed2233ac30495621c2bdd4d121f9ced">outerProduct</a> (detail::fvec4SIMD const &amp;c, detail::fvec4SIMD const &amp;r)</td></tr>
<tr><td class="memItemLeft" align="right" valign="top">detail::fmat4x4SIMD&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="a00291.html#ga5da402c7d42808dfc8c8d51e0ac9c868">transpose</a> (detail::fmat4x4SIMD const &amp;x)</td></tr>
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<hr/><a name="details" id="details"></a><h2>Detailed Description</h2>
<p>SIMD implementation of mat4 type. </p>
<p>&lt;<a class="el" href="a00101_source.html">glm/gtx/simd_mat4.hpp</a>&gt; need to be included to use these functionalities. </p>
<hr/><h2>Function Documentation</h2>
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<td class="memname">float glm::gtx::simd_mat4::determinant </td>
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<td class="paramname"><em>m</em></td><td>)</td>
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<p>Return the determinant of a mat4 matrix. </p>
<p>(From GLM_GTX_simd_mat4 extension). </p>
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<p>4x4 Matrix implemented using SIMD SEE intrinsics. </p>
<p>4-dimensional vector implemented using SIMD SEE intrinsics. </p>
<p>Definition at line <a class="el" href="a00101_source.html#l00036">36</a> of file <a class="el" href="a00101_source.html">simd_mat4.hpp</a>.</p>
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<p>Return the inverse of a mat4 matrix. </p>
<p>(From GLM_GTX_simd_mat4 extension). </p>
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<p>Convert a simdMat4 to a mat4. </p>
<p>(From GLM_GTX_simd_mat4 extension) </p>
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<p>Multiply matrix x by matrix y component-wise, i.e., result[i][j] is the scalar product of x[i][j] and y[i][j]. </p>
<p>(From GLM_GTX_simd_mat4 extension). </p>
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<p>Treats the first parameter c as a column vector and the second parameter r as a row vector and does a linear algebraic matrix multiply c * r. </p>
<p>(From GLM_GTX_simd_mat4 extension). </p>
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<p>Returns the transposed matrix of x (From GLM_GTX_simd_mat4 extension). </p>
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