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Add null config files
author Chris Cannam <cannam@all-day-breakfast.com>
date Mon, 02 Mar 2020 14:03:47 +0000
parents 7867fa7e1b6b
children
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cannam@127 25 <title>FFTW 3.3.5: Real-to-Real Transforms</title>
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cannam@127 71 <body lang="en" bgcolor="#FFFFFF" text="#000000" link="#0000FF" vlink="#800080" alink="#FF0000">
cannam@127 72 <a name="Real_002dto_002dReal-Transforms"></a>
cannam@127 73 <div class="header">
cannam@127 74 <p>
cannam@127 75 Next: <a href="Real_002dto_002dReal-Transform-Kinds.html#Real_002dto_002dReal-Transform-Kinds" accesskey="n" rel="next">Real-to-Real Transform Kinds</a>, Previous: <a href="Real_002ddata-DFT-Array-Format.html#Real_002ddata-DFT-Array-Format" accesskey="p" rel="prev">Real-data DFT Array Format</a>, Up: <a href="Basic-Interface.html#Basic-Interface" accesskey="u" rel="up">Basic Interface</a> &nbsp; [<a href="index.html#SEC_Contents" title="Table of contents" rel="contents">Contents</a>][<a href="Concept-Index.html#Concept-Index" title="Index" rel="index">Index</a>]</p>
cannam@127 76 </div>
cannam@127 77 <hr>
cannam@127 78 <a name="Real_002dto_002dReal-Transforms-1"></a>
cannam@127 79 <h4 class="subsection">4.3.5 Real-to-Real Transforms</h4>
cannam@127 80 <a name="index-r2r-1"></a>
cannam@127 81
cannam@127 82 <div class="example">
cannam@127 83 <pre class="example">fftw_plan fftw_plan_r2r_1d(int n, double *in, double *out,
cannam@127 84 fftw_r2r_kind kind, unsigned flags);
cannam@127 85 fftw_plan fftw_plan_r2r_2d(int n0, int n1, double *in, double *out,
cannam@127 86 fftw_r2r_kind kind0, fftw_r2r_kind kind1,
cannam@127 87 unsigned flags);
cannam@127 88 fftw_plan fftw_plan_r2r_3d(int n0, int n1, int n2,
cannam@127 89 double *in, double *out,
cannam@127 90 fftw_r2r_kind kind0,
cannam@127 91 fftw_r2r_kind kind1,
cannam@127 92 fftw_r2r_kind kind2,
cannam@127 93 unsigned flags);
cannam@127 94 fftw_plan fftw_plan_r2r(int rank, const int *n, double *in, double *out,
cannam@127 95 const fftw_r2r_kind *kind, unsigned flags);
cannam@127 96 </pre></div>
cannam@127 97 <a name="index-fftw_005fplan_005fr2r_005f1d-1"></a>
cannam@127 98 <a name="index-fftw_005fplan_005fr2r_005f2d-1"></a>
cannam@127 99 <a name="index-fftw_005fplan_005fr2r_005f3d-1"></a>
cannam@127 100 <a name="index-fftw_005fplan_005fr2r-1"></a>
cannam@127 101
cannam@127 102 <p>Plan a real input/output (r2r) transform of various kinds in zero or
cannam@127 103 more dimensions, returning an <code>fftw_plan</code> (see <a href="Using-Plans.html#Using-Plans">Using Plans</a>).
cannam@127 104 </p>
cannam@127 105 <p>Once you have created a plan for a certain transform type and
cannam@127 106 parameters, then creating another plan of the same type and parameters,
cannam@127 107 but for different arrays, is fast and shares constant data with the
cannam@127 108 first plan (if it still exists).
cannam@127 109 </p>
cannam@127 110 <p>The planner returns <code>NULL</code> if the plan cannot be created. A
cannam@127 111 non-<code>NULL</code> plan is always returned by the basic interface unless
cannam@127 112 you are using a customized FFTW configuration supporting a restricted
cannam@127 113 set of transforms, or for size-1 <code>FFTW_REDFT00</code> kinds (which are
cannam@127 114 not defined).
cannam@127 115 <a name="index-FFTW_005fREDFT00-1"></a>
cannam@127 116 </p>
cannam@127 117 <a name="Arguments-2"></a>
cannam@127 118 <h4 class="subsubheading">Arguments</h4>
cannam@127 119 <ul>
cannam@127 120 <li> <code>rank</code> is the dimensionality of the transform (it should be the
cannam@127 121 size of the arrays <code>*n</code> and <code>*kind</code>), and can be any
cannam@127 122 non-negative integer. The &lsquo;<samp>_1d</samp>&rsquo;, &lsquo;<samp>_2d</samp>&rsquo;, and &lsquo;<samp>_3d</samp>&rsquo;
cannam@127 123 planners correspond to a <code>rank</code> of <code>1</code>, <code>2</code>, and
cannam@127 124 <code>3</code>, respectively. A <code>rank</code> of zero is equivalent to a copy
cannam@127 125 of one number from input to output.
cannam@127 126
cannam@127 127 </li><li> <code>n</code>, or <code>n0</code>/<code>n1</code>/<code>n2</code>, or <code>n[rank]</code>,
cannam@127 128 respectively, gives the (physical) size of the transform dimensions.
cannam@127 129 They can be any positive integer.
cannam@127 130
cannam@127 131 <ul class="no-bullet">
cannam@127 132 <li>- <a name="index-row_002dmajor-2"></a>
cannam@127 133 Multi-dimensional arrays are stored in row-major order with dimensions:
cannam@127 134 <code>n0</code> x <code>n1</code>; or <code>n0</code> x <code>n1</code> x <code>n2</code>; or
cannam@127 135 <code>n[0]</code> x <code>n[1]</code> x ... x <code>n[rank-1]</code>.
cannam@127 136 See <a href="Multi_002ddimensional-Array-Format.html#Multi_002ddimensional-Array-Format">Multi-dimensional Array Format</a>.
cannam@127 137 </li><li>- FFTW is generally best at handling sizes of the form
cannam@127 138 2<sup>a</sup> 3<sup>b</sup> 5<sup>c</sup> 7<sup>d</sup>
cannam@127 139 11<sup>e</sup> 13<sup>f</sup>,where <em>e+f</em> is either <em>0</em> or <em>1</em>, and the other exponents
cannam@127 140 are arbitrary. Other sizes are computed by means of a slow,
cannam@127 141 general-purpose algorithm (which nevertheless retains <i>O</i>(<i>n</i>&nbsp;log&nbsp;<i>n</i>) performance even for prime sizes). (It is possible to customize FFTW
cannam@127 142 for different array sizes; see <a href="Installation-and-Customization.html#Installation-and-Customization">Installation and Customization</a>.)
cannam@127 143 Transforms whose sizes are powers of <em>2</em> are especially fast.
cannam@127 144 </li><li>- For a <code>REDFT00</code> or <code>RODFT00</code> transform kind in a dimension of
cannam@127 145 size <em>n</em>, it is <em>n-1</em> or <em>n+1</em>, respectively, that
cannam@127 146 should be factorizable in the above form.
cannam@127 147 </li></ul>
cannam@127 148
cannam@127 149 </li><li> <code>in</code> and <code>out</code> point to the input and output arrays of the
cannam@127 150 transform, which may be the same (yielding an in-place transform).
cannam@127 151 <a name="index-in_002dplace-5"></a>
cannam@127 152 These arrays are overwritten during planning, unless
cannam@127 153 <code>FFTW_ESTIMATE</code> is used in the flags. (The arrays need not be
cannam@127 154 initialized, but they must be allocated.)
cannam@127 155
cannam@127 156 </li><li> <code>kind</code>, or <code>kind0</code>/<code>kind1</code>/<code>kind2</code>, or
cannam@127 157 <code>kind[rank]</code>, is the kind of r2r transform used for the
cannam@127 158 corresponding dimension. The valid kind constants are described in
cannam@127 159 <a href="Real_002dto_002dReal-Transform-Kinds.html#Real_002dto_002dReal-Transform-Kinds">Real-to-Real Transform Kinds</a>. In a multi-dimensional transform,
cannam@127 160 what is computed is the separable product formed by taking each
cannam@127 161 transform kind along the corresponding dimension, one dimension after
cannam@127 162 another.
cannam@127 163
cannam@127 164 </li><li> <a name="index-flags-4"></a>
cannam@127 165 <code>flags</code> is a bitwise OR (&lsquo;<samp>|</samp>&rsquo;) of zero or more planner flags,
cannam@127 166 as defined in <a href="Planner-Flags.html#Planner-Flags">Planner Flags</a>.
cannam@127 167
cannam@127 168 </li></ul>
cannam@127 169
cannam@127 170 <hr>
cannam@127 171 <div class="header">
cannam@127 172 <p>
cannam@127 173 Next: <a href="Real_002dto_002dReal-Transform-Kinds.html#Real_002dto_002dReal-Transform-Kinds" accesskey="n" rel="next">Real-to-Real Transform Kinds</a>, Previous: <a href="Real_002ddata-DFT-Array-Format.html#Real_002ddata-DFT-Array-Format" accesskey="p" rel="prev">Real-data DFT Array Format</a>, Up: <a href="Basic-Interface.html#Basic-Interface" accesskey="u" rel="up">Basic Interface</a> &nbsp; [<a href="index.html#SEC_Contents" title="Table of contents" rel="contents">Contents</a>][<a href="Concept-Index.html#Concept-Index" title="Index" rel="index">Index</a>]</p>
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