furnace/extern/fftw/doc/html/Avoiding-MPI-Deadlocks.html
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<span id="Avoiding-MPI-Deadlocks"></span><div class="header">
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Next: <a href="FFTW-MPI-Performance-Tips.html" accesskey="n" rel="next">FFTW MPI Performance Tips</a>, Previous: <a href="FFTW-MPI-Wisdom.html" accesskey="p" rel="prev">FFTW MPI Wisdom</a>, Up: <a href="Distributed_002dmemory-FFTW-with-MPI.html" accesskey="u" rel="up">Distributed-memory FFTW with MPI</a> &nbsp; [<a href="index.html#SEC_Contents" title="Table of contents" rel="contents">Contents</a>][<a href="Concept-Index.html" title="Index" rel="index">Index</a>]</p>
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<hr>
<span id="Avoiding-MPI-Deadlocks-1"></span><h3 class="section">6.9 Avoiding MPI Deadlocks</h3>
<span id="index-deadlock"></span>
<p>An MPI program can <em>deadlock</em> if one process is waiting for a
message from another process that never gets sent. To avoid deadlocks
when using FFTW&rsquo;s MPI routines, it is important to know which
functions are <em>collective</em>: that is, which functions must
<em>always</em> be called in the <em>same order</em> from <em>every</em>
process in a given communicator. (For example, <code>MPI_Barrier</code> is
the canonical example of a collective function in the MPI standard.)
<span id="index-collective-function-2"></span>
<span id="index-MPI_005fBarrier"></span>
</p>
<p>The functions in FFTW that are <em>always</em> collective are: every
function beginning with &lsquo;<samp>fftw_mpi_plan</samp>&rsquo;, as well as
<code>fftw_mpi_broadcast_wisdom</code> and <code>fftw_mpi_gather_wisdom</code>.
Also, the following functions from the ordinary FFTW interface are
collective when they are applied to a plan created by an
&lsquo;<samp>fftw_mpi_plan</samp>&rsquo; function: <code>fftw_execute</code>,
<code>fftw_destroy_plan</code>, and <code>fftw_flops</code>.
<span id="index-fftw_005fexecute-4"></span>
<span id="index-fftw_005fdestroy_005fplan-2"></span>
<span id="index-fftw_005fflops-1"></span>
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