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fire_serial.html
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<html>
<head>
<title>
FIRE_SERIAL - Forest Fire Simulation, Serial Version
</title>
</head>
<body bgcolor="#EEEEEE" link="#CC0000" alink="#FF3300" vlink="#000055">
<h1 align = "center">
FIRE_SERIAL <br> Forest Fire Simulation, Serial Version
</h1>
<hr>
<p>
<b>FIRE_SERIAL</b>
is a C++ program which
simulates a forest fire over a rectangular array of trees,
starting at a single random location. It is intended as a starting
point for the development of a parallel version.
</p>
<h3 align = "center">
Licensing:
</h3>
<p>
The computer code and data files made available on this
web page are distributed under
<a href = "../../txt/gnu_lgpl.txt">the GNU LGPL license.</a>
</p>
<h3 align = "center">
Languages:
</h3>
<p>
<b>FIRE_SERIAL</b> is available in
<a href = "../../c_src/fire_serial/fire_serial.html">a C version</a> and
<a href = "../../cpp_src/fire_serial/fire_serial.html">a C++ version</a> and
<a href = "../../f77_src/fire_serial/fire_serial.html">a FORTRAN77 version</a> and
<a href = "../../f_src/fire_serial/fire_serial.html">a FORTRAN90 version</a> and
<a href = "../../m_src/fire_serial/fire_serial.html">a MATLAB version</a>.
</p>
<h3 align = "center">
Related Data and Programs:
</h3>
<p>
<a href = "../../cpp_src/fft_serial/fft_serial.html">
FFT_SERIAL</a>,
a C++ program which
demonstrates the computation of a Fast Fourier Transform,
and is intended as a starting point for developing a parallel version
using OpenMP.
<p>
<p>
<a href = "../../cpp_src/heated_plate/heated_plate.html">
HEATED_PLATE</a>,
a C++ program which
solves the steady state heat equation in a 2D
rectangular region, and is intended as
a starting point for implementing an OpenMP parallel version.
</p>
<p>
<a href = "../../cpp_src/md/md.html">
MD</a>,
a C++ program which
carries out a molecular dynamics simulation, and is intended as
a starting point for implementing an OpenMP parallel version.
</p>
<p>
<a href = "../../cpp_src/mxm_serial/mxm_serial.html">
MXM_SERIAL</a>,
a C++ program which
sets up a matrix multiplication problem A=B*C,
intended as a starting point for implementing a parallel version.
</p>
<p>
<a href = "../../cpp_src/poisson_serial/poisson_serial.html">
POISSON_SERIAL</a>,
a C++ program which
computes an approximate solution to the Poisson equation in a rectangle,
and is intended as the starting point for the creation of a parallel version.
</p>
<p>
<a href = "../../cpp_src/prime_serial/prime_serial.html">
PRIME_SERIAL</a>,
a C++ program which
counts the number of primes between 1 and N,
intended as a starting point for the creation of a parallel version.
</p>
<p>
<a href = "../../cpp_src/quad_serial/quad_serial.html">
QUAD_SERIAL</a>,
a C++ program which
approximates an integral using a quadrature rule,
and is intended as a starting point for parallelization exercises.
</p>
<p>
<a href = "../../cpp_src/quad2d_serial/quad2d_serial.html">
QUAD2D_SERIAL</a>,
a C++ program which
approximates an integral over a 2D region using a product quadrature rule,
and is intended as a starting point for parallelization exercises.
</p>
<p>
<a href = "../../cpp_src/search_serial/search_serial.html">
SEARCH_SERIAL</a>,
a C++ program which
searches integers between A and B for a value J such that F(J) = C,
intended as a starting point for the creation of a parallel version.
</p>
<p>
<a href = "../../cpp_src/subset_sum_serial/subset_sum_serial.html">
SUBSET_SUM_SERIAL</a>,
a C++ program which
seeks solutions of the subset sum problem, in which it is desired
to find a subset of a set of integers which has a given sum;
this version of the program is intended as a starting point for
a parallel approach.
</p>
<h3 align = "center">
Reference:
</h3>
<p>
<ol>
<li>
Peter Arbenz, Wesley Petersen,<br>
Introduction to Parallel Computing - A practical guide with examples in C,<br>
Oxford University Press,<br>
ISBN: 0-19-851576-6,<br>
LC: QA76.58.P47.
</li>
<li>
Rohit Chandra, Leonardo Dagum, Dave Kohr, Dror Maydan,
Jeff McDonald, Ramesh Menon,<br>
Parallel Programming in OpenMP,<br>
Morgan Kaufmann, 2001,<br>
ISBN: 1-55860-671-8,<br>
LC: QA76.642.P32.
</li>
<li>
Barbara Chapman, Gabriele Jost, Ruud vanderPas, David Kuck,<br>
Using OpenMP: Portable Shared Memory Parallel Processing,<br>
MIT Press, 2007,<br>
ISBN13: 978-0262533027,<br>
LC: QA76.642.C49.
</li>
</ol>
</p>
<h3 align = "center">
Source Code:
</h3>
<p>
<ul>
<li>
<a href = "fire_serial.cpp">fire_serial.cpp</a>, the source code.
</li>
<li>
<a href = "fire_serial.sh">fire_serial.sh</a>,
BASH commands to compile the source code.
</li>
</ul>
</p>
<h3 align = "center">
Examples and Tests:
</h3>
<p>
<ul>
<li>
<a href = "fire_serial_output.txt">fire_serial_output.txt</a>,
the output file.
</li>
</ul>
</p>
<h3 align = "center">
List of Routines:
</h3>
<p>
<ul>
<li>
<b>MAIN</b> is the main program for FIRE_SERIAL.
</li>
<li>
<b>FIRE_SPREADS</b> determines whether the fire spreads.
</li>
<li>
<b>FOREST_ALLOCATE</b> allocates memory for a forest of the given size.
</li>
<li>
<b>FOREST_BURNS</b> models a single time step of the burning forest.
</li>
<li>
<b>FOREST_DELETE</b> deletes the memory previously allocated for a forest.
</li>
<li>
<b>FOREST_INITIALIZE</b> initializes the forest values.
</li>
<li>
<b>FOREST_IS_BURNING</b> reports whether any trees in the forest are burning.
</li>
<li>
<b>FOREST_PRINT</b> prints the state of the trees in the forest.
</li>
<li>
<b>GET_PERCENT_BURNED</b> computes the percentage of the forest that burned.
</li>
<li>
<b>SEED_BY_TIME</b> seeds the random number generator using the time as a seed.
</li>
<li>
<b>TIMESTAMP</b> prints the current YMDHMS date as a time stamp.
</li>
<li>
<b>TREE_IGNITE</b> sets a given tree to the SMOLDERING state.
</li>
</ul>
</p>
<p>
You can go up one level to <a href = "../cpp_src.html">
the C++ source codes</a>.
</p>
<hr>
<i>
Last revised on 30 June 2013.
</i>
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