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cube_grid_prb.cpp
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# include <cstdlib>
# include <iostream>
# include <iomanip>
# include <cmath>
# include <ctime>
using namespace std;
# include "cube_grid.hpp"
int main ( );
void test01 ( );
void test02 ( );
void test03 ( );
//****************************************************************************80
int main ( )
//****************************************************************************80
//
// Purpose:
//
// MAIN is the main program for CUBE_GRID_PRB.
//
// Licensing:
//
// This code is distributed under the GNU LGPL license.
//
// Modified:
//
// 31 August 2014
//
// Author:
//
// John Burkardt
//
{
timestamp ( );
cout << "\n";
cout << "CUBE_GRID_PRB:\n";
cout << " C++ version\n";
cout << " Test the CUBE_GRID library.\n";
test01 ( );
test02 ( );
test03 ( );
//
// Terminate.
//
cout << "\n";
cout << "CUBE_GRID_PRB:\n";
cout << " Normal end of execution.\n";
cout << "\n";
timestamp ( );
return 0;
}
//****************************************************************************80
void test01 ( )
//****************************************************************************80
//
// Purpose:
//
// TEST01 tests CUBE_GRID using the same parameters for all dimensions.
//
// Licensing:
//
// This code is distributed under the GNU LGPL license.
//
// Modified:
//
// 31 August 2014
//
// Author:
//
// John Burkardt
//
{
double a[3] = { -1.0, -1.0, -1.0 };
double b[3] = { +1.0, +1.0, +1.0 };
int c[3] = { 1, 1, 1 };
int i;
int n;
int ns[3] = { 3, 3, 3 };
double *x;
n = ns[0] * ns[1] * ns[2];
cout << "\n";
cout << "TEST01\n";
cout << " Create a grid using CUBE_GRID.\n";
cout << " Use the same parameters in every dimension.\n";
cout << " Number of grid points N = " << n << "\n";
cout << "\n";
cout << " I NS C A B\n";
cout << "\n";
for ( i = 0; i < 3; i++ )
{
cout
<< setw(6) << i << " "
<< setw(4) << ns[i] << " "
<< setw(4) << c[i] << " "
<< setw(8) << a[i] << " "
<< setw(8) << b[i] << "\n";
}
x = cube_grid ( n, ns, a, b, c );
r8mat_transpose_print ( 3, n, x, " Grid points:" );
delete [] x;
return;
}
//****************************************************************************80
void test02 ( )
//****************************************************************************80
//
// Purpose:
//
// TEST02 uses a different number of points in each coordinate.
//
// Licensing:
//
// This code is distributed under the GNU LGPL license.
//
// Modified:
//
// 31 August 2014
//
// Author:
//
// John Burkardt
//
{
double a[3] = { 0.0, 0.0, 0.0 };
double b[3] = { 1.0, 1.0, 1.0 };
int c[3] = { 2, 2, 2 };
int i;
int n;
int ns[3] = { 4, 2, 3 };
double *x;
n = ns[0] * ns[1] * ns[2];
cout << "\n";
cout << "TEST02\n";
cout << " Create a grid using CUBE_GRID.\n";
cout << " se a different number of points in each dimension..\n";
cout << " Number of grid points N = " << n << "\n";
cout << "\n";
cout << " I NS C A B\n";
cout << "\n";
for ( i = 0; i < 3; i++ )
{
cout
<< setw(6) << i << " "
<< setw(4) << ns[i] << " "
<< setw(4) << c[i] << " "
<< setw(8) << a[i] << " "
<< setw(8) << b[i] << "\n";
}
x = cube_grid ( n, ns, a, b, c );
r8mat_transpose_print ( 3, n, x, " Grid points:" );
delete [] x;
return;
}
//****************************************************************************80
void test03 ( )
//****************************************************************************80
//
// Purpose:
//
// TEST03 uses a cube with different sizes in each dimension.
//
// Licensing:
//
// This code is distributed under the GNU LGPL license.
//
// Modified:
//
// 31 August 2014
//
// Author:
//
// John Burkardt
//
{
double a[3] = { 0.0, -2.0, 50.0 };
double b[3] = { +10.0, +2.0, 51.0 };
int c[3] = { 3, 4, 5 };
int i;
int n;
int ns[3] = { 3, 3, 3 };
double *x;
n = ns[0] * ns[1] * ns[2];
cout << "\n";
cout << "TEST03\n";
cout << " Create a grid using CUBE_GRID.\n";
cout << " Use a different physical size in each dimension.\n";
cout << " Number of grid points N = " << n << "\n";
cout << "\n";
cout << " I NS C A B\n";
cout << "\n";
for ( i = 0; i < 3; i++ )
{
cout
<< setw(6) << i << " "
<< setw(4) << ns[i] << " "
<< setw(4) << c[i] << " "
<< setw(8) << a[i] << " "
<< setw(8) << b[i] << "\n";
}
x = cube_grid ( n, ns, a, b, c );
r8mat_transpose_print ( 3, n, x, " Grid points:" );
delete [] x;
return;
}