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/*@@
  @file      Statistics.c
  @author    Erik Schnetter
  @date      2004-05-25
  @desc
             Provide information about the registered symmetry conditions
  @version   $Header$
  @enddesc
@@*/

#include <stdlib.h>

#include "cctk.h"
#include "cctk_Parameters.h"

#include "util_Table.h"

#include "SymBase.h"



/* the rcs ID and its dummy function to use it */
static const char *const rcsid = "$Header$";
CCTK_FILEVERSION (CactusBase_SymBase_Statistics_c);



/*@@
  @routine    SymBase_Statistics
  @author     Erik Schnetter
  @date       2004-05-25
  @desc
              If verbose, print the symmetry boundary conditions for each
              face.
              Warn if symmetries do not have interpolation operators
              associated with them.
  @enddesc
@@*/

void
SymBase_Statistics (CCTK_ARGUMENTS)
{
  DECLARE_CCTK_ARGUMENTS;
  DECLARE_CCTK_PARAMETERS;
  
  CCTK_INT sym_table;
  CCTK_INT symmetry_handle[100];
  CCTK_FPOINTER symmetry_interpolate[100];
  char const * symmetry_name;
  int face;
  int ierr;
  
  
  
  /* Get table */
  sym_table = SymmetryTableHandleForGrid (cctkGH);
  if (sym_table < 0) CCTK_WARN (0, "internal error");

  /* Get table entries */
  if (2 * cctkGH->cctk_dim > 100)
  {
    CCTK_WARN (0, "internal error");
  }
  ierr = Util_TableGetIntArray
    (sym_table, 2 * cctkGH->cctk_dim, symmetry_handle, "symmetry_handle");
  if (ierr != 2 * cctkGH->cctk_dim)
  {
    CCTK_WARN (0, "internal error");
  }
  ierr = Util_TableGetFPointerArray
    (sym_table, 2 * cctkGH->cctk_dim,
     symmetry_interpolate, "symmetry_interpolate");
  if (ierr != 2 * cctkGH->cctk_dim)
  {
    CCTK_WARN (0, "internal error");
  }
  
  
  
  /* Print information about the registered symmetry faces, if desired */
  
  if (verbose)
  {
    
    /* Loop over all faces */
    for (face=0; face<2*cctkGH->cctk_dim; ++face) {
      if (symmetry_handle[face] >= 0) {
        symmetry_name = SymBase_SymmetryNameOfHandle (symmetry_handle[face]);
        if (! symmetry_name)
        {
          CCTK_WARN (0, "internal error");
        }
        if (face >= 6)
        {
          CCTK_WARN (0, "only 3 dimensions are supported so far");
        }
        CCTK_VInfo (CCTK_THORNSTRING,
                    "Symmetry on %s %c-face: %s",
                    face % 2 == 0 ? "lower" : "upper",
                    "xyz"[face/2],
                    symmetry_name);
      }
    }
    
  }
  
  
  
  /* Warn about symmetries without interpolators */
  
  /* Loop over all registered symmetries */
  for (face=0; face<2*cctkGH->cctk_dim; ++face) {
    if (symmetry_handle[face] >= 0) {
      if (symmetry_interpolate[face] == NULL)
      {
        symmetry_name = SymBase_SymmetryNameOfHandle (symmetry_handle[face]);
        if (! symmetry_name)
        {
          CCTK_WARN (0, "internal error");
        }
        if (face >= 6)
        {
          CCTK_WARN (0, "only 3 dimensions are supported so far");
        }
        CCTK_VWarn (2, __LINE__, __FILE__, CCTK_THORNSTRING,
                    "The symmetry \"%s\" on the %s %c-face has not registered a symmetry interpolator",
                    symmetry_name,
                    face % 2 == 0 ? "lower" : "upper",
                    "xyz"[face/2]);
      }
    }
  }
  
}