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smsrres.c
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42 
43 #include <stdlib.h>
44 #include <stdio.h>
45 #include <math.h>
46 #define max(x,y) (( x > y ) ? x : y) /* max function */
47 double smsrres (int m, int n,
48  double *val, int *indx,
49  double *xlocal, double *x, double *b)
50 {
51  int i, j, jbgn, jend, ione = 1;
52  double sum, norm_tmp = 0.0, norm_b = 0.0;
53  double scaled_res_norm, res_norm, *tmp, max_norm = 0.0;
54 
55 
56 /* Computes the residual
57 
58  res = || b - A*x ||
59 
60  where x and b are vectors and A is a sparse matrix stored
61  in MSR format. */
62 
63 /* --------------------------
64  First executable statement
65  -------------------------- */
66 
67  /* Create tmp workspace */
68  tmp = (double *) calloc(m,sizeof(double));
69 
70 /* .....initialize soln */
71 
72  for (i = 0; i < m; i++)
73  tmp[i] = b[i] - val[i] * xlocal[i];
74 
75 /* .....do a series of SPDOTs (sparse dot products) */
76 
77  for (i = 0; i <m ; i++)
78  {
79  jbgn = indx[i];
80  jend = indx[i + 1];
81  sum = 0.0;
82 
83  for (j = jbgn; j < jend; j++)
84  sum += val[j] * x[indx[j]];
85 
86  tmp[i] -= sum;
87  max_norm = max(fabs(tmp[i]),max_norm);
88  norm_tmp += tmp[i]*tmp[i];
89  norm_b += b[i]*b[i];
90  }
91 
92  res_norm = sqrt(norm_tmp);
93  printf("\n\nMax norm of residual = %12.4g\n",max_norm);
94  printf( "Two norm of residual = %12.4g\n",res_norm);
95  if (norm_b > 1.0E-7)
96  {
97  scaled_res_norm = res_norm/sqrt(norm_b);
98  printf( "Scaled two norm of residual = %12.4g\n",scaled_res_norm);
99  }
100  free((void *) tmp);
101 
102  return(scaled_res_norm);
103 
104 } /* smsrres */
105 
double smsrres(int m, int n, double *val, int *indx, double *xlocal, double *x, double *b)
Definition: smsrres.c:47
#define max(x, y)
Definition: smsrres.c:46