Read the first MAX_LAG cases.
*/
static bool
-innovations_init_cases (struct casereader *r, struct ccase **c, size_t max_lag)
+innovations_init_cases (struct casereader *r, struct ccase **inn_cs, size_t max_lag)
{
bool value = true;
size_t lag = 0;
+ assert (r != NULL);
+ assert (inn_cs != NULL);
while (value && lag < max_lag)
{
+ assert (inn_cs[lag] != NULL);
+ value = casereader_read (r, inn_cs[lag]);
lag++;
- value = casereader_read (r, c[lag]);
}
return value;
}
struct innovations_estimate **est, size_t max_lag)
{
struct casereader *r;
- struct ccase **c;
+ struct ccase **inn_c;
size_t lag;
size_t n;
bool read_case = false;
const union value *tmp;
const union value *tmp2;
- c = xnmalloc (max_lag, sizeof (*c));
+ inn_c = xnmalloc (max_lag, sizeof (*inn_c));
for (lag = 0; lag < max_lag; lag++)
{
- c[lag] = xmalloc (sizeof *c[lag]);
+ inn_c[lag] = xmalloc (sizeof *inn_c[lag]);
}
r = casefile_get_reader (cf);
- read_case = innovations_init_cases (r, c, max_lag);
+ read_case = innovations_init_cases (r, inn_c, max_lag);
while (read_case)
{
for (n = 0; n < n_vars; n++)
{
- tmp2 = case_data (c[0], est[n]->variable->fv);
+ tmp2 = case_data (inn_c[0], est[n]->variable->fv);
if (!mv_is_value_missing (&est[n]->variable->miss, tmp2))
{
x = tmp2->f - est[n]->mean;
for (lag = 1; lag <= max_lag; lag++)
{
- tmp = case_data (c[lag], est[n]->variable->fv);
+ tmp = case_data (inn_c[lag], est[n]->variable->fv);
if (!mv_is_value_missing (&est[n]->variable->miss, tmp))
{
d = (tmp->f - est[n]->mean);
}
}
}
- read_case = innovations_update_cases (r, c, max_lag);
+ read_case = innovations_update_cases (r, inn_c, max_lag);
}
for (lag = 0; lag <= max_lag; lag++)
{
}
for (lag = 0; lag < max_lag; lag++)
{
- free (c[lag]);
+ free (inn_c[lag]);
}
- free (c);
+ free (inn_c);
}
static double
innovations_convolve (double **theta, struct innovations_estimate *est,
struct innovations_estimate **
pspp_innovations (const struct variable **vars,
- size_t *n_vars,
+ size_t n_vars,
size_t lag,
const struct casefile *cf)
{
size_t i;
size_t j;
- est = xnmalloc (*n_vars, sizeof *est);
- for (i = 0; i < *n_vars; i++)
+ est = xnmalloc (n_vars, sizeof *est);
+ for (i = 0; i < n_vars; i++)
{
if (vars[i]->type == NUMERIC)
{
}
else
{
- *n_vars--;
+ n_vars--;
/* msg (MW, _("Cannot compute autocovariance for a non-numeric variable %s"), */
/* var_to_string (vars[i])); */
}
}
- get_mean_variance (*n_vars, cf, est);
- get_covariance (*n_vars, cf, est, lag);
- get_coef (*n_vars, cf, est, lag);
+ get_mean_variance (n_vars, cf, est);
+ get_covariance (n_vars, cf, est, lag);
+ get_coef (n_vars, cf, est, lag);
return est;
}