GFC_INTEGER_8 maxval;
maxval = -GFC_INTEGER_8_HUGE;
- result = 1;
+ result = 0;
if (len <= 0)
*dest = 0;
else
for (n = 0; n < len; n++, src += delta)
{
- if (*src > maxval)
+ if (*src > maxval || !result)
{
maxval = *src;
result = (GFC_INTEGER_16)n + 1;
GFC_INTEGER_8 maxval;
maxval = -GFC_INTEGER_8_HUGE;
- result = 1;
+ result = 0;
if (len <= 0)
*dest = 0;
else
for (n = 0; n < len; n++, src += delta, msrc += mdelta)
{
- if (*msrc && *src > maxval)
+ if (*msrc && (*src > maxval || !result))
{
maxval = *src;
result = (GFC_INTEGER_16)n + 1;
}
}
+
+extern void smaxloc1_16_i8 (gfc_array_i16 * const restrict,
+ gfc_array_i8 * const restrict, const index_type * const restrict,
+ GFC_LOGICAL_4 *);
+export_proto(smaxloc1_16_i8);
+
+void
+smaxloc1_16_i8 (gfc_array_i16 * const restrict retarray,
+ gfc_array_i8 * const restrict array,
+ const index_type * const restrict pdim,
+ GFC_LOGICAL_4 * mask)
+{
+ index_type rank;
+ index_type n;
+ index_type dstride;
+ GFC_INTEGER_16 *dest;
+
+ if (*mask)
+ {
+ maxloc1_16_i8 (retarray, array, pdim);
+ return;
+ }
+ rank = GFC_DESCRIPTOR_RANK (array);
+ if (rank <= 0)
+ runtime_error ("Rank of array needs to be > 0");
+
+ if (retarray->data == NULL)
+ {
+ retarray->dim[0].lbound = 0;
+ retarray->dim[0].ubound = rank-1;
+ retarray->dim[0].stride = 1;
+ retarray->dtype = (retarray->dtype & ~GFC_DTYPE_RANK_MASK) | 1;
+ retarray->offset = 0;
+ retarray->data = internal_malloc_size (sizeof (GFC_INTEGER_16) * rank);
+ }
+ else
+ {
+ if (GFC_DESCRIPTOR_RANK (retarray) != 1)
+ runtime_error ("rank of return array does not equal 1");
+
+ if (retarray->dim[0].ubound + 1 - retarray->dim[0].lbound != rank)
+ runtime_error ("dimension of return array incorrect");
+
+ if (retarray->dim[0].stride == 0)
+ retarray->dim[0].stride = 1;
+ }
+
+ dstride = retarray->dim[0].stride;
+ dest = retarray->data;
+
+ for (n = 0; n < rank; n++)
+ dest[n * dstride] = 0 ;
+}
+
#endif