OpenCores
URL https://opencores.org/ocsvn/openrisc/openrisc/trunk

Subversion Repositories openrisc

[/] [openrisc/] [tags/] [gnu-dev/] [fsf-gcc-snapshot-1-mar-12/] [or1k-gcc/] [libgfortran/] [generated/] [eoshift1_4.c] - Diff between revs 733 and 783

Only display areas with differences | Details | Blame | View Log

Rev 733 Rev 783
/* Implementation of the EOSHIFT intrinsic
/* Implementation of the EOSHIFT intrinsic
   Copyright 2002, 2005, 2007, 2009 Free Software Foundation, Inc.
   Copyright 2002, 2005, 2007, 2009 Free Software Foundation, Inc.
   Contributed by Paul Brook <paul@nowt.org>
   Contributed by Paul Brook <paul@nowt.org>
 
 
This file is part of the GNU Fortran 95 runtime library (libgfortran).
This file is part of the GNU Fortran 95 runtime library (libgfortran).
 
 
Libgfortran is free software; you can redistribute it and/or
Libgfortran is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public
modify it under the terms of the GNU General Public
License as published by the Free Software Foundation; either
License as published by the Free Software Foundation; either
version 3 of the License, or (at your option) any later version.
version 3 of the License, or (at your option) any later version.
 
 
Libgfortran is distributed in the hope that it will be useful,
Libgfortran is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
GNU General Public License for more details.
GNU General Public License for more details.
 
 
Under Section 7 of GPL version 3, you are granted additional
Under Section 7 of GPL version 3, you are granted additional
permissions described in the GCC Runtime Library Exception, version
permissions described in the GCC Runtime Library Exception, version
3.1, as published by the Free Software Foundation.
3.1, as published by the Free Software Foundation.
 
 
You should have received a copy of the GNU General Public License and
You should have received a copy of the GNU General Public License and
a copy of the GCC Runtime Library Exception along with this program;
a copy of the GCC Runtime Library Exception along with this program;
see the files COPYING3 and COPYING.RUNTIME respectively.  If not, see
see the files COPYING3 and COPYING.RUNTIME respectively.  If not, see
<http://www.gnu.org/licenses/>.  */
<http://www.gnu.org/licenses/>.  */
 
 
#include "libgfortran.h"
#include "libgfortran.h"
#include <stdlib.h>
#include <stdlib.h>
#include <assert.h>
#include <assert.h>
#include <string.h>
#include <string.h>
 
 
 
 
#if defined (HAVE_GFC_INTEGER_4)
#if defined (HAVE_GFC_INTEGER_4)
 
 
static void
static void
eoshift1 (gfc_array_char * const restrict ret,
eoshift1 (gfc_array_char * const restrict ret,
        const gfc_array_char * const restrict array,
        const gfc_array_char * const restrict array,
        const gfc_array_i4 * const restrict h,
        const gfc_array_i4 * const restrict h,
        const char * const restrict pbound,
        const char * const restrict pbound,
        const GFC_INTEGER_4 * const restrict pwhich,
        const GFC_INTEGER_4 * const restrict pwhich,
        const char * filler, index_type filler_len)
        const char * filler, index_type filler_len)
{
{
  /* r.* indicates the return array.  */
  /* r.* indicates the return array.  */
  index_type rstride[GFC_MAX_DIMENSIONS];
  index_type rstride[GFC_MAX_DIMENSIONS];
  index_type rstride0;
  index_type rstride0;
  index_type roffset;
  index_type roffset;
  char *rptr;
  char *rptr;
  char * restrict dest;
  char * restrict dest;
  /* s.* indicates the source array.  */
  /* s.* indicates the source array.  */
  index_type sstride[GFC_MAX_DIMENSIONS];
  index_type sstride[GFC_MAX_DIMENSIONS];
  index_type sstride0;
  index_type sstride0;
  index_type soffset;
  index_type soffset;
  const char *sptr;
  const char *sptr;
  const char *src;
  const char *src;
  /* h.* indicates the shift array.  */
  /* h.* indicates the shift array.  */
  index_type hstride[GFC_MAX_DIMENSIONS];
  index_type hstride[GFC_MAX_DIMENSIONS];
  index_type hstride0;
  index_type hstride0;
  const GFC_INTEGER_4 *hptr;
  const GFC_INTEGER_4 *hptr;
 
 
  index_type count[GFC_MAX_DIMENSIONS];
  index_type count[GFC_MAX_DIMENSIONS];
  index_type extent[GFC_MAX_DIMENSIONS];
  index_type extent[GFC_MAX_DIMENSIONS];
  index_type dim;
  index_type dim;
  index_type len;
  index_type len;
  index_type n;
  index_type n;
  index_type size;
  index_type size;
  index_type arraysize;
  index_type arraysize;
  int which;
  int which;
  GFC_INTEGER_4 sh;
  GFC_INTEGER_4 sh;
  GFC_INTEGER_4 delta;
  GFC_INTEGER_4 delta;
 
 
  /* The compiler cannot figure out that these are set, initialize
  /* The compiler cannot figure out that these are set, initialize
     them to avoid warnings.  */
     them to avoid warnings.  */
  len = 0;
  len = 0;
  soffset = 0;
  soffset = 0;
  roffset = 0;
  roffset = 0;
 
 
  size = GFC_DESCRIPTOR_SIZE(array);
  size = GFC_DESCRIPTOR_SIZE(array);
 
 
  if (pwhich)
  if (pwhich)
    which = *pwhich - 1;
    which = *pwhich - 1;
  else
  else
    which = 0;
    which = 0;
 
 
  extent[0] = 1;
  extent[0] = 1;
  count[0] = 0;
  count[0] = 0;
 
 
  arraysize = size0 ((array_t *) array);
  arraysize = size0 ((array_t *) array);
  if (ret->data == NULL)
  if (ret->data == NULL)
    {
    {
      int i;
      int i;
 
 
      ret->offset = 0;
      ret->offset = 0;
      ret->dtype = array->dtype;
      ret->dtype = array->dtype;
      for (i = 0; i < GFC_DESCRIPTOR_RANK (array); i++)
      for (i = 0; i < GFC_DESCRIPTOR_RANK (array); i++)
        {
        {
          index_type ub, str;
          index_type ub, str;
 
 
          ub = GFC_DESCRIPTOR_EXTENT(array,i) - 1;
          ub = GFC_DESCRIPTOR_EXTENT(array,i) - 1;
 
 
          if (i == 0)
          if (i == 0)
            str = 1;
            str = 1;
          else
          else
            str = GFC_DESCRIPTOR_EXTENT(ret,i-1)
            str = GFC_DESCRIPTOR_EXTENT(ret,i-1)
              * GFC_DESCRIPTOR_STRIDE(ret,i-1);
              * GFC_DESCRIPTOR_STRIDE(ret,i-1);
 
 
          GFC_DIMENSION_SET(ret->dim[i], 0, ub, str);
          GFC_DIMENSION_SET(ret->dim[i], 0, ub, str);
 
 
        }
        }
      /* internal_malloc_size allocates a single byte for zero size.  */
      /* internal_malloc_size allocates a single byte for zero size.  */
      ret->data = internal_malloc_size (size * arraysize);
      ret->data = internal_malloc_size (size * arraysize);
 
 
    }
    }
  else if (unlikely (compile_options.bounds_check))
  else if (unlikely (compile_options.bounds_check))
    {
    {
      bounds_equal_extents ((array_t *) ret, (array_t *) array,
      bounds_equal_extents ((array_t *) ret, (array_t *) array,
                                 "return value", "EOSHIFT");
                                 "return value", "EOSHIFT");
    }
    }
 
 
  if (unlikely (compile_options.bounds_check))
  if (unlikely (compile_options.bounds_check))
    {
    {
      bounds_reduced_extents ((array_t *) h, (array_t *) array, which,
      bounds_reduced_extents ((array_t *) h, (array_t *) array, which,
                              "SHIFT argument", "EOSHIFT");
                              "SHIFT argument", "EOSHIFT");
    }
    }
 
 
  if (arraysize == 0)
  if (arraysize == 0)
    return;
    return;
 
 
  n = 0;
  n = 0;
  for (dim = 0; dim < GFC_DESCRIPTOR_RANK (array); dim++)
  for (dim = 0; dim < GFC_DESCRIPTOR_RANK (array); dim++)
    {
    {
      if (dim == which)
      if (dim == which)
        {
        {
          roffset = GFC_DESCRIPTOR_STRIDE_BYTES(ret,dim);
          roffset = GFC_DESCRIPTOR_STRIDE_BYTES(ret,dim);
          if (roffset == 0)
          if (roffset == 0)
            roffset = size;
            roffset = size;
          soffset = GFC_DESCRIPTOR_STRIDE_BYTES(array,dim);
          soffset = GFC_DESCRIPTOR_STRIDE_BYTES(array,dim);
          if (soffset == 0)
          if (soffset == 0)
            soffset = size;
            soffset = size;
          len = GFC_DESCRIPTOR_EXTENT(array,dim);
          len = GFC_DESCRIPTOR_EXTENT(array,dim);
        }
        }
      else
      else
        {
        {
          count[n] = 0;
          count[n] = 0;
          extent[n] = GFC_DESCRIPTOR_EXTENT(array,dim);
          extent[n] = GFC_DESCRIPTOR_EXTENT(array,dim);
          rstride[n] = GFC_DESCRIPTOR_STRIDE_BYTES(ret,dim);
          rstride[n] = GFC_DESCRIPTOR_STRIDE_BYTES(ret,dim);
          sstride[n] = GFC_DESCRIPTOR_STRIDE_BYTES(array,dim);
          sstride[n] = GFC_DESCRIPTOR_STRIDE_BYTES(array,dim);
 
 
          hstride[n] = GFC_DESCRIPTOR_STRIDE(h,n);
          hstride[n] = GFC_DESCRIPTOR_STRIDE(h,n);
          n++;
          n++;
        }
        }
    }
    }
  if (sstride[0] == 0)
  if (sstride[0] == 0)
    sstride[0] = size;
    sstride[0] = size;
  if (rstride[0] == 0)
  if (rstride[0] == 0)
    rstride[0] = size;
    rstride[0] = size;
  if (hstride[0] == 0)
  if (hstride[0] == 0)
    hstride[0] = 1;
    hstride[0] = 1;
 
 
  dim = GFC_DESCRIPTOR_RANK (array);
  dim = GFC_DESCRIPTOR_RANK (array);
  rstride0 = rstride[0];
  rstride0 = rstride[0];
  sstride0 = sstride[0];
  sstride0 = sstride[0];
  hstride0 = hstride[0];
  hstride0 = hstride[0];
  rptr = ret->data;
  rptr = ret->data;
  sptr = array->data;
  sptr = array->data;
  hptr = h->data;
  hptr = h->data;
 
 
  while (rptr)
  while (rptr)
    {
    {
      /* Do the shift for this dimension.  */
      /* Do the shift for this dimension.  */
      sh = *hptr;
      sh = *hptr;
      if (( sh >= 0 ? sh : -sh ) > len)
      if (( sh >= 0 ? sh : -sh ) > len)
        {
        {
          delta = len;
          delta = len;
          sh = len;
          sh = len;
        }
        }
      else
      else
        delta = (sh >= 0) ? sh: -sh;
        delta = (sh >= 0) ? sh: -sh;
 
 
      if (sh > 0)
      if (sh > 0)
        {
        {
          src = &sptr[delta * soffset];
          src = &sptr[delta * soffset];
          dest = rptr;
          dest = rptr;
        }
        }
      else
      else
        {
        {
          src = sptr;
          src = sptr;
          dest = &rptr[delta * roffset];
          dest = &rptr[delta * roffset];
        }
        }
      for (n = 0; n < len - delta; n++)
      for (n = 0; n < len - delta; n++)
        {
        {
          memcpy (dest, src, size);
          memcpy (dest, src, size);
          dest += roffset;
          dest += roffset;
          src += soffset;
          src += soffset;
        }
        }
      if (sh < 0)
      if (sh < 0)
        dest = rptr;
        dest = rptr;
      n = delta;
      n = delta;
 
 
      if (pbound)
      if (pbound)
        while (n--)
        while (n--)
          {
          {
            memcpy (dest, pbound, size);
            memcpy (dest, pbound, size);
            dest += roffset;
            dest += roffset;
          }
          }
      else
      else
        while (n--)
        while (n--)
          {
          {
            index_type i;
            index_type i;
 
 
            if (filler_len == 1)
            if (filler_len == 1)
              memset (dest, filler[0], size);
              memset (dest, filler[0], size);
            else
            else
              for (i = 0; i < size; i += filler_len)
              for (i = 0; i < size; i += filler_len)
                memcpy (&dest[i], filler, filler_len);
                memcpy (&dest[i], filler, filler_len);
 
 
            dest += roffset;
            dest += roffset;
          }
          }
 
 
      /* Advance to the next section.  */
      /* Advance to the next section.  */
      rptr += rstride0;
      rptr += rstride0;
      sptr += sstride0;
      sptr += sstride0;
      hptr += hstride0;
      hptr += hstride0;
      count[0]++;
      count[0]++;
      n = 0;
      n = 0;
      while (count[n] == extent[n])
      while (count[n] == extent[n])
        {
        {
          /* When we get to the end of a dimension, reset it and increment
          /* When we get to the end of a dimension, reset it and increment
             the next dimension.  */
             the next dimension.  */
          count[n] = 0;
          count[n] = 0;
          /* We could precalculate these products, but this is a less
          /* We could precalculate these products, but this is a less
             frequently used path so probably not worth it.  */
             frequently used path so probably not worth it.  */
          rptr -= rstride[n] * extent[n];
          rptr -= rstride[n] * extent[n];
          sptr -= sstride[n] * extent[n];
          sptr -= sstride[n] * extent[n];
          hptr -= hstride[n] * extent[n];
          hptr -= hstride[n] * extent[n];
          n++;
          n++;
          if (n >= dim - 1)
          if (n >= dim - 1)
            {
            {
              /* Break out of the loop.  */
              /* Break out of the loop.  */
              rptr = NULL;
              rptr = NULL;
              break;
              break;
            }
            }
          else
          else
            {
            {
              count[n]++;
              count[n]++;
              rptr += rstride[n];
              rptr += rstride[n];
              sptr += sstride[n];
              sptr += sstride[n];
              hptr += hstride[n];
              hptr += hstride[n];
            }
            }
        }
        }
    }
    }
}
}
 
 
void eoshift1_4 (gfc_array_char * const restrict,
void eoshift1_4 (gfc_array_char * const restrict,
        const gfc_array_char * const restrict,
        const gfc_array_char * const restrict,
        const gfc_array_i4 * const restrict, const char * const restrict,
        const gfc_array_i4 * const restrict, const char * const restrict,
        const GFC_INTEGER_4 * const restrict);
        const GFC_INTEGER_4 * const restrict);
export_proto(eoshift1_4);
export_proto(eoshift1_4);
 
 
void
void
eoshift1_4 (gfc_array_char * const restrict ret,
eoshift1_4 (gfc_array_char * const restrict ret,
        const gfc_array_char * const restrict array,
        const gfc_array_char * const restrict array,
        const gfc_array_i4 * const restrict h,
        const gfc_array_i4 * const restrict h,
        const char * const restrict pbound,
        const char * const restrict pbound,
        const GFC_INTEGER_4 * const restrict pwhich)
        const GFC_INTEGER_4 * const restrict pwhich)
{
{
  eoshift1 (ret, array, h, pbound, pwhich, "\0", 1);
  eoshift1 (ret, array, h, pbound, pwhich, "\0", 1);
}
}
 
 
 
 
void eoshift1_4_char (gfc_array_char * const restrict,
void eoshift1_4_char (gfc_array_char * const restrict,
        GFC_INTEGER_4,
        GFC_INTEGER_4,
        const gfc_array_char * const restrict,
        const gfc_array_char * const restrict,
        const gfc_array_i4 * const restrict,
        const gfc_array_i4 * const restrict,
        const char * const restrict,
        const char * const restrict,
        const GFC_INTEGER_4 * const restrict,
        const GFC_INTEGER_4 * const restrict,
        GFC_INTEGER_4, GFC_INTEGER_4);
        GFC_INTEGER_4, GFC_INTEGER_4);
export_proto(eoshift1_4_char);
export_proto(eoshift1_4_char);
 
 
void
void
eoshift1_4_char (gfc_array_char * const restrict ret,
eoshift1_4_char (gfc_array_char * const restrict ret,
        GFC_INTEGER_4 ret_length __attribute__((unused)),
        GFC_INTEGER_4 ret_length __attribute__((unused)),
        const gfc_array_char * const restrict array,
        const gfc_array_char * const restrict array,
        const gfc_array_i4 * const restrict h,
        const gfc_array_i4 * const restrict h,
        const char *  const restrict pbound,
        const char *  const restrict pbound,
        const GFC_INTEGER_4 * const restrict pwhich,
        const GFC_INTEGER_4 * const restrict pwhich,
        GFC_INTEGER_4 array_length __attribute__((unused)),
        GFC_INTEGER_4 array_length __attribute__((unused)),
        GFC_INTEGER_4 bound_length __attribute__((unused)))
        GFC_INTEGER_4 bound_length __attribute__((unused)))
{
{
  eoshift1 (ret, array, h, pbound, pwhich, " ", 1);
  eoshift1 (ret, array, h, pbound, pwhich, " ", 1);
}
}
 
 
 
 
void eoshift1_4_char4 (gfc_array_char * const restrict,
void eoshift1_4_char4 (gfc_array_char * const restrict,
        GFC_INTEGER_4,
        GFC_INTEGER_4,
        const gfc_array_char * const restrict,
        const gfc_array_char * const restrict,
        const gfc_array_i4 * const restrict,
        const gfc_array_i4 * const restrict,
        const char * const restrict,
        const char * const restrict,
        const GFC_INTEGER_4 * const restrict,
        const GFC_INTEGER_4 * const restrict,
        GFC_INTEGER_4, GFC_INTEGER_4);
        GFC_INTEGER_4, GFC_INTEGER_4);
export_proto(eoshift1_4_char4);
export_proto(eoshift1_4_char4);
 
 
void
void
eoshift1_4_char4 (gfc_array_char * const restrict ret,
eoshift1_4_char4 (gfc_array_char * const restrict ret,
        GFC_INTEGER_4 ret_length __attribute__((unused)),
        GFC_INTEGER_4 ret_length __attribute__((unused)),
        const gfc_array_char * const restrict array,
        const gfc_array_char * const restrict array,
        const gfc_array_i4 * const restrict h,
        const gfc_array_i4 * const restrict h,
        const char *  const restrict pbound,
        const char *  const restrict pbound,
        const GFC_INTEGER_4 * const restrict pwhich,
        const GFC_INTEGER_4 * const restrict pwhich,
        GFC_INTEGER_4 array_length __attribute__((unused)),
        GFC_INTEGER_4 array_length __attribute__((unused)),
        GFC_INTEGER_4 bound_length __attribute__((unused)))
        GFC_INTEGER_4 bound_length __attribute__((unused)))
{
{
  static const gfc_char4_t space = (unsigned char) ' ';
  static const gfc_char4_t space = (unsigned char) ' ';
  eoshift1 (ret, array, h, pbound, pwhich,
  eoshift1 (ret, array, h, pbound, pwhich,
            (const char *) &space, sizeof (gfc_char4_t));
            (const char *) &space, sizeof (gfc_char4_t));
}
}
 
 
#endif
#endif
 
 

powered by: WebSVN 2.1.0

© copyright 1999-2024 OpenCores.org, equivalent to Oliscience, all rights reserved. OpenCores®, registered trademark.