gcc/libgfortran/intrinsics/eoshift0.c
Thomas Koenig fa3c4d47b9 libgfortran.h (GFC_DTYPE_COPY): New macro.
2018-01-07  Thomas Koenig  <tkoenig@gcc.gnu.org>

	* libgfortran.h (GFC_DTYPE_COPY): New macro.
	(GFC_DTYPE_COPY_SETRANK): New macro.
	(GFC_DTYPE_IS_UNSET): New macro.
	* intrinsics/cshift0.c (cshift0): Use new macros.
	* intrinsics/eoshift0.c (eoshift0): Likewise.
	* intrinsics/eoshift2.c (eoshift2): Likewise.
	* intrinsics/move_alloc.c (move_alloc): Likewise.
	* intrinsics/reshape_generic.c (reshape_internal): Likewise.
	* intrinsics/spread_generic.c (spread_internal): Likewise.
	* intrinsics/spread_generic.c (spread_scalar): Likewise.
	* intrinsics/spread_generic.c (spread_char_scalar): Likewise.
	* intrinsics/spread_generic.c (spread_char4_scalar): Likewise.
	* intrinsics/unpack_generic.c (unpack0): Likewise.
	* intrinsics/unpack_generic.c (unpack0_char): Likewise.
	* intrinsics/unpack_generic.c (unpack0_char4): Likewise.
	* m4/cshift1.m4 (cshift1): Likewise.
	* m4/eoshift1.m4 (eoshift1): Likewise.
	* m4/eoshift3.m4 (eoshift3): Likewise.
	* m4/iforeach-s.m4: Likewise.
	* m4/iforeach.m4: Likewise.
	* m4/ifunction-s.m4: Likewise.
	* m4/ifunction-s2.m4: Likewise.
	* m4/ifunction.m4: Likewise.
	* m4/ifunction_logical.m4: Likewise.
	* m4/reshape.m4: Likewise.
	* m4/spread.m4: Likewise.
	* generated/all_l1.c : Regenerated.
	* generated/all_l16.c : Regenerated.
	* generated/all_l2.c : Regenerated.
	* generated/all_l4.c : Regenerated.
	* generated/all_l8.c : Regenerated.
	* generated/any_l1.c : Regenerated.
	* generated/any_l16.c : Regenerated.
	* generated/any_l2.c : Regenerated.
	* generated/any_l4.c : Regenerated.
	* generated/any_l8.c : Regenerated.
	* generated/count_16_l.c : Regenerated.
	* generated/count_1_l.c : Regenerated.
	* generated/count_2_l.c : Regenerated.
	* generated/count_4_l.c : Regenerated.
	* generated/count_8_l.c : Regenerated.
	* generated/cshift1_16.c : Regenerated.
	* generated/cshift1_4.c : Regenerated.
	* generated/cshift1_8.c : Regenerated.
	* generated/eoshift1_16.c : Regenerated.
	* generated/eoshift1_4.c : Regenerated.
	* generated/eoshift1_8.c : Regenerated.
	* generated/eoshift3_16.c : Regenerated.
	* generated/eoshift3_4.c : Regenerated.
	* generated/eoshift3_8.c : Regenerated.
	* generated/iall_i1.c : Regenerated.
	* generated/iall_i16.c : Regenerated.
	* generated/iall_i2.c : Regenerated.
	* generated/iall_i4.c : Regenerated.
	* generated/iall_i8.c : Regenerated.
	* generated/iany_i1.c : Regenerated.
	* generated/iany_i16.c : Regenerated.
	* generated/iany_i2.c : Regenerated.
	* generated/iany_i4.c : Regenerated.
	* generated/iany_i8.c : Regenerated.
	* generated/iparity_i1.c : Regenerated.
	* generated/iparity_i16.c : Regenerated.
	* generated/iparity_i2.c : Regenerated.
	* generated/iparity_i4.c : Regenerated.
	* generated/iparity_i8.c : Regenerated.
	* generated/maxloc0_16_i1.c : Regenerated.
	* generated/maxloc0_16_i16.c : Regenerated.
	* generated/maxloc0_16_i2.c : Regenerated.
	* generated/maxloc0_16_i4.c : Regenerated.
	* generated/maxloc0_16_i8.c : Regenerated.
	* generated/maxloc0_16_r10.c : Regenerated.
	* generated/maxloc0_16_r16.c : Regenerated.
	* generated/maxloc0_16_r4.c : Regenerated.
	* generated/maxloc0_16_r8.c : Regenerated.
	* generated/maxloc0_16_s1.c : Regenerated.
	* generated/maxloc0_16_s4.c : Regenerated.
	* generated/maxloc0_4_i1.c : Regenerated.
	* generated/maxloc0_4_i16.c : Regenerated.
	* generated/maxloc0_4_i2.c : Regenerated.
	* generated/maxloc0_4_i4.c : Regenerated.
	* generated/maxloc0_4_i8.c : Regenerated.
	* generated/maxloc0_4_r10.c : Regenerated.
	* generated/maxloc0_4_r16.c : Regenerated.
	* generated/maxloc0_4_r4.c : Regenerated.
	* generated/maxloc0_4_r8.c : Regenerated.
	* generated/maxloc0_4_s1.c : Regenerated.
	* generated/maxloc0_4_s4.c : Regenerated.
	* generated/maxloc0_8_i1.c : Regenerated.
	* generated/maxloc0_8_i16.c : Regenerated.
	* generated/maxloc0_8_i2.c : Regenerated.
	* generated/maxloc0_8_i4.c : Regenerated.
	* generated/maxloc0_8_i8.c : Regenerated.
	* generated/maxloc0_8_r10.c : Regenerated.
	* generated/maxloc0_8_r16.c : Regenerated.
	* generated/maxloc0_8_r4.c : Regenerated.
	* generated/maxloc0_8_r8.c : Regenerated.
	* generated/maxloc0_8_s1.c : Regenerated.
	* generated/maxloc0_8_s4.c : Regenerated.
	* generated/maxloc1_16_i1.c : Regenerated.
	* generated/maxloc1_16_i16.c : Regenerated.
	* generated/maxloc1_16_i2.c : Regenerated.
	* generated/maxloc1_16_i4.c : Regenerated.
	* generated/maxloc1_16_i8.c : Regenerated.
	* generated/maxloc1_16_r10.c : Regenerated.
	* generated/maxloc1_16_r16.c : Regenerated.
	* generated/maxloc1_16_r4.c : Regenerated.
	* generated/maxloc1_16_r8.c : Regenerated.
	* generated/maxloc1_16_s1.c : Regenerated.
	* generated/maxloc1_16_s4.c : Regenerated.
	* generated/maxloc1_4_i1.c : Regenerated.
	* generated/maxloc1_4_i16.c : Regenerated.
	* generated/maxloc1_4_i2.c : Regenerated.
	* generated/maxloc1_4_i4.c : Regenerated.
	* generated/maxloc1_4_i8.c : Regenerated.
	* generated/maxloc1_4_r10.c : Regenerated.
	* generated/maxloc1_4_r16.c : Regenerated.
	* generated/maxloc1_4_r4.c : Regenerated.
	* generated/maxloc1_4_r8.c : Regenerated.
	* generated/maxloc1_4_s1.c : Regenerated.
	* generated/maxloc1_4_s4.c : Regenerated.
	* generated/maxloc1_8_i1.c : Regenerated.
	* generated/maxloc1_8_i16.c : Regenerated.
	* generated/maxloc1_8_i2.c : Regenerated.
	* generated/maxloc1_8_i4.c : Regenerated.
	* generated/maxloc1_8_i8.c : Regenerated.
	* generated/maxloc1_8_r10.c : Regenerated.
	* generated/maxloc1_8_r16.c : Regenerated.
	* generated/maxloc1_8_r4.c : Regenerated.
	* generated/maxloc1_8_r8.c : Regenerated.
	* generated/maxloc1_8_s1.c : Regenerated.
	* generated/maxloc1_8_s4.c : Regenerated.
	* generated/maxval1_s1.c : Regenerated.
	* generated/maxval1_s4.c : Regenerated.
	* generated/maxval_i1.c : Regenerated.
	* generated/maxval_i16.c : Regenerated.
	* generated/maxval_i2.c : Regenerated.
	* generated/maxval_i4.c : Regenerated.
	* generated/maxval_i8.c : Regenerated.
	* generated/maxval_r10.c : Regenerated.
	* generated/maxval_r16.c : Regenerated.
	* generated/maxval_r4.c : Regenerated.
	* generated/maxval_r8.c : Regenerated.
	* generated/minloc0_16_i1.c : Regenerated.
	* generated/minloc0_16_i16.c : Regenerated.
	* generated/minloc0_16_i2.c : Regenerated.
	* generated/minloc0_16_i4.c : Regenerated.
	* generated/minloc0_16_i8.c : Regenerated.
	* generated/minloc0_16_r10.c : Regenerated.
	* generated/minloc0_16_r16.c : Regenerated.
	* generated/minloc0_16_r4.c : Regenerated.
	* generated/minloc0_16_r8.c : Regenerated.
	* generated/minloc0_16_s1.c : Regenerated.
	* generated/minloc0_16_s4.c : Regenerated.
	* generated/minloc0_4_i1.c : Regenerated.
	* generated/minloc0_4_i16.c : Regenerated.
	* generated/minloc0_4_i2.c : Regenerated.
	* generated/minloc0_4_i4.c : Regenerated.
	* generated/minloc0_4_i8.c : Regenerated.
	* generated/minloc0_4_r10.c : Regenerated.
	* generated/minloc0_4_r16.c : Regenerated.
	* generated/minloc0_4_r4.c : Regenerated.
	* generated/minloc0_4_r8.c : Regenerated.
	* generated/minloc0_4_s1.c : Regenerated.
	* generated/minloc0_4_s4.c : Regenerated.
	* generated/minloc0_8_i1.c : Regenerated.
	* generated/minloc0_8_i16.c : Regenerated.
	* generated/minloc0_8_i2.c : Regenerated.
	* generated/minloc0_8_i4.c : Regenerated.
	* generated/minloc0_8_i8.c : Regenerated.
	* generated/minloc0_8_r10.c : Regenerated.
	* generated/minloc0_8_r16.c : Regenerated.
	* generated/minloc0_8_r4.c : Regenerated.
	* generated/minloc0_8_r8.c : Regenerated.
	* generated/minloc0_8_s1.c : Regenerated.
	* generated/minloc0_8_s4.c : Regenerated.
	* generated/minloc1_16_i1.c : Regenerated.
	* generated/minloc1_16_i16.c : Regenerated.
	* generated/minloc1_16_i2.c : Regenerated.
	* generated/minloc1_16_i4.c : Regenerated.
	* generated/minloc1_16_i8.c : Regenerated.
	* generated/minloc1_16_r10.c : Regenerated.
	* generated/minloc1_16_r16.c : Regenerated.
	* generated/minloc1_16_r4.c : Regenerated.
	* generated/minloc1_16_r8.c : Regenerated.
	* generated/minloc1_16_s1.c : Regenerated.
	* generated/minloc1_16_s4.c : Regenerated.
	* generated/minloc1_4_i1.c : Regenerated.
	* generated/minloc1_4_i16.c : Regenerated.
	* generated/minloc1_4_i2.c : Regenerated.
	* generated/minloc1_4_i4.c : Regenerated.
	* generated/minloc1_4_i8.c : Regenerated.
	* generated/minloc1_4_r10.c : Regenerated.
	* generated/minloc1_4_r16.c : Regenerated.
	* generated/minloc1_4_r4.c : Regenerated.
	* generated/minloc1_4_r8.c : Regenerated.
	* generated/minloc1_4_s1.c : Regenerated.
	* generated/minloc1_4_s4.c : Regenerated.
	* generated/minloc1_8_i1.c : Regenerated.
	* generated/minloc1_8_i16.c : Regenerated.
	* generated/minloc1_8_i2.c : Regenerated.
	* generated/minloc1_8_i4.c : Regenerated.
	* generated/minloc1_8_i8.c : Regenerated.
	* generated/minloc1_8_r10.c : Regenerated.
	* generated/minloc1_8_r16.c : Regenerated.
	* generated/minloc1_8_r4.c : Regenerated.
	* generated/minloc1_8_r8.c : Regenerated.
	* generated/minloc1_8_s1.c : Regenerated.
	* generated/minloc1_8_s4.c : Regenerated.
	* generated/minval1_s1.c : Regenerated.
	* generated/minval1_s4.c : Regenerated.
	* generated/minval_i1.c : Regenerated.
	* generated/minval_i16.c : Regenerated.
	* generated/minval_i2.c : Regenerated.
	* generated/minval_i4.c : Regenerated.
	* generated/minval_i8.c : Regenerated.
	* generated/minval_r10.c : Regenerated.
	* generated/minval_r16.c : Regenerated.
	* generated/minval_r4.c : Regenerated.
	* generated/minval_r8.c : Regenerated.
	* generated/norm2_r10.c : Regenerated.
	* generated/norm2_r16.c : Regenerated.
	* generated/norm2_r4.c : Regenerated.
	* generated/norm2_r8.c : Regenerated.
	* generated/parity_l1.c : Regenerated.
	* generated/parity_l16.c : Regenerated.
	* generated/parity_l2.c : Regenerated.
	* generated/parity_l4.c : Regenerated.
	* generated/parity_l8.c : Regenerated.
	* generated/product_c10.c : Regenerated.
	* generated/product_c16.c : Regenerated.
	* generated/product_c4.c : Regenerated.
	* generated/product_c8.c : Regenerated.
	* generated/product_i1.c : Regenerated.
	* generated/product_i16.c : Regenerated.
	* generated/product_i2.c : Regenerated.
	* generated/product_i4.c : Regenerated.
	* generated/product_i8.c : Regenerated.
	* generated/product_r10.c : Regenerated.
	* generated/product_r16.c : Regenerated.
	* generated/product_r4.c : Regenerated.
	* generated/product_r8.c : Regenerated.
	* generated/reshape_c10.c : Regenerated.
	* generated/reshape_c16.c : Regenerated.
	* generated/reshape_c4.c : Regenerated.
	* generated/reshape_c8.c : Regenerated.
	* generated/reshape_i16.c : Regenerated.
	* generated/reshape_i4.c : Regenerated.
	* generated/reshape_i8.c : Regenerated.
	* generated/reshape_r10.c : Regenerated.
	* generated/reshape_r16.c : Regenerated.
	* generated/reshape_r4.c : Regenerated.
	* generated/reshape_r8.c : Regenerated.
	* generated/spread_c10.c : Regenerated.
	* generated/spread_c16.c : Regenerated.
	* generated/spread_c4.c : Regenerated.
	* generated/spread_c8.c : Regenerated.
	* generated/spread_i1.c : Regenerated.
	* generated/spread_i16.c : Regenerated.
	* generated/spread_i2.c : Regenerated.
	* generated/spread_i4.c : Regenerated.
	* generated/spread_i8.c : Regenerated.
	* generated/spread_r10.c : Regenerated.
	* generated/spread_r16.c : Regenerated.
	* generated/spread_r4.c : Regenerated.
	* generated/spread_r8.c : Regenerated.
	* generated/sum_c10.c : Regenerated.
	* generated/sum_c16.c : Regenerated.
	* generated/sum_c4.c : Regenerated.
	* generated/sum_c8.c : Regenerated.
	* generated/sum_i1.c : Regenerated.
	* generated/sum_i16.c : Regenerated.
	* generated/sum_i2.c : Regenerated.
	* generated/sum_i4.c : Regenerated.
	* generated/sum_i8.c : Regenerated.
	* generated/sum_r10.c : Regenerated.
	* generated/sum_r16.c : Regenerated.
	* generated/sum_r4.c : Regenerated.
	* generated/sum_r8.c : Regenerated.

From-SVN: r256323
2018-01-07 14:11:11 +00:00

368 lines
9.7 KiB
C

/* Generic implementation of the EOSHIFT intrinsic
Copyright (C) 2002-2018 Free Software Foundation, Inc.
Contributed by Paul Brook <paul@nowt.org>
This file is part of the GNU Fortran runtime library (libgfortran).
Libgfortran is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public
License as published by the Free Software Foundation; either
version 3 of the License, or (at your option) any later version.
Libgfortran is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
Under Section 7 of GPL version 3, you are granted additional
permissions described in the GCC Runtime Library Exception, version
3.1, as published by the Free Software Foundation.
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;
see the files COPYING3 and COPYING.RUNTIME respectively. If not, see
<http://www.gnu.org/licenses/>. */
#include "libgfortran.h"
#include <string.h>
static void
eoshift0 (gfc_array_char * ret, const gfc_array_char * array,
index_type shift, const char * pbound, int which, index_type size,
const char *filler, index_type filler_len)
{
/* r.* indicates the return array. */
index_type rstride[GFC_MAX_DIMENSIONS];
index_type rstride0;
index_type roffset;
char * restrict rptr;
char *dest;
/* s.* indicates the source array. */
index_type sstride[GFC_MAX_DIMENSIONS];
index_type sstride0;
index_type soffset;
const char *sptr;
const char *src;
index_type count[GFC_MAX_DIMENSIONS];
index_type extent[GFC_MAX_DIMENSIONS];
index_type dim;
index_type len;
index_type n;
index_type arraysize;
bool do_blocked;
/* The compiler cannot figure out that these are set, initialize
them to avoid warnings. */
len = 0;
soffset = 0;
roffset = 0;
arraysize = size0 ((array_t *) array);
if (ret->base_addr == NULL)
{
int i;
ret->offset = 0;
GFC_DTYPE_COPY(ret,array);
for (i = 0; i < GFC_DESCRIPTOR_RANK (array); i++)
{
index_type ub, str;
ub = GFC_DESCRIPTOR_EXTENT(array,i) - 1;
if (i == 0)
str = 1;
else
str = GFC_DESCRIPTOR_EXTENT(ret,i-1)
* GFC_DESCRIPTOR_STRIDE(ret,i-1);
GFC_DIMENSION_SET(ret->dim[i], 0, ub, str);
}
/* xmallocarray allocates a single byte for zero size. */
ret->base_addr = xmallocarray (arraysize, size);
}
else if (unlikely (compile_options.bounds_check))
{
bounds_equal_extents ((array_t *) ret, (array_t *) array,
"return value", "EOSHIFT");
}
if (arraysize == 0)
return;
which = which - 1;
extent[0] = 1;
count[0] = 0;
sstride[0] = -1;
rstride[0] = -1;
if (which > 0)
{
/* Test if both ret and array are contiguous. */
index_type r_ex, a_ex;
r_ex = 1;
a_ex = 1;
do_blocked = true;
dim = GFC_DESCRIPTOR_RANK (array);
for (n = 0; n < dim; n ++)
{
index_type rs, as;
rs = GFC_DESCRIPTOR_STRIDE (ret, n);
if (rs != r_ex)
{
do_blocked = false;
break;
}
as = GFC_DESCRIPTOR_STRIDE (array, n);
if (as != a_ex)
{
do_blocked = false;
break;
}
r_ex *= GFC_DESCRIPTOR_EXTENT (ret, n);
a_ex *= GFC_DESCRIPTOR_EXTENT (array, n);
}
}
else
do_blocked = false;
n = 0;
if (do_blocked)
{
/* For contiguous arrays, use the relationship that
dimension(n1,n2,n3) :: a, b
b = eoshift(a,sh,3)
can be dealt with as if
dimension(n1*n2*n3) :: an, bn
bn = eoshift(a,sh*n1*n2,1)
so a block move can be used for dim>1. */
len = GFC_DESCRIPTOR_STRIDE(array, which)
* GFC_DESCRIPTOR_EXTENT(array, which);
shift *= GFC_DESCRIPTOR_STRIDE(array, which);
roffset = size;
soffset = size;
for (dim = which + 1; dim < GFC_DESCRIPTOR_RANK (array); dim++)
{
count[n] = 0;
extent[n] = GFC_DESCRIPTOR_EXTENT(array,dim);
rstride[n] = GFC_DESCRIPTOR_STRIDE_BYTES(ret,dim);
sstride[n] = GFC_DESCRIPTOR_STRIDE_BYTES(array,dim);
n++;
}
count[n] = 0;
dim = GFC_DESCRIPTOR_RANK (array) - which;
}
else
{
for (dim = 0; dim < GFC_DESCRIPTOR_RANK (array); dim++)
{
if (dim == which)
{
roffset = GFC_DESCRIPTOR_STRIDE_BYTES(ret,dim);
if (roffset == 0)
roffset = size;
soffset = GFC_DESCRIPTOR_STRIDE_BYTES(array,dim);
if (soffset == 0)
soffset = size;
len = GFC_DESCRIPTOR_EXTENT(array,dim);
}
else
{
count[n] = 0;
extent[n] = GFC_DESCRIPTOR_EXTENT(array,dim);
rstride[n] = GFC_DESCRIPTOR_STRIDE_BYTES(ret,dim);
sstride[n] = GFC_DESCRIPTOR_STRIDE_BYTES(array,dim);
n++;
}
}
dim = GFC_DESCRIPTOR_RANK (array);
}
if ((shift >= 0 ? shift : -shift) > len)
{
shift = len;
len = 0;
}
else
{
if (shift > 0)
len = len - shift;
else
len = len + shift;
}
rstride0 = rstride[0];
sstride0 = sstride[0];
rptr = ret->base_addr;
sptr = array->base_addr;
while (rptr)
{
/* Do the shift for this dimension. */
if (shift > 0)
{
src = &sptr[shift * soffset];
dest = rptr;
}
else
{
src = sptr;
dest = &rptr[-shift * roffset];
}
/* If the elements are contiguous, perform a single block move. */
if (soffset == size && roffset == size)
{
size_t chunk = size * len;
memcpy (dest, src, chunk);
dest += chunk;
}
else
{
for (n = 0; n < len; n++)
{
memcpy (dest, src, size);
dest += roffset;
src += soffset;
}
}
if (shift >= 0)
{
n = shift;
}
else
{
dest = rptr;
n = -shift;
}
if (pbound)
while (n--)
{
memcpy (dest, pbound, size);
dest += roffset;
}
else
while (n--)
{
index_type i;
if (filler_len == 1)
memset (dest, filler[0], size);
else
for (i = 0; i < size ; i += filler_len)
memcpy (&dest[i], filler, filler_len);
dest += roffset;
}
/* Advance to the next section. */
rptr += rstride0;
sptr += sstride0;
count[0]++;
n = 0;
while (count[n] == extent[n])
{
/* When we get to the end of a dimension, reset it and increment
the next dimension. */
count[n] = 0;
/* We could precalculate these products, but this is a less
frequently used path so probably not worth it. */
rptr -= rstride[n] * extent[n];
sptr -= sstride[n] * extent[n];
n++;
if (n >= dim - 1)
{
/* Break out of the loop. */
rptr = NULL;
break;
}
else
{
count[n]++;
rptr += rstride[n];
sptr += sstride[n];
}
}
}
}
#define DEFINE_EOSHIFT(N) \
extern void eoshift0_##N (gfc_array_char *, const gfc_array_char *, \
const GFC_INTEGER_##N *, const char *, \
const GFC_INTEGER_##N *); \
export_proto(eoshift0_##N); \
\
void \
eoshift0_##N (gfc_array_char *ret, const gfc_array_char *array, \
const GFC_INTEGER_##N *pshift, const char *pbound, \
const GFC_INTEGER_##N *pdim) \
{ \
eoshift0 (ret, array, *pshift, pbound, pdim ? *pdim : 1, \
GFC_DESCRIPTOR_SIZE (array), "\0", 1); \
} \
\
extern void eoshift0_##N##_char (gfc_array_char *, GFC_INTEGER_4, \
const gfc_array_char *, \
const GFC_INTEGER_##N *, const char *, \
const GFC_INTEGER_##N *, GFC_INTEGER_4, \
GFC_INTEGER_4); \
export_proto(eoshift0_##N##_char); \
\
void \
eoshift0_##N##_char (gfc_array_char *ret, \
GFC_INTEGER_4 ret_length __attribute__((unused)), \
const gfc_array_char *array, \
const GFC_INTEGER_##N *pshift, \
const char *pbound, \
const GFC_INTEGER_##N *pdim, \
GFC_INTEGER_4 array_length, \
GFC_INTEGER_4 bound_length __attribute__((unused))) \
{ \
eoshift0 (ret, array, *pshift, pbound, pdim ? *pdim : 1, \
array_length, " ", 1); \
} \
\
extern void eoshift0_##N##_char4 (gfc_array_char *, GFC_INTEGER_4, \
const gfc_array_char *, \
const GFC_INTEGER_##N *, const char *, \
const GFC_INTEGER_##N *, GFC_INTEGER_4, \
GFC_INTEGER_4); \
export_proto(eoshift0_##N##_char4); \
\
void \
eoshift0_##N##_char4 (gfc_array_char *ret, \
GFC_INTEGER_4 ret_length __attribute__((unused)), \
const gfc_array_char *array, \
const GFC_INTEGER_##N *pshift, \
const char *pbound, \
const GFC_INTEGER_##N *pdim, \
GFC_INTEGER_4 array_length, \
GFC_INTEGER_4 bound_length __attribute__((unused))) \
{ \
static const gfc_char4_t space = (unsigned char) ' '; \
eoshift0 (ret, array, *pshift, pbound, pdim ? *pdim : 1, \
array_length * sizeof (gfc_char4_t), (const char *) &space, \
sizeof (gfc_char4_t)); \
}
DEFINE_EOSHIFT (1);
DEFINE_EOSHIFT (2);
DEFINE_EOSHIFT (4);
DEFINE_EOSHIFT (8);
#ifdef HAVE_GFC_INTEGER_16
DEFINE_EOSHIFT (16);
#endif