92e6f3a43e
2014-06-17 Janne Blomqvist <jb@gcc.gnu.org> * libgfortran.h (xmallocarray): New prototype. * runtime/memory.c (xmallocarray): New function. (xcalloc): Check for nonzero separately instead of multiplying. * generated/*.c: Regenerated. * intrinsics/cshift0.c (cshift0): Call xmallocarray instead of xmalloc. * intrinsics/eoshift0.c (eoshift0): Likewise. * intrinsics/eoshift2.c (eoshift2): Likewise. * intrinsics/pack_generic.c (pack_internal): Likewise. (pack_s_internal): Likewise. * intrinsics/reshape_generic.c (reshape_internal): Likewise. * intrinsics/spread_generic.c (spread_internal): Likewise. (spread_internal_scalar): Likewise. * intrinsics/string_intrinsics_inc.c (string_trim): Likewise. (string_minmax): Likewise. * intrinsics/transpose_generic.c (transpose_internal): Likewise. * intrinsics/unpack_generic.c (unpack_internal): Likewise. * io/list_read.c (nml_touch_nodes): Don't cast xmalloc return value. * io/transfer.c (st_set_nml_var): Call xmallocarray instead of xmalloc. * io/unit.c (get_internal_unit): Likewise. (filename_from_unit): Don't cast xmalloc return value. * io/write.c (nml_write_obj): Likewise, formatting. * m4/bessel.m4 (bessel_jn_r'rtype_kind`): Call xmallocarray instead of xmalloc. (besse_yn_r'rtype_kind`): Likewise. * m4/cshift1.m4 (cshift1): Likewise. * m4/eoshift1.m4 (eoshift1): Likewise. * m4/eoshift3.m4 (eoshift3): Likewise. * m4/iforeach.m4: Likewise. * m4/ifunction.m4: Likewise. * m4/ifunction_logical.m4 (name`'rtype_qual`_'atype_code): Likewise. * m4/in_pack.m4 (internal_pack_'rtype_ccode`): Likewise. * m4/matmul.m4 (matmul_'rtype_code`): Likewise. * m4/matmull.m4 (matmul_'rtype_code`): Likewise. * m4/pack.m4 (pack_'rtype_code`): Likewise. * m4/reshape.m4 (reshape_'rtype_ccode`): Likewise. * m4/shape.m4 (shape_'rtype_kind`): Likewise. * m4/spread.m4 (spread_'rtype_code`): Likewise. (spread_scalar_'rtype_code`): Likewise. * m4/transpose.m4 (transpose_'rtype_code`): Likewise. * m4/unpack.m4 (unpack0_'rtype_code`): Likewise. (unpack1_'rtype_code`): Likewise. * runtime/convert_char.c (convert_char1_to_char4): Likewise. (convert_char4_to_char1): Simplify. * runtime/environ.c (init_unformatted): Call xmallocarray instead of xmalloc. * runtime/in_pack_generic.c (internal_pack): Likewise. From-SVN: r211721
275 lines
7.3 KiB
Plaintext
275 lines
7.3 KiB
Plaintext
`/* Implementation of the CSHIFT intrinsic
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Copyright (C) 2003-2014 Free Software Foundation, Inc.
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Contributed by Feng Wang <wf_cs@yahoo.com>
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This file is part of the GNU Fortran runtime library (libgfortran).
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Libgfortran is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public
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License as published by the Free Software Foundation; either
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version 3 of the License, or (at your option) any later version.
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Ligbfortran is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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Under Section 7 of GPL version 3, you are granted additional
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permissions described in the GCC Runtime Library Exception, version
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3.1, as published by the Free Software Foundation.
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You should have received a copy of the GNU General Public License and
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a copy of the GCC Runtime Library Exception along with this program;
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see the files COPYING3 and COPYING.RUNTIME respectively. If not, see
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<http://www.gnu.org/licenses/>. */
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#include "libgfortran.h"
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#include <stdlib.h>
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#include <assert.h>
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#include <string.h>'
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include(iparm.m4)dnl
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`#if defined (HAVE_'atype_name`)
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static void
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cshift1 (gfc_array_char * const restrict ret,
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const gfc_array_char * const restrict array,
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const 'atype` * const restrict h,
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const 'atype_name` * const restrict pwhich)
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{
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/* r.* indicates the return array. */
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index_type rstride[GFC_MAX_DIMENSIONS];
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index_type rstride0;
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index_type roffset;
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char *rptr;
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char *dest;
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/* s.* indicates the source array. */
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index_type sstride[GFC_MAX_DIMENSIONS];
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index_type sstride0;
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index_type soffset;
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const char *sptr;
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const char *src;
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/* h.* indicates the shift array. */
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index_type hstride[GFC_MAX_DIMENSIONS];
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index_type hstride0;
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const 'atype_name` *hptr;
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index_type count[GFC_MAX_DIMENSIONS];
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index_type extent[GFC_MAX_DIMENSIONS];
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index_type dim;
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index_type len;
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index_type n;
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int which;
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'atype_name` sh;
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index_type arraysize;
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index_type size;
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if (pwhich)
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which = *pwhich - 1;
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else
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which = 0;
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if (which < 0 || (which + 1) > GFC_DESCRIPTOR_RANK (array))
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runtime_error ("Argument ''`DIM''` is out of range in call to ''`CSHIFT''`");
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size = GFC_DESCRIPTOR_SIZE(array);
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arraysize = size0 ((array_t *)array);
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if (ret->base_addr == NULL)
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{
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int i;
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ret->base_addr = xmallocarray (arraysize, size);
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ret->offset = 0;
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ret->dtype = array->dtype;
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for (i = 0; i < GFC_DESCRIPTOR_RANK (array); i++)
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{
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index_type ub, str;
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ub = GFC_DESCRIPTOR_EXTENT(array,i) - 1;
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if (i == 0)
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str = 1;
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else
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str = GFC_DESCRIPTOR_EXTENT(ret,i-1) *
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GFC_DESCRIPTOR_STRIDE(ret,i-1);
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GFC_DIMENSION_SET(ret->dim[i], 0, ub, str);
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}
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}
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else if (unlikely (compile_options.bounds_check))
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{
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bounds_equal_extents ((array_t *) ret, (array_t *) array,
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"return value", "CSHIFT");
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}
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if (unlikely (compile_options.bounds_check))
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{
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bounds_reduced_extents ((array_t *) h, (array_t *) array, which,
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"SHIFT argument", "CSHIFT");
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}
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if (arraysize == 0)
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return;
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extent[0] = 1;
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count[0] = 0;
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n = 0;
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/* Initialized for avoiding compiler warnings. */
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roffset = size;
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soffset = size;
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len = 0;
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for (dim = 0; dim < GFC_DESCRIPTOR_RANK (array); dim++)
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{
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if (dim == which)
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{
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roffset = GFC_DESCRIPTOR_STRIDE_BYTES(ret,dim);
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if (roffset == 0)
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roffset = size;
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soffset = GFC_DESCRIPTOR_STRIDE_BYTES(array,dim);
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if (soffset == 0)
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soffset = size;
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len = GFC_DESCRIPTOR_EXTENT(array,dim);
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}
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else
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{
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count[n] = 0;
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extent[n] = GFC_DESCRIPTOR_EXTENT(array,dim);
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rstride[n] = GFC_DESCRIPTOR_STRIDE_BYTES(ret,dim);
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sstride[n] = GFC_DESCRIPTOR_STRIDE_BYTES(array,dim);
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hstride[n] = GFC_DESCRIPTOR_STRIDE(h,n);
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n++;
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}
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}
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if (sstride[0] == 0)
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sstride[0] = size;
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if (rstride[0] == 0)
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rstride[0] = size;
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if (hstride[0] == 0)
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hstride[0] = 1;
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dim = GFC_DESCRIPTOR_RANK (array);
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rstride0 = rstride[0];
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sstride0 = sstride[0];
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hstride0 = hstride[0];
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rptr = ret->base_addr;
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sptr = array->base_addr;
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hptr = h->base_addr;
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while (rptr)
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{
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/* Do the shift for this dimension. */
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sh = *hptr;
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sh = (div (sh, len)).rem;
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if (sh < 0)
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sh += len;
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src = &sptr[sh * soffset];
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dest = rptr;
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for (n = 0; n < len; n++)
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{
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memcpy (dest, src, size);
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dest += roffset;
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if (n == len - sh - 1)
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src = sptr;
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else
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src += soffset;
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}
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/* Advance to the next section. */
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rptr += rstride0;
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sptr += sstride0;
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hptr += hstride0;
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count[0]++;
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n = 0;
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while (count[n] == extent[n])
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{
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/* When we get to the end of a dimension, reset it and increment
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the next dimension. */
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count[n] = 0;
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/* We could precalculate these products, but this is a less
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frequently used path so probably not worth it. */
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rptr -= rstride[n] * extent[n];
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sptr -= sstride[n] * extent[n];
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hptr -= hstride[n] * extent[n];
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n++;
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if (n >= dim - 1)
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{
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/* Break out of the loop. */
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rptr = NULL;
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break;
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}
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else
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{
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count[n]++;
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rptr += rstride[n];
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sptr += sstride[n];
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hptr += hstride[n];
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}
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}
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}
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}
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void cshift1_'atype_kind` (gfc_array_char * const restrict,
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const gfc_array_char * const restrict,
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const 'atype` * const restrict,
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const 'atype_name` * const restrict);
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export_proto(cshift1_'atype_kind`);
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void
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cshift1_'atype_kind` (gfc_array_char * const restrict ret,
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const gfc_array_char * const restrict array,
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const 'atype` * const restrict h,
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const 'atype_name` * const restrict pwhich)
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{
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cshift1 (ret, array, h, pwhich);
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}
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void cshift1_'atype_kind`_char (gfc_array_char * const restrict ret,
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GFC_INTEGER_4,
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const gfc_array_char * const restrict array,
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const 'atype` * const restrict h,
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const 'atype_name` * const restrict pwhich,
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GFC_INTEGER_4);
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export_proto(cshift1_'atype_kind`_char);
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void
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cshift1_'atype_kind`_char (gfc_array_char * const restrict ret,
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GFC_INTEGER_4 ret_length __attribute__((unused)),
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const gfc_array_char * const restrict array,
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const 'atype` * const restrict h,
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const 'atype_name` * const restrict pwhich,
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GFC_INTEGER_4 array_length __attribute__((unused)))
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{
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cshift1 (ret, array, h, pwhich);
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}
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void cshift1_'atype_kind`_char4 (gfc_array_char * const restrict ret,
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GFC_INTEGER_4,
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const gfc_array_char * const restrict array,
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const 'atype` * const restrict h,
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const 'atype_name` * const restrict pwhich,
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GFC_INTEGER_4);
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export_proto(cshift1_'atype_kind`_char4);
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void
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cshift1_'atype_kind`_char4 (gfc_array_char * const restrict ret,
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GFC_INTEGER_4 ret_length __attribute__((unused)),
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const gfc_array_char * const restrict array,
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const 'atype` * const restrict h,
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const 'atype_name` * const restrict pwhich,
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GFC_INTEGER_4 array_length __attribute__((unused)))
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{
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cshift1 (ret, array, h, pwhich);
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}
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#endif'
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