| 1 | 
         733 | 
         jeremybenn | 
         /* Specific implementation of the PACK intrinsic
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         | 2 | 
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            Copyright (C) 2002, 2004, 2005, 2006, 2007, 2008, 2009 Free Software Foundation, Inc.
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         | 3 | 
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            Contributed by Paul Brook <paul@nowt.org>
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         | 4 | 
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         | 5 | 
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         This file is part of the GNU Fortran 95 runtime library (libgfortran).
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         | 6 | 
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         | 7 | 
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         Libgfortran is free software; you can redistribute it and/or
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         | 8 | 
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         modify it under the terms of the GNU General Public
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         | 9 | 
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         License as published by the Free Software Foundation; either
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         | 10 | 
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         version 3 of the License, or (at your option) any later version.
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         | 11 | 
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         | 12 | 
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         Ligbfortran is distributed in the hope that it will be useful,
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         | 13 | 
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         but WITHOUT ANY WARRANTY; without even the implied warranty of
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         | 14 | 
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         MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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         | 15 | 
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         GNU General Public License for more details.
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         | 16 | 
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         | 17 | 
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         Under Section 7 of GPL version 3, you are granted additional
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         | 18 | 
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         permissions described in the GCC Runtime Library Exception, version
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         | 19 | 
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         3.1, as published by the Free Software Foundation.
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         | 20 | 
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         | 21 | 
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         You should have received a copy of the GNU General Public License and
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         | 22 | 
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         a copy of the GCC Runtime Library Exception along with this program;
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         | 23 | 
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         see the files COPYING3 and COPYING.RUNTIME respectively.  If not, see
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         | 24 | 
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         <http://www.gnu.org/licenses/>.  */
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         | 25 | 
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         | 26 | 
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         #include "libgfortran.h"
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         | 27 | 
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         #include <stdlib.h>
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         | 28 | 
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         #include <assert.h>
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         | 29 | 
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         #include <string.h>
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         | 30 | 
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         | 31 | 
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         | 32 | 
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         #if defined (HAVE_GFC_REAL_8)
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         | 33 | 
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         | 34 | 
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         /* PACK is specified as follows:
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         | 35 | 
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         | 36 | 
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            13.14.80 PACK (ARRAY, MASK, [VECTOR])
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         | 37 | 
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         | 38 | 
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            Description: Pack an array into an array of rank one under the
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         | 39 | 
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            control of a mask.
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         | 40 | 
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         | 41 | 
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            Class: Transformational function.
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         | 42 | 
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         | 43 | 
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            Arguments:
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         | 44 | 
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               ARRAY   may be of any type. It shall not be scalar.
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         | 45 | 
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               MASK    shall be of type LOGICAL. It shall be conformable with ARRAY.
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         | 46 | 
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               VECTOR  (optional) shall be of the same type and type parameters
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         | 47 | 
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                       as ARRAY. VECTOR shall have at least as many elements as
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         | 48 | 
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                       there are true elements in MASK. If MASK is a scalar
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         | 49 | 
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                       with the value true, VECTOR shall have at least as many
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         | 50 | 
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                       elements as there are in ARRAY.
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         | 51 | 
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         | 52 | 
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            Result Characteristics: The result is an array of rank one with the
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         | 53 | 
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            same type and type parameters as ARRAY. If VECTOR is present, the
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         | 54 | 
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            result size is that of VECTOR; otherwise, the result size is the
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         | 55 | 
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            number /t/ of true elements in MASK unless MASK is scalar with the
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         | 56 | 
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            value true, in which case the result size is the size of ARRAY.
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         | 57 | 
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         | 58 | 
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            Result Value: Element /i/ of the result is the element of ARRAY
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         | 59 | 
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            that corresponds to the /i/th true element of MASK, taking elements
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         | 60 | 
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            in array element order, for /i/ = 1, 2, ..., /t/. If VECTOR is
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         | 61 | 
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            present and has size /n/ > /t/, element /i/ of the result has the
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         | 62 | 
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            value VECTOR(/i/), for /i/ = /t/ + 1, ..., /n/.
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         | 63 | 
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         | 64 | 
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            Examples: The nonzero elements of an array M with the value
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         | 65 | 
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            | 0 0 0 |
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         | 66 | 
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            | 9 0 0 | may be "gathered" by the function PACK. The result of
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         | 67 | 
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            | 0 0 7 |
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         | 68 | 
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            PACK (M, MASK = M.NE.0) is [9,7] and the result of PACK (M, M.NE.0,
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         | 69 | 
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            VECTOR = (/ 2,4,6,8,10,12 /)) is [9,7,6,8,10,12].
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         | 70 | 
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         | 71 | 
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         There are two variants of the PACK intrinsic: one, where MASK is
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         | 72 | 
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         array valued, and the other one where MASK is scalar.  */
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         | 73 | 
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         | 74 | 
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         void
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         | 75 | 
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         pack_r8 (gfc_array_r8 *ret, const gfc_array_r8 *array,
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         | 76 | 
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                        const gfc_array_l1 *mask, const gfc_array_r8 *vector)
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         | 77 | 
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         {
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           /* r.* indicates the return array.  */
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         | 79 | 
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           index_type rstride0;
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         | 80 | 
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           GFC_REAL_8 * restrict rptr;
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         | 81 | 
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           /* s.* indicates the source array.  */
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         | 82 | 
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           index_type sstride[GFC_MAX_DIMENSIONS];
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         | 83 | 
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           index_type sstride0;
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         | 84 | 
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           const GFC_REAL_8 *sptr;
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         | 85 | 
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           /* m.* indicates the mask array.  */
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         | 86 | 
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           index_type mstride[GFC_MAX_DIMENSIONS];
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         | 87 | 
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           index_type mstride0;
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         | 88 | 
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           const GFC_LOGICAL_1 *mptr;
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         | 89 | 
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         | 90 | 
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           index_type count[GFC_MAX_DIMENSIONS];
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         | 91 | 
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           index_type extent[GFC_MAX_DIMENSIONS];
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         | 92 | 
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           int zero_sized;
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         | 93 | 
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           index_type n;
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         | 94 | 
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           index_type dim;
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         | 95 | 
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           index_type nelem;
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         | 96 | 
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           index_type total;
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         | 97 | 
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           int mask_kind;
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         | 98 | 
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         | 99 | 
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           dim = GFC_DESCRIPTOR_RANK (array);
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         | 100 | 
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         | 101 | 
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           mptr = mask->data;
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         | 102 | 
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         | 103 | 
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           /* Use the same loop for all logical types, by using GFC_LOGICAL_1
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         | 104 | 
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              and using shifting to address size and endian issues.  */
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         | 105 | 
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         | 106 | 
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           mask_kind = GFC_DESCRIPTOR_SIZE (mask);
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         | 107 | 
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         | 108 | 
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           if (mask_kind == 1 || mask_kind == 2 || mask_kind == 4 || mask_kind == 8
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         | 109 | 
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         #ifdef HAVE_GFC_LOGICAL_16
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         | 110 | 
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               || mask_kind == 16
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         | 111 | 
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         #endif
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         | 112 | 
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               )
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         | 113 | 
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             {
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         | 114 | 
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               /*  Do not convert a NULL pointer as we use test for NULL below.  */
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         | 115 | 
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               if (mptr)
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         | 116 | 
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                 mptr = GFOR_POINTER_TO_L1 (mptr, mask_kind);
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         | 117 | 
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             }
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         | 118 | 
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           else
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         | 119 | 
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             runtime_error ("Funny sized logical array");
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         | 120 | 
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         | 121 | 
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           zero_sized = 0;
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         | 122 | 
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           for (n = 0; n < dim; n++)
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         | 123 | 
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             {
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         | 124 | 
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               count[n] = 0;
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         | 125 | 
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               extent[n] = GFC_DESCRIPTOR_EXTENT(array,n);
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         | 126 | 
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               if (extent[n] <= 0)
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         | 127 | 
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                zero_sized = 1;
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         | 128 | 
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               sstride[n] = GFC_DESCRIPTOR_STRIDE(array,n);
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         | 129 | 
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               mstride[n] = GFC_DESCRIPTOR_STRIDE_BYTES(mask,n);
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         | 130 | 
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             }
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         | 131 | 
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           if (sstride[0] == 0)
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         | 132 | 
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             sstride[0] = 1;
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         | 133 | 
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           if (mstride[0] == 0)
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         | 134 | 
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             mstride[0] = mask_kind;
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         | 135 | 
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         | 136 | 
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           if (zero_sized)
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         | 137 | 
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             sptr = NULL;
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         | 138 | 
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           else
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         | 139 | 
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             sptr = array->data;
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         | 140 | 
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         | 141 | 
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           if (ret->data == NULL || unlikely (compile_options.bounds_check))
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         | 142 | 
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             {
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         | 143 | 
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               /* Count the elements, either for allocating memory or
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         | 144 | 
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                  for bounds checking.  */
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         | 145 | 
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         | 146 | 
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               if (vector != NULL)
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         | 147 | 
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                 {
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         | 148 | 
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                   /* The return array will have as many
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         | 149 | 
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                      elements as there are in VECTOR.  */
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         | 150 | 
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                   total = GFC_DESCRIPTOR_EXTENT(vector,0);
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         | 151 | 
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                   if (total < 0)
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         | 152 | 
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                     {
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         | 153 | 
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                       total = 0;
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         | 154 | 
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                       vector = NULL;
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         | 155 | 
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                     }
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         | 156 | 
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                 }
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         | 157 | 
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               else
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         | 158 | 
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                 {
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         | 159 | 
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                   /* We have to count the true elements in MASK.  */
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         | 160 | 
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                   total = count_0 (mask);
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         | 161 | 
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                 }
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         | 162 | 
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         | 163 | 
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               if (ret->data == NULL)
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         | 164 | 
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                 {
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         | 165 | 
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                   /* Setup the array descriptor.  */
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         | 166 | 
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                   GFC_DIMENSION_SET(ret->dim[0], 0, total-1, 1);
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         | 167 | 
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         | 168 | 
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                   ret->offset = 0;
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         | 169 | 
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         | 170 | 
          | 
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                   /* internal_malloc_size allocates a single byte for zero size.  */
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         | 171 | 
          | 
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                   ret->data = internal_malloc_size (sizeof (GFC_REAL_8) * total);
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         | 172 | 
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  | 
      
      
         | 173 | 
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                   if (total == 0)
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         | 174 | 
          | 
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                     return;
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         | 175 | 
          | 
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                 }
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         | 176 | 
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               else
  | 
      
      
         | 177 | 
          | 
          | 
                 {
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         | 178 | 
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                   /* We come here because of range checking.  */
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         | 179 | 
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                   index_type ret_extent;
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         | 180 | 
          | 
          | 
          
  | 
      
      
         | 181 | 
          | 
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                   ret_extent = GFC_DESCRIPTOR_EXTENT(ret,0);
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         | 182 | 
          | 
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                   if (total != ret_extent)
  | 
      
      
         | 183 | 
          | 
          | 
                     runtime_error ("Incorrect extent in return value of PACK intrinsic;"
  | 
      
      
         | 184 | 
          | 
          | 
                                    " is %ld, should be %ld", (long int) total,
  | 
      
      
         | 185 | 
          | 
          | 
                                    (long int) ret_extent);
  | 
      
      
         | 186 | 
          | 
          | 
                 }
  | 
      
      
         | 187 | 
          | 
          | 
             }
  | 
      
      
         | 188 | 
          | 
          | 
          
  | 
      
      
         | 189 | 
          | 
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           rstride0 = GFC_DESCRIPTOR_STRIDE(ret,0);
  | 
      
      
         | 190 | 
          | 
          | 
           if (rstride0 == 0)
  | 
      
      
         | 191 | 
          | 
          | 
             rstride0 = 1;
  | 
      
      
         | 192 | 
          | 
          | 
           sstride0 = sstride[0];
  | 
      
      
         | 193 | 
          | 
          | 
           mstride0 = mstride[0];
  | 
      
      
         | 194 | 
          | 
          | 
           rptr = ret->data;
  | 
      
      
         | 195 | 
          | 
          | 
          
  | 
      
      
         | 196 | 
          | 
          | 
           while (sptr && mptr)
  | 
      
      
         | 197 | 
          | 
          | 
             {
  | 
      
      
         | 198 | 
          | 
          | 
               /* Test this element.  */
  | 
      
      
         | 199 | 
          | 
          | 
               if (*mptr)
  | 
      
      
         | 200 | 
          | 
          | 
                 {
  | 
      
      
         | 201 | 
          | 
          | 
                   /* Add it.  */
  | 
      
      
         | 202 | 
          | 
          | 
                   *rptr = *sptr;
  | 
      
      
         | 203 | 
          | 
          | 
                   rptr += rstride0;
  | 
      
      
         | 204 | 
          | 
          | 
                 }
  | 
      
      
         | 205 | 
          | 
          | 
               /* Advance to the next element.  */
  | 
      
      
         | 206 | 
          | 
          | 
               sptr += sstride0;
  | 
      
      
         | 207 | 
          | 
          | 
               mptr += mstride0;
  | 
      
      
         | 208 | 
          | 
          | 
               count[0]++;
  | 
      
      
         | 209 | 
          | 
          | 
               n = 0;
  | 
      
      
         | 210 | 
          | 
          | 
               while (count[n] == extent[n])
  | 
      
      
         | 211 | 
          | 
          | 
                 {
  | 
      
      
         | 212 | 
          | 
          | 
                   /* When we get to the end of a dimension, reset it and increment
  | 
      
      
         | 213 | 
          | 
          | 
                      the next dimension.  */
  | 
      
      
         | 214 | 
          | 
          | 
                   count[n] = 0;
  | 
      
      
         | 215 | 
          | 
          | 
                   /* We could precalculate these products, but this is a less
  | 
      
      
         | 216 | 
          | 
          | 
                      frequently used path so probably not worth it.  */
  | 
      
      
         | 217 | 
          | 
          | 
                   sptr -= sstride[n] * extent[n];
  | 
      
      
         | 218 | 
          | 
          | 
                   mptr -= mstride[n] * extent[n];
  | 
      
      
         | 219 | 
          | 
          | 
                   n++;
  | 
      
      
         | 220 | 
          | 
          | 
                   if (n >= dim)
  | 
      
      
         | 221 | 
          | 
          | 
                     {
  | 
      
      
         | 222 | 
          | 
          | 
                       /* Break out of the loop.  */
  | 
      
      
         | 223 | 
          | 
          | 
                       sptr = NULL;
  | 
      
      
         | 224 | 
          | 
          | 
                       break;
  | 
      
      
         | 225 | 
          | 
          | 
                     }
  | 
      
      
         | 226 | 
          | 
          | 
                   else
  | 
      
      
         | 227 | 
          | 
          | 
                     {
  | 
      
      
         | 228 | 
          | 
          | 
                       count[n]++;
  | 
      
      
         | 229 | 
          | 
          | 
                       sptr += sstride[n];
  | 
      
      
         | 230 | 
          | 
          | 
                       mptr += mstride[n];
  | 
      
      
         | 231 | 
          | 
          | 
                     }
  | 
      
      
         | 232 | 
          | 
          | 
                 }
  | 
      
      
         | 233 | 
          | 
          | 
             }
  | 
      
      
         | 234 | 
          | 
          | 
          
  | 
      
      
         | 235 | 
          | 
          | 
           /* Add any remaining elements from VECTOR.  */
  | 
      
      
         | 236 | 
          | 
          | 
           if (vector)
  | 
      
      
         | 237 | 
          | 
          | 
             {
  | 
      
      
         | 238 | 
          | 
          | 
               n = GFC_DESCRIPTOR_EXTENT(vector,0);
  | 
      
      
         | 239 | 
          | 
          | 
               nelem = ((rptr - ret->data) / rstride0);
  | 
      
      
         | 240 | 
          | 
          | 
               if (n > nelem)
  | 
      
      
         | 241 | 
          | 
          | 
                 {
  | 
      
      
         | 242 | 
          | 
          | 
                   sstride0 = GFC_DESCRIPTOR_STRIDE(vector,0);
  | 
      
      
         | 243 | 
          | 
          | 
                   if (sstride0 == 0)
  | 
      
      
         | 244 | 
          | 
          | 
                     sstride0 = 1;
  | 
      
      
         | 245 | 
          | 
          | 
          
  | 
      
      
         | 246 | 
          | 
          | 
                   sptr = vector->data + sstride0 * nelem;
  | 
      
      
         | 247 | 
          | 
          | 
                   n -= nelem;
  | 
      
      
         | 248 | 
          | 
          | 
                   while (n--)
  | 
      
      
         | 249 | 
          | 
          | 
                     {
  | 
      
      
         | 250 | 
          | 
          | 
                       *rptr = *sptr;
  | 
      
      
         | 251 | 
          | 
          | 
                       rptr += rstride0;
  | 
      
      
         | 252 | 
          | 
          | 
                       sptr += sstride0;
  | 
      
      
         | 253 | 
          | 
          | 
                     }
  | 
      
      
         | 254 | 
          | 
          | 
                 }
  | 
      
      
         | 255 | 
          | 
          | 
             }
  | 
      
      
         | 256 | 
          | 
          | 
         }
  | 
      
      
         | 257 | 
          | 
          | 
          
  | 
      
      
         | 258 | 
          | 
          | 
         #endif
  | 
      
      
         | 259 | 
          | 
          | 
          
  |