513 lines
13 KiB
C
513 lines
13 KiB
C
/* $Id$
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Part of SWI-Prolog
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Author: Jan Wielemaker
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E-mail: J.Wielemaker@uva.nl
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WWW: http://www.swi-prolog.org
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Copyright (C): 1985-2009, University of Amsterdam
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This library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Lesser General Public
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License as published by the Free Software Foundation; either
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version 2.1 of the License, or (at your option) any later version.
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This library 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 GNU
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Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public
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License along with this library; if not, write to the Free Software
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Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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*/
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#include <SWI-Stream.h>
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#include <SWI-Prolog.h>
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#include <string.h>
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#include <stdlib.h>
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#include <assert.h>
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#include <errno.h>
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#include "error.h"
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#define streq(s,q) (strcmp((s), (q)) == 0)
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/* - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
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Memory-files
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make_memory_file(-Handle)
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free_memory_file(+Handle)
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open_memory_file(+Handle, +Mode, -Stream)
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size_memory_file(+Handle, -Size)
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memory_file_to_codes(+Handle, -Codes)
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memory_file_to_atom(+Handle, -Atom)
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atom_to_memory_file(+Atom, -Handle)
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- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */
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static functor_t FUNCTOR_memory_file1;
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static atom_t ATOM_encoding;
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static atom_t ATOM_unknown;
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static atom_t ATOM_octet;
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static atom_t ATOM_ascii;
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static atom_t ATOM_iso_latin_1;
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static atom_t ATOM_text;
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static atom_t ATOM_utf8;
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static atom_t ATOM_unicode_be;
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static atom_t ATOM_unicode_le;
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static atom_t ATOM_wchar_t;
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static atom_t ATOM_read;
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static atom_t ATOM_write;
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static atom_t ATOM_free_on_close;
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#define MEMFILE_MAGIC 0x5624a6b3L
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#define NOSIZE ((size_t)-1)
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typedef struct
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{ long magic; /* MEMFILE_MAGIC */
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IOENC encoding; /* encoding of the data */
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int free_on_close; /* free if it is closed */
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char *data; /* data of the file */
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size_t data_size; /* byte-size of data */
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size_t size; /* size in characters */
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IOSTREAM *stream; /* Stream hanging onto it */
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atom_t atom; /* Created from atom */
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} memfile;
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static int
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unify_memfile(term_t handle, memfile *f)
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{ return PL_unify_term(handle,
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PL_FUNCTOR, FUNCTOR_memory_file1,
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PL_POINTER, f);
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}
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static int
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get_memfile(term_t handle, memfile **f)
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{ if ( PL_is_functor(handle, FUNCTOR_memory_file1) )
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{ term_t a = PL_new_term_ref();
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void *ptr;
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_PL_get_arg(1, handle, a);
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if ( PL_get_pointer(a, &ptr) )
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{ memfile *m = ptr;
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if ( m->magic == MEMFILE_MAGIC )
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{ *f = ptr;
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return TRUE;
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}
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return pl_error(NULL, 0, NULL, ERR_EXISTENCE,
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"memory_file", handle);
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}
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}
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return pl_error(NULL, 0, NULL, ERR_ARGTYPE, 1,
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handle, "memory_file");
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}
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static foreign_t
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new_memory_file(term_t handle)
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{ memfile *m = calloc(1, sizeof(*m));
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if ( !m )
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return pl_error(NULL, 0, NULL, ERR_ERRNO, errno,
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"create", "memory_file", handle);
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m->magic = MEMFILE_MAGIC;
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m->encoding = ENC_UTF8;
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m->data = 0;
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m->size = 0;
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if ( unify_memfile(handle, m) )
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return TRUE;
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m->magic = 0;
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free(m);
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return FALSE;
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}
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static int
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destroy_memory_file(memfile *m)
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{ if ( m->stream )
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Sclose(m->stream);
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if ( m->atom )
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PL_unregister_atom(m->atom);
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else if ( m->data )
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Sfree(m->data); /* MS-Windows: malloc by other DLL! */
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m->magic = 0;
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free(m);
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return TRUE;
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}
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static foreign_t
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free_memory_file(term_t handle)
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{ memfile *m;
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if ( get_memfile(handle, &m) )
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return destroy_memory_file(m);
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return FALSE;
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}
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static void
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closehook(void *closure)
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{ memfile *m = closure;
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m->stream = NULL;
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if ( m->free_on_close )
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destroy_memory_file(m);
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}
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static foreign_t
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alreadyOpen(term_t handle, const char *op)
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{ return pl_error(NULL, 0, "already open",
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ERR_PERMISSION, handle, op, "memory_file");
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}
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static struct encname
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{ IOENC code;
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atom_t *name;
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} encoding_names[] =
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{ { ENC_UNKNOWN, &ATOM_unknown },
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{ ENC_OCTET, &ATOM_octet },
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{ ENC_ASCII, &ATOM_ascii },
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{ ENC_ISO_LATIN_1, &ATOM_iso_latin_1 },
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{ ENC_ANSI, &ATOM_text },
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{ ENC_UTF8, &ATOM_utf8 },
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{ ENC_UNICODE_BE, &ATOM_unicode_be },
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{ ENC_UNICODE_LE, &ATOM_unicode_le },
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{ ENC_WCHAR, &ATOM_wchar_t },
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{ ENC_UNKNOWN, NULL },
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};
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IOENC
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atom_to_encoding(atom_t a)
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{ struct encname *en;
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for(en=encoding_names; en->name; en++)
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{ if ( *en->name == a )
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return en->code;
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}
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return ENC_UNKNOWN;
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}
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static int
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get_encoding(term_t t, IOENC *enc)
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{ atom_t en;
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if ( PL_get_atom(t, &en) )
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{ IOENC encoding;
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if ( (encoding = atom_to_encoding(en)) == ENC_UNKNOWN )
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return pl_error(NULL, 0, NULL, ERR_DOMAIN, t, "encoding");
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*enc = encoding;
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return TRUE;
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}
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return pl_error(NULL, 0, NULL, ERR_TYPE, t, "encoding");
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}
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static foreign_t
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open_memory_file4(term_t handle, term_t mode, term_t stream, term_t options)
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{ memfile *m;
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char *x;
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atom_t iom;
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IOSTREAM *fd;
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IOENC encoding;
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int free_on_close = FALSE;
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if ( !get_memfile(handle, &m) )
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return FALSE;
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if ( m->stream )
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return alreadyOpen(handle, "open");
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if ( !PL_get_atom(mode, &iom) )
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return pl_error("open_memory_file", 3, NULL, ERR_ARGTYPE, 2,
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mode, "io_mode");
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encoding = m->encoding;
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if ( options )
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{ term_t tail = PL_copy_term_ref(options);
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term_t head = PL_new_term_ref();
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while(PL_get_list(tail, head, tail))
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{ int arity;
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atom_t name;
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if ( PL_get_name_arity(head, &name, &arity) && arity == 1 )
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{ term_t arg = PL_new_term_ref();
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_PL_get_arg(1, head, arg);
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if ( name == ATOM_encoding )
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{ if ( !get_encoding(arg, &encoding) )
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return FALSE;
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} else if ( name == ATOM_free_on_close )
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{ if ( !PL_get_bool(arg, &free_on_close) )
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return pl_error("open_memory_file", 4, NULL, ERR_TYPE,
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arg, "boolean");
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}
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} else
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return pl_error("open_memory_file", 4, NULL, ERR_TYPE, head, "option");
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}
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if ( !PL_get_nil(tail) )
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return pl_error("open_memory_file", 4, NULL, ERR_TYPE, tail, "list");
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}
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if ( iom == ATOM_write )
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{ x = "w";
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if ( m->atom )
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return pl_error("open_memory_file", 3, NULL, ERR_PERMISSION,
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handle, "write", "memory_file");
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if ( m->data )
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{ Sfree(m->data);
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m->data = NULL;
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}
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m->data_size = 0;
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m->size = NOSIZE; /* don't know */
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m->encoding = encoding;
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} else if ( iom == ATOM_read )
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{ x = "r";
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m->free_on_close = free_on_close;
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} else
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{ return pl_error("open_memory_file", 3, NULL, ERR_DOMAIN,
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mode, "io_mode");
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}
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if ( !(fd = Sopenmem(&m->data, &m->data_size, x)) )
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return pl_error("open_memory_file", 3, NULL, ERR_ERRNO, errno,
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"create", "memory_file", handle);
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fd->close_hook = closehook;
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fd->closure = m;
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fd->encoding = encoding;
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m->stream = fd;
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return PL_unify_stream(stream, fd);
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}
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static foreign_t
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open_memory_file(term_t handle, term_t mode, term_t stream)
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{ return open_memory_file4(handle, mode, stream, 0);
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}
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static foreign_t
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size_memory_file(term_t handle, term_t size)
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{ memfile *m;
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if ( get_memfile(handle, &m) )
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{ if ( m->stream && !m->atom )
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return alreadyOpen(handle, "size");
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if ( m->data )
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{ if ( m->size == NOSIZE )
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{ switch( m->encoding )
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{ case ENC_ISO_LATIN_1:
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case ENC_OCTET:
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m->size = m->data_size;
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break;
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case ENC_WCHAR:
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m->size = m->data_size / sizeof(wchar_t);
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break;
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case ENC_UTF8:
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m->size = PL_utf8_strlen(m->data, m->data_size);
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break;
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default:
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assert(0);
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return FALSE;
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}
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}
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return PL_unify_integer(size, m->size);
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} else
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return PL_unify_integer(size, 0);
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}
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return FALSE;
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}
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/* - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
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utf8_position_memory_file(+MF, -Here, -Size)
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Given MF is a UTF-8 encoded memory file, unify here with the
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byte-position of the read-pointer and Size with the total size of the
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memory file in bytes. This is a bit hacky predicate, but the information
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is easily available at low cost, while it is very valuable for producing
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answers in content-length computation of the HTTP server. See
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http_wrapper.pl
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- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */
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static foreign_t
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utf8_position(term_t handle, term_t here, term_t size)
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{ memfile *m;
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if ( !get_memfile(handle, &m) )
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return FALSE;
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if ( m->encoding != ENC_UTF8 )
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return pl_error(NULL, 0, "no UTF-8 encoding",
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ERR_PERMISSION, handle, "utf8_position", "memory_file");
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if ( !PL_unify_integer(size, m->data_size) )
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return FALSE;
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if ( m->stream )
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{ IOPOS *op = m->stream->position;
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long p;
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m->stream->position = NULL;
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p = Stell(m->stream);
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m->stream->position = op;
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return PL_unify_integer(here, p);
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} else
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return PL_unify_integer(here, 0);
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}
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static foreign_t
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atom_to_memory_file(term_t atom, term_t handle)
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{ atom_t a;
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if ( PL_get_atom(atom, &a) )
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{ memfile *m = calloc(1, sizeof(*m));
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if ( !m )
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return pl_error(NULL, 0, NULL, ERR_ERRNO, errno, "create", "memory_file", handle);
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m->atom = a;
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PL_register_atom(m->atom);
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m->magic = MEMFILE_MAGIC;
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if ( (m->data = (char *)PL_atom_nchars(a, &m->size)) )
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{ m->encoding = ENC_ISO_LATIN_1;
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m->data_size = m->size;
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} else if ( (m->data = (char *)PL_atom_wchars(a, &m->size)) )
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{ m->encoding = ENC_WCHAR;
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m->data_size = m->size * sizeof(wchar_t);
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} else if ( PL_blob_data(a, &m->size, NULL) )
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{ m->data = PL_blob_data(a, &m->data_size, NULL);
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m->encoding = ENC_OCTET;
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m->size = m->data_size;
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}
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if ( unify_memfile(handle, m) )
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return TRUE;
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else
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{ PL_unregister_atom(m->atom);
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m->magic = 0;
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free(m);
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return FALSE;
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}
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} else
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{ return pl_error(NULL, 0, NULL, ERR_ARGTYPE, 1,
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atom, "atom");
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}
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}
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static foreign_t
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memory_file_to_text(term_t handle, term_t atom, term_t encoding, int flags)
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{ memfile *m;
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if ( get_memfile(handle, &m) )
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{ IOENC enc;
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if ( encoding )
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{ if ( !get_encoding(encoding, &enc) )
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return FALSE;
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} else
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enc = m->encoding;
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if ( m->stream )
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return alreadyOpen(handle, "to_atom");
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if ( m->data )
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{ switch(enc)
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{ case ENC_ISO_LATIN_1:
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case ENC_OCTET:
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return PL_unify_chars(atom, flags, m->data_size, m->data);
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case ENC_WCHAR:
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return PL_unify_wchars(atom, flags, m->data_size/sizeof(wchar_t), (pl_wchar_t*)m->data);
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case ENC_UTF8:
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return PL_unify_chars(atom, flags|REP_UTF8, m->data_size, m->data);
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default:
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assert(0);
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}
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} else
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return PL_unify_chars(atom, flags, 0, "");
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}
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return FALSE;
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}
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static foreign_t
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memory_file_to_atom2(term_t handle, term_t atom)
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{ return memory_file_to_text(handle, atom, 0, PL_ATOM);
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}
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static foreign_t
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memory_file_to_atom3(term_t handle, term_t atom, term_t encoding)
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{ return memory_file_to_text(handle, atom, encoding, PL_ATOM);
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}
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static foreign_t
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memory_file_to_codes2(term_t handle, term_t atom)
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{ return memory_file_to_text(handle, atom, 0, PL_CODE_LIST);
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}
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static foreign_t
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memory_file_to_codes3(term_t handle, term_t atom, term_t encoding)
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{ return memory_file_to_text(handle, atom, encoding, PL_CODE_LIST);
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}
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#define MKATOM(n) ATOM_ ## n = PL_new_atom(#n);
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install_t
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install_memfile()
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{ if ( PL_query(PL_QUERY_VERSION) <= 50505 )
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{ PL_warning("Requires SWI-Prolog version 5.5.6 or later");
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return;
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}
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FUNCTOR_memory_file1 = PL_new_functor(PL_new_atom("$memory_file"), 1);
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MKATOM(encoding);
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MKATOM(unknown);
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MKATOM(octet);
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MKATOM(ascii);
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MKATOM(iso_latin_1);
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MKATOM(text);
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MKATOM(utf8);
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MKATOM(unicode_be);
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MKATOM(unicode_le);
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MKATOM(wchar_t);
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MKATOM(read);
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MKATOM(write);
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MKATOM(free_on_close);
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PL_register_foreign("new_memory_file", 1, new_memory_file, 0);
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PL_register_foreign("free_memory_file", 1, free_memory_file, 0);
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PL_register_foreign("size_memory_file", 2, size_memory_file, 0);
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PL_register_foreign("open_memory_file", 3, open_memory_file, 0);
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PL_register_foreign("open_memory_file", 4, open_memory_file4, 0);
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PL_register_foreign("atom_to_memory_file", 2, atom_to_memory_file, 0);
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PL_register_foreign("memory_file_to_atom", 2, memory_file_to_atom2, 0);
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PL_register_foreign("memory_file_to_codes", 2, memory_file_to_codes2,0);
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PL_register_foreign("memory_file_to_atom", 3, memory_file_to_atom3, 0);
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PL_register_foreign("memory_file_to_codes", 3, memory_file_to_codes3,0);
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PL_register_foreign("utf8_position_memory_file", 3, utf8_position, 0);
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}
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