absyntax/absyntax.cc
author mjsousa
Sat, 25 Oct 2014 11:28:48 +0100
changeset 941 c2ef93412407
parent 936 0f7bcc160568
child 958 7474d2cd1d6e
permissions -rwxr-xr-x
Editing of error message to make it more clear.
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/*
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 *  matiec - a compiler for the programming languages defined in IEC 61131-3
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 *  Copyright (C) 2003-2011  Mario de Sousa (msousa@fe.up.pt)
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 *  Copyright (C) 2007-2011  Laurent Bessard and Edouard Tisserant
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 *
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 *  This program is free software: you can redistribute it and/or modify
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 *  it under the terms of the GNU General Public License as published by
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 *  the Free Software Foundation, either version 3 of the License, or
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 *  (at your option) any later version.
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 *
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 *  This program 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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 *
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 *  You should have received a copy of the GNU General Public License
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 *  along with this program.  If not, see <http://www.gnu.org/licenses/>.
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 *
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 *
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 * This code is made available on the understanding that it will not be
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 * used in safety-critical situations without a full and competent review.
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 */
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/*
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 * An IEC 61131-3 compiler.
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 *
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 * Based on the
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 * FINAL DRAFT - IEC 61131-3, 2nd Ed. (2001-12-10)
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 *
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 */
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/*
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 * Definition of the Abstract Syntax data structure components
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 */
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#include <stdio.h>
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#include <stdlib.h>	/* required for exit() */
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#include <string.h>
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#include "absyntax.hh"
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//#include "../stage1_2/iec.hh" /* required for BOGUS_TOKEN_ID, etc... */
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#include "visitor.hh"
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#include "../main.hh" // required for ERROR() and ERROR_MSG() macros.
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/* The base class of all symbols */
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symbol_c::symbol_c(
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                   int first_line, int first_column, const char *ffile, long int first_order,
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                   int last_line,  int last_column,  const char *lfile, long int last_order ) {
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  this->first_file   = ffile,
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  this->first_line   = first_line;
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  this->first_column = first_column;
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  this->first_order  = first_order;
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  this->last_file    = lfile,
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  this->last_line    = last_line;
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  this->last_column  = last_column;
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  this->last_order   = last_order;
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  this->parent       = NULL;
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  this->datatype     = NULL;
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  this->scope        = NULL;
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  this->const_value._real64.status   = cs_undefined;
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  this->const_value._int64.status    = cs_undefined;
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  this->const_value._uint64.status   = cs_undefined;
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  this->const_value._bool.status     = cs_undefined;
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}
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token_c::token_c(const char *value, 
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                 int fl, int fc, const char *ffile, long int forder,
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                 int ll, int lc, const char *lfile, long int lorder)
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  :symbol_c(fl, fc, ffile, forder, ll, lc, lfile, lorder) {
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  this->value = value;
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//  printf("New token: %s\n", value);
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}
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# define LIST_CAP_INIT 8
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# define LIST_CAP_INCR 8
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list_c::list_c(
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               int fl, int fc, const char *ffile, long int forder,
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               int ll, int lc, const char *lfile, long int lorder)
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  :symbol_c(fl, fc, ffile, forder, ll, lc, lfile, lorder),c(LIST_CAP_INIT) {
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  n = 0;
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  elements = (symbol_c**)malloc(LIST_CAP_INIT*sizeof(symbol_c*));
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  if (NULL == elements) ERROR_MSG("out of memory");
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}
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list_c::list_c(symbol_c *elem, 
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               int fl, int fc, const char *ffile, long int forder,
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               int ll, int lc, const char *lfile, long int lorder)
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  :symbol_c(fl, fc, ffile, forder, ll, lc, lfile, lorder),c(LIST_CAP_INIT) { 
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  n = 0;
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  elements = (symbol_c**)malloc(LIST_CAP_INIT*sizeof(symbol_c*));
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  if (NULL == elements) ERROR_MSG("out of memory");
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  add_element(elem); 
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}
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/* append a new element to the end of the list */
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void list_c::add_element(symbol_c *elem) {
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  // printf("list_c::add_element()\n");
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  if (c <= n)
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    if (!(elements=(symbol_c**)realloc(elements,(c+=LIST_CAP_INCR)*sizeof(symbol_c *))))
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      ERROR_MSG("out of memory");
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  elements[n++] = elem;
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  if (NULL == elem) return;
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  /* Sometimes add_element() is called in stage3 or stage4 to temporarily add an AST symbol to the list.
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   * Since this symbol already belongs in some other place in the aST, it will have the 'parent' pointer set, 
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   * and so we must not overwrite it. We only set the 'parent' pointer on new symbols that have the 'parent'
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   * pointer still set to NULL.
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   */
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  if (NULL == elem->parent) elem->parent = this;  
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  /* adjust the location parameters, taking into account the new element. */
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  if (NULL == first_file) {
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    first_file = elem->first_file;
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    first_line = elem->first_line;
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    first_column = elem->first_column;
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  }
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  if ((first_line == elem->first_line) && (first_column > elem->first_column)) {
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    first_column = elem->first_column;
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  }
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  if (first_line > elem->first_line) {
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    first_line = elem->first_line;
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    first_column = elem->first_column;
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  }
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  if (NULL == last_file) {
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    last_file = elem->last_file;
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    last_line = elem->last_line;
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    last_column = elem->last_column;
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  }
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  if ((last_line == elem->last_line) &&
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      (last_column < elem->last_column)) {
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    last_column = elem->last_column;
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  }
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  if (last_line < elem->last_line) {
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    last_line = elem->last_line;
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    last_column = elem->last_column;
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  }
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}
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/* insert a new element before position pos. */
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/* To insert into the begining of list, call with pos=0  */
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/* To insert into the end of list, call with pos=list->n */
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void list_c::insert_element(symbol_c *elem, int pos) {
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  if((pos<0) || (n<pos)) ERROR;
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  /* add new element to end of list. Basically alocate required memory... */
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  /* will also increment n by 1 ! */
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  add_element(elem);
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  /* if not inserting into end position, shift all elements up one position, to open up a slot in pos for new element */
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  if(pos < (n-1)){ 
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    for(int i=n-2 ; i>=pos ; --i) elements[i+1] = elements[i];
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    elements[pos] = elem;
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  }
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}
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/* remove element at position pos. */
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void list_c::remove_element(int pos) {
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  if((pos<0) || (n<=pos)) ERROR;
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  /* Shift all elements down one position, starting at the entry to delete. */
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  for (int i = pos; i < n-1; i++) elements[i] = elements[i+1];
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  /* corrent the new size */
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  n--;
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  /* elements = (symbol_c **)realloc(elements, n * sizeof(symbol_c *)); */
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}
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#define SYM_LIST(class_name_c, ...)								\
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class_name_c::class_name_c(									\
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                           int fl, int fc, const char *ffile, long int forder,			\
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                           int ll, int lc, const char *lfile, long int lorder)			\
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                        :list_c(fl, fc, ffile, forder, ll, lc, lfile, lorder) {}		\
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class_name_c::class_name_c(symbol_c *elem, 							\
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                           int fl, int fc, const char *ffile, long int forder,			\
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                           int ll, int lc, const char *lfile, long int lorder)			\
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			:list_c(elem, fl, fc, ffile, forder, ll, lc, lfile, lorder) {}		\
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void *class_name_c::accept(visitor_c &visitor) {return visitor.visit(this);}
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#define SYM_TOKEN(class_name_c, ...)								\
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class_name_c::class_name_c(const char *value, 							\
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                           int fl, int fc, const char *ffile, long int forder,			\
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                           int ll, int lc, const char *lfile, long int lorder)			\
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			:token_c(value, fl, fc, ffile, forder, ll, lc, lfile, lorder) {}	\
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void *class_name_c::accept(visitor_c &visitor) {return visitor.visit(this);}
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#define SYM_REF0(class_name_c, ...)								\
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class_name_c::class_name_c(									\
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                           int fl, int fc, const char *ffile, long int forder,			\
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                           int ll, int lc, const char *lfile, long int lorder)			\
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			  :symbol_c(fl, fc, ffile, forder, ll, lc, lfile, lorder) {}		\
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void *class_name_c::accept(visitor_c &visitor) {return visitor.visit(this);}
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#define SYM_REF1(class_name_c, ref1, ...)							\
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class_name_c::class_name_c(symbol_c *ref1,							\
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                           int fl, int fc, const char *ffile, long int forder,			\
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                           int ll, int lc, const char *lfile, long int lorder)			\
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			  :symbol_c(fl, fc, ffile, forder, ll, lc, lfile, lorder) {		\
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  this->ref1 = ref1;										\
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  if  (NULL != ref1)   ref1->parent = this;							\
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}												\
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void *class_name_c::accept(visitor_c &visitor) {return visitor.visit(this);}
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#define SYM_REF2(class_name_c, ref1, ref2, ...)							\
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class_name_c::class_name_c(symbol_c *ref1,							\
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			   symbol_c *ref2,							\
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                           int fl, int fc, const char *ffile, long int forder,			\
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                           int ll, int lc, const char *lfile, long int lorder)			\
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			  :symbol_c(fl, fc, ffile, forder, ll, lc, lfile, lorder) {		\
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  this->ref1 = ref1;										\
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  this->ref2 = ref2;										\
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  if  (NULL != ref1)   ref1->parent = this;							\
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  if  (NULL != ref2)   ref2->parent = this;										\
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}												\
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void *class_name_c::accept(visitor_c &visitor) {return visitor.visit(this);}
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#define SYM_REF3(class_name_c, ref1, ref2, ref3, ...)						\
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class_name_c::class_name_c(symbol_c *ref1,							\
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			   symbol_c *ref2,							\
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			   symbol_c *ref3,							\
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                           int fl, int fc, const char *ffile, long int forder,			\
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                           int ll, int lc, const char *lfile, long int lorder)			\
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			  :symbol_c(fl, fc, ffile, forder, ll, lc, lfile, lorder) {		\
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  this->ref1 = ref1;										\
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  this->ref2 = ref2;										\
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  this->ref3 = ref3;										\
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  if  (NULL != ref1)   ref1->parent = this;							\
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  if  (NULL != ref2)   ref2->parent = this;							\
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  if  (NULL != ref3)   ref3->parent = this;							\
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}												\
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void *class_name_c::accept(visitor_c &visitor) {return visitor.visit(this);}
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#define SYM_REF4(class_name_c, ref1, ref2, ref3, ref4, ...)					\
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class_name_c::class_name_c(symbol_c *ref1,							\
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			   symbol_c *ref2,							\
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			   symbol_c *ref3,							\
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			   symbol_c *ref4,							\
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                           int fl, int fc, const char *ffile, long int forder,			\
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                           int ll, int lc, const char *lfile, long int lorder)			\
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			  :symbol_c(fl, fc, ffile, forder, ll, lc, lfile, lorder) {		\
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  this->ref1 = ref1;										\
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  this->ref2 = ref2;										\
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  this->ref3 = ref3;										\
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  this->ref4 = ref4;										\
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  if  (NULL != ref1)   ref1->parent = this;							\
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  if  (NULL != ref2)   ref2->parent = this;							\
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  if  (NULL != ref3)   ref3->parent = this;							\
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  if  (NULL != ref4)   ref4->parent = this;							\
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}												\
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void *class_name_c::accept(visitor_c &visitor) {return visitor.visit(this);}
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#define SYM_REF5(class_name_c, ref1, ref2, ref3, ref4, ref5, ...)				\
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class_name_c::class_name_c(symbol_c *ref1,							\
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			   symbol_c *ref2,							\
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			   symbol_c *ref3,							\
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			   symbol_c *ref4,							\
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			   symbol_c *ref5,							\
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                           int fl, int fc, const char *ffile, long int forder,			\
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                           int ll, int lc, const char *lfile, long int lorder)			\
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			  :symbol_c(fl, fc, ffile, forder, ll, lc, lfile, lorder) {		\
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  this->ref1 = ref1;										\
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  this->ref2 = ref2;										\
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  this->ref3 = ref3;										\
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  this->ref4 = ref4;										\
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  this->ref5 = ref5;										\
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  if  (NULL != ref1)   ref1->parent = this;							\
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  if  (NULL != ref2)   ref2->parent = this;							\
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  if  (NULL != ref3)   ref3->parent = this;							\
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  if  (NULL != ref4)   ref4->parent = this;							\
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  if  (NULL != ref5)   ref5->parent = this;							\
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}												\
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void *class_name_c::accept(visitor_c &visitor) {return visitor.visit(this);}
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#define SYM_REF6(class_name_c, ref1, ref2, ref3, ref4, ref5, ref6, ...)				\
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class_name_c::class_name_c(symbol_c *ref1,							\
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			   symbol_c *ref2,							\
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			   symbol_c *ref3,							\
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			   symbol_c *ref4,							\
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			   symbol_c *ref5,							\
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			   symbol_c *ref6,							\
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                           int fl, int fc, const char *ffile, long int forder,			\
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                           int ll, int lc, const char *lfile, long int lorder)			\
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			  :symbol_c(fl, fc, ffile, forder, ll, lc, lfile, lorder) {		\
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  this->ref1 = ref1;										\
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  this->ref2 = ref2;										\
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  this->ref3 = ref3;										\
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  this->ref4 = ref4;										\
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  this->ref5 = ref5;										\
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  this->ref6 = ref6;										\
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  if  (NULL != ref1)   ref1->parent = this;							\
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  if  (NULL != ref2)   ref2->parent = this;							\
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  if  (NULL != ref3)   ref3->parent = this;							\
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  if  (NULL != ref4)   ref4->parent = this;							\
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  if  (NULL != ref5)   ref5->parent = this;							\
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  if  (NULL != ref6)   ref6->parent = this;							\
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}												\
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void *class_name_c::accept(visitor_c &visitor) {return visitor.visit(this);}
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#include "absyntax.def"
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#undef SYM_LIST
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#undef SYM_TOKEN
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#undef SYM_TOKEN
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#undef SYM_REF0
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#undef SYM_REF1
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#undef SYM_REF2
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#undef SYM_REF3
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#undef SYM_REF4
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#undef SYM_REF5
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#undef SYM_REF6
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