author | Laurent Bessard |
Tue, 11 Sep 2012 16:27:33 +0200 | |
changeset 629 | 06abc9867095 |
parent 612 | c062ff18d04f |
child 654 | 7421cb63defa |
permissions | -rwxr-xr-x |
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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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/* |
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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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* Declaration of the Abstract Syntax data structure components |
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*/ |
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/* |
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* ABSYNTAX.H |
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* |
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* This generates the parse tree structure used to bind the components |
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* identified by Bison in the correct syntax order. At the end of the |
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* Bison analysis the tree is walked in a sequential fashion generating |
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* the relavent code. |
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*/ |
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#ifndef _ABSYNTAX_HH |
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#define _ABSYNTAX_HH |
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#include <stdio.h> // required for NULL |
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#include <vector> |
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#include <string> |
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#include <stdint.h> // required for uint64_t, etc... |
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#include "../main.hh" // required for uint8_t, real_64_t, ..., and the macros INT8_MAX, REAL32_MAX, ... */ |
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/* Forward declaration of the visitor interface |
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* declared in the visitor.hh file |
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* We cannot include the visitor.hh file, as it will |
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* include this same file first, as it too requires references |
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* to the abstract syntax classes defined here. |
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*/ |
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class visitor_c; // forward declaration |
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class symbol_c; // forward declaration |
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/* The base class of all symbols */ |
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class symbol_c { |
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public: |
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/* |
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* Line number for the purposes of error checking. |
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* Annotated (inserted) by stage1_2 |
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*/ |
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int first_line; |
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int first_column; |
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const char *first_file; /* filename referenced by first line/column */ |
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long int first_order; /* relative order in which it is read by lexcial analyser */ |
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int last_line; |
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int last_column; |
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const char *last_file; /* filename referenced by last line/column */ |
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long int last_order; /* relative order in which it is read by lexcial analyser */ |
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/* |
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* Annotations produced during stage 3 |
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*/ |
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/*** Data type analysis ***/ |
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std::vector <symbol_c *> candidate_datatypes; /* All possible data types the expression/literal/etc. may take. Filled in stage3 by fill_candidate_datatypes_c class */ |
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/* Data type of the expression/literal/etc. Filled in stage3 by narrow_candidate_datatypes_c |
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* If set to NULL, it means it has not yet been evaluated. |
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* If it points to an object of type invalid_type_name_c, it means it is invalid. |
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* Otherwise, it points to an object of the apropriate data type (e.g. int_type_name_c, bool_type_name_c, ...) |
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*/ |
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symbol_c *datatype; |
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/*** constant folding ***/ |
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/* During stage 3 (semantic analysis/checking) we will be doing constant folding. |
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* That algorithm will anotate the abstract syntax tree with the result of operations |
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* on literals (i.e. 44 + 55 will store the result 99). |
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* Since the same source code (e.g. 1 + 0) may actually be a BOOL or an ANY_INT, |
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* or an ANY_BIT, we need to handle all possibilities, and determine the result of the |
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* operation assuming each type. |
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* For this reason, we have one entry for each possible type, with some expressions |
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* having more than one entry filled in! |
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*/ |
612 | 119 |
typedef enum { cs_undefined, /* not defined/not yet evaluated --> const_value is not valid! */ |
120 |
cs_non_const, /* we have deternmined that expression is not a const value --> const_value is not valid! */ |
|
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cs_const_value, /* const value is valid */ |
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cs_overflow /* result produced overflow or underflow --> const_value is not valid! */ |
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} const_status_t; |
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124 |
|
612 | 125 |
typedef struct {const_status_t status; real64_t value; } const_value_real64_t; |
126 |
typedef struct {const_status_t status; int64_t value; } const_value_int64_t; |
|
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typedef struct {const_status_t status; uint64_t value; } const_value_uint64_t; |
|
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typedef struct {const_status_t status; bool value; } const_value_bool_t; |
|
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typedef struct { |
612 | 131 |
const_value_real64_t _real64; /* status is initialised to UNDEFINED */ |
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const_value_int64_t _int64; /* status is initialised to UNDEFINED */ |
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const_value_uint64_t _uint64; /* status is initialised to UNDEFINED */ |
|
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const_value_bool_t _bool; /* status is initialised to UNDEFINED */ |
|
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} const_value_t; |
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const_value_t const_value; |
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137 |
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0
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138 |
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139 |
public: |
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/* default constructor */ |
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symbol_c(int fl = 0, int fc = 0, const char *ffile = NULL /* filename */, long int forder=0, /* order in which it is read by lexcial analyser */ |
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int ll = 0, int lc = 0, const char *lfile = NULL /* filename */, long int lorder=0 /* order in which it is read by lexcial analyser */ |
69 | 143 |
); |
0
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144 |
|
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145 |
/* default destructor */ |
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/* must be virtual so compiler does not complain... */ |
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virtual ~symbol_c(void) {return;}; |
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148 |
|
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virtual void *accept(visitor_c &visitor) {return NULL;}; |
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}; |
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151 |
|
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152 |
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class token_c: public symbol_c { |
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154 |
public: |
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/* the value of the symbol. */ |
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const char *value; |
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157 |
|
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158 |
public: |
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token_c(const char *value, |
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int fl = 0, int fc = 0, const char *ffile = NULL /* filename */, long int forder=0, /* order in which it is read by lexcial analyser */ |
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int ll = 0, int lc = 0, const char *lfile = NULL /* filename */, long int lorder=0 /* order in which it is read by lexcial analyser */ |
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162 |
); |
0
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163 |
}; |
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164 |
|
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165 |
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166 |
/* a list of symbols... */ |
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167 |
class list_c: public symbol_c { |
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public: |
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int n; |
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symbol_c **elements; |
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171 |
|
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172 |
public: |
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list_c(int fl = 0, int fc = 0, const char *ffile = NULL /* filename */, long int forder=0, /* order in which it is read by lexcial analyser */ |
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int ll = 0, int lc = 0, const char *lfile = NULL /* filename */, long int lorder=0 /* order in which it is read by lexcial analyser */ |
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); |
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176 |
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list_c(symbol_c *elem, |
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int fl = 0, int fc = 0, const char *ffile = NULL /* filename */, long int forder=0, /* order in which it is read by lexcial analyser */ |
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int ll = 0, int lc = 0, const char *lfile = NULL /* filename */, long int lorder=0 /* order in which it is read by lexcial analyser */ |
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); |
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/* append a new element to the end of the list */ |
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virtual void add_element(symbol_c *elem); |
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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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virtual void insert_element(symbol_c *elem, int pos = 0); |
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/* remove element at position pos. */ |
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virtual void remove_element(int pos = 0); |
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}; |
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190 |
|
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191 |
|
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192 |
|
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193 |
|
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#define SYM_LIST(class_name_c, ...) \ |
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class class_name_c: public list_c { \ |
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public: \ |
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__VA_ARGS__ \ |
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public: \ |
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class_name_c( \ |
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int fl = 0, int fc = 0, const char *ffile = NULL /* filename */, long int forder=0, \ |
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int ll = 0, int lc = 0, const char *lfile = NULL /* filename */, long int lorder=0); \ |
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class_name_c(symbol_c *elem, \ |
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int fl = 0, int fc = 0, const char *ffile = NULL /* filename */, long int forder=0, \ |
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int ll = 0, int lc = 0, const char *lfile = NULL /* filename */, long int lorder=0); \ |
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virtual void *accept(visitor_c &visitor); \ |
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}; |
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207 |
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208 |
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#define SYM_TOKEN(class_name_c, ...) \ |
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class class_name_c: public token_c { \ |
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public: \ |
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__VA_ARGS__ \ |
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public: \ |
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class_name_c(const char *value, \ |
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int fl = 0, int fc = 0, const char *ffile = NULL /* filename */, long int forder=0, \ |
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int ll = 0, int lc = 0, const char *lfile = NULL /* filename */, long int lorder=0); \ |
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virtual void *accept(visitor_c &visitor); \ |
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}; |
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|
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#define SYM_REF0(class_name_c, ...) \ |
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class class_name_c: public symbol_c { \ |
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public: \ |
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__VA_ARGS__ \ |
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public: \ |
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class_name_c( \ |
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int fl = 0, int fc = 0, const char *ffile = NULL /* filename */, long int forder=0, \ |
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int ll = 0, int lc = 0, const char *lfile = NULL /* filename */, long int lorder=0); \ |
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virtual void *accept(visitor_c &visitor); \ |
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}; |
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#define SYM_REF1(class_name_c, ref1, ...) \ |
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class class_name_c: public symbol_c { \ |
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public: \ |
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symbol_c *ref1; \ |
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__VA_ARGS__ \ |
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public: \ |
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class_name_c(symbol_c *ref1, \ |
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int fl = 0, int fc = 0, const char *ffile = NULL /* filename */, long int forder=0, \ |
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int ll = 0, int lc = 0, const char *lfile = NULL /* filename */, long int lorder=0); \ |
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virtual void *accept(visitor_c &visitor); \ |
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}; |
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#define SYM_REF2(class_name_c, ref1, ref2, ...) \ |
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class class_name_c: public symbol_c { \ |
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public: \ |
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symbol_c *ref1; \ |
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symbol_c *ref2; \ |
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__VA_ARGS__ \ |
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class_name_c(symbol_c *ref1, \ |
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symbol_c *ref2 = NULL, \ |
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int fl = 0, int fc = 0, const char *ffile = NULL /* filename */, long int forder=0, \ |
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int ll = 0, int lc = 0, const char *lfile = NULL /* filename */, long int lorder=0); \ |
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virtual void *accept(visitor_c &visitor); \ |
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}; |
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#define SYM_REF3(class_name_c, ref1, ref2, ref3, ...) \ |
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class class_name_c: public symbol_c { \ |
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public: \ |
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symbol_c *ref1; \ |
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symbol_c *ref2; \ |
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symbol_c *ref3; \ |
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__VA_ARGS__ \ |
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public: \ |
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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 = 0, int fc = 0, const char *ffile = NULL /* filename */, long int forder=0, \ |
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int ll = 0, int lc = 0, const char *lfile = NULL /* filename */, long int lorder=0); \ |
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virtual void *accept(visitor_c &visitor); \ |
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}; |
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|
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|
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#define SYM_REF4(class_name_c, ref1, ref2, ref3, ref4, ...) \ |
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class class_name_c: public symbol_c { \ |
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public: \ |
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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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__VA_ARGS__ \ |
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public: \ |
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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 = NULL, \ |
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int fl = 0, int fc = 0, const char *ffile = NULL /* filename */, long int forder=0, \ |
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int ll = 0, int lc = 0, const char *lfile = NULL /* filename */, long int lorder=0); \ |
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virtual void *accept(visitor_c &visitor); \ |
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}; |
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|
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#define SYM_REF5(class_name_c, ref1, ref2, ref3, ref4, ref5, ...) \ |
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class class_name_c: public symbol_c { \ |
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public: \ |
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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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__VA_ARGS__ \ |
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public: \ |
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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 = 0, int fc = 0, const char *ffile = NULL /* filename */, long int forder=0, \ |
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int ll = 0, int lc = 0, const char *lfile = NULL /* filename */, long int lorder=0); \ |
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virtual void *accept(visitor_c &visitor); \ |
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}; |
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|
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|
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#define SYM_REF6(class_name_c, ref1, ref2, ref3, ref4, ref5, ref6, ...) \ |
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class class_name_c: public symbol_c { \ |
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public: \ |
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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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__VA_ARGS__ \ |
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public: \ |
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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 = NULL, \ |
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int fl = 0, int fc = 0, const char *ffile = NULL /* filename */, long int forder=0, \ |
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int ll = 0, int lc = 0, const char *lfile = NULL /* filename */, long int lorder=0); \ |
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virtual void *accept(visitor_c &visitor); \ |
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}; |
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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_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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#endif /* _ABSYNTAX_HH */ |