author | mjsousa |
Sun, 01 Jun 2014 08:59:02 +0100 | |
changeset 898 | 343989fb05fb |
parent 858 | c5f145364a4f |
child 909 | 8b2a31dea131 |
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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* |
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* Copyright (C) 2003-2012 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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/* Determine the data type on which another data type is based on. */ |
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/* |
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* What is a Base Type? |
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* A base type is the fundamental data type from which the type is derived. |
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* The main idea is that if two datatyes (A and B) share a common base type, |
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* then these two datatypes may be used interchangeably in an expression. |
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* |
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* What is an Equivalent Type? |
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* An equivalent type is the data type from which the type is derived. |
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* The Base type and the Equivalent type will always be the same, with the |
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* exception of subranges! |
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* |
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* E.g. TYPE new_int_t : INT; END_TYPE; |
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* TYPE new_int2_t : INT := 2; END_TYPE; |
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* TYPE new_int3_t : new_int2_t := 3; END_TYPE; |
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* TYPE new_sub_t : INT (4..10); END_TYPE; |
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* TYPE new_sub2_t : new_sub_t := 5 ; END_TYPE; |
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* TYPE new_sub3_t : new_sub2_t := 6 ; END_TYPE; |
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* TYPE new_sub4_t : new_int3_t (4..10); END_TYPE; <----- This is NOT legal syntax! |
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* |
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* new_int_t : base type->INT equivalent type->INT |
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* new_int2_t : base type->INT equivalent type->INT |
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* new_int3_t : base type->INT equivalent type->INT |
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* new_sub_t : base type->INT equivalent type->new_sub_t |
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* new_sub2_t : base type->INT equivalent type->new_sub_t |
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* new_sub3_t : base type->INT equivalent type->new_sub_t |
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* |
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* Note too that a FB declaration is also considered a base type, as |
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* we may have FB instances declared of a specific FB type. |
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*/ |
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class search_base_type_c: public null_visitor_c { |
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private: |
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symbol_c *current_basetype_name; |
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symbol_c *current_basetype; |
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symbol_c *current_equivtype; |
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static search_base_type_c *search_base_type_singleton; // Make this a singleton class! |
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private: |
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static void create_singleton(void); |
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public: |
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search_base_type_c(void); |
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static symbol_c *get_equivtype_decl(symbol_c *symbol); /* get the Equivalent Type declaration */ |
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static symbol_c *get_basetype_decl (symbol_c *symbol); /* get the Base Type declaration */ |
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static symbol_c *get_basetype_id (symbol_c *symbol); /* get the Base Type identifier */ |
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public: |
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/*************************/ |
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/* B.1 - Common elements */ |
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/*************************/ |
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/*******************************************/ |
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/* B 1.1 - Letters, digits and identifiers */ |
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/*******************************************/ |
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void *visit(identifier_c *type_name); |
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/*********************/ |
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/* B 1.2 - Constants */ |
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/*********************/ |
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/******************************/ |
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/* B 1.2.1 - Numeric Literals */ |
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/******************************/ |
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/* Numeric literals without any explicit type cast have unknown data type, |
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* so we continue considering them as their own basic data types until |
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* they can be resolved (for example, when using '30+x' where 'x' is a LINT variable, the |
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* numeric literal '30' must then be considered a LINT so the ADD function may be called |
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* with all inputs of the same data type. |
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* If 'x' were a SINT, then the '30' would have to be a SINT too! |
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*/ |
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void *visit(real_c *symbol); |
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void *visit(neg_real_c *symbol); |
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void *visit(integer_c *symbol); |
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void *visit(neg_integer_c *symbol); |
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void *visit(binary_integer_c *symbol); |
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void *visit(octal_integer_c *symbol); |
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void *visit(hex_integer_c *symbol); |
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void *visit(boolean_true_c *symbol); |
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void *visit(boolean_false_c *symbol); |
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/***********************************/ |
119 |
/* B 1.3.1 - Elementary Data Types */ |
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/***********************************/ |
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void *visit(time_type_name_c *symbol); |
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void *visit(bool_type_name_c *symbol); |
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void *visit(sint_type_name_c *symbol); |
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void *visit(int_type_name_c *symbol); |
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void *visit(dint_type_name_c *symbol); |
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void *visit(lint_type_name_c *symbol); |
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void *visit(usint_type_name_c *symbol); |
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void *visit(uint_type_name_c *symbol); |
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void *visit(udint_type_name_c *symbol); |
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void *visit(ulint_type_name_c *symbol); |
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void *visit(real_type_name_c *symbol); |
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void *visit(lreal_type_name_c *symbol); |
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void *visit(date_type_name_c *symbol); |
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void *visit(tod_type_name_c *symbol); |
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void *visit(dt_type_name_c *symbol); |
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void *visit(byte_type_name_c *symbol); |
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void *visit(word_type_name_c *symbol); |
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void *visit(dword_type_name_c *symbol); |
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void *visit(lword_type_name_c *symbol); |
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void *visit(string_type_name_c *symbol); |
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void *visit(wstring_type_name_c *symbol); |
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181 | 143 |
/******************************************************/ |
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/* Extensions to the base standard as defined in */ |
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/* "Safety Software Technical Specification, */ |
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/* Part 1: Concepts and Function Blocks, */ |
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/* Version 1.0 – Official Release" */ |
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/* by PLCopen - Technical Committee 5 - 2006-01-31 */ |
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/******************************************************/ |
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void *visit(safetime_type_name_c *symbol); |
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void *visit(safebool_type_name_c *symbol); |
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void *visit(safesint_type_name_c *symbol); |
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void *visit(safeint_type_name_c *symbol); |
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void *visit(safedint_type_name_c *symbol); |
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void *visit(safelint_type_name_c *symbol); |
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void *visit(safeusint_type_name_c *symbol); |
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void *visit(safeuint_type_name_c *symbol); |
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void *visit(safeudint_type_name_c *symbol); |
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void *visit(safeulint_type_name_c *symbol); |
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void *visit(safereal_type_name_c *symbol); |
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void *visit(safelreal_type_name_c *symbol); |
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void *visit(safedate_type_name_c *symbol); |
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void *visit(safetod_type_name_c *symbol); |
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void *visit(safedt_type_name_c *symbol); |
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void *visit(safebyte_type_name_c *symbol); |
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void *visit(safeword_type_name_c *symbol); |
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void *visit(safedword_type_name_c *symbol); |
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void *visit(safelword_type_name_c *symbol); |
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void *visit(safestring_type_name_c *symbol); |
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void *visit(safewstring_type_name_c *symbol); |
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181 | 171 |
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/********************************/ |
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/* B 1.3.3 - Derived data types */ |
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/********************************/ |
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/* simple_type_name ':' simple_spec_init */ |
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void *visit(simple_type_declaration_c *symbol); |
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/* simple_specification ASSIGN constant */ |
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void *visit(simple_spec_init_c *symbol); |
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/* subrange_type_name ':' subrange_spec_init */ |
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void *visit(subrange_type_declaration_c *symbol); |
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/* subrange_specification ASSIGN signed_integer */ |
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void *visit(subrange_spec_init_c *symbol); |
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/* integer_type_name '(' subrange')' */ |
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void *visit(subrange_specification_c *symbol); |
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/* signed_integer DOTDOT signed_integer */ |
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void *visit(subrange_c *symbol); |
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/* enumerated_type_name ':' enumerated_spec_init */ |
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void *visit(enumerated_type_declaration_c *symbol); |
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/* enumerated_specification ASSIGN enumerated_value */ |
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void *visit(enumerated_spec_init_c *symbol); |
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/* helper symbol for enumerated_specification->enumerated_spec_init */ |
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/* enumerated_value_list ',' enumerated_value */ |
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void *visit(enumerated_value_list_c *symbol); |
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/* enumerated_type_name '#' identifier */ |
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// SYM_REF2(enumerated_value_c, type, value) |
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void *visit(enumerated_value_c *symbol); |
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/* identifier ':' array_spec_init */ |
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void *visit(array_type_declaration_c *symbol); |
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/* array_specification [ASSIGN array_initialization} */ |
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/* array_initialization may be NULL ! */ |
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void *visit(array_spec_init_c *symbol); |
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/* ARRAY '[' array_subrange_list ']' OF non_generic_type_name */ |
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void *visit(array_specification_c *symbol); |
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/* helper symbol for array_specification */ |
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/* array_subrange_list ',' subrange */ |
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void *visit(array_subrange_list_c *symbol); |
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/* array_initialization: '[' array_initial_elements_list ']' */ |
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/* helper symbol for array_initialization */ |
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/* array_initial_elements_list ',' array_initial_elements */ |
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void *visit(array_initial_elements_list_c *symbol); |
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/* integer '(' [array_initial_element] ')' */ |
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/* array_initial_element may be NULL ! */ |
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void *visit(array_initial_elements_c *symbol); |
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/* structure_type_name ':' structure_specification */ |
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/* NOTE: structure_specification will point to either a |
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* initialized_structure_c |
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* OR A |
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* structure_element_declaration_list_c |
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*/ |
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void *visit(structure_type_declaration_c *symbol); |
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aad38592bdde
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/* var1_list ':' structure_type_name */ |
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void *visit(structured_var_declaration_c *symbol); |
181 | 224 |
/* structure_type_name ASSIGN structure_initialization */ |
225 |
/* structure_initialization may be NULL ! */ |
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void *visit(initialized_structure_c *symbol); |
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/* helper symbol for structure_declaration */ |
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/* structure_declaration: STRUCT structure_element_declaration_list END_STRUCT */ |
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/* structure_element_declaration_list structure_element_declaration ';' */ |
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void *visit(structure_element_declaration_list_c *symbol); |
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/* structure_element_name ':' *_spec_init */ |
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void *visit(structure_element_declaration_c *symbol); |
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/* helper symbol for structure_initialization */ |
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/* structure_initialization: '(' structure_element_initialization_list ')' */ |
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/* structure_element_initialization_list ',' structure_element_initialization */ |
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void *visit(structure_element_initialization_list_c *symbol); |
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/* structure_element_name ASSIGN value */ |
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void *visit(structure_element_initialization_c *symbol); |
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/* string_type_name ':' elementary_string_type_name string_type_declaration_size string_type_declaration_init */ |
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/* |
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SYM_REF4(string_type_declaration_c, string_type_name, |
181 | 242 |
elementary_string_type_name, |
243 |
string_type_declaration_size, |
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string_type_declaration_init) // may be == NULL! |
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*/ |
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void *visit(string_type_declaration_c *symbol); |
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Initial (very rough) version of semantic checker (stage3)
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810
d9c48ad646f1
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/* function_block_type_name ASSIGN structure_initialization */ |
808
7a6b53d61ea3
Consider fb_name_decl_c a non base data type class!
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parents:
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/* structure_initialization -> may be NULL ! */ |
810
d9c48ad646f1
Add a new node to the abstract symtax tree, which will let us do datatype checking of FB variable declarations using the standard algorithm, and no special cases.
Mario de Sousa <msousa@fe.up.pt>
parents:
808
diff
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void *visit(fb_spec_init_c *symbol); |
808
7a6b53d61ea3
Consider fb_name_decl_c a non base data type class!
Mario de Sousa <msousa@fe.up.pt>
parents:
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/*****************************/ |
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/* B 1.5.2 - Function Blocks */ |
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/*****************************/ |
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/* FUNCTION_BLOCK derived_function_block_name io_OR_other_var_declarations function_block_body END_FUNCTION_BLOCK */ |
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// SYM_REF3(function_block_declaration_c, fblock_name, var_declarations, fblock_body) |
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void *visit(function_block_declaration_c *symbol); |
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619
f8c9ac5c529a
Support for data types of STEP.T and STEP.X in SFCs
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259 |
/*********************************************/ |
f8c9ac5c529a
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/* B.1.6 Sequential function chart elements */ |
f8c9ac5c529a
Support for data types of STEP.T and STEP.X in SFCs
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parents:
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261 |
/*********************************************/ |
f8c9ac5c529a
Support for data types of STEP.T and STEP.X in SFCs
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parents:
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262 |
/* INITIAL_STEP step_name ':' action_association_list END_STEP */ |
f8c9ac5c529a
Support for data types of STEP.T and STEP.X in SFCs
Mario de Sousa <msousa@fe.up.pt>
parents:
417
diff
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// SYM_REF2(initial_step_c, step_name, action_association_list) |
f8c9ac5c529a
Support for data types of STEP.T and STEP.X in SFCs
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parents:
417
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264 |
void *visit(initial_step_c *symbol); |
f8c9ac5c529a
Support for data types of STEP.T and STEP.X in SFCs
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parents:
417
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265 |
|
f8c9ac5c529a
Support for data types of STEP.T and STEP.X in SFCs
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parents:
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266 |
/* STEP step_name ':' action_association_list END_STEP */ |
f8c9ac5c529a
Support for data types of STEP.T and STEP.X in SFCs
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parents:
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// SYM_REF2(step_c, step_name, action_association_list) |
f8c9ac5c529a
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parents:
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268 |
void *visit(step_c *symbol); |
f8c9ac5c529a
Support for data types of STEP.T and STEP.X in SFCs
Mario de Sousa <msousa@fe.up.pt>
parents:
417
diff
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|
269 |
|
f8c9ac5c529a
Support for data types of STEP.T and STEP.X in SFCs
Mario de Sousa <msousa@fe.up.pt>
parents:
417
diff
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|
270 |
|
181 | 271 |
}; // search_base_type_c |
272 |
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273 |
||
274 |
||
275 |