mirror of
https://git.code.sf.net/p/quake/quakeforge
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211 lines
6.2 KiB
C
211 lines
6.2 KiB
C
/*
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symtab.h
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Symbol table management
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Copyright (C) 2011 Bill Currie <bill@taniwha.org>
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Author: Bill Currie <bill@taniwha.org>
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Date: 2011/01/04
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License
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as published by the Free Software Foundation; either version 2
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of the License, or (at your option) any later version.
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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.
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See the GNU General Public License for more details.
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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, write to:
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Free Software Foundation, Inc.
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59 Temple Place - Suite 330
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Boston, MA 02111-1307, USA
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$Id$
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*/
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#ifndef __symtab_h
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#define __symtab_h
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#include "expr.h"
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/** \defgroup qfcc_symtab Symbol Table Management
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\ingroup qfcc
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*/
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//@{
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typedef enum {
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vis_public,
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vis_protected,
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vis_private,
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} vis_e;
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typedef enum {
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sy_var, ///< symbol refers to a variable
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sy_const, ///< symbol refers to a constant
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sy_type, ///< symbol refers to a type
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sy_expr, ///< symbol refers to an expression
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sy_func, ///< symbol refers to a function
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} sy_type_e;
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typedef struct symbol_s {
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struct symbol_s *next; ///< chain of symbols in symbol table
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struct symtab_s *table; ///< symbol table that owns this symbol
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vis_e visibility; ///< symbol visiblity. defaults to public
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const char *name; ///< symbol name
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sy_type_e sy_type; ///< symbol type
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struct type_s *type; ///< type of object to which symbol refers
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struct param_s *params; ///< the parameters if a function
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union {
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int offset;
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struct ex_value_s value;
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struct expr_s *expr;
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struct function_s *func;
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} s;
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} symbol_t;
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typedef enum {
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stab_global, ///< global (many symbols)
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stab_local, ///< local (few symbols: func)
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stab_struct,
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stab_union,
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stab_enum,
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} stab_type_e;
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typedef struct symtab_s {
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struct symtab_s *parent; ///< points to parent table
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struct symtab_s *next; ///< next in global collection of symtabs
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stab_type_e type; ///< type of symbol table
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int size; ///< size of structure represented by symtab
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struct hashtab_s *tab; ///< symbols defined in this table
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symbol_t *symbols; ///< chain of symbols in this table
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symbol_t **symtail; ///< keep chain in declaration order
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} symtab_t;
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/** Create a new, empty named symbol.
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Only the symbol name field will be filled in. \a name will be copied
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using save_string().
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\param name The name of the symbol.
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\return The new symbol.
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*/
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symbol_t *new_symbol (const char *name);
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/** Create a new, typed, named symbol.
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Only the symbol name and type fields will be filled in. \a name will
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be copied using save_string().
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\param name The name of the symbol.
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\param type The type of the symbol.
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\return The new symbol.
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*/
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symbol_t *new_symbol_type (const char *name, struct type_s *type);
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/** Create a new, empty symbol table.
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The symbol tables support scoping via their \c parent pointer. This
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supports both code block scoping and ivar inheritance.
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\param parent Pointer to parent scope symbol table.
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\param type The type of symbol table. Currently governs expected size.
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\return The new, empty symbol table.
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*/
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symtab_t *new_symtab (symtab_t *parent, stab_type_e type);
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/** Lookup a name in the symbol table.
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The entire symbol table chain (symtab_t::parent) starting at symtab
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will be checked for \a name.
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\param symtab The symbol table to search for \a name. If \a name is
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not in the symbol table, the tables's parent, if it
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exists, will be checked, and then its parent, until the
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end of the chain.
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\param name The name to look up in the symbol table chain.
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*/
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symbol_t *symtab_lookup (symtab_t *symtab, const char *name);
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/** Add a symbol to the symbol table.
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If there is already a symbol with the same name in the symbol table,
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the symbol will not be added to the table, and the symbol that was
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found in the table witll be returned.
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\param symtab The symol table to which the symbol will be added.
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\param symbol The symbol to be added to the symbol table.
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\return The symbol as in the table, either \a symbol if no
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symbol with the same name is already in the symbol
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table, or the symbol that was found in the table.
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*/
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symbol_t *symtab_addsymbol (symtab_t *symtab, symbol_t *symbol);
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/** Remove a symbol from the symbol table.
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\param symtab The symol table from which the symbol will be removed.
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\param symbol The symbol to be removed from the symbol table.
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\return The symbol as was in the table, or NULL if not found.
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*/
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symbol_t *symtab_removesymbol (symtab_t *symtab, symbol_t *symbol);
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/** Make a copy of a symbol.
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The new symbol will not be associated with any table.
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\param symbol The symbol to be copied.
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\return The new symbol.
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*/
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symbol_t *copy_symbol (symbol_t *symbol);
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/** Create a new single symbol table from the given symbol table chain.
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Create a new symbol table and add all of the symbols from the given
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symbol table chain to the new symbol table. However, in order to
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preserve scoping rules, duplicate names in ancestor tables will not be
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added to the new table.
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The new symbol table will be "local".
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The intended use is for creating the ivar scope for methods.
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\param symtab The symbol table chain to be copied.
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\param parent The parent symbol table of the new symbol table, or
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null.
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\return The new symbol table.
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\dot
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digraph symtab_flat_copy {
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layout=dot; rankdir=LR; compound=true; nodesep=1.0;
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subgraph clusterI {
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node [shape=record];
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root [label="<p>parent|integer\ x;|integer\ y;|float\ z;"];
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base [label="<p>parent|float\ w;|float\ x;"];
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cur [label="<p>parent|float\ y;"];
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symtab [shape=ellipse];
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cur:p -> base;
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base:p -> root;
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}
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subgraph clusterO {
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node [shape=record];
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out [label="<p>parent|float\ z;|float\ w;|float\ x;|float\ y;"];
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return [shape=ellipse];
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parent [shape=ellipse];
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}
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symtab -> cur;
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cur -> out [ltail=clusterI,lhead=clusterO];
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out:p -> parent;
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return -> out;
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}
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\enddot
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*/
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symtab_t *symtab_flat_copy (symtab_t *symtab, symtab_t *parent);
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//@}
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#endif//__symtab_h
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