name-lookup.h revision 1.5 1 1.1 mrg /* Declarations for C++ name lookup routines.
2 1.5 mrg Copyright (C) 2003-2015 Free Software Foundation, Inc.
3 1.1 mrg Contributed by Gabriel Dos Reis <gdr (at) integrable-solutions.net>
4 1.1 mrg
5 1.1 mrg This file is part of GCC.
6 1.1 mrg
7 1.1 mrg GCC is free software; you can redistribute it and/or modify
8 1.1 mrg it under the terms of the GNU General Public License as published by
9 1.1 mrg the Free Software Foundation; either version 3, or (at your option)
10 1.1 mrg any later version.
11 1.1 mrg
12 1.1 mrg GCC is distributed in the hope that it will be useful,
13 1.1 mrg but WITHOUT ANY WARRANTY; without even the implied warranty of
14 1.1 mrg MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 1.1 mrg GNU General Public License for more details.
16 1.1 mrg
17 1.1 mrg You should have received a copy of the GNU General Public License
18 1.1 mrg along with GCC; see the file COPYING3. If not see
19 1.1 mrg <http://www.gnu.org/licenses/>. */
20 1.1 mrg
21 1.1 mrg #ifndef GCC_CP_NAME_LOOKUP_H
22 1.1 mrg #define GCC_CP_NAME_LOOKUP_H
23 1.1 mrg
24 1.3 mrg #include "c-family/c-common.h"
25 1.1 mrg
26 1.1 mrg /* The type of dictionary used to map names to types declared at
27 1.1 mrg a given scope. */
28 1.1 mrg typedef struct binding_table_s *binding_table;
29 1.1 mrg typedef struct binding_entry_s *binding_entry;
30 1.1 mrg
31 1.1 mrg /* The type of a routine repeatedly called by binding_table_foreach. */
32 1.1 mrg typedef void (*bt_foreach_proc) (binding_entry, void *);
33 1.1 mrg
34 1.1 mrg struct GTY(()) binding_entry_s {
35 1.1 mrg binding_entry chain;
36 1.1 mrg tree name;
37 1.1 mrg tree type;
38 1.1 mrg };
39 1.1 mrg
40 1.1 mrg /* These macros indicate the initial chains count for binding_table. */
41 1.1 mrg #define SCOPE_DEFAULT_HT_SIZE (1 << 3)
42 1.1 mrg #define CLASS_SCOPE_HT_SIZE (1 << 3)
43 1.1 mrg #define NAMESPACE_ORDINARY_HT_SIZE (1 << 5)
44 1.1 mrg #define NAMESPACE_STD_HT_SIZE (1 << 8)
45 1.1 mrg #define GLOBAL_SCOPE_HT_SIZE (1 << 8)
46 1.1 mrg
47 1.1 mrg extern void binding_table_foreach (binding_table, bt_foreach_proc, void *);
48 1.1 mrg extern binding_entry binding_table_find (binding_table, tree);
49 1.1 mrg
50 1.1 mrg /* Datatype that represents binding established by a declaration between
52 1.1 mrg a name and a C++ entity. */
53 1.1 mrg typedef struct cxx_binding cxx_binding;
54 1.1 mrg
55 1.3 mrg /* The datatype used to implement C++ scope. */
56 1.1 mrg typedef struct cp_binding_level cp_binding_level;
57 1.1 mrg
58 1.1 mrg /* Nonzero if this binding is for a local scope, as opposed to a class
59 1.1 mrg or namespace scope. */
60 1.1 mrg #define LOCAL_BINDING_P(NODE) ((NODE)->is_local)
61 1.1 mrg
62 1.1 mrg /* True if NODE->value is from a base class of the class which is
63 1.1 mrg currently being defined. */
64 1.1 mrg #define INHERITED_VALUE_BINDING_P(NODE) ((NODE)->value_is_inherited)
65 1.1 mrg
66 1.1 mrg struct GTY(()) cxx_binding {
67 1.1 mrg /* Link to chain together various bindings for this name. */
68 1.1 mrg cxx_binding *previous;
69 1.1 mrg /* The non-type entity this name is bound to. */
70 1.1 mrg tree value;
71 1.1 mrg /* The type entity this name is bound to. */
72 1.1 mrg tree type;
73 1.3 mrg /* The scope at which this binding was made. */
74 1.1 mrg cp_binding_level *scope;
75 1.1 mrg unsigned value_is_inherited : 1;
76 1.1 mrg unsigned is_local : 1;
77 1.1 mrg };
78 1.1 mrg
79 1.1 mrg /* Datatype used to temporarily save C++ bindings (for implicit
80 1.1 mrg instantiations purposes and like). Implemented in decl.c. */
81 1.1 mrg typedef struct GTY(()) cxx_saved_binding {
82 1.1 mrg /* The name of the current binding. */
83 1.1 mrg tree identifier;
84 1.1 mrg /* The binding we're saving. */
85 1.1 mrg cxx_binding *binding;
86 1.1 mrg tree real_type_value;
87 1.1 mrg } cxx_saved_binding;
88 1.1 mrg
89 1.1 mrg
90 1.1 mrg extern tree identifier_type_value (tree);
91 1.1 mrg extern void set_identifier_type_value (tree, tree);
92 1.5 mrg extern void pop_binding (tree, tree);
93 1.1 mrg extern void pop_bindings_and_leave_scope (void);
94 1.1 mrg extern tree constructor_name (tree);
95 1.1 mrg extern bool constructor_name_p (tree, tree);
96 1.1 mrg
97 1.1 mrg /* The kinds of scopes we recognize. */
99 1.1 mrg typedef enum scope_kind {
100 1.1 mrg sk_block = 0, /* An ordinary block scope. This enumerator must
101 1.1 mrg have the value zero because "cp_binding_level"
102 1.1 mrg is initialized by using "memset" to set the
103 1.1 mrg contents to zero, and the default scope kind
104 1.1 mrg is "sk_block". */
105 1.1 mrg sk_cleanup, /* A scope for (pseudo-)scope for cleanup. It is
106 1.1 mrg pseudo in that it is transparent to name lookup
107 1.1 mrg activities. */
108 1.1 mrg sk_try, /* A try-block. */
109 1.1 mrg sk_catch, /* A catch-block. */
110 1.3 mrg sk_for, /* The scope of the variable declared in a
111 1.3 mrg for-init-statement. */
112 1.1 mrg sk_cond, /* The scope of the variable declared in the condition
113 1.1 mrg of an if or switch statement. */
114 1.1 mrg sk_function_parms, /* The scope containing function parameters. */
115 1.1 mrg sk_class, /* The scope containing the members of a class. */
116 1.1 mrg sk_scoped_enum, /* The scope containing the enumertors of a C++0x
117 1.1 mrg scoped enumeration. */
118 1.1 mrg sk_namespace, /* The scope containing the members of a
119 1.1 mrg namespace, including the global scope. */
120 1.1 mrg sk_template_parms, /* A scope for template parameters. */
121 1.1 mrg sk_template_spec, /* Like sk_template_parms, but for an explicit
122 1.1 mrg specialization. Since, by definition, an
123 1.1 mrg explicit specialization is introduced by
124 1.1 mrg "template <>", this scope is always empty. */
125 1.1 mrg sk_omp /* An OpenMP structured block. */
126 1.1 mrg } scope_kind;
127 1.1 mrg
128 1.1 mrg /* The scope where the class/struct/union/enum tag applies. */
129 1.1 mrg typedef enum tag_scope {
130 1.1 mrg ts_current = 0, /* Current scope only. This is for the
131 1.1 mrg class-key identifier;
132 1.1 mrg case mentioned in [basic.lookup.elab]/2,
133 1.1 mrg or the class/enum definition
134 1.1 mrg class-key identifier { ... }; */
135 1.1 mrg ts_global = 1, /* All scopes. This is the 3.4.1
136 1.3 mrg [basic.lookup.unqual] lookup mentioned
137 1.1 mrg in [basic.lookup.elab]/2. */
138 1.1 mrg ts_within_enclosing_non_class = 2, /* Search within enclosing non-class
139 1.1 mrg only, for friend class lookup
140 1.3 mrg according to [namespace.memdef]/3
141 1.1 mrg and [class.friend]/9. */
142 1.1 mrg ts_lambda = 3 /* Declaring a lambda closure. */
143 1.1 mrg } tag_scope;
144 1.3 mrg
145 1.1 mrg typedef struct GTY(()) cp_class_binding {
146 1.1 mrg cxx_binding *base;
147 1.1 mrg /* The bound name. */
148 1.1 mrg tree identifier;
149 1.3 mrg } cp_class_binding;
150 1.3 mrg
151 1.3 mrg
152 1.3 mrg typedef struct GTY(()) cp_label_binding {
153 1.3 mrg /* The bound LABEL_DECL. */
154 1.3 mrg tree label;
155 1.3 mrg /* The previous IDENTIFIER_LABEL_VALUE. */
156 1.3 mrg tree prev_value;
157 1.1 mrg } cp_label_binding;
158 1.1 mrg
159 1.1 mrg
160 1.1 mrg /* For each binding contour we allocate a binding_level structure
161 1.1 mrg which records the names defined in that contour.
162 1.1 mrg Contours include:
163 1.1 mrg 0) the global one
164 1.1 mrg 1) one for each function definition,
165 1.1 mrg where internal declarations of the parameters appear.
166 1.1 mrg 2) one for each compound statement,
167 1.1 mrg to record its declarations.
168 1.1 mrg
169 1.1 mrg The current meaning of a name can be found by searching the levels
170 1.1 mrg from the current one out to the global one.
171 1.1 mrg
172 1.1 mrg Off to the side, may be the class_binding_level. This exists only
173 1.1 mrg to catch class-local declarations. It is otherwise nonexistent.
174 1.1 mrg
175 1.1 mrg Also there may be binding levels that catch cleanups that must be
176 1.1 mrg run when exceptions occur. Thus, to see whether a name is bound in
177 1.1 mrg the current scope, it is not enough to look in the
178 1.1 mrg CURRENT_BINDING_LEVEL. You should use lookup_name_current_level
179 1.1 mrg instead. */
180 1.1 mrg
181 1.1 mrg /* Note that the information in the `names' component of the global contour
182 1.1 mrg is duplicated in the IDENTIFIER_GLOBAL_VALUEs of all identifiers. */
183 1.3 mrg
184 1.3 mrg struct GTY(()) cp_binding_level {
185 1.3 mrg /* A chain of _DECL nodes for all variables, constants, functions,
186 1.3 mrg and typedef types. These are in the reverse of the order
187 1.3 mrg supplied. There may be OVERLOADs on this list, too, but they
188 1.3 mrg are wrapped in TREE_LISTs; the TREE_VALUE is the OVERLOAD. */
189 1.3 mrg tree names;
190 1.3 mrg
191 1.3 mrg /* A chain of NAMESPACE_DECL nodes. */
192 1.3 mrg tree namespaces;
193 1.3 mrg
194 1.3 mrg /* An array of static functions and variables (for namespaces only) */
195 1.3 mrg vec<tree, va_gc> *static_decls;
196 1.3 mrg
197 1.3 mrg /* A list of USING_DECL nodes. */
198 1.3 mrg tree usings;
199 1.3 mrg
200 1.3 mrg /* A list of used namespaces. PURPOSE is the namespace,
201 1.3 mrg VALUE the common ancestor with this binding_level's namespace. */
202 1.3 mrg tree using_directives;
203 1.3 mrg
204 1.3 mrg /* For the binding level corresponding to a class, the entities
205 1.3 mrg declared in the class or its base classes. */
206 1.3 mrg vec<cp_class_binding, va_gc> *class_shadowed;
207 1.3 mrg
208 1.3 mrg /* Similar to class_shadowed, but for IDENTIFIER_TYPE_VALUE, and
209 1.3 mrg is used for all binding levels. The TREE_PURPOSE is the name of
210 1.3 mrg the entity, the TREE_TYPE is the associated type. In addition
211 1.3 mrg the TREE_VALUE is the IDENTIFIER_TYPE_VALUE before we entered
212 1.3 mrg the class. */
213 1.3 mrg tree type_shadowed;
214 1.3 mrg
215 1.3 mrg /* Similar to class_shadowed, but for IDENTIFIER_LABEL_VALUE, and
216 1.3 mrg used for all binding levels. */
217 1.3 mrg vec<cp_label_binding, va_gc> *shadowed_labels;
218 1.3 mrg
219 1.3 mrg /* For each level (except not the global one),
220 1.3 mrg a chain of BLOCK nodes for all the levels
221 1.3 mrg that were entered and exited one level down. */
222 1.3 mrg tree blocks;
223 1.3 mrg
224 1.3 mrg /* The entity (namespace, class, function) the scope of which this
225 1.3 mrg binding contour corresponds to. Otherwise NULL. */
226 1.3 mrg tree this_entity;
227 1.3 mrg
228 1.3 mrg /* The binding level which this one is contained in (inherits from). */
229 1.3 mrg cp_binding_level *level_chain;
230 1.3 mrg
231 1.3 mrg /* List of VAR_DECLS saved from a previous for statement.
232 1.3 mrg These would be dead in ISO-conforming code, but might
233 1.3 mrg be referenced in ARM-era code. */
234 1.3 mrg vec<tree, va_gc> *dead_vars_from_for;
235 1.3 mrg
236 1.3 mrg /* STATEMENT_LIST for statements in this binding contour.
237 1.3 mrg Only used at present for SK_CLEANUP temporary bindings. */
238 1.3 mrg tree statement_list;
239 1.3 mrg
240 1.3 mrg /* Binding depth at which this level began. */
241 1.3 mrg int binding_depth;
242 1.3 mrg
243 1.3 mrg /* The kind of scope that this object represents. However, a
244 1.3 mrg SK_TEMPLATE_SPEC scope is represented with KIND set to
245 1.3 mrg SK_TEMPLATE_PARMS and EXPLICIT_SPEC_P set to true. */
246 1.3 mrg ENUM_BITFIELD (scope_kind) kind : 4;
247 1.3 mrg
248 1.3 mrg /* True if this scope is an SK_TEMPLATE_SPEC scope. This field is
249 1.3 mrg only valid if KIND == SK_TEMPLATE_PARMS. */
250 1.3 mrg BOOL_BITFIELD explicit_spec_p : 1;
251 1.3 mrg
252 1.3 mrg /* true means make a BLOCK for this level regardless of all else. */
253 1.3 mrg unsigned keep : 1;
254 1.3 mrg
255 1.3 mrg /* Nonzero if this level can safely have additional
256 1.3 mrg cleanup-needing variables added to it. */
257 1.1 mrg unsigned more_cleanups_ok : 1;
258 1.5 mrg unsigned have_cleanups : 1;
259 1.5 mrg
260 1.5 mrg /* Transient state set if this scope is of sk_class kind
261 1.5 mrg and is in the process of defining 'this_entity'. Reset
262 1.5 mrg on leaving the class definition to allow for the scope
263 1.5 mrg to be subsequently re-used as a non-defining scope for
264 1.5 mrg 'this_entity'. */
265 1.5 mrg unsigned defining_class_p : 1;
266 1.3 mrg
267 1.1 mrg /* 23 bits left to fill a 32-bit word. */
268 1.1 mrg };
269 1.1 mrg
270 1.1 mrg /* The binding level currently in effect. */
271 1.1 mrg
272 1.1 mrg #define current_binding_level \
273 1.1 mrg (*(cfun && cp_function_chain && cp_function_chain->bindings \
274 1.1 mrg ? &cp_function_chain->bindings \
275 1.1 mrg : &scope_chain->bindings))
276 1.1 mrg
277 1.1 mrg /* The binding level of the current class, if any. */
278 1.1 mrg
279 1.1 mrg #define class_binding_level scope_chain->class_bindings
280 1.1 mrg
281 1.1 mrg /* The tree node representing the global scope. */
282 1.1 mrg extern GTY(()) tree global_namespace;
283 1.1 mrg extern GTY(()) tree global_scope_name;
284 1.1 mrg
285 1.1 mrg /* Indicates that there is a type value in some namespace, although
286 1.1 mrg that is not necessarily in scope at the moment. */
287 1.1 mrg
288 1.1 mrg extern GTY(()) tree global_type_node;
289 1.1 mrg
290 1.1 mrg /* True if SCOPE designates the global scope binding contour. */
291 1.1 mrg #define global_scope_p(SCOPE) \
292 1.3 mrg ((SCOPE) == NAMESPACE_LEVEL (global_namespace))
293 1.1 mrg
294 1.3 mrg extern cp_binding_level *leave_scope (void);
295 1.1 mrg extern bool kept_level_p (void);
296 1.1 mrg extern bool global_bindings_p (void);
297 1.3 mrg extern bool toplevel_bindings_p (void);
298 1.1 mrg extern bool namespace_bindings_p (void);
299 1.1 mrg extern bool local_bindings_p (void);
300 1.3 mrg extern bool template_parm_scope_p (void);
301 1.1 mrg extern scope_kind innermost_scope_kind (void);
302 1.1 mrg extern cp_binding_level *begin_scope (scope_kind, tree);
303 1.1 mrg extern void print_binding_stack (void);
304 1.1 mrg extern void push_to_top_level (void);
305 1.1 mrg extern void pop_from_top_level (void);
306 1.1 mrg extern void pop_everything (void);
307 1.1 mrg extern void keep_next_level (bool);
308 1.1 mrg extern bool is_ancestor (tree, tree);
309 1.1 mrg extern tree push_scope (tree);
310 1.1 mrg extern void pop_scope (tree);
311 1.3 mrg extern tree push_inner_scope (tree);
312 1.1 mrg extern void pop_inner_scope (tree, tree);
313 1.1 mrg extern void push_binding_level (cp_binding_level *);
314 1.1 mrg
315 1.1 mrg extern void push_namespace (tree);
317 1.1 mrg extern void pop_namespace (void);
318 1.1 mrg extern void push_nested_namespace (tree);
319 1.1 mrg extern void pop_nested_namespace (tree);
320 1.3 mrg extern bool handle_namespace_attrs (tree, tree);
321 1.1 mrg extern void pushlevel_class (void);
322 1.1 mrg extern void poplevel_class (void);
323 1.1 mrg extern tree pushdecl_with_scope (tree, cp_binding_level *, bool);
324 1.1 mrg extern tree lookup_name_prefer_type (tree, int);
325 1.1 mrg extern tree lookup_name_real (tree, int, int, bool, int, int);
326 1.1 mrg extern tree lookup_type_scope (tree, tag_scope);
327 1.1 mrg extern tree namespace_binding (tree, tree);
328 1.1 mrg extern void set_namespace_binding (tree, tree, tree);
329 1.1 mrg extern bool hidden_name_p (tree);
330 1.1 mrg extern tree remove_hidden_names (tree);
331 1.1 mrg extern tree lookup_qualified_name (tree, tree, bool, bool);
332 1.3 mrg extern tree lookup_name_nonclass (tree);
333 1.1 mrg extern tree lookup_name_innermost_nonclass_level (tree);
334 1.1 mrg extern bool is_local_extern (tree);
335 1.1 mrg extern tree lookup_function_nonclass (tree, vec<tree, va_gc> *, bool);
336 1.1 mrg extern void push_local_binding (tree, tree, int);
337 1.1 mrg extern bool pushdecl_class_level (tree);
338 1.3 mrg extern tree pushdecl_namespace_level (tree, bool);
339 1.1 mrg extern bool push_class_level_binding (tree, tree);
340 1.1 mrg extern tree getdecls (void);
341 1.1 mrg extern int function_parm_depth (void);
342 1.1 mrg extern tree cp_namespace_decls (tree);
343 1.1 mrg extern void set_decl_namespace (tree, tree, bool);
344 1.1 mrg extern void push_decl_namespace (tree);
345 1.1 mrg extern void pop_decl_namespace (void);
346 1.1 mrg extern void do_namespace_alias (tree, tree);
347 1.1 mrg extern void do_toplevel_using_decl (tree, tree, tree);
348 1.5 mrg extern void do_local_using_decl (tree, tree, tree);
349 1.1 mrg extern tree do_class_using_decl (tree, tree);
350 1.1 mrg extern void do_using_directive (tree);
351 1.1 mrg extern tree lookup_arg_dependent (tree, tree, vec<tree, va_gc> *);
352 1.1 mrg extern bool is_associated_namespace (tree, tree);
353 1.1 mrg extern void parse_using_directive (tree, tree);
354 1.1 mrg extern tree innermost_non_namespace_value (tree);
355 1.1 mrg extern cxx_binding *outer_binding (tree, cxx_binding *, bool);
356 1.1 mrg extern void cp_emit_debug_info_for_using (tree, tree);
357 1.1 mrg
358 1.5 mrg /* Set *DECL to the (non-hidden) declaration for ID at global scope,
359 1.1 mrg if present and return true; otherwise return false. */
360 1.1 mrg
361 1.1 mrg inline bool
362 1.1 mrg get_global_value_if_present (tree id, tree *decl)
363 1.1 mrg {
364 1.1 mrg tree global_value = namespace_binding (id, global_namespace);
365 1.1 mrg if (global_value)
366 1.1 mrg *decl = global_value;
367 1.1 mrg return global_value != NULL;
368 1.1 mrg }
369 1.5 mrg
370 1.1 mrg /* True is the binding of IDENTIFIER at global scope names a type. */
371 1.1 mrg
372 1.1 mrg inline bool
373 1.1 mrg is_typename_at_global_scope (tree id)
374 1.1 mrg {
375 1.1 mrg tree global_value = namespace_binding (id, global_namespace);
376 1.1 mrg
377 1.1 mrg return global_value && TREE_CODE (global_value) == TYPE_DECL;
378 }
379
380 #endif /* GCC_CP_NAME_LOOKUP_H */
381