3 # C++ skeleton for Bison
5 # Copyright (C) 2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009, 2010
6 # Free Software Foundation, Inc.
8 # This program is free software: you can redistribute it and/or modify
9 # it under the terms of the GNU General Public License as published by
10 # the Free Software Foundation, either version 3 of the License, or
11 # (at your option) any later version.
13 # This program is distributed in the hope that it will be useful,
14 # but WITHOUT ANY WARRANTY; without even the implied warranty of
15 # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 # GNU General Public License for more details.
18 # You should have received a copy of the GNU General Public License
19 # along with this program. If not, see <http://www.gnu.org/licenses/>.
21 m4_include(b4_pkgdatadir/[c.m4])
23 ## ---------------- ##
25 ## ---------------- ##
27 b4_percent_define_default([[parser_class_name]], [[parser]])
29 # Don't do that so that we remember whether we're using a user
30 # request, or the default value.
32 # b4_percent_define_default([[location_type]], [[location]])
34 b4_percent_define_default([[filename_type]], [[std::string]])
35 b4_percent_define_default([[api.namespace]], m4_defn([b4_prefix]))
37 b4_percent_define_default([[global_tokens_and_yystype]], [[false]])
38 b4_percent_define_default([[define_location_comparison]],
39 [m4_if(b4_percent_define_get([[filename_type]]),
40 [std::string], [[true]], [[false]])])
48 m4_define([b4_namespace_ref], [b4_percent_define_get([[api.namespace]])])
51 # Don't permit an empty b4_namespace_ref. Any `::parser::foo' appended to it
52 # would compile as an absolute reference with `parser' in the global namespace.
53 # b4_namespace_open would open an anonymous namespace and thus establish
54 # internal linkage. This would compile. However, it's cryptic, and internal
55 # linkage for the parser would be specified in all translation units that
56 # include the header, which is always generated. If we ever need to permit
57 # internal linkage somehow, surely we can find a cleaner approach.
58 m4_if(m4_bregexp(b4_namespace_ref, [^[ ]*$]), [-1], [],
59 [b4_complain_at(b4_percent_define_get_loc([[api.namespace]]),
60 [[namespace reference is empty]])])
62 # Instead of assuming the C++ compiler will do it, Bison should reject any
63 # invalid b4_namepsace_ref that would be converted to a valid
64 # b4_namespace_open. The problem is that Bison doesn't always output
65 # b4_namespace_ref to uncommented code but should reserve the ability to do so
66 # in future releases without risking breaking any existing user grammars.
67 # Specifically, don't allow empty names as b4_namespace_open would just convert
68 # those into anonymous namespaces, and that might tempt some users.
69 m4_if(m4_bregexp(b4_namespace_ref, [::[ ]*::]), [-1], [],
70 [b4_complain_at(b4_percent_define_get_loc([[api.namespace]]),
71 [[namespace reference has consecutive "::"]])])
72 m4_if(m4_bregexp(b4_namespace_ref, [::[ ]*$]), [-1], [],
73 [b4_complain_at(b4_percent_define_get_loc([[api.namespace]]),
74 [[namespace reference has a trailing "::"]])])
76 m4_define([b4_namespace_open],
77 [b4_user_code([b4_percent_define_get_syncline([[api.namespace]])
78 [namespace ]m4_bpatsubst(m4_dquote(m4_bpatsubst(m4_dquote(b4_namespace_ref),
79 [^\(.\)[ ]*::], [\1])),
80 [::], [ { namespace ])[ {]])])
82 m4_define([b4_namespace_close],
83 [b4_user_code([b4_percent_define_get_syncline([[api.namespace]])
84 m4_bpatsubst(m4_dquote(m4_bpatsubst(m4_dquote(b4_namespace_ref[ ]),
85 [^\(.\)[ ]*\(::\)?\([^][:]\|:[^:]\)*],
87 [::\([^][:]\|:[^:]\)*], [} ])[} // ]b4_namespace_ref])])
90 # b4_token_enums(LIST-OF-PAIRS-TOKEN-NAME-TOKEN-NUMBER)
91 # -----------------------------------------------------
92 # Output the definition of the tokens as enums.
93 m4_define([b4_token_enums],
96 m4_map_sep([ b4_token_enum], [,
103 ## ----------------- ##
104 ## Semantic Values. ##
105 ## ----------------- ##
107 # b4_semantic_type_declare
108 # ------------------------
109 # Declare semantic_type.
110 m4_define([b4_semantic_type_declare],
111 [ /// Symbol semantic values.
113 [ union semantic_type
116 [m4_if(b4_tag_seen_flag, 0,
117 [[ typedef int semantic_type;]],
118 [[ typedef YYSTYPE semantic_type;]])])])
121 # b4_public_types_declare
122 # -----------------------
123 # Define the public types: token, semantic value, location, and so forth.
124 # Depending on %define token_lex, may be output in the header or source file.
125 m4_define([b4_public_types_declare],
127 ]b4_semantic_type_declare[
129 typedef YYSTYPE semantic_type;
130 #endif]b4_locations_if([
131 /// Symbol locations.
132 typedef b4_percent_define_get([[location_type]],
133 [[location]]) location_type;])[
135 /// Syntax errors thrown from user actions.
136 struct syntax_error : std::runtime_error
138 syntax_error (]b4_locations_if([const location_type& l, ])[const std::string& m);]b4_locations_if([
139 location_type location;])[
145 ]b4_token_enums(b4_tokens)[
149 typedef token::yytokentype token_type;
151 /// A complete symbol, with its type.
152 template <typename Exact>
153 struct symbol_base_type
155 /// Default constructor.
156 inline symbol_base_type ();
158 /// Constructor.]b4_locations_if([
159 inline symbol_base_type (const location_type& l)])[;
160 inline symbol_base_type (]b4_args(
161 [const semantic_type& v],
162 b4_locations_if([const location_type& l]))[);
164 /// Return this with its exact type.
165 const Exact& self () const;
168 /// Return the type of this symbol.
169 int type_get () const;
171 /// The semantic value.
172 semantic_type value;]b4_locations_if([
175 location_type location;])[
178 /// External form of a symbol: its type and attributes.
179 struct symbol_type : symbol_base_type<symbol_type>
181 /// The parent class.
182 typedef symbol_base_type<symbol_type> super_type;
184 /// Default constructor.
185 inline symbol_type ();
187 /// Constructor for tokens with semantic value.
188 inline symbol_type (]b4_args([token_type t],
189 [const semantic_type& v],
190 b4_locations_if([const location_type& l]))[);
192 /// Constructor for valueless tokens.
193 inline symbol_type (]b4_args([token_type t],
194 b4_locations_if([const location_type& l]))[);
200 inline int type_get_ () const;
203 inline token_type token () const;
205 ]b4_symbol_constructor_declare])
208 # b4_public_types_define
209 # ----------------------
210 # Provide the implementation needed by the public types.
211 m4_define([b4_public_types_define],
213 ]b4_parser_class_name[::syntax_error::syntax_error (]b4_locations_if([const location_type& l, ])[const std::string& m)
214 : std::runtime_error (m)]b4_locations_if([
219 template <typename Exact>
221 ]b4_parser_class_name[::symbol_base_type<Exact>::symbol_base_type ()
222 : value()]b4_locations_if([
227 template <typename Exact>
229 ]b4_parser_class_name[::symbol_base_type<Exact>::symbol_base_type (const location_type& l)
235 template <typename Exact>
237 ]b4_parser_class_name[::symbol_base_type<Exact>::symbol_base_type (]b4_args(
238 [const semantic_type& v],
239 b4_locations_if([const location_type& l]))[)
240 : value(v)]b4_locations_if([
245 template <typename Exact>
248 ]b4_parser_class_name[::symbol_base_type<Exact>::self () const
250 return static_cast<const Exact&>(*this);
253 template <typename Exact>
256 ]b4_parser_class_name[::symbol_base_type<Exact>::self ()
258 return static_cast<Exact&>(*this);
261 template <typename Exact>
264 ]b4_parser_class_name[::symbol_base_type<Exact>::type_get () const
266 return self ().type_get_ ();
271 ]b4_parser_class_name[::symbol_type::symbol_type ()
278 ]b4_parser_class_name[::symbol_type::symbol_type (]b4_args(
280 b4_locations_if([const location_type& l]))[)
281 : super_type (]b4_locations_if([l])[)
282 , type (yytranslate_ (t))
287 ]b4_parser_class_name[::symbol_type::symbol_type (]b4_args(
289 [const semantic_type& v],
290 b4_locations_if([const location_type& l]))[)
291 : super_type (v]b4_locations_if([, l])[)
292 , type (yytranslate_ (t))
298 ]b4_parser_class_name[::symbol_type::type_get_ () const
304 ]b4_parser_class_name[::token_type
305 ]b4_parser_class_name[::symbol_type::token () const
307 // YYTOKNUM[NUM] -- (External) token number corresponding to the
308 // (internal) symbol number NUM (which must be that of a token). */
310 const ]b4_int_type_for([b4_toknum])[
315 return static_cast<token_type> (yytoken_number_[type]);
318 b4_symbol_constructor_define])
321 # b4_symbol_constructor_declare
322 # b4_symbol_constructor_define
323 # -----------------------------
324 # Declare/define symbol constructors for all the value types.
325 # Use at class-level. Redefined in variant.hh.
326 m4_define([b4_symbol_constructor_declare], [])
327 m4_define([b4_symbol_constructor_define], [])
330 # b4_yytranslate_define
331 # ---------------------
332 # Define yytranslate_. Sometimes used in the header file,
333 # sometimes in the cc file.
334 m4_define([b4_yytranslate_define],
335 [[ // Symbol number corresponding to token number t.
336 ]b4_parser_class_name[::token_number_type
337 ]b4_parser_class_name[::yytranslate_ (]b4_lex_symbol_if([token_type],
341 const token_number_type
346 const unsigned int user_token_number_max_ = ]b4_user_token_number_max[;
347 const token_number_type undef_token_ = ]b4_undef_token_number[;
349 if (static_cast<int>(t) <= yyeof_)
351 else if (static_cast<unsigned int> (t) <= user_token_number_max_)
352 return translate_table[t];
359 # b4_lhs_value([TYPE])
360 # --------------------
361 # Expansion of $<TYPE>$.
362 m4_define([b4_lhs_value],
363 [b4_symbol_value([yyval], [$1])])
366 # b4_rhs_value(RULE-LENGTH, NUM, [TYPE])
367 # --------------------------------------
368 # Expansion of $<TYPE>NUM, where the current rule has RULE-LENGTH
370 m4_define([b4_rhs_value],
371 [b4_symbol_value([yysemantic_stack_@{($1) - ($2)@}], [$3])])
377 m4_define([b4_lhs_location],
381 # b4_rhs_location(RULE-LENGTH, NUM)
382 # ---------------------------------
383 # Expansion of @NUM, where the current rule has RULE-LENGTH symbols
385 m4_define([b4_rhs_location],
386 [(yylocation_stack_@{($1) - ($2)@})])
389 # b4_parse_param_decl
390 # -------------------
391 # Extra formal arguments of the constructor.
392 # Change the parameter names from "foo" into "foo_yyarg", so that
393 # there is no collision bw the user chosen attribute name, and the
394 # argument name in the constructor.
395 m4_define([b4_parse_param_decl],
396 [m4_ifset([b4_parse_param],
397 [m4_map_sep([b4_parse_param_decl_1], [, ], [b4_parse_param])])])
399 m4_define([b4_parse_param_decl_1],
404 # b4_parse_param_cons
405 # -------------------
406 # Extra initialisations of the constructor.
407 m4_define([b4_parse_param_cons],
408 [m4_ifset([b4_parse_param],
410 b4_cc_constructor_calls(b4_parse_param)])])
411 m4_define([b4_cc_constructor_calls],
412 [m4_map_sep([b4_cc_constructor_call], [,
414 m4_define([b4_cc_constructor_call],
417 # b4_parse_param_vars
418 # -------------------
419 # Extra instance variables.
420 m4_define([b4_parse_param_vars],
421 [m4_ifset([b4_parse_param],
423 /* User arguments. */
424 b4_cc_var_decls(b4_parse_param)])])
425 m4_define([b4_cc_var_decls],
426 [m4_map_sep([b4_cc_var_decl], [
428 m4_define([b4_cc_var_decl],