OpenCores
URL https://opencores.org/ocsvn/openrisc/openrisc/trunk

Subversion Repositories openrisc

[/] [openrisc/] [trunk/] [gnu-old/] [gdb-7.1/] [gdb/] [objc-exp.y] - Diff between revs 834 and 842

Only display areas with differences | Details | Blame | View Log

Rev 834 Rev 842
/* YACC parser for C expressions, for GDB.
/* YACC parser for C expressions, for GDB.
   Copyright (C) 1986, 1989, 1990, 1991, 1993, 1994, 2002, 2006, 2007, 2008,
   Copyright (C) 1986, 1989, 1990, 1991, 1993, 1994, 2002, 2006, 2007, 2008,
   2009, 2010 Free Software Foundation, Inc.
   2009, 2010 Free Software Foundation, Inc.
   This program is free software; you can redistribute it and/or modify
   This program is free software; you can redistribute it and/or modify
   it under the terms of the GNU General Public License as published by
   it under the terms of the GNU General Public License as published by
   the Free Software Foundation; either version 3 of the License, or
   the Free Software Foundation; either version 3 of the License, or
   (at your option) any later version.
   (at your option) any later version.
   This program is distributed in the hope that it will be useful,
   This program is distributed in the hope that it will be useful,
   but WITHOUT ANY WARRANTY; without even the implied warranty of
   but WITHOUT ANY WARRANTY; without even the implied warranty of
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
   GNU General Public License for more details.
   GNU General Public License for more details.
   You should have received a copy of the GNU General Public License
   You should have received a copy of the GNU General Public License
   along with this program.  If not, see .  */
   along with this program.  If not, see .  */
/* Parse a C expression from text in a string, and return the result
/* Parse a C expression from text in a string, and return the result
   as a struct expression pointer.  That structure contains arithmetic
   as a struct expression pointer.  That structure contains arithmetic
   operations in reverse polish, with constants represented by
   operations in reverse polish, with constants represented by
   operations that are followed by special data.  See expression.h for
   operations that are followed by special data.  See expression.h for
   the details of the format.  What is important here is that it can
   the details of the format.  What is important here is that it can
   be built up sequentially during the process of parsing; the lower
   be built up sequentially during the process of parsing; the lower
   levels of the tree always come first in the result.
   levels of the tree always come first in the result.
   Note that malloc's and realloc's in this file are transformed to
   Note that malloc's and realloc's in this file are transformed to
   xmalloc and xrealloc respectively by the same sed command in the
   xmalloc and xrealloc respectively by the same sed command in the
   makefile that remaps any other malloc/realloc inserted by the
   makefile that remaps any other malloc/realloc inserted by the
   parser generator.  Doing this with #defines and trying to control
   parser generator.  Doing this with #defines and trying to control
   the interaction with include files ( and  for
   the interaction with include files ( and  for
   example) just became too messy, particularly when such includes can
   example) just became too messy, particularly when such includes can
   be inserted at random times by the parser generator.  */
   be inserted at random times by the parser generator.  */
%{
%{
#include "defs.h"
#include "defs.h"
#include "gdb_string.h"
#include "gdb_string.h"
#include 
#include 
#include "expression.h"
#include "expression.h"
#include "objc-lang.h"  /* For objc language constructs.  */
#include "objc-lang.h"  /* For objc language constructs.  */
#include "value.h"
#include "value.h"
#include "parser-defs.h"
#include "parser-defs.h"
#include "language.h"
#include "language.h"
#include "c-lang.h"
#include "c-lang.h"
#include "bfd.h" /* Required by objfiles.h.  */
#include "bfd.h" /* Required by objfiles.h.  */
#include "symfile.h" /* Required by objfiles.h.  */
#include "symfile.h" /* Required by objfiles.h.  */
#include "objfiles.h" /* For have_full_symbols and have_partial_symbols.  */
#include "objfiles.h" /* For have_full_symbols and have_partial_symbols.  */
#include "top.h"
#include "top.h"
#include "completer.h" /* For skip_quoted().  */
#include "completer.h" /* For skip_quoted().  */
#include "block.h"
#include "block.h"
#define parse_type builtin_type (parse_gdbarch)
#define parse_type builtin_type (parse_gdbarch)
/* Remap normal yacc parser interface names (yyparse, yylex, yyerror,
/* Remap normal yacc parser interface names (yyparse, yylex, yyerror,
   etc), as well as gratuitiously global symbol names, so we can have
   etc), as well as gratuitiously global symbol names, so we can have
   multiple yacc generated parsers in gdb.  Note that these are only
   multiple yacc generated parsers in gdb.  Note that these are only
   the variables produced by yacc.  If other parser generators (bison,
   the variables produced by yacc.  If other parser generators (bison,
   byacc, etc) produce additional global names that conflict at link
   byacc, etc) produce additional global names that conflict at link
   time, then those parser generators need to be fixed instead of
   time, then those parser generators need to be fixed instead of
   adding those names to this list.  */
   adding those names to this list.  */
#define yymaxdepth      objc_maxdepth
#define yymaxdepth      objc_maxdepth
#define yyparse         objc_parse
#define yyparse         objc_parse
#define yylex           objc_lex
#define yylex           objc_lex
#define yyerror         objc_error
#define yyerror         objc_error
#define yylval          objc_lval
#define yylval          objc_lval
#define yychar          objc_char
#define yychar          objc_char
#define yydebug         objc_debug
#define yydebug         objc_debug
#define yypact          objc_pact
#define yypact          objc_pact
#define yyr1            objc_r1
#define yyr1            objc_r1
#define yyr2            objc_r2
#define yyr2            objc_r2
#define yydef           objc_def
#define yydef           objc_def
#define yychk           objc_chk
#define yychk           objc_chk
#define yypgo           objc_pgo
#define yypgo           objc_pgo
#define yyact           objc_act
#define yyact           objc_act
#define yyexca          objc_exca
#define yyexca          objc_exca
#define yyerrflag       objc_errflag
#define yyerrflag       objc_errflag
#define yynerrs         objc_nerrs
#define yynerrs         objc_nerrs
#define yyps            objc_ps
#define yyps            objc_ps
#define yypv            objc_pv
#define yypv            objc_pv
#define yys             objc_s
#define yys             objc_s
#define yy_yys          objc_yys
#define yy_yys          objc_yys
#define yystate         objc_state
#define yystate         objc_state
#define yytmp           objc_tmp
#define yytmp           objc_tmp
#define yyv             objc_v
#define yyv             objc_v
#define yy_yyv          objc_yyv
#define yy_yyv          objc_yyv
#define yyval           objc_val
#define yyval           objc_val
#define yylloc          objc_lloc
#define yylloc          objc_lloc
#define yyreds          objc_reds               /* With YYDEBUG defined */
#define yyreds          objc_reds               /* With YYDEBUG defined */
#define yytoks          objc_toks               /* With YYDEBUG defined */
#define yytoks          objc_toks               /* With YYDEBUG defined */
#define yyname          objc_name               /* With YYDEBUG defined */
#define yyname          objc_name               /* With YYDEBUG defined */
#define yyrule          objc_rule               /* With YYDEBUG defined */
#define yyrule          objc_rule               /* With YYDEBUG defined */
#define yylhs           objc_yylhs
#define yylhs           objc_yylhs
#define yylen           objc_yylen
#define yylen           objc_yylen
#define yydefred        objc_yydefred
#define yydefred        objc_yydefred
#define yydgoto         objc_yydgoto
#define yydgoto         objc_yydgoto
#define yysindex        objc_yysindex
#define yysindex        objc_yysindex
#define yyrindex        objc_yyrindex
#define yyrindex        objc_yyrindex
#define yygindex        objc_yygindex
#define yygindex        objc_yygindex
#define yytable         objc_yytable
#define yytable         objc_yytable
#define yycheck         objc_yycheck
#define yycheck         objc_yycheck
#ifndef YYDEBUG
#ifndef YYDEBUG
#define YYDEBUG 0                /* Default to no yydebug support.  */
#define YYDEBUG 0                /* Default to no yydebug support.  */
#endif
#endif
int
int
yyparse (void);
yyparse (void);
static int
static int
yylex (void);
yylex (void);
void
void
yyerror (char *);
yyerror (char *);
%}
%}
/* Although the yacc "value" of an expression is not used,
/* Although the yacc "value" of an expression is not used,
   since the result is stored in the structure being created,
   since the result is stored in the structure being created,
   other node types do have values.  */
   other node types do have values.  */
%union
%union
  {
  {
    LONGEST lval;
    LONGEST lval;
    struct {
    struct {
      LONGEST val;
      LONGEST val;
      struct type *type;
      struct type *type;
    } typed_val_int;
    } typed_val_int;
    struct {
    struct {
      DOUBLEST dval;
      DOUBLEST dval;
      struct type *type;
      struct type *type;
    } typed_val_float;
    } typed_val_float;
    struct symbol *sym;
    struct symbol *sym;
    struct type *tval;
    struct type *tval;
    struct stoken sval;
    struct stoken sval;
    struct ttype tsym;
    struct ttype tsym;
    struct symtoken ssym;
    struct symtoken ssym;
    int voidval;
    int voidval;
    struct block *bval;
    struct block *bval;
    enum exp_opcode opcode;
    enum exp_opcode opcode;
    struct internalvar *ivar;
    struct internalvar *ivar;
    struct objc_class_str class;
    struct objc_class_str class;
    struct type **tvec;
    struct type **tvec;
    int *ivec;
    int *ivec;
  }
  }
%{
%{
/* YYSTYPE gets defined by %union.  */
/* YYSTYPE gets defined by %union.  */
static int
static int
parse_number (char *, int, int, YYSTYPE *);
parse_number (char *, int, int, YYSTYPE *);
%}
%}
%type  exp exp1 type_exp start variable qualified_name lcurly
%type  exp exp1 type_exp start variable qualified_name lcurly
%type  rcurly
%type  rcurly
%type  type typebase
%type  type typebase
%type  nonempty_typelist
%type  nonempty_typelist
/* %type  block */
/* %type  block */
/* Fancy type parsing.  */
/* Fancy type parsing.  */
%type  func_mod direct_abs_decl abs_decl
%type  func_mod direct_abs_decl abs_decl
%type  ptype
%type  ptype
%type  array_mod
%type  array_mod
%token  INT
%token  INT
%token  FLOAT
%token  FLOAT
/* Both NAME and TYPENAME tokens represent symbols in the input, and
/* Both NAME and TYPENAME tokens represent symbols in the input, and
   both convey their data as strings.  But a TYPENAME is a string that
   both convey their data as strings.  But a TYPENAME is a string that
   happens to be defined as a typedef or builtin type name (such as
   happens to be defined as a typedef or builtin type name (such as
   int or char) and a NAME is any other symbol.  Contexts where this
   int or char) and a NAME is any other symbol.  Contexts where this
   distinction is not important can use the nonterminal "name", which
   distinction is not important can use the nonterminal "name", which
   matches either NAME or TYPENAME.  */
   matches either NAME or TYPENAME.  */
%token  STRING
%token  STRING
%token  NSSTRING                /* ObjC Foundation "NSString" literal */
%token  NSSTRING                /* ObjC Foundation "NSString" literal */
%token  SELECTOR                /* ObjC "@selector" pseudo-operator   */
%token  SELECTOR                /* ObjC "@selector" pseudo-operator   */
%token  NAME /* BLOCKNAME defined below to give it higher precedence. */
%token  NAME /* BLOCKNAME defined below to give it higher precedence. */
%token  TYPENAME
%token  TYPENAME
%token  CLASSNAME       /* ObjC Class name */
%token  CLASSNAME       /* ObjC Class name */
%type  name
%type  name
%type  name_not_typename
%type  name_not_typename
%type  typename
%type  typename
/* A NAME_OR_INT is a symbol which is not known in the symbol table,
/* A NAME_OR_INT is a symbol which is not known in the symbol table,
   but which would parse as a valid number in the current input radix.
   but which would parse as a valid number in the current input radix.
   E.g. "c" when input_radix==16.  Depending on the parse, it will be
   E.g. "c" when input_radix==16.  Depending on the parse, it will be
   turned into a name or into a number.  */
   turned into a name or into a number.  */
%token  NAME_OR_INT
%token  NAME_OR_INT
%token STRUCT CLASS UNION ENUM SIZEOF UNSIGNED COLONCOLON
%token STRUCT CLASS UNION ENUM SIZEOF UNSIGNED COLONCOLON
%token TEMPLATE
%token TEMPLATE
%token ERROR
%token ERROR
/* Special type cases, put in to allow the parser to distinguish
/* Special type cases, put in to allow the parser to distinguish
   different legal basetypes.  */
   different legal basetypes.  */
%token SIGNED_KEYWORD LONG SHORT INT_KEYWORD CONST_KEYWORD VOLATILE_KEYWORD DOUBLE_KEYWORD
%token SIGNED_KEYWORD LONG SHORT INT_KEYWORD CONST_KEYWORD VOLATILE_KEYWORD DOUBLE_KEYWORD
%token  VARIABLE
%token  VARIABLE
%token  ASSIGN_MODIFY
%token  ASSIGN_MODIFY
%left ','
%left ','
%left ABOVE_COMMA
%left ABOVE_COMMA
%right '=' ASSIGN_MODIFY
%right '=' ASSIGN_MODIFY
%right '?'
%right '?'
%left OROR
%left OROR
%left ANDAND
%left ANDAND
%left '|'
%left '|'
%left '^'
%left '^'
%left '&'
%left '&'
%left EQUAL NOTEQUAL
%left EQUAL NOTEQUAL
%left '<' '>' LEQ GEQ
%left '<' '>' LEQ GEQ
%left LSH RSH
%left LSH RSH
%left '@'
%left '@'
%left '+' '-'
%left '+' '-'
%left '*' '/' '%'
%left '*' '/' '%'
%right UNARY INCREMENT DECREMENT
%right UNARY INCREMENT DECREMENT
%right ARROW '.' '[' '('
%right ARROW '.' '[' '('
%token  BLOCKNAME
%token  BLOCKNAME
%type  block
%type  block
%left COLONCOLON
%left COLONCOLON


%%
%%
start   :       exp1
start   :       exp1
        |       type_exp
        |       type_exp
        ;
        ;
type_exp:       type
type_exp:       type
                        { write_exp_elt_opcode(OP_TYPE);
                        { write_exp_elt_opcode(OP_TYPE);
                          write_exp_elt_type($1);
                          write_exp_elt_type($1);
                          write_exp_elt_opcode(OP_TYPE);}
                          write_exp_elt_opcode(OP_TYPE);}
        ;
        ;
/* Expressions, including the comma operator.  */
/* Expressions, including the comma operator.  */
exp1    :       exp
exp1    :       exp
        |       exp1 ',' exp
        |       exp1 ',' exp
                        { write_exp_elt_opcode (BINOP_COMMA); }
                        { write_exp_elt_opcode (BINOP_COMMA); }
        ;
        ;
/* Expressions, not including the comma operator.  */
/* Expressions, not including the comma operator.  */
exp     :       '*' exp    %prec UNARY
exp     :       '*' exp    %prec UNARY
                        { write_exp_elt_opcode (UNOP_IND); }
                        { write_exp_elt_opcode (UNOP_IND); }
        ;
        ;
exp     :       '&' exp    %prec UNARY
exp     :       '&' exp    %prec UNARY
                        { write_exp_elt_opcode (UNOP_ADDR); }
                        { write_exp_elt_opcode (UNOP_ADDR); }
        ;
        ;
exp     :       '-' exp    %prec UNARY
exp     :       '-' exp    %prec UNARY
                        { write_exp_elt_opcode (UNOP_NEG); }
                        { write_exp_elt_opcode (UNOP_NEG); }
        ;
        ;
exp     :       '!' exp    %prec UNARY
exp     :       '!' exp    %prec UNARY
                        { write_exp_elt_opcode (UNOP_LOGICAL_NOT); }
                        { write_exp_elt_opcode (UNOP_LOGICAL_NOT); }
        ;
        ;
exp     :       '~' exp    %prec UNARY
exp     :       '~' exp    %prec UNARY
                        { write_exp_elt_opcode (UNOP_COMPLEMENT); }
                        { write_exp_elt_opcode (UNOP_COMPLEMENT); }
        ;
        ;
exp     :       INCREMENT exp    %prec UNARY
exp     :       INCREMENT exp    %prec UNARY
                        { write_exp_elt_opcode (UNOP_PREINCREMENT); }
                        { write_exp_elt_opcode (UNOP_PREINCREMENT); }
        ;
        ;
exp     :       DECREMENT exp    %prec UNARY
exp     :       DECREMENT exp    %prec UNARY
                        { write_exp_elt_opcode (UNOP_PREDECREMENT); }
                        { write_exp_elt_opcode (UNOP_PREDECREMENT); }
        ;
        ;
exp     :       exp INCREMENT    %prec UNARY
exp     :       exp INCREMENT    %prec UNARY
                        { write_exp_elt_opcode (UNOP_POSTINCREMENT); }
                        { write_exp_elt_opcode (UNOP_POSTINCREMENT); }
        ;
        ;
exp     :       exp DECREMENT    %prec UNARY
exp     :       exp DECREMENT    %prec UNARY
                        { write_exp_elt_opcode (UNOP_POSTDECREMENT); }
                        { write_exp_elt_opcode (UNOP_POSTDECREMENT); }
        ;
        ;
exp     :       SIZEOF exp       %prec UNARY
exp     :       SIZEOF exp       %prec UNARY
                        { write_exp_elt_opcode (UNOP_SIZEOF); }
                        { write_exp_elt_opcode (UNOP_SIZEOF); }
        ;
        ;
exp     :       exp ARROW name
exp     :       exp ARROW name
                        { write_exp_elt_opcode (STRUCTOP_PTR);
                        { write_exp_elt_opcode (STRUCTOP_PTR);
                          write_exp_string ($3);
                          write_exp_string ($3);
                          write_exp_elt_opcode (STRUCTOP_PTR); }
                          write_exp_elt_opcode (STRUCTOP_PTR); }
        ;
        ;
exp     :       exp ARROW qualified_name
exp     :       exp ARROW qualified_name
                        { /* exp->type::name becomes exp->*(&type::name) */
                        { /* exp->type::name becomes exp->*(&type::name) */
                          /* Note: this doesn't work if name is a
                          /* Note: this doesn't work if name is a
                             static member!  FIXME */
                             static member!  FIXME */
                          write_exp_elt_opcode (UNOP_ADDR);
                          write_exp_elt_opcode (UNOP_ADDR);
                          write_exp_elt_opcode (STRUCTOP_MPTR); }
                          write_exp_elt_opcode (STRUCTOP_MPTR); }
        ;
        ;
exp     :       exp ARROW '*' exp
exp     :       exp ARROW '*' exp
                        { write_exp_elt_opcode (STRUCTOP_MPTR); }
                        { write_exp_elt_opcode (STRUCTOP_MPTR); }
        ;
        ;
exp     :       exp '.' name
exp     :       exp '.' name
                        { write_exp_elt_opcode (STRUCTOP_STRUCT);
                        { write_exp_elt_opcode (STRUCTOP_STRUCT);
                          write_exp_string ($3);
                          write_exp_string ($3);
                          write_exp_elt_opcode (STRUCTOP_STRUCT); }
                          write_exp_elt_opcode (STRUCTOP_STRUCT); }
        ;
        ;
exp     :       exp '.' qualified_name
exp     :       exp '.' qualified_name
                        { /* exp.type::name becomes exp.*(&type::name) */
                        { /* exp.type::name becomes exp.*(&type::name) */
                          /* Note: this doesn't work if name is a
                          /* Note: this doesn't work if name is a
                             static member!  FIXME */
                             static member!  FIXME */
                          write_exp_elt_opcode (UNOP_ADDR);
                          write_exp_elt_opcode (UNOP_ADDR);
                          write_exp_elt_opcode (STRUCTOP_MEMBER); }
                          write_exp_elt_opcode (STRUCTOP_MEMBER); }
        ;
        ;
exp     :       exp '.' '*' exp
exp     :       exp '.' '*' exp
                        { write_exp_elt_opcode (STRUCTOP_MEMBER); }
                        { write_exp_elt_opcode (STRUCTOP_MEMBER); }
        ;
        ;
exp     :       exp '[' exp1 ']'
exp     :       exp '[' exp1 ']'
                        { write_exp_elt_opcode (BINOP_SUBSCRIPT); }
                        { write_exp_elt_opcode (BINOP_SUBSCRIPT); }
        ;
        ;
/*
/*
 * The rules below parse ObjC message calls of the form:
 * The rules below parse ObjC message calls of the form:
 *      '[' target selector {':' argument}* ']'
 *      '[' target selector {':' argument}* ']'
 */
 */
exp     :       '[' TYPENAME
exp     :       '[' TYPENAME
                        {
                        {
                          CORE_ADDR class;
                          CORE_ADDR class;
                          class = lookup_objc_class (parse_gdbarch,
                          class = lookup_objc_class (parse_gdbarch,
                                                     copy_name ($2.stoken));
                                                     copy_name ($2.stoken));
                          if (class == 0)
                          if (class == 0)
                            error ("%s is not an ObjC Class",
                            error ("%s is not an ObjC Class",
                                   copy_name ($2.stoken));
                                   copy_name ($2.stoken));
                          write_exp_elt_opcode (OP_LONG);
                          write_exp_elt_opcode (OP_LONG);
                          write_exp_elt_type (parse_type->builtin_int);
                          write_exp_elt_type (parse_type->builtin_int);
                          write_exp_elt_longcst ((LONGEST) class);
                          write_exp_elt_longcst ((LONGEST) class);
                          write_exp_elt_opcode (OP_LONG);
                          write_exp_elt_opcode (OP_LONG);
                          start_msglist();
                          start_msglist();
                        }
                        }
                msglist ']'
                msglist ']'
                        { write_exp_elt_opcode (OP_OBJC_MSGCALL);
                        { write_exp_elt_opcode (OP_OBJC_MSGCALL);
                          end_msglist();
                          end_msglist();
                          write_exp_elt_opcode (OP_OBJC_MSGCALL);
                          write_exp_elt_opcode (OP_OBJC_MSGCALL);
                        }
                        }
        ;
        ;
exp     :       '[' CLASSNAME
exp     :       '[' CLASSNAME
                        {
                        {
                          write_exp_elt_opcode (OP_LONG);
                          write_exp_elt_opcode (OP_LONG);
                          write_exp_elt_type (parse_type->builtin_int);
                          write_exp_elt_type (parse_type->builtin_int);
                          write_exp_elt_longcst ((LONGEST) $2.class);
                          write_exp_elt_longcst ((LONGEST) $2.class);
                          write_exp_elt_opcode (OP_LONG);
                          write_exp_elt_opcode (OP_LONG);
                          start_msglist();
                          start_msglist();
                        }
                        }
                msglist ']'
                msglist ']'
                        { write_exp_elt_opcode (OP_OBJC_MSGCALL);
                        { write_exp_elt_opcode (OP_OBJC_MSGCALL);
                          end_msglist();
                          end_msglist();
                          write_exp_elt_opcode (OP_OBJC_MSGCALL);
                          write_exp_elt_opcode (OP_OBJC_MSGCALL);
                        }
                        }
        ;
        ;
exp     :       '[' exp
exp     :       '[' exp
                        { start_msglist(); }
                        { start_msglist(); }
                msglist ']'
                msglist ']'
                        { write_exp_elt_opcode (OP_OBJC_MSGCALL);
                        { write_exp_elt_opcode (OP_OBJC_MSGCALL);
                          end_msglist();
                          end_msglist();
                          write_exp_elt_opcode (OP_OBJC_MSGCALL);
                          write_exp_elt_opcode (OP_OBJC_MSGCALL);
                        }
                        }
        ;
        ;
msglist :       name
msglist :       name
                        { add_msglist(&$1, 0); }
                        { add_msglist(&$1, 0); }
        |       msgarglist
        |       msgarglist
        ;
        ;
msgarglist :    msgarg
msgarglist :    msgarg
        |       msgarglist msgarg
        |       msgarglist msgarg
        ;
        ;
msgarg  :       name ':' exp
msgarg  :       name ':' exp
                        { add_msglist(&$1, 1); }
                        { add_msglist(&$1, 1); }
        |       ':' exp /* Unnamed arg.  */
        |       ':' exp /* Unnamed arg.  */
                        { add_msglist(0, 1);   }
                        { add_msglist(0, 1);   }
        |       ',' exp /* Variable number of args.  */
        |       ',' exp /* Variable number of args.  */
                        { add_msglist(0, 0);   }
                        { add_msglist(0, 0);   }
        ;
        ;
exp     :       exp '('
exp     :       exp '('
                        /* This is to save the value of arglist_len
                        /* This is to save the value of arglist_len
                           being accumulated by an outer function call.  */
                           being accumulated by an outer function call.  */
                        { start_arglist (); }
                        { start_arglist (); }
                arglist ')'     %prec ARROW
                arglist ')'     %prec ARROW
                        { write_exp_elt_opcode (OP_FUNCALL);
                        { write_exp_elt_opcode (OP_FUNCALL);
                          write_exp_elt_longcst ((LONGEST) end_arglist ());
                          write_exp_elt_longcst ((LONGEST) end_arglist ());
                          write_exp_elt_opcode (OP_FUNCALL); }
                          write_exp_elt_opcode (OP_FUNCALL); }
        ;
        ;
lcurly  :       '{'
lcurly  :       '{'
                        { start_arglist (); }
                        { start_arglist (); }
        ;
        ;
arglist :
arglist :
        ;
        ;
arglist :       exp
arglist :       exp
                        { arglist_len = 1; }
                        { arglist_len = 1; }
        ;
        ;
arglist :       arglist ',' exp   %prec ABOVE_COMMA
arglist :       arglist ',' exp   %prec ABOVE_COMMA
                        { arglist_len++; }
                        { arglist_len++; }
        ;
        ;
rcurly  :       '}'
rcurly  :       '}'
                        { $$ = end_arglist () - 1; }
                        { $$ = end_arglist () - 1; }
        ;
        ;
exp     :       lcurly arglist rcurly   %prec ARROW
exp     :       lcurly arglist rcurly   %prec ARROW
                        { write_exp_elt_opcode (OP_ARRAY);
                        { write_exp_elt_opcode (OP_ARRAY);
                          write_exp_elt_longcst ((LONGEST) 0);
                          write_exp_elt_longcst ((LONGEST) 0);
                          write_exp_elt_longcst ((LONGEST) $3);
                          write_exp_elt_longcst ((LONGEST) $3);
                          write_exp_elt_opcode (OP_ARRAY); }
                          write_exp_elt_opcode (OP_ARRAY); }
        ;
        ;
exp     :       lcurly type rcurly exp  %prec UNARY
exp     :       lcurly type rcurly exp  %prec UNARY
                        { write_exp_elt_opcode (UNOP_MEMVAL);
                        { write_exp_elt_opcode (UNOP_MEMVAL);
                          write_exp_elt_type ($2);
                          write_exp_elt_type ($2);
                          write_exp_elt_opcode (UNOP_MEMVAL); }
                          write_exp_elt_opcode (UNOP_MEMVAL); }
        ;
        ;
exp     :       '(' type ')' exp  %prec UNARY
exp     :       '(' type ')' exp  %prec UNARY
                        { write_exp_elt_opcode (UNOP_CAST);
                        { write_exp_elt_opcode (UNOP_CAST);
                          write_exp_elt_type ($2);
                          write_exp_elt_type ($2);
                          write_exp_elt_opcode (UNOP_CAST); }
                          write_exp_elt_opcode (UNOP_CAST); }
        ;
        ;
exp     :       '(' exp1 ')'
exp     :       '(' exp1 ')'
                        { }
                        { }
        ;
        ;
/* Binary operators in order of decreasing precedence.  */
/* Binary operators in order of decreasing precedence.  */
exp     :       exp '@' exp
exp     :       exp '@' exp
                        { write_exp_elt_opcode (BINOP_REPEAT); }
                        { write_exp_elt_opcode (BINOP_REPEAT); }
        ;
        ;
exp     :       exp '*' exp
exp     :       exp '*' exp
                        { write_exp_elt_opcode (BINOP_MUL); }
                        { write_exp_elt_opcode (BINOP_MUL); }
        ;
        ;
exp     :       exp '/' exp
exp     :       exp '/' exp
                        { write_exp_elt_opcode (BINOP_DIV); }
                        { write_exp_elt_opcode (BINOP_DIV); }
        ;
        ;
exp     :       exp '%' exp
exp     :       exp '%' exp
                        { write_exp_elt_opcode (BINOP_REM); }
                        { write_exp_elt_opcode (BINOP_REM); }
        ;
        ;
exp     :       exp '+' exp
exp     :       exp '+' exp
                        { write_exp_elt_opcode (BINOP_ADD); }
                        { write_exp_elt_opcode (BINOP_ADD); }
        ;
        ;
exp     :       exp '-' exp
exp     :       exp '-' exp
                        { write_exp_elt_opcode (BINOP_SUB); }
                        { write_exp_elt_opcode (BINOP_SUB); }
        ;
        ;
exp     :       exp LSH exp
exp     :       exp LSH exp
                        { write_exp_elt_opcode (BINOP_LSH); }
                        { write_exp_elt_opcode (BINOP_LSH); }
        ;
        ;
exp     :       exp RSH exp
exp     :       exp RSH exp
                        { write_exp_elt_opcode (BINOP_RSH); }
                        { write_exp_elt_opcode (BINOP_RSH); }
        ;
        ;
exp     :       exp EQUAL exp
exp     :       exp EQUAL exp
                        { write_exp_elt_opcode (BINOP_EQUAL); }
                        { write_exp_elt_opcode (BINOP_EQUAL); }
        ;
        ;
exp     :       exp NOTEQUAL exp
exp     :       exp NOTEQUAL exp
                        { write_exp_elt_opcode (BINOP_NOTEQUAL); }
                        { write_exp_elt_opcode (BINOP_NOTEQUAL); }
        ;
        ;
exp     :       exp LEQ exp
exp     :       exp LEQ exp
                        { write_exp_elt_opcode (BINOP_LEQ); }
                        { write_exp_elt_opcode (BINOP_LEQ); }
        ;
        ;
exp     :       exp GEQ exp
exp     :       exp GEQ exp
                        { write_exp_elt_opcode (BINOP_GEQ); }
                        { write_exp_elt_opcode (BINOP_GEQ); }
        ;
        ;
exp     :       exp '<' exp
exp     :       exp '<' exp
                        { write_exp_elt_opcode (BINOP_LESS); }
                        { write_exp_elt_opcode (BINOP_LESS); }
        ;
        ;
exp     :       exp '>' exp
exp     :       exp '>' exp
                        { write_exp_elt_opcode (BINOP_GTR); }
                        { write_exp_elt_opcode (BINOP_GTR); }
        ;
        ;
exp     :       exp '&' exp
exp     :       exp '&' exp
                        { write_exp_elt_opcode (BINOP_BITWISE_AND); }
                        { write_exp_elt_opcode (BINOP_BITWISE_AND); }
        ;
        ;
exp     :       exp '^' exp
exp     :       exp '^' exp
                        { write_exp_elt_opcode (BINOP_BITWISE_XOR); }
                        { write_exp_elt_opcode (BINOP_BITWISE_XOR); }
        ;
        ;
exp     :       exp '|' exp
exp     :       exp '|' exp
                        { write_exp_elt_opcode (BINOP_BITWISE_IOR); }
                        { write_exp_elt_opcode (BINOP_BITWISE_IOR); }
        ;
        ;
exp     :       exp ANDAND exp
exp     :       exp ANDAND exp
                        { write_exp_elt_opcode (BINOP_LOGICAL_AND); }
                        { write_exp_elt_opcode (BINOP_LOGICAL_AND); }
        ;
        ;
exp     :       exp OROR exp
exp     :       exp OROR exp
                        { write_exp_elt_opcode (BINOP_LOGICAL_OR); }
                        { write_exp_elt_opcode (BINOP_LOGICAL_OR); }
        ;
        ;
exp     :       exp '?' exp ':' exp     %prec '?'
exp     :       exp '?' exp ':' exp     %prec '?'
                        { write_exp_elt_opcode (TERNOP_COND); }
                        { write_exp_elt_opcode (TERNOP_COND); }
        ;
        ;
exp     :       exp '=' exp
exp     :       exp '=' exp
                        { write_exp_elt_opcode (BINOP_ASSIGN); }
                        { write_exp_elt_opcode (BINOP_ASSIGN); }
        ;
        ;
exp     :       exp ASSIGN_MODIFY exp
exp     :       exp ASSIGN_MODIFY exp
                        { write_exp_elt_opcode (BINOP_ASSIGN_MODIFY);
                        { write_exp_elt_opcode (BINOP_ASSIGN_MODIFY);
                          write_exp_elt_opcode ($2);
                          write_exp_elt_opcode ($2);
                          write_exp_elt_opcode (BINOP_ASSIGN_MODIFY); }
                          write_exp_elt_opcode (BINOP_ASSIGN_MODIFY); }
        ;
        ;
exp     :       INT
exp     :       INT
                        { write_exp_elt_opcode (OP_LONG);
                        { write_exp_elt_opcode (OP_LONG);
                          write_exp_elt_type ($1.type);
                          write_exp_elt_type ($1.type);
                          write_exp_elt_longcst ((LONGEST)($1.val));
                          write_exp_elt_longcst ((LONGEST)($1.val));
                          write_exp_elt_opcode (OP_LONG); }
                          write_exp_elt_opcode (OP_LONG); }
        ;
        ;
exp     :       NAME_OR_INT
exp     :       NAME_OR_INT
                        { YYSTYPE val;
                        { YYSTYPE val;
                          parse_number ($1.stoken.ptr, $1.stoken.length, 0, &val);
                          parse_number ($1.stoken.ptr, $1.stoken.length, 0, &val);
                          write_exp_elt_opcode (OP_LONG);
                          write_exp_elt_opcode (OP_LONG);
                          write_exp_elt_type (val.typed_val_int.type);
                          write_exp_elt_type (val.typed_val_int.type);
                          write_exp_elt_longcst ((LONGEST)val.typed_val_int.val);
                          write_exp_elt_longcst ((LONGEST)val.typed_val_int.val);
                          write_exp_elt_opcode (OP_LONG);
                          write_exp_elt_opcode (OP_LONG);
                        }
                        }
        ;
        ;
exp     :       FLOAT
exp     :       FLOAT
                        { write_exp_elt_opcode (OP_DOUBLE);
                        { write_exp_elt_opcode (OP_DOUBLE);
                          write_exp_elt_type ($1.type);
                          write_exp_elt_type ($1.type);
                          write_exp_elt_dblcst ($1.dval);
                          write_exp_elt_dblcst ($1.dval);
                          write_exp_elt_opcode (OP_DOUBLE); }
                          write_exp_elt_opcode (OP_DOUBLE); }
        ;
        ;
exp     :       variable
exp     :       variable
        ;
        ;
exp     :       VARIABLE
exp     :       VARIABLE
                        /* Already written by write_dollar_variable.  */
                        /* Already written by write_dollar_variable.  */
        ;
        ;
exp     :       SELECTOR
exp     :       SELECTOR
                        {
                        {
                          write_exp_elt_opcode (OP_OBJC_SELECTOR);
                          write_exp_elt_opcode (OP_OBJC_SELECTOR);
                          write_exp_string ($1);
                          write_exp_string ($1);
                          write_exp_elt_opcode (OP_OBJC_SELECTOR); }
                          write_exp_elt_opcode (OP_OBJC_SELECTOR); }
        ;
        ;
exp     :       SIZEOF '(' type ')'     %prec UNARY
exp     :       SIZEOF '(' type ')'     %prec UNARY
                        { write_exp_elt_opcode (OP_LONG);
                        { write_exp_elt_opcode (OP_LONG);
                          write_exp_elt_type (parse_type->builtin_int);
                          write_exp_elt_type (parse_type->builtin_int);
                          CHECK_TYPEDEF ($3);
                          CHECK_TYPEDEF ($3);
                          write_exp_elt_longcst ((LONGEST) TYPE_LENGTH ($3));
                          write_exp_elt_longcst ((LONGEST) TYPE_LENGTH ($3));
                          write_exp_elt_opcode (OP_LONG); }
                          write_exp_elt_opcode (OP_LONG); }
        ;
        ;
exp     :       STRING
exp     :       STRING
                        { /* C strings are converted into array
                        { /* C strings are converted into array
                             constants with an explicit null byte
                             constants with an explicit null byte
                             added at the end.  Thus the array upper
                             added at the end.  Thus the array upper
                             bound is the string length.  There is no
                             bound is the string length.  There is no
                             such thing in C as a completely empty
                             such thing in C as a completely empty
                             string.  */
                             string.  */
                          char *sp = $1.ptr; int count = $1.length;
                          char *sp = $1.ptr; int count = $1.length;
                          while (count-- > 0)
                          while (count-- > 0)
                            {
                            {
                              write_exp_elt_opcode (OP_LONG);
                              write_exp_elt_opcode (OP_LONG);
                              write_exp_elt_type (parse_type->builtin_char);
                              write_exp_elt_type (parse_type->builtin_char);
                              write_exp_elt_longcst ((LONGEST)(*sp++));
                              write_exp_elt_longcst ((LONGEST)(*sp++));
                              write_exp_elt_opcode (OP_LONG);
                              write_exp_elt_opcode (OP_LONG);
                            }
                            }
                          write_exp_elt_opcode (OP_LONG);
                          write_exp_elt_opcode (OP_LONG);
                          write_exp_elt_type (parse_type->builtin_char);
                          write_exp_elt_type (parse_type->builtin_char);
                          write_exp_elt_longcst ((LONGEST)'\0');
                          write_exp_elt_longcst ((LONGEST)'\0');
                          write_exp_elt_opcode (OP_LONG);
                          write_exp_elt_opcode (OP_LONG);
                          write_exp_elt_opcode (OP_ARRAY);
                          write_exp_elt_opcode (OP_ARRAY);
                          write_exp_elt_longcst ((LONGEST) 0);
                          write_exp_elt_longcst ((LONGEST) 0);
                          write_exp_elt_longcst ((LONGEST) ($1.length));
                          write_exp_elt_longcst ((LONGEST) ($1.length));
                          write_exp_elt_opcode (OP_ARRAY); }
                          write_exp_elt_opcode (OP_ARRAY); }
        ;
        ;
exp     :       NSSTRING        /* ObjC NextStep NSString constant
exp     :       NSSTRING        /* ObjC NextStep NSString constant
                                 * of the form '@' '"' string '"'.
                                 * of the form '@' '"' string '"'.
                                 */
                                 */
                        { write_exp_elt_opcode (OP_OBJC_NSSTRING);
                        { write_exp_elt_opcode (OP_OBJC_NSSTRING);
                          write_exp_string ($1);
                          write_exp_string ($1);
                          write_exp_elt_opcode (OP_OBJC_NSSTRING); }
                          write_exp_elt_opcode (OP_OBJC_NSSTRING); }
        ;
        ;
block   :       BLOCKNAME
block   :       BLOCKNAME
                        {
                        {
                          if ($1.sym != 0)
                          if ($1.sym != 0)
                              $$ = SYMBOL_BLOCK_VALUE ($1.sym);
                              $$ = SYMBOL_BLOCK_VALUE ($1.sym);
                          else
                          else
                            {
                            {
                              struct symtab *tem =
                              struct symtab *tem =
                                  lookup_symtab (copy_name ($1.stoken));
                                  lookup_symtab (copy_name ($1.stoken));
                              if (tem)
                              if (tem)
                                $$ = BLOCKVECTOR_BLOCK (BLOCKVECTOR (tem), STATIC_BLOCK);
                                $$ = BLOCKVECTOR_BLOCK (BLOCKVECTOR (tem), STATIC_BLOCK);
                              else
                              else
                                error ("No file or function \"%s\".",
                                error ("No file or function \"%s\".",
                                       copy_name ($1.stoken));
                                       copy_name ($1.stoken));
                            }
                            }
                        }
                        }
        ;
        ;
block   :       block COLONCOLON name
block   :       block COLONCOLON name
                        { struct symbol *tem
                        { struct symbol *tem
                            = lookup_symbol (copy_name ($3), $1,
                            = lookup_symbol (copy_name ($3), $1,
                                             VAR_DOMAIN, (int *) NULL);
                                             VAR_DOMAIN, (int *) NULL);
                          if (!tem || SYMBOL_CLASS (tem) != LOC_BLOCK)
                          if (!tem || SYMBOL_CLASS (tem) != LOC_BLOCK)
                            error ("No function \"%s\" in specified context.",
                            error ("No function \"%s\" in specified context.",
                                   copy_name ($3));
                                   copy_name ($3));
                          $$ = SYMBOL_BLOCK_VALUE (tem); }
                          $$ = SYMBOL_BLOCK_VALUE (tem); }
        ;
        ;
variable:       block COLONCOLON name
variable:       block COLONCOLON name
                        { struct symbol *sym;
                        { struct symbol *sym;
                          sym = lookup_symbol (copy_name ($3), $1,
                          sym = lookup_symbol (copy_name ($3), $1,
                                               VAR_DOMAIN, (int *) NULL);
                                               VAR_DOMAIN, (int *) NULL);
                          if (sym == 0)
                          if (sym == 0)
                            error ("No symbol \"%s\" in specified context.",
                            error ("No symbol \"%s\" in specified context.",
                                   copy_name ($3));
                                   copy_name ($3));
                          write_exp_elt_opcode (OP_VAR_VALUE);
                          write_exp_elt_opcode (OP_VAR_VALUE);
                          /* block_found is set by lookup_symbol.  */
                          /* block_found is set by lookup_symbol.  */
                          write_exp_elt_block (block_found);
                          write_exp_elt_block (block_found);
                          write_exp_elt_sym (sym);
                          write_exp_elt_sym (sym);
                          write_exp_elt_opcode (OP_VAR_VALUE); }
                          write_exp_elt_opcode (OP_VAR_VALUE); }
        ;
        ;
qualified_name: typebase COLONCOLON name
qualified_name: typebase COLONCOLON name
                        {
                        {
                          struct type *type = $1;
                          struct type *type = $1;
                          if (TYPE_CODE (type) != TYPE_CODE_STRUCT
                          if (TYPE_CODE (type) != TYPE_CODE_STRUCT
                              && TYPE_CODE (type) != TYPE_CODE_UNION)
                              && TYPE_CODE (type) != TYPE_CODE_UNION)
                            error ("`%s' is not defined as an aggregate type.",
                            error ("`%s' is not defined as an aggregate type.",
                                   TYPE_NAME (type));
                                   TYPE_NAME (type));
                          write_exp_elt_opcode (OP_SCOPE);
                          write_exp_elt_opcode (OP_SCOPE);
                          write_exp_elt_type (type);
                          write_exp_elt_type (type);
                          write_exp_string ($3);
                          write_exp_string ($3);
                          write_exp_elt_opcode (OP_SCOPE);
                          write_exp_elt_opcode (OP_SCOPE);
                        }
                        }
        |       typebase COLONCOLON '~' name
        |       typebase COLONCOLON '~' name
                        {
                        {
                          struct type *type = $1;
                          struct type *type = $1;
                          struct stoken tmp_token;
                          struct stoken tmp_token;
                          if (TYPE_CODE (type) != TYPE_CODE_STRUCT
                          if (TYPE_CODE (type) != TYPE_CODE_STRUCT
                              && TYPE_CODE (type) != TYPE_CODE_UNION)
                              && TYPE_CODE (type) != TYPE_CODE_UNION)
                            error ("`%s' is not defined as an aggregate type.",
                            error ("`%s' is not defined as an aggregate type.",
                                   TYPE_NAME (type));
                                   TYPE_NAME (type));
                          if (strcmp (type_name_no_tag (type), $4.ptr) != 0)
                          if (strcmp (type_name_no_tag (type), $4.ptr) != 0)
                            error ("invalid destructor `%s::~%s'",
                            error ("invalid destructor `%s::~%s'",
                                   type_name_no_tag (type), $4.ptr);
                                   type_name_no_tag (type), $4.ptr);
                          tmp_token.ptr = (char*) alloca ($4.length + 2);
                          tmp_token.ptr = (char*) alloca ($4.length + 2);
                          tmp_token.length = $4.length + 1;
                          tmp_token.length = $4.length + 1;
                          tmp_token.ptr[0] = '~';
                          tmp_token.ptr[0] = '~';
                          memcpy (tmp_token.ptr+1, $4.ptr, $4.length);
                          memcpy (tmp_token.ptr+1, $4.ptr, $4.length);
                          tmp_token.ptr[tmp_token.length] = 0;
                          tmp_token.ptr[tmp_token.length] = 0;
                          write_exp_elt_opcode (OP_SCOPE);
                          write_exp_elt_opcode (OP_SCOPE);
                          write_exp_elt_type (type);
                          write_exp_elt_type (type);
                          write_exp_string (tmp_token);
                          write_exp_string (tmp_token);
                          write_exp_elt_opcode (OP_SCOPE);
                          write_exp_elt_opcode (OP_SCOPE);
                        }
                        }
        ;
        ;
variable:       qualified_name
variable:       qualified_name
        |       COLONCOLON name
        |       COLONCOLON name
                        {
                        {
                          char *name = copy_name ($2);
                          char *name = copy_name ($2);
                          struct symbol *sym;
                          struct symbol *sym;
                          struct minimal_symbol *msymbol;
                          struct minimal_symbol *msymbol;
                          sym =
                          sym =
                            lookup_symbol (name, (const struct block *) NULL,
                            lookup_symbol (name, (const struct block *) NULL,
                                           VAR_DOMAIN, (int *) NULL);
                                           VAR_DOMAIN, (int *) NULL);
                          if (sym)
                          if (sym)
                            {
                            {
                              write_exp_elt_opcode (OP_VAR_VALUE);
                              write_exp_elt_opcode (OP_VAR_VALUE);
                              write_exp_elt_block (NULL);
                              write_exp_elt_block (NULL);
                              write_exp_elt_sym (sym);
                              write_exp_elt_sym (sym);
                              write_exp_elt_opcode (OP_VAR_VALUE);
                              write_exp_elt_opcode (OP_VAR_VALUE);
                              break;
                              break;
                            }
                            }
                          msymbol = lookup_minimal_symbol (name, NULL, NULL);
                          msymbol = lookup_minimal_symbol (name, NULL, NULL);
                          if (msymbol != NULL)
                          if (msymbol != NULL)
                            write_exp_msymbol (msymbol);
                            write_exp_msymbol (msymbol);
                          else if (!have_full_symbols () && !have_partial_symbols ())
                          else if (!have_full_symbols () && !have_partial_symbols ())
                            error ("No symbol table is loaded.  Use the \"file\" command.");
                            error ("No symbol table is loaded.  Use the \"file\" command.");
                          else
                          else
                            error ("No symbol \"%s\" in current context.", name);
                            error ("No symbol \"%s\" in current context.", name);
                        }
                        }
        ;
        ;
variable:       name_not_typename
variable:       name_not_typename
                        { struct symbol *sym = $1.sym;
                        { struct symbol *sym = $1.sym;
                          if (sym)
                          if (sym)
                            {
                            {
                              if (symbol_read_needs_frame (sym))
                              if (symbol_read_needs_frame (sym))
                                {
                                {
                                  if (innermost_block == 0 ||
                                  if (innermost_block == 0 ||
                                      contained_in (block_found,
                                      contained_in (block_found,
                                                    innermost_block))
                                                    innermost_block))
                                    innermost_block = block_found;
                                    innermost_block = block_found;
                                }
                                }
                              write_exp_elt_opcode (OP_VAR_VALUE);
                              write_exp_elt_opcode (OP_VAR_VALUE);
                              /* We want to use the selected frame, not
                              /* We want to use the selected frame, not
                                 another more inner frame which happens to
                                 another more inner frame which happens to
                                 be in the same block.  */
                                 be in the same block.  */
                              write_exp_elt_block (NULL);
                              write_exp_elt_block (NULL);
                              write_exp_elt_sym (sym);
                              write_exp_elt_sym (sym);
                              write_exp_elt_opcode (OP_VAR_VALUE);
                              write_exp_elt_opcode (OP_VAR_VALUE);
                            }
                            }
                          else if ($1.is_a_field_of_this)
                          else if ($1.is_a_field_of_this)
                            {
                            {
                              /* C++/ObjC: it hangs off of `this'/'self'.
                              /* C++/ObjC: it hangs off of `this'/'self'.
                                 Must not inadvertently convert from a
                                 Must not inadvertently convert from a
                                 method call to data ref.  */
                                 method call to data ref.  */
                              if (innermost_block == 0 ||
                              if (innermost_block == 0 ||
                                  contained_in (block_found, innermost_block))
                                  contained_in (block_found, innermost_block))
                                innermost_block = block_found;
                                innermost_block = block_found;
                              write_exp_elt_opcode (OP_OBJC_SELF);
                              write_exp_elt_opcode (OP_OBJC_SELF);
                              write_exp_elt_opcode (OP_OBJC_SELF);
                              write_exp_elt_opcode (OP_OBJC_SELF);
                              write_exp_elt_opcode (STRUCTOP_PTR);
                              write_exp_elt_opcode (STRUCTOP_PTR);
                              write_exp_string ($1.stoken);
                              write_exp_string ($1.stoken);
                              write_exp_elt_opcode (STRUCTOP_PTR);
                              write_exp_elt_opcode (STRUCTOP_PTR);
                            }
                            }
                          else
                          else
                            {
                            {
                              struct minimal_symbol *msymbol;
                              struct minimal_symbol *msymbol;
                              char *arg = copy_name ($1.stoken);
                              char *arg = copy_name ($1.stoken);
                              msymbol =
                              msymbol =
                                lookup_minimal_symbol (arg, NULL, NULL);
                                lookup_minimal_symbol (arg, NULL, NULL);
                              if (msymbol != NULL)
                              if (msymbol != NULL)
                                write_exp_msymbol (msymbol);
                                write_exp_msymbol (msymbol);
                              else if (!have_full_symbols () &&
                              else if (!have_full_symbols () &&
                                       !have_partial_symbols ())
                                       !have_partial_symbols ())
                                error ("No symbol table is loaded.  Use the \"file\" command.");
                                error ("No symbol table is loaded.  Use the \"file\" command.");
                              else
                              else
                                error ("No symbol \"%s\" in current context.",
                                error ("No symbol \"%s\" in current context.",
                                       copy_name ($1.stoken));
                                       copy_name ($1.stoken));
                            }
                            }
                        }
                        }
        ;
        ;
ptype   :       typebase
ptype   :       typebase
        /* "const" and "volatile" are curently ignored.  A type
        /* "const" and "volatile" are curently ignored.  A type
           qualifier before the type is currently handled in the
           qualifier before the type is currently handled in the
           typebase rule.  The reason for recognizing these here
           typebase rule.  The reason for recognizing these here
           (shift/reduce conflicts) might be obsolete now that some
           (shift/reduce conflicts) might be obsolete now that some
           pointer to member rules have been deleted.  */
           pointer to member rules have been deleted.  */
        |       typebase CONST_KEYWORD
        |       typebase CONST_KEYWORD
        |       typebase VOLATILE_KEYWORD
        |       typebase VOLATILE_KEYWORD
        |       typebase abs_decl
        |       typebase abs_decl
                { $$ = follow_types ($1); }
                { $$ = follow_types ($1); }
        |       typebase CONST_KEYWORD abs_decl
        |       typebase CONST_KEYWORD abs_decl
                { $$ = follow_types ($1); }
                { $$ = follow_types ($1); }
        |       typebase VOLATILE_KEYWORD abs_decl
        |       typebase VOLATILE_KEYWORD abs_decl
                { $$ = follow_types ($1); }
                { $$ = follow_types ($1); }
        ;
        ;
abs_decl:       '*'
abs_decl:       '*'
                        { push_type (tp_pointer); $$ = 0; }
                        { push_type (tp_pointer); $$ = 0; }
        |       '*' abs_decl
        |       '*' abs_decl
                        { push_type (tp_pointer); $$ = $2; }
                        { push_type (tp_pointer); $$ = $2; }
        |       '&'
        |       '&'
                        { push_type (tp_reference); $$ = 0; }
                        { push_type (tp_reference); $$ = 0; }
        |       '&' abs_decl
        |       '&' abs_decl
                        { push_type (tp_reference); $$ = $2; }
                        { push_type (tp_reference); $$ = $2; }
        |       direct_abs_decl
        |       direct_abs_decl
        ;
        ;
direct_abs_decl: '(' abs_decl ')'
direct_abs_decl: '(' abs_decl ')'
                        { $$ = $2; }
                        { $$ = $2; }
        |       direct_abs_decl array_mod
        |       direct_abs_decl array_mod
                        {
                        {
                          push_type_int ($2);
                          push_type_int ($2);
                          push_type (tp_array);
                          push_type (tp_array);
                        }
                        }
        |       array_mod
        |       array_mod
                        {
                        {
                          push_type_int ($1);
                          push_type_int ($1);
                          push_type (tp_array);
                          push_type (tp_array);
                          $$ = 0;
                          $$ = 0;
                        }
                        }
        |       direct_abs_decl func_mod
        |       direct_abs_decl func_mod
                        { push_type (tp_function); }
                        { push_type (tp_function); }
        |       func_mod
        |       func_mod
                        { push_type (tp_function); }
                        { push_type (tp_function); }
        ;
        ;
array_mod:      '[' ']'
array_mod:      '[' ']'
                        { $$ = -1; }
                        { $$ = -1; }
        |       '[' INT ']'
        |       '[' INT ']'
                        { $$ = $2.val; }
                        { $$ = $2.val; }
        ;
        ;
func_mod:       '(' ')'
func_mod:       '(' ')'
                        { $$ = 0; }
                        { $$ = 0; }
        |       '(' nonempty_typelist ')'
        |       '(' nonempty_typelist ')'
                        { free ($2); $$ = 0; }
                        { free ($2); $$ = 0; }
        ;
        ;
/* We used to try to recognize more pointer to member types here, but
/* We used to try to recognize more pointer to member types here, but
   that didn't work (shift/reduce conflicts meant that these rules
   that didn't work (shift/reduce conflicts meant that these rules
   never got executed).  The problem is that
   never got executed).  The problem is that
     int (foo::bar::baz::bizzle)
     int (foo::bar::baz::bizzle)
   is a function type but
   is a function type but
     int (foo::bar::baz::bizzle::*)
     int (foo::bar::baz::bizzle::*)
   is a pointer to member type.  Stroustrup loses again!  */
   is a pointer to member type.  Stroustrup loses again!  */
type    :       ptype
type    :       ptype
        ;
        ;
typebase  /* Implements (approximately): (type-qualifier)* type-specifier.  */
typebase  /* Implements (approximately): (type-qualifier)* type-specifier.  */
        :       TYPENAME
        :       TYPENAME
                        { $$ = $1.type; }
                        { $$ = $1.type; }
        |       CLASSNAME
        |       CLASSNAME
                        {
                        {
                          if ($1.type == NULL)
                          if ($1.type == NULL)
                            error ("No symbol \"%s\" in current context.",
                            error ("No symbol \"%s\" in current context.",
                                   copy_name($1.stoken));
                                   copy_name($1.stoken));
                          else
                          else
                            $$ = $1.type;
                            $$ = $1.type;
                        }
                        }
        |       INT_KEYWORD
        |       INT_KEYWORD
                        { $$ = parse_type->builtin_int; }
                        { $$ = parse_type->builtin_int; }
        |       LONG
        |       LONG
                        { $$ = parse_type->builtin_long; }
                        { $$ = parse_type->builtin_long; }
        |       SHORT
        |       SHORT
                        { $$ = parse_type->builtin_short; }
                        { $$ = parse_type->builtin_short; }
        |       LONG INT_KEYWORD
        |       LONG INT_KEYWORD
                        { $$ = parse_type->builtin_long; }
                        { $$ = parse_type->builtin_long; }
        |       UNSIGNED LONG INT_KEYWORD
        |       UNSIGNED LONG INT_KEYWORD
                        { $$ = parse_type->builtin_unsigned_long; }
                        { $$ = parse_type->builtin_unsigned_long; }
        |       LONG LONG
        |       LONG LONG
                        { $$ = parse_type->builtin_long_long; }
                        { $$ = parse_type->builtin_long_long; }
        |       LONG LONG INT_KEYWORD
        |       LONG LONG INT_KEYWORD
                        { $$ = parse_type->builtin_long_long; }
                        { $$ = parse_type->builtin_long_long; }
        |       UNSIGNED LONG LONG
        |       UNSIGNED LONG LONG
                        { $$ = parse_type->builtin_unsigned_long_long; }
                        { $$ = parse_type->builtin_unsigned_long_long; }
        |       UNSIGNED LONG LONG INT_KEYWORD
        |       UNSIGNED LONG LONG INT_KEYWORD
                        { $$ = parse_type->builtin_unsigned_long_long; }
                        { $$ = parse_type->builtin_unsigned_long_long; }
        |       SHORT INT_KEYWORD
        |       SHORT INT_KEYWORD
                        { $$ = parse_type->builtin_short; }
                        { $$ = parse_type->builtin_short; }
        |       UNSIGNED SHORT INT_KEYWORD
        |       UNSIGNED SHORT INT_KEYWORD
                        { $$ = parse_type->builtin_unsigned_short; }
                        { $$ = parse_type->builtin_unsigned_short; }
        |       DOUBLE_KEYWORD
        |       DOUBLE_KEYWORD
                        { $$ = parse_type->builtin_double; }
                        { $$ = parse_type->builtin_double; }
        |       LONG DOUBLE_KEYWORD
        |       LONG DOUBLE_KEYWORD
                        { $$ = parse_type->builtin_long_double; }
                        { $$ = parse_type->builtin_long_double; }
        |       STRUCT name
        |       STRUCT name
                        { $$ = lookup_struct (copy_name ($2),
                        { $$ = lookup_struct (copy_name ($2),
                                              expression_context_block); }
                                              expression_context_block); }
        |       CLASS name
        |       CLASS name
                        { $$ = lookup_struct (copy_name ($2),
                        { $$ = lookup_struct (copy_name ($2),
                                              expression_context_block); }
                                              expression_context_block); }
        |       UNION name
        |       UNION name
                        { $$ = lookup_union (copy_name ($2),
                        { $$ = lookup_union (copy_name ($2),
                                             expression_context_block); }
                                             expression_context_block); }
        |       ENUM name
        |       ENUM name
                        { $$ = lookup_enum (copy_name ($2),
                        { $$ = lookup_enum (copy_name ($2),
                                            expression_context_block); }
                                            expression_context_block); }
        |       UNSIGNED typename
        |       UNSIGNED typename
                        { $$ = lookup_unsigned_typename (parse_language,
                        { $$ = lookup_unsigned_typename (parse_language,
                                                         parse_gdbarch,
                                                         parse_gdbarch,
                                                         TYPE_NAME($2.type)); }
                                                         TYPE_NAME($2.type)); }
        |       UNSIGNED
        |       UNSIGNED
                        { $$ = parse_type->builtin_unsigned_int; }
                        { $$ = parse_type->builtin_unsigned_int; }
        |       SIGNED_KEYWORD typename
        |       SIGNED_KEYWORD typename
                        { $$ = lookup_signed_typename (parse_language,
                        { $$ = lookup_signed_typename (parse_language,
                                                       parse_gdbarch,
                                                       parse_gdbarch,
                                                       TYPE_NAME($2.type)); }
                                                       TYPE_NAME($2.type)); }
        |       SIGNED_KEYWORD
        |       SIGNED_KEYWORD
                        { $$ = parse_type->builtin_int; }
                        { $$ = parse_type->builtin_int; }
        |       TEMPLATE name '<' type '>'
        |       TEMPLATE name '<' type '>'
                        { $$ = lookup_template_type(copy_name($2), $4,
                        { $$ = lookup_template_type(copy_name($2), $4,
                                                    expression_context_block);
                                                    expression_context_block);
                        }
                        }
        /* "const" and "volatile" are curently ignored.  A type
        /* "const" and "volatile" are curently ignored.  A type
           qualifier after the type is handled in the ptype rule.  I
           qualifier after the type is handled in the ptype rule.  I
           think these could be too.  */
           think these could be too.  */
        |       CONST_KEYWORD typebase { $$ = $2; }
        |       CONST_KEYWORD typebase { $$ = $2; }
        |       VOLATILE_KEYWORD typebase { $$ = $2; }
        |       VOLATILE_KEYWORD typebase { $$ = $2; }
        ;
        ;
typename:       TYPENAME
typename:       TYPENAME
        |       INT_KEYWORD
        |       INT_KEYWORD
                {
                {
                  $$.stoken.ptr = "int";
                  $$.stoken.ptr = "int";
                  $$.stoken.length = 3;
                  $$.stoken.length = 3;
                  $$.type = parse_type->builtin_int;
                  $$.type = parse_type->builtin_int;
                }
                }
        |       LONG
        |       LONG
                {
                {
                  $$.stoken.ptr = "long";
                  $$.stoken.ptr = "long";
                  $$.stoken.length = 4;
                  $$.stoken.length = 4;
                  $$.type = parse_type->builtin_long;
                  $$.type = parse_type->builtin_long;
                }
                }
        |       SHORT
        |       SHORT
                {
                {
                  $$.stoken.ptr = "short";
                  $$.stoken.ptr = "short";
                  $$.stoken.length = 5;
                  $$.stoken.length = 5;
                  $$.type = parse_type->builtin_short;
                  $$.type = parse_type->builtin_short;
                }
                }
        ;
        ;
nonempty_typelist
nonempty_typelist
        :       type
        :       type
                { $$ = (struct type **) malloc (sizeof (struct type *) * 2);
                { $$ = (struct type **) malloc (sizeof (struct type *) * 2);
                  $$[0] = 1;    /* Number of types in vector.  */
                  $$[0] = 1;    /* Number of types in vector.  */
                  $$[1] = $1;
                  $$[1] = $1;
                }
                }
        |       nonempty_typelist ',' type
        |       nonempty_typelist ',' type
                { int len = sizeof (struct type *) * (++($1[0]) + 1);
                { int len = sizeof (struct type *) * (++($1[0]) + 1);
                  $$ = (struct type **) realloc ((char *) $1, len);
                  $$ = (struct type **) realloc ((char *) $1, len);
                  $$[$$[0]] = $3;
                  $$[$$[0]] = $3;
                }
                }
        ;
        ;
name    :       NAME        { $$ = $1.stoken; }
name    :       NAME        { $$ = $1.stoken; }
        |       BLOCKNAME   { $$ = $1.stoken; }
        |       BLOCKNAME   { $$ = $1.stoken; }
        |       TYPENAME    { $$ = $1.stoken; }
        |       TYPENAME    { $$ = $1.stoken; }
        |       CLASSNAME   { $$ = $1.stoken; }
        |       CLASSNAME   { $$ = $1.stoken; }
        |       NAME_OR_INT { $$ = $1.stoken; }
        |       NAME_OR_INT { $$ = $1.stoken; }
        ;
        ;
name_not_typename :     NAME
name_not_typename :     NAME
        |       BLOCKNAME
        |       BLOCKNAME
/* These would be useful if name_not_typename was useful, but it is
/* These would be useful if name_not_typename was useful, but it is
   just a fake for "variable", so these cause reduce/reduce conflicts
   just a fake for "variable", so these cause reduce/reduce conflicts
   because the parser can't tell whether NAME_OR_INT is a
   because the parser can't tell whether NAME_OR_INT is a
   name_not_typename (=variable, =exp) or just an exp.  If
   name_not_typename (=variable, =exp) or just an exp.  If
   name_not_typename was ever used in an lvalue context where only a
   name_not_typename was ever used in an lvalue context where only a
   name could occur, this might be useful.  */
   name could occur, this might be useful.  */
/*      | NAME_OR_INT */
/*      | NAME_OR_INT */
        ;
        ;
%%
%%
/* Take care of parsing a number (anything that starts with a digit).
/* Take care of parsing a number (anything that starts with a digit).
   Set yylval and return the token type; update lexptr.  LEN is the
   Set yylval and return the token type; update lexptr.  LEN is the
   number of characters in it.  */
   number of characters in it.  */
/*** Needs some error checking for the float case.  ***/
/*** Needs some error checking for the float case.  ***/
static int
static int
parse_number (p, len, parsed_float, putithere)
parse_number (p, len, parsed_float, putithere)
     char *p;
     char *p;
     int len;
     int len;
     int parsed_float;
     int parsed_float;
     YYSTYPE *putithere;
     YYSTYPE *putithere;
{
{
  /* FIXME: Shouldn't these be unsigned?  We don't deal with negative
  /* FIXME: Shouldn't these be unsigned?  We don't deal with negative
     values here, and we do kind of silly things like cast to
     values here, and we do kind of silly things like cast to
     unsigned.  */
     unsigned.  */
  LONGEST n = 0;
  LONGEST n = 0;
  LONGEST prevn = 0;
  LONGEST prevn = 0;
  unsigned LONGEST un;
  unsigned LONGEST un;
  int i = 0;
  int i = 0;
  int c;
  int c;
  int base = input_radix;
  int base = input_radix;
  int unsigned_p = 0;
  int unsigned_p = 0;
  /* Number of "L" suffixes encountered.  */
  /* Number of "L" suffixes encountered.  */
  int long_p = 0;
  int long_p = 0;
  /* We have found a "L" or "U" suffix.  */
  /* We have found a "L" or "U" suffix.  */
  int found_suffix = 0;
  int found_suffix = 0;
  unsigned LONGEST high_bit;
  unsigned LONGEST high_bit;
  struct type *signed_type;
  struct type *signed_type;
  struct type *unsigned_type;
  struct type *unsigned_type;
  if (parsed_float)
  if (parsed_float)
    {
    {
      char c;
      char c;
      /* It's a float since it contains a point or an exponent.  */
      /* It's a float since it contains a point or an exponent.  */
      sscanf (p, "%" DOUBLEST_SCAN_FORMAT "%c",
      sscanf (p, "%" DOUBLEST_SCAN_FORMAT "%c",
              &putithere->typed_val_float.dval, &c);
              &putithere->typed_val_float.dval, &c);
      /* See if it has `f' or `l' suffix (float or long double).  */
      /* See if it has `f' or `l' suffix (float or long double).  */
      c = tolower (p[len - 1]);
      c = tolower (p[len - 1]);
      if (c == 'f')
      if (c == 'f')
        putithere->typed_val_float.type = parse_type->builtin_float;
        putithere->typed_val_float.type = parse_type->builtin_float;
      else if (c == 'l')
      else if (c == 'l')
        putithere->typed_val_float.type = parse_type->builtin_long_double;
        putithere->typed_val_float.type = parse_type->builtin_long_double;
      else if (isdigit (c) || c == '.')
      else if (isdigit (c) || c == '.')
        putithere->typed_val_float.type = parse_type->builtin_double;
        putithere->typed_val_float.type = parse_type->builtin_double;
      else
      else
        return ERROR;
        return ERROR;
      return FLOAT;
      return FLOAT;
    }
    }
  /* Handle base-switching prefixes 0x, 0t, 0d, and 0.  */
  /* Handle base-switching prefixes 0x, 0t, 0d, and 0.  */
  if (p[0] == '0')
  if (p[0] == '0')
    switch (p[1])
    switch (p[1])
      {
      {
      case 'x':
      case 'x':
      case 'X':
      case 'X':
        if (len >= 3)
        if (len >= 3)
          {
          {
            p += 2;
            p += 2;
            base = 16;
            base = 16;
            len -= 2;
            len -= 2;
          }
          }
        break;
        break;
      case 't':
      case 't':
      case 'T':
      case 'T':
      case 'd':
      case 'd':
      case 'D':
      case 'D':
        if (len >= 3)
        if (len >= 3)
          {
          {
            p += 2;
            p += 2;
            base = 10;
            base = 10;
            len -= 2;
            len -= 2;
          }
          }
        break;
        break;
      default:
      default:
        base = 8;
        base = 8;
        break;
        break;
      }
      }
  while (len-- > 0)
  while (len-- > 0)
    {
    {
      c = *p++;
      c = *p++;
      if (c >= 'A' && c <= 'Z')
      if (c >= 'A' && c <= 'Z')
        c += 'a' - 'A';
        c += 'a' - 'A';
      if (c != 'l' && c != 'u')
      if (c != 'l' && c != 'u')
        n *= base;
        n *= base;
      if (c >= '0' && c <= '9')
      if (c >= '0' && c <= '9')
        {
        {
          if (found_suffix)
          if (found_suffix)
            return ERROR;
            return ERROR;
          n += i = c - '0';
          n += i = c - '0';
        }
        }
      else
      else
        {
        {
          if (base > 10 && c >= 'a' && c <= 'f')
          if (base > 10 && c >= 'a' && c <= 'f')
            {
            {
              if (found_suffix)
              if (found_suffix)
                return ERROR;
                return ERROR;
              n += i = c - 'a' + 10;
              n += i = c - 'a' + 10;
            }
            }
          else if (c == 'l')
          else if (c == 'l')
            {
            {
              ++long_p;
              ++long_p;
              found_suffix = 1;
              found_suffix = 1;
            }
            }
          else if (c == 'u')
          else if (c == 'u')
            {
            {
              unsigned_p = 1;
              unsigned_p = 1;
              found_suffix = 1;
              found_suffix = 1;
            }
            }
          else
          else
            return ERROR;       /* Char not a digit.  */
            return ERROR;       /* Char not a digit.  */
        }
        }
      if (i >= base)
      if (i >= base)
        return ERROR;           /* Invalid digit in this base.  */
        return ERROR;           /* Invalid digit in this base.  */
      /* Portably test for overflow (only works for nonzero values, so
      /* Portably test for overflow (only works for nonzero values, so
         make a second check for zero).  FIXME: Can't we just make n
         make a second check for zero).  FIXME: Can't we just make n
         and prevn unsigned and avoid this?  */
         and prevn unsigned and avoid this?  */
      if (c != 'l' && c != 'u' && (prevn >= n) && n != 0)
      if (c != 'l' && c != 'u' && (prevn >= n) && n != 0)
        unsigned_p = 1;         /* Try something unsigned.  */
        unsigned_p = 1;         /* Try something unsigned.  */
      /* Portably test for unsigned overflow.
      /* Portably test for unsigned overflow.
         FIXME: This check is wrong; for example it doesn't find
         FIXME: This check is wrong; for example it doesn't find
         overflow on 0x123456789 when LONGEST is 32 bits.  */
         overflow on 0x123456789 when LONGEST is 32 bits.  */
      if (c != 'l' && c != 'u' && n != 0)
      if (c != 'l' && c != 'u' && n != 0)
        {
        {
          if ((unsigned_p && (unsigned LONGEST) prevn >= (unsigned LONGEST) n))
          if ((unsigned_p && (unsigned LONGEST) prevn >= (unsigned LONGEST) n))
            error ("Numeric constant too large.");
            error ("Numeric constant too large.");
        }
        }
      prevn = n;
      prevn = n;
    }
    }
  /* An integer constant is an int, a long, or a long long.  An L
  /* An integer constant is an int, a long, or a long long.  An L
     suffix forces it to be long; an LL suffix forces it to be long
     suffix forces it to be long; an LL suffix forces it to be long
     long.  If not forced to a larger size, it gets the first type of
     long.  If not forced to a larger size, it gets the first type of
     the above that it fits in.  To figure out whether it fits, we
     the above that it fits in.  To figure out whether it fits, we
     shift it right and see whether anything remains.  Note that we
     shift it right and see whether anything remains.  Note that we
     can't shift sizeof (LONGEST) * HOST_CHAR_BIT bits or more in one
     can't shift sizeof (LONGEST) * HOST_CHAR_BIT bits or more in one
     operation, because many compilers will warn about such a shift
     operation, because many compilers will warn about such a shift
     (which always produces a zero result).  Sometimes gdbarch_int_bit
     (which always produces a zero result).  Sometimes gdbarch_int_bit
     or gdbarch_long_int will be that big, sometimes not.  To deal with
     or gdbarch_long_int will be that big, sometimes not.  To deal with
     the case where it is we just always shift the value more than
     the case where it is we just always shift the value more than
     once, with fewer bits each time.  */
     once, with fewer bits each time.  */
  un = (unsigned LONGEST)n >> 2;
  un = (unsigned LONGEST)n >> 2;
  if (long_p == 0
  if (long_p == 0
      && (un >> (gdbarch_int_bit (parse_gdbarch) - 2)) == 0)
      && (un >> (gdbarch_int_bit (parse_gdbarch) - 2)) == 0)
    {
    {
      high_bit = ((unsigned LONGEST)1) << (gdbarch_int_bit (parse_gdbarch) - 1);
      high_bit = ((unsigned LONGEST)1) << (gdbarch_int_bit (parse_gdbarch) - 1);
      /* A large decimal (not hex or octal) constant (between INT_MAX
      /* A large decimal (not hex or octal) constant (between INT_MAX
         and UINT_MAX) is a long or unsigned long, according to ANSI,
         and UINT_MAX) is a long or unsigned long, according to ANSI,
         never an unsigned int, but this code treats it as unsigned
         never an unsigned int, but this code treats it as unsigned
         int.  This probably should be fixed.  GCC gives a warning on
         int.  This probably should be fixed.  GCC gives a warning on
         such constants.  */
         such constants.  */
      unsigned_type = parse_type->builtin_unsigned_int;
      unsigned_type = parse_type->builtin_unsigned_int;
      signed_type = parse_type->builtin_int;
      signed_type = parse_type->builtin_int;
    }
    }
  else if (long_p <= 1
  else if (long_p <= 1
           && (un >> (gdbarch_long_bit (parse_gdbarch) - 2)) == 0)
           && (un >> (gdbarch_long_bit (parse_gdbarch) - 2)) == 0)
    {
    {
      high_bit = ((unsigned LONGEST)1) << (gdbarch_long_bit (parse_gdbarch) - 1);
      high_bit = ((unsigned LONGEST)1) << (gdbarch_long_bit (parse_gdbarch) - 1);
      unsigned_type = parse_type->builtin_unsigned_long;
      unsigned_type = parse_type->builtin_unsigned_long;
      signed_type = parse_type->builtin_long;
      signed_type = parse_type->builtin_long;
    }
    }
  else
  else
    {
    {
      high_bit = (((unsigned LONGEST)1)
      high_bit = (((unsigned LONGEST)1)
                  << (gdbarch_long_long_bit (parse_gdbarch) - 32 - 1)
                  << (gdbarch_long_long_bit (parse_gdbarch) - 32 - 1)
                  << 16
                  << 16
                  << 16);
                  << 16);
      if (high_bit == 0)
      if (high_bit == 0)
        /* A long long does not fit in a LONGEST.  */
        /* A long long does not fit in a LONGEST.  */
        high_bit =
        high_bit =
          (unsigned LONGEST)1 << (sizeof (LONGEST) * HOST_CHAR_BIT - 1);
          (unsigned LONGEST)1 << (sizeof (LONGEST) * HOST_CHAR_BIT - 1);
      unsigned_type = parse_type->builtin_unsigned_long_long;
      unsigned_type = parse_type->builtin_unsigned_long_long;
      signed_type = parse_type->builtin_long_long;
      signed_type = parse_type->builtin_long_long;
    }
    }
   putithere->typed_val_int.val = n;
   putithere->typed_val_int.val = n;
   /* If the high bit of the worked out type is set then this number
   /* If the high bit of the worked out type is set then this number
      has to be unsigned.  */
      has to be unsigned.  */
   if (unsigned_p || (n & high_bit))
   if (unsigned_p || (n & high_bit))
     {
     {
       putithere->typed_val_int.type = unsigned_type;
       putithere->typed_val_int.type = unsigned_type;
     }
     }
   else
   else
     {
     {
       putithere->typed_val_int.type = signed_type;
       putithere->typed_val_int.type = signed_type;
     }
     }
   return INT;
   return INT;
}
}
struct token
struct token
{
{
  char *operator;
  char *operator;
  int token;
  int token;
  enum exp_opcode opcode;
  enum exp_opcode opcode;
};
};
static const struct token tokentab3[] =
static const struct token tokentab3[] =
  {
  {
    {">>=", ASSIGN_MODIFY, BINOP_RSH},
    {">>=", ASSIGN_MODIFY, BINOP_RSH},
    {"<<=", ASSIGN_MODIFY, BINOP_LSH}
    {"<<=", ASSIGN_MODIFY, BINOP_LSH}
  };
  };
static const struct token tokentab2[] =
static const struct token tokentab2[] =
  {
  {
    {"+=", ASSIGN_MODIFY, BINOP_ADD},
    {"+=", ASSIGN_MODIFY, BINOP_ADD},
    {"-=", ASSIGN_MODIFY, BINOP_SUB},
    {"-=", ASSIGN_MODIFY, BINOP_SUB},
    {"*=", ASSIGN_MODIFY, BINOP_MUL},
    {"*=", ASSIGN_MODIFY, BINOP_MUL},
    {"/=", ASSIGN_MODIFY, BINOP_DIV},
    {"/=", ASSIGN_MODIFY, BINOP_DIV},
    {"%=", ASSIGN_MODIFY, BINOP_REM},
    {"%=", ASSIGN_MODIFY, BINOP_REM},
    {"|=", ASSIGN_MODIFY, BINOP_BITWISE_IOR},
    {"|=", ASSIGN_MODIFY, BINOP_BITWISE_IOR},
    {"&=", ASSIGN_MODIFY, BINOP_BITWISE_AND},
    {"&=", ASSIGN_MODIFY, BINOP_BITWISE_AND},
    {"^=", ASSIGN_MODIFY, BINOP_BITWISE_XOR},
    {"^=", ASSIGN_MODIFY, BINOP_BITWISE_XOR},
    {"++", INCREMENT, BINOP_END},
    {"++", INCREMENT, BINOP_END},
    {"--", DECREMENT, BINOP_END},
    {"--", DECREMENT, BINOP_END},
    {"->", ARROW, BINOP_END},
    {"->", ARROW, BINOP_END},
    {"&&", ANDAND, BINOP_END},
    {"&&", ANDAND, BINOP_END},
    {"||", OROR, BINOP_END},
    {"||", OROR, BINOP_END},
    {"::", COLONCOLON, BINOP_END},
    {"::", COLONCOLON, BINOP_END},
    {"<<", LSH, BINOP_END},
    {"<<", LSH, BINOP_END},
    {">>", RSH, BINOP_END},
    {">>", RSH, BINOP_END},
    {"==", EQUAL, BINOP_END},
    {"==", EQUAL, BINOP_END},
    {"!=", NOTEQUAL, BINOP_END},
    {"!=", NOTEQUAL, BINOP_END},
    {"<=", LEQ, BINOP_END},
    {"<=", LEQ, BINOP_END},
    {">=", GEQ, BINOP_END}
    {">=", GEQ, BINOP_END}
  };
  };
/* Read one token, getting characters through lexptr.  */
/* Read one token, getting characters through lexptr.  */
static int
static int
yylex ()
yylex ()
{
{
  int c, tokchr;
  int c, tokchr;
  int namelen;
  int namelen;
  unsigned int i;
  unsigned int i;
  char *tokstart;
  char *tokstart;
  char *tokptr;
  char *tokptr;
  int tempbufindex;
  int tempbufindex;
  static char *tempbuf;
  static char *tempbuf;
  static int tempbufsize;
  static int tempbufsize;
 retry:
 retry:
  tokstart = lexptr;
  tokstart = lexptr;
  /* See if it is a special token of length 3.  */
  /* See if it is a special token of length 3.  */
  for (i = 0; i < sizeof tokentab3 / sizeof tokentab3[0]; i++)
  for (i = 0; i < sizeof tokentab3 / sizeof tokentab3[0]; i++)
    if (strncmp (tokstart, tokentab3[i].operator, 3) == 0)
    if (strncmp (tokstart, tokentab3[i].operator, 3) == 0)
      {
      {
        lexptr += 3;
        lexptr += 3;
        yylval.opcode = tokentab3[i].opcode;
        yylval.opcode = tokentab3[i].opcode;
        return tokentab3[i].token;
        return tokentab3[i].token;
      }
      }
  /* See if it is a special token of length 2.  */
  /* See if it is a special token of length 2.  */
  for (i = 0; i < sizeof tokentab2 / sizeof tokentab2[0]; i++)
  for (i = 0; i < sizeof tokentab2 / sizeof tokentab2[0]; i++)
    if (strncmp (tokstart, tokentab2[i].operator, 2) == 0)
    if (strncmp (tokstart, tokentab2[i].operator, 2) == 0)
      {
      {
        lexptr += 2;
        lexptr += 2;
        yylval.opcode = tokentab2[i].opcode;
        yylval.opcode = tokentab2[i].opcode;
        return tokentab2[i].token;
        return tokentab2[i].token;
      }
      }
  c = 0;
  c = 0;
  switch (tokchr = *tokstart)
  switch (tokchr = *tokstart)
    {
    {
    case 0:
    case 0:
      return 0;
      return 0;
    case ' ':
    case ' ':
    case '\t':
    case '\t':
    case '\n':
    case '\n':
      lexptr++;
      lexptr++;
      goto retry;
      goto retry;
    case '\'':
    case '\'':
      /* We either have a character constant ('0' or '\177' for
      /* We either have a character constant ('0' or '\177' for
         example) or we have a quoted symbol reference ('foo(int,int)'
         example) or we have a quoted symbol reference ('foo(int,int)'
         in C++ for example).  */
         in C++ for example).  */
      lexptr++;
      lexptr++;
      c = *lexptr++;
      c = *lexptr++;
      if (c == '\\')
      if (c == '\\')
        c = parse_escape (&lexptr);
        c = parse_escape (&lexptr);
      else if (c == '\'')
      else if (c == '\'')
        error ("Empty character constant.");
        error ("Empty character constant.");
      yylval.typed_val_int.val = c;
      yylval.typed_val_int.val = c;
      yylval.typed_val_int.type = parse_type->builtin_char;
      yylval.typed_val_int.type = parse_type->builtin_char;
      c = *lexptr++;
      c = *lexptr++;
      if (c != '\'')
      if (c != '\'')
        {
        {
          namelen = skip_quoted (tokstart) - tokstart;
          namelen = skip_quoted (tokstart) - tokstart;
          if (namelen > 2)
          if (namelen > 2)
            {
            {
              lexptr = tokstart + namelen;
              lexptr = tokstart + namelen;
              if (lexptr[-1] != '\'')
              if (lexptr[-1] != '\'')
                error ("Unmatched single quote.");
                error ("Unmatched single quote.");
              namelen -= 2;
              namelen -= 2;
              tokstart++;
              tokstart++;
              goto tryname;
              goto tryname;
            }
            }
          error ("Invalid character constant.");
          error ("Invalid character constant.");
        }
        }
      return INT;
      return INT;
    case '(':
    case '(':
      paren_depth++;
      paren_depth++;
      lexptr++;
      lexptr++;
      return '(';
      return '(';
    case ')':
    case ')':
      if (paren_depth == 0)
      if (paren_depth == 0)
        return 0;
        return 0;
      paren_depth--;
      paren_depth--;
      lexptr++;
      lexptr++;
      return ')';
      return ')';
    case ',':
    case ',':
      if (comma_terminates && paren_depth == 0)
      if (comma_terminates && paren_depth == 0)
        return 0;
        return 0;
      lexptr++;
      lexptr++;
      return ',';
      return ',';
    case '.':
    case '.':
      /* Might be a floating point number.  */
      /* Might be a floating point number.  */
      if (lexptr[1] < '0' || lexptr[1] > '9')
      if (lexptr[1] < '0' || lexptr[1] > '9')
        goto symbol;            /* Nope, must be a symbol.  */
        goto symbol;            /* Nope, must be a symbol.  */
      /* FALL THRU into number case.  */
      /* FALL THRU into number case.  */
    case '0':
    case '0':
    case '1':
    case '1':
    case '2':
    case '2':
    case '3':
    case '3':
    case '4':
    case '4':
    case '5':
    case '5':
    case '6':
    case '6':
    case '7':
    case '7':
    case '8':
    case '8':
    case '9':
    case '9':
      {
      {
        /* It's a number.  */
        /* It's a number.  */
        int got_dot = 0, got_e = 0, toktype = FLOAT;
        int got_dot = 0, got_e = 0, toktype = FLOAT;
        /* Initialize toktype to anything other than ERROR.  */
        /* Initialize toktype to anything other than ERROR.  */
        char *p = tokstart;
        char *p = tokstart;
        int hex = input_radix > 10;
        int hex = input_radix > 10;
        int local_radix = input_radix;
        int local_radix = input_radix;
        if (tokchr == '0' && (p[1] == 'x' || p[1] == 'X'))
        if (tokchr == '0' && (p[1] == 'x' || p[1] == 'X'))
          {
          {
            p += 2;
            p += 2;
            hex = 1;
            hex = 1;
            local_radix = 16;
            local_radix = 16;
          }
          }
        else if (tokchr == '0' && (p[1]=='t' || p[1]=='T' || p[1]=='d' || p[1]=='D'))
        else if (tokchr == '0' && (p[1]=='t' || p[1]=='T' || p[1]=='d' || p[1]=='D'))
          {
          {
            p += 2;
            p += 2;
            hex = 0;
            hex = 0;
            local_radix = 10;
            local_radix = 10;
          }
          }
        for (;; ++p)
        for (;; ++p)
          {
          {
            /* This test includes !hex because 'e' is a valid hex digit
            /* This test includes !hex because 'e' is a valid hex digit
               and thus does not indicate a floating point number when
               and thus does not indicate a floating point number when
               the radix is hex.  */
               the radix is hex.  */
            if (!hex && (*p == 'e' || *p == 'E'))
            if (!hex && (*p == 'e' || *p == 'E'))
              if (got_e)
              if (got_e)
                toktype = ERROR;        /* Only one 'e' in a float.  */
                toktype = ERROR;        /* Only one 'e' in a float.  */
              else
              else
                got_e = 1;
                got_e = 1;
            /* This test does not include !hex, because a '.' always
            /* This test does not include !hex, because a '.' always
               indicates a decimal floating point number regardless of
               indicates a decimal floating point number regardless of
               the radix.  */
               the radix.  */
            else if (*p == '.')
            else if (*p == '.')
              if (got_dot)
              if (got_dot)
                toktype = ERROR;        /* Only one '.' in a float.  */
                toktype = ERROR;        /* Only one '.' in a float.  */
              else
              else
                got_dot = 1;
                got_dot = 1;
            else if (got_e && (p[-1] == 'e' || p[-1] == 'E') &&
            else if (got_e && (p[-1] == 'e' || p[-1] == 'E') &&
                    (*p == '-' || *p == '+'))
                    (*p == '-' || *p == '+'))
              /* This is the sign of the exponent, not the end of the
              /* This is the sign of the exponent, not the end of the
                 number.  */
                 number.  */
              continue;
              continue;
            /* Always take decimal digits; parse_number handles radix
            /* Always take decimal digits; parse_number handles radix
               error.  */
               error.  */
            else if (*p >= '0' && *p <= '9')
            else if (*p >= '0' && *p <= '9')
              continue;
              continue;
            /* We will take letters only if hex is true, and only up
            /* We will take letters only if hex is true, and only up
               to what the input radix would permit.  FSF was content
               to what the input radix would permit.  FSF was content
               to rely on parse_number to validate; but it leaks.  */
               to rely on parse_number to validate; but it leaks.  */
            else if (*p >= 'a' && *p <= 'z')
            else if (*p >= 'a' && *p <= 'z')
              {
              {
                if (!hex || *p >= ('a' + local_radix - 10))
                if (!hex || *p >= ('a' + local_radix - 10))
                  toktype = ERROR;
                  toktype = ERROR;
              }
              }
            else if (*p >= 'A' && *p <= 'Z')
            else if (*p >= 'A' && *p <= 'Z')
              {
              {
                if (!hex || *p >= ('A' + local_radix - 10))
                if (!hex || *p >= ('A' + local_radix - 10))
                  toktype = ERROR;
                  toktype = ERROR;
              }
              }
            else break;
            else break;
          }
          }
        if (toktype != ERROR)
        if (toktype != ERROR)
          toktype = parse_number (tokstart, p - tokstart,
          toktype = parse_number (tokstart, p - tokstart,
                                  got_dot | got_e, &yylval);
                                  got_dot | got_e, &yylval);
        if (toktype == ERROR)
        if (toktype == ERROR)
          {
          {
            char *err_copy = (char *) alloca (p - tokstart + 1);
            char *err_copy = (char *) alloca (p - tokstart + 1);
            memcpy (err_copy, tokstart, p - tokstart);
            memcpy (err_copy, tokstart, p - tokstart);
            err_copy[p - tokstart] = 0;
            err_copy[p - tokstart] = 0;
            error ("Invalid number \"%s\".", err_copy);
            error ("Invalid number \"%s\".", err_copy);
          }
          }
        lexptr = p;
        lexptr = p;
        return toktype;
        return toktype;
      }
      }
    case '+':
    case '+':
    case '-':
    case '-':
    case '*':
    case '*':
    case '/':
    case '/':
    case '%':
    case '%':
    case '|':
    case '|':
    case '&':
    case '&':
    case '^':
    case '^':
    case '~':
    case '~':
    case '!':
    case '!':
#if 0
#if 0
    case '@':           /* Moved out below.  */
    case '@':           /* Moved out below.  */
#endif
#endif
    case '<':
    case '<':
    case '>':
    case '>':
    case '[':
    case '[':
    case ']':
    case ']':
    case '?':
    case '?':
    case ':':
    case ':':
    case '=':
    case '=':
    case '{':
    case '{':
    case '}':
    case '}':
    symbol:
    symbol:
      lexptr++;
      lexptr++;
      return tokchr;
      return tokchr;
    case '@':
    case '@':
      if (strncmp(tokstart, "@selector", 9) == 0)
      if (strncmp(tokstart, "@selector", 9) == 0)
        {
        {
          tokptr = strchr(tokstart, '(');
          tokptr = strchr(tokstart, '(');
          if (tokptr == NULL)
          if (tokptr == NULL)
            {
            {
              error ("Missing '(' in @selector(...)");
              error ("Missing '(' in @selector(...)");
            }
            }
          tempbufindex = 0;
          tempbufindex = 0;
          tokptr++;     /* Skip the '('.  */
          tokptr++;     /* Skip the '('.  */
          do {
          do {
            /* Grow the static temp buffer if necessary, including
            /* Grow the static temp buffer if necessary, including
               allocating the first one on demand.  */
               allocating the first one on demand.  */
            if (tempbufindex + 1 >= tempbufsize)
            if (tempbufindex + 1 >= tempbufsize)
              {
              {
                tempbuf = (char *) realloc (tempbuf, tempbufsize += 64);
                tempbuf = (char *) realloc (tempbuf, tempbufsize += 64);
              }
              }
            tempbuf[tempbufindex++] = *tokptr++;
            tempbuf[tempbufindex++] = *tokptr++;
          } while ((*tokptr != ')') && (*tokptr != '\0'));
          } while ((*tokptr != ')') && (*tokptr != '\0'));
          if (*tokptr++ != ')')
          if (*tokptr++ != ')')
            {
            {
              error ("Missing ')' in @selector(...)");
              error ("Missing ')' in @selector(...)");
            }
            }
          tempbuf[tempbufindex] = '\0';
          tempbuf[tempbufindex] = '\0';
          yylval.sval.ptr = tempbuf;
          yylval.sval.ptr = tempbuf;
          yylval.sval.length = tempbufindex;
          yylval.sval.length = tempbufindex;
          lexptr = tokptr;
          lexptr = tokptr;
          return SELECTOR;
          return SELECTOR;
        }
        }
      if (tokstart[1] != '"')
      if (tokstart[1] != '"')
        {
        {
          lexptr++;
          lexptr++;
          return tokchr;
          return tokchr;
        }
        }
      /* ObjC NextStep NSString constant: fall thru and parse like
      /* ObjC NextStep NSString constant: fall thru and parse like
         STRING.  */
         STRING.  */
      tokstart++;
      tokstart++;
    case '"':
    case '"':
      /* Build the gdb internal form of the input string in tempbuf,
      /* Build the gdb internal form of the input string in tempbuf,
         translating any standard C escape forms seen.  Note that the
         translating any standard C escape forms seen.  Note that the
         buffer is null byte terminated *only* for the convenience of
         buffer is null byte terminated *only* for the convenience of
         debugging gdb itself and printing the buffer contents when
         debugging gdb itself and printing the buffer contents when
         the buffer contains no embedded nulls.  Gdb does not depend
         the buffer contains no embedded nulls.  Gdb does not depend
         upon the buffer being null byte terminated, it uses the
         upon the buffer being null byte terminated, it uses the
         length string instead.  This allows gdb to handle C strings
         length string instead.  This allows gdb to handle C strings
         (as well as strings in other languages) with embedded null
         (as well as strings in other languages) with embedded null
         bytes.  */
         bytes.  */
      tokptr = ++tokstart;
      tokptr = ++tokstart;
      tempbufindex = 0;
      tempbufindex = 0;
      do {
      do {
        /* Grow the static temp buffer if necessary, including
        /* Grow the static temp buffer if necessary, including
           allocating the first one on demand.  */
           allocating the first one on demand.  */
        if (tempbufindex + 1 >= tempbufsize)
        if (tempbufindex + 1 >= tempbufsize)
          {
          {
            tempbuf = (char *) realloc (tempbuf, tempbufsize += 64);
            tempbuf = (char *) realloc (tempbuf, tempbufsize += 64);
          }
          }
        switch (*tokptr)
        switch (*tokptr)
          {
          {
          case '\0':
          case '\0':
          case '"':
          case '"':
            /* Do nothing, loop will terminate.  */
            /* Do nothing, loop will terminate.  */
            break;
            break;
          case '\\':
          case '\\':
            tokptr++;
            tokptr++;
            c = parse_escape (&tokptr);
            c = parse_escape (&tokptr);
            if (c == -1)
            if (c == -1)
              {
              {
                continue;
                continue;
              }
              }
            tempbuf[tempbufindex++] = c;
            tempbuf[tempbufindex++] = c;
            break;
            break;
          default:
          default:
            tempbuf[tempbufindex++] = *tokptr++;
            tempbuf[tempbufindex++] = *tokptr++;
            break;
            break;
          }
          }
      } while ((*tokptr != '"') && (*tokptr != '\0'));
      } while ((*tokptr != '"') && (*tokptr != '\0'));
      if (*tokptr++ != '"')
      if (*tokptr++ != '"')
        {
        {
          error ("Unterminated string in expression.");
          error ("Unterminated string in expression.");
        }
        }
      tempbuf[tempbufindex] = '\0';     /* See note above.  */
      tempbuf[tempbufindex] = '\0';     /* See note above.  */
      yylval.sval.ptr = tempbuf;
      yylval.sval.ptr = tempbuf;
      yylval.sval.length = tempbufindex;
      yylval.sval.length = tempbufindex;
      lexptr = tokptr;
      lexptr = tokptr;
      return (tokchr == '@' ? NSSTRING : STRING);
      return (tokchr == '@' ? NSSTRING : STRING);
    }
    }
  if (!(tokchr == '_' || tokchr == '$' ||
  if (!(tokchr == '_' || tokchr == '$' ||
       (tokchr >= 'a' && tokchr <= 'z') || (tokchr >= 'A' && tokchr <= 'Z')))
       (tokchr >= 'a' && tokchr <= 'z') || (tokchr >= 'A' && tokchr <= 'Z')))
    /* We must have come across a bad character (e.g. ';').  */
    /* We must have come across a bad character (e.g. ';').  */
    error ("Invalid character '%c' in expression.", c);
    error ("Invalid character '%c' in expression.", c);
  /* It's a name.  See how long it is.  */
  /* It's a name.  See how long it is.  */
  namelen = 0;
  namelen = 0;
  for (c = tokstart[namelen];
  for (c = tokstart[namelen];
       (c == '_' || c == '$' || (c >= '0' && c <= '9')
       (c == '_' || c == '$' || (c >= '0' && c <= '9')
        || (c >= 'a' && c <= 'z') || (c >= 'A' && c <= 'Z') || c == '<');)
        || (c >= 'a' && c <= 'z') || (c >= 'A' && c <= 'Z') || c == '<');)
    {
    {
       if (c == '<')
       if (c == '<')
         {
         {
           int i = namelen;
           int i = namelen;
           while (tokstart[++i] && tokstart[i] != '>');
           while (tokstart[++i] && tokstart[i] != '>');
           if (tokstart[i] == '>')
           if (tokstart[i] == '>')
             namelen = i;
             namelen = i;
          }
          }
       c = tokstart[++namelen];
       c = tokstart[++namelen];
     }
     }
  /* The token "if" terminates the expression and is NOT
  /* The token "if" terminates the expression and is NOT
     removed from the input stream.  */
     removed from the input stream.  */
  if (namelen == 2 && tokstart[0] == 'i' && tokstart[1] == 'f')
  if (namelen == 2 && tokstart[0] == 'i' && tokstart[1] == 'f')
    {
    {
      return 0;
      return 0;
    }
    }
  lexptr += namelen;
  lexptr += namelen;
  tryname:
  tryname:
  /* Catch specific keywords.  Should be done with a data structure.  */
  /* Catch specific keywords.  Should be done with a data structure.  */
  switch (namelen)
  switch (namelen)
    {
    {
    case 8:
    case 8:
      if (strncmp (tokstart, "unsigned", 8) == 0)
      if (strncmp (tokstart, "unsigned", 8) == 0)
        return UNSIGNED;
        return UNSIGNED;
      if (parse_language->la_language == language_cplus
      if (parse_language->la_language == language_cplus
          && strncmp (tokstart, "template", 8) == 0)
          && strncmp (tokstart, "template", 8) == 0)
        return TEMPLATE;
        return TEMPLATE;
      if (strncmp (tokstart, "volatile", 8) == 0)
      if (strncmp (tokstart, "volatile", 8) == 0)
        return VOLATILE_KEYWORD;
        return VOLATILE_KEYWORD;
      break;
      break;
    case 6:
    case 6:
      if (strncmp (tokstart, "struct", 6) == 0)
      if (strncmp (tokstart, "struct", 6) == 0)
        return STRUCT;
        return STRUCT;
      if (strncmp (tokstart, "signed", 6) == 0)
      if (strncmp (tokstart, "signed", 6) == 0)
        return SIGNED_KEYWORD;
        return SIGNED_KEYWORD;
      if (strncmp (tokstart, "sizeof", 6) == 0)
      if (strncmp (tokstart, "sizeof", 6) == 0)
        return SIZEOF;
        return SIZEOF;
      if (strncmp (tokstart, "double", 6) == 0)
      if (strncmp (tokstart, "double", 6) == 0)
        return DOUBLE_KEYWORD;
        return DOUBLE_KEYWORD;
      break;
      break;
    case 5:
    case 5:
      if ((parse_language->la_language == language_cplus)
      if ((parse_language->la_language == language_cplus)
          && strncmp (tokstart, "class", 5) == 0)
          && strncmp (tokstart, "class", 5) == 0)
        return CLASS;
        return CLASS;
      if (strncmp (tokstart, "union", 5) == 0)
      if (strncmp (tokstart, "union", 5) == 0)
        return UNION;
        return UNION;
      if (strncmp (tokstart, "short", 5) == 0)
      if (strncmp (tokstart, "short", 5) == 0)
        return SHORT;
        return SHORT;
      if (strncmp (tokstart, "const", 5) == 0)
      if (strncmp (tokstart, "const", 5) == 0)
        return CONST_KEYWORD;
        return CONST_KEYWORD;
      break;
      break;
    case 4:
    case 4:
      if (strncmp (tokstart, "enum", 4) == 0)
      if (strncmp (tokstart, "enum", 4) == 0)
        return ENUM;
        return ENUM;
      if (strncmp (tokstart, "long", 4) == 0)
      if (strncmp (tokstart, "long", 4) == 0)
        return LONG;
        return LONG;
      break;
      break;
    case 3:
    case 3:
      if (strncmp (tokstart, "int", 3) == 0)
      if (strncmp (tokstart, "int", 3) == 0)
        return INT_KEYWORD;
        return INT_KEYWORD;
      break;
      break;
    default:
    default:
      break;
      break;
    }
    }
  yylval.sval.ptr = tokstart;
  yylval.sval.ptr = tokstart;
  yylval.sval.length = namelen;
  yylval.sval.length = namelen;
  if (*tokstart == '$')
  if (*tokstart == '$')
    {
    {
      write_dollar_variable (yylval.sval);
      write_dollar_variable (yylval.sval);
      return VARIABLE;
      return VARIABLE;
    }
    }
  /* Use token-type BLOCKNAME for symbols that happen to be defined as
  /* Use token-type BLOCKNAME for symbols that happen to be defined as
     functions or symtabs.  If this is not so, then ...
     functions or symtabs.  If this is not so, then ...
     Use token-type TYPENAME for symbols that happen to be defined
     Use token-type TYPENAME for symbols that happen to be defined
     currently as names of types; NAME for other symbols.
     currently as names of types; NAME for other symbols.
     The caller is not constrained to care about the distinction.  */
     The caller is not constrained to care about the distinction.  */
  {
  {
    char *tmp = copy_name (yylval.sval);
    char *tmp = copy_name (yylval.sval);
    struct symbol *sym;
    struct symbol *sym;
    int is_a_field_of_this = 0, *need_this;
    int is_a_field_of_this = 0, *need_this;
    int hextype;
    int hextype;
    if (parse_language->la_language == language_cplus ||
    if (parse_language->la_language == language_cplus ||
        parse_language->la_language == language_objc)
        parse_language->la_language == language_objc)
      need_this = &is_a_field_of_this;
      need_this = &is_a_field_of_this;
    else
    else
      need_this = (int *) NULL;
      need_this = (int *) NULL;
    sym = lookup_symbol (tmp, expression_context_block,
    sym = lookup_symbol (tmp, expression_context_block,
                         VAR_DOMAIN,
                         VAR_DOMAIN,
                         need_this);
                         need_this);
    /* Call lookup_symtab, not lookup_partial_symtab, in case there
    /* Call lookup_symtab, not lookup_partial_symtab, in case there
       are no psymtabs (coff, xcoff, or some future change to blow
       are no psymtabs (coff, xcoff, or some future change to blow
       away the psymtabs once symbols are read).  */
       away the psymtabs once symbols are read).  */
    if ((sym && SYMBOL_CLASS (sym) == LOC_BLOCK) ||
    if ((sym && SYMBOL_CLASS (sym) == LOC_BLOCK) ||
        lookup_symtab (tmp))
        lookup_symtab (tmp))
      {
      {
        yylval.ssym.sym = sym;
        yylval.ssym.sym = sym;
        yylval.ssym.is_a_field_of_this = is_a_field_of_this;
        yylval.ssym.is_a_field_of_this = is_a_field_of_this;
        return BLOCKNAME;
        return BLOCKNAME;
      }
      }
    if (sym && SYMBOL_CLASS (sym) == LOC_TYPEDEF)
    if (sym && SYMBOL_CLASS (sym) == LOC_TYPEDEF)
        {
        {
#if 1
#if 1
          /* Despite the following flaw, we need to keep this code
          /* Despite the following flaw, we need to keep this code
             enabled.  Because we can get called from
             enabled.  Because we can get called from
             check_stub_method, if we don't handle nested types then
             check_stub_method, if we don't handle nested types then
             it screws many operations in any program which uses
             it screws many operations in any program which uses
             nested types.  */
             nested types.  */
          /* In "A::x", if x is a member function of A and there
          /* In "A::x", if x is a member function of A and there
             happens to be a type (nested or not, since the stabs
             happens to be a type (nested or not, since the stabs
             don't make that distinction) named x, then this code
             don't make that distinction) named x, then this code
             incorrectly thinks we are dealing with nested types
             incorrectly thinks we are dealing with nested types
             rather than a member function.  */
             rather than a member function.  */
          char *p;
          char *p;
          char *namestart;
          char *namestart;
          struct symbol *best_sym;
          struct symbol *best_sym;
          /* Look ahead to detect nested types.  This probably should
          /* Look ahead to detect nested types.  This probably should
             be done in the grammar, but trying seemed to introduce a
             be done in the grammar, but trying seemed to introduce a
             lot of shift/reduce and reduce/reduce conflicts.  It's
             lot of shift/reduce and reduce/reduce conflicts.  It's
             possible that it could be done, though.  Or perhaps a
             possible that it could be done, though.  Or perhaps a
             non-grammar, but less ad hoc, approach would work well.  */
             non-grammar, but less ad hoc, approach would work well.  */
          /* Since we do not currently have any way of distinguishing
          /* Since we do not currently have any way of distinguishing
             a nested type from a non-nested one (the stabs don't tell
             a nested type from a non-nested one (the stabs don't tell
             us whether a type is nested), we just ignore the
             us whether a type is nested), we just ignore the
             containing type.  */
             containing type.  */
          p = lexptr;
          p = lexptr;
          best_sym = sym;
          best_sym = sym;
          while (1)
          while (1)
            {
            {
              /* Skip whitespace.  */
              /* Skip whitespace.  */
              while (*p == ' ' || *p == '\t' || *p == '\n')
              while (*p == ' ' || *p == '\t' || *p == '\n')
                ++p;
                ++p;
              if (*p == ':' && p[1] == ':')
              if (*p == ':' && p[1] == ':')
                {
                {
                  /* Skip the `::'.  */
                  /* Skip the `::'.  */
                  p += 2;
                  p += 2;
                  /* Skip whitespace.  */
                  /* Skip whitespace.  */
                  while (*p == ' ' || *p == '\t' || *p == '\n')
                  while (*p == ' ' || *p == '\t' || *p == '\n')
                    ++p;
                    ++p;
                  namestart = p;
                  namestart = p;
                  while (*p == '_' || *p == '$' || (*p >= '0' && *p <= '9')
                  while (*p == '_' || *p == '$' || (*p >= '0' && *p <= '9')
                         || (*p >= 'a' && *p <= 'z')
                         || (*p >= 'a' && *p <= 'z')
                         || (*p >= 'A' && *p <= 'Z'))
                         || (*p >= 'A' && *p <= 'Z'))
                    ++p;
                    ++p;
                  if (p != namestart)
                  if (p != namestart)
                    {
                    {
                      struct symbol *cur_sym;
                      struct symbol *cur_sym;
                      /* As big as the whole rest of the expression,
                      /* As big as the whole rest of the expression,
                         which is at least big enough.  */
                         which is at least big enough.  */
                      char *ncopy = alloca (strlen (tmp) +
                      char *ncopy = alloca (strlen (tmp) +
                                            strlen (namestart) + 3);
                                            strlen (namestart) + 3);
                      char *tmp1;
                      char *tmp1;
                      tmp1 = ncopy;
                      tmp1 = ncopy;
                      memcpy (tmp1, tmp, strlen (tmp));
                      memcpy (tmp1, tmp, strlen (tmp));
                      tmp1 += strlen (tmp);
                      tmp1 += strlen (tmp);
                      memcpy (tmp1, "::", 2);
                      memcpy (tmp1, "::", 2);
                      tmp1 += 2;
                      tmp1 += 2;
                      memcpy (tmp1, namestart, p - namestart);
                      memcpy (tmp1, namestart, p - namestart);
                      tmp1[p - namestart] = '\0';
                      tmp1[p - namestart] = '\0';
                      cur_sym = lookup_symbol (ncopy,
                      cur_sym = lookup_symbol (ncopy,
                                               expression_context_block,
                                               expression_context_block,
                                               VAR_DOMAIN, (int *) NULL);
                                               VAR_DOMAIN, (int *) NULL);
                      if (cur_sym)
                      if (cur_sym)
                        {
                        {
                          if (SYMBOL_CLASS (cur_sym) == LOC_TYPEDEF)
                          if (SYMBOL_CLASS (cur_sym) == LOC_TYPEDEF)
                            {
                            {
                              best_sym = cur_sym;
                              best_sym = cur_sym;
                              lexptr = p;
                              lexptr = p;
                            }
                            }
                          else
                          else
                            break;
                            break;
                        }
                        }
                      else
                      else
                        break;
                        break;
                    }
                    }
                  else
                  else
                    break;
                    break;
                }
                }
              else
              else
                break;
                break;
            }
            }
          yylval.tsym.type = SYMBOL_TYPE (best_sym);
          yylval.tsym.type = SYMBOL_TYPE (best_sym);
#else /* not 0 */
#else /* not 0 */
          yylval.tsym.type = SYMBOL_TYPE (sym);
          yylval.tsym.type = SYMBOL_TYPE (sym);
#endif /* not 0 */
#endif /* not 0 */
          return TYPENAME;
          return TYPENAME;
        }
        }
    yylval.tsym.type
    yylval.tsym.type
      = language_lookup_primitive_type_by_name (parse_language,
      = language_lookup_primitive_type_by_name (parse_language,
                                                parse_gdbarch, tmp);
                                                parse_gdbarch, tmp);
    if (yylval.tsym.type != NULL)
    if (yylval.tsym.type != NULL)
      return TYPENAME;
      return TYPENAME;
    /* See if it's an ObjC classname.  */
    /* See if it's an ObjC classname.  */
    if (!sym)
    if (!sym)
      {
      {
        CORE_ADDR Class = lookup_objc_class (parse_gdbarch, tmp);
        CORE_ADDR Class = lookup_objc_class (parse_gdbarch, tmp);
        if (Class)
        if (Class)
          {
          {
            yylval.class.class = Class;
            yylval.class.class = Class;
            if ((sym = lookup_struct_typedef (tmp,
            if ((sym = lookup_struct_typedef (tmp,
                                              expression_context_block,
                                              expression_context_block,
                                              1)))
                                              1)))
              yylval.class.type = SYMBOL_TYPE (sym);
              yylval.class.type = SYMBOL_TYPE (sym);
            return CLASSNAME;
            return CLASSNAME;
          }
          }
      }
      }
    /* Input names that aren't symbols but ARE valid hex numbers,
    /* Input names that aren't symbols but ARE valid hex numbers,
       when the input radix permits them, can be names or numbers
       when the input radix permits them, can be names or numbers
       depending on the parse.  Note we support radixes > 16 here.  */
       depending on the parse.  Note we support radixes > 16 here.  */
    if (!sym &&
    if (!sym &&
        ((tokstart[0] >= 'a' && tokstart[0] < 'a' + input_radix - 10) ||
        ((tokstart[0] >= 'a' && tokstart[0] < 'a' + input_radix - 10) ||
         (tokstart[0] >= 'A' && tokstart[0] < 'A' + input_radix - 10)))
         (tokstart[0] >= 'A' && tokstart[0] < 'A' + input_radix - 10)))
      {
      {
        YYSTYPE newlval;        /* Its value is ignored.  */
        YYSTYPE newlval;        /* Its value is ignored.  */
        hextype = parse_number (tokstart, namelen, 0, &newlval);
        hextype = parse_number (tokstart, namelen, 0, &newlval);
        if (hextype == INT)
        if (hextype == INT)
          {
          {
            yylval.ssym.sym = sym;
            yylval.ssym.sym = sym;
            yylval.ssym.is_a_field_of_this = is_a_field_of_this;
            yylval.ssym.is_a_field_of_this = is_a_field_of_this;
            return NAME_OR_INT;
            return NAME_OR_INT;
          }
          }
      }
      }
    /* Any other kind of symbol.  */
    /* Any other kind of symbol.  */
    yylval.ssym.sym = sym;
    yylval.ssym.sym = sym;
    yylval.ssym.is_a_field_of_this = is_a_field_of_this;
    yylval.ssym.is_a_field_of_this = is_a_field_of_this;
    return NAME;
    return NAME;
  }
  }
}
}
void
void
yyerror (msg)
yyerror (msg)
     char *msg;
     char *msg;
{
{
  if (*lexptr == '\0')
  if (*lexptr == '\0')
    error("A %s near end of expression.",  (msg ? msg : "error"));
    error("A %s near end of expression.",  (msg ? msg : "error"));
  else
  else
    error ("A %s in expression, near `%s'.", (msg ? msg : "error"),
    error ("A %s in expression, near `%s'.", (msg ? msg : "error"),
           lexptr);
           lexptr);
}
}
 
 

powered by: WebSVN 2.1.0

© copyright 1999-2024 OpenCores.org, equivalent to Oliscience, all rights reserved. OpenCores®, registered trademark.