cplus-dem.c 124 KB
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/* Demangler for GNU C++
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   Copyright (C) 1989-2017 Free Software Foundation, Inc.
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   Written by James Clark (jjc@jclark.uucp)
   Rewritten by Fred Fish (fnf@cygnus.com) for ARM and Lucid demangling
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   Modified by Satish Pai (pai@apollo.hp.com) for HP demangling
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This file is part of the libiberty library.
Libiberty is free software; you can redistribute it and/or
modify it under the terms of the GNU Library General Public
License as published by the Free Software Foundation; either
version 2 of the License, or (at your option) any later version.

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In addition to the permissions in the GNU Library General Public
License, the Free Software Foundation gives you unlimited permission
to link the compiled version of this file into combinations with other
programs, and to distribute those combinations without any restriction
coming from the use of this file.  (The Library Public License
restrictions do apply in other respects; for example, they cover
modification of the file, and distribution when not linked into a
combined executable.)

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Libiberty is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
Library General Public License for more details.

You should have received a copy of the GNU Library General Public
License along with libiberty; see the file COPYING.LIB.  If
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not, write to the Free Software Foundation, Inc., 51 Franklin Street - Fifth Floor,
Boston, MA 02110-1301, USA.  */
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/* This file exports two functions; cplus_mangle_opname and cplus_demangle.

   This file imports xmalloc and xrealloc, which are like malloc and
   realloc except that they generate a fatal error if there is no
   available memory.  */

/* This file lives in both GCC and libiberty.  When making changes, please
   try not to break either.  */

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#ifdef HAVE_CONFIG_H
#include "config.h"
#endif

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#include "safe-ctype.h"

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#include <sys/types.h>
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#include <string.h>
#include <stdio.h>

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#ifdef HAVE_STDLIB_H
#include <stdlib.h>
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#else
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void * malloc ();
void * realloc ();
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#endif

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#ifdef HAVE_LIMITS_H
#include <limits.h>
#endif
#ifndef INT_MAX
# define INT_MAX       (int)(((unsigned int) ~0) >> 1)          /* 0x7FFFFFFF */ 
#endif

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#include <demangle.h>
#undef CURRENT_DEMANGLING_STYLE
#define CURRENT_DEMANGLING_STYLE work->options

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#include "libiberty.h"
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#define min(X,Y) (((X) < (Y)) ? (X) : (Y))

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/* A value at least one greater than the maximum number of characters
   that will be output when using the `%d' format with `printf'.  */
#define INTBUF_SIZE 32

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extern void fancy_abort (void) ATTRIBUTE_NORETURN;
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/* In order to allow a single demangler executable to demangle strings
   using various common values of CPLUS_MARKER, as well as any specific
   one set at compile time, we maintain a string containing all the
   commonly used ones, and check to see if the marker we are looking for
   is in that string.  CPLUS_MARKER is usually '$' on systems where the
   assembler can deal with that.  Where the assembler can't, it's usually
   '.' (but on many systems '.' is used for other things).  We put the
   current defined CPLUS_MARKER first (which defaults to '$'), followed
   by the next most common value, followed by an explicit '$' in case
   the value of CPLUS_MARKER is not '$'.

   We could avoid this if we could just get g++ to tell us what the actual
   cplus marker character is as part of the debug information, perhaps by
   ensuring that it is the character that terminates the gcc<n>_compiled
   marker symbol (FIXME).  */

#if !defined (CPLUS_MARKER)
#define CPLUS_MARKER '$'
#endif

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enum demangling_styles current_demangling_style = auto_demangling;
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static char cplus_markers[] = { CPLUS_MARKER, '.', '$', '\0' };

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static char char_str[2] = { '\000', '\000' };

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void
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set_cplus_marker_for_demangling (int ch)
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{
  cplus_markers[0] = ch;
}

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typedef struct string		/* Beware: these aren't required to be */
{				/*  '\0' terminated.  */
  char *b;			/* pointer to start of string */
  char *p;			/* pointer after last character */
  char *e;			/* pointer after end of allocated space */
} string;

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/* Stuff that is shared between sub-routines.
   Using a shared structure allows cplus_demangle to be reentrant.  */

struct work_stuff
{
  int options;
  char **typevec;
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  char **ktypevec;
  char **btypevec;
  int numk;
  int numb;
  int ksize;
  int bsize;
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  int ntypes;
  int typevec_size;
  int constructor;
  int destructor;
  int static_type;	/* A static member function */
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  int temp_start;       /* index in demangled to start of template args */
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  int type_quals;       /* The type qualifiers.  */
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  int dllimported;	/* Symbol imported from a PE DLL */
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  char **tmpl_argvec;   /* Template function arguments. */
  int ntmpl_args;       /* The number of template function arguments. */
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  int forgetting_types; /* Nonzero if we are not remembering the types
			   we see.  */
  string* previous_argument; /* The last function argument demangled.  */
  int nrepeats;         /* The number of times to repeat the previous
			   argument.  */
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  int *proctypevec;     /* Indices of currently processed remembered typevecs.  */
  int proctypevec_size;
  int nproctypes;
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};

#define PRINT_ANSI_QUALIFIERS (work -> options & DMGL_ANSI)
#define PRINT_ARG_TYPES       (work -> options & DMGL_PARAMS)

static const struct optable
{
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  const char *const in;
  const char *const out;
  const int flags;
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} optable[] = {
  {"nw",	  " new",	DMGL_ANSI},	/* new (1.92,	 ansi) */
  {"dl",	  " delete",	DMGL_ANSI},	/* new (1.92,	 ansi) */
  {"new",	  " new",	0},		/* old (1.91,	 and 1.x) */
  {"delete",	  " delete",	0},		/* old (1.91,	 and 1.x) */
  {"vn",	  " new []",	DMGL_ANSI},	/* GNU, pending ansi */
  {"vd",	  " delete []",	DMGL_ANSI},	/* GNU, pending ansi */
  {"as",	  "=",		DMGL_ANSI},	/* ansi */
  {"ne",	  "!=",		DMGL_ANSI},	/* old, ansi */
  {"eq",	  "==",		DMGL_ANSI},	/* old,	ansi */
  {"ge",	  ">=",		DMGL_ANSI},	/* old,	ansi */
  {"gt",	  ">",		DMGL_ANSI},	/* old,	ansi */
  {"le",	  "<=",		DMGL_ANSI},	/* old,	ansi */
  {"lt",	  "<",		DMGL_ANSI},	/* old,	ansi */
  {"plus",	  "+",		0},		/* old */
  {"pl",	  "+",		DMGL_ANSI},	/* ansi */
  {"apl",	  "+=",		DMGL_ANSI},	/* ansi */
  {"minus",	  "-",		0},		/* old */
  {"mi",	  "-",		DMGL_ANSI},	/* ansi */
  {"ami",	  "-=",		DMGL_ANSI},	/* ansi */
  {"mult",	  "*",		0},		/* old */
  {"ml",	  "*",		DMGL_ANSI},	/* ansi */
  {"amu",	  "*=",		DMGL_ANSI},	/* ansi (ARM/Lucid) */
  {"aml",	  "*=",		DMGL_ANSI},	/* ansi (GNU/g++) */
  {"convert",	  "+",		0},		/* old (unary +) */
  {"negate",	  "-",		0},		/* old (unary -) */
  {"trunc_mod",	  "%",		0},		/* old */
  {"md",	  "%",		DMGL_ANSI},	/* ansi */
  {"amd",	  "%=",		DMGL_ANSI},	/* ansi */
  {"trunc_div",	  "/",		0},		/* old */
  {"dv",	  "/",		DMGL_ANSI},	/* ansi */
  {"adv",	  "/=",		DMGL_ANSI},	/* ansi */
  {"truth_andif", "&&",		0},		/* old */
  {"aa",	  "&&",		DMGL_ANSI},	/* ansi */
  {"truth_orif",  "||",		0},		/* old */
  {"oo",	  "||",		DMGL_ANSI},	/* ansi */
  {"truth_not",	  "!",		0},		/* old */
  {"nt",	  "!",		DMGL_ANSI},	/* ansi */
  {"postincrement","++",	0},		/* old */
  {"pp",	  "++",		DMGL_ANSI},	/* ansi */
  {"postdecrement","--",	0},		/* old */
  {"mm",	  "--",		DMGL_ANSI},	/* ansi */
  {"bit_ior",	  "|",		0},		/* old */
  {"or",	  "|",		DMGL_ANSI},	/* ansi */
  {"aor",	  "|=",		DMGL_ANSI},	/* ansi */
  {"bit_xor",	  "^",		0},		/* old */
  {"er",	  "^",		DMGL_ANSI},	/* ansi */
  {"aer",	  "^=",		DMGL_ANSI},	/* ansi */
  {"bit_and",	  "&",		0},		/* old */
  {"ad",	  "&",		DMGL_ANSI},	/* ansi */
  {"aad",	  "&=",		DMGL_ANSI},	/* ansi */
  {"bit_not",	  "~",		0},		/* old */
  {"co",	  "~",		DMGL_ANSI},	/* ansi */
  {"call",	  "()",		0},		/* old */
  {"cl",	  "()",		DMGL_ANSI},	/* ansi */
  {"alshift",	  "<<",		0},		/* old */
  {"ls",	  "<<",		DMGL_ANSI},	/* ansi */
  {"als",	  "<<=",	DMGL_ANSI},	/* ansi */
  {"arshift",	  ">>",		0},		/* old */
  {"rs",	  ">>",		DMGL_ANSI},	/* ansi */
  {"ars",	  ">>=",	DMGL_ANSI},	/* ansi */
  {"component",	  "->",		0},		/* old */
  {"pt",	  "->",		DMGL_ANSI},	/* ansi; Lucid C++ form */
  {"rf",	  "->",		DMGL_ANSI},	/* ansi; ARM/GNU form */
  {"indirect",	  "*",		0},		/* old */
  {"method_call",  "->()",	0},		/* old */
  {"addr",	  "&",		0},		/* old (unary &) */
  {"array",	  "[]",		0},		/* old */
  {"vc",	  "[]",		DMGL_ANSI},	/* ansi */
  {"compound",	  ", ",		0},		/* old */
  {"cm",	  ", ",		DMGL_ANSI},	/* ansi */
  {"cond",	  "?:",		0},		/* old */
  {"cn",	  "?:",		DMGL_ANSI},	/* pseudo-ansi */
  {"max",	  ">?",		0},		/* old */
  {"mx",	  ">?",		DMGL_ANSI},	/* pseudo-ansi */
  {"min",	  "<?",		0},		/* old */
  {"mn",	  "<?",		DMGL_ANSI},	/* pseudo-ansi */
  {"nop",	  "",		0},		/* old (for operator=) */
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  {"rm",	  "->*",	DMGL_ANSI},	/* ansi */
  {"sz",          "sizeof ",    DMGL_ANSI}      /* pseudo-ansi */
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};

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/* These values are used to indicate the various type varieties.
   They are all non-zero so that they can be used as `success'
   values.  */
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typedef enum type_kind_t
{
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  tk_none,
  tk_pointer,
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  tk_reference,
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  tk_rvalue_reference,
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  tk_integral,
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  tk_bool,
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  tk_char,
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  tk_real
} type_kind_t;
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const struct demangler_engine libiberty_demanglers[] =
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{
  {
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    NO_DEMANGLING_STYLE_STRING,
    no_demangling,
    "Demangling disabled"
  }
  ,
  {
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    AUTO_DEMANGLING_STYLE_STRING,
      auto_demangling,
      "Automatic selection based on executable"
  }
  ,
  {
    GNU_DEMANGLING_STYLE_STRING,
      gnu_demangling,
      "GNU (g++) style demangling"
  }
  ,
  {
    LUCID_DEMANGLING_STYLE_STRING,
      lucid_demangling,
      "Lucid (lcc) style demangling"
  }
  ,
  {
    ARM_DEMANGLING_STYLE_STRING,
      arm_demangling,
      "ARM style demangling"
  }
  ,
  {
    HP_DEMANGLING_STYLE_STRING,
      hp_demangling,
      "HP (aCC) style demangling"
  }
  ,
  {
    EDG_DEMANGLING_STYLE_STRING,
      edg_demangling,
      "EDG style demangling"
  }
  ,
  {
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    GNU_V3_DEMANGLING_STYLE_STRING,
    gnu_v3_demangling,
    "GNU (g++) V3 ABI-style demangling"
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  }
  ,
  {
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    JAVA_DEMANGLING_STYLE_STRING,
    java_demangling,
    "Java style demangling"
  }
  ,
  {
    GNAT_DEMANGLING_STYLE_STRING,
    gnat_demangling,
    "GNAT style demangling"
  }
  ,
  {
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    DLANG_DEMANGLING_STYLE_STRING,
    dlang_demangling,
    "DLANG style demangling"
  }
  ,
  {
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    RUST_DEMANGLING_STYLE_STRING,
    rust_demangling,
    "Rust style demangling"
  }
  ,
  {
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    NULL, unknown_demangling, NULL
  }
};

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#define STRING_EMPTY(str)	((str) -> b == (str) -> p)
#define APPEND_BLANK(str)	{if (!STRING_EMPTY(str)) \
    string_append(str, " ");}
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#define LEN_STRING(str)         ( (STRING_EMPTY(str))?0:((str)->p - (str)->b))
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/* The scope separator appropriate for the language being demangled.  */
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#define SCOPE_STRING(work) ((work->options & DMGL_JAVA) ? "." : "::")
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#define ARM_VTABLE_STRING "__vtbl__"	/* Lucid/ARM virtual table prefix */
#define ARM_VTABLE_STRLEN 8		/* strlen (ARM_VTABLE_STRING) */

/* Prototypes for local functions */

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static void delete_work_stuff (struct work_stuff *);
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static void delete_non_B_K_work_stuff (struct work_stuff *);
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static char *mop_up (struct work_stuff *, string *, int);
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static void squangle_mop_up (struct work_stuff *);
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static void work_stuff_copy_to_from (struct work_stuff *, struct work_stuff *);
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#if 0
static int
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demangle_method_args (struct work_stuff *, const char **, string *);
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#endif

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static char *
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internal_cplus_demangle (struct work_stuff *, const char *);
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static int
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demangle_template_template_parm (struct work_stuff *work,
                                 const char **, string *);
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static int
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demangle_template (struct work_stuff *work, const char **, string *,
                   string *, int, int);
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static int
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arm_pt (struct work_stuff *, const char *, int, const char **,
        const char **);
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static int
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demangle_class_name (struct work_stuff *, const char **, string *);
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static int
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demangle_qualified (struct work_stuff *, const char **, string *,
                    int, int);
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static int demangle_class (struct work_stuff *, const char **, string *);
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static int demangle_fund_type (struct work_stuff *, const char **, string *);
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static int demangle_signature (struct work_stuff *, const char **, string *);
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static int demangle_prefix (struct work_stuff *, const char **, string *);
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static int gnu_special (struct work_stuff *, const char **, string *);
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static int arm_special (const char **, string *);
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static void string_need (string *, int);
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static void string_delete (string *);
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static void
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string_init (string *);
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static void string_clear (string *);
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#if 0
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static int string_empty (string *);
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#endif

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static void string_append (string *, const char *);
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static void string_appends (string *, string *);
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static void string_appendn (string *, const char *, int);
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static void string_prepend (string *, const char *);
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static void string_prependn (string *, const char *, int);
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static void string_append_template_idx (string *, int);
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static int get_count (const char **, int *);
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static int consume_count (const char **);
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static int consume_count_with_underscores (const char**);
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static int demangle_args (struct work_stuff *, const char **, string *);
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static int demangle_nested_args (struct work_stuff*, const char**, string*);
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static int do_type (struct work_stuff *, const char **, string *);
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static int do_arg (struct work_stuff *, const char **, string *);
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static int
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demangle_function_name (struct work_stuff *, const char **, string *,
                        const char *);
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static int
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iterate_demangle_function (struct work_stuff *,
                           const char **, string *, const char *);
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static void remember_type (struct work_stuff *, const char *, int);
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static void push_processed_type (struct work_stuff *, int);

static void pop_processed_type (struct work_stuff *);

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static void remember_Btype (struct work_stuff *, const char *, int, int);
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static int register_Btype (struct work_stuff *);
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static void remember_Ktype (struct work_stuff *, const char *, int);
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static void forget_types (struct work_stuff *);
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static void forget_B_and_K_types (struct work_stuff *);
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static void string_prepends (string *, string *);
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static int
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demangle_template_value_parm (struct work_stuff*, const char**,
                              string*, type_kind_t);
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static int
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do_hpacc_template_const_value (struct work_stuff *, const char **, string *);
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static int
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do_hpacc_template_literal (struct work_stuff *, const char **, string *);
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static int snarf_numeric_literal (const char **, string *);
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/* There is a TYPE_QUAL value for each type qualifier.  They can be
   combined by bitwise-or to form the complete set of qualifiers for a
   type.  */

#define TYPE_UNQUALIFIED   0x0
#define TYPE_QUAL_CONST    0x1
#define TYPE_QUAL_VOLATILE 0x2
#define TYPE_QUAL_RESTRICT 0x4

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static int code_for_qualifier (int);
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static const char* qualifier_string (int);
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static const char* demangle_qualifier (int);
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static int demangle_expression (struct work_stuff *, const char **, string *, 
                                type_kind_t);
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static int
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demangle_integral_value (struct work_stuff *, const char **, string *);
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static int
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demangle_real_value (struct work_stuff *, const char **, string *);
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static void
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demangle_arm_hp_template (struct work_stuff *, const char **, int, string *);
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static void
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recursively_demangle (struct work_stuff *, const char **, string *, int);
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/* Translate count to integer, consuming tokens in the process.
   Conversion terminates on the first non-digit character.

   Trying to consume something that isn't a count results in no
   consumption of input and a return of -1.

   Overflow consumes the rest of the digits, and returns -1.  */
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static int
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consume_count (const char **type)
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{
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  int count = 0;

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  if (! ISDIGIT ((unsigned char)**type))
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    return -1;
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  while (ISDIGIT ((unsigned char)**type))
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    {
      count *= 10;
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      /* Check for overflow.
	 We assume that count is represented using two's-complement;
	 no power of two is divisible by ten, so if an overflow occurs
	 when multiplying by ten, the result will not be a multiple of
	 ten.  */
      if ((count % 10) != 0)
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	{
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	  while (ISDIGIT ((unsigned char) **type))
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	    (*type)++;
	  return -1;
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	}
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      count += **type - '0';
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      (*type)++;
    }
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  if (count < 0)
    count = -1;

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  return (count);
}

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/* Like consume_count, but for counts that are preceded and followed
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   by '_' if they are greater than 10.  Also, -1 is returned for
   failure, since 0 can be a valid value.  */

static int
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consume_count_with_underscores (const char **mangled)
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{
  int idx;

  if (**mangled == '_')
    {
      (*mangled)++;
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      if (!ISDIGIT ((unsigned char)**mangled))
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	return -1;

      idx = consume_count (mangled);
      if (**mangled != '_')
	/* The trailing underscore was missing. */
	return -1;
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      (*mangled)++;
    }
  else
    {
      if (**mangled < '0' || **mangled > '9')
	return -1;
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      idx = **mangled - '0';
      (*mangled)++;
    }

  return idx;
}

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/* C is the code for a type-qualifier.  Return the TYPE_QUAL
   corresponding to this qualifier.  */

static int
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code_for_qualifier (int c)
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{
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  switch (c)
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    {
    case 'C':
      return TYPE_QUAL_CONST;

    case 'V':
      return TYPE_QUAL_VOLATILE;
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    case 'u':
      return TYPE_QUAL_RESTRICT;

    default:
      break;
    }

  /* C was an invalid qualifier.  */
  abort ();
}

/* Return the string corresponding to the qualifiers given by
   TYPE_QUALS.  */

static const char*
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qualifier_string (int type_quals)
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{
  switch (type_quals)
    {
    case TYPE_UNQUALIFIED:
      return "";

    case TYPE_QUAL_CONST:
      return "const";

    case TYPE_QUAL_VOLATILE:
      return "volatile";

    case TYPE_QUAL_RESTRICT:
      return "__restrict";

    case TYPE_QUAL_CONST | TYPE_QUAL_VOLATILE:
      return "const volatile";

    case TYPE_QUAL_CONST | TYPE_QUAL_RESTRICT:
      return "const __restrict";

    case TYPE_QUAL_VOLATILE | TYPE_QUAL_RESTRICT:
      return "volatile __restrict";

    case TYPE_QUAL_CONST | TYPE_QUAL_VOLATILE | TYPE_QUAL_RESTRICT:
      return "const volatile __restrict";

    default:
      break;
    }

  /* TYPE_QUALS was an invalid qualifier set.  */
  abort ();
}

/* C is the code for a type-qualifier.  Return the string
   corresponding to this qualifier.  This function should only be
   called with a valid qualifier code.  */

static const char*
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demangle_qualifier (int c)
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{
  return qualifier_string (code_for_qualifier (c));
}

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int
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cplus_demangle_opname (const char *opname, char *result, int options)
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{
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  int len, len1, ret;
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  string type;
  struct work_stuff work[1];
  const char *tem;

  len = strlen(opname);
  result[0] = '\0';
  ret = 0;
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  memset ((char *) work, 0, sizeof (work));
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  work->options = options;
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  if (opname[0] == '_' && opname[1] == '_'
      && opname[2] == 'o' && opname[3] == 'p')
    {
      /* ANSI.  */
      /* type conversion operator.  */
      tem = opname + 4;
      if (do_type (work, &tem, &type))
	{
	  strcat (result, "operator ");
	  strncat (result, type.b, type.p - type.b);
	  string_delete (&type);
	  ret = 1;
	}
    }
  else if (opname[0] == '_' && opname[1] == '_'
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	   && ISLOWER((unsigned char)opname[2])
	   && ISLOWER((unsigned char)opname[3]))
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    {
      if (opname[4] == '\0')
	{
	  /* Operator.  */
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	  size_t i;
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	  for (i = 0; i < ARRAY_SIZE (optable); i++)
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	    {
	      if (strlen (optable[i].in) == 2
		  && memcmp (optable[i].in, opname + 2, 2) == 0)
		{
		  strcat (result, "operator");
		  strcat (result, optable[i].out);
		  ret = 1;
		  break;
		}
	    }
	}
      else
	{
	  if (opname[2] == 'a' && opname[5] == '\0')
	    {
	      /* Assignment.  */
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	      size_t i;
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	      for (i = 0; i < ARRAY_SIZE (optable); i++)
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		{
		  if (strlen (optable[i].in) == 3
		      && memcmp (optable[i].in, opname + 2, 3) == 0)
		    {
		      strcat (result, "operator");
		      strcat (result, optable[i].out);
		      ret = 1;
		      break;
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		    }
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		}
	    }
	}
    }
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  else if (len >= 3
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	   && opname[0] == 'o'
	   && opname[1] == 'p'
	   && strchr (cplus_markers, opname[2]) != NULL)
    {
      /* see if it's an assignment expression */
      if (len >= 10 /* op$assign_ */
	  && memcmp (opname + 3, "assign_", 7) == 0)
	{
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	  size_t i;
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	  for (i = 0; i < ARRAY_SIZE (optable); i++)
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	    {
	      len1 = len - 10;
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	      if ((int) strlen (optable[i].in) == len1
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		  && memcmp (optable[i].in, opname + 10, len1) == 0)
		{
		  strcat (result, "operator");
		  strcat (result, optable[i].out);
		  strcat (result, "=");
		  ret = 1;
		  break;
		}
	    }
	}
      else
	{
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	  size_t i;
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	  for (i = 0; i < ARRAY_SIZE (optable); i++)
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	    {
	      len1 = len - 3;
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	      if ((int) strlen (optable[i].in) == len1
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		  && memcmp (optable[i].in, opname + 3, len1) == 0)
		{
		  strcat (result, "operator");
		  strcat (result, optable[i].out);
		  ret = 1;
		  break;
		}
	    }
	}
    }
  else if (len >= 5 && memcmp (opname, "type", 4) == 0
	   && strchr (cplus_markers, opname[4]) != NULL)
    {
      /* type conversion operator */
      tem = opname + 5;
      if (do_type (work, &tem, &type))
	{
	  strcat (result, "operator ");
	  strncat (result, type.b, type.p - type.b);
	  string_delete (&type);
	  ret = 1;
	}
    }
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  squangle_mop_up (work);
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  return ret;

}
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/* Takes operator name as e.g. "++" and returns mangled
   operator name (e.g. "postincrement_expr"), or NULL if not found.

   If OPTIONS & DMGL_ANSI == 1, return the ANSI name;
   if OPTIONS & DMGL_ANSI == 0, return the old GNU name.  */

const char *
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cplus_mangle_opname (const char *opname, int options)
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{
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  size_t i;
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  int len;

  len = strlen (opname);
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  for (i = 0; i < ARRAY_SIZE (optable); i++)
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    {
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      if ((int) strlen (optable[i].out) == len
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	  && (options & DMGL_ANSI) == (optable[i].flags & DMGL_ANSI)
	  && memcmp (optable[i].out, opname, len) == 0)
	return optable[i].in;
    }
  return (0);
}

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/* Add a routine to set the demangling style to be sure it is valid and
   allow for any demangler initialization that maybe necessary. */

enum demangling_styles
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cplus_demangle_set_style (enum demangling_styles style)
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{
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  const struct demangler_engine *demangler = libiberty_demanglers; 
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  for (; demangler->demangling_style != unknown_demangling; ++demangler)
    if (style == demangler->demangling_style)
      {
	current_demangling_style = style;
	return current_demangling_style;
      }

  return unknown_demangling;
}

/* Do string name to style translation */

enum demangling_styles
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cplus_demangle_name_to_style (const char *name)
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{
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  const struct demangler_engine *demangler = libiberty_demanglers; 
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  for (; demangler->demangling_style != unknown_demangling; ++demangler)
    if (strcmp (name, demangler->demangling_style_name) == 0)
      return demangler->demangling_style;

  return unknown_demangling;
}

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/* char *cplus_demangle (const char *mangled, int options)

   If MANGLED is a mangled function name produced by GNU C++, then
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   a pointer to a @code{malloc}ed string giving a C++ representation
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   of the name will be returned; otherwise NULL will be returned.
   It is the caller's responsibility to free the string which
   is returned.

   The OPTIONS arg may contain one or more of the following bits:

   	DMGL_ANSI	ANSI qualifiers such as `const' and `void' are
			included.
	DMGL_PARAMS	Function parameters are included.

   For example,
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   cplus_demangle ("foo__1Ai", DMGL_PARAMS)		=> "A::foo(int)"
   cplus_demangle ("foo__1Ai", DMGL_PARAMS | DMGL_ANSI)	=> "A::foo(int)"
   cplus_demangle ("foo__1Ai", 0)			=> "A::foo"

   cplus_demangle ("foo__1Afe", DMGL_PARAMS)		=> "A::foo(float,...)"
   cplus_demangle ("foo__1Afe", DMGL_PARAMS | DMGL_ANSI)=> "A::foo(float,...)"
   cplus_demangle ("foo__1Afe", 0)			=> "A::foo"

   Note that any leading underscores, or other such characters prepended by
   the compilation system, are presumed to have already been stripped from
   MANGLED.  */

char *
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cplus_demangle (const char *mangled, int options)
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{
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  char *ret;
  struct work_stuff work[1];
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  if (current_demangling_style == no_demangling)
    return xstrdup (mangled);

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  memset ((char *) work, 0, sizeof (work));
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  work->options = options;
  if ((work->options & DMGL_STYLE_MASK) == 0)
    work->options |= (int) current_demangling_style & DMGL_STYLE_MASK;
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  /* The V3 ABI demangling is implemented elsewhere.  */
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  if (GNU_V3_DEMANGLING || RUST_DEMANGLING || AUTO_DEMANGLING)
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    {
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      ret = cplus_demangle_v3 (mangled, work->options);
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      if (GNU_V3_DEMANGLING)
	return ret;

      if (ret)
	{
	  /* Rust symbols are GNU_V3 mangled plus some extra subtitutions.
	     The subtitutions are always smaller, so do in place changes.  */
	  if (rust_is_mangled (ret))
	    rust_demangle_sym (ret);
	  else if (RUST_DEMANGLING)
	    {
	      free (ret);
	      ret = NULL;
	    }
	}

      if (ret || RUST_DEMANGLING)
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	return ret;
    }
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  if (JAVA_DEMANGLING)
    {
      ret = java_demangle_v3 (mangled);
      if (ret)
        return ret;
    }

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  if (GNAT_DEMANGLING)
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    return ada_demangle (mangled, options);
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  if (DLANG_DEMANGLING)
    {
      ret = dlang_demangle (mangled, options);
      if (ret)
	return ret;
    }

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  ret = internal_cplus_demangle (work, mangled);
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  squangle_mop_up (work);
  return (ret);
}

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char *
rust_demangle (const char *mangled, int options)
{
  /* Rust symbols are GNU_V3 mangled plus some extra subtitutions.  */
  char *ret = cplus_demangle_v3 (mangled, options);

  /* The Rust subtitutions are always smaller, so do in place changes.  */
  if (ret != NULL)
    {
      if (rust_is_mangled (ret))
	rust_demangle_sym (ret);
      else
	{
	  free (ret);
	  ret = NULL;
	}
    }

  return ret;
}

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/* Demangle ada names.  The encoding is documented in gcc/ada/exp_dbug.ads.  */
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char *
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ada_demangle (const char *mangled, int option ATTRIBUTE_UNUSED)
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{
  int len0;
  const char* p;
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  char *d;
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  char *demangled = NULL;
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  /* Discard leading _ada_, which is used for library level subprograms.  */
959
  if (strncmp (mangled, "_ada_", 5) == 0)
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    mangled += 5;

  /* All ada unit names are lower-case.  */
  if (!ISLOWER (mangled[0]))
    goto unknown;

  /* Most of the demangling will trivially remove chars.  Operator names
     may add one char but because they are always preceeded by '__' which is
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     replaced by '.', they eventually never expand the size.
     A few special names such as '___elabs' add a few chars (at most 7), but
     they occur only once.  */
  len0 = strlen (mangled) + 7 + 1;
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  demangled = XNEWVEC (char, len0);
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  d = demangled;
  p = mangled;
  while (1)
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    {
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      /* An entity names is expected.  */
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      if (ISLOWER (*p))
        {
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          /* An identifier, which is always lower case.  */
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          do
            *d++ = *p++;
          while (ISLOWER(*p) || ISDIGIT (*p)
                 || (p[0] == '_' && (ISLOWER (p[1]) || ISDIGIT (p[1]))));
        }
      else if (p[0] == 'O')
        {
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          /* An operator name.  */
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          static const char * const operators[][2] =
            {{"Oabs", "abs"},  {"Oand", "and"},    {"Omod", "mod"},
             {"Onot", "not"},  {"Oor", "or"},      {"Orem", "rem"},
             {"Oxor", "xor"},  {"Oeq", "="},       {"One", "/="},
             {"Olt", "<"},     {"Ole", "<="},      {"Ogt", ">"},
             {"Oge", ">="},    {"Oadd", "+"},      {"Osubtract", "-"},
             {"Oconcat", "&"}, {"Omultiply", "*"}, {"Odivide", "/"},
             {"Oexpon", "**"}, {NULL, NULL}};
          int k;

1000
          for (k = 0; operators[k][0] != NULL; k++)
1001
            {
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              size_t slen = strlen (operators[k][0]);
              if (strncmp (p, operators[k][0], slen) == 0)
1004
                {
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                  p += slen;
                  slen = strlen (operators[k][1]);
1007
                  *d++ = '"';
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                  memcpy (d, operators[k][1], slen);
                  d += slen;
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                  *d++ = '"';
                  break;
                }
            }
          /* Operator not found.  */
1015
          if (operators[k][0] == NULL)
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            goto unknown;
        }
1018
      else
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        {
          /* Not a GNAT encoding.  */
          goto unknown;
        }

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      /* The name can be directly followed by some uppercase letters.  */
      if (p[0] == 'T' && p[1] == 'K')
        {
          /* Task stuff.  */
          if (p[2] == 'B' && p[3] == 0)
            {
              /* Subprogram for task body.  */
              break;
            }
          else if (p[2] == '_' && p[3] == '_')
            {
              /* Inner declarations in a task.  */
              p += 4;
              *d++ = '.';
              continue;
            }
          else
            goto unknown;
        }
      if (p[0] == 'E' && p[1] == 0)
        {
          /* Exception name.  */
          goto unknown;
        }
      if ((p[0] == 'P' || p[0] == 'N') && p[1] == 0)
        {
          /* Protected type subprogram.  */
          break;
        }
      if ((*p == 'N' || *p == 'S') && p[1] == 0)
        {
          /* Enumerated type name table.  */
          goto unknown;
        }
      if (p[0] == 'X')
        {
          /* Body nested.  */
          p++;
          while (p[0] == 'n' || p[0] == 'b')
            p++;
        }
      if (p[0] == 'S' && p[1] != 0 && (p[2] == '_' || p[2] == 0))
        {
          /* Stream operations.  */
          const char *name;
          switch (p[1])
            {
            case 'R':
              name = "'Read";
              break;
            case 'W':
              name = "'Write";
              break;
            case 'I':
              name = "'Input";
              break;
            case 'O':
              name = "'Output";
              break;
            default:
              goto unknown;
            }
          p += 2;
          strcpy (d, name);
          d += strlen (name);
        }
      else if (p[0] == 'D')
        {
          /* Controlled type operation.  */
          const char *name;
          switch (p[1])
            {
            case 'F':
              name = ".Finalize";
              break;
            case 'A':
              name = ".Adjust";
              break;
            default:
              goto unknown;
            }
          strcpy (d, name);
          d += strlen (name);
          break;
        }

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      if (p[0] == '_')
        {
          /* Separator.  */
          if (p[1] == '_')
            {
              /* Standard separator.  Handled first.  */
              p += 2;
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              if (ISDIGIT (*p))
                {
1120
                  /* Overloading number.  */
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                  do
                    p++;
                  while (ISDIGIT (*p) || (p[0] == '_' && ISDIGIT (p[1])));
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                  if (*p == 'X')
                    {
                      p++;
                      while (p[0] == 'n' || p[0] == 'b')
                        p++;
                    }
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                }
1131
              else if (p[0] == '_' && p[1] != '_')
1132
                {
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                  /* Special names.  */
                  static const char * const special[][2] = {
                    { "_elabb", "'Elab_Body" },
                    { "_elabs", "'Elab_Spec" },
                    { "_size", "'Size" },
                    { "_alignment", "'Alignment" },
                    { "_assign", ".\":=\"" },
                    { NULL, NULL }
                  };
                  int k;

                  for (k = 0; special[k][0] != NULL; k++)
                    {
                      size_t slen = strlen (special[k][0]);
                      if (strncmp (p, special[k][0], slen) == 0)
                        {
                          p += slen;
                          slen = strlen (special[k][1]);
                          memcpy (d, special[k][1], slen);
                          d += slen;
                          break;
                        }
                    }
                  if (special[k][0] != NULL)
                    break;
                  else
                    goto unknown;
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                }
              else
                {
                  *d++ = '.';
                  continue;
                }
            }
          else if (p[1] == 'B' || p[1] == 'E')
            {
              /* Entry Body or barrier Evaluation.  */
              p += 2;
              while (ISDIGIT (*p))
                p++;
              if (p[0] == 's' && p[1] == 0)
                break;
              else
                goto unknown;
            }
          else
            goto unknown;
        }

      if (p[0] == '.' && ISDIGIT (p[1]))
        {
          /* Nested subprogram.  */
          p += 2;
          while (ISDIGIT (*p))
            p++;
        }
      if (*p == 0)
        {
          /* End of mangled name.  */
          break;
        }
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      else
1195
        goto unknown;
1196
    }
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  *d = 0;
  return demangled;
1199

1200
 unknown:
1201
  XDELETEVEC (demangled);
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  len0 = strlen (mangled);
  demangled = XNEWVEC (char, len0 + 3);
1204

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  if (mangled[0] == '<')
     strcpy (demangled, mangled);
  else
    sprintf (demangled, "<%s>", mangled);

  return demangled;
}

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/* This function performs most of what cplus_demangle use to do, but
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   to be able to demangle a name with a B, K or n code, we need to
   have a longer term memory of what types have been seen. The original
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   now initializes and cleans up the squangle code info, while internal
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   calls go directly to this routine to avoid resetting that info. */

static char *
1220
internal_cplus_demangle (struct work_stuff *work, const char *mangled)
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{

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  string decl;
  int success = 0;
  char *demangled = NULL;
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  int s1, s2, s3, s4;
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  s1 = work->constructor;
  s2 = work->destructor;
  s3 = work->static_type;
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  s4 = work->type_quals;
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  work->constructor = work->destructor = 0;
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  work->type_quals = TYPE_UNQUALIFIED;
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  work->dllimported = 0;
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  if ((mangled != NULL) && (*mangled != '\0'))
    {
      string_init (&decl);

      /* First check to see if gnu style demangling is active and if the
	 string to be demangled contains a CPLUS_MARKER.  If so, attempt to
	 recognize one of the gnu special forms rather than looking for a
	 standard prefix.  In particular, don't worry about whether there
	 is a "__" string in the mangled string.  Consider "_$_5__foo" for
	 example.  */

      if ((AUTO_DEMANGLING || GNU_DEMANGLING))
	{
	  success = gnu_special (work, &mangled, &decl);
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	  if (!success)
	    {
	      delete_work_stuff (work);
	      string_delete (&decl);
	    }
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	}
      if (!success)
	{
	  success = demangle_prefix (work, &mangled, &decl);
	}
      if (success && (*mangled != '\0'))
	{
	  success = demangle_signature (work, &mangled, &decl);
	}
      if (work->constructor == 2)
        {
1265
          string_prepend (&decl, "global constructors keyed to ");
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          work->constructor = 0;
        }
      else if (work->destructor == 2)
        {
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          string_prepend (&decl, "global destructors keyed to ");
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          work->destructor = 0;
        }
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      else if (work->dllimported == 1)
        {
          string_prepend (&decl, "import stub for ");
          work->dllimported = 0;
        }
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      demangled = mop_up (work, &decl, success);
    }
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  work->constructor = s1;
  work->destructor = s2;
  work->static_type = s3;
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  work->type_quals = s4;
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  return demangled;
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}

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/* Clear out and squangling related storage */
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static void
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squangle_mop_up (struct work_stuff *work)
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{
  /* clean up the B and K type mangling types. */
  forget_B_and_K_types (work);
  if (work -> btypevec != NULL)
    {
      free ((char *) work -> btypevec);
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      work->btypevec = NULL;
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      work->bsize = 0;
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    }
  if (work -> ktypevec != NULL)
    {
      free ((char *) work -> ktypevec);
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      work->ktypevec = NULL;
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      work->ksize = 0;
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    }
}


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/* Copy the work state and storage.  */

static void
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work_stuff_copy_to_from (struct work_stuff *to, struct work_stuff *from)
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{
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  int i;

  delete_work_stuff (to);

  /* Shallow-copy scalars.  */
  memcpy (to, from, sizeof (*to));

  /* Deep-copy dynamic storage.  */
  if (from->typevec_size)
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    to->typevec = XNEWVEC (char *, from->typevec_size);
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  for (i = 0; i < from->ntypes; i++)
    {
      int len = strlen (from->typevec[i]) + 1;

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      to->typevec[i] = XNEWVEC (char, len);
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      memcpy (to->typevec[i], from->typevec[i], len);
    }

  if (from->ksize)
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    to->ktypevec = XNEWVEC (char *, from->ksize);
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  for (i = 0; i < from->numk; i++)
    {
      int len = strlen (from->ktypevec[i]) + 1;

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      to->ktypevec[i] = XNEWVEC (char, len);
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      memcpy (to->ktypevec[i], from->ktypevec[i], len);
    }
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  if (from->bsize)
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    to->btypevec = XNEWVEC (char *, from->bsize);
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  for (i = 0; i < from->numb; i++)
    {
      int len = strlen (from->btypevec[i]) + 1;

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      to->btypevec[i] = XNEWVEC (char , len);
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      memcpy (to->btypevec[i], from->btypevec[i], len);
    }

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  if (from->proctypevec)
    to->proctypevec =
      XDUPVEC (int, from->proctypevec, from->proctypevec_size);

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  if (from->ntmpl_args)
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    to->tmpl_argvec = XNEWVEC (char *, from->ntmpl_args);
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  for (i = 0; i < from->ntmpl_args; i++)
    {
      int len = strlen (from->tmpl_argvec[i]) + 1;

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      to->tmpl_argvec[i] = XNEWVEC (char, len);
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      memcpy (to->tmpl_argvec[i], from->tmpl_argvec[i], len);
    }

  if (from->previous_argument)
    {
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      to->previous_argument = XNEW (string);
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      string_init (to->previous_argument);
      string_appends (to->previous_argument, from->previous_argument);
    }
}


/* Delete dynamic stuff in work_stuff that is not to be re-used.  */

static void
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delete_non_B_K_work_stuff (struct work_stuff *work)
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{
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  /* Discard the remembered types, if any.  */
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  forget_types (work);
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  if (work->typevec != NULL)
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    {
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      free ((char *) work->typevec);
      work->typevec = NULL;
      work->typevec_size = 0;
    }
  if (work->proctypevec != NULL)
    {
      free (work->proctypevec);
      work->proctypevec = NULL;
      work->proctypevec_size = 0;
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    }
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  if (work->tmpl_argvec)
    {
      int i;

      for (i = 0; i < work->ntmpl_args; i++)
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	free ((char*) work->tmpl_argvec[i]);
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      free ((char*) work->tmpl_argvec);
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      work->tmpl_argvec = NULL;
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    }
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  if (work->previous_argument)
    {
      string_delete (work->previous_argument);
      free ((char*) work->previous_argument);
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      work->previous_argument = NULL;
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    }
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}


/* Delete all dynamic storage in work_stuff.  */
static void
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delete_work_stuff (struct work_stuff *work)
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{
  delete_non_B_K_work_stuff (work);
  squangle_mop_up (work);
}


/* Clear out any mangled storage */

static char *
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mop_up (struct work_stuff *work, string *declp, int success)
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{
  char *demangled = NULL;

  delete_non_B_K_work_stuff (work);
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  /* If demangling was successful, ensure that the demangled string is null
     terminated and return it.  Otherwise, free the demangling decl.  */
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  if (!success)
    {
      string_delete (declp);
    }
  else
    {
      string_appendn (declp, "", 1);
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      demangled = declp->b;
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    }
  return (demangled);
}

/*

LOCAL FUNCTION

	demangle_signature -- demangle the signature part of a mangled name

SYNOPSIS

	static int
	demangle_signature (struct work_stuff *work, const char **mangled,
			    string *declp);

DESCRIPTION

	Consume and demangle the signature portion of the mangled name.

	DECLP is the string where demangled output is being built.  At
	entry it contains the demangled root name from the mangled name
	prefix.  I.E. either a demangled operator name or the root function
	name.  In some special cases, it may contain nothing.

	*MANGLED points to the current unconsumed location in the mangled
	name.  As tokens are consumed and demangling is performed, the
	pointer is updated to continuously point at the next token to
	be consumed.

	Demangling GNU style mangled names is nasty because there is no
	explicit token that marks the start of the outermost function
	argument list.  */

static int
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demangle_signature (struct work_stuff *work,
                    const char **mangled, string *declp)
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{
  int success = 1;
  int func_done = 0;
  int expect_func = 0;
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  int expect_return_type = 0;
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  const char *oldmangled = NULL;
  string trawname;
  string tname;

  while (success && (**mangled != '\0'))
    {
      switch (**mangled)
	{
	case 'Q':
	  oldmangled = *mangled;
	  success = demangle_qualified (work, mangled, declp, 1, 0);
	  if (success)
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	    remember_type (work, oldmangled, *mangled - oldmangled);
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	  if (AUTO_DEMANGLING || GNU_DEMANGLING)
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	    expect_func = 1;
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	  oldmangled = NULL;
	  break;
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        case 'K':
	  oldmangled = *mangled;
	  success = demangle_qualified (work, mangled, declp, 1, 0);
	  if (AUTO_DEMANGLING || GNU_DEMANGLING)
	    {
	      expect_func = 1;
	    }
	  oldmangled = NULL;
	  break;
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	case 'S':
	  /* Static member function */
	  if (oldmangled == NULL)
	    {
	      oldmangled = *mangled;
	    }
	  (*mangled)++;
	  work -> static_type = 1;
	  break;

	case 'C':
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	case 'V':
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	case 'u':
	  work->type_quals |= code_for_qualifier (**mangled);
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	  /* a qualified member function */
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	  if (oldmangled == NULL)
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	    oldmangled = *mangled;
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	  (*mangled)++;
	  break;
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	case 'L':
	  /* Local class name follows after "Lnnn_" */
	  if (HP_DEMANGLING)
	    {
	      while (**mangled && (**mangled != '_'))
		(*mangled)++;
	      if (!**mangled)
		success = 0;
	      else
		(*mangled)++;
	    }
	  else
	    success = 0;
	  break;
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	case '0': case '1': case '2': case '3': case '4':
	case '5': case '6': case '7': case '8': case '9':
	  if (oldmangled == NULL)
	    {
	      oldmangled = *mangled;
	    }
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          work->temp_start = -1; /* uppermost call to demangle_class */
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	  success = demangle_class (work, mangled, declp);
	  if (success)
	    {
	      remember_type (work, oldmangled, *mangled - oldmangled);
	    }
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	  if (AUTO_DEMANGLING || GNU_DEMANGLING || EDG_DEMANGLING)
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	    {
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              /* EDG and others will have the "F", so we let the loop cycle
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                 if we are looking at one. */
              if (**mangled != 'F')
                 expect_func = 1;
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	    }
	  oldmangled = NULL;
	  break;
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	case 'B':
	  {
	    string s;
	    success = do_type (work, mangled, &s);
	    if (success)
	      {
		string_append (&s, SCOPE_STRING (work));
		string_prepends (declp, &s);
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		string_delete (&s);
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	      }
	    oldmangled = NULL;
	    expect_func = 1;
	  }
	  break;

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	case 'F':
	  /* Function */
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	  /* ARM/HP style demangling includes a specific 'F' character after
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	     the class name.  For GNU style, it is just implied.  So we can
	     safely just consume any 'F' at this point and be compatible
	     with either style.  */

	  oldmangled = NULL;
	  func_done = 1;
	  (*mangled)++;

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	  /* For lucid/ARM/HP style we have to forget any types we might
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	     have remembered up to this point, since they were not argument
	     types.  GNU style considers all types seen as available for
	     back references.  See comment in demangle_args() */

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	  if (LUCID_DEMANGLING || ARM_DEMANGLING || HP_DEMANGLING || EDG_DEMANGLING)
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	    {
	      forget_types (work);
	    }
	  success = demangle_args (work, mangled, declp);
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	  /* After picking off the function args, we expect to either
	     find the function return type (preceded by an '_') or the
	     end of the string. */
	  if (success && (AUTO_DEMANGLING || EDG_DEMANGLING) && **mangled == '_')
	    {
	      ++(*mangled);
              /* At this level, we do not care about the return type. */
              success = do_type (work, mangled, &tname);
              string_delete (&tname);
            }

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	  break;
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	case 't':
	  /* G++ Template */
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	  string_init(&trawname);
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	  string_init(&tname);
	  if (oldmangled == NULL)
	    {
	      oldmangled = *mangled;
	    }
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	  success = demangle_template (work, mangled, &tname,
				       &trawname, 1, 1);
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	  if (success)
	    {
	      remember_type (work, oldmangled, *mangled - oldmangled);
	    }
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	  string_append (&tname, SCOPE_STRING (work));

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	  string_prepends(declp, &tname);
	  if (work -> destructor & 1)
	    {
	      string_prepend (&trawname, "~");
	      string_appends (declp, &trawname);
	      work->destructor -= 1;
	    }
	  if ((work->constructor & 1) || (work->destructor & 1))
	    {
	      string_appends (declp, &trawname);
	      work->constructor -= 1;
	    }
	  string_delete(&trawname);
	  string_delete(&tname);
	  oldmangled = NULL;
	  expect_func = 1;
	  break;

	case '_':
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	  if ((AUTO_DEMANGLING || GNU_DEMANGLING) && expect_return_type)
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	    {
	      /* Read the return type. */
	      string return_type;

	      (*mangled)++;
	      success = do_type (work, mangled, &return_type);
	      APPEND_BLANK (&return_type);

	      string_prepends (declp, &return_type);
	      string_delete (&return_type);
	      break;
	    }
	  else
	    /* At the outermost level, we cannot have a return type specified,
	       so if we run into another '_' at this point we are dealing with
	       a mangled name that is either bogus, or has been mangled by
	       some algorithm we don't know how to deal with.  So just
	       reject the entire demangling.  */
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            /* However, "_nnn" is an expected suffix for alternate entry point
               numbered nnn for a function, with HP aCC, so skip over that
               without reporting failure. pai/1997-09-04 */
            if (HP_DEMANGLING)
              {
                (*mangled)++;
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                while (**mangled && ISDIGIT ((unsigned char)**mangled))
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                  (*mangled)++;
              }
            else
	      success = 0;
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	  break;

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	case 'H':
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	  if (AUTO_DEMANGLING || GNU_DEMANGLING)
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	    {
	      /* A G++ template function.  Read the template arguments. */
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	      success = demangle_template (work, mangled, declp, 0, 0,
					   0);
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	      if (!(work->constructor & 1))
		expect_return_type = 1;
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	      if (!**mangled)
		success = 0;
	      else
	        (*mangled)++;
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	      break;
	    }
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	  /* fall through */
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	default:
	  if (AUTO_DEMANGLING || GNU_DEMANGLING)
	    {
	      /* Assume we have stumbled onto the first outermost function
		 argument token, and start processing args.  */
	      func_done = 1;
	      success = demangle_args (work, mangled, declp);
	    }
	  else
	    {
	      /* Non-GNU demanglers use a specific token to mark the start
		 of the outermost function argument tokens.  Typically 'F',
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		 for ARM/HP-demangling, for example.  So if we find something
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		 we are not prepared for, it must be an error.  */
	      success = 0;
	    }
	  break;
	}
      /*
	if (AUTO_DEMANGLING || GNU_DEMANGLING)
	*/
      {
	if (success && expect_func)
	  {
	    func_done = 1;
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              if (LUCID_DEMANGLING || ARM_DEMANGLING || EDG_DEMANGLING)
                {
                  forget_types (work);
                }
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	    success = demangle_args (work, mangled, declp);
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	    /* Since template include the mangling of their return types,
	       we must set expect_func to 0 so that we don't try do
	       demangle more arguments the next time we get here.  */
	    expect_func = 0;
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	  }
      }
    }
  if (success && !func_done)
    {
      if (AUTO_DEMANGLING || GNU_DEMANGLING)
	{
	  /* With GNU style demangling, bar__3foo is 'foo::bar(void)', and
	     bar__3fooi is 'foo::bar(int)'.  We get here when we find the
	     first case, and need to ensure that the '(void)' gets added to
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	     the current declp.  Note that with ARM/HP, the first case
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	     represents the name of a static data member 'foo::bar',
	     which is in the current declp, so we leave it alone.  */
	  success = demangle_args (work, mangled, declp);
	}
    }
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  if (success && PRINT_ARG_TYPES)
    {
      if (work->static_type)
	string_append (declp, " static");
      if (work->type_quals != TYPE_UNQUALIFIED)
	{
	  APPEND_BLANK (declp);
	  string_append (declp, qualifier_string (work->type_quals));
	}
    }
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  return (success);
}

#if 0

static int
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demangle_method_args (struct work_stuff *work, const char **mangled,
                      string *declp)
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{
  int success = 0;

  if (work -> static_type)
    {
      string_append (declp, *mangled + 1);
      *mangled += strlen (*mangled);
      success = 1;
    }
  else
    {
      success = demangle_args (work, mangled, declp);
    }
  return (success);
}

#endif

static int
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demangle_template_template_parm (struct work_stuff *work,
                                 const char **mangled, string *tname)
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{
  int i;
  int r;
  int need_comma = 0;
  int success = 1;
  string temp;

  string_append (tname, "template <");
  /* get size of template parameter list */
  if (get_count (mangled, &r))
    {
      for (i = 0; i < r; i++)
	{
	  if (need_comma)
	    {
	      string_append (tname, ", ");
	    }

	    /* Z for type parameters */
	    if (**mangled == 'Z')
	      {
		(*mangled)++;
		string_append (tname, "class");
	      }
	      /* z for template parameters */
	    else if (**mangled == 'z')
	      {
		(*mangled)++;
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		success =
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		  demangle_template_template_parm (work, mangled, tname);
		if (!success)
		  {
		    break;
		  }
	      }
	    else
	      {
		/* temp is initialized in do_type */
		success = do_type (work, mangled, &temp);
		if (success)
		  {
		    string_appends (tname, &temp);
		  }
		string_delete(&temp);
		if (!success)
		  {
		    break;
		  }
	      }
	  need_comma = 1;
	}

    }
  if (tname->p[-1] == '>')
    string_append (tname, " ");
  string_append (tname, "> class");
  return (success);
}

static int
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demangle_expression (struct work_stuff *work, const char **mangled,
                     string *s, type_kind_t tk)
1859
{
1860
  int need_operator = 0;
1861 1862
  int success;

1863 1864 1865 1866
  success = 1;
  string_appendn (s, "(", 1);
  (*mangled)++;
  while (success && **mangled != 'W' && **mangled != '\0')
1867
    {
1868
      if (need_operator)
1869
	{
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	  size_t i;
	  size_t len;
1872

1873
	  success = 0;
1874

1875
	  len = strlen (*mangled);
1876

1877
	  for (i = 0; i < ARRAY_SIZE (optable); ++i)
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	    {
	      size_t l = strlen (optable[i].in);
1880

1881 1882 1883 1884 1885 1886 1887 1888 1889
	      if (l <= len
		  && memcmp (optable[i].in, *mangled, l) == 0)
		{
		  string_appendn (s, " ", 1);
		  string_append (s, optable[i].out);
		  string_appendn (s, " ", 1);
		  success = 1;
		  (*mangled) += l;
		  break;
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		}
	    }

1893 1894
	  if (!success)
	    break;
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	}
1896
      else
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	need_operator = 1;

      success = demangle_template_value_parm (work, mangled, s, tk);
    }

  if (**mangled != 'W')
    success = 0;
  else
    {
      string_appendn (s, ")", 1);
      (*mangled)++;
1908
    }
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  return success;
}

static int
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demangle_integral_value (struct work_stuff *work,
                         const char **mangled, string *s)
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{
  int success;

  if (**mangled == 'E')
    success = demangle_expression (work, mangled, s, tk_integral);
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  else if (**mangled == 'Q' || **mangled == 'K')
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    success = demangle_qualified (work, mangled, s, 0, 1);
  else
    {
1925 1926
      int value;

1927 1928
      /* By default, we let the number decide whether we shall consume an
	 underscore.  */
1929
      int multidigit_without_leading_underscore = 0;
1930 1931
      int leave_following_underscore = 0;

1932 1933
      success = 0;

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      if (**mangled == '_')
        {
	  if (mangled[0][1] == 'm')
	    {
	      /* Since consume_count_with_underscores does not handle the
		 `m'-prefix we must do it here, using consume_count and
		 adjusting underscores: we have to consume the underscore
		 matching the prepended one.  */
	      multidigit_without_leading_underscore = 1;
	      string_appendn (s, "-", 1);
	      (*mangled) += 2;
	    }
	  else
	    {
	      /* Do not consume a following underscore;
	         consume_count_with_underscores will consume what
	         should be consumed.  */
	      leave_following_underscore = 1;
	    }
1953
	}
1954 1955
      else
	{
1956 1957 1958 1959 1960 1961
	  /* Negative numbers are indicated with a leading `m'.  */
	  if (**mangled == 'm')
	  {
	    string_appendn (s, "-", 1);
	    (*mangled)++;
	  }
1962 1963 1964 1965 1966 1967 1968 1969 1970
	  /* Since consume_count_with_underscores does not handle
	     multi-digit numbers that do not start with an underscore,
	     and this number can be an integer template parameter,
	     we have to call consume_count. */
	  multidigit_without_leading_underscore = 1;
	  /* These multi-digit numbers never end on an underscore,
	     so if there is one then don't eat it. */
	  leave_following_underscore = 1;
	}
1971 1972 1973 1974 1975

      /* We must call consume_count if we expect to remove a trailing
	 underscore, since consume_count_with_underscores expects
	 the leading underscore (that we consumed) if it is to handle
	 multi-digit numbers.  */
1976
      if (multidigit_without_leading_underscore)
1977 1978 1979
	value = consume_count (mangled);
      else
	value = consume_count_with_underscores (mangled);
1980 1981 1982 1983 1984 1985 1986

      if (value != -1)
	{
	  char buf[INTBUF_SIZE];
	  sprintf (buf, "%d", value);
	  string_append (s, buf);

1987 1988 1989 1990 1991 1992 1993
	  /* Numbers not otherwise delimited, might have an underscore
	     appended as a delimeter, which we should skip.

	     ??? This used to always remove a following underscore, which
	     is wrong.  If other (arbitrary) cases are followed by an
	     underscore, we need to do something more radical.  */

1994
	  if ((value > 9 || multidigit_without_leading_underscore)
1995 1996
	      && ! leave_following_underscore
	      && **mangled == '_')
1997 1998 1999 2000 2001
	    (*mangled)++;

	  /* All is well.  */
	  success = 1;
	}
2002
      }
2003 2004 2005 2006 2007 2008 2009

  return success;
}

/* Demangle the real value in MANGLED.  */

static int
2010 2011
demangle_real_value (struct work_stuff *work,
                     const char **mangled, string *s)
2012 2013 2014 2015 2016 2017 2018 2019 2020
{
  if (**mangled == 'E')
    return demangle_expression (work, mangled, s, tk_real);

  if (**mangled == 'm')
    {
      string_appendn (s, "-", 1);
      (*mangled)++;
    }
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2021
  while (ISDIGIT ((unsigned char)**mangled))
2022 2023 2024 2025 2026 2027 2028 2029
    {
      string_appendn (s, *mangled, 1);
      (*mangled)++;
    }
  if (**mangled == '.') /* fraction */
    {
      string_appendn (s, ".", 1);
      (*mangled)++;
Zack Weinberg committed
2030
      while (ISDIGIT ((unsigned char)**mangled))
2031 2032 2033 2034 2035 2036 2037 2038 2039
	{
	  string_appendn (s, *mangled, 1);
	  (*mangled)++;
	}
    }
  if (**mangled == 'e') /* exponent */
    {
      string_appendn (s, "e", 1);
      (*mangled)++;
Zack Weinberg committed
2040
      while (ISDIGIT ((unsigned char)**mangled))
2041 2042 2043 2044 2045
	{
	  string_appendn (s, *mangled, 1);
	  (*mangled)++;
	}
    }
2046

2047
  return 1;
2048 2049
}

2050
static int
2051 2052
demangle_template_value_parm (struct work_stuff *work, const char **mangled,
                              string *s, type_kind_t tk)
2053 2054 2055 2056 2057 2058 2059 2060 2061 2062
{
  int success = 1;

  if (**mangled == 'Y')
    {
      /* The next argument is a template parameter. */
      int idx;

      (*mangled)++;
      idx = consume_count_with_underscores (mangled);
2063
      if (idx == -1
2064 2065 2066 2067 2068 2069
	  || (work->tmpl_argvec && idx >= work->ntmpl_args)
	  || consume_count_with_underscores (mangled) == -1)
	return -1;
      if (work->tmpl_argvec)
	string_append (s, work->tmpl_argvec[idx]);
      else
2070
	string_append_template_idx (s, idx);
2071
    }
2072
  else if (tk == tk_integral)
2073
    success = demangle_integral_value (work, mangled, s);
2074
  else if (tk == tk_char)
2075 2076 2077 2078 2079 2080 2081 2082 2083 2084
    {
      char tmp[2];
      int val;
      if (**mangled == 'm')
	{
	  string_appendn (s, "-", 1);
	  (*mangled)++;
	}
      string_appendn (s, "'", 1);
      val = consume_count(mangled);
2085 2086 2087 2088 2089 2090 2091 2092 2093
      if (val <= 0)
	success = 0;
      else
	{
	  tmp[0] = (char)val;
	  tmp[1] = '\0';
	  string_appendn (s, &tmp[0], 1);
	  string_appendn (s, "'", 1);
	}
2094
    }
2095
  else if (tk == tk_bool)
2096 2097 2098 2099 2100 2101 2102 2103 2104
    {
      int val = consume_count (mangled);
      if (val == 0)
	string_appendn (s, "false", 5);
      else if (val == 1)
	string_appendn (s, "true", 4);
      else
	success = 0;
    }
2105
  else if (tk == tk_real)
2106
    success = demangle_real_value (work, mangled, s);
2107 2108
  else if (tk == tk_pointer || tk == tk_reference
	   || tk == tk_rvalue_reference)
2109
    {
2110 2111 2112 2113
      if (**mangled == 'Q')
	success = demangle_qualified (work, mangled, s,
				      /*isfuncname=*/0, 
				      /*append=*/1);
2114 2115
      else
	{
2116
	  int symbol_len  = consume_count (mangled);
2117 2118
	  if (symbol_len == -1
	      || symbol_len > (long) strlen (*mangled))
2119 2120 2121 2122
	    return -1;
	  if (symbol_len == 0)
	    string_appendn (s, "0", 1);
	  else
2123
	    {
2124
	      char *p = XNEWVEC (char, symbol_len + 1), *q;
2125 2126 2127 2128 2129 2130 2131 2132 2133 2134 2135 2136 2137 2138 2139 2140 2141 2142 2143 2144
	      strncpy (p, *mangled, symbol_len);
	      p [symbol_len] = '\0';
	      /* We use cplus_demangle here, rather than
		 internal_cplus_demangle, because the name of the entity
		 mangled here does not make use of any of the squangling
		 or type-code information we have built up thus far; it is
		 mangled independently.  */
	      q = cplus_demangle (p, work->options);
	      if (tk == tk_pointer)
		string_appendn (s, "&", 1);
	      /* FIXME: Pointer-to-member constants should get a
		 qualifying class name here.  */
	      if (q)
		{
		  string_append (s, q);
		  free (q);
		}
	      else
		string_append (s, p);
	      free (p);
2145
	    }
2146
	  *mangled += symbol_len;
2147 2148 2149 2150 2151 2152
	}
    }

  return success;
}

2153 2154 2155 2156 2157
/* Demangle the template name in MANGLED.  The full name of the
   template (e.g., S<int>) is placed in TNAME.  The name without the
   template parameters (e.g. S) is placed in TRAWNAME if TRAWNAME is
   non-NULL.  If IS_TYPE is nonzero, this template is a type template,
   not a function template.  If both IS_TYPE and REMEMBER are nonzero,
2158
   the template is remembered in the list of back-referenceable
2159 2160
   types.  */

2161
static int
2162 2163 2164
demangle_template (struct work_stuff *work, const char **mangled,
                   string *tname, string *trawname,
                   int is_type, int remember)
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2165 2166 2167 2168 2169
{
  int i;
  int r;
  int need_comma = 0;
  int success = 0;
2170
  int is_java_array = 0;
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2171 2172 2173
  string temp;

  (*mangled)++;
2174
  if (is_type)
Jason Merrill committed
2175
    {
2176
      /* get template name */
2177
      if (**mangled == 'z')
2178
	{
2179 2180
	  int idx;
	  (*mangled)++;
2181 2182
	  if (**mangled == '\0')
	    return (0);
2183 2184 2185
	  (*mangled)++;

	  idx = consume_count_with_underscores (mangled);
2186
	  if (idx == -1
2187 2188
	      || (work->tmpl_argvec && idx >= work->ntmpl_args)
	      || consume_count_with_underscores (mangled) == -1)
2189 2190
	    return (0);

2191 2192 2193 2194 2195 2196 2197 2198
	  if (work->tmpl_argvec)
	    {
	      string_append (tname, work->tmpl_argvec[idx]);
	      if (trawname)
		string_append (trawname, work->tmpl_argvec[idx]);
	    }
	  else
	    {
2199
	      string_append_template_idx (tname, idx);
2200
	      if (trawname)
2201
		string_append_template_idx (trawname, idx);
2202
	    }
2203
	}
2204
      else
2205
	{
2206
	  if ((r = consume_count (mangled)) <= 0
Kaveh R. Ghazi committed
2207
	      || (int) strlen (*mangled) < r)
2208 2209 2210
	    {
	      return (0);
	    }
2211 2212 2213 2214 2215 2216
	  is_java_array = (work -> options & DMGL_JAVA)
	    && strncmp (*mangled, "JArray1Z", 8) == 0;
	  if (! is_java_array)
	    {
	      string_appendn (tname, *mangled, r);
	    }
2217 2218 2219
	  if (trawname)
	    string_appendn (trawname, *mangled, r);
	  *mangled += r;
2220
	}
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2221
    }
2222 2223
  if (!is_java_array)
    string_append (tname, "<");
Jason Merrill committed
2224 2225 2226 2227 2228
  /* get size of template parameter list */
  if (!get_count (mangled, &r))
    {
      return (0);
    }
2229 2230 2231
  if (!is_type)
    {
      /* Create an array for saving the template argument values. */
2232
      work->tmpl_argvec = XNEWVEC (char *, r);
2233 2234 2235 2236
      work->ntmpl_args = r;
      for (i = 0; i < r; i++)
	work->tmpl_argvec[i] = 0;
    }
Jason Merrill committed
2237 2238 2239 2240 2241 2242 2243 2244 2245 2246 2247 2248 2249 2250 2251
  for (i = 0; i < r; i++)
    {
      if (need_comma)
	{
	  string_append (tname, ", ");
	}
      /* Z for type parameters */
      if (**mangled == 'Z')
	{
	  (*mangled)++;
	  /* temp is initialized in do_type */
	  success = do_type (work, mangled, &temp);
	  if (success)
	    {
	      string_appends (tname, &temp);
2252 2253 2254 2255 2256

	      if (!is_type)
		{
		  /* Save the template argument. */
		  int len = temp.p - temp.b;
2257
		  work->tmpl_argvec[i] = XNEWVEC (char, len + 1);
2258 2259 2260
		  memcpy (work->tmpl_argvec[i], temp.b, len);
		  work->tmpl_argvec[i][len] = '\0';
		}
Jason Merrill committed
2261 2262 2263 2264 2265 2266 2267
	    }
	  string_delete(&temp);
	  if (!success)
	    {
	      break;
	    }
	}
2268 2269 2270 2271 2272 2273
      /* z for template parameters */
      else if (**mangled == 'z')
	{
	  int r2;
	  (*mangled)++;
	  success = demangle_template_template_parm (work, mangled, tname);
2274

2275
	  if (success
Kaveh R. Ghazi committed
2276 2277
	      && (r2 = consume_count (mangled)) > 0
	      && (int) strlen (*mangled) >= r2)
2278 2279 2280 2281 2282 2283 2284
	    {
	      string_append (tname, " ");
	      string_appendn (tname, *mangled, r2);
	      if (!is_type)
		{
		  /* Save the template argument. */
		  int len = r2;
2285
		  work->tmpl_argvec[i] = XNEWVEC (char, len + 1);
2286 2287 2288 2289 2290 2291 2292 2293 2294 2295
		  memcpy (work->tmpl_argvec[i], *mangled, len);
		  work->tmpl_argvec[i][len] = '\0';
		}
	      *mangled += r2;
	    }
	  if (!success)
	    {
	      break;
	    }
	}
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2296 2297
      else
	{
2298 2299 2300
	  string  param;
	  string* s;

Jason Merrill committed
2301
	  /* otherwise, value parameter */
2302

Jason Merrill committed
2303 2304 2305 2306
	  /* temp is initialized in do_type */
	  success = do_type (work, mangled, &temp);
	  string_delete(&temp);
	  if (!success)
2307
	    break;
2308 2309 2310 2311 2312 2313 2314 2315 2316

	  if (!is_type)
	    {
	      s = &param;
	      string_init (s);
	    }
	  else
	    s = tname;

2317 2318
	  success = demangle_template_value_parm (work, mangled, s,
						  (type_kind_t) success);
2319

2320
	  if (!success)
Jason Merrill committed
2321
	    {
2322 2323 2324 2325
	      if (!is_type)
		string_delete (s);
	      success = 0;
	      break;
Jason Merrill committed
2326
	    }
2327

2328 2329 2330
	  if (!is_type)
	    {
	      int len = s->p - s->b;
2331
	      work->tmpl_argvec[i] = XNEWVEC (char, len + 1);
2332 2333
	      memcpy (work->tmpl_argvec[i], s->b, len);
	      work->tmpl_argvec[i][len] = '\0';
2334

2335 2336 2337
	      string_appends (tname, s);
	      string_delete (s);
	    }
Jason Merrill committed
2338 2339 2340
	}
      need_comma = 1;
    }
2341
  if (is_java_array)
Jason Merrill committed
2342
    {
2343 2344 2345 2346 2347 2348 2349
      string_append (tname, "[]");
    }
  else
    {
      if (tname->p[-1] == '>')
	string_append (tname, " ");
      string_append (tname, ">");
Jason Merrill committed
2350
    }
2351

2352
  if (is_type && remember)
2353 2354 2355 2356
    {
      const int bindex = register_Btype (work);
      remember_Btype (work, tname->b, LEN_STRING (tname), bindex);
    }
2357

Jason Merrill committed
2358 2359 2360 2361 2362 2363 2364 2365 2366 2367 2368 2369 2370 2371 2372 2373 2374
  /*
    if (work -> static_type)
    {
    string_append (declp, *mangled + 1);
    *mangled += strlen (*mangled);
    success = 1;
    }
    else
    {
    success = demangle_args (work, mangled, declp);
    }
    }
    */
  return (success);
}

static int
2375 2376
arm_pt (struct work_stuff *work, const char *mangled,
        int n, const char **anchor, const char **args)
Jason Merrill committed
2377
{
2378 2379
  /* Check if ARM template with "__pt__" in it ("parameterized type") */
  /* Allow HP also here, because HP's cfront compiler follows ARM to some extent */
2380
  if ((ARM_DEMANGLING || HP_DEMANGLING) && (*anchor = strstr (mangled, "__pt__")))
Jason Merrill committed
2381 2382 2383 2384
    {
      int len;
      *args = *anchor + 6;
      len = consume_count (args);
2385 2386
      if (len == -1)
	return 0;
Jason Merrill committed
2387 2388 2389 2390 2391 2392
      if (*args + len == mangled + n && **args == '_')
	{
	  ++*args;
	  return 1;
	}
    }
2393 2394
  if (AUTO_DEMANGLING || EDG_DEMANGLING)
    {
2395 2396 2397
      if ((*anchor = strstr (mangled, "__tm__"))
          || (*anchor = strstr (mangled, "__ps__"))
          || (*anchor = strstr (mangled, "__pt__")))
2398 2399 2400 2401
        {
          int len;
          *args = *anchor + 6;
          len = consume_count (args);
2402 2403
	  if (len == -1)
	    return 0;
2404 2405 2406 2407 2408 2409
          if (*args + len == mangled + n && **args == '_')
            {
              ++*args;
              return 1;
            }
        }
2410
      else if ((*anchor = strstr (mangled, "__S")))
2411 2412 2413 2414
        {
 	  int len;
 	  *args = *anchor + 3;
 	  len = consume_count (args);
2415 2416
	  if (len == -1)
	    return 0;
2417 2418 2419 2420 2421 2422 2423 2424
 	  if (*args + len == mangled + n && **args == '_')
            {
              ++*args;
 	      return 1;
            }
        }
    }

Jason Merrill committed
2425 2426 2427 2428
  return 0;
}

static void
2429 2430
demangle_arm_hp_template (struct work_stuff *work, const char **mangled,
                          int n, string *declp)
Jason Merrill committed
2431 2432
{
  const char *p;
Kaveh R. Ghazi committed
2433
  const char *args;
Jason Merrill committed
2434
  const char *e = *mangled + n;
2435
  string arg;
Jason Merrill committed
2436

2437 2438 2439
  /* Check for HP aCC template spec: classXt1t2 where t1, t2 are
     template args */
  if (HP_DEMANGLING && ((*mangled)[n] == 'X'))
Jason Merrill committed
2440
    {
2441
      char *start_spec_args = NULL;
2442
      int hold_options;
2443 2444 2445 2446 2447 2448 2449 2450 2451 2452

      /* First check for and omit template specialization pseudo-arguments,
         such as in "Spec<#1,#1.*>" */
      start_spec_args = strchr (*mangled, '<');
      if (start_spec_args && (start_spec_args - *mangled < n))
        string_appendn (declp, *mangled, start_spec_args - *mangled);
      else
        string_appendn (declp, *mangled, n);
      (*mangled) += n + 1;
      string_init (&arg);
2453
      if (work->temp_start == -1) /* non-recursive call */
2454
        work->temp_start = declp->p - declp->b;
2455 2456 2457 2458 2459 2460

      /* We want to unconditionally demangle parameter types in
	 template parameters.  */
      hold_options = work->options;
      work->options |= DMGL_PARAMS;

2461 2462 2463
      string_append (declp, "<");
      while (1)
        {
2464
          string_delete (&arg);
2465 2466 2467 2468 2469 2470 2471 2472
          switch (**mangled)
            {
              case 'T':
                /* 'T' signals a type parameter */
                (*mangled)++;
                if (!do_type (work, mangled, &arg))
                  goto hpacc_template_args_done;
                break;
2473

2474 2475 2476 2477 2478 2479
              case 'U':
              case 'S':
                /* 'U' or 'S' signals an integral value */
                if (!do_hpacc_template_const_value (work, mangled, &arg))
                  goto hpacc_template_args_done;
                break;
2480

2481 2482 2483 2484 2485
              case 'A':
                /* 'A' signals a named constant expression (literal) */
                if (!do_hpacc_template_literal (work, mangled, &arg))
                  goto hpacc_template_args_done;
                break;
2486

2487 2488
              default:
                /* Today, 1997-09-03, we have only the above types
2489 2490
                   of template parameters */
                /* FIXME: maybe this should fail and return null */
2491 2492 2493 2494 2495
                goto hpacc_template_args_done;
            }
          string_appends (declp, &arg);
         /* Check if we're at the end of template args.
             0 if at end of static member of template class,
2496 2497 2498
             _ if done with template args for a function */
          if ((**mangled == '\000') || (**mangled == '_'))
            break;
2499 2500 2501 2502 2503 2504 2505 2506
          else
            string_append (declp, ",");
        }
    hpacc_template_args_done:
      string_append (declp, ">");
      string_delete (&arg);
      if (**mangled == '_')
        (*mangled)++;
2507
      work->options = hold_options;
2508 2509 2510 2511 2512
      return;
    }
  /* ARM template? (Also handles HP cfront extensions) */
  else if (arm_pt (work, *mangled, n, &p, &args))
    {
2513
      int hold_options;
2514 2515
      string type_str;

Jason Merrill committed
2516 2517
      string_init (&arg);
      string_appendn (declp, *mangled, p - *mangled);
2518
      if (work->temp_start == -1)  /* non-recursive call */
2519
	work->temp_start = declp->p - declp->b;
2520 2521 2522 2523 2524 2525

      /* We want to unconditionally demangle parameter types in
	 template parameters.  */
      hold_options = work->options;
      work->options |= DMGL_PARAMS;

Jason Merrill committed
2526 2527 2528
      string_append (declp, "<");
      /* should do error checking here */
      while (args < e) {
2529
	string_delete (&arg);
2530 2531 2532 2533 2534 2535 2536 2537

	/* Check for type or literal here */
	switch (*args)
	  {
	    /* HP cfront extensions to ARM for template args */
	    /* spec: Xt1Lv1 where t1 is a type, v1 is a literal value */
	    /* FIXME: We handle only numeric literals for HP cfront */
          case 'X':
2538
            /* A typed constant value follows */
2539 2540 2541 2542 2543
            args++;
            if (!do_type (work, &args, &type_str))
	      goto cfront_template_args_done;
            string_append (&arg, "(");
            string_appends (&arg, &type_str);
2544
            string_delete (&type_str);
2545 2546 2547 2548 2549 2550 2551 2552 2553 2554 2555 2556 2557 2558 2559 2560
            string_append (&arg, ")");
            if (*args != 'L')
              goto cfront_template_args_done;
            args++;
            /* Now snarf a literal value following 'L' */
            if (!snarf_numeric_literal (&args, &arg))
	      goto cfront_template_args_done;
            break;

          case 'L':
            /* Snarf a literal following 'L' */
            args++;
            if (!snarf_numeric_literal (&args, &arg))
	      goto cfront_template_args_done;
            break;
          default:
2561
            /* Not handling other HP cfront stuff */
2562 2563 2564 2565 2566 2567 2568
            {
              const char* old_args = args;
              if (!do_type (work, &args, &arg))
                goto cfront_template_args_done;

              /* Fail if we didn't make any progress: prevent infinite loop. */
              if (args == old_args)
2569 2570 2571 2572
		{
		  work->options = hold_options;
		  return;
		}
2573
            }
2574
	  }
Jason Merrill committed
2575 2576 2577
	string_appends (declp, &arg);
	string_append (declp, ",");
      }
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    cfront_template_args_done:
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      string_delete (&arg);
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      if (args >= e)
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	--declp->p; /* remove extra comma */
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      string_append (declp, ">");
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      work->options = hold_options;
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    }
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  else if (n>10 && strncmp (*mangled, "_GLOBAL_", 8) == 0
	   && (*mangled)[9] == 'N'
	   && (*mangled)[8] == (*mangled)[10]
	   && strchr (cplus_markers, (*mangled)[8]))
    {
      /* A member of the anonymous namespace.  */
      string_append (declp, "{anonymous}");
    }
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  else
    {
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      if (work->temp_start == -1) /* non-recursive call only */
	work->temp_start = 0;     /* disable in recursive calls */
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      string_appendn (declp, *mangled, n);
    }
  *mangled += n;
}

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/* Extract a class name, possibly a template with arguments, from the
   mangled string; qualifiers, local class indicators, etc. have
   already been dealt with */

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static int
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demangle_class_name (struct work_stuff *work, const char **mangled,
                     string *declp)
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{
  int n;
  int success = 0;

  n = consume_count (mangled);
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  if (n == -1)
    return 0;
  if ((int) strlen (*mangled) >= n)
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    {
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      demangle_arm_hp_template (work, mangled, n, declp);
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      success = 1;
    }

  return (success);
}

/*

LOCAL FUNCTION

	demangle_class -- demangle a mangled class sequence

SYNOPSIS

	static int
	demangle_class (struct work_stuff *work, const char **mangled,
			strint *declp)

DESCRIPTION

	DECLP points to the buffer into which demangling is being done.

	*MANGLED points to the current token to be demangled.  On input,
	it points to a mangled class (I.E. "3foo", "13verylongclass", etc.)
	On exit, it points to the next token after the mangled class on
	success, or the first unconsumed token on failure.

	If the CONSTRUCTOR or DESTRUCTOR flags are set in WORK, then
	we are demangling a constructor or destructor.  In this case
	we prepend "class::class" or "class::~class" to DECLP.

	Otherwise, we prepend "class::" to the current DECLP.

	Reset the constructor/destructor flags once they have been
	"consumed".  This allows demangle_class to be called later during
	the same demangling, to do normal class demangling.

	Returns 1 if demangling is successful, 0 otherwise.

*/

static int
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demangle_class (struct work_stuff *work, const char **mangled, string *declp)
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{
  int success = 0;
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  int btype;
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  string class_name;
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  char *save_class_name_end = 0;
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  string_init (&class_name);
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  btype = register_Btype (work);
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  if (demangle_class_name (work, mangled, &class_name))
    {
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      save_class_name_end = class_name.p;
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      if ((work->constructor & 1) || (work->destructor & 1))
	{
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          /* adjust so we don't include template args */
          if (work->temp_start && (work->temp_start != -1))
            {
              class_name.p = class_name.b + work->temp_start;
            }
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	  string_prepends (declp, &class_name);
	  if (work -> destructor & 1)
	    {
	      string_prepend (declp, "~");
              work -> destructor -= 1;
	    }
	  else
	    {
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	      work -> constructor -= 1;
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	    }
	}
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      class_name.p = save_class_name_end;
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      remember_Ktype (work, class_name.b, LEN_STRING(&class_name));
      remember_Btype (work, class_name.b, LEN_STRING(&class_name), btype);
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      string_prepend (declp, SCOPE_STRING (work));
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      string_prepends (declp, &class_name);
      success = 1;
    }
  string_delete (&class_name);
  return (success);
}

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/* Called when there's a "__" in the mangled name, with `scan' pointing to
   the rightmost guess.

   Find the correct "__"-sequence where the function name ends and the
   signature starts, which is ambiguous with GNU mangling.
   Call demangle_signature here, so we can make sure we found the right
   one; *mangled will be consumed so caller will not make further calls to
   demangle_signature.  */

static int
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iterate_demangle_function (struct work_stuff *work, const char **mangled,
                           string *declp, const char *scan)
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{
  const char *mangle_init = *mangled;
  int success = 0;
  string decl_init;
  struct work_stuff work_init;

  if (*(scan + 2) == '\0')
    return 0;

  /* Do not iterate for some demangling modes, or if there's only one
     "__"-sequence.  This is the normal case.  */
  if (ARM_DEMANGLING || LUCID_DEMANGLING || HP_DEMANGLING || EDG_DEMANGLING
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      || strstr (scan + 2, "__") == NULL)
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    return demangle_function_name (work, mangled, declp, scan);
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  /* Save state so we can restart if the guess at the correct "__" was
     wrong.  */
  string_init (&decl_init);
  string_appends (&decl_init, declp);
  memset (&work_init, 0, sizeof work_init);
  work_stuff_copy_to_from (&work_init, work);

  /* Iterate over occurrences of __, allowing names and types to have a
     "__" sequence in them.  We must start with the first (not the last)
     occurrence, since "__" most often occur between independent mangled
     parts, hence starting at the last occurence inside a signature
     might get us a "successful" demangling of the signature.  */

  while (scan[2])
    {
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      if (demangle_function_name (work, mangled, declp, scan))
	{
	  success = demangle_signature (work, mangled, declp);
	  if (success)
	    break;
	}
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      /* Reset demangle state for the next round.  */
      *mangled = mangle_init;
      string_clear (declp);
      string_appends (declp, &decl_init);
      work_stuff_copy_to_from (work, &work_init);

      /* Leave this underscore-sequence.  */
      scan += 2;

      /* Scan for the next "__" sequence.  */
      while (*scan && (scan[0] != '_' || scan[1] != '_'))
	scan++;

      /* Move to last "__" in this sequence.  */
      while (*scan && *scan == '_')
	scan++;
      scan -= 2;
    }

  /* Delete saved state.  */
  delete_work_stuff (&work_init);
  string_delete (&decl_init);

  return success;
}

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/*

LOCAL FUNCTION

	demangle_prefix -- consume the mangled name prefix and find signature

SYNOPSIS

	static int
	demangle_prefix (struct work_stuff *work, const char **mangled,
			 string *declp);

DESCRIPTION

	Consume and demangle the prefix of the mangled name.
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	While processing the function name root, arrange to call
	demangle_signature if the root is ambiguous.
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	DECLP points to the string buffer into which demangled output is
	placed.  On entry, the buffer is empty.  On exit it contains
	the root function name, the demangled operator name, or in some
	special cases either nothing or the completely demangled result.

	MANGLED points to the current pointer into the mangled name.  As each
	token of the mangled name is consumed, it is updated.  Upon entry
	the current mangled name pointer points to the first character of
	the mangled name.  Upon exit, it should point to the first character
	of the signature if demangling was successful, or to the first
	unconsumed character if demangling of the prefix was unsuccessful.
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	Returns 1 on success, 0 otherwise.
 */

static int
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demangle_prefix (struct work_stuff *work, const char **mangled,
                 string *declp)
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{
  int success = 1;
  const char *scan;
  int i;

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  if (strlen(*mangled) > 6
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      && (strncmp(*mangled, "_imp__", 6) == 0
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          || strncmp(*mangled, "__imp_", 6) == 0))
    {
      /* it's a symbol imported from a PE dynamic library. Check for both
         new style prefix _imp__ and legacy __imp_ used by older versions
	 of dlltool. */
      (*mangled) += 6;
      work->dllimported = 1;
    }
  else if (strlen(*mangled) >= 11 && strncmp(*mangled, "_GLOBAL_", 8) == 0)
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    {
      char *marker = strchr (cplus_markers, (*mangled)[8]);
      if (marker != NULL && *marker == (*mangled)[10])
	{
	  if ((*mangled)[9] == 'D')
	    {
	      /* it's a GNU global destructor to be executed at program exit */
	      (*mangled) += 11;
	      work->destructor = 2;
	      if (gnu_special (work, mangled, declp))
		return success;
	    }
	  else if ((*mangled)[9] == 'I')
	    {
	      /* it's a GNU global constructor to be executed at program init */
	      (*mangled) += 11;
	      work->constructor = 2;
	      if (gnu_special (work, mangled, declp))
		return success;
	    }
	}
    }
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  else if ((ARM_DEMANGLING || HP_DEMANGLING || EDG_DEMANGLING) && strncmp(*mangled, "__std__", 7) == 0)
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    {
      /* it's a ARM global destructor to be executed at program exit */
      (*mangled) += 7;
      work->destructor = 2;
    }
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  else if ((ARM_DEMANGLING || HP_DEMANGLING || EDG_DEMANGLING) && strncmp(*mangled, "__sti__", 7) == 0)
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    {
      /* it's a ARM global constructor to be executed at program initial */
      (*mangled) += 7;
      work->constructor = 2;
    }

  /*  This block of code is a reduction in strength time optimization
      of:
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      scan = strstr (*mangled, "__"); */
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  {
    scan = *mangled;

    do {
      scan = strchr (scan, '_');
    } while (scan != NULL && *++scan != '_');

    if (scan != NULL) --scan;
  }

  if (scan != NULL)
    {
      /* We found a sequence of two or more '_', ensure that we start at
	 the last pair in the sequence.  */
      i = strspn (scan, "_");
      if (i > 2)
	{
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	  scan += (i - 2);
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	}
    }
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  if (scan == NULL)
    {
      success = 0;
    }
  else if (work -> static_type)
    {
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      if (!ISDIGIT ((unsigned char)scan[0]) && (scan[0] != 't'))
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	{
	  success = 0;
	}
    }
  else if ((scan == *mangled)
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	   && (ISDIGIT ((unsigned char)scan[2]) || (scan[2] == 'Q')
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	       || (scan[2] == 't') || (scan[2] == 'K') || (scan[2] == 'H')))
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    {
      /* The ARM says nothing about the mangling of local variables.
	 But cfront mangles local variables by prepending __<nesting_level>
	 to them. As an extension to ARM demangling we handle this case.  */
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      if ((LUCID_DEMANGLING || ARM_DEMANGLING || HP_DEMANGLING)
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	  && ISDIGIT ((unsigned char)scan[2]))
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	{
	  *mangled = scan + 2;
	  consume_count (mangled);
	  string_append (declp, *mangled);
	  *mangled += strlen (*mangled);
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	  success = 1;
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	}
      else
	{
	  /* A GNU style constructor starts with __[0-9Qt].  But cfront uses
	     names like __Q2_3foo3bar for nested type names.  So don't accept
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	     this style of constructor for cfront demangling.  A GNU
	     style member-template constructor starts with 'H'. */
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	  if (!(LUCID_DEMANGLING || ARM_DEMANGLING || HP_DEMANGLING || EDG_DEMANGLING))
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	    work -> constructor += 1;
	  *mangled = scan + 2;
	}
    }
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  else if (ARM_DEMANGLING && scan[2] == 'p' && scan[3] == 't')
    {
      /* Cfront-style parameterized type.  Handled later as a signature. */
      success = 1;
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      /* ARM template? */
      demangle_arm_hp_template (work, mangled, strlen (*mangled), declp);
    }
  else if (EDG_DEMANGLING && ((scan[2] == 't' && scan[3] == 'm')
                              || (scan[2] == 'p' && scan[3] == 's')
                              || (scan[2] == 'p' && scan[3] == 't')))
    {
      /* EDG-style parameterized type.  Handled later as a signature. */
      success = 1;
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      /* EDG template? */
      demangle_arm_hp_template (work, mangled, strlen (*mangled), declp);
    }
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  else if ((scan == *mangled) && !ISDIGIT ((unsigned char)scan[2])
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	   && (scan[2] != 't'))
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    {
      /* Mangled name starts with "__".  Skip over any leading '_' characters,
	 then find the next "__" that separates the prefix from the signature.
	 */
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      if (!(ARM_DEMANGLING || LUCID_DEMANGLING || HP_DEMANGLING || EDG_DEMANGLING)
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	  || (arm_special (mangled, declp) == 0))
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	{
	  while (*scan == '_')
	    {
	      scan++;
	    }
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	  if ((scan = strstr (scan, "__")) == NULL || (*(scan + 2) == '\0'))
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	    {
	      /* No separator (I.E. "__not_mangled"), or empty signature
		 (I.E. "__not_mangled_either__") */
	      success = 0;
	    }
	  else
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	    return iterate_demangle_function (work, mangled, declp, scan);
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	}
    }
  else if (*(scan + 2) != '\0')
    {
      /* Mangled name does not start with "__" but does have one somewhere
	 in there with non empty stuff after it.  Looks like a global
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	 function name.  Iterate over all "__":s until the right
	 one is found.  */
      return iterate_demangle_function (work, mangled, declp, scan);
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    }
  else
    {
      /* Doesn't look like a mangled name */
      success = 0;
    }

  if (!success && (work->constructor == 2 || work->destructor == 2))
    {
      string_append (declp, *mangled);
      *mangled += strlen (*mangled);
      success = 1;
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    }
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  return (success);
}

/*

LOCAL FUNCTION

	gnu_special -- special handling of gnu mangled strings

SYNOPSIS

	static int
	gnu_special (struct work_stuff *work, const char **mangled,
		     string *declp);


DESCRIPTION

	Process some special GNU style mangling forms that don't fit
	the normal pattern.  For example:

		_$_3foo		(destructor for class foo)
		_vt$foo		(foo virtual table)
		_vt$foo$bar	(foo::bar virtual table)
		__vt_foo	(foo virtual table, new style with thunks)
		_3foo$varname	(static data member)
		_Q22rs2tu$vw	(static data member)
		__t6vector1Zii	(constructor with template)
		__thunk_4__$_7ostream (virtual function thunk)
 */

static int
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gnu_special (struct work_stuff *work, const char **mangled, string *declp)
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{
  int n;
  int success = 1;
  const char *p;

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  if ((*mangled)[0] == '_' && (*mangled)[1] != '\0'
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      && strchr (cplus_markers, (*mangled)[1]) != NULL
      && (*mangled)[2] == '_')
    {
      /* Found a GNU style destructor, get past "_<CPLUS_MARKER>_" */
      (*mangled) += 3;
      work -> destructor += 1;
    }
  else if ((*mangled)[0] == '_'
	   && (((*mangled)[1] == '_'
		&& (*mangled)[2] == 'v'
		&& (*mangled)[3] == 't'
		&& (*mangled)[4] == '_')
	       || ((*mangled)[1] == 'v'
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		   && (*mangled)[2] == 't' && (*mangled)[3] != '\0'
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		   && strchr (cplus_markers, (*mangled)[3]) != NULL)))
    {
      /* Found a GNU style virtual table, get past "_vt<CPLUS_MARKER>"
         and create the decl.  Note that we consume the entire mangled
	 input string, which means that demangle_signature has no work
	 to do.  */
      if ((*mangled)[2] == 'v')
	(*mangled) += 5; /* New style, with thunks: "__vt_" */
      else
	(*mangled) += 4; /* Old style, no thunks: "_vt<CPLUS_MARKER>" */
      while (**mangled != '\0')
	{
	  switch (**mangled)
	    {
	    case 'Q':
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	    case 'K':
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	      success = demangle_qualified (work, mangled, declp, 0, 1);
	      break;
	    case 't':
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	      success = demangle_template (work, mangled, declp, 0, 1,
					   1);
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	      break;
	    default:
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	      if (ISDIGIT((unsigned char)*mangled[0]))
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		{
		  n = consume_count(mangled);
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		  /* We may be seeing a too-large size, or else a
		     ".<digits>" indicating a static local symbol.  In
		     any case, declare victory and move on; *don't* try
		     to use n to allocate.  */
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		  if (n > (int) strlen (*mangled))
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		    {
		      success = 1;
		      break;
		    }
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		  else if (n == -1)
		    {
		      success = 0;
		      break;
		    }
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		}
	      else
		{
		  n = strcspn (*mangled, cplus_markers);
		}
	      string_appendn (declp, *mangled, n);
	      (*mangled) += n;
	    }

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	  p = strpbrk (*mangled, cplus_markers);
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	  if (success && ((p == NULL) || (p == *mangled)))
	    {
	      if (p != NULL)
		{
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		  string_append (declp, SCOPE_STRING (work));
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		  (*mangled)++;
		}
	    }
	  else
	    {
	      success = 0;
	      break;
	    }
	}
      if (success)
	string_append (declp, " virtual table");
    }
  else if ((*mangled)[0] == '_'
	   && (strchr("0123456789Qt", (*mangled)[1]) != NULL)
	   && (p = strpbrk (*mangled, cplus_markers)) != NULL)
    {
      /* static data member, "_3foo$varname" for example */
      (*mangled)++;
      switch (**mangled)
	{
	case 'Q':
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	case 'K':
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	  success = demangle_qualified (work, mangled, declp, 0, 1);
	  break;
	case 't':
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	  success = demangle_template (work, mangled, declp, 0, 1, 1);
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	  break;
	default:
	  n = consume_count (mangled);
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	  if (n < 0 || n > (long) strlen (*mangled))
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	    {
	      success = 0;
	      break;
	    }
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	  if (n > 10 && strncmp (*mangled, "_GLOBAL_", 8) == 0
	      && (*mangled)[9] == 'N'
	      && (*mangled)[8] == (*mangled)[10]
	      && strchr (cplus_markers, (*mangled)[8]))
	    {
	      /* A member of the anonymous namespace.  There's information
		 about what identifier or filename it was keyed to, but
		 it's just there to make the mangled name unique; we just
		 step over it.  */
	      string_append (declp, "{anonymous}");
	      (*mangled) += n;

	      /* Now p points to the marker before the N, so we need to
		 update it to the first marker after what we consumed.  */
	      p = strpbrk (*mangled, cplus_markers);
	      break;
	    }

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	  string_appendn (declp, *mangled, n);
	  (*mangled) += n;
	}
      if (success && (p == *mangled))
	{
	  /* Consumed everything up to the cplus_marker, append the
	     variable name.  */
	  (*mangled)++;
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	  string_append (declp, SCOPE_STRING (work));
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	  n = strlen (*mangled);
	  string_appendn (declp, *mangled, n);
	  (*mangled) += n;
	}
      else
	{
	  success = 0;
	}
    }
  else if (strncmp (*mangled, "__thunk_", 8) == 0)
    {
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      int delta;

      (*mangled) += 8;
      delta = consume_count (mangled);
      if (delta == -1)
	success = 0;
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      else
	{
3178 3179 3180 3181 3182 3183 3184 3185 3186 3187 3188 3189 3190 3191 3192 3193
	  char *method = internal_cplus_demangle (work, ++*mangled);

	  if (method)
	    {
	      char buf[50];
	      sprintf (buf, "virtual function thunk (delta:%d) for ", -delta);
	      string_append (declp, buf);
	      string_append (declp, method);
	      free (method);
	      n = strlen (*mangled);
	      (*mangled) += n;
	    }
	  else
	    {
	      success = 0;
	    }
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	}
    }
  else if (strncmp (*mangled, "__t", 3) == 0
	   && ((*mangled)[3] == 'i' || (*mangled)[3] == 'f'))
    {
      p = (*mangled)[3] == 'i' ? " type_info node" : " type_info function";
      (*mangled) += 4;
      switch (**mangled)
	{
	case 'Q':
3204
	case 'K':
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	  success = demangle_qualified (work, mangled, declp, 0, 1);
	  break;
	case 't':
3208
	  success = demangle_template (work, mangled, declp, 0, 1, 1);
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	  break;
	default:
3211
	  success = do_type (work, mangled, declp);
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	  break;
	}
      if (success && **mangled != '\0')
	success = 0;
      if (success)
	string_append (declp, p);
    }
  else
    {
      success = 0;
    }
  return (success);
}

3226
static void
3227 3228
recursively_demangle(struct work_stuff *work, const char **mangled,
                     string *result, int namelength)
3229 3230 3231
{
  char * recurse = (char *)NULL;
  char * recurse_dem = (char *)NULL;
3232

3233
  recurse = XNEWVEC (char, namelength + 1);
3234 3235
  memcpy (recurse, *mangled, namelength);
  recurse[namelength] = '\000';
3236

3237
  recurse_dem = cplus_demangle (recurse, work->options);
3238

3239 3240 3241 3242 3243 3244 3245 3246 3247 3248 3249 3250 3251
  if (recurse_dem)
    {
      string_append (result, recurse_dem);
      free (recurse_dem);
    }
  else
    {
      string_appendn (result, *mangled, namelength);
    }
  free (recurse);
  *mangled += namelength;
}

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/*

LOCAL FUNCTION

	arm_special -- special handling of ARM/lucid mangled strings

SYNOPSIS

	static int
3261 3262
	arm_special (const char **mangled,
		     string *declp);
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DESCRIPTION

	Process some special ARM style mangling forms that don't fit
	the normal pattern.  For example:

		__vtbl__3foo		(foo virtual table)
		__vtbl__3foo__3bar	(bar::foo virtual table)

 */

static int
3276
arm_special (const char **mangled, string *declp)
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{
  int n;
  int success = 1;
  const char *scan;

  if (strncmp (*mangled, ARM_VTABLE_STRING, ARM_VTABLE_STRLEN) == 0)
    {
      /* Found a ARM style virtual table, get past ARM_VTABLE_STRING
         and create the decl.  Note that we consume the entire mangled
	 input string, which means that demangle_signature has no work
	 to do.  */
      scan = *mangled + ARM_VTABLE_STRLEN;
      while (*scan != '\0')        /* first check it can be demangled */
        {
          n = consume_count (&scan);
3292
          if (n == -1)
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	    {
	      return (0);           /* no good */
	    }
          scan += n;
          if (scan[0] == '_' && scan[1] == '_')
	    {
	      scan += 2;
	    }
        }
      (*mangled) += ARM_VTABLE_STRLEN;
      while (**mangled != '\0')
	{
	  n = consume_count (mangled);
3306
          if (n == -1
Kaveh R. Ghazi committed
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	      || n > (long) strlen (*mangled))
3308
	    return 0;
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	  string_prependn (declp, *mangled, n);
	  (*mangled) += n;
	  if ((*mangled)[0] == '_' && (*mangled)[1] == '_')
	    {
	      string_prepend (declp, "::");
	      (*mangled) += 2;
	    }
	}
      string_append (declp, " virtual table");
    }
  else
    {
      success = 0;
    }
  return (success);
}

/*

LOCAL FUNCTION

	demangle_qualified -- demangle 'Q' qualified name strings

SYNOPSIS

	static int
	demangle_qualified (struct work_stuff *, const char *mangled,
			    string *result, int isfuncname, int append);

DESCRIPTION

	Demangle a qualified name, such as "Q25Outer5Inner" which is
	the mangled form of "Outer::Inner".  The demangled output is
	prepended or appended to the result string according to the
	state of the append flag.

	If isfuncname is nonzero, then the qualified name we are building
	is going to be used as a member function name, so if it is a
	constructor or destructor function, append an appropriate
	constructor or destructor name.  I.E. for the above example,
	the result for use as a constructor is "Outer::Inner::Inner"
	and the result for use as a destructor is "Outer::Inner::~Inner".

BUGS

	Numeric conversion is ASCII dependent (FIXME).

 */

static int
3359 3360
demangle_qualified (struct work_stuff *work, const char **mangled,
                    string *result, int isfuncname, int append)
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{
3362
  int qualifiers = 0;
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  int success = 1;
  char num[2];
  string temp;
3366 3367 3368 3369 3370
  string last_name;
  int bindex = register_Btype (work);

  /* We only make use of ISFUNCNAME if the entity is a constructor or
     destructor.  */
3371
  isfuncname = (isfuncname
3372
		&& ((work->constructor & 1) || (work->destructor & 1)));
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  string_init (&temp);
3375
  string_init (&last_name);
3376 3377 3378 3379 3380 3381 3382

  if ((*mangled)[0] == 'K')
    {
    /* Squangling qualified name reuse */
      int idx;
      (*mangled)++;
      idx = consume_count_with_underscores (mangled);
3383
      if (idx == -1 || idx >= work -> numk)
3384 3385 3386 3387 3388 3389
        success = 0;
      else
        string_append (&temp, work -> ktypevec[idx]);
    }
  else
    switch ((*mangled)[1])
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    {
    case '_':
      /* GNU mangled name with more than 9 classes.  The count is preceded
	 by an underscore (to distinguish it from the <= 9 case) and followed
	 by an underscore.  */
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      (*mangled)++;
      qualifiers = consume_count_with_underscores (mangled);
      if (qualifiers == -1)
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	success = 0;
      break;

    case '1':
    case '2':
    case '3':
    case '4':
    case '5':
    case '6':
    case '7':
    case '8':
    case '9':
      /* The count is in a single digit.  */
      num[0] = (*mangled)[1];
      num[1] = '\0';
      qualifiers = atoi (num);

      /* If there is an underscore after the digit, skip it.  This is
	 said to be for ARM-qualified names, but the ARM makes no
	 mention of such an underscore.  Perhaps cfront uses one.  */
      if ((*mangled)[2] == '_')
	{
	  (*mangled)++;
	}
      (*mangled) += 2;
      break;

    case '0':
    default:
      success = 0;
    }

  if (!success)
    return success;

  /* Pick off the names and collect them in the temp buffer in the order
     in which they are found, separated by '::'.  */

  while (qualifiers-- > 0)
    {
3438
      int remember_K = 1;
3439 3440
      string_clear (&last_name);

3441
      if (*mangled[0] == '_')
3442 3443
	(*mangled)++;

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      if (*mangled[0] == 't')
	{
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	  /* Here we always append to TEMP since we will want to use
	     the template name without the template parameters as a
	     constructor or destructor name.  The appropriate
	     (parameter-less) value is returned by demangle_template
	     in LAST_NAME.  We do not remember the template type here,
	     in order to match the G++ mangling algorithm.  */
3452
	  success = demangle_template(work, mangled, &temp,
3453
				      &last_name, 1, 0);
3454
	  if (!success)
3455
	    break;
3456
	}
3457
      else if (*mangled[0] == 'K')
3458 3459 3460 3461
	{
          int idx;
          (*mangled)++;
          idx = consume_count_with_underscores (mangled);
3462
          if (idx == -1 || idx >= work->numk)
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            success = 0;
          else
            string_append (&temp, work->ktypevec[idx]);
          remember_K = 0;

	  if (!success) break;
	}
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      else
3471
	{
3472 3473 3474 3475
	  if (EDG_DEMANGLING)
            {
	      int namelength;
 	      /* Now recursively demangle the qualifier
3476 3477
 	       * This is necessary to deal with templates in
 	       * mangling styles like EDG */
3478
	      namelength = consume_count (mangled);
3479 3480 3481 3482 3483
	      if (namelength == -1)
		{
		  success = 0;
		  break;
		}
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 	      recursively_demangle(work, mangled, &temp, namelength);
            }
          else
            {
3488
              string_delete (&last_name);
3489 3490 3491 3492 3493
              success = do_type (work, mangled, &last_name);
              if (!success)
                break;
              string_appends (&temp, &last_name);
            }
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	}
3495 3496

      if (remember_K)
3497
	remember_Ktype (work, temp.b, LEN_STRING (&temp));
3498

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      if (qualifiers > 0)
3500
	string_append (&temp, SCOPE_STRING (work));
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    }

3503 3504
  remember_Btype (work, temp.b, LEN_STRING (&temp), bindex);

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  /* If we are using the result as a function name, we need to append
     the appropriate '::' separated constructor or destructor name.
     We do this here because this is the most convenient place, where
     we already have a pointer to the name and the length of the name.  */

3510
  if (isfuncname)
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    {
3512
      string_append (&temp, SCOPE_STRING (work));
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      if (work -> destructor & 1)
3514 3515
	string_append (&temp, "~");
      string_appends (&temp, &last_name);
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    }

3518
  /* Now either prepend the temp buffer to the result, or append it,
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     depending upon the state of the append flag.  */

  if (append)
3522
    string_appends (result, &temp);
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  else
    {
      if (!STRING_EMPTY (result))
3526
	string_append (&temp, SCOPE_STRING (work));
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      string_prepends (result, &temp);
    }

3530
  string_delete (&last_name);
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  string_delete (&temp);
  return (success);
}

/*

LOCAL FUNCTION

	get_count -- convert an ascii count to integer, consuming tokens

SYNOPSIS

	static int
	get_count (const char **type, int *count)

DESCRIPTION

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	Assume that *type points at a count in a mangled name; set
	*count to its value, and set *type to the next character after
	the count.  There are some weird rules in effect here.

	If *type does not point at a string of digits, return zero.

	If *type points at a string of digits followed by an
	underscore, set *count to their value as an integer, advance
	*type to point *after the underscore, and return 1.

	If *type points at a string of digits not followed by an
	underscore, consume only the first digit.  Set *count to its
	value as an integer, leave *type pointing after that digit,
	and return 1.

        The excuse for this odd behavior: in the ARM and HP demangling
        styles, a type can be followed by a repeat count of the form
        `Nxy', where:

        `x' is a single digit specifying how many additional copies
            of the type to append to the argument list, and

        `y' is one or more digits, specifying the zero-based index of
            the first repeated argument in the list.  Yes, as you're
            unmangling the name you can figure this out yourself, but
            it's there anyway.

        So, for example, in `bar__3fooFPiN51', the first argument is a
        pointer to an integer (`Pi'), and then the next five arguments
        are the same (`N5'), and the first repeat is the function's
        second argument (`1').
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*/

static int
3582
get_count (const char **type, int *count)
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{
  const char *p;
  int n;

Zack Weinberg committed
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  if (!ISDIGIT ((unsigned char)**type))
3588
    return (0);
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  else
    {
      *count = **type - '0';
      (*type)++;
Zack Weinberg committed
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      if (ISDIGIT ((unsigned char)**type))
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	{
	  p = *type;
	  n = *count;
3597
	  do
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	    {
	      n *= 10;
	      n += *p - '0';
	      p++;
3602
	    }
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	  while (ISDIGIT ((unsigned char)*p));
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	  if (*p == '_')
	    {
	      *type = p + 1;
	      *count = n;
	    }
	}
    }
  return (1);
}

3614 3615
/* RESULT will be initialised here; it will be freed on failure.  The
   value returned is really a type_kind_t.  */
Jason Merrill committed
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static int
3618
do_type (struct work_stuff *work, const char **mangled, string *result)
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3619 3620
{
  int n;
3621 3622
  int i;
  int is_proctypevec;
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  int done;
  int success;
  string decl;
  const char *remembered_type;
3627
  int type_quals;
3628
  type_kind_t tk = tk_none;
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  string_init (&decl);
  string_init (result);

  done = 0;
  success = 1;
3635
  is_proctypevec = 0;
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  while (success && !done)
    {
      int member;
      switch (**mangled)
	{

	  /* A pointer type */
	case 'P':
	case 'p':
	  (*mangled)++;
3646 3647
	  if (! (work -> options & DMGL_JAVA))
	    string_prepend (&decl, "*");
3648 3649
	  if (tk == tk_none)
	    tk = tk_pointer;
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	  break;

	  /* A reference type */
	case 'R':
	  (*mangled)++;
	  string_prepend (&decl, "&");
3656
	  if (tk == tk_none)
3657
	    tk = tk_reference;
Jason Merrill committed
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	  break;

3660 3661 3662 3663 3664 3665 3666 3667
	  /* An rvalue reference type */
	case 'O':
	  (*mangled)++;
	  string_prepend (&decl, "&&");
	  if (tk == tk_none)
	    tk = tk_rvalue_reference;
	  break;

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	  /* An array */
	case 'A':
	  {
3671
	    ++(*mangled);
Jason Merrill committed
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	    if (!STRING_EMPTY (&decl)
		&& (decl.b[0] == '*' || decl.b[0] == '&'))
3674 3675 3676 3677 3678 3679 3680 3681
	      {
		string_prepend (&decl, "(");
		string_append (&decl, ")");
	      }
	    string_append (&decl, "[");
	    if (**mangled != '_')
	      success = demangle_template_value_parm (work, mangled, &decl,
						      tk_integral);
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	    if (**mangled == '_')
3683 3684
	      ++(*mangled);
	    string_append (&decl, "]");
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	    break;
	  }

	/* A back reference to a previously seen type */
	case 'T':
	  (*mangled)++;
3691
	  if (!get_count (mangled, &n) || n < 0 || n >= work -> ntypes)
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	    {
	      success = 0;
	    }
	  else
3696 3697 3698 3699 3700 3701 3702 3703 3704
	    for (i = 0; i < work->nproctypes; i++)
	      if (work -> proctypevec [i] == n)
	        success = 0;

	  if (success)
	    {    
	      is_proctypevec = 1;
	      push_processed_type (work, n);
	      remembered_type = work->typevec[n];
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	      mangled = &remembered_type;
	    }
	  break;

	  /* A function */
	case 'F':
	  (*mangled)++;
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	    if (!STRING_EMPTY (&decl)
		&& (decl.b[0] == '*' || decl.b[0] == '&'))
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	    {
	      string_prepend (&decl, "(");
	      string_append (&decl, ")");
	    }
	  /* After picking off the function args, we expect to either find the
	     function return type (preceded by an '_') or the end of the
	     string.  */
3721
	  if (!demangle_nested_args (work, mangled, &decl)
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	      || (**mangled != '_' && **mangled != '\0'))
	    {
	      success = 0;
3725
	      break;
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	    }
	  if (success && (**mangled == '_'))
3728
	    (*mangled)++;
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	  break;

	case 'M':
	  {
3733
	    type_quals = TYPE_UNQUALIFIED;
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	    member = **mangled == 'M';
	    (*mangled)++;

	    string_append (&decl, ")");
3739 3740 3741 3742 3743 3744

	    /* We don't need to prepend `::' for a qualified name;
	       demangle_qualified will do that for us.  */
	    if (**mangled != 'Q')
	      string_prepend (&decl, SCOPE_STRING (work));

Zack Weinberg committed
3745
	    if (ISDIGIT ((unsigned char)**mangled))
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	      {
		n = consume_count (mangled);
3748 3749
		if (n == -1
		    || (int) strlen (*mangled) < n)
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		  {
		    success = 0;
		    break;
		  }
		string_prependn (&decl, *mangled, n);
		*mangled += n;
	      }
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	    else if (**mangled == 'X' || **mangled == 'Y')
	      {
		string temp;
		do_type (work, mangled, &temp);
		string_prepends (&decl, &temp);
3762
		string_delete (&temp);
3763 3764
	      }
	    else if (**mangled == 't')
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	      {
		string temp;
		string_init (&temp);
3768 3769
		success = demangle_template (work, mangled, &temp,
					     NULL, 1, 1);
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		if (success)
		  {
		    string_prependn (&decl, temp.b, temp.p - temp.b);
3773
		    string_delete (&temp);
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		  }
		else
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		  {
		    string_delete (&temp);
		    break;
		  }
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	      }
3781 3782 3783 3784 3785 3786 3787 3788
	    else if (**mangled == 'Q')
	      {
		success = demangle_qualified (work, mangled, &decl,
					      /*isfuncnam=*/0, 
					      /*append=*/0);
		if (!success)
		  break;
	      }
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	    else
	      {
		success = 0;
		break;
	      }

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	    string_prepend (&decl, "(");
	    if (member)
	      {
3798
		switch (**mangled)
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		  {
3800 3801 3802 3803
		  case 'C':
		  case 'V':
		  case 'u':
		    type_quals |= code_for_qualifier (**mangled);
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		    (*mangled)++;
3805 3806 3807 3808
		    break;

		  default:
		    break;
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3809
		  }
3810

3811
		if (*(*mangled) != 'F')
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		  {
		    success = 0;
		    break;
		  }
3816
		(*mangled)++;
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3817
	      }
3818
	    if ((member && !demangle_nested_args (work, mangled, &decl))
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		|| **mangled != '_')
	      {
		success = 0;
		break;
	      }
	    (*mangled)++;
	    if (! PRINT_ANSI_QUALIFIERS)
	      {
		break;
	      }
3829
	    if (type_quals != TYPE_UNQUALIFIED)
Jason Merrill committed
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	      {
		APPEND_BLANK (&decl);
3832
		string_append (&decl, qualifier_string (type_quals));
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	      }
	    break;
	  }
        case 'G':
	  (*mangled)++;
	  break;

	case 'C':
3841
	case 'V':
3842
	case 'u':
Jason Merrill committed
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	  if (PRINT_ANSI_QUALIFIERS)
	    {
	      if (!STRING_EMPTY (&decl))
3846 3847 3848
		string_prepend (&decl, " ");

	      string_prepend (&decl, demangle_qualifier (**mangled));
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3849
	    }
3850
	  (*mangled)++;
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	  break;
	  /*
	    }
	    */

	  /* fall through */
	default:
	  done = 1;
	  break;
	}
    }

3863
  if (success) switch (**mangled)
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    {
      /* A qualified name, such as "Outer::Inner".  */
    case 'Q':
3867 3868 3869 3870 3871 3872 3873 3874 3875
    case 'K':
      {
        success = demangle_qualified (work, mangled, result, 0, 1);
        break;
      }

    /* A back reference to a previously seen squangled type */
    case 'B':
      (*mangled)++;
3876
      if (!get_count (mangled, &n) || n < 0 || n >= work -> numb)
3877
	success = 0;
3878
      else
3879
	string_append (result, work->btypevec[n]);
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      break;

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    case 'X':
    case 'Y':
      /* A template parm.  We substitute the corresponding argument. */
      {
	int idx;

	(*mangled)++;
	idx = consume_count_with_underscores (mangled);

3891
	if (idx == -1
3892 3893 3894 3895 3896 3897 3898 3899 3900 3901
	    || (work->tmpl_argvec && idx >= work->ntmpl_args)
	    || consume_count_with_underscores (mangled) == -1)
	  {
	    success = 0;
	    break;
	  }

	if (work->tmpl_argvec)
	  string_append (result, work->tmpl_argvec[idx]);
	else
3902
	  string_append_template_idx (result, idx);
3903 3904 3905 3906 3907

	success = 1;
      }
    break;

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    default:
      success = demangle_fund_type (work, mangled, result);
3910 3911
      if (tk == tk_none)
	tk = (type_kind_t) success;
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      break;
    }

  if (success)
    {
      if (!STRING_EMPTY (&decl))
	{
	  string_append (result, " ");
	  string_appends (result, &decl);
	}
    }
  else
3924
    string_delete (result);
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  string_delete (&decl);
3926

3927 3928 3929
  if (is_proctypevec)
    pop_processed_type (work); 

3930 3931 3932 3933 3934
  if (success)
    /* Assume an integral type, if we're not sure.  */
    return (int) ((tk == tk_none) ? tk_integral : tk);
  else
    return 0;
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}

/* Given a pointer to a type string that represents a fundamental type
   argument (int, long, unsigned int, etc) in TYPE, a pointer to the
   string in which the demangled output is being built in RESULT, and
   the WORK structure, decode the types and add them to the result.

   For example:

   	"Ci"	=>	"const int"
	"Sl"	=>	"signed long"
	"CUs"	=>	"const unsigned short"

3948
   The value returned is really a type_kind_t.  */
Jason Merrill committed
3949 3950

static int
3951 3952
demangle_fund_type (struct work_stuff *work,
                    const char **mangled, string *result)
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{
  int done = 0;
  int success = 1;
3956
  char buf[INTBUF_SIZE + 5 /* 'int%u_t' */];
3957
  unsigned int dec = 0;
3958 3959
  type_kind_t tk = tk_integral;

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  /* First pick off any type qualifiers.  There can be more than one.  */

  while (!done)
    {
      switch (**mangled)
	{
	case 'C':
3967 3968
	case 'V':
	case 'u':
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3969 3970
	  if (PRINT_ANSI_QUALIFIERS)
	    {
3971 3972 3973
              if (!STRING_EMPTY (result))
                string_prepend (result, " ");
	      string_prepend (result, demangle_qualifier (**mangled));
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3974
	    }
3975
	  (*mangled)++;
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	  break;
	case 'U':
	  (*mangled)++;
	  APPEND_BLANK (result);
	  string_append (result, "unsigned");
	  break;
	case 'S': /* signed char only */
	  (*mangled)++;
	  APPEND_BLANK (result);
	  string_append (result, "signed");
	  break;
	case 'J':
	  (*mangled)++;
	  APPEND_BLANK (result);
3990
	  string_append (result, "__complex");
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	  break;
	default:
	  done = 1;
	  break;
	}
    }

  /* Now pick off the fundamental type.  There can be only one.  */

  switch (**mangled)
    {
    case '\0':
    case '_':
      break;
    case 'v':
      (*mangled)++;
      APPEND_BLANK (result);
      string_append (result, "void");
      break;
    case 'x':
      (*mangled)++;
      APPEND_BLANK (result);
      string_append (result, "long long");
      break;
    case 'l':
      (*mangled)++;
      APPEND_BLANK (result);
      string_append (result, "long");
      break;
    case 'i':
      (*mangled)++;
      APPEND_BLANK (result);
      string_append (result, "int");
      break;
    case 's':
      (*mangled)++;
      APPEND_BLANK (result);
      string_append (result, "short");
      break;
    case 'b':
      (*mangled)++;
      APPEND_BLANK (result);
      string_append (result, "bool");
4034
      tk = tk_bool;
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      break;
    case 'c':
      (*mangled)++;
      APPEND_BLANK (result);
      string_append (result, "char");
4040
      tk = tk_char;
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4041 4042 4043 4044 4045
      break;
    case 'w':
      (*mangled)++;
      APPEND_BLANK (result);
      string_append (result, "wchar_t");
4046
      tk = tk_char;
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4047 4048 4049 4050 4051
      break;
    case 'r':
      (*mangled)++;
      APPEND_BLANK (result);
      string_append (result, "long double");
4052
      tk = tk_real;
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4053 4054 4055 4056 4057
      break;
    case 'd':
      (*mangled)++;
      APPEND_BLANK (result);
      string_append (result, "double");
4058
      tk = tk_real;
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      break;
    case 'f':
      (*mangled)++;
      APPEND_BLANK (result);
      string_append (result, "float");
4064
      tk = tk_real;
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4065 4066 4067
      break;
    case 'G':
      (*mangled)++;
Zack Weinberg committed
4068
      if (!ISDIGIT ((unsigned char)**mangled))
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4069 4070 4071 4072
	{
	  success = 0;
	  break;
	}
4073
      /* fall through */
4074
    case 'I':
4075
      (*mangled)++;
4076 4077 4078
      if (**mangled == '_')
	{
	  int i;
4079
	  (*mangled)++;
Jim Blandy committed
4080
	  for (i = 0;
Kaveh R. Ghazi committed
4081
	       i < (long) sizeof (buf) - 1 && **mangled && **mangled != '_';
4082
	       (*mangled)++, i++)
4083
	    buf[i] = **mangled;
Jim Blandy committed
4084 4085 4086 4087 4088
	  if (**mangled != '_')
	    {
	      success = 0;
	      break;
	    }
4089
	  buf[i] = '\0';
4090
	  (*mangled)++;
4091 4092 4093 4094
	}
      else
	{
	  strncpy (buf, *mangled, 2);
Jim Blandy committed
4095
	  buf[2] = '\0';
4096
	  *mangled += min (strlen (*mangled), 2);
4097
	}
4098
      sscanf (buf, "%x", &dec);
4099
      sprintf (buf, "int%u_t", dec);
4100 4101 4102 4103
      APPEND_BLANK (result);
      string_append (result, buf);
      break;

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      /* fall through */
      /* An explicit type, such as "6mytype" or "7integer" */
    case '0':
    case '1':
    case '2':
    case '3':
    case '4':
    case '5':
    case '6':
    case '7':
    case '8':
    case '9':
4116 4117 4118 4119 4120 4121 4122 4123 4124
      {
        int bindex = register_Btype (work);
        string btype;
        string_init (&btype);
        if (demangle_class_name (work, mangled, &btype)) {
          remember_Btype (work, btype.b, LEN_STRING (&btype), bindex);
          APPEND_BLANK (result);
          string_appends (result, &btype);
        }
4125
        else
4126 4127 4128
          success = 0;
        string_delete (&btype);
        break;
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      }
    case 't':
4131
      {
4132 4133
        string btype;
        string_init (&btype);
4134
        success = demangle_template (work, mangled, &btype, 0, 1, 1);
4135
        string_appends (result, &btype);
4136
        string_delete (&btype);
4137 4138
        break;
      }
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    default:
      success = 0;
      break;
    }

4144
  return success ? ((int) tk) : 0;
Jason Merrill committed
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}

4147 4148 4149 4150 4151

/* Handle a template's value parameter for HP aCC (extension from ARM)
   **mangled points to 'S' or 'U' */

static int
4152 4153
do_hpacc_template_const_value (struct work_stuff *work ATTRIBUTE_UNUSED,
                               const char **mangled, string *result)
4154 4155 4156 4157 4158
{
  int unsigned_const;

  if (**mangled != 'U' && **mangled != 'S')
    return 0;
4159

4160 4161 4162 4163 4164 4165 4166 4167
  unsigned_const = (**mangled == 'U');

  (*mangled)++;

  switch (**mangled)
    {
      case 'N':
        string_append (result, "-");
4168
        /* fall through */
4169 4170 4171 4172
      case 'P':
        (*mangled)++;
        break;
      case 'M':
4173
        /* special case for -2^31 */
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        string_append (result, "-2147483648");
        (*mangled)++;
        return 1;
      default:
        return 0;
    }

  /* We have to be looking at an integer now */
Zack Weinberg committed
4182
  if (!(ISDIGIT ((unsigned char)**mangled)))
4183 4184 4185 4186
    return 0;

  /* We only deal with integral values for template
     parameters -- so it's OK to look only for digits */
Zack Weinberg committed
4187
  while (ISDIGIT ((unsigned char)**mangled))
4188 4189 4190 4191 4192 4193 4194 4195 4196 4197 4198
    {
      char_str[0] = **mangled;
      string_append (result, char_str);
      (*mangled)++;
    }

  if (unsigned_const)
    string_append (result, "U");

  /* FIXME? Some day we may have 64-bit (or larger :-) ) constants
     with L or LL suffixes. pai/1997-09-03 */
4199 4200

  return 1; /* success */
4201 4202 4203 4204 4205 4206
}

/* Handle a template's literal parameter for HP aCC (extension from ARM)
   **mangled is pointing to the 'A' */

static int
4207 4208
do_hpacc_template_literal (struct work_stuff *work, const char **mangled,
                           string *result)
4209 4210 4211 4212
{
  int literal_len = 0;
  char * recurse;
  char * recurse_dem;
4213

4214 4215 4216 4217 4218 4219 4220
  if (**mangled != 'A')
    return 0;

  (*mangled)++;

  literal_len = consume_count (mangled);

4221 4222
  if (literal_len <= 0
      || literal_len > (long) strlen (*mangled))
4223 4224 4225 4226 4227 4228
    return 0;

  /* Literal parameters are names of arrays, functions, etc.  and the
     canonical representation uses the address operator */
  string_append (result, "&");

4229
  /* Now recursively demangle the literal name */
4230
  recurse = XNEWVEC (char, literal_len + 1);
4231 4232 4233 4234
  memcpy (recurse, *mangled, literal_len);
  recurse[literal_len] = '\000';

  recurse_dem = cplus_demangle (recurse, work->options);
4235

4236 4237 4238 4239 4240 4241 4242 4243 4244 4245 4246 4247 4248 4249 4250 4251
  if (recurse_dem)
    {
      string_append (result, recurse_dem);
      free (recurse_dem);
    }
  else
    {
      string_appendn (result, *mangled, literal_len);
    }
  (*mangled) += literal_len;
  free (recurse);

  return 1;
}

static int
4252
snarf_numeric_literal (const char **args, string *arg)
4253 4254 4255 4256 4257 4258 4259 4260 4261
{
  if (**args == '-')
    {
      char_str[0] = '-';
      string_append (arg, char_str);
      (*args)++;
    }
  else if (**args == '+')
    (*args)++;
4262

Zack Weinberg committed
4263
  if (!ISDIGIT ((unsigned char)**args))
4264 4265
    return 0;

Zack Weinberg committed
4266
  while (ISDIGIT ((unsigned char)**args))
4267 4268 4269 4270 4271 4272 4273 4274 4275
    {
      char_str[0] = **args;
      string_append (arg, char_str);
      (*args)++;
    }

  return 1;
}

4276 4277 4278
/* Demangle the next argument, given by MANGLED into RESULT, which
   *should be an uninitialized* string.  It will be initialized here,
   and free'd should anything go wrong.  */
Jason Merrill committed
4279 4280

static int
4281
do_arg (struct work_stuff *work, const char **mangled, string *result)
Jason Merrill committed
4282
{
4283 4284
  /* Remember where we started so that we can record the type, for
     non-squangling type remembering.  */
Jason Merrill committed
4285 4286
  const char *start = *mangled;

4287 4288 4289
  string_init (result);

  if (work->nrepeats > 0)
Jason Merrill committed
4290
    {
4291 4292 4293 4294 4295
      --work->nrepeats;

      if (work->previous_argument == 0)
	return 0;

4296
      /* We want to reissue the previous type in this argument list.  */
4297 4298
      string_appends (result, work->previous_argument);
      return 1;
Jason Merrill committed
4299
    }
4300 4301 4302 4303 4304 4305 4306

  if (**mangled == 'n')
    {
      /* A squangling-style repeat.  */
      (*mangled)++;
      work->nrepeats = consume_count(mangled);

4307
      if (work->nrepeats <= 0)
4308 4309 4310 4311 4312 4313 4314 4315 4316 4317 4318 4319
	/* This was not a repeat count after all.  */
	return 0;

      if (work->nrepeats > 9)
	{
	  if (**mangled != '_')
	    /* The repeat count should be followed by an '_' in this
	       case.  */
	    return 0;
	  else
	    (*mangled)++;
	}
4320

4321 4322 4323 4324 4325 4326 4327 4328 4329
      /* Now, the repeat is all set up.  */
      return do_arg (work, mangled, result);
    }

  /* Save the result in WORK->previous_argument so that we can find it
     if it's repeated.  Note that saving START is not good enough: we
     do not want to add additional types to the back-referenceable
     type vector when processing a repeated type.  */
  if (work->previous_argument)
4330
    string_delete (work->previous_argument);
Jason Merrill committed
4331
  else
4332
    work->previous_argument = XNEW (string);
4333 4334 4335 4336 4337 4338 4339 4340

  if (!do_type (work, mangled, work->previous_argument))
    return 0;

  string_appends (result, work->previous_argument);

  remember_type (work, start, *mangled - start);
  return 1;
Jason Merrill committed
4341 4342 4343
}

static void
4344 4345 4346 4347 4348 4349 4350 4351 4352 4353 4354 4355 4356 4357 4358 4359 4360 4361 4362 4363 4364 4365 4366 4367 4368 4369 4370 4371 4372 4373 4374 4375 4376 4377 4378
push_processed_type (struct work_stuff *work, int typevec_index)
{
  if (work->nproctypes >= work->proctypevec_size)
    {
      if (!work->proctypevec_size)
	{
	  work->proctypevec_size = 4;
	  work->proctypevec = XNEWVEC (int, work->proctypevec_size);
	}
      else 
	{
	  if (work->proctypevec_size < 16)
	    /* Double when small.  */
	    work->proctypevec_size *= 2;
	  else
	    {
	      /* Grow slower when large.  */
	      if (work->proctypevec_size > (INT_MAX / 3) * 2)
                xmalloc_failed (INT_MAX);
              work->proctypevec_size = (work->proctypevec_size * 3 / 2);
	    }   
          work->proctypevec
            = XRESIZEVEC (int, work->proctypevec, work->proctypevec_size);
	}
    }
    work->proctypevec [work->nproctypes++] = typevec_index;
}

static void
pop_processed_type (struct work_stuff *work)
{
  work->nproctypes--;
}

static void
4379
remember_type (struct work_stuff *work, const char *start, int len)
Jason Merrill committed
4380 4381 4382
{
  char *tem;

4383 4384 4385
  if (work->forgetting_types)
    return;

Jason Merrill committed
4386 4387 4388 4389 4390
  if (work -> ntypes >= work -> typevec_size)
    {
      if (work -> typevec_size == 0)
	{
	  work -> typevec_size = 3;
4391
	  work -> typevec = XNEWVEC (char *, work->typevec_size);
Jason Merrill committed
4392 4393 4394
	}
      else
	{
4395 4396
          if (work -> typevec_size > INT_MAX / 2)
	    xmalloc_failed (INT_MAX);
Jason Merrill committed
4397 4398
	  work -> typevec_size *= 2;
	  work -> typevec
4399
	    = XRESIZEVEC (char *, work->typevec, work->typevec_size);
Jason Merrill committed
4400 4401
	}
    }
4402
  tem = XNEWVEC (char, len + 1);
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  memcpy (tem, start, len);
  tem[len] = '\0';
  work -> typevec[work -> ntypes++] = tem;
}

4408 4409 4410

/* Remember a K type class qualifier. */
static void
4411
remember_Ktype (struct work_stuff *work, const char *start, int len)
4412 4413 4414 4415 4416 4417 4418 4419
{
  char *tem;

  if (work -> numk >= work -> ksize)
    {
      if (work -> ksize == 0)
	{
	  work -> ksize = 5;
4420
	  work -> ktypevec = XNEWVEC (char *, work->ksize);
4421 4422 4423
	}
      else
	{
4424 4425
          if (work -> ksize > INT_MAX / 2)
	    xmalloc_failed (INT_MAX);
4426 4427
	  work -> ksize *= 2;
	  work -> ktypevec
4428
	    = XRESIZEVEC (char *, work->ktypevec, work->ksize);
4429 4430
	}
    }
4431
  tem = XNEWVEC (char, len + 1);
4432 4433 4434 4435 4436 4437
  memcpy (tem, start, len);
  tem[len] = '\0';
  work -> ktypevec[work -> numk++] = tem;
}

/* Register a B code, and get an index for it. B codes are registered
4438
   as they are seen, rather than as they are completed, so map<temp<char> >
4439 4440 4441
   registers map<temp<char> > as B0, and temp<char> as B1 */

static int
4442
register_Btype (struct work_stuff *work)
4443 4444
{
  int ret;
4445

4446 4447 4448 4449 4450
  if (work -> numb >= work -> bsize)
    {
      if (work -> bsize == 0)
	{
	  work -> bsize = 5;
4451
	  work -> btypevec = XNEWVEC (char *, work->bsize);
4452 4453 4454
	}
      else
	{
4455 4456
          if (work -> bsize > INT_MAX / 2)
	    xmalloc_failed (INT_MAX);
4457 4458
	  work -> bsize *= 2;
	  work -> btypevec
4459
	    = XRESIZEVEC (char *, work->btypevec, work->bsize);
4460 4461 4462 4463 4464 4465 4466 4467 4468 4469
	}
    }
  ret = work -> numb++;
  work -> btypevec[ret] = NULL;
  return(ret);
}

/* Store a value into a previously registered B code type. */

static void
4470 4471
remember_Btype (struct work_stuff *work, const char *start,
                int len, int index)
4472 4473 4474
{
  char *tem;

4475
  tem = XNEWVEC (char, len + 1);
4476 4477 4478 4479 4480 4481 4482
  memcpy (tem, start, len);
  tem[len] = '\0';
  work -> btypevec[index] = tem;
}

/* Lose all the info related to B and K type codes. */
static void
4483
forget_B_and_K_types (struct work_stuff *work)
4484 4485 4486 4487 4488 4489 4490 4491 4492 4493 4494 4495 4496 4497 4498 4499 4500 4501 4502 4503 4504 4505 4506
{
  int i;

  while (work -> numk > 0)
    {
      i = --(work -> numk);
      if (work -> ktypevec[i] != NULL)
	{
	  free (work -> ktypevec[i]);
	  work -> ktypevec[i] = NULL;
	}
    }

  while (work -> numb > 0)
    {
      i = --(work -> numb);
      if (work -> btypevec[i] != NULL)
	{
	  free (work -> btypevec[i]);
	  work -> btypevec[i] = NULL;
	}
    }
}
Jason Merrill committed
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/* Forget the remembered types, but not the type vector itself.  */

static void
4510
forget_types (struct work_stuff *work)
Jason Merrill committed
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{
  int i;

  while (work -> ntypes > 0)
    {
      i = --(work -> ntypes);
      if (work -> typevec[i] != NULL)
	{
	  free (work -> typevec[i]);
	  work -> typevec[i] = NULL;
	}
    }
}

/* Process the argument list part of the signature, after any class spec
   has been consumed, as well as the first 'F' character (if any).  For
   example:

   "__als__3fooRT0"		=>	process "RT0"
   "complexfunc5__FPFPc_PFl_i"	=>	process "PFPc_PFl_i"

   DECLP must be already initialised, usually non-empty.  It won't be freed
   on failure.

   Note that g++ differs significantly from ARM and lucid style mangling
   with regards to references to previously seen types.  For example, given
   the source fragment:

     class foo {
       public:
       foo::foo (int, foo &ia, int, foo &ib, int, foo &ic);
     };

     foo::foo (int, foo &ia, int, foo &ib, int, foo &ic) { ia = ib = ic; }
     void foo (int, foo &ia, int, foo &ib, int, foo &ic) { ia = ib = ic; }

   g++ produces the names:

     __3fooiRT0iT2iT2
     foo__FiR3fooiT1iT1

   while lcc (and presumably other ARM style compilers as well) produces:

     foo__FiR3fooT1T2T1T2
     __ct__3fooFiR3fooT1T2T1T2

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   Note that g++ bases its type numbers starting at zero and counts all
   previously seen types, while lucid/ARM bases its type numbers starting
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   at one and only considers types after it has seen the 'F' character
   indicating the start of the function args.  For lucid/ARM style, we
   account for this difference by discarding any previously seen types when
   we see the 'F' character, and subtracting one from the type number
   reference.

 */

static int
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demangle_args (struct work_stuff *work, const char **mangled,
               string *declp)
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{
  string arg;
  int need_comma = 0;
  int r;
  int t;
  const char *tem;
  char temptype;

  if (PRINT_ARG_TYPES)
    {
      string_append (declp, "(");
      if (**mangled == '\0')
	{
	  string_append (declp, "void");
	}
    }

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  while ((**mangled != '_' && **mangled != '\0' && **mangled != 'e')
	 || work->nrepeats > 0)
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    {
      if ((**mangled == 'N') || (**mangled == 'T'))
	{
	  temptype = *(*mangled)++;
4593

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	  if (temptype == 'N')
	    {
	      if (!get_count (mangled, &r))
		{
		  return (0);
		}
	    }
	  else
	    {
	      r = 1;
	    }
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          if ((HP_DEMANGLING || ARM_DEMANGLING || EDG_DEMANGLING) && work -> ntypes >= 10)
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            {
              /* If we have 10 or more types we might have more than a 1 digit
                 index so we'll have to consume the whole count here. This
                 will lose if the next thing is a type name preceded by a
                 count but it's impossible to demangle that case properly
                 anyway. Eg if we already have 12 types is T12Pc "(..., type1,
                 Pc, ...)"  or "(..., type12, char *, ...)" */
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              if ((t = consume_count(mangled)) <= 0)
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                {
                  return (0);
                }
            }
          else
	    {
	      if (!get_count (mangled, &t))
	    	{
	          return (0);
	    	}
	    }
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	  if (LUCID_DEMANGLING || ARM_DEMANGLING || HP_DEMANGLING || EDG_DEMANGLING)
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	    {
	      t--;
	    }
	  /* Validate the type index.  Protect against illegal indices from
	     malformed type strings.  */
	  if ((t < 0) || (t >= work -> ntypes))
	    {
	      return (0);
	    }
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	  while (work->nrepeats > 0 || --r >= 0)
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	    {
	      tem = work -> typevec[t];
	      if (need_comma && PRINT_ARG_TYPES)
		{
		  string_append (declp, ", ");
		}
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	      push_processed_type (work, t);  
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	      if (!do_arg (work, &tem, &arg))
		{
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		  pop_processed_type (work);
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		  return (0);
		}
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	      pop_processed_type (work);
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	      if (PRINT_ARG_TYPES)
		{
		  string_appends (declp, &arg);
		}
	      string_delete (&arg);
	      need_comma = 1;
	    }
	}
      else
	{
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	  if (need_comma && PRINT_ARG_TYPES)
	    string_append (declp, ", ");
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	  if (!do_arg (work, mangled, &arg))
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	    return (0);
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	  if (PRINT_ARG_TYPES)
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	    string_appends (declp, &arg);
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	  string_delete (&arg);
	  need_comma = 1;
	}
    }

  if (**mangled == 'e')
    {
      (*mangled)++;
      if (PRINT_ARG_TYPES)
	{
	  if (need_comma)
	    {
	      string_append (declp, ",");
	    }
	  string_append (declp, "...");
	}
    }

  if (PRINT_ARG_TYPES)
    {
      string_append (declp, ")");
    }
  return (1);
}

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/* Like demangle_args, but for demangling the argument lists of function
   and method pointers or references, not top-level declarations.  */

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static int
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demangle_nested_args (struct work_stuff *work, const char **mangled,
                      string *declp)
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{
  string* saved_previous_argument;
  int result;
  int saved_nrepeats;

  /* The G++ name-mangling algorithm does not remember types on nested
     argument lists, unless -fsquangling is used, and in that case the
     type vector updated by remember_type is not used.  So, we turn
     off remembering of types here.  */
  ++work->forgetting_types;

  /* For the repeat codes used with -fsquangling, we must keep track of
     the last argument.  */
  saved_previous_argument = work->previous_argument;
  saved_nrepeats = work->nrepeats;
  work->previous_argument = 0;
  work->nrepeats = 0;

  /* Actually demangle the arguments.  */
  result = demangle_args (work, mangled, declp);
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  /* Restore the previous_argument field.  */
  if (work->previous_argument)
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    {
      string_delete (work->previous_argument);
      free ((char *) work->previous_argument);
    }
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  work->previous_argument = saved_previous_argument;
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  --work->forgetting_types;
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  work->nrepeats = saved_nrepeats;

  return result;
}

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/* Returns 1 if a valid function name was found or 0 otherwise.  */

static int 
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demangle_function_name (struct work_stuff *work, const char **mangled,
                        string *declp, const char *scan)
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{
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  size_t i;
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  string type;
  const char *tem;

  string_appendn (declp, (*mangled), scan - (*mangled));
  string_need (declp, 1);
  *(declp -> p) = '\0';

  /* Consume the function name, including the "__" separating the name
     from the signature.  We are guaranteed that SCAN points to the
     separator.  */

  (*mangled) = scan + 2;
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  /* We may be looking at an instantiation of a template function:
     foo__Xt1t2_Ft3t4, where t1, t2, ... are template arguments and a
     following _F marks the start of the function arguments.  Handle
     the template arguments first. */
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  if (HP_DEMANGLING && (**mangled == 'X'))
    {
      demangle_arm_hp_template (work, mangled, 0, declp);
      /* This leaves MANGLED pointing to the 'F' marking func args */
    }
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  if (LUCID_DEMANGLING || ARM_DEMANGLING || HP_DEMANGLING || EDG_DEMANGLING)
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    {

      /* See if we have an ARM style constructor or destructor operator.
	 If so, then just record it, clear the decl, and return.
	 We can't build the actual constructor/destructor decl until later,
	 when we recover the class name from the signature.  */

      if (strcmp (declp -> b, "__ct") == 0)
	{
	  work -> constructor += 1;
	  string_clear (declp);
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	  return 1;
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	}
      else if (strcmp (declp -> b, "__dt") == 0)
	{
	  work -> destructor += 1;
	  string_clear (declp);
4778
	  return 1;
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	}
    }

4782
  if (declp->p - declp->b >= 3
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      && declp->b[0] == 'o'
      && declp->b[1] == 'p'
      && strchr (cplus_markers, declp->b[2]) != NULL)
    {
      /* see if it's an assignment expression */
      if (declp->p - declp->b >= 10 /* op$assign_ */
	  && memcmp (declp->b + 3, "assign_", 7) == 0)
	{
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	  for (i = 0; i < ARRAY_SIZE (optable); i++)
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	    {
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	      int len = declp->p - declp->b - 10;
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	      if ((int) strlen (optable[i].in) == len
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		  && memcmp (optable[i].in, declp->b + 10, len) == 0)
		{
		  string_clear (declp);
		  string_append (declp, "operator");
		  string_append (declp, optable[i].out);
		  string_append (declp, "=");
		  break;
		}
	    }
	}
      else
	{
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	  for (i = 0; i < ARRAY_SIZE (optable); i++)
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	    {
	      int len = declp->p - declp->b - 3;
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	      if ((int) strlen (optable[i].in) == len
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		  && memcmp (optable[i].in, declp->b + 3, len) == 0)
		{
		  string_clear (declp);
		  string_append (declp, "operator");
		  string_append (declp, optable[i].out);
		  break;
		}
	    }
	}
    }
  else if (declp->p - declp->b >= 5 && memcmp (declp->b, "type", 4) == 0
	   && strchr (cplus_markers, declp->b[4]) != NULL)
    {
      /* type conversion operator */
      tem = declp->b + 5;
      if (do_type (work, &tem, &type))
	{
	  string_clear (declp);
	  string_append (declp, "operator ");
	  string_appends (declp, &type);
	  string_delete (&type);
	}
    }
  else if (declp->b[0] == '_' && declp->b[1] == '_'
	   && declp->b[2] == 'o' && declp->b[3] == 'p')
    {
      /* ANSI.  */
      /* type conversion operator.  */
      tem = declp->b + 4;
      if (do_type (work, &tem, &type))
	{
	  string_clear (declp);
	  string_append (declp, "operator ");
	  string_appends (declp, &type);
	  string_delete (&type);
	}
    }
  else if (declp->b[0] == '_' && declp->b[1] == '_'
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	   && ISLOWER((unsigned char)declp->b[2])
	   && ISLOWER((unsigned char)declp->b[3]))
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    {
      if (declp->b[4] == '\0')
	{
	  /* Operator.  */
4855
	  for (i = 0; i < ARRAY_SIZE (optable); i++)
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	    {
	      if (strlen (optable[i].in) == 2
		  && memcmp (optable[i].in, declp->b + 2, 2) == 0)
		{
		  string_clear (declp);
		  string_append (declp, "operator");
		  string_append (declp, optable[i].out);
		  break;
		}
	    }
	}
      else
	{
	  if (declp->b[2] == 'a' && declp->b[5] == '\0')
	    {
	      /* Assignment.  */
4872
	      for (i = 0; i < ARRAY_SIZE (optable); i++)
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		{
		  if (strlen (optable[i].in) == 3
		      && memcmp (optable[i].in, declp->b + 2, 3) == 0)
		    {
		      string_clear (declp);
		      string_append (declp, "operator");
		      string_append (declp, optable[i].out);
		      break;
4881
		    }
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		}
	    }
	}
    }
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  /* If a function name was obtained but it's not valid, we were not
     successful.  */
  if (LEN_STRING (declp) == 1 && declp->b[0] == '.')
    return 0;
  else
    return 1;
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}

/* a mini string-handling package */

static void
4898
string_need (string *s, int n)
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{
  int tem;

  if (s->b == NULL)
    {
      if (n < 32)
	{
	  n = 32;
	}
4908
      s->p = s->b = XNEWVEC (char, n);
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      s->e = s->b + n;
    }
  else if (s->e - s->p < n)
    {
      tem = s->p - s->b;
4914 4915
      if (n > INT_MAX / 2 - tem)
        xmalloc_failed (INT_MAX); 
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      n += tem;
      n *= 2;
4918
      s->b = XRESIZEVEC (char, s->b, n);
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      s->p = s->b + tem;
      s->e = s->b + n;
    }
}

static void
4925
string_delete (string *s)
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{
  if (s->b != NULL)
    {
      free (s->b);
      s->b = s->e = s->p = NULL;
    }
}

static void
4935
string_init (string *s)
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{
  s->b = s->p = s->e = NULL;
}

4940
static void
4941
string_clear (string *s)
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{
  s->p = s->b;
}

#if 0

static int
4949
string_empty (string *s)
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{
  return (s->b == s->p);
}

#endif

static void
4957
string_append (string *p, const char *s)
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{
  int n;
  if (s == NULL || *s == '\0')
    return;
  n = strlen (s);
  string_need (p, n);
  memcpy (p->p, s, n);
  p->p += n;
}

static void
4969
string_appends (string *p, string *s)
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{
  int n;

  if (s->b != s->p)
    {
      n = s->p - s->b;
      string_need (p, n);
      memcpy (p->p, s->b, n);
      p->p += n;
    }
}

static void
4983
string_appendn (string *p, const char *s, int n)
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{
  if (n != 0)
    {
      string_need (p, n);
      memcpy (p->p, s, n);
      p->p += n;
    }
}

static void
4994
string_prepend (string *p, const char *s)
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{
  if (s != NULL && *s != '\0')
    {
      string_prependn (p, s, strlen (s));
    }
}

static void
5003
string_prepends (string *p, string *s)
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{
  if (s->b != s->p)
    {
      string_prependn (p, s->b, s->p - s->b);
    }
}

static void
5012
string_prependn (string *p, const char *s, int n)
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{
  char *q;

  if (n != 0)
    {
      string_need (p, n);
      for (q = p->p - 1; q >= p->b; q--)
	{
	  q[n] = q[0];
	}
      memcpy (p->b, s, n);
      p->p += n;
    }
}

5028
static void
5029
string_append_template_idx (string *s, int idx)
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{
  char buf[INTBUF_SIZE + 1 /* 'T' */];
  sprintf(buf, "T%d", idx);
  string_append (s, buf);
}