Home | History | Annotate | Line # | Download | only in gdb
c-valprint.c revision 1.1.1.8
      1 /* Support for printing C values for GDB, the GNU debugger.
      2 
      3    Copyright (C) 1986-2024 Free Software Foundation, Inc.
      4 
      5    This file is part of GDB.
      6 
      7    This program is free software; you can redistribute it and/or modify
      8    it under the terms of the GNU General Public License as published by
      9    the Free Software Foundation; either version 3 of the License, or
     10    (at your option) any later version.
     11 
     12    This program is distributed in the hope that it will be useful,
     13    but WITHOUT ANY WARRANTY; without even the implied warranty of
     14    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
     15    GNU General Public License for more details.
     16 
     17    You should have received a copy of the GNU General Public License
     18    along with this program.  If not, see <http://www.gnu.org/licenses/>.  */
     19 
     20 #include "extract-store-integer.h"
     21 #include "symtab.h"
     22 #include "gdbtypes.h"
     23 #include "expression.h"
     24 #include "value.h"
     25 #include "valprint.h"
     26 #include "language.h"
     27 #include "c-lang.h"
     28 #include "cp-abi.h"
     29 #include "target.h"
     30 #include "objfiles.h"
     31 
     32 
     34 /* A helper for c_textual_element_type.  This checks the name of the
     35    typedef.  This is bogus but it isn't apparent that the compiler
     36    provides us the help we may need.  */
     37 
     38 static int
     39 textual_name (const char *name)
     40 {
     41   return (!strcmp (name, "wchar_t")
     42 	  || !strcmp (name, "char16_t")
     43 	  || !strcmp (name, "char32_t"));
     44 }
     45 
     46 /* Apply a heuristic to decide whether an array of TYPE or a pointer
     47    to TYPE should be printed as a textual string.  Return non-zero if
     48    it should, or zero if it should be treated as an array of integers
     49    or pointer to integers.  FORMAT is the current format letter, or 0
     50    if none.
     51 
     52    We guess that "char" is a character.  Explicitly signed and
     53    unsigned character types are also characters.  Integer data from
     54    vector types is not.  The user can override this by using the /s
     55    format letter.  */
     56 
     57 int
     58 c_textual_element_type (struct type *type, char format)
     59 {
     60   struct type *true_type, *iter_type;
     61 
     62   if (format != 0 && format != 's')
     63     return 0;
     64 
     65   /* We also rely on this for its side effect of setting up all the
     66      typedef pointers.  */
     67   true_type = check_typedef (type);
     68 
     69   /* TYPE_CODE_CHAR is always textual.  */
     70   if (true_type->code () == TYPE_CODE_CHAR)
     71     return 1;
     72 
     73   /* Any other character-like types must be integral.  */
     74   if (true_type->code () != TYPE_CODE_INT)
     75     return 0;
     76 
     77   /* We peel typedefs one by one, looking for a match.  */
     78   iter_type = type;
     79   while (iter_type)
     80     {
     81       /* Check the name of the type.  */
     82       if (iter_type->name () && textual_name (iter_type->name ()))
     83 	return 1;
     84 
     85       if (iter_type->code () != TYPE_CODE_TYPEDEF)
     86 	break;
     87 
     88       /* Peel a single typedef.  If the typedef doesn't have a target
     89 	 type, we use check_typedef and hope the result is ok -- it
     90 	 might be for C++, where wchar_t is a built-in type.  */
     91       if (iter_type->target_type ())
     92 	iter_type = iter_type->target_type ();
     93       else
     94 	iter_type = check_typedef (iter_type);
     95     }
     96 
     97   if (format == 's')
     98     {
     99       /* Print this as a string if we can manage it.  For now, no wide
    100 	 character support.  */
    101       if (true_type->code () == TYPE_CODE_INT
    102 	  && true_type->length () == 1)
    103 	return 1;
    104     }
    105   else
    106     {
    107       /* If a one-byte TYPE_CODE_INT is missing the not-a-character
    108 	 flag, then we treat it as text; otherwise, we assume it's
    109 	 being used as data.  */
    110       if (true_type->code () == TYPE_CODE_INT
    111 	  && true_type->length () == 1
    112 	  && !TYPE_NOTTEXT (true_type))
    113 	return 1;
    114     }
    115 
    116   return 0;
    117 }
    118 
    119 /* Decorations for C.  */
    120 
    121 static const struct generic_val_print_decorations c_decorations =
    122 {
    123   "",
    124   " + ",
    125   "i",
    126   "true",
    127   "false",
    128   "void",
    129   "{",
    130   "}"
    131 };
    132 
    133 /* Print a pointer based on the type of its target.
    134 
    135    Arguments to this functions are roughly the same as those in c_val_print.
    136    A difference is that ADDRESS is the address to print, with embedded_offset
    137    already added.  UNRESOLVED_ELTTYPE and ELTTYPE represent the pointed type,
    138    respectively before and after check_typedef.  */
    139 
    140 static void
    141 print_unpacked_pointer (struct type *type, struct type *elttype,
    142 			struct type *unresolved_elttype,
    143 			const gdb_byte *valaddr, int embedded_offset,
    144 			CORE_ADDR address, struct ui_file *stream, int recurse,
    145 			const struct value_print_options *options)
    146 {
    147   int want_space = 0;
    148   struct gdbarch *gdbarch = type->arch ();
    149 
    150   if (elttype->code () == TYPE_CODE_FUNC)
    151     {
    152       /* Try to print what function it points to.  */
    153       print_function_pointer_address (options, gdbarch, address, stream);
    154       return;
    155     }
    156 
    157   if (options->symbol_print)
    158     want_space = print_address_demangle (options, gdbarch, address, stream,
    159 					 demangle);
    160   else if (options->addressprint)
    161     {
    162       gdb_puts (paddress (gdbarch, address), stream);
    163       want_space = 1;
    164     }
    165 
    166   /* For a pointer to a textual type, also print the string
    167      pointed to, unless pointer is null.  */
    168 
    169   if (c_textual_element_type (unresolved_elttype, options->format)
    170       && address != 0)
    171     {
    172       if (want_space)
    173 	gdb_puts (" ", stream);
    174       val_print_string (unresolved_elttype, NULL, address, -1, stream, options);
    175     }
    176   else if (cp_is_vtbl_member (type))
    177     {
    178       /* Print vtbl's nicely.  */
    179       CORE_ADDR vt_address = unpack_pointer (type, valaddr + embedded_offset);
    180       struct bound_minimal_symbol msymbol =
    181 	lookup_minimal_symbol_by_pc (vt_address);
    182 
    183       /* If 'symbol_print' is set, we did the work above.  */
    184       if (!options->symbol_print
    185 	  && (msymbol.minsym != NULL)
    186 	  && (vt_address == msymbol.value_address ()))
    187 	{
    188 	  if (want_space)
    189 	    gdb_puts (" ", stream);
    190 	  gdb_puts (" <", stream);
    191 	  gdb_puts (msymbol.minsym->print_name (), stream);
    192 	  gdb_puts (">", stream);
    193 	  want_space = 1;
    194 	}
    195 
    196       if (vt_address && options->vtblprint)
    197 	{
    198 	  struct value *vt_val;
    199 	  struct symbol *wsym = NULL;
    200 	  struct type *wtype;
    201 
    202 	  if (want_space)
    203 	    gdb_puts (" ", stream);
    204 
    205 	  if (msymbol.minsym != NULL)
    206 	    {
    207 	      const char *search_name = msymbol.minsym->search_name ();
    208 	      wsym = lookup_symbol_search_name (search_name, NULL,
    209 						SEARCH_VAR_DOMAIN).symbol;
    210 	    }
    211 
    212 	  if (wsym)
    213 	    {
    214 	      wtype = wsym->type ();
    215 	    }
    216 	  else
    217 	    {
    218 	      wtype = unresolved_elttype;
    219 	    }
    220 	  vt_val = value_at (wtype, vt_address);
    221 	  common_val_print (vt_val, stream, recurse + 1, options,
    222 			    current_language);
    223 	  if (options->prettyformat)
    224 	    {
    225 	      gdb_printf (stream, "\n");
    226 	      print_spaces (2 + 2 * recurse, stream);
    227 	    }
    228 	}
    229     }
    230 }
    231 
    232 /* c_value_print helper for TYPE_CODE_ARRAY.  */
    233 
    234 static void
    235 c_value_print_array (struct value *val,
    236 		     struct ui_file *stream, int recurse,
    237 		     const struct value_print_options *options)
    238 {
    239   struct type *type = check_typedef (val->type ());
    240   CORE_ADDR address = val->address ();
    241   const gdb_byte *valaddr = val->contents_for_printing ().data ();
    242   struct type *unresolved_elttype = type->target_type ();
    243   struct type *elttype = check_typedef (unresolved_elttype);
    244 
    245   if (type->length () > 0 && unresolved_elttype->length () > 0)
    246     {
    247       LONGEST low_bound, high_bound;
    248       int eltlen, len;
    249       enum bfd_endian byte_order = type_byte_order (type);
    250 
    251       if (!get_array_bounds (type, &low_bound, &high_bound))
    252 	error (_("Could not determine the array high bound"));
    253 
    254       eltlen = elttype->length ();
    255       len = high_bound - low_bound + 1;
    256 
    257       /* Print arrays of textual chars with a string syntax, as
    258 	 long as the entire array is valid.  */
    259       if (c_textual_element_type (unresolved_elttype,
    260 				  options->format)
    261 	  && val->bytes_available (0, type->length ())
    262 	  && !val->bits_any_optimized_out (0,
    263 					   TARGET_CHAR_BIT * type->length ()))
    264 	{
    265 	  int force_ellipses = 0;
    266 
    267 	  /* If requested, look for the first null char and only
    268 	     print elements up to it.  */
    269 	  if (options->stop_print_at_null)
    270 	    {
    271 	      unsigned int print_max_chars = get_print_max_chars (options);
    272 	      unsigned int temp_len;
    273 
    274 	      for (temp_len = 0;
    275 		   (temp_len < len
    276 		    && temp_len < print_max_chars
    277 		    && extract_unsigned_integer (valaddr + temp_len * eltlen,
    278 						 eltlen, byte_order) != 0);
    279 		   ++temp_len)
    280 		;
    281 
    282 	      /* Force printstr to print ellipses if
    283 		 we've printed the maximum characters and
    284 		 the next character is not \000.  */
    285 	      if (temp_len == print_max_chars && temp_len < len)
    286 		{
    287 		  ULONGEST ival
    288 		    = extract_unsigned_integer (valaddr + temp_len * eltlen,
    289 						eltlen, byte_order);
    290 		  if (ival != 0)
    291 		    force_ellipses = 1;
    292 		}
    293 
    294 	      len = temp_len;
    295 	    }
    296 
    297 	  current_language->printstr (stream, unresolved_elttype, valaddr, len,
    298 				      NULL, force_ellipses, options);
    299 	}
    300       else
    301 	{
    302 	  unsigned int i = 0;
    303 	  gdb_printf (stream, "{");
    304 	  /* If this is a virtual function table, print the 0th
    305 	     entry specially, and the rest of the members
    306 	     normally.  */
    307 	  if (cp_is_vtbl_ptr_type (elttype))
    308 	    {
    309 	      i = 1;
    310 	      gdb_printf (stream, _("%d vtable entries"),
    311 			  len - 1);
    312 	    }
    313 	  value_print_array_elements (val, stream, recurse, options, i);
    314 	  gdb_printf (stream, "}");
    315 	}
    316     }
    317   else
    318     {
    319       /* Array of unspecified length: treat like pointer to first elt.  */
    320       print_unpacked_pointer (type, elttype, unresolved_elttype, valaddr,
    321 			      0, address, stream, recurse, options);
    322     }
    323 }
    324 
    325 /* c_value_print_inner helper for TYPE_CODE_PTR.  */
    326 
    327 static void
    328 c_value_print_ptr (struct value *val, struct ui_file *stream, int recurse,
    329 		   const struct value_print_options *options)
    330 {
    331   if (options->format && options->format != 's')
    332     {
    333       value_print_scalar_formatted (val, options, 0, stream);
    334       return;
    335     }
    336 
    337   struct type *type = check_typedef (val->type ());
    338   const gdb_byte *valaddr = val->contents_for_printing ().data ();
    339 
    340   if (options->vtblprint && cp_is_vtbl_ptr_type (type))
    341     {
    342       /* Print the unmangled name if desired.  */
    343       /* Print vtable entry - we only get here if we ARE using
    344 	 -fvtable_thunks.  (Otherwise, look under
    345 	 TYPE_CODE_STRUCT.)  */
    346       CORE_ADDR addr = extract_typed_address (valaddr, type);
    347 
    348       print_function_pointer_address (options, type->arch (), addr, stream);
    349     }
    350   else
    351     {
    352       struct type *unresolved_elttype = type->target_type ();
    353       struct type *elttype = check_typedef (unresolved_elttype);
    354       CORE_ADDR addr = unpack_pointer (type, valaddr);
    355 
    356       print_unpacked_pointer (type, elttype, unresolved_elttype, valaddr,
    357 			      0, addr, stream, recurse, options);
    358     }
    359 }
    360 
    361 /* c_value_print helper for TYPE_CODE_STRUCT and TYPE_CODE_UNION.  */
    362 
    363 static void
    364 c_value_print_struct (struct value *val, struct ui_file *stream, int recurse,
    365 		      const struct value_print_options *options)
    366 {
    367   struct type *type = check_typedef (val->type ());
    368 
    369   if (type->code () == TYPE_CODE_UNION && recurse && !options->unionprint)
    370     gdb_printf (stream, "{...}");
    371   else if (options->vtblprint && cp_is_vtbl_ptr_type (type))
    372     {
    373       /* Print the unmangled name if desired.  */
    374       /* Print vtable entry - we only get here if NOT using
    375 	 -fvtable_thunks.  (Otherwise, look under
    376 	 TYPE_CODE_PTR.)  */
    377       int offset = type->field (VTBL_FNADDR_OFFSET).loc_bitpos () / 8;
    378       struct type *field_type = type->field (VTBL_FNADDR_OFFSET).type ();
    379       const gdb_byte *valaddr = val->contents_for_printing ().data ();
    380       CORE_ADDR addr = extract_typed_address (valaddr + offset, field_type);
    381 
    382       print_function_pointer_address (options, type->arch (), addr, stream);
    383     }
    384   else
    385     cp_print_value_fields (val, stream, recurse, options, NULL, 0);
    386 }
    387 
    388 /* c_value_print helper for TYPE_CODE_INT.  */
    389 
    390 static void
    391 c_value_print_int (struct value *val, struct ui_file *stream,
    392 		   const struct value_print_options *options)
    393 {
    394   if (options->format || options->output_format)
    395     {
    396       struct value_print_options opts = *options;
    397 
    398       opts.format = (options->format ? options->format
    399 		     : options->output_format);
    400       value_print_scalar_formatted (val, &opts, 0, stream);
    401     }
    402   else
    403     {
    404       value_print_scalar_formatted (val, options, 0, stream);
    405       /* C and C++ has no single byte int type, char is used
    406 	 instead.  Since we don't know whether the value is really
    407 	 intended to be used as an integer or a character, print
    408 	 the character equivalent as well.  */
    409       struct type *type = val->type ();
    410       const gdb_byte *valaddr = val->contents_for_printing ().data ();
    411       if (c_textual_element_type (type, options->format))
    412 	{
    413 	  gdb_puts (" ", stream);
    414 	  current_language->printchar (unpack_long (type, valaddr), type,
    415 				       stream);
    416 	}
    417     }
    418 }
    419 
    420 /* See c-lang.h.  */
    421 
    422 void
    423 c_value_print_inner (struct value *val, struct ui_file *stream, int recurse,
    424 		     const struct value_print_options *options)
    425 {
    426   struct type *type = val->type ();
    427 
    428   type = check_typedef (type);
    429   switch (type->code ())
    430     {
    431     case TYPE_CODE_ARRAY:
    432       c_value_print_array (val, stream, recurse, options);
    433       break;
    434 
    435     case TYPE_CODE_PTR:
    436       c_value_print_ptr (val, stream, recurse, options);
    437       break;
    438 
    439     case TYPE_CODE_UNION:
    440     case TYPE_CODE_STRUCT:
    441       c_value_print_struct (val, stream, recurse, options);
    442       break;
    443 
    444     case TYPE_CODE_CHAR:
    445     case TYPE_CODE_INT:
    446       c_value_print_int (val, stream, options);
    447       break;
    448 
    449     case TYPE_CODE_METHODPTR:
    450     case TYPE_CODE_MEMBERPTR:
    451     case TYPE_CODE_REF:
    452     case TYPE_CODE_RVALUE_REF:
    453     case TYPE_CODE_ENUM:
    454     case TYPE_CODE_FLAGS:
    455     case TYPE_CODE_FUNC:
    456     case TYPE_CODE_METHOD:
    457     case TYPE_CODE_BOOL:
    458     case TYPE_CODE_RANGE:
    459     case TYPE_CODE_FLT:
    460     case TYPE_CODE_DECFLOAT:
    461     case TYPE_CODE_VOID:
    462     case TYPE_CODE_ERROR:
    463     case TYPE_CODE_UNDEF:
    464     case TYPE_CODE_COMPLEX:
    465     default:
    466       generic_value_print (val, stream, recurse, options, &c_decorations);
    467       break;
    468     }
    469 }
    470 
    471 
    472 void
    474 c_value_print (struct value *val, struct ui_file *stream,
    475 	       const struct value_print_options *options)
    476 {
    477   struct type *type, *real_type;
    478   int full, using_enc;
    479   LONGEST top;
    480   struct value_print_options opts = *options;
    481 
    482   opts.deref_ref = true;
    483 
    484   /* If it is a pointer, indicate what it points to.
    485 
    486      Print type also if it is a reference.
    487 
    488      C++: if it is a member pointer, we will take care
    489      of that when we print it.  */
    490 
    491   type = check_typedef (val->type ());
    492 
    493   if (type->is_pointer_or_reference ())
    494     {
    495       struct type *original_type = val->type ();
    496 
    497       /* Hack:  remove (char *) for char strings.  Their
    498 	 type is indicated by the quoted string anyway.
    499 	 (Don't use c_textual_element_type here; quoted strings
    500 	 are always exactly (char *), (wchar_t *), or the like.  */
    501       if (original_type->code () == TYPE_CODE_PTR
    502 	  && original_type->name () == NULL
    503 	  && original_type->target_type ()->name () != NULL
    504 	  && (strcmp (original_type->target_type ()->name (),
    505 		      "char") == 0
    506 	      || textual_name (original_type->target_type ()->name ())))
    507 	{
    508 	  /* Print nothing.  */
    509 	}
    510       else if (options->objectprint
    511 	       && (type->target_type ()->code () == TYPE_CODE_STRUCT))
    512 	{
    513 	  int is_ref = TYPE_IS_REFERENCE (type);
    514 	  enum type_code refcode = TYPE_CODE_UNDEF;
    515 
    516 	  if (is_ref)
    517 	    {
    518 	      val = value_addr (val);
    519 	      refcode = type->code ();
    520 	    }
    521 
    522 	  /* Pointer to class, check real type of object.  */
    523 	  gdb_printf (stream, "(");
    524 
    525 	  if (val->entirely_available ())
    526 	    {
    527 	      real_type = value_rtti_indirect_type (val, &full, &top,
    528 						    &using_enc);
    529 	      if (real_type)
    530 		{
    531 		  /* RTTI entry found.  */
    532 
    533 		  /* Need to adjust pointer value.  */
    534 		  val = value_from_pointer (real_type,
    535 					    value_as_address (val) - top);
    536 
    537 		  /* Note: When we look up RTTI entries, we don't get
    538 		     any information on const or volatile
    539 		     attributes.  */
    540 		}
    541 	    }
    542 
    543 	  if (is_ref)
    544 	    val = value_ref (value_ind (val), refcode);
    545 
    546 	  type = val->type ();
    547 	  type_print (type, "", stream, -1);
    548 	  gdb_printf (stream, ") ");
    549 	}
    550       else
    551 	{
    552 	  /* normal case */
    553 	  gdb_printf (stream, "(");
    554 	  type_print (val->type (), "", stream, -1);
    555 	  gdb_printf (stream, ") ");
    556 	}
    557     }
    558 
    559   if (!val->initialized ())
    560     gdb_printf (stream, " [uninitialized] ");
    561 
    562   if (options->objectprint && (type->code () == TYPE_CODE_STRUCT))
    563     {
    564       /* Attempt to determine real type of object.  */
    565       real_type = value_rtti_type (val, &full, &top, &using_enc);
    566       if (real_type)
    567 	{
    568 	  /* We have RTTI information, so use it.  */
    569 	  val = value_full_object (val, real_type,
    570 				   full, top, using_enc);
    571 	  /* In a destructor we might see a real type that is a
    572 	     superclass of the object's type.  In this case it is
    573 	     better to leave the object as-is.  */
    574 	  if (!(full
    575 		&& (real_type->length ()
    576 		    < val->enclosing_type ()->length ())))
    577 	    val = value_cast (real_type, val);
    578 	  gdb_printf (stream, "(%s%s) ",
    579 		      real_type->name (),
    580 		      full ? "" : _(" [incomplete object]"));
    581 	}
    582       else if (type != check_typedef (val->enclosing_type ()))
    583 	{
    584 	  /* No RTTI information, so let's do our best.  */
    585 	  gdb_printf (stream, "(%s ?) ",
    586 		      val->enclosing_type ()->name ());
    587 	  val = value_cast (val->enclosing_type (), val);
    588 	}
    589     }
    590 
    591   common_val_print (val, stream, 0, &opts, current_language);
    592 }
    593