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py-symbol.c revision 1.1.1.3
      1 /* Python interface to symbols.
      2 
      3    Copyright (C) 2008-2015 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 "defs.h"
     21 #include "block.h"
     22 #include "frame.h"
     23 #include "symtab.h"
     24 #include "python-internal.h"
     25 #include "objfiles.h"
     26 
     27 typedef struct sympy_symbol_object {
     28   PyObject_HEAD
     29   /* The GDB symbol structure this object is wrapping.  */
     30   struct symbol *symbol;
     31   /* A symbol object is associated with an objfile, so keep track with
     32      doubly-linked list, rooted in the objfile.  This lets us
     33      invalidate the underlying struct symbol when the objfile is
     34      deleted.  */
     35   struct sympy_symbol_object *prev;
     36   struct sympy_symbol_object *next;
     37 } symbol_object;
     38 
     39 /* Require a valid symbol.  All access to symbol_object->symbol should be
     40    gated by this call.  */
     41 #define SYMPY_REQUIRE_VALID(symbol_obj, symbol)		\
     42   do {							\
     43     symbol = symbol_object_to_symbol (symbol_obj);	\
     44     if (symbol == NULL)					\
     45       {							\
     46 	PyErr_SetString (PyExc_RuntimeError,		\
     47 			 _("Symbol is invalid."));	\
     48 	return NULL;					\
     49       }							\
     50   } while (0)
     51 
     52 static const struct objfile_data *sympy_objfile_data_key;
     53 
     54 static PyObject *
     55 sympy_str (PyObject *self)
     56 {
     57   PyObject *result;
     58   struct symbol *symbol = NULL;
     59 
     60   SYMPY_REQUIRE_VALID (self, symbol);
     61 
     62   result = PyString_FromString (SYMBOL_PRINT_NAME (symbol));
     63 
     64   return result;
     65 }
     66 
     67 static PyObject *
     68 sympy_get_type (PyObject *self, void *closure)
     69 {
     70   struct symbol *symbol = NULL;
     71 
     72   SYMPY_REQUIRE_VALID (self, symbol);
     73 
     74   if (SYMBOL_TYPE (symbol) == NULL)
     75     {
     76       Py_INCREF (Py_None);
     77       return Py_None;
     78     }
     79 
     80   return type_to_type_object (SYMBOL_TYPE (symbol));
     81 }
     82 
     83 static PyObject *
     84 sympy_get_symtab (PyObject *self, void *closure)
     85 {
     86   struct symbol *symbol = NULL;
     87 
     88   SYMPY_REQUIRE_VALID (self, symbol);
     89 
     90   if (!SYMBOL_OBJFILE_OWNED (symbol))
     91     Py_RETURN_NONE;
     92 
     93   return symtab_to_symtab_object (symbol_symtab (symbol));
     94 }
     95 
     96 static PyObject *
     97 sympy_get_name (PyObject *self, void *closure)
     98 {
     99   struct symbol *symbol = NULL;
    100 
    101   SYMPY_REQUIRE_VALID (self, symbol);
    102 
    103   return PyString_FromString (SYMBOL_NATURAL_NAME (symbol));
    104 }
    105 
    106 static PyObject *
    107 sympy_get_linkage_name (PyObject *self, void *closure)
    108 {
    109   struct symbol *symbol = NULL;
    110 
    111   SYMPY_REQUIRE_VALID (self, symbol);
    112 
    113   return PyString_FromString (SYMBOL_LINKAGE_NAME (symbol));
    114 }
    115 
    116 static PyObject *
    117 sympy_get_print_name (PyObject *self, void *closure)
    118 {
    119   struct symbol *symbol = NULL;
    120 
    121   SYMPY_REQUIRE_VALID (self, symbol);
    122 
    123   return sympy_str (self);
    124 }
    125 
    126 static PyObject *
    127 sympy_get_addr_class (PyObject *self, void *closure)
    128 {
    129   struct symbol *symbol = NULL;
    130 
    131   SYMPY_REQUIRE_VALID (self, symbol);
    132 
    133   return PyInt_FromLong (SYMBOL_CLASS (symbol));
    134 }
    135 
    136 static PyObject *
    137 sympy_is_argument (PyObject *self, void *closure)
    138 {
    139   struct symbol *symbol = NULL;
    140 
    141   SYMPY_REQUIRE_VALID (self, symbol);
    142 
    143   return PyBool_FromLong (SYMBOL_IS_ARGUMENT (symbol));
    144 }
    145 
    146 static PyObject *
    147 sympy_is_constant (PyObject *self, void *closure)
    148 {
    149   struct symbol *symbol = NULL;
    150   enum address_class theclass;
    151 
    152   SYMPY_REQUIRE_VALID (self, symbol);
    153 
    154   theclass = SYMBOL_CLASS (symbol);
    155 
    156   return PyBool_FromLong (theclass == LOC_CONST || theclass == LOC_CONST_BYTES);
    157 }
    158 
    159 static PyObject *
    160 sympy_is_function (PyObject *self, void *closure)
    161 {
    162   struct symbol *symbol = NULL;
    163   enum address_class theclass;
    164 
    165   SYMPY_REQUIRE_VALID (self, symbol);
    166 
    167   theclass = SYMBOL_CLASS (symbol);
    168 
    169   return PyBool_FromLong (theclass == LOC_BLOCK);
    170 }
    171 
    172 static PyObject *
    173 sympy_is_variable (PyObject *self, void *closure)
    174 {
    175   struct symbol *symbol = NULL;
    176   enum address_class theclass;
    177 
    178   SYMPY_REQUIRE_VALID (self, symbol);
    179 
    180   theclass = SYMBOL_CLASS (symbol);
    181 
    182   return PyBool_FromLong (!SYMBOL_IS_ARGUMENT (symbol)
    183 			  && (theclass == LOC_LOCAL || theclass == LOC_REGISTER
    184 			      || theclass == LOC_STATIC || theclass == LOC_COMPUTED
    185 			      || theclass == LOC_OPTIMIZED_OUT));
    186 }
    187 
    188 /* Implementation of gdb.Symbol.needs_frame -> Boolean.
    189    Returns true iff the symbol needs a frame for evaluation.  */
    190 
    191 static PyObject *
    192 sympy_needs_frame (PyObject *self, void *closure)
    193 {
    194   struct symbol *symbol = NULL;
    195   int result = 0;
    196 
    197   SYMPY_REQUIRE_VALID (self, symbol);
    198 
    199   TRY
    200     {
    201       result = symbol_read_needs_frame (symbol);
    202     }
    203   CATCH (except, RETURN_MASK_ALL)
    204     {
    205       GDB_PY_HANDLE_EXCEPTION (except);
    206     }
    207   END_CATCH
    208 
    209   if (result)
    210     Py_RETURN_TRUE;
    211   Py_RETURN_FALSE;
    212 }
    213 
    214 /* Implementation of gdb.Symbol.line -> int.
    215    Returns the line number at which the symbol was defined.  */
    216 
    217 static PyObject *
    218 sympy_line (PyObject *self, void *closure)
    219 {
    220   struct symbol *symbol = NULL;
    221 
    222   SYMPY_REQUIRE_VALID (self, symbol);
    223 
    224   return PyInt_FromLong (SYMBOL_LINE (symbol));
    225 }
    226 
    227 /* Implementation of gdb.Symbol.is_valid (self) -> Boolean.
    228    Returns True if this Symbol still exists in GDB.  */
    229 
    230 static PyObject *
    231 sympy_is_valid (PyObject *self, PyObject *args)
    232 {
    233   struct symbol *symbol = NULL;
    234 
    235   symbol = symbol_object_to_symbol (self);
    236   if (symbol == NULL)
    237     Py_RETURN_FALSE;
    238 
    239   Py_RETURN_TRUE;
    240 }
    241 
    242 /* Implementation of gdb.Symbol.value (self[, frame]) -> gdb.Value.  Returns
    243    the value of the symbol, or an error in various circumstances.  */
    244 
    245 static PyObject *
    246 sympy_value (PyObject *self, PyObject *args)
    247 {
    248   struct symbol *symbol = NULL;
    249   struct frame_info *frame_info = NULL;
    250   PyObject *frame_obj = NULL;
    251   struct value *value = NULL;
    252 
    253   if (!PyArg_ParseTuple (args, "|O", &frame_obj))
    254     return NULL;
    255 
    256   if (frame_obj != NULL && !PyObject_TypeCheck (frame_obj, &frame_object_type))
    257     {
    258       PyErr_SetString (PyExc_TypeError, "argument is not a frame");
    259       return NULL;
    260     }
    261 
    262   SYMPY_REQUIRE_VALID (self, symbol);
    263   if (SYMBOL_CLASS (symbol) == LOC_TYPEDEF)
    264     {
    265       PyErr_SetString (PyExc_TypeError, "cannot get the value of a typedef");
    266       return NULL;
    267     }
    268 
    269   TRY
    270     {
    271       if (frame_obj != NULL)
    272 	{
    273 	  frame_info = frame_object_to_frame_info (frame_obj);
    274 	  if (frame_info == NULL)
    275 	    error (_("invalid frame"));
    276 	}
    277 
    278       if (symbol_read_needs_frame (symbol) && frame_info == NULL)
    279 	error (_("symbol requires a frame to compute its value"));
    280 
    281       value = read_var_value (symbol, frame_info);
    282     }
    283   CATCH (except, RETURN_MASK_ALL)
    284     {
    285       GDB_PY_HANDLE_EXCEPTION (except);
    286     }
    287   END_CATCH
    288 
    289   return value_to_value_object (value);
    290 }
    291 
    292 /* Given a symbol, and a symbol_object that has previously been
    293    allocated and initialized, populate the symbol_object with the
    294    struct symbol data.  Also, register the symbol_object life-cycle
    295    with the life-cycle of the object file associated with this
    296    symbol, if needed.  */
    297 static void
    298 set_symbol (symbol_object *obj, struct symbol *symbol)
    299 {
    300   obj->symbol = symbol;
    301   obj->prev = NULL;
    302   if (SYMBOL_OBJFILE_OWNED (symbol)
    303       && symbol_symtab (symbol) != NULL)
    304     {
    305       struct objfile *objfile = symbol_objfile (symbol);
    306 
    307       obj->next = objfile_data (objfile, sympy_objfile_data_key);
    308       if (obj->next)
    309 	obj->next->prev = obj;
    310       set_objfile_data (objfile, sympy_objfile_data_key, obj);
    311     }
    312   else
    313     obj->next = NULL;
    314 }
    315 
    316 /* Create a new symbol object (gdb.Symbol) that encapsulates the struct
    317    symbol object from GDB.  */
    318 PyObject *
    319 symbol_to_symbol_object (struct symbol *sym)
    320 {
    321   symbol_object *sym_obj;
    322 
    323   sym_obj = PyObject_New (symbol_object, &symbol_object_type);
    324   if (sym_obj)
    325     set_symbol (sym_obj, sym);
    326 
    327   return (PyObject *) sym_obj;
    328 }
    329 
    330 /* Return the symbol that is wrapped by this symbol object.  */
    331 struct symbol *
    332 symbol_object_to_symbol (PyObject *obj)
    333 {
    334   if (! PyObject_TypeCheck (obj, &symbol_object_type))
    335     return NULL;
    336   return ((symbol_object *) obj)->symbol;
    337 }
    338 
    339 static void
    340 sympy_dealloc (PyObject *obj)
    341 {
    342   symbol_object *sym_obj = (symbol_object *) obj;
    343 
    344   if (sym_obj->prev)
    345     sym_obj->prev->next = sym_obj->next;
    346   else if (sym_obj->symbol != NULL
    347 	   && SYMBOL_OBJFILE_OWNED (sym_obj->symbol)
    348 	   && symbol_symtab (sym_obj->symbol) != NULL)
    349     {
    350       set_objfile_data (symbol_objfile (sym_obj->symbol),
    351 			sympy_objfile_data_key, sym_obj->next);
    352     }
    353   if (sym_obj->next)
    354     sym_obj->next->prev = sym_obj->prev;
    355   sym_obj->symbol = NULL;
    356 }
    357 
    358 /* Implementation of
    359    gdb.lookup_symbol (name [, block] [, domain]) -> (symbol, is_field_of_this)
    360    A tuple with 2 elements is always returned.  The first is the symbol
    361    object or None, the second is a boolean with the value of
    362    is_a_field_of_this (see comment in lookup_symbol_in_language).  */
    363 
    364 PyObject *
    365 gdbpy_lookup_symbol (PyObject *self, PyObject *args, PyObject *kw)
    366 {
    367   int domain = VAR_DOMAIN;
    368   struct field_of_this_result is_a_field_of_this;
    369   const char *name;
    370   static char *keywords[] = { "name", "block", "domain", NULL };
    371   struct symbol *symbol = NULL;
    372   PyObject *block_obj = NULL, *ret_tuple, *sym_obj, *bool_obj;
    373   const struct block *block = NULL;
    374 
    375   if (! PyArg_ParseTupleAndKeywords (args, kw, "s|O!i", keywords, &name,
    376 				     &block_object_type, &block_obj, &domain))
    377     return NULL;
    378 
    379   if (block_obj)
    380     block = block_object_to_block (block_obj);
    381   else
    382     {
    383       struct frame_info *selected_frame;
    384 
    385       TRY
    386 	{
    387 	  selected_frame = get_selected_frame (_("No frame selected."));
    388 	  block = get_frame_block (selected_frame, NULL);
    389 	}
    390       CATCH (except, RETURN_MASK_ALL)
    391 	{
    392 	  GDB_PY_HANDLE_EXCEPTION (except);
    393 	}
    394       END_CATCH
    395     }
    396 
    397   TRY
    398     {
    399       symbol = lookup_symbol (name, block, domain, &is_a_field_of_this);
    400     }
    401   CATCH (except, RETURN_MASK_ALL)
    402     {
    403       GDB_PY_HANDLE_EXCEPTION (except);
    404     }
    405   END_CATCH
    406 
    407   ret_tuple = PyTuple_New (2);
    408   if (!ret_tuple)
    409     return NULL;
    410 
    411   if (symbol)
    412     {
    413       sym_obj = symbol_to_symbol_object (symbol);
    414       if (!sym_obj)
    415 	{
    416 	  Py_DECREF (ret_tuple);
    417 	  return NULL;
    418 	}
    419     }
    420   else
    421     {
    422       sym_obj = Py_None;
    423       Py_INCREF (Py_None);
    424     }
    425   PyTuple_SET_ITEM (ret_tuple, 0, sym_obj);
    426 
    427   bool_obj = (is_a_field_of_this.type != NULL) ? Py_True : Py_False;
    428   Py_INCREF (bool_obj);
    429   PyTuple_SET_ITEM (ret_tuple, 1, bool_obj);
    430 
    431   return ret_tuple;
    432 }
    433 
    434 /* Implementation of
    435    gdb.lookup_global_symbol (name [, domain]) -> symbol or None.  */
    436 
    437 PyObject *
    438 gdbpy_lookup_global_symbol (PyObject *self, PyObject *args, PyObject *kw)
    439 {
    440   int domain = VAR_DOMAIN;
    441   const char *name;
    442   static char *keywords[] = { "name", "domain", NULL };
    443   struct symbol *symbol = NULL;
    444   PyObject *sym_obj;
    445 
    446   if (! PyArg_ParseTupleAndKeywords (args, kw, "s|i", keywords, &name,
    447 				     &domain))
    448     return NULL;
    449 
    450   TRY
    451     {
    452       symbol = lookup_global_symbol (name, NULL, domain);
    453     }
    454   CATCH (except, RETURN_MASK_ALL)
    455     {
    456       GDB_PY_HANDLE_EXCEPTION (except);
    457     }
    458   END_CATCH
    459 
    460   if (symbol)
    461     {
    462       sym_obj = symbol_to_symbol_object (symbol);
    463       if (!sym_obj)
    464 	return NULL;
    465     }
    466   else
    467     {
    468       sym_obj = Py_None;
    469       Py_INCREF (Py_None);
    470     }
    471 
    472   return sym_obj;
    473 }
    474 
    475 /* This function is called when an objfile is about to be freed.
    476    Invalidate the symbol as further actions on the symbol would result
    477    in bad data.  All access to obj->symbol should be gated by
    478    SYMPY_REQUIRE_VALID which will raise an exception on invalid
    479    symbols.  */
    480 static void
    481 del_objfile_symbols (struct objfile *objfile, void *datum)
    482 {
    483   symbol_object *obj = datum;
    484   while (obj)
    485     {
    486       symbol_object *next = obj->next;
    487 
    488       obj->symbol = NULL;
    489       obj->next = NULL;
    490       obj->prev = NULL;
    491 
    492       obj = next;
    493     }
    494 }
    495 
    496 int
    497 gdbpy_initialize_symbols (void)
    498 {
    499   if (PyType_Ready (&symbol_object_type) < 0)
    500     return -1;
    501 
    502   /* Register an objfile "free" callback so we can properly
    503      invalidate symbol when an object file that is about to be
    504      deleted.  */
    505   sympy_objfile_data_key
    506     = register_objfile_data_with_cleanup (NULL, del_objfile_symbols);
    507 
    508   if (PyModule_AddIntConstant (gdb_module, "SYMBOL_LOC_UNDEF", LOC_UNDEF) < 0
    509       || PyModule_AddIntConstant (gdb_module, "SYMBOL_LOC_CONST",
    510 				  LOC_CONST) < 0
    511       || PyModule_AddIntConstant (gdb_module, "SYMBOL_LOC_STATIC",
    512 				  LOC_STATIC) < 0
    513       || PyModule_AddIntConstant (gdb_module, "SYMBOL_LOC_REGISTER",
    514 				  LOC_REGISTER) < 0
    515       || PyModule_AddIntConstant (gdb_module, "SYMBOL_LOC_ARG",
    516 				  LOC_ARG) < 0
    517       || PyModule_AddIntConstant (gdb_module, "SYMBOL_LOC_REF_ARG",
    518 				  LOC_REF_ARG) < 0
    519       || PyModule_AddIntConstant (gdb_module, "SYMBOL_LOC_LOCAL",
    520 				  LOC_LOCAL) < 0
    521       || PyModule_AddIntConstant (gdb_module, "SYMBOL_LOC_TYPEDEF",
    522 				  LOC_TYPEDEF) < 0
    523       || PyModule_AddIntConstant (gdb_module, "SYMBOL_LOC_LABEL",
    524 				  LOC_LABEL) < 0
    525       || PyModule_AddIntConstant (gdb_module, "SYMBOL_LOC_BLOCK",
    526 				  LOC_BLOCK) < 0
    527       || PyModule_AddIntConstant (gdb_module, "SYMBOL_LOC_CONST_BYTES",
    528 				  LOC_CONST_BYTES) < 0
    529       || PyModule_AddIntConstant (gdb_module, "SYMBOL_LOC_UNRESOLVED",
    530 				  LOC_UNRESOLVED) < 0
    531       || PyModule_AddIntConstant (gdb_module, "SYMBOL_LOC_OPTIMIZED_OUT",
    532 				  LOC_OPTIMIZED_OUT) < 0
    533       || PyModule_AddIntConstant (gdb_module, "SYMBOL_LOC_COMPUTED",
    534 				  LOC_COMPUTED) < 0
    535       || PyModule_AddIntConstant (gdb_module, "SYMBOL_LOC_REGPARM_ADDR",
    536 				  LOC_REGPARM_ADDR) < 0
    537       || PyModule_AddIntConstant (gdb_module, "SYMBOL_UNDEF_DOMAIN",
    538 				  UNDEF_DOMAIN) < 0
    539       || PyModule_AddIntConstant (gdb_module, "SYMBOL_VAR_DOMAIN",
    540 				  VAR_DOMAIN) < 0
    541       || PyModule_AddIntConstant (gdb_module, "SYMBOL_STRUCT_DOMAIN",
    542 				  STRUCT_DOMAIN) < 0
    543       || PyModule_AddIntConstant (gdb_module, "SYMBOL_LABEL_DOMAIN",
    544 				  LABEL_DOMAIN) < 0
    545       || PyModule_AddIntConstant (gdb_module, "SYMBOL_VARIABLES_DOMAIN",
    546 				  VARIABLES_DOMAIN) < 0
    547       || PyModule_AddIntConstant (gdb_module, "SYMBOL_FUNCTIONS_DOMAIN",
    548 				  FUNCTIONS_DOMAIN) < 0
    549       || PyModule_AddIntConstant (gdb_module, "SYMBOL_TYPES_DOMAIN",
    550 				  TYPES_DOMAIN) < 0)
    551     return -1;
    552 
    553   return gdb_pymodule_addobject (gdb_module, "Symbol",
    554 				 (PyObject *) &symbol_object_type);
    555 }
    556 
    557 
    558 
    560 static PyGetSetDef symbol_object_getset[] = {
    561   { "type", sympy_get_type, NULL,
    562     "Type of the symbol.", NULL },
    563   { "symtab", sympy_get_symtab, NULL,
    564     "Symbol table in which the symbol appears.", NULL },
    565   { "name", sympy_get_name, NULL,
    566     "Name of the symbol, as it appears in the source code.", NULL },
    567   { "linkage_name", sympy_get_linkage_name, NULL,
    568     "Name of the symbol, as used by the linker (i.e., may be mangled).",
    569     NULL },
    570   { "print_name", sympy_get_print_name, NULL,
    571     "Name of the symbol in a form suitable for output.\n\
    572 This is either name or linkage_name, depending on whether the user asked GDB\n\
    573 to display demangled or mangled names.", NULL },
    574   { "addr_class", sympy_get_addr_class, NULL, "Address class of the symbol." },
    575   { "is_argument", sympy_is_argument, NULL,
    576     "True if the symbol is an argument of a function." },
    577   { "is_constant", sympy_is_constant, NULL,
    578     "True if the symbol is a constant." },
    579   { "is_function", sympy_is_function, NULL,
    580     "True if the symbol is a function or method." },
    581   { "is_variable", sympy_is_variable, NULL,
    582     "True if the symbol is a variable." },
    583   { "needs_frame", sympy_needs_frame, NULL,
    584     "True if the symbol requires a frame for evaluation." },
    585   { "line", sympy_line, NULL,
    586     "The source line number at which the symbol was defined." },
    587   { NULL }  /* Sentinel */
    588 };
    589 
    590 static PyMethodDef symbol_object_methods[] = {
    591   { "is_valid", sympy_is_valid, METH_NOARGS,
    592     "is_valid () -> Boolean.\n\
    593 Return true if this symbol is valid, false if not." },
    594   { "value", sympy_value, METH_VARARGS,
    595     "value ([frame]) -> gdb.Value\n\
    596 Return the value of the symbol." },
    597   {NULL}  /* Sentinel */
    598 };
    599 
    600 PyTypeObject symbol_object_type = {
    601   PyVarObject_HEAD_INIT (NULL, 0)
    602   "gdb.Symbol",			  /*tp_name*/
    603   sizeof (symbol_object),	  /*tp_basicsize*/
    604   0,				  /*tp_itemsize*/
    605   sympy_dealloc,		  /*tp_dealloc*/
    606   0,				  /*tp_print*/
    607   0,				  /*tp_getattr*/
    608   0,				  /*tp_setattr*/
    609   0,				  /*tp_compare*/
    610   0,				  /*tp_repr*/
    611   0,				  /*tp_as_number*/
    612   0,				  /*tp_as_sequence*/
    613   0,				  /*tp_as_mapping*/
    614   0,				  /*tp_hash */
    615   0,				  /*tp_call*/
    616   sympy_str,			  /*tp_str*/
    617   0,				  /*tp_getattro*/
    618   0,				  /*tp_setattro*/
    619   0,				  /*tp_as_buffer*/
    620   Py_TPFLAGS_DEFAULT,		  /*tp_flags*/
    621   "GDB symbol object",		  /*tp_doc */
    622   0,				  /*tp_traverse */
    623   0,				  /*tp_clear */
    624   0,				  /*tp_richcompare */
    625   0,				  /*tp_weaklistoffset */
    626   0,				  /*tp_iter */
    627   0,				  /*tp_iternext */
    628   symbol_object_methods,	  /*tp_methods */
    629   0,				  /*tp_members */
    630   symbol_object_getset		  /*tp_getset */
    631 };
    632