bpo-9263: _PyObject_Dump() detects freed memory (GH-10061)
_PyObject_Dump() now uses an heuristic to check if the object memory has been freed: log "<freed object>" in that case. The heuristic rely on the debug hooks on Python memory allocators which fills the memory with DEADBYTE (0xDB) when memory is deallocated. Use PYTHONMALLOC=debug to always enable these debug hooks.
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@ -521,6 +521,7 @@ struct _Py_Identifier;
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PyAPI_FUNC(int) PyObject_Print(PyObject *, FILE *, int);
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PyAPI_FUNC(void) _Py_BreakPoint(void);
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PyAPI_FUNC(void) _PyObject_Dump(PyObject *);
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PyAPI_FUNC(int) _PyObject_IsFreed(PyObject *);
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#endif
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PyAPI_FUNC(PyObject *) PyObject_Repr(PyObject *);
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PyAPI_FUNC(PyObject *) PyObject_Str(PyObject *);
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@ -55,7 +55,9 @@ PyAPI_FUNC(int) PyTraceMalloc_Untrack(
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PyAPI_FUNC(PyObject*) _PyTraceMalloc_GetTraceback(
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unsigned int domain,
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uintptr_t ptr);
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#endif /* !Py_LIMITED_API */
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PyAPI_FUNC(int) _PyMem_IsFreed(void *ptr, size_t size);
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#endif /* !defined(Py_LIMITED_API) */
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/* BEWARE:
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@ -410,34 +410,66 @@ _Py_BreakPoint(void)
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}
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/* Heuristic checking if the object memory has been deallocated.
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Rely on the debug hooks on Python memory allocators which fills the memory
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with DEADBYTE (0xDB) when memory is deallocated.
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The function can be used to prevent segmentation fault on dereferencing
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pointers like 0xdbdbdbdbdbdbdbdb. Such pointer is very unlikely to be mapped
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in memory. */
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int
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_PyObject_IsFreed(PyObject *op)
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{
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int freed = _PyMem_IsFreed(&op->ob_type, sizeof(op->ob_type));
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/* ignore op->ob_ref: the value can have be modified
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by Py_INCREF() and Py_DECREF(). */
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#ifdef Py_TRACE_REFS
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freed &= _PyMem_IsFreed(&op->_ob_next, sizeof(op->_ob_next));
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freed &= _PyMem_IsFreed(&op->_ob_prev, sizeof(op->_ob_prev));
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#endif
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return freed;
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}
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/* For debugging convenience. See Misc/gdbinit for some useful gdb hooks */
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void
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_PyObject_Dump(PyObject* op)
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{
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if (op == NULL)
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fprintf(stderr, "NULL\n");
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else {
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PyGILState_STATE gil;
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PyObject *error_type, *error_value, *error_traceback;
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fprintf(stderr, "object : ");
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gil = PyGILState_Ensure();
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PyErr_Fetch(&error_type, &error_value, &error_traceback);
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(void)PyObject_Print(op, stderr, 0);
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PyErr_Restore(error_type, error_value, error_traceback);
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PyGILState_Release(gil);
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/* XXX(twouters) cast refcount to long until %zd is
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universally available */
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fprintf(stderr, "\n"
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"type : %s\n"
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"refcount: %ld\n"
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"address : %p\n",
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Py_TYPE(op)==NULL ? "NULL" : Py_TYPE(op)->tp_name,
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(long)op->ob_refcnt,
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op);
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if (op == NULL) {
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fprintf(stderr, "<NULL object>\n");
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fflush(stderr);
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return;
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}
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if (_PyObject_IsFreed(op)) {
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/* It seems like the object memory has been freed:
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don't access it to prevent a segmentation fault. */
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fprintf(stderr, "<freed object>\n");
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}
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PyGILState_STATE gil;
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PyObject *error_type, *error_value, *error_traceback;
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fprintf(stderr, "object : ");
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fflush(stderr);
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gil = PyGILState_Ensure();
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PyErr_Fetch(&error_type, &error_value, &error_traceback);
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(void)PyObject_Print(op, stderr, 0);
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fflush(stderr);
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PyErr_Restore(error_type, error_value, error_traceback);
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PyGILState_Release(gil);
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/* XXX(twouters) cast refcount to long until %zd is
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universally available */
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fprintf(stderr, "\n"
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"type : %s\n"
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"refcount: %ld\n"
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"address : %p\n",
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Py_TYPE(op)==NULL ? "NULL" : Py_TYPE(op)->tp_name,
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(long)op->ob_refcnt,
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op);
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fflush(stderr);
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}
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PyObject *
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@ -2033,6 +2033,22 @@ _PyMem_DebugRawCalloc(void *ctx, size_t nelem, size_t elsize)
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}
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/* Heuristic checking if the memory has been freed. Rely on the debug hooks on
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Python memory allocators which fills the memory with DEADBYTE (0xDB) when
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memory is deallocated. */
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int
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_PyMem_IsFreed(void *ptr, size_t size)
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{
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unsigned char *bytes = ptr;
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for (size_t i=0; i < size; i++) {
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if (bytes[i] != DEADBYTE) {
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return 0;
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}
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}
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return 1;
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}
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/* The debug free first checks the 2*SST bytes on each end for sanity (in
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particular, that the FORBIDDENBYTEs with the api ID are still intact).
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Then fills the original bytes with DEADBYTE.
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