return error_retval; \
MODULE_HANDLE_NONLOCAL_EXIT (error_retval)
+static void
+CHECK_USER_PTR (Lisp_Object obj)
+{
+ CHECK_TYPE (USER_PTRP (obj), Quser_ptrp, lisp);
+}
+
/* Catch signals and throws only if the code can actually signal or
throw. If checking is enabled, abort if the current thread is not
the Emacs main thread. */
if (i >= 0)
{
Lisp_Object value = HASH_VALUE (h, i);
- verify (EMACS_INT_MAX > MOST_POSITIVE_FIXNUM);
EMACS_INT refcount = XFASTINT (value) + 1;
- if (FIXNUM_OVERFLOW_P (refcount)) xsignal0 (Qoverflow_error);
+ if (MOST_POSITIVE_FIXNUM < refcount)
+ xsignal0 (Qoverflow_error);
value = make_natnum (refcount);
set_hash_value_slot (h, i, value);
}
first arg, because that's what Ffuncall takes. */
Lisp_Object *newargs;
USE_SAFE_ALLOCA;
- if (nargs == PTRDIFF_MAX) xsignal0 (Qoverflow_error);
+ if (nargs == PTRDIFF_MAX)
+ xsignal0 (Qoverflow_error);
SAFE_ALLOCA_LISP (newargs, nargs + 1);
newargs[0] = value_to_lisp (fun);
for (ptrdiff_t i = 0; i < nargs; i++)
module_make_integer (emacs_env *env, intmax_t n)
{
MODULE_FUNCTION_BEGIN (module_nil);
- if (FIXNUM_OVERFLOW_P (n)) xsignal0 (Qoverflow_error);
+ if (FIXNUM_OVERFLOW_P (n))
+ xsignal0 (Qoverflow_error);
return lisp_to_value (make_number (n));
}
Lisp_Object lisp_str_utf8 = ENCODE_UTF_8 (lisp_str);
ptrdiff_t raw_size = SBYTES (lisp_str_utf8);
- if (raw_size == PTRDIFF_MAX) xsignal0 (Qoverflow_error);
ptrdiff_t required_buf_size = raw_size + 1;
eassert (length != NULL);
module_make_string (emacs_env *env, const char *str, ptrdiff_t length)
{
MODULE_FUNCTION_BEGIN (module_nil);
- if (length > STRING_BYTES_BOUND) xsignal0 (Qoverflow_error);
Lisp_Object lstr = make_unibyte_string (str, length);
return lisp_to_value (code_convert_string_norecord (lstr, Qutf_8, false));
}
{
MODULE_FUNCTION_BEGIN (NULL);
Lisp_Object lisp = value_to_lisp (uptr);
- CHECK_TYPE (USER_PTRP (lisp), Quser_ptrp, lisp);
+ CHECK_USER_PTR (lisp);
return XUSER_PTR (lisp)->p;
}
/* FIXME: This function should return bool because it can fail. */
MODULE_FUNCTION_BEGIN ();
Lisp_Object lisp = value_to_lisp (uptr);
- CHECK_TYPE (USER_PTRP (lisp), Quser_ptrp, lisp);
+ CHECK_USER_PTR (lisp);
XUSER_PTR (lisp)->p = ptr;
}
{
MODULE_FUNCTION_BEGIN (NULL);
Lisp_Object lisp = value_to_lisp (uptr);
- CHECK_TYPE (USER_PTRP (lisp), Quser_ptrp, lisp);
+ CHECK_USER_PTR (lisp);
return XUSER_PTR (lisp)->finalizer;
}
/* FIXME: This function should return bool because it can fail. */
MODULE_FUNCTION_BEGIN ();
Lisp_Object lisp = value_to_lisp (uptr);
- CHECK_TYPE (USER_PTRP (lisp), Quser_ptrp, lisp);
+ CHECK_USER_PTR (lisp);
XUSER_PTR (lisp)->finalizer = fin;
}
MODULE_FUNCTION_BEGIN ();
Lisp_Object lvec = value_to_lisp (vec);
CHECK_VECTOR (lvec);
- if (FIXNUM_OVERFLOW_P (i)) xsignal0 (Qoverflow_error);
CHECK_RANGED_INTEGER (make_number (i), 0, ASIZE (lvec) - 1);
ASET (lvec, i, value_to_lisp (val));
}
MODULE_FUNCTION_BEGIN (module_nil);
Lisp_Object lvec = value_to_lisp (vec);
CHECK_VECTOR (lvec);
- if (FIXNUM_OVERFLOW_P (i)) xsignal0 (Qoverflow_error);
CHECK_RANGED_INTEGER (make_number (i), 0, ASIZE (lvec) - 1);
return lisp_to_value (AREF (lvec, i));
}