if (__USE_RTC())
return;
- tlen = current_tick_length();
+ tlen = current_tick_length(SHIFT_SCALE - 10);
offset = cur_tb - do_gtod.varp->tb_orig_stamp;
if (tlen == last_tick_len && offset < 0x80000000u)
return;
#endif /* !CONFIG_TIME_INTERPOLATION */
/* Returns how long ticks are at present, in ns / 2^(SHIFT_SCALE-10). */
-extern u64 current_tick_length(void);
+extern u64 current_tick_length(long);
extern int do_adjtimex(struct timex *);
* Return how long ticks are at the moment, that is, how much time
* update_wall_time_one_tick will add to xtime next time we call it
* (assuming no calls to do_adjtimex in the meantime).
- * The return value is in fixed-point nanoseconds with SHIFT_SCALE-10
- * bits to the right of the binary point.
+ * The return value is in fixed-point nanoseconds shifted by the
+ * specified number of bits to the right of the binary point.
* This function has no side-effects.
*/
-u64 current_tick_length(void)
+u64 current_tick_length(long shift)
{
long delta_nsec;
+ u64 ret;
+ /* calculate the finest interval NTP will allow.
+ * ie: nanosecond value shifted by (SHIFT_SCALE - 10)
+ */
delta_nsec = tick_nsec + adjtime_adjustment() * 1000;
- return ((u64) delta_nsec << (SHIFT_SCALE - 10)) + time_adj;
+ ret = ((u64) delta_nsec << (SHIFT_SCALE - 10)) + time_adj;
+
+ /* convert from (SHIFT_SCALE - 10) to specified shift scale: */
+ shift = shift - (SHIFT_SCALE - 10);
+ if (shift < 0)
+ ret >>= -shift;
+ else
+ ret <<= shift;
+
+ return ret;
}
/* XXX - all of this timekeeping code should be later moved to time.c */