*                     interval.
  * @xtime_remainder:   Shifted nano seconds left over when rounding
  *                     @cycle_interval
- * @raw_interval:      Raw nano seconds accumulated per NTP interval.
+ * @raw_interval:      Shifted raw nano seconds accumulated per NTP interval.
  * @ntp_error:         Difference between accumulated time and NTP time in ntp
  *                     shifted nano seconds.
  * @ntp_error_shift:   Shift conversion between clock shifted nano seconds and
        u64                     cycle_interval;
        u64                     xtime_interval;
        s64                     xtime_remainder;
-       u32                     raw_interval;
+       u64                     raw_interval;
        /* The ntp_tick_length() value currently being used.
         * This cached copy ensures we consistently apply the tick
         * length for an entire tick, as ntp_tick_length may change
 
        /* Go back from cycles -> shifted ns */
        tk->xtime_interval = interval * clock->mult;
        tk->xtime_remainder = ntpinterval - tk->xtime_interval;
-       tk->raw_interval = (interval * clock->mult) >> clock->shift;
+       tk->raw_interval = interval * clock->mult;
 
         /* if changing clocks, convert xtime_nsec shift units */
        if (old_clock) {
                                    u32 shift, unsigned int *clock_set)
 {
        u64 interval = tk->cycle_interval << shift;
-       u64 raw_nsecs;
+       u64 snsec_per_sec;
 
        /* If the offset is smaller than a shifted interval, do nothing */
        if (offset < interval)
        *clock_set |= accumulate_nsecs_to_secs(tk);
 
        /* Accumulate raw time */
-       raw_nsecs = (u64)tk->raw_interval << shift;
-       raw_nsecs += tk->raw_time.tv_nsec;
-       if (raw_nsecs >= NSEC_PER_SEC) {
-               u64 raw_secs = raw_nsecs;
-               raw_nsecs = do_div(raw_secs, NSEC_PER_SEC);
-               tk->raw_time.tv_sec += raw_secs;
+       tk->tkr_raw.xtime_nsec += (u64)tk->raw_time.tv_nsec << tk->tkr_raw.shift;
+       tk->tkr_raw.xtime_nsec += tk->raw_interval << shift;
+       snsec_per_sec = (u64)NSEC_PER_SEC << tk->tkr_raw.shift;
+       while (tk->tkr_raw.xtime_nsec >= snsec_per_sec) {
+               tk->tkr_raw.xtime_nsec -= snsec_per_sec;
+               tk->raw_time.tv_sec++;
        }
-       tk->raw_time.tv_nsec = raw_nsecs;
+       tk->raw_time.tv_nsec = tk->tkr_raw.xtime_nsec >> tk->tkr_raw.shift;
+       tk->tkr_raw.xtime_nsec -= (u64)tk->raw_time.tv_nsec << tk->tkr_raw.shift;
 
        /* Accumulate error between NTP and clock interval */
        tk->ntp_error += tk->ntp_tick << shift;