ntp: NTP4 user space bits update
This adds a few more things from the ntp nanokernel related to user space. It's now possible to select the resolution used of some values via STA_NANO and the kernel reports in which mode it works (pll/fll). If some values for adjtimex() are outside the acceptable range, they are now simply normalized instead of letting the syscall fail. I removed MOD_CLKA/MOD_CLKB as the mapping didn't really makes any sense, the kernel doesn't support setting the clock. Signed-off-by: Roman Zippel <zippel@linux-m68k.org> Cc: john stultz <johnstul@us.ibm.com> Cc: Thomas Gleixner <tglx@linutronix.de> Signed-off-by: Andrew Morton <akpm@linux-foundation.org> Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org>
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parent
ee9851b218
commit
eea83d896e
2 changed files with 56 additions and 47 deletions
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@ -58,6 +58,8 @@
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#include <asm/param.h>
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#define NTP_API 4 /* NTP API version */
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/*
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* SHIFT_KG and SHIFT_KF establish the damping of the PLL and are chosen
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* for a slightly underdamped convergence characteristic. SHIFT_KH
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@ -135,6 +137,8 @@ struct timex {
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#define ADJ_ESTERROR 0x0008 /* estimated time error */
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#define ADJ_STATUS 0x0010 /* clock status */
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#define ADJ_TIMECONST 0x0020 /* pll time constant */
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#define ADJ_MICRO 0x1000 /* select microsecond resolution */
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#define ADJ_NANO 0x2000 /* select nanosecond resolution */
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#define ADJ_TICK 0x4000 /* tick value */
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#define ADJ_OFFSET_SINGLESHOT 0x8001 /* old-fashioned adjtime */
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#define ADJ_OFFSET_SS_READ 0xa001 /* read-only adjtime */
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@ -146,8 +150,6 @@ struct timex {
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#define MOD_ESTERROR ADJ_ESTERROR
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#define MOD_STATUS ADJ_STATUS
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#define MOD_TIMECONST ADJ_TIMECONST
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#define MOD_CLKB ADJ_TICK
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#define MOD_CLKA ADJ_OFFSET_SINGLESHOT /* 0x8000 in original */
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/*
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@ -169,9 +171,13 @@ struct timex {
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#define STA_PPSERROR 0x0800 /* PPS signal calibration error (ro) */
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#define STA_CLOCKERR 0x1000 /* clock hardware fault (ro) */
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#define STA_NANO 0x2000 /* resolution (0 = us, 1 = ns) (ro) */
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#define STA_MODE 0x4000 /* mode (0 = PLL, 1 = FLL) (ro) */
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#define STA_CLK 0x8000 /* clock source (0 = A, 1 = B) (ro) */
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/* read-only bits */
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#define STA_RONLY (STA_PPSSIGNAL | STA_PPSJITTER | STA_PPSWANDER | \
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STA_PPSERROR | STA_CLOCKERR) /* read-only bits */
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STA_PPSERROR | STA_CLOCKERR | STA_NANO | STA_MODE | STA_CLK)
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/*
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* Clock states (time_state)
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@ -65,7 +65,9 @@ static void ntp_update_offset(long offset)
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if (!(time_status & STA_PLL))
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return;
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time_offset = offset * NSEC_PER_USEC;
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time_offset = offset;
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if (!(time_status & STA_NANO))
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time_offset *= NSEC_PER_USEC;
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/*
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* Scale the phase adjustment and
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@ -86,8 +88,11 @@ static void ntp_update_offset(long offset)
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freq_adj = time_offset * mtemp;
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freq_adj = shift_right(freq_adj, time_constant * 2 +
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(SHIFT_PLL + 2) * 2 - SHIFT_NSEC);
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if (mtemp >= MINSEC && (time_status & STA_FLL || mtemp > MAXSEC))
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time_status &= ~STA_MODE;
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if (mtemp >= MINSEC && (time_status & STA_FLL || mtemp > MAXSEC)) {
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freq_adj += div_s64(time_offset << (SHIFT_NSEC - SHIFT_FLL), mtemp);
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time_status |= STA_MODE;
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}
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freq_adj += time_freq;
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freq_adj = min(freq_adj, (s64)MAXFREQ_NSEC);
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time_freq = max(freq_adj, (s64)-MAXFREQ_NSEC);
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@ -272,6 +277,7 @@ static inline void notify_cmos_timer(void) { }
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*/
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int do_adjtimex(struct timex *txc)
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{
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struct timespec ts;
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long save_adjust;
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int result;
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@ -282,17 +288,11 @@ int do_adjtimex(struct timex *txc)
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/* Now we validate the data before disabling interrupts */
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if ((txc->modes & ADJ_OFFSET_SINGLESHOT) == ADJ_OFFSET_SINGLESHOT) {
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/* singleshot must not be used with any other mode bits */
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if (txc->modes != ADJ_OFFSET_SINGLESHOT &&
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txc->modes != ADJ_OFFSET_SS_READ)
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/* singleshot must not be used with any other mode bits */
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if (txc->modes & ~ADJ_OFFSET_SS_READ)
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return -EINVAL;
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}
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if (txc->modes != ADJ_OFFSET_SINGLESHOT && (txc->modes & ADJ_OFFSET))
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/* adjustment Offset limited to +- .512 seconds */
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if (txc->offset <= - MAXPHASE || txc->offset >= MAXPHASE )
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return -EINVAL;
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/* if the quartz is off by more than 10% something is VERY wrong ! */
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if (txc->modes & ADJ_TICK)
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if (txc->tick < 900000/USER_HZ ||
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@ -300,51 +300,46 @@ int do_adjtimex(struct timex *txc)
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return -EINVAL;
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write_seqlock_irq(&xtime_lock);
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result = time_state; /* mostly `TIME_OK' */
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/* Save for later - semantics of adjtime is to return old value */
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save_adjust = time_adjust;
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#if 0 /* STA_CLOCKERR is never set yet */
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time_status &= ~STA_CLOCKERR; /* reset STA_CLOCKERR */
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#endif
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/* If there are input parameters, then process them */
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if (txc->modes) {
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if (txc->modes & ADJ_STATUS) /* only set allowed bits */
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time_status = (txc->status & ~STA_RONLY) |
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(time_status & STA_RONLY);
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if (txc->modes & ADJ_STATUS) {
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if ((time_status & STA_PLL) &&
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!(txc->status & STA_PLL)) {
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time_state = TIME_OK;
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time_status = STA_UNSYNC;
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}
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/* only set allowed bits */
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time_status &= STA_RONLY;
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time_status |= txc->status & ~STA_RONLY;
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}
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if (txc->modes & ADJ_NANO)
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time_status |= STA_NANO;
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if (txc->modes & ADJ_MICRO)
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time_status &= ~STA_NANO;
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if (txc->modes & ADJ_FREQUENCY) {
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if (txc->freq > MAXFREQ || txc->freq < -MAXFREQ) {
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result = -EINVAL;
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goto leave;
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}
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time_freq = ((s64)txc->freq * NSEC_PER_USEC)
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time_freq = min(txc->freq, MAXFREQ);
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time_freq = min(time_freq, -MAXFREQ);
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time_freq = ((s64)time_freq * NSEC_PER_USEC)
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>> (SHIFT_USEC - SHIFT_NSEC);
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}
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if (txc->modes & ADJ_MAXERROR) {
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if (txc->maxerror < 0 || txc->maxerror >= NTP_PHASE_LIMIT) {
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result = -EINVAL;
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goto leave;
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}
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if (txc->modes & ADJ_MAXERROR)
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time_maxerror = txc->maxerror;
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}
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if (txc->modes & ADJ_ESTERROR) {
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if (txc->esterror < 0 || txc->esterror >= NTP_PHASE_LIMIT) {
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result = -EINVAL;
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goto leave;
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}
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if (txc->modes & ADJ_ESTERROR)
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time_esterror = txc->esterror;
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}
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if (txc->modes & ADJ_TIMECONST) {
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if (txc->constant < 0) { /* NTP v4 uses values > 6 */
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result = -EINVAL;
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goto leave;
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}
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time_constant = min(txc->constant + 4, (long)MAXTC);
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time_constant = txc->constant;
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if (!(time_status & STA_NANO))
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time_constant += 4;
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time_constant = min(time_constant, (long)MAXTC);
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time_constant = max(time_constant, 0l);
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}
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if (txc->modes & ADJ_OFFSET) {
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@ -360,16 +355,20 @@ int do_adjtimex(struct timex *txc)
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if (txc->modes & (ADJ_TICK|ADJ_FREQUENCY|ADJ_OFFSET))
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ntp_update_frequency();
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}
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leave:
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result = time_state; /* mostly `TIME_OK' */
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if (time_status & (STA_UNSYNC|STA_CLOCKERR))
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result = TIME_ERROR;
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if ((txc->modes == ADJ_OFFSET_SINGLESHOT) ||
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(txc->modes == ADJ_OFFSET_SS_READ))
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txc->offset = save_adjust;
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else
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else {
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txc->offset = ((long)shift_right(time_offset, SHIFT_UPDATE)) *
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NTP_INTERVAL_FREQ / 1000;
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NTP_INTERVAL_FREQ;
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if (!(time_status & STA_NANO))
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txc->offset /= NSEC_PER_USEC;
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}
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txc->freq = (time_freq / NSEC_PER_USEC) <<
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(SHIFT_USEC - SHIFT_NSEC);
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txc->maxerror = time_maxerror;
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@ -391,7 +390,11 @@ int do_adjtimex(struct timex *txc)
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txc->stbcnt = 0;
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write_sequnlock_irq(&xtime_lock);
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do_gettimeofday(&txc->time);
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getnstimeofday(&ts);
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txc->time.tv_sec = ts.tv_sec;
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txc->time.tv_usec = ts.tv_nsec;
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if (!(time_status & STA_NANO))
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txc->time.tv_usec /= NSEC_PER_USEC;
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notify_cmos_timer();
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