274 lines
6.1 KiB
C
274 lines
6.1 KiB
C
/*
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* refclock_hopfpci.c
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*
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* - clock driver for hopf 6039 PCI board (GPS or DCF77)
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* Bernd Altmeier altmeier@atlsoft.de
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*
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* latest source and further information can be found at:
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* http://www.ATLSoft.de/ntp
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*
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* In order to run this driver you have to install and test
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* the PCI-board driver for your system first.
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*
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* On Linux/UNIX
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*
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* The driver attempts to open the device /dev/hopf6039 .
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* The device entry will be made by the installation process of
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* the kernel module for the PCI-bus board. The driver sources
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* belongs to the delivery equipment of the PCI-board.
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*
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* On Windows NT/2000
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*
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* The driver attempts to open the device by calling the function
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* "OpenHopfDevice()". This function will be installed by the
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* Device Driver for the PCI-bus board. The driver belongs to the
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* delivery equipment of the PCI-board.
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*
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*
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* Start 21.03.2000 Revision: 01.20
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* changes 22.12.2000 Revision: 01.40 flag1 = 1 sync even if Quarz
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*
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*/
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#ifdef HAVE_CONFIG_H
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# include <config.h>
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#endif
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#if defined(REFCLOCK) && defined(CLOCK_HOPF_PCI)
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#include "ntpd.h"
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#include "ntp_io.h"
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#include "ntp_refclock.h"
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#include "ntp_unixtime.h"
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#include "ntp_stdlib.h"
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#undef fileno
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#include <ctype.h>
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#undef fileno
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#ifndef SYS_WINNT
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# include <sys/ipc.h>
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# include <sys/ioctl.h>
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# include <assert.h>
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# include <unistd.h>
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# include <stdio.h>
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# include "hopf6039.h"
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#else
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# include "hopf_PCI_io.h"
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#endif
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/*
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* hopfpci interface definitions
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*/
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#define PRECISION (-10) /* precision assumed (1 ms) */
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#define REFID "hopf" /* reference ID */
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#define DESCRIPTION "hopf Elektronik PCI radio board"
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#define NSAMPLES 3 /* stages of median filter */
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#ifndef SYS_WINNT
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# define DEVICE "/dev/hopf6039" /* device name inode*/
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#else
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# define DEVICE "hopf6039" /* device name WinNT */
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#endif
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#define LEWAPWAR 0x20 /* leap second warning bit */
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#define HOPF_OPMODE 0xC0 /* operation mode mask */
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#define HOPF_INVALID 0x00 /* no time code available */
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#define HOPF_INTERNAL 0x40 /* internal clock */
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#define HOPF_RADIO 0x80 /* radio clock */
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#define HOPF_RADIOHP 0xC0 /* high precision radio clock */
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/*
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* hopfclock unit control structure.
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*/
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struct hopfclock_unit {
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short unit; /* NTP refclock unit number */
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char leap_status; /* leap second flag */
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};
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int fd; /* file descr. */
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/*
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* Function prototypes
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*/
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static int hopfpci_start (int, struct peer *);
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static void hopfpci_shutdown (int, struct peer *);
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static void hopfpci_poll (int unit, struct peer *);
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/*
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* Transfer vector
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*/
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struct refclock refclock_hopfpci = {
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hopfpci_start, /* start up driver */
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hopfpci_shutdown, /* shut down driver */
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hopfpci_poll, /* transmit poll message */
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noentry, /* not used */
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noentry, /* initialize driver (not used) */
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noentry, /* not used */
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NOFLAGS /* not used */
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};
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/*
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* hopfpci_start - attach to hopf PCI board 6039
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*/
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static int
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hopfpci_start(
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int unit,
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struct peer *peer
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)
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{
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struct refclockproc *pp;
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struct hopfclock_unit *up;
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/*
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* Allocate and initialize unit structure
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*/
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up = (struct hopfclock_unit *) emalloc(sizeof(struct hopfclock_unit));
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if (!(up)) {
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msyslog(LOG_ERR, "hopfPCIClock(%d) emalloc: %m",unit);
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#ifdef DEBUG
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printf("hopfPCIClock(%d) emalloc\n",unit);
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#endif
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return (0);
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}
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memset((char *)up, 0, sizeof(struct hopfclock_unit));
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#ifndef SYS_WINNT
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fd = open(DEVICE,O_RDWR); /* try to open hopf clock device */
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#else
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if (!OpenHopfDevice()){
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msyslog(LOG_ERR,"Start: %s unit: %d failed!",DEVICE,unit);
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return (0);
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}
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#endif
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pp = peer->procptr;
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pp->io.clock_recv = noentry;
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pp->io.srcclock = (caddr_t)peer;
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pp->io.datalen = 0;
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pp->io.fd = INVALID_SOCKET;
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pp->unitptr = (caddr_t)up;
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get_systime(&pp->lastrec);
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/*
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* Initialize miscellaneous peer variables
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*/
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if (pp->unitptr!=0) {
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memcpy((char *)&pp->refid, REFID, 4);
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peer->precision = PRECISION;
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pp->clockdesc = DESCRIPTION;
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up->leap_status = 0;
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up->unit = (short) unit;
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return (1);
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}
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else {
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return 0;
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}
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}
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/*
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* hopfpci_shutdown - shut down the clock
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*/
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static void
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hopfpci_shutdown(
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int unit,
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struct peer *peer
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)
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{
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struct refclockproc *pp;
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register struct hopfpciTime *up;
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pp = peer->procptr;
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up = (struct hopfpciTime *)pp->unitptr;
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#ifndef SYS_WINNT
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close(fd);
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#else
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CloseHopfDevice();
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/* UnmapViewOfFile (up); */
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#endif
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}
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/*
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* hopfpci_poll - called by the transmit procedure
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*/
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static void
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hopfpci_poll(
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int unit,
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struct peer *peer
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)
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{
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struct refclockproc *pp;
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register struct hopfpciTime *up;
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HOPFTIME m_time;
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pp = peer->procptr;
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up = (struct hopfpciTime *)pp->unitptr;
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#ifndef SYS_WINNT
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ioctl(fd,HOPF_CLOCK_GET_UTC,&m_time);
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#else
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GetHopfSystemTime(&m_time);
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#endif
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pp->polls++;
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pp->day = ymd2yd(m_time.wYear,m_time.wMonth,m_time.wDay);
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pp->hour = m_time.wHour;
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pp->minute = m_time.wMinute;
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pp->second = m_time.wSecond;
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pp->nsec = m_time.wMilliseconds * 1000000;
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if (m_time.wStatus & LEWAPWAR)
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pp->leap = LEAP_ADDSECOND;
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else
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pp->leap = LEAP_NOWARNING;
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sprintf(pp->a_lastcode,"ST: %02X T: %02d:%02d:%02d.%03ld D: %02d.%02d.%04d",
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m_time.wStatus, pp->hour, pp->minute, pp->second,
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pp->nsec / 1000000, m_time.wDay, m_time.wMonth, m_time.wYear);
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pp->lencode = (u_short)strlen(pp->a_lastcode);
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get_systime(&pp->lastrec);
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/*
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* If clock has no valid status then report error and exit
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*/
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if ((m_time.wStatus & HOPF_OPMODE) == HOPF_INVALID) { /* time ok? */
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refclock_report(peer, CEVNT_BADTIME);
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pp->leap = LEAP_NOTINSYNC;
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return;
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}
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/*
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* Test if time is running on internal quarz
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* if CLK_FLAG1 is set, sychronize even if no radio operation
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*/
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if ((m_time.wStatus & HOPF_OPMODE) == HOPF_INTERNAL){
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if ((pp->sloppyclockflag & CLK_FLAG1) == 0) {
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refclock_report(peer, CEVNT_BADTIME);
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pp->leap = LEAP_NOTINSYNC;
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return;
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}
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}
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if (!refclock_process(pp)) {
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refclock_report(peer, CEVNT_BADTIME);
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return;
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}
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pp->lastref = pp->lastrec;
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refclock_receive(peer);
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record_clock_stats(&peer->srcadr, pp->a_lastcode);
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return;
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}
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#else
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int refclock_hopfpci_bs;
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#endif /* REFCLOCK */
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