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688 lines
16 KiB
688 lines
16 KiB
#include <time.h>
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#include <sys/types.h>
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#include <sys/param.h>
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#include <stdio.h>
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#include <unistd.h>
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#include <stdlib.h>
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#include <math.h>
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#include <string.h>
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#include <sys/time.h>
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#include <sys/timex.h>
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#include <errno.h>
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#include <sys/socket.h>
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#include <netinet/in.h>
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#include <netinet/ip.h>
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#include <netinet/ip_icmp.h>
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#define TSPTYPES
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#include <protocols/timed.h>
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#include <fcntl.h>
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#include <netdb.h>
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#include <arpa/inet.h>
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#include <errno.h>
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#include <linux/types.h>
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#ifdef CAPABILITIES
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#include <sys/capability.h>
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#endif
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void usage(void) __attribute__((noreturn));
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#define MAX_HOSTNAMELEN NI_MAXHOST
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/*
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* Checksum routine for Internet Protocol family headers.
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*
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* This routine is very heavily used in the network
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* code and should be modified for each CPU to be as fast as possible.
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*
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* This implementation is TAHOE version.
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*/
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#undef ADDCARRY
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#define ADDCARRY(sum) { \
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if (sum & 0xffff0000) { \
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sum &= 0xffff; \
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sum++; \
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} \
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}
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int in_cksum(u_short *addr, int len)
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{
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union word {
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char c[2];
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u_short s;
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} u;
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int sum = 0;
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while (len > 0) {
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/*
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* add by words.
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*/
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while ((len -= 2) >= 0) {
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if ((unsigned long)addr & 0x1) {
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/* word is not aligned */
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u.c[0] = *(char *)addr;
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u.c[1] = *((char *)addr+1);
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sum += u.s;
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addr++;
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} else
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sum += *addr++;
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ADDCARRY(sum);
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}
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if (len == -1)
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/*
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* Odd number of bytes.
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*/
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u.c[0] = *(u_char *)addr;
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}
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if (len == -1) {
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/* The last mbuf has odd # of bytes. Follow the
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standard (the odd byte is shifted left by 8 bits) */
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u.c[1] = 0;
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sum += u.s;
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ADDCARRY(sum);
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}
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return (~sum & 0xffff);
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}
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#define ON 1
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#define OFF 0
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#define RANGE 1 /* best expected round-trip time, ms */
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#define MSGS 50
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#define TRIALS 10
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#define GOOD 0
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#define UNREACHABLE 2
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#define NONSTDTIME 3
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#define HOSTDOWN 0x7fffffff
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int interactive = 0;
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uint16_t id;
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int sock;
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int sock_raw;
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struct sockaddr_in server;
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int ip_opt_len = 0;
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#define BIASP 43199999
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#define BIASN -43200000
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#define MODULO 86400000
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#define PROCESSING_TIME 0 /* ms. to reduce error in measurement */
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#define PACKET_IN 1024
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int measure_delta;
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int measure_delta1;
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static u_short seqno, seqno0, acked;
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long rtt = 1000;
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long min_rtt;
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long rtt_sigma = 0;
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/*
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* Measures the differences between machines' clocks using
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* ICMP timestamp messages.
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*/
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int
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measure(struct sockaddr_in * addr)
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{
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socklen_t length;
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int msgcount;
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int cc, count;
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fd_set ready;
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long sendtime, recvtime, histime;
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long min1, min2, diff;
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long delta1, delta2;
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struct timeval tv1, tout;
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u_char packet[PACKET_IN], opacket[64];
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struct icmphdr *icp = (struct icmphdr *) packet;
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struct icmphdr *oicp = (struct icmphdr *) opacket;
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struct iphdr *ip = (struct iphdr *) packet;
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min1 = min2 = 0x7fffffff;
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min_rtt = 0x7fffffff;
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measure_delta = HOSTDOWN;
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measure_delta1 = HOSTDOWN;
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/* empties the icmp input queue */
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FD_ZERO(&ready);
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empty:
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tout.tv_sec = tout.tv_usec = 0;
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FD_SET(sock_raw, &ready);
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if (select(FD_SETSIZE, &ready, (fd_set *)0, (fd_set *)0, &tout)) {
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length = sizeof(struct sockaddr_in);
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cc = recvfrom(sock_raw, (char *)packet, PACKET_IN, 0,
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(struct sockaddr *)NULL, &length);
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if (cc < 0)
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return -1;
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goto empty;
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}
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/*
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* To measure the difference, select MSGS messages whose round-trip
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* time is smaller than RANGE if ckrange is 1, otherwise simply
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* select MSGS messages regardless of round-trip transmission time.
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* Choose the smallest transmission time in each of the two directions.
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* Use these two latter quantities to compute the delta between
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* the two clocks.
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*/
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length = sizeof(struct sockaddr_in);
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oicp->type = ICMP_TIMESTAMP;
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oicp->code = 0;
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oicp->checksum = 0;
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oicp->un.echo.id = id;
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((__u32*)(oicp+1))[0] = 0;
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((__u32*)(oicp+1))[1] = 0;
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((__u32*)(oicp+1))[2] = 0;
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FD_ZERO(&ready);
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msgcount = 0;
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acked = seqno = seqno0 = 0;
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for (msgcount = 0; msgcount < MSGS; ) {
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/*
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* If no answer is received for TRIALS consecutive times,
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* the machine is assumed to be down
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*/
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if (seqno - acked > TRIALS)
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return HOSTDOWN;
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oicp->un.echo.sequence = ++seqno;
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oicp->checksum = 0;
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(void)gettimeofday (&tv1, (struct timezone *)0);
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*(__u32*)(oicp+1) = htonl((tv1.tv_sec % (24*60*60)) * 1000
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+ tv1.tv_usec / 1000);
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oicp->checksum = in_cksum((u_short *)oicp, sizeof(*oicp) + 12);
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count = sendto(sock_raw, (char *)opacket, sizeof(*oicp)+12, 0,
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(struct sockaddr *)addr, sizeof(struct sockaddr_in));
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if (count < 0)
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return UNREACHABLE;
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for (;;) {
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FD_ZERO(&ready);
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FD_SET(sock_raw, &ready);
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{
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long tmo = rtt + rtt_sigma;
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tout.tv_sec = tmo/1000;
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tout.tv_usec = (tmo - (tmo/1000)*1000)*1000;
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}
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if ((count = select(FD_SETSIZE, &ready, (fd_set *)0,
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(fd_set *)0, &tout)) <= 0)
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break;
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(void)gettimeofday(&tv1, (struct timezone *)0);
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cc = recvfrom(sock_raw, (char *)packet, PACKET_IN, 0,
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(struct sockaddr *)NULL, &length);
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if (cc < 0)
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return(-1);
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icp = (struct icmphdr *)(packet + (ip->ihl << 2));
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if( icp->type == ICMP_TIMESTAMPREPLY &&
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icp->un.echo.id == id && icp->un.echo.sequence >= seqno0 &&
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icp->un.echo.sequence <= seqno) {
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if (acked < icp->un.echo.sequence)
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acked = icp->un.echo.sequence;
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recvtime = (tv1.tv_sec % (24*60*60)) * 1000 +
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tv1.tv_usec / 1000;
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sendtime = ntohl(*(__u32*)(icp+1));
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diff = recvtime - sendtime;
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/*
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* diff can be less than 0 aroud midnight
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*/
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if (diff < 0)
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continue;
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rtt = (rtt * 3 + diff)/4;
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rtt_sigma = (rtt_sigma *3 + abs(diff-rtt))/4;
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msgcount++;
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histime = ntohl(((__u32*)(icp+1))[1]);
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/*
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* a hosts using a time format different from
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* ms. since midnight UT (as per RFC792) should
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* set the high order bit of the 32-bit time
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* value it transmits.
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*/
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if ((histime & 0x80000000) != 0)
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return NONSTDTIME;
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if (interactive) {
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printf(".");
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fflush(stdout);
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}
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delta1 = histime - sendtime;
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/*
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* Handles wrap-around to avoid that around
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* midnight small time differences appear
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* enormous. However, the two machine's clocks
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* must be within 12 hours from each other.
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*/
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if (delta1 < BIASN)
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delta1 += MODULO;
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else if (delta1 > BIASP)
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delta1 -= MODULO;
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delta2 = recvtime - histime;
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if (delta2 < BIASN)
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delta2 += MODULO;
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else if (delta2 > BIASP)
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delta2 -= MODULO;
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if (delta1 < min1)
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min1 = delta1;
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if (delta2 < min2)
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min2 = delta2;
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if (delta1 + delta2 < min_rtt) {
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min_rtt = delta1 + delta2;
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measure_delta1 = (delta1 - delta2)/2 + PROCESSING_TIME;
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}
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if (diff < RANGE) {
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min1 = delta1;
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min2 = delta2;
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goto good_exit;
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}
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}
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}
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}
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good_exit:
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measure_delta = (min1 - min2)/2 + PROCESSING_TIME;
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return GOOD;
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}
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char *myname, *hisname;
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int
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measure_opt(struct sockaddr_in * addr)
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{
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socklen_t length;
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int msgcount;
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int cc, count;
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fd_set ready;
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long sendtime, recvtime, histime, histime1;
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long min1, min2, diff;
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long delta1, delta2;
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struct timeval tv1, tout;
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u_char packet[PACKET_IN], opacket[64];
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struct icmphdr *icp = (struct icmphdr *) packet;
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struct icmphdr *oicp = (struct icmphdr *) opacket;
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struct iphdr *ip = (struct iphdr *) packet;
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min1 = min2 = 0x7fffffff;
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min_rtt = 0x7fffffff;
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measure_delta = HOSTDOWN;
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measure_delta1 = HOSTDOWN;
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/* empties the icmp input queue */
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FD_ZERO(&ready);
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empty:
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tout.tv_sec = tout.tv_usec = 0;
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FD_SET(sock_raw, &ready);
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if (select(FD_SETSIZE, &ready, (fd_set *)0, (fd_set *)0, &tout)) {
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length = sizeof(struct sockaddr_in);
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cc = recvfrom(sock_raw, (char *)packet, PACKET_IN, 0,
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(struct sockaddr *)NULL, &length);
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if (cc < 0)
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return -1;
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goto empty;
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}
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/*
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* To measure the difference, select MSGS messages whose round-trip
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* time is smaller than RANGE if ckrange is 1, otherwise simply
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* select MSGS messages regardless of round-trip transmission time.
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* Choose the smallest transmission time in each of the two directions.
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* Use these two latter quantities to compute the delta between
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* the two clocks.
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*/
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length = sizeof(struct sockaddr_in);
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oicp->type = ICMP_ECHO;
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oicp->code = 0;
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oicp->checksum = 0;
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oicp->un.echo.id = id;
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((__u32*)(oicp+1))[0] = 0;
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((__u32*)(oicp+1))[1] = 0;
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((__u32*)(oicp+1))[2] = 0;
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FD_ZERO(&ready);
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msgcount = 0;
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acked = seqno = seqno0 = 0;
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for (msgcount = 0; msgcount < MSGS; ) {
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/*
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* If no answer is received for TRIALS consecutive times,
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* the machine is assumed to be down
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*/
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if ( seqno - acked > TRIALS) {
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errno = EHOSTDOWN;
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return HOSTDOWN;
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}
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oicp->un.echo.sequence = ++seqno;
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oicp->checksum = 0;
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gettimeofday (&tv1, NULL);
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((__u32*)(oicp+1))[0] = htonl((tv1.tv_sec % (24*60*60)) * 1000
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+ tv1.tv_usec / 1000);
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oicp->checksum = in_cksum((u_short *)oicp, sizeof(*oicp)+12);
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count = sendto(sock_raw, (char *)opacket, sizeof(*oicp)+12, 0,
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(struct sockaddr *)addr, sizeof(struct sockaddr_in));
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if (count < 0) {
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errno = EHOSTUNREACH;
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return UNREACHABLE;
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}
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for (;;) {
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FD_ZERO(&ready);
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FD_SET(sock_raw, &ready);
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{
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long tmo = rtt + rtt_sigma;
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tout.tv_sec = tmo/1000;
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tout.tv_usec = (tmo - (tmo/1000)*1000)*1000;
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}
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if ((count = select(FD_SETSIZE, &ready, (fd_set *)0,
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(fd_set *)0, &tout)) <= 0)
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break;
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(void)gettimeofday(&tv1, (struct timezone *)0);
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cc = recvfrom(sock_raw, (char *)packet, PACKET_IN, 0,
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(struct sockaddr *)NULL, &length);
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if (cc < 0)
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return(-1);
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icp = (struct icmphdr *)(packet + (ip->ihl << 2));
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if (icp->type == ICMP_ECHOREPLY &&
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packet[20] == IPOPT_TIMESTAMP &&
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icp->un.echo.id == id &&
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icp->un.echo.sequence >= seqno0 &&
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icp->un.echo.sequence <= seqno) {
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int i;
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__u8 *opt = packet+20;
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if (acked < icp->un.echo.sequence)
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acked = icp->un.echo.sequence;
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if ((opt[3]&0xF) != IPOPT_TS_PRESPEC) {
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fprintf(stderr, "Wrong timestamp %d\n", opt[3]&0xF);
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return NONSTDTIME;
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}
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if (opt[3]>>4) {
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if ((opt[3]>>4) != 1 || ip_opt_len != 4+3*8)
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fprintf(stderr, "Overflow %d hops\n", opt[3]>>4);
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}
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sendtime = recvtime = histime = histime1 = 0;
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for (i=0; i < (opt[2]-5)/8; i++) {
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__u32 *timep = (__u32*)(opt+4+i*8+4);
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__u32 t = ntohl(*timep);
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if (t & 0x80000000)
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return NONSTDTIME;
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if (i == 0)
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sendtime = t;
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if (i == 1)
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histime = histime1 = t;
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if (i == 2) {
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if (ip_opt_len == 4+4*8)
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histime1 = t;
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else
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recvtime = t;
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}
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if (i == 3)
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recvtime = t;
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}
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if (!(sendtime&histime&histime1&recvtime)) {
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fprintf(stderr, "wrong timestamps\n");
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return -1;
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}
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diff = recvtime - sendtime;
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/*
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* diff can be less than 0 aroud midnight
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*/
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if (diff < 0)
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continue;
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rtt = (rtt * 3 + diff)/4;
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rtt_sigma = (rtt_sigma *3 + abs(diff-rtt))/4;
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msgcount++;
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if (interactive) {
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printf(".");
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fflush(stdout);
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}
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delta1 = histime - sendtime;
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/*
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* Handles wrap-around to avoid that around
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* midnight small time differences appear
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* enormous. However, the two machine's clocks
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* must be within 12 hours from each other.
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*/
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if (delta1 < BIASN)
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delta1 += MODULO;
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else if (delta1 > BIASP)
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delta1 -= MODULO;
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delta2 = recvtime - histime1;
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if (delta2 < BIASN)
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delta2 += MODULO;
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else if (delta2 > BIASP)
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delta2 -= MODULO;
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if (delta1 < min1)
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min1 = delta1;
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if (delta2 < min2)
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min2 = delta2;
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if (delta1 + delta2 < min_rtt) {
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min_rtt = delta1 + delta2;
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measure_delta1 = (delta1 - delta2)/2 + PROCESSING_TIME;
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}
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if (diff < RANGE) {
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min1 = delta1;
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min2 = delta2;
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goto good_exit;
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}
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}
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}
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}
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good_exit:
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measure_delta = (min1 - min2)/2 + PROCESSING_TIME;
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return GOOD;
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}
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/*
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* Clockdiff computes the difference between the time of the machine on
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* which it is called and the time of the machines given as argument.
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* The time differences measured by clockdiff are obtained using a sequence
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* of ICMP TSTAMP messages which are returned to the sender by the IP module
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* in the remote machine.
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* In order to compare clocks of machines in different time zones, the time
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* is transmitted (as a 32-bit value) in milliseconds since midnight UT.
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* If a hosts uses a different time format, it should set the high order
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* bit of the 32-bit quantity it transmits.
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* However, VMS apparently transmits the time in milliseconds since midnight
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* local time (rather than GMT) without setting the high order bit.
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* Furthermore, it does not understand daylight-saving time. This makes
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* clockdiff behaving inconsistently with hosts running VMS.
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*
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* In order to reduce the sensitivity to the variance of message transmission
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* time, clockdiff sends a sequence of messages. Yet, measures between
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* two `distant' hosts can be affected by a small error. The error can, however,
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* be reduced by increasing the number of messages sent in each measurement.
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*/
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void
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usage() {
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fprintf(stderr, "Usage: clockdiff [-o] <host>\n");
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exit(1);
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}
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void drop_rights(void) {
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#ifdef CAPABILITIES
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cap_t caps = cap_init();
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if (cap_set_proc(caps)) {
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perror("clockdiff: cap_set_proc");
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exit(-1);
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}
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cap_free(caps);
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#endif
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if (setuid(getuid())) {
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perror("clockdiff: setuid");
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exit(-1);
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}
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}
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|
int
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main(int argc, char *argv[])
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{
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int measure_status;
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struct hostent * hp;
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char hostname[MAX_HOSTNAMELEN];
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int s_errno = 0;
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int n_errno = 0;
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|
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if (argc < 2) {
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drop_rights();
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usage();
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}
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|
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sock_raw = socket(AF_INET, SOCK_RAW, IPPROTO_ICMP);
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s_errno = errno;
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|
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errno = 0;
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|
if (nice(-16) == -1)
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|
n_errno = errno;
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drop_rights();
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|
|
|
if (argc == 3) {
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if (strcmp(argv[1], "-o") == 0) {
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|
ip_opt_len = 4 + 4*8;
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|
argv++;
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|
} else if (strcmp(argv[1], "-o1") == 0) {
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|
ip_opt_len = 4 + 3*8;
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|
argv++;
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|
} else
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|
usage();
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|
} else if (argc != 2)
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|
usage();
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|
|
|
if (sock_raw < 0) {
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|
errno = s_errno;
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|
perror("clockdiff: socket");
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|
exit(1);
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|
}
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|
|
|
if (n_errno < 0) {
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|
errno = n_errno;
|
|
perror("clockdiff: nice");
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|
exit(1);
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|
}
|
|
|
|
if (isatty(fileno(stdin)) && isatty(fileno(stdout)))
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|
interactive = 1;
|
|
|
|
id = getpid();
|
|
|
|
(void)gethostname(hostname,sizeof(hostname));
|
|
hp = gethostbyname(hostname);
|
|
if (hp == NULL) {
|
|
fprintf(stderr, "clockdiff: %s: my host not found\n", hostname);
|
|
exit(1);
|
|
}
|
|
myname = strdup(hp->h_name);
|
|
|
|
hp = gethostbyname(argv[1]);
|
|
if (hp == NULL) {
|
|
fprintf(stderr, "clockdiff: %s: host not found\n", argv[1]);
|
|
exit(1);
|
|
}
|
|
hisname = strdup(hp->h_name);
|
|
|
|
memset(&server, 0, sizeof(server));
|
|
server.sin_family = hp->h_addrtype;
|
|
memcpy(&(server.sin_addr.s_addr), hp->h_addr, 4);
|
|
|
|
if (connect(sock_raw, (struct sockaddr*)&server, sizeof(server)) == -1) {
|
|
perror("connect");
|
|
exit(1);
|
|
}
|
|
if (ip_opt_len) {
|
|
struct sockaddr_in myaddr;
|
|
socklen_t addrlen = sizeof(myaddr);
|
|
unsigned char rspace[ip_opt_len];
|
|
|
|
memset(rspace, 0, sizeof(rspace));
|
|
rspace[0] = IPOPT_TIMESTAMP;
|
|
rspace[1] = ip_opt_len;
|
|
rspace[2] = 5;
|
|
rspace[3] = IPOPT_TS_PRESPEC;
|
|
if (getsockname(sock_raw, (struct sockaddr*)&myaddr, &addrlen) == -1) {
|
|
perror("getsockname");
|
|
exit(1);
|
|
}
|
|
((__u32*)(rspace+4))[0*2] = myaddr.sin_addr.s_addr;
|
|
((__u32*)(rspace+4))[1*2] = server.sin_addr.s_addr;
|
|
((__u32*)(rspace+4))[2*2] = myaddr.sin_addr.s_addr;
|
|
if (ip_opt_len == 4+4*8) {
|
|
((__u32*)(rspace+4))[2*2] = server.sin_addr.s_addr;
|
|
((__u32*)(rspace+4))[3*2] = myaddr.sin_addr.s_addr;
|
|
}
|
|
|
|
if (setsockopt(sock_raw, IPPROTO_IP, IP_OPTIONS, rspace, ip_opt_len) < 0) {
|
|
perror("ping: IP_OPTIONS (fallback to icmp tstamps)");
|
|
ip_opt_len = 0;
|
|
}
|
|
}
|
|
|
|
if ((measure_status = (ip_opt_len ? measure_opt : measure)(&server)) < 0) {
|
|
if (errno)
|
|
perror("measure");
|
|
else
|
|
fprintf(stderr, "measure: unknown failure\n");
|
|
exit(1);
|
|
}
|
|
|
|
switch (measure_status) {
|
|
case HOSTDOWN:
|
|
fprintf(stderr, "%s is down\n", hisname);
|
|
exit(1);
|
|
case NONSTDTIME:
|
|
fprintf(stderr, "%s time transmitted in a non-standard format\n", hisname);
|
|
exit(1);
|
|
case UNREACHABLE:
|
|
fprintf(stderr, "%s is unreachable\n", hisname);
|
|
exit(1);
|
|
default:
|
|
break;
|
|
}
|
|
|
|
|
|
{
|
|
time_t now = time(NULL);
|
|
|
|
if (interactive)
|
|
printf("\nhost=%s rtt=%ld(%ld)ms/%ldms delta=%dms/%dms %s", hisname,
|
|
rtt, rtt_sigma, min_rtt,
|
|
measure_delta, measure_delta1,
|
|
ctime(&now));
|
|
else
|
|
printf("%ld %d %d\n", now, measure_delta, measure_delta1);
|
|
}
|
|
exit(0);
|
|
}
|