ping.c 5.4 KB

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  1. #include <u.h>
  2. #include <libc.h>
  3. #include <ip.h>
  4. typedef struct Icmp Icmp;
  5. struct Icmp
  6. {
  7. uchar vihl; /* Version and header length */
  8. uchar tos; /* Type of service */
  9. uchar length[2]; /* packet length */
  10. uchar id[2]; /* Identification */
  11. uchar frag[2]; /* Fragment information */
  12. uchar ttl; /* Time to live */
  13. uchar proto; /* Protocol */
  14. uchar ipcksum[2]; /* Header checksum */
  15. uchar src[4]; /* Ip source */
  16. uchar dst[4]; /* Ip destination */
  17. uchar type;
  18. uchar code;
  19. uchar cksum[2];
  20. uchar icmpid[2];
  21. uchar seq[2];
  22. uchar data[1];
  23. };
  24. enum
  25. { /* Packet Types */
  26. EchoReply = 0,
  27. Unreachable = 3,
  28. SrcQuench = 4,
  29. EchoRequest = 8,
  30. TimeExceed = 11,
  31. Timestamp = 13,
  32. TimestampReply = 14,
  33. InfoRequest = 15,
  34. InfoReply = 16,
  35. ICMP_IPSIZE = 20,
  36. ICMP_HDRSIZE = 8,
  37. MAXMSG = 32,
  38. SLEEPMS = 1000,
  39. };
  40. typedef struct Req Req;
  41. struct Req
  42. {
  43. ushort seq; // sequence number
  44. vlong time; // time sent
  45. vlong rtt;
  46. int ttl;
  47. int replied;
  48. Req *next;
  49. };
  50. Req *first; // request list
  51. Req *last; // ...
  52. Lock listlock;
  53. char *argv0;
  54. int debug;
  55. int quiet;
  56. int lostonly;
  57. int lostmsgs;
  58. int rcvdmsgs;
  59. int done;
  60. vlong sum;
  61. ushort firstseq;
  62. int addresses;
  63. void usage(void);
  64. void lost(Req*, Icmp*);
  65. void reply(Req*, Icmp*);
  66. #define SECOND 1000000000LL
  67. #define MINUTE (60LL*SECOND)
  68. static void
  69. catch(void *a, char *msg)
  70. {
  71. USED(a);
  72. if(strstr(msg, "alarm"))
  73. noted(NCONT);
  74. else
  75. noted(NDFLT);
  76. }
  77. void
  78. clean(ushort seq, vlong now, Icmp *ip)
  79. {
  80. Req **l, *r;
  81. lock(&listlock);
  82. for(l = &first; *l; ){
  83. r = *l;
  84. if(r->seq == seq){
  85. r->rtt = now-r->time;
  86. r->ttl = ip->ttl;
  87. reply(r, ip);
  88. }
  89. if(now-r->time > MINUTE){
  90. *l = r->next;
  91. r->rtt = now-r->time;
  92. r->ttl = ip->ttl;
  93. if(r->replied == 0)
  94. lost(r, ip);
  95. free(r);
  96. } else {
  97. last = r;
  98. l = &(r->next);
  99. }
  100. }
  101. unlock(&listlock);
  102. }
  103. void
  104. sender(int fd, int msglen, int interval, int n)
  105. {
  106. char buf[64*1024+512];
  107. Icmp *ip;
  108. int i;
  109. Req *r;
  110. ushort seq;
  111. ip = (Icmp*)buf;
  112. srand(time(0));
  113. firstseq = seq = rand();
  114. for(i = 32; i < msglen; i++)
  115. buf[i] = i;
  116. ip->type = EchoRequest;
  117. ip->code = 0;
  118. for(i = 0; i < n; i++){
  119. if(i != 0)
  120. sleep(interval);
  121. r = malloc(sizeof *r);
  122. if(r != nil){
  123. ip->seq[0] = seq;
  124. ip->seq[1] = seq>>8;
  125. r->seq = seq;
  126. r->next = nil;
  127. lock(&listlock);
  128. if(first == nil)
  129. first = r;
  130. else
  131. last->next = r;
  132. last = r;
  133. unlock(&listlock);
  134. r->replied = 0;
  135. r->time = nsec();
  136. if(write(fd, ip, msglen) < msglen){
  137. fprint(2, "%s: write failed: %r\n", argv0);
  138. return;
  139. }
  140. seq++;
  141. }
  142. }
  143. done = 1;
  144. }
  145. void
  146. rcvr(int fd, int msglen, int interval, int nmsg, int senderpid)
  147. {
  148. uchar buf[64*1024+512];
  149. Icmp *ip;
  150. ushort x;
  151. int i, n, munged;
  152. vlong now;
  153. Req *r;
  154. ip = (Icmp*)buf;
  155. sum = 0;
  156. while(!done || first != nil){
  157. alarm((nmsg-lostmsgs-rcvdmsgs)*interval+5000);
  158. n = read(fd, buf, sizeof(buf));
  159. alarm(0);
  160. now = nsec();
  161. if(n <= 0){
  162. print("read: %r\n");
  163. break;
  164. }
  165. if(n < msglen){
  166. print("bad len %d/%d\n", n, msglen);
  167. continue;
  168. }
  169. munged = 0;
  170. for(i = 32; i < msglen; i++)
  171. if(buf[i] != (i&0xff))
  172. munged++;
  173. if(munged)
  174. print("currupted reply\n");
  175. x = (ip->seq[1]<<8)|ip->seq[0];
  176. if(ip->type != EchoReply || ip->code != 0) {
  177. print("bad sequence/code/type %d/%d/%d\n",
  178. ip->type, ip->code, x);
  179. continue;
  180. }
  181. clean(x, now, ip);
  182. }
  183. lock(&listlock);
  184. for(r = first; r; r = r->next)
  185. if(r->replied == 0)
  186. lostmsgs++;
  187. unlock(&listlock);
  188. if(lostmsgs)
  189. print("%d out of %d messages lost\n", lostmsgs, lostmsgs+rcvdmsgs);
  190. postnote(PNPROC, senderpid, "die");
  191. }
  192. void
  193. usage(void)
  194. {
  195. fprint(2, "usage: %s [-alq] [-s msgsize] [-i millisecs] [-n #pings] destination\n", argv0);
  196. exits("usage");
  197. }
  198. void
  199. main(int argc, char **argv)
  200. {
  201. int fd;
  202. int msglen, interval, nmsg;
  203. int pid;
  204. nsec(); /* make sure time file is already open */
  205. fmtinstall('V', eipfmt);
  206. msglen = interval = 0;
  207. nmsg = MAXMSG;
  208. ARGBEGIN {
  209. case 'l':
  210. lostonly++;
  211. break;
  212. case 'd':
  213. debug++;
  214. break;
  215. case 's':
  216. msglen = atoi(ARGF());
  217. break;
  218. case 'i':
  219. interval = atoi(ARGF());
  220. break;
  221. case 'n':
  222. nmsg = atoi(ARGF());
  223. break;
  224. case 'a':
  225. addresses = 1;
  226. break;
  227. case 'q':
  228. quiet = 1;
  229. break;
  230. } ARGEND;
  231. if(msglen < 32)
  232. msglen = 64;
  233. if(msglen >= 65*1024)
  234. msglen = 65*1024-1;
  235. if(interval <= 0)
  236. interval = SLEEPMS;
  237. if(argc < 1)
  238. usage();
  239. notify(catch);
  240. fd = dial(netmkaddr(argv[0], "icmp", "1"), 0, 0, 0);
  241. if(fd < 0){
  242. fprint(2, "%s: couldn't dial: %r\n", argv0);
  243. exits("dialing");
  244. }
  245. print("sending %d %d byte messages %d ms apart\n", nmsg, msglen, interval);
  246. pid = getpid();
  247. switch(rfork(RFPROC|RFMEM|RFFDG)){
  248. case -1:
  249. fprint(2, "%s: can't fork: %r\n", argv0);
  250. case 0:
  251. rcvr(fd, msglen, interval, nmsg, pid);
  252. exits(0);
  253. default:
  254. sender(fd, msglen, interval, nmsg);
  255. wait();
  256. exits(lostmsgs ? "lost messages" : "");
  257. }
  258. }
  259. void
  260. reply(Req *r, Icmp *ip)
  261. {
  262. rcvdmsgs++;
  263. r->rtt /= 1000LL;
  264. sum += r->rtt;
  265. if(!quiet && !lostonly){
  266. if(addresses)
  267. print("%ud: %V->%V rtt %lld µs, avg rtt %lld µs, ttl = %d\n",
  268. r->seq-firstseq,
  269. ip->src, ip->dst,
  270. r->rtt, sum/rcvdmsgs, r->ttl);
  271. else
  272. print("%ud: rtt %lld µs, avg rtt %lld µs, ttl = %d\n",
  273. r->seq-firstseq,
  274. r->rtt, sum/rcvdmsgs, r->ttl);
  275. }
  276. r->replied = 1;
  277. }
  278. void
  279. lost(Req *r, Icmp *ip)
  280. {
  281. if(!quiet){
  282. if(addresses)
  283. print("lost %ud: %V->%V avg rtt %lld µs\n",
  284. r->seq-firstseq,
  285. ip->src, ip->dst,
  286. sum/rcvdmsgs);
  287. else
  288. print("lost %ud: avg rtt %lld µs\n",
  289. r->seq-firstseq,
  290. sum/rcvdmsgs);
  291. }
  292. lostmsgs++;
  293. }