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Comparing AnyEvent-FastPing/FastPing.xs (file contents):
Revision 1.2 by root, Sat May 17 21:47:29 2008 UTC vs.
Revision 1.10 by root, Mon Jan 31 05:35:48 2011 UTC

1#define _POSIX_C_SOURCE 200112 1#if defined(__linux) || defined(__FreeBSD__) || defined(__OpenBSD__) || defined(__NetBSD__) || defined(__CYGWIN__)
2#define _XOPEN_SOURCE 600 2# define ENABLE_IPV6 1 // if you get compilation problems try to disable IPv6
3#define _LARGEFILE64_SOURCE 1
4
5#ifndef __APPLE__
6# define IPV6 0
7#else 3#else
8# define IPV6 1 // if you get compilation problems try to disable IPv6 4# define ENABLE_IPV6 0
9#endif 5#endif
10 6
11#include "EXTERN.h" 7#include "EXTERN.h"
12#include "perl.h" 8#include "perl.h"
13#include "XSUB.h" 9#include "XSUB.h"
14 10
15#include <pthread.h> 11#include <pthread.h>
16 12
17#include <math.h>
18#include <stdio.h> 13#include <stdio.h>
19#include <stdlib.h> 14#include <stdlib.h>
20#include <string.h> 15#include <string.h>
21 16
22#include <time.h> 17#include <time.h>
34#include <arpa/inet.h> 29#include <arpa/inet.h>
35 30
36#ifdef __linux 31#ifdef __linux
37# include <linux/icmp.h> 32# include <linux/icmp.h>
38#endif 33#endif
39#if IPV6 34#if ENABLE_IPV6 && !defined (__CYGWIN__)
40# include <netinet/icmp6.h> 35# include <netinet/icmp6.h>
41#endif 36#endif
42 37
43#define ICMP4_ECHO 8 38#define ICMP4_ECHO 8
44#define ICMP4_ECHO_REPLY 0 39#define ICMP4_ECHO_REPLY 0
45#define ICMP6_ECHO 128 40#define ICMP6_ECHO 128
46#define ICMP6_ECHO_REPLY 129 41#define ICMP6_ECHO_REPLY 129
47 42
48#define DRAIN_INTERVAL .000001 // how long to wait when sendto returns ENOBUFS, in seconds 43#define DRAIN_INTERVAL 1e-6 // how long to wait when sendto returns ENOBUFS, in seconds
49#define MIN_INTERVAL .000001 // minimum packet send interval, in seconds 44#define MIN_INTERVAL 1e-6 // minimum packet send interval, in seconds
50 45
51#define HDR_SIZE_IP4 20 46#define HDR_SIZE_IP4 20
52#define HDR_SIZE_IP6 48 47#define HDR_SIZE_IP6 48
53 48
54//TODO: xread/xwrite for atomicity? we currently rely on the fact that the pip biffersize divides exactly by pointer sizes 49//TODO: xread/xwrite for atomicity? we currently rely on the fact that the pip buffersize divides exactly by pointer sizes
55 50
56typedef uint8_t addr_t[16]; 51typedef uint8_t addr_tt[16];
52
53static int thr_res[2]; // receive from worker(s)
54static int icmp4_fd = -1, icmp6_fd = -1;
55
56/*****************************************************************************/
57 57
58typedef double tstamp; 58typedef double tstamp;
59 59
60tstamp 60static tstamp
61NOW () 61NOW (void)
62{ 62{
63 struct timeval tv; 63 struct timeval tv;
64
64 gettimeofday (&tv, 0); 65 gettimeofday (&tv, 0);
66
65 return tv.tv_sec + tv.tv_usec * 0.000001; 67 return tv.tv_sec + tv.tv_usec * 1e-6;
66} 68}
67 69
70static void
71ssleep (tstamp wait)
72{
73#if defined (__SVR4) && defined (__sun)
74 struct timeval tv;
75
76 tv.tv_sec = wait;
77 tv.tv_usec = (wait - tv.tv_sec) * 1e6;
78
79 select (0, 0, 0, 0, &tv);
80#elif defined(_WIN32)
81 Sleep ((unsigned long)(delay * 1e3));
82#else
83 struct timespec ts;
84
85 ts.tv_sec = wait;
86 ts.tv_nsec = (wait - ts.tv_sec) * 1e9;
87
88 nanosleep (&ts, 0);
89#endif
90}
91
92/*****************************************************************************/
93
68typedef struct { 94typedef struct
69 int family; 95{
70 addr_t lo, hi;
71 double interval;
72 tstamp next;
73} RANGE;
74
75typedef struct {
76 SV *id;
77 double interval;
78 int nranges;
79 RANGE *ranges;
80 uint32_t payload;
81} REQ;
82
83typedef struct {
84 uint8_t version_ihl; 96 uint8_t version_ihl;
85 uint8_t tos; 97 uint8_t tos;
86 uint16_t tot_len; 98 uint16_t tot_len;
87 99
88 uint16_t id; 100 uint16_t id;
94 106
95 uint32_t src; 107 uint32_t src;
96 uint32_t dst; 108 uint32_t dst;
97} IP4HDR; 109} IP4HDR;
98 110
111#if 0
99typedef struct { 112typedef struct
113{
100 uint8_t version; 114 uint8_t version;
101 uint8_t x1, x2, x3; 115 uint8_t x1, x2, x3;
102 116
103 uint16_t payload_len; 117 uint16_t payload_len;
104 uint8_t nxt_hdr; 118 uint8_t nxt_hdr;
105 uint8_t hop_limit; 119 uint8_t hop_limit;
106 120
107 uint8_t src[16]; 121 uint8_t src[16];
108 uint8_t dst[16]; 122 uint8_t dst[16];
109} IP6HDR; 123} IP6HDR;
124#endif
110 125
111#define MAGIC 0xca4c 126/*****************************************************************************/
112 127
113static uint16_t magic;
114
115typedef struct { 128typedef struct
129{
130 tstamp next;
131 double interval;
132 int addrlen;
133 addr_tt lo, hi;
134 void *items;
135} RANGE;
136
137typedef struct
138{
139 RANGE **ranges;
140 int rangecnt, rangemax;
141
142 tstamp interval;
143 tstamp maxrtt;
144 uint16_t magic1;
145 uint16_t magic2;
146 uint16_t magic3;
147
148 int id;
149
150 AV *recvq; /* receive queue */
151 int nextrecv;
152 SV *recvcb;
153
154 pthread_t thrid;
155 int running;
156} PINGER;
157
158static PINGER **pingers;
159static int *pingerfree; /* freelist next */
160static int pingercnt;
161static int pingermax;
162static int firstfree = -1;
163static int firstrecv = -1;
164
165/*****************************************************************************/
166
167typedef struct
168{
116 uint8_t type, code; 169 uint8_t type, code;
117 uint16_t cksum; 170 uint16_t cksum;
118 uint16_t id, seq; 171 uint16_t id, seq;
172 uint16_t pinger;
173 uint16_t magic;
174 uint32_t stamp_hi;
119 uint32_t payload; 175 uint32_t stamp_lo;
120 tstamp stamp; // be careful when accessing this
121} PKT; 176} PKT;
122 177
123static pthread_t pthrid;
124static int thr_send[2]; // send to worker
125static int thr_recv[2]; // receive from worker
126
127static int icmp4_fd, icmp6_fd;
128
129static AV *cbs;
130
131static uint16_t 178static int
132icmp_cksum (void *data, unsigned int len) 179pkt_is_valid_for (PKT *pkt, PINGER *pinger)
133{ 180{
134 register int sum = 0; 181 return pkt->id == pinger->magic1
135 uint16_t *wp; 182 && pkt->seq == pinger->magic2
183 && pkt->magic == pinger->magic3;
184}
136 185
137 assert (~len & 1); 186static void
187ts_to_pkt (PKT *pkt, tstamp ts)
188{
189 /* move 12 bits of seconds into the 32 bit fractional part */
190 /* leaving 20 bits subsecond resolution and 44 bits of integers */
191 /* (of which 32 are typically usable) */
192 ts *= 1. / 4096.;
138 193
139 for (wp = (uint16_t *)data; len; wp++, len -= 2) 194 pkt->stamp_hi = ts;
140 sum += *wp; 195 pkt->stamp_lo = (ts - pkt->stamp_hi) * 4294967296.;
196}
197
198static tstamp
199pkt_to_ts (PKT *pkt)
200{
201 return pkt->stamp_hi * 4096.
202 + pkt->stamp_lo * (4096. / 4294967296.);
203}
204
205static void
206pkt_cksum (PKT *pkt)
207{
208 uint_fast32_t sum = -pkt->cksum;
209 uint32_t *wp = (uint32_t *)pkt;
210 int len = sizeof (*pkt) / 4;
211
212 do
213 {
214 uint_fast32_t w = *(volatile uint32_t *)wp++;
215 sum += (w & 0xffff) + (w >> 16);
216 }
217 while (len--);
141 218
142 sum = (sum >> 16) + (sum & 0xffff); /* add high 16 to low 16 */ 219 sum = (sum >> 16) + (sum & 0xffff); /* add high 16 to low 16 */
143 sum += sum >> 16; /* add carry */ 220 sum += sum >> 16; /* add carry */
144 221
145 return ~sum; 222 pkt->cksum = ~sum;
146} 223}
147 224
225/*****************************************************************************/
226
148static void 227static void
228range_free (RANGE *self)
229{
230 free (self);
231}
232
233static void
149inc_addr (addr_t *addr) 234inc_addr (addr_tt *addr)
150{ 235{
151 int len = sizeof (addr_t) - 1; 236 int len = sizeof (addr_tt) - 1;
152 237
153 do 238 while (!++(*addr)[len])
239 --len;
240}
241
242/*****************************************************************************/
243
244/* like sendto, but retries on failure */
245static void
246xsendto (int fd, void *buf, size_t len, int flags, void *sa, int salen)
247{
248 tstamp wait = 0;
249
250 while (sendto (fd, buf, len, flags, sa, salen) < 0 && errno == ENOBUFS)
251 ssleep (wait += DRAIN_INTERVAL);
252}
253
254static void
255send_ping (PKT *pkt, addr_tt *addr, int addr_len)
256{
257 pkt->cksum = 0;
258
259 if (addr_len == 4)
260 {
261 struct sockaddr_in sa;
262
263 pkt->type = ICMP4_ECHO;
264 pkt_cksum (pkt);
265
266 sa.sin_family = AF_INET;
267 sa.sin_port = 0;
268
269 memcpy (&sa.sin_addr,
270 sizeof (addr_tt) - sizeof (sa.sin_addr) + (char *)addr,
271 sizeof (sa.sin_addr));
272
273 xsendto (icmp4_fd, pkt, sizeof (*pkt), 0, &sa, sizeof (sa));
274 }
275 else
276 {
277#if ENABLE_IPV6
278 struct sockaddr_in6 sa;
279
280 pkt->type = ICMP6_ECHO;
281
282 sa.sin6_family = AF_INET6;
283 sa.sin6_port = 0;
284 sa.sin6_flowinfo = 0;
285 sa.sin6_scope_id = 0;
286
287 memcpy (&sa.sin6_addr,
288 sizeof (addr_tt) - sizeof (sa.sin6_addr) + (char *)addr,
289 sizeof (sa.sin6_addr));
290
291 xsendto (icmp6_fd, &pkt, sizeof (pkt), 0, &sa, sizeof (sa));
292#endif
293 }
294}
295
296static void
297downheap (PINGER *self)
298{
299 RANGE *elem = self->ranges [0]; /* always exists */
300 int Nm1 = self->rangecnt - 1;
301 int j;
302 int k;
303
304 for (k = 0; ; )
305 {
306 int j = k * 2 + 1;
307
308 if (j > Nm1)
309 break;
310
311 if (j < Nm1
312 && self->ranges [j]->next > self->ranges [j + 1]->next)
313 ++j;
314
315 if (self->ranges [j]->next >= elem->next)
316 break;
317
318 self->ranges [k] = self->ranges [j];
319
320 k = j;
321 }
322
323 self->ranges [k] = elem;
324}
325
326static void
327upheap (PINGER *self, int k)
328{
329 RANGE *elem = self->ranges [k];
330
331 while (k)
332 {
333 int j = (k - 1) >> 1;
334
335 if (self->ranges [j]->next <= elem->next)
336 break;
337
338 self->ranges [k] = self->ranges [j];
339
340 k = j;
341 }
342
343 self->ranges [k] = elem;
344}
345
346static void *
347ping_proc (void *self_)
348{
349 PINGER *self = (PINGER *)self_;
350 PKT pkt;
351
352 memset (&pkt, 0, sizeof (pkt));
353
354 tstamp now = NOW ();
355 tstamp next = now;
356
357 pkt.code = 0;
358 pkt.id = self->magic1;
359 pkt.seq = self->magic2;
360 pkt.magic = self->magic3;
361 pkt.pinger = self->id;
362
363 while (self->rangecnt)
364 {
365 RANGE *range = self->ranges [0];
366 int n, k;
367
368 // ranges [0] is always the next range to ping
369 tstamp wait = range->next - now;
370
371 // compare with the global frequency limit
154 { 372 {
155 if ((*addr)[len] != 0xff) 373 tstamp diff = next - now;
374
375 if (wait < diff)
376 wait = diff;
377 else if (range)
378 next = range->next;
379 }
380
381 if (wait > 0.)
382 ssleep (wait);
383
384 now = NOW ();
385
386 ts_to_pkt (&pkt, now);
387
388 send_ping (&pkt, &range->lo, range->addrlen);
389
390 if (!memcmp (&range->lo, &range->hi, sizeof (addr_tt)))
156 { 391 {
157 ++(*addr)[len]; 392 self->ranges [0] = self->ranges [--self->rangecnt];
158 break; 393 range_free (range);
159 } 394 }
160 395 else
161 (*addr)[len] = 0;
162 }
163 while (len--);
164}
165
166static void *
167ping_proc (void *unused)
168{
169 PKT pkt;
170 struct sockaddr_in sa4;
171#if IPV6
172 struct sockaddr_in6 sa6;
173#endif
174
175 memset (&pkt, 0, sizeof (pkt));
176
177 memset (&sa4, 0, sizeof (sa4));
178 sa4.sin_family = AF_INET;
179 sa4.sin_port = 0;
180#if IPV6
181 memset (&sa6, 0, sizeof (sa6));
182 sa6.sin6_family = AF_INET6;
183 sa6.sin6_port = 0;
184#endif
185
186 for (;;)
187 {
188 REQ *req;
189 int len = read (thr_send [0], &req, sizeof (req));
190
191 if (!len)
192 pthread_exit (0);
193 else if (len != sizeof (req))
194 { 396 {
195 perror ("AnyEvent::FastPing: short reead or read error"); 397 inc_addr (&range->lo);
196 pthread_exit ((void *)-1); 398
399 range->next = next;
400 range->next += range->interval;
401
402 downheap (self);
197 } 403 }
198 404
199 //TODO: bind to source address 405 next += self->interval;
200
201 pkt.code = 0;
202 pkt.id = (uint16_t)magic;
203 pkt.seq = (uint16_t)~magic;
204 pkt.payload = req->payload;
205
206 tstamp now = NOW ();
207 tstamp next = now;
208
209 {
210 int r;
211 for (r = req->nranges; r--; )
212 inc_addr (&req->ranges [r].hi);
213 } 406 }
214 407
215 while (req->nranges) 408 ssleep (self->maxrtt);
409
410 {
411 uint16_t id = self->id;
412
413 write (thr_res [1], &id, sizeof (id));
414 }
415
416 return 0;
417}
418
419/*****************************************************************************/
420
421static void
422pinger_start (PINGER *self)
423{
424 sigset_t fullsigset, oldsigset;
425 pthread_attr_t attr;
426
427 if (self->running)
428 return;
429
430 sigfillset (&fullsigset);
431
432 pthread_attr_init (&attr);
433 pthread_attr_setstacksize (&attr, PTHREAD_STACK_MIN < sizeof (long) * 2048 ? sizeof (long) * 2048 : PTHREAD_STACK_MIN);
434
435 pthread_sigmask (SIG_SETMASK, &fullsigset, &oldsigset);
436
437 if (pthread_create (&self->thrid, &attr, ping_proc, (void *)self))
438 croak ("AnyEvent::FastPing: unable to create pinger thread");
439
440 pthread_sigmask (SIG_SETMASK, &oldsigset, 0);
441
442 self->running = 1;
443}
444
445static void
446pinger_stop (PINGER *self)
447{
448 if (!self->running)
449 return;
450
451 self->running = 0;
452 pthread_cancel (self->thrid);
453 pthread_join (self->thrid, 0);
454}
455
456static void
457pinger_init (PINGER *self)
458{
459 memset (self, 0, sizeof (PINGER));
460
461 if (firstfree >= 0)
462 {
463 self->id = firstfree;
464 firstfree = pingerfree [firstfree];
465 }
466 else if (pingercnt == 0xffff)
467 croak ("unable to create more than 65536 AnyEvent::FastPing objects");
468 else
469 {
470 if (pingercnt == pingermax)
216 { 471 {
217 RANGE *range = req->ranges; 472 pingermax = pingermax * 2 + 16;
218 473 pingers = realloc (pingers , sizeof (pingers [0]) * pingermax);
219 if (!memcmp (&range->lo, &range->hi, sizeof (addr_t))) 474 pingerfree = realloc (pingerfree, sizeof (pingerfree [0]) * pingermax);
220 req->ranges [0] = req->ranges [--req->nranges];
221 else
222 {
223 // ranges [0] is always the next range to ping
224 tstamp wait = range->next - now;
225
226 // compare with the global frequency limit
227 {
228 tstamp diff = next - now;
229
230 if (wait < diff)
231 wait = diff;
232 else if (range)
233 next = range->next;
234 }
235
236 if (wait > 0.)
237 {
238 struct timespec ts;
239
240 ts.tv_sec = wait;
241 ts.tv_nsec = (wait - ts.tv_sec) * 1000000000.;
242
243 nanosleep (&ts, 0);
244 }
245
246 now = NOW ();
247
248 pkt.stamp = now;
249 pkt.cksum = 0;
250
251 if (range->family == AF_INET)
252 {
253 pkt.type = ICMP4_ECHO;
254 pkt.cksum = icmp_cksum (&pkt, sizeof (pkt));
255
256 memcpy (&sa4.sin_addr,
257 sizeof (addr_t) - sizeof (sa4.sin_addr) + (char *)&range->lo,
258 sizeof (sa4.sin_addr));
259
260 if (sendto (icmp4_fd, &pkt, sizeof (pkt), 0, (struct sockaddr *)&sa4, sizeof (sa4)) > 0)
261 errno = 0;
262 }
263 else
264 {
265#if IPV6
266 pkt.type = ICMP6_ECHO;
267
268 memcpy (&sa6.sin6_addr,
269 sizeof (addr_t) - sizeof (sa6.sin6_addr) + (char *)&range->lo,
270 sizeof (sa6.sin6_addr));
271
272 if (sendto (icmp6_fd, &pkt, sizeof (pkt), 0, (struct sockaddr *)&sa6, sizeof (sa6)) > 0)
273 errno = 0;
274#endif
275 }
276
277 if (errno == ENOBUFS)
278 {
279 struct timespec ts;
280
281 ts.tv_sec = 0;
282 ts.tv_nsec = DRAIN_INTERVAL * 1000000000;
283
284 nanosleep (&ts, 0);
285 }
286 else
287 {
288 inc_addr (&range->lo);
289
290 range->next = next;
291 range->next += range->interval;
292 }
293
294 next += req->interval;
295 }
296
297 // make a downheap operation
298 int k = 0;
299 int n = 0;
300 for (;;)
301 {
302 ++n;
303 int j = k * 2 + 1;
304
305 if (j >= req->nranges)
306 break;
307 else if (j < req->nranges - 1)
308 if (req->ranges [j].next > req->ranges [j + 1].next)
309 ++j;
310
311 if (req->ranges [j].next >= req->ranges [k].next)
312 break;
313
314 RANGE temp = req->ranges [k];
315 req->ranges [k] = req->ranges [j];
316 req->ranges [j] = temp;
317
318 k = j;
319 }
320 } 475 }
321 476
322 write (thr_recv [1], &req, sizeof (req)); 477 self->id = pingercnt++;
478 }
479
480 pingers [self->id] = self;
481
482 self->recvcb = &PL_sv_undef;
483 self->interval = MIN_INTERVAL;
484 self->maxrtt = 0.5;
485 self->rangemax = 16;
486 self->ranges = malloc (sizeof (self->ranges [0]) * self->rangemax);
487}
488
489static void
490pinger_free (PINGER *self)
491{
492 pinger_stop (self);
493
494 pingers [self->id] = 0;
495
496 SvREFCNT_dec (self->recvq);
497 SvREFCNT_dec (self->recvcb);
498
499 pingerfree [self->id] = firstfree;
500 firstfree = self->id;
501
502 while (self->rangecnt)
503 range_free (self->ranges [--self->rangecnt]);
504
505 free (self->ranges);
506}
507
508/*****************************************************************************/
509
510static void
511recv_feed (PINGER *self, void *addr, int addrlen, tstamp rtt)
512{
513 if (!self->recvq)
323 } 514 {
515 /* first seen this round */
516 if (!SvOK (self->recvcb))
517 return;
324 518
519 self->recvq = newAV ();
520
521 self->nextrecv = firstrecv;
522 firstrecv = self->id;
523 }
524
525 {
526 AV *pkt = newAV ();
527
528 av_extend (pkt, 2-1);
529
530 AvARRAY (pkt)[0] = newSVpvn (addr, addrlen);
531 AvARRAY (pkt)[1] = newSVnv (rtt);
532 AvFILLp (pkt) = 2-1;
533
534 av_push (self->recvq, newRV_noinc ((SV *)pkt));
535 }
536}
537
538static void
539recv_flush (void)
540{
541 if (firstrecv < 0)
325 return 0; 542 return;
326}
327 543
544 ENTER;
545 SAVETMPS;
546
547 while (firstrecv >= 0)
548 {
549 dSP;
550 PINGER *self = pingers [firstrecv];
551 firstrecv = self->nextrecv;
552
553 self->nextrecv = -1;
554
555 PUSHMARK (SP);
556 XPUSHs (sv_2mortal (newRV_noinc ((SV *)self->recvq)));
557 self->recvq = 0;
558 PUTBACK;
559 call_sv (self->recvcb, G_DISCARD | G_VOID);
560 }
561
562 FREETMPS;
563 LEAVE;
564}
565
566/*****************************************************************************/
567
568#if 0
328static void 569static void
329feed_reply (AV *res_av) 570feed_reply (AV *res_av)
330{ 571{
331 if (av_len (res_av) < 0)
332 return;
333
334 dSP; 572 dSP;
335 SV *res = sv_2mortal (newRV_inc ((SV *)res_av)); 573 SV *res = sv_2mortal (newRV_inc ((SV *)res_av));
336 int i; 574 int i;
575
576 if (av_len (res_av) < 0)
577 return;
337 578
338 ENTER; 579 ENTER;
339 SAVETMPS; 580 SAVETMPS;
340 581
341 for (i = av_len (cbs) + 1; i--; ) 582 for (i = av_len (cbs) + 1; i--; )
349 } 590 }
350 591
351 FREETMPS; 592 FREETMPS;
352 LEAVE; 593 LEAVE;
353} 594}
595#endif
354 596
355static void 597static void
356boot () 598boot ()
357{ 599{
358 sigset_t fullsigset, oldsigset;
359 pthread_attr_t attr;
360
361 if (pipe (thr_send) < 0)
362 croak ("AnyEvent::FastPing: unable to create send pipe");
363
364 if (pipe (thr_recv) < 0) 600 if (pipe (thr_res) < 0)
365 croak ("AnyEvent::FastPing: unable to create receive pipe"); 601 croak ("AnyEvent::FastPing: unable to create receive pipe");
602
603 sv_setiv (get_sv ("AnyEvent::FastPing::THR_RES_FD", 1), thr_res [0]);
366 604
367 icmp4_fd = socket (AF_INET, SOCK_RAW, IPPROTO_ICMP); 605 icmp4_fd = socket (AF_INET, SOCK_RAW, IPPROTO_ICMP);
368 fcntl (icmp4_fd, F_SETFL, O_NONBLOCK); 606 fcntl (icmp4_fd, F_SETFL, O_NONBLOCK);
369#ifdef ICMP_FILTER 607#ifdef ICMP_FILTER
370 { 608 {
372 oval.data = 0xffffffff & ~(1 << ICMP4_ECHO_REPLY); 610 oval.data = 0xffffffff & ~(1 << ICMP4_ECHO_REPLY);
373 setsockopt (icmp4_fd, SOL_RAW, ICMP_FILTER, &oval, sizeof oval); 611 setsockopt (icmp4_fd, SOL_RAW, ICMP_FILTER, &oval, sizeof oval);
374 } 612 }
375#endif 613#endif
376 614
377#if IPV6 615#if ENABLE_IPV6
378 icmp6_fd = socket (AF_INET6, SOCK_RAW, IPPROTO_ICMPV6); 616 icmp6_fd = socket (AF_INET6, SOCK_RAW, IPPROTO_ICMPV6);
379 fcntl (icmp6_fd, F_SETFL, O_NONBLOCK); 617 fcntl (icmp6_fd, F_SETFL, O_NONBLOCK);
380# ifdef ICMP6_FILTER 618# ifdef ICMP6_FILTER
381 { 619 {
382 struct icmp6_filter oval; 620 struct icmp6_filter oval;
385 setsockopt (icmp6_fd, IPPROTO_ICMPV6, ICMP6_FILTER, &oval, sizeof oval); 623 setsockopt (icmp6_fd, IPPROTO_ICMPV6, ICMP6_FILTER, &oval, sizeof oval);
386 } 624 }
387# endif 625# endif
388#endif 626#endif
389 627
390 pthread_attr_init (&attr);
391 pthread_attr_setdetachstate (&attr, PTHREAD_CREATE_DETACHED);
392#ifdef PTHREAD_SCOPE_PROCESS
393 pthread_attr_setscope (&attr, PTHREAD_SCOPE_PROCESS);
394#endif
395
396 sigfillset (&fullsigset);
397
398 pthread_sigmask (SIG_SETMASK, &fullsigset, &oldsigset);
399
400 if (pthread_create (&pthrid, &attr, ping_proc, 0))
401 croak ("AnyEvent::FastPing: unable to create pinger thread");
402
403 pthread_sigmask (SIG_SETMASK, &oldsigset, 0);
404
405 sv_setiv (get_sv ("AnyEvent::FastPing::THR_REQ_FD", 1), thr_send [1]);
406 sv_setiv (get_sv ("AnyEvent::FastPing::THR_RES_FD", 1), thr_recv [0]);
407
408 sv_setiv (get_sv ("AnyEvent::FastPing::ICMP4_FD", 1), icmp4_fd); 628 sv_setiv (get_sv ("AnyEvent::FastPing::ICMP4_FD", 1), icmp4_fd);
409 sv_setiv (get_sv ("AnyEvent::FastPing::ICMP6_FD", 1), icmp6_fd); 629 sv_setiv (get_sv ("AnyEvent::FastPing::ICMP6_FD", 1), icmp6_fd);
410} 630}
411 631
412MODULE = AnyEvent::FastPing PACKAGE = AnyEvent::FastPing 632MODULE = AnyEvent::FastPing PACKAGE = AnyEvent::FastPing PREFIX = pinger_
413 633
414BOOT: 634BOOT:
415{ 635{
416 HV *stash = gv_stashpv ("AnyEvent::FastPing", 1); 636 HV *stash = gv_stashpv ("AnyEvent::FastPing", 1);
417 637
418 cbs = get_av ("AnyEvent::FastPing::CB", 1); 638 if (sizeof (PKT) & 3)
419 magic = getpid () ^ MAGIC; 639 croak ("size of PKT structure is not a multiple of 4");
420 640
421 boot (); 641 boot ();
422 642
423 newCONSTSUB (stash, "ipv4_supported", newSViv (icmp4_fd >= 0)); 643 newCONSTSUB (stash, "ipv4_supported", newSViv (icmp4_fd >= 0));
424 newCONSTSUB (stash, "ipv6_supported", newSViv (icmp6_fd >= 0)); 644 newCONSTSUB (stash, "ipv6_supported", newSViv (icmp6_fd >= 0));
427 newCONSTSUB (stash, "icmp6_pktsize", newSViv (HDR_SIZE_IP6 + sizeof (PKT))); 647 newCONSTSUB (stash, "icmp6_pktsize", newSViv (HDR_SIZE_IP6 + sizeof (PKT)));
428} 648}
429 649
430PROTOTYPES: DISABLE 650PROTOTYPES: DISABLE
431 651
432SV * 652void
433_req_icmp_ping (SV *ranges, NV interval, U32 payload, SV *id) 653_new (SV *klass, UV magic1, UV magic2, UV magic3)
654 PPCODE:
655{
656 SV *pv = NEWSV (0, sizeof (PINGER));
657 PINGER *self = (PINGER *)SvPVX (pv);
658 SvPOK_only (pv);
659 XPUSHs (sv_2mortal (sv_bless (newRV_noinc (pv), gv_stashpv (SvPV_nolen (klass), 1))));
660 pinger_init (self);
661 self->magic1 = magic1;
662 self->magic2 = magic2;
663 self->magic3 = magic3;
664}
665
666void
667_free (PINGER *self)
434 CODE: 668 CODE:
435{ 669 pinger_free (self);
436 if (!SvROK (ranges) || SvTYPE (SvRV (ranges)) != SVt_PVAV)
437 croak ("address ranges must be given as arrayref with lo, hi pairs");
438 670
439 AV *rav = (AV *)SvRV (ranges); 671IV
440 int nranges = av_len (rav) + 1; 672id (PINGER *self, ...)
441 673 CODE:
442 REQ *req = malloc (sizeof (REQ)); 674 RETVAL = self->id;
443 int i;
444
445 if (interval < MIN_INTERVAL)
446 interval = MIN_INTERVAL;
447
448 req->id = newSVsv (id);
449 req->interval = interval;
450 req->payload = payload;
451 req->nranges = nranges;
452 req->ranges = (RANGE *)malloc (nranges * sizeof (RANGE));
453
454 while (nranges--)
455 {
456 SV *sv = *av_fetch (rav, nranges, 1);
457
458 if (!SvROK (sv) || SvTYPE (SvRV (sv)) != SVt_PVAV)
459 croak ("address range must be given as arrayref with lo, hi, interval arrayrefs");
460
461 AV *av = (AV *)SvRV (sv);
462 RANGE *r = req->ranges + nranges;
463
464 SV *lo = *av_fetch (av, 0, 1);
465 SV *hi = *av_fetch (av, 1, 1);
466
467 sv_utf8_downgrade (lo, 0);
468 sv_utf8_downgrade (hi, 0);
469
470 memset (&r->lo, 0, sizeof (addr_t));
471 memset (&r->hi, 0, sizeof (addr_t));
472
473 if (SvPOKp (lo) && SvPOKp (hi))
474 {
475 if (SvCUR (lo) != SvCUR (hi))
476 croak ("addresses in range must be of the same size (either 4 or 16 bytes)");
477
478 if (SvCUR (lo) == 4)
479 {
480 r->family = AF_INET;
481 memcpy (sizeof (addr_t) - 4 + (char *)&r->lo, SvPVX (lo), 4);
482 memcpy (sizeof (addr_t) - 4 + (char *)&r->hi, SvPVX (hi), 4);
483 }
484 else if (SvCUR (lo) == 16)
485 {
486#if IPV6
487 r->family = AF_INET6;
488 memcpy (&r->lo, SvPVX (lo), sizeof (addr_t));
489 memcpy (&r->hi, SvPVX (hi), sizeof (addr_t));
490#else
491 croak ("IPv6 not supported in this configuration");
492#endif
493 }
494 else
495 croak ("addresses in range must be either 4 (IPv4) or 16 (IPV6) bytes in length");
496 }
497 else if (SvIOK (lo) && SvIOK (hi))
498 {
499 r->family = AF_INET;
500
501 uint32_t addr;
502 addr = htonl (SvUV (lo)); memcpy (sizeof (addr_t) - 4 + (char *)&r->lo, &addr, 4);
503 addr = htonl (SvUV (hi)); memcpy (sizeof (addr_t) - 4 + (char *)&r->hi, &addr, 4);
504 }
505 else
506 croak ("addresses in range must be strings with either 4 (IPv4) or 16 (IPv6) octets");
507
508 if (r->family == AF_INET)
509 {
510 if (icmp4_fd < 0)
511 croak ("AnyEvent::FastPing: IPv4 ping support not available on this system");
512 }
513 else
514 {
515 if (icmp6_fd < 0)
516 croak ("AnyEvent::FastPing: IPv6 ping support not available on this system");
517 }
518
519 r->interval = SvNV (*av_fetch (av, 2, 1));
520
521 if (r->interval < req->interval)
522 r->interval = req->interval;
523
524 r->next = 0.;
525 }
526
527 RETVAL = newSVpvn ((char *)&req, sizeof (req));
528}
529 OUTPUT: 675 OUTPUT:
530 RETVAL 676 RETVAL
531 677
532SV * 678void pinger_start (PINGER *self)
533_read_res () 679
680void pinger_stop (PINGER *self)
681
682void _stop_id (UV id)
534 CODE: 683 CODE:
684 if (id < pingercnt && pingers [id])
685 pinger_stop (pingers [id]);
686
687void interval (PINGER *self, NV interval)
688 CODE:
689 self->interval = interval > MIN_INTERVAL ? interval : MIN_INTERVAL;
690
691void add_range (PINGER *self, SV *lo_, SV *hi_, NV interval)
692 CODE:
535{ 693{
694 STRLEN lo_len, hi_len;
695 char *lo = SvPVbyte (lo_, lo_len);
696 char *hi = SvPVbyte (hi_, hi_len);
536 REQ *req; 697 RANGE *range;
537 698
538 if (read (thr_recv [0], &req, sizeof (req)) != sizeof (req)) 699 if (lo_len != hi_len || (lo_len != 4 && lo_len != 16))
539 RETVAL = &PL_sv_undef; 700 croak ("AnyEvent::FastPing::add_range address range must be specified as two binary IPv4 or IPv6 addresses");
540 701
541 RETVAL = req->id; 702 if (lo_len == 4 && icmp4_fd < 0) croak ("IPv4 support unavailable");
542 free (req->ranges); 703 if (lo_len == 16 && icmp6_fd < 0) croak ("IPv6 support unavailable");
543 free (req); 704
705 range = calloc (1, sizeof (RANGE));
706
707 range->next = 0;
708 range->interval = interval > MIN_INTERVAL ? interval : MIN_INTERVAL;
709 range->addrlen = lo_len;
710
711 memcpy (sizeof (addr_tt) - lo_len + (char *)&range->lo, lo, lo_len);
712 memcpy (sizeof (addr_tt) - lo_len + (char *)&range->hi, hi, lo_len);
713
714 if (self->rangecnt == self->rangemax)
715 self->ranges = realloc (self->ranges, sizeof (self->ranges [0]) * (self->rangemax <<= 1));
716
717 self->ranges [self->rangecnt] = range;
718 upheap (self, self->rangecnt);
719 ++self->rangecnt;
544} 720}
545 OUTPUT: 721
546 RETVAL 722void
723on_recv (PINGER *self, SV *cb)
724 CODE:
725 SvREFCNT_dec (self->recvcb);
726 self->recvcb = newSVsv (cb);
727
728void
729max_rtt (PINGER *self, NV maxrtt)
730 CODE:
731 self->maxrtt = maxrtt;
547 732
548void 733void
549_recv_icmp4 (...) 734_recv_icmp4 (...)
550 CODE: 735 CODE:
551{ 736{
552 char buf [512]; 737 char buf [512];
553 struct sockaddr_in sa; 738 struct sockaddr_in sa;
554 socklen_t sl = sizeof (sa);
555 AV *res_av = av_len (cbs) < 0 ? 0 : (AV *)sv_2mortal ((SV *)newAV ());
556 tstamp now = NOW ();
557 739
558 for (;;) 740 for (;;)
559 { 741 {
742 PINGER *pinger;
743 IP4HDR *iphdr = (IP4HDR *)buf;
744 socklen_t sl = sizeof (sa);
560 int len = recvfrom (icmp4_fd, buf, sizeof (buf), MSG_TRUNC, (struct sockaddr *)&sa, &sl); 745 int len = recvfrom (icmp4_fd, buf, sizeof (buf), MSG_TRUNC, (struct sockaddr *)&sa, &sl);
746 int hdrlen, totlen;
747 PKT *pkt;
561 748
562 if (len <= HDR_SIZE_IP4) 749 if (len <= HDR_SIZE_IP4)
563 break; 750 break;
564 751
565 IP4HDR *iphdr = (IP4HDR *)buf;
566
567 int hdrlen = (iphdr->version_ihl & 15) * 4; 752 hdrlen = (iphdr->version_ihl & 15) * 4;
568 int totlen = ntohs (iphdr->tot_len); 753 totlen = ntohs (iphdr->tot_len);
569 754
570 // packet corrupt? 755 // packet corrupt?
571 if (!res_av
572 || totlen > len 756 if (totlen > len
573 || iphdr->protocol != IPPROTO_ICMP 757 || iphdr->protocol != IPPROTO_ICMP
574 || hdrlen < HDR_SIZE_IP4 || hdrlen + sizeof (PKT) != totlen) 758 || hdrlen < HDR_SIZE_IP4 || hdrlen + sizeof (PKT) != totlen)
575 continue; 759 continue;
576 760
577 PKT *pkt = (PKT *)(buf + hdrlen); 761 pkt = (PKT *)(buf + hdrlen);
578 762
579 if (pkt->type != ICMP4_ECHO_REPLY 763 if (pkt->type != ICMP4_ECHO_REPLY
580 || pkt->id != (uint16_t) magic 764 || pkt->pinger >= pingercnt
581 || pkt->seq != (uint16_t)~magic 765 || !pingers [pkt->pinger])
582 || !isnormal (pkt->stamp))
583 continue; 766 continue;
584 767
585 AV *av = newAV (); 768 pinger = pingers [pkt->pinger];
586 av_push (av, newSVpvn ((char *)&sa.sin_addr, 4));
587 av_push (av, newSVnv (now - pkt->stamp));
588 av_push (av, newSVuv (pkt->payload));
589 769
590 av_push (res_av, newRV_noinc ((SV *)av)); 770 if (!pkt_is_valid_for (pkt, pinger))
771 continue;
772
773 recv_feed (pinger, &sa.sin_addr, 4, NOW () - pkt_to_ts (pkt));
591 } 774 }
592 775
593 if (res_av) 776 recv_flush ();
594 feed_reply (res_av);
595} 777}
596 778
597void 779void
598_recv_icmp6 (...) 780_recv_icmp6 (...)
599 CODE: 781 CODE:
600{ 782{
601 struct sockaddr_in6 sa; 783 struct sockaddr_in6 sa;
602 socklen_t sl = sizeof (sa);
603 AV *res_av = av_len (cbs) < 0 ? 0 : (AV *)sv_2mortal ((SV *)newAV ());
604 PKT pkt; 784 PKT pkt;
605 tstamp now = NOW ();
606 785
607 for (;;) 786 for (;;)
608 { 787 {
788 PINGER *pinger;
789 socklen_t sl = sizeof (sa);
609 int len = recvfrom (icmp6_fd, &pkt, sizeof (pkt), MSG_TRUNC, (struct sockaddr *)&sa, &sl); 790 int len = recvfrom (icmp6_fd, &pkt, sizeof (pkt), MSG_TRUNC, (struct sockaddr *)&sa, &sl);
610 791
611 if (len != sizeof (PKT)) 792 if (len != sizeof (PKT))
612 break; 793 break;
613 794
614 if (!res_av
615 || pkt.type != ICMP6_ECHO_REPLY 795 if (pkt.type != ICMP6_ECHO_REPLY
616 || pkt.id != (uint16_t) magic 796 || pkt.pinger >= pingercnt
617 || pkt.seq != (uint16_t)~magic 797 || !pingers [pkt.pinger])
618 || !isnormal (pkt.stamp))
619 continue; 798 continue;
620 799
621 AV *av = newAV (); 800 pinger = pingers [pkt.pinger];
622 av_push (av, newSVpvn ((char *)&sa.sin6_addr, 16));
623 av_push (av, newSVnv (now - pkt.stamp));
624 av_push (av, newSVuv (pkt.payload));
625 801
626 av_push (res_av, newRV_noinc ((SV *)av)); 802 if (!pkt_is_valid_for (&pkt, pinger))
803 continue;
804
805 recv_feed (pinger, &sa.sin6_addr, 16, NOW () - pkt_to_ts (&pkt));
627 } 806 }
628 807
629 if (res_av) 808 recv_flush ();
630 feed_reply (res_av);
631} 809}
632 810

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