sockets.c revision f366b3698b409405e1ee88476d1186f29fe14b06
1/*
2 * Copyright (C) 2007 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 *      http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#include <stdio.h>
18#include <stdlib.h>
19#include <unistd.h>
20#include <errno.h>
21#include <string.h>
22#include <ctype.h>
23
24#include "sysdeps.h"
25
26#define  TRACE_TAG  TRACE_SOCKETS
27#include "adb.h"
28
29ADB_MUTEX_DEFINE( socket_list_lock );
30
31static void local_socket_close_locked(asocket *s);
32
33int sendfailmsg(int fd, const char *reason)
34{
35    char buf[9];
36    int len;
37    len = strlen(reason);
38    if(len > 0xffff) len = 0xffff;
39    snprintf(buf, sizeof buf, "FAIL%04x", len);
40    if(writex(fd, buf, 8)) return -1;
41    return writex(fd, reason, len);
42}
43
44//extern int online;
45
46static unsigned local_socket_next_id = 1;
47
48static asocket local_socket_list = {
49    .next = &local_socket_list,
50    .prev = &local_socket_list,
51};
52
53/* the the list of currently closing local sockets.
54** these have no peer anymore, but still packets to
55** write to their fd.
56*/
57static asocket local_socket_closing_list = {
58    .next = &local_socket_closing_list,
59    .prev = &local_socket_closing_list,
60};
61
62asocket *find_local_socket(unsigned id)
63{
64    asocket *s;
65    asocket *result = NULL;
66
67    adb_mutex_lock(&socket_list_lock);
68    for (s = local_socket_list.next; s != &local_socket_list; s = s->next) {
69        if (s->id == id) {
70            result = s;
71            break;
72        }
73    }
74    adb_mutex_unlock(&socket_list_lock);
75
76    return result;
77}
78
79static void
80insert_local_socket(asocket*  s, asocket*  list)
81{
82    s->next       = list;
83    s->prev       = s->next->prev;
84    s->prev->next = s;
85    s->next->prev = s;
86}
87
88
89void install_local_socket(asocket *s)
90{
91    adb_mutex_lock(&socket_list_lock);
92
93    s->id = local_socket_next_id++;
94    insert_local_socket(s, &local_socket_list);
95
96    adb_mutex_unlock(&socket_list_lock);
97}
98
99void remove_socket(asocket *s)
100{
101    // socket_list_lock should already be held
102    if (s->prev && s->next)
103    {
104        s->prev->next = s->next;
105        s->next->prev = s->prev;
106        s->next = 0;
107        s->prev = 0;
108        s->id = 0;
109    }
110}
111
112void close_all_sockets(atransport *t)
113{
114    asocket *s;
115
116        /* this is a little gross, but since s->close() *will* modify
117        ** the list out from under you, your options are limited.
118        */
119    adb_mutex_lock(&socket_list_lock);
120restart:
121    for(s = local_socket_list.next; s != &local_socket_list; s = s->next){
122        if(s->transport == t || (s->peer && s->peer->transport == t)) {
123            local_socket_close_locked(s);
124            goto restart;
125        }
126    }
127    adb_mutex_unlock(&socket_list_lock);
128}
129
130static int local_socket_enqueue(asocket *s, apacket *p)
131{
132    D("LS(%d): enqueue %d\n", s->id, p->len);
133
134    p->ptr = p->data;
135
136        /* if there is already data queue'd, we will receive
137        ** events when it's time to write.  just add this to
138        ** the tail
139        */
140    if(s->pkt_first) {
141        goto enqueue;
142    }
143
144        /* write as much as we can, until we
145        ** would block or there is an error/eof
146        */
147    while(p->len > 0) {
148        int r = adb_write(s->fd, p->ptr, p->len);
149        if(r > 0) {
150            p->len -= r;
151            p->ptr += r;
152            continue;
153        }
154        if((r == 0) || (errno != EAGAIN)) {
155            D( "LS(%d): not ready, errno=%d: %s\n", s->id, errno, strerror(errno) );
156            s->close(s);
157            return 1; /* not ready (error) */
158        } else {
159            break;
160        }
161    }
162
163    if(p->len == 0) {
164        put_apacket(p);
165        return 0; /* ready for more data */
166    }
167
168enqueue:
169    p->next = 0;
170    if(s->pkt_first) {
171        s->pkt_last->next = p;
172    } else {
173        s->pkt_first = p;
174    }
175    s->pkt_last = p;
176
177        /* make sure we are notified when we can drain the queue */
178    fdevent_add(&s->fde, FDE_WRITE);
179
180    return 1; /* not ready (backlog) */
181}
182
183static void local_socket_ready(asocket *s)
184{
185        /* far side is ready for data, pay attention to
186           readable events */
187    fdevent_add(&s->fde, FDE_READ);
188//    D("LS(%d): ready()\n", s->id);
189}
190
191static void local_socket_close(asocket *s)
192{
193    adb_mutex_lock(&socket_list_lock);
194    local_socket_close_locked(s);
195    adb_mutex_unlock(&socket_list_lock);
196}
197
198// be sure to hold the socket list lock when calling this
199static void local_socket_destroy(asocket  *s)
200{
201    apacket *p, *n;
202    int exit_on_close = s->exit_on_close;
203
204    D("LS(%d): destroying fde.fd=%d\n", s->id, s->fde.fd);
205
206        /* IMPORTANT: the remove closes the fd
207        ** that belongs to this socket
208        */
209    fdevent_remove(&s->fde);
210
211        /* dispose of any unwritten data */
212    for(p = s->pkt_first; p; p = n) {
213        D("LS(%d): discarding %d bytes\n", s->id, p->len);
214        n = p->next;
215        put_apacket(p);
216    }
217    remove_socket(s);
218    free(s);
219
220    if (exit_on_close) {
221        D("local_socket_destroy: exiting\n");
222        exit(1);
223    }
224}
225
226
227static void local_socket_close_locked(asocket *s)
228{
229    D("entered. LS(%d) fd=%d\n", s->id, s->fd);
230    if(s->peer) {
231        D("LS(%d): closing peer. peer->id=%d peer->fd=%d\n",
232          s->id, s->peer->id, s->peer->fd);
233        s->peer->peer = 0;
234        // tweak to avoid deadlock
235        if (s->peer->close == local_socket_close) {
236            local_socket_close_locked(s->peer);
237        } else {
238            s->peer->close(s->peer);
239        }
240        s->peer = 0;
241    }
242
243        /* If we are already closing, or if there are no
244        ** pending packets, destroy immediately
245        */
246    if (s->closing || s->pkt_first == NULL) {
247        int   id = s->id;
248        local_socket_destroy(s);
249        D("LS(%d): closed\n", id);
250        return;
251    }
252
253        /* otherwise, put on the closing list
254        */
255    D("LS(%d): closing\n", s->id);
256    s->closing = 1;
257    fdevent_del(&s->fde, FDE_READ);
258    remove_socket(s);
259    D("LS(%d): put on socket_closing_list fd=%d\n", s->id, s->fd);
260    insert_local_socket(s, &local_socket_closing_list);
261}
262
263static void local_socket_event_func(int fd, unsigned ev, void *_s)
264{
265    asocket *s = _s;
266
267    D("LS(%d): event_func(fd=%d(==%d), ev=%04x)\n", s->id, s->fd, fd, ev);
268
269    /* put the FDE_WRITE processing before the FDE_READ
270    ** in order to simplify the code.
271    */
272    if(ev & FDE_WRITE){
273        apacket *p;
274
275        while((p = s->pkt_first) != 0) {
276            while(p->len > 0) {
277                int r = adb_write(fd, p->ptr, p->len);
278                if(r > 0) {
279                    p->ptr += r;
280                    p->len -= r;
281                    continue;
282                }
283                if(r < 0) {
284                    /* returning here is ok because FDE_READ will
285                    ** be processed in the next iteration loop
286                    */
287                    if(errno == EAGAIN) return;
288                    if(errno == EINTR) continue;
289                }
290                D(" closing after write because r=%d and errno is %d\n", r, errno);
291                s->close(s);
292                return;
293            }
294
295            if(p->len == 0) {
296                s->pkt_first = p->next;
297                if(s->pkt_first == 0) s->pkt_last = 0;
298                put_apacket(p);
299            }
300        }
301
302            /* if we sent the last packet of a closing socket,
303            ** we can now destroy it.
304            */
305        if (s->closing) {
306            D(" closing because 'closing' is set after write\n");
307            s->close(s);
308            return;
309        }
310
311            /* no more packets queued, so we can ignore
312            ** writable events again and tell our peer
313            ** to resume writing
314            */
315        fdevent_del(&s->fde, FDE_WRITE);
316        s->peer->ready(s->peer);
317    }
318
319
320    if(ev & FDE_READ){
321        apacket *p = get_apacket();
322        unsigned char *x = p->data;
323        size_t avail = MAX_PAYLOAD;
324        int r;
325        int is_eof = 0;
326
327        while(avail > 0) {
328            r = adb_read(fd, x, avail);
329            D("LS(%d): post adb_read(fd=%d,...) r=%d (errno=%d) avail=%d\n", s->id, s->fd, r, r<0?errno:0, avail);
330            if(r > 0) {
331                avail -= r;
332                x += r;
333                continue;
334            }
335            if(r < 0) {
336                if(errno == EAGAIN) break;
337                if(errno == EINTR) continue;
338            }
339
340                /* r = 0 or unhandled error */
341            is_eof = 1;
342            break;
343        }
344        D("LS(%d): fd=%d post avail loop. r=%d is_eof=%d forced_eof=%d\n",
345          s->id, s->fd, r, is_eof, s->fde.force_eof);
346        if((avail == MAX_PAYLOAD) || (s->peer == 0)) {
347            put_apacket(p);
348        } else {
349            p->len = MAX_PAYLOAD - avail;
350
351            r = s->peer->enqueue(s->peer, p);
352            D("LS(%d): fd=%d post peer->enqueue(). r=%d\n", s->id, s->fd, r);
353
354            if(r < 0) {
355                    /* error return means they closed us as a side-effect
356                    ** and we must return immediately.
357                    **
358                    ** note that if we still have buffered packets, the
359                    ** socket will be placed on the closing socket list.
360                    ** this handler function will be called again
361                    ** to process FDE_WRITE events.
362                    */
363                return;
364            }
365
366            if(r > 0) {
367                    /* if the remote cannot accept further events,
368                    ** we disable notification of READs.  They'll
369                    ** be enabled again when we get a call to ready()
370                    */
371                fdevent_del(&s->fde, FDE_READ);
372            }
373        }
374        /* Don't allow a forced eof if data is still there */
375        if((s->fde.force_eof && !r) || is_eof) {
376            D(" closing because is_eof=%d r=%d s->fde.force_eof=%d\n", is_eof, r, s->fde.force_eof);
377            s->close(s);
378        }
379    }
380
381    if(ev & FDE_ERROR){
382            /* this should be caught be the next read or write
383            ** catching it here means we may skip the last few
384            ** bytes of readable data.
385            */
386//        s->close(s);
387        D("LS(%d): FDE_ERROR (fd=%d)\n", s->id, s->fd);
388
389        return;
390    }
391}
392
393asocket *create_local_socket(int fd)
394{
395    asocket *s = calloc(1, sizeof(asocket));
396    if (s == NULL) fatal("cannot allocate socket");
397    s->fd = fd;
398    s->enqueue = local_socket_enqueue;
399    s->ready = local_socket_ready;
400    s->close = local_socket_close;
401    install_local_socket(s);
402
403    fdevent_install(&s->fde, fd, local_socket_event_func, s);
404/*    fdevent_add(&s->fde, FDE_ERROR); */
405    //fprintf(stderr, "Created local socket in create_local_socket \n");
406    D("LS(%d): created (fd=%d)\n", s->id, s->fd);
407    return s;
408}
409
410asocket *create_local_service_socket(const char *name)
411{
412    asocket *s;
413    int fd;
414
415#if !ADB_HOST
416    if (!strcmp(name,"jdwp")) {
417        return create_jdwp_service_socket();
418    }
419    if (!strcmp(name,"track-jdwp")) {
420        return create_jdwp_tracker_service_socket();
421    }
422#endif
423    fd = service_to_fd(name);
424    if(fd < 0) return 0;
425
426    s = create_local_socket(fd);
427    D("LS(%d): bound to '%s' via %d\n", s->id, name, fd);
428
429    if (!strcmp(name, "root:") || !strcmp(name, "usb:") ||
430                                  !strcmp(name, "tcpip:")) {
431        D("LS(%d): enabling exit_on_close\n", s->id);
432        s->exit_on_close = 1;
433    }
434
435    return s;
436}
437
438#if ADB_HOST
439static asocket *create_host_service_socket(const char *name, const char* serial)
440{
441    asocket *s;
442
443    s = host_service_to_socket(name, serial);
444
445    if (s != NULL) {
446        D("LS(%d) bound to '%s'\n", s->id, name);
447        return s;
448    }
449
450    return s;
451}
452#endif /* ADB_HOST */
453
454/* a Remote socket is used to send/receive data to/from a given transport object
455** it needs to be closed when the transport is forcibly destroyed by the user
456*/
457typedef struct aremotesocket {
458    asocket      socket;
459    adisconnect  disconnect;
460} aremotesocket;
461
462static int remote_socket_enqueue(asocket *s, apacket *p)
463{
464    D("entered remote_socket_enqueue RS(%d) WRITE fd=%d peer.fd=%d\n",
465      s->id, s->fd, s->peer->fd);
466    p->msg.command = A_WRTE;
467    p->msg.arg0 = s->peer->id;
468    p->msg.arg1 = s->id;
469    p->msg.data_length = p->len;
470    send_packet(p, s->transport);
471    return 1;
472}
473
474static void remote_socket_ready(asocket *s)
475{
476    D("entered remote_socket_ready RS(%d) OKAY fd=%d peer.fd=%d\n",
477      s->id, s->fd, s->peer->fd);
478    apacket *p = get_apacket();
479    p->msg.command = A_OKAY;
480    p->msg.arg0 = s->peer->id;
481    p->msg.arg1 = s->id;
482    send_packet(p, s->transport);
483}
484
485static void remote_socket_close(asocket *s)
486{
487    D("entered remote_socket_close RS(%d) CLOSE fd=%d peer->fd=%d\n",
488      s->id, s->fd, s->peer?s->peer->fd:-1);
489    apacket *p = get_apacket();
490    p->msg.command = A_CLSE;
491    if(s->peer) {
492        p->msg.arg0 = s->peer->id;
493        s->peer->peer = 0;
494        D("RS(%d) peer->close()ing peer->id=%d peer->fd=%d\n",
495          s->id, s->peer->id, s->peer->fd);
496        s->peer->close(s->peer);
497    }
498    p->msg.arg1 = s->id;
499    send_packet(p, s->transport);
500    D("RS(%d): closed\n", s->id);
501    remove_transport_disconnect( s->transport, &((aremotesocket*)s)->disconnect );
502    free(s);
503}
504
505static void remote_socket_disconnect(void*  _s, atransport*  t)
506{
507    asocket*  s    = _s;
508    asocket*  peer = s->peer;
509
510    D("remote_socket_disconnect RS(%d)\n", s->id);
511    if (peer) {
512        peer->peer = NULL;
513        peer->close(peer);
514    }
515    remove_transport_disconnect( s->transport, &((aremotesocket*)s)->disconnect );
516    free(s);
517}
518
519asocket *create_remote_socket(unsigned id, atransport *t)
520{
521    asocket *s = calloc(1, sizeof(aremotesocket));
522    adisconnect*  dis = &((aremotesocket*)s)->disconnect;
523
524    if (s == NULL) fatal("cannot allocate socket");
525    s->id = id;
526    s->enqueue = remote_socket_enqueue;
527    s->ready = remote_socket_ready;
528    s->close = remote_socket_close;
529    s->transport = t;
530
531    dis->func   = remote_socket_disconnect;
532    dis->opaque = s;
533    add_transport_disconnect( t, dis );
534    D("RS(%d): created\n", s->id);
535    return s;
536}
537
538void connect_to_remote(asocket *s, const char *destination)
539{
540    D("Connect_to_remote call RS(%d) fd=%d\n", s->id, s->fd);
541    apacket *p = get_apacket();
542    int len = strlen(destination) + 1;
543
544    if(len > (MAX_PAYLOAD-1)) {
545        fatal("destination oversized");
546    }
547
548    D("LS(%d): connect('%s')\n", s->id, destination);
549    p->msg.command = A_OPEN;
550    p->msg.arg0 = s->id;
551    p->msg.data_length = len;
552    strcpy((char*) p->data, destination);
553    send_packet(p, s->transport);
554}
555
556
557/* this is used by magic sockets to rig local sockets to
558   send the go-ahead message when they connect */
559static void local_socket_ready_notify(asocket *s)
560{
561    s->ready = local_socket_ready;
562    s->close = local_socket_close;
563    adb_write(s->fd, "OKAY", 4);
564    s->ready(s);
565}
566
567/* this is used by magic sockets to rig local sockets to
568   send the failure message if they are closed before
569   connected (to avoid closing them without a status message) */
570static void local_socket_close_notify(asocket *s)
571{
572    s->ready = local_socket_ready;
573    s->close = local_socket_close;
574    sendfailmsg(s->fd, "closed");
575    s->close(s);
576}
577
578unsigned unhex(unsigned char *s, int len)
579{
580    unsigned n = 0, c;
581
582    while(len-- > 0) {
583        switch((c = *s++)) {
584        case '0': case '1': case '2':
585        case '3': case '4': case '5':
586        case '6': case '7': case '8':
587        case '9':
588            c -= '0';
589            break;
590        case 'a': case 'b': case 'c':
591        case 'd': case 'e': case 'f':
592            c = c - 'a' + 10;
593            break;
594        case 'A': case 'B': case 'C':
595        case 'D': case 'E': case 'F':
596            c = c - 'A' + 10;
597            break;
598        default:
599            return 0xffffffff;
600        }
601
602        n = (n << 4) | c;
603    }
604
605    return n;
606}
607
608/* skip_host_serial return the position in a string
609   skipping over the 'serial' parameter in the ADB protocol,
610   where parameter string may be a host:port string containing
611   the protocol delimiter (colon). */
612char *skip_host_serial(char *service) {
613    char *first_colon, *serial_end;
614
615    first_colon = strchr(service, ':');
616    if (!first_colon) {
617        /* No colon in service string. */
618        return NULL;
619    }
620    serial_end = first_colon;
621    if (isdigit(serial_end[1])) {
622        serial_end++;
623        while ((*serial_end) && isdigit(*serial_end)) {
624            serial_end++;
625        }
626        if ((*serial_end) != ':') {
627            // Something other than numbers was found, reset the end.
628            serial_end = first_colon;
629        }
630    }
631    return serial_end;
632}
633
634static int smart_socket_enqueue(asocket *s, apacket *p)
635{
636    unsigned len;
637#if ADB_HOST
638    char *service = NULL;
639    char* serial = NULL;
640    transport_type ttype = kTransportAny;
641#endif
642
643    D("SS(%d): enqueue %d\n", s->id, p->len);
644
645    if(s->pkt_first == 0) {
646        s->pkt_first = p;
647        s->pkt_last = p;
648    } else {
649        if((s->pkt_first->len + p->len) > MAX_PAYLOAD) {
650            D("SS(%d): overflow\n", s->id);
651            put_apacket(p);
652            goto fail;
653        }
654
655        memcpy(s->pkt_first->data + s->pkt_first->len,
656               p->data, p->len);
657        s->pkt_first->len += p->len;
658        put_apacket(p);
659
660        p = s->pkt_first;
661    }
662
663        /* don't bother if we can't decode the length */
664    if(p->len < 4) return 0;
665
666    len = unhex(p->data, 4);
667    if((len < 1) ||  (len > 1024)) {
668        D("SS(%d): bad size (%d)\n", s->id, len);
669        goto fail;
670    }
671
672    D("SS(%d): len is %d\n", s->id, len );
673        /* can't do anything until we have the full header */
674    if((len + 4) > p->len) {
675        D("SS(%d): waiting for %d more bytes\n", s->id, len+4 - p->len);
676        return 0;
677    }
678
679    p->data[len + 4] = 0;
680
681    D("SS(%d): '%s'\n", s->id, (char*) (p->data + 4));
682
683#if ADB_HOST
684    service = (char *)p->data + 4;
685    if(!strncmp(service, "host-serial:", strlen("host-serial:"))) {
686        char* serial_end;
687        service += strlen("host-serial:");
688
689        // serial number should follow "host:" and could be a host:port string.
690        serial_end = skip_host_serial(service);
691        if (serial_end) {
692            *serial_end = 0; // terminate string
693            serial = service;
694            service = serial_end + 1;
695        }
696    } else if (!strncmp(service, "host-usb:", strlen("host-usb:"))) {
697        ttype = kTransportUsb;
698        service += strlen("host-usb:");
699    } else if (!strncmp(service, "host-local:", strlen("host-local:"))) {
700        ttype = kTransportLocal;
701        service += strlen("host-local:");
702    } else if (!strncmp(service, "host:", strlen("host:"))) {
703        ttype = kTransportAny;
704        service += strlen("host:");
705    } else {
706        service = NULL;
707    }
708
709    if (service) {
710        asocket *s2;
711
712            /* some requests are handled immediately -- in that
713            ** case the handle_host_request() routine has sent
714            ** the OKAY or FAIL message and all we have to do
715            ** is clean up.
716            */
717        if(handle_host_request(service, ttype, serial, s->peer->fd, s) == 0) {
718                /* XXX fail message? */
719            D( "SS(%d): handled host service '%s'\n", s->id, service );
720            goto fail;
721        }
722        if (!strncmp(service, "transport", strlen("transport"))) {
723            D( "SS(%d): okay transport\n", s->id );
724            p->len = 0;
725            return 0;
726        }
727
728            /* try to find a local service with this name.
729            ** if no such service exists, we'll fail out
730            ** and tear down here.
731            */
732        s2 = create_host_service_socket(service, serial);
733        if(s2 == 0) {
734            D( "SS(%d): couldn't create host service '%s'\n", s->id, service );
735            sendfailmsg(s->peer->fd, "unknown host service");
736            goto fail;
737        }
738
739            /* we've connected to a local host service,
740            ** so we make our peer back into a regular
741            ** local socket and bind it to the new local
742            ** service socket, acknowledge the successful
743            ** connection, and close this smart socket now
744            ** that its work is done.
745            */
746        adb_write(s->peer->fd, "OKAY", 4);
747
748        s->peer->ready = local_socket_ready;
749        s->peer->close = local_socket_close;
750        s->peer->peer = s2;
751        s2->peer = s->peer;
752        s->peer = 0;
753        D( "SS(%d): okay\n", s->id );
754        s->close(s);
755
756            /* initial state is "ready" */
757        s2->ready(s2);
758        return 0;
759    }
760#else /* !ADB_HOST */
761    if (s->transport == NULL) {
762        char* error_string = "unknown failure";
763        s->transport = acquire_one_transport (CS_ANY,
764                kTransportAny, NULL, &error_string);
765
766        if (s->transport == NULL) {
767            sendfailmsg(s->peer->fd, error_string);
768            goto fail;
769        }
770    }
771#endif
772
773    if(!(s->transport) || (s->transport->connection_state == CS_OFFLINE)) {
774           /* if there's no remote we fail the connection
775            ** right here and terminate it
776            */
777        sendfailmsg(s->peer->fd, "device offline (x)");
778        goto fail;
779    }
780
781
782        /* instrument our peer to pass the success or fail
783        ** message back once it connects or closes, then
784        ** detach from it, request the connection, and
785        ** tear down
786        */
787    s->peer->ready = local_socket_ready_notify;
788    s->peer->close = local_socket_close_notify;
789    s->peer->peer = 0;
790        /* give him our transport and upref it */
791    s->peer->transport = s->transport;
792
793    connect_to_remote(s->peer, (char*) (p->data + 4));
794    s->peer = 0;
795    s->close(s);
796    return 1;
797
798fail:
799        /* we're going to close our peer as a side-effect, so
800        ** return -1 to signal that state to the local socket
801        ** who is enqueueing against us
802        */
803    s->close(s);
804    return -1;
805}
806
807static void smart_socket_ready(asocket *s)
808{
809    D("SS(%d): ready\n", s->id);
810}
811
812static void smart_socket_close(asocket *s)
813{
814    D("SS(%d): closed\n", s->id);
815    if(s->pkt_first){
816        put_apacket(s->pkt_first);
817    }
818    if(s->peer) {
819        s->peer->peer = 0;
820        s->peer->close(s->peer);
821        s->peer = 0;
822    }
823    free(s);
824}
825
826asocket *create_smart_socket(void (*action_cb)(asocket *s, const char *act))
827{
828    D("Creating smart socket \n");
829    asocket *s = calloc(1, sizeof(asocket));
830    if (s == NULL) fatal("cannot allocate socket");
831    s->enqueue = smart_socket_enqueue;
832    s->ready = smart_socket_ready;
833    s->close = smart_socket_close;
834    s->extra = action_cb;
835
836    D("SS(%d): created %p\n", s->id, action_cb);
837    return s;
838}
839
840void smart_socket_action(asocket *s, const char *act)
841{
842
843}
844
845void connect_to_smartsocket(asocket *s)
846{
847    D("Connecting to smart socket \n");
848    asocket *ss = create_smart_socket(smart_socket_action);
849    s->peer = ss;
850    ss->peer = s;
851    s->ready(s);
852}
853