Annotation of libwww/Library/src/HTTCP.c, revision 2.94.2.4

2.31      frystyk     1: /*                                                                     HTTCP.c
2.83      frystyk     2: **     TCP SPECIFIC CODE
2.31      frystyk     3: **
2.42      frystyk     4: **     (c) COPYRIGHT MIT 1995.
2.31      frystyk     5: **     Please first read the full copyright statement in the file COPYRIGH.
2.94.2.4! frystyk     6: **     @(#) $Id: HTTCP.c,v 2.94.2.3 1996/11/02 19:27:18 eric Exp $
1.1       timbl       7: **
                      8: **     This code is in common between client and server sides.
                      9: **
                     10: **     16 Jan 92  TBL  Fix strtol() undefined on CMU Mach.
                     11: **     25 Jun 92  JFG  Added DECNET option through TCP socket emulation.
2.7       duns       12: **     13 Sep 93  MD   Added correct return of vmserrorno for HTInetStatus.
                     13: **                     Added decoding of vms error message for MULTINET.
2.13      frystyk    14: **     31 May 94  HF   Added cache on host id's; now use inet_ntoa() to
                     15: **                     HTInetString and some other fixes. Added HTDoConnect
                     16: **                     and HTDoAccept
1.1       timbl      17: */
                     18: 
2.36      frystyk    19: /* Library include files */
2.79      frystyk    20: #include "sysdep.h"
2.83      frystyk    21: #include "WWWUtil.h"
                     22: #include "WWWCore.h"
2.94.2.2  frystyk    23: #include "WWWMux.h"
2.83      frystyk    24: 
2.58      frystyk    25: #include "HTReqMan.h"
2.54      frystyk    26: #include "HTNetMan.h"
2.36      frystyk    27: #include "HTTCP.h"                                      /* Implemented here */
2.29      frystyk    28: 
2.94.2.1  eric       29: #include "HTWatch.h"
                     30: #include "HTHstMan.h"
                     31: 
2.36      frystyk    32: /* VMS stuff */
                     33: #ifdef VMS
                     34: #ifndef MULTINET
                     35: #define FD_SETSIZE 32
                     36: #else /* Multinet */
                     37: #define FD_SETSIZE 256
                     38: #endif /* Multinet */
                     39: #endif /* VMS */
                     40: 
2.13      frystyk    41: /* Macros and other defines */
2.24      frystyk    42: /* x seconds penalty on a multi-homed host if IP-address is down */
                     43: #define TCP_PENALTY            1200
                     44: 
                     45: /* x seconds penalty on a multi-homed host if IP-address is timed out */
                     46: #define TCP_DELAY              600
                     47: 
2.93      eric       48: /* imperical study in socket call error codes
                     49:  */
                     50: #ifdef _WINSOCKAPI_                                    /* windows */
                     51: #define NETCALL_ERROR(ret)     (ret == SOCKET_ERROR)
                     52: #define NETCALL_DEADSOCKET(err)        (err == WSAEBADF)
                     53: #define NETCALL_WOULDBLOCK(err)        (err == WSAEWOULDBLOCK)
                     54: #else /* _WINSOCKAPI_                                     unix    */
                     55: #define NETCALL_ERROR(ret)     (ret < 0)
                     56: #define NETCALL_DEADSOCKET(err)        (err == EBADF)
                     57: #if defined(EAGAIN) && defined(EALREADY)
                     58: #define NETCALL_WOULDBLOCK(err)        (err == EINPROGRESS || \
                     59:                                 err == EALREADY || \
                     60:                                 err == EAGAIN)
                     61: #else /* (EAGAIN && EALREADY) */
                     62: #ifdef EALREADY
                     63: #define NETCALL_WOULDBLOCK(err)        (err == EINPROGRESS || err == EALREADY)
                     64: #else /* EALREADY */
                     65: #ifdef EAGAIN
                     66: #define NETCALL_WOULDBLOCK(err)        (err == EINPROGRESS || err == EAGAIN)
                     67: #else /* EAGAIN */
                     68: #define NETCALL_WOULDBLOCK(err)        (err == EINPROGRESS)
                     69: #endif /* !EAGAIN */
                     70: #endif /* !EALREADY */
                     71: #endif /* !(EAGAIN && EALREADY) */
                     72: #endif /* !_WINSOCKAPI_                                   done */
2.13      frystyk    73: /* ------------------------------------------------------------------------- */
2.19      frystyk    74: /*                   CONNECTION ESTABLISHMENT MANAGEMENT                    */
                     75: /* ------------------------------------------------------------------------- */
2.13      frystyk    76: 
2.94.2.1  eric       77: /* _makeSocket - create a socket, if !preemptive, set FIONBIO
2.93      eric       78:  * returns 1: blocking
                     79:  *        0: non-blocking
                     80:  *       -1: creation error
                     81:  */
2.94.2.1  eric       82: PRIVATE int _makeSocket(HTHost * host, HTRequest * request, int preemptive, HTTransport * transport)
2.93      eric       83: {
2.94.2.2  frystyk    84:     int status = 1;
2.94.2.1  eric       85:     SOCKET sockfd;
2.93      eric       86: #ifdef DECNET
2.94.2.1  eric       87:            if ((sockfd=socket(AF_DECnet, SOCK_STREAM, 0))==INVSOC)
2.93      eric       88: #else
2.94.2.1  eric       89:            if ((sockfd=socket(AF_INET, SOCK_STREAM,IPPROTO_TCP))==INVSOC)
2.93      eric       90: #endif
                     91:            {
2.94.2.1  eric       92:                HTRequest_addSystemError(request, ERR_FATAL, socerrno, 
2.93      eric       93:                                         NO, "socket");
2.94.2.1  eric       94:                host->tcpstate = TCP_ERROR;
2.93      eric       95:                return -1;
                     96:            }
2.94.2.1  eric       97:            HTWATCH(PROT_TRACE, host, HTHIDE("Socket...... Created %d\n"), sockfd);
2.93      eric       98: 
                     99:            /* Increase the number of sockets by one */
                    100:            HTNet_increaseSocket();
                    101: 
                    102:            /* If non-blocking protocol then change socket status
                    103:            ** I use fcntl() so that I can ask the status before I set it.
                    104:            ** See W. Richard Stevens (Advan. Prog. in UNIX environment, p.364)
                    105:            ** Be CAREFULL with the old `O_NDELAY' - it will not work as read()
                    106:            ** returns 0 when blocking and NOT -1. FNDELAY is ONLY for BSD and
                    107:            ** does NOT work on SVR4 systems. O_NONBLOCK is POSIX.
                    108:            */
2.94.2.1  eric      109:            if (!preemptive) {
2.93      eric      110: #ifdef _WINSOCKAPI_
                    111:                {               /* begin windows scope  */
                    112:                    long levents = FD_READ | FD_WRITE | FD_ACCEPT | 
                    113:                        FD_CONNECT | FD_CLOSE ;
                    114:                    int rv = 0 ;
                    115:                    u_long one = 1;
                    116:                                    
2.94.2.1  eric      117:                    status = ioctlsocket(sockfd, FIONBIO, &one) == 
2.93      eric      118:                             SOCKET_ERROR ? -1 : 0;
                    119:                } /* end scope */
                    120: #else /* _WINSOCKAPI_ */
                    121: #if defined(VMS)
                    122:                {
                    123:                    int enable = 1;
2.94.2.1  eric      124:                    status = IOCTL(sockfd, FIONBIO, &enable);
2.93      eric      125:                }
                    126: #else /* VMS */
2.94.2.1  eric      127:                if((status = fcntl(sockfd, F_GETFL, 0)) != -1) {
2.93      eric      128: #ifdef O_NONBLOCK
                    129:                    status |= O_NONBLOCK;                           /* POSIX */
                    130: #else /* O_NONBLOCK */
                    131: #ifdef F_NDELAY
                    132:                    status |= F_NDELAY;                               /* BSD */
                    133: #endif /* F_NDELAY */
                    134: #endif /* !O_NONBLOCK */
2.94.2.1  eric      135:                    status = fcntl(sockfd, F_SETFL, status);
2.93      eric      136:                }
                    137: #endif /* !VMS */
                    138: #endif /* !_WINSOCKAPI_ */
2.94.2.1  eric      139:                HTWATCH(PROT_TRACE, host, HTHIDE("Socket...... %slocking socket\n"), status == -1 ? "B" : "Non-b");
                    140:            } else
                    141:                HTWATCH(PROT_TRACE, host, HTHIDE("Socket...... Blocking socket\n"));
                    142: 
2.94.2.2  frystyk   143:     /*
                    144:     **  Associate the channel with the host and create an input and and output stream
                    145:     **  for this host/channel
                    146:     */
                    147:     HTHost_setChannel(host, HTChannel_new(sockfd, YES));
                    148:     HTHost_getInput(host, transport, NULL, 0);
                    149:     HTHost_getOutput(host, transport, NULL, 0);
2.93      eric      150: 
                    151:     return status == -1 ? 1 : 0;
                    152: }
                    153: 
2.13      frystyk   154: /*                                                             HTDoConnect()
                    155: **
                    156: **     Note: Any port indication in URL, e.g., as `host:port' overwrites
2.54      frystyk   157: **     the default port value.
2.13      frystyk   158: **
2.40      frystyk   159: **     returns         HT_ERROR        Error has occured or interrupted
                    160: **                     HT_OK           if connected
                    161: **                     HT_WOULD_BLOCK  if operation would have blocked
2.13      frystyk   162: */
2.54      frystyk   163: PUBLIC int HTDoConnect (HTNet * net, char * url, u_short default_port)
2.13      frystyk   164: {
2.94.2.4! frystyk   165:     HTHost * me = HTNet_host(net);
2.88      frystyk   166:     HTRequest * request = HTNet_request(net);
2.94.2.1  eric      167:     int preemptive = net->preemptive;
                    168:     int retry = net->retry;
                    169: 
                    170:     int status = HT_OK;
                    171:     char * hostname = HTHost_name(me);
2.13      frystyk   172: 
2.55      frystyk   173:     /* Jump into the state machine */
2.94.2.1  eric      174:     if (!me)
                    175:        goto tcp_begin;
2.55      frystyk   176:     while (1) {
2.94.2.1  eric      177:        switch (me->tcpstate) {
                    178:          tcp_begin:
2.55      frystyk   179:          case TCP_BEGIN:
2.91      frystyk   180:          {
                    181:              char * proxy = HTRequest_proxy(request);
2.94.2.1  eric      182:              char * physical = HTAnchor_physical(HTRequest_anchor(request));
2.94.2.4! frystyk   183:              HTProtocol * protocol = HTNet_protocol(net);
2.91      frystyk   184: 
                    185:              /* Check to see whether we connect directly or via a proxy */
2.94.2.1  eric      186:              if ((net->host = HTHost_newWParse(request, proxy ? proxy : physical, 
2.94.2.4! frystyk   187:                                                HTProtocol_id(protocol))) == NULL)
2.94.2.1  eric      188:                  return NO;
                    189:              me = net->host;
2.91      frystyk   190: 
                    191:              /*
                    192:              ** Add the net object to the host object found above. If the
                    193:              ** host is idle then we can start the request right away,
                    194:              ** otherwise we must wait until it is free. 
                    195:              */
2.94.2.1  eric      196:              if (HTHost_addNet(net->host, net) == HT_PENDING)
2.91      frystyk   197:                  if (PROT_TRACE) HTTrace("HTDoConnect. Pending...\n");
                    198: 
                    199:              /*
2.94.2.1  eric      200:              ** If we are pending then return here, otherwise go to next state
2.91      frystyk   201:              ** which is setting up a channel
                    202:              */
2.94.2.1  eric      203:              me->tcpstate = TCP_CHANNEL;
                    204:              HTWATCH(HTWatch_TCP, me, HTHIDE("HTHost %p going to state TCP_CHANNEL.\n"), me);
2.91      frystyk   205:              if (status == HT_PENDING) return HT_PENDING;
                    206:          }
                    207:          break;
2.83      frystyk   208: 
2.91      frystyk   209:        case TCP_CHANNEL:
2.83      frystyk   210:            /*
2.91      frystyk   211:            **  The next state depends on whether we have a connection
                    212:            **  or not - if so then we can jump directly to connect() to
                    213:            **  test it - otherwise we must around DNS to get the name
2.93      eric      214:            **  Resolved
2.83      frystyk   215:            */
2.94.2.1  eric      216:            if (HTHost_channel(me) == NULL) {
                    217:                me->tcpstate = TCP_DNS;
                    218:                HTWATCH(HTWatch_TCP, me, HTHIDE("HTHost %p going to state TCP_DNS.\n"), me);
                    219:            } else {
2.94.2.2  frystyk   220: 
                    221:                /*
                    222:                **  Get a new session on the MUX layer - we already have a
                    223:                **  connection.
                    224:                */
                    225: #ifdef HT_MUX
                    226:                HTMuxChannel * muxch = HTHost_muxChannel(me);
2.94.2.4! frystyk   227:                HTSession_connect(muxch, net, HTNet_protocol(net));
2.94.2.2  frystyk   228: #endif /* HT_MUX */
                    229: 
                    230:                /*
                    231:                **  There is now one more using the channel
                    232:                */
2.94.2.1  eric      233:                HTChannel_upSemaphore(me->channel);
2.94.2.2  frystyk   234: 
                    235:                /*
                    236:                **  We are now all set and can jump to connected mode
                    237:                */
2.94.2.1  eric      238:                me->tcpstate = TCP_CONNECTED;
                    239:                HTWATCH(HTWatch_TCP, me, HTHIDE("HTHost %p going to state TCP_CONNECTED.\n"), me);
                    240:            }
                    241:            hostname = HTHost_name(me);
2.55      frystyk   242:            break;
                    243: 
2.91      frystyk   244:        case TCP_DNS:
2.94.2.1  eric      245:            if ((status = HTParseInet(me, hostname, request)) < 0) {
                    246:                HTWATCH(PROT_TRACE, me, HTHIDE("HTDoConnect. Can't locate `%s\'\n"), hostname);
2.91      frystyk   247:                HTRequest_addError(request, ERR_FATAL, NO,
                    248:                                   HTERR_NO_REMOTE_HOST,
                    249:                                   (void *) hostname, strlen(hostname),
                    250:                                   "HTDoConnect");
2.94.2.1  eric      251:                me->tcpstate = TCP_ERROR;
                    252:                HTWATCH(HTWatch_TCP, me, HTHIDE("HTHost %p going to state TCP_ERROR.\n"), me);
2.27      frystyk   253:                break;
2.55      frystyk   254:            }
2.94.2.1  eric      255:            if (!retry && status > 1)           /* If multiple homes */
                    256:                retry = status;
                    257:            me->tcpstate = TCP_NEED_SOCKET;
                    258:            HTWATCH(HTWatch_TCP, me, HTHIDE("HTHost %p going to state TCP_NEED_SOCKET.\n"), me);
2.55      frystyk   259:            break;
                    260: 
                    261:          case TCP_NEED_SOCKET:
2.94.2.1  eric      262:            if (_makeSocket(me, request, preemptive, net->transport) == -1)
2.27      frystyk   263:                break;
2.83      frystyk   264: 
2.94.2.2  frystyk   265: #ifdef HT_MUX
                    266:            /*
                    267:            **  Create a MUX channel and do a connect on this channel with a
                    268:            **  new session.
                    269:            */
                    270:            {
                    271:                HTChannel * channel = HTHost_channel(me);
                    272:                HTMuxChannel * muxch = HTMuxChannel_new(me, channel);
2.94.2.4! frystyk   273: 
        !           274:                /* Here we should use the protocol name that we can find in the
        !           275:                   protocol object */
        !           276: 
2.94.2.2  frystyk   277:                HTHost_setMuxChannel(me, muxch);
                    278:                HTHost_setMode(me, HT_TP_INTERLEAVE);
2.94.2.4! frystyk   279:                HTSession_connect(muxch, net, HTNet_protocol(net));
2.94.2.2  frystyk   280:            }
                    281: #endif /* HT_MUX */
                    282: 
2.27      frystyk   283:            /* If multi-homed host then start timer on connection */
2.94.2.1  eric      284:            if (retry) me->connecttime = time(NULL);
2.65      frystyk   285: 
                    286:            /* Progress */
                    287:            {
                    288:                HTAlertCallback *cbf = HTAlert_find(HT_PROG_CONNECT);
2.94.2.1  eric      289:                if (cbf) (*cbf)(request, HT_PROG_CONNECT, HT_MSG_NULL,
2.91      frystyk   290:                                NULL, hostname, NULL);
2.65      frystyk   291:            }
2.94.2.1  eric      292:            me->tcpstate = TCP_NEED_CONNECT;
                    293:            HTWATCH(HTWatch_TCP, me, HTHIDE("HTHost %p going to state TCP_NEED_CONNECT.\n"), me);
2.55      frystyk   294:            break;
2.56      frystyk   295:          case TCP_NEED_CONNECT:
2.94.2.1  eric      296:            status = connect(HTChannel_socket(me->channel), (struct sockaddr *) &me->sock_addr,
                    297:                             sizeof(me->sock_addr));
2.55      frystyk   298:            /*
                    299:             * According to the Sun man page for connect:
                    300:             *     EINPROGRESS         The socket is non-blocking and the  con-
                    301:             *                         nection cannot be completed immediately.
                    302:             *                         It is possible to select(2) for  comple-
                    303:             *                         tion  by  selecting the socket for writ-
                    304:             *                         ing.
                    305:             * According to the Motorola SVR4 man page for connect:
                    306:             *     EAGAIN              The socket is non-blocking and the  con-
                    307:             *                         nection cannot be completed immediately.
                    308:             *                         It is possible to select for  completion
                    309:             *                         by  selecting  the  socket  for writing.
                    310:             *                         However, this is only  possible  if  the
                    311:             *                         socket  STREAMS  module  is  the topmost
                    312:             *                         module on  the  protocol  stack  with  a
                    313:             *                         write  service  procedure.  This will be
                    314:             *                         the normal case.
                    315:             */
2.93      eric      316:            if (NETCALL_ERROR(status))
2.55      frystyk   317:            {
2.93      eric      318:                if (NETCALL_WOULDBLOCK(socerrno))
2.55      frystyk   319:                {
2.94.2.1  eric      320:                    HTWATCH(PROT_TRACE, me, HTHIDE("HTDoConnect. WOULD BLOCK `%s'\n"), hostname);
                    321:                    HTHost_register(me, net, HTEvent_CONNECT);
2.55      frystyk   322:                    return HT_WOULD_BLOCK;
                    323:                }
                    324:                if (socerrno == EISCONN) {
2.94.2.1  eric      325:                    me->tcpstate = TCP_CONNECTED;
                    326:                    HTWATCH(HTWatch_TCP, me, HTHIDE("HTHost %p going to state TCP_CONNECTED.\n"), me);
2.55      frystyk   327:                    break;
                    328:                }
2.93      eric      329:                if (NETCALL_DEADSOCKET(socerrno))     /* We lost the socket */
2.58      frystyk   330:                {
2.94.2.1  eric      331:                    me->tcpstate = TCP_NEED_SOCKET;
                    332:                    HTWATCH(HTWatch_TCP, me, HTHIDE("HTHost %p going to state TCP_NEED_SOCKET.\n"), me);
2.55      frystyk   333:                    break;
2.27      frystyk   334:                }
2.94.2.1  eric      335:                if (retry) {
                    336:                    me->connecttime -= time(NULL);
2.54      frystyk   337:                    /* Added EINVAL `invalid argument' as this is what I 
                    338:                       get back from a non-blocking connect where I should 
                    339:                       get `connection refused' on BSD. SVR4 gives SIG_PIPE */
2.94      frystyk   340: #if defined(__svr4__) || defined (_WINSOCKAPI_)
2.55      frystyk   341:                    if (socerrno==ECONNREFUSED || socerrno==ETIMEDOUT ||
                    342:                        socerrno==ENETUNREACH || socerrno==EHOSTUNREACH ||
                    343:                        socerrno==EHOSTDOWN)
                    344: #else
2.54      frystyk   345:                    if (socerrno==ECONNREFUSED || socerrno==ETIMEDOUT ||
                    346:                        socerrno==ENETUNREACH || socerrno==EHOSTUNREACH ||
                    347:                        socerrno==EHOSTDOWN || socerrno==EINVAL)
2.35      roeber    348: #endif
2.94.2.1  eric      349:                        me->connecttime += TCP_DELAY;
2.54      frystyk   350:                    else
2.94.2.1  eric      351:                        me->connecttime += TCP_PENALTY;
                    352:                    HTDNS_updateWeigths(me->dns, me->home, me->connecttime);
2.55      frystyk   353:                }
2.94.2.1  eric      354:                me->tcpstate = TCP_ERROR;               
                    355:                HTWATCH(HTWatch_TCP, me, HTHIDE("HTHost %p going to state TCP_ERROR.\n"), me);
                    356:            } else {
                    357:                me->tcpstate = TCP_CONNECTED;
                    358:                HTWATCH(HTWatch_TCP, me, HTHIDE("HTHost %p going to state TCP_CONNECTED.\n"), me);
                    359:            }
2.55      frystyk   360:            break;
                    361: 
                    362:          case TCP_CONNECTED:
2.94.2.1  eric      363:            HTHost_unregister(me, net, HTEvent_CONNECT);
                    364:            if (retry) {
                    365:                me->connecttime -= time(NULL);
                    366:                HTDNS_updateWeigths(me->dns, me->home, me->connecttime);
2.27      frystyk   367:            }
2.94.2.1  eric      368:            retry = 0;
                    369:            me->tcpstate = TCP_BEGIN;
                    370:            HTWATCH(HTWatch_TCP, me, HTHIDE("HTHost %p connected.\n"), me);
2.55      frystyk   371:            return HT_OK;
                    372:            break;
                    373: 
2.56      frystyk   374:          case TCP_NEED_BIND:
                    375:          case TCP_NEED_LISTEN:
2.55      frystyk   376:          case TCP_ERROR:
2.94.2.1  eric      377:            HTWATCH(PROT_TRACE, me, HTHIDE("HTDoConnect. Connect failed %d\n"), socerrno);
                    378:            if (HTChannel_socket(me->channel) != INVSOC) {
                    379:              /*                HTEvent_unregister(HTChannel_socket(me->channel), (SockOps) FD_ALL); */
                    380:                NETCLOSE(HTChannel_socket(me->channel));
2.94.2.3  eric      381:                /*              HTChannel_setSocket(me->channel, INVSOC); */
2.94.2.1  eric      382: #if 1 /* @@@ */
                    383:                if (HTHost_isPersistent(me)) {   /* Inherited socket */
                    384:                    HTHost_setPersistent(me, NO, HT_TP_SINGLE);
                    385:                    me->tcpstate = TCP_NEED_SOCKET;
                    386:                    HTWATCH(HTWatch_TCP, me, HTHIDE("HTHost %p going to state TCP_NEED_SOCKET.\n"), me);
2.55      frystyk   387:                    break;
                    388:                }
2.94.2.1  eric      389: #endif
2.55      frystyk   390:            }
                    391: 
                    392:            /* Do we have more homes to try? */
2.94.2.1  eric      393:            if (--retry > 0) {
2.65      frystyk   394:                HTRequest_addSystemError(request, ERR_NON_FATAL, socerrno, NO,
2.55      frystyk   395:                              "connect");
2.94.2.1  eric      396:                me->tcpstate = TCP_DNS;
                    397:                HTWATCH(HTWatch_TCP, me, HTHIDE("HTHost %p going to state TCP_DNS.\n"), me);
2.24      frystyk   398:                break;
                    399:            }
2.65      frystyk   400:            HTRequest_addSystemError(request, ERR_FATAL,socerrno,NO,"connect");
2.91      frystyk   401:            HTDNS_delete(hostname);
2.94.2.1  eric      402:            retry = 0;
                    403:            me->tcpstate = TCP_BEGIN;
                    404:            HTWATCH(HTWatch_TCP, me, HTHIDE("HTHost %p going to state TCP_BEGIN.\n"), me);
2.55      frystyk   405:            return HT_ERROR;
                    406:            break;
2.24      frystyk   407:        }
2.55      frystyk   408:     }
2.13      frystyk   409: }
                    410: 
2.56      frystyk   411: /*     HTDoAccept()
                    412: **     ------------
                    413: **     This function makes a non-blocking accept which will turn up as ready
                    414: **     read in the select.
                    415: **     Returns
                    416: **             HT_ERROR        Error has occured or interrupted
                    417: **             HT_OK           if connected
                    418: **             HT_WOULD_BLOCK  if operation would have blocked
2.13      frystyk   419: */
2.94.2.1  eric      420: 
2.88      frystyk   421: PUBLIC int HTDoAccept (HTNet * net, HTNet ** accepted)
2.13      frystyk   422: {
                    423:     int status;
2.94.2.1  eric      424:     int size = sizeof(net->host->sock_addr);
2.88      frystyk   425:     HTRequest * request = HTNet_request(net);
2.94.2.1  eric      426:     if (!request || HTNet_socket(net)==INVSOC) {
2.77      eric      427:        if (PROT_TRACE) HTTrace("HTDoAccept.. Invalid socket\n");
2.56      frystyk   428:        return HT_ERROR;
2.13      frystyk   429:     }
2.65      frystyk   430: 
                    431:     /* Progress report */
                    432:     {
                    433:        HTAlertCallback *cbf = HTAlert_find(HT_PROG_ACCEPT);
                    434:        if (cbf) (*cbf)(request, HT_PROG_ACCEPT, HT_MSG_NULL,NULL, NULL, NULL);
                    435:     }
2.94.2.1  eric      436:     status = accept(HTNet_socket(net), (struct sockaddr *) &net->host->sock_addr, &size);
2.93      eric      437:     if (NETCALL_ERROR(status))
2.23      duns      438:     {
2.93      eric      439:        if (NETCALL_WOULDBLOCK(socerrno))
2.56      frystyk   440:        {
                    441:            if (PROT_TRACE)
2.94.2.1  eric      442:                HTTrace("HTDoAccept.. WOULD BLOCK %d\n", HTNet_socket(net));
                    443:            HTEvent_register(HTNet_socket(net), HTEvent_ACCEPT, &net->event);
2.56      frystyk   444:            return HT_WOULD_BLOCK;
                    445:        }
2.65      frystyk   446:        HTRequest_addSystemError(request, ERR_WARN, socerrno, YES, "accept");
2.77      eric      447:        if (PROT_TRACE) HTTrace("HTDoAccept.. Accept failed\n");
2.56      frystyk   448:        return HT_ERROR;
2.23      duns      449:     }
2.71      frystyk   450: 
2.88      frystyk   451:     if (PROT_TRACE) HTTrace("Accepted.... socket %d\n", status);
                    452: 
                    453:     /*
                    454:     ** If accepted is the same as the net obejct then reuse it, else create
                    455:     ** a new object and leave the original alone
                    456:     */
                    457:     if (*accepted == net)
                    458:        HTDoClose(net);
                    459:     else
                    460:        *accepted = HTNet_dup(net);
2.94.2.1  eric      461:     HTNet_setSocket(*accepted, status);        
2.83      frystyk   462: 
                    463:     /* Create a channel for the new socket */
2.94.2.2  frystyk   464:     {
                    465:        HTHost * host = (*accepted)->host;
                    466:        HTChannel * ch = HTChannel_new(HTNet_socket(*accepted), NO);
                    467: #ifdef HT_MUX
                    468:        HTMuxChannel * muxch = HTMuxChannel_new(host, ch);
                    469:        HTHost_setMuxChannel(host, muxch);
                    470: #endif /* HT_MUX */
                    471:        HTHost_setChannel(host, ch);
                    472:     }
2.56      frystyk   473:     return HT_OK;
                    474: }
                    475: 
                    476: 
                    477: /*     HTDoListen
                    478: **     ----------
                    479: **     Listens on the specified port. 0 means that we chose it here
                    480: **     If master==INVSOC then we listen on all local interfaces (using a 
                    481: **     wildcard). If !INVSOC then use this as the local interface
                    482: **     returns         HT_ERROR        Error has occured or interrupted
                    483: **                     HT_OK           if connected
                    484: */
2.67      frystyk   485: PUBLIC int HTDoListen (HTNet * net, u_short port, SOCKET master, int backlog)
2.56      frystyk   486: {
                    487:     int status;
                    488: 
                    489:     /* Jump into the state machine */
                    490:     while (1) {
2.94.2.1  eric      491:        switch (net->host->tcpstate) {
2.56      frystyk   492:          case TCP_BEGIN:
                    493:            {
2.94.2.1  eric      494:                SockA *sin = &net->host->sock_addr;
2.56      frystyk   495:                memset((void *) sin, '\0', sizeof(SockA));
                    496: #ifdef DECNET
                    497:                sin->sdn_family = AF_DECnet;
                    498:                sin->sdn_objnum = port;
2.36      frystyk   499: #else
2.56      frystyk   500:                sin->sin_family = AF_INET;
                    501:                if (master != INVSOC) {
                    502:                    int len = sizeof(SockA);
                    503:                    if (getsockname(master, (struct sockaddr *) sin, &len)<0) {
2.65      frystyk   504:                        HTRequest_addSystemError(net->request, ERR_FATAL,
                    505:                                                 socerrno, NO, "getsockname");
2.94.2.1  eric      506:                        net->host->tcpstate = TCP_ERROR;
2.56      frystyk   507:                        break;
                    508:                    }
                    509:                } else
                    510:                    sin->sin_addr.s_addr = INADDR_ANY;
                    511:                sin->sin_port = htons(port);
                    512: #endif
                    513:            }
                    514:            if (PROT_TRACE)
2.83      frystyk   515:                HTTrace("Socket...... Listen on port %d\n", port);
2.94.2.1  eric      516:            net->host->tcpstate = TCP_NEED_SOCKET;
2.56      frystyk   517:            break;
                    518: 
                    519:          case TCP_NEED_SOCKET:
2.94.2.1  eric      520:            if (_makeSocket(net->host, net->request, net->preemptive, net->transport) == -1)
2.93      eric      521:                break;
2.94.2.1  eric      522:            net->host->tcpstate = TCP_NEED_BIND;
2.56      frystyk   523:            break;
                    524: 
                    525:          case TCP_NEED_BIND:
2.94.2.1  eric      526:            status = bind(HTNet_socket(net), (struct sockaddr *) &net->host->sock_addr,
                    527:                          sizeof(net->host->sock_addr));
2.93      eric      528:            if (NETCALL_ERROR(status))
2.56      frystyk   529:            {
                    530:                if (PROT_TRACE)
2.83      frystyk   531:                    HTTrace("Socket...... Bind failed %d\n", socerrno);
2.94.2.1  eric      532:                net->host->tcpstate = TCP_ERROR;                
2.56      frystyk   533:            } else
2.94.2.1  eric      534:                net->host->tcpstate = TCP_NEED_LISTEN;
2.56      frystyk   535:            break;
                    536: 
                    537:          case TCP_NEED_LISTEN:
2.94.2.1  eric      538:            status = listen(HTNet_socket(net), backlog);
2.93      eric      539:            if (NETCALL_ERROR(status))
2.94.2.1  eric      540:                net->host->tcpstate = TCP_ERROR;                
2.56      frystyk   541:            else
2.94.2.1  eric      542:                net->host->tcpstate = TCP_CONNECTED;
2.56      frystyk   543:            break;
                    544: 
                    545:          case TCP_CONNECTED:
2.94.2.1  eric      546:            net->host->tcpstate = TCP_BEGIN;
2.56      frystyk   547:            if (PROT_TRACE)
2.83      frystyk   548:                HTTrace("Socket...... Bind and listen on port %d %s\n",
2.94.2.1  eric      549:                        (int) ntohs(net->host->sock_addr.sin_port),
                    550:                        HTInetString(&net->host->sock_addr));
2.56      frystyk   551:            return HT_OK;
                    552:            break;
2.13      frystyk   553: 
2.91      frystyk   554:          case TCP_CHANNEL:
2.56      frystyk   555:          case TCP_NEED_CONNECT:
                    556:          case TCP_DNS:
                    557:          case TCP_ERROR:
2.83      frystyk   558:            if (PROT_TRACE) HTTrace("Socket...... Listen failed\n");
2.62      frystyk   559:            HTRequest_addSystemError(net->request, ERR_FATAL, socerrno, NO, "HTDoListen");
2.94.2.1  eric      560:            net->host->tcpstate = TCP_BEGIN;
2.56      frystyk   561:            return HT_ERROR;
                    562:            break;
                    563:        }
2.38      frystyk   564:     }
1.1       timbl     565: }
                    566: 
2.83      frystyk   567: /*     HTDoClose
                    568: **     ---------
                    569: **     Closes a file descriptor whatever means are available on the current
                    570: **     platform. If we have unix file descriptors then use this otherwise use
                    571: **     the ANSI C file descriptors
                    572: **
                    573: **     returns         HT_ERROR        Error has occured or interrupted
                    574: **                     HT_OK           if connected
                    575: **                     HT_WOULD_BLOCK  if operation would have blocked
                    576: */
2.87      frystyk   577: PUBLIC int HTDoClose (HTNet * net)
2.83      frystyk   578: {
                    579:     int status = -1;
2.94.2.1  eric      580:     if (net && HTNet_socket(net) != INVSOC) {
                    581:        if (PROT_TRACE) HTTrace("HTDoClose... Close %d\n", HTNet_socket(net));
                    582:        status = NETCLOSE(HTNet_socket(net));
                    583:        /*      HTEvent_unregister(HTNet_socket(net), (SockOps) FD_ALL); */
2.91      frystyk   584:        HTNet_decreaseSocket();
2.94.2.1  eric      585:        HTNet_setSocket(net, INVSOC);
2.91      frystyk   586:        
                    587:        /*
                    588:        **  As we have a socket available we check for whether
                    589:        **  we can start any pending requests. We do this by asking for
                    590:        **  pending Host objects. If none then use the current object
                    591:        */
                    592:        HTHost_launchPending(net->host);
                    593: 
                    594:     } else
                    595:        if (PROT_TRACE) HTTrace("HTDoClose... No pending requests\n");
2.83      frystyk   596:     return status < 0 ? HT_ERROR : HT_OK;
                    597: }
2.91      frystyk   598: 
2.83      frystyk   599: 

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