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Annotation of libwww/Library/src/HTTP.c, revision 1.132

1.74 frystyk 1: /*                                   HTTP.c
 2: **   MULTITHREADED IMPLEMENTATION OF HTTP CLIENT
1.2 timbl 3: **
1.84 frystyk 4: **   (c) COPYRIGHT MIT 1995.
1.74 frystyk 5: **   Please first read the full copyright statement in the file COPYRIGH.
1.132 ! frystyk 6: **   @(#) $Id: HTTP.c,v 1.131 1996年08月05日 17:22:49 frystyk Exp $
1.74 frystyk 7: **
 8: **   This module implments the HTTP protocol as a state machine
1.55 frystyk 9: **
 10: ** History:
1.59 frystyk 11: **  < May 24 94 ??  Unknown - but obviously written
1.56 frystyk 12: **   May 24 94 HF  Made reentrent and cleaned up a bit. Implemented
 13: **           Forward, redirection, error handling and referer field
1.67 duns 14: **   8 Jul 94 FM  Insulate free() from _free structure element.
1.71 frystyk 15: **   Jul 94 HFN   Written on top of HTTP.c, Henrik Frystyk
1.55 frystyk 16: **
1.1 timbl 17: */
 18: 
1.78 frystyk 19: /* Library include files */
1.119 frystyk 20: #include "sysdep.h"
1.123 frystyk 21: #include "WWWUtil.h"
 22: #include "WWWCore.h"
 23: #include "WWWCache.h"
 24: #include "WWWMIME.h"
 25: #include "WWWStream.h"
1.125 frystyk 26: #include "WWWTrans.h"
1.94 frystyk 27: #include "HTReqMan.h"
1.95 frystyk 28: #include "HTNetMan.h"
1.109 frystyk 29: #include "HTTPUtil.h"
1.80 frystyk 30: #include "HTTPReq.h"
1.55 frystyk 31: #include "HTTP.h"                       /* Implements */
 32: 
 33: /* Macros and other defines */
1.94 frystyk 34: #ifndef HTTP_PORT
 35: #define HTTP_PORT 80  /* Allocated to http by Jon Postel/ISI 24-Jan-92 */
 36: #endif
 37: 
1.71 frystyk 38: #define PUTC(c)        (*me->target->isa->put_character)(me->target, c)
 39: #define PUTS(s)        (*me->target->isa->put_string)(me->target, s)
 40: #define PUTBLOCK(b, l) (*me->target->isa->put_block)(me->target, b, l)
 41: #define FREE_TARGET  (*me->target->isa->_free)(me->target)
1.74 frystyk 42: #define ABORT_TARGET  (*me->target->isa->abort)(me->target, e)
1.2 timbl 43: 
1.59 frystyk 44: /* Type definitions and global variables etc. local to this module */
1.94 frystyk 45: 
 46: /* Final states have negative value */
1.59 frystyk 47: typedef enum _HTTPState {
1.81 frystyk 48:   HTTP_RETRY     = -4,
1.71 frystyk 49:   HTTP_ERROR     = -3,
 50:   HTTP_NO_DATA    = -2,
 51:   HTTP_GOT_DATA   = -1,
 52:   HTTP_BEGIN     = 0,
 53:   HTTP_NEED_CONNECTION,
 54:   HTTP_NEED_REQUEST,
1.112 frystyk 55:   HTTP_PERM_REDIRECT,
 56:   HTTP_TEMP_REDIRECT,
1.91 frystyk 57:   HTTP_NOT_MODIFIED,
1.131 frystyk 58:   HTTP_AA,
 59:   HTTP_PROXY_AA
1.59 frystyk 60: } HTTPState;
1.55 frystyk 61: 
1.94 frystyk 62: /* This is the context structure for the this module */
1.55 frystyk 63: typedef struct _http_info {
1.81 frystyk 64:   HTTPState     state;      /* Current State of the connection */
 65:   HTTPState     next;                 /* Next state */
1.55 frystyk 66: } http_info;
 67: 
1.88 frystyk 68: #define MAX_STATUS_LEN     100  /* Max nb of chars to check StatusLine */
1.55 frystyk 69: 
1.71 frystyk 70: struct _HTStream {
1.119 frystyk 71:   const HTStreamClass *   isa;
1.71 frystyk 72:   HTStream *         target;
 73:   HTRequest *            request;
 74:   http_info *            http;
1.121 frystyk 75:   HTEOLState         state;
1.71 frystyk 76:   BOOL            transparent;
1.81 frystyk 77:   char *           version;       /* Should we save this? */
1.71 frystyk 78:   int                status;
1.81 frystyk 79:   char *           reason;
1.71 frystyk 80:   char            buffer[MAX_STATUS_LEN+1];
1.80 frystyk 81:   int                buflen;
1.71 frystyk 82: };
1.21 luotonen 83: 
1.123 frystyk 84: struct _HTInputStream {
 85:   const HTInputStreamClass * isa;
 86: };
 87: 
1.71 frystyk 88: /* ------------------------------------------------------------------------- */
 89: /*                Help Functions               */
 90: /* ------------------------------------------------------------------------- */
1.21 luotonen 91: 
1.94 frystyk 92: /*   HTTPCleanup
 93: **   -----------
1.55 frystyk 94: **   This function closes the connection and frees memory.
1.94 frystyk 95: **   Returns YES on OK, else NO
1.1 timbl 96: */
1.94 frystyk 97: PRIVATE int HTTPCleanup (HTRequest *req, int status)
1.1 timbl 98: {
1.126 frystyk 99:   HTNet * net = HTRequest_net(req);
 100:   http_info * http = (http_info *) HTNet_context(net);
 101:   HTStream * input = HTRequest_inputStream(req);
1.80 frystyk 102: 
1.94 frystyk 103:   /* Free stream with data TO network */
1.112 frystyk 104:   if (HTRequest_isDestination(req))
 105:    HTRequest_removeDestination(req);
1.126 frystyk 106:   else if (input) {
1.94 frystyk 107:    if (status == HT_INTERRUPTED)
1.126 frystyk 108:      (*input->isa->abort)(input, NULL);
1.94 frystyk 109:    else
1.126 frystyk 110:      (*input->isa->_free)(input);
 111:    HTRequest_setInputStream(req, NULL);
1.94 frystyk 112:   }
1.88 frystyk 113: 
1.94 frystyk 114:   /* Remove the request object and our own context structure for http */
1.131 frystyk 115:   HTNet_delete(net, status);
1.115 frystyk 116:   HT_FREE(http);
1.94 frystyk 117:   return YES;
1.55 frystyk 118: }
 119: 
1.71 frystyk 120: /*
1.130 frystyk 121: **   Informational 1xx codes are handled separately
 122: **   Returns YES if we should stop, NO if we should continue
1.55 frystyk 123: */
1.130 frystyk 124: PRIVATE BOOL HTTPInformation (HTStream * me)
1.55 frystyk 125: {
1.130 frystyk 126:   BOOL result = NO;
1.71 frystyk 127:   switch (me->status) {
 128: 
1.130 frystyk 129:   case 101:
 130:    HTRequest_addError(me->request, ERR_INFO, NO, HTERR_SWITCHING,
1.127 frystyk 131:              me->reason, (int) strlen(me->reason),
1.130 frystyk 132:              "HTTPInformation");
 133: 
 134:    /* Here we should swap to new protocol */
 135: 
 136:    result = YES;
1.127 frystyk 137:    break;
 138: 
1.130 frystyk 139:   default:
 140:    HTRequest_addError(me->request, ERR_INFO, NO, HTERR_CONTINUE,
1.127 frystyk 141:              me->reason, (int) strlen(me->reason),
1.130 frystyk 142:              "HTTPInformation");
1.127 frystyk 143:    break;
1.130 frystyk 144:   }
 145:   return result;
 146: }
 147: 
 148: /*
 149: **   This is a big switch handling all HTTP return codes. It puts in any
 150: **   appropiate error message and decides whether we should expect data
 151: **   or not.
 152: */
 153: PRIVATE void HTTPNextState (HTStream * me)
 154: {
 155:   switch (me->status) {
1.127 frystyk 156: 
1.78 frystyk 157:    case 0:                        /* 0.9 response */
1.127 frystyk 158:    case 200:                                /* OK */
 159:    HTRequest_addError(me->request, ERR_INFO, NO, HTERR_OK,
 160:              me->reason, (int) strlen(me->reason),
 161:              "HTTPNextState");
1.112 frystyk 162:    me->http->next = HTTP_GOT_DATA;
 163:    break;
 164: 
1.127 frystyk 165:    case 201:                             /* Created */
1.112 frystyk 166:    HTRequest_addError(me->request, ERR_INFO, NO, HTERR_CREATED,
 167:              me->reason, (int) strlen(me->reason),
 168:              "HTTPNextState");
 169:    me->http->next = HTTP_GOT_DATA;
 170:    break;
 171: 
1.127 frystyk 172:    case 202:                             /* Accepted */
1.112 frystyk 173:    HTRequest_addError(me->request, ERR_INFO, NO, HTERR_ACCEPTED,
 174:              me->reason, (int) strlen(me->reason),
 175:              "HTTPNextState");
 176:    me->http->next = HTTP_GOT_DATA;
 177:    break;
 178: 
1.127 frystyk 179:    case 203:                  /* Non-authoritative information */
 180:    HTRequest_addError(me->request, ERR_INFO, NO, HTERR_NON_AUTHORITATIVE,
1.112 frystyk 181:              me->reason, (int) strlen(me->reason),
 182:              "HTTPNextState");
1.81 frystyk 183:    me->http->next = HTTP_GOT_DATA;
1.71 frystyk 184:    break;
1.78 frystyk 185: 
 186:    case 204:                           /* No Response */
1.112 frystyk 187:    HTRequest_addError(me->request, ERR_INFO, NO, HTERR_NO_CONTENT,
 188:              me->reason, (int) strlen(me->reason),
 189:              "HTTPNextState");
1.81 frystyk 190:    me->http->next = HTTP_NO_DATA;
1.71 frystyk 191:    break;
1.78 frystyk 192: 
1.71 frystyk 193:    case 301:                              /* Moved */
1.112 frystyk 194:    HTRequest_addError(me->request, ERR_INFO, NO, HTERR_MOVED,
 195:              me->reason, (int) strlen(me->reason),
 196:              "HTTPNextState");
 197:    me->http->next = HTTP_PERM_REDIRECT;
 198:    break;
 199: 
1.71 frystyk 200:    case 302:                              /* Found */
1.112 frystyk 201:    HTRequest_addError(me->request, ERR_INFO, NO, HTERR_FOUND,
 202:              me->reason, (int) strlen(me->reason),
 203:              "HTTPNextState");
 204:    me->http->next = HTTP_TEMP_REDIRECT;
1.71 frystyk 205:    break;
1.55 frystyk 206:    
1.71 frystyk 207:    case 303:                              /* Method */
1.107 frystyk 208:    HTRequest_addError(me->request, ERR_FATAL, NO, HTERR_NOT_IMPLEMENTED,
 209:              me->reason, (int) strlen(me->reason),
 210:              "HTTPNextState");
1.81 frystyk 211:    me->http->next = HTTP_ERROR;
1.71 frystyk 212:    break;
1.91 frystyk 213: 
 214:    case 304:                           /* Not Modified */
1.131 frystyk 215:    HTRequest_addError(me->request, ERR_INFO, NO, HTERR_NOT_MODIFIED,
1.112 frystyk 216:              me->reason, (int) strlen(me->reason),
 217:              "HTTPNextState");
1.91 frystyk 218:    me->http->next = HTTP_NOT_MODIFIED;
 219:    break;
1.55 frystyk 220:    
1.78 frystyk 221:    case 400:                           /* Bad Request */
1.104 frystyk 222:    HTRequest_addError(me->request, ERR_FATAL, NO, HTERR_BAD_REQUEST,
1.100 frystyk 223:          me->reason, (int) strlen(me->reason), "HTTPNextState");
1.81 frystyk 224:    me->http->next = HTTP_ERROR;
1.71 frystyk 225:    break;
1.70 howcome 226: 
1.71 frystyk 227:    case 401:
1.104 frystyk 228:    HTRequest_addError(me->request, ERR_FATAL, NO, HTERR_UNAUTHORIZED,
1.100 frystyk 229:          me->reason, (int) strlen(me->reason), "HTTPNextState");
1.81 frystyk 230:    me->http->next = HTTP_AA;
1.71 frystyk 231:    break;
 232:    
 233:    case 402:                         /* Payment required */
1.104 frystyk 234:    HTRequest_addError(me->request, ERR_FATAL, NO, HTERR_PAYMENT_REQUIRED,
1.100 frystyk 235:          me->reason, (int) strlen(me->reason), "HTTPNextState");
1.81 frystyk 236:    me->http->next = HTTP_ERROR;
1.71 frystyk 237:    break;
1.55 frystyk 238:    
1.71 frystyk 239:    case 403:                            /* Forbidden */
1.104 frystyk 240:    HTRequest_addError(me->request, ERR_FATAL, NO, HTERR_FORBIDDEN,
1.100 frystyk 241:          me->reason, (int) strlen(me->reason), "HTTPNextState");
1.81 frystyk 242:    me->http->next = HTTP_ERROR;
1.71 frystyk 243:    break;
1.55 frystyk 244:    
1.71 frystyk 245:    case 404:                            /* Not Found */
1.104 frystyk 246:    HTRequest_addError(me->request, ERR_FATAL, NO, HTERR_NOT_FOUND,
1.100 frystyk 247:          me->reason, (int) strlen(me->reason), "HTTPNextState");
1.81 frystyk 248:    me->http->next = HTTP_ERROR;
1.71 frystyk 249:    break;
 250:    
1.78 frystyk 251:    case 405:                           /* Not Allowed */
1.104 frystyk 252:    HTRequest_addError(me->request, ERR_FATAL, NO, HTERR_NOT_ALLOWED,
1.100 frystyk 253:          me->reason, (int) strlen(me->reason), "HTTPNextState");
1.81 frystyk 254:    me->http->next = HTTP_ERROR;
1.78 frystyk 255:    break;
 256: 
 257:    case 406:                         /* None Acceptable */
1.104 frystyk 258:    HTRequest_addError(me->request, ERR_FATAL, NO, HTERR_NONE_ACCEPTABLE,
1.100 frystyk 259:          me->reason, (int) strlen(me->reason), "HTTPNextState");
1.81 frystyk 260:    me->http->next = HTTP_ERROR;
1.78 frystyk 261:    break;
 262: 
 263:    case 407:                  /* Proxy Authentication Required */
1.127 frystyk 264:    HTRequest_addError(me->request, ERR_FATAL, NO,HTERR_PROXY_UNAUTHORIZED,
1.100 frystyk 265:          me->reason, (int) strlen(me->reason), "HTTPNextState");
1.131 frystyk 266:    me->http->next = HTTP_PROXY_AA;
1.78 frystyk 267:    break;
 268: 
 269:    case 408:                         /* Request Timeout */
1.104 frystyk 270:    HTRequest_addError(me->request, ERR_FATAL, NO, HTERR_TIMEOUT,
1.100 frystyk 271:          me->reason, (int) strlen(me->reason), "HTTPNextState");
1.81 frystyk 272:    me->http->next = HTTP_ERROR;
1.78 frystyk 273:    break;
 274: 
1.71 frystyk 275:    case 500:
1.104 frystyk 276:    HTRequest_addError(me->request, ERR_FATAL, NO, HTERR_INTERNAL,
1.100 frystyk 277:          me->reason, (int) strlen(me->reason), "HTTPNextState");
1.81 frystyk 278:    me->http->next = HTTP_ERROR;
1.78 frystyk 279:    break;
 280:    
1.71 frystyk 281:    case 501:
1.104 frystyk 282:    HTRequest_addError(me->request, ERR_FATAL, NO, HTERR_NOT_IMPLEMENTED,
1.100 frystyk 283:          me->reason, (int) strlen(me->reason), "HTTPNextState");
1.81 frystyk 284:    me->http->next = HTTP_ERROR;
1.78 frystyk 285:    break;
 286: 
 287:    case 502:
1.104 frystyk 288:    HTRequest_addError(me->request, ERR_FATAL, NO, HTERR_BAD_GATE,
1.100 frystyk 289:          me->reason, (int) strlen(me->reason), "HTTPNextState");
1.81 frystyk 290:    me->http->next = HTTP_ERROR;
1.78 frystyk 291:    break;
 292: 
 293:    case 503:
1.104 frystyk 294:    HTRequest_addError(me->request, ERR_FATAL, NO, HTERR_DOWN,
1.100 frystyk 295:          me->reason, (int) strlen(me->reason), "HTTPNextState");
1.81 frystyk 296: 
 297:    /* If Retry-After header is found then return HT_RETRY else HT_ERROR */
1.126 frystyk 298:    if (HTRequest_retryTime(me->request))
1.81 frystyk 299:      me->http->next = HTTP_RETRY;
 300:    else
 301:      me->http->next = HTTP_ERROR;
1.78 frystyk 302:    break;
 303: 
 304:    case 504:
1.104 frystyk 305:    HTRequest_addError(me->request, ERR_FATAL, NO, HTERR_GATE_TIMEOUT,
1.100 frystyk 306:          me->reason, (int) strlen(me->reason), "HTTPNextState");
1.81 frystyk 307:     me->http->next = HTTP_ERROR;
1.71 frystyk 308:    break;
1.78 frystyk 309: 
1.71 frystyk 310:    default:                        /* bad number */
1.104 frystyk 311:    HTRequest_addError(me->request, ERR_FATAL, NO, HTERR_BAD_REPLY,
1.100 frystyk 312:          (void *) me->buffer, me->buflen, "HTTPNextState");
1.81 frystyk 313:    me->http->next = HTTP_ERROR;
1.71 frystyk 314:    break;
1.55 frystyk 315:   }
 316: }
 317: 
1.71 frystyk 318: /* ------------------------------------------------------------------------- */
 319: /*             HTTP Status Line Stream             */
 320: /* ------------------------------------------------------------------------- */
1.55 frystyk 321: 
1.71 frystyk 322: /*
1.80 frystyk 323: **   Analyse the stream we have read. If it is a HTTP 1.0 or higher
1.71 frystyk 324: **   then create a MIME-stream, else create a Guess stream to find out
 325: **   what the 0.9 server is sending. We need to copy the buffer as we don't
 326: **   know if we can modify the contents or not.
1.78 frystyk 327: **
 328: **   Stream handling is a function of the status code returned from the 
 329: **   server:
 330: **       200:   Use `output_stream' in HTRequest structure
1.94 frystyk 331: **       else:  Use `debug_stream' in HTRequest structure
1.80 frystyk 332: **
 333: **   Return: YES if buffer should be written out. NO otherwise
1.56 frystyk 334: */
1.100 frystyk 335: PRIVATE int stream_pipe (HTStream * me)
1.56 frystyk 336: {
1.123 frystyk 337:   HTRequest * req = me->request;
 338:   HTNet * net = req->net;
 339:   HTHost * host = HTNet_host(net);
1.80 frystyk 340:   if (me->target) {
 341:    int status = PUTBLOCK(me->buffer, me->buflen);
 342:    if (status == HT_OK)
 343:      me->transparent = YES;
 344:    return status;
1.88 frystyk 345:   } else if (HTRequest_isSource(req) && !req->output_stream) {
 346:    /*
 347:    ** We need to wait for the destinations to get ready
 348:    */
 349:    return HT_WOULD_BLOCK;
1.80 frystyk 350:   }
1.88 frystyk 351:    
1.132 ! frystyk 352:   /*
 ! 353:   ** Just check for HTTP and not HTTP/ as NCSA server chokes on 1.1 replies
 ! 354:   ** Thanks to Markku Savela <msa@msa.tte.vtt.fi>
 ! 355:   */
 ! 356: #if 0
1.81 frystyk 357:   if (strncasecomp(me->buffer, "http/", 5)) {
1.132 ! frystyk 358: #else
 ! 359:   if (strncasecomp(me->buffer, "http", 4)) {
 ! 360: #endif
1.80 frystyk 361:    int status;
1.104 frystyk 362:    HTRequest_addError(req, ERR_INFO, NO, HTERR_HTTP09,
1.80 frystyk 363:          (void *) me->buffer, me->buflen, "HTTPStatusStream");
1.105 frystyk 364:    me->target = HTStreamStack(WWW_UNKNOWN, req->output_format,
 365:                  req->output_stream, req, NO);
1.88 frystyk 366:    me->http->next = HTTP_GOT_DATA;
1.80 frystyk 367:    if ((status = PUTBLOCK(me->buffer, me->buflen)) == HT_OK)
 368:      me->transparent = YES;
1.123 frystyk 369:    HTHost_setVersion(host, HTTP_09);
1.80 frystyk 370:    return status;
 371:   } else {
1.81 frystyk 372:    char *ptr = me->buffer+5;           /* Skip the HTTP part */
 373:    me->version = HTNextField(&ptr);
1.95 frystyk 374: 
1.130 frystyk 375:    /* Here we want to find out when to use persistent connection */
1.128 frystyk 376:    if (!strncasecomp(me->version, "1.0", 3)) {
 377:      if (PROT_TRACE)HTTrace("HTTP Status. This is a HTTP/1.0 server\n");
 378:      HTHost_setVersion(host, HTTP_10);
 379:    } else {
 380:      HTHost_setVersion(host, HTTP_11);
 381:      HTNet_setPersistent(net, YES);           /* By default */
 382:    }
1.95 frystyk 383: 
1.81 frystyk 384:    me->status = atoi(HTNextField(&ptr));
 385:    me->reason = ptr;
 386:    if ((ptr = strchr(me->reason, '\r')) != NULL)   /* Strip \r and \n */
 387:      *ptr = '0円';
 388:    else if ((ptr = strchr(me->reason, '\n')) != NULL)
 389:      *ptr = '0円';
 390: 
1.130 frystyk 391:    /* 
 392:    ** If it is a 1xx code then find out what to do and return until we
 393:    ** get the next code. In the case of Upgrade we may not get back here
 394:    ** at all. If we are uploading an entity then continue doing that
 395:    */
 396:    if (me->status/100 == 1) {
 397:      if (HTTPInformation(me)) me->transparent = YES;
 398:      me->buflen = 0;
 399:      me->state = EOL_BEGIN;
 400:      return HTMethod_hasEntity(HTRequest_method(req)) ?
 401:        HT_CONTINUE : HT_OK;
 402:    }
 403: 
1.81 frystyk 404:    /* Set up the streams */
1.112 frystyk 405:    if (me->status==200) {
1.80 frystyk 406:      HTStream *s;
1.103 frystyk 407:      me->target = HTStreamStack(WWW_MIME, req->output_format,
 408:                    req->output_stream, req, NO);
1.80 frystyk 409:      
1.103 frystyk 410:      /* howcome: test for return value from HTCacheWriter 12/1/95 */
 411:      if (req->method==METHOD_GET && HTCache_isEnabled() &&
 412:        (s = HTCacheWriter(req, NULL, WWW_MIME, req->output_format,
 413:                  req->output_stream))) {
1.113 frystyk 414:        me->target = HTTee(me->target, s, NULL);
1.103 frystyk 415:      }
1.94 frystyk 416:    } else if (req->debug_stream) {
 417:      me->target = HTStreamStack(WWW_MIME, req->debug_format,
 418:                    req->debug_stream, req, NO);
1.71 frystyk 419:    } else {
1.103 frystyk 420:      /* We still need to parser the MIME part */
1.114 frystyk 421:      me->target = HTStreamStack(WWW_MIME, req->debug_format,
 422:                    req->debug_stream, req, NO);
1.56 frystyk 423:    }
 424:   }
1.113 frystyk 425:   if (!me->target) me->target = HTErrorStream();
1.81 frystyk 426:   HTTPNextState(me);                  /* Get next state */
1.80 frystyk 427:   me->transparent = YES;
 428:   return HT_OK;
1.71 frystyk 429: }
1.56 frystyk 430: 
1.80 frystyk 431: /*
 432: **   Searches for HTTP header line until buffer fills up or a CRLF or LF
 433: **   is found
 434: */
1.119 frystyk 435: PRIVATE int HTTPStatus_put_block (HTStream * me, const char * b, int l)
1.71 frystyk 436: {
1.80 frystyk 437:   while (!me->transparent && l-- > 0) {
 438:    int status;
 439:    if (me->target) {
 440:      if ((status = stream_pipe(me)) != HT_OK)
 441:        return status;
 442:    } else {
 443:      *(me->buffer+me->buflen++) = *b;
 444:      if (me->state == EOL_FCR) {
 445:        if (*b == LF) { /* Line found */
 446:          if ((status = stream_pipe(me)) != HT_OK)
 447:            return status;
 448:        } else {
 449:          me->state = EOL_BEGIN;
 450:        }
 451:      } else if (*b == CR) {
 452:        me->state = EOL_FCR;
 453:      } else if (*b == LF) {
 454:        if ((status = stream_pipe(me)) != HT_OK)
 455:          return status;
1.71 frystyk 456:      } else {
1.80 frystyk 457:        if (me->buflen >= MAX_STATUS_LEN) {
 458:          if ((status = stream_pipe(me)) != HT_OK)
 459:            return status;
 460:        }
1.71 frystyk 461:      }
1.80 frystyk 462:      b++;
1.71 frystyk 463:    }
1.56 frystyk 464:   }
1.99 frystyk 465:   if (l > 0) return PUTBLOCK(b, l);
 466:   return HT_OK;
1.56 frystyk 467: }
 468: 
1.119 frystyk 469: PRIVATE int HTTPStatus_put_string (HTStream * me, const char * s)
1.71 frystyk 470: {
1.80 frystyk 471:   return HTTPStatus_put_block(me, s, (int) strlen(s));
1.71 frystyk 472: }
1.56 frystyk 473: 
1.100 frystyk 474: PRIVATE int HTTPStatus_put_character (HTStream * me, char c)
1.71 frystyk 475: {
1.80 frystyk 476:   return HTTPStatus_put_block(me, &c, 1);
 477: }
 478: 
1.100 frystyk 479: PRIVATE int HTTPStatus_flush (HTStream * me)
1.80 frystyk 480: {
 481:   return (*me->target->isa->flush)(me->target);
1.71 frystyk 482: }
 483: 
1.100 frystyk 484: PRIVATE int HTTPStatus_free (HTStream * me)
1.71 frystyk 485: {
1.87 frystyk 486:   int status = HT_OK;
 487:   if (me->target) {
 488:    if ((status = (*me->target->isa->_free)(me->target))==HT_WOULD_BLOCK)
 489:      return HT_WOULD_BLOCK;
 490:   }
1.115 frystyk 491:   HT_FREE(me);
1.100 frystyk 492:   return status;
1.71 frystyk 493: }
 494: 
1.104 frystyk 495: PRIVATE int HTTPStatus_abort (HTStream * me, HTList * e)
1.71 frystyk 496: {
 497:   if (me->target)
1.74 frystyk 498:    ABORT_TARGET;
1.115 frystyk 499:   HT_FREE(me);
1.74 frystyk 500:   if (PROT_TRACE)
1.116 eric 501:    HTTrace("HTTPStatus.. ABORTING...\n");
1.80 frystyk 502:   return HT_ERROR;
1.71 frystyk 503: }
 504: 
 505: /*   HTTPStatus Stream
 506: **   -----------------
 507: */
1.119 frystyk 508: PRIVATE const HTStreamClass HTTPStatusClass =
1.71 frystyk 509: {       
 510:   "HTTPStatus",
1.80 frystyk 511:   HTTPStatus_flush,
1.71 frystyk 512:   HTTPStatus_free,
 513:   HTTPStatus_abort,
 514:   HTTPStatus_put_character,
 515:   HTTPStatus_put_string,
 516:   HTTPStatus_put_block
 517: };
 518: 
1.113 frystyk 519: #if 0
1.100 frystyk 520: PRIVATE HTStream * HTTPStatus_new (HTRequest * request, http_info * http)
1.113 frystyk 521: #endif
 522: 
 523: PUBLIC HTStream * HTTPStatus_new (HTRequest * request,
 524:                 void *    param,
 525:                 HTFormat   input_format,
 526:                 HTFormat   output_format,
 527:                 HTStream *  output_stream)
1.71 frystyk 528: {
1.115 frystyk 529:   HTStream * me;
 530:   if ((me = (HTStream *) HT_CALLOC(1, sizeof(HTStream))) == NULL)
 531:     HT_OUTOFMEM("HTTPStatus_new");
1.71 frystyk 532:   me->isa = &HTTPStatusClass;
1.113 frystyk 533:   if (request) {
1.126 frystyk 534:    HTNet * net = HTRequest_net(request);
1.125 frystyk 535:     /* Get existing copy */
 536:    http_info * http = (http_info *) HTNet_context(net);
1.113 frystyk 537:    me->request = request;
 538:    me->http = http;
 539:    http->next = HTTP_ERROR;
 540:    me->state = EOL_BEGIN;
 541:    return me;
 542:   } else
 543:    return HTErrorStream();
1.71 frystyk 544: }
 545: 
 546: /* ------------------------------------------------------------------------- */
 547: 
 548: /*       Load Document from HTTP Server            HTLoadHTTP
1.55 frystyk 549: **       ==============================
 550: **
 551: **   Given a hypertext address, this routine loads a document.
 552: **
 553: ** On entry,
 554: **   request        This is the request structure
1.94 frystyk 555: **   returns     HT_ERROR    Error has occured in call back
 556: **           HT_OK      Call back was OK
1.55 frystyk 557: */
1.94 frystyk 558: PUBLIC int HTLoadHTTP (SOCKET soc, HTRequest * request, SockOps ops)
1.55 frystyk 559: {
1.71 frystyk 560:   int status = HT_ERROR;
1.126 frystyk 561:   HTNet * net = HTRequest_net(request);  /* Generic protocol information */
1.55 frystyk 562:   http_info *http;            /* Specific protocol information */
1.112 frystyk 563:   HTParentAnchor *anchor = HTRequest_anchor(request);
 564: 
1.94 frystyk 565:   /*
 566:   ** Initiate a new http structure and bind to request structure
 567:   ** This is actually state HTTP_BEGIN, but it can't be in the state
 568:   ** machine as we need the structure first.
 569:   */
 570:   if (ops == FD_NONE) {
1.116 eric 571:    if (PROT_TRACE) HTTrace("HTTP........ Looking for `%s\'\n",
1.112 frystyk 572:                HTAnchor_physical(anchor));
1.115 frystyk 573:    if ((http = (http_info *) HT_CALLOC(1, sizeof(http_info))) == NULL)
 574:      HT_OUTOFMEM("HTLoadHTTP");
1.71 frystyk 575:    http->state = HTTP_BEGIN;
1.113 frystyk 576:    http->next = HTTP_GOT_DATA;
1.125 frystyk 577:    HTNet_setContext(net, http);
1.98 frystyk 578:   } else if (ops == FD_CLOSE) {              /* Interrupted */
1.112 frystyk 579:    HTRequest_addError(request, ERR_FATAL, NO, HTERR_INTERRUPTED,
 580:              NULL, 0, "HTLoadHTTP");
 581:    HTTPCleanup(request, HT_INTERRUPTED);
1.94 frystyk 582:    return HT_OK;
 583:   } else
1.125 frystyk 584:    http = (http_info *) HTNet_context(net);    /* Get existing copy */
1.71 frystyk 585: 
 586:   /* Now jump into the machine. We know the state from the previous run */
 587:   while (1) {
 588:    switch (http->state) {
 589:     case HTTP_BEGIN:
1.129 frystyk 590: #if 0
1.71 frystyk 591:      /*
 592:       ** Compose authorization information (this was moved here
 593:       ** from after the making of the connection so that the connection
 594:       ** wouldn't have to wait while prompting username and password
 595:       ** from the user).             -- AL 13.10.93
 596:       */
1.117 frystyk 597:      if (HTAuth_generate(request)) {
 598:        if (PROT_TRACE)HTTrace("HTTP........ Credentials generated\n");
 599:        http->state = HTTP_NEED_CONNECTION;
 600:      } else {
 601:        HTRequest_addError(request, ERR_FATAL, NO, HTERR_UNAUTHORIZED,
 602:                  NULL, 0, "HTLoadHTTP");
 603:        http->state = HTTP_ERROR;
1.71 frystyk 604:      }
1.129 frystyk 605: #else
 606:      http->state = HTTP_NEED_CONNECTION;
 607: #endif
1.71 frystyk 608:      break;
 609:      
1.123 frystyk 610:    case HTTP_NEED_CONNECTION:     /* Now let's set up a connection */
 611:      status = HTDoConnect(net, HTAnchor_physical(anchor), HTTP_PORT);
1.80 frystyk 612:      if (status == HT_OK) {
1.123 frystyk 613:        /*
 614:        ** Check the protocol class to see if we have connected to a
 615:        ** the right class of server, in this case HTTP.
 616:        */
 617:        {
 618:          HTHost * host = HTNet_host(net);
 619:          char * s_class = HTHost_class(host);
 620:          if (s_class && strcasecomp(s_class, "http")) {
 621:            HTRequest_addError(request, ERR_FATAL, NO, HTERR_CLASS,
 622:                      NULL, 0, "HTLoadHTTP");
 623:            http->state = HTTP_ERROR;
 624:            break;
 625:          }
 626:          HTHost_setClass(host, "http");
1.95 frystyk 627:        }
 628: 
1.123 frystyk 629:        /* 
 630:        ** Create the stream pipe FROM the channel to the application.
 631:        ** The target for the input stream pipe is set up using the
 632:        ** stream stack.
1.113 frystyk 633:        */
1.126 frystyk 634:        HTNet_getInput(net,
 635:                HTStreamStack(WWW_HTTP,
 636:                       HTRequest_outputFormat(request),
 637:                       HTRequest_outputStream(request),
 638:                       request, YES), NULL, 0);
1.127 frystyk 639:        HTRequest_setOutputConnected(request, YES);
 640: 
1.123 frystyk 641:        /*
 642:        ** Create the stream pipe TO the channel from the application
 643:        ** and hook it up to the request object
 644:        */
 645:        {
 646:          HTOutputStream * output = HTNet_getOutput(net, NULL, 0);
1.126 frystyk 647:          HTStream * app =
 648:            HTMethod_hasEntity(HTRequest_method(request)) ?
1.123 frystyk 649:            HTMIMERequest_new(request,
 650:             HTTPRequest_new(request,(HTStream*) output,NO),YES) :
 651:              HTTPRequest_new(request, (HTStream*) output, YES);
 652:          HTRequest_setInputStream(request, app);
 653:        }
1.88 frystyk 654: 
 655:        /*
 656:        ** Set up concurrent read/write if this request isn't the
 657:        ** source for a PUT or POST. As source we don't start reading
 658:        ** before all destinations are ready. If destination then
 659:        ** register the input stream and get ready for read
 660:        */
1.112 frystyk 661:        if (HTRequest_isDestination(request)) {
1.124 eric 662:          HTEvent_register(net->sockfd, request, (SockOps) FD_READ,
1.94 frystyk 663:                   HTLoadHTTP, net->priority);
1.88 frystyk 664:          HTRequest_linkDestination(request);
 665:        }
1.71 frystyk 666:        http->state = HTTP_NEED_REQUEST;
1.96 frystyk 667:      } else if (status == HT_WOULD_BLOCK || status == HT_PERSISTENT)
1.94 frystyk 668:        return HT_OK;
1.71 frystyk 669:      else
 670:        http->state = HTTP_ERROR;       /* Error or interrupt */
 671:      break;
 672: 
1.87 frystyk 673:      /* As we can do simultanous read and write this is now one state */
1.80 frystyk 674:     case HTTP_NEED_REQUEST:
1.94 frystyk 675:      if (ops == FD_WRITE || ops == FD_NONE) {
1.88 frystyk 676:        if (HTRequest_isDestination(request)) {
1.126 frystyk 677:          HTRequest * source = HTRequest_source(request);
 678:          HTNet * srcnet = HTRequest_net(source);
1.112 frystyk 679:          if (srcnet) {
1.126 frystyk 680:            SOCKET sockfd = HTNet_socket(srcnet);
 681:            HTEvent_register(sockfd, source,
1.112 frystyk 682:                     (SockOps) FD_READ,
 683:                     srcnet->cbf, srcnet->priority);
1.126 frystyk 684:            HTEvent_unregister(sockfd, FD_WRITE);
1.112 frystyk 685:          }
1.94 frystyk 686:          return HT_OK;
1.80 frystyk 687:        }
1.126 frystyk 688: 
 689:        /*
 690:        ** Should we use the input stream directly or call the post
 691:        ** callback function to send data down to the network?
 692:        */
 693:        {
 694:          HTStream * input = HTRequest_inputStream(request);
 695:          HTPostCallback * pcbf = HTRequest_postCallback(request);
1.131 frystyk 696:          if (pcbf) {
 697:            status = pcbf(request, input);
 698:            if (status == HT_PAUSE || status == HT_LOADED)
 699:              ops = FD_READ;
 700:          } else {
 701:            status = (*input->isa->flush)(input);
1.126 frystyk 702:            ops = FD_READ;  /* Trick to ensure that we do READ */
1.131 frystyk 703:          }
 704:          if (status == HT_WOULD_BLOCK) return HT_OK;
1.126 frystyk 705:        }
1.94 frystyk 706:      } else if (ops == FD_READ) {
1.123 frystyk 707:        status = (*net->input->isa->read)(net->input);
1.131 frystyk 708:        if (status == HT_WOULD_BLOCK)
1.94 frystyk 709:          return HT_OK;
1.131 frystyk 710:        else if (status == HT_CONTINUE) {
1.130 frystyk 711:          if (PROT_TRACE) HTTrace("HTTP........ Continuing\n");
 712:          ops = FD_WRITE;
 713:          continue;
 714:        } else if (status==HT_LOADED || status==HT_CLOSED)
1.94 frystyk 715:          http->state = http->next;     /* Jump to next state */
 716:        else
 717:          http->state = HTTP_ERROR;
1.90 frystyk 718:      } else {
1.78 frystyk 719:        http->state = HTTP_ERROR;
1.90 frystyk 720:      }
1.71 frystyk 721:      break;
1.80 frystyk 722:      
1.91 frystyk 723:     case HTTP_NOT_MODIFIED:
 724:      http->state = HTTP_ERROR;
 725:      break;
 726: 
1.112 frystyk 727:     case HTTP_PERM_REDIRECT:
 728:      if (HTRequest_isPostWeb(request)) {
 729:        if (HTRequest_isDestination(request)) {
1.126 frystyk 730:          HTRequest * source = HTRequest_source(request);
 731:          HTLink * link =
1.127 frystyk 732:            HTLink_find((HTAnchor *)HTRequest_anchor(source),
1.112 frystyk 733:                     (HTAnchor *) anchor);
 734:          HTLink_setResult(link, HT_LINK_ERROR);
 735:        }
1.88 frystyk 736:        HTRequest_killPostWeb(request);
1.112 frystyk 737:      }
 738:      HTTPCleanup(request, HT_PERM_REDIRECT);
 739:      return HT_OK;
 740:      break;
 741: 
1.88 frystyk 742: 
1.112 frystyk 743:     case HTTP_TEMP_REDIRECT:
 744:      if (HTRequest_isPostWeb(request)) {
 745:        if (HTRequest_isDestination(request)) {
1.126 frystyk 746:          HTRequest * source = HTRequest_source(request);
1.112 frystyk 747:          HTLink *link =
1.127 frystyk 748:            HTLink_find((HTAnchor *)HTRequest_anchor(source),
1.112 frystyk 749:                     (HTAnchor *) anchor);
 750:          HTLink_setResult(link, HT_LINK_ERROR);
1.58 frystyk 751:        }
1.112 frystyk 752:        HTRequest_killPostWeb(request);
1.71 frystyk 753:      }
1.112 frystyk 754:      HTTPCleanup(request, HT_TEMP_REDIRECT);
 755:      return HT_OK;
1.71 frystyk 756:      break;
1.112 frystyk 757: 
1.71 frystyk 758:     case HTTP_AA:
1.112 frystyk 759:      if (HTRequest_isPostWeb(request)) {
 760:        if (HTRequest_isDestination(request)) {
1.126 frystyk 761:          HTRequest * source = HTRequest_source(request);
1.112 frystyk 762:          HTLink *link =
1.127 frystyk 763:            HTLink_find((HTAnchor *)HTRequest_anchor(source),
1.112 frystyk 764:                     (HTAnchor *) anchor);
 765:          HTLink_setResult(link, HT_LINK_ERROR);
 766:        }
1.88 frystyk 767:        HTRequest_killPostWeb(request);
1.71 frystyk 768:      }
1.112 frystyk 769:      HTTPCleanup(request, HT_NO_ACCESS);
1.131 frystyk 770:      return HT_OK;
 771:      break;
 772: 
 773:     case HTTP_PROXY_AA:
 774:      if (HTRequest_isPostWeb(request)) {
 775:        if (HTRequest_isDestination(request)) {
 776:          HTRequest * source = HTRequest_source(request);
 777:          HTLink *link =
 778:            HTLink_find((HTAnchor *)HTRequest_anchor(source),
 779:                     (HTAnchor *) anchor);
 780:          HTLink_setResult(link, HT_LINK_ERROR);
 781:        }
 782:        HTRequest_killPostWeb(request);
 783:      }
 784:      HTTPCleanup(request, HT_NO_PROXY_ACCESS);
1.112 frystyk 785:      return HT_OK;
1.71 frystyk 786:      break;
1.112 frystyk 787: 
1.71 frystyk 788:     case HTTP_GOT_DATA:
1.88 frystyk 789:      if (HTRequest_isPostWeb(request)) {
1.91 frystyk 790:        if (HTRequest_isDestination(request)) {
1.126 frystyk 791:          HTRequest * source = HTRequest_source(request);
1.91 frystyk 792:          HTLink *link =
1.127 frystyk 793:            HTLink_find((HTAnchor *)HTRequest_anchor(source),
1.112 frystyk 794:                     (HTAnchor *) anchor);
1.109 frystyk 795:          HTLink_setResult(link, HT_LINK_OK);
1.91 frystyk 796:        }
1.112 frystyk 797:      }
 798:      HTTPCleanup(request, HT_LOADED);
1.94 frystyk 799:      return HT_OK;
1.71 frystyk 800:      break;
 801:      
 802:     case HTTP_NO_DATA:
1.88 frystyk 803:      if (HTRequest_isPostWeb(request)) {
1.91 frystyk 804:        if (HTRequest_isDestination(request)) {
1.126 frystyk 805:          HTRequest * source = HTRequest_source(request);
1.91 frystyk 806:          HTLink *link =
1.127 frystyk 807:            HTLink_find((HTAnchor *)HTRequest_anchor(source),
1.112 frystyk 808:                     (HTAnchor *) anchor);
1.109 frystyk 809:          HTLink_setResult(link, HT_LINK_OK);
1.91 frystyk 810:        }
1.112 frystyk 811:      }
 812:      HTTPCleanup(request, HT_NO_DATA);
1.94 frystyk 813:      return HT_OK;
1.71 frystyk 814:      break;
1.80 frystyk 815:      
1.94 frystyk 816:     case HTTP_RETRY:
1.88 frystyk 817:      if (HTRequest_isPostWeb(request)) {
1.91 frystyk 818:        if (HTRequest_isDestination(request)) {
1.126 frystyk 819:          HTRequest * source = HTRequest_source(request);
1.91 frystyk 820:          HTLink *link = 
1.127 frystyk 821:            HTLink_find((HTAnchor *)HTRequest_anchor(source),
1.126 frystyk 822:                     (HTAnchor *) anchor);
1.109 frystyk 823:          HTLink_setResult(link, HT_LINK_ERROR);
1.91 frystyk 824:        }
1.112 frystyk 825:        HTRequest_killPostWeb(request);
 826:      }
 827:      HTTPCleanup(request, HT_RETRY);
1.94 frystyk 828:      return HT_OK;
1.81 frystyk 829:      break;
 830: 
1.71 frystyk 831:     case HTTP_ERROR:
1.88 frystyk 832:      if (HTRequest_isPostWeb(request)) {
1.91 frystyk 833:        if (HTRequest_isDestination(request)) {
1.126 frystyk 834:          HTRequest * source = HTRequest_source(request);
1.91 frystyk 835:          HTLink *link =
1.127 frystyk 836:            HTLink_find((HTAnchor *)HTRequest_anchor(source),
1.112 frystyk 837:                     (HTAnchor *) anchor);
1.109 frystyk 838:          HTLink_setResult(link, HT_LINK_ERROR);
1.91 frystyk 839:        }
1.112 frystyk 840:        HTRequest_killPostWeb(request);
 841:      }
1.120 eric 842:      HTTPCleanup(request, status);
1.94 frystyk 843:      return HT_OK;
1.71 frystyk 844:      break;
 845:    }
 846:   } /* End of while(1) */
 847: }  
1.88 frystyk 848: 
1.21 luotonen 849: 

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