Coverage Report

Created: 2023-06-07 07:02

/src/curl/lib/tftp.c
Line
Count
Source (jump to first uncovered line)
1
/***************************************************************************
2
 *                                  _   _ ____  _
3
 *  Project                     ___| | | |  _ \| |
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 *                             / __| | | | |_) | |
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 *                            | (__| |_| |  _ <| |___
6
 *                             \___|\___/|_| \_\_____|
7
 *
8
 * Copyright (C) Daniel Stenberg, <daniel@haxx.se>, et al.
9
 *
10
 * This software is licensed as described in the file COPYING, which
11
 * you should have received as part of this distribution. The terms
12
 * are also available at https://curl.se/docs/copyright.html.
13
 *
14
 * You may opt to use, copy, modify, merge, publish, distribute and/or sell
15
 * copies of the Software, and permit persons to whom the Software is
16
 * furnished to do so, under the terms of the COPYING file.
17
 *
18
 * This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
19
 * KIND, either express or implied.
20
 *
21
 * SPDX-License-Identifier: curl
22
 *
23
 ***************************************************************************/
24
25
#include "curl_setup.h"
26
27
#ifndef CURL_DISABLE_TFTP
28
29
#ifdef HAVE_NETINET_IN_H
30
#include <netinet/in.h>
31
#endif
32
#ifdef HAVE_NETDB_H
33
#include <netdb.h>
34
#endif
35
#ifdef HAVE_ARPA_INET_H
36
#include <arpa/inet.h>
37
#endif
38
#ifdef HAVE_NET_IF_H
39
#include <net/if.h>
40
#endif
41
#ifdef HAVE_SYS_IOCTL_H
42
#include <sys/ioctl.h>
43
#endif
44
45
#ifdef HAVE_SYS_PARAM_H
46
#include <sys/param.h>
47
#endif
48
49
#include "urldata.h"
50
#include <curl/curl.h>
51
#include "cf-socket.h"
52
#include "transfer.h"
53
#include "sendf.h"
54
#include "tftp.h"
55
#include "progress.h"
56
#include "connect.h"
57
#include "strerror.h"
58
#include "sockaddr.h" /* required for Curl_sockaddr_storage */
59
#include "multiif.h"
60
#include "url.h"
61
#include "strcase.h"
62
#include "speedcheck.h"
63
#include "select.h"
64
#include "escape.h"
65
66
/* The last 3 #include files should be in this order */
67
#include "curl_printf.h"
68
#include "curl_memory.h"
69
#include "memdebug.h"
70
71
/* RFC2348 allows the block size to be negotiated */
72
0
#define TFTP_BLKSIZE_DEFAULT 512
73
0
#define TFTP_BLKSIZE_MIN 8
74
0
#define TFTP_BLKSIZE_MAX 65464
75
0
#define TFTP_OPTION_BLKSIZE "blksize"
76
77
/* from RFC2349: */
78
0
#define TFTP_OPTION_TSIZE    "tsize"
79
0
#define TFTP_OPTION_INTERVAL "timeout"
80
81
typedef enum {
82
  TFTP_MODE_NETASCII = 0,
83
  TFTP_MODE_OCTET
84
} tftp_mode_t;
85
86
typedef enum {
87
  TFTP_STATE_START = 0,
88
  TFTP_STATE_RX,
89
  TFTP_STATE_TX,
90
  TFTP_STATE_FIN
91
} tftp_state_t;
92
93
typedef enum {
94
  TFTP_EVENT_NONE = -1,
95
  TFTP_EVENT_INIT = 0,
96
  TFTP_EVENT_RRQ = 1,
97
  TFTP_EVENT_WRQ = 2,
98
  TFTP_EVENT_DATA = 3,
99
  TFTP_EVENT_ACK = 4,
100
  TFTP_EVENT_ERROR = 5,
101
  TFTP_EVENT_OACK = 6,
102
  TFTP_EVENT_TIMEOUT
103
} tftp_event_t;
104
105
typedef enum {
106
  TFTP_ERR_UNDEF = 0,
107
  TFTP_ERR_NOTFOUND,
108
  TFTP_ERR_PERM,
109
  TFTP_ERR_DISKFULL,
110
  TFTP_ERR_ILLEGAL,
111
  TFTP_ERR_UNKNOWNID,
112
  TFTP_ERR_EXISTS,
113
  TFTP_ERR_NOSUCHUSER,  /* This will never be triggered by this code */
114
115
  /* The remaining error codes are internal to curl */
116
  TFTP_ERR_NONE = -100,
117
  TFTP_ERR_TIMEOUT,
118
  TFTP_ERR_NORESPONSE
119
} tftp_error_t;
120
121
struct tftp_packet {
122
  unsigned char *data;
123
};
124
125
struct tftp_state_data {
126
  tftp_state_t    state;
127
  tftp_mode_t     mode;
128
  tftp_error_t    error;
129
  tftp_event_t    event;
130
  struct Curl_easy *data;
131
  curl_socket_t   sockfd;
132
  int             retries;
133
  int             retry_time;
134
  int             retry_max;
135
  time_t          rx_time;
136
  struct Curl_sockaddr_storage   local_addr;
137
  struct Curl_sockaddr_storage   remote_addr;
138
  curl_socklen_t  remote_addrlen;
139
  int             rbytes;
140
  int             sbytes;
141
  int             blksize;
142
  int             requested_blksize;
143
  unsigned short  block;
144
  struct tftp_packet rpacket;
145
  struct tftp_packet spacket;
146
};
147
148
149
/* Forward declarations */
150
static CURLcode tftp_rx(struct tftp_state_data *state, tftp_event_t event);
151
static CURLcode tftp_tx(struct tftp_state_data *state, tftp_event_t event);
152
static CURLcode tftp_connect(struct Curl_easy *data, bool *done);
153
static CURLcode tftp_disconnect(struct Curl_easy *data,
154
                                struct connectdata *conn,
155
                                bool dead_connection);
156
static CURLcode tftp_do(struct Curl_easy *data, bool *done);
157
static CURLcode tftp_done(struct Curl_easy *data,
158
                          CURLcode, bool premature);
159
static CURLcode tftp_setup_connection(struct Curl_easy *data,
160
                                      struct connectdata *conn);
161
static CURLcode tftp_multi_statemach(struct Curl_easy *data, bool *done);
162
static CURLcode tftp_doing(struct Curl_easy *data, bool *dophase_done);
163
static int tftp_getsock(struct Curl_easy *data, struct connectdata *conn,
164
                        curl_socket_t *socks);
165
static CURLcode tftp_translate_code(tftp_error_t error);
166
167
168
/*
169
 * TFTP protocol handler.
170
 */
171
172
const struct Curl_handler Curl_handler_tftp = {
173
  "TFTP",                               /* scheme */
174
  tftp_setup_connection,                /* setup_connection */
175
  tftp_do,                              /* do_it */
176
  tftp_done,                            /* done */
177
  ZERO_NULL,                            /* do_more */
178
  tftp_connect,                         /* connect_it */
179
  tftp_multi_statemach,                 /* connecting */
180
  tftp_doing,                           /* doing */
181
  tftp_getsock,                         /* proto_getsock */
182
  tftp_getsock,                         /* doing_getsock */
183
  ZERO_NULL,                            /* domore_getsock */
184
  ZERO_NULL,                            /* perform_getsock */
185
  tftp_disconnect,                      /* disconnect */
186
  ZERO_NULL,                            /* readwrite */
187
  ZERO_NULL,                            /* connection_check */
188
  ZERO_NULL,                            /* attach connection */
189
  PORT_TFTP,                            /* defport */
190
  CURLPROTO_TFTP,                       /* protocol */
191
  CURLPROTO_TFTP,                       /* family */
192
  PROTOPT_NOTCPPROXY | PROTOPT_NOURLQUERY /* flags */
193
};
194
195
/**********************************************************
196
 *
197
 * tftp_set_timeouts -
198
 *
199
 * Set timeouts based on state machine state.
200
 * Use user provided connect timeouts until DATA or ACK
201
 * packet is received, then use user-provided transfer timeouts
202
 *
203
 *
204
 **********************************************************/
205
static CURLcode tftp_set_timeouts(struct tftp_state_data *state)
206
0
{
207
0
  time_t maxtime, timeout;
208
0
  timediff_t timeout_ms;
209
0
  bool start = (state->state == TFTP_STATE_START) ? TRUE : FALSE;
210
211
  /* Compute drop-dead time */
212
0
  timeout_ms = Curl_timeleft(state->data, NULL, start);
213
214
0
  if(timeout_ms < 0) {
215
    /* time-out, bail out, go home */
216
0
    failf(state->data, "Connection time-out");
217
0
    return CURLE_OPERATION_TIMEDOUT;
218
0
  }
219
220
0
  if(timeout_ms > 0)
221
0
    maxtime = (time_t)(timeout_ms + 500) / 1000;
222
0
  else
223
0
    maxtime = 3600; /* use for calculating block timeouts */
224
225
  /* Set per-block timeout to total */
226
0
  timeout = maxtime;
227
228
  /* Average reposting an ACK after 5 seconds */
229
0
  state->retry_max = (int)timeout/5;
230
231
  /* But bound the total number */
232
0
  if(state->retry_max<3)
233
0
    state->retry_max = 3;
234
235
0
  if(state->retry_max>50)
236
0
    state->retry_max = 50;
237
238
  /* Compute the re-ACK interval to suit the timeout */
239
0
  state->retry_time = (int)(timeout/state->retry_max);
240
0
  if(state->retry_time<1)
241
0
    state->retry_time = 1;
242
243
0
  infof(state->data,
244
0
        "set timeouts for state %d; Total % " CURL_FORMAT_CURL_OFF_T
245
0
        ", retry %d maxtry %d",
246
0
        (int)state->state, timeout_ms, state->retry_time, state->retry_max);
247
248
  /* init RX time */
249
0
  time(&state->rx_time);
250
251
0
  return CURLE_OK;
252
0
}
253
254
/**********************************************************
255
 *
256
 * tftp_set_send_first
257
 *
258
 * Event handler for the START state
259
 *
260
 **********************************************************/
261
262
static void setpacketevent(struct tftp_packet *packet, unsigned short num)
263
0
{
264
0
  packet->data[0] = (unsigned char)(num >> 8);
265
0
  packet->data[1] = (unsigned char)(num & 0xff);
266
0
}
267
268
269
static void setpacketblock(struct tftp_packet *packet, unsigned short num)
270
0
{
271
0
  packet->data[2] = (unsigned char)(num >> 8);
272
0
  packet->data[3] = (unsigned char)(num & 0xff);
273
0
}
274
275
static unsigned short getrpacketevent(const struct tftp_packet *packet)
276
0
{
277
0
  return (unsigned short)((packet->data[0] << 8) | packet->data[1]);
278
0
}
279
280
static unsigned short getrpacketblock(const struct tftp_packet *packet)
281
0
{
282
0
  return (unsigned short)((packet->data[2] << 8) | packet->data[3]);
283
0
}
284
285
static size_t tftp_strnlen(const char *string, size_t maxlen)
286
0
{
287
0
  const char *end = memchr(string, '\0', maxlen);
288
0
  return end ? (size_t) (end - string) : maxlen;
289
0
}
290
291
static const char *tftp_option_get(const char *buf, size_t len,
292
                                   const char **option, const char **value)
293
0
{
294
0
  size_t loc;
295
296
0
  loc = tftp_strnlen(buf, len);
297
0
  loc++; /* NULL term */
298
299
0
  if(loc >= len)
300
0
    return NULL;
301
0
  *option = buf;
302
303
0
  loc += tftp_strnlen(buf + loc, len-loc);
304
0
  loc++; /* NULL term */
305
306
0
  if(loc > len)
307
0
    return NULL;
308
0
  *value = &buf[strlen(*option) + 1];
309
310
0
  return &buf[loc];
311
0
}
312
313
static CURLcode tftp_parse_option_ack(struct tftp_state_data *state,
314
                                      const char *ptr, int len)
315
0
{
316
0
  const char *tmp = ptr;
317
0
  struct Curl_easy *data = state->data;
318
319
  /* if OACK doesn't contain blksize option, the default (512) must be used */
320
0
  state->blksize = TFTP_BLKSIZE_DEFAULT;
321
322
0
  while(tmp < ptr + len) {
323
0
    const char *option, *value;
324
325
0
    tmp = tftp_option_get(tmp, ptr + len - tmp, &option, &value);
326
0
    if(!tmp) {
327
0
      failf(data, "Malformed ACK packet, rejecting");
328
0
      return CURLE_TFTP_ILLEGAL;
329
0
    }
330
331
0
    infof(data, "got option=(%s) value=(%s)", option, value);
332
333
0
    if(checkprefix(TFTP_OPTION_BLKSIZE, option)) {
334
0
      long blksize;
335
336
0
      blksize = strtol(value, NULL, 10);
337
338
0
      if(!blksize) {
339
0
        failf(data, "invalid blocksize value in OACK packet");
340
0
        return CURLE_TFTP_ILLEGAL;
341
0
      }
342
0
      if(blksize > TFTP_BLKSIZE_MAX) {
343
0
        failf(data, "%s (%d)", "blksize is larger than max supported",
344
0
              TFTP_BLKSIZE_MAX);
345
0
        return CURLE_TFTP_ILLEGAL;
346
0
      }
347
0
      else if(blksize < TFTP_BLKSIZE_MIN) {
348
0
        failf(data, "%s (%d)", "blksize is smaller than min supported",
349
0
              TFTP_BLKSIZE_MIN);
350
0
        return CURLE_TFTP_ILLEGAL;
351
0
      }
352
0
      else if(blksize > state->requested_blksize) {
353
        /* could realloc pkt buffers here, but the spec doesn't call out
354
         * support for the server requesting a bigger blksize than the client
355
         * requests */
356
0
        failf(data, "%s (%ld)",
357
0
              "server requested blksize larger than allocated", blksize);
358
0
        return CURLE_TFTP_ILLEGAL;
359
0
      }
360
361
0
      state->blksize = (int)blksize;
362
0
      infof(data, "%s (%d) %s (%d)", "blksize parsed from OACK",
363
0
            state->blksize, "requested", state->requested_blksize);
364
0
    }
365
0
    else if(checkprefix(TFTP_OPTION_TSIZE, option)) {
366
0
      long tsize = 0;
367
368
0
      tsize = strtol(value, NULL, 10);
369
0
      infof(data, "%s (%ld)", "tsize parsed from OACK", tsize);
370
371
      /* tsize should be ignored on upload: Who cares about the size of the
372
         remote file? */
373
0
      if(!data->state.upload) {
374
0
        if(!tsize) {
375
0
          failf(data, "invalid tsize -:%s:- value in OACK packet", value);
376
0
          return CURLE_TFTP_ILLEGAL;
377
0
        }
378
0
        Curl_pgrsSetDownloadSize(data, tsize);
379
0
      }
380
0
    }
381
0
  }
382
383
0
  return CURLE_OK;
384
0
}
385
386
static CURLcode tftp_option_add(struct tftp_state_data *state, size_t *csize,
387
                                char *buf, const char *option)
388
0
{
389
0
  if(( strlen(option) + *csize + 1) > (size_t)state->blksize)
390
0
    return CURLE_TFTP_ILLEGAL;
391
0
  strcpy(buf, option);
392
0
  *csize += strlen(option) + 1;
393
0
  return CURLE_OK;
394
0
}
395
396
static CURLcode tftp_connect_for_tx(struct tftp_state_data *state,
397
                                    tftp_event_t event)
398
0
{
399
0
  CURLcode result;
400
0
#ifndef CURL_DISABLE_VERBOSE_STRINGS
401
0
  struct Curl_easy *data = state->data;
402
403
0
  infof(data, "%s", "Connected for transmit");
404
0
#endif
405
0
  state->state = TFTP_STATE_TX;
406
0
  result = tftp_set_timeouts(state);
407
0
  if(result)
408
0
    return result;
409
0
  return tftp_tx(state, event);
410
0
}
411
412
static CURLcode tftp_connect_for_rx(struct tftp_state_data *state,
413
                                    tftp_event_t event)
414
0
{
415
0
  CURLcode result;
416
0
#ifndef CURL_DISABLE_VERBOSE_STRINGS
417
0
  struct Curl_easy *data = state->data;
418
419
0
  infof(data, "%s", "Connected for receive");
420
0
#endif
421
0
  state->state = TFTP_STATE_RX;
422
0
  result = tftp_set_timeouts(state);
423
0
  if(result)
424
0
    return result;
425
0
  return tftp_rx(state, event);
426
0
}
427
428
static CURLcode tftp_send_first(struct tftp_state_data *state,
429
                                tftp_event_t event)
430
0
{
431
0
  size_t sbytes;
432
0
  ssize_t senddata;
433
0
  const char *mode = "octet";
434
0
  char *filename;
435
0
  struct Curl_easy *data = state->data;
436
0
  CURLcode result = CURLE_OK;
437
438
  /* Set ascii mode if -B flag was used */
439
0
  if(data->state.prefer_ascii)
440
0
    mode = "netascii";
441
442
0
  switch(event) {
443
444
0
  case TFTP_EVENT_INIT:    /* Send the first packet out */
445
0
  case TFTP_EVENT_TIMEOUT: /* Resend the first packet out */
446
    /* Increment the retry counter, quit if over the limit */
447
0
    state->retries++;
448
0
    if(state->retries>state->retry_max) {
449
0
      state->error = TFTP_ERR_NORESPONSE;
450
0
      state->state = TFTP_STATE_FIN;
451
0
      return result;
452
0
    }
453
454
0
    if(data->state.upload) {
455
      /* If we are uploading, send an WRQ */
456
0
      setpacketevent(&state->spacket, TFTP_EVENT_WRQ);
457
0
      state->data->req.upload_fromhere =
458
0
        (char *)state->spacket.data + 4;
459
0
      if(data->state.infilesize != -1)
460
0
        Curl_pgrsSetUploadSize(data, data->state.infilesize);
461
0
    }
462
0
    else {
463
      /* If we are downloading, send an RRQ */
464
0
      setpacketevent(&state->spacket, TFTP_EVENT_RRQ);
465
0
    }
466
    /* As RFC3617 describes the separator slash is not actually part of the
467
       file name so we skip the always-present first letter of the path
468
       string. */
469
0
    result = Curl_urldecode(&state->data->state.up.path[1], 0,
470
0
                            &filename, NULL, REJECT_ZERO);
471
0
    if(result)
472
0
      return result;
473
474
0
    if(strlen(filename) > (state->blksize - strlen(mode) - 4)) {
475
0
      failf(data, "TFTP file name too long");
476
0
      free(filename);
477
0
      return CURLE_TFTP_ILLEGAL; /* too long file name field */
478
0
    }
479
480
0
    msnprintf((char *)state->spacket.data + 2,
481
0
              state->blksize,
482
0
              "%s%c%s%c", filename, '\0',  mode, '\0');
483
0
    sbytes = 4 + strlen(filename) + strlen(mode);
484
485
    /* optional addition of TFTP options */
486
0
    if(!data->set.tftp_no_options) {
487
0
      char buf[64];
488
      /* add tsize option */
489
0
      if(data->state.upload && (data->state.infilesize != -1))
490
0
        msnprintf(buf, sizeof(buf), "%" CURL_FORMAT_CURL_OFF_T,
491
0
                  data->state.infilesize);
492
0
      else
493
0
        strcpy(buf, "0"); /* the destination is large enough */
494
495
0
      result = tftp_option_add(state, &sbytes,
496
0
                               (char *)state->spacket.data + sbytes,
497
0
                               TFTP_OPTION_TSIZE);
498
0
      if(result == CURLE_OK)
499
0
        result = tftp_option_add(state, &sbytes,
500
0
                                 (char *)state->spacket.data + sbytes, buf);
501
502
      /* add blksize option */
503
0
      msnprintf(buf, sizeof(buf), "%d", state->requested_blksize);
504
0
      if(result == CURLE_OK)
505
0
        result = tftp_option_add(state, &sbytes,
506
0
                                 (char *)state->spacket.data + sbytes,
507
0
                                 TFTP_OPTION_BLKSIZE);
508
0
      if(result == CURLE_OK)
509
0
        result = tftp_option_add(state, &sbytes,
510
0
                                 (char *)state->spacket.data + sbytes, buf);
511
512
      /* add timeout option */
513
0
      msnprintf(buf, sizeof(buf), "%d", state->retry_time);
514
0
      if(result == CURLE_OK)
515
0
        result = tftp_option_add(state, &sbytes,
516
0
                                 (char *)state->spacket.data + sbytes,
517
0
                                 TFTP_OPTION_INTERVAL);
518
0
      if(result == CURLE_OK)
519
0
        result = tftp_option_add(state, &sbytes,
520
0
                                 (char *)state->spacket.data + sbytes, buf);
521
522
0
      if(result != CURLE_OK) {
523
0
        failf(data, "TFTP buffer too small for options");
524
0
        free(filename);
525
0
        return CURLE_TFTP_ILLEGAL;
526
0
      }
527
0
    }
528
529
    /* the typecase for the 3rd argument is mostly for systems that do
530
       not have a size_t argument, like older unixes that want an 'int' */
531
0
    senddata = sendto(state->sockfd, (void *)state->spacket.data,
532
0
                      (SEND_TYPE_ARG3)sbytes, 0,
533
0
                      &data->conn->remote_addr->sa_addr,
534
0
                      data->conn->remote_addr->addrlen);
535
0
    if(senddata != (ssize_t)sbytes) {
536
0
      char buffer[STRERROR_LEN];
537
0
      failf(data, "%s", Curl_strerror(SOCKERRNO, buffer, sizeof(buffer)));
538
0
    }
539
0
    free(filename);
540
0
    break;
541
542
0
  case TFTP_EVENT_OACK:
543
0
    if(data->state.upload) {
544
0
      result = tftp_connect_for_tx(state, event);
545
0
    }
546
0
    else {
547
0
      result = tftp_connect_for_rx(state, event);
548
0
    }
549
0
    break;
550
551
0
  case TFTP_EVENT_ACK: /* Connected for transmit */
552
0
    result = tftp_connect_for_tx(state, event);
553
0
    break;
554
555
0
  case TFTP_EVENT_DATA: /* Connected for receive */
556
0
    result = tftp_connect_for_rx(state, event);
557
0
    break;
558
559
0
  case TFTP_EVENT_ERROR:
560
0
    state->state = TFTP_STATE_FIN;
561
0
    break;
562
563
0
  default:
564
0
    failf(state->data, "tftp_send_first: internal error");
565
0
    break;
566
0
  }
567
568
0
  return result;
569
0
}
570
571
/* the next blocknum is x + 1 but it needs to wrap at an unsigned 16bit
572
   boundary */
573
0
#define NEXT_BLOCKNUM(x) (((x) + 1)&0xffff)
574
575
/**********************************************************
576
 *
577
 * tftp_rx
578
 *
579
 * Event handler for the RX state
580
 *
581
 **********************************************************/
582
static CURLcode tftp_rx(struct tftp_state_data *state,
583
                        tftp_event_t event)
584
0
{
585
0
  ssize_t sbytes;
586
0
  int rblock;
587
0
  struct Curl_easy *data = state->data;
588
0
  char buffer[STRERROR_LEN];
589
590
0
  switch(event) {
591
592
0
  case TFTP_EVENT_DATA:
593
    /* Is this the block we expect? */
594
0
    rblock = getrpacketblock(&state->rpacket);
595
0
    if(NEXT_BLOCKNUM(state->block) == rblock) {
596
      /* This is the expected block.  Reset counters and ACK it. */
597
0
      state->retries = 0;
598
0
    }
599
0
    else if(state->block == rblock) {
600
      /* This is the last recently received block again. Log it and ACK it
601
         again. */
602
0
      infof(data, "Received last DATA packet block %d again.", rblock);
603
0
    }
604
0
    else {
605
      /* totally unexpected, just log it */
606
0
      infof(data,
607
0
            "Received unexpected DATA packet block %d, expecting block %d",
608
0
            rblock, NEXT_BLOCKNUM(state->block));
609
0
      break;
610
0
    }
611
612
    /* ACK this block. */
613
0
    state->block = (unsigned short)rblock;
614
0
    setpacketevent(&state->spacket, TFTP_EVENT_ACK);
615
0
    setpacketblock(&state->spacket, state->block);
616
0
    sbytes = sendto(state->sockfd, (void *)state->spacket.data,
617
0
                    4, SEND_4TH_ARG,
618
0
                    (struct sockaddr *)&state->remote_addr,
619
0
                    state->remote_addrlen);
620
0
    if(sbytes < 0) {
621
0
      failf(data, "%s", Curl_strerror(SOCKERRNO, buffer, sizeof(buffer)));
622
0
      return CURLE_SEND_ERROR;
623
0
    }
624
625
    /* Check if completed (That is, a less than full packet is received) */
626
0
    if(state->rbytes < (ssize_t)state->blksize + 4) {
627
0
      state->state = TFTP_STATE_FIN;
628
0
    }
629
0
    else {
630
0
      state->state = TFTP_STATE_RX;
631
0
    }
632
0
    time(&state->rx_time);
633
0
    break;
634
635
0
  case TFTP_EVENT_OACK:
636
    /* ACK option acknowledgement so we can move on to data */
637
0
    state->block = 0;
638
0
    state->retries = 0;
639
0
    setpacketevent(&state->spacket, TFTP_EVENT_ACK);
640
0
    setpacketblock(&state->spacket, state->block);
641
0
    sbytes = sendto(state->sockfd, (void *)state->spacket.data,
642
0
                    4, SEND_4TH_ARG,
643
0
                    (struct sockaddr *)&state->remote_addr,
644
0
                    state->remote_addrlen);
645
0
    if(sbytes < 0) {
646
0
      failf(data, "%s", Curl_strerror(SOCKERRNO, buffer, sizeof(buffer)));
647
0
      return CURLE_SEND_ERROR;
648
0
    }
649
650
    /* we're ready to RX data */
651
0
    state->state = TFTP_STATE_RX;
652
0
    time(&state->rx_time);
653
0
    break;
654
655
0
  case TFTP_EVENT_TIMEOUT:
656
    /* Increment the retry count and fail if over the limit */
657
0
    state->retries++;
658
0
    infof(data,
659
0
          "Timeout waiting for block %d ACK.  Retries = %d",
660
0
          NEXT_BLOCKNUM(state->block), state->retries);
661
0
    if(state->retries > state->retry_max) {
662
0
      state->error = TFTP_ERR_TIMEOUT;
663
0
      state->state = TFTP_STATE_FIN;
664
0
    }
665
0
    else {
666
      /* Resend the previous ACK */
667
0
      sbytes = sendto(state->sockfd, (void *)state->spacket.data,
668
0
                      4, SEND_4TH_ARG,
669
0
                      (struct sockaddr *)&state->remote_addr,
670
0
                      state->remote_addrlen);
671
0
      if(sbytes<0) {
672
0
        failf(data, "%s", Curl_strerror(SOCKERRNO, buffer, sizeof(buffer)));
673
0
        return CURLE_SEND_ERROR;
674
0
      }
675
0
    }
676
0
    break;
677
678
0
  case TFTP_EVENT_ERROR:
679
0
    setpacketevent(&state->spacket, TFTP_EVENT_ERROR);
680
0
    setpacketblock(&state->spacket, state->block);
681
0
    (void)sendto(state->sockfd, (void *)state->spacket.data,
682
0
                 4, SEND_4TH_ARG,
683
0
                 (struct sockaddr *)&state->remote_addr,
684
0
                 state->remote_addrlen);
685
    /* don't bother with the return code, but if the socket is still up we
686
     * should be a good TFTP client and let the server know we're done */
687
0
    state->state = TFTP_STATE_FIN;
688
0
    break;
689
690
0
  default:
691
0
    failf(data, "%s", "tftp_rx: internal error");
692
0
    return CURLE_TFTP_ILLEGAL; /* not really the perfect return code for
693
                                  this */
694
0
  }
695
0
  return CURLE_OK;
696
0
}
697
698
/**********************************************************
699
 *
700
 * tftp_tx
701
 *
702
 * Event handler for the TX state
703
 *
704
 **********************************************************/
705
static CURLcode tftp_tx(struct tftp_state_data *state, tftp_event_t event)
706
0
{
707
0
  struct Curl_easy *data = state->data;
708
0
  ssize_t sbytes;
709
0
  CURLcode result = CURLE_OK;
710
0
  struct SingleRequest *k = &data->req;
711
0
  size_t cb; /* Bytes currently read */
712
0
  char buffer[STRERROR_LEN];
713
714
0
  switch(event) {
715
716
0
  case TFTP_EVENT_ACK:
717
0
  case TFTP_EVENT_OACK:
718
0
    if(event == TFTP_EVENT_ACK) {
719
      /* Ack the packet */
720
0
      int rblock = getrpacketblock(&state->rpacket);
721
722
0
      if(rblock != state->block &&
723
         /* There's a bug in tftpd-hpa that causes it to send us an ack for
724
          * 65535 when the block number wraps to 0. So when we're expecting
725
          * 0, also accept 65535. See
726
          * https://www.syslinux.org/archives/2010-September/015612.html
727
          * */
728
0
         !(state->block == 0 && rblock == 65535)) {
729
        /* This isn't the expected block.  Log it and up the retry counter */
730
0
        infof(data, "Received ACK for block %d, expecting %d",
731
0
              rblock, state->block);
732
0
        state->retries++;
733
        /* Bail out if over the maximum */
734
0
        if(state->retries>state->retry_max) {
735
0
          failf(data, "tftp_tx: giving up waiting for block %d ack",
736
0
                state->block);
737
0
          result = CURLE_SEND_ERROR;
738
0
        }
739
0
        else {
740
          /* Re-send the data packet */
741
0
          sbytes = sendto(state->sockfd, (void *)state->spacket.data,
742
0
                          4 + state->sbytes, SEND_4TH_ARG,
743
0
                          (struct sockaddr *)&state->remote_addr,
744
0
                          state->remote_addrlen);
745
          /* Check all sbytes were sent */
746
0
          if(sbytes<0) {
747
0
            failf(data, "%s", Curl_strerror(SOCKERRNO,
748
0
                                            buffer, sizeof(buffer)));
749
0
            result = CURLE_SEND_ERROR;
750
0
          }
751
0
        }
752
753
0
        return result;
754
0
      }
755
      /* This is the expected packet.  Reset the counters and send the next
756
         block */
757
0
      time(&state->rx_time);
758
0
      state->block++;
759
0
    }
760
0
    else
761
0
      state->block = 1; /* first data block is 1 when using OACK */
762
763
0
    state->retries = 0;
764
0
    setpacketevent(&state->spacket, TFTP_EVENT_DATA);
765
0
    setpacketblock(&state->spacket, state->block);
766
0
    if(state->block > 1 && state->sbytes < state->blksize) {
767
0
      state->state = TFTP_STATE_FIN;
768
0
      return CURLE_OK;
769
0
    }
770
771
    /* TFTP considers data block size < 512 bytes as an end of session. So
772
     * in some cases we must wait for additional data to build full (512 bytes)
773
     * data block.
774
     * */
775
0
    state->sbytes = 0;
776
0
    state->data->req.upload_fromhere = (char *)state->spacket.data + 4;
777
0
    do {
778
0
      result = Curl_fillreadbuffer(data, state->blksize - state->sbytes, &cb);
779
0
      if(result)
780
0
        return result;
781
0
      state->sbytes += (int)cb;
782
0
      state->data->req.upload_fromhere += cb;
783
0
    } while(state->sbytes < state->blksize && cb);
784
785
0
    sbytes = sendto(state->sockfd, (void *) state->spacket.data,
786
0
                    4 + state->sbytes, SEND_4TH_ARG,
787
0
                    (struct sockaddr *)&state->remote_addr,
788
0
                    state->remote_addrlen);
789
    /* Check all sbytes were sent */
790
0
    if(sbytes<0) {
791
0
      failf(data, "%s", Curl_strerror(SOCKERRNO, buffer, sizeof(buffer)));
792
0
      return CURLE_SEND_ERROR;
793
0
    }
794
    /* Update the progress meter */
795
0
    k->writebytecount += state->sbytes;
796
0
    Curl_pgrsSetUploadCounter(data, k->writebytecount);
797
0
    break;
798
799
0
  case TFTP_EVENT_TIMEOUT:
800
    /* Increment the retry counter and log the timeout */
801
0
    state->retries++;
802
0
    infof(data, "Timeout waiting for block %d ACK. "
803
0
          " Retries = %d", NEXT_BLOCKNUM(state->block), state->retries);
804
    /* Decide if we've had enough */
805
0
    if(state->retries > state->retry_max) {
806
0
      state->error = TFTP_ERR_TIMEOUT;
807
0
      state->state = TFTP_STATE_FIN;
808
0
    }
809
0
    else {
810
      /* Re-send the data packet */
811
0
      sbytes = sendto(state->sockfd, (void *)state->spacket.data,
812
0
                      4 + state->sbytes, SEND_4TH_ARG,
813
0
                      (struct sockaddr *)&state->remote_addr,
814
0
                      state->remote_addrlen);
815
      /* Check all sbytes were sent */
816
0
      if(sbytes<0) {
817
0
        failf(data, "%s", Curl_strerror(SOCKERRNO, buffer, sizeof(buffer)));
818
0
        return CURLE_SEND_ERROR;
819
0
      }
820
      /* since this was a re-send, we remain at the still byte position */
821
0
      Curl_pgrsSetUploadCounter(data, k->writebytecount);
822
0
    }
823
0
    break;
824
825
0
  case TFTP_EVENT_ERROR:
826
0
    state->state = TFTP_STATE_FIN;
827
0
    setpacketevent(&state->spacket, TFTP_EVENT_ERROR);
828
0
    setpacketblock(&state->spacket, state->block);
829
0
    (void)sendto(state->sockfd, (void *)state->spacket.data, 4, SEND_4TH_ARG,
830
0
                 (struct sockaddr *)&state->remote_addr,
831
0
                 state->remote_addrlen);
832
    /* don't bother with the return code, but if the socket is still up we
833
     * should be a good TFTP client and let the server know we're done */
834
0
    state->state = TFTP_STATE_FIN;
835
0
    break;
836
837
0
  default:
838
0
    failf(data, "tftp_tx: internal error, event: %i", (int)(event));
839
0
    break;
840
0
  }
841
842
0
  return result;
843
0
}
844
845
/**********************************************************
846
 *
847
 * tftp_translate_code
848
 *
849
 * Translate internal error codes to CURL error codes
850
 *
851
 **********************************************************/
852
static CURLcode tftp_translate_code(tftp_error_t error)
853
0
{
854
0
  CURLcode result = CURLE_OK;
855
856
0
  if(error != TFTP_ERR_NONE) {
857
0
    switch(error) {
858
0
    case TFTP_ERR_NOTFOUND:
859
0
      result = CURLE_TFTP_NOTFOUND;
860
0
      break;
861
0
    case TFTP_ERR_PERM:
862
0
      result = CURLE_TFTP_PERM;
863
0
      break;
864
0
    case TFTP_ERR_DISKFULL:
865
0
      result = CURLE_REMOTE_DISK_FULL;
866
0
      break;
867
0
    case TFTP_ERR_UNDEF:
868
0
    case TFTP_ERR_ILLEGAL:
869
0
      result = CURLE_TFTP_ILLEGAL;
870
0
      break;
871
0
    case TFTP_ERR_UNKNOWNID:
872
0
      result = CURLE_TFTP_UNKNOWNID;
873
0
      break;
874
0
    case TFTP_ERR_EXISTS:
875
0
      result = CURLE_REMOTE_FILE_EXISTS;
876
0
      break;
877
0
    case TFTP_ERR_NOSUCHUSER:
878
0
      result = CURLE_TFTP_NOSUCHUSER;
879
0
      break;
880
0
    case TFTP_ERR_TIMEOUT:
881
0
      result = CURLE_OPERATION_TIMEDOUT;
882
0
      break;
883
0
    case TFTP_ERR_NORESPONSE:
884
0
      result = CURLE_COULDNT_CONNECT;
885
0
      break;
886
0
    default:
887
0
      result = CURLE_ABORTED_BY_CALLBACK;
888
0
      break;
889
0
    }
890
0
  }
891
0
  else
892
0
    result = CURLE_OK;
893
894
0
  return result;
895
0
}
896
897
/**********************************************************
898
 *
899
 * tftp_state_machine
900
 *
901
 * The tftp state machine event dispatcher
902
 *
903
 **********************************************************/
904
static CURLcode tftp_state_machine(struct tftp_state_data *state,
905
                                   tftp_event_t event)
906
0
{
907
0
  CURLcode result = CURLE_OK;
908
0
  struct Curl_easy *data = state->data;
909
910
0
  switch(state->state) {
911
0
  case TFTP_STATE_START:
912
0
    DEBUGF(infof(data, "TFTP_STATE_START"));
913
0
    result = tftp_send_first(state, event);
914
0
    break;
915
0
  case TFTP_STATE_RX:
916
0
    DEBUGF(infof(data, "TFTP_STATE_RX"));
917
0
    result = tftp_rx(state, event);
918
0
    break;
919
0
  case TFTP_STATE_TX:
920
0
    DEBUGF(infof(data, "TFTP_STATE_TX"));
921
0
    result = tftp_tx(state, event);
922
0
    break;
923
0
  case TFTP_STATE_FIN:
924
0
    infof(data, "%s", "TFTP finished");
925
0
    break;
926
0
  default:
927
0
    DEBUGF(infof(data, "STATE: %d", state->state));
928
0
    failf(data, "%s", "Internal state machine error");
929
0
    result = CURLE_TFTP_ILLEGAL;
930
0
    break;
931
0
  }
932
933
0
  return result;
934
0
}
935
936
/**********************************************************
937
 *
938
 * tftp_disconnect
939
 *
940
 * The disconnect callback
941
 *
942
 **********************************************************/
943
static CURLcode tftp_disconnect(struct Curl_easy *data,
944
                                struct connectdata *conn, bool dead_connection)
945
0
{
946
0
  struct tftp_state_data *state = conn->proto.tftpc;
947
0
  (void) data;
948
0
  (void) dead_connection;
949
950
  /* done, free dynamically allocated pkt buffers */
951
0
  if(state) {
952
0
    Curl_safefree(state->rpacket.data);
953
0
    Curl_safefree(state->spacket.data);
954
0
    free(state);
955
0
  }
956
957
0
  return CURLE_OK;
958
0
}
959
960
/**********************************************************
961
 *
962
 * tftp_connect
963
 *
964
 * The connect callback
965
 *
966
 **********************************************************/
967
static CURLcode tftp_connect(struct Curl_easy *data, bool *done)
968
0
{
969
0
  struct tftp_state_data *state;
970
0
  int blksize;
971
0
  int need_blksize;
972
0
  struct connectdata *conn = data->conn;
973
974
0
  blksize = TFTP_BLKSIZE_DEFAULT;
975
976
0
  state = conn->proto.tftpc = calloc(1, sizeof(struct tftp_state_data));
977
0
  if(!state)
978
0
    return CURLE_OUT_OF_MEMORY;
979
980
  /* alloc pkt buffers based on specified blksize */
981
0
  if(data->set.tftp_blksize) {
982
0
    blksize = (int)data->set.tftp_blksize;
983
0
    if(blksize > TFTP_BLKSIZE_MAX || blksize < TFTP_BLKSIZE_MIN)
984
0
      return CURLE_TFTP_ILLEGAL;
985
0
  }
986
987
0
  need_blksize = blksize;
988
  /* default size is the fallback when no OACK is received */
989
0
  if(need_blksize < TFTP_BLKSIZE_DEFAULT)
990
0
    need_blksize = TFTP_BLKSIZE_DEFAULT;
991
992
0
  if(!state->rpacket.data) {
993
0
    state->rpacket.data = calloc(1, need_blksize + 2 + 2);
994
995
0
    if(!state->rpacket.data)
996
0
      return CURLE_OUT_OF_MEMORY;
997
0
  }
998
999
0
  if(!state->spacket.data) {
1000
0
    state->spacket.data = calloc(1, need_blksize + 2 + 2);
1001
1002
0
    if(!state->spacket.data)
1003
0
      return CURLE_OUT_OF_MEMORY;
1004
0
  }
1005
1006
  /* we don't keep TFTP connections up basically because there's none or very
1007
   * little gain for UDP */
1008
0
  connclose(conn, "TFTP");
1009
1010
0
  state->data = data;
1011
0
  state->sockfd = conn->sock[FIRSTSOCKET];
1012
0
  state->state = TFTP_STATE_START;
1013
0
  state->error = TFTP_ERR_NONE;
1014
0
  state->blksize = TFTP_BLKSIZE_DEFAULT; /* Unless updated by OACK response */
1015
0
  state->requested_blksize = blksize;
1016
1017
0
  ((struct sockaddr *)&state->local_addr)->sa_family =
1018
0
    (CURL_SA_FAMILY_T)(conn->remote_addr->family);
1019
1020
0
  tftp_set_timeouts(state);
1021
1022
0
  if(!conn->bits.bound) {
1023
    /* If not already bound, bind to any interface, random UDP port. If it is
1024
     * reused or a custom local port was desired, this has already been done!
1025
     *
1026
     * We once used the size of the local_addr struct as the third argument
1027
     * for bind() to better work with IPv6 or whatever size the struct could
1028
     * have, but we learned that at least Tru64, AIX and IRIX *requires* the
1029
     * size of that argument to match the exact size of a 'sockaddr_in' struct
1030
     * when running IPv4-only.
1031
     *
1032
     * Therefore we use the size from the address we connected to, which we
1033
     * assume uses the same IP version and thus hopefully this works for both
1034
     * IPv4 and IPv6...
1035
     */
1036
0
    int rc = bind(state->sockfd, (struct sockaddr *)&state->local_addr,
1037
0
                  conn->remote_addr->addrlen);
1038
0
    if(rc) {
1039
0
      char buffer[STRERROR_LEN];
1040
0
      failf(data, "bind() failed; %s",
1041
0
            Curl_strerror(SOCKERRNO, buffer, sizeof(buffer)));
1042
0
      return CURLE_COULDNT_CONNECT;
1043
0
    }
1044
0
    conn->bits.bound = TRUE;
1045
0
  }
1046
1047
0
  Curl_pgrsStartNow(data);
1048
1049
0
  *done = TRUE;
1050
1051
0
  return CURLE_OK;
1052
0
}
1053
1054
/**********************************************************
1055
 *
1056
 * tftp_done
1057
 *
1058
 * The done callback
1059
 *
1060
 **********************************************************/
1061
static CURLcode tftp_done(struct Curl_easy *data, CURLcode status,
1062
                          bool premature)
1063
0
{
1064
0
  CURLcode result = CURLE_OK;
1065
0
  struct connectdata *conn = data->conn;
1066
0
  struct tftp_state_data *state = conn->proto.tftpc;
1067
1068
0
  (void)status; /* unused */
1069
0
  (void)premature; /* not used */
1070
1071
0
  if(Curl_pgrsDone(data))
1072
0
    return CURLE_ABORTED_BY_CALLBACK;
1073
1074
  /* If we have encountered an error */
1075
0
  if(state)
1076
0
    result = tftp_translate_code(state->error);
1077
1078
0
  return result;
1079
0
}
1080
1081
/**********************************************************
1082
 *
1083
 * tftp_getsock
1084
 *
1085
 * The getsock callback
1086
 *
1087
 **********************************************************/
1088
static int tftp_getsock(struct Curl_easy *data,
1089
                        struct connectdata *conn, curl_socket_t *socks)
1090
0
{
1091
0
  (void)data;
1092
0
  socks[0] = conn->sock[FIRSTSOCKET];
1093
0
  return GETSOCK_READSOCK(0);
1094
0
}
1095
1096
/**********************************************************
1097
 *
1098
 * tftp_receive_packet
1099
 *
1100
 * Called once select fires and data is ready on the socket
1101
 *
1102
 **********************************************************/
1103
static CURLcode tftp_receive_packet(struct Curl_easy *data)
1104
0
{
1105
0
  struct Curl_sockaddr_storage fromaddr;
1106
0
  curl_socklen_t        fromlen;
1107
0
  CURLcode              result = CURLE_OK;
1108
0
  struct connectdata *conn = data->conn;
1109
0
  struct tftp_state_data *state = conn->proto.tftpc;
1110
0
  struct SingleRequest  *k = &data->req;
1111
1112
  /* Receive the packet */
1113
0
  fromlen = sizeof(fromaddr);
1114
0
  state->rbytes = (int)recvfrom(state->sockfd,
1115
0
                                (void *)state->rpacket.data,
1116
0
                                state->blksize + 4,
1117
0
                                0,
1118
0
                                (struct sockaddr *)&fromaddr,
1119
0
                                &fromlen);
1120
0
  if(state->remote_addrlen == 0) {
1121
0
    memcpy(&state->remote_addr, &fromaddr, fromlen);
1122
0
    state->remote_addrlen = fromlen;
1123
0
  }
1124
1125
  /* Sanity check packet length */
1126
0
  if(state->rbytes < 4) {
1127
0
    failf(data, "Received too short packet");
1128
    /* Not a timeout, but how best to handle it? */
1129
0
    state->event = TFTP_EVENT_TIMEOUT;
1130
0
  }
1131
0
  else {
1132
    /* The event is given by the TFTP packet time */
1133
0
    unsigned short event = getrpacketevent(&state->rpacket);
1134
0
    state->event = (tftp_event_t)event;
1135
1136
0
    switch(state->event) {
1137
0
    case TFTP_EVENT_DATA:
1138
      /* Don't pass to the client empty or retransmitted packets */
1139
0
      if(state->rbytes > 4 &&
1140
0
         (NEXT_BLOCKNUM(state->block) == getrpacketblock(&state->rpacket))) {
1141
0
        result = Curl_client_write(data, CLIENTWRITE_BODY,
1142
0
                                   (char *)state->rpacket.data + 4,
1143
0
                                   state->rbytes-4);
1144
0
        if(result) {
1145
0
          tftp_state_machine(state, TFTP_EVENT_ERROR);
1146
0
          return result;
1147
0
        }
1148
0
        k->bytecount += state->rbytes-4;
1149
0
        Curl_pgrsSetDownloadCounter(data, (curl_off_t) k->bytecount);
1150
0
      }
1151
0
      break;
1152
0
    case TFTP_EVENT_ERROR:
1153
0
    {
1154
0
      unsigned short error = getrpacketblock(&state->rpacket);
1155
0
      char *str = (char *)state->rpacket.data + 4;
1156
0
      size_t strn = state->rbytes - 4;
1157
0
      state->error = (tftp_error_t)error;
1158
0
      if(tftp_strnlen(str, strn) < strn)
1159
0
        infof(data, "TFTP error: %s", str);
1160
0
      break;
1161
0
    }
1162
0
    case TFTP_EVENT_ACK:
1163
0
      break;
1164
0
    case TFTP_EVENT_OACK:
1165
0
      result = tftp_parse_option_ack(state,
1166
0
                                     (const char *)state->rpacket.data + 2,
1167
0
                                     state->rbytes-2);
1168
0
      if(result)
1169
0
        return result;
1170
0
      break;
1171
0
    case TFTP_EVENT_RRQ:
1172
0
    case TFTP_EVENT_WRQ:
1173
0
    default:
1174
0
      failf(data, "%s", "Internal error: Unexpected packet");
1175
0
      break;
1176
0
    }
1177
1178
    /* Update the progress meter */
1179
0
    if(Curl_pgrsUpdate(data)) {
1180
0
      tftp_state_machine(state, TFTP_EVENT_ERROR);
1181
0
      return CURLE_ABORTED_BY_CALLBACK;
1182
0
    }
1183
0
  }
1184
0
  return result;
1185
0
}
1186
1187
/**********************************************************
1188
 *
1189
 * tftp_state_timeout
1190
 *
1191
 * Check if timeouts have been reached
1192
 *
1193
 **********************************************************/
1194
static timediff_t tftp_state_timeout(struct Curl_easy *data,
1195
                                     tftp_event_t *event)
1196
0
{
1197
0
  time_t current;
1198
0
  struct connectdata *conn = data->conn;
1199
0
  struct tftp_state_data *state = conn->proto.tftpc;
1200
0
  timediff_t timeout_ms;
1201
1202
0
  if(event)
1203
0
    *event = TFTP_EVENT_NONE;
1204
1205
0
  timeout_ms = Curl_timeleft(state->data, NULL,
1206
0
                             (state->state == TFTP_STATE_START));
1207
0
  if(timeout_ms < 0) {
1208
0
    state->error = TFTP_ERR_TIMEOUT;
1209
0
    state->state = TFTP_STATE_FIN;
1210
0
    return 0;
1211
0
  }
1212
0
  time(&current);
1213
0
  if(current > state->rx_time + state->retry_time) {
1214
0
    if(event)
1215
0
      *event = TFTP_EVENT_TIMEOUT;
1216
0
    time(&state->rx_time); /* update even though we received nothing */
1217
0
  }
1218
1219
0
  return timeout_ms;
1220
0
}
1221
1222
/**********************************************************
1223
 *
1224
 * tftp_multi_statemach
1225
 *
1226
 * Handle single RX socket event and return
1227
 *
1228
 **********************************************************/
1229
static CURLcode tftp_multi_statemach(struct Curl_easy *data, bool *done)
1230
0
{
1231
0
  tftp_event_t event;
1232
0
  CURLcode result = CURLE_OK;
1233
0
  struct connectdata *conn = data->conn;
1234
0
  struct tftp_state_data *state = conn->proto.tftpc;
1235
0
  timediff_t timeout_ms = tftp_state_timeout(data, &event);
1236
1237
0
  *done = FALSE;
1238
1239
0
  if(timeout_ms < 0) {
1240
0
    failf(data, "TFTP response timeout");
1241
0
    return CURLE_OPERATION_TIMEDOUT;
1242
0
  }
1243
0
  if(event != TFTP_EVENT_NONE) {
1244
0
    result = tftp_state_machine(state, event);
1245
0
    if(result)
1246
0
      return result;
1247
0
    *done = (state->state == TFTP_STATE_FIN) ? TRUE : FALSE;
1248
0
    if(*done)
1249
      /* Tell curl we're done */
1250
0
      Curl_setup_transfer(data, -1, -1, FALSE, -1);
1251
0
  }
1252
0
  else {
1253
    /* no timeouts to handle, check our socket */
1254
0
    int rc = SOCKET_READABLE(state->sockfd, 0);
1255
1256
0
    if(rc == -1) {
1257
      /* bail out */
1258
0
      int error = SOCKERRNO;
1259
0
      char buffer[STRERROR_LEN];
1260
0
      failf(data, "%s", Curl_strerror(error, buffer, sizeof(buffer)));
1261
0
      state->event = TFTP_EVENT_ERROR;
1262
0
    }
1263
0
    else if(rc) {
1264
0
      result = tftp_receive_packet(data);
1265
0
      if(result)
1266
0
        return result;
1267
0
      result = tftp_state_machine(state, state->event);
1268
0
      if(result)
1269
0
        return result;
1270
0
      *done = (state->state == TFTP_STATE_FIN) ? TRUE : FALSE;
1271
0
      if(*done)
1272
        /* Tell curl we're done */
1273
0
        Curl_setup_transfer(data, -1, -1, FALSE, -1);
1274
0
    }
1275
    /* if rc == 0, then select() timed out */
1276
0
  }
1277
1278
0
  return result;
1279
0
}
1280
1281
/**********************************************************
1282
 *
1283
 * tftp_doing
1284
 *
1285
 * Called from multi.c while DOing
1286
 *
1287
 **********************************************************/
1288
static CURLcode tftp_doing(struct Curl_easy *data, bool *dophase_done)
1289
0
{
1290
0
  CURLcode result;
1291
0
  result = tftp_multi_statemach(data, dophase_done);
1292
1293
0
  if(*dophase_done) {
1294
0
    DEBUGF(infof(data, "DO phase is complete"));
1295
0
  }
1296
0
  else if(!result) {
1297
    /* The multi code doesn't have this logic for the DOING state so we
1298
       provide it for TFTP since it may do the entire transfer in this
1299
       state. */
1300
0
    if(Curl_pgrsUpdate(data))
1301
0
      result = CURLE_ABORTED_BY_CALLBACK;
1302
0
    else
1303
0
      result = Curl_speedcheck(data, Curl_now());
1304
0
  }
1305
0
  return result;
1306
0
}
1307
1308
/**********************************************************
1309
 *
1310
 * tftp_perform
1311
 *
1312
 * Entry point for transfer from tftp_do, starts state mach
1313
 *
1314
 **********************************************************/
1315
static CURLcode tftp_perform(struct Curl_easy *data, bool *dophase_done)
1316
0
{
1317
0
  CURLcode result = CURLE_OK;
1318
0
  struct connectdata *conn = data->conn;
1319
0
  struct tftp_state_data *state = conn->proto.tftpc;
1320
1321
0
  *dophase_done = FALSE;
1322
1323
0
  result = tftp_state_machine(state, TFTP_EVENT_INIT);
1324
1325
0
  if((state->state == TFTP_STATE_FIN) || result)
1326
0
    return result;
1327
1328
0
  tftp_multi_statemach(data, dophase_done);
1329
1330
0
  if(*dophase_done)
1331
0
    DEBUGF(infof(data, "DO phase is complete"));
1332
1333
0
  return result;
1334
0
}
1335
1336
1337
/**********************************************************
1338
 *
1339
 * tftp_do
1340
 *
1341
 * The do callback
1342
 *
1343
 * This callback initiates the TFTP transfer
1344
 *
1345
 **********************************************************/
1346
1347
static CURLcode tftp_do(struct Curl_easy *data, bool *done)
1348
0
{
1349
0
  struct tftp_state_data *state;
1350
0
  CURLcode result;
1351
0
  struct connectdata *conn = data->conn;
1352
1353
0
  *done = FALSE;
1354
1355
0
  if(!conn->proto.tftpc) {
1356
0
    result = tftp_connect(data, done);
1357
0
    if(result)
1358
0
      return result;
1359
0
  }
1360
1361
0
  state = conn->proto.tftpc;
1362
0
  if(!state)
1363
0
    return CURLE_TFTP_ILLEGAL;
1364
1365
0
  result = tftp_perform(data, done);
1366
1367
  /* If tftp_perform() returned an error, use that for return code. If it
1368
     was OK, see if tftp_translate_code() has an error. */
1369
0
  if(!result)
1370
    /* If we have encountered an internal tftp error, translate it. */
1371
0
    result = tftp_translate_code(state->error);
1372
1373
0
  return result;
1374
0
}
1375
1376
static CURLcode tftp_setup_connection(struct Curl_easy *data,
1377
                                      struct connectdata *conn)
1378
0
{
1379
0
  char *type;
1380
1381
0
  conn->transport = TRNSPRT_UDP;
1382
1383
  /* TFTP URLs support an extension like ";mode=<typecode>" that
1384
   * we'll try to get now! */
1385
0
  type = strstr(data->state.up.path, ";mode=");
1386
1387
0
  if(!type)
1388
0
    type = strstr(conn->host.rawalloc, ";mode=");
1389
1390
0
  if(type) {
1391
0
    char command;
1392
0
    *type = 0;                   /* it was in the middle of the hostname */
1393
0
    command = Curl_raw_toupper(type[6]);
1394
1395
0
    switch(command) {
1396
0
    case 'A': /* ASCII mode */
1397
0
    case 'N': /* NETASCII mode */
1398
0
      data->state.prefer_ascii = TRUE;
1399
0
      break;
1400
1401
0
    case 'O': /* octet mode */
1402
0
    case 'I': /* binary mode */
1403
0
    default:
1404
      /* switch off ASCII */
1405
0
      data->state.prefer_ascii = FALSE;
1406
0
      break;
1407
0
    }
1408
0
  }
1409
1410
0
  return CURLE_OK;
1411
0
}
1412
#endif