We can't decrement the in_progress value for a hard-linked file until
[rsync/rsync.git] / io.c
1 /*
2  * Socket and pipe I/O utilities used in rsync.
3  *
4  * Copyright (C) 1996-2001 Andrew Tridgell
5  * Copyright (C) 1996 Paul Mackerras
6  * Copyright (C) 2001, 2002 Martin Pool <mbp@samba.org>
7  * Copyright (C) 2003-2007 Wayne Davison
8  *
9  * This program is free software; you can redistribute it and/or modify
10  * it under the terms of the GNU General Public License as published by
11  * the Free Software Foundation; either version 3 of the License, or
12  * (at your option) any later version.
13  *
14  * This program is distributed in the hope that it will be useful,
15  * but WITHOUT ANY WARRANTY; without even the implied warranty of
16  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
17  * GNU General Public License for more details.
18  *
19  * You should have received a copy of the GNU General Public License along
20  * with this program; if not, visit the http://fsf.org website.
21  */
22
23 /* Rsync provides its own multiplexing system, which is used to send
24  * stderr and stdout over a single socket.
25  *
26  * For historical reasons this is off during the start of the
27  * connection, but it's switched on quite early using
28  * io_start_multiplex_out() and io_start_multiplex_in(). */
29
30 #include "rsync.h"
31 #include "ifuncs.h"
32
33 /** If no timeout is specified then use a 60 second select timeout */
34 #define SELECT_TIMEOUT 60
35
36 extern int bwlimit;
37 extern size_t bwlimit_writemax;
38 extern int io_timeout;
39 extern int allowed_lull;
40 extern int am_server;
41 extern int am_daemon;
42 extern int am_sender;
43 extern int am_generator;
44 extern int inc_recurse;
45 extern int io_error;
46 extern int eol_nulls;
47 extern int flist_eof;
48 extern int read_batch;
49 extern int csum_length;
50 extern int protect_args;
51 extern int checksum_seed;
52 extern int protocol_version;
53 extern int remove_source_files;
54 extern int preserve_hard_links;
55 extern struct stats stats;
56 extern struct file_list *cur_flist;
57 #ifdef ICONV_OPTION
58 extern int filesfrom_convert;
59 extern iconv_t ic_send, ic_recv;
60 #endif
61
62 const char phase_unknown[] = "unknown";
63 int ignore_timeout = 0;
64 int batch_fd = -1;
65 int msgdone_cnt = 0;
66
67 /* Ignore an EOF error if non-zero. See whine_about_eof(). */
68 int kluge_around_eof = 0;
69
70 int msg_fd_in = -1;
71 int msg_fd_out = -1;
72 int sock_f_in = -1;
73 int sock_f_out = -1;
74
75 static int iobuf_f_in = -1;
76 static char *iobuf_in;
77 static size_t iobuf_in_siz;
78 static size_t iobuf_in_ndx;
79 static size_t iobuf_in_remaining;
80
81 static int iobuf_f_out = -1;
82 static char *iobuf_out;
83 static int iobuf_out_cnt;
84
85 int flist_forward_from = -1;
86
87 static int io_multiplexing_out;
88 static int io_multiplexing_in;
89 static time_t last_io_in;
90 static time_t last_io_out;
91 static int no_flush;
92
93 static int write_batch_monitor_in = -1;
94 static int write_batch_monitor_out = -1;
95
96 static int io_filesfrom_f_in = -1;
97 static int io_filesfrom_f_out = -1;
98 static xbuf ff_buf = EMPTY_XBUF;
99 static char ff_lastchar;
100 #ifdef ICONV_OPTION
101 static xbuf iconv_buf = EMPTY_XBUF;
102 #endif
103 static int defer_forwarding_messages = 0;
104 static int select_timeout = SELECT_TIMEOUT;
105 static int active_filecnt = 0;
106 static OFF_T active_bytecnt = 0;
107
108 static char int_byte_extra[64] = {
109         0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, /* (00 - 3F)/4 */
110         0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, /* (40 - 7F)/4 */
111         1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, /* (80 - BF)/4 */
112         2, 2, 2, 2, 2, 2, 2, 2, 3, 3, 3, 3, 4, 4, 5, 6, /* (C0 - FF)/4 */
113 };
114
115 enum festatus { FES_SUCCESS, FES_REDO, FES_NO_SEND };
116
117 static void readfd(int fd, char *buffer, size_t N);
118 static void writefd(int fd, const char *buf, size_t len);
119 static void writefd_unbuffered(int fd, const char *buf, size_t len);
120 static void mplex_write(int fd, enum msgcode code, const char *buf, size_t len, int convert);
121
122 struct flist_ndx_item {
123         struct flist_ndx_item *next;
124         int ndx;
125 };
126
127 struct flist_ndx_list {
128         struct flist_ndx_item *head, *tail;
129 };
130
131 static struct flist_ndx_list redo_list, hlink_list;
132
133 struct msg_list_item {
134         struct msg_list_item *next;
135         char convert;
136         char buf[1];
137 };
138
139 struct msg_list {
140         struct msg_list_item *head, *tail;
141 };
142
143 static struct msg_list msg_queue;
144
145 static void flist_ndx_push(struct flist_ndx_list *lp, int ndx)
146 {
147         struct flist_ndx_item *item;
148
149         if (!(item = new(struct flist_ndx_item)))
150                 out_of_memory("flist_ndx_push");
151         item->next = NULL;
152         item->ndx = ndx;
153         if (lp->tail)
154                 lp->tail->next = item;
155         else
156                 lp->head = item;
157         lp->tail = item;
158 }
159
160 static int flist_ndx_pop(struct flist_ndx_list *lp)
161 {
162         struct flist_ndx_item *next;
163         int ndx;
164
165         if (!lp->head)
166                 return -1;
167
168         ndx = lp->head->ndx;
169         next = lp->head->next;
170         free(lp->head);
171         lp->head = next;
172         if (!next)
173                 lp->tail = NULL;
174
175         return ndx;
176 }
177
178 static void got_flist_entry_status(enum festatus status, const char *buf)
179 {
180         int ndx = IVAL(buf, 0);
181         struct file_list *flist = flist_for_ndx(ndx);
182
183         assert(flist != NULL);
184
185         if (remove_source_files) {
186                 active_filecnt--;
187                 active_bytecnt -= F_LENGTH(flist->files[ndx - flist->ndx_start]);
188         }
189
190         if (inc_recurse)
191                 flist->in_progress--;
192
193         switch (status) {
194         case FES_SUCCESS:
195                 if (remove_source_files)
196                         send_msg(MSG_SUCCESS, buf, 4, 0);
197                 if (preserve_hard_links) {
198                         struct file_struct *file = flist->files[ndx - flist->ndx_start];
199                         if (F_IS_HLINKED(file)) {
200                                 flist_ndx_push(&hlink_list, ndx);
201                                 flist->in_progress++;
202                         }
203                 }
204                 break;
205         case FES_REDO:
206                 if (inc_recurse)
207                         flist->to_redo++;
208                 flist_ndx_push(&redo_list, ndx);
209                 break;
210         case FES_NO_SEND:
211                 break;
212         }
213 }
214
215 static void check_timeout(void)
216 {
217         time_t t;
218
219         if (!io_timeout || ignore_timeout)
220                 return;
221
222         if (!last_io_in) {
223                 last_io_in = time(NULL);
224                 return;
225         }
226
227         t = time(NULL);
228
229         if (t - last_io_in >= io_timeout) {
230                 if (!am_server && !am_daemon) {
231                         rprintf(FERROR, "io timeout after %d seconds -- exiting\n",
232                                 (int)(t-last_io_in));
233                 }
234                 exit_cleanup(RERR_TIMEOUT);
235         }
236 }
237
238 /* Note the fds used for the main socket (which might really be a pipe
239  * for a local transfer, but we can ignore that). */
240 void io_set_sock_fds(int f_in, int f_out)
241 {
242         sock_f_in = f_in;
243         sock_f_out = f_out;
244 }
245
246 void set_io_timeout(int secs)
247 {
248         io_timeout = secs;
249
250         if (!io_timeout || io_timeout > SELECT_TIMEOUT)
251                 select_timeout = SELECT_TIMEOUT;
252         else
253                 select_timeout = io_timeout;
254
255         allowed_lull = read_batch ? 0 : (io_timeout + 1) / 2;
256 }
257
258 /* Setup the fd used to receive MSG_* messages.  Only needed during the
259  * early stages of being a local sender (up through the sending of the
260  * file list) or when we're the generator (to fetch the messages from
261  * the receiver). */
262 void set_msg_fd_in(int fd)
263 {
264         msg_fd_in = fd;
265 }
266
267 /* Setup the fd used to send our MSG_* messages.  Only needed when
268  * we're the receiver (to send our messages to the generator). */
269 void set_msg_fd_out(int fd)
270 {
271         msg_fd_out = fd;
272         set_nonblocking(msg_fd_out);
273 }
274
275 /* Add a message to the pending MSG_* list. */
276 static void msg_list_add(struct msg_list *lst, int code, const char *buf, int len, int convert)
277 {
278         struct msg_list_item *m;
279         int sz = len + 4 + sizeof m[0] - 1;
280
281         if (!(m = (struct msg_list_item *)new_array(char, sz)))
282                 out_of_memory("msg_list_add");
283         m->next = NULL;
284         m->convert = convert;
285         SIVAL(m->buf, 0, ((code+MPLEX_BASE)<<24) | len);
286         memcpy(m->buf + 4, buf, len);
287         if (lst->tail)
288                 lst->tail->next = m;
289         else
290                 lst->head = m;
291         lst->tail = m;
292 }
293
294 static void msg_flush(void)
295 {
296         if (am_generator) {
297                 while (msg_queue.head && io_multiplexing_out) {
298                         struct msg_list_item *m = msg_queue.head;
299                         int len = IVAL(m->buf, 0) & 0xFFFFFF;
300                         int tag = *((uchar*)m->buf+3) - MPLEX_BASE;
301                         if (!(msg_queue.head = m->next))
302                                 msg_queue.tail = NULL;
303                         stats.total_written += len + 4;
304                         defer_forwarding_messages++;
305                         mplex_write(sock_f_out, tag, m->buf + 4, len, m->convert);
306                         defer_forwarding_messages--;
307                         free(m);
308                 }
309         } else {
310                 while (msg_queue.head) {
311                         struct msg_list_item *m = msg_queue.head;
312                         int len = IVAL(m->buf, 0) & 0xFFFFFF;
313                         int tag = *((uchar*)m->buf+3) - MPLEX_BASE;
314                         if (!(msg_queue.head = m->next))
315                                 msg_queue.tail = NULL;
316                         defer_forwarding_messages++;
317                         mplex_write(msg_fd_out, tag, m->buf + 4, len, m->convert);
318                         defer_forwarding_messages--;
319                         free(m);
320                 }
321         }
322 }
323
324 /* Read a message from the MSG_* fd and handle it.  This is called either
325  * during the early stages of being a local sender (up through the sending
326  * of the file list) or when we're the generator (to fetch the messages
327  * from the receiver). */
328 static void read_msg_fd(void)
329 {
330         char buf[2048];
331         size_t n;
332         struct file_list *flist;
333         int fd = msg_fd_in;
334         int tag, len;
335
336         /* Temporarily disable msg_fd_in.  This is needed to avoid looping back
337          * to this routine from writefd_unbuffered(). */
338         no_flush++;
339         msg_fd_in = -1;
340         defer_forwarding_messages++;
341
342         readfd(fd, buf, 4);
343         tag = IVAL(buf, 0);
344
345         len = tag & 0xFFFFFF;
346         tag = (tag >> 24) - MPLEX_BASE;
347
348         switch (tag) {
349         case MSG_DONE:
350                 if (len < 0 || len > 1 || !am_generator) {
351                   invalid_msg:
352                         rprintf(FERROR, "invalid message %d:%d [%s%s]\n",
353                                 tag, len, who_am_i(),
354                                 inc_recurse ? "/inc" : "");
355                         exit_cleanup(RERR_STREAMIO);
356                 }
357                 if (len) {
358                         readfd(fd, buf, len);
359                         stats.total_read = read_varlong(fd, 3);
360                 }
361                 msgdone_cnt++;
362                 break;
363         case MSG_REDO:
364                 if (len != 4 || !am_generator)
365                         goto invalid_msg;
366                 readfd(fd, buf, 4);
367                 got_flist_entry_status(FES_REDO, buf);
368                 break;
369         case MSG_FLIST:
370                 if (len != 4 || !am_generator || !inc_recurse)
371                         goto invalid_msg;
372                 readfd(fd, buf, 4);
373                 /* Read extra file list from receiver. */
374                 assert(iobuf_in != NULL);
375                 assert(iobuf_f_in == fd);
376                 if (verbose > 3) {
377                         rprintf(FINFO, "[%s] receiving flist for dir %d\n",
378                                 who_am_i(), IVAL(buf,0));
379                 }
380                 flist = recv_file_list(fd);
381                 flist->parent_ndx = IVAL(buf,0);
382 #ifdef SUPPORT_HARD_LINKS
383                 if (preserve_hard_links)
384                         match_hard_links(flist);
385 #endif
386                 break;
387         case MSG_FLIST_EOF:
388                 if (len != 0 || !am_generator || !inc_recurse)
389                         goto invalid_msg;
390                 flist_eof = 1;
391                 break;
392         case MSG_IO_ERROR:
393                 if (len != 4)
394                         goto invalid_msg;
395                 readfd(fd, buf, len);
396                 io_error |= IVAL(buf, 0);
397                 break;
398         case MSG_DELETED:
399                 if (len >= (int)sizeof buf || !am_generator)
400                         goto invalid_msg;
401                 readfd(fd, buf, len);
402                 send_msg(MSG_DELETED, buf, len, 1);
403                 break;
404         case MSG_SUCCESS:
405                 if (len != 4 || !am_generator)
406                         goto invalid_msg;
407                 readfd(fd, buf, 4);
408                 got_flist_entry_status(FES_SUCCESS, buf);
409                 break;
410         case MSG_NO_SEND:
411                 if (len != 4 || !am_generator)
412                         goto invalid_msg;
413                 readfd(fd, buf, 4);
414                 got_flist_entry_status(FES_NO_SEND, buf);
415                 break;
416         case MSG_SOCKERR:
417         case MSG_CLIENT:
418                 if (!am_generator)
419                         goto invalid_msg;
420                 if (tag == MSG_SOCKERR)
421                         io_end_multiplex_out();
422                 /* FALL THROUGH */
423         case MSG_INFO:
424         case MSG_ERROR:
425         case MSG_LOG:
426                 while (len) {
427                         n = len;
428                         if (n >= sizeof buf)
429                                 n = sizeof buf - 1;
430                         readfd(fd, buf, n);
431                         rwrite((enum logcode)tag, buf, n, !am_generator);
432                         len -= n;
433                 }
434                 break;
435         default:
436                 rprintf(FERROR, "unknown message %d:%d [%s]\n",
437                         tag, len, who_am_i());
438                 exit_cleanup(RERR_STREAMIO);
439         }
440
441         no_flush--;
442         msg_fd_in = fd;
443         if (!--defer_forwarding_messages)
444                 msg_flush();
445 }
446
447 /* This is used by the generator to limit how many file transfers can
448  * be active at once when --remove-source-files is specified.  Without
449  * this, sender-side deletions were mostly happening at the end. */
450 void increment_active_files(int ndx, int itemizing, enum logcode code)
451 {
452         /* TODO: tune these limits? */
453         while (active_filecnt >= (active_bytecnt >= 128*1024 ? 10 : 50)) {
454                 check_for_finished_files(itemizing, code, 0);
455                 if (iobuf_out_cnt)
456                         io_flush(NORMAL_FLUSH);
457                 else
458                         read_msg_fd();
459         }
460
461         active_filecnt++;
462         active_bytecnt += F_LENGTH(cur_flist->files[ndx - cur_flist->ndx_start]);
463 }
464
465 /* Write an message to a multiplexed stream. If this fails, rsync exits. */
466 static void mplex_write(int fd, enum msgcode code, const char *buf, size_t len, int convert)
467 {
468         char buffer[BIGPATHBUFLEN]; /* Oversized for use by iconv code. */
469         size_t n = len;
470
471         SIVAL(buffer, 0, ((MPLEX_BASE + (int)code)<<24) + len);
472
473 #ifdef ICONV_OPTION
474         if (convert && ic_send == (iconv_t)-1)
475 #endif
476                 convert = 0;
477
478         if (convert || n > 1024 - 4) /* BIGPATHBUFLEN can handle 1024 bytes */
479                 n = 0;
480         else
481                 memcpy(buffer + 4, buf, n);
482
483         writefd_unbuffered(fd, buffer, n+4);
484
485         len -= n;
486         buf += n;
487
488 #ifdef ICONV_OPTION
489         if (convert) {
490                 xbuf outbuf, inbuf;
491
492                 INIT_CONST_XBUF(outbuf, buffer);
493                 INIT_XBUF(inbuf, (char*)buf, len, -1);
494
495                 defer_forwarding_messages++;
496                 do {
497                         iconvbufs(ic_send, &inbuf, &outbuf,
498                                   ICB_INCLUDE_BAD | ICB_INCLUDE_INCOMPLETE);
499                         writefd_unbuffered(fd, outbuf.buf, outbuf.len);
500                 } while (inbuf.len);
501                 if (!--defer_forwarding_messages)
502                         msg_flush();
503         } else
504 #endif
505         if (len) {
506                 defer_forwarding_messages++;
507                 writefd_unbuffered(fd, buf, len);
508                 if (!--defer_forwarding_messages)
509                         msg_flush();
510         }
511 }
512
513 int send_msg(enum msgcode code, const char *buf, int len, int convert)
514 {
515         if (msg_fd_out < 0) {
516                 if (!defer_forwarding_messages)
517                         return io_multiplex_write(code, buf, len, convert);
518                 if (!io_multiplexing_out)
519                         return 0;
520                 msg_list_add(&msg_queue, code, buf, len, convert);
521                 return 1;
522         }
523         if (flist_forward_from >= 0)
524                 msg_list_add(&msg_queue, code, buf, len, convert);
525         else
526                 mplex_write(msg_fd_out, code, buf, len, convert);
527         return 1;
528 }
529
530 void send_msg_int(enum msgcode code, int num)
531 {
532         char numbuf[4];
533         SIVAL(numbuf, 0, num);
534         send_msg(code, numbuf, 4, 0);
535 }
536
537 void wait_for_receiver(void)
538 {
539         if (iobuf_out_cnt)
540                 io_flush(NORMAL_FLUSH);
541         else
542                 read_msg_fd();
543 }
544
545 int get_redo_num(void)
546 {
547         return flist_ndx_pop(&redo_list);
548 }
549
550 int get_hlink_num(void)
551 {
552         return flist_ndx_pop(&hlink_list);
553 }
554
555 /**
556  * When we're the receiver and we have a local --files-from list of names
557  * that needs to be sent over the socket to the sender, we have to do two
558  * things at the same time: send the sender a list of what files we're
559  * processing and read the incoming file+info list from the sender.  We do
560  * this by augmenting the read_timeout() function to copy this data.  It
561  * uses ff_buf to read a block of data from f_in (when it is ready, since
562  * it might be a pipe) and then blast it out f_out (when it is ready to
563  * receive more data).
564  */
565 void io_set_filesfrom_fds(int f_in, int f_out)
566 {
567         io_filesfrom_f_in = f_in;
568         io_filesfrom_f_out = f_out;
569         alloc_xbuf(&ff_buf, 2048);
570 #ifdef ICONV_OPTION
571         if (protect_args)
572                 alloc_xbuf(&iconv_buf, 1024);
573 #endif
574 }
575
576 /* It's almost always an error to get an EOF when we're trying to read from the
577  * network, because the protocol is (for the most part) self-terminating.
578  *
579  * There is one case for the receiver when it is at the end of the transfer
580  * (hanging around reading any keep-alive packets that might come its way): if
581  * the sender dies before the generator's kill-signal comes through, we can end
582  * up here needing to loop until the kill-signal arrives.  In this situation,
583  * kluge_around_eof will be < 0.
584  *
585  * There is another case for older protocol versions (< 24) where the module
586  * listing was not terminated, so we must ignore an EOF error in that case and
587  * exit.  In this situation, kluge_around_eof will be > 0. */
588 static void whine_about_eof(int fd)
589 {
590         if (kluge_around_eof && fd == sock_f_in) {
591                 int i;
592                 if (kluge_around_eof > 0)
593                         exit_cleanup(0);
594                 /* If we're still here after 10 seconds, exit with an error. */
595                 for (i = 10*1000/20; i--; )
596                         msleep(20);
597         }
598
599         rprintf(FERROR, RSYNC_NAME ": connection unexpectedly closed "
600                 "(%.0f bytes received so far) [%s]\n",
601                 (double)stats.total_read, who_am_i());
602
603         exit_cleanup(RERR_STREAMIO);
604 }
605
606 /**
607  * Read from a socket with I/O timeout. return the number of bytes
608  * read. If no bytes can be read then exit, never return a number <= 0.
609  *
610  * TODO: If the remote shell connection fails, then current versions
611  * actually report an "unexpected EOF" error here.  Since it's a
612  * fairly common mistake to try to use rsh when ssh is required, we
613  * should trap that: if we fail to read any data at all, we should
614  * give a better explanation.  We can tell whether the connection has
615  * started by looking e.g. at whether the remote version is known yet.
616  */
617 static int read_timeout(int fd, char *buf, size_t len)
618 {
619         int n, cnt = 0;
620
621         io_flush(FULL_FLUSH);
622
623         while (cnt == 0) {
624                 /* until we manage to read *something* */
625                 fd_set r_fds, w_fds;
626                 struct timeval tv;
627                 int maxfd = fd;
628                 int count;
629
630                 FD_ZERO(&r_fds);
631                 FD_ZERO(&w_fds);
632                 FD_SET(fd, &r_fds);
633                 if (io_filesfrom_f_out >= 0) {
634                         int new_fd;
635                         if (ff_buf.len == 0) {
636                                 if (io_filesfrom_f_in >= 0) {
637                                         FD_SET(io_filesfrom_f_in, &r_fds);
638                                         new_fd = io_filesfrom_f_in;
639                                 } else {
640                                         io_filesfrom_f_out = -1;
641                                         new_fd = -1;
642                                 }
643                         } else {
644                                 FD_SET(io_filesfrom_f_out, &w_fds);
645                                 new_fd = io_filesfrom_f_out;
646                         }
647                         if (new_fd > maxfd)
648                                 maxfd = new_fd;
649                 }
650
651                 tv.tv_sec = select_timeout;
652                 tv.tv_usec = 0;
653
654                 errno = 0;
655
656                 count = select(maxfd + 1, &r_fds, &w_fds, NULL, &tv);
657
658                 if (count <= 0) {
659                         if (errno == EBADF) {
660                                 defer_forwarding_messages = 0;
661                                 exit_cleanup(RERR_SOCKETIO);
662                         }
663                         check_timeout();
664                         continue;
665                 }
666
667                 if (io_filesfrom_f_out >= 0) {
668                         if (ff_buf.len) {
669                                 if (FD_ISSET(io_filesfrom_f_out, &w_fds)) {
670                                         int l = write(io_filesfrom_f_out,
671                                                       ff_buf.buf + ff_buf.pos,
672                                                       ff_buf.len);
673                                         if (l > 0) {
674                                                 if (!(ff_buf.len -= l))
675                                                         ff_buf.pos = 0;
676                                                 else
677                                                         ff_buf.pos += l;
678                                         } else if (errno != EINTR) {
679                                                 /* XXX should we complain? */
680                                                 io_filesfrom_f_out = -1;
681                                         }
682                                 }
683                         } else if (io_filesfrom_f_in >= 0) {
684                                 if (FD_ISSET(io_filesfrom_f_in, &r_fds)) {
685 #ifdef ICONV_OPTION
686                                         xbuf *ibuf = filesfrom_convert ? &iconv_buf : &ff_buf;
687 #else
688                                         xbuf *ibuf = &ff_buf;
689 #endif
690                                         int l = read(io_filesfrom_f_in, ibuf->buf, ibuf->size);
691                                         if (l <= 0) {
692                                                 if (l == 0 || errno != EINTR) {
693                                                         /* Send end-of-file marker */
694                                                         memcpy(ff_buf.buf, "\0\0", 2);
695                                                         ff_buf.len = ff_lastchar? 2 : 1;
696                                                         ff_buf.pos = 0;
697                                                         io_filesfrom_f_in = -1;
698                                                 }
699                                         } else {
700 #ifdef ICONV_OPTION
701                                                 if (filesfrom_convert) {
702                                                         iconv_buf.pos = 0;
703                                                         iconv_buf.len = l;
704                                                         iconvbufs(ic_send, &iconv_buf, &ff_buf,
705                                                             ICB_EXPAND_OUT|ICB_INCLUDE_BAD|ICB_INCLUDE_INCOMPLETE);
706                                                         l = ff_buf.len;
707                                                 }
708 #endif
709                                                 if (!eol_nulls) {
710                                                         char *s = ff_buf.buf + l;
711                                                         /* Transform CR and/or LF into '\0' */
712                                                         while (s-- > ff_buf.buf) {
713                                                                 if (*s == '\n' || *s == '\r')
714                                                                         *s = '\0';
715                                                         }
716                                                 }
717                                                 if (!ff_lastchar) {
718                                                         /* Last buf ended with a '\0', so don't
719                                                          * let this buf start with one. */
720                                                         while (l && ff_buf.buf[ff_buf.pos] == '\0')
721                                                                 ff_buf.pos++, l--;
722                                                 }
723                                                 if (!l)
724                                                         ff_buf.pos = 0;
725                                                 else {
726                                                         char *f = ff_buf.buf + ff_buf.pos;
727                                                         char *t = f;
728                                                         char *eob = f + l;
729                                                         /* Eliminate any multi-'\0' runs. */
730                                                         while (f != eob) {
731                                                                 if (!(*t++ = *f++)) {
732                                                                         while (f != eob && !*f)
733                                                                                 f++, l--;
734                                                                 }
735                                                         }
736                                                         ff_lastchar = f[-1];
737                                                 }
738                                                 ff_buf.len = l;
739                                         }
740                                 }
741                         }
742                 }
743
744                 if (!FD_ISSET(fd, &r_fds))
745                         continue;
746
747                 n = read(fd, buf, len);
748
749                 if (n <= 0) {
750                         if (n == 0)
751                                 whine_about_eof(fd); /* Doesn't return. */
752                         if (errno == EINTR || errno == EWOULDBLOCK
753                             || errno == EAGAIN)
754                                 continue;
755
756                         /* Don't write errors on a dead socket. */
757                         if (fd == sock_f_in) {
758                                 io_end_multiplex_out();
759                                 rsyserr(FSOCKERR, errno, "read error");
760                         } else
761                                 rsyserr(FERROR, errno, "read error");
762                         exit_cleanup(RERR_STREAMIO);
763                 }
764
765                 buf += n;
766                 len -= n;
767                 cnt += n;
768
769                 if (fd == sock_f_in && io_timeout)
770                         last_io_in = time(NULL);
771         }
772
773         return cnt;
774 }
775
776 /* Read a line into the "buf" buffer. */
777 int read_line(int fd, char *buf, size_t bufsiz, int flags)
778 {
779         char ch, *s, *eob;
780         int cnt;
781
782 #ifdef ICONV_OPTION
783         if (flags & RL_CONVERT && iconv_buf.size < bufsiz)
784                 realloc_xbuf(&iconv_buf, bufsiz + 1024);
785 #endif
786
787   start:
788 #ifdef ICONV_OPTION
789         s = flags & RL_CONVERT ? iconv_buf.buf : buf;
790 #else
791         s = buf;
792 #endif
793         eob = s + bufsiz - 1;
794         while (1) {
795                 cnt = read(fd, &ch, 1);
796                 if (cnt < 0 && (errno == EWOULDBLOCK
797                   || errno == EINTR || errno == EAGAIN)) {
798                         struct timeval tv;
799                         fd_set r_fds, e_fds;
800                         FD_ZERO(&r_fds);
801                         FD_SET(fd, &r_fds);
802                         FD_ZERO(&e_fds);
803                         FD_SET(fd, &e_fds);
804                         tv.tv_sec = select_timeout;
805                         tv.tv_usec = 0;
806                         if (!select(fd+1, &r_fds, NULL, &e_fds, &tv))
807                                 check_timeout();
808                         /*if (FD_ISSET(fd, &e_fds))
809                                 rprintf(FINFO, "select exception on fd %d\n", fd); */
810                         continue;
811                 }
812                 if (cnt != 1)
813                         break;
814                 if (flags & RL_EOL_NULLS ? ch == '\0' : (ch == '\r' || ch == '\n')) {
815                         /* Skip empty lines if dumping comments. */
816                         if (flags & RL_DUMP_COMMENTS && s == buf)
817                                 continue;
818                         break;
819                 }
820                 if (s < eob)
821                         *s++ = ch;
822         }
823         *s = '\0';
824
825         if (flags & RL_DUMP_COMMENTS && (*buf == '#' || *buf == ';'))
826                 goto start;
827
828 #ifdef ICONV_OPTION
829         if (flags & RL_CONVERT) {
830                 xbuf outbuf;
831                 INIT_XBUF(outbuf, buf, 0, bufsiz);
832                 iconv_buf.pos = 0;
833                 iconv_buf.len = s - iconv_buf.buf;
834                 iconvbufs(ic_recv, &iconv_buf, &outbuf,
835                           ICB_INCLUDE_BAD | ICB_INCLUDE_INCOMPLETE);
836                 outbuf.buf[outbuf.len] = '\0';
837                 return outbuf.len;
838         }
839 #endif
840
841         return s - buf;
842 }
843
844 int read_args(int f_in, char *mod_name, char *buf, size_t bufsiz, int rl_nulls,
845               char ***argv_p, int *argc_p, char **request_p)
846 {
847         int maxargs = MAX_ARGS;
848         int dot_pos = 0;
849         int argc = 0;
850         char **argv, *p;
851         int rl_flags = (rl_nulls ? RL_EOL_NULLS : 0);
852
853 #ifdef ICONV_OPTION
854         rl_flags |= (protect_args && ic_recv != (iconv_t)-1 ? RL_CONVERT : 0);
855 #endif
856
857         if (!(argv = new_array(char *, maxargs)))
858                 out_of_memory("read_args");
859         if (mod_name)
860                 argv[argc++] = "rsyncd";
861
862         while (1) {
863                 if (read_line(f_in, buf, bufsiz, rl_flags) == 0)
864                         break;
865
866                 if (argc == maxargs) {
867                         maxargs += MAX_ARGS;
868                         if (!(argv = realloc_array(argv, char *, maxargs)))
869                                 out_of_memory("read_args");
870                 }
871
872                 if (dot_pos) {
873                         if (request_p) {
874                                 *request_p = strdup(buf);
875                                 request_p = NULL;
876                         }
877                         if (mod_name)
878                                 glob_expand_module(mod_name, buf, &argv, &argc, &maxargs);
879                         else
880                                 glob_expand(buf, &argv, &argc, &maxargs);
881                 } else {
882                         if (!(p = strdup(buf)))
883                                 out_of_memory("read_args");
884                         argv[argc++] = p;
885                         if (*p == '.' && p[1] == '\0')
886                                 dot_pos = argc;
887                 }
888         }
889
890         *argc_p = argc;
891         *argv_p = argv;
892
893         return dot_pos ? dot_pos : argc;
894 }
895
896 int io_start_buffering_out(int f_out)
897 {
898         if (iobuf_out) {
899                 assert(f_out == iobuf_f_out);
900                 return 0;
901         }
902         if (!(iobuf_out = new_array(char, IO_BUFFER_SIZE)))
903                 out_of_memory("io_start_buffering_out");
904         iobuf_out_cnt = 0;
905         iobuf_f_out = f_out;
906         return 1;
907 }
908
909 int io_start_buffering_in(int f_in)
910 {
911         if (iobuf_in) {
912                 assert(f_in == iobuf_f_in);
913                 return 0;
914         }
915         iobuf_in_siz = 2 * IO_BUFFER_SIZE;
916         if (!(iobuf_in = new_array(char, iobuf_in_siz)))
917                 out_of_memory("io_start_buffering_in");
918         iobuf_f_in = f_in;
919         return 1;
920 }
921
922 void io_end_buffering_in(void)
923 {
924         if (!iobuf_in)
925                 return;
926         free(iobuf_in);
927         iobuf_in = NULL;
928         iobuf_in_ndx = 0;
929         iobuf_in_remaining = 0;
930         iobuf_f_in = -1;
931 }
932
933 void io_end_buffering_out(void)
934 {
935         if (!iobuf_out)
936                 return;
937         io_flush(FULL_FLUSH);
938         free(iobuf_out);
939         iobuf_out = NULL;
940         iobuf_f_out = -1;
941 }
942
943 void maybe_flush_socket(int important)
944 {
945         if (iobuf_out && iobuf_out_cnt
946          && (important || time(NULL) - last_io_out >= 5))
947                 io_flush(NORMAL_FLUSH);
948 }
949
950 void maybe_send_keepalive(void)
951 {
952         if (time(NULL) - last_io_out >= allowed_lull) {
953                 if (!iobuf_out || !iobuf_out_cnt) {
954                         if (protocol_version < 29)
955                                 return; /* there's nothing we can do */
956                         if (protocol_version >= 30)
957                                 send_msg(MSG_NOOP, "", 0, 0);
958                         else {
959                                 write_int(sock_f_out, cur_flist->used);
960                                 write_shortint(sock_f_out, ITEM_IS_NEW);
961                         }
962                 }
963                 if (iobuf_out)
964                         io_flush(NORMAL_FLUSH);
965         }
966 }
967
968 void start_flist_forward(int f_in)
969 {
970         assert(iobuf_out != NULL);
971         assert(iobuf_f_out == msg_fd_out);
972         flist_forward_from = f_in;
973 }
974
975 void stop_flist_forward()
976 {
977         flist_forward_from = -1;
978         io_flush(FULL_FLUSH);
979 }
980
981 /**
982  * Continue trying to read len bytes - don't return until len has been
983  * read.
984  **/
985 static void read_loop(int fd, char *buf, size_t len)
986 {
987         while (len) {
988                 int n = read_timeout(fd, buf, len);
989
990                 buf += n;
991                 len -= n;
992         }
993 }
994
995 /**
996  * Read from the file descriptor handling multiplexing - return number
997  * of bytes read.
998  *
999  * Never returns <= 0.
1000  */
1001 static int readfd_unbuffered(int fd, char *buf, size_t len)
1002 {
1003         size_t msg_bytes;
1004         int tag, cnt = 0;
1005         char line[BIGPATHBUFLEN];
1006
1007         if (!iobuf_in || fd != iobuf_f_in)
1008                 return read_timeout(fd, buf, len);
1009
1010         if (!io_multiplexing_in && iobuf_in_remaining == 0) {
1011                 iobuf_in_remaining = read_timeout(fd, iobuf_in, iobuf_in_siz);
1012                 iobuf_in_ndx = 0;
1013         }
1014
1015         while (cnt == 0) {
1016                 if (iobuf_in_remaining) {
1017                         len = MIN(len, iobuf_in_remaining);
1018                         memcpy(buf, iobuf_in + iobuf_in_ndx, len);
1019                         iobuf_in_ndx += len;
1020                         iobuf_in_remaining -= len;
1021                         cnt = len;
1022                         break;
1023                 }
1024
1025                 read_loop(fd, line, 4);
1026                 tag = IVAL(line, 0);
1027
1028                 msg_bytes = tag & 0xFFFFFF;
1029                 tag = (tag >> 24) - MPLEX_BASE;
1030
1031                 switch (tag) {
1032                 case MSG_DATA:
1033                         if (msg_bytes > iobuf_in_siz) {
1034                                 if (!(iobuf_in = realloc_array(iobuf_in, char,
1035                                                                msg_bytes)))
1036                                         out_of_memory("readfd_unbuffered");
1037                                 iobuf_in_siz = msg_bytes;
1038                         }
1039                         read_loop(fd, iobuf_in, msg_bytes);
1040                         iobuf_in_remaining = msg_bytes;
1041                         iobuf_in_ndx = 0;
1042                         break;
1043                 case MSG_NOOP:
1044                         if (am_sender)
1045                                 maybe_send_keepalive();
1046                         break;
1047                 case MSG_IO_ERROR:
1048                         if (msg_bytes != 4)
1049                                 goto invalid_msg;
1050                         read_loop(fd, line, msg_bytes);
1051                         send_msg_int(MSG_IO_ERROR, IVAL(line, 0));
1052                         io_error |= IVAL(line, 0);
1053                         break;
1054                 case MSG_DELETED:
1055                         if (msg_bytes >= sizeof line)
1056                                 goto overflow;
1057 #ifdef ICONV_OPTION
1058                         if (ic_recv != (iconv_t)-1) {
1059                                 xbuf outbuf, inbuf;
1060                                 char ibuf[512];
1061                                 int add_null = 0;
1062                                 int pos = 0;
1063
1064                                 INIT_CONST_XBUF(outbuf, line);
1065                                 inbuf.buf = ibuf;
1066
1067                                 while (msg_bytes) {
1068                                         inbuf.len = msg_bytes > sizeof ibuf
1069                                                   ? sizeof ibuf : msg_bytes;
1070                                         read_loop(fd, inbuf.buf, inbuf.len);
1071                                         if (!(msg_bytes -= inbuf.len)
1072                                          && !ibuf[inbuf.len-1])
1073                                                 inbuf.len--, add_null = 1;
1074                                         if (iconvbufs(ic_send, &inbuf, &outbuf,
1075                                             ICB_INCLUDE_BAD | ICB_INCLUDE_INCOMPLETE) < 0)
1076                                                 goto overflow;
1077                                         pos = -1;
1078                                 }
1079                                 if (add_null) {
1080                                         if (outbuf.len == outbuf.size)
1081                                                 goto overflow;
1082                                         outbuf.buf[outbuf.len++] = '\0';
1083                                 }
1084                                 msg_bytes = outbuf.len;
1085                         } else
1086 #endif
1087                                 read_loop(fd, line, msg_bytes);
1088                         /* A directory name was sent with the trailing null */
1089                         if (msg_bytes > 0 && !line[msg_bytes-1])
1090                                 log_delete(line, S_IFDIR);
1091                         else {
1092                                 line[msg_bytes] = '\0';
1093                                 log_delete(line, S_IFREG);
1094                         }
1095                         break;
1096                 case MSG_SUCCESS:
1097                         if (msg_bytes != 4) {
1098                           invalid_msg:
1099                                 rprintf(FERROR, "invalid multi-message %d:%ld [%s]\n",
1100                                         tag, (long)msg_bytes, who_am_i());
1101                                 exit_cleanup(RERR_STREAMIO);
1102                         }
1103                         read_loop(fd, line, msg_bytes);
1104                         successful_send(IVAL(line, 0));
1105                         break;
1106                 case MSG_NO_SEND:
1107                         if (msg_bytes != 4)
1108                                 goto invalid_msg;
1109                         read_loop(fd, line, msg_bytes);
1110                         send_msg_int(MSG_NO_SEND, IVAL(line, 0));
1111                         break;
1112                 case MSG_INFO:
1113                 case MSG_ERROR:
1114                         if (msg_bytes >= sizeof line) {
1115                             overflow:
1116                                 rprintf(FERROR,
1117                                         "multiplexing overflow %d:%ld [%s]\n",
1118                                         tag, (long)msg_bytes, who_am_i());
1119                                 exit_cleanup(RERR_STREAMIO);
1120                         }
1121                         read_loop(fd, line, msg_bytes);
1122                         rwrite((enum logcode)tag, line, msg_bytes, 1);
1123                         break;
1124                 default:
1125                         rprintf(FERROR, "unexpected tag %d [%s]\n",
1126                                 tag, who_am_i());
1127                         exit_cleanup(RERR_STREAMIO);
1128                 }
1129         }
1130
1131         if (iobuf_in_remaining == 0)
1132                 io_flush(NORMAL_FLUSH);
1133
1134         return cnt;
1135 }
1136
1137 /* Do a buffered read from fd.  Don't return until all N bytes have
1138  * been read.  If all N can't be read then exit with an error. */
1139 static void readfd(int fd, char *buffer, size_t N)
1140 {
1141         int  cnt;
1142         size_t total = 0;
1143
1144         while (total < N) {
1145                 cnt = readfd_unbuffered(fd, buffer + total, N-total);
1146                 total += cnt;
1147         }
1148
1149         if (fd == write_batch_monitor_in) {
1150                 if ((size_t)write(batch_fd, buffer, total) != total)
1151                         exit_cleanup(RERR_FILEIO);
1152         }
1153
1154         if (fd == flist_forward_from)
1155                 writefd(iobuf_f_out, buffer, total);
1156
1157         if (fd == sock_f_in)
1158                 stats.total_read += total;
1159 }
1160
1161 unsigned short read_shortint(int f)
1162 {
1163         char b[2];
1164         readfd(f, b, 2);
1165         return (UVAL(b, 1) << 8) + UVAL(b, 0);
1166 }
1167
1168 int32 read_int(int f)
1169 {
1170         char b[4];
1171         int32 num;
1172
1173         readfd(f, b, 4);
1174         num = IVAL(b, 0);
1175 #if SIZEOF_INT32 > 4
1176         if (num & (int32)0x80000000)
1177                 num |= ~(int32)0xffffffff;
1178 #endif
1179         return num;
1180 }
1181
1182 int32 read_varint(int f)
1183 {
1184         union {
1185             char b[5];
1186             int32 x;
1187         } u;
1188         uchar ch;
1189         int extra;
1190
1191         u.x = 0;
1192         readfd(f, (char*)&ch, 1);
1193         extra = int_byte_extra[ch / 4];
1194         if (extra) {
1195                 uchar bit = ((uchar)1<<(8-extra));
1196                 if (extra >= (int)sizeof u.b) {
1197                         rprintf(FERROR, "Overflow in read_varint()\n");
1198                         exit_cleanup(RERR_STREAMIO);
1199                 }
1200                 readfd(f, u.b, extra);
1201                 u.b[extra] = ch & (bit-1);
1202         } else
1203                 u.b[0] = ch;
1204 #if CAREFUL_ALIGNMENT
1205         u.x = IVAL(u.b,0);
1206 #endif
1207 #if SIZEOF_INT32 > 4
1208         if (u.x & (int32)0x80000000)
1209                 u.x |= ~(int32)0xffffffff;
1210 #endif
1211         return u.x;
1212 }
1213
1214 int64 read_varlong(int f, uchar min_bytes)
1215 {
1216         union {
1217             char b[9];
1218             int64 x;
1219         } u;
1220         char b2[8];
1221         int extra;
1222
1223 #if SIZEOF_INT64 < 8
1224         memset(u.b, 0, 8);
1225 #else
1226         u.x = 0;
1227 #endif
1228         readfd(f, b2, min_bytes);
1229         memcpy(u.b, b2+1, min_bytes-1);
1230         extra = int_byte_extra[CVAL(b2, 0) / 4];
1231         if (extra) {
1232                 uchar bit = ((uchar)1<<(8-extra));
1233                 if (min_bytes + extra > (int)sizeof u.b) {
1234                         rprintf(FERROR, "Overflow in read_varlong()\n");
1235                         exit_cleanup(RERR_STREAMIO);
1236                 }
1237                 readfd(f, u.b + min_bytes - 1, extra);
1238                 u.b[min_bytes + extra - 1] = CVAL(b2, 0) & (bit-1);
1239 #if SIZEOF_INT64 < 8
1240                 if (min_bytes + extra > 5 || u.b[4] || CVAL(u.b,3) & 0x80) {
1241                         rprintf(FERROR, "Integer overflow: attempted 64-bit offset\n");
1242                         exit_cleanup(RERR_UNSUPPORTED);
1243                 }
1244 #endif
1245         } else
1246                 u.b[min_bytes + extra - 1] = CVAL(b2, 0);
1247 #if SIZEOF_INT64 < 8
1248         u.x = IVAL(u.b,0);
1249 #elif CAREFUL_ALIGNMENT
1250         u.x = IVAL(u.b,0) | (((int64)IVAL(u.b,4))<<32);
1251 #endif
1252         return u.x;
1253 }
1254
1255 int64 read_longint(int f)
1256 {
1257 #if SIZEOF_INT64 >= 8
1258         char b[9];
1259 #endif
1260         int32 num = read_int(f);
1261
1262         if (num != (int32)0xffffffff)
1263                 return num;
1264
1265 #if SIZEOF_INT64 < 8
1266         rprintf(FERROR, "Integer overflow: attempted 64-bit offset\n");
1267         exit_cleanup(RERR_UNSUPPORTED);
1268 #else
1269         readfd(f, b, 8);
1270         return IVAL(b,0) | (((int64)IVAL(b,4))<<32);
1271 #endif
1272 }
1273
1274 void read_buf(int f, char *buf, size_t len)
1275 {
1276         readfd(f,buf,len);
1277 }
1278
1279 void read_sbuf(int f, char *buf, size_t len)
1280 {
1281         readfd(f, buf, len);
1282         buf[len] = '\0';
1283 }
1284
1285 uchar read_byte(int f)
1286 {
1287         uchar c;
1288         readfd(f, (char *)&c, 1);
1289         return c;
1290 }
1291
1292 int read_vstring(int f, char *buf, int bufsize)
1293 {
1294         int len = read_byte(f);
1295
1296         if (len & 0x80)
1297                 len = (len & ~0x80) * 0x100 + read_byte(f);
1298
1299         if (len >= bufsize) {
1300                 rprintf(FERROR, "over-long vstring received (%d > %d)\n",
1301                         len, bufsize - 1);
1302                 return -1;
1303         }
1304
1305         if (len)
1306                 readfd(f, buf, len);
1307         buf[len] = '\0';
1308         return len;
1309 }
1310
1311 /* Populate a sum_struct with values from the socket.  This is
1312  * called by both the sender and the receiver. */
1313 void read_sum_head(int f, struct sum_struct *sum)
1314 {
1315         sum->count = read_int(f);
1316         if (sum->count < 0) {
1317                 rprintf(FERROR, "Invalid checksum count %ld [%s]\n",
1318                         (long)sum->count, who_am_i());
1319                 exit_cleanup(RERR_PROTOCOL);
1320         }
1321         sum->blength = read_int(f);
1322         if (sum->blength < 0 || sum->blength > MAX_BLOCK_SIZE) {
1323                 rprintf(FERROR, "Invalid block length %ld [%s]\n",
1324                         (long)sum->blength, who_am_i());
1325                 exit_cleanup(RERR_PROTOCOL);
1326         }
1327         sum->s2length = protocol_version < 27 ? csum_length : (int)read_int(f);
1328         if (sum->s2length < 0 || sum->s2length > MAX_DIGEST_LEN) {
1329                 rprintf(FERROR, "Invalid checksum length %d [%s]\n",
1330                         sum->s2length, who_am_i());
1331                 exit_cleanup(RERR_PROTOCOL);
1332         }
1333         sum->remainder = read_int(f);
1334         if (sum->remainder < 0 || sum->remainder > sum->blength) {
1335                 rprintf(FERROR, "Invalid remainder length %ld [%s]\n",
1336                         (long)sum->remainder, who_am_i());
1337                 exit_cleanup(RERR_PROTOCOL);
1338         }
1339 }
1340
1341 /* Send the values from a sum_struct over the socket.  Set sum to
1342  * NULL if there are no checksums to send.  This is called by both
1343  * the generator and the sender. */
1344 void write_sum_head(int f, struct sum_struct *sum)
1345 {
1346         static struct sum_struct null_sum;
1347
1348         if (sum == NULL)
1349                 sum = &null_sum;
1350
1351         write_int(f, sum->count);
1352         write_int(f, sum->blength);
1353         if (protocol_version >= 27)
1354                 write_int(f, sum->s2length);
1355         write_int(f, sum->remainder);
1356 }
1357
1358 /**
1359  * Sleep after writing to limit I/O bandwidth usage.
1360  *
1361  * @todo Rather than sleeping after each write, it might be better to
1362  * use some kind of averaging.  The current algorithm seems to always
1363  * use a bit less bandwidth than specified, because it doesn't make up
1364  * for slow periods.  But arguably this is a feature.  In addition, we
1365  * ought to take the time used to write the data into account.
1366  *
1367  * During some phases of big transfers (file FOO is uptodate) this is
1368  * called with a small bytes_written every time.  As the kernel has to
1369  * round small waits up to guarantee that we actually wait at least the
1370  * requested number of microseconds, this can become grossly inaccurate.
1371  * We therefore keep track of the bytes we've written over time and only
1372  * sleep when the accumulated delay is at least 1 tenth of a second.
1373  **/
1374 static void sleep_for_bwlimit(int bytes_written)
1375 {
1376         static struct timeval prior_tv;
1377         static long total_written = 0;
1378         struct timeval tv, start_tv;
1379         long elapsed_usec, sleep_usec;
1380
1381 #define ONE_SEC 1000000L /* # of microseconds in a second */
1382
1383         if (!bwlimit_writemax)
1384                 return;
1385
1386         total_written += bytes_written;
1387
1388         gettimeofday(&start_tv, NULL);
1389         if (prior_tv.tv_sec) {
1390                 elapsed_usec = (start_tv.tv_sec - prior_tv.tv_sec) * ONE_SEC
1391                              + (start_tv.tv_usec - prior_tv.tv_usec);
1392                 total_written -= elapsed_usec * bwlimit / (ONE_SEC/1024);
1393                 if (total_written < 0)
1394                         total_written = 0;
1395         }
1396
1397         sleep_usec = total_written * (ONE_SEC/1024) / bwlimit;
1398         if (sleep_usec < ONE_SEC / 10) {
1399                 prior_tv = start_tv;
1400                 return;
1401         }
1402
1403         tv.tv_sec  = sleep_usec / ONE_SEC;
1404         tv.tv_usec = sleep_usec % ONE_SEC;
1405         select(0, NULL, NULL, NULL, &tv);
1406
1407         gettimeofday(&prior_tv, NULL);
1408         elapsed_usec = (prior_tv.tv_sec - start_tv.tv_sec) * ONE_SEC
1409                      + (prior_tv.tv_usec - start_tv.tv_usec);
1410         total_written = (sleep_usec - elapsed_usec) * bwlimit / (ONE_SEC/1024);
1411 }
1412
1413 /* Write len bytes to the file descriptor fd, looping as necessary to get
1414  * the job done and also (in certain circumstances) reading any data on
1415  * msg_fd_in to avoid deadlock.
1416  *
1417  * This function underlies the multiplexing system.  The body of the
1418  * application never calls this function directly. */
1419 static void writefd_unbuffered(int fd, const char *buf, size_t len)
1420 {
1421         size_t n, total = 0;
1422         fd_set w_fds, r_fds, e_fds;
1423         int maxfd, count, cnt, using_r_fds;
1424         int defer_inc = 0;
1425         struct timeval tv;
1426
1427         if (no_flush++)
1428                 defer_forwarding_messages++, defer_inc++;
1429
1430         while (total < len) {
1431                 FD_ZERO(&w_fds);
1432                 FD_SET(fd, &w_fds);
1433                 FD_ZERO(&e_fds);
1434                 FD_SET(fd, &e_fds);
1435                 maxfd = fd;
1436
1437                 if (msg_fd_in >= 0) {
1438                         FD_ZERO(&r_fds);
1439                         FD_SET(msg_fd_in, &r_fds);
1440                         if (msg_fd_in > maxfd)
1441                                 maxfd = msg_fd_in;
1442                         using_r_fds = 1;
1443                 } else
1444                         using_r_fds = 0;
1445
1446                 tv.tv_sec = select_timeout;
1447                 tv.tv_usec = 0;
1448
1449                 errno = 0;
1450                 count = select(maxfd + 1, using_r_fds ? &r_fds : NULL,
1451                                &w_fds, &e_fds, &tv);
1452
1453                 if (count <= 0) {
1454                         if (count < 0 && errno == EBADF)
1455                                 exit_cleanup(RERR_SOCKETIO);
1456                         check_timeout();
1457                         continue;
1458                 }
1459
1460                 /*if (FD_ISSET(fd, &e_fds))
1461                         rprintf(FINFO, "select exception on fd %d\n", fd); */
1462
1463                 if (using_r_fds && FD_ISSET(msg_fd_in, &r_fds))
1464                         read_msg_fd();
1465
1466                 if (!FD_ISSET(fd, &w_fds))
1467                         continue;
1468
1469                 n = len - total;
1470                 if (bwlimit_writemax && n > bwlimit_writemax)
1471                         n = bwlimit_writemax;
1472                 cnt = write(fd, buf + total, n);
1473
1474                 if (cnt <= 0) {
1475                         if (cnt < 0) {
1476                                 if (errno == EINTR)
1477                                         continue;
1478                                 if (errno == EWOULDBLOCK || errno == EAGAIN) {
1479                                         msleep(1);
1480                                         continue;
1481                                 }
1482                         }
1483
1484                         /* Don't try to write errors back across the stream. */
1485                         if (fd == sock_f_out)
1486                                 io_end_multiplex_out();
1487                         /* Don't try to write errors down a failing msg pipe. */
1488                         if (am_server && fd == msg_fd_out)
1489                                 exit_cleanup(RERR_STREAMIO);
1490                         rsyserr(FERROR, errno,
1491                                 "writefd_unbuffered failed to write %ld bytes [%s]",
1492                                 (long)len, who_am_i());
1493                         /* If the other side is sending us error messages, try
1494                          * to grab any messages they sent before they died. */
1495                         while (!am_server && fd == sock_f_out && io_multiplexing_in) {
1496                                 char buf[1024];
1497                                 set_io_timeout(30);
1498                                 ignore_timeout = 0;
1499                                 readfd_unbuffered(sock_f_in, buf, sizeof buf);
1500                         }
1501                         exit_cleanup(RERR_STREAMIO);
1502                 }
1503
1504                 total += cnt;
1505                 defer_forwarding_messages++, defer_inc++;
1506
1507                 if (fd == sock_f_out) {
1508                         if (io_timeout || am_generator)
1509                                 last_io_out = time(NULL);
1510                         sleep_for_bwlimit(cnt);
1511                 }
1512         }
1513
1514         no_flush--;
1515         if (!(defer_forwarding_messages -= defer_inc))
1516                 msg_flush();
1517 }
1518
1519 void io_flush(int flush_it_all)
1520 {
1521         if (!iobuf_out_cnt || no_flush)
1522                 return;
1523
1524         if (io_multiplexing_out)
1525                 mplex_write(sock_f_out, MSG_DATA, iobuf_out, iobuf_out_cnt, 0);
1526         else
1527                 writefd_unbuffered(iobuf_f_out, iobuf_out, iobuf_out_cnt);
1528         iobuf_out_cnt = 0;
1529
1530         if (flush_it_all && !defer_forwarding_messages)
1531                 msg_flush();
1532 }
1533
1534 static void writefd(int fd, const char *buf, size_t len)
1535 {
1536         if (fd == sock_f_out)
1537                 stats.total_written += len;
1538
1539         if (fd == write_batch_monitor_out) {
1540                 if ((size_t)write(batch_fd, buf, len) != len)
1541                         exit_cleanup(RERR_FILEIO);
1542         }
1543
1544         if (!iobuf_out || fd != iobuf_f_out) {
1545                 writefd_unbuffered(fd, buf, len);
1546                 return;
1547         }
1548
1549         while (len) {
1550                 int n = MIN((int)len, IO_BUFFER_SIZE - iobuf_out_cnt);
1551                 if (n > 0) {
1552                         memcpy(iobuf_out+iobuf_out_cnt, buf, n);
1553                         buf += n;
1554                         len -= n;
1555                         iobuf_out_cnt += n;
1556                 }
1557
1558                 if (iobuf_out_cnt == IO_BUFFER_SIZE)
1559                         io_flush(NORMAL_FLUSH);
1560         }
1561 }
1562
1563 void write_shortint(int f, unsigned short x)
1564 {
1565         char b[2];
1566         b[0] = (char)x;
1567         b[1] = (char)(x >> 8);
1568         writefd(f, b, 2);
1569 }
1570
1571 void write_int(int f, int32 x)
1572 {
1573         char b[4];
1574         SIVAL(b, 0, x);
1575         writefd(f, b, 4);
1576 }
1577
1578 void write_varint(int f, int32 x)
1579 {
1580         char b[5];
1581         uchar bit;
1582         int cnt = 4;
1583
1584         SIVAL(b, 1, x);
1585
1586         while (cnt > 1 && b[cnt] == 0)
1587                 cnt--;
1588         bit = ((uchar)1<<(7-cnt+1));
1589         if (CVAL(b, cnt) >= bit) {
1590                 cnt++;
1591                 *b = ~(bit-1);
1592         } else if (cnt > 1)
1593                 *b = b[cnt] | ~(bit*2-1);
1594         else
1595                 *b = b[cnt];
1596
1597         writefd(f, b, cnt);
1598 }
1599
1600 void write_varlong(int f, int64 x, uchar min_bytes)
1601 {
1602         char b[9];
1603         uchar bit;
1604         int cnt = 8;
1605
1606         SIVAL(b, 1, x);
1607 #if SIZEOF_INT64 >= 8
1608         SIVAL(b, 5, x >> 32);
1609 #else
1610         if (x <= 0x7FFFFFFF && x >= 0)
1611                 memset(b + 5, 0, 4);
1612         else {
1613                 rprintf(FERROR, "Integer overflow: attempted 64-bit offset\n");
1614                 exit_cleanup(RERR_UNSUPPORTED);
1615         }
1616 #endif
1617
1618         while (cnt > min_bytes && b[cnt] == 0)
1619                 cnt--;
1620         bit = ((uchar)1<<(7-cnt+min_bytes));
1621         if (CVAL(b, cnt) >= bit) {
1622                 cnt++;
1623                 *b = ~(bit-1);
1624         } else if (cnt > min_bytes)
1625                 *b = b[cnt] | ~(bit*2-1);
1626         else
1627                 *b = b[cnt];
1628
1629         writefd(f, b, cnt);
1630 }
1631
1632 /*
1633  * Note: int64 may actually be a 32-bit type if ./configure couldn't find any
1634  * 64-bit types on this platform.
1635  */
1636 void write_longint(int f, int64 x)
1637 {
1638         char b[12], * const s = b+4;
1639
1640         SIVAL(s, 0, x);
1641         if (x <= 0x7FFFFFFF && x >= 0) {
1642                 writefd(f, s, 4);
1643                 return;
1644         }
1645
1646 #if SIZEOF_INT64 < 8
1647         rprintf(FERROR, "Integer overflow: attempted 64-bit offset\n");
1648         exit_cleanup(RERR_UNSUPPORTED);
1649 #else
1650         memset(b, 0xFF, 4);
1651         SIVAL(s, 4, x >> 32);
1652         writefd(f, b, 12);
1653 #endif
1654 }
1655
1656 void write_buf(int f, const char *buf, size_t len)
1657 {
1658         writefd(f,buf,len);
1659 }
1660
1661 /** Write a string to the connection */
1662 void write_sbuf(int f, const char *buf)
1663 {
1664         writefd(f, buf, strlen(buf));
1665 }
1666
1667 void write_byte(int f, uchar c)
1668 {
1669         writefd(f, (char *)&c, 1);
1670 }
1671
1672 void write_vstring(int f, const char *str, int len)
1673 {
1674         uchar lenbuf[3], *lb = lenbuf;
1675
1676         if (len > 0x7F) {
1677                 if (len > 0x7FFF) {
1678                         rprintf(FERROR,
1679                                 "attempting to send over-long vstring (%d > %d)\n",
1680                                 len, 0x7FFF);
1681                         exit_cleanup(RERR_PROTOCOL);
1682                 }
1683                 *lb++ = len / 0x100 + 0x80;
1684         }
1685         *lb = len;
1686
1687         writefd(f, (char*)lenbuf, lb - lenbuf + 1);
1688         if (len)
1689                 writefd(f, str, len);
1690 }
1691
1692 /* Send a file-list index using a byte-reduction method. */
1693 void write_ndx(int f, int32 ndx)
1694 {
1695         static int32 prev_positive = -1, prev_negative = 1;
1696         int32 diff, cnt = 0;
1697         char b[6];
1698
1699         if (protocol_version < 30 || read_batch) {
1700                 write_int(f, ndx);
1701                 return;
1702         }
1703
1704         /* Send NDX_DONE as a single-byte 0 with no side effects.  Send
1705          * negative nums as a positive after sending a leading 0xFF. */
1706         if (ndx >= 0) {
1707                 diff = ndx - prev_positive;
1708                 prev_positive = ndx;
1709         } else if (ndx == NDX_DONE) {
1710                 *b = 0;
1711                 writefd(f, b, 1);
1712                 return;
1713         } else {
1714                 b[cnt++] = (char)0xFF;
1715                 ndx = -ndx;
1716                 diff = ndx - prev_negative;
1717                 prev_negative = ndx;
1718         }
1719
1720         /* A diff of 1 - 253 is sent as a one-byte diff; a diff of 254 - 32767
1721          * or 0 is sent as a 0xFE + a two-byte diff; otherwise we send 0xFE
1722          * & all 4 bytes of the (non-negative) num with the high-bit set. */
1723         if (diff < 0xFE && diff > 0)
1724                 b[cnt++] = (char)diff;
1725         else if (diff < 0 || diff > 0x7FFF) {
1726                 b[cnt++] = (char)0xFE;
1727                 b[cnt++] = (char)((ndx >> 24) | 0x80);
1728                 b[cnt++] = (char)ndx;
1729                 b[cnt++] = (char)(ndx >> 8);
1730                 b[cnt++] = (char)(ndx >> 16);
1731         } else {
1732                 b[cnt++] = (char)0xFE;
1733                 b[cnt++] = (char)(diff >> 8);
1734                 b[cnt++] = (char)diff;
1735         }
1736         writefd(f, b, cnt);
1737 }
1738
1739 /* Receive a file-list index using a byte-reduction method. */
1740 int32 read_ndx(int f)
1741 {
1742         static int32 prev_positive = -1, prev_negative = 1;
1743         int32 *prev_ptr, num;
1744         char b[4];
1745
1746         if (protocol_version < 30)
1747                 return read_int(f);
1748
1749         readfd(f, b, 1);
1750         if (CVAL(b, 0) == 0xFF) {
1751                 readfd(f, b, 1);
1752                 prev_ptr = &prev_negative;
1753         } else if (CVAL(b, 0) == 0)
1754                 return NDX_DONE;
1755         else
1756                 prev_ptr = &prev_positive;
1757         if (CVAL(b, 0) == 0xFE) {
1758                 readfd(f, b, 2);
1759                 if (CVAL(b, 0) & 0x80) {
1760                         b[3] = CVAL(b, 0) & ~0x80;
1761                         b[0] = b[1];
1762                         readfd(f, b+1, 2);
1763                         num = IVAL(b, 0);
1764                 } else
1765                         num = (UVAL(b,0)<<8) + UVAL(b,1) + *prev_ptr;
1766         } else
1767                 num = UVAL(b, 0) + *prev_ptr;
1768         *prev_ptr = num;
1769         if (prev_ptr == &prev_negative)
1770                 num = -num;
1771         return num;
1772 }
1773
1774 /* Read a line of up to bufsiz-1 characters into buf.  Strips
1775  * the (required) trailing newline and all carriage returns.
1776  * Returns 1 for success; 0 for I/O error or truncation. */
1777 int read_line_old(int f, char *buf, size_t bufsiz)
1778 {
1779         bufsiz--; /* leave room for the null */
1780         while (bufsiz > 0) {
1781                 buf[0] = 0;
1782                 read_buf(f, buf, 1);
1783                 if (buf[0] == 0)
1784                         return 0;
1785                 if (buf[0] == '\n')
1786                         break;
1787                 if (buf[0] != '\r') {
1788                         buf++;
1789                         bufsiz--;
1790                 }
1791         }
1792         *buf = '\0';
1793         return bufsiz > 0;
1794 }
1795
1796 void io_printf(int fd, const char *format, ...)
1797 {
1798         va_list ap;
1799         char buf[BIGPATHBUFLEN];
1800         int len;
1801
1802         va_start(ap, format);
1803         len = vsnprintf(buf, sizeof buf, format, ap);
1804         va_end(ap);
1805
1806         if (len < 0)
1807                 exit_cleanup(RERR_STREAMIO);
1808
1809         if (len > (int)sizeof buf) {
1810                 rprintf(FERROR, "io_printf() was too long for the buffer.\n");
1811                 exit_cleanup(RERR_STREAMIO);
1812         }
1813
1814         write_sbuf(fd, buf);
1815 }
1816
1817 /** Setup for multiplexing a MSG_* stream with the data stream. */
1818 void io_start_multiplex_out(void)
1819 {
1820         io_flush(NORMAL_FLUSH);
1821         io_start_buffering_out(sock_f_out);
1822         io_multiplexing_out = 1;
1823 }
1824
1825 /** Setup for multiplexing a MSG_* stream with the data stream. */
1826 void io_start_multiplex_in(void)
1827 {
1828         io_flush(NORMAL_FLUSH);
1829         io_start_buffering_in(sock_f_in);
1830         io_multiplexing_in = 1;
1831 }
1832
1833 /** Write an message to the multiplexed data stream. */
1834 int io_multiplex_write(enum msgcode code, const char *buf, size_t len, int convert)
1835 {
1836         if (!io_multiplexing_out)
1837                 return 0;
1838         io_flush(NORMAL_FLUSH);
1839         stats.total_written += (len+4);
1840         mplex_write(sock_f_out, code, buf, len, convert);
1841         return 1;
1842 }
1843
1844 void io_end_multiplex_in(void)
1845 {
1846         io_multiplexing_in = 0;
1847         io_end_buffering_in();
1848 }
1849
1850 /** Stop output multiplexing. */
1851 void io_end_multiplex_out(void)
1852 {
1853         io_multiplexing_out = 0;
1854         io_end_buffering_out();
1855 }
1856
1857 void start_write_batch(int fd)
1858 {
1859         /* Some communication has already taken place, but we don't
1860          * enable batch writing until here so that we can write a
1861          * canonical record of the communication even though the
1862          * actual communication so far depends on whether a daemon
1863          * is involved. */
1864         write_int(batch_fd, protocol_version);
1865         if (protocol_version >= 30)
1866                 write_byte(batch_fd, inc_recurse);
1867         write_int(batch_fd, checksum_seed);
1868
1869         if (am_sender)
1870                 write_batch_monitor_out = fd;
1871         else
1872                 write_batch_monitor_in = fd;
1873 }
1874
1875 void stop_write_batch(void)
1876 {
1877         write_batch_monitor_out = -1;
1878         write_batch_monitor_in = -1;
1879 }