changes to get rsync working on a CRAY J90. This machine doesn't have
[rsync/rsync.git] / io.c
1 /* 
2    Copyright (C) Andrew Tridgell 1996
3    Copyright (C) Paul Mackerras 1996
4    
5    This program is free software; you can redistribute it and/or modify
6    it under the terms of the GNU General Public License as published by
7    the Free Software Foundation; either version 2 of the License, or
8    (at your option) any later version.
9    
10    This program is distributed in the hope that it will be useful,
11    but WITHOUT ANY WARRANTY; without even the implied warranty of
12    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
13    GNU General Public License for more details.
14    
15    You should have received a copy of the GNU General Public License
16    along with this program; if not, write to the Free Software
17    Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
18 */
19
20 /*
21   Utilities used in rsync 
22
23   tridge, June 1996
24   */
25 #include "rsync.h"
26
27 /* if no timeout is specified then use a 60 second select timeout */
28 #define SELECT_TIMEOUT 60
29
30 static int io_multiplexing_out;
31 static int io_multiplexing_in;
32 static int multiplex_in_fd;
33 static int multiplex_out_fd;
34 static time_t last_io;
35 static int eof_error=1;
36 extern int verbose;
37 extern int io_timeout;
38 extern struct stats stats;
39
40 static int buffer_f_in = -1;
41
42 void setup_readbuffer(int f_in)
43 {
44         buffer_f_in = f_in;
45 }
46
47 static void check_timeout(void)
48 {
49         time_t t;
50         
51         if (!io_timeout) return;
52
53         if (!last_io) {
54                 last_io = time(NULL);
55                 return;
56         }
57
58         t = time(NULL);
59
60         if (last_io && io_timeout && (t-last_io) >= io_timeout) {
61                 rprintf(FERROR,"io timeout after %d second - exiting\n", 
62                         (int)(t-last_io));
63                 exit_cleanup(1);
64         }
65 }
66
67
68 static char *read_buffer;
69 static char *read_buffer_p;
70 static int read_buffer_len;
71 static int read_buffer_size;
72 static int no_flush;
73 static int no_flush_read;
74
75 /* read from a socket with IO timeout. return the number of
76    bytes read. If no bytes can be read then exit, never return
77    a number <= 0 */
78 static int read_timeout(int fd, char *buf, int len)
79 {
80         int n, ret=0;
81
82         no_flush_read++;
83         io_flush();
84         no_flush_read--;
85
86         while (ret == 0) {
87                 fd_set fds;
88                 struct timeval tv;
89
90                 FD_ZERO(&fds);
91                 FD_SET(fd, &fds);
92                 tv.tv_sec = io_timeout?io_timeout:SELECT_TIMEOUT;
93                 tv.tv_usec = 0;
94
95                 if (select(fd+1, &fds, NULL, NULL, &tv) != 1) {
96                         check_timeout();
97                         continue;
98                 }
99
100                 n = read(fd, buf, len);
101
102                 if (n > 0) {
103                         stats.total_read += n;
104                         buf += n;
105                         len -= n;
106                         ret += n;
107                         if (io_timeout)
108                                 last_io = time(NULL);
109                         continue;
110                 }
111
112                 if (n == -1 && errno == EINTR) {
113                         continue;
114                 }
115
116                 if (n == -1 && 
117                     (errno == EAGAIN || errno == EWOULDBLOCK)) {
118                         /* this shouldn't happen, if it does then
119                            sleep for a short time to prevent us
120                            chewing too much CPU */
121                         u_sleep(100);
122                         continue;
123                 }
124
125                 if (n == 0) {
126                         if (eof_error) {
127                                 rprintf(FERROR,"unexpected EOF in read_timeout\n");
128                         }
129                         exit_cleanup(1);
130                 }
131
132                 rprintf(FERROR,"read error: %s\n", strerror(errno));
133                 exit_cleanup(1);
134         }
135
136         return ret;
137 }
138
139 /* continue trying to read len bytes - don't return until len
140    has been read */
141 static void read_loop(int fd, char *buf, int len)
142 {
143         while (len) {
144                 int n = read_timeout(fd, buf, len);
145
146                 buf += n;
147                 len -= n;
148         }
149 }
150
151 /* read from the file descriptor handling multiplexing - 
152    return number of bytes read
153    never return <= 0 */
154 static int read_unbuffered(int fd, char *buf, int len)
155 {
156         static int remaining;
157         char ibuf[4];
158         int tag, ret=0;
159         char line[1024];
160
161         if (!io_multiplexing_in || fd != multiplex_in_fd) 
162                 return read_timeout(fd, buf, len);
163
164         while (ret == 0) {
165                 if (remaining) {
166                         len = MIN(len, remaining);
167                         read_loop(fd, buf, len);
168                         remaining -= len;
169                         ret = len;
170                         continue;
171                 }
172
173                 read_loop(fd, ibuf, 4);
174                 tag = IVAL(ibuf, 0);
175
176                 remaining = tag & 0xFFFFFF;
177                 tag = tag >> 24;
178
179                 if (tag == MPLEX_BASE) continue;
180
181                 tag -= MPLEX_BASE;
182
183                 if (tag != FERROR && tag != FINFO) {
184                         rprintf(FERROR,"unexpected tag %d\n", tag);
185                         exit_cleanup(1);
186                 }
187
188                 if (remaining > sizeof(line)-1) {
189                         rprintf(FERROR,"multiplexing overflow %d\n\n", 
190                                 remaining);
191                         exit_cleanup(1);
192                 }
193
194                 read_loop(fd, line, remaining);
195                 line[remaining] = 0;
196
197                 rprintf(tag,"%s", line);
198                 remaining = 0;
199         }
200
201         return ret;
202 }
203
204
205
206 /* This function was added to overcome a deadlock problem when using
207  * ssh.  It looks like we can't allow our receive queue to get full or
208  * ssh will clag up. Uggh.  */
209 static void read_check(int f)
210 {
211         int n = 8192;
212
213         if (f == -1) return;
214
215         if (read_buffer_len == 0) {
216                 read_buffer_p = read_buffer;
217         }
218
219         if (n > MAX_READ_BUFFER/4)
220                 n = MAX_READ_BUFFER/4;
221
222         if (read_buffer_p != read_buffer) {
223                 memmove(read_buffer,read_buffer_p,read_buffer_len);
224                 read_buffer_p = read_buffer;
225         }
226
227         if (n > (read_buffer_size - read_buffer_len)) {
228                 read_buffer_size += n;
229                 read_buffer = (char *)Realloc(read_buffer,read_buffer_size);
230                 if (!read_buffer) out_of_memory("read check");      
231                 read_buffer_p = read_buffer;      
232         }
233
234         n = read_unbuffered(f,read_buffer+read_buffer_len,n);
235         read_buffer_len += n;
236 }
237
238
239 /* do a buffered read from fd. don't return until all N bytes
240    have been read. If all N can't be read then exit with an error */
241 static void readfd(int fd,char *buffer,int N)
242 {
243         int  ret;
244         int total=0;  
245         
246         if ((read_buffer_len < N) && (N < 1024)) {
247                 read_check(buffer_f_in);
248         }
249         
250         while (total < N) {
251                 if (read_buffer_len > 0 && buffer_f_in == fd) {
252                         ret = MIN(read_buffer_len,N-total);
253                         memcpy(buffer+total,read_buffer_p,ret);
254                         read_buffer_p += ret;
255                         read_buffer_len -= ret;
256                         total += ret;
257                         continue;
258                 } 
259
260                 no_flush_read++;
261                 io_flush();
262                 no_flush_read--;
263
264                 ret = read_unbuffered(fd,buffer + total,N-total);
265                 total += ret;
266         }
267 }
268
269
270 int32 read_int(int f)
271 {
272         char b[4];
273         readfd(f,b,4);
274         return IVAL(b,0);
275 }
276
277 int64 read_longint(int f)
278 {
279         extern int remote_version;
280         int64 ret;
281         char b[8];
282         ret = read_int(f);
283
284         if ((int32)ret != (int32)0xffffffff) {
285                 return ret;
286         }
287
288 #ifdef NO_INT64
289         rprintf(FERROR,"Integer overflow - attempted 64 bit offset\n");
290         exit_cleanup(1);
291 #else
292         if (remote_version >= 16) {
293                 readfd(f,b,8);
294                 ret = IVAL(b,0) | (((int64)IVAL(b,4))<<32);
295         }
296 #endif
297
298         return ret;
299 }
300
301 void read_buf(int f,char *buf,int len)
302 {
303         readfd(f,buf,len);
304 }
305
306 void read_sbuf(int f,char *buf,int len)
307 {
308         read_buf(f,buf,len);
309         buf[len] = 0;
310 }
311
312 unsigned char read_byte(int f)
313 {
314         unsigned char c;
315         read_buf(f,(char *)&c,1);
316         return c;
317 }
318
319
320
321 /* write len bytes to fd, possibly reading from buffer_f_in if set
322    in order to unclog the pipe. don't return until all len
323    bytes have been written */
324 static void writefd_unbuffered(int fd,char *buf,int len)
325 {
326         int total = 0;
327         fd_set w_fds, r_fds;
328         int fd_count, count;
329         struct timeval tv;
330         int reading=0;
331         int blocked=0;
332
333         no_flush++;
334
335         while (total < len) {
336                 FD_ZERO(&w_fds);
337                 FD_ZERO(&r_fds);
338                 FD_SET(fd,&w_fds);
339                 fd_count = fd+1;
340
341                 if (!no_flush_read) {
342                         reading = (buffer_f_in != -1);
343                 }
344
345                 if (reading) {
346                         FD_SET(buffer_f_in,&r_fds);
347                         if (buffer_f_in > fd) 
348                                 fd_count = buffer_f_in+1;
349                 }
350
351                 tv.tv_sec = io_timeout?io_timeout:SELECT_TIMEOUT;
352                 tv.tv_usec = 0;
353
354                 count = select(fd_count,
355                                reading?&r_fds:NULL,
356                                &w_fds,NULL,
357                                &tv);
358
359                 if (count <= 0) {
360                         check_timeout();
361                         continue;
362                 }
363
364                 if (reading && FD_ISSET(buffer_f_in, &r_fds)) {
365                         read_check(buffer_f_in);
366                 }
367
368                 if (FD_ISSET(fd, &w_fds)) {
369                         int n = (len-total)>>blocked;
370                         int ret = write(fd,buf+total,n?n:1);
371
372                         if (ret == -1 && errno == EINTR) {
373                                 continue;
374                         }
375
376                         if (ret == -1 && 
377                             (errno == EAGAIN || errno == EWOULDBLOCK)) {
378                                 blocked++;
379                                 continue;
380                         }
381
382                         if (ret <= 0) {
383                                 rprintf(FERROR,"erroring writing %d bytes - exiting\n", len);
384                                 exit_cleanup(1);
385                         }
386
387                         blocked = 0;
388                         total += ret;
389                         stats.total_written += ret;
390
391                         if (io_timeout)
392                                 last_io = time(NULL);
393                 }
394         }
395
396         no_flush--;
397 }
398
399
400 static char *io_buffer;
401 static int io_buffer_count;
402
403 void io_start_buffering(int fd)
404 {
405         if (io_buffer) return;
406         multiplex_out_fd = fd;
407         io_buffer = (char *)malloc(IO_BUFFER_SIZE+4);
408         if (!io_buffer) out_of_memory("writefd");
409         io_buffer_count = 0;
410
411         /* leave room for the multiplex header in case it's needed */
412         io_buffer += 4;
413 }
414
415 void io_flush(void)
416 {
417         int fd = multiplex_out_fd;
418         if (!io_buffer_count || no_flush) return;
419
420         if (io_multiplexing_out) {
421                 SIVAL(io_buffer-4, 0, (MPLEX_BASE<<24) + io_buffer_count);
422                 writefd_unbuffered(fd, io_buffer-4, io_buffer_count+4);
423         } else {
424                 writefd_unbuffered(fd, io_buffer, io_buffer_count);
425         }
426         io_buffer_count = 0;
427 }
428
429 void io_end_buffering(int fd)
430 {
431         io_flush();
432         if (!io_multiplexing_out) {
433                 free(io_buffer-4);
434                 io_buffer = NULL;
435         }
436 }
437
438 static void writefd(int fd,char *buf,int len)
439 {
440         if (!io_buffer) {
441                 writefd_unbuffered(fd, buf, len);
442                 return;
443         }
444
445         while (len) {
446                 int n = MIN(len, IO_BUFFER_SIZE-io_buffer_count);
447                 if (n > 0) {
448                         memcpy(io_buffer+io_buffer_count, buf, n);
449                         buf += n;
450                         len -= n;
451                         io_buffer_count += n;
452                 }
453                 
454                 if (io_buffer_count == IO_BUFFER_SIZE) io_flush();
455         }
456 }
457
458
459 void write_int(int f,int32 x)
460 {
461         char b[4];
462         SIVAL(b,0,x);
463         writefd(f,b,4);
464 }
465
466 void write_longint(int f, int64 x)
467 {
468         extern int remote_version;
469         char b[8];
470
471         if (remote_version < 16 || x <= 0x7FFFFFFF) {
472                 write_int(f, (int)x);
473                 return;
474         }
475
476         write_int(f, (int32)0xFFFFFFFF);
477         SIVAL(b,0,(x&0xFFFFFFFF));
478         SIVAL(b,4,((x>>32)&0xFFFFFFFF));
479
480         writefd(f,b,8);
481 }
482
483 void write_buf(int f,char *buf,int len)
484 {
485         writefd(f,buf,len);
486 }
487
488 /* write a string to the connection */
489 static void write_sbuf(int f,char *buf)
490 {
491         write_buf(f, buf, strlen(buf));
492 }
493
494
495 void write_byte(int f,unsigned char c)
496 {
497         write_buf(f,(char *)&c,1);
498 }
499
500 int read_line(int f, char *buf, int maxlen)
501 {
502         eof_error = 0;
503
504         while (maxlen) {
505                 buf[0] = 0;
506                 read_buf(f, buf, 1);
507                 if (buf[0] == 0) return 0;
508                 if (buf[0] == '\n') {
509                         buf[0] = 0;
510                         break;
511                 }
512                 if (buf[0] != '\r') {
513                         buf++;
514                         maxlen--;
515                 }
516         }
517         if (maxlen == 0) {
518                 *buf = 0;
519                 return 0;
520         }
521
522         eof_error = 1;
523
524         return 1;
525 }
526
527
528 void io_printf(int fd, const char *format, ...)
529 {
530         va_list ap;  
531         char buf[1024];
532         int len;
533         
534         va_start(ap, format);
535         len = vslprintf(buf, sizeof(buf)-1, format, ap);
536         va_end(ap);
537
538         if (len < 0) exit_cleanup(1);
539
540         write_sbuf(fd, buf);
541 }
542
543
544 /* setup for multiplexing an error stream with the data stream */
545 void io_start_multiplex_out(int fd)
546 {
547         multiplex_out_fd = fd;
548         io_flush();
549         io_start_buffering(fd);
550         io_multiplexing_out = 1;
551 }
552
553 /* setup for multiplexing an error stream with the data stream */
554 void io_start_multiplex_in(int fd)
555 {
556         multiplex_in_fd = fd;
557         io_flush();
558         if (read_buffer_len) {
559                 fprintf(stderr,"ERROR: data in read buffer at mplx start\n");
560                 exit_cleanup(1);
561         }
562
563         io_multiplexing_in = 1;
564 }
565
566 /* write an message to the error stream */
567 int io_multiplex_write(int f, char *buf, int len)
568 {
569         if (!io_multiplexing_out) return 0;
570
571         io_flush();
572
573         SIVAL(io_buffer-4, 0, ((MPLEX_BASE + f)<<24) + len);
574         memcpy(io_buffer, buf, len);
575
576         writefd_unbuffered(multiplex_out_fd, io_buffer-4, len+4);
577         return 1;
578 }
579
580 void io_close_input(int fd)
581 {
582         buffer_f_in = -1;
583 }