Update memcached, fix style in test cases.
[m6w6/libmemcached] / libmemcached / io.cc
1 /* vim:expandtab:shiftwidth=2:tabstop=2:smarttab:
2 *
3 * LibMemcached
4 *
5 * Copyright (C) 2011 Data Differential, http://datadifferential.com/
6 * Copyright (C) 2006-2009 Brian Aker
7 * All rights reserved.
8 *
9 * Redistribution and use in source and binary forms, with or without
10 * modification, are permitted provided that the following conditions are
11 * met:
12 *
13 * * Redistributions of source code must retain the above copyright
14 * notice, this list of conditions and the following disclaimer.
15 *
16 * * Redistributions in binary form must reproduce the above
17 * copyright notice, this list of conditions and the following disclaimer
18 * in the documentation and/or other materials provided with the
19 * distribution.
20 *
21 * * The names of its contributors may not be used to endorse or
22 * promote products derived from this software without specific prior
23 * written permission.
24 *
25 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
26 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
27 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
28 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
29 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
30 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
31 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
32 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
33 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
34 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
35 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
36 *
37 */
38
39
40 #include <libmemcached/common.h>
41
42 enum memc_read_or_write {
43 MEM_READ,
44 MEM_WRITE
45 };
46
47 /**
48 * Try to fill the input buffer for a server with as much
49 * data as possible.
50 *
51 * @param ptr the server to pack
52 */
53 static bool repack_input_buffer(memcached_server_write_instance_st ptr)
54 {
55 if (ptr->read_ptr != ptr->read_buffer)
56 {
57 /* Move all of the data to the beginning of the buffer so
58 ** that we can fit more data into the buffer...
59 */
60 memmove(ptr->read_buffer, ptr->read_ptr, ptr->read_buffer_length);
61 ptr->read_ptr= ptr->read_buffer;
62 ptr->read_data_length= ptr->read_buffer_length;
63 }
64
65 /* There is room in the buffer, try to fill it! */
66 if (ptr->read_buffer_length != MEMCACHED_MAX_BUFFER)
67 {
68 do {
69 /* Just try a single read to grab what's available */
70 ssize_t nr= recv(ptr->fd,
71 ptr->read_ptr + ptr->read_data_length,
72 MEMCACHED_MAX_BUFFER - ptr->read_data_length,
73 MSG_DONTWAIT);
74
75 switch (nr)
76 {
77 case SOCKET_ERROR:
78 {
79 switch (get_socket_errno())
80 {
81 case EINTR:
82 continue;
83
84 #if EWOULDBLOCK != EAGAIN
85 case EWOULDBLOCK:
86 #endif
87 case EAGAIN:
88 #ifdef TARGET_OS_LINUX
89 case ERESTART:
90 #endif
91 break; // No IO is fine, we can just move on
92
93 default:
94 memcached_set_errno(*ptr, get_socket_errno(), MEMCACHED_AT);
95 }
96 }
97 break;
98
99 case 0: // Shutdown on the socket has occurred
100 {
101 memcached_set_error(*ptr, MEMCACHED_CONNECTION_FAILURE, MEMCACHED_AT);
102 }
103 break;
104
105 default:
106 {
107 ptr->read_data_length+= size_t(nr);
108 ptr->read_buffer_length+= size_t(nr);
109 return true;
110 }
111 break;
112 }
113 } while (0);
114 }
115 return false;
116 }
117
118 /**
119 * If the we have callbacks connected to this server structure
120 * we may start process the input queue and fire the callbacks
121 * for the incomming messages. This function is _only_ called
122 * when the input buffer is full, so that we _know_ that we have
123 * at least _one_ message to process.
124 *
125 * @param ptr the server to star processing iput messages for
126 * @return true if we processed anything, false otherwise
127 */
128 static bool process_input_buffer(memcached_server_write_instance_st ptr)
129 {
130 /*
131 ** We might be able to process some of the response messages if we
132 ** have a callback set up
133 */
134 if (ptr->root->callbacks != NULL)
135 {
136 /*
137 * We might have responses... try to read them out and fire
138 * callbacks
139 */
140 memcached_callback_st cb= *ptr->root->callbacks;
141
142 memcached_set_processing_input((memcached_st *)ptr->root, true);
143
144 char buffer[MEMCACHED_DEFAULT_COMMAND_SIZE];
145 memcached_st *root= (memcached_st *)ptr->root;
146 memcached_return_t error= memcached_response(ptr, buffer, sizeof(buffer), &root->result);
147
148 memcached_set_processing_input(root, false);
149
150 if (error == MEMCACHED_SUCCESS)
151 {
152 for (unsigned int x= 0; x < cb.number_of_callback; x++)
153 {
154 error= (*cb.callback[x])(ptr->root, &root->result, cb.context);
155 if (error != MEMCACHED_SUCCESS)
156 {
157 break;
158 }
159 }
160
161 /* @todo what should I do with the error message??? */
162 }
163 /* @todo what should I do with other error messages?? */
164 return true;
165 }
166
167 return false;
168 }
169
170 static memcached_return_t io_wait(memcached_server_write_instance_st ptr,
171 const memc_read_or_write read_or_write)
172 {
173 /*
174 ** We are going to block on write, but at least on Solaris we might block
175 ** on write if we haven't read anything from our input buffer..
176 ** Try to purge the input buffer if we don't do any flow control in the
177 ** application layer (just sending a lot of data etc)
178 ** The test is moved down in the purge function to avoid duplication of
179 ** the test.
180 */
181 if (read_or_write == MEM_WRITE)
182 {
183 if (memcached_fatal(memcached_purge(ptr)))
184 {
185 return MEMCACHED_FAILURE;
186 }
187 }
188
189 struct pollfd fds;
190 memset(&fds, 0, sizeof(pollfd));
191 fds.fd= ptr->fd;
192 fds.events= POLLIN;
193
194 if (read_or_write == MEM_WRITE) /* write */
195 {
196 fds.events= POLLOUT;
197 ptr->io_wait_count.write++;
198 }
199 else
200 {
201 ptr->io_wait_count.read++;
202 }
203
204 if (ptr->root->poll_timeout == 0) // Mimic 0 causes timeout behavior (not all platforms do this)
205 {
206 ptr->io_wait_count.timeouts++;
207 return memcached_set_error(*ptr, MEMCACHED_TIMEOUT, MEMCACHED_AT);
208 }
209
210 int local_errno;
211 size_t loop_max= 5;
212 while (--loop_max) // While loop is for ERESTART or EINTR
213 {
214 int active_fd= poll(&fds, 1, ptr->root->poll_timeout);
215
216 if (active_fd >= 1)
217 {
218 assert_msg(active_fd == 1 , "poll() returned an unexpected value");
219 return MEMCACHED_SUCCESS;
220 }
221 else if (active_fd == 0)
222 {
223 ptr->io_wait_count.timeouts++;
224 return memcached_set_error(*ptr, MEMCACHED_TIMEOUT, MEMCACHED_AT);
225 }
226
227 // Only an error should result in this code being called.
228 local_errno= get_socket_errno(); // We cache in case memcached_quit_server() modifies errno
229 assert_msg(active_fd == -1 , "poll() returned an unexpected value");
230 switch (local_errno)
231 {
232 #ifdef TARGET_OS_LINUX
233 case ERESTART:
234 #endif
235 case EINTR:
236 continue;
237
238 case EFAULT:
239 case ENOMEM:
240 return memcached_set_error(*ptr, MEMCACHED_MEMORY_ALLOCATION_FAILURE, MEMCACHED_AT);
241
242 case EINVAL:
243 return memcached_set_error(*ptr, MEMCACHED_MEMORY_ALLOCATION_FAILURE, MEMCACHED_AT, memcached_literal_param("RLIMIT_NOFILE exceeded, or if OSX the timeout value was invalid"));
244
245 default:
246 if (fds.revents & POLLERR)
247 {
248 int err;
249 socklen_t len= sizeof (err);
250 if (getsockopt(ptr->fd, SOL_SOCKET, SO_ERROR, &err, &len) == 0)
251 {
252 if (err == 0) // treat this as EINTR
253 {
254 continue;
255 }
256 local_errno= err;
257 }
258 }
259 break;
260 }
261
262 break; // should only occur from poll error
263 }
264
265 memcached_quit_server(ptr, true);
266
267 return memcached_set_errno(*ptr, local_errno, MEMCACHED_AT);
268 }
269
270 static bool io_flush(memcached_server_write_instance_st ptr,
271 const bool with_flush,
272 memcached_return_t& error)
273 {
274 /*
275 ** We might want to purge the input buffer if we haven't consumed
276 ** any output yet... The test for the limits is the purge is inline
277 ** in the purge function to avoid duplicating the logic..
278 */
279 {
280 WATCHPOINT_ASSERT(ptr->fd != INVALID_SOCKET);
281 memcached_return_t rc= memcached_purge(ptr);
282
283 if (rc != MEMCACHED_SUCCESS and rc != MEMCACHED_STORED)
284 {
285 return false;
286 }
287 }
288 char *local_write_ptr= ptr->write_buffer;
289 size_t write_length= ptr->write_buffer_offset;
290
291 error= MEMCACHED_SUCCESS;
292
293 WATCHPOINT_ASSERT(ptr->fd != INVALID_SOCKET);
294
295 /* Looking for memory overflows */
296 #if defined(DEBUG)
297 if (write_length == MEMCACHED_MAX_BUFFER)
298 WATCHPOINT_ASSERT(ptr->write_buffer == local_write_ptr);
299 WATCHPOINT_ASSERT((ptr->write_buffer + MEMCACHED_MAX_BUFFER) >= (local_write_ptr + write_length));
300 #endif
301
302 while (write_length)
303 {
304 WATCHPOINT_ASSERT(ptr->fd != INVALID_SOCKET);
305 WATCHPOINT_ASSERT(write_length > 0);
306
307 int flags= with_flush ? MSG_NOSIGNAL|MSG_DONTWAIT : MSG_NOSIGNAL|MSG_DONTWAIT|MSG_MORE;
308 ssize_t sent_length= ::send(ptr->fd, local_write_ptr, write_length, flags);
309
310 if (sent_length == SOCKET_ERROR)
311 {
312 #if 0 // @todo I should look at why we hit this bit of code hard frequently
313 WATCHPOINT_ERRNO(get_socket_errno());
314 WATCHPOINT_NUMBER(get_socket_errno());
315 #endif
316 switch (get_socket_errno())
317 {
318 case ENOBUFS:
319 continue;
320
321 #if EWOULDBLOCK != EAGAIN
322 case EWOULDBLOCK:
323 #endif
324 case EAGAIN:
325 {
326 /*
327 * We may be blocked on write because the input buffer
328 * is full. Let's check if we have room in our input
329 * buffer for more data and retry the write before
330 * waiting..
331 */
332 if (repack_input_buffer(ptr) or process_input_buffer(ptr))
333 {
334 continue;
335 }
336
337 memcached_return_t rc= io_wait(ptr, MEM_WRITE);
338 if (memcached_success(rc))
339 {
340 continue;
341 }
342 else if (rc == MEMCACHED_TIMEOUT)
343 {
344 return false;
345 }
346
347 memcached_quit_server(ptr, true);
348 error= memcached_set_errno(*ptr, get_socket_errno(), MEMCACHED_AT);
349 return false;
350 }
351 case ENOTCONN:
352 case EPIPE:
353 default:
354 memcached_quit_server(ptr, true);
355 error= memcached_set_errno(*ptr, get_socket_errno(), MEMCACHED_AT);
356 WATCHPOINT_ASSERT(ptr->fd == INVALID_SOCKET);
357 return false;
358 }
359 }
360
361 ptr->io_bytes_sent+= uint32_t(sent_length);
362
363 local_write_ptr+= sent_length;
364 write_length-= uint32_t(sent_length);
365 }
366
367 WATCHPOINT_ASSERT(write_length == 0);
368 ptr->write_buffer_offset= 0;
369
370 return true;
371 }
372
373 memcached_return_t memcached_io_wait_for_write(memcached_server_write_instance_st ptr)
374 {
375 return io_wait(ptr, MEM_WRITE);
376 }
377
378 memcached_return_t memcached_io_read(memcached_server_write_instance_st ptr,
379 void *buffer, size_t length, ssize_t& nread)
380 {
381 assert(memcached_is_udp(ptr->root) == false);
382 assert_msg(ptr, "Programmer error, memcached_io_read() recieved an invalid memcached_server_write_instance_st"); // Programmer error
383 char *buffer_ptr= static_cast<char *>(buffer);
384
385 if (ptr->fd == INVALID_SOCKET)
386 {
387 #if 0
388 assert_msg(int(ptr->state) <= int(MEMCACHED_SERVER_STATE_ADDRINFO), "Programmer error, invalid socket state");
389 #endif
390 return MEMCACHED_CONNECTION_FAILURE;
391 }
392
393 while (length)
394 {
395 if (ptr->read_buffer_length == 0)
396 {
397 ssize_t data_read;
398 do
399 {
400 data_read= ::recv(ptr->fd, ptr->read_buffer, MEMCACHED_MAX_BUFFER, MSG_DONTWAIT);
401 if (data_read == SOCKET_ERROR)
402 {
403 switch (get_socket_errno())
404 {
405 case EINTR: // We just retry
406 continue;
407
408 case ETIMEDOUT: // OSX
409 #if EWOULDBLOCK != EAGAIN
410 case EWOULDBLOCK:
411 #endif
412 case EAGAIN:
413 #ifdef TARGET_OS_LINUX
414 case ERESTART:
415 #endif
416 {
417 memcached_return_t io_wait_ret;
418 if (memcached_success(io_wait_ret= io_wait(ptr, MEM_READ)))
419 {
420 continue;
421 }
422
423 return io_wait_ret;
424 }
425
426 /* fall through */
427
428 case ENOTCONN: // Programmer Error
429 WATCHPOINT_ASSERT(0);
430 case ENOTSOCK:
431 WATCHPOINT_ASSERT(0);
432 case EBADF:
433 assert_msg(ptr->fd != INVALID_SOCKET, "Programmer error, invalid socket");
434 case EINVAL:
435 case EFAULT:
436 case ECONNREFUSED:
437 default:
438 {
439 memcached_quit_server(ptr, true);
440 nread= -1;
441 return memcached_set_errno(*ptr, get_socket_errno(), MEMCACHED_AT);
442 }
443 }
444 }
445 else if (data_read == 0)
446 {
447 /*
448 EOF. Any data received so far is incomplete
449 so discard it. This always reads by byte in case of TCP
450 and protocol enforcement happens at memcached_response()
451 looking for '\n'. We do not care for UDB which requests 8 bytes
452 at once. Generally, this means that connection went away. Since
453 for blocking I/O we do not return 0 and for non-blocking case
454 it will return EGAIN if data is not immediatly available.
455 */
456 WATCHPOINT_STRING("We had a zero length recv()");
457 memcached_quit_server(ptr, true);
458 nread= -1;
459 return memcached_set_error(*ptr, MEMCACHED_CONNECTION_FAILURE, MEMCACHED_AT,
460 memcached_literal_param("::rec() returned zero, server has disconnected"));
461 }
462 } while (data_read <= 0);
463
464 ptr->io_bytes_sent = 0;
465 ptr->read_data_length= (size_t) data_read;
466 ptr->read_buffer_length= (size_t) data_read;
467 ptr->read_ptr= ptr->read_buffer;
468 }
469
470 if (length > 1)
471 {
472 size_t difference;
473
474 difference= (length > ptr->read_buffer_length) ? ptr->read_buffer_length : length;
475
476 memcpy(buffer_ptr, ptr->read_ptr, difference);
477 length -= difference;
478 ptr->read_ptr+= difference;
479 ptr->read_buffer_length-= difference;
480 buffer_ptr+= difference;
481 }
482 else
483 {
484 *buffer_ptr= *ptr->read_ptr;
485 ptr->read_ptr++;
486 ptr->read_buffer_length--;
487 buffer_ptr++;
488 break;
489 }
490 }
491
492 nread= ssize_t(buffer_ptr - (char*)buffer);
493
494 return MEMCACHED_SUCCESS;
495 }
496
497 memcached_return_t memcached_io_slurp(memcached_server_write_instance_st ptr)
498 {
499 assert_msg(ptr, "Programmer error, invalid memcached_server_write_instance_st");
500 assert(memcached_is_udp(ptr->root) == false);
501
502 if (ptr->fd == INVALID_SOCKET)
503 {
504 assert_msg(int(ptr->state) <= int(MEMCACHED_SERVER_STATE_ADDRINFO), "Invalid socket state");
505 return MEMCACHED_CONNECTION_FAILURE;
506 }
507
508 ssize_t data_read;
509 char buffer[MEMCACHED_MAX_BUFFER];
510 do
511 {
512 data_read= recv(ptr->fd, ptr->read_buffer, sizeof(buffer), MSG_DONTWAIT);
513 if (data_read == SOCKET_ERROR)
514 {
515 switch (get_socket_errno())
516 {
517 case EINTR: // We just retry
518 continue;
519
520 case ETIMEDOUT: // OSX
521 #if EWOULDBLOCK != EAGAIN
522 case EWOULDBLOCK:
523 #endif
524 case EAGAIN:
525 #ifdef TARGET_OS_LINUX
526 case ERESTART:
527 #endif
528 if (memcached_success(io_wait(ptr, MEM_READ)))
529 {
530 continue;
531 }
532 return MEMCACHED_IN_PROGRESS;
533
534 /* fall through */
535
536 case ENOTCONN: // Programmer Error
537 WATCHPOINT_ASSERT(0);
538 case ENOTSOCK:
539 WATCHPOINT_ASSERT(0);
540 case EBADF:
541 assert_msg(ptr->fd != INVALID_SOCKET, "Invalid socket state");
542 case EINVAL:
543 case EFAULT:
544 case ECONNREFUSED:
545 default:
546 return MEMCACHED_CONNECTION_FAILURE; // We want this!
547 }
548 }
549 } while (data_read > 0);
550
551 return MEMCACHED_CONNECTION_FAILURE;
552 }
553
554 static bool _io_write(memcached_server_write_instance_st ptr,
555 const void *buffer, size_t length, bool with_flush,
556 size_t& written)
557 {
558 WATCHPOINT_ASSERT(ptr->fd != INVALID_SOCKET);
559 assert(memcached_is_udp(ptr->root) == false);
560
561 const char *buffer_ptr= static_cast<const char *>(buffer);
562
563 const size_t original_length= length;
564
565 while (length)
566 {
567 char *write_ptr;
568 size_t buffer_end= MEMCACHED_MAX_BUFFER;
569 size_t should_write= buffer_end -ptr->write_buffer_offset;
570 should_write= (should_write < length) ? should_write : length;
571
572 write_ptr= ptr->write_buffer + ptr->write_buffer_offset;
573 memcpy(write_ptr, buffer_ptr, should_write);
574 ptr->write_buffer_offset+= should_write;
575 buffer_ptr+= should_write;
576 length-= should_write;
577
578 if (ptr->write_buffer_offset == buffer_end)
579 {
580 WATCHPOINT_ASSERT(ptr->fd != INVALID_SOCKET);
581
582 memcached_return_t rc;
583 if (io_flush(ptr, with_flush, rc) == false)
584 {
585 written= original_length -length;
586 return false;
587 }
588 }
589 }
590
591 if (with_flush)
592 {
593 memcached_return_t rc;
594 WATCHPOINT_ASSERT(ptr->fd != INVALID_SOCKET);
595 if (io_flush(ptr, with_flush, rc) == false)
596 {
597 written= original_length -length;
598 return false;
599 }
600 }
601
602 written= original_length -length;
603
604 return true;
605 }
606
607 bool memcached_io_write(memcached_server_write_instance_st ptr)
608 {
609 size_t written;
610 return _io_write(ptr, NULL, 0, true, written);
611 }
612
613 ssize_t memcached_io_write(memcached_server_write_instance_st ptr,
614 const void *buffer, const size_t length, const bool with_flush)
615 {
616 size_t written;
617
618 if (_io_write(ptr, buffer, length, with_flush, written) == false)
619 {
620 return -1;
621 }
622
623 return ssize_t(written);
624 }
625
626 ssize_t memcached_io_writev(memcached_server_write_instance_st ptr,
627 libmemcached_io_vector_st vector[],
628 const size_t number_of, const bool with_flush)
629 {
630 ssize_t total= 0;
631
632 for (size_t x= 0; x < number_of; x++, vector++)
633 {
634 if (vector->length)
635 {
636 size_t written;
637 if ((_io_write(ptr, vector->buffer, vector->length, false, written)) == false)
638 {
639 return -1;
640 }
641 total+= written;
642 }
643 }
644
645 if (with_flush)
646 {
647 if (memcached_io_write(ptr) == false)
648 {
649 return -1;
650 }
651 }
652
653 return total;
654 }
655
656
657 void memcached_io_close(memcached_server_write_instance_st ptr)
658 {
659 if (ptr->fd == INVALID_SOCKET)
660 {
661 return;
662 }
663
664 /* in case of death shutdown to avoid blocking at close() */
665 if (shutdown(ptr->fd, SHUT_RDWR) == SOCKET_ERROR && get_socket_errno() != ENOTCONN)
666 {
667 WATCHPOINT_NUMBER(ptr->fd);
668 WATCHPOINT_ERRNO(get_socket_errno());
669 WATCHPOINT_ASSERT(get_socket_errno());
670 }
671
672 if (closesocket(ptr->fd) == SOCKET_ERROR)
673 {
674 WATCHPOINT_ERRNO(get_socket_errno());
675 }
676 ptr->state= MEMCACHED_SERVER_STATE_NEW;
677 ptr->fd= INVALID_SOCKET;
678 }
679
680 memcached_server_write_instance_st memcached_io_get_readable_server(memcached_st *memc)
681 {
682 #define MAX_SERVERS_TO_POLL 100
683 struct pollfd fds[MAX_SERVERS_TO_POLL];
684 nfds_t host_index= 0;
685
686 for (uint32_t x= 0; x < memcached_server_count(memc) and host_index < MAX_SERVERS_TO_POLL; ++x)
687 {
688 memcached_server_write_instance_st instance= memcached_server_instance_fetch(memc, x);
689
690 if (instance->read_buffer_length > 0) /* I have data in the buffer */
691 {
692 return instance;
693 }
694
695 if (memcached_server_response_count(instance) > 0)
696 {
697 fds[host_index].events = POLLIN;
698 fds[host_index].revents = 0;
699 fds[host_index].fd = instance->fd;
700 ++host_index;
701 }
702 }
703
704 if (host_index < 2)
705 {
706 /* We have 0 or 1 server with pending events.. */
707 for (uint32_t x= 0; x< memcached_server_count(memc); ++x)
708 {
709 memcached_server_write_instance_st instance=
710 memcached_server_instance_fetch(memc, x);
711
712 if (memcached_server_response_count(instance) > 0)
713 {
714 return instance;
715 }
716 }
717
718 return NULL;
719 }
720
721 int error= poll(fds, host_index, memc->poll_timeout);
722 switch (error)
723 {
724 case -1:
725 memcached_set_errno(*memc, get_socket_errno(), MEMCACHED_AT);
726 /* FALLTHROUGH */
727 case 0:
728 break;
729
730 default:
731 for (nfds_t x= 0; x < host_index; ++x)
732 {
733 if (fds[x].revents & POLLIN)
734 {
735 for (uint32_t y= 0; y < memcached_server_count(memc); ++y)
736 {
737 memcached_server_write_instance_st instance= memcached_server_instance_fetch(memc, y);
738
739 if (instance->fd == fds[x].fd)
740 {
741 return instance;
742 }
743 }
744 }
745 }
746 }
747
748 return NULL;
749 }
750
751 /*
752 Eventually we will just kill off the server with the problem.
753 */
754 void memcached_io_reset(memcached_server_write_instance_st ptr)
755 {
756 memcached_quit_server(ptr, true);
757 }
758
759 /**
760 * Read a given number of bytes from the server and place it into a specific
761 * buffer. Reset the IO channel on this server if an error occurs.
762 */
763 memcached_return_t memcached_safe_read(memcached_server_write_instance_st ptr,
764 void *dta,
765 const size_t size)
766 {
767 size_t offset= 0;
768 char *data= static_cast<char *>(dta);
769
770 while (offset < size)
771 {
772 ssize_t nread;
773 memcached_return_t rc;
774
775 while (memcached_continue(rc= memcached_io_read(ptr, data + offset, size - offset, nread))) { };
776
777 if (memcached_failed(rc))
778 {
779 return rc;
780 }
781
782 offset+= size_t(nread);
783 }
784
785 return MEMCACHED_SUCCESS;
786 }
787
788 memcached_return_t memcached_io_readline(memcached_server_write_instance_st ptr,
789 char *buffer_ptr,
790 size_t size,
791 size_t& total_nr)
792 {
793 total_nr= 0;
794 bool line_complete= false;
795
796 while (line_complete == false)
797 {
798 if (ptr->read_buffer_length == 0)
799 {
800 /*
801 * We don't have any data in the buffer, so let's fill the read
802 * buffer. Call the standard read function to avoid duplicating
803 * the logic.
804 */
805 ssize_t nread;
806 memcached_return_t rc= memcached_io_read(ptr, buffer_ptr, 1, nread);
807 if (memcached_failed(rc) and rc == MEMCACHED_IN_PROGRESS)
808 {
809 memcached_quit_server(ptr, true);
810 return memcached_set_error(*ptr, rc, MEMCACHED_AT);
811 }
812 else if (memcached_failed(rc))
813 {
814 return rc;
815 }
816
817 if (*buffer_ptr == '\n')
818 {
819 line_complete= true;
820 }
821
822 ++buffer_ptr;
823 ++total_nr;
824 }
825
826 /* Now let's look in the buffer and copy as we go! */
827 while (ptr->read_buffer_length && total_nr < size && !line_complete)
828 {
829 *buffer_ptr = *ptr->read_ptr;
830 if (*buffer_ptr == '\n')
831 {
832 line_complete = true;
833 }
834 --ptr->read_buffer_length;
835 ++ptr->read_ptr;
836 ++total_nr;
837 ++buffer_ptr;
838 }
839
840 if (total_nr == size)
841 {
842 return MEMCACHED_PROTOCOL_ERROR;
843 }
844 }
845
846 return MEMCACHED_SUCCESS;
847 }