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 #ifdef HAVE_SYS_SOCKET_H
43 # include <sys/socket.h>
44 #endif
45 
initialize_binary_request(memcached_instance_st * server,protocol_binary_request_header & header)46 void initialize_binary_request(memcached_instance_st* server, protocol_binary_request_header& header)
47 {
48   server->request_id++;
49   header.request.magic= PROTOCOL_BINARY_REQ;
50   header.request.opaque= htons(server->request_id);
51 }
52 
53 enum memc_read_or_write {
54   MEM_READ,
55   MEM_WRITE
56 };
57 
58 /**
59  * Try to fill the input buffer for a server with as much
60  * data as possible.
61  *
62  * @param instance the server to pack
63  */
repack_input_buffer(memcached_instance_st * instance)64 static bool repack_input_buffer(memcached_instance_st* instance)
65 {
66   if (instance->read_ptr != instance->read_buffer)
67   {
68     /* Move all of the data to the beginning of the buffer so
69      ** that we can fit more data into the buffer...
70    */
71     memmove(instance->read_buffer, instance->read_ptr, instance->read_buffer_length);
72     instance->read_ptr= instance->read_buffer;
73     instance->read_data_length= instance->read_buffer_length;
74   }
75 
76   /* There is room in the buffer, try to fill it! */
77   if (instance->read_buffer_length != MEMCACHED_MAX_BUFFER)
78   {
79     do {
80       /* Just try a single read to grab what's available */
81       ssize_t nr;
82       if ((nr= ::recv(instance->fd,
83                       instance->read_ptr + instance->read_data_length,
84                       MEMCACHED_MAX_BUFFER - instance->read_data_length,
85                       MSG_NOSIGNAL)) <= 0)
86       {
87         if (nr == 0)
88         {
89           memcached_set_error(*instance, MEMCACHED_CONNECTION_FAILURE, MEMCACHED_AT);
90         }
91         else
92         {
93           switch (get_socket_errno())
94           {
95           case EINTR:
96             continue;
97 
98 #if EWOULDBLOCK != EAGAIN
99           case EWOULDBLOCK:
100 #endif
101           case EAGAIN:
102 #ifdef __linux
103           case ERESTART:
104 #endif
105             break; // No IO is fine, we can just move on
106 
107           default:
108             memcached_set_errno(*instance, get_socket_errno(), MEMCACHED_AT);
109           }
110         }
111 
112         break;
113       }
114       else // We read data, append to our read buffer
115       {
116         instance->read_data_length+= size_t(nr);
117         instance->read_buffer_length+= size_t(nr);
118 
119         return true;
120       }
121     } while (false);
122   }
123 
124   return false;
125 }
126 
127 /**
128  * If the we have callbacks connected to this server structure
129  * we may start process the input queue and fire the callbacks
130  * for the incomming messages. This function is _only_ called
131  * when the input buffer is full, so that we _know_ that we have
132  * at least _one_ message to process.
133  *
134  * @param instance the server to star processing iput messages for
135  * @return true if we processed anything, false otherwise
136  */
process_input_buffer(memcached_instance_st * instance)137 static bool process_input_buffer(memcached_instance_st* instance)
138 {
139   /*
140    ** We might be able to process some of the response messages if we
141    ** have a callback set up
142  */
143   if (instance->root->callbacks != NULL)
144   {
145     /*
146      * We might have responses... try to read them out and fire
147      * callbacks
148    */
149     memcached_callback_st cb= *instance->root->callbacks;
150 
151     memcached_set_processing_input((Memcached *)instance->root, true);
152 
153     char buffer[MEMCACHED_DEFAULT_COMMAND_SIZE];
154     Memcached *root= (Memcached *)instance->root;
155     memcached_return_t error= memcached_response(instance, buffer, sizeof(buffer), &root->result);
156 
157     memcached_set_processing_input(root, false);
158 
159     if (error == MEMCACHED_SUCCESS)
160     {
161       for (unsigned int x= 0; x < cb.number_of_callback; x++)
162       {
163         error= (*cb.callback[x])(instance->root, &root->result, cb.context);
164         if (error != MEMCACHED_SUCCESS)
165         {
166           break;
167         }
168       }
169 
170       /* @todo what should I do with the error message??? */
171     }
172     /* @todo what should I do with other error messages?? */
173     return true;
174   }
175 
176   return false;
177 }
178 
io_wait(memcached_instance_st * instance,const short events)179 static memcached_return_t io_wait(memcached_instance_st* instance,
180                                   const short events)
181 {
182   /*
183    ** We are going to block on write, but at least on Solaris we might block
184    ** on write if we haven't read anything from our input buffer..
185    ** Try to purge the input buffer if we don't do any flow control in the
186    ** application layer (just sending a lot of data etc)
187    ** The test is moved down in the purge function to avoid duplication of
188    ** the test.
189  */
190   if (events & POLLOUT)
191   {
192     if (memcached_purge(instance) == false)
193     {
194       return MEMCACHED_FAILURE;
195     }
196   }
197 
198   struct pollfd fds;
199   fds.fd= instance->fd;
200   fds.events= events;
201   fds.revents= 0;
202 
203   if (fds.events & POLLOUT) /* write */
204   {
205     instance->io_wait_count.write++;
206   }
207   else
208   {
209     instance->io_wait_count.read++;
210   }
211 
212   if (instance->root->poll_timeout == 0) // Mimic 0 causes timeout behavior (not all platforms do this)
213   {
214     return memcached_set_error(*instance, MEMCACHED_TIMEOUT, MEMCACHED_AT, memcached_literal_param("poll_timeout() was set to zero"));
215   }
216 
217   size_t loop_max= 5;
218   while (--loop_max) // While loop is for ERESTART or EINTR
219   {
220     int active_fd= poll(&fds, 1, instance->root->poll_timeout);
221 
222     if (active_fd >= 1)
223     {
224       assert_msg(active_fd == 1 , "poll() returned an unexpected number of active file descriptors");
225       if (fds.revents & POLLIN or fds.revents & POLLOUT)
226       {
227         return MEMCACHED_SUCCESS;
228       }
229 
230       if (fds.revents & POLLHUP)
231       {
232         return memcached_set_error(*instance, MEMCACHED_CONNECTION_FAILURE, MEMCACHED_AT,
233                                    memcached_literal_param("poll() detected hang up"));
234       }
235 
236       if (fds.revents & POLLERR)
237       {
238         int local_errno= EINVAL;
239         int err;
240         socklen_t len= sizeof (err);
241         if (getsockopt(instance->fd, SOL_SOCKET, SO_ERROR, (char*)&err, &len) == 0)
242         {
243           if (err == 0) // treat this as EINTR
244           {
245             continue;
246           }
247           local_errno= err;
248         }
249         memcached_quit_server(instance, true);
250         return memcached_set_errno(*instance, local_errno, MEMCACHED_AT,
251                                    memcached_literal_param("poll() returned POLLHUP"));
252       }
253 
254       return memcached_set_error(*instance, MEMCACHED_FAILURE, MEMCACHED_AT, memcached_literal_param("poll() returned a value that was not dealt with"));
255     }
256 
257     if (active_fd == 0)
258     {
259       return memcached_set_error(*instance, MEMCACHED_TIMEOUT, MEMCACHED_AT, memcached_literal_param("No active_fd were found"));
260     }
261 
262     // Only an error should result in this code being called.
263     int local_errno= get_socket_errno(); // We cache in case memcached_quit_server() modifies errno
264     assert_msg(active_fd == -1 , "poll() returned an unexpected value");
265     switch (local_errno)
266     {
267 #ifdef __linux
268     case ERESTART:
269 #endif
270     case EINTR:
271       continue;
272 
273     case EFAULT:
274     case ENOMEM:
275       memcached_set_error(*instance, MEMCACHED_MEMORY_ALLOCATION_FAILURE, MEMCACHED_AT);
276 
277     case EINVAL:
278       memcached_set_error(*instance, MEMCACHED_MEMORY_ALLOCATION_FAILURE, MEMCACHED_AT, memcached_literal_param("RLIMIT_NOFILE exceeded, or if OSX the timeout value was invalid"));
279 
280     default:
281       memcached_set_errno(*instance, local_errno, MEMCACHED_AT, memcached_literal_param("poll"));
282     }
283 
284     break;
285   }
286 
287   memcached_quit_server(instance, true);
288 
289   if (memcached_has_error(instance))
290   {
291     return memcached_instance_error_return(instance);
292   }
293 
294   return memcached_set_error(*instance, MEMCACHED_CONNECTION_FAILURE, MEMCACHED_AT,
295                              memcached_literal_param("number of attempts to call io_wait() failed"));
296 }
297 
io_flush(memcached_instance_st * instance,const bool with_flush,memcached_return_t & error)298 static bool io_flush(memcached_instance_st* instance,
299                      const bool with_flush,
300                      memcached_return_t& error)
301 {
302   /*
303    ** We might want to purge the input buffer if we haven't consumed
304    ** any output yet... The test for the limits is the purge is inline
305    ** in the purge function to avoid duplicating the logic..
306  */
307   {
308     WATCHPOINT_ASSERT(instance->fd != INVALID_SOCKET);
309 
310     if (memcached_purge(instance) == false)
311     {
312       return false;
313     }
314   }
315   char *local_write_ptr= instance->write_buffer;
316   size_t write_length= instance->write_buffer_offset;
317 
318   error= MEMCACHED_SUCCESS;
319 
320   WATCHPOINT_ASSERT(instance->fd != INVALID_SOCKET);
321 
322   /* Looking for memory overflows */
323 #if defined(DEBUG)
324   if (write_length == MEMCACHED_MAX_BUFFER)
325     WATCHPOINT_ASSERT(instance->write_buffer == local_write_ptr);
326   WATCHPOINT_ASSERT((instance->write_buffer + MEMCACHED_MAX_BUFFER) >= (local_write_ptr + write_length));
327 #endif
328 
329   while (write_length)
330   {
331     WATCHPOINT_ASSERT(instance->fd != INVALID_SOCKET);
332     WATCHPOINT_ASSERT(write_length > 0);
333 
334     int flags;
335     if (with_flush)
336     {
337       flags= MSG_NOSIGNAL;
338     }
339     else
340     {
341       flags= MSG_NOSIGNAL|MSG_MORE;
342     }
343 
344     ssize_t sent_length= ::send(instance->fd, local_write_ptr, write_length, flags);
345     int local_errno= get_socket_errno(); // We cache in case memcached_quit_server() modifies errno
346 
347     if (sent_length == SOCKET_ERROR)
348     {
349 #if 0 // @todo I should look at why we hit this bit of code hard frequently
350       WATCHPOINT_ERRNO(get_socket_errno());
351       WATCHPOINT_NUMBER(get_socket_errno());
352 #endif
353       switch (get_socket_errno())
354       {
355       case ENOBUFS:
356         continue;
357 
358 #if EWOULDBLOCK != EAGAIN
359       case EWOULDBLOCK:
360 #endif
361       case EAGAIN:
362         {
363           /*
364            * We may be blocked on write because the input buffer
365            * is full. Let's check if we have room in our input
366            * buffer for more data and retry the write before
367            * waiting..
368          */
369           if (repack_input_buffer(instance) or process_input_buffer(instance))
370           {
371             continue;
372           }
373 
374           memcached_return_t rc= io_wait(instance, POLLOUT);
375           if (memcached_success(rc))
376           {
377             continue;
378           }
379           else if (rc == MEMCACHED_TIMEOUT)
380           {
381             return false;
382           }
383 
384           memcached_quit_server(instance, true);
385           error= memcached_set_errno(*instance, local_errno, MEMCACHED_AT);
386           return false;
387         }
388       case ENOTCONN:
389       case EPIPE:
390       default:
391         memcached_quit_server(instance, true);
392         error= memcached_set_errno(*instance, local_errno, MEMCACHED_AT);
393         WATCHPOINT_ASSERT(instance->fd == INVALID_SOCKET);
394         return false;
395       }
396     }
397 
398     instance->io_bytes_sent+= uint32_t(sent_length);
399 
400     local_write_ptr+= sent_length;
401     write_length-= uint32_t(sent_length);
402   }
403 
404   WATCHPOINT_ASSERT(write_length == 0);
405   instance->write_buffer_offset= 0;
406 
407   return true;
408 }
409 
memcached_io_wait_for_write(memcached_instance_st * instance)410 memcached_return_t memcached_io_wait_for_write(memcached_instance_st* instance)
411 {
412   return io_wait(instance, POLLOUT);
413 }
414 
memcached_io_wait_for_read(memcached_instance_st * instance)415 memcached_return_t memcached_io_wait_for_read(memcached_instance_st* instance)
416 {
417   return io_wait(instance, POLLIN);
418 }
419 
_io_fill(memcached_instance_st * instance)420 static memcached_return_t _io_fill(memcached_instance_st* instance)
421 {
422   ssize_t data_read;
423   do
424   {
425     data_read= ::recv(instance->fd, instance->read_buffer, MEMCACHED_MAX_BUFFER, MSG_NOSIGNAL);
426     int local_errno= get_socket_errno(); // We cache in case memcached_quit_server() modifies errno
427 
428     if (data_read == SOCKET_ERROR)
429     {
430       switch (get_socket_errno())
431       {
432       case EINTR: // We just retry
433         continue;
434 
435       case ETIMEDOUT: // OSX
436 #if EWOULDBLOCK != EAGAIN
437       case EWOULDBLOCK:
438 #endif
439       case EAGAIN:
440 #ifdef __linux
441       case ERESTART:
442 #endif
443         {
444           memcached_return_t io_wait_ret;
445           if (memcached_success(io_wait_ret= io_wait(instance, POLLIN)))
446           {
447             continue;
448           }
449 
450           return io_wait_ret;
451         }
452 
453         /* fall through */
454 
455       case ENOTCONN: // Programmer Error
456         WATCHPOINT_ASSERT(0);
457       case ENOTSOCK:
458         WATCHPOINT_ASSERT(0);
459       case EBADF:
460         assert_msg(instance->fd != INVALID_SOCKET, "Programmer error, invalid socket");
461       case EINVAL:
462       case EFAULT:
463       case ECONNREFUSED:
464       default:
465         memcached_quit_server(instance, true);
466         memcached_set_errno(*instance, local_errno, MEMCACHED_AT);
467         break;
468       }
469 
470       return memcached_instance_error_return(instance);
471     }
472     else if (data_read == 0)
473     {
474       /*
475         EOF. Any data received so far is incomplete
476         so discard it. This always reads by byte in case of TCP
477         and protocol enforcement happens at memcached_response()
478         looking for '\n'. We do not care for UDB which requests 8 bytes
479         at once. Generally, this means that connection went away. Since
480         for blocking I/O we do not return 0 and for non-blocking case
481         it will return EGAIN if data is not immediatly available.
482       */
483       memcached_quit_server(instance, true);
484       return memcached_set_error(*instance, MEMCACHED_CONNECTION_FAILURE, MEMCACHED_AT,
485                                  memcached_literal_param("::rec() returned zero, server has disconnected"));
486     }
487     instance->io_wait_count._bytes_read+= data_read;
488   } while (data_read <= 0);
489 
490   instance->io_bytes_sent= 0;
491   instance->read_data_length= (size_t) data_read;
492   instance->read_buffer_length= (size_t) data_read;
493   instance->read_ptr= instance->read_buffer;
494 
495   return MEMCACHED_SUCCESS;
496 }
497 
memcached_io_read(memcached_instance_st * instance,void * buffer,size_t length,ssize_t & nread)498 memcached_return_t memcached_io_read(memcached_instance_st* instance,
499                                      void *buffer, size_t length, ssize_t& nread)
500 {
501   assert(memcached_is_udp(instance->root) == false);
502   assert_msg(instance, "Programmer error, memcached_io_read() recieved an invalid Instance"); // Programmer error
503   char *buffer_ptr= static_cast<char *>(buffer);
504 
505   if (instance->fd == INVALID_SOCKET)
506   {
507 #if 0
508     assert_msg(int(instance->state) <= int(MEMCACHED_SERVER_STATE_ADDRINFO), "Programmer error, invalid socket state");
509 #endif
510     return MEMCACHED_CONNECTION_FAILURE;
511   }
512 
513   while (length)
514   {
515     if (instance->read_buffer_length == 0)
516     {
517       memcached_return_t io_fill_ret;
518       if (memcached_fatal(io_fill_ret= _io_fill(instance)))
519       {
520         nread= -1;
521         return io_fill_ret;
522       }
523     }
524 
525     if (length > 1)
526     {
527       size_t difference= (length > instance->read_buffer_length) ? instance->read_buffer_length : length;
528 
529       memcpy(buffer_ptr, instance->read_ptr, difference);
530       length -= difference;
531       instance->read_ptr+= difference;
532       instance->read_buffer_length-= difference;
533       buffer_ptr+= difference;
534     }
535     else
536     {
537       *buffer_ptr= *instance->read_ptr;
538       instance->read_ptr++;
539       instance->read_buffer_length--;
540       buffer_ptr++;
541       break;
542     }
543   }
544 
545   nread= ssize_t(buffer_ptr - (char*)buffer);
546 
547   return MEMCACHED_SUCCESS;
548 }
549 
memcached_io_slurp(memcached_instance_st * instance)550 memcached_return_t memcached_io_slurp(memcached_instance_st* instance)
551 {
552   assert_msg(instance, "Programmer error, invalid Instance");
553   assert(memcached_is_udp(instance->root) == false);
554 
555   if (instance->fd == INVALID_SOCKET)
556   {
557     assert_msg(int(instance->state) <= int(MEMCACHED_SERVER_STATE_ADDRINFO), "Invalid socket state");
558     return MEMCACHED_CONNECTION_FAILURE;
559   }
560 
561   ssize_t data_read;
562   char buffer[MEMCACHED_MAX_BUFFER];
563   do
564   {
565     data_read= ::recv(instance->fd, instance->read_buffer, sizeof(buffer), MSG_NOSIGNAL);
566     if (data_read == SOCKET_ERROR)
567     {
568       switch (get_socket_errno())
569       {
570       case EINTR: // We just retry
571         continue;
572 
573       case ETIMEDOUT: // OSX
574 #if EWOULDBLOCK != EAGAIN
575       case EWOULDBLOCK:
576 #endif
577       case EAGAIN:
578 #ifdef __linux
579       case ERESTART:
580 #endif
581         if (memcached_success(io_wait(instance, POLLIN)))
582         {
583           continue;
584         }
585         return MEMCACHED_IN_PROGRESS;
586 
587         /* fall through */
588 
589       case ENOTCONN: // Programmer Error
590         assert(0);
591       case ENOTSOCK:
592         assert(0);
593       case EBADF:
594         assert_msg(instance->fd != INVALID_SOCKET, "Invalid socket state");
595       case EINVAL:
596       case EFAULT:
597       case ECONNREFUSED:
598       default:
599         return MEMCACHED_CONNECTION_FAILURE; // We want this!
600       }
601     }
602   } while (data_read > 0);
603 
604   return MEMCACHED_CONNECTION_FAILURE;
605 }
606 
_io_write(memcached_instance_st * instance,const void * buffer,size_t length,bool with_flush,size_t & written)607 static bool _io_write(memcached_instance_st* instance,
608                       const void *buffer, size_t length, bool with_flush,
609                       size_t& written)
610 {
611   assert(instance->fd != INVALID_SOCKET);
612   assert(memcached_is_udp(instance->root) == false);
613 
614   const char *buffer_ptr= static_cast<const char *>(buffer);
615 
616   const size_t original_length= length;
617 
618   while (length)
619   {
620     char *write_ptr;
621     size_t buffer_end= MEMCACHED_MAX_BUFFER;
622     size_t should_write= buffer_end -instance->write_buffer_offset;
623     should_write= (should_write < length) ? should_write : length;
624 
625     write_ptr= instance->write_buffer + instance->write_buffer_offset;
626     memcpy(write_ptr, buffer_ptr, should_write);
627     instance->write_buffer_offset+= should_write;
628     buffer_ptr+= should_write;
629     length-= should_write;
630 
631     if (instance->write_buffer_offset == buffer_end)
632     {
633       WATCHPOINT_ASSERT(instance->fd != INVALID_SOCKET);
634 
635       memcached_return_t rc;
636       if (io_flush(instance, with_flush, rc) == false)
637       {
638         written= original_length -length;
639         return false;
640       }
641     }
642   }
643 
644   if (with_flush)
645   {
646     memcached_return_t rc;
647     WATCHPOINT_ASSERT(instance->fd != INVALID_SOCKET);
648     if (io_flush(instance, with_flush, rc) == false)
649     {
650       written= original_length -length;
651       return false;
652     }
653   }
654 
655   written= original_length -length;
656 
657   return true;
658 }
659 
memcached_io_write(memcached_instance_st * instance)660 bool memcached_io_write(memcached_instance_st* instance)
661 {
662   size_t written;
663   return _io_write(instance, NULL, 0, true, written);
664 }
665 
memcached_io_write(memcached_instance_st * instance,const void * buffer,const size_t length,const bool with_flush)666 ssize_t memcached_io_write(memcached_instance_st* instance,
667                            const void *buffer, const size_t length, const bool with_flush)
668 {
669   size_t written;
670 
671   if (_io_write(instance, buffer, length, with_flush, written) == false)
672   {
673     return -1;
674   }
675 
676   return ssize_t(written);
677 }
678 
memcached_io_writev(memcached_instance_st * instance,libmemcached_io_vector_st vector[],const size_t number_of,const bool with_flush)679 bool memcached_io_writev(memcached_instance_st* instance,
680                          libmemcached_io_vector_st vector[],
681                          const size_t number_of, const bool with_flush)
682 {
683   ssize_t complete_total= 0;
684   ssize_t total= 0;
685 
686   for (size_t x= 0; x < number_of; x++, vector++)
687   {
688     complete_total+= vector->length;
689     if (vector->length)
690     {
691       size_t written;
692       if ((_io_write(instance, vector->buffer, vector->length, false, written)) == false)
693       {
694         return false;
695       }
696       total+= written;
697     }
698   }
699 
700   if (with_flush)
701   {
702     if (memcached_io_write(instance) == false)
703     {
704       return false;
705     }
706   }
707 
708   return (complete_total == total);
709 }
710 
start_close_socket()711 void memcached_instance_st::start_close_socket()
712 {
713   if (fd != INVALID_SOCKET)
714   {
715     shutdown(fd, SHUT_WR);
716     options.is_shutting_down= true;
717   }
718 }
719 
reset_socket()720 void memcached_instance_st::reset_socket()
721 {
722   if (fd != INVALID_SOCKET)
723   {
724     (void)closesocket(fd);
725     fd= INVALID_SOCKET;
726   }
727 }
728 
close_socket()729 void memcached_instance_st::close_socket()
730 {
731   if (fd != INVALID_SOCKET)
732   {
733     int shutdown_options= SHUT_RD;
734     if (options.is_shutting_down == false)
735     {
736       shutdown_options= SHUT_RDWR;
737     }
738 
739     /* in case of death shutdown to avoid blocking at close() */
740     if (shutdown(fd, shutdown_options) == SOCKET_ERROR and get_socket_errno() != ENOTCONN)
741     {
742       WATCHPOINT_NUMBER(fd);
743       WATCHPOINT_ERRNO(get_socket_errno());
744       WATCHPOINT_ASSERT(get_socket_errno());
745     }
746 
747     reset_socket();
748     state= MEMCACHED_SERVER_STATE_NEW;
749   }
750 
751   state= MEMCACHED_SERVER_STATE_NEW;
752   cursor_active_= 0;
753   io_bytes_sent= 0;
754   write_buffer_offset= size_t(root and memcached_is_udp(root) ? UDP_DATAGRAM_HEADER_LENGTH : 0);
755   read_buffer_length= 0;
756   read_ptr= read_buffer;
757   options.is_shutting_down= false;
758   memcached_server_response_reset(this);
759 
760   // We reset the version so that if we end up talking to a different server
761   // we don't have stale server version information.
762   major_version= minor_version= micro_version= UINT8_MAX;
763 }
764 
memcached_io_get_readable_server(Memcached * memc,memcached_return_t &)765 memcached_instance_st* memcached_io_get_readable_server(Memcached *memc, memcached_return_t&)
766 {
767 #define MAX_SERVERS_TO_POLL 100
768   struct pollfd fds[MAX_SERVERS_TO_POLL];
769   nfds_t host_index= 0;
770 
771   for (uint32_t x= 0; x < memcached_server_count(memc) and host_index < MAX_SERVERS_TO_POLL; ++x)
772   {
773     memcached_instance_st* instance= memcached_instance_fetch(memc, x);
774 
775     if (instance->read_buffer_length > 0) /* I have data in the buffer */
776     {
777       return instance;
778     }
779 
780     if (instance->response_count() > 0)
781     {
782       fds[host_index].events= POLLIN;
783       fds[host_index].revents= 0;
784       fds[host_index].fd= instance->fd;
785       ++host_index;
786     }
787   }
788 
789   if (host_index < 2)
790   {
791     /* We have 0 or 1 server with pending events.. */
792     for (uint32_t x= 0; x< memcached_server_count(memc); ++x)
793     {
794       memcached_instance_st* instance= memcached_instance_fetch(memc, x);
795 
796       if (instance->response_count() > 0)
797       {
798         return instance;
799       }
800     }
801 
802     return NULL;
803   }
804 
805   int error= poll(fds, host_index, memc->poll_timeout);
806   switch (error)
807   {
808   case -1:
809     memcached_set_errno(*memc, get_socket_errno(), MEMCACHED_AT);
810     /* FALLTHROUGH */
811   case 0:
812     break;
813 
814   default:
815     for (nfds_t x= 0; x < host_index; ++x)
816     {
817       if (fds[x].revents & POLLIN)
818       {
819         for (uint32_t y= 0; y < memcached_server_count(memc); ++y)
820         {
821           memcached_instance_st* instance= memcached_instance_fetch(memc, y);
822 
823           if (instance->fd == fds[x].fd)
824           {
825             return instance;
826           }
827         }
828       }
829     }
830   }
831 
832   return NULL;
833 }
834 
835 /*
836   Eventually we will just kill off the server with the problem.
837 */
memcached_io_reset(memcached_instance_st * instance)838 void memcached_io_reset(memcached_instance_st* instance)
839 {
840   memcached_quit_server(instance, true);
841 }
842 
843 /**
844  * Read a given number of bytes from the server and place it into a specific
845  * buffer. Reset the IO channel on this server if an error occurs.
846  */
memcached_safe_read(memcached_instance_st * instance,void * dta,const size_t size)847 memcached_return_t memcached_safe_read(memcached_instance_st* instance,
848                                        void *dta,
849                                        const size_t size)
850 {
851   size_t offset= 0;
852   char *data= static_cast<char *>(dta);
853 
854   while (offset < size)
855   {
856     ssize_t nread;
857     memcached_return_t rc;
858 
859     while (memcached_continue(rc= memcached_io_read(instance, data + offset, size - offset, nread))) { };
860 
861     if (memcached_failed(rc))
862     {
863       return rc;
864     }
865 
866     offset+= size_t(nread);
867   }
868 
869   return MEMCACHED_SUCCESS;
870 }
871 
memcached_io_readline(memcached_instance_st * instance,char * buffer_ptr,size_t size,size_t & total_nr)872 memcached_return_t memcached_io_readline(memcached_instance_st* instance,
873                                          char *buffer_ptr,
874                                          size_t size,
875                                          size_t& total_nr)
876 {
877   total_nr= 0;
878   bool line_complete= false;
879 
880   while (line_complete == false)
881   {
882     if (instance->read_buffer_length == 0)
883     {
884       /*
885        * We don't have any data in the buffer, so let's fill the read
886        * buffer. Call the standard read function to avoid duplicating
887        * the logic.
888      */
889       ssize_t nread;
890       memcached_return_t rc= memcached_io_read(instance, buffer_ptr, 1, nread);
891       if (memcached_failed(rc) and rc == MEMCACHED_IN_PROGRESS)
892       {
893         memcached_quit_server(instance, true);
894         return memcached_set_error(*instance, rc, MEMCACHED_AT);
895       }
896       else if (memcached_failed(rc))
897       {
898         return rc;
899       }
900 
901       if (*buffer_ptr == '\n')
902       {
903         line_complete= true;
904       }
905 
906       ++buffer_ptr;
907       ++total_nr;
908     }
909 
910     /* Now let's look in the buffer and copy as we go! */
911     while (instance->read_buffer_length and total_nr < size and line_complete == false)
912     {
913       *buffer_ptr = *instance->read_ptr;
914       if (*buffer_ptr == '\n')
915       {
916         line_complete = true;
917       }
918       --instance->read_buffer_length;
919       ++instance->read_ptr;
920       ++total_nr;
921       ++buffer_ptr;
922     }
923 
924     if (total_nr == size)
925     {
926       return MEMCACHED_PROTOCOL_ERROR;
927     }
928   }
929 
930   return MEMCACHED_SUCCESS;
931 }
932