Update for storage to now use vector
[m6w6/libmemcached] / libmemcached / behavior.cc
1 /* vim:expandtab:shiftwidth=2:tabstop=2:smarttab:
2 *
3 * Libmemcached library
4 *
5 * Copyright (C) 2011 Data Differential, http://datadifferential.com/
6 * Copyright (C) 2006-2009 Brian Aker All rights reserved.
7 *
8 * Redistribution and use in source and binary forms, with or without
9 * modification, are permitted provided that the following conditions are
10 * met:
11 *
12 * * Redistributions of source code must retain the above copyright
13 * notice, this list of conditions and the following disclaimer.
14 *
15 * * Redistributions in binary form must reproduce the above
16 * copyright notice, this list of conditions and the following disclaimer
17 * in the documentation and/or other materials provided with the
18 * distribution.
19 *
20 * * The names of its contributors may not be used to endorse or
21 * promote products derived from this software without specific prior
22 * written permission.
23 *
24 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
25 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
26 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
27 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
28 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
29 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
30 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
31 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
32 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
33 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
34 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
35 *
36 */
37
38 #include <libmemcached/common.h>
39 #include <libmemcached/options.hpp>
40 #include <libmemcached/virtual_bucket.h>
41
42 #include <ctime>
43 #include <sys/types.h>
44
45 /*
46 This function is used to modify the behavior of running client.
47
48 We quit all connections so we can reset the sockets.
49 */
50
51 memcached_return_t memcached_behavior_set(memcached_st *ptr,
52 const memcached_behavior_t flag,
53 uint64_t data)
54 {
55 if (not ptr)
56 {
57 return MEMCACHED_INVALID_ARGUMENTS;
58 }
59
60 switch (flag)
61 {
62 case MEMCACHED_BEHAVIOR_NUMBER_OF_REPLICAS:
63 ptr->number_of_replicas= (uint32_t)data;
64 break;
65
66 case MEMCACHED_BEHAVIOR_IO_MSG_WATERMARK:
67 ptr->io_msg_watermark= (uint32_t) data;
68 break;
69
70 case MEMCACHED_BEHAVIOR_IO_BYTES_WATERMARK:
71 ptr->io_bytes_watermark= (uint32_t)data;
72 break;
73
74 case MEMCACHED_BEHAVIOR_IO_KEY_PREFETCH:
75 ptr->io_key_prefetch = (uint32_t)data;
76 break;
77
78 case MEMCACHED_BEHAVIOR_SND_TIMEOUT:
79 ptr->snd_timeout= (int32_t)data;
80 break;
81
82 case MEMCACHED_BEHAVIOR_RCV_TIMEOUT:
83 ptr->rcv_timeout= (int32_t)data;
84 break;
85
86 case MEMCACHED_BEHAVIOR_REMOVE_FAILED_SERVERS:
87 ptr->flags.auto_eject_hosts= bool(data);
88
89 case MEMCACHED_BEHAVIOR_SERVER_FAILURE_LIMIT:
90 if (data == 0)
91 {
92 return memcached_set_error(*ptr, MEMCACHED_INVALID_ARGUMENTS, MEMCACHED_AT,
93 memcached_literal_param("MEMCACHED_BEHAVIOR_SERVER_FAILURE_LIMIT requires a value greater then zero."));
94 }
95 ptr->server_failure_limit= uint32_t(data);
96 break;
97
98 case MEMCACHED_BEHAVIOR_BINARY_PROTOCOL:
99 send_quit(ptr); // We need t shutdown all of the connections to make sure we do the correct protocol
100 if (data)
101 {
102 ptr->flags.verify_key= false;
103 }
104 ptr->flags.binary_protocol= bool(data);
105 break;
106
107 case MEMCACHED_BEHAVIOR_SUPPORT_CAS:
108 ptr->flags.support_cas= bool(data);
109 break;
110
111 case MEMCACHED_BEHAVIOR_NO_BLOCK:
112 ptr->flags.no_block= bool(data);
113 send_quit(ptr);
114 break;
115
116 case MEMCACHED_BEHAVIOR_BUFFER_REQUESTS:
117 if (ptr->flags.use_udp)
118 {
119 return memcached_set_error(*ptr, MEMCACHED_INVALID_ARGUMENTS, MEMCACHED_AT,
120 memcached_literal_param("MEMCACHED_BEHAVIOR_BUFFER_REQUESTS cannot be set while MEMCACHED_BEHAVIOR_USE_UDP is enabled."));
121 }
122 ptr->flags.buffer_requests= bool(data);
123 send_quit(ptr);
124 break;
125
126 case MEMCACHED_BEHAVIOR_USE_UDP:
127 send_quit(ptr); // We need t shutdown all of the connections to make sure we do the correct protocol
128 ptr->flags.use_udp= bool(data);
129 if (bool(data))
130 {
131 ptr->flags.reply= false;
132 ptr->flags.buffer_requests= false;
133 }
134 else
135 {
136 ptr->flags.reply= true;
137 }
138 break;
139
140 case MEMCACHED_BEHAVIOR_TCP_NODELAY:
141 ptr->flags.tcp_nodelay= bool(data);
142 send_quit(ptr);
143 break;
144
145 case MEMCACHED_BEHAVIOR_TCP_KEEPALIVE:
146 ptr->flags.tcp_keepalive= bool(data);
147 send_quit(ptr);
148 break;
149
150 case MEMCACHED_BEHAVIOR_DISTRIBUTION:
151 return memcached_behavior_set_distribution(ptr, (memcached_server_distribution_t)data);
152
153 case MEMCACHED_BEHAVIOR_KETAMA:
154 {
155 if (data) // Turn on
156 return memcached_behavior_set_distribution(ptr, MEMCACHED_DISTRIBUTION_CONSISTENT_KETAMA);
157
158 return memcached_behavior_set_distribution(ptr, MEMCACHED_DISTRIBUTION_MODULA);
159 }
160
161 case MEMCACHED_BEHAVIOR_KETAMA_WEIGHTED:
162 {
163 (void)memcached_behavior_set_key_hash(ptr, MEMCACHED_HASH_MD5);
164 (void)memcached_behavior_set_distribution_hash(ptr, MEMCACHED_HASH_MD5);
165 ptr->ketama.weighted= bool(data);
166 /**
167 @note We try to keep the same distribution going. This should be deprecated and rewritten.
168 */
169 return memcached_behavior_set_distribution(ptr, MEMCACHED_DISTRIBUTION_CONSISTENT_KETAMA);
170 }
171
172 case MEMCACHED_BEHAVIOR_HASH:
173 return memcached_behavior_set_key_hash(ptr, (memcached_hash_t)(data));
174
175 case MEMCACHED_BEHAVIOR_KETAMA_HASH:
176 return memcached_behavior_set_distribution_hash(ptr, (memcached_hash_t)(data));
177
178 case MEMCACHED_BEHAVIOR_CACHE_LOOKUPS:
179 return memcached_set_error(*ptr, MEMCACHED_DEPRECATED, MEMCACHED_AT,
180 memcached_literal_param("MEMCACHED_BEHAVIOR_CACHE_LOOKUPS has been deprecated."));
181
182 case MEMCACHED_BEHAVIOR_VERIFY_KEY:
183 if (ptr->flags.binary_protocol)
184 return memcached_set_error(*ptr, MEMCACHED_INVALID_ARGUMENTS, MEMCACHED_AT,
185 memcached_literal_param("MEMCACHED_BEHAVIOR_VERIFY_KEY if the binary protocol has been enabled."));
186 ptr->flags.verify_key= bool(data);
187 break;
188
189 case MEMCACHED_BEHAVIOR_SORT_HOSTS:
190 {
191 ptr->flags.use_sort_hosts= bool(data);
192 run_distribution(ptr);
193
194 break;
195 }
196
197 case MEMCACHED_BEHAVIOR_POLL_TIMEOUT:
198 ptr->poll_timeout= (int32_t)data;
199 break;
200
201 case MEMCACHED_BEHAVIOR_CONNECT_TIMEOUT:
202 ptr->connect_timeout= (int32_t)data;
203 break;
204
205 case MEMCACHED_BEHAVIOR_RETRY_TIMEOUT:
206 if (data == 0)
207 {
208 return memcached_set_error(*ptr, MEMCACHED_INVALID_ARGUMENTS, MEMCACHED_AT,
209 memcached_literal_param("MEMCACHED_BEHAVIOR_RETRY_TIMEOUT requires a value greater then zero."));
210 }
211 ptr->retry_timeout= int32_t(data);
212 break;
213
214 case MEMCACHED_BEHAVIOR_SOCKET_SEND_SIZE:
215 ptr->send_size= (int32_t)data;
216 send_quit(ptr);
217 break;
218
219 case MEMCACHED_BEHAVIOR_SOCKET_RECV_SIZE:
220 ptr->recv_size= (int32_t)data;
221 send_quit(ptr);
222 break;
223
224 case MEMCACHED_BEHAVIOR_TCP_KEEPIDLE:
225 ptr->tcp_keepidle= (uint32_t)data;
226 send_quit(ptr);
227 break;
228
229 case MEMCACHED_BEHAVIOR_USER_DATA:
230 return memcached_set_error(*ptr, MEMCACHED_DEPRECATED, MEMCACHED_AT,
231 memcached_literal_param("MEMCACHED_BEHAVIOR_USER_DATA deprecated."));
232
233 case MEMCACHED_BEHAVIOR_HASH_WITH_PREFIX_KEY:
234 ptr->flags.hash_with_namespace= bool(data);
235 break;
236
237 case MEMCACHED_BEHAVIOR_NOREPLY:
238 if (ptr->flags.use_udp and bool(data) == false)
239 {
240 return memcached_set_error(*ptr, MEMCACHED_INVALID_ARGUMENTS, MEMCACHED_AT,
241 memcached_literal_param("MEMCACHED_BEHAVIOR_NOREPLY cannot be disabled while MEMCACHED_BEHAVIOR_USE_UDP is enabled."));
242 }
243 // We reverse the logic here to make it easier to understand throughout the
244 // code.
245 ptr->flags.reply= bool(data) ? false : true;
246 break;
247
248 case MEMCACHED_BEHAVIOR_AUTO_EJECT_HOSTS:
249 ptr->flags.auto_eject_hosts= bool(data);
250 break;
251
252 case MEMCACHED_BEHAVIOR_RANDOMIZE_REPLICA_READ:
253 srandom((uint32_t) time(NULL));
254 ptr->flags.randomize_replica_read= bool(data);
255 break;
256
257 case MEMCACHED_BEHAVIOR_CORK:
258 return memcached_set_error(*ptr, MEMCACHED_DEPRECATED, MEMCACHED_AT,
259 memcached_literal_param("MEMCACHED_BEHAVIOR_CORK is now incorporated into the driver by default."));
260
261 case MEMCACHED_BEHAVIOR_LOAD_FROM_FILE:
262 return memcached_set_error(*ptr, MEMCACHED_INVALID_ARGUMENTS, MEMCACHED_AT,
263 memcached_literal_param("MEMCACHED_BEHAVIOR_LOAD_FROM_FILE can not be set with memcached_behavior_set()"));
264
265 case MEMCACHED_BEHAVIOR_MAX:
266 default:
267 /* Shouldn't get here */
268 assert_msg(0, "Invalid behavior passed to memcached_behavior_set()");
269 return memcached_set_error(*ptr, MEMCACHED_INVALID_ARGUMENTS, MEMCACHED_AT,
270 memcached_literal_param("Invalid behavior passed to memcached_behavior_set()"));
271 }
272
273 return MEMCACHED_SUCCESS;
274 }
275
276 bool _is_auto_eject_host(const memcached_st *ptr)
277 {
278 return ptr->flags.auto_eject_hosts;
279 }
280
281 uint64_t memcached_behavior_get(memcached_st *ptr,
282 const memcached_behavior_t flag)
283 {
284 if (not ptr)
285 {
286 return MEMCACHED_INVALID_ARGUMENTS;
287 }
288
289 switch (flag)
290 {
291 case MEMCACHED_BEHAVIOR_NUMBER_OF_REPLICAS:
292 return ptr->number_of_replicas;
293
294 case MEMCACHED_BEHAVIOR_IO_MSG_WATERMARK:
295 return ptr->io_msg_watermark;
296
297 case MEMCACHED_BEHAVIOR_IO_BYTES_WATERMARK:
298 return ptr->io_bytes_watermark;
299
300 case MEMCACHED_BEHAVIOR_IO_KEY_PREFETCH:
301 return ptr->io_key_prefetch;
302
303 case MEMCACHED_BEHAVIOR_BINARY_PROTOCOL:
304 return ptr->flags.binary_protocol;
305
306 case MEMCACHED_BEHAVIOR_SUPPORT_CAS:
307 return ptr->flags.support_cas;
308
309 case MEMCACHED_BEHAVIOR_CACHE_LOOKUPS:
310 return true;
311
312 case MEMCACHED_BEHAVIOR_NO_BLOCK:
313 return ptr->flags.no_block;
314
315 case MEMCACHED_BEHAVIOR_BUFFER_REQUESTS:
316 return ptr->flags.buffer_requests;
317
318 case MEMCACHED_BEHAVIOR_USE_UDP:
319 return ptr->flags.use_udp;
320
321 case MEMCACHED_BEHAVIOR_TCP_NODELAY:
322 return ptr->flags.tcp_nodelay;
323
324 case MEMCACHED_BEHAVIOR_VERIFY_KEY:
325 return ptr->flags.verify_key;
326
327 case MEMCACHED_BEHAVIOR_KETAMA_WEIGHTED:
328 return ptr->ketama.weighted;
329
330 case MEMCACHED_BEHAVIOR_DISTRIBUTION:
331 return ptr->distribution;
332
333 case MEMCACHED_BEHAVIOR_KETAMA:
334 return (ptr->distribution == MEMCACHED_DISTRIBUTION_CONSISTENT_KETAMA) ? (uint64_t) 1 : 0;
335
336 case MEMCACHED_BEHAVIOR_HASH:
337 return hashkit_get_function(&ptr->hashkit);
338
339 case MEMCACHED_BEHAVIOR_KETAMA_HASH:
340 return hashkit_get_function(&ptr->hashkit);
341
342 case MEMCACHED_BEHAVIOR_REMOVE_FAILED_SERVERS:
343 case MEMCACHED_BEHAVIOR_SERVER_FAILURE_LIMIT:
344 return ptr->server_failure_limit;
345
346 case MEMCACHED_BEHAVIOR_SORT_HOSTS:
347 return ptr->flags.use_sort_hosts;
348
349 case MEMCACHED_BEHAVIOR_POLL_TIMEOUT:
350 return (uint64_t)ptr->poll_timeout;
351
352 case MEMCACHED_BEHAVIOR_CONNECT_TIMEOUT:
353 return (uint64_t)ptr->connect_timeout;
354
355 case MEMCACHED_BEHAVIOR_RETRY_TIMEOUT:
356 return (uint64_t)ptr->retry_timeout;
357
358 case MEMCACHED_BEHAVIOR_SND_TIMEOUT:
359 return (uint64_t)ptr->snd_timeout;
360
361 case MEMCACHED_BEHAVIOR_RCV_TIMEOUT:
362 return (uint64_t)ptr->rcv_timeout;
363
364 case MEMCACHED_BEHAVIOR_TCP_KEEPIDLE:
365 return (uint64_t)ptr->tcp_keepidle;
366
367 case MEMCACHED_BEHAVIOR_SOCKET_SEND_SIZE:
368 {
369 int sock_size= 0;
370 socklen_t sock_length= sizeof(int);
371
372 if (ptr->send_size != -1) // If value is -1 then we are using the default
373 {
374 return (uint64_t) ptr->send_size;
375 }
376
377 memcached_server_write_instance_st instance= memcached_server_instance_fetch(ptr, 0);
378
379 if (instance) // If we have an instance we test, otherwise we just set and pray
380 {
381 /* REFACTOR */
382 /* We just try the first host, and if it is down we return zero */
383 if (memcached_failed(memcached_connect(instance)))
384 {
385 return 0;
386 }
387
388 if (memcached_failed(memcached_io_wait_for_write(instance)))
389 {
390 return 0;
391 }
392
393 if (getsockopt(instance->fd, SOL_SOCKET, SO_SNDBUF, &sock_size, &sock_length) < 0)
394 {
395 memcached_set_errno(*ptr, get_socket_errno(), MEMCACHED_AT);
396 return 0; /* Zero means error */
397 }
398 }
399
400 return (uint64_t) sock_size;
401 }
402
403 case MEMCACHED_BEHAVIOR_SOCKET_RECV_SIZE:
404 {
405 int sock_size= 0;
406 socklen_t sock_length= sizeof(int);
407
408 if (ptr->recv_size != -1) // If value is -1 then we are using the default
409 return (uint64_t) ptr->recv_size;
410
411 memcached_server_write_instance_st instance= memcached_server_instance_fetch(ptr, 0);
412
413 /**
414 @note REFACTOR
415 */
416 if (instance)
417 {
418 /* We just try the first host, and if it is down we return zero */
419 if (memcached_failed(memcached_connect(instance)))
420 {
421 return 0;
422 }
423
424 if (memcached_failed(memcached_io_wait_for_write(instance)))
425 {
426 return 0;
427 }
428
429 if (getsockopt(instance->fd, SOL_SOCKET, SO_RCVBUF, &sock_size, &sock_length) < 0)
430 {
431 memcached_set_errno(*ptr, get_socket_errno(), MEMCACHED_AT);
432 return 0; /* Zero means error */
433 }
434 }
435
436 return (uint64_t) sock_size;
437 }
438
439 case MEMCACHED_BEHAVIOR_USER_DATA:
440 memcached_set_error(*ptr, MEMCACHED_DEPRECATED, MEMCACHED_AT,
441 memcached_literal_param("MEMCACHED_BEHAVIOR_USER_DATA deprecated."));
442 return 0;
443
444 case MEMCACHED_BEHAVIOR_HASH_WITH_PREFIX_KEY:
445 return ptr->flags.hash_with_namespace;
446
447 case MEMCACHED_BEHAVIOR_NOREPLY:
448 return ptr->flags.reply ? false : true;
449
450 case MEMCACHED_BEHAVIOR_AUTO_EJECT_HOSTS:
451 return ptr->flags.auto_eject_hosts;
452
453 case MEMCACHED_BEHAVIOR_RANDOMIZE_REPLICA_READ:
454 return ptr->flags.randomize_replica_read;
455
456 case MEMCACHED_BEHAVIOR_CORK:
457 #ifdef HAVE_MSG_MORE
458 return true;
459 #else
460 return false;
461 #endif
462
463 case MEMCACHED_BEHAVIOR_TCP_KEEPALIVE:
464 return ptr->flags.tcp_keepalive;
465
466 case MEMCACHED_BEHAVIOR_LOAD_FROM_FILE:
467 return bool(memcached_parse_filename(ptr));
468
469 case MEMCACHED_BEHAVIOR_MAX:
470 default:
471 assert_msg(0, "Invalid behavior passed to memcached_behavior_set()");
472 return 0;
473 }
474
475 /* NOTREACHED */
476 }
477
478
479 memcached_return_t memcached_behavior_set_distribution(memcached_st *ptr, memcached_server_distribution_t type)
480 {
481 if (type < MEMCACHED_DISTRIBUTION_CONSISTENT_MAX)
482 {
483 if (MEMCACHED_DISTRIBUTION_CONSISTENT_WEIGHTED)
484 {
485 ptr->ketama.weighted= true;
486 }
487 else
488 {
489 ptr->ketama.weighted= false;
490 }
491
492 ptr->distribution= type;
493 run_distribution(ptr);
494
495 return MEMCACHED_SUCCESS;
496 }
497
498 return memcached_set_error(*ptr, MEMCACHED_INVALID_ARGUMENTS, MEMCACHED_AT,
499 memcached_literal_param("Invalid memcached_server_distribution_t"));
500 }
501
502
503 memcached_server_distribution_t memcached_behavior_get_distribution(memcached_st *ptr)
504 {
505 return ptr->distribution;
506 }
507
508 memcached_return_t memcached_behavior_set_key_hash(memcached_st *ptr, memcached_hash_t type)
509 {
510 if (hashkit_success(hashkit_set_function(&ptr->hashkit, (hashkit_hash_algorithm_t)type)))
511 {
512 return MEMCACHED_SUCCESS;
513 }
514
515 return memcached_set_error(*ptr, MEMCACHED_INVALID_ARGUMENTS, MEMCACHED_AT,
516 memcached_literal_param("Invalid memcached_hash_t()"));
517 }
518
519 memcached_hash_t memcached_behavior_get_key_hash(memcached_st *ptr)
520 {
521 return (memcached_hash_t)hashkit_get_function(&ptr->hashkit);
522 }
523
524 memcached_return_t memcached_behavior_set_distribution_hash(memcached_st *ptr, memcached_hash_t type)
525 {
526 if (hashkit_success(hashkit_set_distribution_function(&ptr->hashkit, (hashkit_hash_algorithm_t)type)))
527 return MEMCACHED_SUCCESS;
528
529 return memcached_set_error(*ptr, MEMCACHED_INVALID_ARGUMENTS, MEMCACHED_AT,
530 memcached_literal_param("Invalid memcached_hash_t()"));
531 }
532
533 memcached_hash_t memcached_behavior_get_distribution_hash(memcached_st *ptr)
534 {
535 return (memcached_hash_t)hashkit_get_function(&ptr->hashkit);
536 }
537
538 const char *libmemcached_string_behavior(const memcached_behavior_t flag)
539 {
540 switch (flag)
541 {
542 case MEMCACHED_BEHAVIOR_NO_BLOCK: return "MEMCACHED_BEHAVIOR_NO_BLOCK";
543 case MEMCACHED_BEHAVIOR_TCP_NODELAY: return "MEMCACHED_BEHAVIOR_TCP_NODELAY";
544 case MEMCACHED_BEHAVIOR_HASH: return "MEMCACHED_BEHAVIOR_HASH";
545 case MEMCACHED_BEHAVIOR_KETAMA: return "MEMCACHED_BEHAVIOR_KETAMA";
546 case MEMCACHED_BEHAVIOR_SOCKET_SEND_SIZE: return "MEMCACHED_BEHAVIOR_SOCKET_SEND_SIZE";
547 case MEMCACHED_BEHAVIOR_SOCKET_RECV_SIZE: return "MEMCACHED_BEHAVIOR_SOCKET_RECV_SIZE";
548 case MEMCACHED_BEHAVIOR_CACHE_LOOKUPS: return "MEMCACHED_BEHAVIOR_CACHE_LOOKUPS";
549 case MEMCACHED_BEHAVIOR_SUPPORT_CAS: return "MEMCACHED_BEHAVIOR_SUPPORT_CAS";
550 case MEMCACHED_BEHAVIOR_POLL_TIMEOUT: return "MEMCACHED_BEHAVIOR_POLL_TIMEOUT";
551 case MEMCACHED_BEHAVIOR_DISTRIBUTION: return "MEMCACHED_BEHAVIOR_DISTRIBUTION";
552 case MEMCACHED_BEHAVIOR_BUFFER_REQUESTS: return "MEMCACHED_BEHAVIOR_BUFFER_REQUESTS";
553 case MEMCACHED_BEHAVIOR_USER_DATA: return "MEMCACHED_BEHAVIOR_USER_DATA";
554 case MEMCACHED_BEHAVIOR_SORT_HOSTS: return "MEMCACHED_BEHAVIOR_SORT_HOSTS";
555 case MEMCACHED_BEHAVIOR_VERIFY_KEY: return "MEMCACHED_BEHAVIOR_VERIFY_KEY";
556 case MEMCACHED_BEHAVIOR_CONNECT_TIMEOUT: return "MEMCACHED_BEHAVIOR_CONNECT_TIMEOUT";
557 case MEMCACHED_BEHAVIOR_RETRY_TIMEOUT: return "MEMCACHED_BEHAVIOR_RETRY_TIMEOUT";
558 case MEMCACHED_BEHAVIOR_KETAMA_WEIGHTED: return "MEMCACHED_BEHAVIOR_KETAMA_WEIGHTED";
559 case MEMCACHED_BEHAVIOR_KETAMA_HASH: return "MEMCACHED_BEHAVIOR_KETAMA_HASH";
560 case MEMCACHED_BEHAVIOR_BINARY_PROTOCOL: return "MEMCACHED_BEHAVIOR_BINARY_PROTOCOL";
561 case MEMCACHED_BEHAVIOR_SND_TIMEOUT: return "MEMCACHED_BEHAVIOR_SND_TIMEOUT";
562 case MEMCACHED_BEHAVIOR_RCV_TIMEOUT: return "MEMCACHED_BEHAVIOR_RCV_TIMEOUT";
563 case MEMCACHED_BEHAVIOR_SERVER_FAILURE_LIMIT: return "MEMCACHED_BEHAVIOR_SERVER_FAILURE_LIMIT";
564 case MEMCACHED_BEHAVIOR_IO_MSG_WATERMARK: return "MEMCACHED_BEHAVIOR_IO_MSG_WATERMARK";
565 case MEMCACHED_BEHAVIOR_IO_BYTES_WATERMARK: return "MEMCACHED_BEHAVIOR_IO_BYTES_WATERMARK";
566 case MEMCACHED_BEHAVIOR_IO_KEY_PREFETCH: return "MEMCACHED_BEHAVIOR_IO_KEY_PREFETCH";
567 case MEMCACHED_BEHAVIOR_HASH_WITH_PREFIX_KEY: return "MEMCACHED_BEHAVIOR_HASH_WITH_PREFIX_KEY";
568 case MEMCACHED_BEHAVIOR_NOREPLY: return "MEMCACHED_BEHAVIOR_NOREPLY";
569 case MEMCACHED_BEHAVIOR_USE_UDP: return "MEMCACHED_BEHAVIOR_USE_UDP";
570 case MEMCACHED_BEHAVIOR_AUTO_EJECT_HOSTS: return "MEMCACHED_BEHAVIOR_AUTO_EJECT_HOSTS";
571 case MEMCACHED_BEHAVIOR_REMOVE_FAILED_SERVERS: return "MEMCACHED_BEHAVIOR_REMOVE_FAILED_SERVERS";
572 case MEMCACHED_BEHAVIOR_NUMBER_OF_REPLICAS: return "MEMCACHED_BEHAVIOR_NUMBER_OF_REPLICAS";
573 case MEMCACHED_BEHAVIOR_RANDOMIZE_REPLICA_READ: return "MEMCACHED_BEHAVIOR_RANDOMIZE_REPLICA_READ";
574 case MEMCACHED_BEHAVIOR_CORK: return "MEMCACHED_BEHAVIOR_CORK";
575 case MEMCACHED_BEHAVIOR_TCP_KEEPALIVE: return "MEMCACHED_BEHAVIOR_TCP_KEEPALIVE";
576 case MEMCACHED_BEHAVIOR_TCP_KEEPIDLE: return "MEMCACHED_BEHAVIOR_TCP_KEEPIDLE";
577 case MEMCACHED_BEHAVIOR_LOAD_FROM_FILE: return "MEMCACHED_BEHAVIOR_LOAD_FROM_FILE";
578 default:
579 case MEMCACHED_BEHAVIOR_MAX: return "INVALID memcached_behavior_t";
580 }
581 }
582
583 const char *libmemcached_string_distribution(const memcached_server_distribution_t flag)
584 {
585 switch (flag)
586 {
587 case MEMCACHED_DISTRIBUTION_MODULA: return "MEMCACHED_DISTRIBUTION_MODULA";
588 case MEMCACHED_DISTRIBUTION_CONSISTENT: return "MEMCACHED_DISTRIBUTION_CONSISTENT";
589 case MEMCACHED_DISTRIBUTION_CONSISTENT_KETAMA: return "MEMCACHED_DISTRIBUTION_CONSISTENT_KETAMA";
590 case MEMCACHED_DISTRIBUTION_RANDOM: return "MEMCACHED_DISTRIBUTION_RANDOM";
591 case MEMCACHED_DISTRIBUTION_CONSISTENT_KETAMA_SPY: return "MEMCACHED_DISTRIBUTION_CONSISTENT_KETAMA_SPY";
592 case MEMCACHED_DISTRIBUTION_CONSISTENT_WEIGHTED: return "MEMCACHED_DISTRIBUTION_CONSISTENT_WEIGHTED";
593 case MEMCACHED_DISTRIBUTION_VIRTUAL_BUCKET: return "MEMCACHED_DISTRIBUTION_VIRTUAL_BUCKET";
594 default:
595 case MEMCACHED_DISTRIBUTION_CONSISTENT_MAX: return "INVALID memcached_server_distribution_t";
596 }
597 }
598
599 memcached_return_t memcached_bucket_set(memcached_st *self,
600 const uint32_t *host_map,
601 const uint32_t *forward_map,
602 const uint32_t buckets,
603 const uint32_t replicas)
604 {
605 memcached_return_t rc;
606
607 if (not self)
608 return MEMCACHED_INVALID_ARGUMENTS;
609
610 if (not host_map)
611 return MEMCACHED_INVALID_ARGUMENTS;
612
613 memcached_server_distribution_t old= memcached_behavior_get_distribution(self);
614
615 if (memcached_failed(rc =memcached_behavior_set_distribution(self, MEMCACHED_DISTRIBUTION_VIRTUAL_BUCKET)))
616 {
617 return rc;
618 }
619
620 if (memcached_failed(rc= memcached_virtual_bucket_create(self, host_map, forward_map, buckets, replicas)))
621 {
622 memcached_behavior_set_distribution(self, old);
623 }
624
625 return rc;
626 }