blob: e83b915b9cad6aa8b472947e01445ba7fc4adb12 [file] [log] [blame]
Willy Tarreau51cd5952020-06-05 12:25:38 +02001/*
2 * Health-checks functions.
3 *
4 * Copyright 2000-2009,2020 Willy Tarreau <w@1wt.eu>
5 * Copyright 2007-2010 Krzysztof Piotr Oledzki <ole@ans.pl>
6 * Copyright 2013 Baptiste Assmann <bedis9@gmail.com>
7 * Copyright 2020 Gaetan Rivet <grive@u256.net>
8 * Copyright 2020 Christopher Faulet <cfaulet@haproxy.com>
9 *
10 * This program is free software; you can redistribute it and/or
11 * modify it under the terms of the GNU General Public License
12 * as published by the Free Software Foundation; either version
13 * 2 of the License, or (at your option) any later version.
14 *
15 */
16
17#include <sys/resource.h>
18#include <sys/socket.h>
19#include <sys/types.h>
20#include <sys/wait.h>
21#include <netinet/in.h>
22#include <netinet/tcp.h>
23#include <arpa/inet.h>
24
25#include <ctype.h>
26#include <errno.h>
27#include <fcntl.h>
28#include <signal.h>
29#include <stdarg.h>
30#include <stdio.h>
31#include <stdlib.h>
32#include <string.h>
33#include <time.h>
34#include <unistd.h>
35
36#include <haproxy/action.h>
37#include <haproxy/api.h>
38#include <haproxy/cfgparse.h>
39#include <haproxy/check.h>
40#include <haproxy/chunk.h>
41#include <haproxy/connection.h>
Willy Tarreau36979d92020-06-05 17:27:29 +020042#include <haproxy/errors.h>
Willy Tarreau51cd5952020-06-05 12:25:38 +020043#include <haproxy/global.h>
44#include <haproxy/h1.h>
45#include <haproxy/http.h>
46#include <haproxy/http_htx.h>
47#include <haproxy/htx.h>
48#include <haproxy/istbuf.h>
49#include <haproxy/list.h>
50#include <haproxy/log.h>
Willy Tarreau51cd5952020-06-05 12:25:38 +020051#include <haproxy/protocol.h>
52#include <haproxy/proxy-t.h>
Willy Tarreaub2551052020-06-09 09:07:15 +020053#include <haproxy/regex.h>
54#include <haproxy/sample.h>
Willy Tarreau51cd5952020-06-05 12:25:38 +020055#include <haproxy/server.h>
56#include <haproxy/ssl_sock.h>
Willy Tarreau51cd5952020-06-05 12:25:38 +020057#include <haproxy/task.h>
58#include <haproxy/tcpcheck.h>
Willy Tarreaub2551052020-06-09 09:07:15 +020059#include <haproxy/time.h>
60#include <haproxy/tools.h>
Willy Tarreau51cd5952020-06-05 12:25:38 +020061#include <haproxy/vars.h>
62
63
64/* Global tree to share all tcp-checks */
65struct eb_root shared_tcpchecks = EB_ROOT;
66
67
68DECLARE_POOL(pool_head_tcpcheck_rule, "tcpcheck_rule", sizeof(struct tcpcheck_rule));
69
70/**************************************************************************/
71/*************** Init/deinit tcp-check rules and ruleset ******************/
72/**************************************************************************/
73/* Releases memory allocated for a log-format string */
74static void free_tcpcheck_fmt(struct list *fmt)
75{
76 struct logformat_node *lf, *lfb;
77
78 list_for_each_entry_safe(lf, lfb, fmt, list) {
79 LIST_DEL(&lf->list);
80 release_sample_expr(lf->expr);
81 free(lf->arg);
82 free(lf);
83 }
84}
85
86/* Releases memory allocated for an HTTP header used in a tcp-check send rule */
87void free_tcpcheck_http_hdr(struct tcpcheck_http_hdr *hdr)
88{
89 if (!hdr)
90 return;
91
92 free_tcpcheck_fmt(&hdr->value);
93 istfree(&hdr->name);
94 free(hdr);
95}
96
97/* Releases memory allocated for an HTTP header list used in a tcp-check send
98 * rule
99 */
100static void free_tcpcheck_http_hdrs(struct list *hdrs)
101{
102 struct tcpcheck_http_hdr *hdr, *bhdr;
103
104 list_for_each_entry_safe(hdr, bhdr, hdrs, list) {
105 LIST_DEL(&hdr->list);
106 free_tcpcheck_http_hdr(hdr);
107 }
108}
109
110/* Releases memory allocated for a tcp-check. If in_pool is set, it means the
111 * tcp-check was allocated using a memory pool (it is used to instantiate email
112 * alerts).
113 */
114void free_tcpcheck(struct tcpcheck_rule *rule, int in_pool)
115{
116 if (!rule)
117 return;
118
119 free(rule->comment);
120 switch (rule->action) {
121 case TCPCHK_ACT_SEND:
122 switch (rule->send.type) {
123 case TCPCHK_SEND_STRING:
124 case TCPCHK_SEND_BINARY:
125 istfree(&rule->send.data);
126 break;
127 case TCPCHK_SEND_STRING_LF:
128 case TCPCHK_SEND_BINARY_LF:
129 free_tcpcheck_fmt(&rule->send.fmt);
130 break;
131 case TCPCHK_SEND_HTTP:
132 free(rule->send.http.meth.str.area);
133 if (!(rule->send.http.flags & TCPCHK_SND_HTTP_FL_URI_FMT))
134 istfree(&rule->send.http.uri);
135 else
136 free_tcpcheck_fmt(&rule->send.http.uri_fmt);
137 istfree(&rule->send.http.vsn);
138 free_tcpcheck_http_hdrs(&rule->send.http.hdrs);
139 if (!(rule->send.http.flags & TCPCHK_SND_HTTP_FL_BODY_FMT))
140 istfree(&rule->send.http.body);
141 else
142 free_tcpcheck_fmt(&rule->send.http.body_fmt);
143 break;
144 case TCPCHK_SEND_UNDEF:
145 break;
146 }
147 break;
148 case TCPCHK_ACT_EXPECT:
149 free_tcpcheck_fmt(&rule->expect.onerror_fmt);
150 free_tcpcheck_fmt(&rule->expect.onsuccess_fmt);
151 release_sample_expr(rule->expect.status_expr);
152 switch (rule->expect.type) {
153 case TCPCHK_EXPECT_HTTP_STATUS:
154 free(rule->expect.codes.codes);
155 break;
156 case TCPCHK_EXPECT_STRING:
157 case TCPCHK_EXPECT_BINARY:
158 case TCPCHK_EXPECT_HTTP_BODY:
159 istfree(&rule->expect.data);
160 break;
161 case TCPCHK_EXPECT_STRING_REGEX:
162 case TCPCHK_EXPECT_BINARY_REGEX:
163 case TCPCHK_EXPECT_HTTP_STATUS_REGEX:
164 case TCPCHK_EXPECT_HTTP_BODY_REGEX:
165 regex_free(rule->expect.regex);
166 break;
167 case TCPCHK_EXPECT_STRING_LF:
168 case TCPCHK_EXPECT_BINARY_LF:
169 case TCPCHK_EXPECT_HTTP_BODY_LF:
170 free_tcpcheck_fmt(&rule->expect.fmt);
171 break;
172 case TCPCHK_EXPECT_HTTP_HEADER:
173 if (rule->expect.flags & TCPCHK_EXPT_FL_HTTP_HNAME_REG)
174 regex_free(rule->expect.hdr.name_re);
175 else if (rule->expect.flags & TCPCHK_EXPT_FL_HTTP_HNAME_FMT)
176 free_tcpcheck_fmt(&rule->expect.hdr.name_fmt);
177 else
178 istfree(&rule->expect.hdr.name);
179
180 if (rule->expect.flags & TCPCHK_EXPT_FL_HTTP_HVAL_REG)
181 regex_free(rule->expect.hdr.value_re);
182 else if (rule->expect.flags & TCPCHK_EXPT_FL_HTTP_HVAL_FMT)
183 free_tcpcheck_fmt(&rule->expect.hdr.value_fmt);
184 else if (!(rule->expect.flags & TCPCHK_EXPT_FL_HTTP_HVAL_NONE))
185 istfree(&rule->expect.hdr.value);
186 break;
187 case TCPCHK_EXPECT_CUSTOM:
188 case TCPCHK_EXPECT_UNDEF:
189 break;
190 }
191 break;
192 case TCPCHK_ACT_CONNECT:
193 free(rule->connect.sni);
194 free(rule->connect.alpn);
195 release_sample_expr(rule->connect.port_expr);
196 break;
197 case TCPCHK_ACT_COMMENT:
198 break;
199 case TCPCHK_ACT_ACTION_KW:
200 free(rule->action_kw.rule);
201 break;
202 }
203
204 if (in_pool)
205 pool_free(pool_head_tcpcheck_rule, rule);
206 else
207 free(rule);
208}
209
210/* Creates a tcp-check variable used in preset variables before executing a
211 * tcp-check ruleset.
212 */
213struct tcpcheck_var *create_tcpcheck_var(const struct ist name)
214{
215 struct tcpcheck_var *var = NULL;
216
217 var = calloc(1, sizeof(*var));
218 if (var == NULL)
219 return NULL;
220
221 var->name = istdup(name);
222 if (!isttest(var->name)) {
223 free(var);
224 return NULL;
225 }
226
227 LIST_INIT(&var->list);
228 return var;
229}
230
231/* Releases memory allocated for a preset tcp-check variable */
232void free_tcpcheck_var(struct tcpcheck_var *var)
233{
234 if (!var)
235 return;
236
237 istfree(&var->name);
238 if (var->data.type == SMP_T_STR || var->data.type == SMP_T_BIN)
239 free(var->data.u.str.area);
240 else if (var->data.type == SMP_T_METH && var->data.u.meth.meth == HTTP_METH_OTHER)
241 free(var->data.u.meth.str.area);
242 free(var);
243}
244
245/* Releases a list of preset tcp-check variables */
246void free_tcpcheck_vars(struct list *vars)
247{
248 struct tcpcheck_var *var, *back;
249
250 list_for_each_entry_safe(var, back, vars, list) {
251 LIST_DEL(&var->list);
252 free_tcpcheck_var(var);
253 }
254}
255
256/* Duplicate a list of preset tcp-check variables */
257int dup_tcpcheck_vars(struct list *dst, struct list *src)
258{
259 struct tcpcheck_var *var, *new = NULL;
260
261 list_for_each_entry(var, src, list) {
262 new = create_tcpcheck_var(var->name);
263 if (!new)
264 goto error;
265 new->data.type = var->data.type;
266 if (var->data.type == SMP_T_STR || var->data.type == SMP_T_BIN) {
267 if (chunk_dup(&new->data.u.str, &var->data.u.str) == NULL)
268 goto error;
269 if (var->data.type == SMP_T_STR)
270 new->data.u.str.area[new->data.u.str.data] = 0;
271 }
272 else if (var->data.type == SMP_T_METH && var->data.u.meth.meth == HTTP_METH_OTHER) {
273 if (chunk_dup(&new->data.u.str, &var->data.u.str) == NULL)
274 goto error;
275 new->data.u.str.area[new->data.u.str.data] = 0;
276 new->data.u.meth.meth = var->data.u.meth.meth;
277 }
278 else
279 new->data.u = var->data.u;
280 LIST_ADDQ(dst, &new->list);
281 }
282 return 1;
283
284 error:
285 free(new);
286 return 0;
287}
288
289/* Looks for a shared tcp-check ruleset given its name. */
290struct tcpcheck_ruleset *find_tcpcheck_ruleset(const char *name)
291{
292 struct tcpcheck_ruleset *rs;
293 struct ebpt_node *node;
294
295 node = ebis_lookup_len(&shared_tcpchecks, name, strlen(name));
296 if (node) {
297 rs = container_of(node, typeof(*rs), node);
298 return rs;
299 }
300 return NULL;
301}
302
303/* Creates a new shared tcp-check ruleset and insert it in shared_tcpchecks
304 * tree.
305 */
306struct tcpcheck_ruleset *create_tcpcheck_ruleset(const char *name)
307{
308 struct tcpcheck_ruleset *rs;
309
310 rs = calloc(1, sizeof(*rs));
311 if (rs == NULL)
312 return NULL;
313
314 rs->node.key = strdup(name);
315 if (rs->node.key == NULL) {
316 free(rs);
317 return NULL;
318 }
319
320 LIST_INIT(&rs->rules);
321 ebis_insert(&shared_tcpchecks, &rs->node);
322 return rs;
323}
324
325/* Releases memory allocated by a tcp-check ruleset. */
326void free_tcpcheck_ruleset(struct tcpcheck_ruleset *rs)
327{
328 struct tcpcheck_rule *r, *rb;
329
330 if (!rs)
331 return;
332
333 ebpt_delete(&rs->node);
334 free(rs->node.key);
335 list_for_each_entry_safe(r, rb, &rs->rules, list) {
336 LIST_DEL(&r->list);
337 free_tcpcheck(r, 0);
338 }
339 free(rs);
340}
341
342
343/**************************************************************************/
344/**************** Everything about tcp-checks execution *******************/
345/**************************************************************************/
346/* Returns the id of a step in a tcp-check ruleset */
347int tcpcheck_get_step_id(struct check *check, struct tcpcheck_rule *rule)
348{
349 if (!rule)
350 rule = check->current_step;
351
352 /* no last started step => first step */
353 if (!rule)
354 return 1;
355
356 /* last step is the first implicit connect */
357 if (rule->index == 0 &&
358 rule->action == TCPCHK_ACT_CONNECT &&
359 (rule->connect.options & TCPCHK_OPT_IMPLICIT))
360 return 0;
361
362 return rule->index + 1;
363}
364
365/* Returns the first non COMMENT/ACTION_KW tcp-check rule from list <list> or
366 * NULL if none was found.
367 */
368struct tcpcheck_rule *get_first_tcpcheck_rule(struct tcpcheck_rules *rules)
369{
370 struct tcpcheck_rule *r;
371
372 list_for_each_entry(r, rules->list, list) {
373 if (r->action != TCPCHK_ACT_COMMENT && r->action != TCPCHK_ACT_ACTION_KW)
374 return r;
375 }
376 return NULL;
377}
378
379/* Returns the last non COMMENT/ACTION_KW tcp-check rule from list <list> or
380 * NULL if none was found.
381 */
382static struct tcpcheck_rule *get_last_tcpcheck_rule(struct tcpcheck_rules *rules)
383{
384 struct tcpcheck_rule *r;
385
386 list_for_each_entry_rev(r, rules->list, list) {
387 if (r->action != TCPCHK_ACT_COMMENT && r->action != TCPCHK_ACT_ACTION_KW)
388 return r;
389 }
390 return NULL;
391}
392
393/* Returns the non COMMENT/ACTION_KW tcp-check rule from list <list> following
394 * <start> or NULL if non was found. If <start> is NULL, it relies on
395 * get_first_tcpcheck_rule().
396 */
397static struct tcpcheck_rule *get_next_tcpcheck_rule(struct tcpcheck_rules *rules, struct tcpcheck_rule *start)
398{
399 struct tcpcheck_rule *r;
400
401 if (!start)
402 return get_first_tcpcheck_rule(rules);
403
404 r = LIST_NEXT(&start->list, typeof(r), list);
405 list_for_each_entry_from(r, rules->list, list) {
406 if (r->action != TCPCHK_ACT_COMMENT && r->action != TCPCHK_ACT_ACTION_KW)
407 return r;
408 }
409 return NULL;
410}
411
412
413/* Creates info message when a tcp-check healthcheck fails on an expect rule */
414static void tcpcheck_expect_onerror_message(struct buffer *msg, struct check *check, struct tcpcheck_rule *rule,
415 int match, struct ist info)
416{
417 struct sample *smp;
418
419 /* Follows these step to produce the info message:
420 * 1. if info field is already provided, copy it
421 * 2. if the expect rule provides an onerror log-format string,
422 * use it to produce the message
423 * 3. the expect rule is part of a protocol check (http, redis, mysql...), do nothing
424 * 4. Otherwise produce the generic tcp-check info message
425 */
426 if (istlen(info)) {
427 chunk_strncat(msg, istptr(info), istlen(info));
428 goto comment;
429 }
430 else if (!LIST_ISEMPTY(&rule->expect.onerror_fmt)) {
431 msg->data += sess_build_logline(check->sess, NULL, b_tail(msg), b_room(msg), &rule->expect.onerror_fmt);
432 goto comment;
433 }
434
435 if (check->type == PR_O2_TCPCHK_CHK &&
436 (check->tcpcheck_rules->flags & TCPCHK_RULES_PROTO_CHK) != TCPCHK_RULES_TCP_CHK)
437 goto comment;
438
439 chunk_strcat(msg, (match ? "TCPCHK matched unwanted content" : "TCPCHK did not match content"));
440 switch (rule->expect.type) {
441 case TCPCHK_EXPECT_HTTP_STATUS:
442 chunk_appendf(msg, "(status codes) at step %d", tcpcheck_get_step_id(check, rule));
443 break;
444 case TCPCHK_EXPECT_STRING:
445 case TCPCHK_EXPECT_HTTP_BODY:
446 chunk_appendf(msg, " '%.*s' at step %d", (unsigned int)istlen(rule->expect.data), istptr(rule->expect.data),
447 tcpcheck_get_step_id(check, rule));
448 break;
449 case TCPCHK_EXPECT_BINARY:
450 chunk_appendf(msg, " (binary) at step %d", tcpcheck_get_step_id(check, rule));
451 break;
452 case TCPCHK_EXPECT_STRING_REGEX:
453 case TCPCHK_EXPECT_HTTP_STATUS_REGEX:
454 case TCPCHK_EXPECT_HTTP_BODY_REGEX:
455 chunk_appendf(msg, " (regex) at step %d", tcpcheck_get_step_id(check, rule));
456 break;
457 case TCPCHK_EXPECT_BINARY_REGEX:
458 chunk_appendf(msg, " (binary regex) at step %d", tcpcheck_get_step_id(check, rule));
459 break;
460 case TCPCHK_EXPECT_STRING_LF:
461 case TCPCHK_EXPECT_HTTP_BODY_LF:
462 chunk_appendf(msg, " (log-format string) at step %d", tcpcheck_get_step_id(check, rule));
463 break;
464 case TCPCHK_EXPECT_BINARY_LF:
465 chunk_appendf(msg, " (log-format binary) at step %d", tcpcheck_get_step_id(check, rule));
466 break;
467 case TCPCHK_EXPECT_CUSTOM:
468 chunk_appendf(msg, " (custom function) at step %d", tcpcheck_get_step_id(check, rule));
469 break;
470 case TCPCHK_EXPECT_HTTP_HEADER:
471 chunk_appendf(msg, " (header pattern) at step %d", tcpcheck_get_step_id(check, rule));
472 case TCPCHK_EXPECT_UNDEF:
473 /* Should never happen. */
474 return;
475 }
476
477 comment:
478 /* If the failing expect rule provides a comment, it is concatenated to
479 * the info message.
480 */
481 if (rule->comment) {
482 chunk_strcat(msg, " comment: ");
483 chunk_strcat(msg, rule->comment);
484 }
485
486 /* Finally, the check status code is set if the failing expect rule
487 * defines a status expression.
488 */
489 if (rule->expect.status_expr) {
490 smp = sample_fetch_as_type(check->proxy, check->sess, NULL, SMP_OPT_DIR_RES | SMP_OPT_FINAL,
491 rule->expect.status_expr, SMP_T_STR);
492
493 if (smp && sample_casts[smp->data.type][SMP_T_SINT] &&
494 sample_casts[smp->data.type][SMP_T_SINT](smp))
495 check->code = smp->data.u.sint;
496 }
497
498 *(b_tail(msg)) = '\0';
499}
500
501/* Creates info message when a tcp-check healthcheck succeeds on an expect rule */
502static void tcpcheck_expect_onsuccess_message(struct buffer *msg, struct check *check, struct tcpcheck_rule *rule,
503 struct ist info)
504{
505 struct sample *smp;
506
507 /* Follows these step to produce the info message:
508 * 1. if info field is already provided, copy it
509 * 2. if the expect rule provides an onsucces log-format string,
510 * use it to produce the message
511 * 3. the expect rule is part of a protocol check (http, redis, mysql...), do nothing
512 * 4. Otherwise produce the generic tcp-check info message
513 */
514 if (istlen(info))
515 chunk_strncat(msg, istptr(info), istlen(info));
516 if (!LIST_ISEMPTY(&rule->expect.onsuccess_fmt))
517 msg->data += sess_build_logline(check->sess, NULL, b_tail(msg), b_room(msg),
518 &rule->expect.onsuccess_fmt);
519 else if (check->type == PR_O2_TCPCHK_CHK &&
520 (check->tcpcheck_rules->flags & TCPCHK_RULES_PROTO_CHK) == TCPCHK_RULES_TCP_CHK)
521 chunk_strcat(msg, "(tcp-check)");
522
523 /* Finally, the check status code is set if the expect rule defines a
524 * status expression.
525 */
526 if (rule->expect.status_expr) {
527 smp = sample_fetch_as_type(check->proxy, check->sess, NULL, SMP_OPT_DIR_RES | SMP_OPT_FINAL,
528 rule->expect.status_expr, SMP_T_STR);
529
530 if (smp && sample_casts[smp->data.type][SMP_T_SINT] &&
531 sample_casts[smp->data.type][SMP_T_SINT](smp))
532 check->code = smp->data.u.sint;
533 }
534
535 *(b_tail(msg)) = '\0';
536}
537
538/* Internal functions to parse and validate a MySQL packet in the context of an
539 * expect rule. It start to parse the input buffer at the offset <offset>. If
540 * <last_read> is set, no more data are expected.
541 */
542static enum tcpcheck_eval_ret tcpcheck_mysql_expect_packet(struct check *check, struct tcpcheck_rule *rule,
543 unsigned int offset, int last_read)
544{
545 enum tcpcheck_eval_ret ret = TCPCHK_EVAL_CONTINUE;
546 enum healthcheck_status status;
547 struct buffer *msg = NULL;
548 struct ist desc = IST_NULL;
549 unsigned int err = 0, plen = 0;
550
551
552 /* 3 Bytes for the packet length and 1 byte for the sequence id */
553 if (b_data(&check->bi) < offset+4) {
554 if (!last_read)
555 goto wait_more_data;
556
557 /* invalid length or truncated response */
558 status = HCHK_STATUS_L7RSP;
559 goto error;
560 }
561
562 plen = ((unsigned char) *b_peek(&check->bi, offset)) +
563 (((unsigned char) *(b_peek(&check->bi, offset+1))) << 8) +
564 (((unsigned char) *(b_peek(&check->bi, offset+2))) << 16);
565
566 if (b_data(&check->bi) < offset+plen+4) {
567 if (!last_read)
568 goto wait_more_data;
569
570 /* invalid length or truncated response */
571 status = HCHK_STATUS_L7RSP;
572 goto error;
573 }
574
575 if (*b_peek(&check->bi, offset+4) == '\xff') {
576 /* MySQL Error packet always begin with field_count = 0xff */
577 status = HCHK_STATUS_L7STS;
578 err = ((unsigned char) *b_peek(&check->bi, offset+5)) +
579 (((unsigned char) *(b_peek(&check->bi, offset+6))) << 8);
580 desc = ist2(b_peek(&check->bi, offset+7), b_data(&check->bi) - offset - 7);
581 goto error;
582 }
583
584 if (get_next_tcpcheck_rule(check->tcpcheck_rules, rule) != NULL) {
585 /* Not the last rule, continue */
586 goto out;
587 }
588
589 /* We set the MySQL Version in description for information purpose
590 * FIXME : it can be cool to use MySQL Version for other purpose,
591 * like mark as down old MySQL server.
592 */
593 status = ((rule->expect.ok_status != HCHK_STATUS_UNKNOWN) ? rule->expect.ok_status : HCHK_STATUS_L7OKD);
594 set_server_check_status(check, status, b_peek(&check->bi, 5));
595
596 out:
597 free_trash_chunk(msg);
598 return ret;
599
600 error:
601 ret = TCPCHK_EVAL_STOP;
602 check->code = err;
603 msg = alloc_trash_chunk();
604 if (msg)
605 tcpcheck_expect_onerror_message(msg, check, rule, 0, desc);
606 set_server_check_status(check, status, (msg ? b_head(msg) : NULL));
607 goto out;
608
609 wait_more_data:
610 ret = TCPCHK_EVAL_WAIT;
611 goto out;
612}
613
614/* Custom tcp-check expect function to parse and validate the MySQL initial
615 * handshake packet. Returns TCPCHK_EVAL_WAIT to wait for more data,
616 * TCPCHK_EVAL_CONTINUE to evaluate the next rule or TCPCHK_EVAL_STOP if an
617 * error occurred.
618 */
619enum tcpcheck_eval_ret tcpcheck_mysql_expect_iniths(struct check *check, struct tcpcheck_rule *rule, int last_read)
620{
621 return tcpcheck_mysql_expect_packet(check, rule, 0, last_read);
622}
623
624/* Custom tcp-check expect function to parse and validate the MySQL OK packet
625 * following the initial handshake. Returns TCPCHK_EVAL_WAIT to wait for more
626 * data, TCPCHK_EVAL_CONTINUE to evaluate the next rule or TCPCHK_EVAL_STOP if
627 * an error occurred.
628 */
629enum tcpcheck_eval_ret tcpcheck_mysql_expect_ok(struct check *check, struct tcpcheck_rule *rule, int last_read)
630{
631 unsigned int hslen = 0;
632
633 hslen = 4 + ((unsigned char) *b_head(&check->bi)) +
634 (((unsigned char) *(b_peek(&check->bi, 1))) << 8) +
635 (((unsigned char) *(b_peek(&check->bi, 2))) << 16);
636
637 return tcpcheck_mysql_expect_packet(check, rule, hslen, last_read);
638}
639
640/* Custom tcp-check expect function to parse and validate the LDAP bind response
641 * package packet. Returns TCPCHK_EVAL_WAIT to wait for more data,
642 * TCPCHK_EVAL_CONTINUE to evaluate the next rule or TCPCHK_EVAL_STOP if an
643 * error occurred.
644 */
645enum tcpcheck_eval_ret tcpcheck_ldap_expect_bindrsp(struct check *check, struct tcpcheck_rule *rule, int last_read)
646{
647 enum tcpcheck_eval_ret ret = TCPCHK_EVAL_CONTINUE;
648 enum healthcheck_status status;
649 struct buffer *msg = NULL;
650 struct ist desc = IST_NULL;
651 unsigned short msglen = 0;
652
653 /* Check if the server speaks LDAP (ASN.1/BER)
654 * http://en.wikipedia.org/wiki/Basic_Encoding_Rules
655 * http://tools.ietf.org/html/rfc4511
656 */
657 /* size of LDAPMessage */
658 msglen = (*(b_head(&check->bi) + 1) & 0x80) ? (*(b_head(&check->bi) + 1) & 0x7f) : 0;
659
660 /* http://tools.ietf.org/html/rfc4511#section-4.2.2
661 * messageID: 0x02 0x01 0x01: INTEGER 1
662 * protocolOp: 0x61: bindResponse
663 */
664 if ((msglen > 2) || (memcmp(b_head(&check->bi) + 2 + msglen, "\x02\x01\x01\x61", 4) != 0)) {
665 status = HCHK_STATUS_L7RSP;
666 desc = ist("Not LDAPv3 protocol");
667 goto error;
668 }
669
670 /* size of bindResponse */
671 msglen += (*(b_head(&check->bi) + msglen + 6) & 0x80) ? (*(b_head(&check->bi) + msglen + 6) & 0x7f) : 0;
672
673 /* http://tools.ietf.org/html/rfc4511#section-4.1.9
674 * ldapResult: 0x0a 0x01: ENUMERATION
675 */
676 if ((msglen > 4) || (memcmp(b_head(&check->bi) + 7 + msglen, "\x0a\x01", 2) != 0)) {
677 status = HCHK_STATUS_L7RSP;
678 desc = ist("Not LDAPv3 protocol");
679 goto error;
680 }
681
682 /* http://tools.ietf.org/html/rfc4511#section-4.1.9
683 * resultCode
684 */
685 check->code = *(b_head(&check->bi) + msglen + 9);
686 if (check->code) {
687 status = HCHK_STATUS_L7STS;
688 desc = ist("See RFC: http://tools.ietf.org/html/rfc4511#section-4.1.9");
689 goto error;
690 }
691
692 status = ((rule->expect.ok_status != HCHK_STATUS_UNKNOWN) ? rule->expect.ok_status : HCHK_STATUS_L7OKD);
693 set_server_check_status(check, status, "Success");
694
695 out:
696 free_trash_chunk(msg);
697 return ret;
698
699 error:
700 ret = TCPCHK_EVAL_STOP;
701 msg = alloc_trash_chunk();
702 if (msg)
703 tcpcheck_expect_onerror_message(msg, check, rule, 0, desc);
704 set_server_check_status(check, status, (msg ? b_head(msg) : NULL));
705 goto out;
706}
707
708/* Custom tcp-check expect function to parse and validate the SPOP hello agent
709 * frame. Returns TCPCHK_EVAL_WAIT to wait for more data, TCPCHK_EVAL_CONTINUE
710 * to evaluate the next rule or TCPCHK_EVAL_STOP if an error occurred.
711 */
712enum tcpcheck_eval_ret tcpcheck_spop_expect_agenthello(struct check *check, struct tcpcheck_rule *rule, int last_read)
713{
714 enum tcpcheck_eval_ret ret = TCPCHK_EVAL_CONTINUE;
715 enum healthcheck_status status;
716 struct buffer *msg = NULL;
717 struct ist desc = IST_NULL;
718 unsigned int framesz;
719
720
721 memcpy(&framesz, b_head(&check->bi), 4);
722 framesz = ntohl(framesz);
723
724 if (!last_read && b_data(&check->bi) < (4+framesz))
725 goto wait_more_data;
726
727 memset(b_orig(&trash), 0, b_size(&trash));
728 if (spoe_handle_healthcheck_response(b_peek(&check->bi, 4), framesz, b_orig(&trash), HCHK_DESC_LEN) == -1) {
729 status = HCHK_STATUS_L7RSP;
730 desc = ist2(b_orig(&trash), strlen(b_orig(&trash)));
731 goto error;
732 }
733
734 status = ((rule->expect.ok_status != HCHK_STATUS_UNKNOWN) ? rule->expect.ok_status : HCHK_STATUS_L7OKD);
735 set_server_check_status(check, status, "SPOA server is ok");
736
737 out:
738 free_trash_chunk(msg);
739 return ret;
740
741 error:
742 ret = TCPCHK_EVAL_STOP;
743 msg = alloc_trash_chunk();
744 if (msg)
745 tcpcheck_expect_onerror_message(msg, check, rule, 0, desc);
746 set_server_check_status(check, status, (msg ? b_head(msg) : NULL));
747 goto out;
748
749 wait_more_data:
750 ret = TCPCHK_EVAL_WAIT;
751 goto out;
752}
753
754/* Custom tcp-check expect function to parse and validate the agent-check
755 * reply. Returns TCPCHK_EVAL_WAIT to wait for more data, TCPCHK_EVAL_CONTINUE
756 * to evaluate the next rule or TCPCHK_EVAL_STOP if an error occurred.
757 */
758enum tcpcheck_eval_ret tcpcheck_agent_expect_reply(struct check *check, struct tcpcheck_rule *rule, int last_read)
759{
760 enum tcpcheck_eval_ret ret = TCPCHK_EVAL_STOP;
761 enum healthcheck_status status = HCHK_STATUS_CHECKED;
762 const char *hs = NULL; /* health status */
763 const char *as = NULL; /* admin status */
764 const char *ps = NULL; /* performance status */
765 const char *cs = NULL; /* maxconn */
766 const char *err = NULL; /* first error to report */
767 const char *wrn = NULL; /* first warning to report */
768 char *cmd, *p;
769
770 /* We're getting an agent check response. The agent could
771 * have been disabled in the mean time with a long check
772 * still pending. It is important that we ignore the whole
773 * response.
774 */
775 if (!(check->state & CHK_ST_ENABLED))
776 goto out;
777
778 /* The agent supports strings made of a single line ended by the
779 * first CR ('\r') or LF ('\n'). This line is composed of words
780 * delimited by spaces (' '), tabs ('\t'), or commas (','). The
781 * line may optionally contained a description of a state change
782 * after a sharp ('#'), which is only considered if a health state
783 * is announced.
784 *
785 * Words may be composed of :
786 * - a numeric weight suffixed by the percent character ('%').
787 * - a health status among "up", "down", "stopped", and "fail".
788 * - an admin status among "ready", "drain", "maint".
789 *
790 * These words may appear in any order. If multiple words of the
791 * same category appear, the last one wins.
792 */
793
794 p = b_head(&check->bi);
795 while (*p && *p != '\n' && *p != '\r')
796 p++;
797
798 if (!*p) {
799 if (!last_read)
800 goto wait_more_data;
801
802 /* at least inform the admin that the agent is mis-behaving */
803 set_server_check_status(check, check->status, "Ignoring incomplete line from agent");
804 goto out;
805 }
806
807 *p = 0;
808 cmd = b_head(&check->bi);
809
810 while (*cmd) {
811 /* look for next word */
812 if (*cmd == ' ' || *cmd == '\t' || *cmd == ',') {
813 cmd++;
814 continue;
815 }
816
817 if (*cmd == '#') {
818 /* this is the beginning of a health status description,
819 * skip the sharp and blanks.
820 */
821 cmd++;
822 while (*cmd == '\t' || *cmd == ' ')
823 cmd++;
824 break;
825 }
826
827 /* find the end of the word so that we have a null-terminated
828 * word between <cmd> and <p>.
829 */
830 p = cmd + 1;
831 while (*p && *p != '\t' && *p != ' ' && *p != '\n' && *p != ',')
832 p++;
833 if (*p)
834 *p++ = 0;
835
836 /* first, health statuses */
837 if (strcasecmp(cmd, "up") == 0) {
838 check->server->check.health = check->server->check.rise + check->server->check.fall - 1;
839 status = HCHK_STATUS_L7OKD;
840 hs = cmd;
841 }
842 else if (strcasecmp(cmd, "down") == 0) {
843 check->server->check.health = 0;
844 status = HCHK_STATUS_L7STS;
845 hs = cmd;
846 }
847 else if (strcasecmp(cmd, "stopped") == 0) {
848 check->server->check.health = 0;
849 status = HCHK_STATUS_L7STS;
850 hs = cmd;
851 }
852 else if (strcasecmp(cmd, "fail") == 0) {
853 check->server->check.health = 0;
854 status = HCHK_STATUS_L7STS;
855 hs = cmd;
856 }
857 /* admin statuses */
858 else if (strcasecmp(cmd, "ready") == 0) {
859 as = cmd;
860 }
861 else if (strcasecmp(cmd, "drain") == 0) {
862 as = cmd;
863 }
864 else if (strcasecmp(cmd, "maint") == 0) {
865 as = cmd;
866 }
867 /* try to parse a weight here and keep the last one */
868 else if (isdigit((unsigned char)*cmd) && strchr(cmd, '%') != NULL) {
869 ps = cmd;
870 }
871 /* try to parse a maxconn here */
872 else if (strncasecmp(cmd, "maxconn:", strlen("maxconn:")) == 0) {
873 cs = cmd;
874 }
875 else {
876 /* keep a copy of the first error */
877 if (!err)
878 err = cmd;
879 }
880 /* skip to next word */
881 cmd = p;
882 }
883 /* here, cmd points either to \0 or to the beginning of a
884 * description. Skip possible leading spaces.
885 */
886 while (*cmd == ' ' || *cmd == '\n')
887 cmd++;
888
889 /* First, update the admin status so that we avoid sending other
890 * possibly useless warnings and can also update the health if
891 * present after going back up.
892 */
893 if (as) {
894 if (strcasecmp(as, "drain") == 0)
895 srv_adm_set_drain(check->server);
896 else if (strcasecmp(as, "maint") == 0)
897 srv_adm_set_maint(check->server);
898 else
899 srv_adm_set_ready(check->server);
900 }
901
902 /* now change weights */
903 if (ps) {
904 const char *msg;
905
906 msg = server_parse_weight_change_request(check->server, ps);
907 if (!wrn || !*wrn)
908 wrn = msg;
909 }
910
911 if (cs) {
912 const char *msg;
913
914 cs += strlen("maxconn:");
915
916 msg = server_parse_maxconn_change_request(check->server, cs);
917 if (!wrn || !*wrn)
918 wrn = msg;
919 }
920
921 /* and finally health status */
922 if (hs) {
923 /* We'll report some of the warnings and errors we have
924 * here. Down reports are critical, we leave them untouched.
925 * Lack of report, or report of 'UP' leaves the room for
926 * ERR first, then WARN.
927 */
928 const char *msg = cmd;
929 struct buffer *t;
930
931 if (!*msg || status == HCHK_STATUS_L7OKD) {
932 if (err && *err)
933 msg = err;
934 else if (wrn && *wrn)
935 msg = wrn;
936 }
937
938 t = get_trash_chunk();
939 chunk_printf(t, "via agent : %s%s%s%s",
940 hs, *msg ? " (" : "",
941 msg, *msg ? ")" : "");
942 set_server_check_status(check, status, t->area);
943 }
944 else if (err && *err) {
945 /* No status change but we'd like to report something odd.
946 * Just report the current state and copy the message.
947 */
948 chunk_printf(&trash, "agent reports an error : %s", err);
949 set_server_check_status(check, status/*check->status*/, trash.area);
950 }
951 else if (wrn && *wrn) {
952 /* No status change but we'd like to report something odd.
953 * Just report the current state and copy the message.
954 */
955 chunk_printf(&trash, "agent warns : %s", wrn);
956 set_server_check_status(check, status/*check->status*/, trash.area);
957 }
958 else
959 set_server_check_status(check, status, NULL);
960
961 out:
962 return ret;
963
964 wait_more_data:
965 ret = TCPCHK_EVAL_WAIT;
966 goto out;
967}
968
969/* Evaluates a TCPCHK_ACT_CONNECT rule. Returns TCPCHK_EVAL_WAIT to wait the
970 * connection establishment, TCPCHK_EVAL_CONTINUE to evaluate the next rule or
971 * TCPCHK_EVAL_STOP if an error occurred.
972 */
973enum tcpcheck_eval_ret tcpcheck_eval_connect(struct check *check, struct tcpcheck_rule *rule)
974{
975 enum tcpcheck_eval_ret ret = TCPCHK_EVAL_CONTINUE;
976 struct tcpcheck_connect *connect = &rule->connect;
977 struct proxy *proxy = check->proxy;
978 struct server *s = check->server;
979 struct task *t = check->task;
980 struct conn_stream *cs;
981 struct connection *conn = NULL;
982 struct protocol *proto;
983 struct xprt_ops *xprt;
984 struct tcpcheck_rule *next;
985 int status, port;
986
987 /* For a connect action we'll create a new connection. We may also have
988 * to kill a previous one. But we don't want to leave *without* a
989 * connection if we came here from the connection layer, hence with a
990 * connection. Thus we'll proceed in the following order :
991 * 1: close but not release previous connection (handled by the caller)
992 * 2: try to get a new connection
993 * 3: release and replace the old one on success
994 */
995
996 /* 2- prepare new connection */
Christopher Faulet236c93b2020-07-02 09:19:54 +0200997 cs = cs_new(NULL, (s ? &s->obj_type : &proxy->obj_type));
Willy Tarreau51cd5952020-06-05 12:25:38 +0200998 if (!cs) {
999 chunk_printf(&trash, "TCPCHK error allocating connection at step %d",
1000 tcpcheck_get_step_id(check, rule));
1001 if (rule->comment)
1002 chunk_appendf(&trash, " comment: '%s'", rule->comment);
1003 set_server_check_status(check, HCHK_STATUS_SOCKERR, trash.area);
1004 ret = TCPCHK_EVAL_STOP;
1005 goto out;
1006 }
1007
1008 /* 3- release and replace the old one on success */
1009 if (check->cs) {
1010 if (check->wait_list.events)
1011 check->cs->conn->mux->unsubscribe(check->cs, check->wait_list.events,
1012 &check->wait_list);
1013
1014 /* We may have been scheduled to run, and the I/O handler
1015 * expects to have a cs, so remove the tasklet
1016 */
1017 tasklet_remove_from_tasklet_list(check->wait_list.tasklet);
1018 cs_destroy(check->cs);
1019 }
1020
1021 tasklet_set_tid(check->wait_list.tasklet, tid);
1022
1023 check->cs = cs;
1024 conn = cs->conn;
1025 conn_set_owner(conn, check->sess, NULL);
1026
1027 /* Maybe there were an older connection we were waiting on */
1028 check->wait_list.events = 0;
Willy Tarreau51cd5952020-06-05 12:25:38 +02001029
1030 /* no client address */
1031 if (!sockaddr_alloc(&conn->dst)) {
1032 status = SF_ERR_RESOURCE;
1033 goto fail_check;
1034 }
1035
1036 /* connect to the connect rule addr if specified, otherwise the check
1037 * addr if specified on the server. otherwise, use the server addr (it
1038 * MUST exist at this step).
1039 */
1040 *conn->dst = (is_addr(&connect->addr)
1041 ? connect->addr
1042 : (is_addr(&check->addr) ? check->addr : s->addr));
1043 proto = protocol_by_family(conn->dst->ss_family);
1044
1045 port = 0;
1046 if (!port && connect->port)
1047 port = connect->port;
1048 if (!port && connect->port_expr) {
1049 struct sample *smp;
1050
1051 smp = sample_fetch_as_type(check->proxy, check->sess, NULL,
1052 SMP_OPT_DIR_REQ | SMP_OPT_FINAL,
1053 connect->port_expr, SMP_T_SINT);
1054 if (smp)
1055 port = smp->data.u.sint;
1056 }
1057 if (!port && is_inet_addr(&connect->addr))
1058 port = get_host_port(&connect->addr);
1059 if (!port && check->port)
1060 port = check->port;
1061 if (!port && is_inet_addr(&check->addr))
1062 port = get_host_port(&check->addr);
1063 if (!port) {
1064 /* The server MUST exist here */
1065 port = s->svc_port;
1066 }
1067 set_host_port(conn->dst, port);
1068
1069 xprt = ((connect->options & TCPCHK_OPT_SSL)
1070 ? xprt_get(XPRT_SSL)
1071 : ((connect->options & TCPCHK_OPT_DEFAULT_CONNECT) ? check->xprt : xprt_get(XPRT_RAW)));
1072
1073 conn_prepare(conn, proto, xprt);
1074 cs_attach(cs, check, &check_conn_cb);
1075
1076 status = SF_ERR_INTERNAL;
1077 next = get_next_tcpcheck_rule(check->tcpcheck_rules, rule);
1078 if (proto && proto->connect) {
1079 int flags = 0;
1080
1081 if (check->tcpcheck_rules->flags & TCPCHK_RULES_PROTO_CHK)
1082 flags |= CONNECT_HAS_DATA;
1083 if (!next || next->action != TCPCHK_ACT_EXPECT)
1084 flags |= CONNECT_DELACK_ALWAYS;
1085 status = proto->connect(conn, flags);
1086 }
1087
1088 if (status != SF_ERR_NONE)
1089 goto fail_check;
1090
Christopher Faulet21ddc742020-07-01 15:26:14 +02001091 conn_set_private(conn);
Willy Tarreau51cd5952020-06-05 12:25:38 +02001092 conn->ctx = cs;
1093
1094 /* The mux may be initialized now if there isn't server attached to the
1095 * check (email alerts) or if there is a mux proto specified or if there
1096 * is no alpn.
1097 */
1098 if (!s || ((connect->options & TCPCHK_OPT_DEFAULT_CONNECT) && check->mux_proto) ||
1099 connect->mux_proto || (!connect->alpn && !check->alpn_str)) {
1100 const struct mux_ops *mux_ops;
1101
1102 if (connect->mux_proto)
1103 mux_ops = connect->mux_proto->mux;
1104 else if ((connect->options & TCPCHK_OPT_DEFAULT_CONNECT) && check->mux_proto)
1105 mux_ops = check->mux_proto->mux;
1106 else {
1107 int mode = ((check->tcpcheck_rules->flags & TCPCHK_RULES_PROTO_CHK) == TCPCHK_RULES_HTTP_CHK
1108 ? PROTO_MODE_HTTP
1109 : PROTO_MODE_TCP);
1110
1111 mux_ops = conn_get_best_mux(conn, IST_NULL, PROTO_SIDE_BE, mode);
1112 }
1113 if (mux_ops && conn_install_mux(conn, mux_ops, cs, proxy, check->sess) < 0) {
1114 status = SF_ERR_INTERNAL;
1115 goto fail_check;
1116 }
1117 }
1118
1119#ifdef USE_OPENSSL
1120 if (connect->sni)
1121 ssl_sock_set_servername(conn, connect->sni);
1122 else if ((connect->options & TCPCHK_OPT_DEFAULT_CONNECT) && s && s->check.sni)
1123 ssl_sock_set_servername(conn, s->check.sni);
1124
1125 if (connect->alpn)
1126 ssl_sock_set_alpn(conn, (unsigned char *)connect->alpn, connect->alpn_len);
1127 else if ((connect->options & TCPCHK_OPT_DEFAULT_CONNECT) && s && s->check.alpn_str)
1128 ssl_sock_set_alpn(conn, (unsigned char *)s->check.alpn_str, s->check.alpn_len);
1129#endif
1130 if ((connect->options & TCPCHK_OPT_SOCKS4) && s && (s->flags & SRV_F_SOCKS4_PROXY)) {
1131 conn->send_proxy_ofs = 1;
1132 conn->flags |= CO_FL_SOCKS4;
1133 }
1134 else if ((connect->options & TCPCHK_OPT_DEFAULT_CONNECT) && s && s->check.via_socks4 && (s->flags & SRV_F_SOCKS4_PROXY)) {
1135 conn->send_proxy_ofs = 1;
1136 conn->flags |= CO_FL_SOCKS4;
1137 }
1138
1139 if (connect->options & TCPCHK_OPT_SEND_PROXY) {
1140 conn->send_proxy_ofs = 1;
1141 conn->flags |= CO_FL_SEND_PROXY;
1142 }
1143 else if ((connect->options & TCPCHK_OPT_DEFAULT_CONNECT) && s && s->check.send_proxy && !(check->state & CHK_ST_AGENT)) {
1144 conn->send_proxy_ofs = 1;
1145 conn->flags |= CO_FL_SEND_PROXY;
1146 }
1147
1148 if (conn_ctrl_ready(conn) && (connect->options & TCPCHK_OPT_LINGER)) {
1149 /* Some servers don't like reset on close */
1150 fdtab[cs->conn->handle.fd].linger_risk = 0;
1151 }
1152
1153 if (conn_ctrl_ready(conn) && (conn->flags & (CO_FL_SEND_PROXY | CO_FL_SOCKS4))) {
1154 if (xprt_add_hs(conn) < 0)
1155 status = SF_ERR_RESOURCE;
1156 }
1157
1158 fail_check:
1159 /* It can return one of :
1160 * - SF_ERR_NONE if everything's OK
1161 * - SF_ERR_SRVTO if there are no more servers
1162 * - SF_ERR_SRVCL if the connection was refused by the server
1163 * - SF_ERR_PRXCOND if the connection has been limited by the proxy (maxconn)
1164 * - SF_ERR_RESOURCE if a system resource is lacking (eg: fd limits, ports, ...)
1165 * - SF_ERR_INTERNAL for any other purely internal errors
1166 * Additionally, in the case of SF_ERR_RESOURCE, an emergency log will be emitted.
1167 * Note that we try to prevent the network stack from sending the ACK during the
1168 * connect() when a pure TCP check is used (without PROXY protocol).
1169 */
1170 switch (status) {
1171 case SF_ERR_NONE:
1172 /* we allow up to min(inter, timeout.connect) for a connection
1173 * to establish but only when timeout.check is set as it may be
1174 * to short for a full check otherwise
1175 */
1176 t->expire = tick_add(now_ms, MS_TO_TICKS(check->inter));
1177
1178 if (proxy->timeout.check && proxy->timeout.connect) {
1179 int t_con = tick_add(now_ms, proxy->timeout.connect);
1180 t->expire = tick_first(t->expire, t_con);
1181 }
1182 break;
1183 case SF_ERR_SRVTO: /* ETIMEDOUT */
1184 case SF_ERR_SRVCL: /* ECONNREFUSED, ENETUNREACH, ... */
1185 case SF_ERR_PRXCOND:
1186 case SF_ERR_RESOURCE:
1187 case SF_ERR_INTERNAL:
1188 chk_report_conn_err(check, errno, 0);
1189 ret = TCPCHK_EVAL_STOP;
1190 goto out;
1191 }
1192
1193 /* don't do anything until the connection is established */
1194 if (conn->flags & CO_FL_WAIT_XPRT) {
1195 if (conn->mux) {
1196 if (next && next->action == TCPCHK_ACT_SEND)
1197 conn->mux->subscribe(cs, SUB_RETRY_SEND, &check->wait_list);
1198 else
1199 conn->mux->subscribe(cs, SUB_RETRY_RECV, &check->wait_list);
1200 }
1201 ret = TCPCHK_EVAL_WAIT;
1202 goto out;
1203 }
1204
1205 out:
1206 if (conn && check->result == CHK_RES_FAILED)
1207 conn->flags |= CO_FL_ERROR;
1208 return ret;
1209}
1210
1211/* Evaluates a TCPCHK_ACT_SEND rule. Returns TCPCHK_EVAL_WAIT if outgoing data
1212 * were not fully sent, TCPCHK_EVAL_CONTINUE to evaluate the next rule or
1213 * TCPCHK_EVAL_STOP if an error occurred.
1214 */
1215enum tcpcheck_eval_ret tcpcheck_eval_send(struct check *check, struct tcpcheck_rule *rule)
1216{
1217 enum tcpcheck_eval_ret ret = TCPCHK_EVAL_CONTINUE;
1218 struct tcpcheck_send *send = &rule->send;
1219 struct conn_stream *cs = check->cs;
1220 struct connection *conn = cs_conn(cs);
1221 struct buffer *tmp = NULL;
1222 struct htx *htx = NULL;
1223
1224 /* reset the read & write buffer */
1225 b_reset(&check->bi);
1226 b_reset(&check->bo);
1227
1228 switch (send->type) {
1229 case TCPCHK_SEND_STRING:
1230 case TCPCHK_SEND_BINARY:
1231 if (istlen(send->data) >= b_size(&check->bo)) {
1232 chunk_printf(&trash, "tcp-check send : string too large (%u) for buffer size (%u) at step %d",
1233 (unsigned int)istlen(send->data), (unsigned int)b_size(&check->bo),
1234 tcpcheck_get_step_id(check, rule));
1235 set_server_check_status(check, HCHK_STATUS_L7RSP, trash.area);
1236 ret = TCPCHK_EVAL_STOP;
1237 goto out;
1238 }
1239 b_putist(&check->bo, send->data);
1240 break;
1241 case TCPCHK_SEND_STRING_LF:
1242 check->bo.data = sess_build_logline(check->sess, NULL, b_orig(&check->bo), b_size(&check->bo), &rule->send.fmt);
1243 if (!b_data(&check->bo))
1244 goto out;
1245 break;
1246 case TCPCHK_SEND_BINARY_LF: {
1247 int len = b_size(&check->bo);
1248
1249 tmp = alloc_trash_chunk();
1250 if (!tmp)
1251 goto error_lf;
1252 tmp->data = sess_build_logline(check->sess, NULL, b_orig(tmp), b_size(tmp), &rule->send.fmt);
1253 if (!b_data(tmp))
1254 goto out;
1255 tmp->area[tmp->data] = '\0';
1256 if (parse_binary(b_orig(tmp), &check->bo.area, &len, NULL) == 0)
1257 goto error_lf;
1258 check->bo.data = len;
1259 break;
1260 }
1261 case TCPCHK_SEND_HTTP: {
1262 struct htx_sl *sl;
1263 struct ist meth, uri, vsn, clen, body;
1264 unsigned int slflags = 0;
1265
1266 tmp = alloc_trash_chunk();
1267 if (!tmp)
1268 goto error_htx;
1269
1270 meth = ((send->http.meth.meth == HTTP_METH_OTHER)
1271 ? ist2(send->http.meth.str.area, send->http.meth.str.data)
1272 : http_known_methods[send->http.meth.meth]);
1273 if (send->http.flags & TCPCHK_SND_HTTP_FL_URI_FMT) {
1274 tmp->data = sess_build_logline(check->sess, NULL, b_orig(tmp), b_size(tmp), &send->http.uri_fmt);
1275 uri = (b_data(tmp) ? ist2(b_orig(tmp), b_data(tmp)) : ist("/"));
1276 }
1277 else
1278 uri = (isttest(send->http.uri) ? send->http.uri : ist("/"));
1279 vsn = (isttest(send->http.vsn) ? send->http.vsn : ist("HTTP/1.0"));
1280
1281 if ((istlen(vsn) == 6 && *(vsn.ptr+5) == '2') ||
1282 (istlen(vsn) == 8 && (*(vsn.ptr+5) > '1' || (*(vsn.ptr+5) == '1' && *(vsn.ptr+7) >= '1'))))
1283 slflags |= HTX_SL_F_VER_11;
1284 slflags |= (HTX_SL_F_XFER_LEN|HTX_SL_F_CLEN);
1285 if (!isttest(send->http.body))
1286 slflags |= HTX_SL_F_BODYLESS;
1287
1288 htx = htx_from_buf(&check->bo);
1289 sl = htx_add_stline(htx, HTX_BLK_REQ_SL, slflags, meth, uri, vsn);
1290 if (!sl)
1291 goto error_htx;
1292 sl->info.req.meth = send->http.meth.meth;
1293 if (!http_update_host(htx, sl, uri))
1294 goto error_htx;
1295
1296 if (!LIST_ISEMPTY(&send->http.hdrs)) {
1297 struct tcpcheck_http_hdr *hdr;
1298 struct ist hdr_value;
1299
1300 list_for_each_entry(hdr, &send->http.hdrs, list) {
1301 chunk_reset(tmp);
1302 tmp->data = sess_build_logline(check->sess, NULL, b_orig(tmp), b_size(tmp), &hdr->value);
1303 if (!b_data(tmp))
1304 continue;
1305 hdr_value = ist2(b_orig(tmp), b_data(tmp));
1306 if (!htx_add_header(htx, hdr->name, hdr_value))
1307 goto error_htx;
1308 if ((sl->flags & HTX_SL_F_HAS_AUTHORITY) && isteqi(hdr->name, ist("host"))) {
1309 if (!http_update_authority(htx, sl, hdr_value))
1310 goto error_htx;
1311 }
1312 }
1313
1314 }
1315 if (check->proxy->options2 & PR_O2_CHK_SNDST) {
1316 chunk_reset(tmp);
1317 httpchk_build_status_header(check->server, tmp);
1318 if (!htx_add_header(htx, ist("X-Haproxy-Server-State"), ist2(b_orig(tmp), b_data(tmp))))
1319 goto error_htx;
1320 }
1321
1322
1323 if (send->http.flags & TCPCHK_SND_HTTP_FL_BODY_FMT) {
1324 chunk_reset(tmp);
1325 tmp->data = sess_build_logline(check->sess, NULL, b_orig(tmp), b_size(tmp), &send->http.body_fmt);
1326 body = ist2(b_orig(tmp), b_data(tmp));
1327 }
1328 else
1329 body = send->http.body;
1330 clen = ist((!istlen(body) ? "0" : ultoa(istlen(body))));
1331
1332 if (!htx_add_header(htx, ist("Connection"), ist("close")) ||
1333 !htx_add_header(htx, ist("Content-length"), clen))
1334 goto error_htx;
1335
1336
1337 if (!htx_add_endof(htx, HTX_BLK_EOH) ||
1338 (istlen(body) && !htx_add_data_atonce(htx, body)) ||
1339 !htx_add_endof(htx, HTX_BLK_EOM))
1340 goto error_htx;
1341
1342 htx_to_buf(htx, &check->bo);
1343 break;
1344 }
1345 case TCPCHK_SEND_UNDEF:
1346 /* Should never happen. */
1347 ret = TCPCHK_EVAL_STOP;
1348 goto out;
1349 };
1350
1351
1352 if (conn->mux->snd_buf(cs, &check->bo,
1353 (IS_HTX_CONN(conn) ? (htxbuf(&check->bo))->data: b_data(&check->bo)), 0) <= 0) {
1354 if ((conn->flags & CO_FL_ERROR) || (cs->flags & CS_FL_ERROR)) {
1355 ret = TCPCHK_EVAL_STOP;
1356 goto out;
1357 }
1358 }
1359 if ((IS_HTX_CONN(conn) && !htx_is_empty(htxbuf(&check->bo))) || b_data(&check->bo)) {
1360 cs->conn->mux->subscribe(cs, SUB_RETRY_SEND, &check->wait_list);
1361 ret = TCPCHK_EVAL_WAIT;
1362 goto out;
1363 }
1364
1365 out:
1366 free_trash_chunk(tmp);
1367 return ret;
1368
1369 error_htx:
1370 if (htx) {
1371 htx_reset(htx);
1372 htx_to_buf(htx, &check->bo);
1373 }
1374 chunk_printf(&trash, "tcp-check send : failed to build HTTP request at step %d",
1375 tcpcheck_get_step_id(check, rule));
1376 set_server_check_status(check, HCHK_STATUS_L7RSP, trash.area);
1377 ret = TCPCHK_EVAL_STOP;
1378 goto out;
1379
1380 error_lf:
1381 chunk_printf(&trash, "tcp-check send : failed to build log-format string at step %d",
1382 tcpcheck_get_step_id(check, rule));
1383 set_server_check_status(check, HCHK_STATUS_L7RSP, trash.area);
1384 ret = TCPCHK_EVAL_STOP;
1385 goto out;
1386
1387}
1388
1389/* Try to receive data before evaluating a tcp-check expect rule. Returns
1390 * TCPCHK_EVAL_WAIT if it is already subscribed on receive events or if nothing
1391 * was received, TCPCHK_EVAL_CONTINUE to evaluate the expect rule or
1392 * TCPCHK_EVAL_STOP if an error occurred.
1393 */
1394enum tcpcheck_eval_ret tcpcheck_eval_recv(struct check *check, struct tcpcheck_rule *rule)
1395{
1396 struct conn_stream *cs = check->cs;
1397 struct connection *conn = cs_conn(cs);
1398 enum tcpcheck_eval_ret ret = TCPCHK_EVAL_CONTINUE;
1399 size_t max, read, cur_read = 0;
1400 int is_empty;
1401 int read_poll = MAX_READ_POLL_LOOPS;
1402
1403 if (check->wait_list.events & SUB_RETRY_RECV)
1404 goto wait_more_data;
1405
1406 if (cs->flags & CS_FL_EOS)
1407 goto end_recv;
1408
1409 /* errors on the connection and the conn-stream were already checked */
1410
1411 /* prepare to detect if the mux needs more room */
1412 cs->flags &= ~CS_FL_WANT_ROOM;
1413
1414 while ((cs->flags & CS_FL_RCV_MORE) ||
1415 (!(conn->flags & CO_FL_ERROR) && !(cs->flags & (CS_FL_ERROR|CS_FL_EOS)))) {
1416 max = (IS_HTX_CS(cs) ? htx_free_space(htxbuf(&check->bi)) : b_room(&check->bi));
1417 read = conn->mux->rcv_buf(cs, &check->bi, max, 0);
1418 cur_read += read;
1419 if (!read ||
1420 (cs->flags & CS_FL_WANT_ROOM) ||
1421 (--read_poll <= 0) ||
1422 (read < max && read >= global.tune.recv_enough))
1423 break;
1424 }
1425
1426 end_recv:
1427 is_empty = (IS_HTX_CS(cs) ? htx_is_empty(htxbuf(&check->bi)) : !b_data(&check->bi));
1428 if (is_empty && ((conn->flags & CO_FL_ERROR) || (cs->flags & CS_FL_ERROR))) {
1429 /* Report network errors only if we got no other data. Otherwise
1430 * we'll let the upper layers decide whether the response is OK
1431 * or not. It is very common that an RST sent by the server is
1432 * reported as an error just after the last data chunk.
1433 */
1434 goto stop;
1435 }
1436 if (!cur_read) {
1437 if (!(cs->flags & (CS_FL_WANT_ROOM|CS_FL_ERROR|CS_FL_EOS))) {
1438 conn->mux->subscribe(cs, SUB_RETRY_RECV, &check->wait_list);
1439 goto wait_more_data;
1440 }
1441 if (is_empty) {
1442 int status;
1443
1444 chunk_printf(&trash, "TCPCHK got an empty response at step %d",
1445 tcpcheck_get_step_id(check, rule));
1446 if (rule->comment)
1447 chunk_appendf(&trash, " comment: '%s'", rule->comment);
1448
1449 status = ((rule->expect.err_status != HCHK_STATUS_UNKNOWN) ? rule->expect.err_status : HCHK_STATUS_L7RSP);
1450 set_server_check_status(check, status, trash.area);
1451 goto stop;
1452 }
1453 }
1454
1455 out:
1456 return ret;
1457
1458 stop:
1459 ret = TCPCHK_EVAL_STOP;
1460 goto out;
1461
1462 wait_more_data:
1463 ret = TCPCHK_EVAL_WAIT;
1464 goto out;
1465}
1466
1467/* Evaluates an HTTP TCPCHK_ACT_EXPECT rule. If <last_read> is set , no more data
1468 * are expected. Returns TCPCHK_EVAL_WAIT to wait for more data,
1469 * TCPCHK_EVAL_CONTINUE to evaluate the next rule or TCPCHK_EVAL_STOP if an
1470 * error occurred.
1471 */
1472enum tcpcheck_eval_ret tcpcheck_eval_expect_http(struct check *check, struct tcpcheck_rule *rule, int last_read)
1473{
1474 struct htx *htx = htxbuf(&check->bi);
1475 struct htx_sl *sl;
1476 struct htx_blk *blk;
1477 enum tcpcheck_eval_ret ret = TCPCHK_EVAL_CONTINUE;
1478 struct tcpcheck_expect *expect = &rule->expect;
1479 struct buffer *msg = NULL, *tmp = NULL, *nbuf = NULL, *vbuf = NULL;
1480 enum healthcheck_status status = HCHK_STATUS_L7RSP;
1481 struct ist desc = IST_NULL;
1482 int i, match, inverse;
1483
1484 last_read |= (!htx_free_space(htx) || (htx_get_tail_type(htx) == HTX_BLK_EOM));
1485
1486 if (htx->flags & HTX_FL_PARSING_ERROR) {
1487 status = HCHK_STATUS_L7RSP;
1488 goto error;
1489 }
1490
1491 if (htx_is_empty(htx)) {
1492 if (last_read) {
1493 status = HCHK_STATUS_L7RSP;
1494 goto error;
1495 }
1496 goto wait_more_data;
1497 }
1498
1499 sl = http_get_stline(htx);
1500 check->code = sl->info.res.status;
1501
1502 if (check->server &&
1503 (check->server->proxy->options & PR_O_DISABLE404) &&
1504 (check->server->next_state != SRV_ST_STOPPED) &&
1505 (check->code == 404)) {
1506 /* 404 may be accepted as "stopping" only if the server was up */
1507 goto out;
1508 }
1509
1510 inverse = !!(expect->flags & TCPCHK_EXPT_FL_INV);
1511 /* Make GCC happy ; initialize match to a failure state. */
1512 match = inverse;
1513 status = expect->err_status;
1514
1515 switch (expect->type) {
1516 case TCPCHK_EXPECT_HTTP_STATUS:
1517 match = 0;
1518 for (i = 0; i < expect->codes.num; i++) {
1519 if (sl->info.res.status >= expect->codes.codes[i][0] &&
1520 sl->info.res.status <= expect->codes.codes[i][1]) {
1521 match = 1;
1522 break;
1523 }
1524 }
1525
1526 /* Set status and description in case of error */
1527 status = ((status != HCHK_STATUS_UNKNOWN) ? status : HCHK_STATUS_L7STS);
1528 if (LIST_ISEMPTY(&expect->onerror_fmt))
1529 desc = htx_sl_res_reason(sl);
1530 break;
1531 case TCPCHK_EXPECT_HTTP_STATUS_REGEX:
1532 match = regex_exec2(expect->regex, HTX_SL_RES_CPTR(sl), HTX_SL_RES_CLEN(sl));
1533
1534 /* Set status and description in case of error */
1535 status = ((status != HCHK_STATUS_UNKNOWN) ? status : HCHK_STATUS_L7STS);
1536 if (LIST_ISEMPTY(&expect->onerror_fmt))
1537 desc = htx_sl_res_reason(sl);
1538 break;
1539
1540 case TCPCHK_EXPECT_HTTP_HEADER: {
1541 struct http_hdr_ctx ctx;
1542 struct ist npat, vpat, value;
1543 int full = (expect->flags & (TCPCHK_EXPT_FL_HTTP_HVAL_NONE|TCPCHK_EXPT_FL_HTTP_HVAL_FULL));
1544
1545 if (expect->flags & TCPCHK_EXPT_FL_HTTP_HNAME_FMT) {
1546 nbuf = alloc_trash_chunk();
1547 if (!nbuf) {
1548 status = HCHK_STATUS_L7RSP;
1549 desc = ist("Failed to allocate buffer to eval log-format string");
1550 goto error;
1551 }
1552 nbuf->data = sess_build_logline(check->sess, NULL, b_orig(nbuf), b_size(nbuf), &expect->hdr.name_fmt);
1553 if (!b_data(nbuf)) {
1554 status = HCHK_STATUS_L7RSP;
1555 desc = ist("log-format string evaluated to an empty string");
1556 goto error;
1557 }
1558 npat = ist2(b_orig(nbuf), b_data(nbuf));
1559 }
1560 else if (!(expect->flags & TCPCHK_EXPT_FL_HTTP_HNAME_REG))
1561 npat = expect->hdr.name;
1562
1563 if (expect->flags & TCPCHK_EXPT_FL_HTTP_HVAL_FMT) {
1564 vbuf = alloc_trash_chunk();
1565 if (!vbuf) {
1566 status = HCHK_STATUS_L7RSP;
1567 desc = ist("Failed to allocate buffer to eval log-format string");
1568 goto error;
1569 }
1570 vbuf->data = sess_build_logline(check->sess, NULL, b_orig(vbuf), b_size(vbuf), &expect->hdr.value_fmt);
1571 if (!b_data(vbuf)) {
1572 status = HCHK_STATUS_L7RSP;
1573 desc = ist("log-format string evaluated to an empty string");
1574 goto error;
1575 }
1576 vpat = ist2(b_orig(vbuf), b_data(vbuf));
1577 }
1578 else if (!(expect->flags & TCPCHK_EXPT_FL_HTTP_HVAL_REG))
1579 vpat = expect->hdr.value;
1580
1581 match = 0;
1582 ctx.blk = NULL;
1583 while (1) {
1584 switch (expect->flags & TCPCHK_EXPT_FL_HTTP_HNAME_TYPE) {
1585 case TCPCHK_EXPT_FL_HTTP_HNAME_STR:
1586 if (!http_find_str_header(htx, npat, &ctx, full))
1587 goto end_of_match;
1588 break;
1589 case TCPCHK_EXPT_FL_HTTP_HNAME_BEG:
1590 if (!http_find_pfx_header(htx, npat, &ctx, full))
1591 goto end_of_match;
1592 break;
1593 case TCPCHK_EXPT_FL_HTTP_HNAME_END:
1594 if (!http_find_sfx_header(htx, npat, &ctx, full))
1595 goto end_of_match;
1596 break;
1597 case TCPCHK_EXPT_FL_HTTP_HNAME_SUB:
1598 if (!http_find_sub_header(htx, npat, &ctx, full))
1599 goto end_of_match;
1600 break;
1601 case TCPCHK_EXPT_FL_HTTP_HNAME_REG:
1602 if (!http_match_header(htx, expect->hdr.name_re, &ctx, full))
1603 goto end_of_match;
1604 break;
1605 default:
1606 /* should never happen */
1607 goto end_of_match;
1608 }
1609
1610 /* A header has matched the name pattern, let's test its
1611 * value now (always defined from there). If there is no
1612 * value pattern, it is a good match.
1613 */
1614
1615 if (expect->flags & TCPCHK_EXPT_FL_HTTP_HVAL_NONE) {
1616 match = 1;
1617 goto end_of_match;
1618 }
1619
1620 value = ctx.value;
1621 switch (expect->flags & TCPCHK_EXPT_FL_HTTP_HVAL_TYPE) {
1622 case TCPCHK_EXPT_FL_HTTP_HVAL_STR:
1623 if (isteq(value, vpat)) {
1624 match = 1;
1625 goto end_of_match;
1626 }
1627 break;
1628 case TCPCHK_EXPT_FL_HTTP_HVAL_BEG:
1629 if (istlen(value) < istlen(vpat))
1630 break;
1631 value = ist2(istptr(value), istlen(vpat));
1632 if (isteq(value, vpat)) {
1633 match = 1;
1634 goto end_of_match;
1635 }
1636 break;
1637 case TCPCHK_EXPT_FL_HTTP_HVAL_END:
1638 if (istlen(value) < istlen(vpat))
1639 break;
1640 value = ist2(istptr(value) + istlen(value) - istlen(vpat), istlen(vpat));
1641 if (isteq(value, vpat)) {
1642 match = 1;
1643 goto end_of_match;
1644 }
1645 break;
1646 case TCPCHK_EXPT_FL_HTTP_HVAL_SUB:
1647 if (isttest(istist(value, vpat))) {
1648 match = 1;
1649 goto end_of_match;
1650 }
1651 break;
1652 case TCPCHK_EXPT_FL_HTTP_HVAL_REG:
1653 if (regex_exec2(expect->hdr.value_re, istptr(value), istlen(value))) {
1654 match = 1;
1655 goto end_of_match;
1656 }
1657 break;
1658 }
1659 }
1660
1661 end_of_match:
1662 status = ((status != HCHK_STATUS_UNKNOWN) ? status : HCHK_STATUS_L7STS);
1663 if (LIST_ISEMPTY(&expect->onerror_fmt))
1664 desc = htx_sl_res_reason(sl);
1665 break;
1666 }
1667
1668 case TCPCHK_EXPECT_HTTP_BODY:
1669 case TCPCHK_EXPECT_HTTP_BODY_REGEX:
1670 case TCPCHK_EXPECT_HTTP_BODY_LF:
1671 match = 0;
1672 chunk_reset(&trash);
1673 for (blk = htx_get_head_blk(htx); blk; blk = htx_get_next_blk(htx, blk)) {
1674 enum htx_blk_type type = htx_get_blk_type(blk);
1675
1676 if (type == HTX_BLK_EOM || type == HTX_BLK_TLR || type == HTX_BLK_EOT)
1677 break;
1678 if (type == HTX_BLK_DATA) {
1679 if (!chunk_istcat(&trash, htx_get_blk_value(htx, blk)))
1680 break;
1681 }
1682 }
1683
1684 if (!b_data(&trash)) {
1685 if (!last_read)
1686 goto wait_more_data;
1687 status = ((status != HCHK_STATUS_UNKNOWN) ? status : HCHK_STATUS_L7RSP);
1688 if (LIST_ISEMPTY(&expect->onerror_fmt))
1689 desc = ist("HTTP content check could not find a response body");
1690 goto error;
1691 }
1692
1693 if (expect->type == TCPCHK_EXPECT_HTTP_BODY_LF) {
1694 tmp = alloc_trash_chunk();
1695 if (!tmp) {
1696 status = HCHK_STATUS_L7RSP;
1697 desc = ist("Failed to allocate buffer to eval log-format string");
1698 goto error;
1699 }
1700 tmp->data = sess_build_logline(check->sess, NULL, b_orig(tmp), b_size(tmp), &expect->fmt);
1701 if (!b_data(tmp)) {
1702 status = HCHK_STATUS_L7RSP;
1703 desc = ist("log-format string evaluated to an empty string");
1704 goto error;
1705 }
1706 }
1707
1708 if (!last_read &&
1709 ((expect->type == TCPCHK_EXPECT_HTTP_BODY && b_data(&trash) < istlen(expect->data)) ||
1710 ((expect->type == TCPCHK_EXPECT_HTTP_BODY_LF && b_data(&trash) < b_data(tmp))) ||
1711 (expect->min_recv > 0 && b_data(&trash) < expect->min_recv))) {
1712 ret = TCPCHK_EVAL_WAIT;
1713 goto out;
1714 }
1715
1716 if (expect->type ==TCPCHK_EXPECT_HTTP_BODY)
1717 match = my_memmem(b_orig(&trash), b_data(&trash), istptr(expect->data), istlen(expect->data)) != NULL;
1718 else if (expect->type ==TCPCHK_EXPECT_HTTP_BODY_LF)
1719 match = my_memmem(b_orig(&trash), b_data(&trash), b_orig(tmp), b_data(tmp)) != NULL;
1720 else
1721 match = regex_exec2(expect->regex, b_orig(&trash), b_data(&trash));
1722
1723 /* Set status and description in case of error */
1724 status = ((status != HCHK_STATUS_UNKNOWN) ? status : HCHK_STATUS_L7RSP);
1725 if (LIST_ISEMPTY(&expect->onerror_fmt))
1726 desc = (inverse
1727 ? ist("HTTP check matched unwanted content")
1728 : ist("HTTP content check did not match"));
1729 break;
1730
1731
1732 default:
1733 /* should never happen */
1734 status = ((status != HCHK_STATUS_UNKNOWN) ? status : HCHK_STATUS_L7RSP);
1735 goto error;
1736 }
1737
1738 /* Wait for more data on mismatch only if no minimum is defined (-1),
1739 * otherwise the absence of match is already conclusive.
1740 */
1741 if (!match && !last_read && (expect->min_recv == -1)) {
1742 ret = TCPCHK_EVAL_WAIT;
1743 goto out;
1744 }
1745
1746 if (!(match ^ inverse))
1747 goto error;
1748
1749 out:
1750 free_trash_chunk(tmp);
1751 free_trash_chunk(nbuf);
1752 free_trash_chunk(vbuf);
1753 free_trash_chunk(msg);
1754 return ret;
1755
1756 error:
1757 ret = TCPCHK_EVAL_STOP;
1758 msg = alloc_trash_chunk();
1759 if (msg)
1760 tcpcheck_expect_onerror_message(msg, check, rule, 0, desc);
1761 set_server_check_status(check, status, (msg ? b_head(msg) : NULL));
1762 goto out;
1763
1764 wait_more_data:
1765 ret = TCPCHK_EVAL_WAIT;
1766 goto out;
1767}
1768
1769/* Evaluates a TCP TCPCHK_ACT_EXPECT rule. Returns TCPCHK_EVAL_WAIT to wait for
1770 * more data, TCPCHK_EVAL_CONTINUE to evaluate the next rule or TCPCHK_EVAL_STOP
1771 * if an error occurred.
1772 */
1773enum tcpcheck_eval_ret tcpcheck_eval_expect(struct check *check, struct tcpcheck_rule *rule, int last_read)
1774{
1775 enum tcpcheck_eval_ret ret = TCPCHK_EVAL_CONTINUE;
1776 struct tcpcheck_expect *expect = &rule->expect;
1777 struct buffer *msg = NULL, *tmp = NULL;
1778 struct ist desc = IST_NULL;
1779 enum healthcheck_status status;
1780 int match, inverse;
1781
1782 last_read |= b_full(&check->bi);
1783
1784 /* The current expect might need more data than the previous one, check again
1785 * that the minimum amount data required to match is respected.
1786 */
1787 if (!last_read) {
1788 if ((expect->type == TCPCHK_EXPECT_STRING || expect->type == TCPCHK_EXPECT_BINARY) &&
1789 (b_data(&check->bi) < istlen(expect->data))) {
1790 ret = TCPCHK_EVAL_WAIT;
1791 goto out;
1792 }
1793 if (expect->min_recv > 0 && (b_data(&check->bi) < expect->min_recv)) {
1794 ret = TCPCHK_EVAL_WAIT;
1795 goto out;
1796 }
1797 }
1798
1799 inverse = !!(expect->flags & TCPCHK_EXPT_FL_INV);
1800 /* Make GCC happy ; initialize match to a failure state. */
1801 match = inverse;
1802 status = ((expect->err_status != HCHK_STATUS_UNKNOWN) ? expect->err_status : HCHK_STATUS_L7RSP);
1803
1804 switch (expect->type) {
1805 case TCPCHK_EXPECT_STRING:
1806 case TCPCHK_EXPECT_BINARY:
1807 match = my_memmem(b_head(&check->bi), b_data(&check->bi), istptr(expect->data), istlen(expect->data)) != NULL;
1808 break;
1809 case TCPCHK_EXPECT_STRING_REGEX:
1810 match = regex_exec2(expect->regex, b_head(&check->bi), MIN(b_data(&check->bi), b_size(&check->bi)-1));
1811 break;
1812
1813 case TCPCHK_EXPECT_BINARY_REGEX:
1814 chunk_reset(&trash);
1815 dump_binary(&trash, b_head(&check->bi), b_data(&check->bi));
1816 match = regex_exec2(expect->regex, b_head(&trash), MIN(b_data(&trash), b_size(&trash)-1));
1817 break;
1818
1819 case TCPCHK_EXPECT_STRING_LF:
1820 case TCPCHK_EXPECT_BINARY_LF:
1821 match = 0;
1822 tmp = alloc_trash_chunk();
1823 if (!tmp) {
1824 status = HCHK_STATUS_L7RSP;
1825 desc = ist("Failed to allocate buffer to eval format string");
1826 goto error;
1827 }
1828 tmp->data = sess_build_logline(check->sess, NULL, b_orig(tmp), b_size(tmp), &expect->fmt);
1829 if (!b_data(tmp)) {
1830 status = HCHK_STATUS_L7RSP;
1831 desc = ist("log-format string evaluated to an empty string");
1832 goto error;
1833 }
1834 if (expect->type == TCPCHK_EXPECT_BINARY_LF) {
1835 int len = tmp->data;
1836 if (parse_binary(b_orig(tmp), &tmp->area, &len, NULL) == 0) {
1837 status = HCHK_STATUS_L7RSP;
1838 desc = ist("Failed to parse hexastring resulting of eval of a log-format string");
1839 goto error;
1840 }
1841 tmp->data = len;
1842 }
1843 if (b_data(&check->bi) < tmp->data) {
1844 if (!last_read) {
1845 ret = TCPCHK_EVAL_WAIT;
1846 goto out;
1847 }
1848 break;
1849 }
1850 match = my_memmem(b_head(&check->bi), b_data(&check->bi), b_orig(tmp), b_data(tmp)) != NULL;
1851 break;
1852
1853 case TCPCHK_EXPECT_CUSTOM:
1854 if (expect->custom)
1855 ret = expect->custom(check, rule, last_read);
1856 goto out;
1857 default:
1858 /* Should never happen. */
1859 ret = TCPCHK_EVAL_STOP;
1860 goto out;
1861 }
1862
1863
1864 /* Wait for more data on mismatch only if no minimum is defined (-1),
1865 * otherwise the absence of match is already conclusive.
1866 */
1867 if (!match && !last_read && (expect->min_recv == -1)) {
1868 ret = TCPCHK_EVAL_WAIT;
1869 goto out;
1870 }
1871
1872 /* Result as expected, next rule. */
1873 if (match ^ inverse)
1874 goto out;
1875
1876 error:
1877 /* From this point on, we matched something we did not want, this is an error state. */
1878 ret = TCPCHK_EVAL_STOP;
1879 msg = alloc_trash_chunk();
1880 if (msg)
1881 tcpcheck_expect_onerror_message(msg, check, rule, match, desc);
1882 set_server_check_status(check, status, (msg ? b_head(msg) : NULL));
1883 free_trash_chunk(msg);
1884
1885 out:
1886 free_trash_chunk(tmp);
1887 return ret;
1888}
1889
1890/* Evaluates a TCPCHK_ACT_ACTION_KW rule. Returns TCPCHK_EVAL_CONTINUE to
1891 * evaluate the next rule or TCPCHK_EVAL_STOP if an error occurred. It never
1892 * waits.
1893 */
1894enum tcpcheck_eval_ret tcpcheck_eval_action_kw(struct check *check, struct tcpcheck_rule *rule)
1895{
1896 enum tcpcheck_eval_ret ret = TCPCHK_EVAL_CONTINUE;
1897 struct act_rule *act_rule;
1898 enum act_return act_ret;
1899
1900 act_rule =rule->action_kw.rule;
1901 act_ret = act_rule->action_ptr(act_rule, check->proxy, check->sess, NULL, 0);
1902 if (act_ret != ACT_RET_CONT) {
1903 chunk_printf(&trash, "TCPCHK ACTION unexpected result at step %d\n",
1904 tcpcheck_get_step_id(check, rule));
1905 set_server_check_status(check, HCHK_STATUS_L7RSP, trash.area);
1906 ret = TCPCHK_EVAL_STOP;
1907 }
1908
1909 return ret;
1910}
1911
1912/* Executes a tcp-check ruleset. Note that this is called both from the
1913 * connection's wake() callback and from the check scheduling task. It returns
1914 * 0 on normal cases, or <0 if a close() has happened on an existing connection,
1915 * presenting the risk of an fd replacement.
1916 *
1917 * Please do NOT place any return statement in this function and only leave
1918 * via the out_end_tcpcheck label after setting retcode.
1919 */
1920int tcpcheck_main(struct check *check)
1921{
1922 struct tcpcheck_rule *rule;
1923 struct conn_stream *cs = check->cs;
1924 struct connection *conn = cs_conn(cs);
1925 int must_read = 1, last_read = 0;
1926 int ret, retcode = 0;
1927 enum tcpcheck_eval_ret eval_ret;
1928
1929 /* here, we know that the check is complete or that it failed */
1930 if (check->result != CHK_RES_UNKNOWN)
1931 goto out;
1932
1933 /* Note: the conn-stream and the connection may only be undefined before
1934 * the first rule evaluation (it is always a connect rule) or when the
1935 * conn-stream allocation failed on the first connect.
1936 */
1937
1938 /* 1- check for connection error, if any */
1939 if ((conn && conn->flags & CO_FL_ERROR) || (cs && cs->flags & CS_FL_ERROR))
1940 goto out_end_tcpcheck;
1941
1942 /* 2- check if we are waiting for the connection establishment. It only
1943 * happens during TCPCHK_ACT_CONNECT. */
1944 if (check->current_step && check->current_step->action == TCPCHK_ACT_CONNECT) {
1945 if (conn->flags & CO_FL_WAIT_XPRT) {
1946 struct tcpcheck_rule *next;
1947
1948 next = get_next_tcpcheck_rule(check->tcpcheck_rules, check->current_step);
1949 if (next && next->action == TCPCHK_ACT_SEND) {
1950 if (!(check->wait_list.events & SUB_RETRY_SEND))
1951 conn->mux->subscribe(cs, SUB_RETRY_SEND, &check->wait_list);
1952 goto out;
1953 }
1954 else {
1955 eval_ret = tcpcheck_eval_recv(check, check->current_step);
1956 if (eval_ret == TCPCHK_EVAL_STOP)
1957 goto out_end_tcpcheck;
1958 else if (eval_ret == TCPCHK_EVAL_WAIT)
1959 goto out;
1960 last_read = ((conn->flags & CO_FL_ERROR) || (cs->flags & (CS_FL_ERROR|CS_FL_EOS)));
1961 must_read = 0;
1962 }
1963 }
1964 rule = LIST_NEXT(&check->current_step->list, typeof(rule), list);
1965 }
1966
1967 /* 3- check for pending outgoing data. It only happens during
1968 * TCPCHK_ACT_SEND. */
1969 else if (check->current_step && check->current_step->action == TCPCHK_ACT_SEND) {
1970 if (b_data(&check->bo)) {
1971 /* We're already waiting to be able to send, give up */
1972 if (check->wait_list.events & SUB_RETRY_SEND)
1973 goto out;
1974
1975 ret = conn->mux->snd_buf(cs, &check->bo,
1976 (IS_HTX_CONN(conn) ? (htxbuf(&check->bo))->data: b_data(&check->bo)), 0);
1977 if (ret <= 0) {
1978 if ((conn->flags & CO_FL_ERROR) || (cs->flags & CS_FL_ERROR))
1979 goto out_end_tcpcheck;
1980 }
1981 if ((IS_HTX_CONN(conn) && !htx_is_empty(htxbuf(&check->bo))) || b_data(&check->bo)) {
1982 conn->mux->subscribe(cs, SUB_RETRY_SEND, &check->wait_list);
1983 goto out;
1984 }
1985 }
1986 rule = LIST_NEXT(&check->current_step->list, typeof(rule), list);
1987 }
1988
1989 /* 4- check if a rule must be resume. It happens if check->current_step
1990 * is defined. */
1991 else if (check->current_step)
1992 rule = check->current_step;
1993
1994 /* 5- It is the first evaluation. We must create a session and preset
1995 * tcp-check variables */
1996 else {
1997 struct tcpcheck_var *var;
1998
1999 /* First evaluation, create a session */
2000 check->sess = session_new(&checks_fe, NULL, &check->obj_type);
2001 if (!check->sess) {
2002 chunk_printf(&trash, "TCPCHK error allocating check session");
2003 set_server_check_status(check, HCHK_STATUS_SOCKERR, trash.area);
2004 goto out_end_tcpcheck;
2005 }
2006 vars_init(&check->vars, SCOPE_CHECK);
2007 rule = LIST_NEXT(check->tcpcheck_rules->list, typeof(rule), list);
2008
2009 /* Preset tcp-check variables */
2010 list_for_each_entry(var, &check->tcpcheck_rules->preset_vars, list) {
2011 struct sample smp;
2012
2013 memset(&smp, 0, sizeof(smp));
2014 smp_set_owner(&smp, check->proxy, check->sess, NULL, SMP_OPT_FINAL);
2015 smp.data = var->data;
2016 vars_set_by_name_ifexist(istptr(var->name), istlen(var->name), &smp);
2017 }
2018 }
2019
2020 /* Now evaluate the tcp-check rules */
2021
2022 list_for_each_entry_from(rule, check->tcpcheck_rules->list, list) {
2023 check->code = 0;
2024 switch (rule->action) {
2025 case TCPCHK_ACT_CONNECT:
2026 check->current_step = rule;
2027
2028 /* close but not release yet previous connection */
2029 if (check->cs) {
2030 cs_close(check->cs);
2031 retcode = -1; /* do not reuse the fd in the caller! */
2032 }
2033 eval_ret = tcpcheck_eval_connect(check, rule);
2034
2035 /* Refresh conn-stream and connection */
2036 cs = check->cs;
2037 conn = cs_conn(cs);
2038 must_read = 1; last_read = 0;
2039 break;
2040 case TCPCHK_ACT_SEND:
2041 check->current_step = rule;
2042 eval_ret = tcpcheck_eval_send(check, rule);
2043 must_read = 1;
2044 break;
2045 case TCPCHK_ACT_EXPECT:
2046 check->current_step = rule;
2047 if (must_read) {
2048 if (check->proxy->timeout.check)
2049 check->task->expire = tick_add_ifset(now_ms, check->proxy->timeout.check);
2050
2051 eval_ret = tcpcheck_eval_recv(check, rule);
2052 if (eval_ret == TCPCHK_EVAL_STOP)
2053 goto out_end_tcpcheck;
2054 else if (eval_ret == TCPCHK_EVAL_WAIT)
2055 goto out;
2056 last_read = ((conn->flags & CO_FL_ERROR) || (cs->flags & (CS_FL_ERROR|CS_FL_EOS)));
2057 must_read = 0;
2058 }
2059
2060 eval_ret = ((check->tcpcheck_rules->flags & TCPCHK_RULES_PROTO_CHK) == TCPCHK_RULES_HTTP_CHK
2061 ? tcpcheck_eval_expect_http(check, rule, last_read)
2062 : tcpcheck_eval_expect(check, rule, last_read));
2063
2064 if (eval_ret == TCPCHK_EVAL_WAIT) {
2065 check->current_step = rule->expect.head;
2066 if (!(check->wait_list.events & SUB_RETRY_RECV))
2067 conn->mux->subscribe(cs, SUB_RETRY_RECV, &check->wait_list);
2068 }
2069 break;
2070 case TCPCHK_ACT_ACTION_KW:
2071 /* Don't update the current step */
2072 eval_ret = tcpcheck_eval_action_kw(check, rule);
2073 break;
2074 default:
2075 /* Otherwise, just go to the next one and don't update
2076 * the current step
2077 */
2078 eval_ret = TCPCHK_EVAL_CONTINUE;
2079 break;
2080 }
2081
2082 switch (eval_ret) {
2083 case TCPCHK_EVAL_CONTINUE:
2084 break;
2085 case TCPCHK_EVAL_WAIT:
2086 goto out;
2087 case TCPCHK_EVAL_STOP:
2088 goto out_end_tcpcheck;
2089 }
2090 }
2091
2092 /* All rules was evaluated */
2093 if (check->current_step) {
2094 rule = check->current_step;
2095
2096 if (rule->action == TCPCHK_ACT_EXPECT) {
2097 struct buffer *msg;
2098 enum healthcheck_status status;
2099
2100 if (check->server &&
2101 (check->server->proxy->options & PR_O_DISABLE404) &&
2102 (check->server->next_state != SRV_ST_STOPPED) &&
2103 (check->code == 404)) {
2104 set_server_check_status(check, HCHK_STATUS_L7OKCD, NULL);
2105 goto out_end_tcpcheck;
2106 }
2107
2108 msg = alloc_trash_chunk();
2109 if (msg)
2110 tcpcheck_expect_onsuccess_message(msg, check, rule, IST_NULL);
2111 status = ((rule->expect.ok_status != HCHK_STATUS_UNKNOWN) ? rule->expect.ok_status : HCHK_STATUS_L7OKD);
2112 set_server_check_status(check, status, (msg ? b_head(msg) : "(tcp-check)"));
2113 free_trash_chunk(msg);
2114 }
2115 else if (rule->action == TCPCHK_ACT_CONNECT) {
2116 const char *msg = ((rule->connect.options & TCPCHK_OPT_IMPLICIT) ? NULL : "(tcp-check)");
2117 enum healthcheck_status status = HCHK_STATUS_L4OK;
2118#ifdef USE_OPENSSL
2119 if (ssl_sock_is_ssl(conn))
2120 status = HCHK_STATUS_L6OK;
2121#endif
2122 set_server_check_status(check, status, msg);
2123 }
2124 }
2125 else
2126 set_server_check_status(check, HCHK_STATUS_L7OKD, "(tcp-check)");
2127
2128 out_end_tcpcheck:
2129 if ((conn && conn->flags & CO_FL_ERROR) || (cs && cs->flags & CS_FL_ERROR))
2130 chk_report_conn_err(check, errno, 0);
2131
2132 out:
2133 return retcode;
2134}
2135
2136
2137/**************************************************************************/
2138/******************* Internals to parse tcp-check rules *******************/
2139/**************************************************************************/
2140struct action_kw_list tcp_check_keywords = {
2141 .list = LIST_HEAD_INIT(tcp_check_keywords.list),
2142};
2143
2144/* Creates a tcp-check rule resulting from parsing a custom keyword. NULL is
2145 * returned on error.
2146 */
2147struct tcpcheck_rule *parse_tcpcheck_action(char **args, int cur_arg, struct proxy *px,
2148 struct list *rules, struct action_kw *kw,
2149 const char *file, int line, char **errmsg)
2150{
2151 struct tcpcheck_rule *chk = NULL;
2152 struct act_rule *actrule = NULL;
2153
2154 actrule = calloc(1, sizeof(*actrule));
2155 if (!actrule) {
2156 memprintf(errmsg, "out of memory");
2157 goto error;
2158 }
2159 actrule->kw = kw;
2160 actrule->from = ACT_F_TCP_CHK;
2161
2162 cur_arg++;
2163 if (kw->parse((const char **)args, &cur_arg, px, actrule, errmsg) == ACT_RET_PRS_ERR) {
2164 memprintf(errmsg, "'%s' : %s", kw->kw, *errmsg);
2165 goto error;
2166 }
2167
2168 chk = calloc(1, sizeof(*chk));
2169 if (!chk) {
2170 memprintf(errmsg, "out of memory");
2171 goto error;
2172 }
2173 chk->action = TCPCHK_ACT_ACTION_KW;
2174 chk->action_kw.rule = actrule;
2175 return chk;
2176
2177 error:
2178 free(actrule);
2179 return NULL;
2180}
2181
2182/* Parses and creates a tcp-check connect or an http-check connect rule. NULL is
2183 * returned on error.
2184 */
2185struct tcpcheck_rule *parse_tcpcheck_connect(char **args, int cur_arg, struct proxy *px, struct list *rules,
2186 const char *file, int line, char **errmsg)
2187{
2188 struct tcpcheck_rule *chk = NULL;
2189 struct sockaddr_storage *sk = NULL;
2190 char *comment = NULL, *sni = NULL, *alpn = NULL;
2191 struct sample_expr *port_expr = NULL;
2192 const struct mux_proto_list *mux_proto = NULL;
2193 unsigned short conn_opts = 0;
2194 long port = 0;
2195 int alpn_len = 0;
2196
2197 list_for_each_entry(chk, rules, list) {
2198 if (chk->action == TCPCHK_ACT_CONNECT)
2199 break;
2200 if (chk->action == TCPCHK_ACT_COMMENT ||
2201 chk->action == TCPCHK_ACT_ACTION_KW ||
2202 (chk->action == TCPCHK_ACT_SEND && (chk->send.http.flags & TCPCHK_SND_HTTP_FROM_OPT)))
2203 continue;
2204
2205 memprintf(errmsg, "first step MUST also be a 'connect', "
2206 "optionally preceded by a 'set-var', an 'unset-var' or a 'comment', "
2207 "when there is a 'connect' step in the tcp-check ruleset");
2208 goto error;
2209 }
2210
2211 cur_arg++;
2212 while (*(args[cur_arg])) {
2213 if (strcmp(args[cur_arg], "default") == 0)
2214 conn_opts |= TCPCHK_OPT_DEFAULT_CONNECT;
2215 else if (strcmp(args[cur_arg], "addr") == 0) {
2216 int port1, port2;
2217 struct protocol *proto;
2218
2219 if (!*(args[cur_arg+1])) {
2220 memprintf(errmsg, "'%s' expects <ipv4|ipv6> as argument.", args[cur_arg]);
2221 goto error;
2222 }
2223
2224 sk = str2sa_range(args[cur_arg+1], NULL, &port1, &port2, errmsg, NULL, NULL, 1);
2225 if (!sk) {
2226 memprintf(errmsg, "'%s' : %s.", args[cur_arg], *errmsg);
2227 goto error;
2228 }
2229
2230 proto = protocol_by_family(sk->ss_family);
2231 if (!proto || !proto->connect) {
2232 memprintf(errmsg, "'%s' : connect() not supported for this address family.\n",
2233 args[cur_arg]);
2234 goto error;
2235 }
2236
2237 if (port1 != port2) {
2238 memprintf(errmsg, "'%s' : port ranges and offsets are not allowed in '%s'\n",
2239 args[cur_arg], args[cur_arg+1]);
2240 goto error;
2241 }
2242
2243 cur_arg++;
2244 }
2245 else if (strcmp(args[cur_arg], "port") == 0) {
2246 const char *p, *end;
2247
2248 if (!*(args[cur_arg+1])) {
2249 memprintf(errmsg, "'%s' expects a port number or a sample expression as argument.", args[cur_arg]);
2250 goto error;
2251 }
2252 cur_arg++;
2253
2254 port = 0;
2255 release_sample_expr(port_expr);
2256 p = args[cur_arg]; end = p + strlen(p);
2257 port = read_uint(&p, end);
2258 if (p != end) {
2259 int idx = 0;
2260
2261 px->conf.args.ctx = ARGC_SRV;
2262 port_expr = sample_parse_expr((char *[]){args[cur_arg], NULL}, &idx,
2263 file, line, errmsg, &px->conf.args, NULL);
2264
2265 if (!port_expr) {
2266 memprintf(errmsg, "error detected while parsing port expression : %s", *errmsg);
2267 goto error;
2268 }
2269 if (!(port_expr->fetch->val & SMP_VAL_BE_CHK_RUL)) {
2270 memprintf(errmsg, "error detected while parsing port expression : "
2271 " fetch method '%s' extracts information from '%s', "
2272 "none of which is available here.\n",
2273 args[cur_arg], sample_src_names(port_expr->fetch->use));
2274 goto error;
2275 }
2276 px->http_needed |= !!(port_expr->fetch->use & SMP_USE_HTTP_ANY);
2277 }
2278 else if (port > 65535 || port < 1) {
2279 memprintf(errmsg, "expects a valid TCP port (from range 1 to 65535) or a sample expression, got %s.",
2280 args[cur_arg]);
2281 goto error;
2282 }
2283 }
2284 else if (strcmp(args[cur_arg], "proto") == 0) {
2285 if (!*(args[cur_arg+1])) {
2286 memprintf(errmsg, "'%s' expects a MUX protocol as argument.", args[cur_arg]);
2287 goto error;
2288 }
2289 mux_proto = get_mux_proto(ist2(args[cur_arg+1], strlen(args[cur_arg+1])));
2290 if (!mux_proto) {
2291 memprintf(errmsg, "'%s' : unknown MUX protocol '%s'.", args[cur_arg], args[cur_arg+1]);
2292 goto error;
2293 }
2294 cur_arg++;
2295 }
2296 else if (strcmp(args[cur_arg], "comment") == 0) {
2297 if (!*(args[cur_arg+1])) {
2298 memprintf(errmsg, "'%s' expects a string as argument.", args[cur_arg]);
2299 goto error;
2300 }
2301 cur_arg++;
2302 free(comment);
2303 comment = strdup(args[cur_arg]);
2304 if (!comment) {
2305 memprintf(errmsg, "out of memory");
2306 goto error;
2307 }
2308 }
2309 else if (strcmp(args[cur_arg], "send-proxy") == 0)
2310 conn_opts |= TCPCHK_OPT_SEND_PROXY;
2311 else if (strcmp(args[cur_arg], "via-socks4") == 0)
2312 conn_opts |= TCPCHK_OPT_SOCKS4;
2313 else if (strcmp(args[cur_arg], "linger") == 0)
2314 conn_opts |= TCPCHK_OPT_LINGER;
2315#ifdef USE_OPENSSL
2316 else if (strcmp(args[cur_arg], "ssl") == 0) {
2317 px->options |= PR_O_TCPCHK_SSL;
2318 conn_opts |= TCPCHK_OPT_SSL;
2319 }
2320 else if (strcmp(args[cur_arg], "sni") == 0) {
2321 if (!*(args[cur_arg+1])) {
2322 memprintf(errmsg, "'%s' expects a string as argument.", args[cur_arg]);
2323 goto error;
2324 }
2325 cur_arg++;
2326 free(sni);
2327 sni = strdup(args[cur_arg]);
2328 if (!sni) {
2329 memprintf(errmsg, "out of memory");
2330 goto error;
2331 }
2332 }
2333 else if (strcmp(args[cur_arg], "alpn") == 0) {
2334#ifdef TLSEXT_TYPE_application_layer_protocol_negotiation
2335 free(alpn);
2336 if (ssl_sock_parse_alpn(args[cur_arg + 1], &alpn, &alpn_len, errmsg)) {
2337 memprintf(errmsg, "'%s' : %s", args[cur_arg], *errmsg);
2338 goto error;
2339 }
2340 cur_arg++;
2341#else
2342 memprintf(errmsg, "'%s' : library does not support TLS ALPN extension.", args[cur_arg]);
2343 goto error;
2344#endif
2345 }
2346#endif /* USE_OPENSSL */
2347
2348 else {
2349 memprintf(errmsg, "expects 'comment', 'port', 'addr', 'send-proxy'"
2350#ifdef USE_OPENSSL
2351 ", 'ssl', 'sni', 'alpn'"
2352#endif /* USE_OPENSSL */
2353 " or 'via-socks4', 'linger', 'default' but got '%s' as argument.",
2354 args[cur_arg]);
2355 goto error;
2356 }
2357 cur_arg++;
2358 }
2359
2360 chk = calloc(1, sizeof(*chk));
2361 if (!chk) {
2362 memprintf(errmsg, "out of memory");
2363 goto error;
2364 }
2365 chk->action = TCPCHK_ACT_CONNECT;
2366 chk->comment = comment;
2367 chk->connect.port = port;
2368 chk->connect.options = conn_opts;
2369 chk->connect.sni = sni;
2370 chk->connect.alpn = alpn;
2371 chk->connect.alpn_len= alpn_len;
2372 chk->connect.port_expr= port_expr;
2373 chk->connect.mux_proto= mux_proto;
2374 if (sk)
2375 chk->connect.addr = *sk;
2376 return chk;
2377
2378 error:
2379 free(alpn);
2380 free(sni);
2381 free(comment);
2382 release_sample_expr(port_expr);
2383 return NULL;
2384}
2385
2386/* Parses and creates a tcp-check send rule. NULL is returned on error */
2387struct tcpcheck_rule *parse_tcpcheck_send(char **args, int cur_arg, struct proxy *px, struct list *rules,
2388 const char *file, int line, char **errmsg)
2389{
2390 struct tcpcheck_rule *chk = NULL;
2391 char *comment = NULL, *data = NULL;
2392 enum tcpcheck_send_type type = TCPCHK_SEND_UNDEF;
2393
2394 if (strcmp(args[cur_arg], "send-binary-lf") == 0)
2395 type = TCPCHK_SEND_BINARY_LF;
2396 else if (strcmp(args[cur_arg], "send-binary") == 0)
2397 type = TCPCHK_SEND_BINARY;
2398 else if (strcmp(args[cur_arg], "send-lf") == 0)
2399 type = TCPCHK_SEND_STRING_LF;
2400 else if (strcmp(args[cur_arg], "send") == 0)
2401 type = TCPCHK_SEND_STRING;
2402
2403 if (!*(args[cur_arg+1])) {
2404 memprintf(errmsg, "'%s' expects a %s as argument",
2405 (type == TCPCHK_SEND_BINARY ? "binary string": "string"), args[cur_arg]);
2406 goto error;
2407 }
2408
2409 data = args[cur_arg+1];
2410
2411 cur_arg += 2;
2412 while (*(args[cur_arg])) {
2413 if (strcmp(args[cur_arg], "comment") == 0) {
2414 if (!*(args[cur_arg+1])) {
2415 memprintf(errmsg, "'%s' expects a string as argument.", args[cur_arg]);
2416 goto error;
2417 }
2418 cur_arg++;
2419 free(comment);
2420 comment = strdup(args[cur_arg]);
2421 if (!comment) {
2422 memprintf(errmsg, "out of memory");
2423 goto error;
2424 }
2425 }
2426 else {
2427 memprintf(errmsg, "expects 'comment' but got '%s' as argument.",
2428 args[cur_arg]);
2429 goto error;
2430 }
2431 cur_arg++;
2432 }
2433
2434 chk = calloc(1, sizeof(*chk));
2435 if (!chk) {
2436 memprintf(errmsg, "out of memory");
2437 goto error;
2438 }
2439 chk->action = TCPCHK_ACT_SEND;
2440 chk->comment = comment;
2441 chk->send.type = type;
2442
2443 switch (chk->send.type) {
2444 case TCPCHK_SEND_STRING:
2445 chk->send.data = ist2(strdup(data), strlen(data));
2446 if (!isttest(chk->send.data)) {
2447 memprintf(errmsg, "out of memory");
2448 goto error;
2449 }
2450 break;
2451 case TCPCHK_SEND_BINARY: {
2452 int len = chk->send.data.len;
2453 if (parse_binary(data, &chk->send.data.ptr, &len, errmsg) == 0) {
2454 memprintf(errmsg, "'%s' invalid binary string (%s).\n", data, *errmsg);
2455 goto error;
2456 }
2457 chk->send.data.len = len;
2458 break;
2459 }
2460 case TCPCHK_SEND_STRING_LF:
2461 case TCPCHK_SEND_BINARY_LF:
2462 LIST_INIT(&chk->send.fmt);
2463 px->conf.args.ctx = ARGC_SRV;
2464 if (!parse_logformat_string(data, px, &chk->send.fmt, 0, SMP_VAL_BE_CHK_RUL, errmsg)) {
2465 memprintf(errmsg, "'%s' invalid log-format string (%s).\n", data, *errmsg);
2466 goto error;
2467 }
2468 break;
2469 case TCPCHK_SEND_HTTP:
2470 case TCPCHK_SEND_UNDEF:
2471 goto error;
2472 }
2473
2474 return chk;
2475
2476 error:
2477 free(chk);
2478 free(comment);
2479 return NULL;
2480}
2481
2482/* Parses and creates a http-check send rule. NULL is returned on error */
2483struct tcpcheck_rule *parse_tcpcheck_send_http(char **args, int cur_arg, struct proxy *px, struct list *rules,
2484 const char *file, int line, char **errmsg)
2485{
2486 struct tcpcheck_rule *chk = NULL;
2487 struct tcpcheck_http_hdr *hdr = NULL;
2488 struct http_hdr hdrs[global.tune.max_http_hdr];
2489 char *meth = NULL, *uri = NULL, *vsn = NULL;
2490 char *body = NULL, *comment = NULL;
2491 unsigned int flags = 0;
2492 int i = 0, host_hdr = -1;
2493
2494 cur_arg++;
2495 while (*(args[cur_arg])) {
2496 if (strcmp(args[cur_arg], "meth") == 0) {
2497 if (!*(args[cur_arg+1])) {
2498 memprintf(errmsg, "'%s' expects a string as argument.", args[cur_arg]);
2499 goto error;
2500 }
2501 cur_arg++;
2502 meth = args[cur_arg];
2503 }
2504 else if (strcmp(args[cur_arg], "uri") == 0 || strcmp(args[cur_arg], "uri-lf") == 0) {
2505 if (!*(args[cur_arg+1])) {
2506 memprintf(errmsg, "'%s' expects a string as argument.", args[cur_arg]);
2507 goto error;
2508 }
2509 flags &= ~TCPCHK_SND_HTTP_FL_URI_FMT;
2510 if (strcmp(args[cur_arg], "uri-lf") == 0)
2511 flags |= TCPCHK_SND_HTTP_FL_URI_FMT;
2512 cur_arg++;
2513 uri = args[cur_arg];
2514 }
2515 else if (strcmp(args[cur_arg], "ver") == 0) {
2516 if (!*(args[cur_arg+1])) {
2517 memprintf(errmsg, "'%s' expects a string as argument.", args[cur_arg]);
2518 goto error;
2519 }
2520 cur_arg++;
2521 vsn = args[cur_arg];
2522 }
2523 else if (strcmp(args[cur_arg], "hdr") == 0) {
2524 if (!*args[cur_arg+1] || !*args[cur_arg+2]) {
2525 memprintf(errmsg, "'%s' expects <name> and <value> as arguments", args[cur_arg]);
2526 goto error;
2527 }
2528
2529 if (strcasecmp(args[cur_arg+1], "host") == 0) {
2530 if (host_hdr >= 0) {
2531 memprintf(errmsg, "'%s' header already defined (previous value is '%s')",
2532 args[cur_arg+1], istptr(hdrs[host_hdr].v));
2533 goto error;
2534 }
2535 host_hdr = i;
2536 }
2537 else if (strcasecmp(args[cur_arg+1], "connection") == 0 ||
2538 strcasecmp(args[cur_arg+1], "content-length") == 0 ||
2539 strcasecmp(args[cur_arg+1], "transfer-encoding") == 0)
2540 goto skip_hdr;
2541
2542 hdrs[i].n = ist2(args[cur_arg+1], strlen(args[cur_arg+1]));
2543 hdrs[i].v = ist2(args[cur_arg+2], strlen(args[cur_arg+2]));
2544 i++;
2545 skip_hdr:
2546 cur_arg += 2;
2547 }
2548 else if (strcmp(args[cur_arg], "body") == 0 || strcmp(args[cur_arg], "body-lf") == 0) {
2549 if (!*(args[cur_arg+1])) {
2550 memprintf(errmsg, "'%s' expects a string as argument.", args[cur_arg]);
2551 goto error;
2552 }
2553 flags &= ~TCPCHK_SND_HTTP_FL_BODY_FMT;
2554 if (strcmp(args[cur_arg], "body-lf") == 0)
2555 flags |= TCPCHK_SND_HTTP_FL_BODY_FMT;
2556 cur_arg++;
2557 body = args[cur_arg];
2558 }
2559 else if (strcmp(args[cur_arg], "comment") == 0) {
2560 if (!*(args[cur_arg+1])) {
2561 memprintf(errmsg, "'%s' expects a string as argument.", args[cur_arg]);
2562 goto error;
2563 }
2564 cur_arg++;
2565 free(comment);
2566 comment = strdup(args[cur_arg]);
2567 if (!comment) {
2568 memprintf(errmsg, "out of memory");
2569 goto error;
2570 }
2571 }
2572 else {
2573 memprintf(errmsg, "expects 'comment', 'meth', 'uri', 'uri-lf', 'ver', 'hdr', 'body' or 'body-lf'"
2574 " but got '%s' as argument.", args[cur_arg]);
2575 goto error;
2576 }
2577 cur_arg++;
2578 }
2579
2580 hdrs[i].n = hdrs[i].v = IST_NULL;
2581
2582 chk = calloc(1, sizeof(*chk));
2583 if (!chk) {
2584 memprintf(errmsg, "out of memory");
2585 goto error;
2586 }
2587 chk->action = TCPCHK_ACT_SEND;
2588 chk->comment = comment; comment = NULL;
2589 chk->send.type = TCPCHK_SEND_HTTP;
2590 chk->send.http.flags = flags;
2591 LIST_INIT(&chk->send.http.hdrs);
2592
2593 if (meth) {
2594 chk->send.http.meth.meth = find_http_meth(meth, strlen(meth));
2595 chk->send.http.meth.str.area = strdup(meth);
2596 chk->send.http.meth.str.data = strlen(meth);
2597 if (!chk->send.http.meth.str.area) {
2598 memprintf(errmsg, "out of memory");
2599 goto error;
2600 }
2601 }
2602 if (uri) {
2603 if (chk->send.http.flags & TCPCHK_SND_HTTP_FL_URI_FMT) {
2604 LIST_INIT(&chk->send.http.uri_fmt);
2605 px->conf.args.ctx = ARGC_SRV;
2606 if (!parse_logformat_string(uri, px, &chk->send.http.uri_fmt, 0, SMP_VAL_BE_CHK_RUL, errmsg)) {
2607 memprintf(errmsg, "'%s' invalid log-format string (%s).\n", uri, *errmsg);
2608 goto error;
2609 }
2610 }
2611 else {
2612 chk->send.http.uri = ist2(strdup(uri), strlen(uri));
2613 if (!isttest(chk->send.http.uri)) {
2614 memprintf(errmsg, "out of memory");
2615 goto error;
2616 }
2617 }
2618 }
2619 if (vsn) {
2620 chk->send.http.vsn = ist2(strdup(vsn), strlen(vsn));
2621 if (!isttest(chk->send.http.vsn)) {
2622 memprintf(errmsg, "out of memory");
2623 goto error;
2624 }
2625 }
2626 for (i = 0; istlen(hdrs[i].n); i++) {
2627 hdr = calloc(1, sizeof(*hdr));
2628 if (!hdr) {
2629 memprintf(errmsg, "out of memory");
2630 goto error;
2631 }
2632 LIST_INIT(&hdr->value);
2633 hdr->name = istdup(hdrs[i].n);
2634 if (!isttest(hdr->name)) {
2635 memprintf(errmsg, "out of memory");
2636 goto error;
2637 }
2638
2639 ist0(hdrs[i].v);
2640 if (!parse_logformat_string(istptr(hdrs[i].v), px, &hdr->value, 0, SMP_VAL_BE_CHK_RUL, errmsg))
2641 goto error;
2642 LIST_ADDQ(&chk->send.http.hdrs, &hdr->list);
2643 hdr = NULL;
2644 }
2645
2646 if (body) {
2647 if (chk->send.http.flags & TCPCHK_SND_HTTP_FL_BODY_FMT) {
2648 LIST_INIT(&chk->send.http.body_fmt);
2649 px->conf.args.ctx = ARGC_SRV;
2650 if (!parse_logformat_string(body, px, &chk->send.http.body_fmt, 0, SMP_VAL_BE_CHK_RUL, errmsg)) {
2651 memprintf(errmsg, "'%s' invalid log-format string (%s).\n", body, *errmsg);
2652 goto error;
2653 }
2654 }
2655 else {
2656 chk->send.http.body = ist2(strdup(body), strlen(body));
2657 if (!isttest(chk->send.http.body)) {
2658 memprintf(errmsg, "out of memory");
2659 goto error;
2660 }
2661 }
2662 }
2663
2664 return chk;
2665
2666 error:
2667 free_tcpcheck_http_hdr(hdr);
2668 free_tcpcheck(chk, 0);
2669 free(comment);
2670 return NULL;
2671}
2672
2673/* Parses and creates a http-check comment rule. NULL is returned on error */
2674struct tcpcheck_rule *parse_tcpcheck_comment(char **args, int cur_arg, struct proxy *px, struct list *rules,
2675 const char *file, int line, char **errmsg)
2676{
2677 struct tcpcheck_rule *chk = NULL;
2678 char *comment = NULL;
2679
2680 if (!*(args[cur_arg+1])) {
2681 memprintf(errmsg, "expects a string as argument");
2682 goto error;
2683 }
2684 cur_arg++;
2685 comment = strdup(args[cur_arg]);
2686 if (!comment) {
2687 memprintf(errmsg, "out of memory");
2688 goto error;
2689 }
2690
2691 chk = calloc(1, sizeof(*chk));
2692 if (!chk) {
2693 memprintf(errmsg, "out of memory");
2694 goto error;
2695 }
2696 chk->action = TCPCHK_ACT_COMMENT;
2697 chk->comment = comment;
2698 return chk;
2699
2700 error:
2701 free(comment);
2702 return NULL;
2703}
2704
2705/* Parses and creates a tcp-check or an http-check expect rule. NULL is returned
2706 * on error. <proto> is set to the right protocol flags (covered by the
2707 * TCPCHK_RULES_PROTO_CHK mask).
2708 */
2709struct tcpcheck_rule *parse_tcpcheck_expect(char **args, int cur_arg, struct proxy *px,
2710 struct list *rules, unsigned int proto,
2711 const char *file, int line, char **errmsg)
2712{
2713 struct tcpcheck_rule *prev_check, *chk = NULL;
2714 struct sample_expr *status_expr = NULL;
2715 char *on_success_msg, *on_error_msg, *comment, *pattern, *npat, *vpat;
2716 enum tcpcheck_expect_type type = TCPCHK_EXPECT_UNDEF;
2717 enum healthcheck_status ok_st = HCHK_STATUS_UNKNOWN;
2718 enum healthcheck_status err_st = HCHK_STATUS_UNKNOWN;
2719 enum healthcheck_status tout_st = HCHK_STATUS_UNKNOWN;
2720 unsigned int flags = 0;
2721 long min_recv = -1;
2722 int inverse = 0;
2723
2724 on_success_msg = on_error_msg = comment = pattern = npat = vpat = NULL;
2725 if (!*(args[cur_arg+1])) {
2726 memprintf(errmsg, "expects at least a matching pattern as arguments");
2727 goto error;
2728 }
2729
2730 cur_arg++;
2731 while (*(args[cur_arg])) {
2732 int in_pattern = 0;
2733
2734 rescan:
2735 if (strcmp(args[cur_arg], "min-recv") == 0) {
2736 if (in_pattern) {
2737 memprintf(errmsg, "[!] not supported with '%s'", args[cur_arg]);
2738 goto error;
2739 }
2740 if (!*(args[cur_arg+1])) {
2741 memprintf(errmsg, "'%s' expects a integer as argument", args[cur_arg]);
2742 goto error;
2743 }
2744 /* Use an signed integer here because of chksize */
2745 cur_arg++;
2746 min_recv = atol(args[cur_arg]);
2747 if (min_recv < -1 || min_recv > INT_MAX) {
2748 memprintf(errmsg, "'%s' expects -1 or an integer from 0 to INT_MAX" , args[cur_arg-1]);
2749 goto error;
2750 }
2751 }
2752 else if (*(args[cur_arg]) == '!') {
2753 in_pattern = 1;
2754 while (*(args[cur_arg]) == '!') {
2755 inverse = !inverse;
2756 args[cur_arg]++;
2757 }
2758 if (!*(args[cur_arg]))
2759 cur_arg++;
2760 goto rescan;
2761 }
2762 else if (strcmp(args[cur_arg], "string") == 0 || strcmp(args[cur_arg], "rstring") == 0) {
2763 if (type != TCPCHK_EXPECT_UNDEF) {
2764 memprintf(errmsg, "only on pattern expected");
2765 goto error;
2766 }
2767 if (proto != TCPCHK_RULES_HTTP_CHK)
2768 type = ((*(args[cur_arg]) == 's') ? TCPCHK_EXPECT_STRING : TCPCHK_EXPECT_STRING_REGEX);
2769 else
2770 type = ((*(args[cur_arg]) == 's') ? TCPCHK_EXPECT_HTTP_BODY : TCPCHK_EXPECT_HTTP_BODY_REGEX);
2771
2772 if (!*(args[cur_arg+1])) {
2773 memprintf(errmsg, "'%s' expects a <pattern> as argument", args[cur_arg]);
2774 goto error;
2775 }
2776 cur_arg++;
2777 pattern = args[cur_arg];
2778 }
2779 else if (strcmp(args[cur_arg], "binary") == 0 || strcmp(args[cur_arg], "rbinary") == 0) {
2780 if (proto == TCPCHK_RULES_HTTP_CHK)
2781 goto bad_http_kw;
2782 if (type != TCPCHK_EXPECT_UNDEF) {
2783 memprintf(errmsg, "only on pattern expected");
2784 goto error;
2785 }
2786 type = ((*(args[cur_arg]) == 'b') ? TCPCHK_EXPECT_BINARY : TCPCHK_EXPECT_BINARY_REGEX);
2787
2788 if (!*(args[cur_arg+1])) {
2789 memprintf(errmsg, "'%s' expects a <pattern> as argument", args[cur_arg]);
2790 goto error;
2791 }
2792 cur_arg++;
2793 pattern = args[cur_arg];
2794 }
2795 else if (strcmp(args[cur_arg], "string-lf") == 0 || strcmp(args[cur_arg], "binary-lf") == 0) {
2796 if (type != TCPCHK_EXPECT_UNDEF) {
2797 memprintf(errmsg, "only on pattern expected");
2798 goto error;
2799 }
2800 if (proto != TCPCHK_RULES_HTTP_CHK)
2801 type = ((*(args[cur_arg]) == 's') ? TCPCHK_EXPECT_STRING_LF : TCPCHK_EXPECT_BINARY_LF);
2802 else {
2803 if (*(args[cur_arg]) != 's')
2804 goto bad_http_kw;
2805 type = TCPCHK_EXPECT_HTTP_BODY_LF;
2806 }
2807
2808 if (!*(args[cur_arg+1])) {
2809 memprintf(errmsg, "'%s' expects a <pattern> as argument", args[cur_arg]);
2810 goto error;
2811 }
2812 cur_arg++;
2813 pattern = args[cur_arg];
2814 }
2815 else if (strcmp(args[cur_arg], "status") == 0 || strcmp(args[cur_arg], "rstatus") == 0) {
2816 if (proto != TCPCHK_RULES_HTTP_CHK)
2817 goto bad_tcp_kw;
2818 if (type != TCPCHK_EXPECT_UNDEF) {
2819 memprintf(errmsg, "only on pattern expected");
2820 goto error;
2821 }
2822 type = ((*(args[cur_arg]) == 's') ? TCPCHK_EXPECT_HTTP_STATUS : TCPCHK_EXPECT_HTTP_STATUS_REGEX);
2823
2824 if (!*(args[cur_arg+1])) {
2825 memprintf(errmsg, "'%s' expects a <pattern> as argument", args[cur_arg]);
2826 goto error;
2827 }
2828 cur_arg++;
2829 pattern = args[cur_arg];
2830 }
2831 else if (strcmp(args[cur_arg], "custom") == 0) {
2832 if (in_pattern) {
2833 memprintf(errmsg, "[!] not supported with '%s'", args[cur_arg]);
2834 goto error;
2835 }
2836 if (type != TCPCHK_EXPECT_UNDEF) {
2837 memprintf(errmsg, "only on pattern expected");
2838 goto error;
2839 }
2840 type = TCPCHK_EXPECT_CUSTOM;
2841 }
2842 else if (strcmp(args[cur_arg], "hdr") == 0 || strcmp(args[cur_arg], "fhdr") == 0) {
2843 int orig_arg = cur_arg;
2844
2845 if (proto != TCPCHK_RULES_HTTP_CHK)
2846 goto bad_tcp_kw;
2847 if (type != TCPCHK_EXPECT_UNDEF) {
2848 memprintf(errmsg, "only on pattern expected");
2849 goto error;
2850 }
2851 type = TCPCHK_EXPECT_HTTP_HEADER;
2852
2853 if (strcmp(args[cur_arg], "fhdr") == 0)
2854 flags |= TCPCHK_EXPT_FL_HTTP_HVAL_FULL;
2855
2856 /* Parse the name pattern, mandatory */
2857 if (!*(args[cur_arg+1]) || !*(args[cur_arg+2]) ||
2858 (strcmp(args[cur_arg+1], "name") != 0 && strcmp(args[cur_arg+1], "name-lf") != 0)) {
2859 memprintf(errmsg, "'%s' expects at the name keyword as first argument followed by a pattern",
2860 args[orig_arg]);
2861 goto error;
2862 }
2863
2864 if (strcmp(args[cur_arg+1], "name-lf") == 0)
2865 flags |= TCPCHK_EXPT_FL_HTTP_HNAME_FMT;
2866
2867 cur_arg += 2;
2868 if (strcmp(args[cur_arg], "-m") == 0) {
2869 if (!*(args[cur_arg+1])) {
2870 memprintf(errmsg, "'%s' : '%s' expects at a matching pattern ('str', 'beg', 'end', 'sub' or 'reg')",
2871 args[orig_arg], args[cur_arg]);
2872 goto error;
2873 }
2874 if (strcmp(args[cur_arg+1], "str") == 0)
2875 flags |= TCPCHK_EXPT_FL_HTTP_HNAME_STR;
2876 else if (strcmp(args[cur_arg+1], "beg") == 0)
2877 flags |= TCPCHK_EXPT_FL_HTTP_HNAME_BEG;
2878 else if (strcmp(args[cur_arg+1], "end") == 0)
2879 flags |= TCPCHK_EXPT_FL_HTTP_HNAME_END;
2880 else if (strcmp(args[cur_arg+1], "sub") == 0)
2881 flags |= TCPCHK_EXPT_FL_HTTP_HNAME_SUB;
2882 else if (strcmp(args[cur_arg+1], "reg") == 0) {
2883 if (flags & TCPCHK_EXPT_FL_HTTP_HNAME_FMT) {
2884 memprintf(errmsg, "'%s': log-format string is not supported with a regex matching method",
2885 args[orig_arg]);
2886 goto error;
2887 }
2888 flags |= TCPCHK_EXPT_FL_HTTP_HNAME_REG;
2889 }
2890 else {
2891 memprintf(errmsg, "'%s' : '%s' only supports 'str', 'beg', 'end', 'sub' or 'reg' (got '%s')",
2892 args[orig_arg], args[cur_arg], args[cur_arg+1]);
2893 goto error;
2894 }
2895 cur_arg += 2;
2896 }
2897 else
2898 flags |= TCPCHK_EXPT_FL_HTTP_HNAME_STR;
2899 npat = args[cur_arg];
2900
2901 if (!*(args[cur_arg+1]) ||
2902 (strcmp(args[cur_arg+1], "value") != 0 && strcmp(args[cur_arg+1], "value-lf") != 0)) {
2903 flags |= TCPCHK_EXPT_FL_HTTP_HVAL_NONE;
2904 goto next;
2905 }
2906 if (strcmp(args[cur_arg+1], "value-lf") == 0)
2907 flags |= TCPCHK_EXPT_FL_HTTP_HVAL_FMT;
2908
2909 /* Parse the value pattern, optional */
2910 if (strcmp(args[cur_arg+2], "-m") == 0) {
2911 cur_arg += 2;
2912 if (!*(args[cur_arg+1])) {
2913 memprintf(errmsg, "'%s' : '%s' expects at a matching pattern ('str', 'beg', 'end', 'sub' or 'reg')",
2914 args[orig_arg], args[cur_arg]);
2915 goto error;
2916 }
2917 if (strcmp(args[cur_arg+1], "str") == 0)
2918 flags |= TCPCHK_EXPT_FL_HTTP_HVAL_STR;
2919 else if (strcmp(args[cur_arg+1], "beg") == 0)
2920 flags |= TCPCHK_EXPT_FL_HTTP_HVAL_BEG;
2921 else if (strcmp(args[cur_arg+1], "end") == 0)
2922 flags |= TCPCHK_EXPT_FL_HTTP_HVAL_END;
2923 else if (strcmp(args[cur_arg+1], "sub") == 0)
2924 flags |= TCPCHK_EXPT_FL_HTTP_HVAL_SUB;
2925 else if (strcmp(args[cur_arg+1], "reg") == 0) {
2926 if (flags & TCPCHK_EXPT_FL_HTTP_HVAL_FMT) {
2927 memprintf(errmsg, "'%s': log-format string is not supported with a regex matching method",
2928 args[orig_arg]);
2929 goto error;
2930 }
2931 flags |= TCPCHK_EXPT_FL_HTTP_HVAL_REG;
2932 }
2933 else {
2934 memprintf(errmsg, "'%s' : '%s' only supports 'str', 'beg', 'end', 'sub' or 'reg' (got '%s')",
2935 args[orig_arg], args[cur_arg], args[cur_arg+1]);
2936 goto error;
2937 }
2938 }
2939 else
2940 flags |= TCPCHK_EXPT_FL_HTTP_HVAL_STR;
2941
2942 if (!*(args[cur_arg+2])) {
2943 memprintf(errmsg, "'%s' expect a pattern with the value keyword", args[orig_arg]);
2944 goto error;
2945 }
2946 vpat = args[cur_arg+2];
2947 cur_arg += 2;
2948 }
2949 else if (strcmp(args[cur_arg], "comment") == 0) {
2950 if (in_pattern) {
2951 memprintf(errmsg, "[!] not supported with '%s'", args[cur_arg]);
2952 goto error;
2953 }
2954 if (!*(args[cur_arg+1])) {
2955 memprintf(errmsg, "'%s' expects a string as argument", args[cur_arg]);
2956 goto error;
2957 }
2958 cur_arg++;
2959 free(comment);
2960 comment = strdup(args[cur_arg]);
2961 if (!comment) {
2962 memprintf(errmsg, "out of memory");
2963 goto error;
2964 }
2965 }
2966 else if (strcmp(args[cur_arg], "on-success") == 0) {
2967 if (in_pattern) {
2968 memprintf(errmsg, "[!] not supported with '%s'", args[cur_arg]);
2969 goto error;
2970 }
2971 if (!*(args[cur_arg+1])) {
2972 memprintf(errmsg, "'%s' expects a string as argument", args[cur_arg]);
2973 goto error;
2974 }
2975 cur_arg++;
2976 on_success_msg = args[cur_arg];
2977 }
2978 else if (strcmp(args[cur_arg], "on-error") == 0) {
2979 if (in_pattern) {
2980 memprintf(errmsg, "[!] not supported with '%s'", args[cur_arg]);
2981 goto error;
2982 }
2983 if (!*(args[cur_arg+1])) {
2984 memprintf(errmsg, "'%s' expects a string as argument", args[cur_arg]);
2985 goto error;
2986 }
2987 cur_arg++;
2988 on_error_msg = args[cur_arg];
2989 }
2990 else if (strcmp(args[cur_arg], "ok-status") == 0) {
2991 if (in_pattern) {
2992 memprintf(errmsg, "[!] not supported with '%s'", args[cur_arg]);
2993 goto error;
2994 }
2995 if (!*(args[cur_arg+1])) {
2996 memprintf(errmsg, "'%s' expects a string as argument", args[cur_arg]);
2997 goto error;
2998 }
2999 if (strcasecmp(args[cur_arg+1], "L7OK") == 0)
3000 ok_st = HCHK_STATUS_L7OKD;
3001 else if (strcasecmp(args[cur_arg+1], "L7OKC") == 0)
3002 ok_st = HCHK_STATUS_L7OKCD;
3003 else if (strcasecmp(args[cur_arg+1], "L6OK") == 0)
3004 ok_st = HCHK_STATUS_L6OK;
3005 else if (strcasecmp(args[cur_arg+1], "L4OK") == 0)
3006 ok_st = HCHK_STATUS_L4OK;
3007 else {
3008 memprintf(errmsg, "'%s' only supports 'L4OK', 'L6OK', 'L7OK' or 'L7OKC' status (got '%s').",
3009 args[cur_arg], args[cur_arg+1]);
3010 goto error;
3011 }
3012 cur_arg++;
3013 }
3014 else if (strcmp(args[cur_arg], "error-status") == 0) {
3015 if (in_pattern) {
3016 memprintf(errmsg, "[!] not supported with '%s'", args[cur_arg]);
3017 goto error;
3018 }
3019 if (!*(args[cur_arg+1])) {
3020 memprintf(errmsg, "'%s' expects a string as argument", args[cur_arg]);
3021 goto error;
3022 }
3023 if (strcasecmp(args[cur_arg+1], "L7RSP") == 0)
3024 err_st = HCHK_STATUS_L7RSP;
3025 else if (strcasecmp(args[cur_arg+1], "L7STS") == 0)
3026 err_st = HCHK_STATUS_L7STS;
3027 else if (strcasecmp(args[cur_arg+1], "L6RSP") == 0)
3028 err_st = HCHK_STATUS_L6RSP;
3029 else if (strcasecmp(args[cur_arg+1], "L4CON") == 0)
3030 err_st = HCHK_STATUS_L4CON;
3031 else {
3032 memprintf(errmsg, "'%s' only supports 'L4CON', 'L6RSP', 'L7RSP' or 'L7STS' status (got '%s').",
3033 args[cur_arg], args[cur_arg+1]);
3034 goto error;
3035 }
3036 cur_arg++;
3037 }
3038 else if (strcmp(args[cur_arg], "status-code") == 0) {
3039 int idx = 0;
3040
3041 if (in_pattern) {
3042 memprintf(errmsg, "[!] not supported with '%s'", args[cur_arg]);
3043 goto error;
3044 }
3045 if (!*(args[cur_arg+1])) {
3046 memprintf(errmsg, "'%s' expects an expression as argument", args[cur_arg]);
3047 goto error;
3048 }
3049
3050 cur_arg++;
3051 release_sample_expr(status_expr);
3052 px->conf.args.ctx = ARGC_SRV;
3053 status_expr = sample_parse_expr((char *[]){args[cur_arg], NULL}, &idx,
3054 file, line, errmsg, &px->conf.args, NULL);
3055 if (!status_expr) {
3056 memprintf(errmsg, "error detected while parsing status-code expression : %s", *errmsg);
3057 goto error;
3058 }
3059 if (!(status_expr->fetch->val & SMP_VAL_BE_CHK_RUL)) {
3060 memprintf(errmsg, "error detected while parsing status-code expression : "
3061 " fetch method '%s' extracts information from '%s', "
3062 "none of which is available here.\n",
3063 args[cur_arg], sample_src_names(status_expr->fetch->use));
3064 goto error;
3065 }
3066 px->http_needed |= !!(status_expr->fetch->use & SMP_USE_HTTP_ANY);
3067 }
3068 else if (strcmp(args[cur_arg], "tout-status") == 0) {
3069 if (in_pattern) {
3070 memprintf(errmsg, "[!] not supported with '%s'", args[cur_arg]);
3071 goto error;
3072 }
3073 if (!*(args[cur_arg+1])) {
3074 memprintf(errmsg, "'%s' expects a string as argument", args[cur_arg]);
3075 goto error;
3076 }
3077 if (strcasecmp(args[cur_arg+1], "L7TOUT") == 0)
3078 tout_st = HCHK_STATUS_L7TOUT;
3079 else if (strcasecmp(args[cur_arg+1], "L6TOUT") == 0)
3080 tout_st = HCHK_STATUS_L6TOUT;
3081 else if (strcasecmp(args[cur_arg+1], "L4TOUT") == 0)
3082 tout_st = HCHK_STATUS_L4TOUT;
3083 else {
3084 memprintf(errmsg, "'%s' only supports 'L4TOUT', 'L6TOUT' or 'L7TOUT' status (got '%s').",
3085 args[cur_arg], args[cur_arg+1]);
3086 goto error;
3087 }
3088 cur_arg++;
3089 }
3090 else {
3091 if (proto == TCPCHK_RULES_HTTP_CHK) {
3092 bad_http_kw:
3093 memprintf(errmsg, "'only supports min-recv, [!]string', '[!]rstring', '[!]string-lf', '[!]status', "
3094 "'[!]rstatus', [!]hdr, [!]fhdr or comment but got '%s' as argument.", args[cur_arg]);
3095 }
3096 else {
3097 bad_tcp_kw:
3098 memprintf(errmsg, "'only supports min-recv, '[!]binary', '[!]string', '[!]rstring', '[!]string-lf'"
3099 "'[!]rbinary', '[!]binary-lf' or comment but got '%s' as argument.", args[cur_arg]);
3100 }
3101 goto error;
3102 }
3103 next:
3104 cur_arg++;
3105 }
3106
3107 chk = calloc(1, sizeof(*chk));
3108 if (!chk) {
3109 memprintf(errmsg, "out of memory");
3110 goto error;
3111 }
3112 chk->action = TCPCHK_ACT_EXPECT;
3113 LIST_INIT(&chk->expect.onerror_fmt);
3114 LIST_INIT(&chk->expect.onsuccess_fmt);
3115 chk->comment = comment; comment = NULL;
3116 chk->expect.type = type;
3117 chk->expect.min_recv = min_recv;
3118 chk->expect.flags = flags | (inverse ? TCPCHK_EXPT_FL_INV : 0);
3119 chk->expect.ok_status = ok_st;
3120 chk->expect.err_status = err_st;
3121 chk->expect.tout_status = tout_st;
3122 chk->expect.status_expr = status_expr; status_expr = NULL;
3123
3124 if (on_success_msg) {
3125 px->conf.args.ctx = ARGC_SRV;
3126 if (!parse_logformat_string(on_success_msg, px, &chk->expect.onsuccess_fmt, 0, SMP_VAL_BE_CHK_RUL, errmsg)) {
3127 memprintf(errmsg, "'%s' invalid log-format string (%s).\n", on_success_msg, *errmsg);
3128 goto error;
3129 }
3130 }
3131 if (on_error_msg) {
3132 px->conf.args.ctx = ARGC_SRV;
3133 if (!parse_logformat_string(on_error_msg, px, &chk->expect.onerror_fmt, 0, SMP_VAL_BE_CHK_RUL, errmsg)) {
3134 memprintf(errmsg, "'%s' invalid log-format string (%s).\n", on_error_msg, *errmsg);
3135 goto error;
3136 }
3137 }
3138
3139 switch (chk->expect.type) {
3140 case TCPCHK_EXPECT_HTTP_STATUS: {
3141 const char *p = pattern;
3142 unsigned int c1,c2;
3143
3144 chk->expect.codes.codes = NULL;
3145 chk->expect.codes.num = 0;
3146 while (1) {
3147 c1 = c2 = read_uint(&p, pattern + strlen(pattern));
3148 if (*p == '-') {
3149 p++;
3150 c2 = read_uint(&p, pattern + strlen(pattern));
3151 }
3152 if (c1 > c2) {
3153 memprintf(errmsg, "invalid range of status codes '%s'", pattern);
3154 goto error;
3155 }
3156
3157 chk->expect.codes.num++;
3158 chk->expect.codes.codes = my_realloc2(chk->expect.codes.codes,
3159 chk->expect.codes.num * sizeof(*chk->expect.codes.codes));
3160 if (!chk->expect.codes.codes) {
3161 memprintf(errmsg, "out of memory");
3162 goto error;
3163 }
3164 chk->expect.codes.codes[chk->expect.codes.num-1][0] = c1;
3165 chk->expect.codes.codes[chk->expect.codes.num-1][1] = c2;
3166
3167 if (*p == '\0')
3168 break;
3169 if (*p != ',') {
3170 memprintf(errmsg, "invalid character '%c' in the list of status codes", *p);
3171 goto error;
3172 }
3173 p++;
3174 }
3175 break;
3176 }
3177 case TCPCHK_EXPECT_STRING:
3178 case TCPCHK_EXPECT_HTTP_BODY:
3179 chk->expect.data = ist2(strdup(pattern), strlen(pattern));
3180 if (!isttest(chk->expect.data)) {
3181 memprintf(errmsg, "out of memory");
3182 goto error;
3183 }
3184 break;
3185 case TCPCHK_EXPECT_BINARY: {
3186 int len = chk->expect.data.len;
3187
3188 if (parse_binary(pattern, &chk->expect.data.ptr, &len, errmsg) == 0) {
3189 memprintf(errmsg, "invalid binary string (%s)", *errmsg);
3190 goto error;
3191 }
3192 chk->expect.data.len = len;
3193 break;
3194 }
3195 case TCPCHK_EXPECT_STRING_REGEX:
3196 case TCPCHK_EXPECT_BINARY_REGEX:
3197 case TCPCHK_EXPECT_HTTP_STATUS_REGEX:
3198 case TCPCHK_EXPECT_HTTP_BODY_REGEX:
3199 chk->expect.regex = regex_comp(pattern, 1, 0, errmsg);
3200 if (!chk->expect.regex)
3201 goto error;
3202 break;
3203
3204 case TCPCHK_EXPECT_STRING_LF:
3205 case TCPCHK_EXPECT_BINARY_LF:
3206 case TCPCHK_EXPECT_HTTP_BODY_LF:
3207 LIST_INIT(&chk->expect.fmt);
3208 px->conf.args.ctx = ARGC_SRV;
3209 if (!parse_logformat_string(pattern, px, &chk->expect.fmt, 0, SMP_VAL_BE_CHK_RUL, errmsg)) {
3210 memprintf(errmsg, "'%s' invalid log-format string (%s).\n", pattern, *errmsg);
3211 goto error;
3212 }
3213 break;
3214
3215 case TCPCHK_EXPECT_HTTP_HEADER:
3216 if (!npat) {
3217 memprintf(errmsg, "unexpected error, undefined header name pattern");
3218 goto error;
3219 }
3220 if (chk->expect.flags & TCPCHK_EXPT_FL_HTTP_HNAME_REG) {
3221 chk->expect.hdr.name_re = regex_comp(npat, 0, 0, errmsg);
3222 if (!chk->expect.hdr.name_re)
3223 goto error;
3224 }
3225 else if (chk->expect.flags & TCPCHK_EXPT_FL_HTTP_HNAME_FMT) {
3226 px->conf.args.ctx = ARGC_SRV;
3227 LIST_INIT(&chk->expect.hdr.name_fmt);
3228 if (!parse_logformat_string(npat, px, &chk->expect.hdr.name_fmt, 0, SMP_VAL_BE_CHK_RUL, errmsg)) {
3229 memprintf(errmsg, "'%s' invalid log-format string (%s).\n", npat, *errmsg);
3230 goto error;
3231 }
3232 }
3233 else {
3234 chk->expect.hdr.name = ist2(strdup(npat), strlen(npat));
3235 if (!isttest(chk->expect.hdr.name)) {
3236 memprintf(errmsg, "out of memory");
3237 goto error;
3238 }
3239 }
3240
3241 if (chk->expect.flags & TCPCHK_EXPT_FL_HTTP_HVAL_NONE) {
3242 chk->expect.hdr.value = IST_NULL;
3243 break;
3244 }
3245
3246 if (!vpat) {
3247 memprintf(errmsg, "unexpected error, undefined header value pattern");
3248 goto error;
3249 }
3250 else if (chk->expect.flags & TCPCHK_EXPT_FL_HTTP_HVAL_REG) {
3251 chk->expect.hdr.value_re = regex_comp(vpat, 1, 0, errmsg);
3252 if (!chk->expect.hdr.value_re)
3253 goto error;
3254 }
3255 else if (chk->expect.flags & TCPCHK_EXPT_FL_HTTP_HVAL_FMT) {
3256 px->conf.args.ctx = ARGC_SRV;
3257 LIST_INIT(&chk->expect.hdr.value_fmt);
3258 if (!parse_logformat_string(vpat, px, &chk->expect.hdr.value_fmt, 0, SMP_VAL_BE_CHK_RUL, errmsg)) {
3259 memprintf(errmsg, "'%s' invalid log-format string (%s).\n", npat, *errmsg);
3260 goto error;
3261 }
3262 }
3263 else {
3264 chk->expect.hdr.value = ist2(strdup(vpat), strlen(vpat));
3265 if (!isttest(chk->expect.hdr.value)) {
3266 memprintf(errmsg, "out of memory");
3267 goto error;
3268 }
3269 }
3270
3271 break;
3272 case TCPCHK_EXPECT_CUSTOM:
3273 chk->expect.custom = NULL; /* Must be defined by the caller ! */
3274 break;
3275 case TCPCHK_EXPECT_UNDEF:
3276 memprintf(errmsg, "pattern not found");
3277 goto error;
3278 }
3279
3280 /* All tcp-check expect points back to the first inverse expect rule in
3281 * a chain of one or more expect rule, potentially itself.
3282 */
3283 chk->expect.head = chk;
3284 list_for_each_entry_rev(prev_check, rules, list) {
3285 if (prev_check->action == TCPCHK_ACT_EXPECT) {
3286 if (prev_check->expect.flags & TCPCHK_EXPT_FL_INV)
3287 chk->expect.head = prev_check;
3288 continue;
3289 }
3290 if (prev_check->action != TCPCHK_ACT_COMMENT && prev_check->action != TCPCHK_ACT_ACTION_KW)
3291 break;
3292 }
3293 return chk;
3294
3295 error:
3296 free_tcpcheck(chk, 0);
3297 free(comment);
3298 release_sample_expr(status_expr);
3299 return NULL;
3300}
3301
3302/* Overwrites fields of the old http send rule with those of the new one. When
3303 * replaced, old values are freed and replaced by the new ones. New values are
3304 * not copied but transferred. At the end <new> should be empty and can be
3305 * safely released. This function never fails.
3306 */
3307void tcpcheck_overwrite_send_http_rule(struct tcpcheck_rule *old, struct tcpcheck_rule *new)
3308{
3309 struct logformat_node *lf, *lfb;
3310 struct tcpcheck_http_hdr *hdr, *bhdr;
3311
3312
3313 if (new->send.http.meth.str.area) {
3314 free(old->send.http.meth.str.area);
3315 old->send.http.meth.meth = new->send.http.meth.meth;
3316 old->send.http.meth.str.area = new->send.http.meth.str.area;
3317 old->send.http.meth.str.data = new->send.http.meth.str.data;
3318 new->send.http.meth.str = BUF_NULL;
3319 }
3320
3321 if (!(new->send.http.flags & TCPCHK_SND_HTTP_FL_URI_FMT) && isttest(new->send.http.uri)) {
3322 if (!(old->send.http.flags & TCPCHK_SND_HTTP_FL_URI_FMT))
3323 istfree(&old->send.http.uri);
3324 else
3325 free_tcpcheck_fmt(&old->send.http.uri_fmt);
3326 old->send.http.flags &= ~TCPCHK_SND_HTTP_FL_URI_FMT;
3327 old->send.http.uri = new->send.http.uri;
3328 new->send.http.uri = IST_NULL;
3329 }
3330 else if ((new->send.http.flags & TCPCHK_SND_HTTP_FL_URI_FMT) && !LIST_ISEMPTY(&new->send.http.uri_fmt)) {
3331 if (!(old->send.http.flags & TCPCHK_SND_HTTP_FL_URI_FMT))
3332 istfree(&old->send.http.uri);
3333 else
3334 free_tcpcheck_fmt(&old->send.http.uri_fmt);
3335 old->send.http.flags |= TCPCHK_SND_HTTP_FL_URI_FMT;
3336 LIST_INIT(&old->send.http.uri_fmt);
3337 list_for_each_entry_safe(lf, lfb, &new->send.http.uri_fmt, list) {
3338 LIST_DEL(&lf->list);
3339 LIST_ADDQ(&old->send.http.uri_fmt, &lf->list);
3340 }
3341 }
3342
3343 if (isttest(new->send.http.vsn)) {
3344 istfree(&old->send.http.vsn);
3345 old->send.http.vsn = new->send.http.vsn;
3346 new->send.http.vsn = IST_NULL;
3347 }
3348
3349 free_tcpcheck_http_hdrs(&old->send.http.hdrs);
3350 list_for_each_entry_safe(hdr, bhdr, &new->send.http.hdrs, list) {
3351 LIST_DEL(&hdr->list);
3352 LIST_ADDQ(&old->send.http.hdrs, &hdr->list);
3353 }
3354
3355 if (!(new->send.http.flags & TCPCHK_SND_HTTP_FL_BODY_FMT) && isttest(new->send.http.body)) {
3356 if (!(old->send.http.flags & TCPCHK_SND_HTTP_FL_BODY_FMT))
3357 istfree(&old->send.http.body);
3358 else
3359 free_tcpcheck_fmt(&old->send.http.body_fmt);
3360 old->send.http.flags &= ~TCPCHK_SND_HTTP_FL_BODY_FMT;
3361 old->send.http.body = new->send.http.body;
3362 new->send.http.body = IST_NULL;
3363 }
3364 else if ((new->send.http.flags & TCPCHK_SND_HTTP_FL_BODY_FMT) && !LIST_ISEMPTY(&new->send.http.body_fmt)) {
3365 if (!(old->send.http.flags & TCPCHK_SND_HTTP_FL_BODY_FMT))
3366 istfree(&old->send.http.body);
3367 else
3368 free_tcpcheck_fmt(&old->send.http.body_fmt);
3369 old->send.http.flags |= TCPCHK_SND_HTTP_FL_BODY_FMT;
3370 LIST_INIT(&old->send.http.body_fmt);
3371 list_for_each_entry_safe(lf, lfb, &new->send.http.body_fmt, list) {
3372 LIST_DEL(&lf->list);
3373 LIST_ADDQ(&old->send.http.body_fmt, &lf->list);
3374 }
3375 }
3376}
3377
3378/* Internal function used to add an http-check rule in a list during the config
3379 * parsing step. Depending on its type, and the previously inserted rules, a
3380 * specific action may be performed or an error may be reported. This functions
3381 * returns 1 on success and 0 on error and <errmsg> is filled with the error
3382 * message.
3383 */
3384int tcpcheck_add_http_rule(struct tcpcheck_rule *chk, struct tcpcheck_rules *rules, char **errmsg)
3385{
3386 struct tcpcheck_rule *r;
3387
3388 /* the implicit send rule coming from an "option httpchk" line must be
3389 * merged with the first explici http-check send rule, if
Ilya Shipitsin47d17182020-06-21 21:42:57 +05003390 * any. Depending on the declaration order some tests are required.
Willy Tarreau51cd5952020-06-05 12:25:38 +02003391 *
Ilya Shipitsin47d17182020-06-21 21:42:57 +05003392 * Some tests are also required for other kinds of http-check rules to be
Willy Tarreau51cd5952020-06-05 12:25:38 +02003393 * sure the ruleset remains valid.
3394 */
3395
3396 if (chk->action == TCPCHK_ACT_SEND && (chk->send.http.flags & TCPCHK_SND_HTTP_FROM_OPT)) {
3397 /* Tries to add an implicit http-check send rule from an "option httpchk" line.
3398 * First, the first rule is retrieved, skipping the first CONNECT, if any, and
3399 * following tests are performed :
3400 *
3401 * 1- If there is no such rule or if it is not a send rule, the implicit send
3402 * rule is pushed in front of the ruleset
3403 *
3404 * 2- If it is another implicit send rule, it is replaced with the new one.
3405 *
3406 * 3- Otherwise, it means it is an explicit send rule. In this case we merge
3407 * both, overwriting the old send rule (the explicit one) with info of the
3408 * new send rule (the implicit one).
3409 */
3410 r = get_first_tcpcheck_rule(rules);
3411 if (r && r->action == TCPCHK_ACT_CONNECT)
3412 r = get_next_tcpcheck_rule(rules, r);
3413 if (!r || r->action != TCPCHK_ACT_SEND)
3414 LIST_ADD(rules->list, &chk->list);
3415 else if (r->send.http.flags & TCPCHK_SND_HTTP_FROM_OPT) {
3416 LIST_DEL(&r->list);
3417 free_tcpcheck(r, 0);
3418 LIST_ADD(rules->list, &chk->list);
3419 }
3420 else {
3421 tcpcheck_overwrite_send_http_rule(r, chk);
3422 free_tcpcheck(chk, 0);
3423 }
3424 }
3425 else {
3426 /* Tries to add an explicit http-check rule. First of all we check the typefo the
3427 * last inserted rule to be sure it is valid. Then for send rule, we try to merge it
3428 * with an existing implicit send rule, if any. At the end, if there is no error,
3429 * the rule is appended to the list.
3430 */
3431
3432 r = get_last_tcpcheck_rule(rules);
3433 if (!r || (r->action == TCPCHK_ACT_SEND && (r->send.http.flags & TCPCHK_SND_HTTP_FROM_OPT)))
3434 /* no error */;
3435 else if (r->action != TCPCHK_ACT_CONNECT && chk->action == TCPCHK_ACT_SEND) {
3436 memprintf(errmsg, "unable to add http-check send rule at step %d (missing connect rule).",
3437 chk->index+1);
3438 return 0;
3439 }
3440 else if (r->action != TCPCHK_ACT_SEND && r->action != TCPCHK_ACT_EXPECT && chk->action == TCPCHK_ACT_EXPECT) {
3441 memprintf(errmsg, "unable to add http-check expect rule at step %d (missing send rule).",
3442 chk->index+1);
3443 return 0;
3444 }
3445 else if (r->action != TCPCHK_ACT_EXPECT && chk->action == TCPCHK_ACT_CONNECT) {
3446 memprintf(errmsg, "unable to add http-check connect rule at step %d (missing expect rule).",
3447 chk->index+1);
3448 return 0;
3449 }
3450
3451 if (chk->action == TCPCHK_ACT_SEND) {
3452 r = get_first_tcpcheck_rule(rules);
3453 if (r && r->action == TCPCHK_ACT_SEND && (r->send.http.flags & TCPCHK_SND_HTTP_FROM_OPT)) {
3454 tcpcheck_overwrite_send_http_rule(r, chk);
3455 free_tcpcheck(chk, 0);
3456 LIST_DEL(&r->list);
3457 r->send.http.flags &= ~TCPCHK_SND_HTTP_FROM_OPT;
3458 chk = r;
3459 }
3460 }
3461 LIST_ADDQ(rules->list, &chk->list);
3462 }
3463 return 1;
3464}
3465
3466/* Check tcp-check health-check configuration for the proxy <px>. */
3467static int check_proxy_tcpcheck(struct proxy *px)
3468{
3469 struct tcpcheck_rule *chk, *back;
3470 char *comment = NULL, *errmsg = NULL;
3471 enum tcpcheck_rule_type prev_action = TCPCHK_ACT_COMMENT;
3472 int ret = 0;
3473
3474 if (!(px->cap & PR_CAP_BE) || (px->options2 & PR_O2_CHK_ANY) != PR_O2_TCPCHK_CHK) {
3475 deinit_proxy_tcpcheck(px);
3476 goto out;
3477 }
3478
3479 free(px->check_command);
3480 free(px->check_path);
3481 px->check_command = px->check_path = NULL;
3482
3483 if (!px->tcpcheck_rules.list) {
3484 ha_alert("config : proxy '%s' : tcp-check configured but no ruleset defined.\n", px->id);
3485 ret |= ERR_ALERT | ERR_FATAL;
3486 goto out;
3487 }
3488
3489 /* HTTP ruleset only : */
3490 if ((px->tcpcheck_rules.flags & TCPCHK_RULES_PROTO_CHK) == TCPCHK_RULES_HTTP_CHK) {
3491 struct tcpcheck_rule *next;
3492
3493 /* move remaining implicit send rule from "option httpchk" line to the right place.
3494 * If such rule exists, it must be the first one. In this case, the rule is moved
3495 * after the first connect rule, if any. Otherwise, nothing is done.
3496 */
3497 chk = get_first_tcpcheck_rule(&px->tcpcheck_rules);
3498 if (chk && chk->action == TCPCHK_ACT_SEND && (chk->send.http.flags & TCPCHK_SND_HTTP_FROM_OPT)) {
3499 next = get_next_tcpcheck_rule(&px->tcpcheck_rules, chk);
3500 if (next && next->action == TCPCHK_ACT_CONNECT) {
3501 LIST_DEL(&chk->list);
3502 LIST_ADD(&next->list, &chk->list);
3503 chk->index = next->index;
3504 }
3505 }
3506
3507 /* add implicit expect rule if the last one is a send. It is inherited from previous
3508 * versions where the http expect rule was optional. Now it is possible to chained
3509 * send/expect rules but the last expect may still be implicit.
3510 */
3511 chk = get_last_tcpcheck_rule(&px->tcpcheck_rules);
3512 if (chk && chk->action == TCPCHK_ACT_SEND) {
3513 next = parse_tcpcheck_expect((char *[]){"http-check", "expect", "status", "200-399", ""},
3514 1, px, px->tcpcheck_rules.list, TCPCHK_RULES_HTTP_CHK,
3515 px->conf.file, px->conf.line, &errmsg);
3516 if (!next) {
3517 ha_alert("config : proxy '%s': unable to add implicit http-check expect rule "
3518 "(%s).\n", px->id, errmsg);
3519 free(errmsg);
3520 ret |= ERR_ALERT | ERR_FATAL;
3521 goto out;
3522 }
3523 LIST_ADDQ(px->tcpcheck_rules.list, &next->list);
3524 next->index = chk->index;
3525 }
3526 }
3527
3528 /* For all ruleset: */
3529
3530 /* If there is no connect rule preceding all send / expect rules, an
3531 * implicit one is inserted before all others.
3532 */
3533 chk = get_first_tcpcheck_rule(&px->tcpcheck_rules);
3534 if (!chk || chk->action != TCPCHK_ACT_CONNECT) {
3535 chk = calloc(1, sizeof(*chk));
3536 if (!chk) {
3537 ha_alert("config : proxy '%s': unable to add implicit tcp-check connect rule "
3538 "(out of memory).\n", px->id);
3539 ret |= ERR_ALERT | ERR_FATAL;
3540 goto out;
3541 }
3542 chk->action = TCPCHK_ACT_CONNECT;
3543 chk->connect.options = (TCPCHK_OPT_DEFAULT_CONNECT|TCPCHK_OPT_IMPLICIT);
3544 LIST_ADD(px->tcpcheck_rules.list, &chk->list);
3545 }
3546
3547 /* Remove all comment rules. To do so, when a such rule is found, the
3548 * comment is assigned to the following rule(s).
3549 */
3550 list_for_each_entry_safe(chk, back, px->tcpcheck_rules.list, list) {
3551 if (chk->action != prev_action && prev_action != TCPCHK_ACT_COMMENT) {
3552 free(comment);
3553 comment = NULL;
3554 }
3555
3556 prev_action = chk->action;
3557 switch (chk->action) {
3558 case TCPCHK_ACT_COMMENT:
3559 free(comment);
3560 comment = chk->comment;
3561 LIST_DEL(&chk->list);
3562 free(chk);
3563 break;
3564 case TCPCHK_ACT_CONNECT:
3565 if (!chk->comment && comment)
3566 chk->comment = strdup(comment);
Tim Duesterhus588b3142020-05-29 14:35:51 +02003567 /* fall through */
Willy Tarreau51cd5952020-06-05 12:25:38 +02003568 case TCPCHK_ACT_ACTION_KW:
3569 free(comment);
3570 comment = NULL;
3571 break;
3572 case TCPCHK_ACT_SEND:
3573 case TCPCHK_ACT_EXPECT:
3574 if (!chk->comment && comment)
3575 chk->comment = strdup(comment);
3576 break;
3577 }
3578 }
3579 free(comment);
3580 comment = NULL;
3581
3582 out:
3583 return ret;
3584}
3585
3586void deinit_proxy_tcpcheck(struct proxy *px)
3587{
3588 free_tcpcheck_vars(&px->tcpcheck_rules.preset_vars);
3589 px->tcpcheck_rules.flags = 0;
3590 px->tcpcheck_rules.list = NULL;
3591}
3592
3593static void deinit_tcpchecks()
3594{
3595 struct tcpcheck_ruleset *rs;
3596 struct tcpcheck_rule *r, *rb;
3597 struct ebpt_node *node, *next;
3598
3599 node = ebpt_first(&shared_tcpchecks);
3600 while (node) {
3601 next = ebpt_next(node);
3602 ebpt_delete(node);
3603 free(node->key);
3604 rs = container_of(node, typeof(*rs), node);
3605 list_for_each_entry_safe(r, rb, &rs->rules, list) {
3606 LIST_DEL(&r->list);
3607 free_tcpcheck(r, 0);
3608 }
3609 free(rs);
3610 node = next;
3611 }
3612}
3613
3614int add_tcpcheck_expect_str(struct tcpcheck_rules *rules, const char *str)
3615{
3616 struct tcpcheck_rule *tcpcheck, *prev_check;
3617 struct tcpcheck_expect *expect;
3618
3619 if ((tcpcheck = pool_alloc(pool_head_tcpcheck_rule)) == NULL)
3620 return 0;
3621 memset(tcpcheck, 0, sizeof(*tcpcheck));
3622 tcpcheck->action = TCPCHK_ACT_EXPECT;
3623
3624 expect = &tcpcheck->expect;
3625 expect->type = TCPCHK_EXPECT_STRING;
3626 LIST_INIT(&expect->onerror_fmt);
3627 LIST_INIT(&expect->onsuccess_fmt);
3628 expect->ok_status = HCHK_STATUS_L7OKD;
3629 expect->err_status = HCHK_STATUS_L7RSP;
3630 expect->tout_status = HCHK_STATUS_L7TOUT;
3631 expect->data = ist2(strdup(str), strlen(str));
3632 if (!isttest(expect->data)) {
3633 pool_free(pool_head_tcpcheck_rule, tcpcheck);
3634 return 0;
3635 }
3636
3637 /* All tcp-check expect points back to the first inverse expect rule
3638 * in a chain of one or more expect rule, potentially itself.
3639 */
3640 tcpcheck->expect.head = tcpcheck;
3641 list_for_each_entry_rev(prev_check, rules->list, list) {
3642 if (prev_check->action == TCPCHK_ACT_EXPECT) {
3643 if (prev_check->expect.flags & TCPCHK_EXPT_FL_INV)
3644 tcpcheck->expect.head = prev_check;
3645 continue;
3646 }
3647 if (prev_check->action != TCPCHK_ACT_COMMENT && prev_check->action != TCPCHK_ACT_ACTION_KW)
3648 break;
3649 }
3650 LIST_ADDQ(rules->list, &tcpcheck->list);
3651 return 1;
3652}
3653
3654int add_tcpcheck_send_strs(struct tcpcheck_rules *rules, const char * const *strs)
3655{
3656 struct tcpcheck_rule *tcpcheck;
3657 struct tcpcheck_send *send;
3658 const char *in;
3659 char *dst;
3660 int i;
3661
3662 if ((tcpcheck = pool_alloc(pool_head_tcpcheck_rule)) == NULL)
3663 return 0;
3664 memset(tcpcheck, 0, sizeof(*tcpcheck));
3665 tcpcheck->action = TCPCHK_ACT_SEND;
3666
3667 send = &tcpcheck->send;
3668 send->type = TCPCHK_SEND_STRING;
3669
3670 for (i = 0; strs[i]; i++)
3671 send->data.len += strlen(strs[i]);
3672
3673 send->data.ptr = malloc(istlen(send->data) + 1);
3674 if (!isttest(send->data)) {
3675 pool_free(pool_head_tcpcheck_rule, tcpcheck);
3676 return 0;
3677 }
3678
3679 dst = istptr(send->data);
3680 for (i = 0; strs[i]; i++)
3681 for (in = strs[i]; (*dst = *in++); dst++);
3682 *dst = 0;
3683
3684 LIST_ADDQ(rules->list, &tcpcheck->list);
3685 return 1;
3686}
3687
3688/* Parses the "tcp-check" proxy keyword */
3689static int proxy_parse_tcpcheck(char **args, int section, struct proxy *curpx,
3690 struct proxy *defpx, const char *file, int line,
3691 char **errmsg)
3692{
3693 struct tcpcheck_ruleset *rs = NULL;
3694 struct tcpcheck_rule *chk = NULL;
3695 int index, cur_arg, ret = 0;
3696
3697 if (warnifnotcap(curpx, PR_CAP_BE, file, line, args[0], NULL))
3698 ret = 1;
3699
3700 /* Deduce the ruleset name from the proxy info */
3701 chunk_printf(&trash, "*tcp-check-%s_%s-%d",
3702 ((curpx == defpx) ? "defaults" : curpx->id),
3703 curpx->conf.file, curpx->conf.line);
3704
3705 rs = find_tcpcheck_ruleset(b_orig(&trash));
3706 if (rs == NULL) {
3707 rs = create_tcpcheck_ruleset(b_orig(&trash));
3708 if (rs == NULL) {
3709 memprintf(errmsg, "out of memory.\n");
3710 goto error;
3711 }
3712 }
3713
3714 index = 0;
3715 if (!LIST_ISEMPTY(&rs->rules)) {
3716 chk = LIST_PREV(&rs->rules, typeof(chk), list);
3717 index = chk->index + 1;
3718 }
3719
3720 cur_arg = 1;
3721 if (strcmp(args[cur_arg], "connect") == 0)
3722 chk = parse_tcpcheck_connect(args, cur_arg, curpx, &rs->rules, file, line, errmsg);
3723 else if (strcmp(args[cur_arg], "send") == 0 || strcmp(args[cur_arg], "send-binary") == 0 ||
3724 strcmp(args[cur_arg], "send-lf") == 0 || strcmp(args[cur_arg], "send-binary-lf") == 0)
3725 chk = parse_tcpcheck_send(args, cur_arg, curpx, &rs->rules, file, line, errmsg);
3726 else if (strcmp(args[cur_arg], "expect") == 0)
3727 chk = parse_tcpcheck_expect(args, cur_arg, curpx, &rs->rules, 0, file, line, errmsg);
3728 else if (strcmp(args[cur_arg], "comment") == 0)
3729 chk = parse_tcpcheck_comment(args, cur_arg, curpx, &rs->rules, file, line, errmsg);
3730 else {
3731 struct action_kw *kw = action_kw_tcp_check_lookup(args[cur_arg]);
3732
3733 if (!kw) {
3734 action_kw_tcp_check_build_list(&trash);
3735 memprintf(errmsg, "'%s' only supports 'comment', 'connect', 'send', 'send-binary', 'expect'"
3736 "%s%s. but got '%s'",
3737 args[0], (*trash.area ? ", " : ""), trash.area, args[1]);
3738 goto error;
3739 }
3740 chk = parse_tcpcheck_action(args, cur_arg, curpx, &rs->rules, kw, file, line, errmsg);
3741 }
3742
3743 if (!chk) {
3744 memprintf(errmsg, "'%s %s' : %s.", args[0], args[1], *errmsg);
3745 goto error;
3746 }
3747 ret = (ret || (*errmsg != NULL)); /* Handle warning */
3748
3749 /* No error: add the tcp-check rule in the list */
3750 chk->index = index;
3751 LIST_ADDQ(&rs->rules, &chk->list);
3752
3753 if ((curpx->options2 & PR_O2_CHK_ANY) == PR_O2_TCPCHK_CHK &&
3754 (curpx->tcpcheck_rules.flags & TCPCHK_RULES_PROTO_CHK) == TCPCHK_RULES_TCP_CHK) {
3755 /* Use this ruleset if the proxy already has tcp-check enabled */
3756 curpx->tcpcheck_rules.list = &rs->rules;
3757 curpx->tcpcheck_rules.flags &= ~TCPCHK_RULES_UNUSED_TCP_RS;
3758 }
3759 else {
3760 /* mark this ruleset as unused for now */
3761 curpx->tcpcheck_rules.flags |= TCPCHK_RULES_UNUSED_TCP_RS;
3762 }
3763
3764 return ret;
3765
3766 error:
3767 free_tcpcheck(chk, 0);
3768 free_tcpcheck_ruleset(rs);
3769 return -1;
3770}
3771
3772static struct cfg_kw_list cfg_kws = {ILH, {
3773 { CFG_LISTEN, "tcp-check", proxy_parse_tcpcheck },
3774 { 0, NULL, NULL },
3775}};
3776
3777REGISTER_POST_PROXY_CHECK(check_proxy_tcpcheck);
3778REGISTER_PROXY_DEINIT(deinit_proxy_tcpcheck);
3779REGISTER_POST_DEINIT(deinit_tcpchecks);
3780INITCALL1(STG_REGISTER, cfg_register_keywords, &cfg_kws);