blob: eb005365cdb2d41a1ba4e83f29e6ecb357e5c157 [file] [log] [blame]
Emeric Brun107ca302010-01-04 16:16:05 +01001/*
Willy Tarreaucd3b0942012-04-27 21:52:18 +02002 * Sample management functions.
Emeric Brun107ca302010-01-04 16:16:05 +01003 *
4 * Copyright 2009-2010 EXCELIANCE, Emeric Brun <ebrun@exceliance.fr>
Willy Tarreaucd3b0942012-04-27 21:52:18 +02005 * Copyright (C) 2012 Willy Tarreau <w@1wt.eu>
Emeric Brun107ca302010-01-04 16:16:05 +01006 *
7 * This program is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU General Public License
9 * as published by the Free Software Foundation; either version
10 * 2 of the License, or (at your option) any later version.
11 *
12 */
13
Thierry FOURNIER317e1c42014-08-12 10:20:47 +020014#include <ctype.h>
Emeric Brun107ca302010-01-04 16:16:05 +010015#include <string.h>
16#include <arpa/inet.h>
Willy Tarreaudd2f85e2012-09-02 22:34:23 +020017#include <stdio.h>
Emeric Brun107ca302010-01-04 16:16:05 +010018
Willy Tarreau7e2c6472012-10-29 20:44:36 +010019#include <types/global.h>
20
Willy Tarreauc7e42382012-08-24 19:22:53 +020021#include <common/chunk.h>
Willy Tarreau23ec4ca2014-07-15 20:15:37 +020022#include <common/hash.h>
Willy Tarreaucd3b0942012-04-27 21:52:18 +020023#include <common/standard.h>
Willy Tarreaua4312fa2013-04-02 16:34:32 +020024#include <common/uri_auth.h>
Emeric Brun53d1a982014-04-30 18:21:37 +020025#include <common/base64.h>
Willy Tarreaucd3b0942012-04-27 21:52:18 +020026
Willy Tarreau9fcb9842012-04-20 14:45:49 +020027#include <proto/arg.h>
Willy Tarreaua4312fa2013-04-02 16:34:32 +020028#include <proto/auth.h>
29#include <proto/log.h>
Thierry FOURNIERd4373142013-12-17 01:10:10 +010030#include <proto/proto_http.h>
Willy Tarreaua4312fa2013-04-02 16:34:32 +020031#include <proto/proxy.h>
Willy Tarreaucd3b0942012-04-27 21:52:18 +020032#include <proto/sample.h>
Willy Tarreaua4312fa2013-04-02 16:34:32 +020033#include <proto/stick_table.h>
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +020034#include <proto/vars.h>
Emeric Brun107ca302010-01-04 16:16:05 +010035
Willy Tarreau1cf8f082014-02-07 12:14:54 +010036/* sample type names */
37const char *smp_to_type[SMP_TYPES] = {
Thierry FOURNIER9c627e82015-06-03 20:12:35 +020038 [SMP_T_ANY] = "any",
Willy Tarreau1cf8f082014-02-07 12:14:54 +010039 [SMP_T_BOOL] = "bool",
Willy Tarreau1cf8f082014-02-07 12:14:54 +010040 [SMP_T_SINT] = "sint",
41 [SMP_T_ADDR] = "addr",
42 [SMP_T_IPV4] = "ipv4",
43 [SMP_T_IPV6] = "ipv6",
44 [SMP_T_STR] = "str",
45 [SMP_T_BIN] = "bin",
Thierry FOURNIER4c2479e2015-06-03 20:12:04 +020046 [SMP_T_METH] = "meth",
Willy Tarreau1cf8f082014-02-07 12:14:54 +010047};
48
Willy Tarreau12785782012-04-27 21:37:17 +020049/* static sample used in sample_process() when <p> is NULL */
Willy Tarreaub4a88f02012-04-23 21:35:11 +020050static struct sample temp_smp;
Emeric Brun107ca302010-01-04 16:16:05 +010051
Willy Tarreau12785782012-04-27 21:37:17 +020052/* list head of all known sample fetch keywords */
53static struct sample_fetch_kw_list sample_fetches = {
54 .list = LIST_HEAD_INIT(sample_fetches.list)
Emeric Brun107ca302010-01-04 16:16:05 +010055};
56
Willy Tarreau12785782012-04-27 21:37:17 +020057/* list head of all known sample format conversion keywords */
58static struct sample_conv_kw_list sample_convs = {
59 .list = LIST_HEAD_INIT(sample_convs.list)
Emeric Brun107ca302010-01-04 16:16:05 +010060};
61
Willy Tarreau80aca902013-01-07 15:42:20 +010062const unsigned int fetch_cap[SMP_SRC_ENTRIES] = {
63 [SMP_SRC_INTRN] = (SMP_VAL_FE_CON_ACC | SMP_VAL_FE_SES_ACC | SMP_VAL_FE_REQ_CNT |
64 SMP_VAL_FE_HRQ_HDR | SMP_VAL_FE_HRQ_BDY | SMP_VAL_FE_SET_BCK |
65 SMP_VAL_BE_REQ_CNT | SMP_VAL_BE_HRQ_HDR | SMP_VAL_BE_HRQ_BDY |
66 SMP_VAL_BE_SET_SRV | SMP_VAL_BE_SRV_CON | SMP_VAL_BE_RES_CNT |
67 SMP_VAL_BE_HRS_HDR | SMP_VAL_BE_HRS_BDY | SMP_VAL_BE_STO_RUL |
68 SMP_VAL_FE_RES_CNT | SMP_VAL_FE_HRS_HDR | SMP_VAL_FE_HRS_BDY |
69 SMP_VAL_FE_LOG_END),
70
71 [SMP_SRC_LISTN] = (SMP_VAL_FE_CON_ACC | SMP_VAL_FE_SES_ACC | SMP_VAL_FE_REQ_CNT |
72 SMP_VAL_FE_HRQ_HDR | SMP_VAL_FE_HRQ_BDY | SMP_VAL_FE_SET_BCK |
73 SMP_VAL_BE_REQ_CNT | SMP_VAL_BE_HRQ_HDR | SMP_VAL_BE_HRQ_BDY |
74 SMP_VAL_BE_SET_SRV | SMP_VAL_BE_SRV_CON | SMP_VAL_BE_RES_CNT |
75 SMP_VAL_BE_HRS_HDR | SMP_VAL_BE_HRS_BDY | SMP_VAL_BE_STO_RUL |
76 SMP_VAL_FE_RES_CNT | SMP_VAL_FE_HRS_HDR | SMP_VAL_FE_HRS_BDY |
77 SMP_VAL_FE_LOG_END),
78
79 [SMP_SRC_FTEND] = (SMP_VAL_FE_CON_ACC | SMP_VAL_FE_SES_ACC | SMP_VAL_FE_REQ_CNT |
80 SMP_VAL_FE_HRQ_HDR | SMP_VAL_FE_HRQ_BDY | SMP_VAL_FE_SET_BCK |
81 SMP_VAL_BE_REQ_CNT | SMP_VAL_BE_HRQ_HDR | SMP_VAL_BE_HRQ_BDY |
82 SMP_VAL_BE_SET_SRV | SMP_VAL_BE_SRV_CON | SMP_VAL_BE_RES_CNT |
83 SMP_VAL_BE_HRS_HDR | SMP_VAL_BE_HRS_BDY | SMP_VAL_BE_STO_RUL |
84 SMP_VAL_FE_RES_CNT | SMP_VAL_FE_HRS_HDR | SMP_VAL_FE_HRS_BDY |
85 SMP_VAL_FE_LOG_END),
86
87 [SMP_SRC_L4CLI] = (SMP_VAL_FE_CON_ACC | SMP_VAL_FE_SES_ACC | SMP_VAL_FE_REQ_CNT |
88 SMP_VAL_FE_HRQ_HDR | SMP_VAL_FE_HRQ_BDY | SMP_VAL_FE_SET_BCK |
89 SMP_VAL_BE_REQ_CNT | SMP_VAL_BE_HRQ_HDR | SMP_VAL_BE_HRQ_BDY |
90 SMP_VAL_BE_SET_SRV | SMP_VAL_BE_SRV_CON | SMP_VAL_BE_RES_CNT |
91 SMP_VAL_BE_HRS_HDR | SMP_VAL_BE_HRS_BDY | SMP_VAL_BE_STO_RUL |
92 SMP_VAL_FE_RES_CNT | SMP_VAL_FE_HRS_HDR | SMP_VAL_FE_HRS_BDY |
93 SMP_VAL_FE_LOG_END),
94
95 [SMP_SRC_L5CLI] = (SMP_VAL___________ | SMP_VAL_FE_SES_ACC | SMP_VAL_FE_REQ_CNT |
96 SMP_VAL_FE_HRQ_HDR | SMP_VAL_FE_HRQ_BDY | SMP_VAL_FE_SET_BCK |
97 SMP_VAL_BE_REQ_CNT | SMP_VAL_BE_HRQ_HDR | SMP_VAL_BE_HRQ_BDY |
98 SMP_VAL_BE_SET_SRV | SMP_VAL_BE_SRV_CON | SMP_VAL_BE_RES_CNT |
99 SMP_VAL_BE_HRS_HDR | SMP_VAL_BE_HRS_BDY | SMP_VAL_BE_STO_RUL |
100 SMP_VAL_FE_RES_CNT | SMP_VAL_FE_HRS_HDR | SMP_VAL_FE_HRS_BDY |
101 SMP_VAL_FE_LOG_END),
102
103 [SMP_SRC_TRACK] = (SMP_VAL_FE_CON_ACC | SMP_VAL_FE_SES_ACC | SMP_VAL_FE_REQ_CNT |
104 SMP_VAL_FE_HRQ_HDR | SMP_VAL_FE_HRQ_BDY | SMP_VAL_FE_SET_BCK |
105 SMP_VAL_BE_REQ_CNT | SMP_VAL_BE_HRQ_HDR | SMP_VAL_BE_HRQ_BDY |
106 SMP_VAL_BE_SET_SRV | SMP_VAL_BE_SRV_CON | SMP_VAL_BE_RES_CNT |
107 SMP_VAL_BE_HRS_HDR | SMP_VAL_BE_HRS_BDY | SMP_VAL_BE_STO_RUL |
108 SMP_VAL_FE_RES_CNT | SMP_VAL_FE_HRS_HDR | SMP_VAL_FE_HRS_BDY |
109 SMP_VAL_FE_LOG_END),
110
111 [SMP_SRC_L6REQ] = (SMP_VAL___________ | SMP_VAL___________ | SMP_VAL_FE_REQ_CNT |
112 SMP_VAL_FE_HRQ_HDR | SMP_VAL_FE_HRQ_BDY | SMP_VAL_FE_SET_BCK |
113 SMP_VAL_BE_REQ_CNT | SMP_VAL_BE_HRQ_HDR | SMP_VAL_BE_HRQ_BDY |
114 SMP_VAL_BE_SET_SRV | SMP_VAL_BE_SRV_CON | SMP_VAL___________ |
115 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
116 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
117 SMP_VAL___________),
118
119 [SMP_SRC_HRQHV] = (SMP_VAL___________ | SMP_VAL___________ | SMP_VAL_FE_REQ_CNT |
120 SMP_VAL_FE_HRQ_HDR | SMP_VAL_FE_HRQ_BDY | SMP_VAL_FE_SET_BCK |
121 SMP_VAL_BE_REQ_CNT | SMP_VAL_BE_HRQ_HDR | SMP_VAL_BE_HRQ_BDY |
122 SMP_VAL_BE_SET_SRV | SMP_VAL_BE_SRV_CON | SMP_VAL___________ |
123 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
124 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
125 SMP_VAL___________),
126
127 [SMP_SRC_HRQHP] = (SMP_VAL___________ | SMP_VAL___________ | SMP_VAL_FE_REQ_CNT |
128 SMP_VAL_FE_HRQ_HDR | SMP_VAL_FE_HRQ_BDY | SMP_VAL_FE_SET_BCK |
129 SMP_VAL_BE_REQ_CNT | SMP_VAL_BE_HRQ_HDR | SMP_VAL_BE_HRQ_BDY |
130 SMP_VAL_BE_SET_SRV | SMP_VAL_BE_SRV_CON | SMP_VAL_BE_RES_CNT |
131 SMP_VAL_BE_HRS_HDR | SMP_VAL_BE_HRS_BDY | SMP_VAL_BE_STO_RUL |
132 SMP_VAL_FE_RES_CNT | SMP_VAL_FE_HRS_HDR | SMP_VAL_FE_HRS_BDY |
133 SMP_VAL_FE_LOG_END),
134
135 [SMP_SRC_HRQBO] = (SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
136 SMP_VAL___________ | SMP_VAL_FE_HRQ_BDY | SMP_VAL_FE_SET_BCK |
137 SMP_VAL_BE_REQ_CNT | SMP_VAL_BE_HRQ_HDR | SMP_VAL_BE_HRQ_BDY |
138 SMP_VAL_BE_SET_SRV | SMP_VAL_BE_SRV_CON | SMP_VAL___________ |
139 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
140 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
141 SMP_VAL___________),
142
143 [SMP_SRC_BKEND] = (SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
144 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
145 SMP_VAL_BE_REQ_CNT | SMP_VAL_BE_HRQ_HDR | SMP_VAL_BE_HRQ_BDY |
146 SMP_VAL_BE_SET_SRV | SMP_VAL_BE_SRV_CON | SMP_VAL_BE_RES_CNT |
147 SMP_VAL_BE_HRS_HDR | SMP_VAL_BE_HRS_BDY | SMP_VAL_BE_STO_RUL |
148 SMP_VAL_FE_RES_CNT | SMP_VAL_FE_HRS_HDR | SMP_VAL_FE_HRS_BDY |
149 SMP_VAL_FE_LOG_END),
150
151 [SMP_SRC_SERVR] = (SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
152 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
153 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
154 SMP_VAL___________ | SMP_VAL_BE_SRV_CON | SMP_VAL_BE_RES_CNT |
155 SMP_VAL_BE_HRS_HDR | SMP_VAL_BE_HRS_BDY | SMP_VAL_BE_STO_RUL |
156 SMP_VAL_FE_RES_CNT | SMP_VAL_FE_HRS_HDR | SMP_VAL_FE_HRS_BDY |
157 SMP_VAL_FE_LOG_END),
158
159 [SMP_SRC_L4SRV] = (SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
160 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
161 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
162 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL_BE_RES_CNT |
163 SMP_VAL_BE_HRS_HDR | SMP_VAL_BE_HRS_BDY | SMP_VAL_BE_STO_RUL |
164 SMP_VAL_FE_RES_CNT | SMP_VAL_FE_HRS_HDR | SMP_VAL_FE_HRS_BDY |
165 SMP_VAL_FE_LOG_END),
166
167 [SMP_SRC_L5SRV] = (SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
168 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
169 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
170 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL_BE_RES_CNT |
171 SMP_VAL_BE_HRS_HDR | SMP_VAL_BE_HRS_BDY | SMP_VAL_BE_STO_RUL |
172 SMP_VAL_FE_RES_CNT | SMP_VAL_FE_HRS_HDR | SMP_VAL_FE_HRS_BDY |
173 SMP_VAL_FE_LOG_END),
174
175 [SMP_SRC_L6RES] = (SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
176 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
177 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
178 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL_BE_RES_CNT |
179 SMP_VAL_BE_HRS_HDR | SMP_VAL_BE_HRS_BDY | SMP_VAL_BE_STO_RUL |
180 SMP_VAL_FE_RES_CNT | SMP_VAL_FE_HRS_HDR | SMP_VAL_FE_HRS_BDY |
181 SMP_VAL___________),
182
183 [SMP_SRC_HRSHV] = (SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
184 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
185 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
186 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL_BE_RES_CNT |
187 SMP_VAL_BE_HRS_HDR | SMP_VAL_BE_HRS_BDY | SMP_VAL_BE_STO_RUL |
188 SMP_VAL_FE_RES_CNT | SMP_VAL_FE_HRS_HDR | SMP_VAL_FE_HRS_BDY |
189 SMP_VAL___________),
190
191 [SMP_SRC_HRSHP] = (SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
192 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
193 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
194 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL_BE_RES_CNT |
195 SMP_VAL_BE_HRS_HDR | SMP_VAL_BE_HRS_BDY | SMP_VAL_BE_STO_RUL |
196 SMP_VAL_FE_RES_CNT | SMP_VAL_FE_HRS_HDR | SMP_VAL_FE_HRS_BDY |
197 SMP_VAL_FE_LOG_END),
198
199 [SMP_SRC_HRSBO] = (SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
200 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
201 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
202 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
203 SMP_VAL___________ | SMP_VAL_BE_HRS_BDY | SMP_VAL_BE_STO_RUL |
204 SMP_VAL_FE_RES_CNT | SMP_VAL_FE_HRS_HDR | SMP_VAL_FE_HRS_BDY |
205 SMP_VAL___________),
206
207 [SMP_SRC_RQFIN] = (SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
208 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
209 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
210 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
211 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
212 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
213 SMP_VAL_FE_LOG_END),
214
215 [SMP_SRC_RSFIN] = (SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
216 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
217 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
218 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
219 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
220 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
221 SMP_VAL_FE_LOG_END),
222
223 [SMP_SRC_TXFIN] = (SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
224 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
225 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
226 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
227 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
228 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
229 SMP_VAL_FE_LOG_END),
230
231 [SMP_SRC_SSFIN] = (SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
232 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
233 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
234 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
235 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
236 SMP_VAL___________ | SMP_VAL___________ | SMP_VAL___________ |
237 SMP_VAL_FE_LOG_END),
238};
239
240static const char *fetch_src_names[SMP_SRC_ENTRIES] = {
241 [SMP_SRC_INTRN] = "internal state",
242 [SMP_SRC_LISTN] = "listener",
243 [SMP_SRC_FTEND] = "frontend",
244 [SMP_SRC_L4CLI] = "client address",
245 [SMP_SRC_L5CLI] = "client-side connection",
246 [SMP_SRC_TRACK] = "track counters",
247 [SMP_SRC_L6REQ] = "request buffer",
248 [SMP_SRC_HRQHV] = "HTTP request headers",
249 [SMP_SRC_HRQHP] = "HTTP request",
250 [SMP_SRC_HRQBO] = "HTTP request body",
251 [SMP_SRC_BKEND] = "backend",
252 [SMP_SRC_SERVR] = "server",
253 [SMP_SRC_L4SRV] = "server address",
254 [SMP_SRC_L5SRV] = "server-side connection",
255 [SMP_SRC_L6RES] = "response buffer",
256 [SMP_SRC_HRSHV] = "HTTP response headers",
257 [SMP_SRC_HRSHP] = "HTTP response",
258 [SMP_SRC_HRSBO] = "HTTP response body",
259 [SMP_SRC_RQFIN] = "request buffer statistics",
260 [SMP_SRC_RSFIN] = "response buffer statistics",
261 [SMP_SRC_TXFIN] = "transaction statistics",
262 [SMP_SRC_SSFIN] = "session statistics",
263};
264
Willy Tarreaubf8e2512013-03-25 14:52:41 +0100265static const char *fetch_ckp_names[SMP_CKP_ENTRIES] = {
266 [SMP_CKP_FE_CON_ACC] = "frontend tcp-request connection rule",
267 [SMP_CKP_FE_SES_ACC] = "frontend tcp-request session rule",
268 [SMP_CKP_FE_REQ_CNT] = "frontend tcp-request content rule",
269 [SMP_CKP_FE_HRQ_HDR] = "frontend http-request header rule",
270 [SMP_CKP_FE_HRQ_BDY] = "frontend http-request body rule",
271 [SMP_CKP_FE_SET_BCK] = "frontend use-backend rule",
272 [SMP_CKP_BE_REQ_CNT] = "backend tcp-request content rule",
273 [SMP_CKP_BE_HRQ_HDR] = "backend http-request header rule",
274 [SMP_CKP_BE_HRQ_BDY] = "backend http-request body rule",
275 [SMP_CKP_BE_SET_SRV] = "backend use-server, balance or stick-match rule",
276 [SMP_CKP_BE_SRV_CON] = "server source selection",
277 [SMP_CKP_BE_RES_CNT] = "backend tcp-response content rule",
278 [SMP_CKP_BE_HRS_HDR] = "backend http-response header rule",
279 [SMP_CKP_BE_HRS_BDY] = "backend http-response body rule",
280 [SMP_CKP_BE_STO_RUL] = "backend stick-store rule",
281 [SMP_CKP_FE_RES_CNT] = "frontend tcp-response content rule",
282 [SMP_CKP_FE_HRS_HDR] = "frontend http-response header rule",
283 [SMP_CKP_FE_HRS_BDY] = "frontend http-response body rule",
284 [SMP_CKP_FE_LOG_END] = "logs",
285};
286
Thierry FOURNIER348971e2013-11-21 10:50:10 +0100287/* This function returns the type of the data returned by the sample_expr.
288 * It assumes that the <expr> and all of its converters are properly
289 * initialized.
290 */
291inline
292int smp_expr_output_type(struct sample_expr *expr)
293{
294 struct sample_conv_expr *smp_expr;
295
296 if (!LIST_ISEMPTY(&expr->conv_exprs)) {
297 smp_expr = LIST_PREV(&expr->conv_exprs, struct sample_conv_expr *, list);
298 return smp_expr->conv->out_type;
299 }
300 return expr->fetch->out_type;
301}
302
303
Willy Tarreau80aca902013-01-07 15:42:20 +0100304/* fill the trash with a comma-delimited list of source names for the <use> bit
305 * field which must be composed of a non-null set of SMP_USE_* flags. The return
306 * value is the pointer to the string in the trash buffer.
307 */
308const char *sample_src_names(unsigned int use)
309{
310 int bit;
311
312 trash.len = 0;
313 trash.str[0] = '\0';
314 for (bit = 0; bit < SMP_SRC_ENTRIES; bit++) {
315 if (!(use & ~((1 << bit) - 1)))
316 break; /* no more bits */
317
318 if (!(use & (1 << bit)))
319 continue; /* bit not set */
320
321 trash.len += snprintf(trash.str + trash.len, trash.size - trash.len, "%s%s",
322 (use & ((1 << bit) - 1)) ? "," : "",
323 fetch_src_names[bit]);
324 }
325 return trash.str;
326}
327
Willy Tarreaubf8e2512013-03-25 14:52:41 +0100328/* return a pointer to the correct sample checkpoint name, or "unknown" when
329 * the flags are invalid. Only the lowest bit is used, higher bits are ignored
330 * if set.
331 */
332const char *sample_ckp_names(unsigned int use)
333{
334 int bit;
335
336 for (bit = 0; bit < SMP_CKP_ENTRIES; bit++)
337 if (use & (1 << bit))
338 return fetch_ckp_names[bit];
339 return "unknown sample check place, please report this bug";
340}
341
Emeric Brun107ca302010-01-04 16:16:05 +0100342/*
Willy Tarreau80aca902013-01-07 15:42:20 +0100343 * Registers the sample fetch keyword list <kwl> as a list of valid keywords
344 * for next parsing sessions. The fetch keywords capabilities are also computed
345 * from their ->use field.
Emeric Brun107ca302010-01-04 16:16:05 +0100346 */
Willy Tarreau80aca902013-01-07 15:42:20 +0100347void sample_register_fetches(struct sample_fetch_kw_list *kwl)
Emeric Brun107ca302010-01-04 16:16:05 +0100348{
Willy Tarreau80aca902013-01-07 15:42:20 +0100349 struct sample_fetch *sf;
350 int bit;
351
352 for (sf = kwl->kw; sf->kw != NULL; sf++) {
353 for (bit = 0; bit < SMP_SRC_ENTRIES; bit++)
354 if (sf->use & (1 << bit))
355 sf->val |= fetch_cap[bit];
356 }
357 LIST_ADDQ(&sample_fetches.list, &kwl->list);
Emeric Brun107ca302010-01-04 16:16:05 +0100358}
359
360/*
Willy Tarreau12785782012-04-27 21:37:17 +0200361 * Registers the sample format coverstion keyword list <pckl> as a list of valid keywords for next
Emeric Brun107ca302010-01-04 16:16:05 +0100362 * parsing sessions.
363 */
Willy Tarreau12785782012-04-27 21:37:17 +0200364void sample_register_convs(struct sample_conv_kw_list *pckl)
Emeric Brun107ca302010-01-04 16:16:05 +0100365{
Willy Tarreau12785782012-04-27 21:37:17 +0200366 LIST_ADDQ(&sample_convs.list, &pckl->list);
Emeric Brun107ca302010-01-04 16:16:05 +0100367}
368
369/*
Willy Tarreau12785782012-04-27 21:37:17 +0200370 * Returns the pointer on sample fetch keyword structure identified by
Emeric Brun107ca302010-01-04 16:16:05 +0100371 * string of <len> in buffer <kw>.
372 *
373 */
Willy Tarreau12785782012-04-27 21:37:17 +0200374struct sample_fetch *find_sample_fetch(const char *kw, int len)
Emeric Brun107ca302010-01-04 16:16:05 +0100375{
376 int index;
Willy Tarreau12785782012-04-27 21:37:17 +0200377 struct sample_fetch_kw_list *kwl;
Emeric Brun107ca302010-01-04 16:16:05 +0100378
Willy Tarreau12785782012-04-27 21:37:17 +0200379 list_for_each_entry(kwl, &sample_fetches.list, list) {
Emeric Brun107ca302010-01-04 16:16:05 +0100380 for (index = 0; kwl->kw[index].kw != NULL; index++) {
381 if (strncmp(kwl->kw[index].kw, kw, len) == 0 &&
382 kwl->kw[index].kw[len] == '\0')
383 return &kwl->kw[index];
384 }
385 }
386 return NULL;
387}
388
Thierry FOURNIER4d9a1d12014-12-08 14:49:19 +0100389/* This fucntion browse the list of available saple fetch. <current> is
390 * the last used sample fetch. If it is the first call, it must set to NULL.
391 * <idx> is the index of the next sampleèfetch entry. It is used as private
392 * value. It is useles to initiate it.
393 *
394 * It returns always the newt fetch_sample entry, and NULL when the end of
395 * the list is reached.
396 */
397struct sample_fetch *sample_fetch_getnext(struct sample_fetch *current, int *idx)
398{
399 struct sample_fetch_kw_list *kwl;
400 struct sample_fetch *base;
401
402 if (!current) {
403 /* Get first kwl entry. */
404 kwl = LIST_NEXT(&sample_fetches.list, struct sample_fetch_kw_list *, list);
405 (*idx) = 0;
406 } else {
407 /* Get kwl corresponding to the curret entry. */
408 base = current + 1 - (*idx);
409 kwl = container_of(base, struct sample_fetch_kw_list, kw);
410 }
411
412 while (1) {
413
414 /* Check if kwl is the last entry. */
415 if (&kwl->list == &sample_fetches.list)
416 return NULL;
417
418 /* idx contain the next keyword. If it is available, return it. */
419 if (kwl->kw[*idx].kw) {
420 (*idx)++;
421 return &kwl->kw[(*idx)-1];
422 }
423
424 /* get next entry in the main list, and return NULL if the end is reached. */
425 kwl = LIST_NEXT(&kwl->list, struct sample_fetch_kw_list *, list);
426
427 /* Set index to 0, ans do one other loop. */
428 (*idx) = 0;
429 }
430}
431
Thierry FOURNIER8fd13762015-03-10 23:56:48 +0100432/* This function browses the list of available converters. <current> is
433 * the last used converter. If it is the first call, it must set to NULL.
434 * <idx> is the index of the next converter entry. It is used as private
435 * value. It is useless to initiate it.
436 *
437 * It returns always the next sample_conv entry, and NULL when the end of
438 * the list is reached.
439 */
440struct sample_conv *sample_conv_getnext(struct sample_conv *current, int *idx)
441{
442 struct sample_conv_kw_list *kwl;
443 struct sample_conv *base;
444
445 if (!current) {
446 /* Get first kwl entry. */
447 kwl = LIST_NEXT(&sample_convs.list, struct sample_conv_kw_list *, list);
448 (*idx) = 0;
449 } else {
450 /* Get kwl corresponding to the curret entry. */
451 base = current + 1 - (*idx);
452 kwl = container_of(base, struct sample_conv_kw_list, kw);
453 }
454
455 while (1) {
456 /* Check if kwl is the last entry. */
457 if (&kwl->list == &sample_convs.list)
458 return NULL;
459
460 /* idx contain the next keyword. If it is available, return it. */
461 if (kwl->kw[*idx].kw) {
462 (*idx)++;
463 return &kwl->kw[(*idx)-1];
464 }
465
466 /* get next entry in the main list, and return NULL if the end is reached. */
467 kwl = LIST_NEXT(&kwl->list, struct sample_conv_kw_list *, list);
468
469 /* Set index to 0, ans do one other loop. */
470 (*idx) = 0;
471 }
472}
473
Emeric Brun107ca302010-01-04 16:16:05 +0100474/*
Willy Tarreau12785782012-04-27 21:37:17 +0200475 * Returns the pointer on sample format conversion keyword structure identified by
Emeric Brun107ca302010-01-04 16:16:05 +0100476 * string of <len> in buffer <kw>.
477 *
478 */
Willy Tarreau12785782012-04-27 21:37:17 +0200479struct sample_conv *find_sample_conv(const char *kw, int len)
Emeric Brun107ca302010-01-04 16:16:05 +0100480{
481 int index;
Willy Tarreau12785782012-04-27 21:37:17 +0200482 struct sample_conv_kw_list *kwl;
Emeric Brun107ca302010-01-04 16:16:05 +0100483
Willy Tarreau12785782012-04-27 21:37:17 +0200484 list_for_each_entry(kwl, &sample_convs.list, list) {
Emeric Brun107ca302010-01-04 16:16:05 +0100485 for (index = 0; kwl->kw[index].kw != NULL; index++) {
486 if (strncmp(kwl->kw[index].kw, kw, len) == 0 &&
487 kwl->kw[index].kw[len] == '\0')
488 return &kwl->kw[index];
489 }
490 }
491 return NULL;
492}
493
Emeric Brun107ca302010-01-04 16:16:05 +0100494/******************************************************************/
Willy Tarreau12785782012-04-27 21:37:17 +0200495/* Sample casts functions */
Willy Tarreaub8c8f1f2012-04-23 22:38:26 +0200496/* Note: these functions do *NOT* set the output type on the */
497/* sample, the caller is responsible for doing this on return. */
Emeric Brun107ca302010-01-04 16:16:05 +0100498/******************************************************************/
499
Willy Tarreau342acb42012-04-23 22:03:39 +0200500static int c_ip2int(struct sample *smp)
Emeric Brun107ca302010-01-04 16:16:05 +0100501{
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +0200502 smp->data.sint = ntohl(smp->data.ipv4.s_addr);
503 smp->type = SMP_T_SINT;
Emeric Brun107ca302010-01-04 16:16:05 +0100504 return 1;
505}
506
Willy Tarreau342acb42012-04-23 22:03:39 +0200507static int c_ip2str(struct sample *smp)
Emeric Brun107ca302010-01-04 16:16:05 +0100508{
Willy Tarreau47ca5452012-12-23 20:22:19 +0100509 struct chunk *trash = get_trash_chunk();
Emeric Brun107ca302010-01-04 16:16:05 +0100510
Willy Tarreau342acb42012-04-23 22:03:39 +0200511 if (!inet_ntop(AF_INET, (void *)&smp->data.ipv4, trash->str, trash->size))
Emeric Brun107ca302010-01-04 16:16:05 +0100512 return 0;
513
514 trash->len = strlen(trash->str);
Willy Tarreau342acb42012-04-23 22:03:39 +0200515 smp->data.str = *trash;
Thierry FOURNIERb805f712013-11-26 20:47:54 +0100516 smp->type = SMP_T_STR;
Thierry FOURNIER7654c9f2013-12-17 00:20:33 +0100517 smp->flags &= ~SMP_F_CONST;
Emeric Brun107ca302010-01-04 16:16:05 +0100518
519 return 1;
520}
521
Willy Tarreau342acb42012-04-23 22:03:39 +0200522static int c_ip2ipv6(struct sample *smp)
David du Colombier4f92d322011-03-24 11:09:31 +0100523{
Willy Tarreau342acb42012-04-23 22:03:39 +0200524 v4tov6(&smp->data.ipv6, &smp->data.ipv4);
Thierry FOURNIERb805f712013-11-26 20:47:54 +0100525 smp->type = SMP_T_IPV6;
David du Colombier4f92d322011-03-24 11:09:31 +0100526 return 1;
527}
528
Willy Tarreau342acb42012-04-23 22:03:39 +0200529static int c_ipv62str(struct sample *smp)
David du Colombier4f92d322011-03-24 11:09:31 +0100530{
Willy Tarreau47ca5452012-12-23 20:22:19 +0100531 struct chunk *trash = get_trash_chunk();
David du Colombier4f92d322011-03-24 11:09:31 +0100532
Willy Tarreau342acb42012-04-23 22:03:39 +0200533 if (!inet_ntop(AF_INET6, (void *)&smp->data.ipv6, trash->str, trash->size))
David du Colombier4f92d322011-03-24 11:09:31 +0100534 return 0;
535
536 trash->len = strlen(trash->str);
Willy Tarreau342acb42012-04-23 22:03:39 +0200537 smp->data.str = *trash;
Thierry FOURNIERb805f712013-11-26 20:47:54 +0100538 smp->type = SMP_T_STR;
Thierry FOURNIER7654c9f2013-12-17 00:20:33 +0100539 smp->flags &= ~SMP_F_CONST;
David du Colombier4f92d322011-03-24 11:09:31 +0100540 return 1;
541}
542
543/*
Willy Tarreau342acb42012-04-23 22:03:39 +0200544static int c_ipv62ip(struct sample *smp)
David du Colombier4f92d322011-03-24 11:09:31 +0100545{
Willy Tarreau342acb42012-04-23 22:03:39 +0200546 return v6tov4(&smp->data.ipv4, &smp->data.ipv6);
David du Colombier4f92d322011-03-24 11:09:31 +0100547}
548*/
549
Willy Tarreau342acb42012-04-23 22:03:39 +0200550static int c_int2ip(struct sample *smp)
Emeric Brun107ca302010-01-04 16:16:05 +0100551{
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +0200552 smp->data.ipv4.s_addr = htonl((unsigned int)smp->data.sint);
Thierry FOURNIERb805f712013-11-26 20:47:54 +0100553 smp->type = SMP_T_IPV4;
Emeric Brun107ca302010-01-04 16:16:05 +0100554 return 1;
555}
556
Thierry FOURNIERb805f712013-11-26 20:47:54 +0100557static int c_str2addr(struct sample *smp)
558{
Thierry FOURNIERb805f712013-11-26 20:47:54 +0100559 if (!buf2ip(smp->data.str.str, smp->data.str.len, &smp->data.ipv4)) {
Thierry FOURNIERfd139902013-12-11 12:38:57 +0100560 if (!buf2ip6(smp->data.str.str, smp->data.str.len, &smp->data.ipv6))
561 return 0;
562 smp->type = SMP_T_IPV6;
Thierry FOURNIER7654c9f2013-12-17 00:20:33 +0100563 smp->flags &= ~SMP_F_CONST;
Thierry FOURNIERfd139902013-12-11 12:38:57 +0100564 return 1;
Thierry FOURNIERb805f712013-11-26 20:47:54 +0100565 }
566 smp->type = SMP_T_IPV4;
Thierry FOURNIER7654c9f2013-12-17 00:20:33 +0100567 smp->flags &= ~SMP_F_CONST;
Thierry FOURNIERb805f712013-11-26 20:47:54 +0100568 return 1;
569}
570
Willy Tarreau342acb42012-04-23 22:03:39 +0200571static int c_str2ip(struct sample *smp)
Emeric Brun107ca302010-01-04 16:16:05 +0100572{
Willy Tarreau342acb42012-04-23 22:03:39 +0200573 if (!buf2ip(smp->data.str.str, smp->data.str.len, &smp->data.ipv4))
Emeric Brun107ca302010-01-04 16:16:05 +0100574 return 0;
Thierry FOURNIERb805f712013-11-26 20:47:54 +0100575 smp->type = SMP_T_IPV4;
Thierry FOURNIER7654c9f2013-12-17 00:20:33 +0100576 smp->flags &= ~SMP_F_CONST;
Emeric Brun107ca302010-01-04 16:16:05 +0100577 return 1;
578}
579
Willy Tarreau342acb42012-04-23 22:03:39 +0200580static int c_str2ipv6(struct sample *smp)
David du Colombier4f92d322011-03-24 11:09:31 +0100581{
Thierry FOURNIERfd139902013-12-11 12:38:57 +0100582 if (!buf2ip6(smp->data.str.str, smp->data.str.len, &smp->data.ipv6))
583 return 0;
584 smp->type = SMP_T_IPV6;
Thierry FOURNIER7654c9f2013-12-17 00:20:33 +0100585 smp->flags &= ~SMP_F_CONST;
Thierry FOURNIERfd139902013-12-11 12:38:57 +0100586 return 1;
David du Colombier4f92d322011-03-24 11:09:31 +0100587}
588
Emeric Brun4b9e8022014-11-03 18:17:10 +0100589/*
590 * The NULL char always enforces the end of string if it is met.
591 * Data is never changed, so we can ignore the CONST case
Thierry FOURNIERe87cac12014-03-12 15:07:59 +0100592 */
Emeric Brun8ac33d92012-10-17 13:36:06 +0200593static int c_bin2str(struct sample *smp)
594{
Emeric Brun4b9e8022014-11-03 18:17:10 +0100595 int i;
Emeric Brun8ac33d92012-10-17 13:36:06 +0200596
Emeric Brun4b9e8022014-11-03 18:17:10 +0100597 for (i = 0; i < smp->data.str.len; i++) {
598 if (!smp->data.str.str[i]) {
599 smp->data.str.len = i;
Thierry FOURNIERe87cac12014-03-12 15:07:59 +0100600 break;
Emeric Brun4b9e8022014-11-03 18:17:10 +0100601 }
Emeric Brun8ac33d92012-10-17 13:36:06 +0200602 }
Emeric Brun8ac33d92012-10-17 13:36:06 +0200603 return 1;
604}
605
Willy Tarreau342acb42012-04-23 22:03:39 +0200606static int c_int2str(struct sample *smp)
Emeric Brun107ca302010-01-04 16:16:05 +0100607{
Willy Tarreau47ca5452012-12-23 20:22:19 +0100608 struct chunk *trash = get_trash_chunk();
Emeric Brun107ca302010-01-04 16:16:05 +0100609 char *pos;
610
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +0200611 pos = lltoa_r(smp->data.sint, trash->str, trash->size);
Emeric Brun107ca302010-01-04 16:16:05 +0100612 if (!pos)
613 return 0;
614
Emeric Brun485479d2010-09-23 18:02:19 +0200615 trash->size = trash->size - (pos - trash->str);
Emeric Brun107ca302010-01-04 16:16:05 +0100616 trash->str = pos;
617 trash->len = strlen(pos);
Willy Tarreau342acb42012-04-23 22:03:39 +0200618 smp->data.str = *trash;
Thierry FOURNIERb805f712013-11-26 20:47:54 +0100619 smp->type = SMP_T_STR;
Thierry FOURNIER7654c9f2013-12-17 00:20:33 +0100620 smp->flags &= ~SMP_F_CONST;
Emeric Brun107ca302010-01-04 16:16:05 +0100621 return 1;
622}
623
Thierry FOURNIER7654c9f2013-12-17 00:20:33 +0100624/* This function duplicates data and removes the flag "const". */
625int smp_dup(struct sample *smp)
Emeric Brun485479d2010-09-23 18:02:19 +0200626{
Thierry FOURNIER7654c9f2013-12-17 00:20:33 +0100627 struct chunk *trash;
Emeric Brun485479d2010-09-23 18:02:19 +0200628
Thierry FOURNIER7654c9f2013-12-17 00:20:33 +0100629 /* If the const flag is not set, we don't need to duplicate the
630 * pattern as it can be modified in place.
631 */
632 if (!(smp->flags & SMP_F_CONST))
633 return 1;
Thierry FOURNIERb805f712013-11-26 20:47:54 +0100634
Thierry FOURNIER7654c9f2013-12-17 00:20:33 +0100635 switch (smp->type) {
636 case SMP_T_BOOL:
Thierry FOURNIER7654c9f2013-12-17 00:20:33 +0100637 case SMP_T_SINT:
638 case SMP_T_ADDR:
639 case SMP_T_IPV4:
640 case SMP_T_IPV6:
641 /* These type are not const. */
642 break;
643 case SMP_T_STR:
644 case SMP_T_BIN:
645 /* Duplicate data. */
646 trash = get_trash_chunk();
647 trash->len = smp->data.str.len < trash->size ? smp->data.str.len : trash->size;
648 memcpy(trash->str, smp->data.str.str, trash->len);
649 smp->data.str = *trash;
650 break;
651 default:
652 /* Other cases are unexpected. */
653 return 0;
654 }
Thierry FOURNIERb805f712013-11-26 20:47:54 +0100655
Thierry FOURNIER7654c9f2013-12-17 00:20:33 +0100656 /* remove const flag */
657 smp->flags &= ~SMP_F_CONST;
Emeric Brun485479d2010-09-23 18:02:19 +0200658 return 1;
659}
660
Thierry FOURNIER0e9af552013-12-14 14:55:04 +0100661int c_none(struct sample *smp)
Emeric Brun107ca302010-01-04 16:16:05 +0100662{
663 return 1;
664}
665
Willy Tarreau342acb42012-04-23 22:03:39 +0200666static int c_str2int(struct sample *smp)
Emeric Brun107ca302010-01-04 16:16:05 +0100667{
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +0200668 const char *str;
669 const char *end;
Emeric Brun107ca302010-01-04 16:16:05 +0100670
Thierry FOURNIER60bb0202014-01-27 18:20:48 +0100671 if (smp->data.str.len == 0)
672 return 0;
673
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +0200674 str = smp->data.str.str;
675 end = smp->data.str.str + smp->data.str.len;
Emeric Brun107ca302010-01-04 16:16:05 +0100676
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +0200677 smp->data.sint = read_int64(&str, end);
678 smp->type = SMP_T_SINT;
Thierry FOURNIER7654c9f2013-12-17 00:20:33 +0100679 smp->flags &= ~SMP_F_CONST;
Emeric Brun107ca302010-01-04 16:16:05 +0100680 return 1;
681}
682
Thierry FOURNIERd4373142013-12-17 01:10:10 +0100683static int c_str2meth(struct sample *smp)
684{
685 enum http_meth_t meth;
686 int len;
687
688 meth = find_http_meth(smp->data.str.str, smp->data.str.len);
689 if (meth == HTTP_METH_OTHER) {
690 len = smp->data.str.len;
691 smp->data.meth.str.str = smp->data.str.str;
692 smp->data.meth.str.len = len;
693 }
694 else
695 smp->flags &= ~SMP_F_CONST;
696 smp->data.meth.meth = meth;
697 smp->type = SMP_T_METH;
698 return 1;
699}
700
701static int c_meth2str(struct sample *smp)
702{
703 int len;
704 enum http_meth_t meth;
705
706 if (smp->data.meth.meth == HTTP_METH_OTHER) {
707 /* The method is unknown. Copy the original pointer. */
708 len = smp->data.meth.str.len;
709 smp->data.str.str = smp->data.meth.str.str;
710 smp->data.str.len = len;
711 smp->type = SMP_T_STR;
712 }
713 else if (smp->data.meth.meth < HTTP_METH_OTHER) {
714 /* The method is known, copy the pointer containing the string. */
715 meth = smp->data.meth.meth;
716 smp->data.str.str = http_known_methods[meth].name;
717 smp->data.str.len = http_known_methods[meth].len;
718 smp->flags |= SMP_F_CONST;
719 smp->type = SMP_T_STR;
720 }
721 else {
722 /* Unknown method */
723 return 0;
724 }
725 return 1;
726}
727
Willy Tarreau9700e5c2014-07-15 21:03:26 +0200728static int c_addr2bin(struct sample *smp)
729{
730 struct chunk *chk = get_trash_chunk();
731
732 if (smp->type == SMP_T_IPV4) {
733 chk->len = 4;
734 memcpy(chk->str, &smp->data.ipv4, chk->len);
735 }
736 else if (smp->type == SMP_T_IPV6) {
737 chk->len = 16;
738 memcpy(chk->str, &smp->data.ipv6, chk->len);
739 }
740 else
741 return 0;
742
743 smp->data.str = *chk;
744 smp->type = SMP_T_BIN;
745 return 1;
746}
747
Willy Tarreaubbfd1a22014-07-15 21:19:08 +0200748static int c_int2bin(struct sample *smp)
749{
750 struct chunk *chk = get_trash_chunk();
751
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +0200752 *(unsigned long long int *)chk->str = htonll(smp->data.sint);
753 chk->len = 8;
Willy Tarreaubbfd1a22014-07-15 21:19:08 +0200754
755 smp->data.str = *chk;
756 smp->type = SMP_T_BIN;
757 return 1;
758}
759
Willy Tarreau9700e5c2014-07-15 21:03:26 +0200760
Emeric Brun107ca302010-01-04 16:16:05 +0100761/*****************************************************************/
Willy Tarreau12785782012-04-27 21:37:17 +0200762/* Sample casts matrix: */
763/* sample_casts[from type][to type] */
764/* NULL pointer used for impossible sample casts */
Emeric Brun107ca302010-01-04 16:16:05 +0100765/*****************************************************************/
Emeric Brun107ca302010-01-04 16:16:05 +0100766
Thierry FOURNIER8af6ff12013-11-21 10:53:12 +0100767sample_cast_fct sample_casts[SMP_TYPES][SMP_TYPES] = {
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +0200768/* to: ANY BOOL SINT ADDR IPV4 IPV6 STR BIN METH */
769/* from: ANY */ { c_none, c_none, c_none, c_none, c_none, c_none, c_none, c_none, c_none, },
770/* BOOL */ { c_none, c_none, c_none, NULL, NULL, NULL, c_int2str, NULL, NULL, },
771/* SINT */ { c_none, c_none, c_none, c_int2ip, c_int2ip, NULL, c_int2str, c_int2bin, NULL, },
772/* ADDR */ { c_none, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, },
773/* IPV4 */ { c_none, NULL, c_ip2int, c_none, c_none, c_ip2ipv6, c_ip2str, c_addr2bin, NULL, },
774/* IPV6 */ { c_none, NULL, NULL, c_none, NULL, c_none, c_ipv62str, c_addr2bin, NULL, },
775/* STR */ { c_none, c_str2int, c_str2int, c_str2addr, c_str2ip, c_str2ipv6, c_none, c_none, c_str2meth, },
776/* BIN */ { c_none, NULL, NULL, NULL, NULL, NULL, c_bin2str, c_none, c_str2meth, },
777/* METH */ { c_none, NULL, NULL, NULL, NULL, NULL, c_meth2str, c_meth2str, c_none, }
Willy Tarreauf0b38bf2010-06-06 13:22:23 +0200778};
Emeric Brun107ca302010-01-04 16:16:05 +0100779
Emeric Brun107ca302010-01-04 16:16:05 +0100780/*
Willy Tarreau12785782012-04-27 21:37:17 +0200781 * Parse a sample expression configuration:
Emeric Brun107ca302010-01-04 16:16:05 +0100782 * fetch keyword followed by format conversion keywords.
Willy Tarreau12785782012-04-27 21:37:17 +0200783 * Returns a pointer on allocated sample expression structure.
Willy Tarreaua4312fa2013-04-02 16:34:32 +0200784 * The caller must have set al->ctx.
Emeric Brun107ca302010-01-04 16:16:05 +0100785 */
Thierry FOURNIEReeaa9512014-02-11 14:00:19 +0100786struct sample_expr *sample_parse_expr(char **str, int *idx, const char *file, int line, char **err_msg, struct arg_list *al)
Emeric Brun107ca302010-01-04 16:16:05 +0100787{
Willy Tarreau833cc792013-07-24 15:34:19 +0200788 const char *begw; /* beginning of word */
789 const char *endw; /* end of word */
790 const char *endt; /* end of term */
Willy Tarreau12785782012-04-27 21:37:17 +0200791 struct sample_expr *expr;
792 struct sample_fetch *fetch;
793 struct sample_conv *conv;
Emeric Brun107ca302010-01-04 16:16:05 +0100794 unsigned long prev_type;
Willy Tarreau833cc792013-07-24 15:34:19 +0200795 char *fkw = NULL;
796 char *ckw = NULL;
Willy Tarreau689a1df2013-12-13 00:40:11 +0100797 int err_arg;
Emeric Brun107ca302010-01-04 16:16:05 +0100798
Willy Tarreau833cc792013-07-24 15:34:19 +0200799 begw = str[*idx];
800 for (endw = begw; *endw && *endw != '(' && *endw != ','; endw++);
801
802 if (endw == begw) {
Willy Tarreau975c1782013-12-12 23:16:54 +0100803 memprintf(err_msg, "missing fetch method");
Emeric Brun107ca302010-01-04 16:16:05 +0100804 goto out_error;
Emeric Brun485479d2010-09-23 18:02:19 +0200805 }
Emeric Brun107ca302010-01-04 16:16:05 +0100806
Willy Tarreau833cc792013-07-24 15:34:19 +0200807 /* keep a copy of the current fetch keyword for error reporting */
808 fkw = my_strndup(begw, endw - begw);
Emeric Brun107ca302010-01-04 16:16:05 +0100809
Willy Tarreau833cc792013-07-24 15:34:19 +0200810 fetch = find_sample_fetch(begw, endw - begw);
811 if (!fetch) {
Willy Tarreau975c1782013-12-12 23:16:54 +0100812 memprintf(err_msg, "unknown fetch method '%s'", fkw);
Emeric Brun107ca302010-01-04 16:16:05 +0100813 goto out_error;
Emeric Brun485479d2010-09-23 18:02:19 +0200814 }
Emeric Brun107ca302010-01-04 16:16:05 +0100815
Willy Tarreau833cc792013-07-24 15:34:19 +0200816 endt = endw;
817 if (*endt == '(') {
Willy Tarreau689a1df2013-12-13 00:40:11 +0100818 /* look for the end of this term and skip the opening parenthesis */
819 endt = ++endw;
Willy Tarreau833cc792013-07-24 15:34:19 +0200820 while (*endt && *endt != ')')
821 endt++;
822 if (*endt != ')') {
Willy Tarreau975c1782013-12-12 23:16:54 +0100823 memprintf(err_msg, "missing closing ')' after arguments to fetch keyword '%s'", fkw);
Willy Tarreau833cc792013-07-24 15:34:19 +0200824 goto out_error;
Emeric Brun485479d2010-09-23 18:02:19 +0200825 }
Emeric Brun485479d2010-09-23 18:02:19 +0200826 }
Emeric Brun107ca302010-01-04 16:16:05 +0100827
Willy Tarreau833cc792013-07-24 15:34:19 +0200828 /* At this point, we have :
829 * - begw : beginning of the keyword
Willy Tarreau689a1df2013-12-13 00:40:11 +0100830 * - endw : end of the keyword, first character not part of keyword
831 * nor the opening parenthesis (so first character of args
832 * if present).
Willy Tarreau833cc792013-07-24 15:34:19 +0200833 * - endt : end of the term (=endw or last parenthesis if args are present)
834 */
835
836 if (fetch->out_type >= SMP_TYPES) {
Willy Tarreau975c1782013-12-12 23:16:54 +0100837 memprintf(err_msg, "returns type of fetch method '%s' is unknown", fkw);
Emeric Brun107ca302010-01-04 16:16:05 +0100838 goto out_error;
Emeric Brun485479d2010-09-23 18:02:19 +0200839 }
Emeric Brun107ca302010-01-04 16:16:05 +0100840 prev_type = fetch->out_type;
Willy Tarreau833cc792013-07-24 15:34:19 +0200841
Willy Tarreau12785782012-04-27 21:37:17 +0200842 expr = calloc(1, sizeof(struct sample_expr));
Emeric Brun485479d2010-09-23 18:02:19 +0200843 if (!expr)
844 goto out_error;
Emeric Brun107ca302010-01-04 16:16:05 +0100845
846 LIST_INIT(&(expr->conv_exprs));
847 expr->fetch = fetch;
Willy Tarreau2e845be2012-10-19 19:49:09 +0200848 expr->arg_p = empty_arg_list;
Emeric Brun107ca302010-01-04 16:16:05 +0100849
Willy Tarreau689a1df2013-12-13 00:40:11 +0100850 /* Note that we call the argument parser even with an empty string,
851 * this allows it to automatically create entries for mandatory
852 * implicit arguments (eg: local proxy name).
853 */
854 al->kw = expr->fetch->kw;
855 al->conv = NULL;
856 if (make_arg_list(endw, endt - endw, fetch->arg_mask, &expr->arg_p, err_msg, NULL, &err_arg, al) < 0) {
857 memprintf(err_msg, "fetch method '%s' : %s", fkw, *err_msg);
858 goto out_error;
859 }
Willy Tarreau2e845be2012-10-19 19:49:09 +0200860
Willy Tarreau689a1df2013-12-13 00:40:11 +0100861 if (!expr->arg_p) {
862 expr->arg_p = empty_arg_list;
Emeric Brun485479d2010-09-23 18:02:19 +0200863 }
Willy Tarreau689a1df2013-12-13 00:40:11 +0100864 else if (fetch->val_args && !fetch->val_args(expr->arg_p, err_msg)) {
865 memprintf(err_msg, "invalid args in fetch method '%s' : %s", fkw, *err_msg);
Emeric Brun485479d2010-09-23 18:02:19 +0200866 goto out_error;
Emeric Brun107ca302010-01-04 16:16:05 +0100867 }
868
Willy Tarreau833cc792013-07-24 15:34:19 +0200869 /* Now process the converters if any. We have two supported syntaxes
870 * for the converters, which can be combined :
871 * - comma-delimited list of converters just after the keyword and args ;
872 * - one converter per keyword
873 * The combination allows to have each keyword being a comma-delimited
874 * series of converters.
875 *
876 * We want to process the former first, then the latter. For this we start
877 * from the beginning of the supposed place in the exiting conv chain, which
878 * starts at the last comma (endt).
879 */
880
881 while (1) {
Willy Tarreau12785782012-04-27 21:37:17 +0200882 struct sample_conv_expr *conv_expr;
Emeric Brun107ca302010-01-04 16:16:05 +0100883
Willy Tarreau833cc792013-07-24 15:34:19 +0200884 if (*endt == ')') /* skip last closing parenthesis */
885 endt++;
Emeric Brun107ca302010-01-04 16:16:05 +0100886
Willy Tarreau833cc792013-07-24 15:34:19 +0200887 if (*endt && *endt != ',') {
888 if (ckw)
Willy Tarreau975c1782013-12-12 23:16:54 +0100889 memprintf(err_msg, "missing comma after conv keyword '%s'", ckw);
Willy Tarreau833cc792013-07-24 15:34:19 +0200890 else
Willy Tarreau975c1782013-12-12 23:16:54 +0100891 memprintf(err_msg, "missing comma after fetch keyword '%s'", fkw);
Emeric Brun107ca302010-01-04 16:16:05 +0100892 goto out_error;
Emeric Brun485479d2010-09-23 18:02:19 +0200893 }
Emeric Brun107ca302010-01-04 16:16:05 +0100894
Willy Tarreau833cc792013-07-24 15:34:19 +0200895 while (*endt == ',') /* then trailing commas */
896 endt++;
897
898 begw = endt; /* start of conv keyword */
899
900 if (!*begw) {
901 /* none ? skip to next string */
902 (*idx)++;
903 begw = str[*idx];
904 if (!begw || !*begw)
905 break;
906 }
907
908 for (endw = begw; *endw && *endw != '(' && *endw != ','; endw++);
909
910 free(ckw);
911 ckw = my_strndup(begw, endw - begw);
912
913 conv = find_sample_conv(begw, endw - begw);
914 if (!conv) {
915 /* we found an isolated keyword that we don't know, it's not ours */
916 if (begw == str[*idx])
917 break;
Willy Tarreau975c1782013-12-12 23:16:54 +0100918 memprintf(err_msg, "unknown conv method '%s'", ckw);
Willy Tarreau833cc792013-07-24 15:34:19 +0200919 goto out_error;
920 }
Emeric Brun107ca302010-01-04 16:16:05 +0100921
Willy Tarreau833cc792013-07-24 15:34:19 +0200922 endt = endw;
923 if (*endt == '(') {
924 /* look for the end of this term */
925 while (*endt && *endt != ')')
926 endt++;
927 if (*endt != ')') {
Willy Tarreau975c1782013-12-12 23:16:54 +0100928 memprintf(err_msg, "syntax error: missing ')' after conv keyword '%s'", ckw);
Willy Tarreau833cc792013-07-24 15:34:19 +0200929 goto out_error;
Emeric Brun485479d2010-09-23 18:02:19 +0200930 }
Willy Tarreau833cc792013-07-24 15:34:19 +0200931 }
932
933 if (conv->in_type >= SMP_TYPES || conv->out_type >= SMP_TYPES) {
Willy Tarreau975c1782013-12-12 23:16:54 +0100934 memprintf(err_msg, "returns type of conv method '%s' is unknown", ckw);
Emeric Brun107ca302010-01-04 16:16:05 +0100935 goto out_error;
Emeric Brun485479d2010-09-23 18:02:19 +0200936 }
Emeric Brun107ca302010-01-04 16:16:05 +0100937
938 /* If impossible type conversion */
Willy Tarreau12785782012-04-27 21:37:17 +0200939 if (!sample_casts[prev_type][conv->in_type]) {
Willy Tarreau975c1782013-12-12 23:16:54 +0100940 memprintf(err_msg, "conv method '%s' cannot be applied", ckw);
Emeric Brun107ca302010-01-04 16:16:05 +0100941 goto out_error;
Emeric Brun485479d2010-09-23 18:02:19 +0200942 }
Emeric Brun107ca302010-01-04 16:16:05 +0100943
944 prev_type = conv->out_type;
Willy Tarreau12785782012-04-27 21:37:17 +0200945 conv_expr = calloc(1, sizeof(struct sample_conv_expr));
Emeric Brun485479d2010-09-23 18:02:19 +0200946 if (!conv_expr)
947 goto out_error;
Emeric Brun107ca302010-01-04 16:16:05 +0100948
949 LIST_ADDQ(&(expr->conv_exprs), &(conv_expr->list));
950 conv_expr->conv = conv;
951
Willy Tarreau833cc792013-07-24 15:34:19 +0200952 if (endt != endw) {
Willy Tarreaub27c0d32012-04-20 16:04:47 +0200953 int err_arg;
Willy Tarreau21d68a62012-04-20 15:52:36 +0200954
Willy Tarreau9fcb9842012-04-20 14:45:49 +0200955 if (!conv->arg_mask) {
Willy Tarreau975c1782013-12-12 23:16:54 +0100956 memprintf(err_msg, "conv method '%s' does not support any args", ckw);
Emeric Brun485479d2010-09-23 18:02:19 +0200957 goto out_error;
958 }
Willy Tarreau9e92d322010-01-26 17:58:06 +0100959
Willy Tarreaua4312fa2013-04-02 16:34:32 +0200960 al->kw = expr->fetch->kw;
961 al->conv = conv_expr->conv->kw;
Willy Tarreau975c1782013-12-12 23:16:54 +0100962 if (make_arg_list(endw + 1, endt - endw - 1, conv->arg_mask, &conv_expr->arg_p, err_msg, NULL, &err_arg, al) < 0) {
963 memprintf(err_msg, "invalid arg %d in conv method '%s' : %s", err_arg+1, ckw, *err_msg);
Willy Tarreau21d68a62012-04-20 15:52:36 +0200964 goto out_error;
965 }
966
Willy Tarreau2e845be2012-10-19 19:49:09 +0200967 if (!conv_expr->arg_p)
968 conv_expr->arg_p = empty_arg_list;
969
Thierry FOURNIEReeaa9512014-02-11 14:00:19 +0100970 if (conv->val_args && !conv->val_args(conv_expr->arg_p, conv, file, line, err_msg)) {
Willy Tarreau975c1782013-12-12 23:16:54 +0100971 memprintf(err_msg, "invalid args in conv method '%s' : %s", ckw, *err_msg);
Emeric Brun485479d2010-09-23 18:02:19 +0200972 goto out_error;
973 }
974 }
Willy Tarreau833cc792013-07-24 15:34:19 +0200975 else if (ARGM(conv->arg_mask)) {
Willy Tarreau975c1782013-12-12 23:16:54 +0100976 memprintf(err_msg, "missing args for conv method '%s'", ckw);
Emeric Brun485479d2010-09-23 18:02:19 +0200977 goto out_error;
Emeric Brun107ca302010-01-04 16:16:05 +0100978 }
979 }
Emeric Brun485479d2010-09-23 18:02:19 +0200980
Willy Tarreau833cc792013-07-24 15:34:19 +0200981 out:
982 free(fkw);
983 free(ckw);
Emeric Brun107ca302010-01-04 16:16:05 +0100984 return expr;
985
986out_error:
Willy Tarreau12785782012-04-27 21:37:17 +0200987 /* TODO: prune_sample_expr(expr); */
Willy Tarreau833cc792013-07-24 15:34:19 +0200988 expr = NULL;
989 goto out;
Emeric Brun107ca302010-01-04 16:16:05 +0100990}
991
992/*
Willy Tarreau12785782012-04-27 21:37:17 +0200993 * Process a fetch + format conversion of defined by the sample expression <expr>
Willy Tarreau32a6f2e2012-04-25 10:13:36 +0200994 * on request or response considering the <opt> parameter.
Willy Tarreau12785782012-04-27 21:37:17 +0200995 * Returns a pointer on a typed sample structure containing the result or NULL if
996 * sample is not found or when format conversion failed.
Emeric Brun107ca302010-01-04 16:16:05 +0100997 * If <p> is not null, function returns results in structure pointed by <p>.
Willy Tarreau12785782012-04-27 21:37:17 +0200998 * If <p> is null, functions returns a pointer on a static sample structure.
Willy Tarreaub8c8f1f2012-04-23 22:38:26 +0200999 *
1000 * Note: the fetch functions are required to properly set the return type. The
1001 * conversion functions must do so too. However the cast functions do not need
1002 * to since they're made to cast mutiple types according to what is required.
Willy Tarreau6bcb0a82014-07-30 08:56:35 +02001003 *
1004 * The caller may indicate in <opt> if it considers the result final or not.
1005 * The caller needs to check the SMP_F_MAY_CHANGE flag in p->flags to verify
1006 * if the result is stable or not, according to the following table :
1007 *
1008 * return MAY_CHANGE FINAL Meaning for the sample
1009 * NULL 0 * Not present and will never be (eg: header)
1010 * NULL 1 0 Not present yet, could change (eg: POST param)
1011 * NULL 1 1 Not present yet, will not change anymore
1012 * smp 0 * Present and will not change (eg: header)
1013 * smp 1 0 Present, may change (eg: request length)
1014 * smp 1 1 Present, last known value (eg: request length)
Emeric Brun107ca302010-01-04 16:16:05 +01001015 */
Willy Tarreau192252e2015-04-04 01:47:55 +02001016struct sample *sample_process(struct proxy *px, struct session *sess,
1017 struct stream *strm, unsigned int opt,
Willy Tarreau12785782012-04-27 21:37:17 +02001018 struct sample_expr *expr, struct sample *p)
Emeric Brun107ca302010-01-04 16:16:05 +01001019{
Willy Tarreau12785782012-04-27 21:37:17 +02001020 struct sample_conv_expr *conv_expr;
Emeric Brun107ca302010-01-04 16:16:05 +01001021
Willy Tarreau18387e22013-07-25 12:02:38 +02001022 if (p == NULL) {
Willy Tarreaub4a88f02012-04-23 21:35:11 +02001023 p = &temp_smp;
Willy Tarreau6c616e02014-06-25 16:56:41 +02001024 memset(p, 0, sizeof(*p));
Willy Tarreau18387e22013-07-25 12:02:38 +02001025 }
Emeric Brun107ca302010-01-04 16:16:05 +01001026
Thierry FOURNIER6879ad32015-05-11 11:54:58 +02001027 p->px = px;
1028 p->sess = sess;
1029 p->strm = strm;
Thierry FOURNIER1d33b882015-05-11 15:25:29 +02001030 p->opt = opt;
Thierry FOURNIER0786d052015-05-11 15:42:45 +02001031 if (!expr->fetch->process(expr->arg_p, p, expr->fetch->kw, expr->fetch->private))
Emeric Brun107ca302010-01-04 16:16:05 +01001032 return NULL;
1033
Emeric Brun107ca302010-01-04 16:16:05 +01001034 list_for_each_entry(conv_expr, &expr->conv_exprs, list) {
Willy Tarreau12e50112012-04-25 17:21:49 +02001035 /* we want to ensure that p->type can be casted into
1036 * conv_expr->conv->in_type. We have 3 possibilities :
1037 * - NULL => not castable.
1038 * - c_none => nothing to do (let's optimize it)
1039 * - other => apply cast and prepare to fail
1040 */
Willy Tarreau12785782012-04-27 21:37:17 +02001041 if (!sample_casts[p->type][conv_expr->conv->in_type])
Willy Tarreau12e50112012-04-25 17:21:49 +02001042 return NULL;
1043
Willy Tarreau12785782012-04-27 21:37:17 +02001044 if (sample_casts[p->type][conv_expr->conv->in_type] != c_none &&
1045 !sample_casts[p->type][conv_expr->conv->in_type](p))
Emeric Brun107ca302010-01-04 16:16:05 +01001046 return NULL;
1047
Willy Tarreau12e50112012-04-25 17:21:49 +02001048 /* OK cast succeeded */
1049
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02001050 if (!conv_expr->conv->process(conv_expr->arg_p, p, conv_expr->conv->private))
Emeric Brun107ca302010-01-04 16:16:05 +01001051 return NULL;
Emeric Brun107ca302010-01-04 16:16:05 +01001052 }
1053 return p;
1054}
1055
Willy Tarreaue7ad4bb2012-12-21 00:02:32 +01001056/*
Willy Tarreaua4312fa2013-04-02 16:34:32 +02001057 * Resolve all remaining arguments in proxy <p>. Returns the number of
1058 * errors or 0 if everything is fine.
1059 */
1060int smp_resolve_args(struct proxy *p)
1061{
1062 struct arg_list *cur, *bak;
1063 const char *ctx, *where;
1064 const char *conv_ctx, *conv_pre, *conv_pos;
1065 struct userlist *ul;
Willy Tarreau46947782015-01-19 19:00:58 +01001066 struct my_regex *reg;
Willy Tarreaua4312fa2013-04-02 16:34:32 +02001067 struct arg *arg;
1068 int cfgerr = 0;
Willy Tarreau46947782015-01-19 19:00:58 +01001069 int rflags;
Willy Tarreaua4312fa2013-04-02 16:34:32 +02001070
1071 list_for_each_entry_safe(cur, bak, &p->conf.args.list, list) {
1072 struct proxy *px;
1073 struct server *srv;
1074 char *pname, *sname;
Willy Tarreau46947782015-01-19 19:00:58 +01001075 char *err;
Willy Tarreaua4312fa2013-04-02 16:34:32 +02001076
1077 arg = cur->arg;
1078
1079 /* prepare output messages */
1080 conv_pre = conv_pos = conv_ctx = "";
1081 if (cur->conv) {
1082 conv_ctx = cur->conv;
1083 conv_pre = "conversion keyword '";
1084 conv_pos = "' for ";
1085 }
1086
1087 where = "in";
1088 ctx = "sample fetch keyword";
1089 switch (cur->ctx) {
Willy Tarreau46947782015-01-19 19:00:58 +01001090 case ARGC_STK: where = "in stick rule in"; break;
Willy Tarreaua4312fa2013-04-02 16:34:32 +02001091 case ARGC_TRK: where = "in tracking rule in"; break;
1092 case ARGC_LOG: where = "in log-format string in"; break;
Thierry FOURNIER1c0054f2013-11-20 15:09:52 +01001093 case ARGC_HRQ: where = "in http-request header format string in"; break;
1094 case ARGC_HRS: where = "in http-response header format string in"; break;
Willy Tarreaua4312fa2013-04-02 16:34:32 +02001095 case ARGC_UIF: where = "in unique-id-format string in"; break;
Thierry FOURNIERd18cd0f2013-11-29 12:15:45 +01001096 case ARGC_RDR: where = "in redirect format string in"; break;
Willy Tarreau3a4ac422014-06-13 16:17:14 +02001097 case ARGC_CAP: where = "in capture rule in"; break;
Willy Tarreaua4312fa2013-04-02 16:34:32 +02001098 case ARGC_ACL: ctx = "ACL keyword"; break;
Willy Tarreau28d976d2015-07-09 11:39:33 +02001099 case ARGC_SRV: where = "in server directive in"; break;
Willy Tarreaua4312fa2013-04-02 16:34:32 +02001100 }
1101
1102 /* set a few default settings */
1103 px = p;
1104 pname = p->id;
1105
1106 switch (arg->type) {
1107 case ARGT_SRV:
1108 if (!arg->data.str.len) {
1109 Alert("parsing [%s:%d] : missing server name in arg %d of %s%s%s%s '%s' %s proxy '%s'.\n",
1110 cur->file, cur->line,
1111 cur->arg_pos + 1, conv_pre, conv_ctx, conv_pos, ctx, cur->kw, where, p->id);
1112 cfgerr++;
1113 continue;
1114 }
1115
1116 /* we support two formats : "bck/srv" and "srv" */
1117 sname = strrchr(arg->data.str.str, '/');
1118
1119 if (sname) {
1120 *sname++ = '\0';
1121 pname = arg->data.str.str;
1122
Willy Tarreau9e0bb102015-05-26 11:24:42 +02001123 px = proxy_be_by_name(pname);
Willy Tarreaua4312fa2013-04-02 16:34:32 +02001124 if (!px) {
1125 Alert("parsing [%s:%d] : unable to find proxy '%s' referenced in arg %d of %s%s%s%s '%s' %s proxy '%s'.\n",
1126 cur->file, cur->line, pname,
1127 cur->arg_pos + 1, conv_pre, conv_ctx, conv_pos, ctx, cur->kw, where, p->id);
1128 cfgerr++;
1129 break;
1130 }
1131 }
1132 else
1133 sname = arg->data.str.str;
1134
1135 srv = findserver(px, sname);
1136 if (!srv) {
1137 Alert("parsing [%s:%d] : unable to find server '%s' in proxy '%s', referenced in arg %d of %s%s%s%s '%s' %s proxy '%s'.\n",
1138 cur->file, cur->line, sname, pname,
1139 cur->arg_pos + 1, conv_pre, conv_ctx, conv_pos, ctx, cur->kw, where, p->id);
1140 cfgerr++;
1141 break;
1142 }
1143
1144 free(arg->data.str.str);
1145 arg->data.str.str = NULL;
1146 arg->unresolved = 0;
1147 arg->data.srv = srv;
1148 break;
1149
1150 case ARGT_FE:
1151 if (arg->data.str.len) {
1152 pname = arg->data.str.str;
Willy Tarreau9e0bb102015-05-26 11:24:42 +02001153 px = proxy_fe_by_name(pname);
Willy Tarreaua4312fa2013-04-02 16:34:32 +02001154 }
1155
1156 if (!px) {
1157 Alert("parsing [%s:%d] : unable to find frontend '%s' referenced in arg %d of %s%s%s%s '%s' %s proxy '%s'.\n",
1158 cur->file, cur->line, pname,
1159 cur->arg_pos + 1, conv_pre, conv_ctx, conv_pos, ctx, cur->kw, where, p->id);
1160 cfgerr++;
1161 break;
1162 }
1163
1164 if (!(px->cap & PR_CAP_FE)) {
1165 Alert("parsing [%s:%d] : proxy '%s', referenced in arg %d of %s%s%s%s '%s' %s proxy '%s', has not frontend capability.\n",
1166 cur->file, cur->line, pname,
1167 cur->arg_pos + 1, conv_pre, conv_ctx, conv_pos, ctx, cur->kw, where, p->id);
1168 cfgerr++;
1169 break;
1170 }
1171
1172 free(arg->data.str.str);
1173 arg->data.str.str = NULL;
1174 arg->unresolved = 0;
1175 arg->data.prx = px;
1176 break;
1177
1178 case ARGT_BE:
1179 if (arg->data.str.len) {
1180 pname = arg->data.str.str;
Willy Tarreau9e0bb102015-05-26 11:24:42 +02001181 px = proxy_be_by_name(pname);
Willy Tarreaua4312fa2013-04-02 16:34:32 +02001182 }
1183
1184 if (!px) {
1185 Alert("parsing [%s:%d] : unable to find backend '%s' referenced in arg %d of %s%s%s%s '%s' %s proxy '%s'.\n",
1186 cur->file, cur->line, pname,
1187 cur->arg_pos + 1, conv_pre, conv_ctx, conv_pos, ctx, cur->kw, where, p->id);
1188 cfgerr++;
1189 break;
1190 }
1191
1192 if (!(px->cap & PR_CAP_BE)) {
1193 Alert("parsing [%s:%d] : proxy '%s', referenced in arg %d of %s%s%s%s '%s' %s proxy '%s', has not backend capability.\n",
1194 cur->file, cur->line, pname,
1195 cur->arg_pos + 1, conv_pre, conv_ctx, conv_pos, ctx, cur->kw, where, p->id);
1196 cfgerr++;
1197 break;
1198 }
1199
1200 free(arg->data.str.str);
1201 arg->data.str.str = NULL;
1202 arg->unresolved = 0;
1203 arg->data.prx = px;
1204 break;
1205
1206 case ARGT_TAB:
1207 if (arg->data.str.len) {
1208 pname = arg->data.str.str;
Willy Tarreaue2dc1fa2015-05-26 12:08:07 +02001209 px = proxy_tbl_by_name(pname);
Willy Tarreaua4312fa2013-04-02 16:34:32 +02001210 }
1211
1212 if (!px) {
1213 Alert("parsing [%s:%d] : unable to find table '%s' referenced in arg %d of %s%s%s%s '%s' %s proxy '%s'.\n",
1214 cur->file, cur->line, pname,
1215 cur->arg_pos + 1, conv_pre, conv_ctx, conv_pos, ctx, cur->kw, where, p->id);
1216 cfgerr++;
1217 break;
1218 }
1219
1220 if (!px->table.size) {
1221 Alert("parsing [%s:%d] : no table in proxy '%s' referenced in arg %d of %s%s%s%s '%s' %s proxy '%s'.\n",
1222 cur->file, cur->line, pname,
1223 cur->arg_pos + 1, conv_pre, conv_ctx, conv_pos, ctx, cur->kw, where, p->id);
1224 cfgerr++;
1225 break;
1226 }
1227
1228 free(arg->data.str.str);
1229 arg->data.str.str = NULL;
1230 arg->unresolved = 0;
1231 arg->data.prx = px;
1232 break;
1233
1234 case ARGT_USR:
1235 if (!arg->data.str.len) {
1236 Alert("parsing [%s:%d] : missing userlist name in arg %d of %s%s%s%s '%s' %s proxy '%s'.\n",
1237 cur->file, cur->line,
1238 cur->arg_pos + 1, conv_pre, conv_ctx, conv_pos, ctx, cur->kw, where, p->id);
1239 cfgerr++;
1240 break;
1241 }
1242
1243 if (p->uri_auth && p->uri_auth->userlist &&
1244 !strcmp(p->uri_auth->userlist->name, arg->data.str.str))
1245 ul = p->uri_auth->userlist;
1246 else
1247 ul = auth_find_userlist(arg->data.str.str);
1248
1249 if (!ul) {
1250 Alert("parsing [%s:%d] : unable to find userlist '%s' referenced in arg %d of %s%s%s%s '%s' %s proxy '%s'.\n",
1251 cur->file, cur->line, arg->data.str.str,
1252 cur->arg_pos + 1, conv_pre, conv_ctx, conv_pos, ctx, cur->kw, where, p->id);
1253 cfgerr++;
1254 break;
1255 }
1256
1257 free(arg->data.str.str);
1258 arg->data.str.str = NULL;
1259 arg->unresolved = 0;
1260 arg->data.usr = ul;
1261 break;
Willy Tarreau46947782015-01-19 19:00:58 +01001262
1263 case ARGT_REG:
1264 if (!arg->data.str.len) {
1265 Alert("parsing [%s:%d] : missing regex in arg %d of %s%s%s%s '%s' %s proxy '%s'.\n",
1266 cur->file, cur->line,
1267 cur->arg_pos + 1, conv_pre, conv_ctx, conv_pos, ctx, cur->kw, where, p->id);
1268 cfgerr++;
1269 continue;
1270 }
1271
1272 reg = calloc(1, sizeof(*reg));
1273 if (!reg) {
1274 Alert("parsing [%s:%d] : not enough memory to build regex in arg %d of %s%s%s%s '%s' %s proxy '%s'.\n",
1275 cur->file, cur->line,
1276 cur->arg_pos + 1, conv_pre, conv_ctx, conv_pos, ctx, cur->kw, where, p->id);
1277 cfgerr++;
1278 continue;
1279 }
1280
1281 rflags = 0;
1282 rflags |= (arg->type_flags & ARGF_REG_ICASE) ? REG_ICASE : 0;
1283 err = NULL;
1284
Willy Tarreaud817e462015-01-23 20:23:17 +01001285 if (!regex_comp(arg->data.str.str, reg, !(rflags & REG_ICASE), 1 /* capture substr */, &err)) {
Willy Tarreau46947782015-01-19 19:00:58 +01001286 Alert("parsing [%s:%d] : error in regex '%s' in arg %d of %s%s%s%s '%s' %s proxy '%s' : %s.\n",
1287 cur->file, cur->line,
1288 arg->data.str.str,
1289 cur->arg_pos + 1, conv_pre, conv_ctx, conv_pos, ctx, cur->kw, where, p->id, err);
1290 cfgerr++;
1291 continue;
1292 }
1293
1294 free(arg->data.str.str);
1295 arg->data.str.str = NULL;
1296 arg->unresolved = 0;
1297 arg->data.reg = reg;
1298 break;
1299
1300
Willy Tarreaua4312fa2013-04-02 16:34:32 +02001301 }
1302
1303 LIST_DEL(&cur->list);
1304 free(cur);
1305 } /* end of args processing */
1306
1307 return cfgerr;
1308}
1309
1310/*
Willy Tarreau5b4bf702014-06-13 16:04:35 +02001311 * Process a fetch + format conversion as defined by the sample expression
1312 * <expr> on request or response considering the <opt> parameter. The output is
Adis Nezirovic79beb242015-07-06 15:41:02 +02001313 * not explicitly set to <smp_type>, but shall be compatible with it as
1314 * specified by 'sample_casts' table. If a stable sample can be fetched, or an
1315 * unstable one when <opt> contains SMP_OPT_FINAL, the sample is converted and
Willy Tarreau5b4bf702014-06-13 16:04:35 +02001316 * returned without the SMP_F_MAY_CHANGE flag. If an unstable sample is found
1317 * and <opt> does not contain SMP_OPT_FINAL, then the sample is returned as-is
1318 * with its SMP_F_MAY_CHANGE flag so that the caller can check it and decide to
1319 * take actions (eg: wait longer). If a sample could not be found or could not
Willy Tarreau6bcb0a82014-07-30 08:56:35 +02001320 * be converted, NULL is returned. The caller MUST NOT use the sample if the
1321 * SMP_F_MAY_CHANGE flag is present, as it is used only as a hint that there is
1322 * still hope to get it after waiting longer, and is not converted to string.
1323 * The possible output combinations are the following :
1324 *
1325 * return MAY_CHANGE FINAL Meaning for the sample
1326 * NULL * * Not present and will never be (eg: header)
1327 * smp 0 * Final value converted (eg: header)
1328 * smp 1 0 Not present yet, may appear later (eg: header)
1329 * smp 1 1 never happens (either flag is cleared on output)
Willy Tarreaue7ad4bb2012-12-21 00:02:32 +01001330 */
Adis Nezirovic79beb242015-07-06 15:41:02 +02001331struct sample *sample_fetch_as_type(struct proxy *px, struct session *sess,
Willy Tarreau192252e2015-04-04 01:47:55 +02001332 struct stream *strm, unsigned int opt,
Adis Nezirovic79beb242015-07-06 15:41:02 +02001333 struct sample_expr *expr, int smp_type)
Willy Tarreaue7ad4bb2012-12-21 00:02:32 +01001334{
Willy Tarreau5b4bf702014-06-13 16:04:35 +02001335 struct sample *smp = &temp_smp;
Willy Tarreaue7ad4bb2012-12-21 00:02:32 +01001336
Willy Tarreau6c616e02014-06-25 16:56:41 +02001337 memset(smp, 0, sizeof(*smp));
1338
Willy Tarreau192252e2015-04-04 01:47:55 +02001339 if (!sample_process(px, sess, strm, opt, expr, smp)) {
Willy Tarreau5b4bf702014-06-13 16:04:35 +02001340 if ((smp->flags & SMP_F_MAY_CHANGE) && !(opt & SMP_OPT_FINAL))
1341 return smp;
Willy Tarreaue7ad4bb2012-12-21 00:02:32 +01001342 return NULL;
Willy Tarreau5b4bf702014-06-13 16:04:35 +02001343 }
Willy Tarreaue7ad4bb2012-12-21 00:02:32 +01001344
Adis Nezirovic79beb242015-07-06 15:41:02 +02001345 if (!sample_casts[smp->type][smp_type])
Willy Tarreaue7ad4bb2012-12-21 00:02:32 +01001346 return NULL;
1347
Adis Nezirovic79beb242015-07-06 15:41:02 +02001348 if (!sample_casts[smp->type][smp_type](smp))
Willy Tarreaue7ad4bb2012-12-21 00:02:32 +01001349 return NULL;
1350
Willy Tarreau5b4bf702014-06-13 16:04:35 +02001351 smp->flags &= ~SMP_F_MAY_CHANGE;
Willy Tarreaue7ad4bb2012-12-21 00:02:32 +01001352 return smp;
1353}
1354
Emeric Brun107ca302010-01-04 16:16:05 +01001355/*****************************************************************/
Willy Tarreau12785782012-04-27 21:37:17 +02001356/* Sample format convert functions */
Willy Tarreaub8c8f1f2012-04-23 22:38:26 +02001357/* These functions set the data type on return. */
Emeric Brun107ca302010-01-04 16:16:05 +01001358/*****************************************************************/
1359
Thierry FOURNIER9687c772015-05-07 15:46:29 +02001360#ifdef DEBUG_EXPR
1361static int sample_conv_debug(const struct arg *arg_p, struct sample *smp, void *private)
1362{
1363 int i;
1364 struct sample tmp;
1365
1366 if (!(global.mode & MODE_QUIET) || (global.mode & (MODE_VERBOSE | MODE_STARTING))) {
1367 fprintf(stderr, "[debug converter] type: %s ", smp_to_type[smp->type]);
1368 if (!sample_casts[smp->type][SMP_T_STR]) {
1369 fprintf(stderr, "(undisplayable)");
1370 } else {
1371
1372 /* Copy sample fetch. This put the sample as const, the
1373 * cast will copy data if a transformation is required.
1374 */
1375 memcpy(&tmp, smp, sizeof(struct sample));
1376 tmp.flags = SMP_F_CONST;
1377
1378 if (!sample_casts[smp->type][SMP_T_STR](&tmp))
1379 fprintf(stderr, "(undisplayable)");
1380
1381 else {
1382 /* Display the displayable chars*. */
1383 fprintf(stderr, "<");
1384 for (i = 0; i < tmp.data.str.len; i++) {
1385 if (isprint(tmp.data.str.str[i]))
1386 fputc(tmp.data.str.str[i], stderr);
1387 else
1388 fputc('.', stderr);
1389 }
1390 }
1391 fprintf(stderr, ">\n");
1392 }
1393 }
1394 return 1;
1395}
1396#endif
1397
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02001398static int sample_conv_bin2base64(const struct arg *arg_p, struct sample *smp, void *private)
Emeric Brun53d1a982014-04-30 18:21:37 +02001399{
1400 struct chunk *trash = get_trash_chunk();
1401 int b64_len;
1402
1403 trash->len = 0;
1404 b64_len = a2base64(smp->data.str.str, smp->data.str.len, trash->str, trash->size);
1405 if (b64_len < 0)
1406 return 0;
1407
1408 trash->len = b64_len;
1409 smp->data.str = *trash;
1410 smp->type = SMP_T_STR;
1411 smp->flags &= ~SMP_F_CONST;
1412 return 1;
1413}
1414
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02001415static int sample_conv_bin2hex(const struct arg *arg_p, struct sample *smp, void *private)
Thierry FOURNIER2f49d6d2014-03-12 15:01:52 +01001416{
1417 struct chunk *trash = get_trash_chunk();
1418 unsigned char c;
1419 int ptr = 0;
1420
1421 trash->len = 0;
1422 while (ptr < smp->data.str.len && trash->len <= trash->size - 2) {
1423 c = smp->data.str.str[ptr++];
1424 trash->str[trash->len++] = hextab[(c >> 4) & 0xF];
1425 trash->str[trash->len++] = hextab[c & 0xF];
1426 }
1427 smp->data.str = *trash;
1428 smp->type = SMP_T_STR;
Thierry FOURNIER7654c9f2013-12-17 00:20:33 +01001429 smp->flags &= ~SMP_F_CONST;
Thierry FOURNIER2f49d6d2014-03-12 15:01:52 +01001430 return 1;
1431}
1432
Willy Tarreau23ec4ca2014-07-15 20:15:37 +02001433/* hashes the binary input into a 32-bit unsigned int */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02001434static int sample_conv_djb2(const struct arg *arg_p, struct sample *smp, void *private)
Willy Tarreau23ec4ca2014-07-15 20:15:37 +02001435{
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02001436 smp->data.sint = hash_djb2(smp->data.str.str, smp->data.str.len);
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001437 if (arg_p && arg_p->data.sint)
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02001438 smp->data.sint = full_hash(smp->data.sint);
1439 smp->type = SMP_T_SINT;
Willy Tarreau23ec4ca2014-07-15 20:15:37 +02001440 return 1;
1441}
1442
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02001443static int sample_conv_str2lower(const struct arg *arg_p, struct sample *smp, void *private)
Emeric Brun107ca302010-01-04 16:16:05 +01001444{
1445 int i;
1446
Thierry FOURNIER7654c9f2013-12-17 00:20:33 +01001447 if (!smp_dup(smp))
1448 return 0;
1449
Willy Tarreau342acb42012-04-23 22:03:39 +02001450 if (!smp->data.str.size)
Emeric Brun485479d2010-09-23 18:02:19 +02001451 return 0;
1452
Willy Tarreau342acb42012-04-23 22:03:39 +02001453 for (i = 0; i < smp->data.str.len; i++) {
1454 if ((smp->data.str.str[i] >= 'A') && (smp->data.str.str[i] <= 'Z'))
1455 smp->data.str.str[i] += 'a' - 'A';
Emeric Brun107ca302010-01-04 16:16:05 +01001456 }
1457 return 1;
1458}
1459
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02001460static int sample_conv_str2upper(const struct arg *arg_p, struct sample *smp, void *private)
Emeric Brun107ca302010-01-04 16:16:05 +01001461{
1462 int i;
1463
Thierry FOURNIER7654c9f2013-12-17 00:20:33 +01001464 if (!smp_dup(smp))
1465 return 0;
1466
Willy Tarreau342acb42012-04-23 22:03:39 +02001467 if (!smp->data.str.size)
Emeric Brun485479d2010-09-23 18:02:19 +02001468 return 0;
1469
Willy Tarreau342acb42012-04-23 22:03:39 +02001470 for (i = 0; i < smp->data.str.len; i++) {
1471 if ((smp->data.str.str[i] >= 'a') && (smp->data.str.str[i] <= 'z'))
1472 smp->data.str.str[i] += 'A' - 'a';
Emeric Brun107ca302010-01-04 16:16:05 +01001473 }
1474 return 1;
1475}
1476
Willy Tarreauf9954102012-04-20 14:03:29 +02001477/* takes the netmask in arg_p */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02001478static int sample_conv_ipmask(const struct arg *arg_p, struct sample *smp, void *private)
Willy Tarreaud31d6eb2010-01-26 18:01:41 +01001479{
Willy Tarreau342acb42012-04-23 22:03:39 +02001480 smp->data.ipv4.s_addr &= arg_p->data.ipv4.s_addr;
Willy Tarreaub8c8f1f2012-04-23 22:38:26 +02001481 smp->type = SMP_T_IPV4;
Willy Tarreaud31d6eb2010-01-26 18:01:41 +01001482 return 1;
1483}
1484
Willy Tarreau0dbfdba2014-07-10 16:37:47 +02001485/* takes an UINT value on input supposed to represent the time since EPOCH,
1486 * adds an optional offset found in args[1] and emits a string representing
1487 * the local time in the format specified in args[1] using strftime().
1488 */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02001489static int sample_conv_ltime(const struct arg *args, struct sample *smp, void *private)
Willy Tarreau0dbfdba2014-07-10 16:37:47 +02001490{
1491 struct chunk *temp;
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001492 /* With high numbers, the date returned can be negative, the 55 bits mask prevent this. */
1493 time_t curr_date = smp->data.sint & 0x007fffffffffffffLL;
Thierry FOURNIERfac9ccf2015-07-08 00:15:20 +02001494 struct tm *tm;
Willy Tarreau0dbfdba2014-07-10 16:37:47 +02001495
1496 /* add offset */
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001497 if (args[1].type == ARGT_SINT)
Willy Tarreau0dbfdba2014-07-10 16:37:47 +02001498 curr_date += args[1].data.sint;
1499
Thierry FOURNIERfac9ccf2015-07-08 00:15:20 +02001500 tm = localtime(&curr_date);
1501 if (!tm)
1502 return 0;
Willy Tarreau0dbfdba2014-07-10 16:37:47 +02001503 temp = get_trash_chunk();
Thierry FOURNIERfac9ccf2015-07-08 00:15:20 +02001504 temp->len = strftime(temp->str, temp->size, args[0].data.str.str, tm);
Willy Tarreau0dbfdba2014-07-10 16:37:47 +02001505 smp->data.str = *temp;
1506 smp->type = SMP_T_STR;
1507 return 1;
1508}
1509
Willy Tarreau23ec4ca2014-07-15 20:15:37 +02001510/* hashes the binary input into a 32-bit unsigned int */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02001511static int sample_conv_sdbm(const struct arg *arg_p, struct sample *smp, void *private)
Willy Tarreau23ec4ca2014-07-15 20:15:37 +02001512{
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02001513 smp->data.sint = hash_sdbm(smp->data.str.str, smp->data.str.len);
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001514 if (arg_p && arg_p->data.sint)
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02001515 smp->data.sint = full_hash(smp->data.sint);
1516 smp->type = SMP_T_SINT;
Willy Tarreau23ec4ca2014-07-15 20:15:37 +02001517 return 1;
1518}
1519
Willy Tarreau0dbfdba2014-07-10 16:37:47 +02001520/* takes an UINT value on input supposed to represent the time since EPOCH,
1521 * adds an optional offset found in args[1] and emits a string representing
1522 * the UTC date in the format specified in args[1] using strftime().
1523 */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02001524static int sample_conv_utime(const struct arg *args, struct sample *smp, void *private)
Willy Tarreau0dbfdba2014-07-10 16:37:47 +02001525{
1526 struct chunk *temp;
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001527 /* With high numbers, the date returned can be negative, the 55 bits mask prevent this. */
1528 time_t curr_date = smp->data.sint & 0x007fffffffffffffLL;
Thierry FOURNIERfac9ccf2015-07-08 00:15:20 +02001529 struct tm *tm;
Willy Tarreau0dbfdba2014-07-10 16:37:47 +02001530
1531 /* add offset */
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001532 if (args[1].type == ARGT_SINT)
Willy Tarreau0dbfdba2014-07-10 16:37:47 +02001533 curr_date += args[1].data.sint;
1534
Thierry FOURNIERfac9ccf2015-07-08 00:15:20 +02001535 tm = gmtime(&curr_date);
1536 if (!tm)
1537 return 0;
Willy Tarreau0dbfdba2014-07-10 16:37:47 +02001538 temp = get_trash_chunk();
Thierry FOURNIERfac9ccf2015-07-08 00:15:20 +02001539 temp->len = strftime(temp->str, temp->size, args[0].data.str.str, tm);
Willy Tarreau0dbfdba2014-07-10 16:37:47 +02001540 smp->data.str = *temp;
1541 smp->type = SMP_T_STR;
1542 return 1;
1543}
1544
Willy Tarreau23ec4ca2014-07-15 20:15:37 +02001545/* hashes the binary input into a 32-bit unsigned int */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02001546static int sample_conv_wt6(const struct arg *arg_p, struct sample *smp, void *private)
Willy Tarreau23ec4ca2014-07-15 20:15:37 +02001547{
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02001548 smp->data.sint = hash_wt6(smp->data.str.str, smp->data.str.len);
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001549 if (arg_p && arg_p->data.sint)
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02001550 smp->data.sint = full_hash(smp->data.sint);
1551 smp->type = SMP_T_SINT;
Willy Tarreau23ec4ca2014-07-15 20:15:37 +02001552 return 1;
1553}
1554
Willy Tarreau80599772015-01-20 19:35:24 +01001555/* hashes the binary input into a 32-bit unsigned int */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02001556static int sample_conv_crc32(const struct arg *arg_p, struct sample *smp, void *private)
Willy Tarreau80599772015-01-20 19:35:24 +01001557{
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02001558 smp->data.sint = hash_crc32(smp->data.str.str, smp->data.str.len);
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001559 if (arg_p && arg_p->data.sint)
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02001560 smp->data.sint = full_hash(smp->data.sint);
1561 smp->type = SMP_T_SINT;
Willy Tarreau80599772015-01-20 19:35:24 +01001562 return 1;
1563}
1564
Thierry FOURNIER317e1c42014-08-12 10:20:47 +02001565/* This function escape special json characters. The returned string can be
1566 * safely set between two '"' and used as json string. The json string is
1567 * defined like this:
1568 *
1569 * any Unicode character except '"' or '\' or control character
1570 * \", \\, \/, \b, \f, \n, \r, \t, \u + four-hex-digits
1571 *
1572 * The enum input_type contain all the allowed mode for decoding the input
1573 * string.
1574 */
1575enum input_type {
1576 IT_ASCII = 0,
1577 IT_UTF8,
1578 IT_UTF8S,
1579 IT_UTF8P,
1580 IT_UTF8PS,
1581};
1582static int sample_conv_json_check(struct arg *arg, struct sample_conv *conv,
1583 const char *file, int line, char **err)
1584{
1585 if (!arg) {
1586 memprintf(err, "Unexpected empty arg list");
1587 return 0;
1588 }
1589
1590 if (arg->type != ARGT_STR) {
1591 memprintf(err, "Unexpected arg type");
1592 return 0;
1593 }
1594
1595 if (strcmp(arg->data.str.str, "") == 0) {
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001596 arg->type = ARGT_SINT;
1597 arg->data.sint = IT_ASCII;
Thierry FOURNIER317e1c42014-08-12 10:20:47 +02001598 return 1;
1599 }
1600
1601 else if (strcmp(arg->data.str.str, "ascii") == 0) {
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001602 arg->type = ARGT_SINT;
1603 arg->data.sint = IT_ASCII;
Thierry FOURNIER317e1c42014-08-12 10:20:47 +02001604 return 1;
1605 }
1606
1607 else if (strcmp(arg->data.str.str, "utf8") == 0) {
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001608 arg->type = ARGT_SINT;
1609 arg->data.sint = IT_UTF8;
Thierry FOURNIER317e1c42014-08-12 10:20:47 +02001610 return 1;
1611 }
1612
1613 else if (strcmp(arg->data.str.str, "utf8s") == 0) {
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001614 arg->type = ARGT_SINT;
1615 arg->data.sint = IT_UTF8S;
Thierry FOURNIER317e1c42014-08-12 10:20:47 +02001616 return 1;
1617 }
1618
1619 else if (strcmp(arg->data.str.str, "utf8p") == 0) {
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001620 arg->type = ARGT_SINT;
1621 arg->data.sint = IT_UTF8P;
Thierry FOURNIER317e1c42014-08-12 10:20:47 +02001622 return 1;
1623 }
1624
1625 else if (strcmp(arg->data.str.str, "utf8ps") == 0) {
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001626 arg->type = ARGT_SINT;
1627 arg->data.sint = IT_UTF8PS;
Thierry FOURNIER317e1c42014-08-12 10:20:47 +02001628 return 1;
1629 }
1630
1631 memprintf(err, "Unexpected input code type at file '%s', line %d. "
1632 "Allowed value are 'ascii', 'utf8', 'utf8p' and 'utf8pp'", file, line);
1633 return 0;
1634}
1635
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02001636static int sample_conv_json(const struct arg *arg_p, struct sample *smp, void *private)
Thierry FOURNIER317e1c42014-08-12 10:20:47 +02001637{
1638 struct chunk *temp;
1639 char _str[7]; /* \u + 4 hex digit + null char for sprintf. */
1640 const char *str;
1641 int len;
1642 enum input_type input_type = IT_ASCII;
1643 unsigned int c;
1644 unsigned int ret;
1645 char *p;
1646
1647 if (arg_p)
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001648 input_type = arg_p->data.sint;
Thierry FOURNIER317e1c42014-08-12 10:20:47 +02001649
1650 temp = get_trash_chunk();
1651 temp->len = 0;
1652
1653 p = smp->data.str.str;
1654 while (p < smp->data.str.str + smp->data.str.len) {
1655
1656 if (input_type == IT_ASCII) {
1657 /* Read input as ASCII. */
1658 c = *(unsigned char *)p;
1659 p++;
1660 }
1661 else {
1662 /* Read input as UTF8. */
1663 ret = utf8_next(p, smp->data.str.len - ( p - smp->data.str.str ), &c);
1664 p += utf8_return_length(ret);
1665
1666 if (input_type == IT_UTF8 && utf8_return_code(ret) != UTF8_CODE_OK)
1667 return 0;
1668 if (input_type == IT_UTF8S && utf8_return_code(ret) != UTF8_CODE_OK)
1669 continue;
1670 if (input_type == IT_UTF8P && utf8_return_code(ret) & (UTF8_CODE_INVRANGE|UTF8_CODE_BADSEQ))
1671 return 0;
1672 if (input_type == IT_UTF8PS && utf8_return_code(ret) & (UTF8_CODE_INVRANGE|UTF8_CODE_BADSEQ))
1673 continue;
1674
1675 /* Check too big values. */
1676 if ((unsigned int)c > 0xffff) {
1677 if (input_type == IT_UTF8 || input_type == IT_UTF8P)
1678 return 0;
1679 continue;
1680 }
1681 }
1682
1683 /* Convert character. */
1684 if (c == '"') {
1685 len = 2;
1686 str = "\\\"";
1687 }
1688 else if (c == '\\') {
1689 len = 2;
1690 str = "\\\\";
1691 }
1692 else if (c == '/') {
1693 len = 2;
1694 str = "\\/";
1695 }
1696 else if (c == '\b') {
1697 len = 2;
1698 str = "\\b";
1699 }
1700 else if (c == '\f') {
1701 len = 2;
1702 str = "\\f";
1703 }
1704 else if (c == '\r') {
1705 len = 2;
1706 str = "\\r";
1707 }
1708 else if (c == '\n') {
1709 len = 2;
1710 str = "\\n";
1711 }
1712 else if (c == '\t') {
1713 len = 2;
1714 str = "\\t";
1715 }
1716 else if (c > 0xff || !isprint(c)) {
1717 /* isprint generate a segfault if c is too big. The man says that
1718 * c must have the value of an unsigned char or EOF.
1719 */
1720 len = 6;
1721 _str[0] = '\\';
1722 _str[1] = 'u';
1723 snprintf(&_str[2], 5, "%04x", (unsigned short)c);
1724 str = _str;
1725 }
1726 else {
1727 len = 1;
1728 str = (char *)&c;
1729 }
1730
1731 /* Check length */
1732 if (temp->len + len > temp->size)
1733 return 0;
1734
1735 /* Copy string. */
1736 memcpy(temp->str + temp->len, str, len);
1737 temp->len += len;
1738 }
1739
1740 smp->flags &= ~SMP_F_CONST;
1741 smp->data.str = *temp;
1742 smp->type = SMP_T_STR;
1743
1744 return 1;
1745}
1746
Emeric Brun54c4ac82014-11-03 15:32:43 +01001747/* This sample function is designed to extract some bytes from an input buffer.
1748 * First arg is the offset.
1749 * Optional second arg is the length to truncate */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02001750static int sample_conv_bytes(const struct arg *arg_p, struct sample *smp, void *private)
Emeric Brun54c4ac82014-11-03 15:32:43 +01001751{
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001752 if (smp->data.str.len <= arg_p[0].data.sint) {
Emeric Brun54c4ac82014-11-03 15:32:43 +01001753 smp->data.str.len = 0;
1754 return 1;
1755 }
1756
1757 if (smp->data.str.size)
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001758 smp->data.str.size -= arg_p[0].data.sint;
1759 smp->data.str.len -= arg_p[0].data.sint;
1760 smp->data.str.str += arg_p[0].data.sint;
Emeric Brun54c4ac82014-11-03 15:32:43 +01001761
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001762 if ((arg_p[1].type == ARGT_SINT) && (arg_p[1].data.sint < smp->data.str.len))
1763 smp->data.str.len = arg_p[1].data.sint;
Emeric Brun54c4ac82014-11-03 15:32:43 +01001764
1765 return 1;
1766}
1767
Emeric Brunf399b0d2014-11-03 17:07:03 +01001768static int sample_conv_field_check(struct arg *args, struct sample_conv *conv,
1769 const char *file, int line, char **err)
1770{
1771 struct arg *arg = args;
1772
1773 if (!arg) {
1774 memprintf(err, "Unexpected empty arg list");
1775 return 0;
1776 }
1777
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001778 if (arg->type != ARGT_SINT) {
Emeric Brunf399b0d2014-11-03 17:07:03 +01001779 memprintf(err, "Unexpected arg type");
1780 return 0;
1781 }
1782
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001783 if (!arg->data.sint) {
Emeric Brunf399b0d2014-11-03 17:07:03 +01001784 memprintf(err, "Unexpected value 0 for index");
1785 return 0;
1786 }
1787
1788 arg++;
1789
1790 if (arg->type != ARGT_STR) {
1791 memprintf(err, "Unexpected arg type");
1792 return 0;
1793 }
1794
1795 if (!arg->data.str.len) {
1796 memprintf(err, "Empty separators list");
1797 return 0;
1798 }
1799
1800 return 1;
1801}
1802
1803/* This sample function is designed to a return selected part of a string (field).
1804 * First arg is the index of the field (start at 1)
1805 * Second arg is a char list of separators (type string)
1806 */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02001807static int sample_conv_field(const struct arg *arg_p, struct sample *smp, void *private)
Emeric Brunf399b0d2014-11-03 17:07:03 +01001808{
1809 unsigned int field;
1810 char *start, *end;
1811 int i;
1812
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001813 if (!arg_p[0].data.sint)
Emeric Brunf399b0d2014-11-03 17:07:03 +01001814 return 0;
1815
1816 field = 1;
1817 end = start = smp->data.str.str;
1818 while (end - smp->data.str.str < smp->data.str.len) {
1819
1820 for (i = 0 ; i < arg_p[1].data.str.len ; i++) {
1821 if (*end == arg_p[1].data.str.str[i]) {
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001822 if (field == arg_p[0].data.sint)
Emeric Brunf399b0d2014-11-03 17:07:03 +01001823 goto found;
1824 start = end+1;
1825 field++;
1826 break;
1827 }
1828 }
1829 end++;
1830 }
1831
1832 /* Field not found */
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001833 if (field != arg_p[0].data.sint) {
Emeric Brunf399b0d2014-11-03 17:07:03 +01001834 smp->data.str.len = 0;
1835 return 1;
1836 }
1837found:
1838 smp->data.str.len = end - start;
1839 /* If ret string is len 0, no need to
1840 change pointers or to update size */
1841 if (!smp->data.str.len)
1842 return 1;
1843
1844 smp->data.str.str = start;
1845
1846 /* Compute remaining size if needed
1847 Note: smp->data.str.size cannot be set to 0 */
1848 if (smp->data.str.size)
1849 smp->data.str.size -= start - smp->data.str.str;
1850
1851 return 1;
1852}
1853
Emeric Brunc9a0f6d2014-11-25 14:09:01 +01001854/* This sample function is designed to return a word from a string.
1855 * First arg is the index of the word (start at 1)
1856 * Second arg is a char list of words separators (type string)
1857 */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02001858static int sample_conv_word(const struct arg *arg_p, struct sample *smp, void *private)
Emeric Brunc9a0f6d2014-11-25 14:09:01 +01001859{
1860 unsigned int word;
1861 char *start, *end;
1862 int i, issep, inword;
1863
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001864 if (!arg_p[0].data.sint)
Emeric Brunc9a0f6d2014-11-25 14:09:01 +01001865 return 0;
1866
1867 word = 0;
1868 inword = 0;
1869 end = start = smp->data.str.str;
1870 while (end - smp->data.str.str < smp->data.str.len) {
1871 issep = 0;
1872 for (i = 0 ; i < arg_p[1].data.str.len ; i++) {
1873 if (*end == arg_p[1].data.str.str[i]) {
1874 issep = 1;
1875 break;
1876 }
1877 }
1878 if (!inword) {
1879 if (!issep) {
1880 word++;
1881 start = end;
1882 inword = 1;
1883 }
1884 }
1885 else if (issep) {
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001886 if (word == arg_p[0].data.sint)
Emeric Brunc9a0f6d2014-11-25 14:09:01 +01001887 goto found;
1888 inword = 0;
1889 }
1890 end++;
1891 }
1892
1893 /* Field not found */
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02001894 if (word != arg_p[0].data.sint) {
Emeric Brunc9a0f6d2014-11-25 14:09:01 +01001895 smp->data.str.len = 0;
1896 return 1;
1897 }
1898found:
1899 smp->data.str.len = end - start;
1900 /* If ret string is len 0, no need to
1901 change pointers or to update size */
1902 if (!smp->data.str.len)
1903 return 1;
1904
1905 smp->data.str.str = start;
1906
1907 /* Compute remaining size if needed
1908 Note: smp->data.str.size cannot be set to 0 */
1909 if (smp->data.str.size)
1910 smp->data.str.size -= start - smp->data.str.str;
1911
1912 return 1;
1913}
1914
Willy Tarreau7eda8492015-01-20 19:47:06 +01001915static int sample_conv_regsub_check(struct arg *args, struct sample_conv *conv,
1916 const char *file, int line, char **err)
1917{
1918 struct arg *arg = args;
1919 char *p;
1920 int len;
1921
1922 /* arg0 is a regex, it uses type_flag for ICASE and global match */
1923 arg[0].type_flags = 0;
1924
1925 if (arg[2].type != ARGT_STR)
1926 return 1;
1927
1928 p = arg[2].data.str.str;
1929 len = arg[2].data.str.len;
1930 while (len) {
1931 if (*p == 'i') {
1932 arg[0].type_flags |= ARGF_REG_ICASE;
1933 }
1934 else if (*p == 'g') {
1935 arg[0].type_flags |= ARGF_REG_GLOB;
1936 }
1937 else {
1938 memprintf(err, "invalid regex flag '%c', only 'i' and 'g' are supported", *p);
1939 return 0;
1940 }
1941 p++;
1942 len--;
1943 }
1944 return 1;
1945}
1946
1947/* This sample function is designed to do the equivalent of s/match/replace/ on
1948 * the input string. It applies a regex and restarts from the last matched
1949 * location until nothing matches anymore. First arg is the regex to apply to
1950 * the input string, second arg is the replacement expression.
1951 */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02001952static int sample_conv_regsub(const struct arg *arg_p, struct sample *smp, void *private)
Willy Tarreau7eda8492015-01-20 19:47:06 +01001953{
1954 char *start, *end;
1955 struct my_regex *reg = arg_p[0].data.reg;
1956 regmatch_t pmatch[MAX_MATCH];
1957 struct chunk *trash = get_trash_chunk();
1958 int flag, max;
1959 int found;
1960
1961 start = smp->data.str.str;
1962 end = start + smp->data.str.len;
1963
1964 flag = 0;
1965 while (1) {
1966 /* check for last round which is used to copy remaining parts
1967 * when not running in global replacement mode.
1968 */
1969 found = 0;
1970 if ((arg_p[0].type_flags & ARGF_REG_GLOB) || !(flag & REG_NOTBOL)) {
1971 /* Note: we can have start == end on empty strings or at the end */
1972 found = regex_exec_match2(reg, start, end - start, MAX_MATCH, pmatch, flag);
1973 }
1974
1975 if (!found)
1976 pmatch[0].rm_so = end - start;
1977
1978 /* copy the heading non-matching part (which may also be the tail if nothing matches) */
1979 max = trash->size - trash->len;
1980 if (max && pmatch[0].rm_so > 0) {
1981 if (max > pmatch[0].rm_so)
1982 max = pmatch[0].rm_so;
1983 memcpy(trash->str + trash->len, start, max);
1984 trash->len += max;
1985 }
1986
1987 if (!found)
1988 break;
1989
1990 /* replace the matching part */
1991 max = trash->size - trash->len;
1992 if (max) {
1993 if (max > arg_p[1].data.str.len)
1994 max = arg_p[1].data.str.len;
1995 memcpy(trash->str + trash->len, arg_p[1].data.str.str, max);
1996 trash->len += max;
1997 }
1998
1999 /* stop here if we're done with this string */
2000 if (start >= end)
2001 break;
2002
2003 /* We have a special case for matches of length 0 (eg: "x*y*").
2004 * These ones are considered to match in front of a character,
2005 * so we have to copy that character and skip to the next one.
2006 */
2007 if (!pmatch[0].rm_eo) {
2008 if (trash->len < trash->size)
2009 trash->str[trash->len++] = start[pmatch[0].rm_eo];
2010 pmatch[0].rm_eo++;
2011 }
2012
2013 start += pmatch[0].rm_eo;
2014 flag |= REG_NOTBOL;
2015 }
2016
2017 smp->data.str = *trash;
2018 return 1;
2019}
2020
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002021/* This function check an operator entry. It expects a string.
2022 * The string can be an integer or a variable name.
2023 */
2024static int check_operator(struct arg *args, struct sample_conv *conv,
2025 const char *file, int line, char **err)
2026{
2027 const char *str;
2028 const char *end;
2029
2030 /* Try to decode a variable. */
2031 if (vars_check_arg(&args[0], NULL))
2032 return 1;
2033
2034 /* Try to convert an integer */
2035 str = args[0].data.str.str;
2036 end = str + strlen(str);
2037 args[0].data.sint = read_int64(&str, end);
2038 if (*str != '\0') {
2039 memprintf(err, "expects an integer or a variable name");
2040 return 0;
2041 }
2042 args[0].type = ARGT_SINT;
2043 return 1;
2044}
2045
2046/* This fucntion returns a sample struct filled with a arg content.
2047 * If the arg contain an integer, the integer is returned in the
2048 * sample. If the arg contains a variable descriptor, it returns the
2049 * variable value.
2050 *
2051 * This function returns 0 if an error occurs, otherwise it returns 1.
2052 */
2053static inline int sample_conv_var2smp(const struct arg *arg, struct stream *strm, struct sample *smp)
2054{
2055 switch (arg->type) {
2056 case ARGT_SINT:
2057 smp->type = SMP_T_SINT;
2058 smp->data.sint = arg->data.sint;
2059 return 1;
2060 case ARGT_VAR:
2061 if (!vars_get_by_desc(&arg->data.var, strm, smp))
2062 return 0;
2063 if (!sample_casts[smp->type][SMP_T_SINT])
2064 return 0;
2065 if (!sample_casts[smp->type][SMP_T_SINT](smp))
2066 return 0;
2067 return 1;
2068 default:
2069 return 0;
2070 }
2071}
2072
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002073/* Takes a SINT on input, applies a binary twos complement and returns the SINT
Willy Tarreau97707872015-01-27 15:12:13 +01002074 * result.
2075 */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02002076static int sample_conv_binary_cpl(const struct arg *arg_p, struct sample *smp, void *private)
Willy Tarreau97707872015-01-27 15:12:13 +01002077{
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002078 smp->data.sint = ~smp->data.sint;
Willy Tarreau97707872015-01-27 15:12:13 +01002079 return 1;
2080}
2081
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002082/* Takes a SINT on input, applies a binary "and" with the SINT directly in
2083 * arg_p or in the varaible described in arg_p, and returns the SINT result.
Willy Tarreau97707872015-01-27 15:12:13 +01002084 */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02002085static int sample_conv_binary_and(const struct arg *arg_p, struct sample *smp, void *private)
Willy Tarreau97707872015-01-27 15:12:13 +01002086{
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002087 struct sample tmp;
2088
2089 if (!sample_conv_var2smp(arg_p, smp->strm, &tmp))
2090 return 0;
2091 smp->data.sint &= tmp.data.sint;
Willy Tarreau97707872015-01-27 15:12:13 +01002092 return 1;
2093}
2094
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002095/* Takes a SINT on input, applies a binary "or" with the SINT directly in
2096 * arg_p or in the varaible described in arg_p, and returns the SINT result.
Willy Tarreau97707872015-01-27 15:12:13 +01002097 */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02002098static int sample_conv_binary_or(const struct arg *arg_p, struct sample *smp, void *private)
Willy Tarreau97707872015-01-27 15:12:13 +01002099{
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002100 struct sample tmp;
2101
2102 if (!sample_conv_var2smp(arg_p, smp->strm, &tmp))
2103 return 0;
2104 smp->data.sint |= tmp.data.sint;
Willy Tarreau97707872015-01-27 15:12:13 +01002105 return 1;
2106}
2107
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002108/* Takes a SINT on input, applies a binary "xor" with the SINT directly in
2109 * arg_p or in the varaible described in arg_p, and returns the SINT result.
Willy Tarreau97707872015-01-27 15:12:13 +01002110 */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02002111static int sample_conv_binary_xor(const struct arg *arg_p, struct sample *smp, void *private)
Willy Tarreau97707872015-01-27 15:12:13 +01002112{
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002113 struct sample tmp;
2114
2115 if (!sample_conv_var2smp(arg_p, smp->strm, &tmp))
2116 return 0;
2117 smp->data.sint ^= tmp.data.sint;
Willy Tarreau97707872015-01-27 15:12:13 +01002118 return 1;
2119}
2120
Thierry FOURNIER00c005c2015-07-08 01:10:21 +02002121static inline long long int arith_add(long long int a, long long int b)
2122{
2123 /* Prevent overflow and makes capped calculus.
2124 * We must ensure that the check calculus doesn't
2125 * exceed the signed 64 bits limits.
2126 *
2127 * +----------+----------+
2128 * | a<0 | a>=0 |
2129 * +------+----------+----------+
2130 * | b<0 | MIN-a>b | no check |
2131 * +------+----------+----------+
2132 * | b>=0 | no check | MAX-a<b |
2133 * +------+----------+----------+
2134 */
2135 if ((a ^ b) >= 0) {
2136 /* signs are differents. */
2137 if (a < 0) {
2138 if (LLONG_MIN - a > b)
2139 return LLONG_MIN;
2140 }
2141 if (LLONG_MAX - a < b)
2142 return LLONG_MAX;
2143 }
2144 return a + b;
2145}
2146
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002147/* Takes a SINT on input, applies an arithmetic "add" with the SINT directly in
2148 * arg_p or in the varaible described in arg_p, and returns the SINT result.
Willy Tarreau97707872015-01-27 15:12:13 +01002149 */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02002150static int sample_conv_arith_add(const struct arg *arg_p, struct sample *smp, void *private)
Willy Tarreau97707872015-01-27 15:12:13 +01002151{
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002152 struct sample tmp;
2153
2154 if (!sample_conv_var2smp(arg_p, smp->strm, &tmp))
2155 return 0;
2156 smp->data.sint = arith_add(smp->data.sint, tmp.data.sint);
Willy Tarreau97707872015-01-27 15:12:13 +01002157 return 1;
2158}
2159
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002160/* Takes a SINT on input, applies an arithmetic "sub" with the SINT directly in
2161 * arg_p or in the varaible described in arg_p, and returns the SINT result.
Willy Tarreau97707872015-01-27 15:12:13 +01002162 */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02002163static int sample_conv_arith_sub(const struct arg *arg_p,
Thierry FOURNIER68a556e2015-02-23 15:11:11 +01002164 struct sample *smp, void *private)
Willy Tarreau97707872015-01-27 15:12:13 +01002165{
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002166 struct sample tmp;
2167
2168 if (!sample_conv_var2smp(arg_p, smp->strm, &tmp))
2169 return 0;
2170
Thierry FOURNIER00c005c2015-07-08 01:10:21 +02002171 /* We cannot represent -LLONG_MIN because abs(LLONG_MIN) is greater
2172 * than abs(LLONG_MAX). So, the following code use LLONG_MAX in place
2173 * of -LLONG_MIN and correct the result.
2174 */
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002175 if (tmp.data.sint == LLONG_MIN) {
Thierry FOURNIER00c005c2015-07-08 01:10:21 +02002176 smp->data.sint = arith_add(smp->data.sint, LLONG_MAX);
2177 if (smp->data.sint < LLONG_MAX)
2178 smp->data.sint++;
2179 return 1;
2180 }
2181
2182 /* standard substraction: we use the "add" function and negate
2183 * the second operand.
2184 */
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002185 smp->data.sint = arith_add(smp->data.sint, -tmp.data.sint);
Willy Tarreau97707872015-01-27 15:12:13 +01002186 return 1;
2187}
2188
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002189/* Takes a SINT on input, applies an arithmetic "mul" with the SINT directly in
2190 * arg_p or in the varaible described in arg_p, and returns the SINT result.
2191 * If the result makes an overflow, then the largest possible quantity is
2192 * returned.
Willy Tarreau97707872015-01-27 15:12:13 +01002193 */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02002194static int sample_conv_arith_mul(const struct arg *arg_p,
Thierry FOURNIER68a556e2015-02-23 15:11:11 +01002195 struct sample *smp, void *private)
Willy Tarreau97707872015-01-27 15:12:13 +01002196{
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002197 struct sample tmp;
Thierry FOURNIER00c005c2015-07-08 01:10:21 +02002198 long long int c;
2199
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002200 if (!sample_conv_var2smp(arg_p, smp->strm, &tmp))
2201 return 0;
2202
Thierry FOURNIER00c005c2015-07-08 01:10:21 +02002203 /* prevent divide by 0 during the check */
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002204 if (!smp->data.sint || !tmp.data.sint) {
Thierry FOURNIER00c005c2015-07-08 01:10:21 +02002205 smp->data.sint = 0;
2206 return 1;
2207 }
2208
2209 /* The multiply between LLONG_MIN and -1 returns a
2210 * "floting point exception".
2211 */
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002212 if (smp->data.sint == LLONG_MIN && tmp.data.sint == -1) {
Thierry FOURNIER00c005c2015-07-08 01:10:21 +02002213 smp->data.sint = LLONG_MAX;
2214 return 1;
2215 }
2216
2217 /* execute standard multiplication. */
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002218 c = smp->data.sint * tmp.data.sint;
Thierry FOURNIER00c005c2015-07-08 01:10:21 +02002219
2220 /* check for overflow and makes capped multiply. */
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002221 if (smp->data.sint != c / tmp.data.sint) {
2222 if ((smp->data.sint < 0) == (tmp.data.sint < 0)) {
Thierry FOURNIER00c005c2015-07-08 01:10:21 +02002223 smp->data.sint = LLONG_MAX;
2224 return 1;
2225 }
2226 smp->data.sint = LLONG_MIN;
2227 return 1;
2228 }
2229 smp->data.sint = c;
Willy Tarreau97707872015-01-27 15:12:13 +01002230 return 1;
2231}
2232
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002233/* Takes a SINT on input, applies an arithmetic "div" with the SINT directly in
2234 * arg_p or in the varaible described in arg_p, and returns the SINT result.
2235 * If arg_p makes the result overflow, then the largest possible quantity is
2236 * returned.
Willy Tarreau97707872015-01-27 15:12:13 +01002237 */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02002238static int sample_conv_arith_div(const struct arg *arg_p,
Thierry FOURNIER68a556e2015-02-23 15:11:11 +01002239 struct sample *smp, void *private)
Willy Tarreau97707872015-01-27 15:12:13 +01002240{
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002241 struct sample tmp;
2242
2243 if (!sample_conv_var2smp(arg_p, smp->strm, &tmp))
2244 return 0;
2245
2246 if (tmp.data.sint) {
Thierry FOURNIER00c005c2015-07-08 01:10:21 +02002247 /* The divide between LLONG_MIN and -1 returns a
2248 * "floting point exception".
2249 */
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002250 if (smp->data.sint == LLONG_MIN && tmp.data.sint == -1) {
Thierry FOURNIER00c005c2015-07-08 01:10:21 +02002251 smp->data.sint = LLONG_MAX;
2252 return 1;
2253 }
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002254 smp->data.sint /= tmp.data.sint;
Thierry FOURNIER00c005c2015-07-08 01:10:21 +02002255 return 1;
2256 }
2257 smp->data.sint = LLONG_MAX;
Willy Tarreau97707872015-01-27 15:12:13 +01002258 return 1;
2259}
2260
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002261/* Takes a SINT on input, applies an arithmetic "mod" with the SINT directly in
2262 * arg_p or in the varaible described in arg_p, and returns the SINT result.
2263 * If arg_p makes the result overflow, then 0 is returned.
Willy Tarreau97707872015-01-27 15:12:13 +01002264 */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02002265static int sample_conv_arith_mod(const struct arg *arg_p,
Thierry FOURNIER68a556e2015-02-23 15:11:11 +01002266 struct sample *smp, void *private)
Willy Tarreau97707872015-01-27 15:12:13 +01002267{
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002268 struct sample tmp;
2269
2270 if (!sample_conv_var2smp(arg_p, smp->strm, &tmp))
2271 return 0;
2272
2273 if (tmp.data.sint) {
Thierry FOURNIER00c005c2015-07-08 01:10:21 +02002274 /* The divide between LLONG_MIN and -1 returns a
2275 * "floting point exception".
2276 */
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002277 if (smp->data.sint == LLONG_MIN && tmp.data.sint == -1) {
Thierry FOURNIER00c005c2015-07-08 01:10:21 +02002278 smp->data.sint = 0;
2279 return 1;
2280 }
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002281 smp->data.sint %= tmp.data.sint;
Thierry FOURNIER00c005c2015-07-08 01:10:21 +02002282 return 1;
2283 }
2284 smp->data.sint = 0;
Willy Tarreau97707872015-01-27 15:12:13 +01002285 return 1;
2286}
2287
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002288/* Takes an SINT on input, applies an arithmetic "neg" and returns the SINT
Willy Tarreau97707872015-01-27 15:12:13 +01002289 * result.
2290 */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02002291static int sample_conv_arith_neg(const struct arg *arg_p,
Thierry FOURNIER68a556e2015-02-23 15:11:11 +01002292 struct sample *smp, void *private)
Willy Tarreau97707872015-01-27 15:12:13 +01002293{
Thierry FOURNIER00c005c2015-07-08 01:10:21 +02002294 if (smp->data.sint == LLONG_MIN)
2295 smp->data.sint = LLONG_MAX;
2296 else
2297 smp->data.sint = -smp->data.sint;
Willy Tarreau97707872015-01-27 15:12:13 +01002298 return 1;
2299}
2300
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002301/* Takes a SINT on input, returns true is the value is non-null, otherwise
Willy Tarreau97707872015-01-27 15:12:13 +01002302 * false. The output is a BOOL.
2303 */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02002304static int sample_conv_arith_bool(const struct arg *arg_p,
Thierry FOURNIER68a556e2015-02-23 15:11:11 +01002305 struct sample *smp, void *private)
Willy Tarreau97707872015-01-27 15:12:13 +01002306{
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002307 smp->data.sint = !!smp->data.sint;
Willy Tarreau97707872015-01-27 15:12:13 +01002308 smp->type = SMP_T_BOOL;
2309 return 1;
2310}
2311
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002312/* Takes a SINT on input, returns false is the value is non-null, otherwise
Willy Tarreau97707872015-01-27 15:12:13 +01002313 * truee. The output is a BOOL.
2314 */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02002315static int sample_conv_arith_not(const struct arg *arg_p,
Thierry FOURNIER68a556e2015-02-23 15:11:11 +01002316 struct sample *smp, void *private)
Willy Tarreau97707872015-01-27 15:12:13 +01002317{
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002318 smp->data.sint = !smp->data.sint;
Willy Tarreau97707872015-01-27 15:12:13 +01002319 smp->type = SMP_T_BOOL;
2320 return 1;
2321}
2322
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002323/* Takes a SINT on input, returns true is the value is odd, otherwise false.
Willy Tarreau97707872015-01-27 15:12:13 +01002324 * The output is a BOOL.
2325 */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02002326static int sample_conv_arith_odd(const struct arg *arg_p,
Thierry FOURNIER68a556e2015-02-23 15:11:11 +01002327 struct sample *smp, void *private)
Willy Tarreau97707872015-01-27 15:12:13 +01002328{
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002329 smp->data.sint = smp->data.sint & 1;
Willy Tarreau97707872015-01-27 15:12:13 +01002330 smp->type = SMP_T_BOOL;
2331 return 1;
2332}
2333
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002334/* Takes a SINT on input, returns true is the value is even, otherwise false.
Willy Tarreau97707872015-01-27 15:12:13 +01002335 * The output is a BOOL.
2336 */
Thierry FOURNIER0a9a2b82015-05-11 15:20:49 +02002337static int sample_conv_arith_even(const struct arg *arg_p,
Thierry FOURNIER68a556e2015-02-23 15:11:11 +01002338 struct sample *smp, void *private)
Willy Tarreau97707872015-01-27 15:12:13 +01002339{
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002340 smp->data.sint = !(smp->data.sint & 1);
Willy Tarreau97707872015-01-27 15:12:13 +01002341 smp->type = SMP_T_BOOL;
2342 return 1;
2343}
2344
Willy Tarreau5b8ad222013-07-25 12:17:57 +02002345/************************************************************************/
2346/* All supported sample fetch functions must be declared here */
2347/************************************************************************/
2348
2349/* force TRUE to be returned at the fetch level */
2350static int
Thierry FOURNIER0786d052015-05-11 15:42:45 +02002351smp_fetch_true(const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreau5b8ad222013-07-25 12:17:57 +02002352{
2353 smp->type = SMP_T_BOOL;
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002354 smp->data.sint = 1;
Willy Tarreau5b8ad222013-07-25 12:17:57 +02002355 return 1;
2356}
2357
2358/* force FALSE to be returned at the fetch level */
2359static int
Thierry FOURNIER0786d052015-05-11 15:42:45 +02002360smp_fetch_false(const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreau5b8ad222013-07-25 12:17:57 +02002361{
2362 smp->type = SMP_T_BOOL;
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002363 smp->data.sint = 0;
Willy Tarreau5b8ad222013-07-25 12:17:57 +02002364 return 1;
2365}
2366
2367/* retrieve environment variable $1 as a string */
2368static int
Thierry FOURNIER0786d052015-05-11 15:42:45 +02002369smp_fetch_env(const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreau5b8ad222013-07-25 12:17:57 +02002370{
2371 char *env;
2372
2373 if (!args || args[0].type != ARGT_STR)
2374 return 0;
2375
2376 env = getenv(args[0].data.str.str);
2377 if (!env)
2378 return 0;
2379
Thierry FOURNIER7654c9f2013-12-17 00:20:33 +01002380 smp->type = SMP_T_STR;
2381 smp->flags = SMP_F_CONST;
Willy Tarreau5b8ad222013-07-25 12:17:57 +02002382 smp->data.str.str = env;
2383 smp->data.str.len = strlen(env);
2384 return 1;
2385}
2386
Willy Tarreau6236d3a2013-07-25 14:28:25 +02002387/* retrieve the current local date in epoch time, and applies an optional offset
2388 * of args[0] seconds.
2389 */
2390static int
Thierry FOURNIER0786d052015-05-11 15:42:45 +02002391smp_fetch_date(const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreau6236d3a2013-07-25 14:28:25 +02002392{
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002393 smp->data.sint = date.tv_sec;
Willy Tarreau6236d3a2013-07-25 14:28:25 +02002394
2395 /* add offset */
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02002396 if (args && args[0].type == ARGT_SINT)
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002397 smp->data.sint += args[0].data.sint;
Willy Tarreau6236d3a2013-07-25 14:28:25 +02002398
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002399 smp->type = SMP_T_SINT;
Willy Tarreau6236d3a2013-07-25 14:28:25 +02002400 smp->flags |= SMP_F_VOL_TEST | SMP_F_MAY_CHANGE;
2401 return 1;
2402}
2403
Willy Tarreau0f30d262014-11-24 16:02:05 +01002404/* returns the number of processes */
2405static int
Thierry FOURNIER0786d052015-05-11 15:42:45 +02002406smp_fetch_nbproc(const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreau0f30d262014-11-24 16:02:05 +01002407{
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002408 smp->type = SMP_T_SINT;
2409 smp->data.sint = global.nbproc;
Willy Tarreau0f30d262014-11-24 16:02:05 +01002410 return 1;
2411}
2412
2413/* returns the number of the current process (between 1 and nbproc */
2414static int
Thierry FOURNIER0786d052015-05-11 15:42:45 +02002415smp_fetch_proc(const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreau0f30d262014-11-24 16:02:05 +01002416{
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002417 smp->type = SMP_T_SINT;
2418 smp->data.sint = relative_pid;
Willy Tarreau0f30d262014-11-24 16:02:05 +01002419 return 1;
2420}
2421
Willy Tarreau84310e22014-02-14 11:59:04 +01002422/* generate a random 32-bit integer for whatever purpose, with an optional
2423 * range specified in argument.
2424 */
2425static int
Thierry FOURNIER0786d052015-05-11 15:42:45 +02002426smp_fetch_rand(const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreau84310e22014-02-14 11:59:04 +01002427{
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002428 smp->data.sint = random();
Willy Tarreau84310e22014-02-14 11:59:04 +01002429
2430 /* reduce if needed. Don't do a modulo, use all bits! */
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02002431 if (args && args[0].type == ARGT_SINT)
2432 smp->data.sint = (smp->data.sint * args[0].data.sint) / ((u64)RAND_MAX+1);
Willy Tarreau84310e22014-02-14 11:59:04 +01002433
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002434 smp->type = SMP_T_SINT;
Willy Tarreau84310e22014-02-14 11:59:04 +01002435 smp->flags |= SMP_F_VOL_TEST | SMP_F_MAY_CHANGE;
2436 return 1;
2437}
2438
Willy Tarreau0f30d262014-11-24 16:02:05 +01002439/* returns true if the current process is stopping */
2440static int
Thierry FOURNIER0786d052015-05-11 15:42:45 +02002441smp_fetch_stopping(const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreau0f30d262014-11-24 16:02:05 +01002442{
2443 smp->type = SMP_T_BOOL;
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002444 smp->data.sint = stopping;
Willy Tarreau0f30d262014-11-24 16:02:05 +01002445 return 1;
2446}
2447
Thierry FOURNIERcc103292015-06-06 19:30:17 +02002448static int smp_fetch_const_str(const struct arg *args, struct sample *smp, const char *kw, void *private)
2449{
2450 smp->flags |= SMP_F_CONST;
2451 smp->type = SMP_T_STR;
2452 smp->data.str.str = args[0].data.str.str;
2453 smp->data.str.len = args[0].data.str.len;
2454 return 1;
2455}
2456
2457static int smp_check_const_bool(struct arg *args, char **err)
2458{
2459 if (strcasecmp(args[0].data.str.str, "true") == 0 ||
2460 strcasecmp(args[0].data.str.str, "1") == 0) {
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02002461 args[0].type = ARGT_SINT;
2462 args[0].data.sint = 1;
Thierry FOURNIERcc103292015-06-06 19:30:17 +02002463 return 1;
2464 }
2465 if (strcasecmp(args[0].data.str.str, "false") == 0 ||
2466 strcasecmp(args[0].data.str.str, "0") == 0) {
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02002467 args[0].type = ARGT_SINT;
2468 args[0].data.sint = 0;
Thierry FOURNIERcc103292015-06-06 19:30:17 +02002469 return 1;
2470 }
2471 memprintf(err, "Expects 'true', 'false', '0' or '1'");
2472 return 0;
2473}
2474
2475static int smp_fetch_const_bool(const struct arg *args, struct sample *smp, const char *kw, void *private)
2476{
2477 smp->type = SMP_T_BOOL;
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02002478 smp->data.sint = args[0].data.sint;
Thierry FOURNIERcc103292015-06-06 19:30:17 +02002479 return 1;
2480}
2481
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002482static int smp_fetch_const_int(const struct arg *args, struct sample *smp, const char *kw, void *private)
Thierry FOURNIERcc103292015-06-06 19:30:17 +02002483{
2484 smp->type = SMP_T_SINT;
2485 smp->data.sint = args[0].data.sint;
2486 return 1;
2487}
2488
2489static int smp_fetch_const_ipv4(const struct arg *args, struct sample *smp, const char *kw, void *private)
2490{
2491 smp->type = SMP_T_IPV4;
2492 smp->data.ipv4 = args[0].data.ipv4;
2493 return 1;
2494}
2495
2496static int smp_fetch_const_ipv6(const struct arg *args, struct sample *smp, const char *kw, void *private)
2497{
2498 smp->type = SMP_T_IPV6;
2499 smp->data.ipv6 = args[0].data.ipv6;
2500 return 1;
2501}
2502
2503static int smp_check_const_bin(struct arg *args, char **err)
2504{
2505 char *binstr;
2506 int binstrlen;
2507
2508 if (!parse_binary(args[0].data.str.str, &binstr, &binstrlen, err))
2509 return 0;
2510 args[0].type = ARGT_STR;
2511 args[0].data.str.str = binstr;
2512 args[0].data.str.len = binstrlen;
2513 return 1;
2514}
2515
2516static int smp_fetch_const_bin(const struct arg *args, struct sample *smp, const char *kw, void *private)
2517{
2518 smp->flags |= SMP_F_CONST;
2519 smp->type = SMP_T_BIN;
2520 smp->data.str.str = args[0].data.str.str;
2521 smp->data.str.len = args[0].data.str.len;
2522 return 1;
2523}
2524
2525static int smp_check_const_meth(struct arg *args, char **err)
2526{
2527 enum http_meth_t meth;
2528 int i;
2529
2530 meth = find_http_meth(args[0].data.str.str, args[0].data.str.len);
2531 if (meth != HTTP_METH_OTHER) {
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02002532 args[0].type = ARGT_SINT;
2533 args[0].data.sint = meth;
Thierry FOURNIERcc103292015-06-06 19:30:17 +02002534 } else {
2535 /* Check method avalaibility. A methos is a token defined as :
2536 * tchar = "!" / "#" / "$" / "%" / "&" / "'" / "*" / "+" / "-" / "." /
2537 * "^" / "_" / "`" / "|" / "~" / DIGIT / ALPHA
2538 * token = 1*tchar
2539 */
2540 for (i = 0; i < args[0].data.str.len; i++) {
2541 if (!http_is_token[(unsigned char)args[0].data.str.str[i]]) {
2542 memprintf(err, "expects valid method.");
2543 return 0;
2544 }
2545 }
2546 }
2547 return 1;
2548}
2549
2550static int smp_fetch_const_meth(const struct arg *args, struct sample *smp, const char *kw, void *private)
2551{
2552 smp->type = SMP_T_METH;
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02002553 if (args[0].type == ARGT_SINT) {
Thierry FOURNIERcc103292015-06-06 19:30:17 +02002554 smp->flags &= ~SMP_F_CONST;
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02002555 smp->data.meth.meth = args[0].data.sint;
Thierry FOURNIERcc103292015-06-06 19:30:17 +02002556 smp->data.meth.str.str = "";
2557 smp->data.meth.str.len = 0;
2558 } else {
2559 smp->flags |= SMP_F_CONST;
2560 smp->data.meth.meth = HTTP_METH_OTHER;
2561 smp->data.meth.str.str = args[0].data.str.str;
2562 smp->data.meth.str.len = args[0].data.str.len;
2563 }
2564 return 1;
2565}
2566
Willy Tarreau5b8ad222013-07-25 12:17:57 +02002567/* Note: must not be declared <const> as its list will be overwritten.
2568 * Note: fetches that may return multiple types must be declared as the lowest
2569 * common denominator, the type that can be casted into all other ones. For
2570 * instance IPv4/IPv6 must be declared IPv4.
2571 */
2572static struct sample_fetch_kw_list smp_kws = {ILH, {
2573 { "always_false", smp_fetch_false, 0, NULL, SMP_T_BOOL, SMP_USE_INTRN },
2574 { "always_true", smp_fetch_true, 0, NULL, SMP_T_BOOL, SMP_USE_INTRN },
Thierry FOURNIER7654c9f2013-12-17 00:20:33 +01002575 { "env", smp_fetch_env, ARG1(1,STR), NULL, SMP_T_STR, SMP_USE_INTRN },
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002576 { "date", smp_fetch_date, ARG1(0,SINT), NULL, SMP_T_SINT, SMP_USE_INTRN },
2577 { "nbproc", smp_fetch_nbproc,0, NULL, SMP_T_SINT, SMP_USE_INTRN },
2578 { "proc", smp_fetch_proc, 0, NULL, SMP_T_SINT, SMP_USE_INTRN },
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02002579 { "rand", smp_fetch_rand, ARG1(0,SINT), NULL, SMP_T_SINT, SMP_USE_INTRN },
Willy Tarreau0f30d262014-11-24 16:02:05 +01002580 { "stopping", smp_fetch_stopping, 0, NULL, SMP_T_BOOL, SMP_USE_INTRN },
Thierry FOURNIERcc103292015-06-06 19:30:17 +02002581
2582 { "str", smp_fetch_const_str, ARG1(1,STR), NULL , SMP_T_STR, SMP_USE_INTRN },
2583 { "bool", smp_fetch_const_bool, ARG1(1,STR), smp_check_const_bool, SMP_T_BOOL, SMP_USE_INTRN },
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002584 { "int", smp_fetch_const_int, ARG1(1,SINT), NULL , SMP_T_SINT, SMP_USE_INTRN },
Thierry FOURNIERcc103292015-06-06 19:30:17 +02002585 { "ipv4", smp_fetch_const_ipv4, ARG1(1,IPV4), NULL , SMP_T_IPV4, SMP_USE_INTRN },
2586 { "ipv6", smp_fetch_const_ipv6, ARG1(1,IPV6), NULL , SMP_T_IPV6, SMP_USE_INTRN },
2587 { "bin", smp_fetch_const_bin, ARG1(1,STR), smp_check_const_bin , SMP_T_BIN, SMP_USE_INTRN },
2588 { "meth", smp_fetch_const_meth, ARG1(1,STR), smp_check_const_meth, SMP_T_METH, SMP_USE_INTRN },
2589
Willy Tarreau5b8ad222013-07-25 12:17:57 +02002590 { /* END */ },
2591}};
2592
Emeric Brun107ca302010-01-04 16:16:05 +01002593/* Note: must not be declared <const> as its list will be overwritten */
Willy Tarreaudc13c112013-06-21 23:16:39 +02002594static struct sample_conv_kw_list sample_conv_kws = {ILH, {
Thierry FOURNIER9687c772015-05-07 15:46:29 +02002595#ifdef DEBUG_EXPR
2596 { "debug", sample_conv_debug, 0, NULL, SMP_T_ANY, SMP_T_ANY },
2597#endif
2598
Emeric Brun53d1a982014-04-30 18:21:37 +02002599 { "base64", sample_conv_bin2base64,0, NULL, SMP_T_BIN, SMP_T_STR },
Willy Tarreau12785782012-04-27 21:37:17 +02002600 { "upper", sample_conv_str2upper, 0, NULL, SMP_T_STR, SMP_T_STR },
2601 { "lower", sample_conv_str2lower, 0, NULL, SMP_T_STR, SMP_T_STR },
Thierry FOURNIER2f49d6d2014-03-12 15:01:52 +01002602 { "hex", sample_conv_bin2hex, 0, NULL, SMP_T_BIN, SMP_T_STR },
Willy Tarreau12785782012-04-27 21:37:17 +02002603 { "ipmask", sample_conv_ipmask, ARG1(1,MSK4), NULL, SMP_T_IPV4, SMP_T_IPV4 },
Thierry FOURNIER07ee64e2015-07-06 23:43:03 +02002604 { "ltime", sample_conv_ltime, ARG2(1,STR,SINT), NULL, SMP_T_SINT, SMP_T_STR },
2605 { "utime", sample_conv_utime, ARG2(1,STR,SINT), NULL, SMP_T_SINT, SMP_T_STR },
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02002606 { "crc32", sample_conv_crc32, ARG1(0,SINT), NULL, SMP_T_BIN, SMP_T_SINT },
2607 { "djb2", sample_conv_djb2, ARG1(0,SINT), NULL, SMP_T_BIN, SMP_T_SINT },
2608 { "sdbm", sample_conv_sdbm, ARG1(0,SINT), NULL, SMP_T_BIN, SMP_T_SINT },
2609 { "wt6", sample_conv_wt6, ARG1(0,SINT), NULL, SMP_T_BIN, SMP_T_SINT },
Thierry FOURNIER317e1c42014-08-12 10:20:47 +02002610 { "json", sample_conv_json, ARG1(1,STR), sample_conv_json_check, SMP_T_STR, SMP_T_STR },
Thierry FOURNIERbf65cd42015-07-20 17:45:02 +02002611 { "bytes", sample_conv_bytes, ARG2(1,SINT,SINT), NULL, SMP_T_BIN, SMP_T_BIN },
2612 { "field", sample_conv_field, ARG2(2,SINT,STR), sample_conv_field_check, SMP_T_STR, SMP_T_STR },
2613 { "word", sample_conv_word, ARG2(2,SINT,STR), sample_conv_field_check, SMP_T_STR, SMP_T_STR },
Willy Tarreau7eda8492015-01-20 19:47:06 +01002614 { "regsub", sample_conv_regsub, ARG3(2,REG,STR,STR), sample_conv_regsub_check, SMP_T_STR, SMP_T_STR },
Willy Tarreau97707872015-01-27 15:12:13 +01002615
Thierry FOURNIER5d86fae2015-07-07 21:10:16 +02002616 { "and", sample_conv_binary_and, ARG1(1,STR), check_operator, SMP_T_SINT, SMP_T_SINT },
2617 { "or", sample_conv_binary_or, ARG1(1,STR), check_operator, SMP_T_SINT, SMP_T_SINT },
2618 { "xor", sample_conv_binary_xor, ARG1(1,STR), check_operator, SMP_T_SINT, SMP_T_SINT },
2619 { "cpl", sample_conv_binary_cpl, 0, NULL, SMP_T_SINT, SMP_T_SINT },
2620 { "bool", sample_conv_arith_bool, 0, NULL, SMP_T_SINT, SMP_T_BOOL },
2621 { "not", sample_conv_arith_not, 0, NULL, SMP_T_SINT, SMP_T_BOOL },
2622 { "odd", sample_conv_arith_odd, 0, NULL, SMP_T_SINT, SMP_T_BOOL },
2623 { "even", sample_conv_arith_even, 0, NULL, SMP_T_SINT, SMP_T_BOOL },
2624 { "add", sample_conv_arith_add, ARG1(1,STR), check_operator, SMP_T_SINT, SMP_T_SINT },
2625 { "sub", sample_conv_arith_sub, ARG1(1,STR), check_operator, SMP_T_SINT, SMP_T_SINT },
2626 { "mul", sample_conv_arith_mul, ARG1(1,STR), check_operator, SMP_T_SINT, SMP_T_SINT },
2627 { "div", sample_conv_arith_div, ARG1(1,STR), check_operator, SMP_T_SINT, SMP_T_SINT },
2628 { "mod", sample_conv_arith_mod, ARG1(1,STR), check_operator, SMP_T_SINT, SMP_T_SINT },
2629 { "neg", sample_conv_arith_neg, 0, NULL, SMP_T_SINT, SMP_T_SINT },
Willy Tarreau97707872015-01-27 15:12:13 +01002630
Willy Tarreau9fcb9842012-04-20 14:45:49 +02002631 { NULL, NULL, 0, 0, 0 },
Emeric Brun107ca302010-01-04 16:16:05 +01002632}};
2633
2634__attribute__((constructor))
Willy Tarreau12785782012-04-27 21:37:17 +02002635static void __sample_init(void)
Emeric Brun107ca302010-01-04 16:16:05 +01002636{
Willy Tarreau5b8ad222013-07-25 12:17:57 +02002637 /* register sample fetch and format conversion keywords */
2638 sample_register_fetches(&smp_kws);
Willy Tarreau12785782012-04-27 21:37:17 +02002639 sample_register_convs(&sample_conv_kws);
Emeric Brun107ca302010-01-04 16:16:05 +01002640}