Testsuite: adjust for 64b-int compatability
[exim.git] / src / src / expand.c
CommitLineData
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1/*************************************************
2* Exim - an Internet mail transport agent *
3*************************************************/
4
f9ba5e22 5/* Copyright (c) University of Cambridge 1995 - 2018 */
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6/* See the file NOTICE for conditions of use and distribution. */
7
8
9/* Functions for handling string expansion. */
10
11
12#include "exim.h"
13
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14/* Recursively called function */
15
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16static uschar *expand_string_internal(const uschar *, BOOL, const uschar **, BOOL, BOOL, BOOL *);
17static int_eximarith_t expanded_string_integer(const uschar *, BOOL);
96c065cb 18
059ec3d9 19#ifdef STAND_ALONE
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20# ifndef SUPPORT_CRYPTEQ
21# define SUPPORT_CRYPTEQ
22# endif
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23#endif
24
96c065cb 25#ifdef LOOKUP_LDAP
9d466bf7 26# include "lookups/ldap.h"
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27#endif
28
059ec3d9 29#ifdef SUPPORT_CRYPTEQ
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30# ifdef CRYPT_H
31# include <crypt.h>
32# endif
33# ifndef HAVE_CRYPT16
059ec3d9 34extern char* crypt16(char*, char*);
9d466bf7 35# endif
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36#endif
37
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38/* The handling of crypt16() is a mess. I will record below the analysis of the
39mess that was sent to me. We decided, however, to make changing this very low
40priority, because in practice people are moving away from the crypt()
41algorithms nowadays, so it doesn't seem worth it.
42
43<quote>
44There is an algorithm named "crypt16" in Ultrix and Tru64. It crypts
45the first 8 characters of the password using a 20-round version of crypt
46(standard crypt does 25 rounds). It then crypts the next 8 characters,
47or an empty block if the password is less than 9 characters, using a
4820-round version of crypt and the same salt as was used for the first
4c04137d 49block. Characters after the first 16 are ignored. It always generates
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50a 16-byte hash, which is expressed together with the salt as a string
51of 24 base 64 digits. Here are some links to peruse:
52
53 http://cvs.pld.org.pl/pam/pamcrypt/crypt16.c?rev=1.2
54 http://seclists.org/bugtraq/1999/Mar/0076.html
55
56There's a different algorithm named "bigcrypt" in HP-UX, Digital Unix,
57and OSF/1. This is the same as the standard crypt if given a password
58of 8 characters or less. If given more, it first does the same as crypt
59using the first 8 characters, then crypts the next 8 (the 9th to 16th)
60using as salt the first two base 64 digits from the first hash block.
61If the password is more than 16 characters then it crypts the 17th to 24th
62characters using as salt the first two base 64 digits from the second hash
63block. And so on: I've seen references to it cutting off the password at
6440 characters (5 blocks), 80 (10 blocks), or 128 (16 blocks). Some links:
65
66 http://cvs.pld.org.pl/pam/pamcrypt/bigcrypt.c?rev=1.2
67 http://seclists.org/bugtraq/1999/Mar/0109.html
68 http://h30097.www3.hp.com/docs/base_doc/DOCUMENTATION/HTML/AA-Q0R2D-
69 TET1_html/sec.c222.html#no_id_208
70
71Exim has something it calls "crypt16". It will either use a native
72crypt16 or its own implementation. A native crypt16 will presumably
73be the one that I called "crypt16" above. The internal "crypt16"
74function, however, is a two-block-maximum implementation of what I called
75"bigcrypt". The documentation matches the internal code.
76
77I suspect that whoever did the "crypt16" stuff for Exim didn't realise
78that crypt16 and bigcrypt were different things.
79
80Exim uses the LDAP-style scheme identifier "{crypt16}" to refer
81to whatever it is using under that name. This unfortunately sets a
82precedent for using "{crypt16}" to identify two incompatible algorithms
83whose output can't be distinguished. With "{crypt16}" thus rendered
84ambiguous, I suggest you deprecate it and invent two new identifiers
85for the two algorithms.
86
87Both crypt16 and bigcrypt are very poor algorithms, btw. Hashing parts
88of the password separately means they can be cracked separately, so
89the double-length hash only doubles the cracking effort instead of
90squaring it. I recommend salted SHA-1 ({SSHA}), or the Blowfish-based
91bcrypt ({CRYPT}$2a$).
92</quote>
93*/
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94
95
059ec3d9 96
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97/*************************************************
98* Local statics and tables *
99*************************************************/
100
101/* Table of item names, and corresponding switch numbers. The names must be in
102alphabetical order. */
103
104static uschar *item_table[] = {
723c72e6 105 US"acl",
dfbcb5ac 106 US"authresults",
9d1c15ef 107 US"certextract",
1a46a8c5 108 US"dlfunc",
089fc87a 109 US"env",
059ec3d9 110 US"extract",
29f89cad 111 US"filter",
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112 US"hash",
113 US"hmac",
114 US"if",
8c5d388a 115#ifdef SUPPORT_I18N
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116 US"imapfolder",
117#endif
059ec3d9 118 US"length",
aa26e137 119 US"listextract",
059ec3d9 120 US"lookup",
29f89cad 121 US"map",
059ec3d9 122 US"nhash",
1a46a8c5 123 US"perl",
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124 US"prvs",
125 US"prvscheck",
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126 US"readfile",
127 US"readsocket",
29f89cad 128 US"reduce",
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129 US"run",
130 US"sg",
ac4ef9bd 131 US"sort",
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132 US"substr",
133 US"tr" };
134
135enum {
723c72e6 136 EITEM_ACL,
dfbcb5ac 137 EITEM_AUTHRESULTS,
9d1c15ef 138 EITEM_CERTEXTRACT,
1a46a8c5 139 EITEM_DLFUNC,
089fc87a 140 EITEM_ENV,
059ec3d9 141 EITEM_EXTRACT,
29f89cad 142 EITEM_FILTER,
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143 EITEM_HASH,
144 EITEM_HMAC,
145 EITEM_IF,
8c5d388a 146#ifdef SUPPORT_I18N
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147 EITEM_IMAPFOLDER,
148#endif
059ec3d9 149 EITEM_LENGTH,
aa26e137 150 EITEM_LISTEXTRACT,
059ec3d9 151 EITEM_LOOKUP,
29f89cad 152 EITEM_MAP,
059ec3d9 153 EITEM_NHASH,
1a46a8c5 154 EITEM_PERL,
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155 EITEM_PRVS,
156 EITEM_PRVSCHECK,
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157 EITEM_READFILE,
158 EITEM_READSOCK,
29f89cad 159 EITEM_REDUCE,
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160 EITEM_RUN,
161 EITEM_SG,
ac4ef9bd 162 EITEM_SORT,
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163 EITEM_SUBSTR,
164 EITEM_TR };
165
166/* Tables of operator names, and corresponding switch numbers. The names must be
167in alphabetical order. There are two tables, because underscore is used in some
168cases to introduce arguments, whereas for other it is part of the name. This is
169an historical mis-design. */
170
171static uschar *op_table_underscore[] = {
172 US"from_utf8",
173 US"local_part",
174 US"quote_local_part",
83e029d5 175 US"reverse_ip",
f90d018c 176 US"time_eval",
4e08fd50 177 US"time_interval"
8c5d388a 178#ifdef SUPPORT_I18N
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179 ,US"utf8_domain_from_alabel",
180 US"utf8_domain_to_alabel",
181 US"utf8_localpart_from_alabel",
182 US"utf8_localpart_to_alabel"
183#endif
184 };
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185
186enum {
187 EOP_FROM_UTF8,
188 EOP_LOCAL_PART,
189 EOP_QUOTE_LOCAL_PART,
83e029d5 190 EOP_REVERSE_IP,
f90d018c 191 EOP_TIME_EVAL,
4e08fd50 192 EOP_TIME_INTERVAL
8c5d388a 193#ifdef SUPPORT_I18N
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194 ,EOP_UTF8_DOMAIN_FROM_ALABEL,
195 EOP_UTF8_DOMAIN_TO_ALABEL,
196 EOP_UTF8_LOCALPART_FROM_ALABEL,
197 EOP_UTF8_LOCALPART_TO_ALABEL
198#endif
199 };
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200
201static uschar *op_table_main[] = {
202 US"address",
29f89cad 203 US"addresses",
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204 US"base32",
205 US"base32d",
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206 US"base62",
207 US"base62d",
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208 US"base64",
209 US"base64d",
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210 US"domain",
211 US"escape",
3367f8c2 212 US"escape8bit",
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213 US"eval",
214 US"eval10",
215 US"expand",
216 US"h",
217 US"hash",
218 US"hex2b64",
c393f931 219 US"hexquote",
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220 US"ipv6denorm",
221 US"ipv6norm",
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222 US"l",
223 US"lc",
224 US"length",
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225 US"listcount",
226 US"listnamed",
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227 US"mask",
228 US"md5",
229 US"nh",
230 US"nhash",
231 US"quote",
9e3331ea 232 US"randint",
059ec3d9 233 US"rfc2047",
9c57cbc0 234 US"rfc2047d",
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235 US"rxquote",
236 US"s",
237 US"sha1",
9ef9101c 238 US"sha256",
6e773413 239 US"sha3",
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240 US"stat",
241 US"str2b64",
242 US"strlen",
243 US"substr",
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244 US"uc",
245 US"utf8clean" };
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246
247enum {
0539a19d 248 EOP_ADDRESS = nelem(op_table_underscore),
29f89cad 249 EOP_ADDRESSES,
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250 EOP_BASE32,
251 EOP_BASE32D,
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252 EOP_BASE62,
253 EOP_BASE62D,
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254 EOP_BASE64,
255 EOP_BASE64D,
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256 EOP_DOMAIN,
257 EOP_ESCAPE,
3367f8c2 258 EOP_ESCAPE8BIT,
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259 EOP_EVAL,
260 EOP_EVAL10,
261 EOP_EXPAND,
262 EOP_H,
263 EOP_HASH,
264 EOP_HEX2B64,
c393f931 265 EOP_HEXQUOTE,
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266 EOP_IPV6DENORM,
267 EOP_IPV6NORM,
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268 EOP_L,
269 EOP_LC,
270 EOP_LENGTH,
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271 EOP_LISTCOUNT,
272 EOP_LISTNAMED,
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273 EOP_MASK,
274 EOP_MD5,
275 EOP_NH,
276 EOP_NHASH,
277 EOP_QUOTE,
9e3331ea 278 EOP_RANDINT,
059ec3d9 279 EOP_RFC2047,
9c57cbc0 280 EOP_RFC2047D,
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281 EOP_RXQUOTE,
282 EOP_S,
283 EOP_SHA1,
9ef9101c 284 EOP_SHA256,
6e773413 285 EOP_SHA3,
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286 EOP_STAT,
287 EOP_STR2B64,
288 EOP_STRLEN,
289 EOP_SUBSTR,
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290 EOP_UC,
291 EOP_UTF8CLEAN };
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292
293
294/* Table of condition names, and corresponding switch numbers. The names must
295be in alphabetical order. */
296
297static uschar *cond_table[] = {
298 US"<",
299 US"<=",
300 US"=",
301 US"==", /* Backward compatibility */
302 US">",
303 US">=",
333eea9c 304 US"acl",
059ec3d9 305 US"and",
f3766eb5 306 US"bool",
6a8de854 307 US"bool_lax",
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308 US"crypteq",
309 US"def",
310 US"eq",
311 US"eqi",
312 US"exists",
313 US"first_delivery",
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314 US"forall",
315 US"forany",
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316 US"ge",
317 US"gei",
318 US"gt",
319 US"gti",
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320 US"inlist",
321 US"inlisti",
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322 US"isip",
323 US"isip4",
324 US"isip6",
325 US"ldapauth",
326 US"le",
327 US"lei",
328 US"lt",
329 US"lti",
330 US"match",
331 US"match_address",
332 US"match_domain",
32d668a5 333 US"match_ip",
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334 US"match_local_part",
335 US"or",
336 US"pam",
337 US"pwcheck",
338 US"queue_running",
339 US"radius",
340 US"saslauthd"
341};
342
343enum {
344 ECOND_NUM_L,
345 ECOND_NUM_LE,
346 ECOND_NUM_E,
347 ECOND_NUM_EE,
348 ECOND_NUM_G,
349 ECOND_NUM_GE,
333eea9c 350 ECOND_ACL,
059ec3d9 351 ECOND_AND,
f3766eb5 352 ECOND_BOOL,
6a8de854 353 ECOND_BOOL_LAX,
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354 ECOND_CRYPTEQ,
355 ECOND_DEF,
356 ECOND_STR_EQ,
357 ECOND_STR_EQI,
358 ECOND_EXISTS,
359 ECOND_FIRST_DELIVERY,
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360 ECOND_FORALL,
361 ECOND_FORANY,
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362 ECOND_STR_GE,
363 ECOND_STR_GEI,
364 ECOND_STR_GT,
365 ECOND_STR_GTI,
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366 ECOND_INLIST,
367 ECOND_INLISTI,
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368 ECOND_ISIP,
369 ECOND_ISIP4,
370 ECOND_ISIP6,
371 ECOND_LDAPAUTH,
372 ECOND_STR_LE,
373 ECOND_STR_LEI,
374 ECOND_STR_LT,
375 ECOND_STR_LTI,
376 ECOND_MATCH,
377 ECOND_MATCH_ADDRESS,
378 ECOND_MATCH_DOMAIN,
32d668a5 379 ECOND_MATCH_IP,
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380 ECOND_MATCH_LOCAL_PART,
381 ECOND_OR,
382 ECOND_PAM,
383 ECOND_PWCHECK,
384 ECOND_QUEUE_RUNNING,
385 ECOND_RADIUS,
386 ECOND_SASLAUTHD
387};
388
389
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390/* Types of table entry */
391
7e75538e 392enum vtypes {
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393 vtype_int, /* value is address of int */
394 vtype_filter_int, /* ditto, but recognized only when filtering */
395 vtype_ino, /* value is address of ino_t (not always an int) */
396 vtype_uid, /* value is address of uid_t (not always an int) */
397 vtype_gid, /* value is address of gid_t (not always an int) */
11d7e4fa 398 vtype_bool, /* value is address of bool */
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399 vtype_stringptr, /* value is address of pointer to string */
400 vtype_msgbody, /* as stringptr, but read when first required */
401 vtype_msgbody_end, /* ditto, the end of the message */
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402 vtype_msgheaders, /* the message's headers, processed */
403 vtype_msgheaders_raw, /* the message's headers, unprocessed */
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404 vtype_localpart, /* extract local part from string */
405 vtype_domain, /* extract domain from string */
362145b5 406 vtype_string_func, /* value is string returned by given function */
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407 vtype_todbsdin, /* value not used; generate BSD inbox tod */
408 vtype_tode, /* value not used; generate tod in epoch format */
f5787926 409 vtype_todel, /* value not used; generate tod in epoch/usec format */
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410 vtype_todf, /* value not used; generate full tod */
411 vtype_todl, /* value not used; generate log tod */
412 vtype_todlf, /* value not used; generate log file datestamp tod */
413 vtype_todzone, /* value not used; generate time zone only */
414 vtype_todzulu, /* value not used; generate zulu tod */
415 vtype_reply, /* value not used; get reply from headers */
416 vtype_pid, /* value not used; result is pid */
417 vtype_host_lookup, /* value not used; get host name */
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418 vtype_load_avg, /* value not used; result is int from os_getloadavg */
419 vtype_pspace, /* partition space; value is T/F for spool/log */
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420 vtype_pinodes, /* partition inodes; value is T/F for spool/log */
421 vtype_cert /* SSL certificate */
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422 #ifndef DISABLE_DKIM
423 ,vtype_dkim /* Lookup of value in DKIM signature */
424 #endif
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425};
426
427/* Type for main variable table */
428
429typedef struct {
430 const char *name;
431 enum vtypes type;
432 void *value;
433} var_entry;
434
435/* Type for entries pointing to address/length pairs. Not currently
436in use. */
437
438typedef struct {
439 uschar **address;
440 int *length;
441} alblock;
059ec3d9 442
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443static uschar * fn_recipients(void);
444
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445/* This table must be kept in alphabetical order. */
446
447static var_entry var_table[] = {
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448 /* WARNING: Do not invent variables whose names start acl_c or acl_m because
449 they will be confused with user-creatable ACL variables. */
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450 { "acl_arg1", vtype_stringptr, &acl_arg[0] },
451 { "acl_arg2", vtype_stringptr, &acl_arg[1] },
452 { "acl_arg3", vtype_stringptr, &acl_arg[2] },
453 { "acl_arg4", vtype_stringptr, &acl_arg[3] },
454 { "acl_arg5", vtype_stringptr, &acl_arg[4] },
455 { "acl_arg6", vtype_stringptr, &acl_arg[5] },
456 { "acl_arg7", vtype_stringptr, &acl_arg[6] },
457 { "acl_arg8", vtype_stringptr, &acl_arg[7] },
458 { "acl_arg9", vtype_stringptr, &acl_arg[8] },
459 { "acl_narg", vtype_int, &acl_narg },
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460 { "acl_verify_message", vtype_stringptr, &acl_verify_message },
461 { "address_data", vtype_stringptr, &deliver_address_data },
462 { "address_file", vtype_stringptr, &address_file },
463 { "address_pipe", vtype_stringptr, &address_pipe },
93c931f8 464#ifdef EXPERIMENTAL_ARC
9cffa436 465 { "arc_domains", vtype_string_func, &fn_arc_domains },
ea7b1f16 466 { "arc_oldest_pass", vtype_int, &arc_oldest_pass },
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467 { "arc_state", vtype_stringptr, &arc_state },
468 { "arc_state_reason", vtype_stringptr, &arc_state_reason },
469#endif
2d07a215 470 { "authenticated_fail_id",vtype_stringptr, &authenticated_fail_id },
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471 { "authenticated_id", vtype_stringptr, &authenticated_id },
472 { "authenticated_sender",vtype_stringptr, &authenticated_sender },
473 { "authentication_failed",vtype_int, &authentication_failed },
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474#ifdef WITH_CONTENT_SCAN
475 { "av_failed", vtype_int, &av_failed },
476#endif
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477#ifdef EXPERIMENTAL_BRIGHTMAIL
478 { "bmi_alt_location", vtype_stringptr, &bmi_alt_location },
479 { "bmi_base64_tracker_verdict", vtype_stringptr, &bmi_base64_tracker_verdict },
480 { "bmi_base64_verdict", vtype_stringptr, &bmi_base64_verdict },
481 { "bmi_deliver", vtype_int, &bmi_deliver },
482#endif
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483 { "body_linecount", vtype_int, &body_linecount },
484 { "body_zerocount", vtype_int, &body_zerocount },
485 { "bounce_recipient", vtype_stringptr, &bounce_recipient },
486 { "bounce_return_size_limit", vtype_int, &bounce_return_size_limit },
487 { "caller_gid", vtype_gid, &real_gid },
488 { "caller_uid", vtype_uid, &real_uid },
055e2cb4 489 { "callout_address", vtype_stringptr, &callout_address },
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490 { "compile_date", vtype_stringptr, &version_date },
491 { "compile_number", vtype_stringptr, &version_cnumber },
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492 { "config_dir", vtype_stringptr, &config_main_directory },
493 { "config_file", vtype_stringptr, &config_main_filename },
e5a9dba6 494 { "csa_status", vtype_stringptr, &csa_status },
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495#ifdef EXPERIMENTAL_DCC
496 { "dcc_header", vtype_stringptr, &dcc_header },
497 { "dcc_result", vtype_stringptr, &dcc_result },
498#endif
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499#ifndef DISABLE_DKIM
500 { "dkim_algo", vtype_dkim, (void *)DKIM_ALGO },
501 { "dkim_bodylength", vtype_dkim, (void *)DKIM_BODYLENGTH },
502 { "dkim_canon_body", vtype_dkim, (void *)DKIM_CANON_BODY },
503 { "dkim_canon_headers", vtype_dkim, (void *)DKIM_CANON_HEADERS },
504 { "dkim_copiedheaders", vtype_dkim, (void *)DKIM_COPIEDHEADERS },
505 { "dkim_created", vtype_dkim, (void *)DKIM_CREATED },
2df588c9 506 { "dkim_cur_signer", vtype_stringptr, &dkim_cur_signer },
e08d09e5 507 { "dkim_domain", vtype_stringptr, &dkim_signing_domain },
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508 { "dkim_expires", vtype_dkim, (void *)DKIM_EXPIRES },
509 { "dkim_headernames", vtype_dkim, (void *)DKIM_HEADERNAMES },
510 { "dkim_identity", vtype_dkim, (void *)DKIM_IDENTITY },
511 { "dkim_key_granularity",vtype_dkim, (void *)DKIM_KEY_GRANULARITY },
abe1010c 512 { "dkim_key_length", vtype_int, &dkim_key_length },
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513 { "dkim_key_nosubdomains",vtype_dkim, (void *)DKIM_NOSUBDOMAINS },
514 { "dkim_key_notes", vtype_dkim, (void *)DKIM_KEY_NOTES },
515 { "dkim_key_srvtype", vtype_dkim, (void *)DKIM_KEY_SRVTYPE },
516 { "dkim_key_testing", vtype_dkim, (void *)DKIM_KEY_TESTING },
e08d09e5 517 { "dkim_selector", vtype_stringptr, &dkim_signing_selector },
9e5d6b55 518 { "dkim_signers", vtype_stringptr, &dkim_signers },
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519 { "dkim_verify_reason", vtype_stringptr, &dkim_verify_reason },
520 { "dkim_verify_status", vtype_stringptr, &dkim_verify_status },
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521#endif
522#ifdef EXPERIMENTAL_DMARC
8c8b8274 523 { "dmarc_domain_policy", vtype_stringptr, &dmarc_domain_policy },
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524 { "dmarc_status", vtype_stringptr, &dmarc_status },
525 { "dmarc_status_text", vtype_stringptr, &dmarc_status_text },
526 { "dmarc_used_domain", vtype_stringptr, &dmarc_used_domain },
8523533c 527#endif
059ec3d9 528 { "dnslist_domain", vtype_stringptr, &dnslist_domain },
93655c46 529 { "dnslist_matched", vtype_stringptr, &dnslist_matched },
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530 { "dnslist_text", vtype_stringptr, &dnslist_text },
531 { "dnslist_value", vtype_stringptr, &dnslist_value },
532 { "domain", vtype_stringptr, &deliver_domain },
533 { "domain_data", vtype_stringptr, &deliver_domain_data },
0cbf2b82 534#ifndef DISABLE_EVENT
774ef2d7
JH
535 { "event_data", vtype_stringptr, &event_data },
536
537 /*XXX want to use generic vars for as many of these as possible*/
538 { "event_defer_errno", vtype_int, &event_defer_errno },
539
540 { "event_name", vtype_stringptr, &event_name },
541#endif
059ec3d9
PH
542 { "exim_gid", vtype_gid, &exim_gid },
543 { "exim_path", vtype_stringptr, &exim_path },
544 { "exim_uid", vtype_uid, &exim_uid },
71224040 545 { "exim_version", vtype_stringptr, &version_string },
362145b5 546 { "headers_added", vtype_string_func, &fn_hdrs_added },
059ec3d9
PH
547 { "home", vtype_stringptr, &deliver_home },
548 { "host", vtype_stringptr, &deliver_host },
549 { "host_address", vtype_stringptr, &deliver_host_address },
550 { "host_data", vtype_stringptr, &host_data },
b08b24c8 551 { "host_lookup_deferred",vtype_int, &host_lookup_deferred },
059ec3d9 552 { "host_lookup_failed", vtype_int, &host_lookup_failed },
a7538db1 553 { "host_port", vtype_int, &deliver_host_port },
3615fa9a 554 { "initial_cwd", vtype_stringptr, &initial_cwd },
059ec3d9
PH
555 { "inode", vtype_ino, &deliver_inode },
556 { "interface_address", vtype_stringptr, &interface_address },
557 { "interface_port", vtype_int, &interface_port },
0ce9abe6 558 { "item", vtype_stringptr, &iterate_item },
059ec3d9
PH
559 #ifdef LOOKUP_LDAP
560 { "ldap_dn", vtype_stringptr, &eldap_dn },
561 #endif
562 { "load_average", vtype_load_avg, NULL },
563 { "local_part", vtype_stringptr, &deliver_localpart },
564 { "local_part_data", vtype_stringptr, &deliver_localpart_data },
565 { "local_part_prefix", vtype_stringptr, &deliver_localpart_prefix },
566 { "local_part_suffix", vtype_stringptr, &deliver_localpart_suffix },
9723f966 567#ifdef HAVE_LOCAL_SCAN
059ec3d9 568 { "local_scan_data", vtype_stringptr, &local_scan_data },
9723f966 569#endif
059ec3d9
PH
570 { "local_user_gid", vtype_gid, &local_user_gid },
571 { "local_user_uid", vtype_uid, &local_user_uid },
572 { "localhost_number", vtype_int, &host_number },
5cb8cbc6 573 { "log_inodes", vtype_pinodes, (void *)FALSE },
8e669ac1 574 { "log_space", vtype_pspace, (void *)FALSE },
4e0983dc 575 { "lookup_dnssec_authenticated",vtype_stringptr,&lookup_dnssec_authenticated},
059ec3d9 576 { "mailstore_basename", vtype_stringptr, &mailstore_basename },
8523533c
TK
577#ifdef WITH_CONTENT_SCAN
578 { "malware_name", vtype_stringptr, &malware_name },
579#endif
d677b2f2 580 { "max_received_linelength", vtype_int, &max_received_linelength },
059ec3d9
PH
581 { "message_age", vtype_int, &message_age },
582 { "message_body", vtype_msgbody, &message_body },
583 { "message_body_end", vtype_msgbody_end, &message_body_end },
584 { "message_body_size", vtype_int, &message_body_size },
1ab52c69 585 { "message_exim_id", vtype_stringptr, &message_id },
059ec3d9 586 { "message_headers", vtype_msgheaders, NULL },
ff75a1f7 587 { "message_headers_raw", vtype_msgheaders_raw, NULL },
059ec3d9 588 { "message_id", vtype_stringptr, &message_id },
2e0c1448 589 { "message_linecount", vtype_int, &message_linecount },
059ec3d9 590 { "message_size", vtype_int, &message_size },
8c5d388a 591#ifdef SUPPORT_I18N
eb02f5df
JH
592 { "message_smtputf8", vtype_bool, &message_smtputf8 },
593#endif
8523533c
TK
594#ifdef WITH_CONTENT_SCAN
595 { "mime_anomaly_level", vtype_int, &mime_anomaly_level },
596 { "mime_anomaly_text", vtype_stringptr, &mime_anomaly_text },
597 { "mime_boundary", vtype_stringptr, &mime_boundary },
598 { "mime_charset", vtype_stringptr, &mime_charset },
599 { "mime_content_description", vtype_stringptr, &mime_content_description },
600 { "mime_content_disposition", vtype_stringptr, &mime_content_disposition },
601 { "mime_content_id", vtype_stringptr, &mime_content_id },
602 { "mime_content_size", vtype_int, &mime_content_size },
603 { "mime_content_transfer_encoding",vtype_stringptr, &mime_content_transfer_encoding },
604 { "mime_content_type", vtype_stringptr, &mime_content_type },
605 { "mime_decoded_filename", vtype_stringptr, &mime_decoded_filename },
606 { "mime_filename", vtype_stringptr, &mime_filename },
607 { "mime_is_coverletter", vtype_int, &mime_is_coverletter },
608 { "mime_is_multipart", vtype_int, &mime_is_multipart },
609 { "mime_is_rfc822", vtype_int, &mime_is_rfc822 },
610 { "mime_part_count", vtype_int, &mime_part_count },
611#endif
059ec3d9
PH
612 { "n0", vtype_filter_int, &filter_n[0] },
613 { "n1", vtype_filter_int, &filter_n[1] },
614 { "n2", vtype_filter_int, &filter_n[2] },
615 { "n3", vtype_filter_int, &filter_n[3] },
616 { "n4", vtype_filter_int, &filter_n[4] },
617 { "n5", vtype_filter_int, &filter_n[5] },
618 { "n6", vtype_filter_int, &filter_n[6] },
619 { "n7", vtype_filter_int, &filter_n[7] },
620 { "n8", vtype_filter_int, &filter_n[8] },
621 { "n9", vtype_filter_int, &filter_n[9] },
622 { "original_domain", vtype_stringptr, &deliver_domain_orig },
623 { "original_local_part", vtype_stringptr, &deliver_localpart_orig },
624 { "originator_gid", vtype_gid, &originator_gid },
625 { "originator_uid", vtype_uid, &originator_uid },
626 { "parent_domain", vtype_stringptr, &deliver_domain_parent },
627 { "parent_local_part", vtype_stringptr, &deliver_localpart_parent },
628 { "pid", vtype_pid, NULL },
858e91c2
JH
629#ifndef DISABLE_PRDR
630 { "prdr_requested", vtype_bool, &prdr_requested },
631#endif
059ec3d9 632 { "primary_hostname", vtype_stringptr, &primary_hostname },
e6d2a989
JH
633#if defined(SUPPORT_PROXY) || defined(SUPPORT_SOCKS)
634 { "proxy_external_address",vtype_stringptr, &proxy_external_address },
635 { "proxy_external_port", vtype_int, &proxy_external_port },
636 { "proxy_local_address", vtype_stringptr, &proxy_local_address },
637 { "proxy_local_port", vtype_int, &proxy_local_port },
a3c86431
TL
638 { "proxy_session", vtype_bool, &proxy_session },
639#endif
fffda43a
TK
640 { "prvscheck_address", vtype_stringptr, &prvscheck_address },
641 { "prvscheck_keynum", vtype_stringptr, &prvscheck_keynum },
642 { "prvscheck_result", vtype_stringptr, &prvscheck_result },
059ec3d9
PH
643 { "qualify_domain", vtype_stringptr, &qualify_domain_sender },
644 { "qualify_recipient", vtype_stringptr, &qualify_domain_recipient },
0cd5fd23 645 { "queue_name", vtype_stringptr, &queue_name },
059ec3d9
PH
646 { "rcpt_count", vtype_int, &rcpt_count },
647 { "rcpt_defer_count", vtype_int, &rcpt_defer_count },
648 { "rcpt_fail_count", vtype_int, &rcpt_fail_count },
649 { "received_count", vtype_int, &received_count },
650 { "received_for", vtype_stringptr, &received_for },
194cc0e4
PH
651 { "received_ip_address", vtype_stringptr, &interface_address },
652 { "received_port", vtype_int, &interface_port },
059ec3d9 653 { "received_protocol", vtype_stringptr, &received_protocol },
32dfdf8b 654 { "received_time", vtype_int, &received_time.tv_sec },
059ec3d9 655 { "recipient_data", vtype_stringptr, &recipient_data },
8e669ac1 656 { "recipient_verify_failure",vtype_stringptr,&recipient_verify_failure },
362145b5 657 { "recipients", vtype_string_func, &fn_recipients },
059ec3d9 658 { "recipients_count", vtype_int, &recipients_count },
8523533c
TK
659#ifdef WITH_CONTENT_SCAN
660 { "regex_match_string", vtype_stringptr, &regex_match_string },
661#endif
059ec3d9 662 { "reply_address", vtype_reply, NULL },
8ac90765
JH
663#if defined(SUPPORT_TLS) && defined(EXPERIMENTAL_REQUIRETLS)
664 { "requiretls", vtype_bool, &tls_requiretls },
665#endif
059ec3d9
PH
666 { "return_path", vtype_stringptr, &return_path },
667 { "return_size_limit", vtype_int, &bounce_return_size_limit },
181d9bf8 668 { "router_name", vtype_stringptr, &router_name },
059ec3d9
PH
669 { "runrc", vtype_int, &runrc },
670 { "self_hostname", vtype_stringptr, &self_hostname },
671 { "sender_address", vtype_stringptr, &sender_address },
2a3eea10 672 { "sender_address_data", vtype_stringptr, &sender_address_data },
059ec3d9
PH
673 { "sender_address_domain", vtype_domain, &sender_address },
674 { "sender_address_local_part", vtype_localpart, &sender_address },
675 { "sender_data", vtype_stringptr, &sender_data },
676 { "sender_fullhost", vtype_stringptr, &sender_fullhost },
1705dd20 677 { "sender_helo_dnssec", vtype_bool, &sender_helo_dnssec },
059ec3d9
PH
678 { "sender_helo_name", vtype_stringptr, &sender_helo_name },
679 { "sender_host_address", vtype_stringptr, &sender_host_address },
680 { "sender_host_authenticated",vtype_stringptr, &sender_host_authenticated },
11d7e4fa 681 { "sender_host_dnssec", vtype_bool, &sender_host_dnssec },
059ec3d9
PH
682 { "sender_host_name", vtype_host_lookup, NULL },
683 { "sender_host_port", vtype_int, &sender_host_port },
684 { "sender_ident", vtype_stringptr, &sender_ident },
870f6ba8
TF
685 { "sender_rate", vtype_stringptr, &sender_rate },
686 { "sender_rate_limit", vtype_stringptr, &sender_rate_limit },
687 { "sender_rate_period", vtype_stringptr, &sender_rate_period },
059ec3d9 688 { "sender_rcvhost", vtype_stringptr, &sender_rcvhost },
8e669ac1 689 { "sender_verify_failure",vtype_stringptr, &sender_verify_failure },
41c7c167
PH
690 { "sending_ip_address", vtype_stringptr, &sending_ip_address },
691 { "sending_port", vtype_int, &sending_port },
8e669ac1 692 { "smtp_active_hostname", vtype_stringptr, &smtp_active_hostname },
3ee512ff
PH
693 { "smtp_command", vtype_stringptr, &smtp_cmd_buffer },
694 { "smtp_command_argument", vtype_stringptr, &smtp_cmd_argument },
a09f2942 695 { "smtp_command_history", vtype_string_func, &smtp_cmd_hist },
b01dd148 696 { "smtp_count_at_connection_start", vtype_int, &smtp_accept_count },
8f128379 697 { "smtp_notquit_reason", vtype_stringptr, &smtp_notquit_reason },
059ec3d9
PH
698 { "sn0", vtype_filter_int, &filter_sn[0] },
699 { "sn1", vtype_filter_int, &filter_sn[1] },
700 { "sn2", vtype_filter_int, &filter_sn[2] },
701 { "sn3", vtype_filter_int, &filter_sn[3] },
702 { "sn4", vtype_filter_int, &filter_sn[4] },
703 { "sn5", vtype_filter_int, &filter_sn[5] },
704 { "sn6", vtype_filter_int, &filter_sn[6] },
705 { "sn7", vtype_filter_int, &filter_sn[7] },
706 { "sn8", vtype_filter_int, &filter_sn[8] },
707 { "sn9", vtype_filter_int, &filter_sn[9] },
8523533c 708#ifdef WITH_CONTENT_SCAN
c5f280e2 709 { "spam_action", vtype_stringptr, &spam_action },
8523533c
TK
710 { "spam_bar", vtype_stringptr, &spam_bar },
711 { "spam_report", vtype_stringptr, &spam_report },
712 { "spam_score", vtype_stringptr, &spam_score },
713 { "spam_score_int", vtype_stringptr, &spam_score_int },
714#endif
7952eef9 715#ifdef SUPPORT_SPF
65a7d8c3 716 { "spf_guess", vtype_stringptr, &spf_guess },
8523533c
TK
717 { "spf_header_comment", vtype_stringptr, &spf_header_comment },
718 { "spf_received", vtype_stringptr, &spf_received },
719 { "spf_result", vtype_stringptr, &spf_result },
87e9d061 720 { "spf_result_guessed", vtype_bool, &spf_result_guessed },
8523533c
TK
721 { "spf_smtp_comment", vtype_stringptr, &spf_smtp_comment },
722#endif
059ec3d9 723 { "spool_directory", vtype_stringptr, &spool_directory },
5cb8cbc6 724 { "spool_inodes", vtype_pinodes, (void *)TRUE },
8e669ac1 725 { "spool_space", vtype_pspace, (void *)TRUE },
8523533c
TK
726#ifdef EXPERIMENTAL_SRS
727 { "srs_db_address", vtype_stringptr, &srs_db_address },
728 { "srs_db_key", vtype_stringptr, &srs_db_key },
729 { "srs_orig_recipient", vtype_stringptr, &srs_orig_recipient },
730 { "srs_orig_sender", vtype_stringptr, &srs_orig_sender },
731 { "srs_recipient", vtype_stringptr, &srs_recipient },
732 { "srs_status", vtype_stringptr, &srs_status },
733#endif
059ec3d9 734 { "thisaddress", vtype_stringptr, &filter_thisaddress },
817d9f57 735
d9b2312b 736 /* The non-(in,out) variables are now deprecated */
817d9f57
JH
737 { "tls_bits", vtype_int, &tls_in.bits },
738 { "tls_certificate_verified", vtype_int, &tls_in.certificate_verified },
739 { "tls_cipher", vtype_stringptr, &tls_in.cipher },
d9b2312b
JH
740
741 { "tls_in_bits", vtype_int, &tls_in.bits },
742 { "tls_in_certificate_verified", vtype_int, &tls_in.certificate_verified },
743 { "tls_in_cipher", vtype_stringptr, &tls_in.cipher },
44662487 744 { "tls_in_ocsp", vtype_int, &tls_in.ocsp },
9d1c15ef
JH
745 { "tls_in_ourcert", vtype_cert, &tls_in.ourcert },
746 { "tls_in_peercert", vtype_cert, &tls_in.peercert },
d9b2312b 747 { "tls_in_peerdn", vtype_stringptr, &tls_in.peerdn },
4b57b15d 748#if defined(SUPPORT_TLS)
d9b2312b
JH
749 { "tls_in_sni", vtype_stringptr, &tls_in.sni },
750#endif
817d9f57 751 { "tls_out_bits", vtype_int, &tls_out.bits },
cb9d95ae 752 { "tls_out_certificate_verified", vtype_int,&tls_out.certificate_verified },
817d9f57 753 { "tls_out_cipher", vtype_stringptr, &tls_out.cipher },
c0635b6d 754#ifdef SUPPORT_DANE
594706ea
JH
755 { "tls_out_dane", vtype_bool, &tls_out.dane_verified },
756#endif
44662487 757 { "tls_out_ocsp", vtype_int, &tls_out.ocsp },
9d1c15ef
JH
758 { "tls_out_ourcert", vtype_cert, &tls_out.ourcert },
759 { "tls_out_peercert", vtype_cert, &tls_out.peercert },
817d9f57 760 { "tls_out_peerdn", vtype_stringptr, &tls_out.peerdn },
4b57b15d 761#if defined(SUPPORT_TLS)
817d9f57 762 { "tls_out_sni", vtype_stringptr, &tls_out.sni },
7be682ca 763#endif
c0635b6d 764#ifdef SUPPORT_DANE
594706ea
JH
765 { "tls_out_tlsa_usage", vtype_int, &tls_out.tlsa_usage },
766#endif
d9b2312b 767
613dd4ae 768 { "tls_peerdn", vtype_stringptr, &tls_in.peerdn }, /* mind the alphabetical order! */
4b57b15d 769#if defined(SUPPORT_TLS)
613dd4ae
JH
770 { "tls_sni", vtype_stringptr, &tls_in.sni }, /* mind the alphabetical order! */
771#endif
817d9f57 772
059ec3d9
PH
773 { "tod_bsdinbox", vtype_todbsdin, NULL },
774 { "tod_epoch", vtype_tode, NULL },
f5787926 775 { "tod_epoch_l", vtype_todel, NULL },
059ec3d9
PH
776 { "tod_full", vtype_todf, NULL },
777 { "tod_log", vtype_todl, NULL },
778 { "tod_logfile", vtype_todlf, NULL },
779 { "tod_zone", vtype_todzone, NULL },
780 { "tod_zulu", vtype_todzulu, NULL },
181d9bf8 781 { "transport_name", vtype_stringptr, &transport_name },
059ec3d9 782 { "value", vtype_stringptr, &lookup_value },
aec45841 783 { "verify_mode", vtype_stringptr, &verify_mode },
059ec3d9
PH
784 { "version_number", vtype_stringptr, &version_string },
785 { "warn_message_delay", vtype_stringptr, &warnmsg_delay },
786 { "warn_message_recipient",vtype_stringptr, &warnmsg_recipients },
787 { "warn_message_recipients",vtype_stringptr,&warnmsg_recipients },
788 { "warnmsg_delay", vtype_stringptr, &warnmsg_delay },
789 { "warnmsg_recipient", vtype_stringptr, &warnmsg_recipients },
790 { "warnmsg_recipients", vtype_stringptr, &warnmsg_recipients }
791};
792
0539a19d 793static int var_table_size = nelem(var_table);
059ec3d9
PH
794static uschar var_buffer[256];
795static BOOL malformed_header;
796
797/* For textual hashes */
798
1ba28e2b
PP
799static const char *hashcodes = "abcdefghijklmnopqrtsuvwxyz"
800 "ABCDEFGHIJKLMNOPQRSTUVWXYZ"
801 "0123456789";
059ec3d9
PH
802
803enum { HMAC_MD5, HMAC_SHA1 };
804
805/* For numeric hashes */
806
807static unsigned int prime[] = {
808 2, 3, 5, 7, 11, 13, 17, 19, 23, 29,
809 31, 37, 41, 43, 47, 53, 59, 61, 67, 71,
810 73, 79, 83, 89, 97, 101, 103, 107, 109, 113};
811
812/* For printing modes in symbolic form */
813
814static uschar *mtable_normal[] =
815 { US"---", US"--x", US"-w-", US"-wx", US"r--", US"r-x", US"rw-", US"rwx" };
816
817static uschar *mtable_setid[] =
818 { US"--S", US"--s", US"-wS", US"-ws", US"r-S", US"r-s", US"rwS", US"rws" };
819
820static uschar *mtable_sticky[] =
821 { US"--T", US"--t", US"-wT", US"-wt", US"r-T", US"r-t", US"rwT", US"rwt" };
822
bce15b62
JH
823/* flags for find_header() */
824#define FH_EXISTS_ONLY BIT(0)
825#define FH_WANT_RAW BIT(1)
826#define FH_WANT_LIST BIT(2)
059ec3d9
PH
827
828
829/*************************************************
830* Tables for UTF-8 support *
831*************************************************/
832
833/* Table of the number of extra characters, indexed by the first character
834masked with 0x3f. The highest number for a valid UTF-8 character is in fact
8350x3d. */
836
837static uschar utf8_table1[] = {
838 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,
839 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,
840 2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,
841 3,3,3,3,3,3,3,3,4,4,4,4,5,5,5,5 };
842
843/* These are the masks for the data bits in the first byte of a character,
844indexed by the number of additional bytes. */
845
846static int utf8_table2[] = { 0xff, 0x1f, 0x0f, 0x07, 0x03, 0x01};
847
848/* Get the next UTF-8 character, advancing the pointer. */
849
850#define GETUTF8INC(c, ptr) \
851 c = *ptr++; \
852 if ((c & 0xc0) == 0xc0) \
853 { \
854 int a = utf8_table1[c & 0x3f]; /* Number of additional bytes */ \
855 int s = 6*a; \
856 c = (c & utf8_table2[a]) << s; \
857 while (a-- > 0) \
858 { \
859 s -= 6; \
860 c |= (*ptr++ & 0x3f) << s; \
861 } \
862 }
863
864
03ca21f8
JH
865
866static uschar * base32_chars = US"abcdefghijklmnopqrstuvwxyz234567";
867
059ec3d9
PH
868/*************************************************
869* Binary chop search on a table *
870*************************************************/
871
872/* This is used for matching expansion items and operators.
873
874Arguments:
875 name the name that is being sought
876 table the table to search
877 table_size the number of items in the table
878
879Returns: the offset in the table, or -1
880*/
881
882static int
883chop_match(uschar *name, uschar **table, int table_size)
884{
885uschar **bot = table;
886uschar **top = table + table_size;
887
888while (top > bot)
889 {
890 uschar **mid = bot + (top - bot)/2;
891 int c = Ustrcmp(name, *mid);
892 if (c == 0) return mid - table;
893 if (c > 0) bot = mid + 1; else top = mid;
894 }
895
896return -1;
897}
898
899
900
901/*************************************************
902* Check a condition string *
903*************************************************/
904
905/* This function is called to expand a string, and test the result for a "true"
906or "false" value. Failure of the expansion yields FALSE; logged unless it was a
be7a5781
JH
907forced fail or lookup defer.
908
909We used to release all store used, but this is not not safe due
910to ${dlfunc } and ${acl }. In any case expand_string_internal()
911is reasonably careful to release what it can.
059ec3d9 912
6a8de854
PP
913The actual false-value tests should be replicated for ECOND_BOOL_LAX.
914
059ec3d9
PH
915Arguments:
916 condition the condition string
917 m1 text to be incorporated in panic error
918 m2 ditto
919
920Returns: TRUE if condition is met, FALSE if not
921*/
922
923BOOL
924expand_check_condition(uschar *condition, uschar *m1, uschar *m2)
925{
926int rc;
059ec3d9
PH
927uschar *ss = expand_string(condition);
928if (ss == NULL)
929 {
8768d548 930 if (!f.expand_string_forcedfail && !f.search_find_defer)
059ec3d9
PH
931 log_write(0, LOG_MAIN|LOG_PANIC, "failed to expand condition \"%s\" "
932 "for %s %s: %s", condition, m1, m2, expand_string_message);
933 return FALSE;
934 }
935rc = ss[0] != 0 && Ustrcmp(ss, "0") != 0 && strcmpic(ss, US"no") != 0 &&
936 strcmpic(ss, US"false") != 0;
059ec3d9
PH
937return rc;
938}
939
940
941
17c76198 942
9e3331ea
TK
943/*************************************************
944* Pseudo-random number generation *
945*************************************************/
946
947/* Pseudo-random number generation. The result is not "expected" to be
948cryptographically strong but not so weak that someone will shoot themselves
949in the foot using it as a nonce in some email header scheme or whatever
950weirdness they'll twist this into. The result should ideally handle fork().
951
952However, if we're stuck unable to provide this, then we'll fall back to
953appallingly bad randomness.
954
17c76198
PP
955If SUPPORT_TLS is defined then this will not be used except as an emergency
956fallback.
9e3331ea
TK
957
958Arguments:
959 max range maximum
960Returns a random number in range [0, max-1]
961*/
962
17c76198
PP
963#ifdef SUPPORT_TLS
964# define vaguely_random_number vaguely_random_number_fallback
965#endif
9e3331ea 966int
17c76198 967vaguely_random_number(int max)
9e3331ea 968{
17c76198
PP
969#ifdef SUPPORT_TLS
970# undef vaguely_random_number
971#endif
9e3331ea
TK
972 static pid_t pid = 0;
973 pid_t p2;
974#if defined(HAVE_SRANDOM) && !defined(HAVE_SRANDOMDEV)
975 struct timeval tv;
976#endif
977
978 p2 = getpid();
979 if (p2 != pid)
980 {
981 if (pid != 0)
982 {
983
984#ifdef HAVE_ARC4RANDOM
985 /* cryptographically strong randomness, common on *BSD platforms, not
986 so much elsewhere. Alas. */
46ca7017 987#ifndef NOT_HAVE_ARC4RANDOM_STIR
9e3331ea 988 arc4random_stir();
46ca7017 989#endif
9e3331ea
TK
990#elif defined(HAVE_SRANDOM) || defined(HAVE_SRANDOMDEV)
991#ifdef HAVE_SRANDOMDEV
992 /* uses random(4) for seeding */
993 srandomdev();
994#else
995 gettimeofday(&tv, NULL);
996 srandom(tv.tv_sec | tv.tv_usec | getpid());
997#endif
998#else
999 /* Poor randomness and no seeding here */
1000#endif
1001
1002 }
1003 pid = p2;
1004 }
1005
1006#ifdef HAVE_ARC4RANDOM
1007 return arc4random() % max;
1008#elif defined(HAVE_SRANDOM) || defined(HAVE_SRANDOMDEV)
1009 return random() % max;
1010#else
1011 /* This one returns a 16-bit number, definitely not crypto-strong */
1012 return random_number(max);
1013#endif
1014}
1015
17c76198
PP
1016
1017
9e3331ea 1018
059ec3d9
PH
1019/*************************************************
1020* Pick out a name from a string *
1021*************************************************/
1022
1023/* If the name is too long, it is silently truncated.
1024
1025Arguments:
1026 name points to a buffer into which to put the name
1027 max is the length of the buffer
1028 s points to the first alphabetic character of the name
1029 extras chars other than alphanumerics to permit
1030
1031Returns: pointer to the first character after the name
1032
1033Note: The test for *s != 0 in the while loop is necessary because
1034Ustrchr() yields non-NULL if the character is zero (which is not something
1035I expected). */
1036
55414b25
JH
1037static const uschar *
1038read_name(uschar *name, int max, const uschar *s, uschar *extras)
059ec3d9
PH
1039{
1040int ptr = 0;
1041while (*s != 0 && (isalnum(*s) || Ustrchr(extras, *s) != NULL))
1042 {
1043 if (ptr < max-1) name[ptr++] = *s;
1044 s++;
1045 }
1046name[ptr] = 0;
1047return s;
1048}
1049
1050
1051
1052/*************************************************
1053* Pick out the rest of a header name *
1054*************************************************/
1055
1056/* A variable name starting $header_ (or just $h_ for those who like
1057abbreviations) might not be the complete header name because headers can
1058contain any printing characters in their names, except ':'. This function is
1059called to read the rest of the name, chop h[eader]_ off the front, and put ':'
1060on the end, if the name was terminated by white space.
1061
1062Arguments:
1063 name points to a buffer in which the name read so far exists
1064 max is the length of the buffer
1065 s points to the first character after the name so far, i.e. the
1066 first non-alphameric character after $header_xxxxx
1067
1068Returns: a pointer to the first character after the header name
1069*/
1070
55414b25
JH
1071static const uschar *
1072read_header_name(uschar *name, int max, const uschar *s)
059ec3d9
PH
1073{
1074int prelen = Ustrchr(name, '_') - name + 1;
1075int ptr = Ustrlen(name) - prelen;
1076if (ptr > 0) memmove(name, name+prelen, ptr);
1077while (mac_isgraph(*s) && *s != ':')
1078 {
1079 if (ptr < max-1) name[ptr++] = *s;
1080 s++;
1081 }
1082if (*s == ':') s++;
1083name[ptr++] = ':';
1084name[ptr] = 0;
1085return s;
1086}
1087
1088
1089
1090/*************************************************
1091* Pick out a number from a string *
1092*************************************************/
1093
1094/* Arguments:
1095 n points to an integer into which to put the number
1096 s points to the first digit of the number
1097
1098Returns: a pointer to the character after the last digit
1099*/
13559da6
JH
1100/*XXX consider expanding to int_eximarith_t. But the test for
1101"overbig numbers" in 0002 still needs to overflow it. */
059ec3d9
PH
1102
1103static uschar *
1104read_number(int *n, uschar *s)
1105{
1106*n = 0;
1107while (isdigit(*s)) *n = *n * 10 + (*s++ - '0');
1108return s;
1109}
1110
55414b25
JH
1111static const uschar *
1112read_cnumber(int *n, const uschar *s)
1113{
1114*n = 0;
1115while (isdigit(*s)) *n = *n * 10 + (*s++ - '0');
1116return s;
1117}
1118
059ec3d9
PH
1119
1120
1121/*************************************************
1122* Extract keyed subfield from a string *
1123*************************************************/
1124
1125/* The yield is in dynamic store; NULL means that the key was not found.
1126
1127Arguments:
1128 key points to the name of the key
1129 s points to the string from which to extract the subfield
1130
1131Returns: NULL if the subfield was not found, or
1132 a pointer to the subfield's data
1133*/
1134
1135static uschar *
8fdf20fd 1136expand_getkeyed(uschar * key, const uschar * s)
059ec3d9
PH
1137{
1138int length = Ustrlen(key);
1139while (isspace(*s)) s++;
1140
1141/* Loop to search for the key */
1142
8fdf20fd 1143while (*s)
059ec3d9
PH
1144 {
1145 int dkeylength;
8fdf20fd
JH
1146 uschar * data;
1147 const uschar * dkey = s;
059ec3d9 1148
8fdf20fd 1149 while (*s && *s != '=' && !isspace(*s)) s++;
059ec3d9
PH
1150 dkeylength = s - dkey;
1151 while (isspace(*s)) s++;
1152 if (*s == '=') while (isspace((*(++s))));
1153
1154 data = string_dequote(&s);
1155 if (length == dkeylength && strncmpic(key, dkey, length) == 0)
1156 return data;
1157
1158 while (isspace(*s)) s++;
1159 }
1160
1161return NULL;
1162}
1163
1164
1165
9d1c15ef
JH
1166static var_entry *
1167find_var_ent(uschar * name)
1168{
1169int first = 0;
1170int last = var_table_size;
1171
1172while (last > first)
1173 {
1174 int middle = (first + last)/2;
1175 int c = Ustrcmp(name, var_table[middle].name);
1176
1177 if (c > 0) { first = middle + 1; continue; }
1178 if (c < 0) { last = middle; continue; }
1179 return &var_table[middle];
1180 }
1181return NULL;
1182}
059ec3d9
PH
1183
1184/*************************************************
1185* Extract numbered subfield from string *
1186*************************************************/
1187
1188/* Extracts a numbered field from a string that is divided by tokens - for
1189example a line from /etc/passwd is divided by colon characters. First field is
1190numbered one. Negative arguments count from the right. Zero returns the whole
1191string. Returns NULL if there are insufficient tokens in the string
1192
1193***WARNING***
1194Modifies final argument - this is a dynamically generated string, so that's OK.
1195
1196Arguments:
1197 field number of field to be extracted,
1198 first field = 1, whole string = 0, last field = -1
1199 separators characters that are used to break string into tokens
1200 s points to the string from which to extract the subfield
1201
1202Returns: NULL if the field was not found,
1203 a pointer to the field's data inside s (modified to add 0)
1204*/
1205
1206static uschar *
1207expand_gettokened (int field, uschar *separators, uschar *s)
1208{
1209int sep = 1;
1210int count;
1211uschar *ss = s;
1212uschar *fieldtext = NULL;
1213
1214if (field == 0) return s;
1215
1216/* Break the line up into fields in place; for field > 0 we stop when we have
1217done the number of fields we want. For field < 0 we continue till the end of
1218the string, counting the number of fields. */
1219
1220count = (field > 0)? field : INT_MAX;
1221
1222while (count-- > 0)
1223 {
1224 size_t len;
1225
1226 /* Previous field was the last one in the string. For a positive field
1227 number, this means there are not enough fields. For a negative field number,
1228 check that there are enough, and scan back to find the one that is wanted. */
1229
1230 if (sep == 0)
1231 {
1232 if (field > 0 || (-field) > (INT_MAX - count - 1)) return NULL;
1233 if ((-field) == (INT_MAX - count - 1)) return s;
1234 while (field++ < 0)
1235 {
1236 ss--;
1237 while (ss[-1] != 0) ss--;
1238 }
1239 fieldtext = ss;
1240 break;
1241 }
1242
1243 /* Previous field was not last in the string; save its start and put a
1244 zero at its end. */
1245
1246 fieldtext = ss;
1247 len = Ustrcspn(ss, separators);
1248 sep = ss[len];
1249 ss[len] = 0;
1250 ss += len + 1;
1251 }
1252
1253return fieldtext;
1254}
1255
1256
aa26e137 1257static uschar *
55414b25 1258expand_getlistele(int field, const uschar * list)
aa26e137 1259{
8fdf20fd
JH
1260const uschar * tlist = list;
1261int sep = 0;
aa26e137
JH
1262uschar dummy;
1263
8fdf20fd 1264if (field < 0)
0f0c8159 1265 {
8fdf20fd
JH
1266 for (field++; string_nextinlist(&tlist, &sep, &dummy, 1); ) field++;
1267 sep = 0;
0f0c8159 1268 }
8fdf20fd
JH
1269if (field == 0) return NULL;
1270while (--field > 0 && (string_nextinlist(&list, &sep, &dummy, 1))) ;
aa26e137
JH
1271return string_nextinlist(&list, &sep, NULL, 0);
1272}
059ec3d9 1273
9d1c15ef
JH
1274
1275/* Certificate fields, by name. Worry about by-OID later */
9e4dddbd 1276/* Names are chosen to not have common prefixes */
9d1c15ef
JH
1277
1278#ifdef SUPPORT_TLS
1279typedef struct
1280{
1281uschar * name;
9e4dddbd
JH
1282int namelen;
1283uschar * (*getfn)(void * cert, uschar * mod);
9d1c15ef
JH
1284} certfield;
1285static certfield certfields[] =
1286{ /* linear search; no special order */
9e4dddbd
JH
1287 { US"version", 7, &tls_cert_version },
1288 { US"serial_number", 13, &tls_cert_serial_number },
1289 { US"subject", 7, &tls_cert_subject },
1290 { US"notbefore", 9, &tls_cert_not_before },
1291 { US"notafter", 8, &tls_cert_not_after },
1292 { US"issuer", 6, &tls_cert_issuer },
1293 { US"signature", 9, &tls_cert_signature },
1294 { US"sig_algorithm", 13, &tls_cert_signature_algorithm },
1295 { US"subj_altname", 12, &tls_cert_subject_altname },
1296 { US"ocsp_uri", 8, &tls_cert_ocsp_uri },
1297 { US"crl_uri", 7, &tls_cert_crl_uri },
9d1c15ef
JH
1298};
1299
1300static uschar *
1301expand_getcertele(uschar * field, uschar * certvar)
1302{
1303var_entry * vp;
1304certfield * cp;
1305
1306if (!(vp = find_var_ent(certvar)))
1307 {
94431adb 1308 expand_string_message =
9d1c15ef
JH
1309 string_sprintf("no variable named \"%s\"", certvar);
1310 return NULL; /* Unknown variable name */
1311 }
1312/* NB this stops us passing certs around in variable. Might
1313want to do that in future */
1314if (vp->type != vtype_cert)
1315 {
94431adb 1316 expand_string_message =
9d1c15ef
JH
1317 string_sprintf("\"%s\" is not a certificate", certvar);
1318 return NULL; /* Unknown variable name */
1319 }
1320if (!*(void **)vp->value)
1321 return NULL;
1322
1323if (*field >= '0' && *field <= '9')
1324 return tls_cert_ext_by_oid(*(void **)vp->value, field, 0);
1325
1326for(cp = certfields;
0539a19d 1327 cp < certfields + nelem(certfields);
9d1c15ef 1328 cp++)
9e4dddbd
JH
1329 if (Ustrncmp(cp->name, field, cp->namelen) == 0)
1330 {
1331 uschar * modifier = *(field += cp->namelen) == ','
1332 ? ++field : NULL;
1333 return (*cp->getfn)( *(void **)vp->value, modifier );
1334 }
9d1c15ef 1335
94431adb 1336expand_string_message =
9d1c15ef
JH
1337 string_sprintf("bad field selector \"%s\" for certextract", field);
1338return NULL;
1339}
1340#endif /*SUPPORT_TLS*/
1341
059ec3d9
PH
1342/*************************************************
1343* Extract a substring from a string *
1344*************************************************/
1345
1346/* Perform the ${substr or ${length expansion operations.
1347
1348Arguments:
1349 subject the input string
1350 value1 the offset from the start of the input string to the start of
1351 the output string; if negative, count from the right.
1352 value2 the length of the output string, or negative (-1) for unset
1353 if value1 is positive, unset means "all after"
1354 if value1 is negative, unset means "all before"
1355 len set to the length of the returned string
1356
1357Returns: pointer to the output string, or NULL if there is an error
1358*/
1359
1360static uschar *
1361extract_substr(uschar *subject, int value1, int value2, int *len)
1362{
1363int sublen = Ustrlen(subject);
1364
1365if (value1 < 0) /* count from right */
1366 {
1367 value1 += sublen;
1368
1369 /* If the position is before the start, skip to the start, and adjust the
1370 length. If the length ends up negative, the substring is null because nothing
1371 can precede. This falls out naturally when the length is unset, meaning "all
1372 to the left". */
1373
1374 if (value1 < 0)
1375 {
1376 value2 += value1;
1377 if (value2 < 0) value2 = 0;
1378 value1 = 0;
1379 }
1380
1381 /* Otherwise an unset length => characters before value1 */
1382
1383 else if (value2 < 0)
1384 {
1385 value2 = value1;
1386 value1 = 0;
1387 }
1388 }
1389
1390/* For a non-negative offset, if the starting position is past the end of the
1391string, the result will be the null string. Otherwise, an unset length means
1392"rest"; just set it to the maximum - it will be cut down below if necessary. */
1393
1394else
1395 {
1396 if (value1 > sublen)
1397 {
1398 value1 = sublen;
1399 value2 = 0;
1400 }
1401 else if (value2 < 0) value2 = sublen;
1402 }
1403
1404/* Cut the length down to the maximum possible for the offset value, and get
1405the required characters. */
1406
1407if (value1 + value2 > sublen) value2 = sublen - value1;
1408*len = value2;
1409return subject + value1;
1410}
1411
1412
1413
1414
1415/*************************************************
1416* Old-style hash of a string *
1417*************************************************/
1418
1419/* Perform the ${hash expansion operation.
1420
1421Arguments:
1422 subject the input string (an expanded substring)
1423 value1 the length of the output string; if greater or equal to the
1424 length of the input string, the input string is returned
1425 value2 the number of hash characters to use, or 26 if negative
1426 len set to the length of the returned string
1427
1428Returns: pointer to the output string, or NULL if there is an error
1429*/
1430
1431static uschar *
1432compute_hash(uschar *subject, int value1, int value2, int *len)
1433{
1434int sublen = Ustrlen(subject);
1435
1436if (value2 < 0) value2 = 26;
1437else if (value2 > Ustrlen(hashcodes))
1438 {
1439 expand_string_message =
1440 string_sprintf("hash count \"%d\" too big", value2);
1441 return NULL;
1442 }
1443
1444/* Calculate the hash text. We know it is shorter than the original string, so
1445can safely place it in subject[] (we know that subject is always itself an
1446expanded substring). */
1447
1448if (value1 < sublen)
1449 {
1450 int c;
1451 int i = 0;
1452 int j = value1;
1453 while ((c = (subject[j])) != 0)
1454 {
1455 int shift = (c + j++) & 7;
1456 subject[i] ^= (c << shift) | (c >> (8-shift));
1457 if (++i >= value1) i = 0;
1458 }
1459 for (i = 0; i < value1; i++)
1460 subject[i] = hashcodes[(subject[i]) % value2];
1461 }
1462else value1 = sublen;
1463
1464*len = value1;
1465return subject;
1466}
1467
1468
1469
1470
1471/*************************************************
1472* Numeric hash of a string *
1473*************************************************/
1474
1475/* Perform the ${nhash expansion operation. The first characters of the
1476string are treated as most important, and get the highest prime numbers.
1477
1478Arguments:
1479 subject the input string
1480 value1 the maximum value of the first part of the result
1481 value2 the maximum value of the second part of the result,
1482 or negative to produce only a one-part result
1483 len set to the length of the returned string
1484
1485Returns: pointer to the output string, or NULL if there is an error.
1486*/
1487
1488static uschar *
1489compute_nhash (uschar *subject, int value1, int value2, int *len)
1490{
1491uschar *s = subject;
1492int i = 0;
1493unsigned long int total = 0; /* no overflow */
1494
1495while (*s != 0)
1496 {
0539a19d 1497 if (i == 0) i = nelem(prime) - 1;
059ec3d9
PH
1498 total += prime[i--] * (unsigned int)(*s++);
1499 }
1500
1501/* If value2 is unset, just compute one number */
1502
1503if (value2 < 0)
bb07bcd3 1504 s = string_sprintf("%lu", total % value1);
059ec3d9
PH
1505
1506/* Otherwise do a div/mod hash */
1507
1508else
1509 {
1510 total = total % (value1 * value2);
bb07bcd3 1511 s = string_sprintf("%lu/%lu", total/value2, total % value2);
059ec3d9
PH
1512 }
1513
1514*len = Ustrlen(s);
1515return s;
1516}
1517
1518
1519
1520
1521
1522/*************************************************
1523* Find the value of a header or headers *
1524*************************************************/
1525
1526/* Multiple instances of the same header get concatenated, and this function
1527can also return a concatenation of all the header lines. When concatenating
1528specific headers that contain lists of addresses, a comma is inserted between
1529them. Otherwise we use a straight concatenation. Because some messages can have
1530pathologically large number of lines, there is a limit on the length that is
5d26aacd 1531returned.
059ec3d9
PH
1532
1533Arguments:
1534 name the name of the header, without the leading $header_ or $h_,
1535 or NULL if a concatenation of all headers is required
059ec3d9
PH
1536 newsize return the size of memory block that was obtained; may be NULL
1537 if exists_only is TRUE
bce15b62
JH
1538 flags FH_EXISTS_ONLY
1539 set if called from a def: test; don't need to build a string;
1540 just return a string that is not "" and not "0" if the header
1541 exists
1542 FH_WANT_RAW
5d26aacd 1543 set if called for $rh_ or $rheader_ items; no processing,
bce15b62
JH
1544 other than concatenating, will be done on the header. Also used
1545 for $message_headers_raw.
1546 FH_WANT_LIST
1547 Double colon chars in the content, and replace newline with
1548 colon between each element when concatenating; returning a
1549 colon-sep list (elements might contain newlines)
059ec3d9
PH
1550 charset name of charset to translate MIME words to; used only if
1551 want_raw is false; if NULL, no translation is done (this is
1552 used for $bh_ and $bheader_)
1553
1554Returns: NULL if the header does not exist, else a pointer to a new
1555 store block
1556*/
1557
1558static uschar *
bce15b62 1559find_header(uschar *name, int *newsize, unsigned flags, uschar *charset)
059ec3d9 1560{
bce15b62
JH
1561BOOL found = !name;
1562int len = name ? Ustrlen(name) : 0;
1563BOOL comma = FALSE;
1564header_line * h;
1565gstring * g = NULL;
059ec3d9 1566
bce15b62
JH
1567for (h = header_list; h; h = h->next)
1568 if (h->type != htype_old && h->text) /* NULL => Received: placeholder */
1569 if (!name || (len <= h->slen && strncmpic(name, h->text, len) == 0))
1570 {
1571 uschar * s, * t;
1572 size_t inc;
fd700877 1573
bce15b62
JH
1574 if (flags & FH_EXISTS_ONLY)
1575 return US"1"; /* don't need actual string */
fd700877 1576
bce15b62
JH
1577 found = TRUE;
1578 s = h->text + len; /* text to insert */
1579 if (!(flags & FH_WANT_RAW)) /* unless wanted raw, */
1580 while (isspace(*s)) s++; /* remove leading white space */
1581 t = h->text + h->slen; /* end-point */
059ec3d9 1582
bce15b62
JH
1583 /* Unless wanted raw, remove trailing whitespace, including the
1584 newline. */
059ec3d9 1585
bce15b62
JH
1586 if (flags & FH_WANT_LIST)
1587 while (t > s && t[-1] == '\n') t--;
1588 else if (!(flags & FH_WANT_RAW))
1589 {
1590 while (t > s && isspace(t[-1])) t--;
059ec3d9 1591
bce15b62
JH
1592 /* Set comma if handling a single header and it's one of those
1593 that contains an address list, except when asked for raw headers. Only
1594 need to do this once. */
059ec3d9 1595
bce15b62
JH
1596 if (name && !comma && Ustrchr("BCFRST", h->type)) comma = TRUE;
1597 }
059ec3d9 1598
bce15b62
JH
1599 /* Trim the header roughly if we're approaching limits */
1600 inc = t - s;
1601 if ((g ? g->ptr : 0) + inc > header_insert_maxlen)
1602 inc = header_insert_maxlen - (g ? g->ptr : 0);
1603
1604 /* For raw just copy the data; for a list, add the data as a colon-sep
1605 list-element; for comma-list add as an unchecked comma,newline sep
1606 list-elemment; for other nonraw add as an unchecked newline-sep list (we
1607 stripped trailing WS above including the newline). We ignore the potential
1608 expansion due to colon-doubling, just leaving the loop if the limit is met
1609 or exceeded. */
1610
1611 if (flags & FH_WANT_LIST)
1612 g = string_append_listele_n(g, ':', s, (unsigned)inc);
1613 else if (flags & FH_WANT_RAW)
1614 {
1615 g = string_catn(g, s, (unsigned)inc);
1616 (void) string_from_gstring(g);
1617 }
1618 else if (inc > 0)
1619 if (comma)
1620 g = string_append2_listele_n(g, US",\n", s, (unsigned)inc);
1621 else
1622 g = string_append2_listele_n(g, US"\n", s, (unsigned)inc);
059ec3d9 1623
bce15b62
JH
1624 if (g && g->ptr >= header_insert_maxlen) break;
1625 }
059ec3d9 1626
bce15b62
JH
1627if (!found) return NULL; /* No header found */
1628if (!g) return US"";
059ec3d9 1629
059ec3d9
PH
1630/* That's all we do for raw header expansion. */
1631
bce15b62
JH
1632*newsize = g->size;
1633if (flags & FH_WANT_RAW)
1634 return g->s;
059ec3d9 1635
bce15b62
JH
1636/* Otherwise do RFC 2047 decoding, translating the charset if requested.
1637The rfc2047_decode2() function can return an error with decoded data if the
1638charset translation fails. If decoding fails, it returns NULL. */
059ec3d9
PH
1639
1640else
1641 {
1642 uschar *decoded, *error;
bce15b62
JH
1643
1644 decoded = rfc2047_decode2(g->s, check_rfc2047_length, charset, '?', NULL,
a0d6ba8a 1645 newsize, &error);
bce15b62 1646 if (error)
059ec3d9
PH
1647 {
1648 DEBUG(D_any) debug_printf("*** error in RFC 2047 decoding: %s\n"
bce15b62 1649 " input was: %s\n", error, g->s);
059ec3d9 1650 }
bce15b62 1651 return decoded ? decoded : g->s;
059ec3d9 1652 }
059ec3d9
PH
1653}
1654
1655
1656
1657
c8599aad 1658/* Append a "local" element to an Authentication-Results: header
40394cc1
JH
1659if this was a non-smtp message.
1660*/
1661
1662static gstring *
1663authres_local(gstring * g, const uschar * sysname)
1664{
8768d548 1665if (!f.authentication_local)
40394cc1
JH
1666 return g;
1667g = string_append(g, 3, US";\n\tlocal=pass (non-smtp, ", sysname, US")");
1668if (authenticated_id) g = string_append(g, 2, " u=", authenticated_id);
1669return g;
1670}
1671
1672
c8599aad 1673/* Append an "iprev" element to an Authentication-Results: header
dfbcb5ac
JH
1674if we have attempted to get the calling host's name.
1675*/
1676
1677static gstring *
1678authres_iprev(gstring * g)
1679{
1680if (sender_host_name)
61e3f250
JH
1681 g = string_append(g, 3, US";\n\tiprev=pass (", sender_host_name, US")");
1682else if (host_lookup_deferred)
1683 g = string_catn(g, US";\n\tiprev=temperror", 19);
1684else if (host_lookup_failed)
1685 g = string_catn(g, US";\n\tiprev=fail", 13);
0a682b6c 1686else
61e3f250
JH
1687 return g;
1688
1689if (sender_host_address)
99efa4cf 1690 g = string_append(g, 2, US" smtp.remote-ip=", sender_host_address);
dfbcb5ac
JH
1691return g;
1692}
1693
1694
1695
362145b5
JH
1696/*************************************************
1697* Return list of recipients *
1698*************************************************/
1699/* A recipients list is available only during system message filtering,
1700during ACL processing after DATA, and while expanding pipe commands
1701generated from a system filter, but not elsewhere. */
1702
1703static uschar *
1704fn_recipients(void)
1705{
bce15b62 1706uschar * s;
acec9514
JH
1707gstring * g = NULL;
1708int i;
1709
8768d548 1710if (!f.enable_dollar_recipients) return NULL;
acec9514
JH
1711
1712for (i = 0; i < recipients_count; i++)
362145b5 1713 {
bce15b62
JH
1714 s = recipients_list[i].address;
1715 g = string_append2_listele_n(g, US", ", s, Ustrlen(s));
362145b5 1716 }
bce15b62 1717return g ? g->s : NULL;
362145b5
JH
1718}
1719
1720
059ec3d9
PH
1721/*************************************************
1722* Find value of a variable *
1723*************************************************/
1724
1725/* The table of variables is kept in alphabetic order, so we can search it
1726using a binary chop. The "choplen" variable is nothing to do with the binary
1727chop.
1728
1729Arguments:
1730 name the name of the variable being sought
1731 exists_only TRUE if this is a def: test; passed on to find_header()
1732 skipping TRUE => skip any processing evaluation; this is not the same as
1733 exists_only because def: may test for values that are first
1734 evaluated here
1735 newsize pointer to an int which is initially zero; if the answer is in
1736 a new memory buffer, *newsize is set to its size
1737
1738Returns: NULL if the variable does not exist, or
1739 a pointer to the variable's contents, or
1740 something non-NULL if exists_only is TRUE
1741*/
1742
1743static uschar *
1744find_variable(uschar *name, BOOL exists_only, BOOL skipping, int *newsize)
1745{
9d1c15ef
JH
1746var_entry * vp;
1747uschar *s, *domain;
1748uschar **ss;
1749void * val;
059ec3d9 1750
38a0a95f
PH
1751/* Handle ACL variables, whose names are of the form acl_cxxx or acl_mxxx.
1752Originally, xxx had to be a number in the range 0-9 (later 0-19), but from
1753release 4.64 onwards arbitrary names are permitted, as long as the first 5
641cb756
PH
1754characters are acl_c or acl_m and the sixth is either a digit or an underscore
1755(this gave backwards compatibility at the changeover). There may be built-in
1756variables whose names start acl_ but they should never start in this way. This
1757slightly messy specification is a consequence of the history, needless to say.
47ca6d6c 1758
38a0a95f
PH
1759If an ACL variable does not exist, treat it as empty, unless strict_acl_vars is
1760set, in which case give an error. */
47ca6d6c 1761
641cb756
PH
1762if ((Ustrncmp(name, "acl_c", 5) == 0 || Ustrncmp(name, "acl_m", 5) == 0) &&
1763 !isalpha(name[5]))
38a0a95f
PH
1764 {
1765 tree_node *node =
1766 tree_search((name[4] == 'c')? acl_var_c : acl_var_m, name + 4);
63df3f26 1767 return node ? node->data.ptr : strict_acl_vars ? NULL : US"";
47ca6d6c
PH
1768 }
1769
38a0a95f 1770/* Handle $auth<n> variables. */
f78eb7c6
PH
1771
1772if (Ustrncmp(name, "auth", 4) == 0)
1773 {
1774 uschar *endptr;
1775 int n = Ustrtoul(name + 4, &endptr, 10);
1776 if (*endptr == 0 && n != 0 && n <= AUTH_VARS)
f38917cc
JH
1777 return !auth_vars[n-1] ? US"" : auth_vars[n-1];
1778 }
1779else if (Ustrncmp(name, "regex", 5) == 0)
1780 {
1781 uschar *endptr;
1782 int n = Ustrtoul(name + 5, &endptr, 10);
1783 if (*endptr == 0 && n != 0 && n <= REGEX_VARS)
1784 return !regex_vars[n-1] ? US"" : regex_vars[n-1];
f78eb7c6
PH
1785 }
1786
47ca6d6c
PH
1787/* For all other variables, search the table */
1788
9d1c15ef
JH
1789if (!(vp = find_var_ent(name)))
1790 return NULL; /* Unknown variable name */
059ec3d9 1791
9d1c15ef
JH
1792/* Found an existing variable. If in skipping state, the value isn't needed,
1793and we want to avoid processing (such as looking up the host name). */
059ec3d9 1794
9d1c15ef
JH
1795if (skipping)
1796 return US"";
059ec3d9 1797
9d1c15ef
JH
1798val = vp->value;
1799switch (vp->type)
1800 {
1801 case vtype_filter_int:
8768d548 1802 if (!f.filter_running) return NULL;
63df3f26
JH
1803 /* Fall through */
1804 /* VVVVVVVVVVVV */
9d1c15ef 1805 case vtype_int:
63df3f26
JH
1806 sprintf(CS var_buffer, "%d", *(int *)(val)); /* Integer */
1807 return var_buffer;
9d1c15ef
JH
1808
1809 case vtype_ino:
63df3f26
JH
1810 sprintf(CS var_buffer, "%ld", (long int)(*(ino_t *)(val))); /* Inode */
1811 return var_buffer;
9d1c15ef
JH
1812
1813 case vtype_gid:
63df3f26
JH
1814 sprintf(CS var_buffer, "%ld", (long int)(*(gid_t *)(val))); /* gid */
1815 return var_buffer;
9d1c15ef
JH
1816
1817 case vtype_uid:
63df3f26
JH
1818 sprintf(CS var_buffer, "%ld", (long int)(*(uid_t *)(val))); /* uid */
1819 return var_buffer;
9d1c15ef
JH
1820
1821 case vtype_bool:
63df3f26
JH
1822 sprintf(CS var_buffer, "%s", *(BOOL *)(val) ? "yes" : "no"); /* bool */
1823 return var_buffer;
9d1c15ef
JH
1824
1825 case vtype_stringptr: /* Pointer to string */
63df3f26 1826 return (s = *((uschar **)(val))) ? s : US"";
9d1c15ef
JH
1827
1828 case vtype_pid:
63df3f26
JH
1829 sprintf(CS var_buffer, "%d", (int)getpid()); /* pid */
1830 return var_buffer;
9d1c15ef
JH
1831
1832 case vtype_load_avg:
63df3f26
JH
1833 sprintf(CS var_buffer, "%d", OS_GETLOADAVG()); /* load_average */
1834 return var_buffer;
9d1c15ef
JH
1835
1836 case vtype_host_lookup: /* Lookup if not done so */
2d0dc929
JH
1837 if ( !sender_host_name && sender_host_address
1838 && !host_lookup_failed && host_name_lookup() == OK)
63df3f26 1839 host_build_sender_fullhost();
2d0dc929 1840 return sender_host_name ? sender_host_name : US"";
9d1c15ef
JH
1841
1842 case vtype_localpart: /* Get local part from address */
63df3f26
JH
1843 s = *((uschar **)(val));
1844 if (s == NULL) return US"";
1845 domain = Ustrrchr(s, '@');
1846 if (domain == NULL) return s;
1847 if (domain - s > sizeof(var_buffer) - 1)
1848 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "local part longer than " SIZE_T_FMT
1849 " in string expansion", sizeof(var_buffer));
1850 Ustrncpy(var_buffer, s, domain - s);
1851 var_buffer[domain - s] = 0;
1852 return var_buffer;
9d1c15ef
JH
1853
1854 case vtype_domain: /* Get domain from address */
63df3f26
JH
1855 s = *((uschar **)(val));
1856 if (s == NULL) return US"";
1857 domain = Ustrrchr(s, '@');
1858 return (domain == NULL)? US"" : domain + 1;
9d1c15ef
JH
1859
1860 case vtype_msgheaders:
bce15b62 1861 return find_header(NULL, newsize, exists_only ? FH_EXISTS_ONLY : 0, NULL);
9d1c15ef
JH
1862
1863 case vtype_msgheaders_raw:
bce15b62
JH
1864 return find_header(NULL, newsize,
1865 exists_only ? FH_EXISTS_ONLY|FH_WANT_RAW : FH_WANT_RAW, NULL);
9d1c15ef
JH
1866
1867 case vtype_msgbody: /* Pointer to msgbody string */
1868 case vtype_msgbody_end: /* Ditto, the end of the msg */
63df3f26 1869 ss = (uschar **)(val);
d315eda1 1870 if (!*ss && deliver_datafile >= 0) /* Read body when needed */
059ec3d9 1871 {
63df3f26
JH
1872 uschar *body;
1873 off_t start_offset = SPOOL_DATA_START_OFFSET;
1874 int len = message_body_visible;
1875 if (len > message_size) len = message_size;
1876 *ss = body = store_malloc(len+1);
1877 body[0] = 0;
1878 if (vp->type == vtype_msgbody_end)
9d1c15ef 1879 {
63df3f26
JH
1880 struct stat statbuf;
1881 if (fstat(deliver_datafile, &statbuf) == 0)
1882 {
1883 start_offset = statbuf.st_size - len;
1884 if (start_offset < SPOOL_DATA_START_OFFSET)
1885 start_offset = SPOOL_DATA_START_OFFSET;
1886 }
9d1c15ef 1887 }
d4ff61d1
JH
1888 if (lseek(deliver_datafile, start_offset, SEEK_SET) < 0)
1889 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "deliver_datafile lseek: %s",
1890 strerror(errno));
63df3f26
JH
1891 len = read(deliver_datafile, body, len);
1892 if (len > 0)
9d1c15ef 1893 {
63df3f26
JH
1894 body[len] = 0;
1895 if (message_body_newlines) /* Separate loops for efficiency */
1896 while (len > 0)
1897 { if (body[--len] == 0) body[len] = ' '; }
1898 else
1899 while (len > 0)
1900 { if (body[--len] == '\n' || body[len] == 0) body[len] = ' '; }
9d1c15ef 1901 }
059ec3d9 1902 }
d315eda1 1903 return *ss ? *ss : US"";
059ec3d9 1904
9d1c15ef 1905 case vtype_todbsdin: /* BSD inbox time of day */
63df3f26 1906 return tod_stamp(tod_bsdin);
059ec3d9 1907
9d1c15ef 1908 case vtype_tode: /* Unix epoch time of day */
63df3f26 1909 return tod_stamp(tod_epoch);
059ec3d9 1910
9d1c15ef 1911 case vtype_todel: /* Unix epoch/usec time of day */
63df3f26 1912 return tod_stamp(tod_epoch_l);
f5787926 1913
9d1c15ef 1914 case vtype_todf: /* Full time of day */
63df3f26 1915 return tod_stamp(tod_full);
059ec3d9 1916
9d1c15ef 1917 case vtype_todl: /* Log format time of day */
63df3f26 1918 return tod_stamp(tod_log_bare); /* (without timezone) */
059ec3d9 1919
9d1c15ef 1920 case vtype_todzone: /* Time zone offset only */
63df3f26 1921 return tod_stamp(tod_zone);
059ec3d9 1922
9d1c15ef 1923 case vtype_todzulu: /* Zulu time */
63df3f26 1924 return tod_stamp(tod_zulu);
059ec3d9 1925
9d1c15ef 1926 case vtype_todlf: /* Log file datestamp tod */
63df3f26 1927 return tod_stamp(tod_log_datestamp_daily);
059ec3d9 1928
9d1c15ef 1929 case vtype_reply: /* Get reply address */
bce15b62
JH
1930 s = find_header(US"reply-to:", newsize,
1931 exists_only ? FH_EXISTS_ONLY|FH_WANT_RAW : FH_WANT_RAW,
1932 headers_charset);
9cffa436
JH
1933 if (s) while (isspace(*s)) s++;
1934 if (!s || !*s)
63df3f26
JH
1935 {
1936 *newsize = 0; /* For the *s==0 case */
bce15b62
JH
1937 s = find_header(US"from:", newsize,
1938 exists_only ? FH_EXISTS_ONLY|FH_WANT_RAW : FH_WANT_RAW,
1939 headers_charset);
63df3f26 1940 }
9cffa436 1941 if (s)
63df3f26
JH
1942 {
1943 uschar *t;
1944 while (isspace(*s)) s++;
1945 for (t = s; *t != 0; t++) if (*t == '\n') *t = ' ';
1946 while (t > s && isspace(t[-1])) t--;
1947 *t = 0;
1948 }
9cffa436 1949 return s ? s : US"";
059ec3d9 1950
9d1c15ef
JH
1951 case vtype_string_func:
1952 {
1953 uschar * (*fn)() = val;
1954 return fn();
1955 }
8e669ac1 1956
9d1c15ef
JH
1957 case vtype_pspace:
1958 {
1959 int inodes;
1960 sprintf(CS var_buffer, "%d",
1961 receive_statvfs(val == (void *)TRUE, &inodes));
1962 }
1963 return var_buffer;
8e669ac1 1964
9d1c15ef
JH
1965 case vtype_pinodes:
1966 {
1967 int inodes;
1968 (void) receive_statvfs(val == (void *)TRUE, &inodes);
1969 sprintf(CS var_buffer, "%d", inodes);
1970 }
1971 return var_buffer;
80a47a2c 1972
9d1c15ef 1973 case vtype_cert:
63df3f26 1974 return *(void **)val ? US"<cert>" : US"";
80a47a2c 1975
63df3f26 1976#ifndef DISABLE_DKIM
9d1c15ef 1977 case vtype_dkim:
63df3f26
JH
1978 return dkim_exim_expand_query((int)(long)val);
1979#endif
059ec3d9 1980
9d1c15ef 1981 }
6c08476d
LM
1982
1983return NULL; /* Unknown variable. Silences static checkers. */
059ec3d9
PH
1984}
1985
1986
1987
1988
d9b2312b
JH
1989void
1990modify_variable(uschar *name, void * value)
1991{
9d1c15ef
JH
1992var_entry * vp;
1993if ((vp = find_var_ent(name))) vp->value = value;
d9b2312b
JH
1994return; /* Unknown variable name, fail silently */
1995}
1996
1997
1998
1999
2000
cf0812d5 2001
059ec3d9
PH
2002/*************************************************
2003* Read and expand substrings *
2004*************************************************/
2005
2006/* This function is called to read and expand argument substrings for various
2007expansion items. Some have a minimum requirement that is less than the maximum;
2008in these cases, the first non-present one is set to NULL.
2009
2010Arguments:
2011 sub points to vector of pointers to set
2012 n maximum number of substrings
2013 m minimum required
2014 sptr points to current string pointer
2015 skipping the skipping flag
2016 check_end if TRUE, check for final '}'
2017 name name of item, for error message
b0e85a8f
JH
2018 resetok if not NULL, pointer to flag - write FALSE if unsafe to reset
2019 the store.
059ec3d9
PH
2020
2021Returns: 0 OK; string pointer updated
2022 1 curly bracketing error (too few arguments)
2023 2 too many arguments (only if check_end is set); message set
2024 3 other error (expansion failure)
2025*/
2026
2027static int
55414b25 2028read_subs(uschar **sub, int n, int m, const uschar **sptr, BOOL skipping,
b0e85a8f 2029 BOOL check_end, uschar *name, BOOL *resetok)
059ec3d9
PH
2030{
2031int i;
55414b25 2032const uschar *s = *sptr;
059ec3d9
PH
2033
2034while (isspace(*s)) s++;
2035for (i = 0; i < n; i++)
2036 {
2037 if (*s != '{')
2038 {
e47376be
JH
2039 if (i < m)
2040 {
2041 expand_string_message = string_sprintf("Not enough arguments for '%s' "
2042 "(min is %d)", name, m);
2043 return 1;
2044 }
059ec3d9
PH
2045 sub[i] = NULL;
2046 break;
2047 }
e47376be
JH
2048 if (!(sub[i] = expand_string_internal(s+1, TRUE, &s, skipping, TRUE, resetok)))
2049 return 3;
059ec3d9
PH
2050 if (*s++ != '}') return 1;
2051 while (isspace(*s)) s++;
2052 }
2053if (check_end && *s++ != '}')
2054 {
2055 if (s[-1] == '{')
2056 {
e47376be 2057 expand_string_message = string_sprintf("Too many arguments for '%s' "
059ec3d9
PH
2058 "(max is %d)", name, n);
2059 return 2;
2060 }
e47376be 2061 expand_string_message = string_sprintf("missing '}' after '%s'", name);
059ec3d9
PH
2062 return 1;
2063 }
2064
2065*sptr = s;
2066return 0;
2067}
2068
2069
2070
2071
641cb756
PH
2072/*************************************************
2073* Elaborate message for bad variable *
2074*************************************************/
2075
2076/* For the "unknown variable" message, take a look at the variable's name, and
2077give additional information about possible ACL variables. The extra information
2078is added on to expand_string_message.
2079
2080Argument: the name of the variable
2081Returns: nothing
2082*/
2083
2084static void
2085check_variable_error_message(uschar *name)
2086{
2087if (Ustrncmp(name, "acl_", 4) == 0)
2088 expand_string_message = string_sprintf("%s (%s)", expand_string_message,
2089 (name[4] == 'c' || name[4] == 'm')?
2090 (isalpha(name[5])?
2091 US"6th character of a user-defined ACL variable must be a digit or underscore" :
2092 US"strict_acl_vars is set" /* Syntax is OK, it has to be this */
2093 ) :
2094 US"user-defined ACL variables must start acl_c or acl_m");
2095}
2096
2097
2098
f60d98e8
JH
2099/*
2100Load args from sub array to globals, and call acl_check().
ef21c07d 2101Sub array will be corrupted on return.
f60d98e8
JH
2102
2103Returns: OK access is granted by an ACCEPT verb
6e3b198d 2104 DISCARD access is (apparently) granted by a DISCARD verb
f60d98e8
JH
2105 FAIL access is denied
2106 FAIL_DROP access is denied; drop the connection
2107 DEFER can't tell at the moment
2108 ERROR disaster
2109*/
2110static int
2111eval_acl(uschar ** sub, int nsub, uschar ** user_msgp)
2112{
2113int i;
ef21c07d
JH
2114int sav_narg = acl_narg;
2115int ret;
93a6fce2 2116uschar * dummy_logmsg;
faa05a93 2117extern int acl_where;
f60d98e8 2118
0539a19d 2119if(--nsub > nelem(acl_arg)) nsub = nelem(acl_arg);
ef21c07d
JH
2120for (i = 0; i < nsub && sub[i+1]; i++)
2121 {
93a6fce2 2122 uschar * tmp = acl_arg[i];
ef21c07d
JH
2123 acl_arg[i] = sub[i+1]; /* place callers args in the globals */
2124 sub[i+1] = tmp; /* stash the old args using our caller's storage */
2125 }
2126acl_narg = i;
bef3ea7f 2127while (i < nsub)
ef21c07d
JH
2128 {
2129 sub[i+1] = acl_arg[i];
2130 acl_arg[i++] = NULL;
2131 }
f60d98e8
JH
2132
2133DEBUG(D_expand)
e1d04f48 2134 debug_printf_indent("expanding: acl: %s arg: %s%s\n",
f60d98e8 2135 sub[0],
60f8e1e8
JH
2136 acl_narg>0 ? acl_arg[0] : US"<none>",
2137 acl_narg>1 ? " +more" : "");
f60d98e8 2138
93a6fce2 2139ret = acl_eval(acl_where, sub[0], user_msgp, &dummy_logmsg);
ef21c07d
JH
2140
2141for (i = 0; i < nsub; i++)
2142 acl_arg[i] = sub[i+1]; /* restore old args */
2143acl_narg = sav_narg;
2144
2145return ret;
f60d98e8
JH
2146}
2147
2148
2149
2150
059ec3d9
PH
2151/*************************************************
2152* Read and evaluate a condition *
2153*************************************************/
2154
2155/*
2156Arguments:
2157 s points to the start of the condition text
b0e85a8f
JH
2158 resetok points to a BOOL which is written false if it is unsafe to
2159 free memory. Certain condition types (acl) may have side-effect
2160 allocation which must be preserved.
059ec3d9
PH
2161 yield points to a BOOL to hold the result of the condition test;
2162 if NULL, we are just reading through a condition that is
2163 part of an "or" combination to check syntax, or in a state
2164 where the answer isn't required
2165
2166Returns: a pointer to the first character after the condition, or
2167 NULL after an error
2168*/
2169
55414b25
JH
2170static const uschar *
2171eval_condition(const uschar *s, BOOL *resetok, BOOL *yield)
059ec3d9
PH
2172{
2173BOOL testfor = TRUE;
2174BOOL tempcond, combined_cond;
2175BOOL *subcondptr;
5cfd2e57 2176BOOL sub2_honour_dollar = TRUE;
059ec3d9 2177int i, rc, cond_type, roffset;
97d17305 2178int_eximarith_t num[2];
059ec3d9
PH
2179struct stat statbuf;
2180uschar name[256];
55414b25 2181const uschar *sub[10];
059ec3d9
PH
2182
2183const pcre *re;
2184const uschar *rerror;
2185
2186for (;;)
2187 {
2188 while (isspace(*s)) s++;
2189 if (*s == '!') { testfor = !testfor; s++; } else break;
2190 }
2191
2192/* Numeric comparisons are symbolic */
2193
2194if (*s == '=' || *s == '>' || *s == '<')
2195 {
2196 int p = 0;
2197 name[p++] = *s++;
2198 if (*s == '=')
2199 {
2200 name[p++] = '=';
2201 s++;
2202 }
2203 name[p] = 0;
2204 }
2205
2206/* All other conditions are named */
2207
2208else s = read_name(name, 256, s, US"_");
2209
2210/* If we haven't read a name, it means some non-alpha character is first. */
2211
2212if (name[0] == 0)
2213 {
2214 expand_string_message = string_sprintf("condition name expected, "
2215 "but found \"%.16s\"", s);
2216 return NULL;
2217 }
2218
2219/* Find which condition we are dealing with, and switch on it */
2220
0539a19d 2221cond_type = chop_match(name, cond_table, nelem(cond_table));
059ec3d9
PH
2222switch(cond_type)
2223 {
9b4768fa
PH
2224 /* def: tests for a non-empty variable, or for the existence of a header. If
2225 yield == NULL we are in a skipping state, and don't care about the answer. */
059ec3d9
PH
2226
2227 case ECOND_DEF:
059ec3d9 2228 {
bce15b62 2229 uschar * t;
059ec3d9 2230
bce15b62
JH
2231 if (*s != ':')
2232 {
2233 expand_string_message = US"\":\" expected after \"def\"";
2234 return NULL;
2235 }
059ec3d9 2236
bce15b62 2237 s = read_name(name, 256, s+1, US"_");
059ec3d9 2238
bce15b62
JH
2239 /* Test for a header's existence. If the name contains a closing brace
2240 character, this may be a user error where the terminating colon has been
2241 omitted. Set a flag to adjust a subsequent error message in this case. */
059ec3d9 2242
bce15b62
JH
2243 if ( ( *(t = name) == 'h'
2244 || (*t == 'r' || *t == 'l' || *t == 'b') && *++t == 'h'
2245 )
2246 && (*++t == '_' || Ustrncmp(t, "eader_", 6) == 0)
2247 )
2248 {
2249 s = read_header_name(name, 256, s);
2250 /* {-for-text-editors */
2251 if (Ustrchr(name, '}') != NULL) malformed_header = TRUE;
2252 if (yield) *yield =
2253 (find_header(name, NULL, FH_EXISTS_ONLY, NULL) != NULL) == testfor;
2254 }
059ec3d9 2255
bce15b62
JH
2256 /* Test for a variable's having a non-empty value. A non-existent variable
2257 causes an expansion failure. */
2258
2259 else
059ec3d9 2260 {
bce15b62
JH
2261 if (!(t = find_variable(name, TRUE, yield == NULL, NULL)))
2262 {
2263 expand_string_message = (name[0] == 0)?
2264 string_sprintf("variable name omitted after \"def:\"") :
2265 string_sprintf("unknown variable \"%s\" after \"def:\"", name);
2266 check_variable_error_message(name);
2267 return NULL;
2268 }
2269 if (yield) *yield = (t[0] != 0) == testfor;
059ec3d9 2270 }
059ec3d9 2271
bce15b62
JH
2272 return s;
2273 }
059ec3d9
PH
2274
2275
2276 /* first_delivery tests for first delivery attempt */
2277
2278 case ECOND_FIRST_DELIVERY:
8768d548 2279 if (yield != NULL) *yield = f.deliver_firsttime == testfor;
059ec3d9
PH
2280 return s;
2281
2282
2283 /* queue_running tests for any process started by a queue runner */
2284
2285 case ECOND_QUEUE_RUNNING:
2286 if (yield != NULL) *yield = (queue_run_pid != (pid_t)0) == testfor;
2287 return s;
2288
2289
2290 /* exists: tests for file existence
2291 isip: tests for any IP address
2292 isip4: tests for an IPv4 address
2293 isip6: tests for an IPv6 address
2294 pam: does PAM authentication
2295 radius: does RADIUS authentication
2296 ldapauth: does LDAP authentication
2297 pwcheck: does Cyrus SASL pwcheck authentication
2298 */
2299
2300 case ECOND_EXISTS:
2301 case ECOND_ISIP:
2302 case ECOND_ISIP4:
2303 case ECOND_ISIP6:
2304 case ECOND_PAM:
2305 case ECOND_RADIUS:
2306 case ECOND_LDAPAUTH:
2307 case ECOND_PWCHECK:
2308
2309 while (isspace(*s)) s++;
b5b871ac 2310 if (*s != '{') goto COND_FAILED_CURLY_START; /* }-for-text-editors */
059ec3d9 2311
b0e85a8f 2312 sub[0] = expand_string_internal(s+1, TRUE, &s, yield == NULL, TRUE, resetok);
059ec3d9 2313 if (sub[0] == NULL) return NULL;
b5b871ac 2314 /* {-for-text-editors */
059ec3d9
PH
2315 if (*s++ != '}') goto COND_FAILED_CURLY_END;
2316
2317 if (yield == NULL) return s; /* No need to run the test if skipping */
2318
2319 switch(cond_type)
2320 {
2321 case ECOND_EXISTS:
2322 if ((expand_forbid & RDO_EXISTS) != 0)
2323 {
2324 expand_string_message = US"File existence tests are not permitted";
2325 return NULL;
2326 }
2327 *yield = (Ustat(sub[0], &statbuf) == 0) == testfor;
2328 break;
2329
2330 case ECOND_ISIP:
2331 case ECOND_ISIP4:
2332 case ECOND_ISIP6:
2333 rc = string_is_ip_address(sub[0], NULL);
7e66e54d 2334 *yield = ((cond_type == ECOND_ISIP)? (rc != 0) :
059ec3d9
PH
2335 (cond_type == ECOND_ISIP4)? (rc == 4) : (rc == 6)) == testfor;
2336 break;
2337
2338 /* Various authentication tests - all optionally compiled */
2339
2340 case ECOND_PAM:
2341 #ifdef SUPPORT_PAM
2342 rc = auth_call_pam(sub[0], &expand_string_message);
2343 goto END_AUTH;
2344 #else
2345 goto COND_FAILED_NOT_COMPILED;
2346 #endif /* SUPPORT_PAM */
2347
2348 case ECOND_RADIUS:
2349 #ifdef RADIUS_CONFIG_FILE
2350 rc = auth_call_radius(sub[0], &expand_string_message);
2351 goto END_AUTH;
2352 #else
2353 goto COND_FAILED_NOT_COMPILED;
2354 #endif /* RADIUS_CONFIG_FILE */
2355
2356 case ECOND_LDAPAUTH:
2357 #ifdef LOOKUP_LDAP
2358 {
2359 /* Just to keep the interface the same */
2360 BOOL do_cache;
2361 int old_pool = store_pool;
2362 store_pool = POOL_SEARCH;
2363 rc = eldapauth_find((void *)(-1), NULL, sub[0], Ustrlen(sub[0]), NULL,
2364 &expand_string_message, &do_cache);
2365 store_pool = old_pool;
2366 }
2367 goto END_AUTH;
2368 #else
2369 goto COND_FAILED_NOT_COMPILED;
2370 #endif /* LOOKUP_LDAP */
2371
2372 case ECOND_PWCHECK:
2373 #ifdef CYRUS_PWCHECK_SOCKET
2374 rc = auth_call_pwcheck(sub[0], &expand_string_message);
2375 goto END_AUTH;
2376 #else
2377 goto COND_FAILED_NOT_COMPILED;
2378 #endif /* CYRUS_PWCHECK_SOCKET */
2379
2380 #if defined(SUPPORT_PAM) || defined(RADIUS_CONFIG_FILE) || \
2381 defined(LOOKUP_LDAP) || defined(CYRUS_PWCHECK_SOCKET)
2382 END_AUTH:
2383 if (rc == ERROR || rc == DEFER) return NULL;
2384 *yield = (rc == OK) == testfor;
2385 #endif
2386 }
2387 return s;
2388
2389
333eea9c
JH
2390 /* call ACL (in a conditional context). Accept true, deny false.
2391 Defer is a forced-fail. Anything set by message= goes to $value.
f60d98e8
JH
2392 Up to ten parameters are used; we use the braces round the name+args
2393 like the saslauthd condition does, to permit a variable number of args.
2394 See also the expansion-item version EITEM_ACL and the traditional
2395 acl modifier ACLC_ACL.
fd5dad68
JH
2396 Since the ACL may allocate new global variables, tell our caller to not
2397 reclaim memory.
f60d98e8 2398 */
333eea9c
JH
2399
2400 case ECOND_ACL:
bef3ea7f 2401 /* ${if acl {{name}{arg1}{arg2}...} {yes}{no}} */
333eea9c 2402 {
55414b25 2403 uschar *sub[10];
333eea9c 2404 uschar *user_msg;
333eea9c 2405 BOOL cond = FALSE;
333eea9c
JH
2406
2407 while (isspace(*s)) s++;
6d9cfc47 2408 if (*s++ != '{') goto COND_FAILED_CURLY_START; /*}*/
333eea9c 2409
0539a19d 2410 switch(read_subs(sub, nelem(sub), 1,
b0e85a8f 2411 &s, yield == NULL, TRUE, US"acl", resetok))
333eea9c 2412 {
f60d98e8
JH
2413 case 1: expand_string_message = US"too few arguments or bracketing "
2414 "error for acl";
2415 case 2:
2416 case 3: return NULL;
333eea9c 2417 }
f60d98e8 2418
9e70917d
JH
2419 if (yield != NULL)
2420 {
2421 *resetok = FALSE; /* eval_acl() might allocate; do not reclaim */
2422 switch(eval_acl(sub, nelem(sub), &user_msg))
f60d98e8
JH
2423 {
2424 case OK:
2425 cond = TRUE;
2426 case FAIL:
bef3ea7f 2427 lookup_value = NULL;
f60d98e8 2428 if (user_msg)
acec9514 2429 lookup_value = string_copy(user_msg);
b5b871ac 2430 *yield = cond == testfor;
f60d98e8
JH
2431 break;
2432
2433 case DEFER:
8768d548 2434 f.expand_string_forcedfail = TRUE;
6e3b198d 2435 /*FALLTHROUGH*/
f60d98e8
JH
2436 default:
2437 expand_string_message = string_sprintf("error from acl \"%s\"", sub[0]);
2438 return NULL;
2439 }
9e70917d 2440 }
f60d98e8 2441 return s;
333eea9c 2442 }
333eea9c
JH
2443
2444
059ec3d9
PH
2445 /* saslauthd: does Cyrus saslauthd authentication. Four parameters are used:
2446
b0e85a8f 2447 ${if saslauthd {{username}{password}{service}{realm}} {yes}{no}}
059ec3d9
PH
2448
2449 However, the last two are optional. That is why the whole set is enclosed
333eea9c 2450 in their own set of braces. */
059ec3d9
PH
2451
2452 case ECOND_SASLAUTHD:
0539a19d
JH
2453#ifndef CYRUS_SASLAUTHD_SOCKET
2454 goto COND_FAILED_NOT_COMPILED;
2455#else
059ec3d9 2456 {
0539a19d
JH
2457 uschar *sub[4];
2458 while (isspace(*s)) s++;
2459 if (*s++ != '{') goto COND_FAILED_CURLY_START; /* }-for-text-editors */
2460 switch(read_subs(sub, nelem(sub), 2, &s, yield == NULL, TRUE, US"saslauthd",
2461 resetok))
2462 {
2463 case 1: expand_string_message = US"too few arguments or bracketing "
2464 "error for saslauthd";
2465 case 2:
2466 case 3: return NULL;
2467 }
2468 if (sub[2] == NULL) sub[3] = NULL; /* realm if no service */
2469 if (yield != NULL)
2470 {
2471 int rc = auth_call_saslauthd(sub[0], sub[1], sub[2], sub[3],
2472 &expand_string_message);
2473 if (rc == ERROR || rc == DEFER) return NULL;
2474 *yield = (rc == OK) == testfor;
2475 }
2476 return s;
059ec3d9 2477 }
0539a19d 2478#endif /* CYRUS_SASLAUTHD_SOCKET */
059ec3d9
PH
2479
2480
2481 /* symbolic operators for numeric and string comparison, and a number of
2482 other operators, all requiring two arguments.
2483
76dca828
PP
2484 crypteq: encrypts plaintext and compares against an encrypted text,
2485 using crypt(), crypt16(), MD5 or SHA-1
2486 inlist/inlisti: checks if first argument is in the list of the second
059ec3d9
PH
2487 match: does a regular expression match and sets up the numerical
2488 variables if it succeeds
2489 match_address: matches in an address list
2490 match_domain: matches in a domain list
32d668a5 2491 match_ip: matches a host list that is restricted to IP addresses
059ec3d9 2492 match_local_part: matches in a local part list
059ec3d9
PH
2493 */
2494
059ec3d9
PH
2495 case ECOND_MATCH_ADDRESS:
2496 case ECOND_MATCH_DOMAIN:
32d668a5 2497 case ECOND_MATCH_IP:
059ec3d9 2498 case ECOND_MATCH_LOCAL_PART:
da6dbe26
PP
2499#ifndef EXPAND_LISTMATCH_RHS
2500 sub2_honour_dollar = FALSE;
2501#endif
2502 /* FALLTHROUGH */
2503
2504 case ECOND_CRYPTEQ:
2505 case ECOND_INLIST:
2506 case ECOND_INLISTI:
2507 case ECOND_MATCH:
059ec3d9
PH
2508
2509 case ECOND_NUM_L: /* Numerical comparisons */
2510 case ECOND_NUM_LE:
2511 case ECOND_NUM_E:
2512 case ECOND_NUM_EE:
2513 case ECOND_NUM_G:
2514 case ECOND_NUM_GE:
2515
2516 case ECOND_STR_LT: /* String comparisons */
2517 case ECOND_STR_LTI:
2518 case ECOND_STR_LE:
2519 case ECOND_STR_LEI:
2520 case ECOND_STR_EQ:
2521 case ECOND_STR_EQI:
2522 case ECOND_STR_GT:
2523 case ECOND_STR_GTI:
2524 case ECOND_STR_GE:
2525 case ECOND_STR_GEI:
2526
2527 for (i = 0; i < 2; i++)
2528 {
da6dbe26
PP
2529 /* Sometimes, we don't expand substrings; too many insecure configurations
2530 created using match_address{}{} and friends, where the second param
2531 includes information from untrustworthy sources. */
2532 BOOL honour_dollar = TRUE;
2533 if ((i > 0) && !sub2_honour_dollar)
2534 honour_dollar = FALSE;
2535
059ec3d9
PH
2536 while (isspace(*s)) s++;
2537 if (*s != '{')
2538 {
2539 if (i == 0) goto COND_FAILED_CURLY_START;
2540 expand_string_message = string_sprintf("missing 2nd string in {} "
2541 "after \"%s\"", name);
2542 return NULL;
2543 }
d584cdca
JH
2544 if (!(sub[i] = expand_string_internal(s+1, TRUE, &s, yield == NULL,
2545 honour_dollar, resetok)))
2546 return NULL;
2547 DEBUG(D_expand) if (i == 1 && !sub2_honour_dollar && Ustrchr(sub[1], '$'))
2548 debug_printf_indent("WARNING: the second arg is NOT expanded,"
2549 " for security reasons\n");
059ec3d9
PH
2550 if (*s++ != '}') goto COND_FAILED_CURLY_END;
2551
2552 /* Convert to numerical if required; we know that the names of all the
2553 conditions that compare numbers do not start with a letter. This just saves
2554 checking for them individually. */
2555
d6066548 2556 if (!isalpha(name[0]) && yield != NULL)
5dd1517f
PH
2557 if (sub[i][0] == 0)
2558 {
2559 num[i] = 0;
2560 DEBUG(D_expand)
e1d04f48 2561 debug_printf_indent("empty string cast to zero for numerical comparison\n");
5dd1517f
PH
2562 }
2563 else
2564 {
7685ce68 2565 num[i] = expanded_string_integer(sub[i], FALSE);
5dd1517f
PH
2566 if (expand_string_message != NULL) return NULL;
2567 }
059ec3d9
PH
2568 }
2569
2570 /* Result not required */
2571
2572 if (yield == NULL) return s;
2573
2574 /* Do an appropriate comparison */
2575
2576 switch(cond_type)
2577 {
2578 case ECOND_NUM_E:
2579 case ECOND_NUM_EE:
b5b871ac 2580 tempcond = (num[0] == num[1]);
059ec3d9
PH
2581 break;
2582
2583 case ECOND_NUM_G:
b5b871ac 2584 tempcond = (num[0] > num[1]);
059ec3d9
PH
2585 break;
2586
2587 case ECOND_NUM_GE:
b5b871ac 2588 tempcond = (num[0] >= num[1]);
059ec3d9
PH
2589 break;
2590
2591 case ECOND_NUM_L:
b5b871ac 2592 tempcond = (num[0] < num[1]);
059ec3d9
PH
2593 break;
2594
2595 case ECOND_NUM_LE:
b5b871ac 2596 tempcond = (num[0] <= num[1]);
059ec3d9
PH
2597 break;
2598
2599 case ECOND_STR_LT:
b5b871ac 2600 tempcond = (Ustrcmp(sub[0], sub[1]) < 0);
059ec3d9
PH
2601 break;
2602
2603 case ECOND_STR_LTI:
b5b871ac 2604 tempcond = (strcmpic(sub[0], sub[1]) < 0);
059ec3d9
PH
2605 break;
2606
2607 case ECOND_STR_LE:
b5b871ac 2608 tempcond = (Ustrcmp(sub[0], sub[1]) <= 0);
059ec3d9
PH
2609 break;
2610
2611 case ECOND_STR_LEI:
b5b871ac 2612 tempcond = (strcmpic(sub[0], sub[1]) <= 0);
059ec3d9
PH
2613 break;
2614
2615 case ECOND_STR_EQ:
b5b871ac 2616 tempcond = (Ustrcmp(sub[0], sub[1]) == 0);
059ec3d9
PH
2617 break;
2618
2619 case ECOND_STR_EQI:
b5b871ac 2620 tempcond = (strcmpic(sub[0], sub[1]) == 0);
059ec3d9
PH
2621 break;
2622
2623 case ECOND_STR_GT:
b5b871ac 2624 tempcond = (Ustrcmp(sub[0], sub[1]) > 0);
059ec3d9
PH
2625 break;
2626
2627 case ECOND_STR_GTI:
b5b871ac 2628 tempcond = (strcmpic(sub[0], sub[1]) > 0);
059ec3d9
PH
2629 break;
2630
2631 case ECOND_STR_GE:
b5b871ac 2632 tempcond = (Ustrcmp(sub[0], sub[1]) >= 0);
059ec3d9
PH
2633 break;
2634
2635 case ECOND_STR_GEI:
b5b871ac 2636 tempcond = (strcmpic(sub[0], sub[1]) >= 0);
059ec3d9
PH
2637 break;
2638
2639 case ECOND_MATCH: /* Regular expression match */
2640 re = pcre_compile(CS sub[1], PCRE_COPT, (const char **)&rerror, &roffset,
2641 NULL);
2642 if (re == NULL)
2643 {
2644 expand_string_message = string_sprintf("regular expression error in "
2645 "\"%s\": %s at offset %d", sub[1], rerror, roffset);
2646 return NULL;
2647 }
b5b871ac 2648 tempcond = regex_match_and_setup(re, sub[0], 0, -1);
059ec3d9
PH
2649 break;
2650
2651 case ECOND_MATCH_ADDRESS: /* Match in an address list */
2652 rc = match_address_list(sub[0], TRUE, FALSE, &(sub[1]), NULL, -1, 0, NULL);
2653 goto MATCHED_SOMETHING;
2654
2655 case ECOND_MATCH_DOMAIN: /* Match in a domain list */
2656 rc = match_isinlist(sub[0], &(sub[1]), 0, &domainlist_anchor, NULL,
2657 MCL_DOMAIN + MCL_NOEXPAND, TRUE, NULL);
2658 goto MATCHED_SOMETHING;
2659
32d668a5 2660 case ECOND_MATCH_IP: /* Match IP address in a host list */
7e66e54d 2661 if (sub[0][0] != 0 && string_is_ip_address(sub[0], NULL) == 0)
32d668a5
PH
2662 {
2663 expand_string_message = string_sprintf("\"%s\" is not an IP address",
2664 sub[0]);
2665 return NULL;
2666 }
2667 else
2668 {
2669 unsigned int *nullcache = NULL;
2670 check_host_block cb;
2671
2672 cb.host_name = US"";
2673 cb.host_address = sub[0];
2674
2675 /* If the host address starts off ::ffff: it is an IPv6 address in
2676 IPv4-compatible mode. Find the IPv4 part for checking against IPv4
2677 addresses. */
2678
2679 cb.host_ipv4 = (Ustrncmp(cb.host_address, "::ffff:", 7) == 0)?
2680 cb.host_address + 7 : cb.host_address;
2681
2682 rc = match_check_list(
2683 &sub[1], /* the list */
2684 0, /* separator character */
2685 &hostlist_anchor, /* anchor pointer */
2686 &nullcache, /* cache pointer */
2687 check_host, /* function for testing */
2688 &cb, /* argument for function */
2689 MCL_HOST, /* type of check */
2690 sub[0], /* text for debugging */
2691 NULL); /* where to pass back data */
2692 }
2693 goto MATCHED_SOMETHING;
2694
059ec3d9
PH
2695 case ECOND_MATCH_LOCAL_PART:
2696 rc = match_isinlist(sub[0], &(sub[1]), 0, &localpartlist_anchor, NULL,
2697 MCL_LOCALPART + MCL_NOEXPAND, TRUE, NULL);
2698 /* Fall through */
9a26b6b2 2699 /* VVVVVVVVVVVV */
059ec3d9
PH
2700 MATCHED_SOMETHING:
2701 switch(rc)
2702 {
2703 case OK:
b5b871ac 2704 tempcond = TRUE;
059ec3d9
PH
2705 break;
2706
2707 case FAIL:
b5b871ac 2708 tempcond = FALSE;
059ec3d9
PH
2709 break;
2710
2711 case DEFER:
2712 expand_string_message = string_sprintf("unable to complete match "
2713 "against \"%s\": %s", sub[1], search_error_message);
2714 return NULL;
2715 }
2716
2717 break;
2718
2719 /* Various "encrypted" comparisons. If the second string starts with
2720 "{" then an encryption type is given. Default to crypt() or crypt16()
2721 (build-time choice). */
b5b871ac 2722 /* }-for-text-editors */
059ec3d9
PH
2723
2724 case ECOND_CRYPTEQ:
2725 #ifndef SUPPORT_CRYPTEQ
2726 goto COND_FAILED_NOT_COMPILED;
2727 #else
2728 if (strncmpic(sub[1], US"{md5}", 5) == 0)
2729 {
2730 int sublen = Ustrlen(sub[1]+5);
2731 md5 base;
2732 uschar digest[16];
2733
2734 md5_start(&base);
cfab9d68 2735 md5_end(&base, sub[0], Ustrlen(sub[0]), digest);
059ec3d9
PH
2736
2737 /* If the length that we are comparing against is 24, the MD5 digest
2738 is expressed as a base64 string. This is the way LDAP does it. However,
2739 some other software uses a straightforward hex representation. We assume
2740 this if the length is 32. Other lengths fail. */
2741
2742 if (sublen == 24)
2743 {
cfab9d68 2744 uschar *coded = b64encode(digest, 16);
059ec3d9
PH
2745 DEBUG(D_auth) debug_printf("crypteq: using MD5+B64 hashing\n"
2746 " subject=%s\n crypted=%s\n", coded, sub[1]+5);
b5b871ac 2747 tempcond = (Ustrcmp(coded, sub[1]+5) == 0);
059ec3d9
PH
2748 }
2749 else if (sublen == 32)
2750 {
2751 int i;
2752 uschar coded[36];
2753 for (i = 0; i < 16; i++) sprintf(CS (coded+2*i), "%02X", digest[i]);
2754 coded[32] = 0;
2755 DEBUG(D_auth) debug_printf("crypteq: using MD5+hex hashing\n"
2756 " subject=%s\n crypted=%s\n", coded, sub[1]+5);
b5b871ac 2757 tempcond = (strcmpic(coded, sub[1]+5) == 0);
059ec3d9
PH
2758 }
2759 else
2760 {
2761 DEBUG(D_auth) debug_printf("crypteq: length for MD5 not 24 or 32: "
2762 "fail\n crypted=%s\n", sub[1]+5);
b5b871ac 2763 tempcond = FALSE;
059ec3d9
PH
2764 }
2765 }
2766
2767 else if (strncmpic(sub[1], US"{sha1}", 6) == 0)
2768 {
2769 int sublen = Ustrlen(sub[1]+6);
5fb822fc 2770 hctx h;
059ec3d9
PH
2771 uschar digest[20];
2772
5fb822fc 2773 sha1_start(&h);
cfab9d68 2774 sha1_end(&h, sub[0], Ustrlen(sub[0]), digest);
059ec3d9
PH
2775
2776 /* If the length that we are comparing against is 28, assume the SHA1
2777 digest is expressed as a base64 string. If the length is 40, assume a
2778 straightforward hex representation. Other lengths fail. */
2779
2780 if (sublen == 28)
2781 {
cfab9d68 2782 uschar *coded = b64encode(digest, 20);
059ec3d9
PH
2783 DEBUG(D_auth) debug_printf("crypteq: using SHA1+B64 hashing\n"
2784 " subject=%s\n crypted=%s\n", coded, sub[1]+6);
b5b871ac 2785 tempcond = (Ustrcmp(coded, sub[1]+6) == 0);
059ec3d9
PH
2786 }
2787 else if (sublen == 40)
2788 {
2789 int i;
2790 uschar coded[44];
2791 for (i = 0; i < 20; i++) sprintf(CS (coded+2*i), "%02X", digest[i]);
2792 coded[40] = 0;
2793 DEBUG(D_auth) debug_printf("crypteq: using SHA1+hex hashing\n"
2794 " subject=%s\n crypted=%s\n", coded, sub[1]+6);
b5b871ac 2795 tempcond = (strcmpic(coded, sub[1]+6) == 0);
059ec3d9
PH
2796 }
2797 else
2798 {
2799 DEBUG(D_auth) debug_printf("crypteq: length for SHA-1 not 28 or 40: "
2800 "fail\n crypted=%s\n", sub[1]+6);
b5b871ac 2801 tempcond = FALSE;
059ec3d9
PH
2802 }
2803 }
2804
2805 else /* {crypt} or {crypt16} and non-{ at start */
76dca828 2806 /* }-for-text-editors */
059ec3d9
PH
2807 {
2808 int which = 0;
2809 uschar *coded;
2810
2811 if (strncmpic(sub[1], US"{crypt}", 7) == 0)
2812 {
2813 sub[1] += 7;
2814 which = 1;
2815 }
2816 else if (strncmpic(sub[1], US"{crypt16}", 9) == 0)
2817 {
2818 sub[1] += 9;
2819 which = 2;
2820 }
b5b871ac 2821 else if (sub[1][0] == '{') /* }-for-text-editors */
059ec3d9
PH
2822 {
2823 expand_string_message = string_sprintf("unknown encryption mechanism "
2824 "in \"%s\"", sub[1]);
2825 return NULL;
2826 }
2827
2828 switch(which)
2829 {
2830 case 0: coded = US DEFAULT_CRYPT(CS sub[0], CS sub[1]); break;
2831 case 1: coded = US crypt(CS sub[0], CS sub[1]); break;
2832 default: coded = US crypt16(CS sub[0], CS sub[1]); break;
2833 }
2834
2835 #define STR(s) # s
2836 #define XSTR(s) STR(s)
2837 DEBUG(D_auth) debug_printf("crypteq: using %s()\n"
2838 " subject=%s\n crypted=%s\n",
9dc2b215 2839 which == 0 ? XSTR(DEFAULT_CRYPT) : which == 1 ? "crypt" : "crypt16",
059ec3d9
PH
2840 coded, sub[1]);
2841 #undef STR
2842 #undef XSTR
2843
2844 /* If the encrypted string contains fewer than two characters (for the
2845 salt), force failure. Otherwise we get false positives: with an empty
2846 string the yield of crypt() is an empty string! */
2847
9dc2b215
JH
2848 if (coded)
2849 tempcond = Ustrlen(sub[1]) < 2 ? FALSE : Ustrcmp(coded, sub[1]) == 0;
2850 else if (errno == EINVAL)
2851 tempcond = FALSE;
2852 else
2853 {
2854 expand_string_message = string_sprintf("crypt error: %s\n",
2855 US strerror(errno));
2856 return NULL;
2857 }
059ec3d9
PH
2858 }
2859 break;
2860 #endif /* SUPPORT_CRYPTEQ */
76dca828
PP
2861
2862 case ECOND_INLIST:
2863 case ECOND_INLISTI:
2864 {
55414b25 2865 const uschar * list = sub[1];
76dca828 2866 int sep = 0;
76dca828
PP
2867 uschar *save_iterate_item = iterate_item;
2868 int (*compare)(const uschar *, const uschar *);
2869
05e796ad 2870 DEBUG(D_expand) debug_printf_indent("condition: %s item: %s\n", name, sub[0]);
82dbd376 2871
b5b871ac 2872 tempcond = FALSE;
55414b25
JH
2873 compare = cond_type == ECOND_INLISTI
2874 ? strcmpic : (int (*)(const uschar *, const uschar *)) strcmp;
76dca828 2875
55414b25 2876 while ((iterate_item = string_nextinlist(&list, &sep, NULL, 0)))
05e796ad
JH
2877 {
2878 DEBUG(D_expand) debug_printf_indent(" compare %s\n", iterate_item);
76dca828
PP
2879 if (compare(sub[0], iterate_item) == 0)
2880 {
b5b871ac 2881 tempcond = TRUE;
76dca828
PP
2882 break;
2883 }
05e796ad 2884 }
76dca828 2885 iterate_item = save_iterate_item;
76dca828
PP
2886 }
2887
059ec3d9
PH
2888 } /* Switch for comparison conditions */
2889
b5b871ac 2890 *yield = tempcond == testfor;
059ec3d9
PH
2891 return s; /* End of comparison conditions */
2892
2893
2894 /* and/or: computes logical and/or of several conditions */
2895
2896 case ECOND_AND:
2897 case ECOND_OR:
2898 subcondptr = (yield == NULL)? NULL : &tempcond;
2899 combined_cond = (cond_type == ECOND_AND);
2900
2901 while (isspace(*s)) s++;
b5b871ac 2902 if (*s++ != '{') goto COND_FAILED_CURLY_START; /* }-for-text-editors */
059ec3d9
PH
2903
2904 for (;;)
2905 {
2906 while (isspace(*s)) s++;
b5b871ac 2907 /* {-for-text-editors */
059ec3d9 2908 if (*s == '}') break;
b5b871ac 2909 if (*s != '{') /* }-for-text-editors */
059ec3d9
PH
2910 {
2911 expand_string_message = string_sprintf("each subcondition "
2912 "inside an \"%s{...}\" condition must be in its own {}", name);
2913 return NULL;
2914 }
2915
b0e85a8f 2916 if (!(s = eval_condition(s+1, resetok, subcondptr)))
059ec3d9
PH
2917 {
2918 expand_string_message = string_sprintf("%s inside \"%s{...}\" condition",
2919 expand_string_message, name);
2920 return NULL;
2921 }
2922 while (isspace(*s)) s++;
2923
b5b871ac 2924 /* {-for-text-editors */
059ec3d9
PH
2925 if (*s++ != '}')
2926 {
b5b871ac 2927 /* {-for-text-editors */
059ec3d9
PH
2928 expand_string_message = string_sprintf("missing } at end of condition "
2929 "inside \"%s\" group", name);
2930 return NULL;
2931 }
2932
2933 if (yield != NULL)
2934 {
2935 if (cond_type == ECOND_AND)
2936 {
2937 combined_cond &= tempcond;
2938 if (!combined_cond) subcondptr = NULL; /* once false, don't */
2939 } /* evaluate any more */
2940 else
2941 {
2942 combined_cond |= tempcond;
2943 if (combined_cond) subcondptr = NULL; /* once true, don't */
2944 } /* evaluate any more */
2945 }
2946 }
2947
2948 if (yield != NULL) *yield = (combined_cond == testfor);
2949 return ++s;
2950
2951
0ce9abe6
PH
2952 /* forall/forany: iterates a condition with different values */
2953
2954 case ECOND_FORALL:
2955 case ECOND_FORANY:
2956 {
55414b25 2957 const uschar * list;
0ce9abe6 2958 int sep = 0;
282b357d 2959 uschar *save_iterate_item = iterate_item;
0ce9abe6 2960
e1d04f48 2961 DEBUG(D_expand) debug_printf_indent("condition: %s\n", name);
82dbd376 2962
0ce9abe6 2963 while (isspace(*s)) s++;
b5b871ac 2964 if (*s++ != '{') goto COND_FAILED_CURLY_START; /* }-for-text-editors */
b0e85a8f 2965 sub[0] = expand_string_internal(s, TRUE, &s, (yield == NULL), TRUE, resetok);
0ce9abe6 2966 if (sub[0] == NULL) return NULL;
b5b871ac 2967 /* {-for-text-editors */
0ce9abe6
PH
2968 if (*s++ != '}') goto COND_FAILED_CURLY_END;
2969
2970 while (isspace(*s)) s++;
b5b871ac 2971 if (*s++ != '{') goto COND_FAILED_CURLY_START; /* }-for-text-editors */
0ce9abe6
PH
2972
2973 sub[1] = s;
2974
2975 /* Call eval_condition once, with result discarded (as if scanning a
2976 "false" part). This allows us to find the end of the condition, because if
2977 the list it empty, we won't actually evaluate the condition for real. */
2978
b0e85a8f 2979 if (!(s = eval_condition(sub[1], resetok, NULL)))
0ce9abe6
PH
2980 {
2981 expand_string_message = string_sprintf("%s inside \"%s\" condition",
2982 expand_string_message, name);
2983 return NULL;
2984 }
2985 while (isspace(*s)) s++;
2986
b5b871ac 2987 /* {-for-text-editors */
0ce9abe6
PH
2988 if (*s++ != '}')
2989 {
b5b871ac 2990 /* {-for-text-editors */
0ce9abe6
PH
2991 expand_string_message = string_sprintf("missing } at end of condition "
2992 "inside \"%s\"", name);
2993 return NULL;
2994 }
2995
2996 if (yield != NULL) *yield = !testfor;
55414b25
JH
2997 list = sub[0];
2998 while ((iterate_item = string_nextinlist(&list, &sep, NULL, 0)) != NULL)
0ce9abe6 2999 {
e1d04f48 3000 DEBUG(D_expand) debug_printf_indent("%s: $item = \"%s\"\n", name, iterate_item);
b0e85a8f 3001 if (!eval_condition(sub[1], resetok, &tempcond))
0ce9abe6
PH
3002 {
3003 expand_string_message = string_sprintf("%s inside \"%s\" condition",
3004 expand_string_message, name);
e58c13cc 3005 iterate_item = save_iterate_item;
0ce9abe6
PH
3006 return NULL;
3007 }
e1d04f48 3008 DEBUG(D_expand) debug_printf_indent("%s: condition evaluated to %s\n", name,
0ce9abe6
PH
3009 tempcond? "true":"false");
3010
3011 if (yield != NULL) *yield = (tempcond == testfor);
3012 if (tempcond == (cond_type == ECOND_FORANY)) break;
3013 }
3014
282b357d 3015 iterate_item = save_iterate_item;
0ce9abe6
PH
3016 return s;
3017 }
3018
3019
f3766eb5
NM
3020 /* The bool{} expansion condition maps a string to boolean.
3021 The values supported should match those supported by the ACL condition
3022 (acl.c, ACLC_CONDITION) so that we keep to a minimum the different ideas
3023 of true/false. Note that Router "condition" rules have a different
3024 interpretation, where general data can be used and only a few values
3025 map to FALSE.
3026 Note that readconf.c boolean matching, for boolean configuration options,
6a8de854
PP
3027 only matches true/yes/false/no.
3028 The bool_lax{} condition matches the Router logic, which is much more
3029 liberal. */
f3766eb5 3030 case ECOND_BOOL:
6a8de854 3031 case ECOND_BOOL_LAX:
f3766eb5
NM
3032 {
3033 uschar *sub_arg[1];
71265ae9 3034 uschar *t, *t2;
6a8de854 3035 uschar *ourname;
f3766eb5
NM
3036 size_t len;
3037 BOOL boolvalue = FALSE;
3038 while (isspace(*s)) s++;
b5b871ac 3039 if (*s != '{') goto COND_FAILED_CURLY_START; /* }-for-text-editors */
6a8de854 3040 ourname = cond_type == ECOND_BOOL_LAX ? US"bool_lax" : US"bool";
b0e85a8f 3041 switch(read_subs(sub_arg, 1, 1, &s, yield == NULL, FALSE, ourname, resetok))
f3766eb5 3042 {
6a8de854
PP
3043 case 1: expand_string_message = string_sprintf(
3044 "too few arguments or bracketing error for %s",
3045 ourname);
f3766eb5
NM
3046 /*FALLTHROUGH*/
3047 case 2:
3048 case 3: return NULL;
3049 }
3050 t = sub_arg[0];
3051 while (isspace(*t)) t++;
3052 len = Ustrlen(t);
71265ae9
PP
3053 if (len)
3054 {
3055 /* trailing whitespace: seems like a good idea to ignore it too */
3056 t2 = t + len - 1;
3057 while (isspace(*t2)) t2--;
3058 if (t2 != (t + len))
3059 {
3060 *++t2 = '\0';
3061 len = t2 - t;
3062 }
3063 }
f3766eb5 3064 DEBUG(D_expand)
e1d04f48 3065 debug_printf_indent("considering %s: %s\n", ourname, len ? t : US"<empty>");
6a8de854
PP
3066 /* logic for the lax case from expand_check_condition(), which also does
3067 expands, and the logic is both short and stable enough that there should
3068 be no maintenance burden from replicating it. */
f3766eb5
NM
3069 if (len == 0)
3070 boolvalue = FALSE;
51c7471d
JH
3071 else if (*t == '-'
3072 ? Ustrspn(t+1, "0123456789") == len-1
3073 : Ustrspn(t, "0123456789") == len)
6a8de854 3074 {
f3766eb5 3075 boolvalue = (Uatoi(t) == 0) ? FALSE : TRUE;
6a8de854
PP
3076 /* expand_check_condition only does a literal string "0" check */
3077 if ((cond_type == ECOND_BOOL_LAX) && (len > 1))
3078 boolvalue = TRUE;
3079 }
f3766eb5
NM
3080 else if (strcmpic(t, US"true") == 0 || strcmpic(t, US"yes") == 0)
3081 boolvalue = TRUE;
3082 else if (strcmpic(t, US"false") == 0 || strcmpic(t, US"no") == 0)
3083 boolvalue = FALSE;
6a8de854
PP
3084 else if (cond_type == ECOND_BOOL_LAX)
3085 boolvalue = TRUE;
f3766eb5
NM
3086 else
3087 {
3088 expand_string_message = string_sprintf("unrecognised boolean "
3089 "value \"%s\"", t);
3090 return NULL;
3091 }
e1d04f48 3092 DEBUG(D_expand) debug_printf_indent("%s: condition evaluated to %s\n", ourname,
c7c833c6 3093 boolvalue? "true":"false");
5ee6f336 3094 if (yield != NULL) *yield = (boolvalue == testfor);
f3766eb5
NM
3095 return s;
3096 }
3097
059ec3d9
PH
3098 /* Unknown condition */
3099
3100 default:
3101 expand_string_message = string_sprintf("unknown condition \"%s\"", name);
3102 return NULL;
3103 } /* End switch on condition type */
3104
3105/* Missing braces at start and end of data */
3106
3107COND_FAILED_CURLY_START:
3108expand_string_message = string_sprintf("missing { after \"%s\"", name);
3109return NULL;
3110
3111COND_FAILED_CURLY_END:
3112expand_string_message = string_sprintf("missing } at end of \"%s\" condition",
3113 name);
3114return NULL;
3115
3116/* A condition requires code that is not compiled */
3117
3118#if !defined(SUPPORT_PAM) || !defined(RADIUS_CONFIG_FILE) || \
3119 !defined(LOOKUP_LDAP) || !defined(CYRUS_PWCHECK_SOCKET) || \
3120 !defined(SUPPORT_CRYPTEQ) || !defined(CYRUS_SASLAUTHD_SOCKET)
3121COND_FAILED_NOT_COMPILED:
3122expand_string_message = string_sprintf("support for \"%s\" not compiled",
3123 name);
3124return NULL;
3125#endif
3126}
3127
3128
3129
3130
3131/*************************************************
3132* Save numerical variables *
3133*************************************************/
3134
3135/* This function is called from items such as "if" that want to preserve and
3136restore the numbered variables.
3137
3138Arguments:
3139 save_expand_string points to an array of pointers to set
3140 save_expand_nlength points to an array of ints for the lengths
3141
3142Returns: the value of expand max to save
3143*/
3144
3145static int
3146save_expand_strings(uschar **save_expand_nstring, int *save_expand_nlength)
3147{
3148int i;
3149for (i = 0; i <= expand_nmax; i++)
3150 {
3151 save_expand_nstring[i] = expand_nstring[i];
3152 save_expand_nlength[i] = expand_nlength[i];
3153 }
3154return expand_nmax;
3155}
3156
3157
3158
3159/*************************************************
3160* Restore numerical variables *
3161*************************************************/
3162
3163/* This function restored saved values of numerical strings.
3164
3165Arguments:
3166 save_expand_nmax the number of strings to restore
3167 save_expand_string points to an array of pointers
3168 save_expand_nlength points to an array of ints
3169
3170Returns: nothing
3171*/
3172
3173static void
3174restore_expand_strings(int save_expand_nmax, uschar **save_expand_nstring,
3175 int *save_expand_nlength)
3176{
3177int i;
3178expand_nmax = save_expand_nmax;
3179for (i = 0; i <= expand_nmax; i++)
3180 {
3181 expand_nstring[i] = save_expand_nstring[i];
3182 expand_nlength[i] = save_expand_nlength[i];
3183 }
3184}
3185
3186
3187
3188
3189
3190/*************************************************
3191* Handle yes/no substrings *
3192*************************************************/
3193
3194/* This function is used by ${if}, ${lookup} and ${extract} to handle the
3195alternative substrings that depend on whether or not the condition was true,
3196or the lookup or extraction succeeded. The substrings always have to be
3197expanded, to check their syntax, but "skipping" is set when the result is not
3198needed - this avoids unnecessary nested lookups.
3199
3200Arguments:
3201 skipping TRUE if we were skipping when this item was reached
3202 yes TRUE if the first string is to be used, else use the second
3203 save_lookup a value to put back into lookup_value before the 2nd expansion
3204 sptr points to the input string pointer
acec9514 3205 yieldptr points to the output growable-string pointer
f90d49f7
JH
3206 type "lookup", "if", "extract", "run", "env", "listextract" or
3207 "certextract" for error message
b0e85a8f
JH
3208 resetok if not NULL, pointer to flag - write FALSE if unsafe to reset
3209 the store.
059ec3d9
PH
3210
3211Returns: 0 OK; lookup_value has been reset to save_lookup
3212 1 expansion failed
3213 2 expansion failed because of bracketing error
3214*/
3215
3216static int
55414b25 3217process_yesno(BOOL skipping, BOOL yes, uschar *save_lookup, const uschar **sptr,
acec9514 3218 gstring ** yieldptr, uschar *type, BOOL *resetok)
059ec3d9
PH
3219{
3220int rc = 0;
55414b25 3221const uschar *s = *sptr; /* Local value */
059ec3d9 3222uschar *sub1, *sub2;
e47376be 3223const uschar * errwhere;
059ec3d9
PH
3224
3225/* If there are no following strings, we substitute the contents of $value for
063b1e99 3226lookups and for extractions in the success case. For the ${if item, the string
8e669ac1 3227"true" is substituted. In the fail case, nothing is substituted for all three
063b1e99 3228items. */
059ec3d9
PH
3229
3230while (isspace(*s)) s++;
3231if (*s == '}')
3232 {
9e09521e
JH
3233 if (type[0] == 'i')
3234 {
3235 if (yes && !skipping)
acec9514 3236 *yieldptr = string_catn(*yieldptr, US"true", 4);
9e09521e
JH
3237 }
3238 else
3239 {
3240 if (yes && lookup_value && !skipping)
acec9514 3241 *yieldptr = string_cat(*yieldptr, lookup_value);
9e09521e
JH
3242 lookup_value = save_lookup;
3243 }
059ec3d9
PH
3244 s++;
3245 goto RETURN;
3246 }
3247
9b4768fa
PH
3248/* The first following string must be braced. */
3249
e47376be
JH
3250if (*s++ != '{')
3251 {
3252 errwhere = US"'yes' part did not start with '{'";
3253 goto FAILED_CURLY;
3254 }
9b4768fa 3255
059ec3d9
PH
3256/* Expand the first substring. Forced failures are noticed only if we actually
3257want this string. Set skipping in the call in the fail case (this will always
3258be the case if we were already skipping). */
3259
b0e85a8f 3260sub1 = expand_string_internal(s, TRUE, &s, !yes, TRUE, resetok);
8768d548
JH
3261if (sub1 == NULL && (yes || !f.expand_string_forcedfail)) goto FAILED;
3262f.expand_string_forcedfail = FALSE;
e47376be
JH
3263if (*s++ != '}')
3264 {
3265 errwhere = US"'yes' part did not end with '}'";
3266 goto FAILED_CURLY;
3267 }
059ec3d9
PH
3268
3269/* If we want the first string, add it to the output */
3270
3271if (yes)
acec9514 3272 *yieldptr = string_cat(*yieldptr, sub1);
059ec3d9 3273
fa01e4f8
JH
3274/* If this is called from a lookup/env or a (cert)extract, we want to restore
3275$value to what it was at the start of the item, so that it has this value
3276during the second string expansion. For the call from "if" or "run" to this
3277function, save_lookup is set to lookup_value, so that this statement does
3278nothing. */
059ec3d9
PH
3279
3280lookup_value = save_lookup;
3281
3282/* There now follows either another substring, or "fail", or nothing. This
3283time, forced failures are noticed only if we want the second string. We must
3284set skipping in the nested call if we don't want this string, or if we were
3285already skipping. */
3286
3287while (isspace(*s)) s++;
3288if (*s == '{')
3289 {
b0e85a8f 3290 sub2 = expand_string_internal(s+1, TRUE, &s, yes || skipping, TRUE, resetok);
8768d548
JH
3291 if (sub2 == NULL && (!yes || !f.expand_string_forcedfail)) goto FAILED;
3292 f.expand_string_forcedfail = FALSE;
e47376be
JH
3293 if (*s++ != '}')
3294 {
3295 errwhere = US"'no' part did not start with '{'";
3296 goto FAILED_CURLY;
3297 }
059ec3d9
PH
3298
3299 /* If we want the second string, add it to the output */
3300
3301 if (!yes)
acec9514 3302 *yieldptr = string_cat(*yieldptr, sub2);
059ec3d9
PH
3303 }
3304
3305/* If there is no second string, but the word "fail" is present when the use of
3306the second string is wanted, set a flag indicating it was a forced failure
3307rather than a syntactic error. Swallow the terminating } in case this is nested
3308inside another lookup or if or extract. */
3309
3310else if (*s != '}')
3311 {
3312 uschar name[256];
55414b25
JH
3313 /* deconst cast ok here as source is s anyway */
3314 s = US read_name(name, sizeof(name), s, US"_");
059ec3d9
PH
3315 if (Ustrcmp(name, "fail") == 0)
3316 {
3317 if (!yes && !skipping)
3318 {
3319 while (isspace(*s)) s++;
e47376be
JH
3320 if (*s++ != '}')
3321 {
3322 errwhere = US"did not close with '}' after forcedfail";
3323 goto FAILED_CURLY;
3324 }
059ec3d9
PH
3325 expand_string_message =
3326 string_sprintf("\"%s\" failed and \"fail\" requested", type);
8768d548 3327 f.expand_string_forcedfail = TRUE;
059ec3d9
PH
3328 goto FAILED;
3329 }
3330 }
3331 else
3332 {
3333 expand_string_message =
3334 string_sprintf("syntax error in \"%s\" item - \"fail\" expected", type);
3335 goto FAILED;
3336 }
3337 }
3338
3339/* All we have to do now is to check on the final closing brace. */
3340
3341while (isspace(*s)) s++;
e47376be
JH
3342if (*s++ != '}')
3343 {
3344 errwhere = US"did not close with '}'";
3345 goto FAILED_CURLY;
3346 }
059ec3d9 3347
059ec3d9
PH
3348
3349RETURN:
e47376be 3350/* Update the input pointer value before returning */
059ec3d9
PH
3351*sptr = s;
3352return rc;
e47376be
JH
3353
3354FAILED_CURLY:
3355 /* Get here if there is a bracketing failure */
3356 expand_string_message = string_sprintf(
3357 "curly-bracket problem in conditional yes/no parsing: %s\n"
3358 " remaining string is '%s'", errwhere, --s);
3359 rc = 2;
3360 goto RETURN;
3361
3362FAILED:
3363 /* Get here for other failures */
3364 rc = 1;
3365 goto RETURN;
059ec3d9
PH
3366}
3367
3368
3369
3370
059ec3d9
PH
3371/*************************************************
3372* Handle MD5 or SHA-1 computation for HMAC *
3373*************************************************/
3374
3375/* These are some wrapping functions that enable the HMAC code to be a bit
3376cleaner. A good compiler will spot the tail recursion.
3377
3378Arguments:
3379 type HMAC_MD5 or HMAC_SHA1
3380 remaining are as for the cryptographic hash functions
3381
3382Returns: nothing
3383*/
3384
3385static void
3386chash_start(int type, void *base)
3387{
3388if (type == HMAC_MD5)
3389 md5_start((md5 *)base);
3390else
5fb822fc 3391 sha1_start((hctx *)base);
059ec3d9
PH
3392}
3393
3394static void
3395chash_mid(int type, void *base, uschar *string)
3396{
3397if (type == HMAC_MD5)
3398 md5_mid((md5 *)base, string);
3399else
5fb822fc 3400 sha1_mid((hctx *)base, string);
059ec3d9
PH
3401}
3402
3403static void
3404chash_end(int type, void *base, uschar *string, int length, uschar *digest)
3405{
3406if (type == HMAC_MD5)
3407 md5_end((md5 *)base, string, length, digest);
3408else
5fb822fc 3409 sha1_end((hctx *)base, string, length, digest);
059ec3d9
PH
3410}
3411
3412
3413
3414
3415
1549ea3b
PH
3416/********************************************************
3417* prvs: Get last three digits of days since Jan 1, 1970 *
3418********************************************************/
3419
3420/* This is needed to implement the "prvs" BATV reverse
3421 path signing scheme
3422
3423Argument: integer "days" offset to add or substract to
3424 or from the current number of days.
3425
3426Returns: pointer to string containing the last three
3427 digits of the number of days since Jan 1, 1970,
3428 modified by the offset argument, NULL if there
3429 was an error in the conversion.
3430
3431*/
3432
3433static uschar *
3434prvs_daystamp(int day_offset)
3435{
a86229cf
PH
3436uschar *days = store_get(32); /* Need at least 24 for cases */
3437(void)string_format(days, 32, TIME_T_FMT, /* where TIME_T_FMT is %lld */
1549ea3b 3438 (time(NULL) + day_offset*86400)/86400);
e169f567 3439return (Ustrlen(days) >= 3) ? &days[Ustrlen(days)-3] : US"100";
1549ea3b
PH
3440}
3441
3442
3443
3444/********************************************************
3445* prvs: perform HMAC-SHA1 computation of prvs bits *
3446********************************************************/
3447
3448/* This is needed to implement the "prvs" BATV reverse
3449 path signing scheme
3450
3451Arguments:
3452 address RFC2821 Address to use
3453 key The key to use (must be less than 64 characters
3454 in size)
3455 key_num Single-digit key number to use. Defaults to
3456 '0' when NULL.
3457
3458Returns: pointer to string containing the first three
3459 bytes of the final hash in hex format, NULL if
3460 there was an error in the process.
3461*/
3462
3463static uschar *
3464prvs_hmac_sha1(uschar *address, uschar *key, uschar *key_num, uschar *daystamp)
3465{
acec9514
JH
3466gstring * hash_source;
3467uschar * p;
3468int i;
5fb822fc 3469hctx h;
1549ea3b
PH
3470uschar innerhash[20];
3471uschar finalhash[20];
3472uschar innerkey[64];
3473uschar outerkey[64];
3474uschar *finalhash_hex = store_get(40);
3475
3476if (key_num == NULL)
3477 key_num = US"0";
3478
3479if (Ustrlen(key) > 64)
3480 return NULL;
3481
acec9514
JH
3482hash_source = string_catn(NULL, key_num, 1);
3483hash_source = string_catn(hash_source, daystamp, 3);
3484hash_source = string_cat(hash_source, address);
3485(void) string_from_gstring(hash_source);
1549ea3b 3486
acec9514
JH
3487DEBUG(D_expand)
3488 debug_printf_indent("prvs: hash source is '%s'\n", hash_source->s);
1549ea3b
PH
3489
3490memset(innerkey, 0x36, 64);
3491memset(outerkey, 0x5c, 64);
3492
3493for (i = 0; i < Ustrlen(key); i++)
3494 {
3495 innerkey[i] ^= key[i];
3496 outerkey[i] ^= key[i];
3497 }
3498
5fb822fc
JH
3499chash_start(HMAC_SHA1, &h);
3500chash_mid(HMAC_SHA1, &h, innerkey);
acec9514 3501chash_end(HMAC_SHA1, &h, hash_source->s, hash_source->ptr, innerhash);
1549ea3b 3502
5fb822fc
JH
3503chash_start(HMAC_SHA1, &h);
3504chash_mid(HMAC_SHA1, &h, outerkey);
3505chash_end(HMAC_SHA1, &h, innerhash, 20, finalhash);
1549ea3b
PH
3506
3507p = finalhash_hex;
3508for (i = 0; i < 3; i++)
3509 {
3510 *p++ = hex_digits[(finalhash[i] & 0xf0) >> 4];
3511 *p++ = hex_digits[finalhash[i] & 0x0f];
3512 }
3513*p = '\0';
3514
3515return finalhash_hex;
3516}
3517
3518
3519
3520
059ec3d9
PH
3521/*************************************************
3522* Join a file onto the output string *
3523*************************************************/
3524
fa01e4f8
JH
3525/* This is used for readfile/readsock and after a run expansion.
3526It joins the contents of a file onto the output string, globally replacing
3527newlines with a given string (optionally).
059ec3d9
PH
3528
3529Arguments:
3530 f the FILE
acec9514 3531 yield pointer to the expandable string struct
059ec3d9
PH
3532 eol newline replacement string, or NULL
3533
acec9514 3534Returns: new pointer for expandable string, terminated if non-null
059ec3d9
PH
3535*/
3536
acec9514
JH
3537static gstring *
3538cat_file(FILE *f, gstring *yield, uschar *eol)
059ec3d9 3539{
059ec3d9
PH
3540uschar buffer[1024];
3541
fa01e4f8 3542while (Ufgets(buffer, sizeof(buffer), f))
059ec3d9
PH
3543 {
3544 int len = Ustrlen(buffer);
fa01e4f8 3545 if (eol && buffer[len-1] == '\n') len--;
acec9514 3546 yield = string_catn(yield, buffer, len);
8487aee9 3547 if (eol && buffer[len])
acec9514 3548 yield = string_cat(yield, eol);
059ec3d9
PH
3549 }
3550
acec9514 3551(void) string_from_gstring(yield);
059ec3d9
PH
3552return yield;
3553}
3554
3555
afdb5e9c
JH
3556#ifdef SUPPORT_TLS
3557static gstring *
3558cat_file_tls(void * tls_ctx, gstring * yield, uschar * eol)
3559{
3560int rc;
3561uschar * s;
3562uschar buffer[1024];
3563
3564while ((rc = tls_read(tls_ctx, buffer, sizeof(buffer))) > 0)
3565 for (s = buffer; rc--; s++)
3566 yield = eol && *s == '\n'
3567 ? string_cat(yield, eol) : string_catn(yield, s, 1);
3568
3569/* We assume that all errors, and any returns of zero bytes,
3570are actually EOF. */
3571
3572(void) string_from_gstring(yield);
3573return yield;
3574}
3575#endif
059ec3d9
PH
3576
3577
3578/*************************************************
3579* Evaluate numeric expression *
3580*************************************************/
3581
af561417
PH
3582/* This is a set of mutually recursive functions that evaluate an arithmetic
3583expression involving + - * / % & | ^ ~ << >> and parentheses. The only one of
3584these functions that is called from elsewhere is eval_expr, whose interface is:
059ec3d9
PH
3585
3586Arguments:
af561417
PH
3587 sptr pointer to the pointer to the string - gets updated
3588 decimal TRUE if numbers are to be assumed decimal
3589 error pointer to where to put an error message - must be NULL on input
3590 endket TRUE if ')' must terminate - FALSE for external call
059ec3d9 3591
af561417
PH
3592Returns: on success: the value of the expression, with *error still NULL
3593 on failure: an undefined value, with *error = a message
059ec3d9
PH
3594*/
3595
97d17305 3596static int_eximarith_t eval_op_or(uschar **, BOOL, uschar **);
af561417 3597
059ec3d9 3598
97d17305 3599static int_eximarith_t
059ec3d9
PH
3600eval_expr(uschar **sptr, BOOL decimal, uschar **error, BOOL endket)
3601{
3602uschar *s = *sptr;
97d17305 3603int_eximarith_t x = eval_op_or(&s, decimal, error);
059ec3d9
PH
3604if (*error == NULL)
3605 {
af561417 3606 if (endket)
059ec3d9 3607 {
af561417
PH
3608 if (*s != ')')
3609 *error = US"expecting closing parenthesis";
3610 else
3611 while (isspace(*(++s)));
059ec3d9 3612 }
af561417 3613 else if (*s != 0) *error = US"expecting operator";
059ec3d9 3614 }
059ec3d9
PH
3615*sptr = s;
3616return x;
3617}
3618
af561417 3619
97d17305 3620static int_eximarith_t
af561417 3621eval_number(uschar **sptr, BOOL decimal, uschar **error)
059ec3d9
PH
3622{
3623register int c;
97d17305 3624int_eximarith_t n;
059ec3d9
PH
3625uschar *s = *sptr;
3626while (isspace(*s)) s++;
3627c = *s;
af561417 3628if (isdigit(c))
059ec3d9
PH
3629 {
3630 int count;
97d17305 3631 (void)sscanf(CS s, (decimal? SC_EXIM_DEC "%n" : SC_EXIM_ARITH "%n"), &n, &count);
059ec3d9 3632 s += count;
97d17305
JH
3633 switch (tolower(*s))
3634 {
3635 default: break;
3636 case 'k': n *= 1024; s++; break;
3637 case 'm': n *= 1024*1024; s++; break;
3638 case 'g': n *= 1024*1024*1024; s++; break;
3639 }
059ec3d9
PH
3640 while (isspace (*s)) s++;
3641 }
3642else if (c == '(')
3643 {
3644 s++;
3645 n = eval_expr(&s, decimal, error, 1);
3646 }
3647else
3648 {
3649 *error = US"expecting number or opening parenthesis";
3650 n = 0;
3651 }
3652*sptr = s;
3653return n;
3654}
3655
af561417 3656
97d17305 3657static int_eximarith_t
aa7c82b2 3658eval_op_unary(uschar **sptr, BOOL decimal, uschar **error)
af561417
PH
3659{
3660uschar *s = *sptr;
97d17305 3661int_eximarith_t x;
af561417
PH
3662while (isspace(*s)) s++;
3663if (*s == '+' || *s == '-' || *s == '~')
3664 {
3665 int op = *s++;
3666 x = eval_op_unary(&s, decimal, error);
3667 if (op == '-') x = -x;
3668 else if (op == '~') x = ~x;
3669 }
3670else
3671 {
3672 x = eval_number(&s, decimal, error);
3673 }
3674*sptr = s;
3675return x;
3676}
3677
3678
97d17305 3679static int_eximarith_t
aa7c82b2 3680eval_op_mult(uschar **sptr, BOOL decimal, uschar **error)
059ec3d9
PH
3681{
3682uschar *s = *sptr;
97d17305 3683int_eximarith_t x = eval_op_unary(&s, decimal, error);
059ec3d9
PH
3684if (*error == NULL)
3685 {
5591031b 3686 while (*s == '*' || *s == '/' || *s == '%')
059ec3d9
PH
3687 {
3688 int op = *s++;
97d17305 3689 int_eximarith_t y = eval_op_unary(&s, decimal, error);
059ec3d9 3690 if (*error != NULL) break;
053a9aa3
PP
3691 /* SIGFPE both on div/mod by zero and on INT_MIN / -1, which would give
3692 * a value of INT_MAX+1. Note that INT_MIN * -1 gives INT_MIN for me, which
3693 * is a bug somewhere in [gcc 4.2.1, FreeBSD, amd64]. In fact, -N*-M where
4c04137d 3694 * -N*M is INT_MIN will yield INT_MIN.
053a9aa3
PP
3695 * Since we don't support floating point, this is somewhat simpler.
3696 * Ideally, we'd return an error, but since we overflow for all other
3697 * arithmetic, consistency suggests otherwise, but what's the correct value
3698 * to use? There is none.
3699 * The C standard guarantees overflow for unsigned arithmetic but signed
3700 * overflow invokes undefined behaviour; in practice, this is overflow
3701 * except for converting INT_MIN to INT_MAX+1. We also can't guarantee
3702 * that long/longlong larger than int are available, or we could just work
3703 * with larger types. We should consider whether to guarantee 32bit eval
3704 * and 64-bit working variables, with errors returned. For now ...
3705 * So, the only SIGFPEs occur with a non-shrinking div/mod, thus -1; we
3706 * can just let the other invalid results occur otherwise, as they have
3707 * until now. For this one case, we can coerce.
3708 */
4328fd3c 3709 if (y == -1 && x == EXIM_ARITH_MIN && op != '*')
053a9aa3
PP
3710 {
3711 DEBUG(D_expand)
97d17305 3712 debug_printf("Integer exception dodging: " PR_EXIM_ARITH "%c-1 coerced to " PR_EXIM_ARITH "\n",
4328fd3c
JH
3713 EXIM_ARITH_MIN, op, EXIM_ARITH_MAX);
3714 x = EXIM_ARITH_MAX;
053a9aa3
PP
3715 continue;
3716 }
a5b52695
PP
3717 if (op == '*')
3718 x *= y;
3719 else
3720 {
3721 if (y == 0)
54e7ce4a 3722 {
a5b52695
PP
3723 *error = (op == '/') ? US"divide by zero" : US"modulo by zero";
3724 x = 0;
3725 break;
54e7ce4a 3726 }
a5b52695
PP
3727 if (op == '/')
3728 x /= y;
3729 else
3730 x %= y;
3731 }
059ec3d9
PH
3732 }
3733 }
3734*sptr = s;
3735return x;
3736}
3737
3738
97d17305 3739static int_eximarith_t
aa7c82b2 3740eval_op_sum(uschar **sptr, BOOL decimal, uschar **error)
af561417
PH
3741{
3742uschar *s = *sptr;
97d17305 3743int_eximarith_t x = eval_op_mult(&s, decimal, error);
6e3b198d 3744if (!*error)
af561417
PH
3745 {
3746 while (*s == '+' || *s == '-')
3747 {
3748 int op = *s++;
97d17305 3749 int_eximarith_t y = eval_op_mult(&s, decimal, error);
6e3b198d
JH
3750 if (*error) break;
3751 if ( (x >= EXIM_ARITH_MAX/2 && x >= EXIM_ARITH_MAX/2)
3752 || (x <= -(EXIM_ARITH_MAX/2) && y <= -(EXIM_ARITH_MAX/2)))
3753 { /* over-conservative check */
3754 *error = op == '+'
3755 ? US"overflow in sum" : US"overflow in difference";
3756 break;
3757 }
af561417
PH
3758 if (op == '+') x += y; else x -= y;
3759 }
3760 }
3761*sptr = s;
3762return x;
3763}
3764
3765
97d17305 3766static int_eximarith_t
aa7c82b2 3767eval_op_shift(uschar **sptr, BOOL decimal, uschar **error)
af561417
PH
3768{
3769uschar *s = *sptr;
97d17305 3770int_eximarith_t x = eval_op_sum(&s, decimal, error);
af561417
PH
3771if (*error == NULL)
3772 {
3773 while ((*s == '<' || *s == '>') && s[1] == s[0])
3774 {
97d17305 3775 int_eximarith_t y;
af561417
PH
3776 int op = *s++;
3777 s++;
3778 y = eval_op_sum(&s, decimal, error);
3779 if (*error != NULL) break;
3780 if (op == '<') x <<= y; else x >>= y;
3781 }
3782 }
3783*sptr = s;
3784return x;
3785}
3786
3787
97d17305 3788static int_eximarith_t
aa7c82b2 3789eval_op_and(uschar **sptr, BOOL decimal, uschar **error)
af561417
PH
3790{
3791uschar *s = *sptr;
97d17305 3792int_eximarith_t x = eval_op_shift(&s, decimal, error);
af561417
PH
3793if (*error == NULL)
3794 {
3795 while (*s == '&')
3796 {
97d17305 3797 int_eximarith_t y;
af561417
PH
3798 s++;
3799 y = eval_op_shift(&s, decimal, error);
3800 if (*error != NULL) break;
3801 x &= y;
3802 }
3803 }
3804*sptr = s;
3805return x;
3806}
3807
3808
97d17305 3809static int_eximarith_t
aa7c82b2 3810eval_op_xor(uschar **sptr, BOOL decimal, uschar **error)
af561417
PH
3811{
3812uschar *s = *sptr;
97d17305 3813int_eximarith_t x = eval_op_and(&s, decimal, error);
af561417
PH
3814if (*error == NULL)
3815 {
3816 while (*s == '^')
3817 {
97d17305 3818 int_eximarith_t y;
af561417
PH
3819 s++;
3820 y = eval_op_and(&s, decimal, error);
3821 if (*error != NULL) break;
3822 x ^= y;
3823 }
3824 }
3825*sptr = s;
3826return x;
3827}
3828
3829
97d17305 3830static int_eximarith_t
aa7c82b2 3831eval_op_or(uschar **sptr, BOOL decimal, uschar **error)
af561417
PH
3832{
3833uschar *s = *sptr;
97d17305 3834int_eximarith_t x = eval_op_xor(&s, decimal, error);
af561417
PH
3835if (*error == NULL)
3836 {
3837 while (*s == '|')
3838 {
97d17305 3839 int_eximarith_t y;
af561417
PH
3840 s++;
3841 y = eval_op_xor(&s, decimal, error);
3842 if (*error != NULL) break;
3843 x |= y;
3844 }
3845 }
3846*sptr = s;
3847return x;
3848}
3849
059ec3d9
PH
3850
3851
8fdf20fd
JH
3852/* Return pointer to dewrapped string, with enclosing specified chars removed.
3853The given string is modified on return. Leading whitespace is skipped while
3854looking for the opening wrap character, then the rest is scanned for the trailing
3855(non-escaped) wrap character. A backslash in the string will act as an escape.
3856
3857A nul is written over the trailing wrap, and a pointer to the char after the
3858leading wrap is returned.
3859
3860Arguments:
3861 s String for de-wrapping
3862 wrap Two-char string, the first being the opener, second the closer wrapping
3863 character
3864Return:
3865 Pointer to de-wrapped string, or NULL on error (with expand_string_message set).
3866*/
3867
3868static uschar *
3869dewrap(uschar * s, const uschar * wrap)
3870{
3871uschar * p = s;
9d03af0a
JH
3872unsigned depth = 0;
3873BOOL quotesmode = wrap[0] == wrap[1];
8fdf20fd
JH
3874
3875while (isspace(*p)) p++;
3876
3877if (*p == *wrap)
3878 {
3879 s = ++p;
3880 wrap++;
3881 while (*p)
3882 {
3883 if (*p == '\\') p++;
9d03af0a 3884 else if (!quotesmode && *p == wrap[-1]) depth++;
8fdf20fd 3885 else if (*p == *wrap)
9d03af0a
JH
3886 if (depth == 0)
3887 {
3888 *p = '\0';
3889 return s;
3890 }
3891 else
3892 depth--;
8fdf20fd
JH
3893 p++;
3894 }
3895 }
3896expand_string_message = string_sprintf("missing '%c'", *wrap);
3897return NULL;
3898}
3899
3900
3901/* Pull off the leading array or object element, returning
3902a copy in an allocated string. Update the list pointer.
3903
3904The element may itself be an abject or array.
3905*/
3906
3907uschar *
3908json_nextinlist(const uschar ** list)
3909{
3910unsigned array_depth = 0, object_depth = 0;
3911const uschar * s = *list, * item;
3912
3913while (isspace(*s)) s++;
3914
3915for (item = s;
3916 *s && (*s != ',' || array_depth != 0 || object_depth != 0);
3917 s++)
3918 switch (*s)
3919 {
3920 case '[': array_depth++; break;
3921 case ']': array_depth--; break;
3922 case '{': object_depth++; break;
3923 case '}': object_depth--; break;
3924 }
3925*list = *s ? s+1 : s;
9d03af0a
JH
3926item = string_copyn(item, s - item);
3927DEBUG(D_expand) debug_printf_indent(" json ele: '%s'\n", item);
3928return US item;
8fdf20fd
JH
3929}
3930
3931
3932
059ec3d9
PH
3933/*************************************************
3934* Expand string *
3935*************************************************/
3936
3937/* Returns either an unchanged string, or the expanded string in stacking pool
3938store. Interpreted sequences are:
3939
3940 \... normal escaping rules
3941 $name substitutes the variable
3942 ${name} ditto
3943 ${op:string} operates on the expanded string value
3944 ${item{arg1}{arg2}...} expands the args and then does the business
3945 some literal args are not enclosed in {}
3946
3947There are now far too many operators and item types to make it worth listing
3948them here in detail any more.
3949
3950We use an internal routine recursively to handle embedded substrings. The
3951external function follows. The yield is NULL if the expansion failed, and there
3952are two cases: if something collapsed syntactically, or if "fail" was given
4c04137d 3953as the action on a lookup failure. These can be distinguished by looking at the
059ec3d9
PH
3954variable expand_string_forcedfail, which is TRUE in the latter case.
3955
3956The skipping flag is set true when expanding a substring that isn't actually
3957going to be used (after "if" or "lookup") and it prevents lookups from
3958happening lower down.
3959
3960Store usage: At start, a store block of the length of the input plus 64
3961is obtained. This is expanded as necessary by string_cat(), which might have to
3962get a new block, or might be able to expand the original. At the end of the
3963function we can release any store above that portion of the yield block that
3964was actually used. In many cases this will be optimal.
3965
3966However: if the first item in the expansion is a variable name or header name,
3967we reset the store before processing it; if the result is in fresh store, we
3968use that without copying. This is helpful for expanding strings like
3969$message_headers which can get very long.
3970
d6b4d938
TF
3971There's a problem if a ${dlfunc item has side-effects that cause allocation,
3972since resetting the store at the end of the expansion will free store that was
3973allocated by the plugin code as well as the slop after the expanded string. So
b0e85a8f
JH
3974we skip any resets if ${dlfunc } has been used. The same applies for ${acl }
3975and, given the acl condition, ${if }. This is an unfortunate consequence of
3976string expansion becoming too powerful.
d6b4d938 3977
059ec3d9
PH
3978Arguments:
3979 string the string to be expanded
3980 ket_ends true if expansion is to stop at }
3981 left if not NULL, a pointer to the first character after the
3982 expansion is placed here (typically used with ket_ends)
3983 skipping TRUE for recursive calls when the value isn't actually going
3984 to be used (to allow for optimisation)
da6dbe26
PP
3985 honour_dollar TRUE if $ is to be expanded,
3986 FALSE if it's just another character
b0e85a8f
JH
3987 resetok_p if not NULL, pointer to flag - write FALSE if unsafe to reset
3988 the store.
059ec3d9
PH
3989
3990Returns: NULL if expansion fails:
3991 expand_string_forcedfail is set TRUE if failure was forced
3992 expand_string_message contains a textual error message
3993 a pointer to the expanded string on success
3994*/
3995
3996static uschar *
55414b25 3997expand_string_internal(const uschar *string, BOOL ket_ends, const uschar **left,
b0e85a8f 3998 BOOL skipping, BOOL honour_dollar, BOOL *resetok_p)
059ec3d9 3999{
acec9514 4000gstring * yield = string_get(Ustrlen(string) + 64);
5f5be492 4001int item_type;
55414b25 4002const uschar *s = string;
059ec3d9
PH
4003uschar *save_expand_nstring[EXPAND_MAXN+1];
4004int save_expand_nlength[EXPAND_MAXN+1];
d6b4d938 4005BOOL resetok = TRUE;
059ec3d9 4006
e1d04f48 4007expand_level++;
e47376be 4008DEBUG(D_expand)
ae8f9024
JH
4009 DEBUG(D_noutf8)
4010 debug_printf_indent("/%s: %s\n",
4011 skipping ? "---scanning" : "considering", string);
4012 else
4013 debug_printf_indent(UTF8_DOWN_RIGHT "%s: %s\n",
4014 skipping
4015 ? UTF8_HORIZ UTF8_HORIZ UTF8_HORIZ "scanning"
4016 : "considering",
4017 string);
e47376be 4018
8768d548 4019f.expand_string_forcedfail = FALSE;
059ec3d9
PH
4020expand_string_message = US"";
4021
4022while (*s != 0)
4023 {
4024 uschar *value;
4025 uschar name[256];
4026
4027 /* \ escapes the next character, which must exist, or else
4028 the expansion fails. There's a special escape, \N, which causes
4029 copying of the subject verbatim up to the next \N. Otherwise,
4030 the escapes are the standard set. */
4031
4032 if (*s == '\\')
4033 {
4034 if (s[1] == 0)
4035 {
4036 expand_string_message = US"\\ at end of string";
4037 goto EXPAND_FAILED;
4038 }
4039
4040 if (s[1] == 'N')
4041 {
55414b25 4042 const uschar * t = s + 2;
059ec3d9 4043 for (s = t; *s != 0; s++) if (*s == '\\' && s[1] == 'N') break;
acec9514 4044 yield = string_catn(yield, t, s - t);
059ec3d9
PH
4045 if (*s != 0) s += 2;
4046 }
4047
4048 else
4049 {
4050 uschar ch[1];
4051 ch[0] = string_interpret_escape(&s);
4052 s++;
acec9514 4053 yield = string_catn(yield, ch, 1);
059ec3d9
PH
4054 }
4055
4056 continue;
4057 }
4058
2e23003a 4059 /*{*/
059ec3d9
PH
4060 /* Anything other than $ is just copied verbatim, unless we are
4061 looking for a terminating } character. */
4062
2e23003a 4063 /*{*/
059ec3d9
PH
4064 if (ket_ends && *s == '}') break;
4065
da6dbe26 4066 if (*s != '$' || !honour_dollar)
059ec3d9 4067 {
acec9514 4068 yield = string_catn(yield, s++, 1);
059ec3d9
PH
4069 continue;
4070 }
4071
4072 /* No { after the $ - must be a plain name or a number for string
4073 match variable. There has to be a fudge for variables that are the
4074 names of header fields preceded by "$header_" because header field
4075 names can contain any printing characters except space and colon.
4076 For those that don't like typing this much, "$h_" is a synonym for
4077 "$header_". A non-existent header yields a NULL value; nothing is
2e23003a 4078 inserted. */ /*}*/
059ec3d9
PH
4079
4080 if (isalpha((*(++s))))
4081 {
4082 int len;
4083 int newsize = 0;
bb07bcd3 4084 gstring * g = NULL;
bce15b62 4085 uschar * t;
059ec3d9
PH
4086
4087 s = read_name(name, sizeof(name), s, US"_");
4088
4089 /* If this is the first thing to be expanded, release the pre-allocated
4090 buffer. */
4091
bb07bcd3
JH
4092 if (!yield)
4093 g = store_get(sizeof(gstring));
4094 else if (yield->ptr == 0)
059ec3d9 4095 {
d6b4d938 4096 if (resetok) store_reset(yield);
059ec3d9 4097 yield = NULL;
bb07bcd3 4098 g = store_get(sizeof(gstring)); /* alloc _before_ calling find_variable() */
059ec3d9
PH
4099 }
4100
4101 /* Header */
4102
bce15b62
JH
4103 if ( ( *(t = name) == 'h'
4104 || (*t == 'r' || *t == 'l' || *t == 'b') && *++t == 'h'
4105 )
4106 && (*++t == '_' || Ustrncmp(t, "eader_", 6) == 0)
4107 )
059ec3d9 4108 {
bce15b62
JH
4109 unsigned flags = *name == 'r' ? FH_WANT_RAW
4110 : *name == 'l' ? FH_WANT_RAW|FH_WANT_LIST
4111 : 0;
4112 uschar * charset = *name == 'b' ? NULL : headers_charset;
4113
059ec3d9 4114 s = read_header_name(name, sizeof(name), s);
bce15b62 4115 value = find_header(name, &newsize, flags, charset);
059ec3d9
PH
4116
4117 /* If we didn't find the header, and the header contains a closing brace
0d85fa3f 4118 character, this may be a user error where the terminating colon
059ec3d9
PH
4119 has been omitted. Set a flag to adjust the error message in this case.
4120 But there is no error here - nothing gets inserted. */
4121
acec9514 4122 if (!value)
059ec3d9
PH
4123 {
4124 if (Ustrchr(name, '}') != NULL) malformed_header = TRUE;
4125 continue;
4126 }
4127 }
4128
4129 /* Variable */
4130
63df3f26 4131 else if (!(value = find_variable(name, FALSE, skipping, &newsize)))
059ec3d9 4132 {
63df3f26
JH
4133 expand_string_message =
4134 string_sprintf("unknown variable name \"%s\"", name);
4135 check_variable_error_message(name);
4136 goto EXPAND_FAILED;
059ec3d9
PH
4137 }
4138
4139 /* If the data is known to be in a new buffer, newsize will be set to the
4140 size of that buffer. If this is the first thing in an expansion string,
4141 yield will be NULL; just point it at the new store instead of copying. Many
4142 expansion strings contain just one reference, so this is a useful
acec9514
JH
4143 optimization, especially for humungous headers. We need to use a gstring
4144 structure that is not allocated after that new-buffer, else a later store
4145 reset in the middle of the buffer will make it inaccessible. */
059ec3d9
PH
4146
4147 len = Ustrlen(value);
acec9514 4148 if (!yield && newsize != 0)
059ec3d9 4149 {
acec9514
JH
4150 yield = g;
4151 yield->size = newsize;
4152 yield->ptr = len;
4153 yield->s = value;
059ec3d9 4154 }
bb07bcd3
JH
4155 else
4156 yield = string_catn(yield, value, len);
059ec3d9
PH
4157
4158 continue;
4159 }
4160
4161 if (isdigit(*s))
4162 {
4163 int n;
55414b25 4164 s = read_cnumber(&n, s);
059ec3d9 4165 if (n >= 0 && n <= expand_nmax)
acec9514 4166 yield = string_catn(yield, expand_nstring[n], expand_nlength[n]);
059ec3d9
PH
4167 continue;
4168 }
4169
2e23003a 4170 /* Otherwise, if there's no '{' after $ it's an error. */ /*}*/
059ec3d9 4171
2e23003a 4172 if (*s != '{') /*}*/
059ec3d9 4173 {
2e23003a 4174 expand_string_message = US"$ not followed by letter, digit, or {"; /*}*/
059ec3d9
PH
4175 goto EXPAND_FAILED;
4176 }
4177
4178 /* After { there can be various things, but they all start with
4179 an initial word, except for a number for a string match variable. */
4180
4181 if (isdigit((*(++s))))
4182 {
4183 int n;
55414b25 4184 s = read_cnumber(&n, s); /*{*/
059ec3d9 4185 if (*s++ != '}')
2e23003a 4186 { /*{*/
059ec3d9
PH
4187 expand_string_message = US"} expected after number";
4188 goto EXPAND_FAILED;
4189 }
4190 if (n >= 0 && n <= expand_nmax)
acec9514 4191 yield = string_catn(yield, expand_nstring[n], expand_nlength[n]);
059ec3d9
PH
4192 continue;
4193 }
4194
4195 if (!isalpha(*s))
4196 {
2e23003a 4197 expand_string_message = US"letter or digit expected after ${"; /*}*/
059ec3d9
PH
4198 goto EXPAND_FAILED;
4199 }
4200
4201 /* Allow "-" in names to cater for substrings with negative
4202 arguments. Since we are checking for known names after { this is
4203 OK. */
4204
4205 s = read_name(name, sizeof(name), s, US"_-");
0539a19d 4206 item_type = chop_match(name, item_table, nelem(item_table));
059ec3d9
PH
4207
4208 switch(item_type)
4209 {
525239c1 4210 /* Call an ACL from an expansion. We feed data in via $acl_arg1 - $acl_arg9.
333eea9c 4211 If the ACL returns accept or reject we return content set by "message ="
723c72e6
JH
4212 There is currently no limit on recursion; this would have us call
4213 acl_check_internal() directly and get a current level from somewhere.
f60d98e8
JH
4214 See also the acl expansion condition ECOND_ACL and the traditional
4215 acl modifier ACLC_ACL.
be7a5781 4216 Assume that the function has side-effects on the store that must be preserved.
723c72e6
JH
4217 */
4218
4219 case EITEM_ACL:
333eea9c 4220 /* ${acl {name} {arg1}{arg2}...} */
723c72e6 4221 {
333eea9c 4222 uschar *sub[10]; /* name + arg1-arg9 (which must match number of acl_arg[]) */
723c72e6 4223 uschar *user_msg;
333eea9c 4224
089fc87a
JH
4225 switch(read_subs(sub, nelem(sub), 1, &s, skipping, TRUE, US"acl",
4226 &resetok))
723c72e6
JH
4227 {
4228 case 1: goto EXPAND_FAILED_CURLY;
4229 case 2:
4230 case 3: goto EXPAND_FAILED;
4231 }
4232 if (skipping) continue;
4233
be7a5781 4234 resetok = FALSE;
0539a19d 4235 switch(eval_acl(sub, nelem(sub), &user_msg))
723c72e6
JH
4236 {
4237 case OK:
333eea9c 4238 case FAIL:
187bc588 4239 DEBUG(D_expand)
e1d04f48 4240 debug_printf_indent("acl expansion yield: %s\n", user_msg);
723c72e6 4241 if (user_msg)
acec9514 4242 yield = string_cat(yield, user_msg);
723c72e6 4243 continue;
333eea9c 4244
723c72e6 4245 case DEFER:
8768d548 4246 f.expand_string_forcedfail = TRUE;
6e3b198d 4247 /*FALLTHROUGH*/
723c72e6 4248 default:
333eea9c 4249 expand_string_message = string_sprintf("error from acl \"%s\"", sub[0]);
723c72e6
JH
4250 goto EXPAND_FAILED;
4251 }
4252 }
4253
dfbcb5ac
JH
4254 case EITEM_AUTHRESULTS:
4255 /* ${authresults {mysystemname}} */
4256 {
4257 uschar *sub_arg[1];
4258
4259 switch(read_subs(sub_arg, nelem(sub_arg), 1, &s, skipping, TRUE, name,
4260 &resetok))
4261 {
4262 case 1: goto EXPAND_FAILED_CURLY;
4263 case 2:
4264 case 3: goto EXPAND_FAILED;
4265 }
4266
4267 yield = string_append(yield, 3,
4268 US"Authentication-Results: ", sub_arg[0], US"; none");
4269 yield->ptr -= 6;
4270
40394cc1 4271 yield = authres_local(yield, sub_arg[0]);
dfbcb5ac
JH
4272 yield = authres_iprev(yield);
4273 yield = authres_smtpauth(yield);
4274#ifdef SUPPORT_SPF
4275 yield = authres_spf(yield);
4276#endif
4277#ifndef DISABLE_DKIM
4278 yield = authres_dkim(yield);
617d3932 4279#endif
c9cf9ac4
JH
4280#ifdef EXPERIMENTAL_DMARC
4281 yield = authres_dmarc(yield);
4282#endif
617d3932
JH
4283#ifdef EXPERIMENTAL_ARC
4284 yield = authres_arc(yield);
dfbcb5ac
JH
4285#endif
4286 continue;
4287 }
4288
059ec3d9
PH
4289 /* Handle conditionals - preserve the values of the numerical expansion
4290 variables in case they get changed by a regular expression match in the
4291 condition. If not, they retain their external settings. At the end
4292 of this "if" section, they get restored to their previous values. */
4293
4294 case EITEM_IF:
4295 {
4296 BOOL cond = FALSE;
55414b25 4297 const uschar *next_s;
059ec3d9
PH
4298 int save_expand_nmax =
4299 save_expand_strings(save_expand_nstring, save_expand_nlength);
4300
4301 while (isspace(*s)) s++;
f267271d 4302 next_s = eval_condition(s, &resetok, skipping ? NULL : &cond);
059ec3d9
PH
4303 if (next_s == NULL) goto EXPAND_FAILED; /* message already set */
4304
4305 DEBUG(D_expand)
ae8f9024
JH
4306 DEBUG(D_noutf8)
4307 {
4308 debug_printf_indent("|--condition: %.*s\n", (int)(next_s - s), s);
4309 debug_printf_indent("|-----result: %s\n", cond ? "true" : "false");
4310 }
4311 else
4312 {
4313 debug_printf_indent(UTF8_VERT_RIGHT UTF8_HORIZ UTF8_HORIZ
4314 "condition: %.*s\n",
4315 (int)(next_s - s), s);
4316 debug_printf_indent(UTF8_VERT_RIGHT UTF8_HORIZ UTF8_HORIZ
4317 UTF8_HORIZ UTF8_HORIZ UTF8_HORIZ
4318 "result: %s\n",
4319 cond ? "true" : "false");
4320 }
059ec3d9
PH
4321
4322 s = next_s;
4323
4324 /* The handling of "yes" and "no" result strings is now in a separate
4325 function that is also used by ${lookup} and ${extract} and ${run}. */
4326
4327 switch(process_yesno(
4328 skipping, /* were previously skipping */
4329 cond, /* success/failure indicator */
4330 lookup_value, /* value to reset for string2 */
4331 &s, /* input pointer */
4332 &yield, /* output pointer */
b0e85a8f
JH
4333 US"if", /* condition type */
4334 &resetok))
059ec3d9
PH
4335 {
4336 case 1: goto EXPAND_FAILED; /* when all is well, the */
4337 case 2: goto EXPAND_FAILED_CURLY; /* returned value is 0 */
4338 }
4339
4340 /* Restore external setting of expansion variables for continuation
4341 at this level. */
4342
b0e85a8f
JH
4343 restore_expand_strings(save_expand_nmax, save_expand_nstring,
4344 save_expand_nlength);
059ec3d9
PH
4345 continue;
4346 }
4347
8c5d388a 4348#ifdef SUPPORT_I18N
ed0512a1
JH
4349 case EITEM_IMAPFOLDER:
4350 { /* ${imapfolder {name}{sep]{specials}} */
4351 uschar *sub_arg[3];
4352 uschar *encoded;
4353
0539a19d
JH
4354 switch(read_subs(sub_arg, nelem(sub_arg), 1, &s, skipping, TRUE, name,
4355 &resetok))
ed0512a1
JH
4356 {
4357 case 1: goto EXPAND_FAILED_CURLY;
4358 case 2:
4359 case 3: goto EXPAND_FAILED;
4360 }
4361
4362 if (sub_arg[1] == NULL) /* One argument */
4363 {
0539a19d 4364 sub_arg[1] = US"/"; /* default separator */
ed0512a1
JH
4365 sub_arg[2] = NULL;
4366 }
0539a19d 4367 else if (Ustrlen(sub_arg[1]) != 1)
ed0512a1 4368 {
94431adb 4369 expand_string_message =
ed0512a1 4370 string_sprintf(
94431adb 4371 "IMAP folder separator must be one character, found \"%s\"",
ed0512a1
JH
4372 sub_arg[1]);
4373 goto EXPAND_FAILED;
4374 }
4375
ed0512a1 4376 if (!skipping)
f267271d
JH
4377 {
4378 if (!(encoded = imap_utf7_encode(sub_arg[0], headers_charset,
4379 sub_arg[1][0], sub_arg[2], &expand_string_message)))
4380 goto EXPAND_FAILED;
acec9514 4381 yield = string_cat(yield, encoded);
f267271d 4382 }
ed0512a1
JH
4383 continue;
4384 }
4385#endif
4386
059ec3d9
PH
4387 /* Handle database lookups unless locked out. If "skipping" is TRUE, we are
4388 expanding an internal string that isn't actually going to be used. All we
4389 need to do is check the syntax, so don't do a lookup at all. Preserve the
4390 values of the numerical expansion variables in case they get changed by a
4391 partial lookup. If not, they retain their external settings. At the end
4392 of this "lookup" section, they get restored to their previous values. */
4393
4394 case EITEM_LOOKUP:
4395 {
4396 int stype, partial, affixlen, starflags;
4397 int expand_setup = 0;
4398 int nameptr = 0;
55414b25
JH
4399 uschar *key, *filename;
4400 const uschar *affix;
059ec3d9
PH
4401 uschar *save_lookup_value = lookup_value;
4402 int save_expand_nmax =
4403 save_expand_strings(save_expand_nstring, save_expand_nlength);
4404
4405 if ((expand_forbid & RDO_LOOKUP) != 0)
4406 {
4407 expand_string_message = US"lookup expansions are not permitted";
4408 goto EXPAND_FAILED;
4409 }
4410
4411 /* Get the key we are to look up for single-key+file style lookups.
4412 Otherwise set the key NULL pro-tem. */
4413
4414 while (isspace(*s)) s++;
2e23003a 4415 if (*s == '{') /*}*/
059ec3d9 4416 {
b0e85a8f 4417 key = expand_string_internal(s+1, TRUE, &s, skipping, TRUE, &resetok);
e47376be
JH
4418 if (!key) goto EXPAND_FAILED; /*{{*/
4419 if (*s++ != '}')
4420 {
4421 expand_string_message = US"missing '}' after lookup key";
4422 goto EXPAND_FAILED_CURLY;
4423 }
059ec3d9
PH
4424 while (isspace(*s)) s++;
4425 }
4426 else key = NULL;
4427
4428 /* Find out the type of database */
4429
4430 if (!isalpha(*s))
4431 {
4432 expand_string_message = US"missing lookup type";
4433 goto EXPAND_FAILED;
4434 }
4435
4436 /* The type is a string that may contain special characters of various
4437 kinds. Allow everything except space or { to appear; the actual content
2e23003a 4438 is checked by search_findtype_partial. */ /*}*/
059ec3d9 4439
2e23003a 4440 while (*s != 0 && *s != '{' && !isspace(*s)) /*}*/
059ec3d9
PH
4441 {
4442 if (nameptr < sizeof(name) - 1) name[nameptr++] = *s;
4443 s++;
4444 }
4445 name[nameptr] = 0;
4446 while (isspace(*s)) s++;
4447
4448 /* Now check for the individual search type and any partial or default
4449 options. Only those types that are actually in the binary are valid. */
4450
4451 stype = search_findtype_partial(name, &partial, &affix, &affixlen,
4452 &starflags);
4453 if (stype < 0)
4454 {
4455 expand_string_message = search_error_message;
4456 goto EXPAND_FAILED;
4457 }
4458
4459 /* Check that a key was provided for those lookup types that need it,
4460 and was not supplied for those that use the query style. */
4461
13b685f9 4462 if (!mac_islookup(stype, lookup_querystyle|lookup_absfilequery))
059ec3d9
PH
4463 {
4464 if (key == NULL)
4465 {
4466 expand_string_message = string_sprintf("missing {key} for single-"
4467 "key \"%s\" lookup", name);
4468 goto EXPAND_FAILED;
4469 }
4470 }
4471 else
4472 {
4473 if (key != NULL)
4474 {
4475 expand_string_message = string_sprintf("a single key was given for "
4476 "lookup type \"%s\", which is not a single-key lookup type", name);
4477 goto EXPAND_FAILED;
4478 }
4479 }
4480
4481 /* Get the next string in brackets and expand it. It is the file name for
13b685f9
PH
4482 single-key+file lookups, and the whole query otherwise. In the case of
4483 queries that also require a file name (e.g. sqlite), the file name comes
4484 first. */
059ec3d9 4485
e47376be
JH
4486 if (*s != '{')
4487 {
4488 expand_string_message = US"missing '{' for lookup file-or-query arg";
4489 goto EXPAND_FAILED_CURLY;
4490 }
b0e85a8f 4491 filename = expand_string_internal(s+1, TRUE, &s, skipping, TRUE, &resetok);
059ec3d9 4492 if (filename == NULL) goto EXPAND_FAILED;
e47376be
JH
4493 if (*s++ != '}')
4494 {
4495 expand_string_message = US"missing '}' closing lookup file-or-query arg";
4496 goto EXPAND_FAILED_CURLY;
4497 }
059ec3d9
PH
4498 while (isspace(*s)) s++;
4499
4500 /* If this isn't a single-key+file lookup, re-arrange the variables
13b685f9
PH
4501 to be appropriate for the search_ functions. For query-style lookups,
4502 there is just a "key", and no file name. For the special query-style +
4503 file types, the query (i.e. "key") starts with a file name. */
059ec3d9 4504
e47376be 4505 if (!key)
059ec3d9 4506 {
13b685f9 4507 while (isspace(*filename)) filename++;
059ec3d9 4508 key = filename;
13b685f9
PH
4509
4510 if (mac_islookup(stype, lookup_querystyle))
13b685f9 4511 filename = NULL;
13b685f9
PH
4512 else
4513 {
4514 if (*filename != '/')
4515 {
4516 expand_string_message = string_sprintf(
4517 "absolute file name expected for \"%s\" lookup", name);
4518 goto EXPAND_FAILED;
4519 }
4520 while (*key != 0 && !isspace(*key)) key++;
4521 if (*key != 0) *key++ = 0;
4522 }
059ec3d9
PH
4523 }
4524
4525 /* If skipping, don't do the next bit - just lookup_value == NULL, as if
4526 the entry was not found. Note that there is no search_close() function.
4527 Files are left open in case of re-use. At suitable places in higher logic,
4528 search_tidyup() is called to tidy all open files. This can save opening
4529 the same file several times. However, files may also get closed when
4530 others are opened, if too many are open at once. The rule is that a
4531 handle should not be used after a second search_open().
4532
4533 Request that a partial search sets up $1 and maybe $2 by passing
4534 expand_setup containing zero. If its value changes, reset expand_nmax,
4535 since new variables will have been set. Note that at the end of this
4536 "lookup" section, the old numeric variables are restored. */
4537
4538 if (skipping)
4539 lookup_value = NULL;
4540 else
4541 {
4542 void *handle = search_open(filename, stype, 0, NULL, NULL);
4543 if (handle == NULL)
4544 {
4545 expand_string_message = search_error_message;
4546 goto EXPAND_FAILED;
4547 }
4548 lookup_value = search_find(handle, filename, key, partial, affix,
4549 affixlen, starflags, &expand_setup);
8768d548 4550 if (f.search_find_defer)
059ec3d9
PH
4551 {
4552 expand_string_message =
b72aab72
PP
4553 string_sprintf("lookup of \"%s\" gave DEFER: %s",
4554 string_printing2(key, FALSE), search_error_message);
059ec3d9
PH
4555 goto EXPAND_FAILED;
4556 }
4557 if (expand_setup > 0) expand_nmax = expand_setup;
4558 }
4559
4560 /* The handling of "yes" and "no" result strings is now in a separate
4561 function that is also used by ${if} and ${extract}. */
4562
4563 switch(process_yesno(
4564 skipping, /* were previously skipping */
4565 lookup_value != NULL, /* success/failure indicator */
4566 save_lookup_value, /* value to reset for string2 */
4567 &s, /* input pointer */
4568 &yield, /* output pointer */
b0e85a8f
JH
4569 US"lookup", /* condition type */
4570 &resetok))
059ec3d9
PH
4571 {
4572 case 1: goto EXPAND_FAILED; /* when all is well, the */
4573 case 2: goto EXPAND_FAILED_CURLY; /* returned value is 0 */
4574 }
4575
4576 /* Restore external setting of expansion variables for carrying on
4577 at this level, and continue. */
4578
4579 restore_expand_strings(save_expand_nmax, save_expand_nstring,
4580 save_expand_nlength);
4581 continue;
4582 }
4583
4584 /* If Perl support is configured, handle calling embedded perl subroutines,
4585 unless locked out at this time. Syntax is ${perl{sub}} or ${perl{sub}{arg}}
4586 or ${perl{sub}{arg1}{arg2}} or up to a maximum of EXIM_PERL_MAX_ARGS
4587 arguments (defined below). */
4588
059ec3d9
PH
4589 #define EXIM_PERL_MAX_ARGS 8
4590
4591 case EITEM_PERL:
1a46a8c5 4592 #ifndef EXIM_PERL
2e23003a 4593 expand_string_message = US"\"${perl\" encountered, but this facility " /*}*/
1a46a8c5
PH
4594 "is not included in this binary";
4595 goto EXPAND_FAILED;
4596
4597 #else /* EXIM_PERL */
059ec3d9
PH
4598 {
4599 uschar *sub_arg[EXIM_PERL_MAX_ARGS + 2];
acec9514 4600 gstring *new_yield;
059ec3d9
PH
4601
4602 if ((expand_forbid & RDO_PERL) != 0)
4603 {
4604 expand_string_message = US"Perl calls are not permitted";
4605 goto EXPAND_FAILED;
4606 }
4607
4608 switch(read_subs(sub_arg, EXIM_PERL_MAX_ARGS + 1, 1, &s, skipping, TRUE,
b0e85a8f 4609 US"perl", &resetok))
059ec3d9
PH
4610 {
4611 case 1: goto EXPAND_FAILED_CURLY;
4612 case 2:
4613 case 3: goto EXPAND_FAILED;
4614 }
4615
4616 /* If skipping, we don't actually do anything */
4617
4618 if (skipping) continue;
4619
4620 /* Start the interpreter if necessary */
4621
4622 if (!opt_perl_started)
4623 {
4624 uschar *initerror;
4625 if (opt_perl_startup == NULL)
4626 {
4627 expand_string_message = US"A setting of perl_startup is needed when "
4628 "using the Perl interpreter";
4629 goto EXPAND_FAILED;
4630 }
4631 DEBUG(D_any) debug_printf("Starting Perl interpreter\n");
4632 initerror = init_perl(opt_perl_startup);
4633 if (initerror != NULL)
4634 {
4635 expand_string_message =
4636 string_sprintf("error in perl_startup code: %s\n", initerror);
4637 goto EXPAND_FAILED;
4638 }
4639 opt_perl_started = TRUE;
4640 }
4641
4642 /* Call the function */
4643
4644 sub_arg[EXIM_PERL_MAX_ARGS + 1] = NULL;
acec9514 4645 new_yield = call_perl_cat(yield, &expand_string_message,
059ec3d9
PH
4646 sub_arg[0], sub_arg + 1);
4647
4648 /* NULL yield indicates failure; if the message pointer has been set to
4649 NULL, the yield was undef, indicating a forced failure. Otherwise the
4650 message will indicate some kind of Perl error. */
4651
4652 if (new_yield == NULL)
4653 {
4654 if (expand_string_message == NULL)
4655 {
4656 expand_string_message =
4657 string_sprintf("Perl subroutine \"%s\" returned undef to force "
4658 "failure", sub_arg[0]);
8768d548 4659 f.expand_string_forcedfail = TRUE;
059ec3d9
PH
4660 }
4661 goto EXPAND_FAILED;
4662 }
4663
4664 /* Yield succeeded. Ensure forcedfail is unset, just in case it got
4665 set during a callback from Perl. */
4666
8768d548 4667 f.expand_string_forcedfail = FALSE;
059ec3d9
PH
4668 yield = new_yield;
4669 continue;
4670 }
4671 #endif /* EXIM_PERL */
4672
fffda43a
TK
4673 /* Transform email address to "prvs" scheme to use
4674 as BATV-signed return path */
4675
4676 case EITEM_PRVS:
4677 {
4678 uschar *sub_arg[3];
4679 uschar *p,*domain;
4680
b0e85a8f 4681 switch(read_subs(sub_arg, 3, 2, &s, skipping, TRUE, US"prvs", &resetok))
fffda43a
TK
4682 {
4683 case 1: goto EXPAND_FAILED_CURLY;
4684 case 2:
4685 case 3: goto EXPAND_FAILED;
4686 }
4687
4688 /* If skipping, we don't actually do anything */
4689 if (skipping) continue;
4690
4691 /* sub_arg[0] is the address */
db4dcd57
JH
4692 if ( !(domain = Ustrrchr(sub_arg[0],'@'))
4693 || domain == sub_arg[0] || Ustrlen(domain) == 1)
fffda43a 4694 {
cb9328de
PH
4695 expand_string_message = US"prvs first argument must be a qualified email address";
4696 goto EXPAND_FAILED;
4697 }
4698
db4dcd57 4699 /* Calculate the hash. The third argument must be a single-digit
cb9328de
PH
4700 key number, or unset. */
4701
db4dcd57
JH
4702 if ( sub_arg[2]
4703 && (!isdigit(sub_arg[2][0]) || sub_arg[2][1] != 0))
cb9328de 4704 {
db4dcd57 4705 expand_string_message = US"prvs third argument must be a single digit";
fffda43a
TK
4706 goto EXPAND_FAILED;
4707 }
4708
db4dcd57
JH
4709 p = prvs_hmac_sha1(sub_arg[0], sub_arg[1], sub_arg[2], prvs_daystamp(7));
4710 if (!p)
fffda43a 4711 {
cb9328de 4712 expand_string_message = US"prvs hmac-sha1 conversion failed";
fffda43a
TK
4713 goto EXPAND_FAILED;
4714 }
4715
4716 /* Now separate the domain from the local part */
4717 *domain++ = '\0';
4718
acec9514
JH
4719 yield = string_catn(yield, US"prvs=", 5);
4720 yield = string_catn(yield, sub_arg[2] ? sub_arg[2] : US"0", 1);
4721 yield = string_catn(yield, prvs_daystamp(7), 3);
4722 yield = string_catn(yield, p, 6);
4723 yield = string_catn(yield, US"=", 1);
4724 yield = string_cat (yield, sub_arg[0]);
4725 yield = string_catn(yield, US"@", 1);
4726 yield = string_cat (yield, domain);
fffda43a
TK
4727
4728 continue;
4729 }
4730
4731 /* Check a prvs-encoded address for validity */
4732
4733 case EITEM_PRVSCHECK:
4734 {
4735 uschar *sub_arg[3];
acec9514 4736 gstring * g;
fffda43a
TK
4737 const pcre *re;
4738 uschar *p;
72fdd6ae
PH
4739
4740 /* TF: Ugliness: We want to expand parameter 1 first, then set
fffda43a
TK
4741 up expansion variables that are used in the expansion of
4742 parameter 2. So we clone the string for the first
72fdd6ae
PH
4743 expansion, where we only expand parameter 1.
4744
4745 PH: Actually, that isn't necessary. The read_subs() function is
4746 designed to work this way for the ${if and ${lookup expansions. I've
4747 tidied the code.
4748 */
fffda43a
TK
4749
4750 /* Reset expansion variables */
4751 prvscheck_result = NULL;
4752 prvscheck_address = NULL;
4753 prvscheck_keynum = NULL;
4754
b0e85a8f 4755 switch(read_subs(sub_arg, 1, 1, &s, skipping, FALSE, US"prvs", &resetok))
fffda43a
TK
4756 {
4757 case 1: goto EXPAND_FAILED_CURLY;
4758 case 2:
4759 case 3: goto EXPAND_FAILED;
4760 }
4761
a48ced90 4762 re = regex_must_compile(US"^prvs\\=([0-9])([0-9]{3})([A-F0-9]{6})\\=(.+)\\@(.+)$",
fffda43a
TK
4763 TRUE,FALSE);
4764
72fdd6ae
PH
4765 if (regex_match_and_setup(re,sub_arg[0],0,-1))
4766 {
a48ced90
TK
4767 uschar *local_part = string_copyn(expand_nstring[4],expand_nlength[4]);
4768 uschar *key_num = string_copyn(expand_nstring[1],expand_nlength[1]);
4769 uschar *daystamp = string_copyn(expand_nstring[2],expand_nlength[2]);
4770 uschar *hash = string_copyn(expand_nstring[3],expand_nlength[3]);
fffda43a
TK
4771 uschar *domain = string_copyn(expand_nstring[5],expand_nlength[5]);
4772
e1d04f48
JH
4773 DEBUG(D_expand) debug_printf_indent("prvscheck localpart: %s\n", local_part);
4774 DEBUG(D_expand) debug_printf_indent("prvscheck key number: %s\n", key_num);
4775 DEBUG(D_expand) debug_printf_indent("prvscheck daystamp: %s\n", daystamp);
4776 DEBUG(D_expand) debug_printf_indent("prvscheck hash: %s\n", hash);
4777 DEBUG(D_expand) debug_printf_indent("prvscheck domain: %s\n", domain);
fffda43a
TK
4778
4779 /* Set up expansion variables */
acec9514
JH
4780 g = string_cat (NULL, local_part);
4781 g = string_catn(g, US"@", 1);
4782 g = string_cat (g, domain);
4783 prvscheck_address = string_from_gstring(g);
fffda43a
TK
4784 prvscheck_keynum = string_copy(key_num);
4785
72fdd6ae 4786 /* Now expand the second argument */
b0e85a8f 4787 switch(read_subs(sub_arg, 1, 1, &s, skipping, FALSE, US"prvs", &resetok))
fffda43a
TK
4788 {
4789 case 1: goto EXPAND_FAILED_CURLY;
4790 case 2:
4791 case 3: goto EXPAND_FAILED;
4792 }
4793
fffda43a 4794 /* Now we have the key and can check the address. */
72fdd6ae
PH
4795
4796 p = prvs_hmac_sha1(prvscheck_address, sub_arg[0], prvscheck_keynum,
4797 daystamp);
4798
acec9514 4799 if (!p)
fffda43a
TK
4800 {
4801 expand_string_message = US"hmac-sha1 conversion failed";
4802 goto EXPAND_FAILED;
4803 }
4804
e1d04f48
JH
4805 DEBUG(D_expand) debug_printf_indent("prvscheck: received hash is %s\n", hash);
4806 DEBUG(D_expand) debug_printf_indent("prvscheck: own hash is %s\n", p);
72fdd6ae 4807
fffda43a
TK
4808 if (Ustrcmp(p,hash) == 0)
4809 {
4810 /* Success, valid BATV address. Now check the expiry date. */
4811 uschar *now = prvs_daystamp(0);
4812 unsigned int inow = 0,iexpire = 1;
4813
ff790e47
PH
4814 (void)sscanf(CS now,"%u",&inow);
4815 (void)sscanf(CS daystamp,"%u",&iexpire);
fffda43a
TK
4816
4817 /* When "iexpire" is < 7, a "flip" has occured.
4818 Adjust "inow" accordingly. */
4819 if ( (iexpire < 7) && (inow >= 993) ) inow = 0;
4820
686c36b7 4821 if (iexpire >= inow)
fffda43a
TK
4822 {
4823 prvscheck_result = US"1";
e1d04f48 4824 DEBUG(D_expand) debug_printf_indent("prvscheck: success, $pvrs_result set to 1\n");
fffda43a 4825 }
db4dcd57 4826 else
fffda43a
TK
4827 {
4828 prvscheck_result = NULL;
e1d04f48 4829 DEBUG(D_expand) debug_printf_indent("prvscheck: signature expired, $pvrs_result unset\n");
fffda43a
TK
4830 }
4831 }
4832 else
4833 {
4834 prvscheck_result = NULL;
e1d04f48 4835 DEBUG(D_expand) debug_printf_indent("prvscheck: hash failure, $pvrs_result unset\n");
fffda43a 4836 }
72fdd6ae
PH
4837
4838 /* Now expand the final argument. We leave this till now so that
4839 it can include $prvscheck_result. */
4840
b0e85a8f 4841 switch(read_subs(sub_arg, 1, 0, &s, skipping, TRUE, US"prvs", &resetok))
72fdd6ae
PH
4842 {
4843 case 1: goto EXPAND_FAILED_CURLY;
4844 case 2:
4845 case 3: goto EXPAND_FAILED;
4846 }
4847
acec9514 4848 yield = string_cat(yield,
c2f669a4 4849 !sub_arg[0] || !*sub_arg[0] ? prvscheck_address : sub_arg[0]);
72fdd6ae
PH
4850
4851 /* Reset the "internal" variables afterwards, because they are in
4852 dynamic store that will be reclaimed if the expansion succeeded. */
4853
4854 prvscheck_address = NULL;
4855 prvscheck_keynum = NULL;
4856 }
fffda43a 4857 else
fffda43a 4858 /* Does not look like a prvs encoded address, return the empty string.
72fdd6ae
PH
4859 We need to make sure all subs are expanded first, so as to skip over
4860 the entire item. */
4861
b0e85a8f 4862 switch(read_subs(sub_arg, 2, 1, &s, skipping, TRUE, US"prvs", &resetok))
fffda43a
TK
4863 {
4864 case 1: goto EXPAND_FAILED_CURLY;
4865 case 2:
4866 case 3: goto EXPAND_FAILED;
4867 }
fffda43a
TK
4868
4869 continue;
4870 }
4871
059ec3d9
PH
4872 /* Handle "readfile" to insert an entire file */
4873
4874 case EITEM_READFILE:
4875 {
4876 FILE *f;
4877 uschar *sub_arg[2];
4878
4879 if ((expand_forbid & RDO_READFILE) != 0)
4880 {
4881 expand_string_message = US"file insertions are not permitted";
4882 goto EXPAND_FAILED;
4883 }
4884
b0e85a8f 4885 switch(read_subs(sub_arg, 2, 1, &s, skipping, TRUE, US"readfile", &resetok))
059ec3d9
PH
4886 {
4887 case 1: goto EXPAND_FAILED_CURLY;
4888 case 2:
4889 case 3: goto EXPAND_FAILED;
4890 }
4891
4892 /* If skipping, we don't actually do anything */
4893
4894 if (skipping) continue;
4895
4896 /* Open the file and read it */
4897
4a5cbaff 4898 if (!(f = Ufopen(sub_arg[0], "rb")))
059ec3d9
PH
4899 {
4900 expand_string_message = string_open_failed(errno, "%s", sub_arg[0]);
4901 goto EXPAND_FAILED;
4902 }
4903
acec9514 4904 yield = cat_file(f, yield, sub_arg[1]);
f1e894f3 4905 (void)fclose(f);
059ec3d9
PH
4906 continue;
4907 }
4908
4a5cbaff
JH
4909 /* Handle "readsocket" to insert data from a socket, either
4910 Inet or Unix domain */
059ec3d9
PH
4911
4912 case EITEM_READSOCK:
4913 {
4914 int fd;
4915 int timeout = 5;
acec9514 4916 int save_ptr = yield->ptr;
8768d548 4917 FILE * fp;
afdb5e9c
JH
4918 uschar * arg;
4919 uschar * sub_arg[4];
4920 uschar * server_name = NULL;
4921 host_item host;
8de9db65 4922 BOOL do_shutdown = TRUE;
48334568
JH
4923 BOOL do_tls = FALSE; /* Only set under SUPPORT_TLS */
4924 void * tls_ctx = NULL; /* ditto */
4a5cbaff 4925 blob reqstr;
059ec3d9 4926
8de9db65 4927 if (expand_forbid & RDO_READSOCK)
059ec3d9
PH
4928 {
4929 expand_string_message = US"socket insertions are not permitted";
4930 goto EXPAND_FAILED;
4931 }
4932
4933 /* Read up to 4 arguments, but don't do the end of item check afterwards,
4934 because there may be a string for expansion on failure. */
4935
b0e85a8f 4936 switch(read_subs(sub_arg, 4, 2, &s, skipping, FALSE, US"readsocket", &resetok))
059ec3d9
PH
4937 {
4938 case 1: goto EXPAND_FAILED_CURLY;
4939 case 2: /* Won't occur: no end check */
4940 case 3: goto EXPAND_FAILED;
4941 }
4942
4a5cbaff
JH
4943 /* Grab the request string, if any */
4944
4945 reqstr.data = sub_arg[1];
4946 reqstr.len = Ustrlen(sub_arg[1]);
4947
8de9db65
JH
4948 /* Sort out timeout, if given. The second arg is a list with the first element
4949 being a time value. Any more are options of form "name=value". Currently the
4950 only option recognised is "shutdown". */
059ec3d9 4951
8de9db65 4952 if (sub_arg[2])
059ec3d9 4953 {
8de9db65
JH
4954 const uschar * list = sub_arg[2];
4955 uschar * item;
4956 int sep = 0;
4957
4958 item = string_nextinlist(&list, &sep, NULL, 0);
4959 if ((timeout = readconf_readtime(item, 0, FALSE)) < 0)
059ec3d9 4960 {
8de9db65 4961 expand_string_message = string_sprintf("bad time value %s", item);
059ec3d9
PH
4962 goto EXPAND_FAILED;
4963 }
8de9db65
JH
4964
4965 while ((item = string_nextinlist(&list, &sep, NULL, 0)))
4966 if (Ustrncmp(item, US"shutdown=", 9) == 0)
afdb5e9c
JH
4967 { if (Ustrcmp(item + 9, US"no") == 0) do_shutdown = FALSE; }
4968#ifdef SUPPORT_TLS
4969 else if (Ustrncmp(item, US"tls=", 4) == 0)
4970 { if (Ustrcmp(item + 9, US"no") != 0) do_tls = TRUE; }
4971#endif
059ec3d9 4972 }
afdb5e9c
JH
4973 else
4974 sub_arg[3] = NULL; /* No eol if no timeout */
059ec3d9 4975
1cce3af8
PH
4976 /* If skipping, we don't actually do anything. Otherwise, arrange to
4977 connect to either an IP or a Unix socket. */
059ec3d9
PH
4978
4979 if (!skipping)
4980 {
1cce3af8 4981 /* Handle an IP (internet) domain */
059ec3d9 4982
91ecef39 4983 if (Ustrncmp(sub_arg[0], "inet:", 5) == 0)
059ec3d9 4984 {
b1f8e4f8 4985 int port;
afdb5e9c
JH
4986 uschar * port_name;
4987
4988 server_name = sub_arg[0] + 5;
4989 port_name = Ustrrchr(server_name, ':');
1cce3af8
PH
4990
4991 /* Sort out the port */
4992
4a5cbaff 4993 if (!port_name)
1cce3af8
PH
4994 {
4995 expand_string_message =
4996 string_sprintf("missing port for readsocket %s", sub_arg[0]);
4997 goto EXPAND_FAILED;
4998 }
4999 *port_name++ = 0; /* Terminate server name */
5000
5001 if (isdigit(*port_name))
5002 {
5003 uschar *end;
5004 port = Ustrtol(port_name, &end, 0);
5005 if (end != port_name + Ustrlen(port_name))
5006 {
5007 expand_string_message =
5008 string_sprintf("invalid port number %s", port_name);
5009 goto EXPAND_FAILED;
5010 }
5011 }
5012 else
5013 {
5014 struct servent *service_info = getservbyname(CS port_name, "tcp");
4a5cbaff 5015 if (!service_info)
1cce3af8
PH
5016 {
5017 expand_string_message = string_sprintf("unknown port \"%s\"",
5018 port_name);
5019 goto EXPAND_FAILED;
5020 }
5021 port = ntohs(service_info->s_port);
5022 }
5023
90341c71 5024 fd = ip_connectedsocket(SOCK_STREAM, server_name, port, port,
afdb5e9c
JH
5025 timeout, &host, &expand_string_message,
5026 do_tls ? NULL : &reqstr);
90341c71
JH
5027 callout_address = NULL;
5028 if (fd < 0)
48334568
JH
5029 goto SOCK_FAIL;
5030 if (!do_tls)
5031 reqstr.len = 0;
059ec3d9
PH
5032 }
5033
1cce3af8
PH
5034 /* Handle a Unix domain socket */
5035
5036 else
059ec3d9 5037 {
4a5cbaff 5038 struct sockaddr_un sockun; /* don't call this "sun" ! */
a401ddaa 5039 int rc;
4a5cbaff 5040
1cce3af8
PH
5041 if ((fd = socket(PF_UNIX, SOCK_STREAM, 0)) == -1)
5042 {
5043 expand_string_message = string_sprintf("failed to create socket: %s",
5044 strerror(errno));
5045 goto SOCK_FAIL;
5046 }
5047
5048 sockun.sun_family = AF_UNIX;
5049 sprintf(sockun.sun_path, "%.*s", (int)(sizeof(sockun.sun_path)-1),
5050 sub_arg[0]);
13c7874e 5051 server_name = US sockun.sun_path;
a401ddaa
PH
5052
5053 sigalrm_seen = FALSE;
c2a1bba0 5054 ALARM(timeout);
a401ddaa 5055 rc = connect(fd, (struct sockaddr *)(&sockun), sizeof(sockun));
c2a1bba0 5056 ALARM_CLR(0);
734e1499 5057 if (sigalrm_seen)
1cce3af8 5058 {
734e1499 5059 expand_string_message = US "socket connect timed out";
1cce3af8
PH
5060 goto SOCK_FAIL;
5061 }
734e1499 5062 if (rc < 0)
a401ddaa 5063 {
734e1499
PH
5064 expand_string_message = string_sprintf("failed to connect to socket "
5065 "%s: %s", sub_arg[0], strerror(errno));
a401ddaa
PH
5066 goto SOCK_FAIL;
5067 }
afdb5e9c
JH
5068 host.name = server_name;
5069 host.address = US"";
059ec3d9 5070 }
1cce3af8 5071
e1d04f48 5072 DEBUG(D_expand) debug_printf_indent("connected to socket %s\n", sub_arg[0]);
059ec3d9 5073
afdb5e9c
JH
5074#ifdef SUPPORT_TLS
5075 if (do_tls)
5076 {
9377b957 5077 tls_support tls_dummy = {.sni=NULL};
afdb5e9c
JH
5078 uschar * errstr;
5079
9377b957
JH
5080 if (!(tls_ctx = tls_client_start(fd, &host, NULL, NULL,
5081# ifdef SUPPORT_DANE
5082 NULL,
5083# endif
afdb5e9c
JH
5084 &tls_dummy, &errstr)))
5085 {
5086 expand_string_message = string_sprintf("TLS connect failed: %s", errstr);
5087 goto SOCK_FAIL;
5088 }
5089 }
5090#endif
5091
567e584c 5092 /* Allow sequencing of test actions */
8768d548 5093 if (f.running_in_test_harness) millisleep(100);
567e584c 5094
4a5cbaff 5095 /* Write the request string, if not empty or already done */
059ec3d9 5096
4a5cbaff 5097 if (reqstr.len)
059ec3d9 5098 {
e1d04f48 5099 DEBUG(D_expand) debug_printf_indent("writing \"%s\" to socket\n",
4a5cbaff 5100 reqstr.data);
afdb5e9c
JH
5101 if ( (
5102#ifdef SUPPORT_TLS
5103 tls_ctx ? tls_write(tls_ctx, reqstr.data, reqstr.len, FALSE) :
5104#endif
5105 write(fd, reqstr.data, reqstr.len)) != reqstr.len)
059ec3d9
PH
5106 {
5107 expand_string_message = string_sprintf("request write to socket "
5108 "failed: %s", strerror(errno));
5109 goto SOCK_FAIL;
5110 }
5111 }
5112
c1114884
PH
5113 /* Shut down the sending side of the socket. This helps some servers to
5114 recognise that it is their turn to do some work. Just in case some
5115 system doesn't have this function, make it conditional. */
5116
8de9db65 5117#ifdef SHUT_WR
afdb5e9c 5118 if (!tls_ctx && do_shutdown) shutdown(fd, SHUT_WR);
8de9db65 5119#endif
c1114884 5120
8768d548 5121 if (f.running_in_test_harness) millisleep(100);
567e584c 5122
059ec3d9
PH
5123 /* Now we need to read from the socket, under a timeout. The function
5124 that reads a file can be used. */
5125
afdb5e9c 5126 if (!tls_ctx)
8768d548 5127 fp = fdopen(fd, "rb");
059ec3d9 5128 sigalrm_seen = FALSE;
c2a1bba0 5129 ALARM(timeout);
afdb5e9c
JH
5130 yield =
5131#ifdef SUPPORT_TLS
5132 tls_ctx ? cat_file_tls(tls_ctx, yield, sub_arg[3]) :
5133#endif
8768d548 5134 cat_file(fp, yield, sub_arg[3]);
c2a1bba0 5135 ALARM_CLR(0);
afdb5e9c
JH
5136
5137#ifdef SUPPORT_TLS
5138 if (tls_ctx)
5139 {
5140 tls_close(tls_ctx, TRUE);
5141 close(fd);
5142 }
5143 else
5144#endif
8768d548 5145 (void)fclose(fp);
059ec3d9
PH
5146
5147 /* After a timeout, we restore the pointer in the result, that is,
5148 make sure we add nothing from the socket. */
5149
5150 if (sigalrm_seen)
5151 {
acec9514 5152 yield->ptr = save_ptr;
1cce3af8 5153 expand_string_message = US "socket read timed out";
059ec3d9
PH
5154 goto SOCK_FAIL;
5155 }
5156 }
5157
5158 /* The whole thing has worked (or we were skipping). If there is a
5159 failure string following, we need to skip it. */
5160
5161 if (*s == '{')
5162 {
b0e85a8f 5163 if (expand_string_internal(s+1, TRUE, &s, TRUE, TRUE, &resetok) == NULL)
059ec3d9 5164 goto EXPAND_FAILED;
e47376be
JH
5165 if (*s++ != '}')
5166 {
5167 expand_string_message = US"missing '}' closing failstring for readsocket";
5168 goto EXPAND_FAILED_CURLY;
5169 }
059ec3d9
PH
5170 while (isspace(*s)) s++;
5171 }
e47376be 5172
8de9db65 5173 READSOCK_DONE:
e47376be
JH
5174 if (*s++ != '}')
5175 {
5176 expand_string_message = US"missing '}' closing readsocket";
5177 goto EXPAND_FAILED_CURLY;
5178 }
059ec3d9
PH
5179 continue;
5180
5181 /* Come here on failure to create socket, connect socket, write to the
5182 socket, or timeout on reading. If another substring follows, expand and
5183 use it. Otherwise, those conditions give expand errors. */
5184
8de9db65 5185 SOCK_FAIL:
059ec3d9
PH
5186 if (*s != '{') goto EXPAND_FAILED;
5187 DEBUG(D_any) debug_printf("%s\n", expand_string_message);
c2f669a4
JH
5188 if (!(arg = expand_string_internal(s+1, TRUE, &s, FALSE, TRUE, &resetok)))
5189 goto EXPAND_FAILED;
acec9514 5190 yield = string_cat(yield, arg);
e47376be
JH
5191 if (*s++ != '}')
5192 {
5193 expand_string_message = US"missing '}' closing failstring for readsocket";
5194 goto EXPAND_FAILED_CURLY;
5195 }
059ec3d9 5196 while (isspace(*s)) s++;
8de9db65 5197 goto READSOCK_DONE;
059ec3d9
PH
5198 }
5199
5200 /* Handle "run" to execute a program. */
5201
5202 case EITEM_RUN:
5203 {
5204 FILE *f;
059ec3d9 5205 uschar *arg;
55414b25 5206 const uschar **argv;
059ec3d9
PH
5207 pid_t pid;
5208 int fd_in, fd_out;
059ec3d9
PH
5209
5210 if ((expand_forbid & RDO_RUN) != 0)
5211 {
5212 expand_string_message = US"running a command is not permitted";
5213 goto EXPAND_FAILED;
5214 }
5215
5216 while (isspace(*s)) s++;
e47376be
JH
5217 if (*s != '{')
5218 {
5219 expand_string_message = US"missing '{' for command arg of run";
5220 goto EXPAND_FAILED_CURLY;
5221 }
b0e85a8f 5222 arg = expand_string_internal(s+1, TRUE, &s, skipping, TRUE, &resetok);
059ec3d9
PH
5223 if (arg == NULL) goto EXPAND_FAILED;
5224 while (isspace(*s)) s++;
e47376be
JH
5225 if (*s++ != '}')
5226 {
5227 expand_string_message = US"missing '}' closing command arg of run";
5228 goto EXPAND_FAILED_CURLY;
5229 }
059ec3d9
PH
5230
5231 if (skipping) /* Just pretend it worked when we're skipping */
20fcb1e7 5232 {
059ec3d9 5233 runrc = 0;
20fcb1e7
JH
5234 lookup_value = NULL;
5235 }
059ec3d9
PH
5236 else
5237 {
5238 if (!transport_set_up_command(&argv, /* anchor for arg list */
5239 arg, /* raw command */
5240 FALSE, /* don't expand the arguments */
5241 0, /* not relevant when... */
5242 NULL, /* no transporting address */
5243 US"${run} expansion", /* for error messages */
5244 &expand_string_message)) /* where to put error message */
059ec3d9 5245 goto EXPAND_FAILED;
059ec3d9
PH
5246
5247 /* Create the child process, making it a group leader. */
5248
fa01e4f8 5249 if ((pid = child_open(USS argv, NULL, 0077, &fd_in, &fd_out, TRUE)) < 0)
059ec3d9
PH
5250 {
5251 expand_string_message =
5252 string_sprintf("couldn't create child process: %s", strerror(errno));
5253 goto EXPAND_FAILED;
5254 }
5255
5256 /* Nothing is written to the standard input. */
5257
f1e894f3 5258 (void)close(fd_in);
059ec3d9 5259
ac53fcda
PP
5260 /* Read the pipe to get the command's output into $value (which is kept
5261 in lookup_value). Read during execution, so that if the output exceeds
1a08dbc4
JH
5262 the OS pipe buffer limit, we don't block forever. Remember to not release
5263 memory just allocated for $value. */
ac53fcda 5264
1a08dbc4 5265 resetok = FALSE;
ac53fcda
PP
5266 f = fdopen(fd_out, "rb");
5267 sigalrm_seen = FALSE;
c2a1bba0 5268 ALARM(60);
acec9514 5269 lookup_value = string_from_gstring(cat_file(f, NULL, NULL));
c2a1bba0 5270 ALARM_CLR(0);
ac53fcda
PP
5271 (void)fclose(f);
5272
059ec3d9
PH
5273 /* Wait for the process to finish, applying the timeout, and inspect its
5274 return code for serious disasters. Simple non-zero returns are passed on.
5275 */
5276
8487aee9 5277 if (sigalrm_seen || (runrc = child_close(pid, 30)) < 0)
059ec3d9 5278 {
8487aee9 5279 if (sigalrm_seen || runrc == -256)
059ec3d9
PH
5280 {
5281 expand_string_message = string_sprintf("command timed out");
5282 killpg(pid, SIGKILL); /* Kill the whole process group */
5283 }
5284
5285 else if (runrc == -257)
5286 expand_string_message = string_sprintf("wait() failed: %s",
5287 strerror(errno));
5288
5289 else
5290 expand_string_message = string_sprintf("command killed by signal %d",
5291 -runrc);
5292
5293 goto EXPAND_FAILED;
5294 }
059ec3d9
PH
5295 }
5296
d20976dc 5297 /* Process the yes/no strings; $value may be useful in both cases */
059ec3d9
PH
5298
5299 switch(process_yesno(
5300 skipping, /* were previously skipping */
5301 runrc == 0, /* success/failure indicator */
d20976dc 5302 lookup_value, /* value to reset for string2 */
059ec3d9
PH
5303 &s, /* input pointer */
5304 &yield, /* output pointer */
b0e85a8f
JH
5305 US"run", /* condition type */
5306 &resetok))
059ec3d9
PH
5307 {
5308 case 1: goto EXPAND_FAILED; /* when all is well, the */
5309 case 2: goto EXPAND_FAILED_CURLY; /* returned value is 0 */
5310 }
5311
5312 continue;
5313 }
5314
5315 /* Handle character translation for "tr" */
5316
5317 case EITEM_TR:
5318 {
acec9514 5319 int oldptr = yield->ptr;
059ec3d9
PH
5320 int o2m;
5321 uschar *sub[3];
5322
b0e85a8f 5323 switch(read_subs(sub, 3, 3, &s, skipping, TRUE, US"tr", &resetok))
059ec3d9
PH
5324 {
5325 case 1: goto EXPAND_FAILED_CURLY;
5326 case 2:
5327 case 3: goto EXPAND_FAILED;
5328 }
5329
acec9514 5330 yield = string_cat(yield, sub[0]);
059ec3d9
PH
5331 o2m = Ustrlen(sub[2]) - 1;
5332
acec9514 5333 if (o2m >= 0) for (; oldptr < yield->ptr; oldptr++)
059ec3d9 5334 {
acec9514 5335 uschar *m = Ustrrchr(sub[1], yield->s[oldptr]);
059ec3d9
PH
5336 if (m != NULL)
5337 {
5338 int o = m - sub[1];
acec9514 5339 yield->s[oldptr] = sub[2][(o < o2m)? o : o2m];
059ec3d9
PH
5340 }
5341 }
5342
5343 continue;
5344 }
5345
5346 /* Handle "hash", "length", "nhash", and "substr" when they are given with
5347 expanded arguments. */
5348
5349 case EITEM_HASH:
5350 case EITEM_LENGTH:
5351 case EITEM_NHASH:
5352 case EITEM_SUBSTR:
5353 {
5354 int i;
5355 int len;
5356 uschar *ret;
5357 int val[2] = { 0, -1 };
5358 uschar *sub[3];
5359
5360 /* "length" takes only 2 arguments whereas the others take 2 or 3.
2e23003a 5361 Ensure that sub[2] is set in the ${length } case. */
059ec3d9
PH
5362
5363 sub[2] = NULL;
5364 switch(read_subs(sub, (item_type == EITEM_LENGTH)? 2:3, 2, &s, skipping,
b0e85a8f 5365 TRUE, name, &resetok))
059ec3d9
PH
5366 {
5367 case 1: goto EXPAND_FAILED_CURLY;
5368 case 2:
5369 case 3: goto EXPAND_FAILED;
5370 }
5371
5372 /* Juggle the arguments if there are only two of them: always move the
5373 string to the last position and make ${length{n}{str}} equivalent to
5374 ${substr{0}{n}{str}}. See the defaults for val[] above. */
5375
5376 if (sub[2] == NULL)
5377 {
5378 sub[2] = sub[1];
5379 sub[1] = NULL;
5380 if (item_type == EITEM_LENGTH)
5381 {
5382 sub[1] = sub[0];
5383 sub[0] = NULL;
5384 }
5385 }
5386
5387 for (i = 0; i < 2; i++)
5388 {
5389 if (sub[i] == NULL) continue;
5390 val[i] = (int)Ustrtol(sub[i], &ret, 10);
5391 if (*ret != 0 || (i != 0 && val[i] < 0))
5392 {
5393 expand_string_message = string_sprintf("\"%s\" is not a%s number "
5394 "(in \"%s\" expansion)", sub[i], (i != 0)? " positive" : "", name);
5395 goto EXPAND_FAILED;
5396 }
5397 }
5398
5399 ret =
5400 (item_type == EITEM_HASH)?
5401 compute_hash(sub[2], val[0], val[1], &len) :
5402 (item_type == EITEM_NHASH)?
5403 compute_nhash(sub[2], val[0], val[1], &len) :
5404 extract_substr(sub[2], val[0], val[1], &len);
5405
5406 if (ret == NULL) goto EXPAND_FAILED;
acec9514 5407 yield = string_catn(yield, ret, len);
059ec3d9
PH
5408 continue;
5409 }
5410
5411 /* Handle HMAC computation: ${hmac{<algorithm>}{<secret>}{<text>}}
5412 This code originally contributed by Steve Haslam. It currently supports
5413 the use of MD5 and SHA-1 hashes.
5414
5415 We need some workspace that is large enough to handle all the supported
5416 hash types. Use macros to set the sizes rather than be too elaborate. */
5417
5418 #define MAX_HASHLEN 20
5419 #define MAX_HASHBLOCKLEN 64
5420
5421 case EITEM_HMAC:
5422 {
5423 uschar *sub[3];
5424 md5 md5_base;
5fb822fc 5425 hctx sha1_ctx;
059ec3d9
PH
5426 void *use_base;
5427 int type, i;
5428 int hashlen; /* Number of octets for the hash algorithm's output */
5429 int hashblocklen; /* Number of octets the hash algorithm processes */
5430 uschar *keyptr, *p;
5431 unsigned int keylen;
5432
5433 uschar keyhash[MAX_HASHLEN];
5434 uschar innerhash[MAX_HASHLEN];
5435 uschar finalhash[MAX_HASHLEN];
5436 uschar finalhash_hex[2*MAX_HASHLEN];
5437 uschar innerkey[MAX_HASHBLOCKLEN];
5438 uschar outerkey[MAX_HASHBLOCKLEN];
5439
b0e85a8f 5440 switch (read_subs(sub, 3, 3, &s, skipping, TRUE, name, &resetok))
059ec3d9
PH
5441 {
5442 case 1: goto EXPAND_FAILED_CURLY;
5443 case 2:
5444 case 3: goto EXPAND_FAILED;
5445 }
5446
e12b4599
JH
5447 if (!skipping)
5448 {
5449 if (Ustrcmp(sub[0], "md5") == 0)
5450 {
5451 type = HMAC_MD5;
5452 use_base = &md5_base;
5453 hashlen = 16;
5454 hashblocklen = 64;
5455 }
5456 else if (Ustrcmp(sub[0], "sha1") == 0)
5457 {
5458 type = HMAC_SHA1;
5459 use_base = &sha1_ctx;
5460 hashlen = 20;
5461 hashblocklen = 64;
5462 }
5463 else
5464 {
5465 expand_string_message =
5466 string_sprintf("hmac algorithm \"%s\" is not recognised", sub[0]);
5467 goto EXPAND_FAILED;
5468 }
059ec3d9 5469
e12b4599
JH
5470 keyptr = sub[1];
5471 keylen = Ustrlen(keyptr);
059ec3d9 5472
e12b4599
JH
5473 /* If the key is longer than the hash block length, then hash the key
5474 first */
059ec3d9 5475
e12b4599
JH
5476 if (keylen > hashblocklen)
5477 {
5478 chash_start(type, use_base);
5479 chash_end(type, use_base, keyptr, keylen, keyhash);
5480 keyptr = keyhash;
5481 keylen = hashlen;
5482 }
059ec3d9 5483
e12b4599 5484 /* Now make the inner and outer key values */
059ec3d9 5485
e12b4599
JH
5486 memset(innerkey, 0x36, hashblocklen);
5487 memset(outerkey, 0x5c, hashblocklen);
059ec3d9 5488
e12b4599
JH
5489 for (i = 0; i < keylen; i++)
5490 {
5491 innerkey[i] ^= keyptr[i];
5492 outerkey[i] ^= keyptr[i];
5493 }
059ec3d9 5494
e12b4599 5495 /* Now do the hashes */
059ec3d9 5496
e12b4599
JH
5497 chash_start(type, use_base);
5498 chash_mid(type, use_base, innerkey);
5499 chash_end(type, use_base, sub[2], Ustrlen(sub[2]), innerhash);
059ec3d9 5500
e12b4599
JH
5501 chash_start(type, use_base);
5502 chash_mid(type, use_base, outerkey);
5503 chash_end(type, use_base, innerhash, hashlen, finalhash);
059ec3d9 5504
e12b4599 5505 /* Encode the final hash as a hex string */
059ec3d9 5506
e12b4599
JH
5507 p = finalhash_hex;
5508 for (i = 0; i < hashlen; i++)
5509 {
5510 *p++ = hex_digits[(finalhash[i] & 0xf0) >> 4];
5511 *p++ = hex_digits[finalhash[i] & 0x0f];
5512 }
059ec3d9 5513
e12b4599
JH
5514 DEBUG(D_any) debug_printf("HMAC[%s](%.*s,%s)=%.*s\n",
5515 sub[0], (int)keylen, keyptr, sub[2], hashlen*2, finalhash_hex);
059ec3d9 5516
acec9514 5517 yield = string_catn(yield, finalhash_hex, hashlen*2);
e12b4599
JH
5518 }
5519 continue;
059ec3d9
PH
5520 }
5521
059ec3d9
PH
5522 /* Handle global substitution for "sg" - like Perl's s/xxx/yyy/g operator.
5523 We have to save the numerical variables and restore them afterwards. */
5524
5525 case EITEM_SG:
5526 {
5527 const pcre *re;
5528 int moffset, moffsetextra, slen;
5529 int roffset;
5530 int emptyopt;
5531 const uschar *rerror;
5532 uschar *subject;
5533 uschar *sub[3];
5534 int save_expand_nmax =
5535 save_expand_strings(save_expand_nstring, save_expand_nlength);
5536
b0e85a8f 5537 switch(read_subs(sub, 3, 3, &s, skipping, TRUE, US"sg", &resetok))
059ec3d9
PH
5538 {
5539 case 1: goto EXPAND_FAILED_CURLY;
5540 case 2:
5541 case 3: goto EXPAND_FAILED;
5542 }
5543
5544 /* Compile the regular expression */
5545
5546 re = pcre_compile(CS sub[1], PCRE_COPT, (const char **)&rerror, &roffset,
5547 NULL);
5548
5549 if (re == NULL)
5550 {
5551 expand_string_message = string_sprintf("regular expression error in "
5552 "\"%s\": %s at offset %d", sub[1], rerror, roffset);
5553 goto EXPAND_FAILED;
5554 }
5555
5556 /* Now run a loop to do the substitutions as often as necessary. It ends
5557 when there are no more matches. Take care over matches of the null string;
5558 do the same thing as Perl does. */
5559
5560 subject = sub[0];
5561 slen = Ustrlen(sub[0]);
5562 moffset = moffsetextra = 0;
5563 emptyopt = 0;
5564
5565 for (;;)
5566 {
5567 int ovector[3*(EXPAND_MAXN+1)];
5568 int n = pcre_exec(re, NULL, CS subject, slen, moffset + moffsetextra,
0539a19d 5569 PCRE_EOPT | emptyopt, ovector, nelem(ovector));
059ec3d9
PH
5570 int nn;
5571 uschar *insert;
5572
5573 /* No match - if we previously set PCRE_NOTEMPTY after a null match, this
5574 is not necessarily the end. We want to repeat the match from one
5575 character further along, but leaving the basic offset the same (for
5576 copying below). We can't be at the end of the string - that was checked
5577 before setting PCRE_NOTEMPTY. If PCRE_NOTEMPTY is not set, we are
5578 finished; copy the remaining string and end the loop. */
5579
5580 if (n < 0)
5581 {
5582 if (emptyopt != 0)
5583 {
5584 moffsetextra = 1;
5585 emptyopt = 0;
5586 continue;
5587 }
acec9514 5588 yield = string_catn(yield, subject+moffset, slen-moffset);
059ec3d9
PH
5589 break;
5590 }
5591
5592 /* Match - set up for expanding the replacement. */
5593
5594 if (n == 0) n = EXPAND_MAXN + 1;
5595 expand_nmax = 0;
5596 for (nn = 0; nn < n*2; nn += 2)
5597 {
5598 expand_nstring[expand_nmax] = subject + ovector[nn];
5599 expand_nlength[expand_nmax++] = ovector[nn+1] - ovector[nn];
5600 }
5601 expand_nmax--;
5602
5603 /* Copy the characters before the match, plus the expanded insertion. */
5604
acec9514 5605 yield = string_catn(yield, subject + moffset, ovector[0] - moffset);
059ec3d9
PH
5606 insert = expand_string(sub[2]);
5607 if (insert == NULL) goto EXPAND_FAILED;
acec9514 5608 yield = string_cat(yield, insert);
059ec3d9
PH
5609
5610 moffset = ovector[1];
5611 moffsetextra = 0;
5612 emptyopt = 0;
5613
5614 /* If we have matched an empty string, first check to see if we are at
5615 the end of the subject. If so, the loop is over. Otherwise, mimic
5616 what Perl's /g options does. This turns out to be rather cunning. First
5617 we set PCRE_NOTEMPTY and PCRE_ANCHORED and try the match a non-empty
5618 string at the same point. If this fails (picked up above) we advance to
5619 the next character. */
5620
5621 if (ovector[0] == ovector[1])
5622 {
5623 if (ovector[0] == slen) break;
5624 emptyopt = PCRE_NOTEMPTY | PCRE_ANCHORED;
5625 }
5626 }
5627
5628 /* All done - restore numerical variables. */
5629
5630 restore_expand_strings(save_expand_nmax, save_expand_nstring,
5631 save_expand_nlength);
5632 continue;
5633 }
5634
5635 /* Handle keyed and numbered substring extraction. If the first argument
5636 consists entirely of digits, then a numerical extraction is assumed. */
5637
5638 case EITEM_EXTRACT:
5639 {
5640 int i;
1cf59ee7 5641 int j;
059ec3d9
PH
5642 int field_number = 1;
5643 BOOL field_number_set = FALSE;
5644 uschar *save_lookup_value = lookup_value;
5645 uschar *sub[3];
5646 int save_expand_nmax =
5647 save_expand_strings(save_expand_nstring, save_expand_nlength);
8fdf20fd
JH
5648 enum {extract_basic, extract_json} fmt = extract_basic;
5649
5650 while (isspace(*s)) s++;
5651
5652 /* Check for a format-variant specifier */
5653
5654 if (*s != '{') /*}*/
5655 {
5656 if (Ustrncmp(s, "json", 4) == 0) {fmt = extract_json; s += 4;}
5657 }
059ec3d9 5658
93cc2d6e
JH
5659 /* While skipping we cannot rely on the data for expansions being
5660 available (eg. $item) hence cannot decide on numeric vs. keyed.
4c04137d 5661 Read a maximum of 5 arguments (including the yes/no) */
059ec3d9 5662
93cc2d6e
JH
5663 if (skipping)
5664 {
8fdf20fd 5665 for (j = 5; j > 0 && *s == '{'; j--) /*'}'*/
93cc2d6e
JH
5666 {
5667 if (!expand_string_internal(s+1, TRUE, &s, skipping, TRUE, &resetok))
8fdf20fd 5668 goto EXPAND_FAILED; /*'{'*/
e47376be
JH
5669 if (*s++ != '}')
5670 {
5671 expand_string_message = US"missing '{' for arg of extract";
5672 goto EXPAND_FAILED_CURLY;
5673 }
93cc2d6e
JH
5674 while (isspace(*s)) s++;
5675 }
8fdf20fd 5676 if ( Ustrncmp(s, "fail", 4) == 0 /*'{'*/
1cf59ee7
JH
5677 && (s[4] == '}' || s[4] == ' ' || s[4] == '\t' || !s[4])
5678 )
5679 {
5680 s += 4;
5681 while (isspace(*s)) s++;
8fdf20fd 5682 } /*'{'*/
93cc2d6e 5683 if (*s != '}')
e47376be
JH
5684 {
5685 expand_string_message = US"missing '}' closing extract";
93cc2d6e 5686 goto EXPAND_FAILED_CURLY;
e47376be 5687 }
93cc2d6e
JH
5688 }
5689
1cf59ee7 5690 else for (i = 0, j = 2; i < j; i++) /* Read the proper number of arguments */
059ec3d9 5691 {
8fdf20fd
JH
5692 while (isspace(*s)) s++;
5693 if (*s == '{') /*'}'*/
059ec3d9 5694 {
b0e85a8f 5695 sub[i] = expand_string_internal(s+1, TRUE, &s, skipping, TRUE, &resetok);
8fdf20fd 5696 if (sub[i] == NULL) goto EXPAND_FAILED; /*'{'*/
e47376be
JH
5697 if (*s++ != '}')
5698 {
5699 expand_string_message = string_sprintf(
e2e3255a 5700 "missing '}' closing arg %d of extract", i+1);
e47376be
JH
5701 goto EXPAND_FAILED_CURLY;
5702 }
059ec3d9
PH
5703
5704 /* After removal of leading and trailing white space, the first
5705 argument must not be empty; if it consists entirely of digits
5706 (optionally preceded by a minus sign), this is a numerical
8fdf20fd 5707 extraction, and we expect 3 arguments (normal) or 2 (json). */
059ec3d9
PH
5708
5709 if (i == 0)
5710 {
5711 int len;
5712 int x = 0;
5713 uschar *p = sub[0];
5714
5715 while (isspace(*p)) p++;
5716 sub[0] = p;
5717
5718 len = Ustrlen(p);
5719 while (len > 0 && isspace(p[len-1])) len--;
5720 p[len] = 0;
5721
93cc2d6e
JH
5722 if (*p == 0)
5723 {
5724 expand_string_message = US"first argument of \"extract\" must "
5725 "not be empty";
5726 goto EXPAND_FAILED;
5727 }
5728
5729 if (*p == '-')
5730 {
5731 field_number = -1;
5732 p++;
5733 }
5734 while (*p != 0 && isdigit(*p)) x = x * 10 + *p++ - '0';
5735 if (*p == 0)
82dbd376 5736 {
93cc2d6e 5737 field_number *= x;
8fdf20fd 5738 if (fmt != extract_json) j = 3; /* Need 3 args */
93cc2d6e 5739 field_number_set = TRUE;
82dbd376 5740 }
059ec3d9
PH
5741 }
5742 }
e47376be
JH
5743 else
5744 {
5745 expand_string_message = string_sprintf(
e2e3255a 5746 "missing '{' for arg %d of extract", i+1);
e47376be
JH
5747 goto EXPAND_FAILED_CURLY;
5748 }
059ec3d9
PH
5749 }
5750
5751 /* Extract either the numbered or the keyed substring into $value. If
5752 skipping, just pretend the extraction failed. */
5753
8fdf20fd
JH
5754 if (skipping)
5755 lookup_value = NULL;
5756 else switch (fmt)
5757 {
5758 case extract_basic:
5759 lookup_value = field_number_set
5760 ? expand_gettokened(field_number, sub[1], sub[2])
5761 : expand_getkeyed(sub[0], sub[1]);
5762 break;
5763
5764 case extract_json:
5765 {
5766 uschar * s, * item;
5767 const uschar * list;
5768
5769 /* Array: Bracket-enclosed and comma-separated.
5770 Object: Brace-enclosed, comma-sep list of name:value pairs */
5771
5772 if (!(s = dewrap(sub[1], field_number_set ? US"[]" : US"{}")))
5773 {
5774 expand_string_message =
5775 string_sprintf("%s wrapping %s for extract json",
5776 expand_string_message,
5777 field_number_set ? "array" : "object");
5778 goto EXPAND_FAILED_CURLY;
5779 }
5780
5781 list = s;
5782 if (field_number_set)
5783 {
5784 if (field_number <= 0)
5785 {
5786 expand_string_message = US"first argument of \"extract\" must "
5787 "be greater than zero";
5788 goto EXPAND_FAILED;
5789 }
5790 while (field_number > 0 && (item = json_nextinlist(&list)))
5791 field_number--;
5792 s = item;
5793 lookup_value = s;
5794 while (*s) s++;
5795 while (--s >= lookup_value && isspace(*s)) *s = '\0';
5796 }
5797 else
5798 {
5799 lookup_value = NULL;
5800 while ((item = json_nextinlist(&list)))
5801 {
5802 /* Item is: string name-sep value. string is quoted.
5803 Dequote the string and compare with the search key. */
5804
5805 if (!(item = dewrap(item, US"\"\"")))
5806 {
5807 expand_string_message =
5808 string_sprintf("%s wrapping string key for extract json",
5809 expand_string_message);
5810 goto EXPAND_FAILED_CURLY;
5811 }
5812 if (Ustrcmp(item, sub[0]) == 0) /*XXX should be a UTF8-compare */
5813 {
1e1d5443 5814 s = item + Ustrlen(item) + 1;
8fdf20fd
JH
5815 while (isspace(*s)) s++;
5816 if (*s != ':')
5817 {
5818 expand_string_message = string_sprintf(
5819 "missing object value-separator for extract json");
5820 goto EXPAND_FAILED_CURLY;
5821 }
5822 s++;
5823 while (isspace(*s)) s++;
5824 lookup_value = s;
5825 break;
5826 }
5827 }
5828 }
5829 }
5830 }
059ec3d9
PH
5831
5832 /* If no string follows, $value gets substituted; otherwise there can
5833 be yes/no strings, as for lookup or if. */
5834
aa26e137
JH
5835 switch(process_yesno(
5836 skipping, /* were previously skipping */
5837 lookup_value != NULL, /* success/failure indicator */
5838 save_lookup_value, /* value to reset for string2 */
5839 &s, /* input pointer */
5840 &yield, /* output pointer */
aa26e137
JH
5841 US"extract", /* condition type */
5842 &resetok))
5843 {
5844 case 1: goto EXPAND_FAILED; /* when all is well, the */
5845 case 2: goto EXPAND_FAILED_CURLY; /* returned value is 0 */
5846 }
5847
5848 /* All done - restore numerical variables. */
5849
5850 restore_expand_strings(save_expand_nmax, save_expand_nstring,
5851 save_expand_nlength);
5852
5853 continue;
5854 }
5855
5856 /* return the Nth item from a list */
5857
5858 case EITEM_LISTEXTRACT:
5859 {
5860 int i;
5861 int field_number = 1;
5862 uschar *save_lookup_value = lookup_value;
5863 uschar *sub[2];
5864 int save_expand_nmax =
5865 save_expand_strings(save_expand_nstring, save_expand_nlength);
5866
5867 /* Read the field & list arguments */
5868
5869 for (i = 0; i < 2; i++)
5870 {
5871 while (isspace(*s)) s++;
5872 if (*s != '{') /*}*/
e47376be
JH
5873 {
5874 expand_string_message = string_sprintf(
e2e3255a 5875 "missing '{' for arg %d of listextract", i+1);
aa26e137 5876 goto EXPAND_FAILED_CURLY;
e47376be 5877 }
aa26e137
JH
5878
5879 sub[i] = expand_string_internal(s+1, TRUE, &s, skipping, TRUE, &resetok);
5880 if (!sub[i]) goto EXPAND_FAILED; /*{*/
e47376be
JH
5881 if (*s++ != '}')
5882 {
5883 expand_string_message = string_sprintf(
e2e3255a 5884 "missing '}' closing arg %d of listextract", i+1);
e47376be
JH
5885 goto EXPAND_FAILED_CURLY;
5886 }
aa26e137
JH
5887
5888 /* After removal of leading and trailing white space, the first
5889 argument must be numeric and nonempty. */
5890
5891 if (i == 0)
5892 {
5893 int len;
5894 int x = 0;
5895 uschar *p = sub[0];
5896
5897 while (isspace(*p)) p++;
5898 sub[0] = p;
5899
5900 len = Ustrlen(p);
5901 while (len > 0 && isspace(p[len-1])) len--;
5902 p[len] = 0;
5903
5904 if (!*p && !skipping)
5905 {
5906 expand_string_message = US"first argument of \"listextract\" must "
5907 "not be empty";
5908 goto EXPAND_FAILED;
5909 }
5910
5911 if (*p == '-')
5912 {
5913 field_number = -1;
5914 p++;
5915 }
5916 while (*p && isdigit(*p)) x = x * 10 + *p++ - '0';
5917 if (*p)
5918 {
5919 expand_string_message = US"first argument of \"listextract\" must "
5920 "be numeric";
5921 goto EXPAND_FAILED;
5922 }
5923 field_number *= x;
5924 }
5925 }
5926
5927 /* Extract the numbered element into $value. If
5928 skipping, just pretend the extraction failed. */
5929
8fdf20fd 5930 lookup_value = skipping ? NULL : expand_getlistele(field_number, sub[1]);
aa26e137
JH
5931
5932 /* If no string follows, $value gets substituted; otherwise there can
5933 be yes/no strings, as for lookup or if. */
5934
059ec3d9
PH
5935 switch(process_yesno(
5936 skipping, /* were previously skipping */
5937 lookup_value != NULL, /* success/failure indicator */
5938 save_lookup_value, /* value to reset for string2 */
5939 &s, /* input pointer */
5940 &yield, /* output pointer */
f90d49f7 5941 US"listextract", /* condition type */
b0e85a8f 5942 &resetok))
059ec3d9
PH
5943 {
5944 case 1: goto EXPAND_FAILED; /* when all is well, the */
5945 case 2: goto EXPAND_FAILED_CURLY; /* returned value is 0 */
5946 }
5947
5948 /* All done - restore numerical variables. */
5949
5950 restore_expand_strings(save_expand_nmax, save_expand_nstring,
5951 save_expand_nlength);
5952
5953 continue;
5954 }
1a46a8c5 5955
9d1c15ef
JH
5956#ifdef SUPPORT_TLS
5957 case EITEM_CERTEXTRACT:
5958 {
9d1c15ef
JH
5959 uschar *save_lookup_value = lookup_value;
5960 uschar *sub[2];
5961 int save_expand_nmax =
5962 save_expand_strings(save_expand_nstring, save_expand_nlength);
5963
5964 /* Read the field argument */
5965 while (isspace(*s)) s++;
5966 if (*s != '{') /*}*/
e47376be
JH
5967 {
5968 expand_string_message = US"missing '{' for field arg of certextract";
9d1c15ef 5969 goto EXPAND_FAILED_CURLY;
e47376be 5970 }
9d1c15ef
JH
5971 sub[0] = expand_string_internal(s+1, TRUE, &s, skipping, TRUE, &resetok);
5972 if (!sub[0]) goto EXPAND_FAILED; /*{*/
e47376be
JH
5973 if (*s++ != '}')
5974 {
5975 expand_string_message = US"missing '}' closing field arg of certextract";
5976 goto EXPAND_FAILED_CURLY;
5977 }
9d1c15ef
JH
5978 /* strip spaces fore & aft */
5979 {
5980 int len;
9d1c15ef
JH
5981 uschar *p = sub[0];
5982
5983 while (isspace(*p)) p++;
5984 sub[0] = p;
5985
5986 len = Ustrlen(p);
5987 while (len > 0 && isspace(p[len-1])) len--;
5988 p[len] = 0;
5989 }
5990
5991 /* inspect the cert argument */
5992 while (isspace(*s)) s++;
5993 if (*s != '{') /*}*/
e47376be
JH
5994 {
5995 expand_string_message = US"missing '{' for cert variable arg of certextract";
9d1c15ef 5996 goto EXPAND_FAILED_CURLY;
e47376be 5997 }
9d1c15ef
JH
5998 if (*++s != '$')
5999 {
6000 expand_string_message = US"second argument of \"certextract\" must "
6001 "be a certificate variable";
6002 goto EXPAND_FAILED;
6003 }
6004 sub[1] = expand_string_internal(s+1, TRUE, &s, skipping, FALSE, &resetok);
6005 if (!sub[1]) goto EXPAND_FAILED; /*{*/
e47376be
JH
6006 if (*s++ != '}')
6007 {
6008 expand_string_message = US"missing '}' closing cert variable arg of certextract";
6009 goto EXPAND_FAILED_CURLY;
6010 }
9d1c15ef
JH
6011
6012 if (skipping)
6013 lookup_value = NULL;
6014 else
6015 {
6016 lookup_value = expand_getcertele(sub[0], sub[1]);
6017 if (*expand_string_message) goto EXPAND_FAILED;
6018 }
6019 switch(process_yesno(
6020 skipping, /* were previously skipping */
6021 lookup_value != NULL, /* success/failure indicator */
6022 save_lookup_value, /* value to reset for string2 */
6023 &s, /* input pointer */
6024 &yield, /* output pointer */
f90d49f7 6025 US"certextract", /* condition type */
9d1c15ef
JH
6026 &resetok))
6027 {
6028 case 1: goto EXPAND_FAILED; /* when all is well, the */
6029 case 2: goto EXPAND_FAILED_CURLY; /* returned value is 0 */
6030 }
6031
6032 restore_expand_strings(save_expand_nmax, save_expand_nstring,
6033 save_expand_nlength);
6034 continue;
6035 }
6036#endif /*SUPPORT_TLS*/
6037
29f89cad
PH
6038 /* Handle list operations */
6039
6040 case EITEM_FILTER:
6041 case EITEM_MAP:
6042 case EITEM_REDUCE:
6043 {
6044 int sep = 0;
acec9514 6045 int save_ptr = yield->ptr;
29f89cad 6046 uschar outsep[2] = { '\0', '\0' };
55414b25 6047 const uschar *list, *expr, *temp;
29f89cad
PH
6048 uschar *save_iterate_item = iterate_item;
6049 uschar *save_lookup_value = lookup_value;
6050
6051 while (isspace(*s)) s++;
e47376be
JH
6052 if (*s++ != '{')
6053 {
6054 expand_string_message =
6055 string_sprintf("missing '{' for first arg of %s", name);
6056 goto EXPAND_FAILED_CURLY;
6057 }
29f89cad 6058
b0e85a8f 6059 list = expand_string_internal(s, TRUE, &s, skipping, TRUE, &resetok);
29f89cad 6060 if (list == NULL) goto EXPAND_FAILED;
e47376be
JH
6061 if (*s++ != '}')
6062 {
6063 expand_string_message =
6064 string_sprintf("missing '}' closing first arg of %s", name);
6065 goto EXPAND_FAILED_CURLY;
6066 }
29f89cad
PH
6067
6068 if (item_type == EITEM_REDUCE)
6069 {
55414b25 6070 uschar * t;
29f89cad 6071 while (isspace(*s)) s++;
e47376be
JH
6072 if (*s++ != '{')
6073 {
6074 expand_string_message = US"missing '{' for second arg of reduce";
6075 goto EXPAND_FAILED_CURLY;
6076 }
55414b25 6077 t = expand_string_internal(s, TRUE, &s, skipping, TRUE, &resetok);
e1af7642 6078 if (!t) goto EXPAND_FAILED;
55414b25 6079 lookup_value = t;
e47376be
JH
6080 if (*s++ != '}')
6081 {
6082 expand_string_message = US"missing '}' closing second arg of reduce";
6083 goto EXPAND_FAILED_CURLY;
6084 }
29f89cad
PH
6085 }
6086
6087 while (isspace(*s)) s++;
e47376be
JH
6088 if (*s++ != '{')
6089 {
6090 expand_string_message =
6091 string_sprintf("missing '{' for last arg of %s", name);
6092 goto EXPAND_FAILED_CURLY;
6093 }
29f89cad
PH
6094
6095 expr = s;
6096
6097 /* For EITEM_FILTER, call eval_condition once, with result discarded (as
6098 if scanning a "false" part). This allows us to find the end of the
6099 condition, because if the list is empty, we won't actually evaluate the
6100 condition for real. For EITEM_MAP and EITEM_REDUCE, do the same, using
6101 the normal internal expansion function. */
6102
6103 if (item_type == EITEM_FILTER)
6104 {
b0e85a8f 6105 temp = eval_condition(expr, &resetok, NULL);
29f89cad
PH
6106 if (temp != NULL) s = temp;
6107 }
6108 else
b0e85a8f 6109 temp = expand_string_internal(s, TRUE, &s, TRUE, TRUE, &resetok);
29f89cad
PH
6110
6111 if (temp == NULL)
6112 {
6113 expand_string_message = string_sprintf("%s inside \"%s\" item",
6114 expand_string_message, name);
6115 goto EXPAND_FAILED;
6116 }
6117
6118 while (isspace(*s)) s++;
6119 if (*s++ != '}')
2e23003a 6120 { /*{*/
29f89cad 6121 expand_string_message = string_sprintf("missing } at end of condition "
d584cdca
JH
6122 "or expression inside \"%s\"; could be an unquoted } in the content",
6123 name);
29f89cad
PH
6124 goto EXPAND_FAILED;
6125 }
6126
2e23003a 6127 while (isspace(*s)) s++; /*{*/
29f89cad 6128 if (*s++ != '}')
2e23003a 6129 { /*{*/
29f89cad
PH
6130 expand_string_message = string_sprintf("missing } at end of \"%s\"",
6131 name);
6132 goto EXPAND_FAILED;
6133 }
6134
6135 /* If we are skipping, we can now just move on to the next item. When
6136 processing for real, we perform the iteration. */
6137
6138 if (skipping) continue;
9e09521e 6139 while ((iterate_item = string_nextinlist(&list, &sep, NULL, 0)))
29f89cad
PH
6140 {
6141 *outsep = (uschar)sep; /* Separator as a string */
6142
9e09521e
JH
6143 DEBUG(D_expand) debug_printf_indent("%s: $item = '%s' $value = '%s'\n",
6144 name, iterate_item, lookup_value);
29f89cad
PH
6145
6146 if (item_type == EITEM_FILTER)
6147 {
6148 BOOL condresult;
b0e85a8f 6149 if (eval_condition(expr, &resetok, &condresult) == NULL)
29f89cad 6150 {
e58c13cc
PH
6151 iterate_item = save_iterate_item;
6152 lookup_value = save_lookup_value;
29f89cad
PH
6153 expand_string_message = string_sprintf("%s inside \"%s\" condition",
6154 expand_string_message, name);
6155 goto EXPAND_FAILED;
6156 }
e1d04f48 6157 DEBUG(D_expand) debug_printf_indent("%s: condition is %s\n", name,
29f89cad
PH
6158 condresult? "true":"false");
6159 if (condresult)
6160 temp = iterate_item; /* TRUE => include this item */
6161 else
6162 continue; /* FALSE => skip this item */
6163 }
6164
6165 /* EITEM_MAP and EITEM_REDUCE */
6166
6167 else
6168 {
55414b25
JH
6169 uschar * t = expand_string_internal(expr, TRUE, NULL, skipping, TRUE, &resetok);
6170 temp = t;
29f89cad
PH
6171 if (temp == NULL)
6172 {
e58c13cc 6173 iterate_item = save_iterate_item;
29f89cad
PH
6174 expand_string_message = string_sprintf("%s inside \"%s\" item",
6175 expand_string_message, name);
6176 goto EXPAND_FAILED;
6177 }
6178 if (item_type == EITEM_REDUCE)
6179 {
55414b25 6180 lookup_value = t; /* Update the value of $value */
29f89cad
PH
6181 continue; /* and continue the iteration */
6182 }
6183 }
6184
6185 /* We reach here for FILTER if the condition is true, always for MAP,
6186 and never for REDUCE. The value in "temp" is to be added to the output
6187 list that is being created, ensuring that any occurrences of the
6188 separator character are doubled. Unless we are dealing with the first
6189 item of the output list, add in a space if the new item begins with the
6190 separator character, or is an empty string. */
6191
acec9514
JH
6192 if (yield->ptr != save_ptr && (temp[0] == *outsep || temp[0] == 0))
6193 yield = string_catn(yield, US" ", 1);
29f89cad
PH
6194
6195 /* Add the string in "temp" to the output list that we are building,
6196 This is done in chunks by searching for the separator character. */
6197
6198 for (;;)
6199 {
6200 size_t seglen = Ustrcspn(temp, outsep);
c2f669a4 6201
acec9514 6202 yield = string_catn(yield, temp, seglen + 1);
29f89cad
PH
6203
6204 /* If we got to the end of the string we output one character
6205 too many; backup and end the loop. Otherwise arrange to double the
6206 separator. */
6207
acec9514
JH
6208 if (temp[seglen] == '\0') { yield->ptr--; break; }
6209 yield = string_catn(yield, outsep, 1);
29f89cad
PH
6210 temp += seglen + 1;
6211 }
6212
6213 /* Output a separator after the string: we will remove the redundant
6214 final one at the end. */
6215
acec9514 6216 yield = string_catn(yield, outsep, 1);
29f89cad
PH
6217 } /* End of iteration over the list loop */
6218
6219 /* REDUCE has generated no output above: output the final value of
6220 $value. */
6221
6222 if (item_type == EITEM_REDUCE)
6223 {
acec9514 6224 yield = string_cat(yield, lookup_value);
29f89cad
PH
6225 lookup_value = save_lookup_value; /* Restore $value */
6226 }
6227
6228 /* FILTER and MAP generate lists: if they have generated anything, remove
6229 the redundant final separator. Even though an empty item at the end of a
6230 list does not count, this is tidier. */
6231
acec9514 6232 else if (yield->ptr != save_ptr) yield->ptr--;
29f89cad
PH
6233
6234 /* Restore preserved $item */
6235
6236 iterate_item = save_iterate_item;
6237 continue;
6238 }
6239
ac4ef9bd
JH
6240 case EITEM_SORT:
6241 {
6242 int sep = 0;
55414b25 6243 const uschar *srclist, *cmp, *xtract;
ac4ef9bd 6244 uschar *srcitem;
55414b25 6245 const uschar *dstlist = NULL, *dstkeylist = NULL;
ac4ef9bd
JH
6246 uschar * tmp;
6247 uschar *save_iterate_item = iterate_item;
6248
6249 while (isspace(*s)) s++;
e47376be
JH
6250 if (*s++ != '{')
6251 {
6252 expand_string_message = US"missing '{' for list arg of sort";
6253 goto EXPAND_FAILED_CURLY;
6254 }
ac4ef9bd
JH
6255
6256 srclist = expand_string_internal(s, TRUE, &s, skipping, TRUE, &resetok);
6257 if (!srclist) goto EXPAND_FAILED;
e47376be
JH
6258 if (*s++ != '}')
6259 {
6260 expand_string_message = US"missing '}' closing list arg of sort";
6261 goto EXPAND_FAILED_CURLY;
6262 }
ac4ef9bd
JH
6263
6264 while (isspace(*s)) s++;
e47376be
JH
6265 if (*s++ != '{')
6266 {
6267 expand_string_message = US"missing '{' for comparator arg of sort";
6268 goto EXPAND_FAILED_CURLY;
6269 }
ac4ef9bd
JH
6270
6271 cmp = expand_string_internal(s, TRUE, &s, skipping, FALSE, &resetok);
6272 if (!cmp) goto EXPAND_FAILED;
e47376be
JH
6273 if (*s++ != '}')
6274 {
6275 expand_string_message = US"missing '}' closing comparator arg of sort";
6276 goto EXPAND_FAILED_CURLY;
6277 }
ac4ef9bd
JH
6278
6279 while (isspace(*s)) s++;
e47376be
JH
6280 if (*s++ != '{')
6281 {
6282 expand_string_message = US"missing '{' for extractor arg of sort";
6283 goto EXPAND_FAILED_CURLY;
6284 }
ac4ef9bd
JH
6285
6286 xtract = s;
6287 tmp = expand_string_internal(s, TRUE, &s, TRUE, TRUE, &resetok);
6288 if (!tmp) goto EXPAND_FAILED;
6289 xtract = string_copyn(xtract, s - xtract);
6290
e47376be
JH
6291 if (*s++ != '}')
6292 {
6293 expand_string_message = US"missing '}' closing extractor arg of sort";
6294 goto EXPAND_FAILED_CURLY;
6295 }
ac4ef9bd
JH
6296 /*{*/
6297 if (*s++ != '}')
6298 { /*{*/
6299 expand_string_message = US"missing } at end of \"sort\"";
6300 goto EXPAND_FAILED;
6301 }
6302
6303 if (skipping) continue;
6304
6305 while ((srcitem = string_nextinlist(&srclist, &sep, NULL, 0)))
6306 {
6307 uschar * dstitem;
acec9514
JH
6308 gstring * newlist = NULL;
6309 gstring * newkeylist = NULL;
ac4ef9bd
JH
6310 uschar * srcfield;
6311
e1d04f48 6312 DEBUG(D_expand) debug_printf_indent("%s: $item = \"%s\"\n", name, srcitem);
ac4ef9bd
JH
6313
6314 /* extract field for comparisons */
6315 iterate_item = srcitem;
6316 if ( !(srcfield = expand_string_internal(xtract, FALSE, NULL, FALSE,
6317 TRUE, &resetok))
6318 || !*srcfield)
6319 {
6320 expand_string_message = string_sprintf(
6321 "field-extract in sort: \"%s\"", xtract);
6322 goto EXPAND_FAILED;
6323 }
6324
6325 /* Insertion sort */
6326
6327 /* copy output list until new-item < list-item */
6328 while ((dstitem = string_nextinlist(&dstlist, &sep, NULL, 0)))
6329 {
6330 uschar * dstfield;
6331 uschar * expr;
6332 BOOL before;
6333
6334 /* field for comparison */
6335 if (!(dstfield = string_nextinlist(&dstkeylist, &sep, NULL, 0)))
6336 goto sort_mismatch;
6337
6338 /* build and run condition string */
6339 expr = string_sprintf("%s{%s}{%s}", cmp, srcfield, dstfield);
6340
e1d04f48 6341 DEBUG(D_expand) debug_printf_indent("%s: cond = \"%s\"\n", name, expr);
ac4ef9bd
JH
6342 if (!eval_condition(expr, &resetok, &before))
6343 {
6344 expand_string_message = string_sprintf("comparison in sort: %s",
6345 expr);
6346 goto EXPAND_FAILED;
6347 }
6348
6349 if (before)
6350 {
6351 /* New-item sorts before this dst-item. Append new-item,
6352 then dst-item, then remainder of dst list. */
6353
acec9514
JH
6354 newlist = string_append_listele(newlist, sep, srcitem);
6355 newkeylist = string_append_listele(newkeylist, sep, srcfield);
ac4ef9bd
JH
6356 srcitem = NULL;
6357
acec9514
JH
6358 newlist = string_append_listele(newlist, sep, dstitem);
6359 newkeylist = string_append_listele(newkeylist, sep, dstfield);
ac4ef9bd
JH
6360
6361 while ((dstitem = string_nextinlist(&dstlist, &sep, NULL, 0)))
6362 {
6363 if (!(dstfield = string_nextinlist(&dstkeylist, &sep, NULL, 0)))
6364 goto sort_mismatch;
acec9514
JH
6365 newlist = string_append_listele(newlist, sep, dstitem);
6366 newkeylist = string_append_listele(newkeylist, sep, dstfield);
ac4ef9bd
JH
6367 }
6368
6369 break;
6370 }
6371
acec9514
JH
6372 newlist = string_append_listele(newlist, sep, dstitem);
6373 newkeylist = string_append_listele(newkeylist, sep, dstfield);
ac4ef9bd
JH
6374 }
6375
6376 /* If we ran out of dstlist without consuming srcitem, append it */
6377 if (srcitem)
6378 {
acec9514
JH
6379 newlist = string_append_listele(newlist, sep, srcitem);
6380 newkeylist = string_append_listele(newkeylist, sep, srcfield);
ac4ef9bd
JH
6381 }
6382
acec9514
JH
6383 dstlist = newlist->s;
6384 dstkeylist = newkeylist->s;
ac4ef9bd 6385
e1d04f48
JH
6386 DEBUG(D_expand) debug_printf_indent("%s: dstlist = \"%s\"\n", name, dstlist);
6387 DEBUG(D_expand) debug_printf_indent("%s: dstkeylist = \"%s\"\n", name, dstkeylist);
ac4ef9bd
JH
6388 }
6389
6390 if (dstlist)
acec9514 6391 yield = string_cat(yield, dstlist);
ac4ef9bd
JH
6392
6393 /* Restore preserved $item */
6394 iterate_item = save_iterate_item;
6395 continue;
6396
6397 sort_mismatch:
6398 expand_string_message = US"Internal error in sort (list mismatch)";
6399 goto EXPAND_FAILED;
6400 }
6401
29f89cad 6402
2e23003a 6403 /* If ${dlfunc } support is configured, handle calling dynamically-loaded
1a46a8c5
PH
6404 functions, unless locked out at this time. Syntax is ${dlfunc{file}{func}}
6405 or ${dlfunc{file}{func}{arg}} or ${dlfunc{file}{func}{arg1}{arg2}} or up to
6406 a maximum of EXPAND_DLFUNC_MAX_ARGS arguments (defined below). */
6407
6408 #define EXPAND_DLFUNC_MAX_ARGS 8
6409
6410 case EITEM_DLFUNC:
089fc87a
JH
6411#ifndef EXPAND_DLFUNC
6412 expand_string_message = US"\"${dlfunc\" encountered, but this facility " /*}*/
6413 "is not included in this binary";
6414 goto EXPAND_FAILED;
1a46a8c5 6415
089fc87a 6416#else /* EXPAND_DLFUNC */
1a46a8c5
PH
6417 {
6418 tree_node *t;
6419 exim_dlfunc_t *func;
6420 uschar *result;
6421 int status, argc;
6422 uschar *argv[EXPAND_DLFUNC_MAX_ARGS + 3];
6423
6424 if ((expand_forbid & RDO_DLFUNC) != 0)
6425 {
6426 expand_string_message =
6427 US"dynamically-loaded functions are not permitted";
6428 goto EXPAND_FAILED;
6429 }
6430
6431 switch(read_subs(argv, EXPAND_DLFUNC_MAX_ARGS + 2, 2, &s, skipping,
b0e85a8f 6432 TRUE, US"dlfunc", &resetok))
1a46a8c5
PH
6433 {
6434 case 1: goto EXPAND_FAILED_CURLY;
6435 case 2:
6436 case 3: goto EXPAND_FAILED;
6437 }
6438
6439 /* If skipping, we don't actually do anything */
6440
6441 if (skipping) continue;
6442
6443 /* Look up the dynamically loaded object handle in the tree. If it isn't
6444 found, dlopen() the file and put the handle in the tree for next time. */
6445
6446 t = tree_search(dlobj_anchor, argv[0]);
6447 if (t == NULL)
6448 {
6449 void *handle = dlopen(CS argv[0], RTLD_LAZY);
6450 if (handle == NULL)
6451 {
6452 expand_string_message = string_sprintf("dlopen \"%s\" failed: %s",
6453 argv[0], dlerror());
6454 log_write(0, LOG_MAIN|LOG_PANIC, "%s", expand_string_message);
6455 goto EXPAND_FAILED;
6456 }
6457 t = store_get_perm(sizeof(tree_node) + Ustrlen(argv[0]));
6458 Ustrcpy(t->name, argv[0]);
6459 t->data.ptr = handle;
6460 (void)tree_insertnode(&dlobj_anchor, t);
6461 }
6462
6463 /* Having obtained the dynamically loaded object handle, look up the
6464 function pointer. */
6465
6466 func = (exim_dlfunc_t *)dlsym(t->data.ptr, CS argv[1]);
6467 if (func == NULL)
6468 {
6469 expand_string_message = string_sprintf("dlsym \"%s\" in \"%s\" failed: "
6470 "%s", argv[1], argv[0], dlerror());
7dbf77c9 6471 log_write(0, LOG_MAIN|LOG_PANIC, "%s", expand_string_message);
1a46a8c5
PH
6472 goto EXPAND_FAILED;
6473 }
6474
6475 /* Call the function and work out what to do with the result. If it
6476 returns OK, we have a replacement string; if it returns DEFER then
6477 expansion has failed in a non-forced manner; if it returns FAIL then
6478 failure was forced; if it returns ERROR or any other value there's a
d6b4d938
TF
6479 problem, so panic slightly. In any case, assume that the function has
6480 side-effects on the store that must be preserved. */
1a46a8c5 6481
d6b4d938 6482 resetok = FALSE;
1a46a8c5
PH
6483 result = NULL;
6484 for (argc = 0; argv[argc] != NULL; argc++);
6485 status = func(&result, argc - 2, &argv[2]);
6486 if(status == OK)
6487 {
6488 if (result == NULL) result = US"";
acec9514 6489 yield = string_cat(yield, result);
1a46a8c5
PH
6490 continue;
6491 }
6492 else
6493 {
6494 expand_string_message = result == NULL ? US"(no message)" : result;
8768d548 6495 if(status == FAIL_FORCED) f.expand_string_forcedfail = TRUE;
1a46a8c5
PH
6496 else if(status != FAIL)
6497 log_write(0, LOG_MAIN|LOG_PANIC, "dlfunc{%s}{%s} failed (%d): %s",
6498 argv[0], argv[1], status, expand_string_message);
6499 goto EXPAND_FAILED;
6500 }
6501 }
089fc87a
JH
6502#endif /* EXPAND_DLFUNC */
6503
6504 case EITEM_ENV: /* ${env {name} {val_if_found} {val_if_unfound}} */
6505 {
6506 uschar * key;
6507 uschar *save_lookup_value = lookup_value;
6508
6509 while (isspace(*s)) s++;
6510 if (*s != '{') /*}*/
6511 goto EXPAND_FAILED;
6512
6513 key = expand_string_internal(s+1, TRUE, &s, skipping, TRUE, &resetok);
6514 if (!key) goto EXPAND_FAILED; /*{*/
e47376be
JH
6515 if (*s++ != '}')
6516 {
6517 expand_string_message = US"missing '{' for name arg of env";
6518 goto EXPAND_FAILED_CURLY;
6519 }
089fc87a
JH
6520
6521 lookup_value = US getenv(CS key);
6522
6523 switch(process_yesno(
6524 skipping, /* were previously skipping */
6525 lookup_value != NULL, /* success/failure indicator */
6526 save_lookup_value, /* value to reset for string2 */
6527 &s, /* input pointer */
6528 &yield, /* output pointer */
089fc87a
JH
6529 US"env", /* condition type */
6530 &resetok))
6531 {
6532 case 1: goto EXPAND_FAILED; /* when all is well, the */
6533 case 2: goto EXPAND_FAILED_CURLY; /* returned value is 0 */
6534 }
6535 continue;
6536 }
2e23003a 6537 } /* EITEM_* switch */
059ec3d9
PH
6538
6539 /* Control reaches here if the name is not recognized as one of the more
6540 complicated expansion items. Check for the "operator" syntax (name terminated
6541 by a colon). Some of the operators have arguments, separated by _ from the
6542 name. */
6543
6544 if (*s == ':')
6545 {
6546 int c;
6547 uschar *arg = NULL;
6a8a60e0 6548 uschar *sub;
13c7874e 6549#ifdef SUPPORT_TLS
e3dd1d67 6550 var_entry *vp = NULL;
13c7874e 6551#endif
059ec3d9
PH
6552
6553 /* Owing to an historical mis-design, an underscore may be part of the
6554 operator name, or it may introduce arguments. We therefore first scan the
6555 table of names that contain underscores. If there is no match, we cut off
6556 the arguments and then scan the main table. */
6557
6a8a60e0 6558 if ((c = chop_match(name, op_table_underscore,
0539a19d 6559 nelem(op_table_underscore))) < 0)
059ec3d9
PH
6560 {
6561 arg = Ustrchr(name, '_');
6562 if (arg != NULL) *arg = 0;
0539a19d
JH
6563 c = chop_match(name, op_table_main, nelem(op_table_main));
6564 if (c >= 0) c += nelem(op_table_underscore);
059ec3d9
PH
6565 if (arg != NULL) *arg++ = '_'; /* Put back for error messages */
6566 }
6567
6a8a60e0
JH
6568 /* Deal specially with operators that might take a certificate variable
6569 as we do not want to do the usual expansion. For most, expand the string.*/
6570 switch(c)
6571 {
80c974f8 6572#ifdef SUPPORT_TLS
6a8a60e0 6573 case EOP_MD5:
9ef9101c
JH
6574 case EOP_SHA1:
6575 case EOP_SHA256:
59b87190 6576 case EOP_BASE64:
6a8a60e0
JH
6577 if (s[1] == '$')
6578 {
55414b25 6579 const uschar * s1 = s;
6a8a60e0
JH
6580 sub = expand_string_internal(s+2, TRUE, &s1, skipping,
6581 FALSE, &resetok);
6582 if (!sub) goto EXPAND_FAILED; /*{*/
e47376be
JH
6583 if (*s1 != '}')
6584 {
6585 expand_string_message =
6586 string_sprintf("missing '}' closing cert arg of %s", name);
6587 goto EXPAND_FAILED_CURLY;
6588 }
6a8a60e0
JH
6589 if ((vp = find_var_ent(sub)) && vp->type == vtype_cert)
6590 {
6591 s = s1+1;
6592 break;
6593 }
fabe4dd9 6594 vp = NULL;
6a8a60e0 6595 }
6a8a60e0 6596 /*FALLTHROUGH*/
80c974f8 6597#endif
6a8a60e0
JH
6598 default:
6599 sub = expand_string_internal(s+1, TRUE, &s, skipping, TRUE, &resetok);
6600 if (!sub) goto EXPAND_FAILED;
6601 s++;
6602 break;
6603 }
6604
059ec3d9
PH
6605 /* If we are skipping, we don't need to perform the operation at all.
6606 This matters for operations like "mask", because the data may not be
6607 in the correct format when skipping. For example, the expression may test
6608 for the existence of $sender_host_address before trying to mask it. For
6609 other operations, doing them may not fail, but it is a waste of time. */
6610
6611 if (skipping && c >= 0) continue;
6612
6613 /* Otherwise, switch on the operator type */
6614
6615 switch(c)
6616 {
03ca21f8
JH
6617 case EOP_BASE32:
6618 {
6619 uschar *t;
6620 unsigned long int n = Ustrtoul(sub, &t, 10);
acec9514 6621 gstring * g = NULL;
03ca21f8
JH
6622
6623 if (*t != 0)
6624 {
6625 expand_string_message = string_sprintf("argument for base32 "
6626 "operator is \"%s\", which is not a decimal number", sub);
6627 goto EXPAND_FAILED;
6628 }
6629 for ( ; n; n >>= 5)
acec9514 6630 g = string_catn(g, &base32_chars[n & 0x1f], 1);
03ca21f8 6631
acec9514 6632 if (g) while (g->ptr > 0) yield = string_catn(yield, &g->s[--g->ptr], 1);
03ca21f8
JH
6633 continue;
6634 }
6635
6636 case EOP_BASE32D:
6637 {
6638 uschar *tt = sub;
6639 unsigned long int n = 0;
6640 uschar * s;
6641 while (*tt)
6642 {
6643 uschar * t = Ustrchr(base32_chars, *tt++);
6644 if (t == NULL)
6645 {
6646 expand_string_message = string_sprintf("argument for base32d "
6647 "operator is \"%s\", which is not a base 32 number", sub);
6648 goto EXPAND_FAILED;
6649 }
6650 n = n * 32 + (t - base32_chars);
6651 }
6652 s = string_sprintf("%ld", n);
acec9514 6653 yield = string_cat(yield, s);
03ca21f8
JH
6654 continue;
6655 }
6656
059ec3d9
PH
6657 case EOP_BASE62:
6658 {
6659 uschar *t;
6660 unsigned long int n = Ustrtoul(sub, &t, 10);
6661 if (*t != 0)
6662 {
6663 expand_string_message = string_sprintf("argument for base62 "
6664 "operator is \"%s\", which is not a decimal number", sub);
6665 goto EXPAND_FAILED;
6666 }
6667 t = string_base62(n);
acec9514 6668 yield = string_cat(yield, t);
059ec3d9
PH
6669 continue;
6670 }
6671
9a799bc0
PH
6672 /* Note that for Darwin and Cygwin, BASE_62 actually has the value 36 */
6673
059ec3d9
PH
6674 case EOP_BASE62D:
6675 {
6676 uschar buf[16];
6677 uschar *tt = sub;
6678 unsigned long int n = 0;
6679 while (*tt != 0)
6680 {
6681 uschar *t = Ustrchr(base62_chars, *tt++);
6682 if (t == NULL)
6683 {
6684 expand_string_message = string_sprintf("argument for base62d "
9a799bc0
PH
6685 "operator is \"%s\", which is not a base %d number", sub,
6686 BASE_62);
059ec3d9
PH
6687 goto EXPAND_FAILED;
6688 }
9a799bc0 6689 n = n * BASE_62 + (t - base62_chars);
059ec3d9
PH
6690 }
6691 (void)sprintf(CS buf, "%ld", n);
acec9514 6692 yield = string_cat(yield, buf);
059ec3d9
PH
6693 continue;
6694 }
6695
6696 case EOP_EXPAND:
6697 {
b0e85a8f 6698 uschar *expanded = expand_string_internal(sub, FALSE, NULL, skipping, TRUE, &resetok);
059ec3d9
PH
6699 if (expanded == NULL)
6700 {
6701 expand_string_message =
6702 string_sprintf("internal expansion of \"%s\" failed: %s", sub,
6703 expand_string_message);
6704 goto EXPAND_FAILED;
6705 }
acec9514 6706 yield = string_cat(yield, expanded);
059ec3d9
PH
6707 continue;
6708 }
6709
6710 case EOP_LC:
6711 {
6712 int count = 0;
6713 uschar *t = sub - 1;
6714 while (*(++t) != 0) { *t = tolower(*t); count++; }
acec9514 6715 yield = string_catn(yield, sub, count);
059ec3d9
PH
6716 continue;
6717 }
6718
6719 case EOP_UC:
6720 {
6721 int count = 0;
6722 uschar *t = sub - 1;
6723 while (*(++t) != 0) { *t = toupper(*t); count++; }
acec9514 6724 yield = string_catn(yield, sub, count);
059ec3d9
PH
6725 continue;
6726 }
6727
6728 case EOP_MD5:
80c974f8 6729#ifdef SUPPORT_TLS
6a8a60e0
JH
6730 if (vp && *(void **)vp->value)
6731 {
6732 uschar * cp = tls_cert_fprt_md5(*(void **)vp->value);
acec9514 6733 yield = string_cat(yield, cp);
6a8a60e0
JH
6734 }
6735 else
80c974f8 6736#endif
6a8a60e0
JH
6737 {
6738 md5 base;
6739 uschar digest[16];
6740 int j;
6741 char st[33];
6742 md5_start(&base);
6743 md5_end(&base, sub, Ustrlen(sub), digest);
6744 for(j = 0; j < 16; j++) sprintf(st+2*j, "%02x", digest[j]);
acec9514 6745 yield = string_cat(yield, US st);
6a8a60e0 6746 }
059ec3d9 6747 continue;
059ec3d9
PH
6748
6749 case EOP_SHA1:
80c974f8 6750#ifdef SUPPORT_TLS
6a8a60e0
JH
6751 if (vp && *(void **)vp->value)
6752 {
6753 uschar * cp = tls_cert_fprt_sha1(*(void **)vp->value);
acec9514 6754 yield = string_cat(yield, cp);
6a8a60e0
JH
6755 }
6756 else
80c974f8 6757#endif
6a8a60e0 6758 {
5fb822fc 6759 hctx h;
6a8a60e0
JH
6760 uschar digest[20];
6761 int j;
6762 char st[41];
5fb822fc
JH
6763 sha1_start(&h);
6764 sha1_end(&h, sub, Ustrlen(sub), digest);
6a8a60e0 6765 for(j = 0; j < 20; j++) sprintf(st+2*j, "%02X", digest[j]);
acec9514 6766 yield = string_catn(yield, US st, 40);
6a8a60e0 6767 }
059ec3d9 6768 continue;
059ec3d9 6769
9ef9101c 6770 case EOP_SHA256:
6e773413 6771#ifdef EXIM_HAVE_SHA2
9ef9101c
JH
6772 if (vp && *(void **)vp->value)
6773 {
6774 uschar * cp = tls_cert_fprt_sha256(*(void **)vp->value);
acec9514 6775 yield = string_cat(yield, cp);
9ef9101c
JH
6776 }
6777 else
cfab9d68
JH
6778 {
6779 hctx h;
6780 blob b;
6781 char st[3];
6782
d73e45df 6783 if (!exim_sha_init(&h, HASH_SHA2_256))
7b83389d
JH
6784 {
6785 expand_string_message = US"unrecognised sha256 variant";
6786 goto EXPAND_FAILED;
6787 }
cfab9d68
JH
6788 exim_sha_update(&h, sub, Ustrlen(sub));
6789 exim_sha_finish(&h, &b);
6790 while (b.len-- > 0)
6791 {
6792 sprintf(st, "%02X", *b.data++);
acec9514 6793 yield = string_catn(yield, US st, 2);
cfab9d68
JH
6794 }
6795 }
6796#else
6797 expand_string_message = US"sha256 only supported with TLS";
9ef9101c 6798#endif
9ef9101c
JH
6799 continue;
6800
6e773413
JH
6801 case EOP_SHA3:
6802#ifdef EXIM_HAVE_SHA3
6803 {
6804 hctx h;
6805 blob b;
6806 char st[3];
6807 hashmethod m = !arg ? HASH_SHA3_256
6808 : Ustrcmp(arg, "224") == 0 ? HASH_SHA3_224
6809 : Ustrcmp(arg, "256") == 0 ? HASH_SHA3_256
6810 : Ustrcmp(arg, "384") == 0 ? HASH_SHA3_384
6811 : Ustrcmp(arg, "512") == 0 ? HASH_SHA3_512
6812 : HASH_BADTYPE;
6813
7b83389d 6814 if (m == HASH_BADTYPE || !exim_sha_init(&h, m))
6e773413
JH
6815 {
6816 expand_string_message = US"unrecognised sha3 variant";
6817 goto EXPAND_FAILED;
6818 }
6819
6e773413
JH
6820 exim_sha_update(&h, sub, Ustrlen(sub));
6821 exim_sha_finish(&h, &b);
6822 while (b.len-- > 0)
6823 {
6824 sprintf(st, "%02X", *b.data++);
acec9514 6825 yield = string_catn(yield, US st, 2);
6e773413
JH
6826 }
6827 }
6828 continue;
6829#else
9c29c48f 6830 expand_string_message = US"sha3 only supported with GnuTLS 3.5.0 + or OpenSSL 1.1.1 +";
6e773413
JH
6831 goto EXPAND_FAILED;
6832#endif
6833
059ec3d9
PH
6834 /* Convert hex encoding to base64 encoding */
6835
6836 case EOP_HEX2B64:
6837 {
6838 int c = 0;
6839 int b = -1;
6840 uschar *in = sub;
6841 uschar *out = sub;
6842 uschar *enc;
6843
6844 for (enc = sub; *enc != 0; enc++)
6845 {
6846 if (!isxdigit(*enc))
6847 {
6848 expand_string_message = string_sprintf("\"%s\" is not a hex "
6849 "string", sub);
6850 goto EXPAND_FAILED;
6851 }
6852 c++;
6853 }
6854
6855 if ((c & 1) != 0)
6856 {
6857 expand_string_message = string_sprintf("\"%s\" contains an odd "
6858 "number of characters", sub);
6859 goto EXPAND_FAILED;
6860 }
6861
6862 while ((c = *in++) != 0)
6863 {
6864 if (isdigit(c)) c -= '0';
6865 else c = toupper(c) - 'A' + 10;
6866 if (b == -1)
6867 {
6868 b = c << 4;
6869 }
6870 else
6871 {
6872 *out++ = b | c;
6873 b = -1;
6874 }
6875 }
6876
f4d091fb 6877 enc = b64encode(sub, out - sub);
acec9514 6878 yield = string_cat(yield, enc);
059ec3d9
PH
6879 continue;
6880 }
6881
c393f931
TF
6882 /* Convert octets outside 0x21..0x7E to \xXX form */
6883
6884 case EOP_HEXQUOTE:
6885 {
6886 uschar *t = sub - 1;
6887 while (*(++t) != 0)
6888 {
6889 if (*t < 0x21 || 0x7E < *t)
acec9514 6890 yield = string_catn(yield, string_sprintf("\\x%02x", *t), 4);
c393f931 6891 else
acec9514 6892 yield = string_catn(yield, t, 1);
c393f931
TF
6893 }
6894 continue;
6895 }
6896
a64a3dfa
JH
6897 /* count the number of list elements */
6898
6899 case EOP_LISTCOUNT:
6900 {
6901 int cnt = 0;
6902 int sep = 0;
6903 uschar * cp;
6904 uschar buffer[256];
6905
55414b25 6906 while (string_nextinlist(CUSS &sub, &sep, buffer, sizeof(buffer)) != NULL) cnt++;
a64a3dfa 6907 cp = string_sprintf("%d", cnt);
acec9514 6908 yield = string_cat(yield, cp);
a64a3dfa
JH
6909 continue;
6910 }
6911
042eb971 6912 /* expand a named list given the name */
a64a3dfa 6913 /* handles nested named lists; requotes as colon-sep list */
042eb971 6914
a64a3dfa 6915 case EOP_LISTNAMED:
042eb971
JH
6916 {
6917 tree_node *t = NULL;
55414b25 6918 const uschar * list;
042eb971
JH
6919 int sep = 0;
6920 uschar * item;
6d9cfc47 6921 uschar * suffix = US"";
042eb971
JH
6922 BOOL needsep = FALSE;
6923 uschar buffer[256];
6924
6925 if (*sub == '+') sub++;
6926 if (arg == NULL) /* no-argument version */
6927 {
6928 if (!(t = tree_search(addresslist_anchor, sub)) &&
6929 !(t = tree_search(domainlist_anchor, sub)) &&
6930 !(t = tree_search(hostlist_anchor, sub)))
6931 t = tree_search(localpartlist_anchor, sub);
6932 }
6933 else switch(*arg) /* specific list-type version */
6934 {
6d9cfc47
JH
6935 case 'a': t = tree_search(addresslist_anchor, sub); suffix = US"_a"; break;
6936 case 'd': t = tree_search(domainlist_anchor, sub); suffix = US"_d"; break;
6937 case 'h': t = tree_search(hostlist_anchor, sub); suffix = US"_h"; break;
6938 case 'l': t = tree_search(localpartlist_anchor, sub); suffix = US"_l"; break;
042eb971
JH
6939 default:
6940 expand_string_message = string_sprintf("bad suffix on \"list\" operator");
6941 goto EXPAND_FAILED;
6942 }
6943
6944 if(!t)
6945 {
6946 expand_string_message = string_sprintf("\"%s\" is not a %snamed list",
6947 sub, !arg?""
6948 : *arg=='a'?"address "
6949 : *arg=='d'?"domain "
6950 : *arg=='h'?"host "
6951 : *arg=='l'?"localpart "
6952 : 0);
6953 goto EXPAND_FAILED;
6954 }
6955
042eb971
JH
6956 list = ((namedlist_block *)(t->data.ptr))->string;
6957
acec9514 6958 while ((item = string_nextinlist(&list, &sep, buffer, sizeof(buffer))))
042eb971
JH
6959 {
6960 uschar * buf = US" : ";
6961 if (needsep)
acec9514 6962 yield = string_catn(yield, buf, 3);
042eb971
JH
6963 else
6964 needsep = TRUE;
6965
6966 if (*item == '+') /* list item is itself a named list */
6967 {
a64a3dfa 6968 uschar * sub = string_sprintf("${listnamed%s:%s}", suffix, item);
b0e85a8f 6969 item = expand_string_internal(sub, FALSE, NULL, FALSE, TRUE, &resetok);
042eb971
JH
6970 }
6971 else if (sep != ':') /* item from non-colon-sep list, re-quote for colon list-separator */
6972 {
6973 char * cp;
6974 char tok[3];
6975 tok[0] = sep; tok[1] = ':'; tok[2] = 0;
5903c6ff 6976 while ((cp= strpbrk(CCS item, tok)))
042eb971 6977 {
acec9514 6978 yield = string_catn(yield, item, cp - CS item);
042eb971
JH
6979 if (*cp++ == ':') /* colon in a non-colon-sep list item, needs doubling */
6980 {
acec9514 6981 yield = string_catn(yield, US"::", 2);
5903c6ff 6982 item = US cp;
042eb971
JH
6983 }
6984 else /* sep in item; should already be doubled; emit once */
6985 {
acec9514 6986 yield = string_catn(yield, US tok, 1);
042eb971 6987 if (*cp == sep) cp++;
5903c6ff 6988 item = US cp;
042eb971
JH
6989 }
6990 }
6991 }
acec9514 6992 yield = string_cat(yield, item);
042eb971
JH
6993 }
6994 continue;
6995 }
6996
059ec3d9
PH
6997 /* mask applies a mask to an IP address; for example the result of
6998 ${mask:131.111.10.206/28} is 131.111.10.192/28. */
6999
7000 case EOP_MASK:
7001 {
7002 int count;
7003 uschar *endptr;
7004 int binary[4];
7005 int mask, maskoffset;
7006 int type = string_is_ip_address(sub, &maskoffset);
7007 uschar buffer[64];
7008
7009 if (type == 0)
7010 {
7011 expand_string_message = string_sprintf("\"%s\" is not an IP address",
7012 sub);
7013 goto EXPAND_FAILED;
7014 }
7015
7016 if (maskoffset == 0)
7017 {
7018 expand_string_message = string_sprintf("missing mask value in \"%s\"",
7019 sub);
7020 goto EXPAND_FAILED;
7021 }
7022
7023 mask = Ustrtol(sub + maskoffset + 1, &endptr, 10);
7024
7025 if (*endptr != 0 || mask < 0 || mask > ((type == 4)? 32 : 128))
7026 {
7027 expand_string_message = string_sprintf("mask value too big in \"%s\"",
7028 sub);
7029 goto EXPAND_FAILED;
7030 }
7031
7032 /* Convert the address to binary integer(s) and apply the mask */
7033
7034 sub[maskoffset] = 0;
7035 count = host_aton(sub, binary);
7036 host_mask(count, binary, mask);
7037
7038 /* Convert to masked textual format and add to output. */
7039
acec9514 7040 yield = string_catn(yield, buffer,
6f0c9a4f 7041 host_nmtoa(count, binary, mask, buffer, '.'));
059ec3d9
PH
7042 continue;
7043 }
7044
fc4a7f70
JH
7045 case EOP_IPV6NORM:
7046 case EOP_IPV6DENORM:
7047 {
7048 int type = string_is_ip_address(sub, NULL);
7049 int binary[4];
7050 uschar buffer[44];
7051
7052 switch (type)
7053 {
7054 case 6:
7055 (void) host_aton(sub, binary);
7056 break;
7057
7058 case 4: /* convert to IPv4-mapped IPv6 */
7059 binary[0] = binary[1] = 0;
7060 binary[2] = 0x0000ffff;
7061 (void) host_aton(sub, binary+3);
7062 break;
7063
7064 case 0:
7065 expand_string_message =
7066 string_sprintf("\"%s\" is not an IP address", sub);
7067 goto EXPAND_FAILED;
7068 }
7069
acec9514 7070 yield = string_catn(yield, buffer, c == EOP_IPV6NORM
fc4a7f70
JH
7071 ? ipv6_nmtoa(binary, buffer)
7072 : host_nmtoa(4, binary, -1, buffer, ':')
7073 );
7074 continue;
7075 }
7076
059ec3d9
PH
7077 case EOP_ADDRESS:
7078 case EOP_LOCAL_PART:
7079 case EOP_DOMAIN:
7080 {
2c0f3ea1 7081 uschar * error;
059ec3d9 7082 int start, end, domain;
2c0f3ea1 7083 uschar * t = parse_extract_address(sub, &error, &start, &end, &domain,
059ec3d9 7084 FALSE);
2c0f3ea1 7085 if (t)
059ec3d9
PH
7086 if (c != EOP_DOMAIN)
7087 {
7088 if (c == EOP_LOCAL_PART && domain != 0) end = start + domain - 1;
acec9514 7089 yield = string_catn(yield, sub+start, end-start);
059ec3d9
PH
7090 }
7091 else if (domain != 0)
7092 {
7093 domain += start;
acec9514 7094 yield = string_catn(yield, sub+domain, end-domain);
059ec3d9 7095 }
059ec3d9
PH
7096 continue;
7097 }
7098
29f89cad
PH
7099 case EOP_ADDRESSES:
7100 {
7101 uschar outsep[2] = { ':', '\0' };
7102 uschar *address, *error;
acec9514 7103 int save_ptr = yield->ptr;
29f89cad
PH
7104 int start, end, domain; /* Not really used */
7105
7106 while (isspace(*sub)) sub++;
1b7cf216
HSHR
7107 if (*sub == '>')
7108 if (*outsep = *++sub) ++sub;
5bfe3b35
JH
7109 else
7110 {
1b7cf216
HSHR
7111 expand_string_message = string_sprintf("output separator "
7112 "missing in expanding ${addresses:%s}", --sub);
7113 goto EXPAND_FAILED;
5bfe3b35 7114 }
8768d548 7115 f.parse_allow_group = TRUE;
29f89cad
PH
7116
7117 for (;;)
7118 {
7119 uschar *p = parse_find_address_end(sub, FALSE);
7120 uschar saveend = *p;
7121 *p = '\0';
7122 address = parse_extract_address(sub, &error, &start, &end, &domain,
7123 FALSE);
7124 *p = saveend;
7125
7126 /* Add the address to the output list that we are building. This is
7127 done in chunks by searching for the separator character. At the
7128 start, unless we are dealing with the first address of the output
7129 list, add in a space if the new address begins with the separator
7130 character, or is an empty string. */
7131
7132 if (address != NULL)
7133 {
acec9514
JH
7134 if (yield->ptr != save_ptr && address[0] == *outsep)
7135 yield = string_catn(yield, US" ", 1);
29f89cad
PH
7136
7137 for (;;)
7138 {
7139 size_t seglen = Ustrcspn(address, outsep);
acec9514 7140 yield = string_catn(yield, address, seglen + 1);
29f89cad
PH
7141
7142 /* If we got to the end of the string we output one character
7143 too many. */
7144
acec9514
JH
7145 if (address[seglen] == '\0') { yield->ptr--; break; }
7146 yield = string_catn(yield, outsep, 1);
29f89cad
PH
7147 address += seglen + 1;
7148 }
7149
7150 /* Output a separator after the string: we will remove the
7151 redundant final one at the end. */
7152
acec9514 7153 yield = string_catn(yield, outsep, 1);
29f89cad
PH
7154 }
7155
7156 if (saveend == '\0') break;
7157 sub = p + 1;
7158 }
7159
7160 /* If we have generated anything, remove the redundant final
7161 separator. */
7162
acec9514 7163 if (yield->ptr != save_ptr) yield->ptr--;
8768d548 7164 f.parse_allow_group = FALSE;
29f89cad
PH
7165 continue;
7166 }
7167
7168
059ec3d9
PH
7169 /* quote puts a string in quotes if it is empty or contains anything
7170 other than alphamerics, underscore, dot, or hyphen.
7171
7172 quote_local_part puts a string in quotes if RFC 2821/2822 requires it to
7173 be quoted in order to be a valid local part.
7174
7175 In both cases, newlines and carriage returns are converted into \n and \r
7176 respectively */
7177
7178 case EOP_QUOTE:
7179 case EOP_QUOTE_LOCAL_PART:
7180 if (arg == NULL)
7181 {
7182 BOOL needs_quote = (*sub == 0); /* TRUE for empty string */
7183 uschar *t = sub - 1;
7184
7185 if (c == EOP_QUOTE)
7186 {
7187 while (!needs_quote && *(++t) != 0)
7188 needs_quote = !isalnum(*t) && !strchr("_-.", *t);
7189 }
7190 else /* EOP_QUOTE_LOCAL_PART */
7191 {
7192 while (!needs_quote && *(++t) != 0)
7193 needs_quote = !isalnum(*t) &&
7194 strchr("!#$%&'*+-/=?^_`{|}~", *t) == NULL &&
7195 (*t != '.' || t == sub || t[1] == 0);
7196 }
7197
7198 if (needs_quote)
7199 {
acec9514 7200 yield = string_catn(yield, US"\"", 1);
059ec3d9
PH
7201 t = sub - 1;
7202 while (*(++t) != 0)
7203 {
7204 if (*t == '\n')
acec9514 7205 yield = string_catn(yield, US"\\n", 2);
059ec3d9 7206 else if (*t == '\r')
acec9514 7207 yield = string_catn(yield, US"\\r", 2);
059ec3d9
PH
7208 else
7209 {
7210 if (*t == '\\' || *t == '"')
acec9514
JH
7211 yield = string_catn(yield, US"\\", 1);
7212 yield = string_catn(yield, t, 1);
059ec3d9
PH
7213 }
7214 }
acec9514 7215 yield = string_catn(yield, US"\"", 1);
059ec3d9 7216 }
acec9514 7217 else yield = string_cat(yield, sub);
059ec3d9
PH
7218 continue;
7219 }
7220
7221 /* quote_lookuptype does lookup-specific quoting */
7222
7223 else
7224 {
7225 int n;
7226 uschar *opt = Ustrchr(arg, '_');
7227
7228 if (opt != NULL) *opt++ = 0;
7229
7230 n = search_findtype(arg, Ustrlen(arg));
7231 if (n < 0)
7232 {
7233 expand_string_message = search_error_message;
7234 goto EXPAND_FAILED;
7235 }
7236
e6d225ae
DW
7237 if (lookup_list[n]->quote != NULL)
7238 sub = (lookup_list[n]->quote)(sub, opt);
059ec3d9
PH
7239 else if (opt != NULL) sub = NULL;
7240
7241 if (sub == NULL)
7242 {
7243 expand_string_message = string_sprintf(
7244 "\"%s\" unrecognized after \"${quote_%s\"",
7245 opt, arg);
7246 goto EXPAND_FAILED;
7247 }
7248
acec9514 7249 yield = string_cat(yield, sub);
059ec3d9
PH
7250 continue;
7251 }
7252
7253 /* rx quote sticks in \ before any non-alphameric character so that
7254 the insertion works in a regular expression. */
7255
7256 case EOP_RXQUOTE:
7257 {
7258 uschar *t = sub - 1;
7259 while (*(++t) != 0)
7260 {
7261 if (!isalnum(*t))
acec9514
JH
7262 yield = string_catn(yield, US"\\", 1);
7263 yield = string_catn(yield, t, 1);
059ec3d9
PH
7264 }
7265 continue;
7266 }
7267
7268 /* RFC 2047 encodes, assuming headers_charset (default ISO 8859-1) as
7269 prescribed by the RFC, if there are characters that need to be encoded */
7270
7271 case EOP_RFC2047:
7272 {
14702f5b 7273 uschar buffer[2048];
55414b25 7274 const uschar *string = parse_quote_2047(sub, Ustrlen(sub), headers_charset,
46218253 7275 buffer, sizeof(buffer), FALSE);
acec9514 7276 yield = string_cat(yield, string);
059ec3d9
PH
7277 continue;
7278 }
7279
9c57cbc0
PH
7280 /* RFC 2047 decode */
7281
7282 case EOP_RFC2047D:
7283 {
7284 int len;
7285 uschar *error;
7286 uschar *decoded = rfc2047_decode(sub, check_rfc2047_length,
7287 headers_charset, '?', &len, &error);
7288 if (error != NULL)
7289 {
7290 expand_string_message = error;
7291 goto EXPAND_FAILED;
7292 }
acec9514 7293 yield = string_catn(yield, decoded, len);
9c57cbc0
PH
7294 continue;
7295 }
7296
059ec3d9
PH
7297 /* from_utf8 converts UTF-8 to 8859-1, turning non-existent chars into
7298 underscores */
7299
7300 case EOP_FROM_UTF8:
7301 {
7302 while (*sub != 0)
7303 {
7304 int c;
7305 uschar buff[4];
7306 GETUTF8INC(c, sub);
7307 if (c > 255) c = '_';
7308 buff[0] = c;
acec9514 7309 yield = string_catn(yield, buff, 1);
059ec3d9
PH
7310 }
7311 continue;
7312 }
7313
b9c2e32f 7314 /* replace illegal UTF-8 sequences by replacement character */
94431adb 7315
b9c2e32f
AR
7316 #define UTF8_REPLACEMENT_CHAR US"?"
7317
7318 case EOP_UTF8CLEAN:
7319 {
85098ee7 7320 int seq_len = 0, index = 0;
e3dd1d67 7321 int bytes_left = 0;
0a682b6c
PP
7322 long codepoint = -1;
7323 int complete;
b9c2e32f 7324 uschar seq_buff[4]; /* accumulate utf-8 here */
94431adb 7325
b9c2e32f
AR
7326 while (*sub != 0)
7327 {
0a682b6c 7328 complete = 0;
e8e86723 7329 uschar c = *sub++;
b9c2e32f 7330
e3dd1d67 7331 if (bytes_left)
b9c2e32f
AR
7332 {
7333 if ((c & 0xc0) != 0x80)
b9c2e32f
AR
7334 /* wrong continuation byte; invalidate all bytes */
7335 complete = 1; /* error */
b9c2e32f
AR
7336 else
7337 {
7338 codepoint = (codepoint << 6) | (c & 0x3f);
7339 seq_buff[index++] = c;
7340 if (--bytes_left == 0) /* codepoint complete */
b9c2e32f 7341 if(codepoint > 0x10FFFF) /* is it too large? */
e8e86723 7342 complete = -1; /* error (RFC3629 limit) */
b9c2e32f
AR
7343 else
7344 { /* finished; output utf-8 sequence */
acec9514 7345 yield = string_catn(yield, seq_buff, seq_len);
b9c2e32f
AR
7346 index = 0;
7347 }
b9c2e32f
AR
7348 }
7349 }
7350 else /* no bytes left: new sequence */
7351 {
7352 if((c & 0x80) == 0) /* 1-byte sequence, US-ASCII, keep it */
7353 {
acec9514 7354 yield = string_catn(yield, &c, 1);
b9c2e32f
AR
7355 continue;
7356 }
7357 if((c & 0xe0) == 0xc0) /* 2-byte sequence */
7358 {
10cc8a1e
AR
7359 if(c == 0xc0 || c == 0xc1) /* 0xc0 and 0xc1 are illegal */
7360 complete = -1;
7361 else
7362 {
7363 bytes_left = 1;
7364 codepoint = c & 0x1f;
7365 }
b9c2e32f
AR
7366 }
7367 else if((c & 0xf0) == 0xe0) /* 3-byte sequence */
7368 {
7369 bytes_left = 2;
7370 codepoint = c & 0x0f;
7371 }
7372 else if((c & 0xf8) == 0xf0) /* 4-byte sequence */
7373 {
7374 bytes_left = 3;
7375 codepoint = c & 0x07;
7376 }
7377 else /* invalid or too long (RFC3629 allows only 4 bytes) */
7378 complete = -1;
7379
7380 seq_buff[index++] = c;
7381 seq_len = bytes_left + 1;
7382 } /* if(bytes_left) */
7383
7384 if (complete != 0)
7385 {
7386 bytes_left = index = 0;
acec9514 7387 yield = string_catn(yield, UTF8_REPLACEMENT_CHAR, 1);
b9c2e32f
AR
7388 }
7389 if ((complete == 1) && ((c & 0x80) == 0))
4e08fd50 7390 /* ASCII character follows incomplete sequence */
acec9514 7391 yield = string_catn(yield, &c, 1);
b9c2e32f 7392 }
0a682b6c
PP
7393 /* If given a sequence truncated mid-character, we also want to report ?
7394 * Eg, ${length_1:フィル} is one byte, not one character, so we expect
7395 * ${utf8clean:${length_1:フィル}} to yield '?' */
7396 if (bytes_left != 0)
7397 {
7398 yield = string_catn(yield, UTF8_REPLACEMENT_CHAR, 1);
7399 }
b9c2e32f
AR
7400 continue;
7401 }
7402
8c5d388a 7403#ifdef SUPPORT_I18N
4e08fd50
JH
7404 case EOP_UTF8_DOMAIN_TO_ALABEL:
7405 {
7406 uschar * error = NULL;
7407 uschar * s = string_domain_utf8_to_alabel(sub, &error);
7408 if (error)
7409 {
7410 expand_string_message = string_sprintf(
7411 "error converting utf8 (%s) to alabel: %s",
7412 string_printing(sub), error);
7413 goto EXPAND_FAILED;
7414 }
acec9514 7415 yield = string_cat(yield, s);
4e08fd50
JH
7416 continue;
7417 }
7418
7419 case EOP_UTF8_DOMAIN_FROM_ALABEL:
7420 {
7421 uschar * error = NULL;
7422 uschar * s = string_domain_alabel_to_utf8(sub, &error);
7423 if (error)
7424 {
7425 expand_string_message = string_sprintf(
7426 "error converting alabel (%s) to utf8: %s",
7427 string_printing(sub), error);
7428 goto EXPAND_FAILED;
7429 }
acec9514 7430 yield = string_cat(yield, s);
4e08fd50
JH
7431 continue;
7432 }
7433
7434 case EOP_UTF8_LOCALPART_TO_ALABEL:
7435 {
7436 uschar * error = NULL;
7437 uschar * s = string_localpart_utf8_to_alabel(sub, &error);
7438 if (error)
7439 {
7440 expand_string_message = string_sprintf(
7441 "error converting utf8 (%s) to alabel: %s",
7442 string_printing(sub), error);
7443 goto EXPAND_FAILED;
7444 }
acec9514
JH
7445 yield = string_cat(yield, s);
7446 DEBUG(D_expand) debug_printf_indent("yield: '%s'\n", yield->s);
4e08fd50
JH
7447 continue;
7448 }
7449
7450 case EOP_UTF8_LOCALPART_FROM_ALABEL:
7451 {
7452 uschar * error = NULL;
7453 uschar * s = string_localpart_alabel_to_utf8(sub, &error);
7454 if (error)
7455 {
7456 expand_string_message = string_sprintf(
7457 "error converting alabel (%s) to utf8: %s",
7458 string_printing(sub), error);
7459 goto EXPAND_FAILED;
7460 }
acec9514 7461 yield = string_cat(yield, s);
4e08fd50
JH
7462 continue;
7463 }
7464#endif /* EXPERIMENTAL_INTERNATIONAL */
7465
059ec3d9
PH
7466 /* escape turns all non-printing characters into escape sequences. */
7467
7468 case EOP_ESCAPE:
7469 {
3367f8c2 7470 const uschar * t = string_printing(sub);
acec9514 7471 yield = string_cat(yield, t);
059ec3d9
PH
7472 continue;
7473 }
7474
3367f8c2
JH
7475 case EOP_ESCAPE8BIT:
7476 {
7477 const uschar * s = sub;
7478 uschar c;
7479
4dc2379a 7480 for (s = sub; (c = *s); s++)
3367f8c2 7481 yield = c < 127 && c != '\\'
acec9514
JH
7482 ? string_catn(yield, s, 1)
7483 : string_catn(yield, string_sprintf("\\%03o", c), 4);
3367f8c2
JH
7484 continue;
7485 }
7486
059ec3d9
PH
7487 /* Handle numeric expression evaluation */
7488
7489 case EOP_EVAL:
7490 case EOP_EVAL10:
7491 {
7492 uschar *save_sub = sub;
7493 uschar *error = NULL;
97d17305 7494 int_eximarith_t n = eval_expr(&sub, (c == EOP_EVAL10), &error, FALSE);
059ec3d9
PH
7495 if (error != NULL)
7496 {
7497 expand_string_message = string_sprintf("error in expression "
bb07bcd3
JH
7498 "evaluation: %s (after processing \"%.*s\")", error,
7499 (int)(sub-save_sub), save_sub);
059ec3d9
PH
7500 goto EXPAND_FAILED;
7501 }
97d17305 7502 sprintf(CS var_buffer, PR_EXIM_ARITH, n);
acec9514 7503 yield = string_cat(yield, var_buffer);
059ec3d9
PH
7504 continue;
7505 }
7506
7507 /* Handle time period formating */
7508
f90d018c
PH
7509 case EOP_TIME_EVAL:
7510 {
7511 int n = readconf_readtime(sub, 0, FALSE);
7512 if (n < 0)
7513 {
7514 expand_string_message = string_sprintf("string \"%s\" is not an "
7515 "Exim time interval in \"%s\" operator", sub, name);
7516 goto EXPAND_FAILED;
7517 }
7518 sprintf(CS var_buffer, "%d", n);
acec9514 7519 yield = string_cat(yield, var_buffer);
f90d018c
PH
7520 continue;
7521 }
7522
059ec3d9
PH
7523 case EOP_TIME_INTERVAL:
7524 {
7525 int n;
7526 uschar *t = read_number(&n, sub);
7527 if (*t != 0) /* Not A Number*/
7528 {
7529 expand_string_message = string_sprintf("string \"%s\" is not a "
7530 "positive number in \"%s\" operator", sub, name);
7531 goto EXPAND_FAILED;
7532 }
7533 t = readconf_printtime(n);
acec9514 7534 yield = string_cat(yield, t);
059ec3d9
PH
7535 continue;
7536 }
7537
7538 /* Convert string to base64 encoding */
7539
7540 case EOP_STR2B64:
9aa35e9c 7541 case EOP_BASE64:
59b87190 7542 {
b81207d2 7543#ifdef SUPPORT_TLS
59b87190
JH
7544 uschar * s = vp && *(void **)vp->value
7545 ? tls_cert_der_b64(*(void **)vp->value)
7546 : b64encode(sub, Ustrlen(sub));
b81207d2
JH
7547#else
7548 uschar * s = b64encode(sub, Ustrlen(sub));
7549#endif
acec9514 7550 yield = string_cat(yield, s);
59b87190
JH
7551 continue;
7552 }
059ec3d9 7553
9aa35e9c
JH
7554 case EOP_BASE64D:
7555 {
59b87190 7556 uschar * s;
9aa35e9c
JH
7557 int len = b64decode(sub, &s);
7558 if (len < 0)
7559 {
7560 expand_string_message = string_sprintf("string \"%s\" is not "
7561 "well-formed for \"%s\" operator", sub, name);
7562 goto EXPAND_FAILED;
7563 }
acec9514 7564 yield = string_cat(yield, s);
9aa35e9c
JH
7565 continue;
7566 }
7567
059ec3d9
PH
7568 /* strlen returns the length of the string */
7569
7570 case EOP_STRLEN:
7571 {
7572 uschar buff[24];
7573 (void)sprintf(CS buff, "%d", Ustrlen(sub));
acec9514 7574 yield = string_cat(yield, buff);
059ec3d9
PH
7575 continue;
7576 }
7577
7578 /* length_n or l_n takes just the first n characters or the whole string,
7579 whichever is the shorter;
7580
7581 substr_m_n, and s_m_n take n characters from offset m; negative m take
7582 from the end; l_n is synonymous with s_0_n. If n is omitted in substr it
7583 takes the rest, either to the right or to the left.
7584
7585 hash_n or h_n makes a hash of length n from the string, yielding n
7586 characters from the set a-z; hash_n_m makes a hash of length n, but
7587 uses m characters from the set a-zA-Z0-9.
7588
7589 nhash_n returns a single number between 0 and n-1 (in text form), while
7590 nhash_n_m returns a div/mod hash as two numbers "a/b". The first lies
7591 between 0 and n-1 and the second between 0 and m-1. */
7592
7593 case EOP_LENGTH:
7594 case EOP_L:
7595 case EOP_SUBSTR:
7596 case EOP_S:
7597 case EOP_HASH:
7598 case EOP_H:
7599 case EOP_NHASH:
7600 case EOP_NH:
7601 {
7602 int sign = 1;
7603 int value1 = 0;
7604 int value2 = -1;
7605 int *pn;
7606 int len;
7607 uschar *ret;
7608
7609 if (arg == NULL)
7610 {
7611 expand_string_message = string_sprintf("missing values after %s",
7612 name);
7613 goto EXPAND_FAILED;
7614 }
7615
7616 /* "length" has only one argument, effectively being synonymous with
7617 substr_0_n. */
7618
7619 if (c == EOP_LENGTH || c == EOP_L)
7620 {
7621 pn = &value2;
7622 value2 = 0;
7623 }
7624
7625 /* The others have one or two arguments; for "substr" the first may be
7626 negative. The second being negative means "not supplied". */
7627
7628 else
7629 {
7630 pn = &value1;
7631 if (name[0] == 's' && *arg == '-') { sign = -1; arg++; }
7632 }
7633
7634 /* Read up to two numbers, separated by underscores */
7635
7636 ret = arg;
7637 while (*arg != 0)
7638 {
7639 if (arg != ret && *arg == '_' && pn == &value1)
7640 {
7641 pn = &value2;
7642 value2 = 0;
7643 if (arg[1] != 0) arg++;
7644 }
7645 else if (!isdigit(*arg))
7646 {
7647 expand_string_message =
7648 string_sprintf("non-digit after underscore in \"%s\"", name);
7649 goto EXPAND_FAILED;
7650 }
7651 else *pn = (*pn)*10 + *arg++ - '0';
7652 }
7653 value1 *= sign;
7654
7655 /* Perform the required operation */
7656
7657 ret =
7658 (c == EOP_HASH || c == EOP_H)?
7659 compute_hash(sub, value1, value2, &len) :
7660 (c == EOP_NHASH || c == EOP_NH)?
7661 compute_nhash(sub, value1, value2, &len) :
7662 extract_substr(sub, value1, value2, &len);
7663
7664 if (ret == NULL) goto EXPAND_FAILED;
acec9514 7665 yield = string_catn(yield, ret, len);
059ec3d9
PH
7666 continue;
7667 }
7668
7669 /* Stat a path */
7670
7671 case EOP_STAT:
7672 {
7673 uschar *s;
7674 uschar smode[12];
7675 uschar **modetable[3];
7676 int i;
7677 mode_t mode;
7678 struct stat st;
7679
254e032f
PH
7680 if ((expand_forbid & RDO_EXISTS) != 0)
7681 {
7682 expand_string_message = US"Use of the stat() expansion is not permitted";
7683 goto EXPAND_FAILED;
7684 }
7685
059ec3d9
PH
7686 if (stat(CS sub, &st) < 0)
7687 {
7688 expand_string_message = string_sprintf("stat(%s) failed: %s",
7689 sub, strerror(errno));
7690 goto EXPAND_FAILED;
7691 }
7692 mode = st.st_mode;
7693 switch (mode & S_IFMT)
7694 {
7695 case S_IFIFO: smode[0] = 'p'; break;
7696 case S_IFCHR: smode[0] = 'c'; break;
7697 case S_IFDIR: smode[0] = 'd'; break;
7698 case S_IFBLK: smode[0] = 'b'; break;
7699 case S_IFREG: smode[0] = '-'; break;
7700 default: smode[0] = '?'; break;
7701 }
7702
7703 modetable[0] = ((mode & 01000) == 0)? mtable_normal : mtable_sticky;
7704 modetable[1] = ((mode & 02000) == 0)? mtable_normal : mtable_setid;
7705 modetable[2] = ((mode & 04000) == 0)? mtable_normal : mtable_setid;
7706
7707 for (i = 0; i < 3; i++)
7708 {
7709 memcpy(CS(smode + 7 - i*3), CS(modetable[i][mode & 7]), 3);
7710 mode >>= 3;
7711 }
7712
7713 smode[10] = 0;
7714 s = string_sprintf("mode=%04lo smode=%s inode=%ld device=%ld links=%ld "
b1c749bb 7715 "uid=%ld gid=%ld size=" OFF_T_FMT " atime=%ld mtime=%ld ctime=%ld",
059ec3d9
PH
7716 (long)(st.st_mode & 077777), smode, (long)st.st_ino,
7717 (long)st.st_dev, (long)st.st_nlink, (long)st.st_uid,
b1c749bb 7718 (long)st.st_gid, st.st_size, (long)st.st_atime,
059ec3d9 7719 (long)st.st_mtime, (long)st.st_ctime);
acec9514 7720 yield = string_cat(yield, s);
059ec3d9
PH
7721 continue;
7722 }
7723
17c76198 7724 /* vaguely random number less than N */
9e3331ea
TK
7725
7726 case EOP_RANDINT:
7727 {
97d17305 7728 int_eximarith_t max;
9e3331ea
TK
7729 uschar *s;
7730
7685ce68 7731 max = expanded_string_integer(sub, TRUE);
9e3331ea
TK
7732 if (expand_string_message != NULL)
7733 goto EXPAND_FAILED;
17c76198 7734 s = string_sprintf("%d", vaguely_random_number((int)max));
acec9514 7735 yield = string_cat(yield, s);
9e3331ea
TK
7736 continue;
7737 }
7738
83e029d5
PP
7739 /* Reverse IP, including IPv6 to dotted-nibble */
7740
7741 case EOP_REVERSE_IP:
7742 {
7743 int family, maskptr;
7744 uschar reversed[128];
7745
7746 family = string_is_ip_address(sub, &maskptr);
7747 if (family == 0)
7748 {
7749 expand_string_message = string_sprintf(
7750 "reverse_ip() not given an IP address [%s]", sub);
7751 goto EXPAND_FAILED;
7752 }
7753 invert_address(reversed, sub);
acec9514 7754 yield = string_cat(yield, reversed);
83e029d5
PP
7755 continue;
7756 }
7757
059ec3d9
PH
7758 /* Unknown operator */
7759
7760 default:
7761 expand_string_message =
7762 string_sprintf("unknown expansion operator \"%s\"", name);
7763 goto EXPAND_FAILED;
7764 }
7765 }
7766
7767 /* Handle a plain name. If this is the first thing in the expansion, release
7768 the pre-allocated buffer. If the result data is known to be in a new buffer,
7769 newsize will be set to the size of that buffer, and we can just point at that
7770 store instead of copying. Many expansion strings contain just one reference,
7771 so this is a useful optimization, especially for humungous headers
7772 ($message_headers). */
2e23003a 7773 /*{*/
059ec3d9
PH
7774 if (*s++ == '}')
7775 {
7776 int len;
7777 int newsize = 0;
bb07bcd3 7778 gstring * g = NULL;
acec9514 7779
bb07bcd3
JH
7780 if (!yield)
7781 g = store_get(sizeof(gstring));
7782 else if (yield->ptr == 0)
059ec3d9 7783 {
d6b4d938 7784 if (resetok) store_reset(yield);
059ec3d9 7785 yield = NULL;
bb07bcd3 7786 g = store_get(sizeof(gstring)); /* alloc _before_ calling find_variable() */
059ec3d9 7787 }
8487aee9 7788 if (!(value = find_variable(name, FALSE, skipping, &newsize)))
059ec3d9
PH
7789 {
7790 expand_string_message =
7791 string_sprintf("unknown variable in \"${%s}\"", name);
641cb756 7792 check_variable_error_message(name);
059ec3d9
PH
7793 goto EXPAND_FAILED;
7794 }
7795 len = Ustrlen(value);
8487aee9 7796 if (!yield && newsize)
059ec3d9 7797 {
acec9514
JH
7798 yield = g;
7799 yield->size = newsize;
7800 yield->ptr = len;
7801 yield->s = value;
059ec3d9 7802 }
8487aee9 7803 else
acec9514 7804 yield = string_catn(yield, value, len);
059ec3d9
PH
7805 continue;
7806 }
7807
7808 /* Else there's something wrong */
7809
7810 expand_string_message =
7811 string_sprintf("\"${%s\" is not a known operator (or a } is missing "
7812 "in a variable reference)", name);
7813 goto EXPAND_FAILED;
7814 }
7815
7816/* If we hit the end of the string when ket_ends is set, there is a missing
7817terminating brace. */
7818
7819if (ket_ends && *s == 0)
7820 {
617d3932
JH
7821 expand_string_message = malformed_header
7822 ? US"missing } at end of string - could be header name not terminated by colon"
7823 : US"missing } at end of string";
059ec3d9
PH
7824 goto EXPAND_FAILED;
7825 }
7826
7827/* Expansion succeeded; yield may still be NULL here if nothing was actually
7828added to the string. If so, set up an empty string. Add a terminating zero. If
7829left != NULL, return a pointer to the terminator. */
7830
acec9514
JH
7831if (!yield)
7832 yield = string_get(1);
7833(void) string_from_gstring(yield);
7834if (left) *left = s;
059ec3d9
PH
7835
7836/* Any stacking store that was used above the final string is no longer needed.
7837In many cases the final string will be the first one that was got and so there
7838will be optimal store usage. */
7839
acec9514 7840if (resetok) store_reset(yield->s + (yield->size = yield->ptr + 1));
b0e85a8f
JH
7841else if (resetok_p) *resetok_p = FALSE;
7842
059ec3d9 7843DEBUG(D_expand)
ae8f9024
JH
7844 DEBUG(D_noutf8)
7845 {
7846 debug_printf_indent("|--expanding: %.*s\n", (int)(s - string), string);
7847 debug_printf_indent("%sresult: %s\n",
7848 skipping ? "|-----" : "\\_____", yield->s);
7849 if (skipping)
7850 debug_printf_indent("\\___skipping: result is not used\n");
7851 }
7852 else
7853 {
7854 debug_printf_indent(UTF8_VERT_RIGHT UTF8_HORIZ UTF8_HORIZ
7855 "expanding: %.*s\n",
7856 (int)(s - string), string);
7857 debug_printf_indent("%s"
7858 UTF8_HORIZ UTF8_HORIZ UTF8_HORIZ UTF8_HORIZ UTF8_HORIZ
7859 "result: %s\n",
7860 skipping ? UTF8_VERT_RIGHT : UTF8_UP_RIGHT,
7861 yield->s);
7862 if (skipping)
7863 debug_printf_indent(UTF8_UP_RIGHT UTF8_HORIZ UTF8_HORIZ UTF8_HORIZ
7864 "skipping: result is not used\n");
7865 }
e1d04f48 7866expand_level--;
acec9514 7867return yield->s;
059ec3d9
PH
7868
7869/* This is the failure exit: easiest to program with a goto. We still need
7870to update the pointer to the terminator, for cases of nested calls with "fail".
7871*/
7872
7873EXPAND_FAILED_CURLY:
e47376be
JH
7874if (malformed_header)
7875 expand_string_message =
7876 US"missing or misplaced { or } - could be header name not terminated by colon";
7877
7878else if (!expand_string_message || !*expand_string_message)
7879 expand_string_message = US"missing or misplaced { or }";
059ec3d9
PH
7880
7881/* At one point, Exim reset the store to yield (if yield was not NULL), but
7882that is a bad idea, because expand_string_message is in dynamic store. */
7883
7884EXPAND_FAILED:
acec9514 7885if (left) *left = s;
059ec3d9 7886DEBUG(D_expand)
ae8f9024
JH
7887 DEBUG(D_noutf8)
7888 {
7889 debug_printf_indent("|failed to expand: %s\n", string);
7890 debug_printf_indent("%serror message: %s\n",
7891 f.expand_string_forcedfail ? "|---" : "\\___", expand_string_message);
7892 if (f.expand_string_forcedfail)
7893 debug_printf_indent("\\failure was forced\n");
7894 }
7895 else
7896 {
7897 debug_printf_indent(UTF8_VERT_RIGHT "failed to expand: %s\n",
7898 string);
7899 debug_printf_indent("%s" UTF8_HORIZ UTF8_HORIZ UTF8_HORIZ
7900 "error message: %s\n",
7901 f.expand_string_forcedfail ? UTF8_VERT_RIGHT : UTF8_UP_RIGHT,
7902 expand_string_message);
7903 if (f.expand_string_forcedfail)
7904 debug_printf_indent(UTF8_UP_RIGHT "failure was forced\n");
7905 }
ce93c6d8 7906if (resetok_p && !resetok) *resetok_p = FALSE;
e1d04f48 7907expand_level--;
059ec3d9
PH
7908return NULL;
7909}
7910
7911
7912/* This is the external function call. Do a quick check for any expansion
7913metacharacters, and if there are none, just return the input string.
7914
7915Argument: the string to be expanded
7916Returns: the expanded string, or NULL if expansion failed; if failure was
7917 due to a lookup deferring, search_find_defer will be TRUE
7918*/
7919
ce93c6d8
JH
7920const uschar *
7921expand_cstring(const uschar * string)
059ec3d9 7922{
ce93c6d8
JH
7923if (Ustrpbrk(string, "$\\") != NULL)
7924 {
7925 int old_pool = store_pool;
7926 uschar * s;
7927
8768d548 7928 f.search_find_defer = FALSE;
ce93c6d8
JH
7929 malformed_header = FALSE;
7930 store_pool = POOL_MAIN;
7931 s = expand_string_internal(string, FALSE, NULL, FALSE, TRUE, NULL);
7932 store_pool = old_pool;
7933 return s;
7934 }
7935return string;
059ec3d9
PH
7936}
7937
7938
ce93c6d8
JH
7939uschar *
7940expand_string(uschar * string)
55414b25 7941{
ce93c6d8 7942return US expand_cstring(CUS string);
55414b25
JH
7943}
7944
7945
7946
ce93c6d8
JH
7947
7948
059ec3d9
PH
7949/*************************************************
7950* Expand and copy *
7951*************************************************/
7952
7953/* Now and again we want to expand a string and be sure that the result is in a
7954new bit of store. This function does that.
55414b25 7955Since we know it has been copied, the de-const cast is safe.
059ec3d9
PH
7956
7957Argument: the string to be expanded
7958Returns: the expanded string, always in a new bit of store, or NULL
7959*/
7960
7961uschar *
55414b25 7962expand_string_copy(const uschar *string)
059ec3d9 7963{
55414b25 7964const uschar *yield = expand_cstring(string);
059ec3d9 7965if (yield == string) yield = string_copy(string);
55414b25 7966return US yield;
059ec3d9
PH
7967}
7968
7969
7970
7971/*************************************************
7972* Expand and interpret as an integer *
7973*************************************************/
7974
7975/* Expand a string, and convert the result into an integer.
7976
d45b1de8
PH
7977Arguments:
7978 string the string to be expanded
7979 isplus TRUE if a non-negative number is expected
059ec3d9
PH
7980
7981Returns: the integer value, or
7982 -1 for an expansion error ) in both cases, message in
7983 -2 for an integer interpretation error ) expand_string_message
d45b1de8 7984 expand_string_message is set NULL for an OK integer
059ec3d9
PH
7985*/
7986
97d17305 7987int_eximarith_t
d45b1de8 7988expand_string_integer(uschar *string, BOOL isplus)
059ec3d9 7989{
7685ce68
TF
7990return expanded_string_integer(expand_string(string), isplus);
7991}
7992
7993
7994/*************************************************
7995 * Interpret string as an integer *
7996 *************************************************/
7997
7998/* Convert a string (that has already been expanded) into an integer.
7999
8000This function is used inside the expansion code.
8001
8002Arguments:
8003 s the string to be expanded
8004 isplus TRUE if a non-negative number is expected
8005
8006Returns: the integer value, or
8007 -1 if string is NULL (which implies an expansion error)
8008 -2 for an integer interpretation error
8009 expand_string_message is set NULL for an OK integer
8010*/
8011
8012static int_eximarith_t
55414b25 8013expanded_string_integer(const uschar *s, BOOL isplus)
7685ce68 8014{
97d17305 8015int_eximarith_t value;
059ec3d9
PH
8016uschar *msg = US"invalid integer \"%s\"";
8017uschar *endptr;
8018
d45b1de8
PH
8019/* If expansion failed, expand_string_message will be set. */
8020
059ec3d9
PH
8021if (s == NULL) return -1;
8022
8023/* On an overflow, strtol() returns LONG_MAX or LONG_MIN, and sets errno
8024to ERANGE. When there isn't an overflow, errno is not changed, at least on some
8025systems, so we set it zero ourselves. */
8026
8027errno = 0;
d45b1de8 8028expand_string_message = NULL; /* Indicates no error */
b52bc06e
NM
8029
8030/* Before Exim 4.64, strings consisting entirely of whitespace compared
8031equal to 0. Unfortunately, people actually relied upon that, so preserve
8032the behaviour explicitly. Stripping leading whitespace is a harmless
8033noop change since strtol skips it anyway (provided that there is a number
8034to find at all). */
8035if (isspace(*s))
8036 {
8037 while (isspace(*s)) ++s;
8038 if (*s == '\0')
8039 {
8040 DEBUG(D_expand)
e1d04f48 8041 debug_printf_indent("treating blank string as number 0\n");
b52bc06e
NM
8042 return 0;
8043 }
8044 }
8045
aa7c82b2 8046value = strtoll(CS s, CSS &endptr, 10);
059ec3d9
PH
8047
8048if (endptr == s)
8049 {
8050 msg = US"integer expected but \"%s\" found";
8051 }
d45b1de8
PH
8052else if (value < 0 && isplus)
8053 {
8054 msg = US"non-negative integer expected but \"%s\" found";
8055 }
059ec3d9
PH
8056else
8057 {
4eb9d6ef 8058 switch (tolower(*endptr))
059ec3d9 8059 {
4eb9d6ef
JH
8060 default:
8061 break;
8062 case 'k':
4328fd3c 8063 if (value > EXIM_ARITH_MAX/1024 || value < EXIM_ARITH_MIN/1024) errno = ERANGE;
aa7c82b2 8064 else value *= 1024;
4eb9d6ef
JH
8065 endptr++;
8066 break;
8067 case 'm':
4328fd3c 8068 if (value > EXIM_ARITH_MAX/(1024*1024) || value < EXIM_ARITH_MIN/(1024*1024)) errno = ERANGE;
4eb9d6ef
JH
8069 else value *= 1024*1024;
8070 endptr++;
8071 break;
8072 case 'g':
4328fd3c 8073 if (value > EXIM_ARITH_MAX/(1024*1024*1024) || value < EXIM_ARITH_MIN/(1024*1024*1024)) errno = ERANGE;
4eb9d6ef
JH
8074 else value *= 1024*1024*1024;
8075 endptr++;
8076 break;
059ec3d9
PH
8077 }
8078 if (errno == ERANGE)
8079 msg = US"absolute value of integer \"%s\" is too large (overflow)";
8080 else
8081 {
8082 while (isspace(*endptr)) endptr++;
725735cd 8083 if (*endptr == 0) return value;
059ec3d9
PH
8084 }
8085 }
8086
8087expand_string_message = string_sprintf(CS msg, s);
8088return -2;
8089}
8090
059ec3d9 8091
9c695f6d
JH
8092/* These values are usually fixed boolean values, but they are permitted to be
8093expanded strings.
8094
8095Arguments:
8096 addr address being routed
8097 mtype the module type
8098 mname the module name
8099 dbg_opt debug selectors
8100 oname the option name
8101 bvalue the router's boolean value
8102 svalue the router's string value
8103 rvalue where to put the returned value
8104
8105Returns: OK value placed in rvalue
8106 DEFER expansion failed
8107*/
8108
8109int
8110exp_bool(address_item *addr,
8111 uschar *mtype, uschar *mname, unsigned dbg_opt,
8112 uschar *oname, BOOL bvalue,
8113 uschar *svalue, BOOL *rvalue)
8114{
8115uschar *expanded;
8116if (svalue == NULL) { *rvalue = bvalue; return OK; }
8117
8118expanded = expand_string(svalue);
8119if (expanded == NULL)
8120 {
8768d548 8121 if (f.expand_string_forcedfail)
9c695f6d
JH
8122 {
8123 DEBUG(dbg_opt) debug_printf("expansion of \"%s\" forced failure\n", oname);
8124 *rvalue = bvalue;
8125 return OK;
8126 }
8127 addr->message = string_sprintf("failed to expand \"%s\" in %s %s: %s",
8128 oname, mname, mtype, expand_string_message);
8129 DEBUG(dbg_opt) debug_printf("%s\n", addr->message);
8130 return DEFER;
8131 }
8132
8133DEBUG(dbg_opt) debug_printf("expansion of \"%s\" yields \"%s\"\n", oname,
8134 expanded);
8135
8136if (strcmpic(expanded, US"true") == 0 || strcmpic(expanded, US"yes") == 0)
8137 *rvalue = TRUE;
8138else if (strcmpic(expanded, US"false") == 0 || strcmpic(expanded, US"no") == 0)
8139 *rvalue = FALSE;
8140else
8141 {
8142 addr->message = string_sprintf("\"%s\" is not a valid value for the "
8143 "\"%s\" option in the %s %s", expanded, oname, mname, mtype);
8144 return DEFER;
8145 }
8146
8147return OK;
8148}
8149
8150
8151
f42deca9
JH
8152/* Avoid potentially exposing a password in a string about to be logged */
8153
8154uschar *
8155expand_hide_passwords(uschar * s)
8156{
8157return ( ( Ustrstr(s, "failed to expand") != NULL
8158 || Ustrstr(s, "expansion of ") != NULL
0a682b6c 8159 )
f42deca9
JH
8160 && ( Ustrstr(s, "mysql") != NULL
8161 || Ustrstr(s, "pgsql") != NULL
8162 || Ustrstr(s, "redis") != NULL
8163 || Ustrstr(s, "sqlite") != NULL
8164 || Ustrstr(s, "ldap:") != NULL
8165 || Ustrstr(s, "ldaps:") != NULL
8166 || Ustrstr(s, "ldapi:") != NULL
8167 || Ustrstr(s, "ldapdn:") != NULL
8168 || Ustrstr(s, "ldapm:") != NULL
0a682b6c 8169 ) )
f42deca9
JH
8170 ? US"Temporary internal error" : s;
8171}
8172
8173
617d3932
JH
8174/* Read given named file into big_buffer. Use for keying material etc.
8175The content will have an ascii NUL appended.
8176
8177Arguments:
8178 filename as it says
8179
8180Return: pointer to buffer, or NULL on error.
8181*/
8182
8183uschar *
8184expand_file_big_buffer(const uschar * filename)
8185{
8186int fd, off = 0, len;
8187
8188if ((fd = open(CS filename, O_RDONLY)) < 0)
8189 {
8190 log_write(0, LOG_MAIN | LOG_PANIC, "unable to open file for reading: %s",
8191 filename);
8192 return NULL;
8193 }
8194
8195do
8196 {
8197 if ((len = read(fd, big_buffer + off, big_buffer_size - 2 - off)) < 0)
8198 {
8199 (void) close(fd);
8200 log_write(0, LOG_MAIN|LOG_PANIC, "unable to read file: %s", filename);
8201 return NULL;
8202 }
8203 off += len;
8204 }
8205while (len > 0);
8206
8207(void) close(fd);
8208big_buffer[off] = '\0';
8209return big_buffer;
8210}
8211
8212
f42deca9 8213
cf0812d5
JH
8214/*************************************************
8215* Error-checking for testsuite *
8216*************************************************/
8217typedef struct {
cf0812d5
JH
8218 uschar * region_start;
8219 uschar * region_end;
8220 const uschar *var_name;
90341c71 8221 const uschar *var_data;
cf0812d5
JH
8222} err_ctx;
8223
8224static void
8225assert_variable_notin(uschar * var_name, uschar * var_data, void * ctx)
8226{
8227err_ctx * e = ctx;
8228if (var_data >= e->region_start && var_data < e->region_end)
90341c71 8229 {
cf0812d5 8230 e->var_name = CUS var_name;
90341c71
JH
8231 e->var_data = CUS var_data;
8232 }
cf0812d5
JH
8233}
8234
8235void
8236assert_no_variables(void * ptr, int len, const char * filename, int linenumber)
8237{
ce93c6d8
JH
8238err_ctx e = { .region_start = ptr, .region_end = US ptr + len,
8239 .var_name = NULL, .var_data = NULL };
cf0812d5
JH
8240int i;
8241var_entry * v;
8242
8243/* check acl_ variables */
8244tree_walk(acl_var_c, assert_variable_notin, &e);
8245tree_walk(acl_var_m, assert_variable_notin, &e);
8246
8247/* check auth<n> variables */
8248for (i = 0; i < AUTH_VARS; i++) if (auth_vars[i])
8249 assert_variable_notin(US"auth<n>", auth_vars[i], &e);
8250
8251/* check regex<n> variables */
8252for (i = 0; i < REGEX_VARS; i++) if (regex_vars[i])
8253 assert_variable_notin(US"regex<n>", regex_vars[i], &e);
8254
8255/* check known-name variables */
8256for (v = var_table; v < var_table + var_table_size; v++)
8257 if (v->type == vtype_stringptr)
8258 assert_variable_notin(US v->name, *(USS v->value), &e);
8259
ce93c6d8
JH
8260/* check dns and address trees */
8261tree_walk(tree_dns_fails, assert_variable_notin, &e);
8262tree_walk(tree_duplicates, assert_variable_notin, &e);
8263tree_walk(tree_nonrecipients, assert_variable_notin, &e);
8264tree_walk(tree_unusable, assert_variable_notin, &e);
8265
cf0812d5 8266if (e.var_name)
90341c71
JH
8267 log_write(0, LOG_MAIN|LOG_PANIC_DIE,
8268 "live variable '%s' destroyed by reset_store at %s:%d\n- value '%.64s'",
ce93c6d8 8269 e.var_name, filename, linenumber, e.var_data);
cf0812d5
JH
8270}
8271
8272
9c695f6d 8273
059ec3d9
PH
8274/*************************************************
8275**************************************************
8276* Stand-alone test program *
8277**************************************************
8278*************************************************/
8279
8280#ifdef STAND_ALONE
8281
8282
8283BOOL
8284regex_match_and_setup(const pcre *re, uschar *subject, int options, int setup)
8285{
8286int ovector[3*(EXPAND_MAXN+1)];
8287int n = pcre_exec(re, NULL, subject, Ustrlen(subject), 0, PCRE_EOPT|options,
0539a19d 8288 ovector, nelem(ovector));
059ec3d9
PH
8289BOOL yield = n >= 0;
8290if (n == 0) n = EXPAND_MAXN + 1;
8291if (yield)
8292 {
8293 int nn;
8294 expand_nmax = (setup < 0)? 0 : setup + 1;
8295 for (nn = (setup < 0)? 0 : 2; nn < n*2; nn += 2)
8296 {
8297 expand_nstring[expand_nmax] = subject + ovector[nn];
8298 expand_nlength[expand_nmax++] = ovector[nn+1] - ovector[nn];
8299 }
8300 expand_nmax--;
8301 }
8302return yield;
8303}
8304
8305
8306int main(int argc, uschar **argv)
8307{
8308int i;
8309uschar buffer[1024];
8310
8311debug_selector = D_v;
8312debug_file = stderr;
8313debug_fd = fileno(debug_file);
8314big_buffer = malloc(big_buffer_size);
8315
8316for (i = 1; i < argc; i++)
8317 {
8318 if (argv[i][0] == '+')
8319 {
8320 debug_trace_memory = 2;
8321 argv[i]++;
8322 }
8323 if (isdigit(argv[i][0]))
8324 debug_selector = Ustrtol(argv[i], NULL, 0);
8325 else
8326 if (Ustrspn(argv[i], "abcdefghijklmnopqrtsuvwxyz0123456789-.:/") ==
8327 Ustrlen(argv[i]))
8328 {
de78e2d5 8329#ifdef LOOKUP_LDAP
059ec3d9 8330 eldap_default_servers = argv[i];
de78e2d5
JH
8331#endif
8332#ifdef LOOKUP_MYSQL
059ec3d9 8333 mysql_servers = argv[i];
de78e2d5
JH
8334#endif
8335#ifdef LOOKUP_PGSQL
059ec3d9 8336 pgsql_servers = argv[i];
de78e2d5
JH
8337#endif
8338#ifdef LOOKUP_REDIS
9bdd29ad 8339 redis_servers = argv[i];
de78e2d5 8340#endif
059ec3d9 8341 }
de78e2d5 8342#ifdef EXIM_PERL
059ec3d9 8343 else opt_perl_startup = argv[i];
de78e2d5 8344#endif
059ec3d9
PH
8345 }
8346
8347printf("Testing string expansion: debug_level = %d\n\n", debug_level);
8348
8349expand_nstring[1] = US"string 1....";
8350expand_nlength[1] = 8;
8351expand_nmax = 1;
8352
8353#ifdef EXIM_PERL
8354if (opt_perl_startup != NULL)
8355 {
8356 uschar *errstr;
8357 printf("Starting Perl interpreter\n");
8358 errstr = init_perl(opt_perl_startup);
8359 if (errstr != NULL)
8360 {
8361 printf("** error in perl_startup code: %s\n", errstr);
8362 return EXIT_FAILURE;
8363 }
8364 }
8365#endif /* EXIM_PERL */
8366
8367while (fgets(buffer, sizeof(buffer), stdin) != NULL)
8368 {
8369 void *reset_point = store_get(0);
8370 uschar *yield = expand_string(buffer);
8371 if (yield != NULL)
8372 {
8373 printf("%s\n", yield);
8374 store_reset(reset_point);
8375 }
8376 else
8377 {
8768d548 8378 if (f.search_find_defer) printf("search_find deferred\n");
059ec3d9 8379 printf("Failed: %s\n", expand_string_message);
8768d548 8380 if (f.expand_string_forcedfail) printf("Forced failure\n");
059ec3d9
PH
8381 printf("\n");
8382 }
8383 }
8384
8385search_tidyup();
8386
8387return 0;
8388}
8389
8390#endif
8391
9e4dddbd 8392/* vi: aw ai sw=2
b9c2e32f 8393*/
059ec3d9 8394/* End of expand.c */