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Willy Tarreaubaaee002006-06-26 02:48:02 +02001/*
Willy Tarreaucc05fba2009-10-27 21:40:18 +01002 * include/common/standard.h
3 * This files contains some general purpose functions and macros.
4 *
Willy Tarreau348238b2010-01-18 15:05:57 +01005 * Copyright (C) 2000-2010 Willy Tarreau - w@1wt.eu
Willy Tarreaucc05fba2009-10-27 21:40:18 +01006 *
7 * This library is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU Lesser General Public
9 * License as published by the Free Software Foundation, version 2.1
10 * exclusively.
11 *
12 * This library is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 * Lesser General Public License for more details.
16 *
17 * You should have received a copy of the GNU Lesser General Public
18 * License along with this library; if not, write to the Free Software
19 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
20 */
Willy Tarreaubaaee002006-06-26 02:48:02 +020021
Willy Tarreau2dd0d472006-06-29 17:53:05 +020022#ifndef _COMMON_STANDARD_H
23#define _COMMON_STANDARD_H
Willy Tarreaubaaee002006-06-26 02:48:02 +020024
Willy Tarreau167d8b52007-04-09 22:16:12 +020025#include <limits.h>
Willy Tarreau050737f2010-01-14 11:40:12 +010026#include <string.h>
Willy Tarreaufe944602007-10-25 10:34:16 +020027#include <time.h>
Willy Tarreau938b3032007-05-10 06:39:03 +020028#include <sys/types.h>
Willy Tarreaubaaee002006-06-26 02:48:02 +020029#include <netinet/in.h>
Willy Tarreaue3ba5f02006-06-29 18:54:54 +020030#include <common/config.h>
Willy Tarreau45cb4fb2009-10-26 21:10:04 +010031#include <eb32tree.h>
Willy Tarreauca28d1e2007-01-24 18:20:50 +010032#include <proto/fd.h>
Willy Tarreaubaaee002006-06-26 02:48:02 +020033
34/****** string-specific macros and functions ******/
35/* if a > max, then bound <a> to <max>. The macro returns the new <a> */
36#define UBOUND(a, max) ({ typeof(a) b = (max); if ((a) > b) (a) = b; (a); })
37
38/* if a < min, then bound <a> to <min>. The macro returns the new <a> */
39#define LBOUND(a, min) ({ typeof(a) b = (min); if ((a) < b) (a) = b; (a); })
40
41/* returns 1 only if only zero or one bit is set in X, which means that X is a
42 * power of 2, and 0 otherwise */
43#define POWEROF2(x) (((x) & ((x)-1)) == 0)
44
Willy Tarreau5b180202010-07-18 10:40:48 +020045/* operators to compare values. They're ordered that way so that the lowest bit
46 * serves as a negation for the test and contains all tests that are not equal.
47 */
48enum {
49 STD_OP_LE = 0, STD_OP_GT = 1,
50 STD_OP_EQ = 2, STD_OP_NE = 3,
51 STD_OP_GE = 4, STD_OP_LT = 5,
52};
53
Willy Tarreau7d58a632007-01-13 23:06:06 +010054/*
Willy Tarreaubaaee002006-06-26 02:48:02 +020055 * copies at most <size-1> chars from <src> to <dst>. Last char is always
56 * set to 0, unless <size> is 0. The number of chars copied is returned
57 * (excluding the terminating zero).
58 * This code has been optimized for size and speed : on x86, it's 45 bytes
59 * long, uses only registers, and consumes only 4 cycles per char.
60 */
61extern int strlcpy2(char *dst, const char *src, int size);
62
63/*
Willy Tarreau72d759c2007-10-25 12:14:10 +020064 * This function simply returns a locally allocated string containing
Willy Tarreaubaaee002006-06-26 02:48:02 +020065 * the ascii representation for number 'n' in decimal.
66 */
Willy Tarreaue7239b52009-03-29 13:41:58 +020067extern char itoa_str[][171];
Emeric Brun3a7fce52010-01-04 14:54:38 +010068extern char *ultoa_r(unsigned long n, char *buffer, int size);
Willy Tarreaue7239b52009-03-29 13:41:58 +020069extern const char *ulltoh_r(unsigned long long n, char *buffer, int size);
Willy Tarreau72d759c2007-10-25 12:14:10 +020070static inline const char *ultoa(unsigned long n)
71{
72 return ultoa_r(n, itoa_str[0], sizeof(itoa_str[0]));
73}
74
75/* Fast macros to convert up to 10 different parameters inside a same call of
76 * expression.
77 */
78#define U2A0(n) ({ ultoa_r((n), itoa_str[0], sizeof(itoa_str[0])); })
79#define U2A1(n) ({ ultoa_r((n), itoa_str[1], sizeof(itoa_str[1])); })
80#define U2A2(n) ({ ultoa_r((n), itoa_str[2], sizeof(itoa_str[2])); })
81#define U2A3(n) ({ ultoa_r((n), itoa_str[3], sizeof(itoa_str[3])); })
82#define U2A4(n) ({ ultoa_r((n), itoa_str[4], sizeof(itoa_str[4])); })
83#define U2A5(n) ({ ultoa_r((n), itoa_str[5], sizeof(itoa_str[5])); })
84#define U2A6(n) ({ ultoa_r((n), itoa_str[6], sizeof(itoa_str[6])); })
85#define U2A7(n) ({ ultoa_r((n), itoa_str[7], sizeof(itoa_str[7])); })
86#define U2A8(n) ({ ultoa_r((n), itoa_str[8], sizeof(itoa_str[8])); })
87#define U2A9(n) ({ ultoa_r((n), itoa_str[9], sizeof(itoa_str[9])); })
Willy Tarreaubaaee002006-06-26 02:48:02 +020088
Willy Tarreaue7239b52009-03-29 13:41:58 +020089/* The same macros provide HTML encoding of numbers */
90#define U2H0(n) ({ ulltoh_r((n), itoa_str[0], sizeof(itoa_str[0])); })
91#define U2H1(n) ({ ulltoh_r((n), itoa_str[1], sizeof(itoa_str[1])); })
92#define U2H2(n) ({ ulltoh_r((n), itoa_str[2], sizeof(itoa_str[2])); })
93#define U2H3(n) ({ ulltoh_r((n), itoa_str[3], sizeof(itoa_str[3])); })
94#define U2H4(n) ({ ulltoh_r((n), itoa_str[4], sizeof(itoa_str[4])); })
95#define U2H5(n) ({ ulltoh_r((n), itoa_str[5], sizeof(itoa_str[5])); })
96#define U2H6(n) ({ ulltoh_r((n), itoa_str[6], sizeof(itoa_str[6])); })
97#define U2H7(n) ({ ulltoh_r((n), itoa_str[7], sizeof(itoa_str[7])); })
98#define U2H8(n) ({ ulltoh_r((n), itoa_str[8], sizeof(itoa_str[8])); })
99#define U2H9(n) ({ ulltoh_r((n), itoa_str[9], sizeof(itoa_str[9])); })
100
Willy Tarreaubaaee002006-06-26 02:48:02 +0200101/*
Willy Tarreau91092e52007-10-25 16:58:42 +0200102 * This function simply returns a locally allocated string containing the ascii
103 * representation for number 'n' in decimal, unless n is 0 in which case it
104 * returns the alternate string (or an empty string if the alternate string is
105 * NULL). It use is intended for limits reported in reports, where it's
106 * desirable not to display anything if there is no limit. Warning! it shares
107 * the same vector as ultoa_r().
108 */
109extern const char *limit_r(unsigned long n, char *buffer, int size, const char *alt);
110
111/* Fast macros to convert up to 10 different parameters inside a same call of
112 * expression. Warning! they share the same vectors as U2A*!
113 */
114#define LIM2A0(n, alt) ({ limit_r((n), itoa_str[0], sizeof(itoa_str[0]), (alt)); })
115#define LIM2A1(n, alt) ({ limit_r((n), itoa_str[1], sizeof(itoa_str[1]), (alt)); })
116#define LIM2A2(n, alt) ({ limit_r((n), itoa_str[2], sizeof(itoa_str[2]), (alt)); })
117#define LIM2A3(n, alt) ({ limit_r((n), itoa_str[3], sizeof(itoa_str[3]), (alt)); })
118#define LIM2A4(n, alt) ({ limit_r((n), itoa_str[4], sizeof(itoa_str[4]), (alt)); })
119#define LIM2A5(n, alt) ({ limit_r((n), itoa_str[5], sizeof(itoa_str[5]), (alt)); })
120#define LIM2A6(n, alt) ({ limit_r((n), itoa_str[6], sizeof(itoa_str[6]), (alt)); })
121#define LIM2A7(n, alt) ({ limit_r((n), itoa_str[7], sizeof(itoa_str[7]), (alt)); })
122#define LIM2A8(n, alt) ({ limit_r((n), itoa_str[8], sizeof(itoa_str[8]), (alt)); })
123#define LIM2A9(n, alt) ({ limit_r((n), itoa_str[9], sizeof(itoa_str[9]), (alt)); })
124
125/*
Willy Tarreaubaaee002006-06-26 02:48:02 +0200126 * Returns non-zero if character <s> is a hex digit (0-9, a-f, A-F), else zero.
127 */
128extern int ishex(char s);
129
130/*
Willy Tarreauda3b7c32009-11-02 20:12:52 +0100131 * Return integer equivalent of character <c> for a hex digit (0-9, a-f, A-F),
132 * otherwise -1.
133 */
134extern int hex2i(int c);
135
136/*
Willy Tarreau2e74c3f2007-12-02 18:45:09 +0100137 * Checks <name> for invalid characters. Valid chars are [A-Za-z0-9_:.-]. If an
138 * invalid character is found, a pointer to it is returned. If everything is
139 * fine, NULL is returned.
140 */
141extern const char *invalid_char(const char *name);
142
143/*
Krzysztof Piotr Oledzkiefe3b6f2008-05-23 23:49:32 +0200144 * Checks <domainname> for invalid characters. Valid chars are [A-Za-z0-9_.-].
145 * If an invalid character is found, a pointer to it is returned.
146 * If everything is fine, NULL is returned.
147 */
148extern const char *invalid_domainchar(const char *name);
149
150/*
Robert Tsai81ae1952007-12-05 10:47:29 +0100151 * converts <str> to a struct sockaddr_un* which is locally allocated.
152 * The format is "/path", where "/path" is a path to a UNIX domain socket.
153 */
Willy Tarreaucaf720d2008-03-07 10:07:04 +0100154struct sockaddr_un *str2sun(const char *str);
Robert Tsai81ae1952007-12-05 10:47:29 +0100155
156/*
Willy Tarreaufab5a432011-03-04 15:31:53 +0100157 * converts <str> to a struct sockaddr_storage* which is locally allocated. The
158 * string is assumed to contain only an address, no port. The address can be a
159 * dotted IPv4 address, an IPv6 address, a host name, or empty or "*" to
160 * indicate INADDR_ANY. NULL is returned if the host part cannot be resolved.
161 * The return address will only have the address family and the address set,
162 * all other fields remain zero. The string is not supposed to be modified.
163 * The IPv6 '::' address is IN6ADDR_ANY.
Willy Tarreaubaaee002006-06-26 02:48:02 +0200164 */
Willy Tarreaufab5a432011-03-04 15:31:53 +0100165struct sockaddr_storage *str2ip(const char *str);
Willy Tarreaubaaee002006-06-26 02:48:02 +0200166
167/*
Willy Tarreaufab5a432011-03-04 15:31:53 +0100168 * converts <str> to a locally allocated struct sockaddr_storage *.
169 * The format is "addr[:[port]]", where "addr" can be a dotted IPv4 address, an
170 * IPv6 address, a host name, or empty or "*" to indicate INADDR_ANY. If an IPv6
171 * address wants to ignore port, it must be terminated by a trailing colon (':').
172 * The IPv6 '::' address is IN6ADDR_ANY, so in order to bind to a given port on
173 * IPv6, use ":::port". NULL is returned if the host part cannot be resolved.
174 */
175struct sockaddr_storage *str2sa(const char *str);
176
177/*
178 * converts <str> to a locally allocated struct sockaddr_storage *, and a
Willy Tarreauc6f4ce82009-06-10 11:09:37 +0200179 * port range consisting in two integers. The low and high end are always set
180 * even if the port is unspecified, in which case (0,0) is returned. The low
Willy Tarreaufab5a432011-03-04 15:31:53 +0100181 * port is set in the sockaddr. Thus, it is enough to check the size of the
Willy Tarreauc6f4ce82009-06-10 11:09:37 +0200182 * returned range to know if an array must be allocated or not. The format is
Willy Tarreaufab5a432011-03-04 15:31:53 +0100183 * "addr[:[port[-port]]]", where "addr" can be a dotted IPv4 address, an IPv6
184 * address, a host name, or empty or "*" to indicate INADDR_ANY. If an IPv6
185 * address wants to ignore port, it must be terminated by a trailing colon (':').
186 * The IPv6 '::' address is IN6ADDR_ANY, so in order to bind to a given port on
187 * IPv6, use ":::port". NULL is returned if the host part cannot be resolved.
Willy Tarreauc6f4ce82009-06-10 11:09:37 +0200188 */
Willy Tarreaufab5a432011-03-04 15:31:53 +0100189struct sockaddr_storage *str2sa_range(const char *str, int *low, int *high);
Willy Tarreauc6f4ce82009-06-10 11:09:37 +0200190
Willy Tarreau2937c0d2010-01-26 17:36:17 +0100191/* converts <str> to a struct in_addr containing a network mask. It can be
192 * passed in dotted form (255.255.255.0) or in CIDR form (24). It returns 1
193 * if the conversion succeeds otherwise non-zero.
194 */
195int str2mask(const char *str, struct in_addr *mask);
196
Willy Tarreauc6f4ce82009-06-10 11:09:37 +0200197/*
Willy Tarreaud077a8e2007-05-08 18:28:09 +0200198 * converts <str> to two struct in_addr* which must be pre-allocated.
Willy Tarreaubaaee002006-06-26 02:48:02 +0200199 * The format is "addr[/mask]", where "addr" cannot be empty, and mask
200 * is optionnal and either in the dotted or CIDR notation.
201 * Note: "addr" can also be a hostname. Returns 1 if OK, 0 if error.
202 */
Willy Tarreaud077a8e2007-05-08 18:28:09 +0200203int str2net(const char *str, struct in_addr *addr, struct in_addr *mask);
Willy Tarreaubaaee002006-06-26 02:48:02 +0200204
Alexandre Cassen5eb1a902007-11-29 15:43:32 +0100205/*
Willy Tarreau106f9792009-09-19 07:54:16 +0200206 * Parse IP address found in url.
207 */
David du Colombier6f5ccb12011-03-10 22:26:24 +0100208int url2ipv4(const char *addr, struct in_addr *dst);
Willy Tarreau106f9792009-09-19 07:54:16 +0200209
210/*
David du Colombier6f5ccb12011-03-10 22:26:24 +0100211 * Resolve destination server from URL. Convert <str> to a sockaddr_storage*.
Alexandre Cassen5eb1a902007-11-29 15:43:32 +0100212 */
David du Colombier6f5ccb12011-03-10 22:26:24 +0100213int url2sa(const char *url, int ulen, struct sockaddr_storage *addr);
Alexandre Cassen5eb1a902007-11-29 15:43:32 +0100214
Willy Tarreaubaaee002006-06-26 02:48:02 +0200215/* will try to encode the string <string> replacing all characters tagged in
216 * <map> with the hexadecimal representation of their ASCII-code (2 digits)
217 * prefixed by <escape>, and will store the result between <start> (included)
218 * and <stop> (excluded), and will always terminate the string with a '\0'
219 * before <stop>. The position of the '\0' is returned if the conversion
220 * completes. If bytes are missing between <start> and <stop>, then the
221 * conversion will be incomplete and truncated. If <stop> <= <start>, the '\0'
222 * cannot even be stored so we return <start> without writing the 0.
223 * The input string must also be zero-terminated.
224 */
225extern const char hextab[];
226char *encode_string(char *start, char *stop,
227 const char escape, const fd_set *map,
228 const char *string);
229
Willy Tarreau6911fa42007-03-04 18:06:08 +0100230/* This one is 6 times faster than strtoul() on athlon, but does
231 * no check at all.
232 */
233static inline unsigned int __str2ui(const char *s)
234{
235 unsigned int i = 0;
236 while (*s) {
237 i = i * 10 - '0';
238 i += (unsigned char)*s++;
239 }
240 return i;
241}
242
243/* This one is 5 times faster than strtoul() on athlon with checks.
244 * It returns the value of the number composed of all valid digits read.
245 */
246static inline unsigned int __str2uic(const char *s)
247{
248 unsigned int i = 0;
249 unsigned int j;
250 while (1) {
251 j = (*s++) - '0';
252 if (j > 9)
253 break;
254 i *= 10;
255 i += j;
256 }
257 return i;
258}
259
260/* This one is 28 times faster than strtoul() on athlon, but does
261 * no check at all!
262 */
263static inline unsigned int __strl2ui(const char *s, int len)
264{
265 unsigned int i = 0;
266 while (len-- > 0) {
267 i = i * 10 - '0';
268 i += (unsigned char)*s++;
269 }
270 return i;
271}
272
273/* This one is 7 times faster than strtoul() on athlon with checks.
274 * It returns the value of the number composed of all valid digits read.
275 */
276static inline unsigned int __strl2uic(const char *s, int len)
277{
278 unsigned int i = 0;
Willy Tarreau3f0c9762007-10-25 09:42:24 +0200279 unsigned int j, k;
Willy Tarreau6911fa42007-03-04 18:06:08 +0100280
281 while (len-- > 0) {
282 j = (*s++) - '0';
Willy Tarreau3f0c9762007-10-25 09:42:24 +0200283 k = i * 10;
Willy Tarreau6911fa42007-03-04 18:06:08 +0100284 if (j > 9)
285 break;
Willy Tarreau3f0c9762007-10-25 09:42:24 +0200286 i = k + j;
Willy Tarreau6911fa42007-03-04 18:06:08 +0100287 }
288 return i;
289}
290
Willy Tarreau4ec83cd2010-10-15 23:19:55 +0200291/* This function reads an unsigned integer from the string pointed to by <s>
292 * and returns it. The <s> pointer is adjusted to point to the first unread
293 * char. The function automatically stops at <end>.
294 */
295static inline unsigned int __read_uint(const char **s, const char *end)
296{
297 const char *ptr = *s;
298 unsigned int i = 0;
299 unsigned int j, k;
300
301 while (ptr < end) {
302 j = *ptr - '0';
303 k = i * 10;
304 if (j > 9)
305 break;
306 i = k + j;
307 ptr++;
308 }
309 *s = ptr;
310 return i;
311}
312
Willy Tarreau6911fa42007-03-04 18:06:08 +0100313extern unsigned int str2ui(const char *s);
314extern unsigned int str2uic(const char *s);
315extern unsigned int strl2ui(const char *s, int len);
316extern unsigned int strl2uic(const char *s, int len);
317extern int strl2ic(const char *s, int len);
318extern int strl2irc(const char *s, int len, int *ret);
319extern int strl2llrc(const char *s, int len, long long *ret);
Willy Tarreau4ec83cd2010-10-15 23:19:55 +0200320extern unsigned int read_uint(const char **s, const char *end);
Willy Tarreaud54bbdc2009-09-07 11:00:31 +0200321unsigned int inetaddr_host(const char *text);
322unsigned int inetaddr_host_lim(const char *text, const char *stop);
Willy Tarreau74172752010-10-15 23:21:42 +0200323unsigned int inetaddr_host_lim_ret(char *text, char *stop, char **ret);
Willy Tarreau6911fa42007-03-04 18:06:08 +0100324
Krzysztof Piotr Oledzki3d5562b2009-10-10 20:11:17 +0200325static inline char *cut_crlf(char *s) {
326
327 while (*s != '\r' || *s == '\n') {
328 char *p = s++;
329
330 if (!*p)
331 return p;
332 }
333
334 *s++ = 0;
335
336 return s;
337}
338
339static inline char *ltrim(char *s, char c) {
340
341 if (c)
342 while (*s == c)
343 s++;
344
345 return s;
346}
347
348static inline char *rtrim(char *s, char c) {
349
350 char *p = s + strlen(s);
351
352 while (p-- > s)
353 if (*p == c)
354 *p = '\0';
355 else
356 break;
357
358 return s;
359}
360
361static inline char *alltrim(char *s, char c) {
362
363 rtrim(s, c);
364
365 return ltrim(s, c);
366}
367
Willy Tarreaufe944602007-10-25 10:34:16 +0200368/* This function converts the time_t value <now> into a broken out struct tm
369 * which must be allocated by the caller. It is highly recommended to use this
370 * function intead of localtime() because that one requires a time_t* which
371 * is not always compatible with tv_sec depending on OS/hardware combinations.
372 */
373static inline void get_localtime(const time_t now, struct tm *tm)
374{
375 localtime_r(&now, tm);
376}
377
Emeric Brun3a058f32009-06-30 18:26:00 +0200378/* This function converts the time_t value <now> into a broken out struct tm
379 * which must be allocated by the caller. It is highly recommended to use this
380 * function intead of gmtime() because that one requires a time_t* which
381 * is not always compatible with tv_sec depending on OS/hardware combinations.
382 */
383static inline void get_gmtime(const time_t now, struct tm *tm)
384{
385 gmtime_r(&now, tm);
386}
387
Willy Tarreaua0d37b62007-12-02 22:00:35 +0100388/* This function parses a time value optionally followed by a unit suffix among
389 * "d", "h", "m", "s", "ms" or "us". It converts the value into the unit
390 * expected by the caller. The computation does its best to avoid overflows.
391 * The value is returned in <ret> if everything is fine, and a NULL is returned
392 * by the function. In case of error, a pointer to the error is returned and
393 * <ret> is left untouched.
394 */
395extern const char *parse_time_err(const char *text, unsigned *ret, unsigned unit_flags);
Emeric Brun39132b22010-01-04 14:57:24 +0100396extern const char *parse_size_err(const char *text, unsigned *ret);
Willy Tarreaua0d37b62007-12-02 22:00:35 +0100397
398/* unit flags to pass to parse_time_err */
399#define TIME_UNIT_US 0x0000
400#define TIME_UNIT_MS 0x0001
401#define TIME_UNIT_S 0x0002
402#define TIME_UNIT_MIN 0x0003
403#define TIME_UNIT_HOUR 0x0004
404#define TIME_UNIT_DAY 0x0005
405#define TIME_UNIT_MASK 0x0007
406
Willy Tarreau7f062c42009-03-05 18:43:00 +0100407/* Multiply the two 32-bit operands and shift the 64-bit result right 32 bits.
408 * This is used to compute fixed ratios by setting one of the operands to
409 * (2^32*ratio).
410 */
411static inline unsigned int mul32hi(unsigned int a, unsigned int b)
412{
413 return ((unsigned long long)a * b) >> 32;
414}
415
Willy Tarreauf0d9eec2010-06-20 07:12:37 +0200416/* gcc does not know when it can safely divide 64 bits by 32 bits. Use this
417 * function when you know for sure that the result fits in 32 bits, because
418 * it is optimal on x86 and on 64bit processors.
419 */
420static inline unsigned int div64_32(unsigned long long o1, unsigned int o2)
421{
422 unsigned int result;
423#ifdef __i386__
424 asm("divl %2"
425 : "=a" (result)
426 : "A"(o1), "rm"(o2));
427#else
428 result = o1 / o2;
429#endif
430 return result;
431}
432
Willy Tarreau946ba592009-05-10 15:41:18 +0200433/* copies at most <n> characters from <src> and always terminates with '\0' */
434char *my_strndup(const char *src, int n);
435
Willy Tarreau482b00d2009-10-04 22:48:42 +0200436/* This function returns the first unused key greater than or equal to <key> in
437 * ID tree <root>. Zero is returned if no place is found.
438 */
439unsigned int get_next_id(struct eb_root *root, unsigned int key);
440
Willy Tarreau348238b2010-01-18 15:05:57 +0100441/* This function compares a sample word possibly followed by blanks to another
442 * clean word. The compare is case-insensitive. 1 is returned if both are equal,
443 * otherwise zero. This intends to be used when checking HTTP headers for some
444 * values.
445 */
446int word_match(const char *sample, int slen, const char *word, int wlen);
447
Willy Tarreauf0b38bf2010-06-06 13:22:23 +0200448/* Convert a fixed-length string to an IP address. Returns 0 in case of error,
449 * or the number of chars read in case of success.
450 */
451int buf2ip(const char *buf, size_t len, struct in_addr *dst);
452
Willy Tarreauacf95772010-06-14 19:09:21 +0200453/* To be used to quote config arg positions. Returns the string at <ptr>
454 * surrounded by simple quotes if <ptr> is valid and non-empty, or "end of line"
455 * if ptr is NULL or empty. The string is locally allocated.
456 */
457const char *quote_arg(const char *ptr);
458
Willy Tarreau5b180202010-07-18 10:40:48 +0200459/* returns an operator among STD_OP_* for string <str> or < 0 if unknown */
460int get_std_op(const char *str);
461
Willy Tarreau4c14eaa2010-11-24 14:01:45 +0100462/* hash a 32-bit integer to another 32-bit integer */
463extern unsigned int full_hash(unsigned int a);
464static inline unsigned int __full_hash(unsigned int a)
465{
466 /* This function is one of Bob Jenkins' full avalanche hashing
467 * functions, which when provides quite a good distribution for little
468 * input variations. The result is quite suited to fit over a 32-bit
469 * space with enough variations so that a randomly picked number falls
470 * equally before any server position.
471 * Check http://burtleburtle.net/bob/hash/integer.html for more info.
472 */
473 a = (a+0x7ed55d16) + (a<<12);
474 a = (a^0xc761c23c) ^ (a>>19);
475 a = (a+0x165667b1) + (a<<5);
476 a = (a+0xd3a2646c) ^ (a<<9);
477 a = (a+0xfd7046c5) + (a<<3);
478 a = (a^0xb55a4f09) ^ (a>>16);
479
480 /* ensure values are better spread all around the tree by multiplying
481 * by a large prime close to 3/4 of the tree.
482 */
483 return a * 3221225473U;
484}
485
David du Colombier6f5ccb12011-03-10 22:26:24 +0100486/* returns non-zero if addr has a valid and non-null IPv4 or IPv6 address,
487 * otherwise zero.
488 */
489static inline int is_addr(struct sockaddr_storage *addr)
490{
491 int i;
492
493 switch (addr->ss_family) {
494 case AF_INET:
David du Colombier64e9c902011-03-22 11:39:41 +0100495 return *(int *)&((struct sockaddr_in *)addr)->sin_addr;
David du Colombier6f5ccb12011-03-10 22:26:24 +0100496 case AF_INET6:
497 for (i = 0; i < sizeof(struct in6_addr) / sizeof(int); i++)
498 if (((int *)&((struct sockaddr_in6 *)addr)->sin6_addr)[i] != 0)
499 return ((int *)&((struct sockaddr_in6 *)addr)->sin6_addr)[i];
500 }
501 return 0;
502}
503
Willy Tarreau2dd0d472006-06-29 17:53:05 +0200504#endif /* _COMMON_STANDARD_H */