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Date
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ap_compat.h
1.08
KB
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2006-07-12 00:33
ap_config.h
6.65
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2012-08-15 03:59
ap_config_layout.h
1.21
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2022-01-02 15:34
ap_expr.h
14.09
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2020-02-21 02:33
ap_hooks.h
6.01
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2011-09-23 22:08
ap_listen.h
5.85
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2016-05-30 23:26
ap_mmn.h
39.26
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2023-08-29 11:23
ap_mpm.h
10.68
KB
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2020-04-23 16:32
ap_provider.h
3.55
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2012-07-03 23:29
ap_regex.h
11.43
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2022-02-28 13:56
ap_regkey.h
9.18
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2011-09-23 17:38
ap_release.h
3.15
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2023-10-16 17:28
ap_slotmem.h
7.26
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2013-11-17 22:10
ap_socache.h
9.39
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2012-02-11 00:47
apache_noprobes.h
15.93
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2012-04-05 00:11
apr.h
18.28
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2023-03-27 15:53
apr_allocator.h
6.25
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2018-08-25 17:48
apr_anylock.h
5.06
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2007-01-15 21:00
apr_atomic.h
6.25
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2018-09-17 22:20
apr_base64.h
3.86
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2012-12-23 00:24
apr_buckets.h
64.71
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2021-09-18 17:25
apr_crypto.h
20.18
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2017-06-14 00:28
apr_cstr.h
11.42
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2016-12-03 22:49
apr_date.h
3.57
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2007-01-15 21:00
apr_dbd.h
23.88
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2017-04-02 21:57
apr_dbm.h
8.62
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2008-11-21 08:20
apr_dso.h
2.73
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2006-08-03 14:55
apr_encode.h
30.98
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2022-10-18 11:38
apr_env.h
2.12
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2009-09-26 00:07
apr_errno.h
55.08
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2016-03-03 18:11
apr_escape.h
17.65
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2018-08-26 14:24
apr_escape_test_char.h
1.4
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2023-03-27 15:53
apr_file_info.h
17.59
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2018-08-26 14:01
apr_file_io.h
43.11
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2017-03-30 23:53
apr_fnmatch.h
6.23
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2014-04-15 17:55
apr_general.h
7.36
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2018-08-26 14:01
apr_getopt.h
6
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2006-08-03 14:55
apr_global_mutex.h
7.38
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2017-04-08 01:20
apr_hash.h
10.36
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2020-11-08 10:13
apr_hooks.h
12.71
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2013-10-03 17:32
apr_inherit.h
2.14
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2013-10-03 17:29
apr_ldap.h
5.76
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2023-01-24 11:36
apr_ldap_init.h
5.81
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2009-02-19 10:04
apr_ldap_option.h
8.65
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2009-02-19 10:04
apr_ldap_rebind.h
3.19
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2009-02-19 10:04
apr_ldap_url.h
3.83
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2009-02-19 10:04
apr_lib.h
8.47
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2014-01-16 22:26
apr_md4.h
4.55
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2007-01-15 21:00
apr_md5.h
6.37
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2012-07-06 15:41
apr_memcache.h
17.25
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2010-11-26 16:39
apr_mmap.h
5.18
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2013-10-03 17:29
apr_network_io.h
36.95
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2019-05-04 18:44
apr_optional.h
2.8
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2007-01-15 21:00
apr_optional_hooks.h
3.9
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2013-10-03 17:32
apr_perms_set.h
1.93
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2014-04-28 16:08
apr_poll.h
21.04
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2016-03-25 03:19
apr_pools.h
31.73
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2022-06-18 00:09
apr_portable.h
20.56
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2018-08-26 14:01
apr_proc_mutex.h
7.04
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2017-04-08 01:20
apr_queue.h
4.12
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2013-10-03 17:32
apr_random.h
5.07
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2007-07-21 06:16
apr_redis.h
16.07
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2017-09-27 20:02
apr_reslist.h
7.19
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2013-10-03 17:32
apr_ring.h
19.28
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2022-01-06 14:11
apr_rmm.h
4.8
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2007-01-15 21:00
apr_sdbm.h
6.14
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2007-10-23 13:59
apr_sha1.h
3.91
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2007-01-15 21:00
apr_shm.h
9.48
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2014-04-28 17:15
apr_signal.h
2.8
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2007-08-05 19:48
apr_siphash.h
6.16
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2017-06-15 00:00
apr_skiplist.h
14.56
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2018-08-25 17:48
apr_strings.h
14.92
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2018-08-26 14:01
apr_strmatch.h
2.69
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2007-01-15 21:00
apr_support.h
1.65
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2006-08-03 14:55
apr_tables.h
19.4
KB
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2020-11-08 09:24
apr_thread_cond.h
5.53
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2007-06-29 21:20
apr_thread_mutex.h
4.51
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2017-04-08 01:20
apr_thread_pool.h
11.14
KB
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2008-05-07 23:45
apr_thread_proc.h
36.11
KB
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2019-03-08 16:52
apr_thread_rwlock.h
4.78
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2006-08-03 14:55
apr_time.h
7.62
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2016-03-05 03:40
apr_uri.h
6.61
KB
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2009-01-07 22:39
apr_user.h
5.34
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2013-10-03 17:29
apr_uuid.h
2.13
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2007-01-15 21:00
apr_version.h
5.44
KB
-rw-rw-rw-
2023-04-13 11:38
apr_want.h
3.01
KB
-rw-rw-rw-
2012-08-15 00:48
apr_xlate.h
6.42
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2007-01-15 21:00
apr_xml.h
12.54
KB
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2016-06-14 01:57
apu.h
4.76
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2023-01-24 11:36
apu_errno.h
5.49
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2009-01-07 22:35
apu_version.h
4.33
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2023-02-01 09:56
apu_want.h
1.55
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2023-01-24 11:36
cache_common.h
2.02
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2013-05-29 00:30
expat.h
43.55
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2022-10-25 19:09
heartbeat.h
1.62
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2014-06-17 16:06
http_config.h
57.78
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2022-02-23 16:39
http_connection.h
7.15
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2021-09-26 18:11
http_core.h
37.25
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2023-08-29 11:23
http_log.h
36.82
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2016-08-25 16:48
http_main.h
3.25
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2012-03-26 02:24
http_protocol.h
42.06
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2022-06-01 16:34
http_request.h
26.34
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2021-08-10 12:27
http_ssl.h
14.93
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2022-08-22 00:26
http_vhost.h
4.61
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2021-05-27 17:08
httpd.h
94.69
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2022-03-09 16:04
mod_auth.h
4.55
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2020-02-21 02:33
mod_cache.h
7.27
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2011-12-03 20:02
mod_cgi.h
2.5
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2011-09-23 17:38
mod_core.h
3.43
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2012-09-24 13:49
mod_dav.h
100.22
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2023-01-09 16:52
mod_dbd.h
4.18
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2011-09-23 17:38
mod_http2.h
4.69
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2023-08-29 11:23
mod_include.h
4.01
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2011-09-23 17:38
mod_log_config.h
2.5
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2011-09-23 17:38
mod_proxy.h
64.99
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2023-03-31 18:33
mod_request.h
1.65
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2011-02-18 20:40
mod_rewrite.h
1.41
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2014-01-23 16:33
mod_so.h
1.23
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2011-11-30 12:21
mod_ssl.h
4.99
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2019-07-30 15:23
mod_ssl_openssl.h
4.79
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2019-07-30 15:23
mod_status.h
2.45
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2006-07-12 00:33
mod_watchdog.h
7.55
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2014-09-05 18:19
mpm_common.h
17.39
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2021-08-10 12:43
os.h
4.5
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2021-04-21 05:10
scoreboard.h
9.98
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2020-02-21 02:33
util_cfgtree.h
3.17
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2011-09-23 17:38
util_charset.h
2.28
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2014-11-01 11:19
util_cookies.h
4.99
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2012-01-09 15:18
util_ebcdic.h
2.78
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2014-11-01 11:19
util_fcgi.h
10.02
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2020-02-21 02:33
util_filter.h
26.46
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2013-04-15 16:37
util_ldap.h
18.33
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2023-07-07 16:03
util_md5.h
2.19
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2014-07-17 02:11
util_mutex.h
9.29
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2011-10-09 22:35
util_script.h
9.8
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2012-01-09 15:18
util_time.h
4.22
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2023-07-18 01:16
util_varbuf.h
8.28
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2014-07-19 21:22
util_xml.h
1.36
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2014-07-19 21:22
zconf.h
16.83
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2023-04-18 01:35
zlib.h
96.4
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2023-08-18 12:45
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/* ==================================================================== * Licensed to the Apache Software Foundation (ASF) under one * or more contributor license agreements. See the NOTICE file * distributed with this work for additional information * regarding copyright ownership. The ASF licenses this file * to you under the Apache License, Version 2.0 (the * "License"); you may not use this file except in compliance * with the License. You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, * software distributed under the License is distributed on an * "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY * KIND, either express or implied. See the License for the * specific language governing permissions and limitations * under the License. * ==================================================================== */ /** * @file apr_cstr.h * @brief C string goodies. */ #ifndef APR_CSTR_H #define APR_CSTR_H #include <apr.h> /* for apr_size_t */ #include <apr_pools.h> /* for apr_pool_t */ #include <apr_tables.h> /* for apr_array_header_t */ #ifdef __cplusplus extern "C" { #endif /* __cplusplus */ /** * @defgroup apr_cstr C (POSIX) locale string functions * @ingroup apr_strings * * The apr_cstr_* functions provide traditional C char * string text handling, * and notabilty they treat all text in the C (a.k.a. POSIX) locale using the * minimal POSIX character set, represented in either ASCII or a corresponding * EBCDIC subset. * * Character values outside of that set are treated as opaque bytes, and all * multi-byte character sequences are handled as individual distinct octets. * * Multi-byte characters sequences whose octets fall in the ASCII range cause * unexpected results, such as in the ISO-2022-JP code page where ASCII octets * occur within both shift-state and multibyte sequences. * * In the case of the UTF-8 encoding, all multibyte characters all fall outside * of the C/POSIX range of characters, so these functions are generally safe * to use on UTF-8 strings. The programmer must be aware that each octet may * not represent a distinct printable character in such encodings. * * The standard C99/POSIX string functions, rather than apr_cstr, should be * used in all cases where the current locale and encoding of the text is * significant. * @{ */ /** Divide @a input into substrings, interpreting any char from @a sep * as a token separator. * * Return an array of copies of those substrings (plain const char*), * allocating both the array and the copies in @a pool. * * None of the elements added to the array contain any of the * characters in @a sep_chars, and none of the new elements are empty * (thus, it is possible that the returned array will have length * zero). * * If @a chop_whitespace is TRUE, then remove leading and trailing * whitespace from the returned strings. * * @since New in 1.6 */ APR_DECLARE(apr_array_header_t *) apr_cstr_split(const char *input, const char *sep_chars, int chop_whitespace, apr_pool_t *pool); /** Like apr_cstr_split(), but append to existing @a array instead of * creating a new one. Allocate the copied substrings in @a pool * (i.e., caller decides whether or not to pass @a array->pool as @a pool). * * @since New in 1.6 */ APR_DECLARE(void) apr_cstr_split_append(apr_array_header_t *array, const char *input, const char *sep_chars, int chop_whitespace, apr_pool_t *pool); /** Return @c TRUE iff @a str matches any of the elements of @a list, a list * of zero or more glob patterns. * * @since New in 1.6 */ APR_DECLARE(int) apr_cstr_match_glob_list(const char *str, const apr_array_header_t *list); /** Return @c TRUE iff @a str exactly matches any of the elements of @a list. * * @since New in 1.6 */ APR_DECLARE(int) apr_cstr_match_list(const char *str, const apr_array_header_t *list); /** * Get the next token from @a *str interpreting any char from @a sep as a * token separator. Separators at the beginning of @a str will be skipped. * Returns a pointer to the beginning of the first token in @a *str or NULL * if no token is left. Modifies @a str such that the next call will return * the next token. * * @note The content of @a *str may be modified by this function. * * @since New in 1.6. */ APR_DECLARE(char *) apr_cstr_tokenize(const char *sep, char **str); /** * Return the number of line breaks in @a msg, allowing any kind of newline * termination (CR, LF, CRLF, or LFCR), even inconsistent. * * @since New in 1.6. */ APR_DECLARE(int) apr_cstr_count_newlines(const char *msg); #if 0 /* XXX: stringbuf logic is not present in APR */ /** * Return a cstring which is the concatenation of @a strings (an array * of char *) each followed by @a separator (that is, @a separator * will also end the resulting string). Allocate the result in @a pool. * If @a strings is empty, then return the empty string. * * @since New in 1.6. */ APR_DECLARE(char *) apr_cstr_join(const apr_array_header_t *strings, const char *separator, apr_pool_t *pool); #endif /** * Perform a case-insensitive comparison of two strings @a atr1 and @a atr2, * treating upper and lower case values of the 26 standard C/POSIX alphabetic * characters as equivalent. Extended latin characters outside of this set * are treated as unique octets, irrespective of the current locale. * * Returns in integer greater than, equal to, or less than 0, * according to whether @a str1 is considered greater than, equal to, * or less than @a str2. * * @since New in 1.6. */ APR_DECLARE(int) apr_cstr_casecmp(const char *str1, const char *str2); /** * Perform a case-insensitive comparison of two strings @a atr1 and @a atr2, * treating upper and lower case values of the 26 standard C/POSIX alphabetic * characters as equivalent. Extended latin characters outside of this set * are treated as unique octets, irrespective of the current locale. * * Returns in integer greater than, equal to, or less than 0, * according to whether @a str1 is considered greater than, equal to, * or less than @a str2. * * @since New in 1.6. */ APR_DECLARE(int) apr_cstr_casecmpn(const char *str1, const char *str2, apr_size_t n); /** * Parse the C string @a str into a 64 bit number, and return it in @a *n. * Assume that the number is represented in base @a base. * Raise an error if conversion fails (e.g. due to overflow), or if the * converted number is smaller than @a minval or larger than @a maxval. * * Leading whitespace in @a str is skipped in a locale-dependent way. * After that, the string may contain an optional '+' (positive, default) * or '-' (negative) character, followed by an optional '0x' prefix if * @a base is 0 or 16, followed by numeric digits appropriate for the base. * If there are any more characters after the numeric digits, an error is * returned. * * If @a base is zero, then a leading '0x' or '0X' prefix means hexadecimal, * else a leading '0' means octal (implemented, though not documented, in * apr_strtoi64() in APR 0.9.0 through 1.5.0), else use base ten. * * @since New in 1.6. */ APR_DECLARE(apr_status_t) apr_cstr_strtoi64(apr_int64_t *n, const char *str, apr_int64_t minval, apr_int64_t maxval, int base); /** * Parse the C string @a str into a 64 bit number, and return it in @a *n. * Assume that the number is represented in base 10. * Raise an error if conversion fails (e.g. due to overflow). * * The behaviour otherwise is as described for apr_cstr_strtoi64(). * * @since New in 1.6. */ APR_DECLARE(apr_status_t) apr_cstr_atoi64(apr_int64_t *n, const char *str); /** * Parse the C string @a str into a 32 bit number, and return it in @a *n. * Assume that the number is represented in base 10. * Raise an error if conversion fails (e.g. due to overflow). * * The behaviour otherwise is as described for apr_cstr_strtoi64(). * * @since New in 1.6. */ APR_DECLARE(apr_status_t) apr_cstr_atoi(int *n, const char *str); /** * Parse the C string @a str into an unsigned 64 bit number, and return * it in @a *n. Assume that the number is represented in base @a base. * Raise an error if conversion fails (e.g. due to overflow), or if the * converted number is smaller than @a minval or larger than @a maxval. * * Leading whitespace in @a str is skipped in a locale-dependent way. * After that, the string may contain an optional '+' (positive, default) * or '-' (negative) character, followed by an optional '0x' prefix if * @a base is 0 or 16, followed by numeric digits appropriate for the base. * If there are any more characters after the numeric digits, an error is * returned. * * If @a base is zero, then a leading '0x' or '0X' prefix means hexadecimal, * else a leading '0' means octal (as implemented, though not documented, in * apr_strtoi64(), else use base ten. * * @warning The implementation returns APR_ERANGE if the parsed number * is greater than APR_INT64_MAX, even if it is not greater than @a maxval. * * @since New in 1.6. */ APR_DECLARE(apr_status_t) apr_cstr_strtoui64(apr_uint64_t *n, const char *str, apr_uint64_t minval, apr_uint64_t maxval, int base); /** * Parse the C string @a str into an unsigned 64 bit number, and return * it in @a *n. Assume that the number is represented in base 10. * Raise an error if conversion fails (e.g. due to overflow). * * The behaviour otherwise is as described for apr_cstr_strtoui64(), * including the upper limit of APR_INT64_MAX. * * @since New in 1.6. */ APR_DECLARE(apr_status_t) apr_cstr_atoui64(apr_uint64_t *n, const char *str); /** * Parse the C string @a str into an unsigned 32 bit number, and return * it in @a *n. Assume that the number is represented in base 10. * Raise an error if conversion fails (e.g. due to overflow). * * The behaviour otherwise is as described for apr_cstr_strtoui64(), * including the upper limit of APR_INT64_MAX. * * @since New in 1.6. */ APR_DECLARE(apr_status_t) apr_cstr_atoui(unsigned int *n, const char *str); /** * Skip the common prefix @a prefix from the C string @a str, and return * a pointer to the next character after the prefix. * Return @c NULL if @a str does not start with @a prefix. * * @since New in 1.6. */ APR_DECLARE(const char *) apr_cstr_skip_prefix(const char *str, const char *prefix); /** @} */ #ifdef __cplusplus } #endif /* __cplusplus */ #endif /* SVN_STRING_H */