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The concrete need on this change is to support passing an initial seed to the murmur hash. Passing a custom seed is important in terms of randomizing the hash function. The suggested implementation adds a HashTable parameter to all the init callbacks. Further on, an array with custom arguments is accepted from `hash` or `hash_init` from the user land. Currently several things like `hash_hkdf` are not touched, as they don't need passing custom args. Some convenience macros have been added to the SHA/MD families of functions, so the consuming code doesn't have to be changed widely. Another way to implement this is to add another type of the init that would accept a HT with arguments. However, that would still require touching all the context structs in all the algos. That would also increase the size of those structs. As an init function is called just once, the way of modifying the existing init callback has been seen as more preferrable. Closes GH-6400. Signed-off-by: Anatol Belski <ab@php.net> Co-Developed-by: Nikita Popov <nikita.ppv@googlemail.com> Signed-off-by: Nikita Popov <nikita.ppv@googlemail.com> Acked-by: Michael Wallner <mike@php.net> Reviewed-by: Máté Kocsis <kocsismate@woohoolabs.com> Reviewed-by: Eddie Kohler <ekohler@gmail.com>
240 lines
6.0 KiB
C
240 lines
6.0 KiB
C
/*
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+----------------------------------------------------------------------+
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| Copyright (c) The PHP Group |
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+----------------------------------------------------------------------+
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| This source file is subject to version 3.01 of the PHP license, |
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| that is bundled with this package in the file LICENSE, and is |
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| available through the world-wide-web at the following url: |
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| http://www.php.net/license/3_01.txt |
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| If you did not receive a copy of the PHP license and are unable to |
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| obtain it through the world-wide-web, please send a note to |
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| license@php.net so we can mail you a copy immediately. |
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+----------------------------------------------------------------------+
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| Author: Michael Maclean <mgdm@php.net> |
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+----------------------------------------------------------------------+
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*/
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/* Based on the public domain algorithm found at
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http://www.isthe.com/chongo/tech/comp/fnv/index.html */
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#include "php_hash.h"
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#include "php_hash_fnv.h"
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const php_hash_ops php_hash_fnv132_ops = {
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"fnv132",
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(php_hash_init_func_t) PHP_FNV132Init,
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(php_hash_update_func_t) PHP_FNV132Update,
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(php_hash_final_func_t) PHP_FNV132Final,
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php_hash_copy,
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php_hash_serialize,
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php_hash_unserialize,
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PHP_FNV132_SPEC,
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4,
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4,
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sizeof(PHP_FNV132_CTX),
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0
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};
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const php_hash_ops php_hash_fnv1a32_ops = {
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"fnv1a32",
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(php_hash_init_func_t) PHP_FNV132Init,
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(php_hash_update_func_t) PHP_FNV1a32Update,
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(php_hash_final_func_t) PHP_FNV132Final,
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php_hash_copy,
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php_hash_serialize,
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php_hash_unserialize,
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PHP_FNV132_SPEC,
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4,
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4,
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sizeof(PHP_FNV132_CTX),
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0
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};
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const php_hash_ops php_hash_fnv164_ops = {
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"fnv164",
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(php_hash_init_func_t) PHP_FNV164Init,
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(php_hash_update_func_t) PHP_FNV164Update,
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(php_hash_final_func_t) PHP_FNV164Final,
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php_hash_copy,
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php_hash_serialize,
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php_hash_unserialize,
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PHP_FNV164_SPEC,
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8,
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4,
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sizeof(PHP_FNV164_CTX),
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0
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};
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const php_hash_ops php_hash_fnv1a64_ops = {
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"fnv1a64",
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(php_hash_init_func_t) PHP_FNV164Init,
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(php_hash_update_func_t) PHP_FNV1a64Update,
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(php_hash_final_func_t) PHP_FNV164Final,
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php_hash_copy,
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php_hash_serialize,
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php_hash_unserialize,
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PHP_FNV164_SPEC,
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8,
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4,
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sizeof(PHP_FNV164_CTX),
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0
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};
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/* {{{ PHP_FNV132Init
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* 32-bit FNV-1 hash initialisation
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*/
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PHP_HASH_API void PHP_FNV132Init(PHP_FNV132_CTX *context, ZEND_ATTRIBUTE_UNUSED HashTable *args)
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{
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context->state = PHP_FNV1_32_INIT;
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}
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/* }}} */
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PHP_HASH_API void PHP_FNV132Update(PHP_FNV132_CTX *context, const unsigned char *input,
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size_t inputLen)
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{
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context->state = fnv_32_buf((void *)input, inputLen, context->state, 0);
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}
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PHP_HASH_API void PHP_FNV1a32Update(PHP_FNV132_CTX *context, const unsigned char *input,
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size_t inputLen)
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{
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context->state = fnv_32_buf((void *)input, inputLen, context->state, 1);
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}
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PHP_HASH_API void PHP_FNV132Final(unsigned char digest[4], PHP_FNV132_CTX * context)
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{
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#ifdef WORDS_BIGENDIAN
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memcpy(digest, &context->state, 4);
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#else
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int i = 0;
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unsigned char *c = (unsigned char *) &context->state;
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for (i = 0; i < 4; i++) {
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digest[i] = c[3 - i];
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}
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#endif
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}
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/* {{{ PHP_FNV164Init
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* 64-bit FNV-1 hash initialisation
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*/
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PHP_HASH_API void PHP_FNV164Init(PHP_FNV164_CTX *context, ZEND_ATTRIBUTE_UNUSED HashTable *args)
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{
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context->state = PHP_FNV1_64_INIT;
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}
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/* }}} */
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PHP_HASH_API void PHP_FNV164Update(PHP_FNV164_CTX *context, const unsigned char *input,
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size_t inputLen)
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{
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context->state = fnv_64_buf((void *)input, inputLen, context->state, 0);
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}
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PHP_HASH_API void PHP_FNV1a64Update(PHP_FNV164_CTX *context, const unsigned char *input,
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size_t inputLen)
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{
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context->state = fnv_64_buf((void *)input, inputLen, context->state, 1);
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}
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PHP_HASH_API void PHP_FNV164Final(unsigned char digest[8], PHP_FNV164_CTX * context)
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{
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#ifdef WORDS_BIGENDIAN
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memcpy(digest, &context->state, 8);
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#else
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int i = 0;
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unsigned char *c = (unsigned char *) &context->state;
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for (i = 0; i < 8; i++) {
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digest[i] = c[7 - i];
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}
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#endif
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}
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/*
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* fnv_32_buf - perform a 32 bit Fowler/Noll/Vo hash on a buffer
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*
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* input:
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* buf - start of buffer to hash
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* len - length of buffer in octets
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* hval - previous hash value or 0 if first call
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* alternate - if > 0 use the alternate version
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*
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* returns:
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* 32 bit hash as a static hash type
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*/
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static uint32_t
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fnv_32_buf(void *buf, size_t len, uint32_t hval, int alternate)
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{
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unsigned char *bp = (unsigned char *)buf; /* start of buffer */
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unsigned char *be = bp + len; /* beyond end of buffer */
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/*
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* FNV-1 hash each octet in the buffer
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*/
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if (alternate == 0) {
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while (bp < be) {
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/* multiply by the 32 bit FNV magic prime mod 2^32 */
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hval *= PHP_FNV_32_PRIME;
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/* xor the bottom with the current octet */
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hval ^= (uint32_t)*bp++;
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}
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} else {
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while (bp < be) {
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/* xor the bottom with the current octet */
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hval ^= (uint32_t)*bp++;
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/* multiply by the 32 bit FNV magic prime mod 2^32 */
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hval *= PHP_FNV_32_PRIME;
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}
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}
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/* return our new hash value */
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return hval;
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}
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/*
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* fnv_64_buf - perform a 64 bit Fowler/Noll/Vo hash on a buffer
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*
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* input:
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* buf - start of buffer to hash
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* len - length of buffer in octets
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* hval - previous hash value or 0 if first call
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* alternate - if > 0 use the alternate version
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*
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* returns:
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* 64 bit hash as a static hash type
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*/
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static uint64_t
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fnv_64_buf(void *buf, size_t len, uint64_t hval, int alternate)
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{
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unsigned char *bp = (unsigned char *)buf; /* start of buffer */
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unsigned char *be = bp + len; /* beyond end of buffer */
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/*
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* FNV-1 hash each octet of the buffer
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*/
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if (alternate == 0) {
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while (bp < be) {
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/* multiply by the 64 bit FNV magic prime mod 2^64 */
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hval *= PHP_FNV_64_PRIME;
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/* xor the bottom with the current octet */
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hval ^= (uint64_t)*bp++;
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}
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} else {
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while (bp < be) {
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/* xor the bottom with the current octet */
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hval ^= (uint64_t)*bp++;
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/* multiply by the 64 bit FNV magic prime mod 2^64 */
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hval *= PHP_FNV_64_PRIME;
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}
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}
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/* return our new hash value */
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return hval;
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}
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