FS-9775: Match up data types with existing code
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/*
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* Copyright (c) 2016, Anthony Miiessaly II
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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*
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* * Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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*
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* * Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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*
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* * Neither the name of the original author; nor the names of any contributors
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* may be used to endorse or promote products derived from this software
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* without specific prior written permission.
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*
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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* A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER
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* OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
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* EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
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* PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
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* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
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* NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
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* SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#pragma GCC optimize ("O0")
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#include "ks_dht_bucket.h"
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/* change for testing */
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#define KS_DHT_BUCKETSIZE 20
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/* peer flags */
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#define DHTPEER_ACTIVE 0x01
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#define DHTPEER_SUSPECT 0x02
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#define DHTPEER_EXPIRED 0x04
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/* internal structures */
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typedef struct ks_dhtrt_bucket_entry_s {
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ks_time_t tyme;
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unsigned char id[KS_DHT_IDSIZE];
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ks_dhtrt_node* gptr; /* ptr to peer */
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uint8_t inuse;
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uint8_t flags; /* active, suspect, expired */
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struct ks_dhtrt_bucket_entry_s* left;
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struct ks_dhtrt_bucket_entry_s* right;
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struct ks_dhtrt_bucket_entry_s* prev;
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} ks_dhtrt_bucket_entry;
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typedef struct ks_dhtrt_bucket_s {
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ks_dhtrt_bucket_entry entries[KS_DHT_BUCKETSIZE];
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ks_dhtrt_bucket_entry* first; /* sorted order - first*/
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ks_dhtrt_bucket_entry* last; /* sorted order - last*/
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ks_dhtrt_bucket_entry* avail; /* available chain */
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unsigned short count;
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} ks_dhtrt_bucket;
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#define BHF_LEFT 0x80
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typedef struct ks_dhtrt_bucket_header {
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struct ks_dhtrt_bucket_header* parent;
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struct ks_dhtrt_bucket_header* left;
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struct ks_dhtrt_bucket_header* right;
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ks_dhtrt_bucket* bucket;
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unsigned char mask[KS_DHT_IDSIZE];
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unsigned char flags;
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} ks_dhtrt_bucket_header;
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typedef struct ks_dhtrt_internal_s {
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ks_dhtrt_bucket_header* buckets;
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/* */
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} ks_dhtrt_internal;
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typedef struct ks_dhtrt_xort_s {
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unsigned int ix; /* index of bucket array */
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unsigned char xor[KS_DHT_IDSIZE]; /* corresponding xor value */
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unsigned int nextix;
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} ks_dhtrt_xort;
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typedef struct ks_dhtrt_sortedxors_s {
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ks_dhtrt_bucket_header* bheader;
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ks_dhtrt_xort xort[KS_DHT_BUCKETSIZE];
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unsigned char hixor[KS_DHT_IDSIZE];
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unsigned int startix;
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unsigned int count;
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struct ks_dhtrt_sortedxors_s* next;
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} ks_dhtrt_sortedxors;
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/* --- static functions ---- */
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static
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ks_dhtrt_bucket_header* ks_dhtrt_create_bucketheader(
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ks_pool_t *pool,
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ks_dhtrt_bucket_header* parent,
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unsigned char* mask);
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static
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ks_dhtrt_bucket* ks_dhtrt_create_bucket(ks_pool_t* pool);
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static
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ks_dhtrt_bucket_header* ks_dhtrt_find_bucketheader(ks_dhtrt_routetable* table, unsigned char* id);
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static
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ks_dhtrt_bucket_entry* ks_dhtrt_find_bucketentry(ks_dhtrt_bucket_header* header, ks_dhtrt_nodeid id);
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static
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void ks_dhtrt_split_bucket(ks_dhtrt_bucket_header* original, ks_dhtrt_bucket_header* left, ks_dhtrt_bucket_header* right);
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static
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ks_dht_node_t* ks_dhtrt_find_nodeid(ks_dhtrt_bucket* bucket, ks_dhtrt_nodeid nodeid);
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static void
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ks_dhtrt_shiftright(unsigned char* id);
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static
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void ks_dhtrt_shiftleft(unsigned char* id);
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static int
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ks_dhtrt_xorcmp(const unsigned char *id1, const unsigned char *id2, const unsigned char *ref);
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static void
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ks_dhtrt_xor(const unsigned char *id1, const unsigned char *id2, unsigned char *xor);
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static int
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ks_dhtrt_ismasked(const unsigned char *id1, const unsigned char *mask);
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static
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ks_status_t ks_dhtrt_insert_node(ks_dhtrt_routetable* table, ks_dhtrt_node* node);
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static
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ks_status_t ks_dhtrt_insert_id(ks_dhtrt_bucket* bucket, ks_dhtrt_node* node);
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static
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void ks_dhtrt_delete_id(ks_dhtrt_bucket* bucket, ks_dhtrt_nodeid id);
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static
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char* ks_dhtrt_printableid(const unsigned char* id, char* buffer);
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static
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unsigned char ks_dhtrt_isactive(ks_dhtrt_bucket_entry* entry);
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static
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uint8_t ks_dhtrt_load_query(ks_dhtrt_querynodes* query, ks_dhtrt_sortedxors* xort);
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static
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uint8_t ks_dhtrt_findclosest_bucketnodes(unsigned char *nodeid,
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ks_dhtrt_bucket_header* header,
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ks_dhtrt_sortedxors* xors,
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unsigned char* hixor,
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unsigned int max);
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/* debugging */
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#define KS_DHT_DEBUGPRINTF_
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/*
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Public interface
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---------------
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ks_dhtrt_initroute
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ks_dhtrt_drinitroute
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ks_dhtrt_insertnode
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*/
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KS_DECLARE(ks_dhtrt_routetable*) ks_dhtrt_initroute( ks_pool_t *pool, ks_dhtrt_nodeid localid)
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{
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ks_log(KS_LOG_ERROR, "hello world\n");
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unsigned char initmask[KS_DHT_IDSIZE];
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memset(initmask, 0xff, sizeof(initmask));
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ks_dhtrt_routetable* table = ks_pool_alloc(pool, sizeof(ks_dhtrt_routetable));
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memset(table, 0, sizeof(ks_dhtrt_routetable));
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ks_dhtrt_internal* internal = ks_pool_alloc(pool, sizeof(ks_dhtrt_internal));
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memset(internal, 0, sizeof(ks_dhtrt_internal));
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table->internal = internal;
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/* initialize root bucket */
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ks_dhtrt_bucket_header* initial_header = ks_dhtrt_create_bucketheader(pool, 0, initmask);
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initial_header->flags = BHF_LEFT; /* fake left to allow splitting */
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internal->buckets = initial_header;
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initial_header->bucket = ks_dhtrt_create_bucket(pool);
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table->pool = pool;
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return table;
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}
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KS_DECLARE(void) ks_dhtrt_deinitroute( ks_dhtrt_routetable* table )
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{
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/*todo*/
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ks_pool_free(table->pool, table);
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return;
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}
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KS_DECLARE(ks_dhtrt_node*) ks_dhtrt_create_node(ks_dhtrt_routetable* table, ks_dhtrt_nodeid nodeid, ks_dht_node_t* node)
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{
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/* first see if it exists */
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ks_dhtrt_node* peer = ks_dhtrt_find_node(table, nodeid);
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if (peer != 0) { /* humm not sure - this might be an error */
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return peer;
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}
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peer = ks_pool_alloc(table->pool, sizeof(ks_dhtrt_node));
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memset(peer, 0, sizeof(ks_dhtrt_node));
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memcpy(peer->id, nodeid, KS_DHT_IDSIZE);
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ks_status_t status = ks_dhtrt_insert_node(table, peer);
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if (status == KS_STATUS_FAIL) {
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ks_pool_free(table->pool, peer);
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return 0;
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}
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peer->handle = node;
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return peer;
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}
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KS_DECLARE(ks_status_t) ks_dhtrt_delete_node(ks_dhtrt_routetable* table, ks_dhtrt_node* peer)
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{
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ks_dhtrt_bucket_header* header = ks_dhtrt_find_bucketheader(table, peer->id);
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if (header != 0) {
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ks_dhtrt_bucket* bucket = header->bucket;
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if (bucket != 0) { /* we were not able to find a bucket*/
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ks_dhtrt_delete_id(bucket, peer->id);
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}
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}
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ks_pool_free(table->pool, peer);
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return KS_STATUS_SUCCESS;
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}
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KS_DECLARE(ks_status_t) ks_dhtrt_insert_node(ks_dhtrt_routetable* table, ks_dhtrt_node* peer)
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{
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ks_dhtrt_bucket* bucket = 0;
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int insanity = 0;
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ks_dhtrt_bucket_header* header = ks_dhtrt_find_bucketheader(table, peer->id);
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bucket = header->bucket;
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assert(bucket != 0); /* we were not able to find a bucket*/
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while (bucket->count == KS_DHT_BUCKETSIZE) {
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if (insanity > 3200) assert(insanity < 3200);
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/* first - seek a stale entry to eject */
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/*
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todo: attempting a ping at at this point would require us
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to suspend this process ... tricky...assume right now we will go ahead and
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eject. Possibly add to a list to recheck
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*/
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if ( !(header->flags & BHF_LEFT) ) { /* only the left handside node can be split */
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#ifdef KS_DHT_DEBUGPRINTF_
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char buffer[100];
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printf(" nodeid %s was not inserted\n", ks_dhtrt_printableid(peer->id, buffer));
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#endif
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return KS_STATUS_FAIL;
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}
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/* bucket must be split */
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/* work out new mask */
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unsigned char newmask[KS_DHT_IDSIZE];
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memcpy(newmask, header->mask, KS_DHT_IDSIZE);
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if (newmask[KS_DHT_IDSIZE-1] == 0) { /* no more bits to shift - is this possible */
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#ifdef KS_DHT_DEBUGPRINTF_
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char buffer[100];
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printf(" nodeid %s was not inserted\n", ks_dhtrt_printableid(peer->id, buffer));
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#endif
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return KS_STATUS_FAIL;
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}
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/* shift right x bits : todo 1 bit for the moment */
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ks_dhtrt_shiftright(newmask);
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/* create the new bucket structures */
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ks_dhtrt_bucket_header* newleft = ks_dhtrt_create_bucketheader(table->pool, header, newmask);
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newleft->bucket = ks_dhtrt_create_bucket(table->pool);
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newleft->flags = BHF_LEFT; /* flag as left hand side - therefore splitable */
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ks_dhtrt_bucket_header* newright = ks_dhtrt_create_bucketheader(table->pool, header, header->mask);
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ks_dhtrt_split_bucket(header, newleft, newright);
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/* ok now we need to try again to see if the bucket has capacity */
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/* which bucket do care about */
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if (ks_dhtrt_ismasked(peer->id, newleft->mask)) {
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bucket = newleft->bucket;
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header = newleft;
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}
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else {
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bucket = newright->bucket;
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header = newright;
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}
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++insanity;
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}
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#ifdef KS_DHT_DEBUGPRINTF_
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char buffer[100];
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printf("inserting nodeid %s ", ks_dhtrt_printableid(peer->id, buffer));
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printf("into bucket %s\n", ks_dhtrt_printableid(header->mask, buffer));
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#endif
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/* by this point we have a viable bucket */
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return ks_dhtrt_insert_id(bucket, peer);
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}
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KS_DECLARE(ks_dht_node_t*) ks_dhtrt_find_node(ks_dhtrt_routetable* table, ks_dhtrt_nodeid nodeid) {
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ks_dhtrt_bucket_header* header = ks_dhtrt_find_bucketheader(table, nodeid);
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if (header != 0) return 0;
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ks_dhtrt_bucket* bucket = header->bucket;
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if (bucket != 0) return 0; /* probably a logic error ?*/
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return ks_dhtrt_find_nodeid(bucket, nodeid);
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}
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KS_DECLARE(ks_status_t) ks_dhtrt_touch_node(ks_dhtrt_routetable* table, ks_dhtrt_nodeid nodeid)
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{
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ks_dhtrt_bucket_header* header = ks_dhtrt_find_bucketheader(table, nodeid);
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if (header == 0) return KS_STATUS_FAIL;
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ks_dhtrt_bucket_entry* e = ks_dhtrt_find_bucketentry(header, nodeid);
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if (e != 0) {
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e->tyme = ks_time_now();
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e->flags = DHTPEER_ACTIVE;
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return KS_STATUS_SUCCESS;
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}
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return KS_STATUS_FAIL;
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}
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KS_DECLARE(ks_status_t) ks_dhtrt_expire_node(ks_dhtrt_routetable* table, ks_dhtrt_nodeid nodeid)
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{
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ks_dhtrt_bucket_header* header = ks_dhtrt_find_bucketheader(table, nodeid);
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if (header == 0) return KS_STATUS_FAIL;
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ks_dhtrt_bucket_entry* e = ks_dhtrt_find_bucketentry(header, nodeid);
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if (e != 0) {
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e->flags = DHTPEER_EXPIRED;
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return KS_STATUS_SUCCESS;
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}
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return KS_STATUS_FAIL;
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}
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KS_DECLARE(uint8_t) ks_dhtrt_findclosest_nodes(ks_dhtrt_routetable* table, ks_dhtrt_querynodes* query)
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{
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query->count = 0;
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uint8_t max = query->max;
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uint8_t total = 0;
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uint8_t cnt;
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if (max == 0) return 0; /* sanity check */
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ks_dhtrt_bucket_header* header = ks_dhtrt_find_bucketheader(table, query->id);
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#ifdef KS_DHT_DEBUGPRINTF_
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char buffer[100];
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printf("finding %d closest nodes for nodeid %s\n", max, ks_dhtrt_printableid(query->id, buffer));
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printf(" starting at mask: %s\n", ks_dhtrt_printableid(header->mask, buffer));
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#endif
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ks_dhtrt_sortedxors xort0;
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memset(&xort0, 0 , sizeof(xort0));
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ks_dhtrt_nodeid initid;
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memset(initid, 0xff, KS_DHT_IDSIZE);
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xort0.bheader = header;
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/* step 1 - look at immediate bucket */
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/* --------------------------------- */
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cnt = ks_dhtrt_findclosest_bucketnodes(query->id, header, &xort0, initid ,max);
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max -= cnt;
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total += cnt;
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#ifdef KS_DHT_DEBUGPRINTF_
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printf(" bucket header %s yielded %d nodes; total=%d\n", buffer, cnt, total);
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#endif
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if (total >= query->max) { /* is query answered ? */
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return ks_dhtrt_load_query(query, &xort0);
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}
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/* step2 - look at sibling */
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/* ----------------------- */
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ks_dhtrt_sortedxors xort1;
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xort0.next = &xort1;
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memset(&xort1, 0 , sizeof(xort1));
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memcpy(initid, &xort0.hixor, KS_DHT_IDSIZE);
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ks_dhtrt_bucket_header* parent = header->parent;
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if (header == parent->left) {
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xort1.bheader = header = parent->right;
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}
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else {
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if (!parent->left->bucket) { /* left hand might no have a bucket - if so choose left->right */
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xort1.bheader = header = parent->left->right;
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}
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else {
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xort1.bheader = header = parent->left;
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}
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}
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cnt = ks_dhtrt_findclosest_bucketnodes(query->id, header, &xort1, initid ,max);
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max -= cnt;
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total += cnt;
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#ifdef KS_DHT_DEBUGPRINTF_
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printf(" stage2: sibling bucket header %s yielded %d nodes, total=%d\n",
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ks_dhtrt_printableid(header->mask, buffer), cnt, total);
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#endif
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if (total >= query->max) { /* is query answered ? */
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return ks_dhtrt_load_query(query, &xort0);
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}
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/* step3 and beyond ... work left and right until the count is satisfied */
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/* ---------------------------------------------------------------------- */
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memcpy(initid, &xort0.hixor, KS_DHT_IDSIZE);
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unsigned char leftid[KS_DHT_IDSIZE];
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unsigned char rightid[KS_DHT_IDSIZE];
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memcpy(leftid, xort0.bheader->mask, KS_DHT_IDSIZE);
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memcpy(rightid, xort1.bheader->mask, KS_DHT_IDSIZE);
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int insanity = 0;
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ks_dhtrt_bucket_header* lheader;
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ks_dhtrt_bucket_header* rheader;
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ks_dhtrt_sortedxors* prev = &xort1;
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ks_dhtrt_sortedxors* tofree = 0;
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ks_dhtrt_sortedxors* xortn;
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ks_dhtrt_sortedxors* xortn1;
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do {
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lheader = 0;
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||||
rheader = 0;
|
||||
xortn = 0;
|
||||
xortn1 = 0;
|
||||
if (leftid[0] != 0xff) {
|
||||
ks_dhtrt_shiftleft(leftid);
|
||||
lheader = ks_dhtrt_find_bucketheader(table, leftid);
|
||||
if (lheader) {
|
||||
xortn = ks_pool_alloc(table->pool, sizeof(ks_dhtrt_sortedxors));
|
||||
memset(xortn, 0, sizeof(ks_dhtrt_sortedxors));
|
||||
if (tofree == 0) tofree = xortn;
|
||||
prev->next = xortn;
|
||||
prev = xortn;
|
||||
cnt += ks_dhtrt_findclosest_bucketnodes(query->id, lheader, xortn, leftid ,max);
|
||||
max -= cnt;
|
||||
#ifdef KS_DHT_DEBUGPRINTF_
|
||||
printf(" stage3: seaching left bucket header %s yielded %d nodes, total=%d\n",
|
||||
ks_dhtrt_printableid(lheader->mask, buffer), cnt, total);
|
||||
#endif
|
||||
}
|
||||
}
|
||||
|
||||
if (max > 0 && rightid[KS_DHT_IDSIZE-1] != 0x00) {
|
||||
ks_dhtrt_shiftright(rightid);
|
||||
rheader = ks_dhtrt_find_bucketheader(table, rightid);
|
||||
if (rheader) {
|
||||
xortn1 = ks_pool_alloc(table->pool, sizeof(ks_dhtrt_sortedxors));
|
||||
memset(xortn1, 0, sizeof(ks_dhtrt_sortedxors));
|
||||
prev->next = xortn1;
|
||||
prev = xortn1;
|
||||
cnt = ks_dhtrt_findclosest_bucketnodes(query->id, rheader, xortn1, rightid , max);
|
||||
max -= cnt;
|
||||
#ifdef KS_DHT_DEBUGPRINTF_
|
||||
printf(" stage3: seaching right bucket header %s yielded %d nodes, total=%d\n",
|
||||
ks_dhtrt_printableid(rheader->mask, buffer), cnt, total);
|
||||
#endif
|
||||
}
|
||||
}
|
||||
|
||||
if (!lheader && !rheader) break;
|
||||
++insanity;
|
||||
if (insanity > 159) {
|
||||
assert(insanity <= 159);
|
||||
}
|
||||
|
||||
} while(max < query->count);
|
||||
|
||||
|
||||
ks_dhtrt_load_query(query, &xort0);
|
||||
/* free up the xort structs on heap */
|
||||
while(tofree) {
|
||||
ks_dhtrt_sortedxors* x = tofree->next;
|
||||
ks_pool_free(table->pool, tofree);
|
||||
tofree = x->next;
|
||||
}
|
||||
return query->count;
|
||||
}
|
||||
|
||||
KS_DECLARE(void) ks_dhtrt_process_table(ks_dhtrt_routetable* table)
|
||||
{
|
||||
/* walk the table and update the status of all known knodes */
|
||||
/* anything that is suspect automatically becomes expired */
|
||||
|
||||
/* inactive for 15 minutes, a node becomes quesionable */
|
||||
/* it should be pinged */
|
||||
|
||||
/* if it has not been 'touched' since the last time */
|
||||
/* give it one more try */
|
||||
|
||||
/* inactive again it is considered inactive */
|
||||
/* */
|
||||
|
||||
ks_dhtrt_internal* internal = table->internal;
|
||||
ks_dhtrt_bucket_header* header = internal->buckets;
|
||||
ks_dhtrt_bucket_header* stack[KS_DHT_IDSIZE * 8];
|
||||
int stackix=0;
|
||||
|
||||
while(header) {
|
||||
stack[stackix++] = header;
|
||||
if (header->bucket) {
|
||||
/*ks_dhtrt_bucket* b = header->bucket;*/
|
||||
for (int ix=0; ix<KS_DHT_BUCKETSIZE; ++ix) {
|
||||
|
||||
}
|
||||
}
|
||||
header = header->left;
|
||||
if (header == 0 && stackix > 1) {
|
||||
stackix -= 2;
|
||||
header = stack[stackix];
|
||||
header = header->right;
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
}
|
||||
|
||||
|
||||
KS_DECLARE(void) ks_dhtrt_dump(ks_dhtrt_routetable* table, int level) {
|
||||
/* dump buffer headers */
|
||||
char buffer[100];
|
||||
memset(buffer, 0, 100);
|
||||
ks_dhtrt_internal* internal = table->internal;
|
||||
ks_dhtrt_bucket_header* header = internal->buckets;
|
||||
ks_dhtrt_bucket_header* stack[KS_DHT_IDSIZE * 8];
|
||||
int stackix = 0;
|
||||
|
||||
|
||||
while(header) {
|
||||
stack[stackix++] = header;
|
||||
/* walk and report left handsize */
|
||||
memset(buffer, 0, 100);
|
||||
/*ks_log*/ printf("bucket header: [%s]\n", ks_dhtrt_printableid(header->mask, buffer) );
|
||||
if (header->bucket) {
|
||||
ks_dhtrt_bucket* b = header->bucket;
|
||||
printf(" bucket holds %d entries\n", b->count);
|
||||
|
||||
if (level == 7) {
|
||||
printf(" --------------------------\n");
|
||||
for(int ix=0; ix<KS_DHT_BUCKETSIZE; ++ix) {
|
||||
memset(buffer, 0, 100);
|
||||
if (b->entries[ix].inuse == 1) ks_dhtrt_printableid(b->entries[ix].id, buffer);
|
||||
else strcpy(buffer, "<free>");
|
||||
printf(" slot %d: %s\n", ix, buffer);
|
||||
}
|
||||
printf(" --------------------------\n\n");
|
||||
}
|
||||
|
||||
}
|
||||
header = header->left;
|
||||
if (header == 0 && stackix > 1) {
|
||||
stackix -= 2;
|
||||
header = stack[stackix];
|
||||
header = header->right;
|
||||
}
|
||||
}
|
||||
return;
|
||||
}
|
||||
|
||||
|
||||
|
||||
|
||||
|
||||
/* stupid routines to avoid unused warnings */
|
||||
void colm() {
|
||||
ks_dhtrt_shiftright(0);
|
||||
ks_dhtrt_xor(0, 0, 0);
|
||||
ks_dhtrt_xorcmp(0, 0, 0);
|
||||
ks_dhtrt_split_bucket(0, 0, 0);
|
||||
ks_dhtrt_shiftleft(0);
|
||||
}
|
||||
|
||||
|
||||
|
||||
/*
|
||||
internal functions
|
||||
*/
|
||||
|
||||
static
|
||||
ks_dhtrt_bucket_header* ks_dhtrt_create_bucketheader(ks_pool_t *pool, ks_dhtrt_bucket_header* parent, unsigned char* mask)
|
||||
{
|
||||
ks_dhtrt_bucket_header* header = ks_pool_alloc(pool, sizeof(ks_dhtrt_bucket_header));
|
||||
memset(header, 0, sizeof(ks_dhtrt_bucket_header));
|
||||
memcpy(header->mask, mask, sizeof(header->mask));
|
||||
header->parent = parent;
|
||||
|
||||
#ifdef KS_DHT_DEBUGPRINTF_
|
||||
char buffer[100];
|
||||
printf("creating bucket header for mask: %s ", ks_dhtrt_printableid(mask, buffer));
|
||||
if (parent) printf("from parent mask: %s ", ks_dhtrt_printableid(parent->mask, buffer));
|
||||
printf("\n");
|
||||
#endif
|
||||
return header;
|
||||
}
|
||||
|
||||
static
|
||||
ks_dhtrt_bucket* ks_dhtrt_create_bucket(ks_pool_t *pool)
|
||||
{
|
||||
ks_dhtrt_bucket* bucket = ks_pool_alloc(pool, sizeof(ks_dhtrt_bucket));
|
||||
memset(bucket, 0, sizeof(ks_dhtrt_bucket));
|
||||
return bucket;
|
||||
}
|
||||
|
||||
static
|
||||
ks_dhtrt_bucket_header* ks_dhtrt_find_bucketheader(ks_dhtrt_routetable* table, unsigned char* id)
|
||||
{
|
||||
/* find the right bucket.
|
||||
if a bucket header has a bucket, it does not children
|
||||
so it must be the bucket to use
|
||||
*/
|
||||
ks_dhtrt_internal* internal = table->internal;
|
||||
ks_dhtrt_bucket_header* header = internal->buckets;
|
||||
while(header) {
|
||||
if ( header->bucket ) {
|
||||
return header;
|
||||
}
|
||||
/* left hand side is more restrictive (closer) so should be tried first */
|
||||
if (header->left != 0 && (ks_dhtrt_ismasked(id, header->left->mask)))
|
||||
header = header->left;
|
||||
else
|
||||
header = header->right;
|
||||
}
|
||||
return 0;
|
||||
}
|
||||
|
||||
static
|
||||
ks_dhtrt_bucket_entry* ks_dhtrt_find_bucketentry(ks_dhtrt_bucket_header* header, ks_dhtrt_nodeid nodeid)
|
||||
{
|
||||
ks_dhtrt_bucket* bucket = header->bucket;
|
||||
if (bucket == 0) return 0;
|
||||
|
||||
for (int ix=0; ix<KS_DHT_BUCKETSIZE; ++ix) {
|
||||
#ifdef KS_DHT_DEBUGPRINTF_
|
||||
#endif
|
||||
if ( bucket->entries[ix].inuse == 1 &&
|
||||
(!memcmp(nodeid, bucket->entries[ix].id, KS_DHT_IDSIZE)) ) {
|
||||
return &(bucket->entries[ix]);
|
||||
}
|
||||
}
|
||||
return 0;
|
||||
}
|
||||
|
||||
|
||||
static
|
||||
void ks_dhtrt_split_bucket(ks_dhtrt_bucket_header* original, ks_dhtrt_bucket_header* left, ks_dhtrt_bucket_header* right)
|
||||
{
|
||||
/* so split the bucket in two based on the masks in the new header */
|
||||
/* the existing bucket - with the remaining ids will be taken by the right hand side */
|
||||
|
||||
ks_dhtrt_bucket* source = original->bucket;
|
||||
ks_dhtrt_bucket* dest = left->bucket;
|
||||
|
||||
int lix = 0;
|
||||
int rix = 0;
|
||||
|
||||
for( ; rix<KS_DHT_BUCKETSIZE; ++rix) {
|
||||
if (ks_dhtrt_ismasked(source->entries[rix].id, left->mask)) {
|
||||
/* move it to the left */
|
||||
memcpy(dest->entries[lix].id, source->entries[rix].id, KS_DHT_IDSIZE);
|
||||
dest->entries[lix].gptr = source->entries[rix].gptr;
|
||||
dest->entries[lix].inuse = 1;
|
||||
++lix;
|
||||
++dest->count;
|
||||
|
||||
/* now remove it from the original bucket */
|
||||
source->entries[rix].inuse = 0;
|
||||
--source->count;
|
||||
}
|
||||
}
|
||||
/* give original bucket to the new left hand side header */
|
||||
right->bucket = source;
|
||||
original->bucket = 0;
|
||||
original->left = left;
|
||||
original->right = right;
|
||||
#ifdef KS_DHT_DEBUGPRINTF_
|
||||
char buffer[100];
|
||||
printf("\nsplitting bucket orginal: %s\n", ks_dhtrt_printableid(original->mask, buffer));
|
||||
printf(" into (left) mask: %s size: %d\n", ks_dhtrt_printableid(left->mask, buffer), left->bucket->count);
|
||||
printf(" and (right) mask: %s size: %d\n\n", ks_dhtrt_printableid(right->mask, buffer), right->bucket->count);
|
||||
#endif
|
||||
return;
|
||||
}
|
||||
|
||||
|
||||
/*
|
||||
* buckets are implemented as static array
|
||||
* There does not seem to be any advantage in sorting/tree structures in terms of xor math
|
||||
* so at least the static array does away with the need for locking.
|
||||
*/
|
||||
static
|
||||
ks_status_t ks_dhtrt_insert_id(ks_dhtrt_bucket* bucket, ks_dhtrt_node* peer)
|
||||
{
|
||||
/* sanity checks */
|
||||
if (!bucket || bucket->count >= KS_DHT_BUCKETSIZE) {
|
||||
assert(0);
|
||||
}
|
||||
uint8_t free = KS_DHT_BUCKETSIZE;
|
||||
|
||||
/* find free .. but also check that it is not already here! */
|
||||
uint8_t ix = 0;
|
||||
for(; ix<KS_DHT_BUCKETSIZE; ++ix) {
|
||||
if (bucket->entries[ix].inuse == 0) {
|
||||
if (free == KS_DHT_BUCKETSIZE) {
|
||||
free = ix; /* use this one */
|
||||
}
|
||||
}
|
||||
else if (!memcmp(bucket->entries[ix].id, peer->id, KS_DHT_IDSIZE)) {
|
||||
#ifdef KS_DHT_DEBUGPRINTF_
|
||||
char buffer[100];
|
||||
printf("duplicate peer %s found at %d ", ks_dhtrt_printableid(peer->id, buffer), ix);
|
||||
#endif
|
||||
bucket->entries[ix].tyme = ks_time_now();
|
||||
bucket->entries[ix].flags &= DHTPEER_ACTIVE;
|
||||
return KS_STATUS_SUCCESS; /* already exists */
|
||||
}
|
||||
}
|
||||
|
||||
if ( free<KS_DHT_BUCKETSIZE ) {
|
||||
bucket->entries[free].inuse = 1;
|
||||
bucket->entries[free].gptr = peer;
|
||||
bucket->entries[free].tyme = ks_time_now();
|
||||
bucket->entries[free].flags &= DHTPEER_ACTIVE;
|
||||
++bucket->count;
|
||||
memcpy(bucket->entries[free].id, peer->id, KS_DHT_IDSIZE);
|
||||
#ifdef KS_DHT_DEBUGPRINTF_
|
||||
char buffer[100];
|
||||
printf("inserting peer %s ", ks_dhtrt_printableid(peer->id, buffer));
|
||||
printf("into bucket mask at index %d\n", free);
|
||||
#endif
|
||||
return KS_STATUS_SUCCESS;
|
||||
}
|
||||
|
||||
assert(0); /* should not reach this point */
|
||||
return KS_STATUS_FAIL;
|
||||
}
|
||||
|
||||
static
|
||||
ks_dht_node_t* ks_dhtrt_find_nodeid(ks_dhtrt_bucket* bucket, ks_dhtrt_nodeid nodeid)
|
||||
{
|
||||
#ifdef KS_DHT_DEBUGPRINTF_
|
||||
char buffer[100];
|
||||
printf("\nfind noeid for: %s\n", ks_dhtrt_printableid(nodeid, buffer));
|
||||
#endif
|
||||
|
||||
|
||||
for (int ix=0; ix<KS_DHT_BUCKETSIZE; ++ix) {
|
||||
#ifdef KS_DHT_DEBUGPRINTF_
|
||||
printf("\nbucket->entries[%d].id = %s inuse=%c\n", ix,
|
||||
ks_dhtrt_printableid(bucket->entries[ix].id, buffer),
|
||||
bucket->entries[ix].inuse );
|
||||
#endif
|
||||
if ( bucket->entries[ix].inuse == 1 &&
|
||||
(!memcmp(nodeid, bucket->entries[ix].id, KS_DHT_IDSIZE)) ) {
|
||||
return bucket->entries[ix].gptr->handle;
|
||||
}
|
||||
}
|
||||
return 0;
|
||||
}
|
||||
|
||||
static
|
||||
void ks_dhtrt_delete_id(ks_dhtrt_bucket* bucket, ks_dhtrt_nodeid nodeid)
|
||||
{
|
||||
#ifdef KS_DHT_DEBUGPRINTF_
|
||||
char buffer[100];
|
||||
printf("\ndeleting node for: %s\n", ks_dhtrt_printableid(nodeid, buffer));
|
||||
#endif
|
||||
|
||||
|
||||
for (int ix=0; ix<KS_DHT_BUCKETSIZE; ++ix) {
|
||||
#ifdef KS_DHT_DEBUGPRINTF_
|
||||
printf("\nbucket->entries[%d].id = %s inuse=%c\n", ix,
|
||||
ks_dhtrt_printableid(bucket->entries[ix].id, buffer),
|
||||
bucket->entries[ix].inuse );
|
||||
#endif
|
||||
if ( bucket->entries[ix].inuse == 1 &&
|
||||
(!memcmp(nodeid, bucket->entries[ix].id, KS_DHT_IDSIZE)) ) {
|
||||
bucket->entries[ix].inuse = 0;
|
||||
bucket->entries[ix].gptr = 0;
|
||||
bucket->entries[ix].flags = 0;
|
||||
return;
|
||||
}
|
||||
}
|
||||
return;
|
||||
}
|
||||
|
||||
|
||||
static
|
||||
uint8_t ks_dhtrt_findclosest_bucketnodes(unsigned char *nodeid,
|
||||
ks_dhtrt_bucket_header* header,
|
||||
ks_dhtrt_sortedxors* xors,
|
||||
unsigned char* hixor, /*todo: remove */
|
||||
unsigned int max) {
|
||||
|
||||
uint8_t count = 0; /* count of nodes added this time */
|
||||
xors->startix = KS_DHT_BUCKETSIZE;
|
||||
xors->count = 0;
|
||||
unsigned char xorvalue[KS_DHT_IDSIZE];
|
||||
|
||||
/* just ugh! - there must be a better way to do this */
|
||||
/* walk the entire bucket calculating the xor value on the way */
|
||||
/* add valid & relevant entries to the xor values */
|
||||
ks_dhtrt_bucket* bucket = header->bucket;
|
||||
|
||||
if (bucket == 0) { /* sanity */
|
||||
#ifdef KS_DHT_DEBUGPRINTF_
|
||||
char buf[100];
|
||||
printf("closestbucketnodes: intermediate tree node found %s\n",
|
||||
ks_dhtrt_printableid(header->mask, buf));
|
||||
#endif
|
||||
|
||||
}
|
||||
|
||||
for(uint8_t ix=0; ix<KS_DHT_BUCKETSIZE; ++ix) {
|
||||
if ( bucket->entries[ix].inuse == 1 &&
|
||||
ks_dhtrt_isactive( &(bucket->entries[ix])) ) {
|
||||
|
||||
/* calculate xor value */
|
||||
ks_dhtrt_xor(nodeid, bucket->entries[ix].id, xorvalue );
|
||||
|
||||
/* do we need to hold this one */
|
||||
if ( count < max || /* yes: we have not filled the quota yet */
|
||||
(memcmp(xorvalue, hixor, KS_DHT_IDSIZE) < 0)) { /* or is closer node than one already selected */
|
||||
|
||||
/* now sort the new xorvalue into the results structure */
|
||||
/* this now becomes worst case O(n*2) logic - is there a better way */
|
||||
/* in practice the bucket size is fixed so actual behavior is proably 0(logn) */
|
||||
unsigned int xorix = xors->startix; /* start of ordered list */
|
||||
unsigned int prev_xorix = KS_DHT_BUCKETSIZE;
|
||||
|
||||
for(int ix2=0; ix2<count; ++ix2) {
|
||||
if (memcmp(xorvalue, xors->xort[xorix].xor, KS_DHT_IDSIZE) > 0) {
|
||||
|
||||
break; /* insert before xorix, after prev_xoris */
|
||||
}
|
||||
prev_xorix = xorix;
|
||||
xorix = xors->xort[xorix].nextix;
|
||||
}
|
||||
|
||||
/* insert point found
|
||||
count -> array slot to added newly identified node
|
||||
insert_point -> the array slot before which we need to insert the newly identified node
|
||||
*/
|
||||
memcpy(xors->xort[count].xor, xorvalue, KS_DHT_IDSIZE);
|
||||
xors->xort[count].ix = ix;
|
||||
|
||||
xors->xort[count].nextix = xorix; /* correct forward chain */
|
||||
if (prev_xorix < KS_DHT_BUCKETSIZE) { /* correct backward chain */
|
||||
xors->xort[prev_xorix].nextix = count;
|
||||
}
|
||||
else {
|
||||
xors->startix = count;
|
||||
}
|
||||
++count;
|
||||
}
|
||||
}
|
||||
}
|
||||
xors->count = count;
|
||||
return count; /* return count of added nodes */
|
||||
}
|
||||
|
||||
static
|
||||
uint8_t ks_dhtrt_load_query(ks_dhtrt_querynodes* query, ks_dhtrt_sortedxors* xort)
|
||||
{
|
||||
ks_dhtrt_sortedxors* current = xort;
|
||||
uint8_t loaded = 0;
|
||||
while(current) {
|
||||
#ifdef KS_DHT_DEBUGPRINTF_
|
||||
char buf[100];
|
||||
printf(" loadquery from bucket %s count %d\n",
|
||||
ks_dhtrt_printableid(current->bheader->mask,buf), current->count);
|
||||
#endif
|
||||
int xorix = current->startix;
|
||||
for (uint8_t ix = 0; ix<= current->count && loaded < query->max; ++ix ) {
|
||||
unsigned int z = current->xort[xorix].ix;
|
||||
query->nodes[ix] = current->bheader->bucket->entries[z].gptr->handle;
|
||||
++loaded;
|
||||
}
|
||||
if (loaded >= query->max) break;
|
||||
current = current->next;
|
||||
}
|
||||
query->count = loaded;
|
||||
return loaded;
|
||||
}
|
||||
|
||||
/*
|
||||
strictly for shifting the bucketheader mask
|
||||
so format must be a right filled mask (hex: ..ffffffff)
|
||||
*/
|
||||
static
|
||||
void ks_dhtrt_shiftright(unsigned char* id)
|
||||
{
|
||||
unsigned char b0 = 0;
|
||||
unsigned char b1 = 0;
|
||||
|
||||
for(int i = KS_DHT_IDSIZE-1; i >= 0; --i) {
|
||||
if (id[i] == 0) break; /* beyond mask- we are done */
|
||||
b1 = id[i] & 0x01;
|
||||
id[i] >>= 1;
|
||||
if (i != (KS_DHT_IDSIZE-1)) {
|
||||
id[i+1] |= (b0 << 7);
|
||||
}
|
||||
b0 = b1;
|
||||
}
|
||||
return;
|
||||
}
|
||||
|
||||
static
|
||||
void ks_dhtrt_shiftleft(unsigned char* id) {
|
||||
|
||||
for(int i = KS_DHT_IDSIZE-1; i >= 0; --i) {
|
||||
if (id[i] == 0xff) continue;
|
||||
id[i] <<= 1;
|
||||
id[i] |= 0x01;
|
||||
break;
|
||||
}
|
||||
return;
|
||||
}
|
||||
|
||||
/* Determine whether id1 or id2 is closer to ref */
|
||||
static int ks_dhtrt_xorcmp(const unsigned char *id1, const unsigned char *id2, const unsigned char *ref)
|
||||
{
|
||||
int i;
|
||||
for (i = 0; i < KS_DHT_IDSIZE; i++) {
|
||||
unsigned char xor1, xor2;
|
||||
if (id1[i] == id2[i]) {
|
||||
continue;
|
||||
}
|
||||
xor1 = id1[i] ^ ref[i];
|
||||
xor2 = id2[i] ^ ref[i];
|
||||
if (xor1 < xor2) {
|
||||
return -1; /* id1 is closer */
|
||||
}
|
||||
return 1; /* id2 is closer */
|
||||
}
|
||||
return 0; /* id2 and id2 are identical ! */
|
||||
}
|
||||
|
||||
/* create an xor value from two ids */
|
||||
static void ks_dhtrt_xor(const unsigned char *id1, const unsigned char *id2, unsigned char *xor)
|
||||
{
|
||||
for (int i = 0; i < KS_DHT_IDSIZE; ++i) {
|
||||
if (id1[i] == id2[i]) {
|
||||
xor[i] = 0;
|
||||
}
|
||||
xor[i] = id1[i] ^ id2[i];
|
||||
}
|
||||
return;
|
||||
}
|
||||
|
||||
/* is id masked by mask 1 => yes, 0=> no */
|
||||
static int ks_dhtrt_ismasked(const unsigned char *id, const unsigned char *mask)
|
||||
{
|
||||
for (int i = 0; i < KS_DHT_IDSIZE; ++i) {
|
||||
if (mask[i] == 0 && id[i] != 0) return 0;
|
||||
else if (mask[i] == 0xff) return 1;
|
||||
else if (id[i] > mask[i]) return 0;
|
||||
}
|
||||
return 1;
|
||||
}
|
||||
|
||||
static char* ks_dhtrt_printableid(const unsigned char* id, char* buffer)
|
||||
{
|
||||
char* t = buffer;
|
||||
memset(buffer, 0, KS_DHT_IDSIZE*2);
|
||||
for (int i = 0; i < KS_DHT_IDSIZE; ++i, buffer+=2) {
|
||||
sprintf(buffer, "%02x", id[i]);
|
||||
}
|
||||
return t;
|
||||
}
|
||||
|
||||
unsigned char ks_dhtrt_isactive(ks_dhtrt_bucket_entry* entry)
|
||||
{
|
||||
/* todo */
|
||||
return 1;
|
||||
}
|
||||
|
||||
|
|
@ -0,0 +1,108 @@
|
|||
/*
|
||||
* Copyright (c) 2016 Colm Quinn
|
||||
* All rights reserved.
|
||||
*
|
||||
* Redistribution and use in source and binary forms, with or without
|
||||
* modification, are permitted provided that the following conditions
|
||||
* are met:
|
||||
*
|
||||
* * Redistributions of source code must retain the above copyright
|
||||
* notice, this list of conditions and the following disclaimer.
|
||||
*
|
||||
* * Redistributions in binary form must reproduce the above copyright
|
||||
* notice, this list of conditions and the following disclaimer in the
|
||||
* documentation and/or other materials provided with the distribution.
|
||||
*
|
||||
* * Neither the name of the original author; nor the names of any contributors
|
||||
* may be used to endorse or promote products derived from this software
|
||||
* without specific prior written permission.
|
||||
*
|
||||
*
|
||||
* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
|
||||
* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
|
||||
* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
|
||||
* A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER
|
||||
* OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
|
||||
* EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
|
||||
* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
|
||||
* PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
|
||||
* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
|
||||
* NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
|
||||
* SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
|
||||
*/
|
||||
|
||||
#ifndef _KS_DHT_BUCKETS_H_
|
||||
#define _KS_DHT_BUCKETS_H_
|
||||
|
||||
#ifdef __cplusplus
|
||||
#define KS_BEGIN_EXTERN_C extern "C" {
|
||||
#define KS_END_EXTERN_C }
|
||||
#else
|
||||
#define KS_BEGIN_EXTERN_C
|
||||
#define KS_END_EXTERN_C
|
||||
#endif
|
||||
|
||||
#include "ks.h"
|
||||
|
||||
KS_BEGIN_EXTERN_C
|
||||
|
||||
/* @todo: temporary - replace with real definiton when available */
|
||||
typedef void ks_dht_node_t;
|
||||
|
||||
|
||||
enum ks_dhtrt_nodestate_t {DHTRT_UNKNOWN, DHTRT_ACTIVE, DHTRT_SUSPECT, DHTRT_EXPIRED};
|
||||
|
||||
typedef ks_status_t (*ks_dhtrt_callback)(ks_dht_node_t*, enum ks_dhtrt_nodestate_t);
|
||||
|
||||
|
||||
/* for testing */
|
||||
#define KS_DHT_BUCKETSIZE 20
|
||||
#define KS_DHT_IDSIZE 20
|
||||
|
||||
|
||||
typedef struct ks_dhtrt_node_s {
|
||||
unsigned char id[KS_DHT_IDSIZE];
|
||||
ks_dht_node_t* handle;
|
||||
} ks_dhtrt_node;
|
||||
|
||||
typedef struct ks_dhtrt_routetable_s {
|
||||
void* internal; /* ks_dhtrt_internal */
|
||||
ks_pool_t* pool; /* */
|
||||
ks_logger_t logger;
|
||||
} ks_dhtrt_routetable;
|
||||
|
||||
typedef struct ks_dhtrt_querynodes_s {
|
||||
unsigned char id[KS_DHT_IDSIZE]; /* in: id to query */
|
||||
uint8_t max; /* in: maximum to return */
|
||||
uint8_t count; /* out: number returned */
|
||||
ks_dht_node_t* nodes[KS_DHT_BUCKETSIZE]; /* out: array of peers (ks_dht_node_t* peer[incount]) */
|
||||
} ks_dhtrt_querynodes;
|
||||
|
||||
|
||||
typedef unsigned char ks_dhtrt_nodeid[KS_DHT_IDSIZE];
|
||||
|
||||
/* methods */
|
||||
|
||||
ks_dhtrt_routetable* ks_dhtrt_initroute( ks_pool_t *pool, ks_dhtrt_nodeid localid);
|
||||
ks_status_t ks_dhtrt_registercallback(ks_dhtrt_callback, enum ks_dhtrt_nodestate_t);
|
||||
void ks_dhtrt_deinitroute(ks_dhtrt_routetable* table );
|
||||
|
||||
ks_dhtrt_node* ks_dhtrt_create_node(ks_dhtrt_routetable* table, ks_dhtrt_nodeid nodeid, ks_dht_node_t* node);
|
||||
ks_status_t ks_dhtrt_delete_node(ks_dhtrt_routetable* table, ks_dhtrt_node* node);
|
||||
|
||||
ks_status_t ks_dhtrt_touch_node(ks_dhtrt_routetable* table, ks_dhtrt_nodeid nodeid);
|
||||
ks_status_t ks_dhtrt_expire_node(ks_dhtrt_routetable* table, ks_dhtrt_nodeid nodeid);
|
||||
|
||||
uint8_t ks_dhtrt_findclosest_nodes(ks_dhtrt_routetable* table, ks_dhtrt_querynodes* query);
|
||||
ks_dht_node_t* ks_dhtrt_find_node(ks_dhtrt_routetable* table, ks_dhtrt_nodeid id);
|
||||
|
||||
|
||||
/* debugging aids */
|
||||
void ks_dhtrt_dump(ks_dhtrt_routetable* table, int level);
|
||||
void ks_dhtrt_process_table(ks_dhtrt_routetable* table);
|
||||
|
||||
|
||||
KS_END_EXTERN_C
|
||||
|
||||
#endif
|
||||
|
Loading…
Reference in New Issue