mirror of
https://github.com/irungentoo/toxcore.git
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391 lines
14 KiB
C
391 lines
14 KiB
C
#ifdef HAVE_CONFIG_H
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#include "config.h"
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#endif
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#include <sys/param.h>
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#include <time.h>
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#include "../toxcore/tox.h"
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#include "../toxcore/DHT.c"
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#include "helpers.h"
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#define swap(x,y) do \
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{ unsigned char swap_temp[sizeof(x) == sizeof(y) ? (signed)sizeof(x) : -1]; \
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memcpy(swap_temp,&y,sizeof(x)); \
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memcpy(&y,&x, sizeof(x)); \
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memcpy(&x,swap_temp,sizeof(x)); \
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} while(0)
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void mark_bad(IPPTsPng *ipptp)
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{
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ipptp->timestamp = unix_time() - 2 * BAD_NODE_TIMEOUT;
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ipptp->hardening.routes_requests_ok = 0;
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ipptp->hardening.send_nodes_ok = 0;
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ipptp->hardening.testing_requests = 0;
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}
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void mark_possible_bad(IPPTsPng *ipptp)
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{
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ipptp->timestamp = unix_time();
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ipptp->hardening.routes_requests_ok = 0;
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ipptp->hardening.send_nodes_ok = 0;
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ipptp->hardening.testing_requests = 0;
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}
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void mark_good(IPPTsPng *ipptp)
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{
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ipptp->timestamp = unix_time();
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ipptp->hardening.routes_requests_ok = (HARDENING_ALL_OK >> 0) & 1;
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ipptp->hardening.send_nodes_ok = (HARDENING_ALL_OK >> 1) & 1;
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ipptp->hardening.testing_requests = (HARDENING_ALL_OK >> 2) & 1;
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}
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void mark_all_good(Client_data *list, uint32_t length, uint8_t ipv6)
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{
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uint32_t i;
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for (i = 0; i < length; ++i) {
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if (ipv6)
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mark_good(&list[i].assoc6);
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else
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mark_good(&list[i].assoc4);
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}
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}
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/* Returns 1 if public_key has a furthest distance to comp_client_id
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than all public_key's in the list */
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uint8_t is_furthest(const uint8_t *comp_client_id, Client_data *list, uint32_t length, const uint8_t *public_key)
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{
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uint32_t i;
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for (i = 0; i < length; ++i)
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if (id_closest(comp_client_id, public_key, list[i].public_key) == 1)
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return 0;
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return 1;
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}
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int client_in_list(Client_data *list, uint32_t length, const uint8_t *public_key)
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{
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int i;
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for (i = 0; i < (int)length; ++i)
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if (id_equal(public_key, list[i].public_key))
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return i;
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return -1;
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}
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void test_addto_lists_update(DHT *dht,
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Client_data *list,
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uint32_t length,
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IP_Port *ip_port)
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{
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int used, test, test1, test2, found;
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IP_Port test_ipp;
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uint8_t test_id[crypto_box_PUBLICKEYBYTES];
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uint8_t ipv6 = ip_port->ip.family == AF_INET6 ? 1 : 0;
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// check id update for existing ip_port
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test = rand() % length;
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ipport_copy(&test_ipp, ipv6 ? &list[test].assoc6.ip_port : &list[test].assoc4.ip_port);
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randombytes(test_id, sizeof(test_id));
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used = addto_lists(dht, test_ipp, test_id);
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ck_assert_msg(used >= 1, "Wrong number of added clients");
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// it is possible to have ip_port duplicates in the list, so ip_port @ found not always equal to ip_port @ test
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found = client_in_list(list, length, test_id);
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ck_assert_msg(found >= 0, "Client id is not in the list");
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ck_assert_msg(ipport_equal(&test_ipp, ipv6 ? &list[found].assoc6.ip_port : &list[found].assoc4.ip_port),
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"Client IP_Port is incorrect");
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// check ip_port update for existing id
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test = rand() % length;
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test_ipp.port = rand() % TOX_PORT_DEFAULT;
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id_copy(test_id, list[test].public_key);
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used = addto_lists(dht, test_ipp, test_id);
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ck_assert_msg(used >= 1, "Wrong number of added clients");
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// it is not possible to have id duplicates in the list, so id @ found must be equal id @ test
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ck_assert_msg(client_in_list(list, length, test_id) == test, "Client id is not in the list");
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ck_assert_msg(ipport_equal(&test_ipp, ipv6 ? &list[test].assoc6.ip_port : &list[test].assoc4.ip_port),
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"Client IP_Port is incorrect");
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// check ip_port update for existing id and ip_port (... port ... id ...)
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test1 = rand() % (length / 2);
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test2 = rand() % (length / 2) + length / 2;
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ipport_copy(&test_ipp, ipv6 ? &list[test1].assoc6.ip_port : &list[test1].assoc4.ip_port);
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id_copy(test_id, list[test2].public_key);
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if (ipv6) list[test2].assoc6.ip_port.port = -1;
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else list[test2].assoc4.ip_port.port = -1;
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used = addto_lists(dht, test_ipp, test_id);
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ck_assert_msg(used >= 1, "Wrong number of added clients");
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ck_assert_msg(client_in_list(list, length, test_id) == test2, "Client id is not in the list");
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ck_assert_msg(ipport_equal(&test_ipp, ipv6 ? &list[test2].assoc6.ip_port : &list[test2].assoc4.ip_port),
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"Client IP_Port is incorrect");
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// check ip_port update for existing id and ip_port (... id ... port ...)
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test1 = rand() % (length / 2);
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test2 = rand() % (length / 2) + length / 2;
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ipport_copy(&test_ipp, ipv6 ? &list[test2].assoc6.ip_port : &list[test2].assoc4.ip_port);
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id_copy(test_id, list[test1].public_key);
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if (ipv6) list[test1].assoc6.ip_port.port = -1;
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else list[test1].assoc4.ip_port.port = -1;
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used = addto_lists(dht, test_ipp, test_id);
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ck_assert_msg(used >= 1, "Wrong number of added clients");
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ck_assert_msg(client_in_list(list, length, test_id) == test1, "Client id is not in the list");
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ck_assert_msg(ipport_equal(&test_ipp, ipv6 ? &list[test1].assoc6.ip_port : &list[test1].assoc4.ip_port),
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"Client IP_Port is incorrect");
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}
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void test_addto_lists_bad(DHT *dht,
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Client_data *list,
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uint32_t length,
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IP_Port *ip_port)
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{
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// check "bad" clients replacement
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int used, test1, test2, test3;
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uint8_t public_key[crypto_box_PUBLICKEYBYTES], test_id1[crypto_box_PUBLICKEYBYTES], test_id2[crypto_box_PUBLICKEYBYTES], test_id3[crypto_box_PUBLICKEYBYTES];
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uint8_t ipv6 = ip_port->ip.family == AF_INET6 ? 1 : 0;
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randombytes(public_key, sizeof(public_key));
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mark_all_good(list, length, ipv6);
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test1 = rand() % (length / 3);
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test2 = rand() % (length / 3) + length / 3;
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test3 = rand() % (length / 3) + 2 * length / 3;
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ck_assert_msg(!(test1 == test2 || test1 == test3 || test2 == test3), "Wrong test indices are chosen");
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id_copy((uint8_t *)&test_id1, list[test1].public_key);
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id_copy((uint8_t *)&test_id2, list[test2].public_key);
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id_copy((uint8_t *)&test_id3, list[test3].public_key);
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// mark nodes as "bad"
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if (ipv6) {
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mark_bad(&list[test1].assoc6);
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mark_bad(&list[test2].assoc6);
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mark_bad(&list[test3].assoc6);
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} else {
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mark_bad(&list[test1].assoc4);
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mark_bad(&list[test2].assoc4);
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mark_bad(&list[test3].assoc4);
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}
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ip_port->port += 1;
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used = addto_lists(dht, *ip_port, public_key);
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ck_assert_msg(used >= 1, "Wrong number of added clients");
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ck_assert_msg(client_in_list(list, length, public_key) >= 0, "Client id is not in the list");
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ck_assert_msg(client_in_list(list, length, test_id2) >= 0, "Wrong bad client removed");
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ck_assert_msg(client_in_list(list, length, test_id3) >= 0, "Wrong bad client removed");
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}
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void test_addto_lists_possible_bad(DHT *dht,
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Client_data *list,
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uint32_t length,
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IP_Port *ip_port,
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const uint8_t *comp_client_id)
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{
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// check "possibly bad" clients replacement
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int used, test1, test2, test3;
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uint8_t public_key[crypto_box_PUBLICKEYBYTES], test_id1[crypto_box_PUBLICKEYBYTES], test_id2[crypto_box_PUBLICKEYBYTES], test_id3[crypto_box_PUBLICKEYBYTES];
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uint8_t ipv6 = ip_port->ip.family == AF_INET6 ? 1 : 0;
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randombytes(public_key, sizeof(public_key));
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mark_all_good(list, length, ipv6);
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test1 = rand() % (length / 3);
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test2 = rand() % (length / 3) + length / 3;
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test3 = rand() % (length / 3) + 2 * length / 3;
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ck_assert_msg(!(test1 == test2 || test1 == test3 || test2 == test3), "Wrong test indices are chosen");
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id_copy((uint8_t *)&test_id1, list[test1].public_key);
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id_copy((uint8_t *)&test_id2, list[test2].public_key);
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id_copy((uint8_t *)&test_id3, list[test3].public_key);
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// mark nodes as "possibly bad"
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if (ipv6) {
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mark_possible_bad(&list[test1].assoc6);
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mark_possible_bad(&list[test2].assoc6);
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mark_possible_bad(&list[test3].assoc6);
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} else {
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mark_possible_bad(&list[test1].assoc4);
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mark_possible_bad(&list[test2].assoc4);
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mark_possible_bad(&list[test3].assoc4);
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}
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ip_port->port += 1;
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used = addto_lists(dht, *ip_port, public_key);
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ck_assert_msg(used >= 1, "Wrong number of added clients");
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ck_assert_msg(client_in_list(list, length, public_key) >= 0, "Client id is not in the list");
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int inlist_id1 = client_in_list(list, length, test_id1) >= 0;
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int inlist_id2 = client_in_list(list, length, test_id2) >= 0;
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int inlist_id3 = client_in_list(list, length, test_id3) >= 0;
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ck_assert_msg(inlist_id1 + inlist_id2 + inlist_id3 == 2, "Wrong client removed");
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if (!inlist_id1) {
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ck_assert_msg(id_closest(comp_client_id, test_id2, test_id1) == 1,
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"Id has been removed but is closer to than another one");
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ck_assert_msg(id_closest(comp_client_id, test_id3, test_id1) == 1,
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"Id has been removed but is closer to than another one");
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} else if (!inlist_id2) {
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ck_assert_msg(id_closest(comp_client_id, test_id1, test_id2) == 1,
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"Id has been removed but is closer to than another one");
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ck_assert_msg(id_closest(comp_client_id, test_id3, test_id2) == 1,
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"Id has been removed but is closer to than another one");
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} else if (!inlist_id3) {
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ck_assert_msg(id_closest(comp_client_id, test_id1, test_id3) == 1,
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"Id has been removed but is closer to than another one");
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ck_assert_msg(id_closest(comp_client_id, test_id2, test_id3) == 1,
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"Id has been removed but is closer to than another one");
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}
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}
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void test_addto_lists_good(DHT *dht,
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Client_data *list,
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uint32_t length,
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IP_Port *ip_port,
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const uint8_t *comp_client_id)
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{
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uint8_t public_key[crypto_box_PUBLICKEYBYTES];
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uint8_t ipv6 = ip_port->ip.family == AF_INET6 ? 1 : 0;
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mark_all_good(list, length, ipv6);
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// check "good" client id replacement
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do {
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randombytes(public_key, sizeof(public_key));
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} while (is_furthest(comp_client_id, list, length, public_key));
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ip_port->port += 1;
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addto_lists(dht, *ip_port, public_key);
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ck_assert_msg(client_in_list(list, length, public_key) >= 0, "Good client id is not in the list");
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// check "good" client id skip
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do {
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randombytes(public_key, sizeof(public_key));
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} while (!is_furthest(comp_client_id, list, length, public_key));
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ip_port->port += 1;
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addto_lists(dht, *ip_port, public_key);
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ck_assert_msg(client_in_list(list, length, public_key) == -1, "Good client id is in the list");
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}
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void test_addto_lists(IP ip)
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{
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Networking_Core *net = new_networking(ip, TOX_PORT_DEFAULT);
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ck_assert_msg(net != 0, "Failed to create Networking_Core");
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DHT *dht = new_DHT(net);
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ck_assert_msg(dht != 0, "Failed to create DHT");
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IP_Port ip_port = { .ip = ip, .port = TOX_PORT_DEFAULT };
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uint8_t public_key[crypto_box_PUBLICKEYBYTES];
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int i, used;
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// check lists filling
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for (i = 0; i < MAX(LCLIENT_LIST, MAX_FRIEND_CLIENTS); ++i) {
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randombytes(public_key, sizeof(public_key));
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used = addto_lists(dht, ip_port, public_key);
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ck_assert_msg(used == dht->num_friends + 1, "Wrong number of added clients with existing ip_port");
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}
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for (i = 0; i < MAX(LCLIENT_LIST, MAX_FRIEND_CLIENTS); ++i) {
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ip_port.port += 1;
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used = addto_lists(dht, ip_port, public_key);
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ck_assert_msg(used == dht->num_friends + 1, "Wrong number of added clients with existing public_key");
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}
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for (i = 0; i < MAX(LCLIENT_LIST, MAX_FRIEND_CLIENTS); ++i) {
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ip_port.port += 1;
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randombytes(public_key, sizeof(public_key));
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used = addto_lists(dht, ip_port, public_key);
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ck_assert_msg(used >= 1, "Wrong number of added clients");
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}
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/*check: Current behavior if there are two clients with the same id is
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* to replace the first ip by the second. */
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test_addto_lists_update(dht, dht->close_clientlist, LCLIENT_LIST, &ip_port);
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for (i = 0; i < dht->num_friends; ++i)
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test_addto_lists_update(dht, dht->friends_list[i].client_list, MAX_FRIEND_CLIENTS, &ip_port);
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// check "bad" entries
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test_addto_lists_bad(dht, dht->close_clientlist, LCLIENT_LIST, &ip_port);
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for (i = 0; i < dht->num_friends; ++i)
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test_addto_lists_bad(dht, dht->friends_list[i].client_list, MAX_FRIEND_CLIENTS, &ip_port);
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// check "possibly bad" entries
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/*
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test_addto_lists_possible_bad(dht, dht->close_clientlist, LCLIENT_LIST, &ip_port, dht->self_public_key);
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for (i = 0; i < dht->num_friends; ++i)
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test_addto_lists_possible_bad(dht, dht->friends_list[i].client_list, MAX_FRIEND_CLIENTS, &ip_port,
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dht->friends_list[i].public_key);
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*/
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// check "good" entries
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test_addto_lists_good(dht, dht->close_clientlist, LCLIENT_LIST, &ip_port, dht->self_public_key);
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for (i = 0; i < dht->num_friends; ++i)
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test_addto_lists_good(dht, dht->friends_list[i].client_list, MAX_FRIEND_CLIENTS, &ip_port,
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dht->friends_list[i].public_key);
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kill_DHT(dht);
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kill_networking(net);
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}
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START_TEST(test_addto_lists_ipv4)
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{
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IP ip;
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ip_init(&ip, 0);
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test_addto_lists(ip);
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}
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END_TEST
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START_TEST(test_addto_lists_ipv6)
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{
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IP ip;
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ip_init(&ip, 1);
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test_addto_lists(ip);
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}
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END_TEST
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Suite *dht_suite(void)
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{
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Suite *s = suite_create("DHT");
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DEFTESTCASE(addto_lists_ipv4);
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DEFTESTCASE(addto_lists_ipv6);
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return s;
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}
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int main(int argc, char *argv[])
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{
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srand((unsigned int) time(NULL));
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Suite *dht = dht_suite();
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SRunner *test_runner = srunner_create(dht);
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int number_failed = 0;
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srunner_run_all(test_runner, CK_NORMAL);
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number_failed = srunner_ntests_failed(test_runner);
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srunner_free(test_runner);
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return number_failed;
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}
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