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#include "unity.h"
#include "peers.h"
#include "log.h"
#include <string.h>
#include <arpa/inet.h>
#define IP(a, b, c, d) htonl(a << 24 | b << 16 | c << 8 | d)
void test_add_single_peer() {
allocate_hashtable();
struct infohash sometorrent = {.inner={0x0034048f, 0x08000020, 0x00888880, 0x02008460, 0x0ab00521}};
struct addr addr = (struct addr){.ip = IP(128,0,0,1), .port = 0};
int rc = add_peer(&sometorrent, &addr, 0);
TEST_ASSERT_EQUAL(0, rc);
}
void test_add_9_peers_same_torrent() {
allocate_hashtable();
struct infohash sometorrent = {.inner={0x0034048f, 0x08000020, 0x00888880, 0x02008460, 0x0ab00521}};
struct addr addr = (struct addr){.ip = IP(128,0,0,1), .port = 0};
int rc = add_peer(&sometorrent, &addr, 0);
TEST_ASSERT_EQUAL(0, rc);
rc = add_peer(&sometorrent, &addr, 0);
TEST_ASSERT_EQUAL(0, rc);
rc = add_peer(&sometorrent, &addr, 0);
TEST_ASSERT_EQUAL(0, rc);
rc = add_peer(&sometorrent, &addr, 0);
TEST_ASSERT_EQUAL(0, rc);
rc = add_peer(&sometorrent, &addr, 0);
TEST_ASSERT_EQUAL(0, rc);
rc = add_peer(&sometorrent, &addr, 0);
TEST_ASSERT_EQUAL(0, rc);
rc = add_peer(&sometorrent, &addr, 0);
TEST_ASSERT_EQUAL(0, rc);
rc = add_peer(&sometorrent, &addr, 0);
TEST_ASSERT_EQUAL(0, rc);
// There's room for 8 peers per infohash
rc = add_peer(&sometorrent, &addr, 0);
TEST_ASSERT_EQUAL(PEER_EFULL, rc);
}
void test_peers_for_only_torrent() {
allocate_hashtable();
struct infohash sometorrent = {.inner={0x0034048f, 0x08000020, 0x00888880, 0x02008460, 0x0ab00521}};
struct infohash othertorrent = {.inner={0x0034048f, 0x08000020, 0x00888880, 0x02008460, 0x0ab00522}};
struct addr someaddr = (struct addr){.ip = IP(128,0,0,1), .port = 0};
struct addr otheraddr = (struct addr){.ip = IP(128,0,0,1), .port = 1};
int rc = add_peer(&sometorrent, &someaddr, 0);
TEST_ASSERT_EQUAL(0, rc);
rc = add_peer(&othertorrent, &otheraddr, 0);
TEST_ASSERT_EQUAL(0, rc);
struct addr* found;
size_t found_len;
get_peers(&sometorrent, &found, &found_len);
TEST_ASSERT_EQUAL(1, found_len);
TEST_ASSERT_EQUAL_MEMORY(&someaddr, &found[0], sizeof(struct addr));
get_peers(&othertorrent, &found, &found_len);
TEST_ASSERT_EQUAL(1, found_len);
TEST_ASSERT_EQUAL_MEMORY(&otheraddr, &found[0], sizeof(struct addr));
}
void test_have_no_peers() {
allocate_hashtable();
struct infohash sometorrent = {.inner={0x0034048f, 0x08000020, 0x00888880, 0x02008460, 0x0ab00521}};
struct addr* found;
size_t found_len;
get_peers(&sometorrent, &found, &found_len);
TEST_ASSERT_NULL(found);
TEST_ASSERT_EQUAL(0, found_len);
}
void test_grows() {
allocate_hashtable();
struct addr addr = (struct addr){.ip = IP(128,0,0,1), .port = 0};
for(int i = 0; i < 17; i++) { // Peer table size + 1 to make sure it HAS to grow
struct infohash sometorrent = {.inner={0x0034048f, 0x08000020, 0x00888880, 0x02008460, i}};
int rc = add_peer(&sometorrent, &addr, 0);
TEST_ASSERT_EQUAL(0, rc);
}
{
// We can find a peer after the resize again
struct infohash sometorrent = {.inner={0x0034048f, 0x08000020, 0x00888880, 0x02008460, 0x00000001}};
struct addr* found;
size_t found_len;
get_peers(&sometorrent, &found, &found_len);
TEST_ASSERT_NOT_NULL(found);
TEST_ASSERT_EQUAL(1, found_len);
}
}
void test_expired() {
allocate_hashtable();
struct infohash sometorrent = {.inner={0x0034048f, 0x08000020, 0x00888880, 0x02008460, 0x0ab00521}};
struct infohash other = {.inner={0x0034048f, 0x08000020, 0x00888880, 0x02008470, 0x0ab00521}};
struct addr addr = (struct addr){.ip = IP(128,0,0,1), .port = 0};
struct addr other_addr = (struct addr){.ip = IP(128,0,0,1), .port = 1};
int rc = add_peer(&sometorrent, &addr, 0);
TEST_ASSERT_EQUAL(0, rc);
rc = add_peer(&other, &addr, 0);
TEST_ASSERT_EQUAL(0, rc);
rc = add_peer(&other, &other_addr, 1);
TEST_ASSERT_EQUAL(0, rc);
expire_hashes(HASH_TIMEOUT + 1);
{
struct addr* found;
size_t found_len;
get_peers(&sometorrent, &found, &found_len);
TEST_ASSERT_NULL(found);
TEST_ASSERT_EQUAL(0, found_len);
}
{
struct addr* found;
size_t found_len;
get_peers(&other, &found, &found_len);
TEST_ASSERT_NOT_NULL(found);
TEST_ASSERT_EQUAL(2, found_len);
}
}
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