Green Sky
227425b90e
git-subtree-dir: external/toxcore/c-toxcore git-subtree-split: 67badf69416a74e74f6d7eb51dd96f37282b8455
382 lines
11 KiB
C
382 lines
11 KiB
C
#include <stdint.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <sys/types.h>
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#include <time.h>
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#if !defined(_WIN32) && !defined(__WIN32__) && !defined(WIN32)
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#include <pthread.h>
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#endif
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#include <vpx/vpx_image.h>
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#include "../testing/misc_tools.h"
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#include "../toxav/toxav.h"
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#include "../toxcore/crypto_core.h"
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#include "../toxcore/logger.h"
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#include "../toxcore/tox.h"
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#include "../toxcore/tox_struct.h"
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#include "../toxcore/util.h"
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#include "auto_test_support.h"
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#include "check_compat.h"
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typedef struct {
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bool incoming;
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uint32_t state;
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} CallControl;
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typedef struct {
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ToxAV *AliceAV;
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ToxAV *BobAV;
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CallControl *AliceCC;
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CallControl *BobCC;
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uint32_t friend_number;
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} thread_data;
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/**
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* Callbacks
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*/
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static void t_toxav_call_cb(ToxAV *av, uint32_t friend_number, bool audio_enabled, bool video_enabled, void *user_data)
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{
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printf("Handling CALL callback\n");
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((CallControl *)user_data)[friend_number].incoming = true;
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}
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static void t_toxav_call_state_cb(ToxAV *av, uint32_t friend_number, uint32_t state, void *user_data)
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{
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printf("Handling CALL STATE callback: %u %p\n", state, (void *)av);
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((CallControl *)user_data)[friend_number].state = state;
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}
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static void t_toxav_receive_video_frame_cb(ToxAV *av, uint32_t friend_number,
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uint16_t width, uint16_t height,
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uint8_t const *y, uint8_t const *u, uint8_t const *v,
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int32_t ystride, int32_t ustride, int32_t vstride,
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void *user_data)
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{
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}
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static void t_toxav_receive_audio_frame_cb(ToxAV *av, uint32_t friend_number,
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int16_t const *pcm,
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size_t sample_count,
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uint8_t channels,
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uint32_t sampling_rate,
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void *user_data)
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{
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}
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static void t_accept_friend_request_cb(Tox *m, const uint8_t *public_key, const uint8_t *data, size_t length,
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void *userdata)
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{
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if (length == 7 && memcmp("gentoo", data, 7) == 0) {
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ck_assert(tox_friend_add_norequest(m, public_key, nullptr) != (uint32_t) -1);
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}
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}
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/**
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* Iterate helper
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*/
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static ToxAV *setup_av_instance(Tox *tox, CallControl *CC)
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{
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Toxav_Err_New error;
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ToxAV *av = toxav_new(tox, &error);
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ck_assert(error == TOXAV_ERR_NEW_OK);
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toxav_callback_call(av, t_toxav_call_cb, CC);
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toxav_callback_call_state(av, t_toxav_call_state_cb, CC);
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toxav_callback_video_receive_frame(av, t_toxav_receive_video_frame_cb, CC);
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toxav_callback_audio_receive_frame(av, t_toxav_receive_audio_frame_cb, CC);
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return av;
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}
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static void *call_thread(void *pd)
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{
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ToxAV *AliceAV = ((thread_data *) pd)->AliceAV;
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ToxAV *BobAV = ((thread_data *) pd)->BobAV;
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uint32_t friend_number = ((thread_data *) pd)->friend_number;
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int16_t *PCM = (int16_t *)calloc(960, sizeof(int16_t));
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uint8_t *video_y = (uint8_t *)calloc(800 * 600, sizeof(uint8_t));
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uint8_t *video_u = (uint8_t *)calloc(800 * 600 / 4, sizeof(uint8_t));
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uint8_t *video_v = (uint8_t *)calloc(800 * 600 / 4, sizeof(uint8_t));
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time_t start_time = time(nullptr);
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do {
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toxav_iterate(AliceAV);
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toxav_iterate(BobAV);
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toxav_audio_send_frame(AliceAV, friend_number, PCM, 960, 1, 48000, nullptr);
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toxav_audio_send_frame(BobAV, 0, PCM, 960, 1, 48000, nullptr);
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toxav_video_send_frame(AliceAV, friend_number, 800, 600, video_y, video_u, video_v, nullptr);
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toxav_video_send_frame(BobAV, 0, 800, 600, video_y, video_u, video_v, nullptr);
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c_sleep(10);
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} while (time(nullptr) - start_time < 4);
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free(PCM);
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free(video_y);
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free(video_u);
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free(video_v);
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printf("Closing thread\n");
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pthread_exit(nullptr);
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return nullptr;
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}
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typedef struct Time_Data {
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pthread_mutex_t lock;
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uint64_t clock;
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} Time_Data;
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static uint64_t get_state_clock_callback(void *user_data)
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{
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Time_Data *time_data = (Time_Data *)user_data;
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pthread_mutex_lock(&time_data->lock);
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uint64_t clock = time_data->clock;
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pthread_mutex_unlock(&time_data->lock);
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return clock;
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}
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static void increment_clock(Time_Data *time_data, uint64_t count)
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{
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pthread_mutex_lock(&time_data->lock);
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time_data->clock += count;
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pthread_mutex_unlock(&time_data->lock);
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}
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static void set_current_time_callback(Tox *tox, Time_Data *time_data)
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{
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Mono_Time *mono_time = tox->mono_time;
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mono_time_set_current_time_callback(mono_time, get_state_clock_callback, time_data);
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}
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static void test_av_three_calls(void)
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{
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uint32_t index[] = { 1, 2, 3, 4, 5 };
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Tox *Alice, *bootstrap, *Bobs[3];
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ToxAV *AliceAV, *BobsAV[3];
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void *retval;
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CallControl AliceCC[3], BobsCC[3];
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Time_Data time_data;
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pthread_mutex_init(&time_data.lock, nullptr);
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{
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Tox_Err_New error;
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bootstrap = tox_new_log(nullptr, &error, &index[0]);
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ck_assert(error == TOX_ERR_NEW_OK);
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time_data.clock = current_time_monotonic(bootstrap->mono_time);
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set_current_time_callback(bootstrap, &time_data);
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Alice = tox_new_log(nullptr, &error, &index[1]);
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ck_assert(error == TOX_ERR_NEW_OK);
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set_current_time_callback(Alice, &time_data);
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Bobs[0] = tox_new_log(nullptr, &error, &index[2]);
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ck_assert(error == TOX_ERR_NEW_OK);
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set_current_time_callback(Bobs[0], &time_data);
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Bobs[1] = tox_new_log(nullptr, &error, &index[3]);
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ck_assert(error == TOX_ERR_NEW_OK);
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set_current_time_callback(Bobs[1], &time_data);
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Bobs[2] = tox_new_log(nullptr, &error, &index[4]);
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ck_assert(error == TOX_ERR_NEW_OK);
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set_current_time_callback(Bobs[2], &time_data);
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}
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printf("Created 5 instances of Tox\n");
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printf("Preparing network...\n");
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time_t cur_time = time(nullptr);
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uint8_t address[TOX_ADDRESS_SIZE];
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tox_callback_friend_request(Alice, t_accept_friend_request_cb);
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tox_self_get_address(Alice, address);
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printf("bootstrapping Alice and the %u Bobs off a third bootstrap node\n",
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(unsigned)(sizeof(Bobs) / sizeof(Bobs[0])));
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uint8_t dht_key[TOX_PUBLIC_KEY_SIZE];
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tox_self_get_dht_id(bootstrap, dht_key);
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const uint16_t dht_port = tox_self_get_udp_port(bootstrap, nullptr);
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tox_bootstrap(Alice, "localhost", dht_port, dht_key, nullptr);
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tox_bootstrap(Bobs[0], "localhost", dht_port, dht_key, nullptr);
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tox_bootstrap(Bobs[1], "localhost", dht_port, dht_key, nullptr);
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tox_bootstrap(Bobs[2], "localhost", dht_port, dht_key, nullptr);
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ck_assert(tox_friend_add(Bobs[0], address, (const uint8_t *)"gentoo", 7, nullptr) != (uint32_t) -1);
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ck_assert(tox_friend_add(Bobs[1], address, (const uint8_t *)"gentoo", 7, nullptr) != (uint32_t) -1);
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ck_assert(tox_friend_add(Bobs[2], address, (const uint8_t *)"gentoo", 7, nullptr) != (uint32_t) -1);
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uint8_t off = 1;
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while (true) {
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tox_iterate(bootstrap, nullptr);
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tox_iterate(Alice, nullptr);
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tox_iterate(Bobs[0], nullptr);
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tox_iterate(Bobs[1], nullptr);
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tox_iterate(Bobs[2], nullptr);
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if (tox_self_get_connection_status(bootstrap) &&
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tox_self_get_connection_status(Alice) &&
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tox_self_get_connection_status(Bobs[0]) &&
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tox_self_get_connection_status(Bobs[1]) &&
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tox_self_get_connection_status(Bobs[2]) && off) {
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printf("Toxes are online, took %lu seconds\n", (unsigned long)(time(nullptr) - cur_time));
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off = 0;
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}
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if (tox_friend_get_connection_status(Alice, 0, nullptr) == TOX_CONNECTION_UDP &&
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tox_friend_get_connection_status(Alice, 1, nullptr) == TOX_CONNECTION_UDP &&
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tox_friend_get_connection_status(Alice, 2, nullptr) == TOX_CONNECTION_UDP &&
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tox_friend_get_connection_status(Bobs[0], 0, nullptr) == TOX_CONNECTION_UDP &&
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tox_friend_get_connection_status(Bobs[1], 0, nullptr) == TOX_CONNECTION_UDP &&
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tox_friend_get_connection_status(Bobs[2], 0, nullptr) == TOX_CONNECTION_UDP) {
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break;
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}
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increment_clock(&time_data, 200);
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c_sleep(5);
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}
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AliceAV = setup_av_instance(Alice, AliceCC);
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BobsAV[0] = setup_av_instance(Bobs[0], &BobsCC[0]);
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BobsAV[1] = setup_av_instance(Bobs[1], &BobsCC[1]);
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BobsAV[2] = setup_av_instance(Bobs[2], &BobsCC[2]);
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printf("Created 4 instances of ToxAV\n");
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printf("All set after %lu seconds!\n", (unsigned long)(time(nullptr) - cur_time));
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thread_data tds[3];
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for (size_t i = 0; i < 3; i++) {
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tds[i].AliceAV = AliceAV;
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tds[i].BobAV = BobsAV[i];
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tds[i].AliceCC = &AliceCC[i];
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tds[i].BobCC = &BobsCC[i];
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tds[i].friend_number = i;
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memset(tds[i].AliceCC, 0, sizeof(CallControl));
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memset(tds[i].BobCC, 0, sizeof(CallControl));
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}
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pthread_t tids[3];
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for (size_t i = 0; i < 3; i++) {
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(void) pthread_create(&tids[i], nullptr, call_thread, &tds[i]);
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}
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time_t start_time = time(nullptr);
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do {
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tox_iterate(bootstrap, nullptr);
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tox_iterate(Alice, nullptr);
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tox_iterate(Bobs[0], nullptr);
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tox_iterate(Bobs[1], nullptr);
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tox_iterate(Bobs[2], nullptr);
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increment_clock(&time_data, 100);
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c_sleep(5);
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} while (time(nullptr) - start_time < 1);
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/* Call */
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for (size_t i = 0; i < 3; i++) {
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Toxav_Err_Call rc;
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toxav_call(AliceAV, tds[i].friend_number, 48, 3000, &rc);
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if (rc != TOXAV_ERR_CALL_OK) {
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printf("toxav_call failed: %d\n", rc);
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ck_assert(0);
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}
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}
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do {
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tox_iterate(bootstrap, nullptr);
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tox_iterate(Alice, nullptr);
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tox_iterate(Bobs[0], nullptr);
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tox_iterate(Bobs[1], nullptr);
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tox_iterate(Bobs[2], nullptr);
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for (size_t i = 0; i < 3; i++) {
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if (BobsCC[i].incoming) {
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/* Answer */
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Toxav_Err_Answer rc;
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toxav_answer(BobsAV[i], 0, 8, 500, &rc);
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if (rc != TOXAV_ERR_ANSWER_OK) {
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printf("toxav_answer failed: %d\n", rc);
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ck_assert(0);
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}
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BobsCC[i].incoming = false;
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}
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}
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increment_clock(&time_data, 100);
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c_sleep(5);
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} while (time(nullptr) - start_time < 3);
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/* Hangup */
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for (size_t i = 0; i < 3; i++) {
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Toxav_Err_Call_Control rc;
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toxav_call_control(AliceAV, i, TOXAV_CALL_CONTROL_CANCEL, &rc);
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if (rc != TOXAV_ERR_CALL_CONTROL_OK) {
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printf("toxav_call_control failed: %d %p %p\n", rc, (void *)AliceAV, (void *)&BobsAV[i]);
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}
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}
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do {
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tox_iterate(bootstrap, nullptr);
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tox_iterate(Alice, nullptr);
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tox_iterate(Bobs[0], nullptr);
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tox_iterate(Bobs[1], nullptr);
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tox_iterate(Bobs[2], nullptr);
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increment_clock(&time_data, 100);
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c_sleep(5);
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} while (time(nullptr) - start_time < 5);
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ck_assert(pthread_join(tids[0], &retval) == 0);
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ck_assert(retval == nullptr);
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ck_assert(pthread_join(tids[1], &retval) == 0);
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ck_assert(retval == nullptr);
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ck_assert(pthread_join(tids[2], &retval) == 0);
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ck_assert(retval == nullptr);
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printf("Killing all instances\n");
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toxav_kill(BobsAV[2]);
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toxav_kill(BobsAV[1]);
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toxav_kill(BobsAV[0]);
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toxav_kill(AliceAV);
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tox_kill(Bobs[2]);
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tox_kill(Bobs[1]);
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tox_kill(Bobs[0]);
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tox_kill(Alice);
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tox_kill(bootstrap);
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pthread_mutex_destroy(&time_data.lock);
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printf("\nTest successful!\n");
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}
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int main(void)
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{
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setvbuf(stdout, nullptr, _IONBF, 0);
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test_av_three_calls();
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return 0;
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}
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