mirror of
https://github.com/TokTok/c-toxcore
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186 lines
5.8 KiB
C++
186 lines
5.8 KiB
C++
#include "DHT_test_util.hh"
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#include <cassert>
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#include <cstring>
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#include <iomanip>
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#include <ostream>
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#include "../testing/support/public/simulated_environment.hh"
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#include "DHT.h"
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#include "crypto_core.h"
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#include "crypto_core_test_util.hh"
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#include "network.h"
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#include "network_test_util.hh"
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using tox::test::FakeClock;
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// --- Mock DHT Implementation ---
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MockDHT::MockDHT(const Random *_Nonnull rng)
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{
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crypto_new_keypair(rng, self_public_key, self_secret_key);
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}
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const std::uint8_t *_Nullable MockDHT::get_shared_key(const std::uint8_t *_Nonnull pk)
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{
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std::array<std::uint8_t, CRYPTO_PUBLIC_KEY_SIZE> pk_arr;
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std::copy(pk, pk + CRYPTO_PUBLIC_KEY_SIZE, pk_arr.begin());
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auto it = shared_keys.find(pk_arr);
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if (it != shared_keys.end()) {
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return it->second.data();
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}
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++computation_count;
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// Compute new shared key
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std::array<std::uint8_t, CRYPTO_SHARED_KEY_SIZE> sk;
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encrypt_precompute(pk, self_secret_key, sk.data());
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shared_keys[pk_arr] = sk;
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return shared_keys[pk_arr].data();
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}
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const Net_Crypto_DHT_Funcs MockDHT::funcs = {
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[](void *_Nonnull obj, const std::uint8_t *_Nonnull public_key) {
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return static_cast<MockDHT *>(obj)->get_shared_key(public_key);
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},
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[](const void *_Nonnull obj) { return static_cast<const MockDHT *>(obj)->self_public_key; },
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[](const void *_Nonnull obj) { return static_cast<const MockDHT *>(obj)->self_secret_key; },
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};
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// --- WrappedMockDHT Implementation ---
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WrappedMockDHT::WrappedMockDHT(tox::test::SimulatedEnvironment &env, std::uint16_t port)
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: node_(env.create_node(0))
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, logger_(logger_new(&node_->c_memory), [](Logger *l) { logger_kill(l); })
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, mono_time_(mono_time_new(
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&node_->c_memory,
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[](void *_Nullable ud) -> std::uint64_t {
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return static_cast<tox::test::FakeClock *>(ud)->current_time_ms();
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},
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&env.fake_clock()),
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[mem = &node_->c_memory](Mono_Time *t) { mono_time_free(mem, t); })
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, networking_(nullptr, [](Networking_Core *n) { kill_networking(n); })
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, dht_(&node_->c_random)
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{
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// Setup Networking
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IP ip;
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ip_init(&ip, false);
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unsigned int error = 0;
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networking_.reset(new_networking_ex(
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logger_.get(), &node_->c_memory, &node_->c_network, &ip, port, port + 1, &error));
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assert(error == 0);
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node_->endpoint = node_->node->get_primary_socket();
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assert(node_->endpoint != nullptr);
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assert(node_->endpoint->local_port() == port);
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}
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WrappedMockDHT::~WrappedMockDHT() = default;
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IP_Port WrappedMockDHT::get_ip_port() const
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{
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IP_Port ip_port;
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ip_port.ip = node_->node->ip;
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ip_port.port = net_htons(node_->endpoint->local_port());
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return ip_port;
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}
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void WrappedMockDHT::poll()
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{
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mono_time_update(mono_time_.get());
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networking_poll(networking_.get(), nullptr);
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}
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const Net_Crypto_DHT_Funcs WrappedMockDHT::funcs = MockDHT::funcs;
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// --- WrappedDHT Implementation ---
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WrappedDHT::WrappedDHT(tox::test::SimulatedEnvironment &env, std::uint16_t port)
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: node_(env.create_node(0))
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, logger_(logger_new(&node_->c_memory), [](Logger *l) { logger_kill(l); })
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, mono_time_(mono_time_new(
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&node_->c_memory,
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[](void *_Nullable ud) -> std::uint64_t {
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return static_cast<FakeClock *>(ud)->current_time_ms();
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},
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&env.fake_clock()),
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[mem = &node_->c_memory](Mono_Time *t) { mono_time_free(mem, t); })
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, networking_(nullptr, [](Networking_Core *n) { kill_networking(n); })
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, dht_(nullptr, [](DHT *d) { kill_dht(d); })
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{
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// Setup Networking
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IP ip;
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ip_init(&ip, false);
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unsigned int error = 0;
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networking_.reset(new_networking_ex(
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logger_.get(), &node_->c_memory, &node_->c_network, &ip, port, port + 1, &error));
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assert(error == 0);
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node_->endpoint = node_->node->get_primary_socket();
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assert(node_->endpoint != nullptr);
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assert(node_->endpoint->local_port() == port);
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// Setup DHT
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dht_.reset(new_dht(logger_.get(), &node_->c_memory, &node_->c_random, &node_->c_network,
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mono_time_.get(), networking_.get(), true, true));
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}
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WrappedDHT::~WrappedDHT() = default;
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const std::uint8_t *WrappedDHT::dht_public_key() const
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{
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return dht_get_self_public_key(dht_.get());
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}
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const std::uint8_t *WrappedDHT::dht_secret_key() const
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{
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return dht_get_self_secret_key(dht_.get());
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}
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IP_Port WrappedDHT::get_ip_port() const
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{
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IP_Port ip_port;
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ip_port.ip = node_->node->ip;
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ip_port.port = net_htons(node_->endpoint->local_port());
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return ip_port;
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}
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void WrappedDHT::poll()
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{
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mono_time_update(mono_time_.get());
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networking_poll(networking_.get(), nullptr);
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do_dht(dht_.get());
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}
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const Net_Crypto_DHT_Funcs WrappedDHT::funcs = {
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[](void *_Nonnull obj, const std::uint8_t *_Nonnull public_key) {
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return dht_get_shared_key_sent(static_cast<DHT *>(obj), public_key);
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},
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[](const void *_Nonnull obj) { return dht_get_self_public_key(static_cast<const DHT *>(obj)); },
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[](const void *_Nonnull obj) { return dht_get_self_secret_key(static_cast<const DHT *>(obj)); },
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};
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// --- Test Util Functions ---
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Node_format random_node_format(const Random *_Nonnull rng)
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{
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Node_format node;
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auto const pk = random_pk(rng);
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std::copy(pk.begin(), pk.end(), node.public_key);
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node.ip_port = random_ip_port(rng);
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return node;
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}
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bool operator==(Node_format const &a, Node_format const &b)
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{
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return std::memcmp(a.public_key, b.public_key, sizeof(a.public_key)) == 0
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&& a.ip_port == b.ip_port;
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}
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std::ostream &operator<<(std::ostream &out, Node_format const &v)
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{
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return out << "\n Node_format{\n"
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<< " public_key = " << PublicKey(v.public_key) << ",\n"
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<< " ip_port = " << v.ip_port << " }";
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}
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