Files
plezy/shared/mpv/mpv_player_common_test.cpp
T

361 lines
12 KiB
C++

#include "mpv_player_common.h"
#ifdef NDEBUG
#undef NDEBUG
#endif
#include <atomic>
#include <cassert>
#include <chrono>
#include <string>
#include <thread>
#include <vector>
namespace {
using plezy::mpv_common::AudioOutputTransition;
using plezy::mpv_common::AudioRecoveryState;
using plezy::mpv_common::AudioReloadReason;
void TestRequestRegistry() {
plezy::mpv_common::AsyncRequestRegistry registry;
bool status_called = false;
bool property_called = false;
const auto status_id = registry.RegisterStatus([&](int error) { status_called = error == -7; });
const auto property_id = registry.RegisterProperty(
[&](int error, const std::string& value) { property_called = error == -8 && value == "value"; });
auto status = registry.TakeStatus(status_id);
auto property = registry.TakeProperty(property_id);
assert(status);
assert(property);
status(-7);
property(-8, "value");
assert(status_called);
assert(property_called);
assert(!registry.TakeStatus(status_id));
assert(!registry.TakeProperty(property_id));
registry.RegisterStatus([](int) {});
registry.RegisterProperty([](int, const std::string&) {});
auto cancelled = registry.CancelAll();
assert(cancelled.status.size() == 1);
assert(cancelled.properties.size() == 1);
}
void TestConcurrentRequestCompletion() {
for (int iteration = 0; iteration < 200; ++iteration) {
plezy::mpv_common::AsyncRequestRegistry registry;
std::atomic<int> completions{0};
const auto id = registry.RegisterStatus([&](int) { completions.fetch_add(1); });
std::atomic<bool> start{false};
std::thread taker([&]() {
while (!start.load(std::memory_order_acquire)) {
}
auto callback = registry.TakeStatus(id);
if (callback) callback(0);
});
std::thread canceller([&]() {
while (!start.load(std::memory_order_acquire)) {
}
auto cancelled = registry.CancelAll();
for (auto& callback : cancelled.status) {
callback(MPV_ERROR_UNINITIALIZED);
}
});
start.store(true, std::memory_order_release);
taker.join();
canceller.join();
assert(completions.load() == 1);
}
}
void TestSetPropertyResultContract() {
using namespace plezy::mpv_common;
assert(std::string(kSetPropertyFailedCode) == "SET_PROPERTY_FAILED");
assert(std::string(kSetPropertyNotInitializedCode) == "NOT_INITIALIZED");
assert(SetPropertyStatusSucceeded(MPV_ERROR_SUCCESS));
assert(SetPropertyStatusSucceeded(1));
constexpr int kFailureStatuses[] = {
MPV_ERROR_INVALID_PARAMETER,
MPV_ERROR_PROPERTY_ERROR,
-1,
MPV_ERROR_UNINITIALIZED,
};
for (const int status : kFailureStatuses) {
assert(!SetPropertyStatusSucceeded(status));
const std::string description = SetPropertyErrorDescription(status);
assert(!description.empty());
assert(description.size() <= kSetPropertyErrorDescriptionLimit);
assert(description.find("caller-secret") == std::string::npos);
}
}
void TestPropertyObservationRegistry() {
plezy::mpv_common::PropertyObservationRegistry registry;
const auto first = registry.Register("pause", "bool", 17);
const auto duplicate = registry.Register("pause", "string", 99);
const auto node = registry.Register("track-list", "node", 18);
assert(first.added);
assert(first.format == MPV_FORMAT_FLAG);
assert(!duplicate.added);
assert(node.added);
assert(node.format == MPV_FORMAT_NODE);
int id = 0;
assert(registry.LookupId("pause", &id));
assert(id == 17);
assert(!registry.LookupId("missing", &id));
registry.Clear();
assert(!registry.LookupId("pause", &id));
}
void TestConcurrentPropertyObservationRegistry() {
constexpr int kPropertyCount = 512;
constexpr int kClearRounds = 32;
plezy::mpv_common::PropertyObservationRegistry registry;
std::vector<std::string> names;
names.reserve(kPropertyCount);
for (int i = 0; i < kPropertyCount; ++i) {
names.push_back("property-" + std::to_string(i));
}
std::atomic<bool> start{false};
std::atomic<bool> writer_done{false};
std::thread writer([&]() {
while (!start.load(std::memory_order_acquire)) {
}
for (int round = 0; round < kClearRounds; ++round) {
for (int i = 0; i < kPropertyCount; ++i) {
registry.Register(names[i], "int64", 1000 + i);
}
}
writer_done.store(true, std::memory_order_release);
});
std::thread reader([&]() {
while (!start.load(std::memory_order_acquire)) {
}
while (!writer_done.load(std::memory_order_acquire)) {
for (int i = 0; i < kPropertyCount; ++i) {
int id = 0;
if (registry.LookupId(names[i], &id)) {
assert(id == 1000 + i);
}
}
}
});
std::thread clearer([&]() {
while (!start.load(std::memory_order_acquire)) {
}
for (int round = 0; round < kClearRounds; ++round) {
registry.Clear();
std::this_thread::yield();
}
});
start.store(true, std::memory_order_release);
writer.join();
reader.join();
clearer.join();
registry.Clear();
for (int i = 0; i < kPropertyCount; ++i) {
const auto request = registry.Register(names[i], "int64", 1000 + i);
assert(request.added);
}
for (int i = 0; i < kPropertyCount; ++i) {
int id = 0;
assert(registry.LookupId(names[i], &id));
assert(id == 1000 + i);
}
}
void TestResumeRecoverySchedule() {
AudioRecoveryState state;
const auto start = AudioRecoveryState::Clock::time_point{};
state.SetFileLoaded(true);
state.RequestResume();
assert(state.NextReload(start).reason == AudioReloadReason::kNone);
assert(state.HasPendingWork());
assert(state.NextReload(start + std::chrono::milliseconds(1499)).reason == AudioReloadReason::kNone);
const auto first = state.NextReload(start + std::chrono::milliseconds(1500));
assert(first.reason == AudioReloadReason::kResume);
assert(first.attempt == 1);
assert(!first.exhausted);
assert(state.CompleteReload(first.request_generation));
const auto second = state.NextReload(start + std::chrono::milliseconds(6000));
assert(second.reason == AudioReloadReason::kResume);
assert(second.attempt == 2);
assert(state.CompleteReload(second.request_generation));
assert(!state.HasPendingWork());
}
void TestConcurrentAudioRecoveryState() {
AudioRecoveryState state;
const auto start = AudioRecoveryState::Clock::time_point{};
state.SetFileLoaded(true);
std::atomic<bool> begin{false};
std::thread resume([&]() {
while (!begin.load(std::memory_order_acquire)) {
}
for (int i = 0; i < 1000; ++i) state.RequestResume();
});
std::thread device([&]() {
while (!begin.load(std::memory_order_acquire)) {
}
for (int i = 0; i < 1000; ++i) {
state.SetCurrentAudioOutputNull(true, start);
state.OnAudioDeviceListChanged(start);
}
});
std::thread timer([&]() {
while (!begin.load(std::memory_order_acquire)) {
}
for (int i = 0; i < 1000; ++i) {
const auto action = state.NextReload(start + std::chrono::hours(1));
if (action.reason != AudioReloadReason::kNone) {
state.CompleteReload(action.request_generation);
}
}
});
begin.store(true, std::memory_order_release);
resume.join();
device.join();
timer.join();
state.SetFileLoaded(false);
assert(!state.HasPendingWork());
}
void TestFileBoundaryRestartsNullRecoveryOnlyAfterLoad() {
AudioRecoveryState state;
const auto start = AudioRecoveryState::Clock::time_point{};
state.SetFileLoaded(true, start);
assert(state.SetCurrentAudioOutputNull(true, start) == AudioOutputTransition::kFellBackToNull);
assert(state.HasPendingWork());
state.SetFileLoaded(false, start + std::chrono::milliseconds(100));
assert(!state.HasPendingWork());
assert(!state.OnAudioDeviceListChanged(start + std::chrono::milliseconds(200)));
state.SetFileLoaded(true, start + std::chrono::milliseconds(300));
assert(state.HasPendingWork());
assert(state.NextReload(start + std::chrono::milliseconds(799)).reason == AudioReloadReason::kNone);
const auto retry = state.NextReload(start + std::chrono::milliseconds(800));
assert(retry.reason == AudioReloadReason::kNullFallback);
assert(retry.attempt == 1);
}
void TestNullFallbackRecoverySchedule() {
AudioRecoveryState state;
const auto start = AudioRecoveryState::Clock::time_point{};
state.SetFileLoaded(true);
assert(state.SetCurrentAudioOutputNull(true, start) == AudioOutputTransition::kFellBackToNull);
auto action = state.NextReload(start + std::chrono::milliseconds(500));
assert(action.reason == AudioReloadReason::kNullFallback);
assert(action.attempt == 1);
assert(state.CompleteReload(action.request_generation));
action = state.NextReload(start + std::chrono::milliseconds(1000));
assert(action.reason == AudioReloadReason::kNullFallback);
assert(action.attempt == 2);
assert(state.CompleteReload(action.request_generation));
action = state.NextReload(start + std::chrono::milliseconds(2000));
assert(action.reason == AudioReloadReason::kNullFallback);
assert(action.attempt == 3);
assert(state.CompleteReload(action.request_generation));
action = state.NextReload(start + std::chrono::milliseconds(4000));
assert(action.reason == AudioReloadReason::kNullFallback);
assert(action.attempt == 4);
assert(state.CompleteReload(action.request_generation));
action = state.NextReload(start + std::chrono::milliseconds(8000));
assert(action.reason == AudioReloadReason::kNullFallback);
assert(action.attempt == 5);
assert(action.exhausted);
assert(state.CompleteReload(action.request_generation));
assert(!state.HasPendingWork());
assert(state.OnAudioDeviceListChanged(start + std::chrono::milliseconds(9000)));
action = state.NextReload(start + std::chrono::milliseconds(9250));
assert(action.reason == AudioReloadReason::kNullFallback);
assert(action.attempt == 1);
assert(state.CompleteReload(action.request_generation));
assert(
state.SetCurrentAudioOutputNull(false, start + std::chrono::milliseconds(9300)) ==
AudioOutputTransition::kRecovered);
assert(!state.HasPendingWork());
}
void TestUnloadedResumeIsConsumed() {
AudioRecoveryState state;
const auto start = AudioRecoveryState::Clock::time_point{};
state.RequestResume();
assert(!state.HasPendingWork());
assert(state.NextReload(start + std::chrono::hours(1)).reason == AudioReloadReason::kNone);
state.SetFileLoaded(true, start);
assert(!state.HasPendingWork());
}
void TestStaleReloadCompletionCannotClearCurrentRequest() {
AudioRecoveryState state;
const auto start = AudioRecoveryState::Clock::time_point{};
state.SetFileLoaded(true, start);
assert(state.SetCurrentAudioOutputNull(true, start) == AudioOutputTransition::kFellBackToNull);
const auto old_request = state.NextReload(start + std::chrono::milliseconds(500));
assert(old_request.reason == AudioReloadReason::kNullFallback);
state.SetFileLoaded(false, start + std::chrono::milliseconds(600));
state.SetFileLoaded(true, start + std::chrono::milliseconds(700));
const auto current_request = state.NextReload(start + std::chrono::milliseconds(1200));
assert(current_request.reason == AudioReloadReason::kNullFallback);
assert(current_request.request_generation != old_request.request_generation);
assert(!state.CompleteReload(old_request.request_generation));
assert(state.NextReload(start + std::chrono::hours(1)).reason == AudioReloadReason::kNone);
assert(state.CompleteReload(current_request.request_generation));
}
void TestHdrHelpers() {
assert(plezy::mpv_common::ParseEnabledFlag("yes"));
assert(plezy::mpv_common::ParseEnabledFlag("true"));
assert(plezy::mpv_common::ParseEnabledFlag("1"));
assert(!plezy::mpv_common::ParseEnabledFlag("no"));
assert(std::string(plezy::mpv_common::TargetColorspaceHint(true)) == "auto");
assert(std::string(plezy::mpv_common::TargetColorspaceHint(false)) == "no");
}
} // namespace
int main() {
TestRequestRegistry();
TestConcurrentRequestCompletion();
TestSetPropertyResultContract();
TestPropertyObservationRegistry();
TestConcurrentPropertyObservationRegistry();
TestResumeRecoverySchedule();
TestConcurrentAudioRecoveryState();
TestNullFallbackRecoverySchedule();
TestFileBoundaryRestartsNullRecoveryOnlyAfterLoad();
TestUnloadedResumeIsConsumed();
TestStaleReloadCompletionCannotClearCurrentRequest();
TestHdrHelpers();
return 0;
}