Files
plezy/windows/runner/mpv/mpv_player.cpp
T

480 lines
14 KiB
C++

#include "mpv_player.h"
#include "sanitize_utf8.h"
namespace mpv {
MpvPlayer::MpvPlayer() {}
MpvPlayer::~MpvPlayer() { Dispose(); }
bool MpvPlayer::Initialize(HWND container, HWND flutter_window) {
if (mpv_) {
return true; // Already initialized.
}
container_ = container;
flutter_window_ = flutter_window;
// Create mpv instance.
mpv_ = mpv_create();
if (!mpv_) {
return false;
}
// Create a child window for mpv to render into.
hwnd_ = ::CreateWindowW(L"STATIC", L"", WS_CHILD | WS_VISIBLE, 0, 0, 100, 100,
container, nullptr, GetModuleHandle(nullptr),
nullptr);
if (!hwnd_) {
mpv_destroy(mpv_);
mpv_ = nullptr;
return false;
}
// Set the wid option to embed mpv in our window.
int64_t wid = reinterpret_cast<int64_t>(hwnd_);
mpv_set_option(mpv_, "wid", MPV_FORMAT_INT64, &wid);
// Configure mpv for embedded playback.
mpv_set_option_string(mpv_, "vo", "gpu-next");
mpv_set_option_string(mpv_, "gpu-api", "auto");
// hwdec is set from Flutter via setProperty based on user preference
mpv_set_option_string(mpv_, "keep-open", "yes");
mpv_set_option_string(mpv_, "idle", "yes");
mpv_set_option_string(mpv_, "input-default-bindings", "no");
mpv_set_option_string(mpv_, "input-vo-keyboard", "no");
mpv_set_option_string(mpv_, "osc", "no");
// HDR passthrough - let mpv handle color space
mpv_set_option_string(mpv_, "target-colorspace-hint", "yes");
// Fallback tone mapping when display doesn't support HDR
mpv_set_option_string(mpv_, "tone-mapping", "auto");
mpv_set_option_string(mpv_, "hdr-compute-peak", "auto");
// When WASAPI becomes unavailable (sleep, device unplug), fall back to null
// audio output instead of permanently dropping the audio track. Recovery is
// handled in the event loop when audio-device-list changes.
mpv_set_option_string(mpv_, "audio-fallback-to-null", "yes");
// Default to warn-level logging; Dart side can raise to "v" if debug logging is enabled.
mpv_request_log_messages(mpv_, "warn");
// Initialize mpv.
int err = mpv_initialize(mpv_);
if (err < 0) {
::DestroyWindow(hwnd_);
hwnd_ = nullptr;
mpv_destroy(mpv_);
mpv_ = nullptr;
return false;
}
// Observe video-params/sig-peak for HDR detection
mpv_observe_property(mpv_, 0, "video-params/sig-peak", MPV_FORMAT_DOUBLE);
// Start event loop.
StartEventLoop();
return true;
}
void MpvPlayer::Dispose() {
StopEventLoop();
// Cancel pending async commands
{
std::lock_guard<std::mutex> lock(pending_commands_mutex_);
for (auto& pair : pending_commands_) {
if (pair.second) pair.second(-1); // Call with error
}
pending_commands_.clear();
}
if (mpv_) {
mpv_terminate_destroy(mpv_);
mpv_ = nullptr;
}
if (hwnd_) {
::DestroyWindow(hwnd_);
hwnd_ = nullptr;
}
observed_properties_.clear();
}
void MpvPlayer::Command(const std::vector<std::string>& args) {
if (!mpv_) return;
std::vector<const char*> c_args;
c_args.reserve(args.size() + 1);
for (const auto& arg : args) {
c_args.push_back(arg.c_str());
}
c_args.push_back(nullptr);
mpv_command(mpv_, c_args.data());
}
void MpvPlayer::CommandAsync(const std::vector<std::string>& args,
CommandCallback callback) {
if (!mpv_) {
if (callback) callback(0);
return;
}
std::vector<const char*> c_args;
c_args.reserve(args.size() + 1);
for (const auto& arg : args) {
c_args.push_back(arg.c_str());
}
c_args.push_back(nullptr);
// Generate unique request ID and store callback
uint64_t request_id;
{
std::lock_guard<std::mutex> lock(pending_commands_mutex_);
request_id = next_reply_userdata_++;
pending_commands_[request_id] = std::move(callback);
}
// mpv_command_async returns immediately
int result = mpv_command_async(mpv_, request_id, c_args.data());
if (result < 0) {
// Submission failed, complete immediately with error
std::lock_guard<std::mutex> lock(pending_commands_mutex_);
auto it = pending_commands_.find(request_id);
if (it != pending_commands_.end()) {
auto cb = std::move(it->second);
pending_commands_.erase(it);
if (cb) cb(result);
}
}
}
void MpvPlayer::SetProperty(const std::string& name, const std::string& value) {
if (!mpv_) return;
// Handle custom HDR toggle property (same pattern as iOS/macOS)
if (name == "hdr-enabled") {
bool enabled = (value == "yes" || value == "true" || value == "1");
SetHDREnabled(enabled);
return;
}
mpv_set_property_string(mpv_, name.c_str(), value.c_str());
}
std::string MpvPlayer::GetProperty(const std::string& name) {
if (!mpv_) return "";
char* value = mpv_get_property_string(mpv_, name.c_str());
if (!value) return "";
std::string result(value);
mpv_free(value);
return result;
}
void MpvPlayer::ObserveProperty(const std::string& name,
const std::string& format,
int id) {
if (!mpv_) return;
// Check if already observing.
if (observed_properties_.find(name) != observed_properties_.end()) {
return;
}
name_to_id_[name] = id;
mpv_format mpv_fmt = MPV_FORMAT_NONE;
if (format == "string") {
mpv_fmt = MPV_FORMAT_STRING;
} else if (format == "flag" || format == "bool") {
mpv_fmt = MPV_FORMAT_FLAG;
} else if (format == "int64") {
mpv_fmt = MPV_FORMAT_INT64;
} else if (format == "double") {
mpv_fmt = MPV_FORMAT_DOUBLE;
} else if (format == "node") {
mpv_fmt = MPV_FORMAT_NODE;
}
uint64_t userdata = next_reply_userdata_++;
observed_properties_[name] = userdata;
mpv_observe_property(mpv_, userdata, name.c_str(), mpv_fmt);
}
void MpvPlayer::SetRect(RECT rect, double device_pixel_ratio) {
rect_ = rect;
device_pixel_ratio_ = device_pixel_ratio;
if (hwnd_ && container_ && flutter_window_) {
// The rect from Dart is in Flutter client area coordinates (0,0 is top-left of Flutter content).
// The container window is positioned to match the Flutter window's full bounds (including title bar).
// We need to offset the mpv window within the container to align with Flutter's client area.
// Get the Flutter window's window rect (screen coordinates, includes title bar)
RECT window_rect;
::GetWindowRect(flutter_window_, &window_rect);
// Get the Flutter window's client rect (client coordinates, 0,0 based)
RECT client_rect;
::GetClientRect(flutter_window_, &client_rect);
// Convert client area origin to screen coordinates
POINT client_origin = {0, 0};
::ClientToScreen(flutter_window_, &client_origin);
// Calculate the offset from window origin to client area origin
int client_offset_x = client_origin.x - window_rect.left;
int client_offset_y = client_origin.y - window_rect.top;
// Position the mpv window within the container, offset by the title bar/border size
int left = rect.left + client_offset_x;
int top = rect.top + client_offset_y;
int width = rect.right - rect.left;
int height = rect.bottom - rect.top;
::MoveWindow(hwnd_, left, top, width, height, TRUE);
}
}
void MpvPlayer::SetVisible(bool visible) {
if (hwnd_) {
::ShowWindow(hwnd_, visible ? SW_SHOW : SW_HIDE);
}
}
void MpvPlayer::SetLogLevel(const std::string& level) {
if (!mpv_) return;
mpv_request_log_messages(mpv_, level.c_str());
}
void MpvPlayer::SetEventCallback(EventCallback callback) {
std::lock_guard<std::mutex> lock(callback_mutex_);
event_callback_ = std::move(callback);
}
void MpvPlayer::StartEventLoop() {
running_ = true;
event_thread_ = std::thread(&MpvPlayer::EventLoop, this);
}
void MpvPlayer::StopEventLoop() {
running_ = false;
if (event_thread_.joinable()) {
// Wake up the event loop.
if (mpv_) {
mpv_wakeup(mpv_);
}
event_thread_.join();
}
}
void MpvPlayer::EventLoop() {
while (running_) {
mpv_event* event = mpv_wait_event(mpv_, 0.1);
if (event->event_id == MPV_EVENT_NONE) {
continue;
}
if (event->event_id == MPV_EVENT_SHUTDOWN) {
break;
}
HandleMpvEvent(event);
}
}
void MpvPlayer::HandleMpvEvent(mpv_event* event) {
switch (event->event_id) {
case MPV_EVENT_COMMAND_REPLY: {
// Handle async command completion
uint64_t request_id = event->reply_userdata;
CommandCallback callback;
{
std::lock_guard<std::mutex> lock(pending_commands_mutex_);
auto it = pending_commands_.find(request_id);
if (it != pending_commands_.end()) {
callback = std::move(it->second);
pending_commands_.erase(it);
}
}
if (callback) {
callback(event->error);
}
break;
}
case MPV_EVENT_LOG_MESSAGE: {
auto* msg = static_cast<mpv_event_log_message*>(event->data);
char log_msg[512];
snprintf(log_msg, sizeof(log_msg), "MPV [%s] %s: %s",
msg->level, msg->prefix, msg->text);
OutputDebugStringA(log_msg);
flutter::EncodableMap data;
data[flutter::EncodableValue("prefix")] =
flutter::EncodableValue(SanitizeUtf8(msg->prefix));
data[flutter::EncodableValue("level")] =
flutter::EncodableValue(SanitizeUtf8(msg->level));
data[flutter::EncodableValue("text")] =
flutter::EncodableValue(SanitizeUtf8(msg->text));
SendEvent("log-message", data);
break;
}
case MPV_EVENT_PROPERTY_CHANGE: {
auto* prop = static_cast<mpv_event_property*>(event->data);
mpv_node node;
node.format = prop->format;
switch (prop->format) {
case MPV_FORMAT_STRING:
node.u.string = prop->data ? *static_cast<char**>(prop->data) : nullptr;
break;
case MPV_FORMAT_FLAG:
node.u.flag = prop->data ? *static_cast<int*>(prop->data) : 0;
break;
case MPV_FORMAT_INT64:
node.u.int64 = prop->data ? *static_cast<int64_t*>(prop->data) : 0;
break;
case MPV_FORMAT_DOUBLE:
node.u.double_ = prop->data ? *static_cast<double*>(prop->data) : 0.0;
break;
case MPV_FORMAT_NODE:
if (prop->data) {
node = *static_cast<mpv_node*>(prop->data);
}
break;
default:
node.format = MPV_FORMAT_NONE;
break;
}
// Handle sig-peak for HDR detection
if (strcmp(prop->name, "video-params/sig-peak") == 0 &&
prop->format == MPV_FORMAT_DOUBLE && prop->data) {
double sigPeak = *static_cast<double*>(prop->data);
last_sig_peak_ = sigPeak;
UpdateHDRMode(sigPeak);
}
// Audio recovery: when the device list changes and audio has fallen back
// to null output (e.g. after sleep/wake or device unplug), re-set
// audio-device to switch back to the real output.
// Mirrors mpv's TOOLS/lua/ao-null-reload.lua for embedded libmpv.
if (strcmp(prop->name, "audio-device-list") == 0 &&
GetProperty("current-ao") == "null") {
auto device = GetProperty("audio-device");
if (!device.empty()) {
mpv_set_property_string(mpv_, "audio-device", device.c_str());
}
}
SendPropertyChange(prop->name, &node);
break;
}
case MPV_EVENT_END_FILE: {
auto* end = static_cast<mpv_event_end_file*>(event->data);
flutter::EncodableMap data;
data[flutter::EncodableValue("reason")] =
flutter::EncodableValue(static_cast<int>(end->reason));
if (end->reason == MPV_END_FILE_REASON_ERROR) {
data[flutter::EncodableValue("error")] =
flutter::EncodableValue(static_cast<int>(end->error));
data[flutter::EncodableValue("message")] =
flutter::EncodableValue(SanitizeUtf8(mpv_error_string(end->error)));
}
SendEvent("end-file", data);
break;
}
case MPV_EVENT_FILE_LOADED: {
SendEvent("file-loaded");
break;
}
case MPV_EVENT_PLAYBACK_RESTART: {
SendEvent("playback-restart");
break;
}
case MPV_EVENT_SEEK: {
SendEvent("seek");
break;
}
default:
break;
}
}
void MpvPlayer::SendPropertyChange(const char* name, mpv_node* data) {
if (!name) return;
auto it = name_to_id_.find(name);
if (it == name_to_id_.end()) return;
flutter::EncodableValue value;
if (data) {
switch (data->format) {
case MPV_FORMAT_STRING:
value = flutter::EncodableValue(SanitizeUtf8(data->u.string));
break;
case MPV_FORMAT_FLAG:
value = flutter::EncodableValue(data->u.flag != 0);
break;
case MPV_FORMAT_INT64:
value = flutter::EncodableValue(data->u.int64);
break;
case MPV_FORMAT_DOUBLE:
value = flutter::EncodableValue(data->u.double_);
break;
default:
value = flutter::EncodableValue();
break;
}
}
flutter::EncodableList list;
list.push_back(flutter::EncodableValue(it->second));
list.push_back(value);
std::lock_guard<std::mutex> lock(callback_mutex_);
if (event_callback_) {
event_callback_(flutter::EncodableValue(list));
}
}
void MpvPlayer::SendEvent(const std::string& name,
const flutter::EncodableMap& data) {
flutter::EncodableMap event;
event[flutter::EncodableValue("type")] = flutter::EncodableValue("event");
event[flutter::EncodableValue("name")] = flutter::EncodableValue(name);
if (!data.empty()) {
event[flutter::EncodableValue("data")] = flutter::EncodableValue(data);
}
std::lock_guard<std::mutex> lock(callback_mutex_);
if (event_callback_) {
event_callback_(flutter::EncodableValue(event));
}
}
void MpvPlayer::SetHDREnabled(bool enabled) {
hdr_enabled_ = enabled;
if (mpv_) {
mpv_set_property_string(mpv_, "target-colorspace-hint", enabled ? "yes" : "no");
}
UpdateHDRMode(last_sig_peak_);
}
void MpvPlayer::UpdateHDRMode(double sigPeak) {
// On Windows, mpv handles HDR passthrough automatically when:
// - target-colorspace-hint=yes
// - Windows HDR is enabled in Display Settings
// - Display supports HDR
// No explicit DXGI calls needed - mpv's gpu-next/vulkan handles it
}
} // namespace mpv