Files
plezy/linux/runner/mpv/mpv_player.cc
T

720 lines
23 KiB
C++

#include "mpv_player.h"
#include <epoxy/egl.h>
#include <epoxy/gl.h>
#include <flutter_linux/flutter_linux.h>
#include <gdk/gdk.h>
#ifdef GDK_WINDOWING_X11
#include <gdk/gdkx.h>
#endif
#ifdef GDK_WINDOWING_WAYLAND
#include <gdk/gdkwayland.h>
#endif
#include <clocale>
#include "sanitize_utf8.h"
// Flutter on Linux uses EGL (OpenGL ES) for both X11 and Wayland.
static void* get_opengl_proc_address(void* ctx, const char* name) {
(void)ctx;
return reinterpret_cast<void*>(eglGetProcAddress(name));
}
namespace mpv {
MpvPlayer::MpvPlayer(bool audio_only) : audio_only_(audio_only) {}
MpvPlayer::~MpvPlayer() { Dispose(); }
bool MpvPlayer::Initialize() {
if (mpv_) {
return true; // Already initialized.
}
// MPV requires C locale for numeric formatting
std::setlocale(LC_NUMERIC, "C");
// Create mpv instance.
mpv_ = mpv_create();
if (!mpv_) {
g_warning("MPV: mpv_create() failed");
return false;
}
if (audio_only_) {
// Music core: no VO, no video decode. vid=no keeps embedded cover art
// from ever becoming a video track, and force-window/audio-display make
// sure mpv never opens a video output for it either.
mpv_set_option_string(mpv_, "vid", "no");
mpv_set_option_string(mpv_, "force-window", "no");
mpv_set_option_string(mpv_, "audio-display", "no");
mpv_set_option_string(mpv_, "gapless-audio", "weak");
} else {
// Configure mpv for embedded playback.
mpv_set_option_string(mpv_, "vo", "libmpv");
mpv_set_option_string(mpv_, "hwdec", "auto");
}
mpv_set_option_string(mpv_, "keep-open", "yes");
mpv_set_option_string(mpv_, "audio-fallback-to-null", "yes");
if (!audio_only_) {
// HDR tone mapping
mpv_set_option_string(mpv_, "tone-mapping", "auto");
mpv_set_option_string(mpv_, "target-colorspace-hint", plezy::mpv_common::TargetColorspaceHint(hdr_enabled_));
mpv_set_option_string(mpv_, "hdr-compute-peak", "auto");
}
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");
mpv_set_option_string(mpv_, "terminal", "no");
// Default to warn-level logging
mpv_request_log_messages(mpv_, "warn");
// Initialize mpv.
int err = mpv_initialize(mpv_);
if (err < 0) {
g_warning("MPV: mpv_initialize() failed: %s", mpv_error_string(err));
mpv_destroy(mpv_);
mpv_ = nullptr;
return false;
}
// Set up event wakeup callback.
mpv_set_wakeup_callback(mpv_, OnMpvWakeup, this);
mpv_observe_property(mpv_, 0, "current-ao", MPV_FORMAT_STRING);
mpv_observe_property(mpv_, 0, "audio-device-list", MPV_FORMAT_NONE);
g_message("MPV: Initialization successful (%s)", audio_only_ ? "audio-only" : "render context deferred");
return true;
}
bool MpvPlayer::InitRenderContext() {
if (audio_only_) {
g_warning("MPV: InitRenderContext called on an audio-only player");
return false;
}
if (mpv_gl_) {
return true; // Already created.
}
if (!mpv_) {
g_warning("MPV: Cannot create render context - mpv not initialized");
return false;
}
// Capture Flutter's EGL display and create an isolated EGL context.
// Flutter on Linux uses EGL for both X11 and Wayland. Running mpv in
// an isolated context prevents OpenGL state pollution between mpv and
// Flutter, which caused corrupted/blank video on some drivers.
EGLDisplay flutter_display = eglGetCurrentDisplay();
EGLContext flutter_context = eglGetCurrentContext();
if (flutter_display == EGL_NO_DISPLAY || flutter_context == EGL_NO_CONTEXT) {
g_warning("MPV: No EGL context available");
return false;
}
egl_display_ = flutter_display;
// Query Flutter's EGL config and reuse it for compatibility
EGLConfig config = nullptr;
EGLint config_id = 0;
if (!eglQueryContext(egl_display_, flutter_context, EGL_CONFIG_ID, &config_id)) {
g_warning("MPV: Failed to query Flutter's EGL config ID");
return false;
}
EGLint num_configs = 0;
EGLint config_attribs[] = {EGL_CONFIG_ID, config_id, EGL_NONE};
if (!eglChooseConfig(egl_display_, config_attribs, &config, 1, &num_configs) || num_configs == 0) {
g_warning("MPV: Failed to get Flutter's EGL config");
return false;
}
// Create isolated EGL context (NOT shared with Flutter) to prevent
// GL state pollution
eglBindAPI(EGL_OPENGL_ES_API);
EGLint context_attribs[] = {
EGL_CONTEXT_CLIENT_VERSION,
2,
EGL_NONE,
};
egl_context_ = eglCreateContext(egl_display_, config, EGL_NO_CONTEXT, context_attribs);
if (egl_context_ == EGL_NO_CONTEXT) {
g_warning("MPV: Failed to create isolated EGL context: 0x%x", eglGetError());
return false;
}
// Make the isolated context current for mpv render context creation
EGLSurface flutter_draw = eglGetCurrentSurface(EGL_DRAW);
EGLSurface flutter_read = eglGetCurrentSurface(EGL_READ);
eglMakeCurrent(egl_display_, EGL_NO_SURFACE, EGL_NO_SURFACE, egl_context_);
// Set up OpenGL parameters for mpv.
mpv_opengl_init_params gl_init_params{
.get_proc_address = get_opengl_proc_address,
.get_proc_address_ctx = nullptr,
};
mpv_render_param params[] = {
{MPV_RENDER_PARAM_API_TYPE, const_cast<char*>(MPV_RENDER_API_TYPE_OPENGL)},
{MPV_RENDER_PARAM_OPENGL_INIT_PARAMS, &gl_init_params},
{MPV_RENDER_PARAM_INVALID, nullptr}, // slot for X11/Wayland display
{MPV_RENDER_PARAM_INVALID, nullptr},
};
// Pass X11/Wayland display for VAAPI hardware acceleration
GdkDisplay* gdk_display = gdk_display_get_default();
#ifdef GDK_WINDOWING_WAYLAND
if (GDK_IS_WAYLAND_DISPLAY(gdk_display)) {
params[2].type = MPV_RENDER_PARAM_WL_DISPLAY;
params[2].data = gdk_wayland_display_get_wl_display(gdk_display);
}
#endif
#ifdef GDK_WINDOWING_X11
if (GDK_IS_X11_DISPLAY(gdk_display)) {
params[2].type = MPV_RENDER_PARAM_X11_DISPLAY;
params[2].data = gdk_x11_display_get_xdisplay(gdk_display);
}
#endif
int err = mpv_render_context_create(&mpv_gl_, mpv_, params);
// Restore Flutter's context
eglMakeCurrent(egl_display_, flutter_draw, flutter_read, flutter_context);
if (err < 0) {
g_warning("MPV: mpv_render_context_create() failed: %s", mpv_error_string(err));
eglDestroyContext(egl_display_, egl_context_);
egl_context_ = EGL_NO_CONTEXT;
return false;
}
// Set up render update callback.
mpv_render_context_set_update_callback(mpv_gl_, OnMpvRenderUpdate, this);
g_message("MPV: Render context created with isolated EGL context");
return true;
}
void MpvPlayer::Dispose() {
// 1. Set disposed flag atomically FIRST — all callback paths check this
if (disposed_.exchange(true)) {
return;
}
// 2. Clear mpv's native callbacks to prevent new ones from firing
if (mpv_gl_) {
mpv_render_context_set_update_callback(mpv_gl_, nullptr, nullptr);
}
if (mpv_) {
mpv_set_wakeup_callback(mpv_, nullptr, nullptr);
}
// 3. Briefly hold mutex to null our callbacks
{
std::lock_guard<std::mutex> lock(callback_mutex_);
redraw_callback_ = nullptr;
event_callback_ = nullptr;
}
// 4. Cancel pending async requests.
auto cancelled = pending_requests_.CancelAll();
for (auto& callback : cancelled.status) {
callback(-1);
}
for (auto& callback : cancelled.properties) {
callback(-1, "");
}
// 5. Remove pending idle callbacks
if (event_source_id_ != 0) {
g_source_remove(event_source_id_);
event_source_id_ = 0;
}
if (recovery_source_id_ != 0) {
g_source_remove(recovery_source_id_);
recovery_source_id_ = 0;
}
// 6. Free render context and mpv handle in a background thread.
// mpv_render_context_free() can block waiting for mpv's render/VO thread,
// and mpv_terminate_destroy() can block on demuxer/network I/O.
// Running these off the main thread prevents stalling the GLib main loop.
auto* gl = mpv_gl_;
auto* handle = mpv_;
auto egl_display = egl_display_;
auto egl_context = egl_context_;
mpv_gl_ = nullptr;
mpv_ = nullptr;
egl_display_ = EGL_NO_DISPLAY;
egl_context_ = EGL_NO_CONTEXT;
std::thread([gl, handle, egl_display, egl_context]() {
if (gl) {
// mpv render context must be freed with its EGL context current
if (egl_context != EGL_NO_CONTEXT) {
eglMakeCurrent(egl_display, EGL_NO_SURFACE, EGL_NO_SURFACE, egl_context);
}
mpv_render_context_free(gl);
}
if (handle) {
mpv_terminate_destroy(handle);
}
if (egl_context != EGL_NO_CONTEXT) {
eglMakeCurrent(egl_display, EGL_NO_SURFACE, EGL_NO_SURFACE, EGL_NO_CONTEXT);
eglDestroyContext(egl_display, egl_context);
}
}).detach();
observed_properties_.Clear();
}
void MpvPlayer::Render(int width, int height, int fbo) {
if (disposed_ || !mpv_gl_) return;
mpv_opengl_fbo mpv_fbo{
.fbo = fbo,
.w = width,
.h = height,
.internal_format = 0,
};
int flip_y = 0;
mpv_render_param params[] = {
{MPV_RENDER_PARAM_OPENGL_FBO, &mpv_fbo},
{MPV_RENDER_PARAM_FLIP_Y, &flip_y},
{MPV_RENDER_PARAM_INVALID, nullptr},
};
mpv_render_context_render(mpv_gl_, params);
}
void MpvPlayer::Command(const std::vector<std::string>& args) { CommandAsync(args, nullptr); }
void MpvPlayer::CommandAsync(const std::vector<std::string>& args, CommandCallback callback) {
if (disposed_ || !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);
uint64_t request_id = callback ? pending_requests_.RegisterStatus(std::move(callback)) : 0;
int result = mpv_command_async(mpv_, request_id, c_args.data());
if (result < 0) {
auto cb = pending_requests_.TakeStatus(request_id);
if (cb) cb(result);
}
}
void MpvPlayer::SetProperty(const std::string& name, const std::string& value) {
SetPropertyAsync(name, value, nullptr);
}
void MpvPlayer::SetPropertyAsync(const std::string& name, const std::string& value, StatusCallback callback) {
if (disposed_ || !mpv_) {
if (callback) callback(0);
return;
}
if (name == "hdr-enabled") {
SetHDREnabled(plezy::mpv_common::ParseEnabledFlag(value), std::move(callback));
return;
}
uint64_t request_id = callback ? pending_requests_.RegisterStatus(std::move(callback)) : 0;
char* property_value = const_cast<char*>(value.c_str());
int result = mpv_set_property_async(mpv_, request_id, name.c_str(), MPV_FORMAT_STRING, &property_value);
if (result < 0) {
auto cb = pending_requests_.TakeStatus(request_id);
if (cb) cb(result);
}
}
void MpvPlayer::GetPropertyAsync(const std::string& name, GetPropertyCallback callback) {
if (disposed_ || !mpv_) {
if (callback) callback(-1, "");
return;
}
uint64_t request_id = pending_requests_.RegisterProperty(std::move(callback));
int result = mpv_get_property_async(mpv_, request_id, name.c_str(), MPV_FORMAT_STRING);
if (result < 0) {
auto cb = pending_requests_.TakeProperty(request_id);
if (cb) cb(result, "");
}
}
void MpvPlayer::ObserveProperty(const std::string& name, const std::string& format, int id) {
if (disposed_ || !mpv_) return;
const auto request = observed_properties_.Register(name, format, id);
if (!request.added) return;
mpv_observe_property(mpv_, request.userdata, name.c_str(), request.format);
}
void MpvPlayer::ReportMouseMove(int x, int y) {
if (disposed_ || !mpv_) return;
std::string x_str = std::to_string(x);
std::string y_str = std::to_string(y);
const char* args[] = {"mouse", x_str.c_str(), y_str.c_str(), nullptr};
mpv_command_async(mpv_, 0, args);
}
void MpvPlayer::SetEventCallback(EventCallback callback) {
std::lock_guard<std::mutex> lock(callback_mutex_);
event_callback_ = std::move(callback);
}
void MpvPlayer::SetRedrawCallback(RedrawCallback callback) {
std::lock_guard<std::mutex> lock(callback_mutex_);
redraw_callback_ = std::move(callback);
}
void MpvPlayer::SetLogLevel(const std::string& level) {
if (disposed_ || !mpv_) return;
mpv_request_log_messages(mpv_, level.c_str());
}
void MpvPlayer::OnMpvWakeup(void* ctx) {
auto* player = static_cast<MpvPlayer*>(ctx);
if (player->disposed_) return;
g_idle_add_full(
G_PRIORITY_HIGH_IDLE,
[](gpointer data) -> gboolean {
auto* player = static_cast<MpvPlayer*>(data);
if (!player->disposed_ && player->mpv_) {
player->ProcessEvents();
}
return G_SOURCE_REMOVE;
},
player, nullptr);
}
void MpvPlayer::OnMpvRenderUpdate(void* ctx) {
auto* player = static_cast<MpvPlayer*>(ctx);
if (player->disposed_) return;
bool expected = false;
if (!player->needs_redraw_.compare_exchange_strong(expected, true)) {
return;
}
// Schedule redraw on main thread. Calling Flutter's
// fl_texture_registrar_mark_texture_frame_available directly from mpv's
// render/VO thread can deadlock during disposal on Wayland: the main thread
// blocks in mpv_render_context_free() waiting for the VO thread, while the
// VO thread blocks in the Flutter registrar waiting for the main thread.
g_idle_add(
[](gpointer data) -> gboolean {
auto* player = static_cast<MpvPlayer*>(data);
if (player->disposed_) return G_SOURCE_REMOVE;
std::lock_guard<std::mutex> lock(player->callback_mutex_);
if (player->redraw_callback_) {
player->redraw_callback_();
}
return G_SOURCE_REMOVE;
},
player);
}
bool MpvPlayer::ProcessEvents() {
if (disposed_ || !mpv_) return false;
while (true) {
mpv_event* event = mpv_wait_event(mpv_, 0);
if (event->event_id == MPV_EVENT_NONE) {
break;
}
if (event->event_id == MPV_EVENT_SHUTDOWN) {
return false;
}
HandleMpvEvent(event);
}
return true;
}
void MpvPlayer::LogRecovery(const std::string& text) {
g_warning("MPV audio-recovery: %s", text.c_str());
FlValue* data = fl_value_new_map();
fl_value_set_string_take(data, "prefix", fl_value_new_string("audio-recovery"));
fl_value_set_string_take(data, "level", fl_value_new_string("warn"));
fl_value_set_string_take(data, "text", fl_value_new_string(text.c_str()));
SendEvent("log-message", data);
fl_value_unref(data);
}
void MpvPlayer::TryAudioReload(const char* reason, int attempt) {
LogRecovery("issuing ao-reload (reason=" + std::string(reason) + ", attempt " + std::to_string(attempt) + ")");
const std::string reason_copy = reason;
CommandAsync({"ao-reload"}, [this, reason_copy, attempt](int error) {
audio_recovery_.CompleteReload();
LogRecovery(
"ao-reload completed (reason=" + reason_copy + ", attempt " + std::to_string(attempt) +
", error=" + std::to_string(error) + ")");
});
}
void MpvPlayer::MaybeRunAudioRecovery() {
const auto action = audio_recovery_.NextReload(plezy::mpv_common::AudioRecoveryState::Clock::now());
if (action.reason == plezy::mpv_common::AudioReloadReason::kNone) {
return;
}
const char* reason = action.reason == plezy::mpv_common::AudioReloadReason::kResume ? "resume" : "null-fallback";
TryAudioReload(reason, action.attempt);
if (action.exhausted) {
LogRecovery("audio recovery budget exhausted; waiting for device list change");
}
}
void MpvPlayer::EnsureAudioRecoveryTimer() {
if (recovery_source_id_ != 0 || !audio_recovery_.HasPendingWork()) return;
recovery_source_id_ = g_timeout_add(
100,
[](gpointer data) -> gboolean {
auto* player = static_cast<MpvPlayer*>(data);
if (player->disposed_) {
player->recovery_source_id_ = 0;
return G_SOURCE_REMOVE;
}
player->MaybeRunAudioRecovery();
if (!player->audio_recovery_.HasPendingWork()) {
player->recovery_source_id_ = 0;
return G_SOURCE_REMOVE;
}
return G_SOURCE_CONTINUE;
},
this);
}
void MpvPlayer::HandleMpvEvent(mpv_event* event) {
switch (event->event_id) {
case MPV_EVENT_COMMAND_REPLY:
case MPV_EVENT_SET_PROPERTY_REPLY: {
uint64_t request_id = event->reply_userdata;
StatusCallback callback = pending_requests_.TakeStatus(request_id);
if (callback) {
int error = event->error;
g_idle_add(
[](gpointer data) -> gboolean {
auto* pair = static_cast<std::pair<CommandCallback, int>*>(data);
if (pair->first) pair->first(pair->second);
delete pair;
return G_SOURCE_REMOVE;
},
new std::pair<CommandCallback, int>(std::move(callback), error));
}
break;
}
case MPV_EVENT_GET_PROPERTY_REPLY: {
uint64_t request_id = event->reply_userdata;
GetPropertyCallback callback = pending_requests_.TakeProperty(request_id);
if (callback) {
int error = event->error;
std::string value;
if (error >= 0) {
auto* prop = static_cast<mpv_event_property*>(event->data);
if (prop && prop->format == MPV_FORMAT_STRING && prop->data) {
auto c_value = *static_cast<char**>(prop->data);
if (c_value) value = SanitizeUtf8(c_value);
}
}
g_idle_add(
[](gpointer data) -> gboolean {
auto* tuple = static_cast<std::tuple<GetPropertyCallback, int, std::string>*>(data);
const auto& callback = std::get<0>(*tuple);
if (callback) callback(std::get<1>(*tuple), std::get<2>(*tuple));
delete tuple;
return G_SOURCE_REMOVE;
},
new std::tuple<GetPropertyCallback, int, std::string>(std::move(callback), error, std::move(value)));
}
break;
}
case MPV_EVENT_LOG_MESSAGE: {
auto* msg = static_cast<mpv_event_log_message*>(event->data);
g_message("MPV [%s] %s: %s", msg->level, msg->prefix, msg->text);
FlValue* data = fl_value_new_map();
fl_value_set_string_take(data, "prefix", fl_value_new_string(SanitizeUtf8(msg->prefix).c_str()));
fl_value_set_string_take(data, "level", fl_value_new_string(SanitizeUtf8(msg->level).c_str()));
fl_value_set_string_take(data, "text", fl_value_new_string(SanitizeUtf8(msg->text).c_str()));
SendEvent("log-message", data);
fl_value_unref(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;
}
if (strcmp(prop->name, "current-ao") == 0) {
const char* current_ao = nullptr;
if (prop->format == MPV_FORMAT_STRING && prop->data) {
current_ao = *static_cast<char**>(prop->data);
}
const bool is_null = current_ao && strcmp(current_ao, "null") == 0;
const auto transition =
audio_recovery_.SetCurrentAudioOutputNull(is_null, plezy::mpv_common::AudioRecoveryState::Clock::now());
if (transition == plezy::mpv_common::AudioOutputTransition::kFellBackToNull) {
LogRecovery("current-ao fell back to null; starting recovery");
EnsureAudioRecoveryTimer();
} else if (transition == plezy::mpv_common::AudioOutputTransition::kRecovered) {
LogRecovery("audio recovered (current-ao no longer null)");
}
}
if (strcmp(prop->name, "audio-device-list") == 0 && event->reply_userdata == 0 &&
audio_recovery_.OnAudioDeviceListChanged(plezy::mpv_common::AudioRecoveryState::Clock::now())) {
LogRecovery("audio-device-list changed while ao=null; rescheduling ao-reload");
EnsureAudioRecoveryTimer();
}
SendPropertyChange(prop->name, &node);
break;
}
case MPV_EVENT_END_FILE: {
audio_recovery_.SetFileLoaded(false);
auto* end = static_cast<mpv_event_end_file*>(event->data);
FlValue* data = fl_value_new_map();
fl_value_set_string_take(data, "reason", fl_value_new_int(static_cast<int>(end->reason)));
if (end->reason == MPV_END_FILE_REASON_ERROR) {
fl_value_set_string_take(data, "error", fl_value_new_int(static_cast<int>(end->error)));
fl_value_set_string_take(
data, "message", fl_value_new_string(SanitizeUtf8(mpv_error_string(end->error)).c_str()));
}
SendEvent("end-file", data);
fl_value_unref(data);
break;
}
case MPV_EVENT_FILE_LOADED: {
audio_recovery_.SetFileLoaded(true);
SendEvent("file-loaded");
break;
}
case MPV_EVENT_PLAYBACK_RESTART: {
SendEvent("playback-restart");
break;
}
default:
break;
}
}
FlValue* MpvPlayer::NodeToFlValue(mpv_node* node) {
if (!node) return fl_value_new_null();
switch (node->format) {
case MPV_FORMAT_STRING:
return fl_value_new_string(SanitizeUtf8(node->u.string).c_str());
case MPV_FORMAT_FLAG:
return fl_value_new_bool(node->u.flag != 0);
case MPV_FORMAT_INT64:
return fl_value_new_int(node->u.int64);
case MPV_FORMAT_DOUBLE:
return fl_value_new_float(node->u.double_);
case MPV_FORMAT_NODE_ARRAY: {
FlValue* list = fl_value_new_list();
for (int i = 0; i < node->u.list->num; i++) {
fl_value_append_take(list, NodeToFlValue(&node->u.list->values[i]));
}
return list;
}
case MPV_FORMAT_NODE_MAP: {
FlValue* map = fl_value_new_map();
for (int i = 0; i < node->u.list->num; i++) {
fl_value_set_string_take(map, node->u.list->keys[i], NodeToFlValue(&node->u.list->values[i]));
}
return map;
}
default:
return fl_value_new_null();
}
}
void MpvPlayer::SendPropertyChange(const char* name, mpv_node* data) {
if (!name) return;
int id = 0;
if (!observed_properties_.LookupId(name, &id)) return;
FlValue* list = fl_value_new_list();
fl_value_append_take(list, fl_value_new_int(id));
if (data) {
fl_value_append_take(list, NodeToFlValue(data));
} else {
fl_value_append_take(list, fl_value_new_null());
}
std::lock_guard<std::mutex> lock(callback_mutex_);
if (event_callback_) {
event_callback_(list);
}
fl_value_unref(list);
}
void MpvPlayer::SendEvent(const std::string& name, FlValue* data) {
FlValue* event_map = fl_value_new_map();
fl_value_set_string_take(event_map, "type", fl_value_new_string("event"));
fl_value_set_string_take(event_map, "name", fl_value_new_string(name.c_str()));
if (data) {
fl_value_set_string_take(event_map, "data", fl_value_ref(data));
}
std::lock_guard<std::mutex> lock(callback_mutex_);
if (event_callback_) {
event_callback_(event_map);
}
fl_value_unref(event_map);
}
void MpvPlayer::SetHDREnabled(bool enabled, StatusCallback callback) {
hdr_enabled_ = enabled;
if (!mpv_) {
if (callback) callback(0);
return;
}
SetPropertyAsync("target-colorspace-hint", plezy::mpv_common::TargetColorspaceHint(enabled), std::move(callback));
}
} // namespace mpv