Restructure library and plugins

The "core" macro conditions and actions have been extracted out to the
"base" plugin.

The library now mostly contains functionality which is required across
all plugins and (e.g. definitions for macro segments).

The goal is to reduce the complexity and cross-dependencies and group
the source files in a better way.

This should relsove the "library limit of 65535 objects exceeded" build
issue occuring in some Windows build environments.
This commit is contained in:
WarmUpTill
2024-01-17 16:22:55 +01:00
committed by WarmUpTill
parent 498bf31295
commit 7d0332dd0e
390 changed files with 3110 additions and 2755 deletions

View File

@@ -0,0 +1,203 @@
#include "macro-condition-recording.hpp"
#include "utility.hpp"
#include <thread>
namespace advss {
const std::string MacroConditionRecord::id = "recording";
bool MacroConditionRecord::_registered = MacroConditionFactory::Register(
MacroConditionRecord::id,
{MacroConditionRecord::Create, MacroConditionRecordEdit::Create,
"AdvSceneSwitcher.condition.record"});
const static std::map<MacroConditionRecord::Condition, std::string>
recordStates = {
{MacroConditionRecord::Condition::STOP,
"AdvSceneSwitcher.condition.record.state.stop"},
{MacroConditionRecord::Condition::PAUSE,
"AdvSceneSwitcher.condition.record.state.pause"},
{MacroConditionRecord::Condition::START,
"AdvSceneSwitcher.condition.record.state.start"},
{MacroConditionRecord::Condition::DURATION,
"AdvSceneSwitcher.condition.record.state.duration"},
};
static bool SetupRecordingTimer();
static bool recordingTimerIsSetup = SetupRecordingTimer();
static int currentRecordingDurationInSeconds = 0;
bool MacroConditionRecord::CheckCondition()
{
switch (_condition) {
case Condition::STOP:
return !obs_frontend_recording_active();
case Condition::PAUSE:
return obs_frontend_recording_paused();
case Condition::START:
return obs_frontend_recording_active();
case Condition::DURATION:
SetTempVarValue(
"durationSeconds",
std::to_string(currentRecordingDurationInSeconds));
return currentRecordingDurationInSeconds > _duration.Seconds();
default:
break;
}
return false;
}
bool MacroConditionRecord::Save(obs_data_t *obj) const
{
MacroCondition::Save(obj);
obs_data_set_int(obj, "state", static_cast<int>(_condition));
_duration.Save(obj);
return true;
}
bool MacroConditionRecord::Load(obs_data_t *obj)
{
MacroCondition::Load(obj);
_condition = static_cast<Condition>(obs_data_get_int(obj, "state"));
_duration.Load(obj);
return true;
}
void MacroConditionRecord::SetCondition(Condition condition)
{
_condition = condition;
SetupTempVars();
}
void MacroConditionRecord::SetupTempVars()
{
MacroCondition::SetupTempVars();
switch (_condition) {
case Condition::DURATION:
AddTempvar(
"durationSeconds",
obs_module_text(
"AdvSceneSwitcher.tempVar.recording.durationSeconds"),
obs_module_text(
"AdvSceneSwitcher.tempVar.recording.durationSeconds.description"));
break;
default:
break;
}
}
static inline void populateStateSelection(QComboBox *list)
{
for (auto entry : recordStates) {
list->addItem(obs_module_text(entry.second.c_str()));
}
}
MacroConditionRecordEdit::MacroConditionRecordEdit(
QWidget *parent, std::shared_ptr<MacroConditionRecord> entryData)
: QWidget(parent),
_condition(new QComboBox(this)),
_duration(new DurationSelection(this))
{
populateStateSelection(_condition);
QWidget::connect(_condition, SIGNAL(currentIndexChanged(int)), this,
SLOT(ConditionChanged(int)));
QWidget::connect(_duration, SIGNAL(DurationChanged(const Duration &)),
this, SLOT(DurationChanged(const Duration &)));
auto layout = new QHBoxLayout;
PlaceWidgets(obs_module_text("AdvSceneSwitcher.condition.record.entry"),
layout,
{{"{{condition}}", _condition},
{"{{duration}}", _duration}});
setLayout(layout);
_entryData = entryData;
UpdateEntryData();
_loading = false;
}
void MacroConditionRecordEdit::ConditionChanged(int value)
{
if (_loading || !_entryData) {
return;
}
auto lock = LockContext();
_entryData->SetCondition(
static_cast<MacroConditionRecord::Condition>(value));
SetWidgetVisibility();
}
void MacroConditionRecordEdit::UpdateEntryData()
{
if (!_entryData) {
return;
}
_condition->setCurrentIndex(
static_cast<int>(_entryData->GetCondition()));
_duration->SetDuration(_entryData->_duration);
SetWidgetVisibility();
}
void MacroConditionRecordEdit::DurationChanged(const Duration &duration)
{
if (_loading || !_entryData) {
return;
}
auto lock = LockContext();
_entryData->_duration = duration;
}
void MacroConditionRecordEdit::SetWidgetVisibility()
{
_duration->setVisible(_entryData->GetCondition() ==
MacroConditionRecord::Condition::DURATION);
}
bool SetupRecordingTimer()
{
static std::atomic_bool recordingStopped = {true};
static std::atomic_bool recordingPaused = {false};
static auto handleRecordingEvents = [](enum obs_frontend_event event,
void *) {
switch (event) {
case OBS_FRONTEND_EVENT_RECORDING_STOPPED:
recordingStopped = true;
break;
case OBS_FRONTEND_EVENT_RECORDING_STARTED:
recordingStopped = false;
break;
case OBS_FRONTEND_EVENT_RECORDING_PAUSED:
recordingPaused = true;
break;
case OBS_FRONTEND_EVENT_RECORDING_UNPAUSED:
recordingPaused = false;
break;
default:
break;
};
};
obs_frontend_add_event_callback(handleRecordingEvents, nullptr);
std::thread thread([]() {
while (true) {
std::this_thread::sleep_for(std::chrono::seconds(1));
if (recordingStopped) {
currentRecordingDurationInSeconds = 0;
continue;
}
if (recordingPaused) {
continue;
}
++currentRecordingDurationInSeconds;
}
});
thread.detach();
return true;
}
} // namespace advss