ladybird/Libraries/LibCore/CObject.cpp

159 lines
4.0 KiB
C++

#include <AK/Assertions.h>
#include <AK/JsonObject.h>
#include <AK/kstdio.h>
#include <LibCore/CEvent.h>
#include <LibCore/CEventLoop.h>
#include <LibCore/CObject.h>
#include <stdio.h>
IntrusiveList<CObject, &CObject::m_all_objects_list_node>& CObject::all_objects()
{
static IntrusiveList<CObject, &CObject::m_all_objects_list_node> objects;
return objects;
}
CObject::CObject(CObject* parent, bool is_widget)
: m_parent(parent)
, m_widget(is_widget)
{
all_objects().append(*this);
if (m_parent)
m_parent->add_child(*this);
}
CObject::~CObject()
{
// NOTE: We move our children out to a stack vector to prevent other
// code from trying to iterate over them.
auto children = move(m_children);
// NOTE: We also unparent the children, so that they won't try to unparent
// themselves in their own destructors.
for (auto& child : children)
child.m_parent = nullptr;
all_objects().remove(*this);
stop_timer();
if (m_parent)
m_parent->remove_child(*this);
}
void CObject::event(CEvent& event)
{
switch (event.type()) {
case CEvent::Timer:
return timer_event(static_cast<CTimerEvent&>(event));
case CEvent::ChildAdded:
case CEvent::ChildRemoved:
return child_event(static_cast<CChildEvent&>(event));
case CEvent::Invalid:
ASSERT_NOT_REACHED();
break;
case CEvent::Custom:
return custom_event(static_cast<CCustomEvent&>(event));
default:
break;
}
}
void CObject::add_child(CObject& object)
{
// FIXME: Should we support reparenting objects?
ASSERT(!object.parent() || object.parent() == this);
object.m_parent = this;
m_children.append(object);
event(*make<CChildEvent>(CEvent::ChildAdded, object));
}
void CObject::remove_child(CObject& object)
{
for (int i = 0; i < m_children.size(); ++i) {
if (m_children.ptr_at(i).ptr() == &object) {
// NOTE: We protect the child so it survives the handling of ChildRemoved.
NonnullRefPtr<CObject> protector = object;
object.m_parent = nullptr;
m_children.remove(i);
event(*make<CChildEvent>(CEvent::ChildRemoved, object));
return;
}
}
ASSERT_NOT_REACHED();
}
void CObject::timer_event(CTimerEvent&)
{
}
void CObject::child_event(CChildEvent&)
{
}
void CObject::custom_event(CCustomEvent&)
{
}
void CObject::start_timer(int ms)
{
if (m_timer_id) {
dbgprintf("CObject{%p} already has a timer!\n", this);
ASSERT_NOT_REACHED();
}
m_timer_id = CEventLoop::register_timer(*this, ms, true);
}
void CObject::stop_timer()
{
if (!m_timer_id)
return;
bool success = CEventLoop::unregister_timer(m_timer_id);
ASSERT(success);
m_timer_id = 0;
}
void CObject::dump_tree(int indent)
{
for (int i = 0; i < indent; ++i) {
printf(" ");
}
printf("%s{%p}\n", class_name(), this);
for_each_child([&](auto& child) {
child.dump_tree(indent + 2);
return IterationDecision::Continue;
});
}
void CObject::deferred_invoke(Function<void(CObject&)> invokee)
{
CEventLoop::current().post_event(*this, make<CDeferredInvocationEvent>(move(invokee)));
}
void CObject::save_to(JsonObject& json)
{
json.set("class_name", class_name());
json.set("address", String::format("%p", this));
json.set("name", name());
json.set("parent", String::format("%p", parent()));
}
bool CObject::is_ancestor_of(const CObject& other) const
{
if (&other == this)
return false;
for (auto* ancestor = other.parent(); ancestor; ancestor = ancestor->parent()) {
if (ancestor == this)
return true;
}
return false;
}
void CObject::dispatch_event(CEvent& e, CObject* stay_within)
{
ASSERT(!stay_within || stay_within == this || stay_within->is_ancestor_of(*this));
auto* target = this;
do {
target->event(e);
target = target->parent();
} while (target && target != stay_within && !e.is_accepted());
}