input = new ByPass();
output = new ByPass();
((ByPass *)output)->set_control(this);
+ updated = false;
}
Exclusa::~Exclusa()
{
+ delete input;
+ delete output;
}
void Exclusa::update(int dir)
// mi estado
is_open = input->get_output();
}
+ if (updated) return;
+ actual_flow = temp = INFINITO;
}
void Exclusa::simulate()
{
+#ifdef DEBUG
std::cout << name << ": " << ((is_open)?"Abierta":"Cerrada") << std::endl;
+#endif
+
+ updated = false;
+ color_updated = false;
}
void Exclusa::recieve_msg(int msg, IConector *who, void *data)
{
switch (msg) {
case MSG_QUERY_MAX_FLOW_OUT:
- temp = *((float *)data);
+ if (updated) {
+ who->recieve_msg(MSG_RESPONSE_MAX_FLOW, this, &temp);
+ }
+ actual_flow = temp = *((float *)data);
+ if (!is_open) actual_flow = temp = 0;
+ updated = true;
send_msg(OUT, MSG_QUERY_MAX_FLOW_OUT, &temp);
who->recieve_msg(MSG_RESPONSE_MAX_FLOW, this, &temp);
break;
case MSG_RESPONSE_MAX_FLOW:
- temp = *((float *)data);
+ if (is_open)
+ actual_flow = temp = *((float *)data);
break;
default:
Control::recieve_msg(msg, who, data);
}
}
+void Exclusa::get_state_as_xml(std::stringstream &out)
+{
+ PlantItem::get_state_as_xml(out);
+ out << "\t<exclusa name=\"" << name << "\">" << std::endl;
+ out << "\t\t<active>" << ((is_open)?"true":"false") << "</active>" << std::endl;
+ out << "\t</exclusa>" << std::endl;
+ temp = actual_flow = INFINITO;
+}
+