blob: 4b47f2c6b7e5fb95c3b4205df998b6c010fa3ad0 [file]
#include "A.hh"
#include "umlrtcommsportrole.hh"
#include "umlrtmessage.hh"
#include "umlrtslot.hh"
#include <cstddef>
#include "umlrtcapsuleclass.hh"
#include "umlrtframeservice.hh"
class UMLRTRtsInterface;
struct UMLRTCommsPort;
Capsule_A::Capsule_A( const UMLRTCapsuleClass * cd, UMLRTSlot * st, const UMLRTCommsPort * * border, const UMLRTCommsPort * * internal, bool isStat )
: UMLRTCapsule( NULL, cd, st, border, internal, isStat )
, control( borderPorts[borderport_control] )
, p1( borderPorts[borderport_p1] )
, p2( borderPorts[borderport_p2] )
, currentState( SPECIAL_INTERNAL_STATE_UNVISITED )
{
stateNames[State1] = "State1";
stateNames[SPECIAL_INTERNAL_STATE_TOP] = "<top>";
stateNames[SPECIAL_INTERNAL_STATE_UNVISITED] = "<uninitialized>";
}
void Capsule_A::bindPort( bool isBorder, int portId, int index )
{
if( isBorder )
switch( portId )
{
case borderport_control:
UMLRTFrameService::sendBoundUnbound( borderPorts, borderport_control, index, true );
break;
case borderport_p1:
UMLRTFrameService::sendBoundUnbound( borderPorts, borderport_p1, index, true );
break;
case borderport_p2:
UMLRTFrameService::sendBoundUnbound( borderPorts, borderport_p2, index, true );
break;
}
}
void Capsule_A::unbindPort( bool isBorder, int portId, int index )
{
if( isBorder )
switch( portId )
{
case borderport_control:
UMLRTFrameService::sendBoundUnbound( borderPorts, borderport_control, index, false );
UMLRTFrameService::disconnectPort( borderPorts[borderport_control], index );
break;
case borderport_p1:
UMLRTFrameService::sendBoundUnbound( borderPorts, borderport_p1, index, false );
UMLRTFrameService::disconnectPort( borderPorts[borderport_p1], index );
break;
case borderport_p2:
UMLRTFrameService::sendBoundUnbound( borderPorts, borderport_p2, index, false );
UMLRTFrameService::disconnectPort( borderPorts[borderport_p2], index );
break;
}
}
void Capsule_A::inject( const UMLRTMessage & message )
{
msg = &message;
switch( currentState )
{
case State1:
currentState = state_____State1( &message );
break;
default:
break;
}
}
void Capsule_A::initialize( const UMLRTMessage & message )
{
msg = &message;
actionchain_____Initial( &message );
currentState = State1;
}
const char * Capsule_A::getCurrentStateString() const
{
return stateNames[currentState];
}
void Capsule_A::update_state( Capsule_A::State newState )
{
currentState = newState;
}
void Capsule_A::entryaction_____State1( const UMLRTMessage * msg )
{
#define rtdata ( (void *)msg->getParam( 0 ) )
/* UMLRTGEN-USERREGION-BEGIN platform:/resource/IncarnateSubclass/IncarnateSubclass.uml RootElement::A::State1 entry */
log.log("[A](s:State1) A instance ready: '%s:%s'", this->name(),this->getTypeName());
control.done().send();
/* UMLRTGEN-USERREGION-END */
#undef rtdata
}
void Capsule_A::actionchain_____Initial( const UMLRTMessage * msg )
{
update_state( State1 );
entryaction_____State1( msg );
}
Capsule_A::State Capsule_A::state_____State1( const UMLRTMessage * msg )
{
switch( msg->destPort->role()->id )
{
default:
this->unexpectedMessage();
break;
}
return currentState;
}
static const UMLRTCommsPortRole portroles_border[] =
{
{
Capsule_A::port_control,
"Control",
"control",
"",
1,
true,
false,
false,
false,
false,
false,
true
},
{
Capsule_A::port_p1,
"P1",
"p1",
"",
1,
true,
false,
false,
false,
false,
false,
true
},
{
Capsule_A::port_p2,
"P2",
"p2",
"",
1,
true,
false,
false,
false,
false,
false,
true
}
};
static const UMLRTCommsPortRole portroles_internal[] =
{
{
Capsule_A::port_log,
"Log",
"log",
"",
0,
false,
false,
false,
false,
true,
false,
false
}
};
static void instantiate_A( const UMLRTRtsInterface * rts, UMLRTSlot * slot, const UMLRTCommsPort * * borderPorts )
{
const UMLRTCommsPort * * internalPorts = UMLRTFrameService::createInternalPorts( slot, &A );
slot->capsule = new Capsule_A( &A, slot, borderPorts, internalPorts, false );
}
const UMLRTCapsuleClass A =
{
"A",
NULL,
instantiate_A,
0,
NULL,
3,
portroles_border,
1,
portroles_internal
};