forked from StrafesNET/strafe-client
rename EventStruct to TimedInstruction
This commit is contained in:
parent
a4ed50fc38
commit
949897a558
48
src/body.rs
48
src/body.rs
@ -1,6 +1,6 @@
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use crate::event::EventStruct;
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use crate::instruction::TimedInstruction;
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pub enum PhysicsEvent {
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pub enum PhysicsInstruction {
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CollisionStart(RelativeCollision),
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CollisionStart(RelativeCollision),
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CollisionEnd(RelativeCollision),
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CollisionEnd(RelativeCollision),
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StrafeTick,
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StrafeTick,
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@ -198,7 +198,7 @@ impl PhysicsState {
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if applied_friction*applied_friction<diffv.length_squared() {
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if applied_friction*applied_friction<diffv.length_squared() {
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self.body.velocity+=applied_friction*diffv.normalize();
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self.body.velocity+=applied_friction*diffv.normalize();
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} else {
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} else {
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//EventEnum::WalkTargetReached
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//PhysicsInstruction::WalkTargetReached
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self.body.velocity=targetv;
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self.body.velocity=targetv;
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}
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}
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}
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}
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@ -213,59 +213,59 @@ impl PhysicsState {
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self.body.position+self.body.velocity*(dt as f32)+self.gravity*((0.5*dt*dt) as f32)
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self.body.position+self.body.velocity*(dt as f32)+self.gravity*((0.5*dt*dt) as f32)
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}
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}
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fn next_strafe_event(&self) -> Option<EventStruct<PhysicsEvent>> {
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fn next_strafe_instruction(&self) -> Option<TimedInstruction<PhysicsInstruction>> {
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return Some(EventStruct{
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return Some(TimedInstruction{
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time:(self.time*self.strafe_tick_num/self.strafe_tick_den+1)*self.strafe_tick_den/self.strafe_tick_num,
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time:(self.time*self.strafe_tick_num/self.strafe_tick_den+1)*self.strafe_tick_den/self.strafe_tick_num,
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event:PhysicsEvent::StrafeTick
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instruction:PhysicsInstruction::StrafeTick
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});
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});
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}
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}
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fn next_walk_event(&self) -> Option<EventStruct<PhysicsEvent>> {
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fn next_walk_instruction(&self) -> Option<TimedInstruction<PhysicsInstruction>> {
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//check if you are accelerating towards a walk target velocity and create an event
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//check if you are accelerating towards a walk target velocity and create an instruction
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return None;
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return None;
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}
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}
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fn predict_collision_end(&self,model:&Model) -> Option<EventStruct<PhysicsEvent>> {
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fn predict_collision_end(&self,model:&Model) -> Option<TimedInstruction<PhysicsInstruction>> {
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None
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None
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}
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}
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fn predict_collision_start(&self,model:&Model) -> Option<EventStruct<PhysicsEvent>> {
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fn predict_collision_start(&self,model:&Model) -> Option<TimedInstruction<PhysicsInstruction>> {
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None
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None
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}
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}
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}
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}
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impl crate::event::EventEmitter<PhysicsEvent> for PhysicsState {
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impl crate::instruction::InstructionEmitter<PhysicsInstruction> for PhysicsState {
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//this little next event function can cache its return value and invalidate the cached value by watching the State.
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//this little next instruction function can cache its return value and invalidate the cached value by watching the State.
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fn next_event(&self) -> Option<EventStruct<PhysicsEvent>> {
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fn next_instruction(&self) -> Option<TimedInstruction<PhysicsInstruction>> {
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//JUST POLLING!!! NO MUTATION
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//JUST POLLING!!! NO MUTATION
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let mut best = crate::event::EventCollector::new();
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let mut best = crate::instruction::InstructionCollector::new();
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//autohop (already pressing spacebar; the signal to begin trying to jump is different)
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//autohop (already pressing spacebar; the signal to begin trying to jump is different)
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if self.grounded&&self.jump_trying {
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if self.grounded&&self.jump_trying {
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//scroll will be implemented with InputEvent::Jump(true) but it blocks setting self.jump_trying=true
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//scroll will be implemented with InputInstruction::Jump(true) but it blocks setting self.jump_trying=true
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best.collect(Some(EventStruct{
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best.collect(Some(TimedInstruction{
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time:self.time,
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time:self.time,
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event:PhysicsEvent::Jump
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instruction:PhysicsInstruction::Jump
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}));
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}));
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}
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}
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//check for collision stop events with curent contacts
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//check for collision stop instructions with curent contacts
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for collision_data in self.contacts.iter() {
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for collision_data in self.contacts.iter() {
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best.collect(self.predict_collision_end(self.models_cringe_clone.get(collision_data.model as usize).unwrap()));
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best.collect(self.predict_collision_end(self.models_cringe_clone.get(collision_data.model as usize).unwrap()));
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}
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}
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//check for collision start events (against every part in the game with no optimization!!)
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//check for collision start instructions (against every part in the game with no optimization!!)
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for model in &self.models_cringe_clone {
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for model in &self.models_cringe_clone {
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best.collect(self.predict_collision_start(model));
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best.collect(self.predict_collision_start(model));
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}
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}
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if self.grounded {
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if self.grounded {
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//walk maintenance
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//walk maintenance
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best.collect(self.next_walk_event());
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best.collect(self.next_walk_instruction());
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}else{
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}else{
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//check to see when the next strafe tick is
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//check to see when the next strafe tick is
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best.collect(self.next_strafe_event());
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best.collect(self.next_strafe_instruction());
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}
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}
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best.event()
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best.instruction()
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}
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}
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}
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}
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impl crate::event::EventConsumer<PhysicsEvent> for PhysicsState {
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impl crate::instruction::InstructionConsumer<PhysicsInstruction> for PhysicsState {
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fn process_event(&mut self, event:EventStruct<PhysicsEvent>) {
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fn process_instruction(&mut self, instruction:TimedInstruction<PhysicsInstruction>) {
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//
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//
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}
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}
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}
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}
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38
src/event.rs
38
src/event.rs
@ -1,37 +1,37 @@
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pub struct EventStruct<E> {
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pub struct TimedInstruction<I> {
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pub time: crate::body::TIME,
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pub time: crate::body::TIME,
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pub event: E,
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pub instruction: I,
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}
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}
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pub trait EventEmitter<E> {
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pub trait InstructionEmitter<I> {
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fn next_event(&self) -> Option<EventStruct<E>>;
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fn next_instruction(&self) -> Option<TimedInstruction<I>>;
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}
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}
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pub trait EventConsumer<E> {
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pub trait InstructionConsumer<I> {
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fn process_event(&mut self, event:EventStruct<E>);
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fn process_instruction(&mut self, instruction:TimedInstruction<I>);
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}
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}
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//PROPER PRIVATE FIELDS!!!
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//PROPER PRIVATE FIELDS!!!
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pub struct EventCollector<E> {
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pub struct InstructionCollector<I> {
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event: Option<EventStruct<E>>,
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instruction: Option<TimedInstruction<I>>,
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}
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}
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impl<E> EventCollector<E> {
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impl<I> InstructionCollector<I> {
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pub fn new() -> Self {
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pub fn new() -> Self {
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Self{event:None}
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Self{instruction:None}
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}
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}
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pub fn collect(&mut self,test_event:Option<EventStruct<E>>){
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pub fn collect(&mut self,instruction:Option<TimedInstruction<I>>){
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match &test_event {
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match &instruction {
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Some(unwrap_test_event) => match &self.event {
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Some(unwrap_instruction) => match &self.instruction {
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Some(unwrap_best_event) => if unwrap_test_event.time<unwrap_best_event.time {
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Some(unwrap_best_instruction) => if unwrap_instruction.time<unwrap_best_instruction.time {
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self.event=test_event;
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self.instruction=instruction;
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},
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},
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None => self.event=test_event,
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None => self.instruction=instruction,
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},
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},
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None => (),
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None => (),
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}
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}
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}
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}
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pub fn event(self) -> Option<EventStruct<E>> {
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pub fn instruction(self) -> Option<TimedInstruction<I>> {
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//STEAL EVENT AND DESTROY EVENTCOLLECTOR
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//STEAL INSTRUCTION AND DESTROY INSTRUCTIONCOLLECTOR
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return self.event
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return self.instruction
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}
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}
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}
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}
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@ -1,3 +1,3 @@
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pub mod framework;
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pub mod framework;
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pub mod body;
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pub mod body;
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pub mod event;
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pub mod instruction;
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