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17 Commits
Author | SHA1 | Date | |
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d37ea33b1e | |||
540e4a25fb | |||
270663e529 | |||
e55be91d24 | |||
a98b71f0da | |||
d58af1f2b2 | |||
42b1ae98f7 | |||
63cc55d20c | |||
1751356e3c | |||
7736a1f8a2 | |||
ccadc934ac | |||
78db4168a5 | |||
ce0572485b | |||
b55ba418aa | |||
852bbe6dad | |||
6a12d213e8 | |||
4e4adcb934 |
@ -2,6 +2,7 @@ pub mod bvh;
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pub mod map;
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pub mod aabb;
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pub mod model;
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pub mod timer;
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pub mod zeroes;
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pub mod integer;
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pub mod updatable;
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292
src/timer.rs
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292
src/timer.rs
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@ -0,0 +1,292 @@
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use crate::integer::{Time,Ratio64};
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#[derive(Clone,Copy,Debug)]
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pub struct Paused;
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#[derive(Clone,Copy,Debug)]
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pub struct Unpaused;
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pub trait PauseState:Copy+std::fmt::Debug{
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const IS_PAUSED:bool;
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fn new()->Self;
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}
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impl PauseState for Paused{
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const IS_PAUSED:bool=true;
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fn new()->Self{
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Self
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}
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}
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impl PauseState for Unpaused{
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const IS_PAUSED:bool=false;
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fn new()->Self{
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Self
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}
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}
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#[derive(Clone,Copy,Debug)]
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pub struct Realtime{
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offset:Time,
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}
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impl Realtime{
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const fn new(offset:Time)->Self{
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Self{offset}
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}
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}
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#[derive(Clone,Copy,Debug)]
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pub struct Scaled{
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scale:Ratio64,
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offset:Time,
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}
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impl Scaled{
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const fn new(scale:Ratio64,offset:Time)->Self{
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Self{scale,offset}
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}
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const fn with_scale(scale:Ratio64)->Self{
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Self{scale,offset:Time::ZERO}
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}
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const fn scale(&self,time:Time)->Time{
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Time::raw(self.scale.mul_int(time.get()))
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}
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const fn get_scale(&self)->Ratio64{
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self.scale
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}
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fn set_scale(&mut self,time:Time,new_scale:Ratio64){
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let new_time=self.get_time(time);
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self.scale=new_scale;
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self.set_time(time,new_time);
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}
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}
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pub trait TimerState:Copy+std::fmt::Debug{
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fn identity()->Self;
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fn get_time(&self,time:Time)->Time;
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fn set_time(&mut self,time:Time,new_time:Time);
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fn get_offset(&self)->Time;
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fn set_offset(&mut self,offset:Time);
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}
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impl TimerState for Realtime{
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fn identity()->Self{
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Self{offset:Time::ZERO}
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}
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fn get_time(&self,time:Time)->Time{
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time+self.offset
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}
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fn set_time(&mut self,time:Time,new_time:Time){
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self.offset=new_time-time;
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}
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fn get_offset(&self)->Time{
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self.offset
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}
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fn set_offset(&mut self,offset:Time){
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self.offset=offset;
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}
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}
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impl TimerState for Scaled{
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fn identity()->Self{
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Self{scale:Ratio64::ONE,offset:Time::ZERO}
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}
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fn get_time(&self,time:Time)->Time{
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self.scale(time)+self.offset
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}
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fn set_time(&mut self,time:Time,new_time:Time){
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self.offset=new_time-self.scale(time);
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}
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fn get_offset(&self)->Time{
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self.offset
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}
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fn set_offset(&mut self,offset:Time){
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self.offset=offset;
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}
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}
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#[derive(Clone,Copy,Debug)]
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pub struct TimerFixed<T:TimerState,P:PauseState>{
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state:T,
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_paused:P,
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}
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//scaled timer methods are generic across PauseState
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impl<P:PauseState> TimerFixed<Scaled,P>{
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pub fn scaled(time:Time,new_time:Time,scale:Ratio64)->Self{
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let mut timer=Self{
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state:Scaled::with_scale(scale),
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_paused:P::new(),
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};
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timer.set_time(time,new_time);
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timer
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}
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pub const fn get_scale(&self)->Ratio64{
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self.state.get_scale()
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}
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pub fn set_scale(&mut self,time:Time,new_scale:Ratio64){
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self.state.set_scale(time,new_scale)
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}
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}
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//pause and unpause is generic across TimerState
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impl<T:TimerState> TimerFixed<T,Paused>{
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pub fn into_unpaused(self,time:Time)->TimerFixed<T,Unpaused>{
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let new_time=self.time(time);
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let mut timer=TimerFixed{
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state:self.state,
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_paused:Unpaused,
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};
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timer.set_time(time,new_time);
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timer
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}
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}
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impl<T:TimerState> TimerFixed<T,Unpaused>{
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pub fn into_paused(self,time:Time)->TimerFixed<T,Paused>{
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let new_time=self.time(time);
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let mut timer=TimerFixed{
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state:self.state,
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_paused:Paused,
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};
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timer.set_time(time,new_time);
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timer
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}
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}
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//the new constructor and time queries are generic across both
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impl<T:TimerState,P:PauseState> TimerFixed<T,P>{
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pub fn new(time:Time,new_time:Time)->Self{
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let mut timer=Self{
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state:T::identity(),
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_paused:P::new(),
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};
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timer.set_time(time,new_time);
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timer
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}
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pub fn from_state(state:T)->Self{
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Self{
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state,
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_paused:P::new(),
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}
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}
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pub fn into_state(self)->T{
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self.state
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}
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pub fn time(&self,time:Time)->Time{
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match P::IS_PAUSED{
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true=>self.state.get_offset(),
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false=>self.state.get_time(time),
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}
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}
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pub fn set_time(&mut self,time:Time,new_time:Time){
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match P::IS_PAUSED{
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true=>self.state.set_offset(new_time),
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false=>self.state.set_time(time,new_time),
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}
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}
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}
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#[derive(Debug)]
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pub enum Error{
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AlreadyPaused,
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AlreadyUnpaused,
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}
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impl std::fmt::Display for Error{
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fn fmt(&self,f:&mut std::fmt::Formatter<'_>)->std::fmt::Result{
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write!(f,"{self:?}")
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}
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}
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impl std::error::Error for Error{}
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//wrapper type which holds type state internally
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#[derive(Clone,Debug)]
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pub enum Timer<T:TimerState>{
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Paused(TimerFixed<T,Paused>),
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Unpaused(TimerFixed<T,Unpaused>),
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}
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impl<T:TimerState> Timer<T>{
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pub fn from_state(state:T,paused:bool)->Self{
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match paused{
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true=>Self::Paused(TimerFixed::from_state(state)),
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false=>Self::Unpaused(TimerFixed::from_state(state)),
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}
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}
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pub fn into_state(self)->(T,bool){
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match self{
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Self::Paused(timer)=>(timer.into_state(),true),
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Self::Unpaused(timer)=>(timer.into_state(),false),
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}
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}
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pub fn paused(time:Time,new_time:Time)->Self{
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Self::Paused(TimerFixed::new(time,new_time))
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}
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pub fn unpaused(time:Time,new_time:Time)->Self{
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Self::Unpaused(TimerFixed::new(time,new_time))
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}
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pub fn time(&self,time:Time)->Time{
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match self{
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Self::Paused(timer)=>timer.time(time),
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Self::Unpaused(timer)=>timer.time(time),
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}
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}
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pub fn set_time(&mut self,time:Time,new_time:Time){
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match self{
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Self::Paused(timer)=>timer.set_time(time,new_time),
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Self::Unpaused(timer)=>timer.set_time(time,new_time),
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}
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}
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pub fn pause(&mut self,time:Time)->Result<(),Error>{
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*self=match *self{
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Self::Paused(_)=>return Err(Error::AlreadyPaused),
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Self::Unpaused(timer)=>Self::Paused(timer.into_paused(time)),
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};
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Ok(())
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}
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pub fn unpause(&mut self,time:Time)->Result<(),Error>{
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*self=match *self{
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Self::Paused(timer)=>Self::Unpaused(timer.into_unpaused(time)),
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Self::Unpaused(_)=>return Err(Error::AlreadyUnpaused),
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};
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Ok(())
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}
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}
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#[cfg(test)]
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mod test{
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use super::{Time,Timer,TimerFixed,Error,Realtime,Scaled,Paused};
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macro_rules! sec {
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($s: expr) => {
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Time::from_secs($s)
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};
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}
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#[test]
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fn test_timerfixed_scaled(){
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//create a paused timer that reads 0s
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let timer=TimerFixed::<Scaled,Paused>::new(sec!(0),sec!(0));
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//the paused timer at 1 second should read 0s
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assert_eq!(timer.time(sec!(1)),sec!(0));
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//unpause it after one second
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let timer=timer.into_unpaused(sec!(1));
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//the timer at 6 seconds should read 5s
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assert_eq!(timer.time(sec!(6)),sec!(5));
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//pause the timer after 11 seconds
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let timer=timer.into_paused(sec!(11));
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//the paused timer at 20 seconds should read 10s
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assert_eq!(timer.time(sec!(20)),sec!(10));
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}
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#[test]
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fn test_timer()->Result<(),Error>{
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//create a paused timer that reads 0s
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let mut timer=Timer::<Realtime>::paused(sec!(0),sec!(0));
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//the paused timer at 1 second should read 0s
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assert_eq!(timer.time(sec!(1)),sec!(0));
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//unpause it after one second
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timer.unpause(sec!(1))?;
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//the timer at 6 seconds should read 5s
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assert_eq!(timer.time(sec!(6)),sec!(5));
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//pause the timer after 11 seconds
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timer.pause(sec!(11))?;
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//the paused timer at 20 seconds should read 10s
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assert_eq!(timer.time(sec!(20)),sec!(10));
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Ok(())
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}
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}
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Loading…
Reference in New Issue
Block a user