Tweaking audio
This commit is contained in:
parent
f1873abed7
commit
c5407266eb
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@ -0,0 +1,111 @@
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local love = love
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local passChimes = {}
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local failChimes = {}
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local drones = {}
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local N = 8
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local function StartDrones()
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love.audio.setEffect( "droneReverb", {
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type = "reverb",
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volume = 1.0, }
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)
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drones.bass = love.audio.newSource("sounds/drone.flac", "stream")
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drones.alto = love.audio.newSource("sounds/drone.flac", "stream")
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drones.bass:setVolume( 0 )
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drones.bass:setPitch( 0.25 )
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drones.alto:setVolume( 0 )
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drones.bass:setPitch( 0.5 )
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drones.bass:setEffect( "droneReverb", true )
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love.audio.play( drones.bass )
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love.audio.play( drones.alto )
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end
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love.audio.setEffect( "passChimeReverb", {
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type = "reverb",
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volume = 1.0, } )
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local passChime = love.audio.newSource("sounds/chimeb.flac", "static")
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passChime:setEffect( "passChimeReverb", true )
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local failChime = love.audio.newSource("sounds/chime.flac", "static")
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failChime:setEffect( "passChimeReverb", true )
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for i = 1, N do
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passChimes[i] = passChime:clone()
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failChimes[i] = failChime:clone()
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end
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local idxNextPassChime = 1
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local idxNextFailChime = 1
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local function GetNextPassChime( pass )
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idxNextPassChime = idxNextPassChime % N + 1
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return passChimes[ idxNextPassChime ]
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end
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local function GetNextFailChime( pass )
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idxNextFailChime = idxNextFailChime % N + 1
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return failChimes[ idxNextFailChime ]
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end
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local pitches =
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{
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1,
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2/3,
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3/2,
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9/8,
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27/16,
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81/64,
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243/128,
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2 --Safety
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}
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local function GetPitch( th )
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th = 0.5 + 0.5 * th / math.pi
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return pitches[ 1 + math.floor( th * 7 )]
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end
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local function OnImpact( impact, score, pass, level )
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--
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if not pass then
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--drones.bass:seek( level )
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-- drones.alto:seek( level )
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end
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local th = impact.th
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local r = impact.r
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-- Chimes
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local chime = pass and GetNextPassChime() or GetNextFailChime()
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chime:setPitch( GetPitch( th ) )
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chime:setPosition( r * math.cos( th ), r * math.sin( th ) )
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local highgain = math.max( 0, math.min( score, 1.0 ) - (pass and 0.0 or 0.5))
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chime:setFilter{
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type = "lowpass",
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volume = 0.5 * impact.speed,
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highgain = highgain,
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}
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love.audio.stop( chime )
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love.audio.play( chime )
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end
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--score is the hypothetical "beat score" that would be attained
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--if an impact took place at this instant.
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local function Update( score )
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drones.bass:setVolume( 0.5 * math.sqrt( score ) )
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--drones.alto:setVolume( 0.3 * score )
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end
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local function Reset( )
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for i = 1, N do
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love.audio.stop( passChimes[i] )
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love.audio.stop( failChimes[i] )
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end
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StartDrones()
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end
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Reset()
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return { OnImpact = OnImpact, Update = Update, Reset = Reset}
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133
main.lua
133
main.lua
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@ -4,12 +4,12 @@ local sitelenpona
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local text
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local marble
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local wave
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local particles
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local audio
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local recorder
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local DetectCollision
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local sounds = {
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}
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local OnImpact
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local OnVictory
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local state
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@ -52,17 +52,52 @@ function love.load()
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love.graphics.setBackgroundColor( 245 / 255, 169 / 255, 184 / 255 ) --Trans pink.
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--love.graphics.setBackgroundColor( 91 / 255, 206 / 255, 250 / 255 ) --Trans blue.
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sounds.goodPing = love.audio.newSource("sounds/soundTest.ogg", "static")
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sounds.badPing = love.audio.newSource("sounds/chime8.ogg", "static")
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do--particle system setup
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particles = love.graphics.newParticleSystem(
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love.graphics.newImage( "prideflag.png" ),
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1024)
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particles:setSizes( 0.00015, 0.0001, 0.00018 )
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particles:setSizeVariation( 1 )
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particles:setRadialAcceleration( 0, 0.5 )
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particles:setSpeed( 0.2, 1 )
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particles:setLinearDamping( 1, 10 )
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particles:setRelativeRotation( true )
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particles:setEmitterLifetime( -1 )
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particles:setParticleLifetime( 0, 15 )
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particles:setSpread( 0.05 )
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particles:setColors(
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1, 1, 1, 1,
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91 / 255, 206 / 255, 250 / 255, 1,
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245 / 255, 169 / 255, 184 / 255, 1,
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1,1,1,0
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)
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end
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sitelenpona = assert( require "sitelenpona" )
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text = assert( require "text" )
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marble = assert( require "marble" )
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wave = assert( require "wave" )
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DetectCollision = assert ( require "collision" )
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audio = assert( require "audio" )
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recorder = assert( require "recorder" )
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return state.Reset()
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end
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local function ExtrapolateBeatScore( )
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local t = love.timer.getTime()
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local beat = state.beat
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if not beat.t then return 2.0 end
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if not beat.mu then return 2.0 end
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if beat.mu < 0.001 then return 2.0 end
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t = 1.1 * math.sin( math.pi * ( t - beat.t ) / beat.mu )
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return t * t * t * t
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end
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local function BeatScore( t )
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local beat = state.beat
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@ -82,63 +117,61 @@ local function BeatScore( t )
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return 2.0
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end
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local score = 1.1 * math.sin( math.pi * dt / beat.mu )
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score = score * score * score * score
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--General case: update average beat length.
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local WEIGHT = 0.25 --High number makes the last beat more significant.
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if dt > 0.2 then
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local WEIGHT = 0.85 --High number makes the last beat more significant.
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local mu = ( 1.0 - WEIGHT ) * beat.mu + WEIGHT * dt
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beat.mu = mu
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--Safety: avoid a dbz.
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if mu < 0.001 or dt < 0.001 then
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return 0.0
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--error( "DBZ! Beat length too small." )
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end
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--Calculate beat score.
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local score = dt * dt / ( mu * mu )
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local TOLERANCE = 1.04
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if dt < mu then
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return TOLERANCE * score
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else
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return TOLERANCE / score
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return score
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end
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end
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local function OnVictory()
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end
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local function OnImpact( impact )
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OnImpact = function( impact )
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if not impact then return end
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local score = BeatScore( impact.t )
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--DEBUG
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state.lastBeatScore = score
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local pass = false
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local sound
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if score > state.beatScoreThreshold then
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sound = sounds.goodPing
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if score > 1.0 then
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state.beatScoreThreshold = 1.0
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pass = true
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state.currentBeat = state.currentBeat + 1
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if state.currentBeat >= 120 then
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return OnVictory()
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end
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else
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sound = sounds.badPing
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state.beatScoreThreshold = state.beatScoreThreshold - 0.05
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end
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love.audio.play( sound )
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local x, y = math.cos(impact.th), math.sin(impact.th)
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particles:setPosition( impact.r * x, impact.r * y )
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particles:setEmissionArea( "normal", 0.1, 0.2, impact.th, true )
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particles:emit( 50 * score * score )
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audio.OnImpact( impact, score, pass, state.currentBeat )
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marble.OnImpact( impact )
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wave.OnImpact( impact )
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end
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local _OnImpact = OnImpact
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local function NewGame()
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OnImpact = _OnImpact
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state.Reset()
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marble.Reset()
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wave.Reset()
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end
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OnVictory = function()
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OnImpact = function() end
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end
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function love.draw()
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@ -149,13 +182,19 @@ function love.draw()
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love.graphics.print( state.beatScoreThreshold, 0, 20)
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love.graphics.print( state.lastBeatScore, 0, 30 )]]
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local score = ExtrapolateBeatScore()
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love.graphics.push( "transform" )
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love.graphics.applyTransform( transform )
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wave.Draw()
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if debugRenderImpact then
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wave.Draw( score )
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love.graphics.setColor( 1.0, 1.0, 1.0, 1.0 )
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love.graphics.draw(particles, 0, 0)
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--[[if debugRenderImpact then
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love.graphics.setLineWidth( 0.01 )
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love.graphics.setColor( 1, 0, 0, 0.5 ) --Red: Incoming
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@ -177,7 +216,7 @@ function love.draw()
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debugRenderImpact.vxout,
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debugRenderImpact.vyout)
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end
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end]]
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love.graphics.pop()
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@ -191,8 +230,15 @@ end
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function love.update( dt )
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audio.Update( ExtrapolateBeatScore() )
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particles:update( dt )
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dt = dt + state.timeToSimulate
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--Physics tick.
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while dt > step do
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recorder.Update( marble.GetAcceleration() ) --For savegames.
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marble.Integrate( step )
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wave.Integrate( step )
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@ -211,7 +257,8 @@ end
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function love.keypressed( key, code, isRepeat )
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if key == "escape" then return love.event.quit() end
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if key == "return" then return OnImpact{ t = love.timer.getTime() } end
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if key == "return" then return OnVictory() end
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if key == "space" then return NewGame() end
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return marble.OnKey()
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end
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15
marble.lua
15
marble.lua
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@ -4,14 +4,18 @@ local oldBuffer = love.graphics.newCanvas()
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local newBuffer = love.graphics.newCanvas()
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local oldState, curState, newState
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local FRICTION = 0.01
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local MAXSPEED = 5.0
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local FRICTION = 0.05
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local MAXSPEED = 4
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local ddx, ddy = 0.0, 0.0
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local function State( )
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return { t = 0, x = 0, y = 0, dx = 0, dy = 0 }
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end
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local function GetAcceleration( )
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return ddx, ddy
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end
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local function Current() return curState end
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local function Next() return newState end
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@ -60,13 +64,13 @@ local function OnImpact( impact )
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inward * (- math.sin(impact.th) ) - (1.0 - inward) * ( x * s + vy * c )
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curState.x, curState.y = x, y
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curState.dx, curState.dy = 0.5 * vxout, 0.5 * vyout
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curState.dx, curState.dy = vxout, vyout
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debugRenderImpact = { xi = x, yi = y, xf = x - vx, yf = y - vy,
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xn = 0.2 * unx + x, yn = 0.2 * uny + y,
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vxout = x + vxout, vyout = y + vyout}
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return Integrate( math.max( impact.dt , 1 / 60 ) ) --Hmm! Maybe this should be a fixed step instead for stability's sake.
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return Integrate( math.max( impact.dt , 1 / 120 ) ) --Hmm! Maybe this should be a fixed step instead for stability's sake.
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end
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local function Update()
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@ -120,7 +124,7 @@ local function Draw()
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love.graphics.draw( newBuffer )
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love.graphics.setColor( 1, 1, 1, 1.0 ) --White.
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love.graphics.setLineWidth( 1.0 )
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love.graphics.circle( "line", xn, yn, 4 )
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--love.graphics.circle( "line", xn, yn, 4 )
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oldBuffer, newBuffer = newBuffer, oldBuffer
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@ -159,4 +163,5 @@ return {
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Resize = Resize,
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Current = Current,
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Next = Next,
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GetAcceleration = GetAcceleration,
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}
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After Width: | Height: | Size: 17 KiB |
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@ -0,0 +1,32 @@
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--Record demos.
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local love = love
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local recorder = {}
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recorder.isLoaded = false
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local i = 0
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local function Reset()
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i = 0
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end
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function recorder.Update( ddx, ddy )
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local byte = 0
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if ddx > 0.5 then byte = byte + 1 end
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if ddy > 0.5 then byte = byte + 2 end
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if ddx < -0.5 then byte = byte + 4 end
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if ddy < -0.5 then byte = byte + 8 end
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i = i + 1
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recorder[i] = string.char( byte )
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end
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function recorder.Load( )
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local s = love.filesystem.read( "demo" )
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recorder.isLoaded = true
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end
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function recorder.Save( )
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assert( love.filesystem.write( "demo", table.concat( recorder ) ) )
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end
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return recorder
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18
wave.lua
18
wave.lua
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@ -2,7 +2,7 @@
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local love = love
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local N = 33
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local SOUNDSPEED = 0.5
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local IMPULSESIZE = 20
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local IMPULSESIZE = 5
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local DAMPING = 0.01
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@ -20,6 +20,7 @@ local shader = love.graphics.newShader([[
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uniform float re[33];
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uniform float im[33];
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uniform float score;
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//Slow IDFT
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float r( float x )
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@ -47,7 +48,7 @@ local shader = love.graphics.newShader([[
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float r = r( atan(p.y, p.x) ) - length( p );
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return vec4(color.x, color.y, color.z, (r > -0.01)) ;
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return vec4( (1.0 + float(score > 1.0) * r * 0.1) * color.xyz, float(r > -0.01)) ;
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}
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]])
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@ -175,8 +176,6 @@ local function Wave( )
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local t = {
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--radii[k] = radius of point on curve at angle (k - 1) / N
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radii = {},
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--TIME derivative of radius
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vrad = {},
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--SPACE DFT of radius function (which is periodic)
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dftre = {},
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@ -184,21 +183,21 @@ local function Wave( )
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}
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for i = 1, N do
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t.radii[i] = 1.0 + 0.05 * ( i/N + math.sin( i * 2.0 * math.pi / N ))
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t.vrad[i] = 0.0
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t.radii[i] = 1.0
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end
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DFT( t )
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return setmetatable(t, mt)
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end
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local function Draw()
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local function Draw( score )
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-- Blue circle.
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love.graphics.setColor( 91 / 255, 206 / 255, 250 / 255 )
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shader:send( "re", unpack( cur.dftre ) )
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shader:send( "im", unpack( cur.dftim ) )
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shader:send( "score", score )
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love.graphics.setShader( shader )
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love.graphics.circle("fill", 0, 0, 1.5)
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local t = love.timer.getTime()
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@ -290,6 +289,11 @@ local function DetectCollision( px, py, vpx, vpy )
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end
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local function Reset()
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SOUNDSPEED = 0.5
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IMPULSESIZE = 5
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DAMPING = 0.02
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old = Wave()
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cur = Wave()
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new = Wave()
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