BOSS 980000 SoundCollectionPointiobjectRepresented:location:lastViewRectangle:lastIconStyle:SoundCollectionaname:sounds:SoundCollection2130OrderedCollectionabgSoundPointaobjectRepresented:location:Mixeroname:inputs:left:right:retrograde:reverse:FatStringqstring:extraInformation:Mono 8-band Parametric EQFastIdentityDictionaryadcAssociationabsoundEditorLayoutArraya`xAmplitudeScaledzname:input:left:right:6Not Bypass;a?replaceableInputChannelJoinnname:left:right:6Stereo 8-band Parametric EQ;a?/AudioInputnname:channel1:channel2:channel3:channel4:channel5:channel6:channel7:channel8:AudioInput14AbstractedSoundClassmname:structureSound:icon:smallIcon:parameterSpecifications:classDescription:shouldExpandFirst:BiquadHighShelfDSPProgramWithInputslname:inputs:initialValuesCodeString:programName:wavetable:tableAccess:tableStart:tableEnd:6Tunable Damped HighShelf Example;e?"$bVariableSoundnname:Inputd?import4p5?vcsLayoutSoundVCSLayoutofirstTime:windowOrigin:windowExtent:components:selectedPreset:look:name:selectedLayout:subLayouts:editorOrigin:addedSubLayouts:Pointabe`: mu*cVCSEventSourceComponentumicrosound:layout:label:look:concreteEvent:displayType:presets:id:minimum:maximum:grid:taper:noDice:showNumber:LayoutFrameahx```d`i`QKymaLookunameOrNil:superLook:database:)Waldo)Classic;{?cursorLoopFwdBkwdPlayDown19BlockClosureacCompiledBlockbbbByteArraya`h0!eCompiledMethodbcq<n4hDiDiDiDiD iD iD iD0iD2iD4iD6iD8iD:iDiD iD!"iD#$iD%&iD'(iD)*iD+,iD-.iD/0iD12iD34iD56iD78iD9:iD;iD?@iDABiDCDiDEFiDGHiDIJiDKLiDMNiDOPiDQRiDSTiDUViDWXiDYZiD[\iD]^iD_`iDabiDcdiDefiDghiDijiDkliDmniDopiDqriDstiDuviDwxiDyziD{|iD}~iDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDiDjDEe*u+ u?BasicLook.8bi !j" #Ve$ q%%-/8c?dagBackground4&)?vcsBackground4:)?vcsScopeForeground$;`ConcreteEventdsQ`alinearbfaderbaQb$svvvvvvvvvvvvvvvvvvbba`aFader;a?Defaultbab{ mj` 2 $````l`i`Fc( .Fc`a 2b 3baFca$spppppppppppppppppp|h`a 6;a? 9aaahx`log $l```x`i`Level( .Level`a 2a 3aaLevelc$szzzzzzzzzzzzzzzzzziaa`a 6;a? 9aac`a` 2 9(TunableDampedLPF$`:gc$`?soundEditorBoundingBoxRectangleab:xp:`|?/,*a,KymaCodeString pstring:bindings:"HighShelf Biquad filter coefficients." | b0 b1 b2 a0 a1 a2 fc cf sf a beta | fc := ?Fc / SignalProcessor halfSampleRate. cf := fc normCos. sf := fc normSin. a := (?GainDB / 2) db. beta := a sqrt / ?Q. b0 := a*((a+1) + ((a - 1) * cf) + (beta * sf)). b1 := -2*a*((a-1) + ((a + 1) * cf)). b2 := a*((a+1) + ((a - 1) * cf) - (beta * sf)). a0 := (a+1) - ((a - 1) * cf) + (beta * sf). a1 := 2*((a-1) - ((a + 1) * cf)). a2 := (a + 1) - ((a - 1) * cf) - (beta * sf). b0 := b0 / (2 * a0). b1 := b1 / (2 * a0). b2 := b2 / (2 * a0). a1 := a1 negated / (2 * a0). a2 := a2 negated / (2 * a0). self initialValueAt: 0 xPut: 0 yPut: 1. self initialValueAt: 1 xPut: 0 yPut: b0 translatedTo24BitInteger. self initialValueAt: 2 xPut: 0 yPut: b1 translatedTo24BitInteger. self initialValueAt: 3 xPut: 0 yPut: b2 translatedTo24BitInteger. self initialValueAt: 4 xPut: 0 yPut: a1 translatedTo24BitInteger. self initialValueAt: 5 xPut: 0 yPut: a2 translatedTo24BitInteger. BindingListad`DirectIIRkym1none`?<`8P8 ?AUA8``aaKymaMappedPaletteafWordArraya`l~{~{~{ygygyg$ddddfbaad?<`AAAa!YQQ@ppaa )ad$hParameterSpecificationuname:typeName:viewType:rectangle:helpString:name 9 9 4:aax m:aaEnter a name for this Sound. 6GainDBhotValuevalue 4:aaba:aaaThe cut in dB of the low frequencies. (Be sure it is a negative value in dB). 6 > ! 4:aa``:abaThe center frequency in Hz. The gain at this frequency will be half the specified low frequency boost or cut.  6inputsound- 4:```:aax mThe sound being filtered. A mono mix of left and right channels is formed and then filtered. The same filtered result is fed to both left and right output channels. 6 1 ! 4:aaaa:`abcThe filter Q which determines how narrow the transition region is. A Q of 0.707 = Sqrt[2] is the steepest slope without any peaking. 6 > !'The center frequency in Hz. The gain at this frequency will be half the specified low frequency boost or cut.  6 1 !3The filter Q which determines how narrow the transition region is. A Q of 0.707 = Sqrt[2] is the steepest slope without any peaking. 6 ? !"The cut in dB of the low frequencies. (Be sure it is a negative value in dB).This class implements a high shelving filter. It should be used only for cutting at high frequencies, not boosting. (It appears unstable at positive gains). 6BiquadHighShelf;a?/(6Input Attenuation;a?/88HotAndLazyMessageSendareceiver:message: AttenuationMessageabdb$`(+-0$`PGain8Fc8?BiquadPeakingFilter$6Biquad Peaking Filter Prototype;e?"$b-input`?2?46:rc: mu*` 9),;`TunableDampedLPF$`:gc$`? 2 4:xp:`|?/ *a  <"Peaking filter coefficients." | b0 b1 b2 a1 a2 g fc alpha a0inv | g := (?GainDb / 2) db. fc := ?Fc / SignalProcessor halfSampleRate. alpha := fc normSin / ( 2 * ?Q). a0inv := 0.5 * (alpha / g + 1) inverse. b0 := (g * alpha + 1) * a0inv. b1 := (2 * fc normCos) negated * a0inv. b2 := (g * alpha - 1) negated * a0inv. a1 := b1 negated. a2 := (alpha / g -1) * a0inv. self initialValueAt: 0 xPut: 0 yPut: 1. self initialValueAt: 1 xPut: 0 yPut: b0 translatedTo24BitInteger. self initialValueAt: 2 xPut: 0 yPut: b1 translatedTo24BitInteger. self initialValueAt: 3 xPut: 0 yPut: b2 translatedTo24BitInteger. self initialValueAt: 4 xPut: 0 yPut: a1 translatedTo24BitInteger. self initialValueAt: 5 xPut: 0 yPut: a2 translatedTo24BitInteger.  !`DirectIIRkym1 &`?<`8(8DT<8?AUA8``aa )ad?<`AAAIII@ppaa )ad$e 6 9 9 9 4:aax m:aaEnter a name for this Sound. 6,-- 4:````:aaaThe input signal 6 1 ! 4:aaba:aaaFilter Q. The bandwidth in octaves is approximately equal to Fc/Q. So, e.g., Q BW octaves 10 0.07 5 0.14 3 0.24 2 0.36 1.414 0.5 1 0.69 0.707 0.95 0.5 1.3 0.3 1.9 0.1 3.3  6 > ! 4:aa`:abaThe center frequency in Hz of the filter. 6 ? ! 4:aaaa:abcThe dB gain (if positive) or attenuation (if negative) at the filter frequency.This class implements a 2-pole peaking/notching equalization filter with hot adjustable frequency, Q, and gain.BiquadPeakingFilter8888888888?BiquadLowShelf$6Tunable Damped LowShelf Example;e?"$b-0d?2?46:e`: mu*c $x```d`i`'( . 1`a 2b 3ba 4b 5ba`a 6;a? 9bab{ mj` 2 $````l`i` <( . >`a 2b 3ba ?a h`a 6;a? 9aaahx` # $l```x`i` &( . (`a 2a 3aa )c *aa`a 6;a? 9aac`a` 2 9( -$`:gc$`? 2 4:xp:`|?/'*a' <"LowShelf Biquad filter coefficients." | b0 b1 b2 a0 a1 a2 fc cf sf a beta | fc := ?Fc / SignalProcessor halfSampleRate. cf := fc normCos. sf := fc normSin. a := (?GainDB / 2) db. beta := a sqrt / ?Q. b0 := a*((a+1) - ((a - 1) * cf) + (beta * sf)). b1 := 2*a*((a-1) - ((a + 1) * cf)). b2 := a*((a+1) - ((a - 1) * cf) - (beta * sf)). a0 := (a+1) + ((a - 1) * cf) + (beta * sf). a1 := -2*((a-1) + ((a + 1) * cf)). a2 := (a + 1) + ((a - 1) * cf) - (beta * sf). b0 := b0 / (2 * a0). b1 := b1 / (2 * a0). b2 := b2 / (2 * a0). a1 := a1 negated / (2 * a0). a2 := a2 negated / (2 * a0). self initialValueAt: 0 xPut: 0 yPut: 1. self initialValueAt: 1 xPut: 0 yPut: b0 translatedTo24BitInteger. self initialValueAt: 2 xPut: 0 yPut: b1 translatedTo24BitInteger. self initialValueAt: 3 xPut: 0 yPut: b2 translatedTo24BitInteger. self initialValueAt: 4 xPut: 0 yPut: a1 translatedTo24BitInteger. self initialValueAt: 5 xPut: 0 yPut: a2 translatedTo24BitInteger.  !`DirectIIRkym1 &`?<`  (@H  ``aa )ad?<`!q!!q!AAppaa )ad$h 6 9 9 9 :Enter a name for this Sound. 6 ? ! 4:aaba:aaaThe boost or cut in dB of the low frequencies. 6 > ! 4:aa``:abaThe center frequency in Hz. The gain at this frequency will be half the specified low frequency boost or cut. 6,--.The sound being filtered. A mono mix of left and right channels is formed and then filtered. The same filtered result is fed to both left and right output channels. 6 1 ! 4:aaaa:`abcThe filter Q which determines how narrow the transition region is. A Q of 0.707 = Sqrt[2] is the steepest slope without any peaking. 6 > !'The center frequency in Hz. The gain at this frequency will be half the specified low frequency boost or cut.  6 1 !3The filter Q which determines how narrow the transition region is. A Q of 0.707 = Sqrt[2] is the steepest slope without any peaking. 6 ? !"The boost or cut in dB of the low frequencies.This class implements a low shelving filter with adjustable gain, center frequency, and Q. BiquadLowShelfPGain1Fc1"Q1,-+PGain2Fc2Q2PGain3Fc3Q3PGain4Fc4Q4PGain5Fc5Q5PGain6Fc6Q6PGain7Fc7Q7Q86 5>6?;a?/Channellernname:input:leftChannel:rightChannel:Right Channel Only24"56888888888888?*+,%-,-+./0123456789:;<=>? 6 5=(a--$aBypass(a-3$a5`8`=`"`;`(Bypass"55`9`>`7`<`=`:`?/8? 2 4:h`:pl*b'9aa: j~.26Stereo 8-band Parametric EQ;b?"$n888888888888?*+,&6Left Channel Only23;a?/(6$;a?/9Input Channels 1 & 2_139'25-,-+./0123456789:;<=>?`8888888888?*+,&Right Channel Only245-,-+./0123456789:;<`-`,`(6,;a?/165;a?/9>6?;a?/056) 6 5>6?;a?/!5688;=>? 6 5'(a-3$a5(a-3$a5`(6Bypass;a?/SetDurationnname:input:startTime:duration:SampleSuperSample gname:frequency:gate:sample:setLoop:loopStart:loopEnd:loopFade:reverse:start:end:fromMemoryWriter:attackTime:releaseTime:scale:#FrequencyInHertzaa`aCKyma``a`aTimeInSamplesaaa.aaTimeInSecondsaa`3aa555`5 `/`'` `!`*`<`?`+`3`/`>`+`=`9`0`.`?/#*b#:aa:h}.26Stereo Sugaring Reverb;d?"$t1ChannelJoin16&6Channeller25;a?/?EuverbLeft2CombSumLeft*gHarmonicResonatornname:input:frequency:decayTime:brightness:wavetable:prezero:scale:HarmonicResonator2DelayWithFeedbackname:type:input:scale:feedback:delay:delayScale:wavetable:prezero:interpolation:smoothDelayChanges:alp6allpass4alp584alp484alp384alp284alp18GeneralFilternname:input:type:frequency:q:scale:feedback:order:Filter3-InputlowPassLazyMessageSenda*)h-+$a,,LazyVariablea/Cutoff-*$a p-hz$``5Reverb`b`ax s17.65 msaPrivate &`ax s13.90 msaPrivate &`ax s10.96 msaPrivate &`ax s8.62 msaPrivate &`ax s6.80 msaPrivate &`ax s5.3 msaPrivate & 1/46.7 ms ,3{ m-0$a,,5Decay-9$aj-s$`x  sPrivateba/HarmonicResonator13 1/42.3 ms,3{ m-0$a,,3-9$aj-8$`x  sPrivateba/HarmonicResonator53 1/62.43 ms,3{ m-0$a,,3-9$aj-8$`x  sPrivateba/HarmonicResonator33 1/51.45 ms,3{ m-0$a,,3-9$aj-8$`x  sPrivateba/HarmonicResonator43 1/55.5 ms,3{ m-0$a,,3-9$aj-8$`0.7 Privateba/HarmonicResonator63 1/70.1 ms,3{ m-0$a,,3-9$aj-8$`x  sPrivateba/HarmonicResonator73 1/76.9 ms,3{ m-0$a,,3-9$aj-8$`x  sPrivatebaz mz m?<`>T PPPP PT?``aa * .l{~{~{~``````$ddddfbaad?<`:4jTjTj4:ppaa * .lpc````$ddddfbaad$e 6 9 9 9 4:aax m:aaEnter a name for this Sound. 6DecayhotScale! 4:aa``:bcxmValue between 0 and 1 controlling the decay time of the reverb (corresponding to a range of 0.1 s to 10 s). 6Reverb"! 4:bcxm:awmAmount of reverberated signal that is mixed with the direct signal. 6,-- 4:``xm:baaThis is the Sound to be reverberated. For a stereo reverb, feed this same input into a EuverbLeft and rejoin the two halves in a ChannelJoin, a Timeline, or one of the multichannel output Sounds. 6Cutoff"! 4:bc``:axmA number between 0 and 1 indicating the cutoff frequency of a low pass filter on the reverberated signal. Use this along with EuverbRight to create a stereo reverb. Useful in the Timeline or in a multiple output Sound where left and right mono channels must be treated as independent Sounds. Rejoin the left and right using a ChannelJoin, the Timeline, Mixer or one of the multiple channel output Sounds. EuverbLeft1DecayLReverbL&6Left Channel Only27;a?/GenericSourcenname:source:leftChannel:rightChannel:sample:autoloop:trigger:attackTime:releaseTime:scale:frequency:DiskTrackMonoLiveAlien threata.a3{ ma)`!LPFCutL(&6Channeller26;a?/?EuverbRight2CombSumRight*g4Delay1comb/<4784:84<84>84 84"8$'-)*,)h-0$a,,4-9$a p-<$``>`b`ax s17.65 msa! &`ax s13.90 msa# &`ax s10.96 msa% &`ax s8.62 msa' &`ax s6.80 msa) &`ax s5.3 msa+ & 1/42.3 ms>x  s(ba`a`6 ms * 2 ?DiffusionPrivate &4Delay29/2; 1/46.7 ms -x  s:ba`a` 7.5 ms * 2 ?DiffusionPrivate &4Delay39/8; 1/51.45 ms:x  s$ba`a` 9.13 ms * 2 ?DiffusionPrivate &4Delay49/&; 1/55.5 ms(0.7 3ba`a` 11.7 ms * 2 ?DiffusionPrivate &4Delay59/*; 1/62.43 ms,x  s6ba`a` 14.3 ms * 2 ?DiffusionPrivate &4Delay69/5; 1/70.1 ms7x  s!ba`a` 12.14 ms * 2 ?DiffusionPrivate &4Delay79/#; 1/76.9 ms%x  s/ba`a` 10.11 ms * 2 ?DiffusionPrivate &z mz m?<`<""<$>"  ` ppp`  <``aa2ad?<`  ppaa2ad$f 6 9 9 96NoiseGate 8K;a?/GraphicEQnname:input:cF250Hz:cF500Hz:cF1000Hz:cF2000Hz:cF4000Hz:cF8000Hz:cF16000Hz:8K26Right Reverb;a?/&6Channeller18;a?/?EuverbRight2CombSumRight*g4Delay19/HarmonicResonator14alp684alp584alp484alp384alp284alp18$Filter3-Input*,)h-0$a,,4-9$a p-<$``>`b`ax s17.65 msaPrivate &`ax s13.90 msaPrivate &`ax s10.96 msaPrivate &`ax s8.62 msaPrivate &`ax s6.80 msaPrivate &`ax s5.3 msaPrivate & 1/42.3 ms,3{ m-0$a,,3-9$aj-8$`x  sPrivateba`a`6 ms * 2 ?DiffusionPrivate &4Delay29/HarmonicResonator2 # 1/46.7 ms ,3{ m-0$a,,3-9$aj-8$`x  sPrivateba`a` 7.5 ms * 2 ?DiffusionPrivate &4Delay39/HarmonicResonator3 # 1/51.45 ms,3{ m-0$a,,3-9$aj-8$`x  sPrivateba`a` 9.13 ms * 2 ?DiffusionPrivate &4Delay49/HarmonicResonator4 # 1/55.5 ms,3{ m-0$a,,3-9$aj-8$`0.7 Privateba`a` 11.7 ms * 2 ?DiffusionPrivate &4Delay59/HarmonicResonator5 # 1/62.43 ms,3{ m-0$a,,3-9$aj-8$`x  sPrivateba`a` 14.3 ms * 2 ?DiffusionPrivate &4Delay69/HarmonicResonator6 # 1/70.1 ms,3{ m-0$a,,3-9$aj-8$`x  sPrivateba`a` 12.14 ms * 2 ?DiffusionPrivate &4Delay79/HarmonicResonator7 # 1/76.9 ms,3{ m-0$a,,3-9$aj-8$`x  sPrivateba`a` 10.11 ms * 2 ?DiffusionPrivate &z mz m?<`<""<$>"  ` ppp`  <``aa * .l{~{~{~``````$ddddfbaad?<`  ppaa-ad$f 6 9 9 9 4:aax m:aaEnter a name for this Sound. 6!"! 4:aa``:bcxmValue between 0 and 1 controlling the decay time of the reverb (corresponding to a range of 0.1 s to 10 s). 6("! 4:bcxm:awmAmount of reverberated signal that is mixed with the direct signal. 6,-- 4:``xm:baaThis is the Sound to be reverberated. For a stereo reverb, feed this same input into a EuverbLeft and rejoin the two halves in a ChannelJoin, a Timeline, or one of the multichannel output Sounds. 60 ! 4:aaxm:bcwm 63"! 4:bc``:axmA number between 0 and 1 indicating the cutoff frequency of a low pass filter on the reverberated signal. Use this along with EuverbLeft to create a stereo reverb. Useful in the Timeline or in a multiple output Sound where left and right mono channels must be treated as independent Sounds. Rejoin the left and right using a ChannelJoin, the Timeline, Mixer or one of the multiple channel output Sounds. EuverbRight1(!DecayR log + 1) * 0.5(:-9$a(a-3$aRvbMute26Right EQ;b?/MusicNoname:inputs:script:left:right:retrograde:reverse:6mono 8-band parametric EQ;b?/&6Right Channel Only15;a?/ScaledUp~*6Input Gain/Atten;b?/9Input Channels 1 & 2_12?46:gm: u*a $``````ca`aInGain),;` .InGain`a 2a 3aaInGainn$saytp}uheeu`{coefy```a 6;a? 9aan`a` 2 9>Input Gain/Atten$`: dm$`4("-0$`("-0$`-?46:cb:ou*p $````t`n`Fc1),;` .Fc1`a 2a 3aa,k$sooj~kcvsscmmniq}stgxi`a 6;a? 9rgk``` 2 $t```h`n`Fc28 .Fc2`a 2a 3aa/g$swwrfsk~{{kuuvqye{|owo`a 6;a? 9qgg``` 2 $h```|`n`Fc38 .Fc3`a 2a 3aa2a$s s s stogzwwgqqrmuawxkxe`a 6;a? 9rca``` 2 $|``` q`n`Fc48 .Fc4`a 2a 3aa5~$s a a a}uheeu`{coefyxa`a 6;a? 9s i~``` 2 $ q``` e`n`Fc58 .Fc5`a 2a 3aa8{$s o o o o{cvssemmniq}stgxq`a 6;a? 9s c{``` 2 $ e```y`n`Fc68 .Fc6`a 2a 3aa;x$s } } } } tqd{aku{|wkabuts`a 6;a? 9r cx``` 2 $y```m`n`Fc78 .Fc7`a 2a 3aa>u$s k k k k kwrioycijemy opcx }`a 6;a? 9q cu``` 2 $m```a`n`Fc88 .Fc8`a 2a 3aa6q$s s s s s s jzkqakqrmua w xkxu`a 6;a? 9dqq``` 2 $``{`t` i`Q18 .Q1`a 2a 3aa-l$suupdqi|yyisstowcyzmu y`a 6;a? 9u yl{ mt` 2 $t`{`h` i`Q28 .Q2`a 2a 3aa0h$s}}xlyqdaaq{{|wkabuu y`a 6;a? 9u yh{ mt` 2 $h`{`|` i`Q38 .Q3`a 2a 3aa3b$s y y yzum`}}mwwxs{g}~qu y`a 6;a? 9u yb{ mt` 2 $|`{` q` i`Q48 .Q4`a 2a 3aa6$s g g gec{nkk{eefaiuklu y`a 6;a? 9u y{ mt` 2 $ q`{` e` i`Q58 .Q5`a 2a 3aa9|$s u u u uai|yyisstowcyzmu y`a 6;a? 9u y|{ mt` 2 $ e`{`y` i`Q68 .Q6`a 2a 3aa<y$s c c c c zwjggq{ab}eqgh{u y`a 6;a? 9u yy{ mt` 2 $y`{`m` i`Q78 .Q7`a 2a 3aa?v$s q q q q q}xouiopks uviu y`a 6;a? 9u yv{ mt` 2 $m`{`a` i`Q88 .Q8`a 2a 3aa r$s y y y y y p`qwgqwxs{g } ~qu y`a 6;a? 9u yr{ mt` 2 98mono 8-band parametric EQ$`: h~$`*a$6hishelf;c?2?46:e`: mu*` 9( -$`:gc$`?/(*a$6Biquad Peaking Filter;c?2?46:rc: mu*` 9(*$`:gc$`?/$6-;c?2?46:rc: mu*` 9(*$`:gc$`?/$6-;c?2?46:rc: mu*` 9(*$`:gc$`?/$6-;c?2?46:rc: mu*` 9(*$`:gc$`?/$6-;c?2?46:rc: mu*` 9(*$`:gc$`?/$6-;c?2?46:rc: mu*` 9(*$`:gc$`?/$6BiquadLowShelf;c?2?46:e`: mu*` 9( -$`:gc$`?/(*a( <"LowShelf Biquad filter coefficients." | b0 b1 b2 a0 a1 a2 fc cf sf a beta | fc := ?Fc1 / SignalProcessor halfSampleRate. cf := fc normCos. sf := fc normSin. a := (?GainDb1 / 2) db. beta := a sqrt / ?Q1. b0 := a*((a+1) - ((a - 1) * cf) + (beta * sf)). b1 := 2*a*((a-1) - ((a + 1) * cf)). b2 := a*((a+1) - ((a - 1) * cf) - (beta * sf)). a0 := (a+1) + ((a - 1) * cf) + (beta * sf). a1 := -2*((a-1) + ((a + 1) * cf)). a2 := (a + 1) + ((a - 1) * cf) - (beta * sf). b0 := b0 / (2 * a0). b1 := b1 / (2 * a0). b2 := b2 / (2 * a0). a1 := a1 negated / (2 * a0). a2 := a2 negated / (2 * a0). self initialValueAt: 0 xPut: 0 yPut: 1. self initialValueAt: 1 xPut: 0 yPut: b0 translatedTo24BitInteger. self initialValueAt: 2 xPut: 0 yPut: b1 translatedTo24BitInteger. self initialValueAt: 3 xPut: 0 yPut: b2 translatedTo24BitInteger. self initialValueAt: 4 xPut: 0 yPut: a1 translatedTo24BitInteger. self initialValueAt: 5 xPut: 0 yPut: a2 translatedTo24BitInteger.  !`DirectIIRkym1 &`*a: <"Peaking filter coefficients." | b0 b1 b2 a1 a2 g fc alpha a0inv | g := (?GainDb2 / 2) db. fc := ?Fc2 / SignalProcessor halfSampleRate. alpha := fc normSin / ( 2 * ?Q2). a0inv := 0.5 * (alpha / g + 1) inverse. b0 := (g * alpha + 1) * a0inv. b1 := (2 * fc normCos) negated * a0inv. b2 := (g * alpha - 1) negated * a0inv. a1 := b1 negated. a2 := (alpha / g -1) * a0inv. self initialValueAt: 0 xPut: 0 yPut: 1. self initialValueAt: 1 xPut: 0 yPut: b0 translatedTo24BitInteger. self initialValueAt: 2 xPut: 0 yPut: b1 translatedTo24BitInteger. self initialValueAt: 3 xPut: 0 yPut: b2 translatedTo24BitInteger. self initialValueAt: 4 xPut: 0 yPut: a1 translatedTo24BitInteger. self initialValueAt: 5 xPut: 0 yPut: a2 translatedTo24BitInteger.  !`DirectIIRkym1 &`*a- <"Peaking filter coefficients." | b0 b1 b2 a1 a2 g fc alpha a0inv | g := (?GainDb3 / 2) db. fc := ?Fc3 / SignalProcessor halfSampleRate. alpha := fc normSin / ( 2 * ?Q3). a0inv := 0.5 * (alpha / g + 1) inverse. b0 := (g * alpha + 1) * a0inv. b1 := (2 * fc normCos) negated * a0inv. b2 := (g * alpha - 1) negated * a0inv. a1 := b1 negated. a2 := (alpha / g -1) * a0inv. self initialValueAt: 0 xPut: 0 yPut: 1. self initialValueAt: 1 xPut: 0 yPut: b0 translatedTo24BitInteger. self initialValueAt: 2 xPut: 0 yPut: b1 translatedTo24BitInteger. self initialValueAt: 3 xPut: 0 yPut: b2 translatedTo24BitInteger. self initialValueAt: 4 xPut: 0 yPut: a1 translatedTo24BitInteger. self initialValueAt: 5 xPut: 0 yPut: a2 translatedTo24BitInteger.  !`DirectIIRkym1 &`*a  <"Peaking filter coefficients." | b0 b1 b2 a1 a2 g fc alpha a0inv | g := (?GainDb4 / 2) db. fc := ?Fc4 / SignalProcessor halfSampleRate. alpha := fc normSin / ( 2 * ?Q4). a0inv := 0.5 * (alpha / g + 1) inverse. b0 := (g * alpha + 1) * a0inv. b1 := (2 * fc normCos) negated * a0inv. b2 := (g * alpha - 1) negated * a0inv. a1 := b1 negated. a2 := (alpha / g -1) * a0inv. self initialValueAt: 0 xPut: 0 yPut: 1. self initialValueAt: 1 xPut: 0 yPut: b0 translatedTo24BitInteger. self initialValueAt: 2 xPut: 0 yPut: b1 translatedTo24BitInteger. self initialValueAt: 3 xPut: 0 yPut: b2 translatedTo24BitInteger. self initialValueAt: 4 xPut: 0 yPut: a1 translatedTo24BitInteger. self initialValueAt: 5 xPut: 0 yPut: a2 translatedTo24BitInteger.  !`DirectIIRkym1 &`*a3 <"Peaking filter coefficients." | b0 b1 b2 a1 a2 g fc alpha a0inv | g := (?GainDb5 / 2) db. fc := ?Fc5 / SignalProcessor halfSampleRate. alpha := fc normSin / ( 2 * ?Q5). a0inv := 0.5 * (alpha / g + 1) inverse. b0 := (g * alpha + 1) * a0inv. b1 := (2 * fc normCos) negated * a0inv. b2 := (g * alpha - 1) negated * a0inv. a1 := b1 negated. a2 := (alpha / g -1) * a0inv. self initialValueAt: 0 xPut: 0 yPut: 1. self initialValueAt: 1 xPut: 0 yPut: b0 translatedTo24BitInteger. self initialValueAt: 2 xPut: 0 yPut: b1 translatedTo24BitInteger. self initialValueAt: 3 xPut: 0 yPut: b2 translatedTo24BitInteger. self initialValueAt: 4 xPut: 0 yPut: a1 translatedTo24BitInteger. self initialValueAt: 5 xPut: 0 yPut: a2 translatedTo24BitInteger.  !`DirectIIRkym1 &`*a& <"Peaking filter coefficients." | b0 b1 b2 a1 a2 g fc alpha a0inv | g := (?GainDb6 / 2) db. fc := ?Fc6 / SignalProcessor halfSampleRate. alpha := fc normSin / ( 2 * ?Q6). a0inv := 0.5 * (alpha / g + 1) inverse. b0 := (g * alpha + 1) * a0inv. b1 := (2 * fc normCos) negated * a0inv. b2 := (g * alpha - 1) negated * a0inv. a1 := b1 negated. a2 := (alpha / g -1) * a0inv. self initialValueAt: 0 xPut: 0 yPut: 1. self initialValueAt: 1 xPut: 0 yPut: b0 translatedTo24BitInteger. self initialValueAt: 2 xPut: 0 yPut: b1 translatedTo24BitInteger. self initialValueAt: 3 xPut: 0 yPut: b2 translatedTo24BitInteger. self initialValueAt: 4 xPut: 0 yPut: a1 translatedTo24BitInteger. self initialValueAt: 5 xPut: 0 yPut: a2 translatedTo24BitInteger.  !`DirectIIRkym1 &`*a9 <"Peaking filter coefficients." | b0 b1 b2 a1 a2 g fc alpha a0inv | g := (?GainDb7 / 2) db. fc := ?Fc7 / SignalProcessor halfSampleRate. alpha := fc normSin / ( 2 * ?Q7). a0inv := 0.5 * (alpha / g + 1) inverse. b0 := (g * alpha + 1) * a0inv. b1 := (2 * fc normCos) negated * a0inv. b2 := (g * alpha - 1) negated * a0inv. a1 := b1 negated. a2 := (alpha / g -1) * a0inv. self initialValueAt: 0 xPut: 0 yPut: 1. self initialValueAt: 1 xPut: 0 yPut: b0 translatedTo24BitInteger. self initialValueAt: 2 xPut: 0 yPut: b1 translatedTo24BitInteger. self initialValueAt: 3 xPut: 0 yPut: b2 translatedTo24BitInteger. self initialValueAt: 4 xPut: 0 yPut: a1 translatedTo24BitInteger. self initialValueAt: 5 xPut: 0 yPut: a2 translatedTo24BitInteger.  !`DirectIIRkym1 &` <"HighShelf Biquad filter coefficients." | b0 b1 b2 a0 a1 a2 fc cf sf a beta | fc := ?Fc8 / SignalProcessor halfSampleRate. cf := fc normCos. sf := fc normSin. a := (?GainDb8 / 2) db. beta := a sqrt / ?Q8. b0 := a*((a+1) + ((a - 1) * cf) + (beta * sf)). b1 := -2*a*((a-1) + ((a + 1) * cf)). b2 := a*((a+1) + ((a - 1) * cf) - (beta * sf)). a0 := (a+1) - ((a - 1) * cf) + (beta * sf). a1 := 2*((a-1) - ((a + 1) * cf)). a2 := (a + 1) - ((a - 1) * cf) - (beta * sf). b0 := b0 / (2 * a0). b1 := b1 / (2 * a0). b2 := b2 / (2 * a0). a1 := a1 negated / (2 * a0). a2 := a2 negated / (2 * a0). self initialValueAt: 0 xPut: 0 yPut: 1. self initialValueAt: 1 xPut: 0 yPut: b0 translatedTo24BitInteger. self initialValueAt: 2 xPut: 0 yPut: b1 translatedTo24BitInteger. self initialValueAt: 3 xPut: 0 yPut: b2 translatedTo24BitInteger. self initialValueAt: 4 xPut: 0 yPut: a1 translatedTo24BitInteger. self initialValueAt: 5 xPut: 0 yPut: a2 translatedTo24BitInteger.  !`DirectIIRkym1 &` < hishelf start: 0 GainDb1: !PGain1 GainDb2: !PGain2 GainDb3: !PGain3 GainDb4: !PGain4 GainDb5: !PGain5 GainDb6: !PGain6 GainDb7: !PGain7 GainDb8: !PGain8 Fc1: !Fc1 Fc2: !Fc2 Fc3: !Fc3 Fc4: !Fc4 Fc5: !Fc5 Fc6: !Fc6 Fc7: !Fc7 Fc8: !Fc8 Q1: !Q1 Q2: !Q2 Q3: !Q3 Q4: !Q4 Q5: !Q5 Q6: !Q6 Q7: !Q7 Q8: !Q8  !`(a-3$aPEQByp(a-3$a=?46:gm: u*` 9),;`Right EQ$`: dm$`*b(PEQ Bypass(== aa !Diffusion!9*b4(Reverb Solo;(a-3$aRvbSolo(a-3$a6aa`````a1 **expanderFractionabaj(TN08000-0$`3}e3z m3}e(a-3$aDynByp%%compressor(RC08000-vmax:$aa(TC08000-0$`3ao3}e3ao(GC08000-0$`9Input Channels 1 & 2_152mono sum*b&6Left Channel Only30;a?/>6";a?/>6';a?/+8K26Left Reverb;a?/&6Channeller19;a?/?EuverbLeft2CombSumLeft*g/ ;4 $84 &84 (84 *84 ,84 .8$ 0- 2*,)h-0$a,,4-9$a p-<$``>`b`ax s17.65 msa > &`ax s13.90 msa  &`ax s10.96 msa " &`ax s8.62 msa $ &`ax s6.80 msa & &`ax s5.3 msa ( & 1/46.7 ms  =x  s 'ba/ "! 1/42.3 ms *x  s 4ba/ 5! 1/62.43 ms 7x  s !ba/ .! 1/51.45 ms 0x  s :ba/ !! 1/55.5 ms #0.7  .ba/ (! 1/70.1 ms *x  s 4ba/ ;! 1/76.9 ms =x  s'baz mz m?<`>T PPPP PT?``aa-ad?<`:4jTjTj4:ppaa * .lpc````$ddddfbaad$e 6 9 9 94Enter a name for this Sound. 6!"!9Value between 0 and 1 controlling the decay time of the reverb (corresponding to a range of 0.1 s to 10 s). 6("!>Amount of reverberated signal that is mixed with the direct signal. 6,--#This is the Sound to be reverberated. For a stereo reverb, feed this same input into a EuverbLeft and rejoin the two halves in a ChannelJoin, a Timeline, or one of the multichannel output Sounds. 63"!-A number between 0 and 1 indicating the cutoff frequency of a low pass filter on the reverberated signal. Use this along with EuverbRight to create a stereo reverb. Useful in the Timeline or in a multiple output Sound where left and right mono channels must be treated as independent Sounds. Rejoin the left and right using a ChannelJoin, the Timeline, Mixer or one of the multiple channel output Sounds. EuverbLeft1(!DecayL log + 1) * 0.5(;-9$a(a-3$a:26Left EQ;b?/!6%;b?/&Left Channel Only-?46:cb:ou*p $````t`n`78 .;`a 2a 3aa,ku,x }`a 6;a? 9q cu``` 2 $m```a`n`18 .3`a 2a 3aa6q4xu`a 6;a? 9dqq``` 2 $``{`t` i`98 .;`a 2a 3aa-l;c?2?46:e`: mu*` 9( -$`:gc$`?/+*a$6-;c?2?46:rc: mu*` 9(*$`:gc$`?/$6-;c?2?46:rc: mu*` 9(*$`:gc$`?/$6-;c?2?46:rc: mu*` 9(*$`:gc$`?/$6-;c?2?46:rc: mu*` 9(*$`:gc$`?/$6-;c?2?46:rc: mu*` 9(*$`:gc$`?/$6-;c?2?46:rc: mu*` 9(*$`:gc$`?/$6<;c?2?46:e`: mu*` 9( -$`:gc$`?/+*a+),- &`*a"/23 &`*a5589 &`*a(;>? &`*a;!$% &`*a.'*+ &`*a!-01 &`256 &` < hishelf start: 0 GainDb1: !PGain1 GainDb2: !PGain2 GainDb3: !PGain3 GainDb4: !PGain4 GainDb5: !PGain5 GainDb6: !PGain6 GainDb7: !PGain7 GainDb8: !PGain8 Fc1: !Fc1 Fc2: !Fc2 Fc3: !Fc3 Fc4: !Fc4 Fc5: !Fc5 Fc6: !Fc6 Fc7: !Fc7 Fc8: !Fc8 Q1: !Q1 Q2: !Q2 Q3: !Q3 Q4: !Q4 Q5: !Q5 Q6: !Q6 Q7: !Q7 Q8: !Q8  !`(a-3$a=(a-3$a=?46:gm: u*` 9),;`Left EQ$`: dm$`*b(PEQ Bypass+=='aa+:*b5(Reverb Solo"(a-3$a6(a-3$a6aa`````aa..;=aj(!-0$`3}e3z m3}e(a-3$a***+,15678<8((aa-9$aSpread-9$a(a-3$aStByp((aa-9$a$-9$a(a-3$a*1(1 - !StByp) * (1 - (0.5 * (0.5 * !Pan) normSin))`800 usec((aa-9$aPan-normSin$`Private 246RIGHT: phs delay;a?2931(1 - !StByp) * (1 - (0.5 * (0.5 * !Pan) normCos))`800 usec((aa-9$a:-normCos$`Private 2`(6Stereo Processing Bypass;b?/16Stereo Mix;b?2?46:ng: u*` 9),;`Stereo Mix$`: kg$`4Left Mix!>3?46:le: u*` 9),;`Stereo Processing Bypass$`: ie$` 3**|>` 3`?` #|16Left Phase Panner;a?2460;a?29 #1(1 - !StByp) * (1 - (0.5 * (0.5 * !Pan) normCos))`800 usec((aa-9$a:- +$`Private 246 !;a?29 #1(1 - !StByp) * (1 - (0.5 * (0.5 * !Pan) normSin))`800 usec((aa-9$a:-<$`Private 2| 5`<`8|.`!`3` "`? 2 4:h`:pl?46:ng: u*` 9),;`Stereo Widening and Panning$`: kg$`*c . 0)aa:~ c..6(lite 2) stereo 6-band mastering processor;d?"$l26Mix 1K;a?46:ng: u*` 9 8Mix 1K$`: kg$`*c(6 0;b?/16 5;b?2?46:ng: u*` 9 = ?$`: kg$`4Left Mix26Left Dynamics;a?/46Delay Equalization;a?/>6Compressor dB 1K;a?/>6NoiseGate 1K;a?/+1K262;a?/&67;a?/;:(!DecayL log + 1) * 0.5(;-9$a,a-3$a5RvbMute26$;b?/!6%;b?/&,.61;b?/95?46:gm: u*a $``````ca`a=> .!`a 2a 3aa"v$sjtwkuckilagw|ugsk|jsa`a 6;a? 9aav`a` 2 9>&$`: dm$`<*-?46:cb:ou*p $````t`n`78 .;`a 2a 3aa,s$sgbeycqywzouejcuayjxwg`a 6;a? 9rgs``` 2 $t```h`n`!8 .#`a 2a 3aa/o$skjmakyabw}mrk}iar`wo`a 6;a? 9qgo``` 2 $h```|`n`)8 .+`a 2a 3aa2i$simi}gu}{~syingye}n|xe`a 6;a? 9rci``` 2 $|``` q`n`18 .3`a 2a 3aa5f$swwokuckilagw|ugsk|jxa`a 6;a? 9s if``` 2 $ q``` e`n`98 .;`a 2a 3aa8c$seeyycq{wzouejcuayjxxq`a 6;a? 9s cc``` 2 $ e```y`n`!8 .#`a 2a 3aa;`$s s srgqieh}csxqcogxfts`a 6;a? 9r c```` 2 $y```m`n`)8 .+`a 2a 3aa>}$s a a auwoysvmqafq}uftx }`a 6;a? 9q c}``` 2 $m```a`n`18 .3`a 2a 3aa6y$s i i ihya}~wyingye}n|xu`a 6;a? 9dqy``` 2 $``{`t` i`98 .;`a 2a 3aa-t$smhkiw}`u{kpi{gp~u y`a 6;a? 9u yt{ mt` 2 $t`{`h` i`!8 .#`a 2a 3aa0p$sqpsgqgeh}csxqcogxfu y`a 6;a? 9u yp{ mt` 2 $h`{`|` i`)8 .+`a 2a 3aa3j$sosocm{cadyotmkctbu y`a 6;a? 9u yj{ mt` 2 $|`{` q` i`18 .3`a 2a 3aa6g$s}}uq{iqorgm}b{myqbpu y`a 6;a? 9u yg{ mt` 2 $ q`{` e` i`98 .;`a 2a 3aa9d$skkiw}`u{kpi{gp~u y`a 6;a? 9u yd{ mt` 2 $ e`{`y` i`!8 .#`a 2a 3aa<a$s y yxmweoknciy~wium~lu y`a 6;a? 9u ya{ mt` 2 $y`{`m` i`)8 .+`a 2a 3aa?~$s g g g{gu}y|swglewc{lzu y`a 6;a? 9u y~{ mt` 2 $m`{`a` i`18 .3`a 2a 3aa z$s o o one}gad}otmkctbu y`a 6;a? 9u yz{ mt` 2 987$`: h~$`*a$6>;c?2?46:e`: mu*` 9( -$`:gc$`?/7*a$6-;c?2?46:rc: mu*` 9(*$`:gc$`?/$6-;c?2?46:rc: mu*` 9(*$`:gc$`?/$6-;c?2?46:rc: mu*` 9(*$`:gc$`?/$6-;c?2?46:rc: mu*` 9(*$`:gc$`?/$6-;c?2?46:rc: mu*` 9(*$`:gc$`?/$6-;c?2?46:rc: mu*` 9(*$`:gc$`?/$6<;c?2?46:e`: mu*` 9( -$`:gc$`?/7*a7),- &`*a0/23 &`*a#589 &`*a6;>? &`*a)!$% &`*a<'*+ &`*a/-01 &`256 &` < hishelf start: 0 GainDb1: !PGain1 GainDb2: !PGain2 GainDb3: !PGain3 GainDb4: !PGain4 GainDb5: !PGain5 GainDb6: !PGain6 GainDb7: !PGain7 GainDb8: !PGain8 Fc1: !Fc1 Fc2: !Fc2 Fc3: !Fc3 Fc4: !Fc4 Fc5: !Fc5 Fc6: !Fc6 Fc7: !Fc7 Fc8: !Fc8 Q1: !Q1 Q2: !Q2 Q3: !Q3 Q4: !Q4 Q5: !Q5 Q6: !Q6 Q7: !Q7 Q8: !Q8  !`,a-3$a5PEQByp,a-3$a*?46:gm: u*` 9$&$`: dm$`*b(,7**3aa+%*b!(//,a-3$a5RvbSolo,a-3$a>aa``a```` ; ;;=aj(TN01000-0$`3}e3z m3}e(a-3$a* 6 6+(RC01000-/$aa(TC01000-dB$`3ao3}e3ao(GC01000-5$`9 1a`9 msaPrivate &*b ,(Dynamics Bypass ;-10 db * !DynByp-10 db * !DynBypaa2?*b '26Right Dynamics;a?/46Delay Equalization;a?/>6 3;a?/>6 8;a?/+1K261;a?/&66;a?/:2(!DecayR log + 1) * 0.5(:-9$a,a-3$a-26=;b?/!6%;b?/&6*;a?/88?46:cb:ou*p $````t`n`78 .;`a 2a 3aa,s3wg`a 6;a? 9rgs``` 2 $t```h`n`!8 .#`a 2a 3aa/o9wo`a 6;a? 9qgo``` 2 $h```|`n`)8 .+`a 2a 3aa2i?xe`a 6;a? 9rci``` 2 $|``` q`n`18 .3`a 2a 3aa5f%xa`a 6;a? 9s if``` 2 $ q``` e`n`98 .;`a 2a 3aa8c+xq`a 6;a? 9s cc``` 2 $ e```y`n`!8 .#`a 2a 3aa;`1ts`a 6;a? 9r c```` 2 $y```m`n`)8 .+`a 2a 3aa>}7x }`a 6;a? 9q c}``` 2 $m```a`n`18 .3`a 2a 3aa6y=xu`a 6;a? 9dqy``` 2 $``{`t` i`98 .;`a 2a 3aa-t#u y`a 6;a? 9u yt{ mt` 2 $t`{`h` i`!8 .#`a 2a 3aa0p)u y`a 6;a? 9u yp{ mt` 2 $h`{`|` i`)8 .+`a 2a 3aa3j/u y`a 6;a? 9u yj{ mt` 2 $|`{` q` i`18 .3`a 2a 3aa6g5u y`a 6;a? 9u yg{ mt` 2 $ q`{` e` i`98 .;`a 2a 3aa9d;u y`a 6;a? 9u yd{ mt` 2 $ e`{`y` i`!8 .#`a 2a 3aa<a!u y`a 6;a? 9u ya{ mt` 2 $y`{`m` i`)8 .+`a 2a 3aa?~'u y`a 6;a? 9u y~{ mt` 2 $m`{`a` i`18 .3`a 2a 3aa z-u y`a 6;a? 9u yz{ mt` 2 987$`: h~$`*a$6>;c?2?46:e`: mu*` 9( -$`:gc$`?/3*a$6-;c?2?46:rc: mu*` 9(*$`:gc$`?/$6-;c?2?46:rc: mu*` 9(*$`:gc$`?/$6-;c?2?46:rc: mu*` 9(*$`:gc$`?/$6-;c?2?46:rc: mu*` 9(*$`:gc$`?/$6-;c?2?46:rc: mu*` 9(*$`:gc$`?/$6-;c?2?46:rc: mu*` 9(*$`:gc$`?/$6<;c?2?46:e`: mu*` 9( -$`:gc$`?/3*a3),- &`*a,/23 &`*a?589 &`*a2;>? &`*a%!$% &`*a8'*+ &`*a+-01 &`256 &` < hishelf start: 0 GainDb1: !PGain1 GainDb2: !PGain2 GainDb3: !PGain3 GainDb4: !PGain4 GainDb5: !PGain5 GainDb6: !PGain6 GainDb7: !PGain7 GainDb8: !PGain8 Fc1: !Fc1 Fc2: !Fc2 Fc3: !Fc3 Fc4: !Fc4 Fc5: !Fc5 Fc6: !Fc6 Fc7: !Fc7 Fc8: !Fc8 Q1: !Q1 Q2: !Q2 Q3: !Q3 Q4: !Q4 Q5: !Q5 Q6: !Q6 Q7: !Q7 Q8: !Q8  !`,a-3$a*,a-3$a*?46:gm: u*` 9&($`: dm$`*b(.3**/aa !Diffusion!#*b?(2+,a-3$a>,a-3$a>aa``a````99;=aj(%-0$`3}e3z m3}e(a-3$a*55+.2789:91a`9 msaPrivate &*b,(Dynamics Bypass9-10 db * !DynByp-10 db * !DynBypaa((aa-9$aSpread3-9$a,a-3$a5StByp((aa-9$a1-9$a,a-3$a74Right Mix'%?46:le: u*` 9 * ,$`: ie$` 97716phase panner;a?2460;a?29"2(1 - ?StByp) * (1 - (0.5 * (0.5 * !Pan3) normSin))`800 usec((aa-9$aPan3-<$`Private 246 !;a?29"2(1 - ?StByp) * (1 - (0.5 * (0.5 * !Pan3) normCos))`800 usec((aa-9$a;- +$`Private 216 2;a?2460;a?29 %2(1 - ?StByp) * (1 - (0.5 * (0.5 * !Pan3) normCos))`800 usec((aa-9$a;- +$`Private 246 !;a?29 %2(1 - ?StByp) * (1 - (0.5 * (0.5 * !Pan3) normSin))`800 usec((aa-9$a;-<$`Private 2 (1 - ?Mute3) (1 - ?Mute3)`>6Compressor dB 250;a?/>6NoiseGate 250;a?/+250 =a``````66;=aj(TN00250-0$`3}e3z m3}e(a-3$a*11+(RC00250-/$aa(TC00250-0$`3}e3}e3}e(GC00250-0$``26Mix 250;a?46:ng: u*` 9 8Mix 250$`: kg$`*c(6 0;b?/16 5;b?2?46:ng: u*` 9 = ?$`: kg$`4Left Mix26Left Dynamics;a?/,*b,(Dynamics Bypass6-10 db * !DynByp-10 db * !DynBypaa2?*b226Right Dynamics;a?/>6.;a?/>63;a?/+250;a``````++;=aj(:-0$`3}e3z m3}e(a-3$a*''+($-/$aa((-0$`3}e3}e3}e(/-0$`*b#(Dynamics Bypass+-10 db * !DynByp-10 db * !DynBypaa((aa-9$aSpread1-9$a,a-3$a7((aa-9$a,-9$a,a-3$a74Right Mix>6Compressor dB 500;a?/>6NoiseGate 500;a?/+500 =`a`````00;=aj !TN00500 db 3}e3z m3}e(a-3$a*+++(!-/$aa(4-5$`3ao3}e3ao( (-5$`9&a`9 msaPrivate &*b!(Dynamics Bypass0-10 db * !DynByp-10 db * !DynBypaa2?*b<26Right Dynamics;a?/46delay equalization;a?/>6(;a?/>6-;a?/+500;`a`````!!;=aj !TN00500 db 3}e3z m3}e(a-3$a*==+:= !"#99a`9 msaPrivate &*b4(Dynamics Bypass!-10 db * !DynByp-10 db * !DynBypaa((aa-9$a:-9$a,a-3$a7((aa-9$a:-9$a,a-3$a74Right Mix/-?46:le: u*` 9 * ,$`: ie$`.7716Right Phase Panner;a?2460;a?29$2(1 - ?StByp) * (1 - (0.5 * (0.5 * !Pan2) normSin))`800 usec((aa-9$aPan2-<$`Private 246 !;a?29$2(1 - ?StByp) * (1 - (0.5 * (0.5 * !Pan2) normCos))`800 usec((aa-9$a=- +$`Private 216 2;a?2460;a?29:2(1 - ?StByp) * (1 - (0.5 * (0.5 * !Pan2) normCos))`800 usec((aa-9$a=- +$`Private 246 !;a?29:2(1 - ?StByp) * (1 - (0.5 * (0.5 * !Pan2) normSin))`800 usec((aa-9$a=-<$`Private 2 (1 - ?Mute2) (1 - ?Mute2) '26Mix 2K;a?46:ng: u*` 9 8Mix 2K$`: kg$`*c(6 0;b?/16 5;b?2?46:ng: u*` 9 = ?$`: kg$`4Left Mix26Left Dynamics;a?/46Delay Equalization;a?/>6Compressor dB 2K;a?/>6NoiseGate 2K;a?/+2K =```a```"";=aj( -0$`3}e3z m3}e(a-3$a*==+(4-/$aa('-5$`3ao3}e3ao( ;-5$`98a`9 msaPrivate &*b3(Dynamics Bypass"-10 db * !DynByp-10 db * !DynBypaa2?*b.26Right Dynamics;a?/46Delay Equalization;a?/>6:;a?/>6?;a?/+2K;```a```55;=aj( -0$`3}e3z m3}e(a-3$a*11+.145679-a`9 msaPrivate &*b(Dynamics Bypass5-10 db * !DynByp-10 db * !DynByp(aa((aa-9$a--9$a,a-3$a7((aa-9$a--9$a,a-3$a74Right Mix#!?46:le: u*` 9 * ,$`: ie$` 7716Right Phase Panner;a?2460;a?29:2(1 - ?StByp) * (1 - (0.5 * (0.5 * !Pan4) normSin))`800 usec((aa-9$aPan4-<$`Private 246 !;a?29:2(1 - ?StByp) * (1 - (0.5 * (0.5 * !Pan4) normCos))`800 usec((aa-9$a3- +$`Private 216 2;a?2460;a?29,2(1 - ?StByp) * (1 - (0.5 * (0.5 * !Pan4) normCos))`800 usec((aa-9$a3- +$`Private 246 !;a?29,2(1 - ?StByp) * (1 - (0.5 * (0.5 * !Pan4) normSin))`800 usec((aa-9$a3-<$`Private 2 (1 - ?Mute4) (1 - ?Mute4)26Mix 4K;a?46:ng: u*` 9 8Mix 4K$`: kg$`*c(6 0;b?/16 5;b?2?46:ng: u*` 9 = ?$`: kg$`4Left Mix26Left Dynamics;a?/46Delay Equalization;a?/>6Compressor dB 4K;a?/>6NoiseGate 4K;a?/+4K =````a``88;=aj(*-0$`3}e3z m3}e(a-3$a*33+(>-/$aa(1-5$`3ao3}e3ao( %-5$`9.a`9 msaPrivate &*b)(Dynamics Bypass8-10 db * !DynByp-10 db * !DynBypaa2?*b$26Right Dynamics;a?/46Delay Equalization;a?/>60;a?/>65;a?/+4K;````a``++;=aj(*-0$`3}e3z m3}e(a-3$a*''+$'*+,-9#a`9 msaPrivate &*b>(Dynamics Bypass+-10 db * !DynByp-10 db * !DynBypaa((aa-9$a7-9$a,a-3$a7((aa-9$a7-9$a,a-3$a74Right Mix97?46:le: u*` 9 * ,$`: ie$`67716Right Phase Panner;a?2460;a?2902(1 - ?StByp) * (1 - (0.5 * (0.5 * !Pan5) normSin))`800 usec((aa-9$aPan5-<$`Private 246 !;a?2902(1 - ?StByp) * (1 - (0.5 * (0.5 * !Pan5) normCos))`800 usec((aa-9$a)- +$`Private 216 2;a?2460;a?29"2(1 - ?StByp) * (1 - (0.5 * (0.5 * !Pan5) normCos))`800 usec((aa-9$a)- +$`Private 246 !;a?29"2(1 - ?StByp) * (1 - (0.5 * (0.5 * !Pan5) normSin))`800 usec((aa-9$a)-<$`Private 2 (1 - ?Mute5) (1 - ?Mute5)26Mix 8K;a?46:ng: u*` 9 8Mix 8K$`: kg$`*c(6 0;b?/16 5;b?2?46:ng: u*` 9 = ?$`: kg$`4 $26Left Dynamics;a?/46Delay Equalization;a?/>6";a?/>6';a?/+/ =`````aa + +;67:;<= ' '+,156789 #a`9 msaPrivate &*b >(Dynamics Bypass +-10 db * !DynByp-10 db * !DynBypaa2?*b 926Right Dynamics;a?/46Delay Equalization;a?/>6";a?/>6';a?/+.;`````a1  ' ';< $%&' # #+,156789 ?a`9 msaPrivate &*b :(Dynamics Bypass '-10 db * !DynByp-10 db * !DynBypaa((aa-9$a!-9$a,a-3$a7((aa-9$a!-9$a,a-3$a747 5 3?46:le: u*` 9 * ,$`: ie$` ,7716Right Phase Panner;a?2460;a?29 "2(1 - ?StByp) * (1 - (0.5 * (0.5 * !Pan6) normSin))`800 usec((aa-9$aPan6-<$`Private 246 !;a?29 "2(1 - ?StByp) * (1 - (0.5 * (0.5 * !Pan6) normCos))`800 usec((aa-9$a :- +$`Private 216 2;a?2460;a?29 82(1 - ?StByp) * (1 - (0.5 * (0.5 * !Pan6) normCos))`800 usec((aa-9$a :- +$`Private 246 !;a?29 82(1 - ?StByp) * (1 - (0.5 * (0.5 * !Pan6) normSin))`800 usec((aa-9$a :-<$`Private 2 (1 - ?Mute6) (1 - ?Mute6)aa?46:v{: u*` 9),;`Script3$`:s{$`*b1L/R Harmonics Delay Compensation4Harmonics Delay Compensation Left9&leftOnly -a`1 msaPrivate &46Harmonics Delay Compensation Right;a?/&rightOnly -9$a`1 msaPrivate &1Harmonics(Left HarmonicsInterpolatingWaveshaper }name:input:interpolation:shapeFrom:shapingFunction:coefficients:fromMemoryWriter:OddEvenHarmonicDistortion>compressor&6Left Channel Only21;a?/2Submix 1K + 2K + 4K*c '.$aa83+e{ m3}e3}e3ao(=-5$` 2polynomialsine#({!Even * !DCOffset smoothed} 0 {!Even smoothed negated} {!Odd smoothed} {!Even smoothed} {!Odd smoothed negated} {!Even smoothed negated} {!Odd smoothed negated} " 0 0 0 -0.646 0 0.080 0 -0.005 ")(('-0$`-9$a,a-3$a5HByp(('-0$`-9$a,a-3$a-(Right Harmonics-0>2&Right Channel Only228<+e{ m3}e3}e3ao(=-5$` 2!sine#({!Even * !DCOffset smoothed} 0 {!Even smoothed negated} {!Odd smoothed} {!Even smoothed} {!Odd smoothed negated} {!Even smoothed negated} {!Odd smoothed negated} " 0 0 0 -0.646 0 0.080 0 -0.005 ")(('-0$`-9$a(a-3$a1(('-0$`-9$a(a-3$a1aa < harmmix start: 0 StByp: (!Bypass + !StByp) vmin: 1 HByp: (!Bypass + !HByp) vmin: 1 DynByp: (!Bypass + !DynByp) vmin: 1 RvbMute: (!Bypass + (!RvbMute * (1 - 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