This commit is contained in:
Christopher Johnson 2024-09-22 15:45:34 -04:00
parent 299be49c3f
commit 7d3b3c73bb
244 changed files with 71580 additions and 2 deletions

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@ -27,7 +27,7 @@ Dithers: Dark, PaulWide, PaulDither, TPDFWide, TPDFDither, NotJustAnotherDither,
Dynamics: Pop2, Pressure5, Dynamics, Pop, DigitalBlack, Logical4, VariMu, ButterComp2, curve, Overheads, Recurve, Pyewacket, BlockParty, SoftGate, Thunder, Compresaturator, DrumSlam, ButterComp, BrassRider, Point, Gatelope, PodcastDeluxe, Podcast, Swell, PurestSquish, Pressure4, Surge, SurgeTide
Effects: Dubly2, GalacticVibe, CloudCoat, Fracture2, Dubly, Pafnuty2, PitchNasty, Trianglizer, ShortBuss, GuitarConditioner, Aura, TremoSquare, Tremolo, GlitchShifter, Gringer, Exciter, Energy2, Energy, Facet, Fracture, PowerSag2, PowerSag, Preponderant, Nikola
Effects: Dubly3, Dubly2, GalacticVibe, CloudCoat, Fracture2, Dubly, Pafnuty2, PitchNasty, Trianglizer, ShortBuss, GuitarConditioner, Aura, TremoSquare, Tremolo, GlitchShifter, Gringer, Exciter, Energy2, Energy, Facet, Fracture, PowerSag2, PowerSag, Preponderant, Nikola
Filter: Parametric, Stonefire, Isolator3, Baxandall2, Pear2, Capacitor2, Distance3, Pear, ResEQ2, SubTight, CStrip2, Weight, Isolator2, Kalman, Holt2, Holt, ToneSlant, AverMatrix, Average, MackEQ, Hull2, Baxandall, Hull, EQ, Capacitor, Isolator, TapeFat, ResEQ, Lowpass2, Highpass2, Distance, Distance2, Lowpass, Highpass
@ -1843,6 +1843,30 @@ If you're going to mess with the trimpots (now ordinary sliders for anybody to p
I look forward to playing with all this in the full ToTape7, with flutter and tape bias modeling, but for now you can fully play with and get used to these qualities in advance! Have fun with Dubly2 :)
############ Dubly3 refines and transforms the Dubly sound.
So here's where the Dubly stuff suddenly gets more useful for a lot of people.
This whole time, Dubly's been using a transfer function called uLaw encoding to take the place of 'compression', because it gets to roughly the same 2:1 ratio that the famous noise reduction system liked to use. And this is all well and good… but transfer function modifications without time constants aren't compression. They're distortion. And so all the versions of Dubly have used brightened but distorted audio to encode and decode with. And this is fine for a number of reasons (one of them being, Dubly is a Spinal Tap joke and not an attempt to pirate still very defended IP) up until ToTape7 came out, and people started trying to use it for all manner of things.
Dubly and Dubly2 are the right basic sort of thing, but gritty and alias-y, and I vowed I'd work on it in order to develop a ToTape8 that performed better, ideally with a heck of a lot less aliasing but still zero latency and with the immediacy Airwindows ToTape has been known for. And so, towards that goal, Dubly3 is here.
What's changed? A bunch of things. Notably, Dubly3 uses real compression: but not in any sense a clone of other gear. Instead, it's a new trick I might look into further: it's applying a compression based not on the input signal, but the uLaw version of the input signal, so the 'DNA' of original Dubly is very much still in there. But the time constants totally alter the texture of how Dubly3 behaves. It acts a lot more like a real compressor, as in a sense it is one, just one that's following an unusual form of signal (much like having the compression try to follow a tube-drive style control signal).
That applies to both encode and decode. On top of that, Dubly3 does adopt the classic trick of clipping the compressed highs slightly, which also helps it sound authentic. But beyond that, Dubly3 reinvents the controls in a way that I think will be very helpful, and in a way that lets the upcoming ToTape8 add some asked-for features.
Instead of direct control over amounts of encode, decode, and their crossover frequencies, Dubly3 boils it down to input and output gains (labeled as such, not 'tape drive') and tilt and shape controls, and that's how you dial it in. What's tilt? At 0.5 tilt is 'neutral', but as you boost it, you're adding encode and cutting decode. The similarity to a tilt EQ is obvious. More tilt means more bright, and if you cut it below 0.5 you're leaving decode fully engaged but reducing encode, causing it still to be the Dubly sound, but darker.
Shape is even more interesting. Where Tilt balances the encode and decode levels against each other, Shape balances the crossover frequencies against each other… and lets you push them to unreasonable extremes, in case it gives you usefully weird sounds to play with. For real sounds you'll be keeping it a lot nearer 0.5 where it defaults to. What happens is this: if you increase Shape, you're encoding at lower frequencies, but decoding at higher. That means the brightness factor stays roughly the same, but the mids get more intense, more compressed, more lively. You'll hear it in the chug of guitars and in the energy of percussion, but it's not purely a treble hype: it's reshaping the whole midrange where Dubly crosses it over to treble. Then, when you cut Shape, you're encoding at higher frequencies but decoding more in lower frequencies… and since decoding is more subtractive, and since Dubly3 is a compressy thing, you're darkening and expanding the mids instead.
Using these controls, you can use Dubly3 to start dialing in a number of classic record sounds, particular albums where perhaps the hardware noise reduction of the day had drifted and produced a distinctive sound. And then, once ToTape8 is done, you can apply it to the additional controls of ToTape, adding refinements in bias and using the classic ToTape algorithm to make a plugin you can hit like it was a real tape machine.
Which real tape machine? ANY real tape machine, pretty much. If you can identify the sound (things like where the head bump sits, how overbiased or underbiased the sound is, whether it's a brighter or darker sound, more saturated and hyped in the mids or cleaner and more dark and studio-y… at that point it ought to be possible to decode the classic sounds and either mimic them, or learn from them and use the plugin to make the choices that work for YOUR mix and your sound.
It starts with Dubly3, and once I've got ToTape8 done, you'll have everything ToTape7 has, except with this Dubly instead of the previous, and thanks to the use of two fewer tone controls, ToTape8 will also have an Input control at the top and an Output control at the bottom, to make the gain staging simpler for people to deal with. And it will still fit in Airwindows Consolidated. But for now, play with Dubly3 and see if that works better for ya than Dubly2 did. And Dubly2 is still supported and available because it's an entirely different sound and you should still have it in case you can use it.
Next, a ToTape8, but in weeks rather than another couple years. And then… more work on ConsoleX :)
############ DubSub is a fully featured bass doctor.
Be careful what you wish for. I like making plugins with very few controls, but when you have to use ALL the controls…

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@ -113,6 +113,7 @@ add_airwindows_plugin(ConsoleMDBuss)
add_airwindows_plugin(ConsoleMDChannel)
add_airwindows_plugin(ConsoleXBuss)
add_airwindows_plugin(ConsoleXChannel)
add_airwindows_plugin(ConsoleXPre)
add_airwindows_plugin(ContentHideD)
add_airwindows_plugin(CreamCoat)
add_airwindows_plugin(Creature)
@ -155,6 +156,7 @@ add_airwindows_plugin(DrumSlam)
add_airwindows_plugin(DubCenter)
add_airwindows_plugin(Dubly)
add_airwindows_plugin(Dubly2)
add_airwindows_plugin(Dubly3)
add_airwindows_plugin(DubSub)
add_airwindows_plugin(DubSub2)
add_airwindows_plugin(DustBunny)
@ -373,6 +375,7 @@ add_airwindows_plugin(ToneSlant)
add_airwindows_plugin(ToTape5)
add_airwindows_plugin(ToTape6)
add_airwindows_plugin(ToTape7)
add_airwindows_plugin(ToTape8)
add_airwindows_plugin(ToVinyl4)
add_airwindows_plugin(TPDFDither)
add_airwindows_plugin(TPDFWide)

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@ -0,0 +1,444 @@
/* ========================================
* ConsoleXPre - ConsoleXPre.h
* Copyright (c) airwindows, Airwindows uses the MIT license
* ======================================== */
#ifndef __ConsoleXPre_H
#include "ConsoleXPre.h"
#endif
AudioEffect* createEffectInstance(audioMasterCallback audioMaster) {return new ConsoleXPre(audioMaster);}
ConsoleXPre::ConsoleXPre(audioMasterCallback audioMaster) :
AudioEffectX(audioMaster, kNumPrograms, kNumParameters)
{
HIP = 0.0;
LOP = 0.0;
AIR = 0.5;
FIR = 0.5;
STO = 0.5;
RNG = 0.5;
FCT = 1.0;
SCT = 1.0;
FCR = 1.0;
SCR = 1.0;
FCA = 0.5;
SCA = 0.5;
FCL = 0.5;
SCL = 0.5;
FGT = 0.0;
SGT = 0.0;
FGR = 1.0;
SGR = 1.0;
FGS = 0.5;
SGS = 0.5;
FGL = 0.5;
SGL = 0.5;
TRF = 0.5;
TRG = 0.5;
TRR = 0.5;
HMF = 0.5;
HMG = 0.5;
HMR = 0.5;
LMF = 0.5;
LMG = 0.5;
LMR = 0.5;
BSF = 0.5;
BSG = 0.5;
BSR = 0.5;
DSC = 0.5;
PAN = 0.5;
FAD = 0.5;
for (int x = 0; x < hilp_total; x++) {
highpass[x] = 0.0;
lowpass[x] = 0.0;
}
for (int x = 0; x < air_total; x++) air[x] = 0.0;
for (int x = 0; x < kal_total; x++) kal[x] = 0.0;
fireCompL = 1.0;
fireCompR = 1.0;
fireGate = 1.0;
stoneCompL = 1.0;
stoneCompR = 1.0;
stoneGate = 1.0;
for (int x = 0; x < biqs_total; x++) {
high[x] = 0.0;
hmid[x] = 0.0;
lmid[x] = 0.0;
bass[x] = 0.0;
}
for(int count = 0; count < dscBuf+2; count++) {
dBaL[count] = 0.0;
dBaR[count] = 0.0;
}
dBaPosL = 0.0;
dBaPosR = 0.0;
dBaXL = 1;
dBaXR = 1;
airGainA = 0.5; airGainB = 0.5;
fireGainA = 0.5; fireGainB = 0.5;
stoneGainA = 0.5; stoneGainB = 0.5;
panA = 0.5; panB = 0.5;
inTrimA = 1.0; inTrimB = 1.0;
fpdL = 1.0; while (fpdL < 16386) fpdL = rand()*UINT32_MAX;
fpdR = 1.0; while (fpdR < 16386) fpdR = rand()*UINT32_MAX;
//this is reset: values being initialized only once. Startup values, whatever they are.
_canDo.insert("plugAsChannelInsert"); // plug-in can be used as a channel insert effect.
_canDo.insert("plugAsSend"); // plug-in can be used as a send effect.
_canDo.insert("x2in2out");
setNumInputs(kNumInputs);
setNumOutputs(kNumOutputs);
setUniqueID(kUniqueId);
canProcessReplacing(); // supports output replacing
canDoubleReplacing(); // supports double precision processing
programsAreChunks(true);
vst_strncpy (_programName, "Default", kVstMaxProgNameLen); // default program name
}
ConsoleXPre::~ConsoleXPre() {}
VstInt32 ConsoleXPre::getVendorVersion () {return 1000;}
void ConsoleXPre::setProgramName(char *name) {vst_strncpy (_programName, name, kVstMaxProgNameLen);}
void ConsoleXPre::getProgramName(char *name) {vst_strncpy (name, _programName, kVstMaxProgNameLen);}
//airwindows likes to ignore this stuff. Make your own programs, and make a different plugin rather than
//trying to do versioning and preventing people from using older versions. Maybe they like the old one!
static float pinParameter(float data)
{
if (data < 0.0f) return 0.0f;
if (data > 1.0f) return 1.0f;
return data;
}
VstInt32 ConsoleXPre::getChunk (void** data, bool isPreset)
{
float *chunkData = (float *)calloc(kNumParameters, sizeof(float));
chunkData[0] = HIP;
chunkData[1] = LOP;
chunkData[2] = AIR;
chunkData[3] = FIR;
chunkData[4] = STO;
chunkData[5] = RNG;
chunkData[6] = FCT;
chunkData[7] = SCT;
chunkData[8] = FCR;
chunkData[9] = SCR;
chunkData[10] = FCA;
chunkData[11] = SCA;
chunkData[12] = FCL;
chunkData[13] = SCL;
chunkData[14] = FGT;
chunkData[15] = SGT;
chunkData[16] = FGR;
chunkData[17] = SGR;
chunkData[18] = FGS;
chunkData[19] = SGS;
chunkData[20] = FGL;
chunkData[21] = SGL;
chunkData[22] = TRF;
chunkData[23] = TRG;
chunkData[24] = TRR;
chunkData[25] = HMF;
chunkData[26] = HMG;
chunkData[27] = HMR;
chunkData[28] = LMF;
chunkData[29] = LMG;
chunkData[30] = LMR;
chunkData[31] = BSF;
chunkData[32] = BSG;
chunkData[33] = BSR;
chunkData[34] = DSC;
chunkData[35] = PAN;
chunkData[36] = FAD;
/* Note: The way this is set up, it will break if you manage to save settings on an Intel
machine and load them on a PPC Mac. However, it's fine if you stick to the machine you
started with. */
*data = chunkData;
return kNumParameters * sizeof(float);
}
VstInt32 ConsoleXPre::setChunk (void* data, VstInt32 byteSize, bool isPreset)
{
float *chunkData = (float *)data;
HIP = pinParameter(chunkData[0]);
LOP = pinParameter(chunkData[1]);
AIR = pinParameter(chunkData[2]);
FIR = pinParameter(chunkData[3]);
STO = pinParameter(chunkData[4]);
RNG = pinParameter(chunkData[5]);
FCT = pinParameter(chunkData[6]);
SCT = pinParameter(chunkData[7]);
FCR = pinParameter(chunkData[8]);
SCR = pinParameter(chunkData[9]);
FCA = pinParameter(chunkData[10]);
SCA = pinParameter(chunkData[11]);
FCL = pinParameter(chunkData[12]);
SCL = pinParameter(chunkData[13]);
FGT = pinParameter(chunkData[14]);
SGT = pinParameter(chunkData[15]);
FGR = pinParameter(chunkData[16]);
SGR = pinParameter(chunkData[17]);
FGS = pinParameter(chunkData[18]);
SGS = pinParameter(chunkData[19]);
FGL = pinParameter(chunkData[20]);
SGL = pinParameter(chunkData[21]);
TRF = pinParameter(chunkData[22]);
TRG = pinParameter(chunkData[23]);
TRR = pinParameter(chunkData[24]);
HMF = pinParameter(chunkData[25]);
HMG = pinParameter(chunkData[26]);
HMR = pinParameter(chunkData[27]);
LMF = pinParameter(chunkData[28]);
LMG = pinParameter(chunkData[29]);
LMR = pinParameter(chunkData[30]);
BSF = pinParameter(chunkData[31]);
BSG = pinParameter(chunkData[32]);
BSR = pinParameter(chunkData[33]);
DSC = pinParameter(chunkData[34]);
PAN = pinParameter(chunkData[35]);
FAD = pinParameter(chunkData[36]);
/* We're ignoring byteSize as we found it to be a filthy liar */
/* calculate any other fields you need here - you could copy in
code from setParameter() here. */
return 0;
}
void ConsoleXPre::setParameter(VstInt32 index, float value) {
switch (index) {
case kParamHIP: HIP = value; break;
case kParamLOP: LOP = value; break;
case kParamAIR: AIR = value; break;
case kParamFIR: FIR = value; break;
case kParamSTO: STO = value; break;
case kParamRNG: RNG = value; break;
case kParamFCT: FCT = value; break;
case kParamSCT: SCT = value; break;
case kParamFCR: FCR = value; break;
case kParamSCR: SCR = value; break;
case kParamFCA: FCA = value; break;
case kParamSCA: SCA = value; break;
case kParamFCL: FCL = value; break;
case kParamSCL: SCL = value; break;
case kParamFGT: FGT = value; break;
case kParamSGT: SGT = value; break;
case kParamFGR: FGR = value; break;
case kParamSGR: SGR = value; break;
case kParamFGS: FGS = value; break;
case kParamSGS: SGS = value; break;
case kParamFGL: FGL = value; break;
case kParamSGL: SGL = value; break;
case kParamTRF: TRF = value; break;
case kParamTRG: TRG = value; break;
case kParamTRR: TRR = value; break;
case kParamHMF: HMF = value; break;
case kParamHMG: HMG = value; break;
case kParamHMR: HMR = value; break;
case kParamLMF: LMF = value; break;
case kParamLMG: LMG = value; break;
case kParamLMR: LMR = value; break;
case kParamBSF: BSF = value; break;
case kParamBSG: BSG = value; break;
case kParamBSR: BSR = value; break;
case kParamDSC: DSC = value; break;
case kParamPAN: PAN = value; break;
case kParamFAD: FAD = value; break;
default: throw; // unknown parameter, shouldn't happen!
}
}
float ConsoleXPre::getParameter(VstInt32 index) {
switch (index) {
case kParamHIP: return HIP; break;
case kParamLOP: return LOP; break;
case kParamAIR: return AIR; break;
case kParamFIR: return FIR; break;
case kParamSTO: return STO; break;
case kParamRNG: return RNG; break;
case kParamFCT: return FCT; break;
case kParamSCT: return SCT; break;
case kParamFCR: return FCR; break;
case kParamSCR: return SCR; break;
case kParamFCA: return FCA; break;
case kParamSCA: return SCA; break;
case kParamFCL: return FCL; break;
case kParamSCL: return SCL; break;
case kParamFGT: return FGT; break;
case kParamSGT: return SGT; break;
case kParamFGR: return FGR; break;
case kParamSGR: return SGR; break;
case kParamFGS: return FGS; break;
case kParamSGS: return SGS; break;
case kParamFGL: return FGL; break;
case kParamSGL: return SGL; break;
case kParamTRF: return TRF; break;
case kParamTRG: return TRG; break;
case kParamTRR: return TRR; break;
case kParamHMF: return HMF; break;
case kParamHMG: return HMG; break;
case kParamHMR: return HMR; break;
case kParamLMF: return LMF; break;
case kParamLMG: return LMG; break;
case kParamLMR: return LMR; break;
case kParamBSF: return BSF; break;
case kParamBSG: return BSG; break;
case kParamBSR: return BSR; break;
case kParamDSC: return DSC; break;
case kParamPAN: return PAN; break;
case kParamFAD: return FAD; break;
default: break; // unknown parameter, shouldn't happen!
} return 0.0; //we only need to update the relevant name, this is simple to manage
}
void ConsoleXPre::getParameterName(VstInt32 index, char *text) {
switch (index) {
case kParamHIP: vst_strncpy (text, "Highpas", kVstMaxParamStrLen); break;
case kParamLOP: vst_strncpy (text, "Lowpass", kVstMaxParamStrLen); break;
case kParamAIR: vst_strncpy (text, "Air", kVstMaxParamStrLen); break;
case kParamFIR: vst_strncpy (text, "Fire", kVstMaxParamStrLen); break;
case kParamSTO: vst_strncpy (text, "Stone", kVstMaxParamStrLen); break;
case kParamRNG: vst_strncpy (text, "Range", kVstMaxParamStrLen); break;
case kParamFCT: vst_strncpy (text, "FC Thrs", kVstMaxParamStrLen); break;
case kParamSCT: vst_strncpy (text, "SC Thrs", kVstMaxParamStrLen); break;
case kParamFCR: vst_strncpy (text, "FC Rati", kVstMaxParamStrLen); break;
case kParamSCR: vst_strncpy (text, "SC Rati", kVstMaxParamStrLen); break;
case kParamFCA: vst_strncpy (text, "FC Atk", kVstMaxParamStrLen); break;
case kParamSCA: vst_strncpy (text, "SC Atk", kVstMaxParamStrLen); break;
case kParamFCL: vst_strncpy (text, "FC Rls", kVstMaxParamStrLen); break;
case kParamSCL: vst_strncpy (text, "SC Rls", kVstMaxParamStrLen); break;
case kParamFGT: vst_strncpy (text, "FG Thrs", kVstMaxParamStrLen); break;
case kParamSGT: vst_strncpy (text, "SG Thrs", kVstMaxParamStrLen); break;
case kParamFGR: vst_strncpy (text, "FG Rati", kVstMaxParamStrLen); break;
case kParamSGR: vst_strncpy (text, "SG Rati", kVstMaxParamStrLen); break;
case kParamFGS: vst_strncpy (text, "FG Sust", kVstMaxParamStrLen); break;
case kParamSGS: vst_strncpy (text, "SG Sust", kVstMaxParamStrLen); break;
case kParamFGL: vst_strncpy (text, "FG Rls", kVstMaxParamStrLen); break;
case kParamSGL: vst_strncpy (text, "SG Rls", kVstMaxParamStrLen); break;
case kParamTRF: vst_strncpy (text, "Tr Freq", kVstMaxParamStrLen); break;
case kParamTRG: vst_strncpy (text, "Treble", kVstMaxParamStrLen); break;
case kParamTRR: vst_strncpy (text, "Tr Reso", kVstMaxParamStrLen); break;
case kParamHMF: vst_strncpy (text, "HM Freq", kVstMaxParamStrLen); break;
case kParamHMG: vst_strncpy (text, "HighMid", kVstMaxParamStrLen); break;
case kParamHMR: vst_strncpy (text, "HM Reso", kVstMaxParamStrLen); break;
case kParamLMF: vst_strncpy (text, "LM Freq", kVstMaxParamStrLen); break;
case kParamLMG: vst_strncpy (text, "LowMid", kVstMaxParamStrLen); break;
case kParamLMR: vst_strncpy (text, "LM Reso", kVstMaxParamStrLen); break;
case kParamBSF: vst_strncpy (text, "Bs Freq", kVstMaxParamStrLen); break;
case kParamBSG: vst_strncpy (text, "Bass", kVstMaxParamStrLen); break;
case kParamBSR: vst_strncpy (text, "Bs Reso", kVstMaxParamStrLen); break;
case kParamDSC: vst_strncpy (text, "Top dB", kVstMaxParamStrLen); break;
case kParamPAN: vst_strncpy (text, "Pan", kVstMaxParamStrLen); break;
case kParamFAD: vst_strncpy (text, "Fader", kVstMaxParamStrLen); break;
default: break; // unknown parameter, shouldn't happen!
} //this is our labels for displaying in the VST host
}
void ConsoleXPre::getParameterDisplay(VstInt32 index, char *text) {
switch (index) {
case kParamHIP: float2string (HIP, text, kVstMaxParamStrLen); break;
case kParamLOP: float2string (LOP, text, kVstMaxParamStrLen); break;
case kParamAIR: float2string (AIR, text, kVstMaxParamStrLen); break;
case kParamFIR: float2string (FIR, text, kVstMaxParamStrLen); break;
case kParamSTO: float2string (STO, text, kVstMaxParamStrLen); break;
case kParamRNG: float2string (RNG, text, kVstMaxParamStrLen); break;
case kParamFCT: float2string (FCT, text, kVstMaxParamStrLen); break;
case kParamSCT: float2string (SCT, text, kVstMaxParamStrLen); break;
case kParamFCR: float2string (FCR, text, kVstMaxParamStrLen); break;
case kParamSCR: float2string (SCR, text, kVstMaxParamStrLen); break;
case kParamFCA: float2string (FCA, text, kVstMaxParamStrLen); break;
case kParamSCA: float2string (SCA, text, kVstMaxParamStrLen); break;
case kParamFCL: float2string (FCL, text, kVstMaxParamStrLen); break;
case kParamSCL: float2string (SCL, text, kVstMaxParamStrLen); break;
case kParamFGT: float2string (FGT, text, kVstMaxParamStrLen); break;
case kParamSGT: float2string (SGT, text, kVstMaxParamStrLen); break;
case kParamFGR: float2string (FGR, text, kVstMaxParamStrLen); break;
case kParamSGR: float2string (SGR, text, kVstMaxParamStrLen); break;
case kParamFGS: float2string (FGS, text, kVstMaxParamStrLen); break;
case kParamSGS: float2string (SGS, text, kVstMaxParamStrLen); break;
case kParamFGL: float2string (FGL, text, kVstMaxParamStrLen); break;
case kParamSGL: float2string (SGL, text, kVstMaxParamStrLen); break;
case kParamTRF: float2string (TRF, text, kVstMaxParamStrLen); break;
case kParamTRG: float2string (TRG, text, kVstMaxParamStrLen); break;
case kParamTRR: float2string (TRR, text, kVstMaxParamStrLen); break;
case kParamHMF: float2string (HMF, text, kVstMaxParamStrLen); break;
case kParamHMG: float2string (HMG, text, kVstMaxParamStrLen); break;
case kParamHMR: float2string (HMR, text, kVstMaxParamStrLen); break;
case kParamLMF: float2string (LMF, text, kVstMaxParamStrLen); break;
case kParamLMG: float2string (LMG, text, kVstMaxParamStrLen); break;
case kParamLMR: float2string (LMR, text, kVstMaxParamStrLen); break;
case kParamBSF: float2string (BSF, text, kVstMaxParamStrLen); break;
case kParamBSG: float2string (BSG, text, kVstMaxParamStrLen); break;
case kParamBSR: float2string (BSR, text, kVstMaxParamStrLen); break;
case kParamDSC: float2string ((DSC*70.0)+70.0, text, kVstMaxParamStrLen); break;
case kParamPAN: float2string (PAN, text, kVstMaxParamStrLen); break;
case kParamFAD: float2string (FAD, text, kVstMaxParamStrLen); break;
default: break; // unknown parameter, shouldn't happen!
} //this displays the values and handles 'popups' where it's discrete choices
}
void ConsoleXPre::getParameterLabel(VstInt32 index, char *text) {
switch (index) {
case kParamHIP: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamLOP: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamAIR: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamFIR: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamSTO: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamRNG: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamFCT: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamSCT: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamFCR: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamSCR: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamFCA: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamSCA: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamFCL: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamSCL: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamFGT: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamSGT: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamFGR: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamSGR: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamFGS: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamSGS: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamFGL: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamSGL: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamTRF: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamTRG: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamTRR: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamHMF: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamHMG: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamHMR: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamLMF: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamLMG: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamLMR: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamBSF: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamBSG: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamBSR: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamDSC: vst_strncpy (text, "dB", kVstMaxParamStrLen); break;
case kParamPAN: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamFAD: vst_strncpy (text, "", kVstMaxParamStrLen); break;
default: break; // unknown parameter, shouldn't happen!
}
}
VstInt32 ConsoleXPre::canDo(char *text)
{ return (_canDo.find(text) == _canDo.end()) ? -1: 1; } // 1 = yes, -1 = no, 0 = don't know
bool ConsoleXPre::getEffectName(char* name) {
vst_strncpy(name, "ConsoleXPre", kVstMaxProductStrLen); return true;
}
VstPlugCategory ConsoleXPre::getPlugCategory() {return kPlugCategEffect;}
bool ConsoleXPre::getProductString(char* text) {
vst_strncpy (text, "airwindows ConsoleXPre", kVstMaxProductStrLen); return true;
}
bool ConsoleXPre::getVendorString(char* text) {
vst_strncpy (text, "airwindows", kVstMaxVendorStrLen); return true;
}

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/* ========================================
* ConsoleXPre - ConsoleXPre.h
* Created 8/12/11 by SPIAdmin
* Copyright (c) Airwindows, Airwindows uses the MIT license
* ======================================== */
#ifndef __ConsoleXPre_H
#define __ConsoleXPre_H
#ifndef __audioeffect__
#include "audioeffectx.h"
#endif
#include <set>
#include <string>
#include <math.h>
enum {
kParamHIP = 0,
kParamLOP = 1,
kParamAIR = 2,
kParamFIR = 3,
kParamSTO = 4,
kParamRNG = 5,
kParamFCT = 6,
kParamSCT = 7,
kParamFCR = 8,
kParamSCR = 9,
kParamFCA = 10,
kParamSCA = 11,
kParamFCL = 12,
kParamSCL = 13,
kParamFGT = 14,
kParamSGT = 15,
kParamFGR = 16,
kParamSGR = 17,
kParamFGS = 18,
kParamSGS = 19,
kParamFGL = 20,
kParamSGL = 21,
kParamTRF = 22,
kParamTRG = 23,
kParamTRR = 24,
kParamHMF = 25,
kParamHMG = 26,
kParamHMR = 27,
kParamLMF = 28,
kParamLMG = 29,
kParamLMR = 30,
kParamBSF = 31,
kParamBSG = 32,
kParamBSR = 33,
kParamDSC = 34,
kParamPAN = 35,
kParamFAD = 36,
kNumParameters = 37
}; //
const int dscBuf = 90;
const int kNumPrograms = 0;
const int kNumInputs = 2;
const int kNumOutputs = 2;
const unsigned long kUniqueId = 'cnxp'; //Change this to what the AU identity is!
class ConsoleXPre :
public AudioEffectX
{
public:
ConsoleXPre(audioMasterCallback audioMaster);
~ConsoleXPre();
virtual bool getEffectName(char* name); // The plug-in name
virtual VstPlugCategory getPlugCategory(); // The general category for the plug-in
virtual bool getProductString(char* text); // This is a unique plug-in string provided by Steinberg
virtual bool getVendorString(char* text); // Vendor info
virtual VstInt32 getVendorVersion(); // Version number
virtual void processReplacing (float** inputs, float** outputs, VstInt32 sampleFrames);
virtual void processDoubleReplacing (double** inputs, double** outputs, VstInt32 sampleFrames);
virtual void getProgramName(char *name); // read the name from the host
virtual void setProgramName(char *name); // changes the name of the preset displayed in the host
virtual VstInt32 getChunk (void** data, bool isPreset);
virtual VstInt32 setChunk (void* data, VstInt32 byteSize, bool isPreset);
virtual float getParameter(VstInt32 index); // get the parameter value at the specified index
virtual void setParameter(VstInt32 index, float value); // set the parameter at index to value
virtual void getParameterLabel(VstInt32 index, char *text); // label for the parameter (eg dB)
virtual void getParameterName(VstInt32 index, char *text); // name of the parameter
virtual void getParameterDisplay(VstInt32 index, char *text); // text description of the current value
virtual VstInt32 canDo(char *text);
private:
char _programName[kVstMaxProgNameLen + 1];
std::set< std::string > _canDo;
float HIP;
float LOP;
float AIR;
float FIR;
float STO;
float RNG;
float FCT;
float SCT;
float FCR;
float SCR;
float FCA;
float SCA;
float FCL;
float SCL;
float FGT;
float SGT;
float FGR;
float SGR;
float FGS;
float SGS;
float FGL;
float SGL;
float TRF;
float TRG;
float TRR;
float HMF;
float HMG;
float HMR;
float LMF;
float LMG;
float LMR;
float BSF;
float BSG;
float BSR;
float DSC;
float PAN;
float FAD;
enum {
hilp_freq, hilp_temp,
hilp_a0, hilp_a1, hilp_b1, hilp_b2,
hilp_c0, hilp_c1, hilp_d1, hilp_d2,
hilp_e0, hilp_e1, hilp_f1, hilp_f2,
hilp_aL1, hilp_aL2, hilp_aR1, hilp_aR2,
hilp_cL1, hilp_cL2, hilp_cR1, hilp_cR2,
hilp_eL1, hilp_eL2, hilp_eR1, hilp_eR2,
hilp_total
};
double highpass[hilp_total];
double lowpass[hilp_total];
enum {
pvAL1, pvSL1, accSL1, acc2SL1,
pvAL2, pvSL2, accSL2, acc2SL2,
pvAL3, pvSL3, accSL3,
pvAL4, pvSL4,
gndavgL, outAL, gainAL,
pvAR1, pvSR1, accSR1, acc2SR1,
pvAR2, pvSR2, accSR2, acc2SR2,
pvAR3, pvSR3, accSR3,
pvAR4, pvSR4,
gndavgR, outAR, gainAR,
air_total
};
double air[air_total];
enum {
prevSampL1, prevSlewL1, accSlewL1,
prevSampL2, prevSlewL2, accSlewL2,
prevSampL3, prevSlewL3, accSlewL3,
kalGainL, kalOutL,
prevSampR1, prevSlewR1, accSlewR1,
prevSampR2, prevSlewR2, accSlewR2,
prevSampR3, prevSlewR3, accSlewR3,
kalGainR, kalOutR,
kal_total
};
double kal[kal_total];
double fireCompL;
double fireCompR;
double fireGate;
double stoneCompL;
double stoneCompR;
double stoneGate;
double airGainA;
double airGainB;
double fireGainA;
double fireGainB;
double stoneGainA;
double stoneGainB;
enum {
biqs_freq, biqs_reso, biqs_level,
biqs_nonlin, biqs_temp, biqs_dis,
biqs_a0, biqs_a1, biqs_b1, biqs_b2,
biqs_c0, biqs_c1, biqs_d1, biqs_d2,
biqs_e0, biqs_e1, biqs_f1, biqs_f2,
biqs_aL1, biqs_aL2, biqs_aR1, biqs_aR2,
biqs_cL1, biqs_cL2, biqs_cR1, biqs_cR2,
biqs_eL1, biqs_eL2, biqs_eR1, biqs_eR2,
biqs_outL, biqs_outR, biqs_total
};
double high[biqs_total];
double hmid[biqs_total];
double lmid[biqs_total];
double bass[biqs_total];
double dBaL[dscBuf+5];
double dBaR[dscBuf+5];
double dBaPosL;
double dBaPosR;
int dBaXL;
int dBaXR;
double panA;
double panB;
double inTrimA;
double inTrimB;
uint32_t fpdL;
uint32_t fpdR;
//default stuff
};
#endif

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/* ========================================
* Dubly3 - Dubly3.h
* Copyright (c) airwindows, Airwindows uses the MIT license
* ======================================== */
#ifndef __Dubly3_H
#include "Dubly3.h"
#endif
AudioEffect* createEffectInstance(audioMasterCallback audioMaster) {return new Dubly3(audioMaster);}
Dubly3::Dubly3(audioMasterCallback audioMaster) :
AudioEffectX(audioMaster, kNumPrograms, kNumParameters)
{
A = 0.5;
B = 0.5;
C = 0.5;
D = 0.5;
iirEncL = 0.0; iirEncR = 0.0;
iirDecL = 0.0; iirDecR = 0.0;
compEncL = 1.0; compEncR = 1.0;
compDecL = 1.0; compDecR = 1.0;
avgEncL = 0.0; avgEncR = 0.0;
avgDecL = 0.0; avgDecR = 0.0;
fpdL = 1.0; while (fpdL < 16386) fpdL = rand()*UINT32_MAX;
fpdR = 1.0; while (fpdR < 16386) fpdR = rand()*UINT32_MAX;
//this is reset: values being initialized only once. Startup values, whatever they are.
_canDo.insert("plugAsChannelInsert"); // plug-in can be used as a channel insert effect.
_canDo.insert("plugAsSend"); // plug-in can be used as a send effect.
_canDo.insert("x2in2out");
setNumInputs(kNumInputs);
setNumOutputs(kNumOutputs);
setUniqueID(kUniqueId);
canProcessReplacing(); // supports output replacing
canDoubleReplacing(); // supports double precision processing
programsAreChunks(true);
vst_strncpy (_programName, "Default", kVstMaxProgNameLen); // default program name
}
Dubly3::~Dubly3() {}
VstInt32 Dubly3::getVendorVersion () {return 1000;}
void Dubly3::setProgramName(char *name) {vst_strncpy (_programName, name, kVstMaxProgNameLen);}
void Dubly3::getProgramName(char *name) {vst_strncpy (name, _programName, kVstMaxProgNameLen);}
//airwindows likes to ignore this stuff. Make your own programs, and make a different plugin rather than
//trying to do versioning and preventing people from using older versions. Maybe they like the old one!
static float pinParameter(float data)
{
if (data < 0.0f) return 0.0f;
if (data > 1.0f) return 1.0f;
return data;
}
VstInt32 Dubly3::getChunk (void** data, bool isPreset)
{
float *chunkData = (float *)calloc(kNumParameters, sizeof(float));
chunkData[0] = A;
chunkData[1] = B;
chunkData[2] = C;
chunkData[3] = D;
/* Note: The way this is set up, it will break if you manage to save settings on an Intel
machine and load them on a PPC Mac. However, it's fine if you stick to the machine you
started with. */
*data = chunkData;
return kNumParameters * sizeof(float);
}
VstInt32 Dubly3::setChunk (void* data, VstInt32 byteSize, bool isPreset)
{
float *chunkData = (float *)data;
A = pinParameter(chunkData[0]);
B = pinParameter(chunkData[1]);
C = pinParameter(chunkData[2]);
D = pinParameter(chunkData[3]);
/* We're ignoring byteSize as we found it to be a filthy liar */
/* calculate any other fields you need here - you could copy in
code from setParameter() here. */
return 0;
}
void Dubly3::setParameter(VstInt32 index, float value) {
switch (index) {
case kParamA: A = value; break;
case kParamB: B = value; break;
case kParamC: C = value; break;
case kParamD: D = value; break;
default: throw; // unknown parameter, shouldn't happen!
}
}
float Dubly3::getParameter(VstInt32 index) {
switch (index) {
case kParamA: return A; break;
case kParamB: return B; break;
case kParamC: return C; break;
case kParamD: return D; break;
default: break; // unknown parameter, shouldn't happen!
} return 0.0; //we only need to update the relevant name, this is simple to manage
}
void Dubly3::getParameterName(VstInt32 index, char *text) {
switch (index) {
case kParamA: vst_strncpy (text, "Input", kVstMaxParamStrLen); break;
case kParamB: vst_strncpy (text, "Tilt", kVstMaxParamStrLen); break;
case kParamC: vst_strncpy (text, "Shape", kVstMaxParamStrLen); break;
case kParamD: vst_strncpy (text, "Output", kVstMaxParamStrLen); break;
default: break; // unknown parameter, shouldn't happen!
} //this is our labels for displaying in the VST host
}
void Dubly3::getParameterDisplay(VstInt32 index, char *text) {
switch (index) {
case kParamA: float2string (A, text, kVstMaxParamStrLen); break;
case kParamB: float2string (B, text, kVstMaxParamStrLen); break;
case kParamC: float2string (C, text, kVstMaxParamStrLen); break;
case kParamD: float2string (D, text, kVstMaxParamStrLen); break;
default: break; // unknown parameter, shouldn't happen!
} //this displays the values and handles 'popups' where it's discrete choices
}
void Dubly3::getParameterLabel(VstInt32 index, char *text) {
switch (index) {
case kParamA: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamB: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamC: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamD: vst_strncpy (text, "", kVstMaxParamStrLen); break;
default: break; // unknown parameter, shouldn't happen!
}
}
VstInt32 Dubly3::canDo(char *text)
{ return (_canDo.find(text) == _canDo.end()) ? -1: 1; } // 1 = yes, -1 = no, 0 = don't know
bool Dubly3::getEffectName(char* name) {
vst_strncpy(name, "Dubly3", kVstMaxProductStrLen); return true;
}
VstPlugCategory Dubly3::getPlugCategory() {return kPlugCategEffect;}
bool Dubly3::getProductString(char* text) {
vst_strncpy (text, "airwindows Dubly3", kVstMaxProductStrLen); return true;
}
bool Dubly3::getVendorString(char* text) {
vst_strncpy (text, "airwindows", kVstMaxVendorStrLen); return true;
}

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/* ========================================
* Dubly3 - Dubly3.h
* Created 8/12/11 by SPIAdmin
* Copyright (c) Airwindows, Airwindows uses the MIT license
* ======================================== */
#ifndef __Dubly3_H
#define __Dubly3_H
#ifndef __audioeffect__
#include "audioeffectx.h"
#endif
#include <set>
#include <string>
#include <math.h>
enum {
kParamA =0,
kParamB =1,
kParamC =2,
kParamD =3,
kNumParameters = 4
}; //
const int kNumPrograms = 0;
const int kNumInputs = 2;
const int kNumOutputs = 2;
const unsigned long kUniqueId = 'dblz'; //Change this to what the AU identity is!
class Dubly3 :
public AudioEffectX
{
public:
Dubly3(audioMasterCallback audioMaster);
~Dubly3();
virtual bool getEffectName(char* name); // The plug-in name
virtual VstPlugCategory getPlugCategory(); // The general category for the plug-in
virtual bool getProductString(char* text); // This is a unique plug-in string provided by Steinberg
virtual bool getVendorString(char* text); // Vendor info
virtual VstInt32 getVendorVersion(); // Version number
virtual void processReplacing (float** inputs, float** outputs, VstInt32 sampleFrames);
virtual void processDoubleReplacing (double** inputs, double** outputs, VstInt32 sampleFrames);
virtual void getProgramName(char *name); // read the name from the host
virtual void setProgramName(char *name); // changes the name of the preset displayed in the host
virtual VstInt32 getChunk (void** data, bool isPreset);
virtual VstInt32 setChunk (void* data, VstInt32 byteSize, bool isPreset);
virtual float getParameter(VstInt32 index); // get the parameter value at the specified index
virtual void setParameter(VstInt32 index, float value); // set the parameter at index to value
virtual void getParameterLabel(VstInt32 index, char *text); // label for the parameter (eg dB)
virtual void getParameterName(VstInt32 index, char *text); // name of the parameter
virtual void getParameterDisplay(VstInt32 index, char *text); // text description of the current value
virtual VstInt32 canDo(char *text);
private:
char _programName[kVstMaxProgNameLen + 1];
std::set< std::string > _canDo;
float A;
float B;
float C;
float D;
double iirEncL;
double iirDecL;
double compEncL;
double compDecL;
double avgEncL;
double avgDecL;
double iirEncR;
double iirDecR;
double compEncR;
double compDecR;
double avgEncR;
double avgDecR;
uint32_t fpdL;
uint32_t fpdR;
//default stuff
};
#endif

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/* ========================================
* Dubly3 - Dubly3.h
* Copyright (c) airwindows, Airwindows uses the MIT license
* ======================================== */
#ifndef __Dubly3_H
#include "Dubly3.h"
#endif
void Dubly3::processReplacing(float **inputs, float **outputs, VstInt32 sampleFrames)
{
float* in1 = inputs[0];
float* in2 = inputs[1];
float* out1 = outputs[0];
float* out2 = outputs[1];
double overallscale = 1.0;
overallscale /= 44100.0;
overallscale *= getSampleRate();
double inputGain = pow(A*2.0,2.0);
double dublyAmount = B*2.0;
double outlyAmount = (1.0-B)*-2.0;
if (outlyAmount < -1.0) outlyAmount = -1.0;
double iirEncFreq = (1.0-C)/overallscale;
double iirDecFreq = C/overallscale;
double outputGain = D*2.0;
while (--sampleFrames >= 0)
{
double inputSampleL = *in1;
double inputSampleR = *in2;
if (fabs(inputSampleL)<1.18e-23) inputSampleL = fpdL * 1.18e-17;
if (fabs(inputSampleR)<1.18e-23) inputSampleR = fpdR * 1.18e-17;
if (inputGain != 1.0) {
inputSampleL *= inputGain;
inputSampleR *= inputGain;
}
//Dubly encode
iirEncL = (iirEncL * (1.0 - iirEncFreq)) + (inputSampleL * iirEncFreq);
double highPart = ((inputSampleL-iirEncL)*2.848);
highPart += avgEncL; avgEncL = (inputSampleL-iirEncL)*1.152;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
double dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compEncL = (compEncL*(1.0-iirEncFreq))+(dubly*iirEncFreq);
inputSampleL += ((highPart*compEncL)*dublyAmount);
} //end Dubly encode L
iirEncR = (iirEncR * (1.0 - iirEncFreq)) + (inputSampleR * iirEncFreq);
highPart = ((inputSampleR-iirEncR)*2.848);
highPart += avgEncR; avgEncR = (inputSampleR-iirEncR)*1.152;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compEncR = (compEncR*(1.0-iirEncFreq))+(dubly*iirEncFreq);
inputSampleR += ((highPart*compEncR)*dublyAmount);
} //end Dubly encode R
if (inputSampleL > 1.57079633) inputSampleL = 1.57079633;
if (inputSampleL < -1.57079633) inputSampleL = -1.57079633;
inputSampleL = sin(inputSampleL);
if (inputSampleR > 1.57079633) inputSampleR = 1.57079633;
if (inputSampleR < -1.57079633) inputSampleR = -1.57079633;
inputSampleR = sin(inputSampleR);
//Dubly decode
iirDecL = (iirDecL * (1.0 - iirDecFreq)) + (inputSampleL * iirDecFreq);
highPart = ((inputSampleL-iirDecL)*2.628);
highPart += avgDecL; avgDecL = (inputSampleL-iirDecL)*1.372;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compDecL = (compDecL*(1.0-iirDecFreq))+(dubly*iirDecFreq);
inputSampleL += ((highPart*compDecL)*outlyAmount);
} //end Dubly decode L
iirDecR = (iirDecR * (1.0 - iirDecFreq)) + (inputSampleR * iirDecFreq);
highPart = ((inputSampleR-iirDecR)*2.628);
highPart += avgDecR; avgDecR = (inputSampleR-iirDecR)*1.372;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compDecR = (compDecR*(1.0-iirDecFreq))+(dubly*iirDecFreq);
inputSampleR += ((highPart*compDecR)*outlyAmount);
} //end Dubly decode R
if (outputGain != 1.0) {
inputSampleL *= outputGain;
inputSampleR *= outputGain;
}
//begin 32 bit stereo floating point dither
int expon; frexpf((float)inputSampleL, &expon);
fpdL ^= fpdL << 13; fpdL ^= fpdL >> 17; fpdL ^= fpdL << 5;
inputSampleL += ((double(fpdL)-uint32_t(0x7fffffff)) * 5.5e-36l * pow(2,expon+62));
frexpf((float)inputSampleR, &expon);
fpdR ^= fpdR << 13; fpdR ^= fpdR >> 17; fpdR ^= fpdR << 5;
inputSampleR += ((double(fpdR)-uint32_t(0x7fffffff)) * 5.5e-36l * pow(2,expon+62));
//end 32 bit stereo floating point dither
*out1 = inputSampleL;
*out2 = inputSampleR;
in1++;
in2++;
out1++;
out2++;
}
}
void Dubly3::processDoubleReplacing(double **inputs, double **outputs, VstInt32 sampleFrames)
{
double* in1 = inputs[0];
double* in2 = inputs[1];
double* out1 = outputs[0];
double* out2 = outputs[1];
double overallscale = 1.0;
overallscale /= 44100.0;
overallscale *= getSampleRate();
double inputGain = pow(A*2.0,2.0);
double dublyAmount = B*2.0;
double outlyAmount = (1.0-B)*-2.0;
if (outlyAmount < -1.0) outlyAmount = -1.0;
double iirEncFreq = (1.0-C)/overallscale;
double iirDecFreq = C/overallscale;
double outputGain = D*2.0;
while (--sampleFrames >= 0)
{
double inputSampleL = *in1;
double inputSampleR = *in2;
if (fabs(inputSampleL)<1.18e-23) inputSampleL = fpdL * 1.18e-17;
if (fabs(inputSampleR)<1.18e-23) inputSampleR = fpdR * 1.18e-17;
if (inputGain != 1.0) {
inputSampleL *= inputGain;
inputSampleR *= inputGain;
}
//Dubly encode
iirEncL = (iirEncL * (1.0 - iirEncFreq)) + (inputSampleL * iirEncFreq);
double highPart = ((inputSampleL-iirEncL)*2.848);
highPart += avgEncL; avgEncL = (inputSampleL-iirEncL)*1.152;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
double dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compEncL = (compEncL*(1.0-iirEncFreq))+(dubly*iirEncFreq);
inputSampleL += ((highPart*compEncL)*dublyAmount);
} //end Dubly encode L
iirEncR = (iirEncR * (1.0 - iirEncFreq)) + (inputSampleR * iirEncFreq);
highPart = ((inputSampleR-iirEncR)*2.848);
highPart += avgEncR; avgEncR = (inputSampleR-iirEncR)*1.152;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compEncR = (compEncR*(1.0-iirEncFreq))+(dubly*iirEncFreq);
inputSampleR += ((highPart*compEncR)*dublyAmount);
} //end Dubly encode R
if (inputSampleL > 1.57079633) inputSampleL = 1.57079633;
if (inputSampleL < -1.57079633) inputSampleL = -1.57079633;
inputSampleL = sin(inputSampleL);
if (inputSampleR > 1.57079633) inputSampleR = 1.57079633;
if (inputSampleR < -1.57079633) inputSampleR = -1.57079633;
inputSampleR = sin(inputSampleR);
//Dubly decode
iirDecL = (iirDecL * (1.0 - iirDecFreq)) + (inputSampleL * iirDecFreq);
highPart = ((inputSampleL-iirDecL)*2.628);
highPart += avgDecL; avgDecL = (inputSampleL-iirDecL)*1.372;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compDecL = (compDecL*(1.0-iirDecFreq))+(dubly*iirDecFreq);
inputSampleL += ((highPart*compDecL)*outlyAmount);
} //end Dubly decode L
iirDecR = (iirDecR * (1.0 - iirDecFreq)) + (inputSampleR * iirDecFreq);
highPart = ((inputSampleR-iirDecR)*2.628);
highPart += avgDecR; avgDecR = (inputSampleR-iirDecR)*1.372;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compDecR = (compDecR*(1.0-iirDecFreq))+(dubly*iirDecFreq);
inputSampleR += ((highPart*compDecR)*outlyAmount);
} //end Dubly decode R
if (outputGain != 1.0) {
inputSampleL *= outputGain;
inputSampleR *= outputGain;
}
//begin 64 bit stereo floating point dither
//int expon; frexp((double)inputSampleL, &expon);
fpdL ^= fpdL << 13; fpdL ^= fpdL >> 17; fpdL ^= fpdL << 5;
//inputSampleL += ((double(fpdL)-uint32_t(0x7fffffff)) * 1.1e-44l * pow(2,expon+62));
//frexp((double)inputSampleR, &expon);
fpdR ^= fpdR << 13; fpdR ^= fpdR >> 17; fpdR ^= fpdR << 5;
//inputSampleR += ((double(fpdR)-uint32_t(0x7fffffff)) * 1.1e-44l * pow(2,expon+62));
//end 64 bit stereo floating point dither
*out1 = inputSampleL;
*out2 = inputSampleR;
in1++;
in2++;
out1++;
out2++;
}
}

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/* ========================================
* ToTape8 - ToTape8.h
* Copyright (c) airwindows, Airwindows uses the MIT license
* ======================================== */
#ifndef __ToTape8_H
#include "ToTape8.h"
#endif
AudioEffect* createEffectInstance(audioMasterCallback audioMaster) {return new ToTape8(audioMaster);}
ToTape8::ToTape8(audioMasterCallback audioMaster) :
AudioEffectX(audioMaster, kNumPrograms, kNumParameters)
{
A = 0.5;
B = 0.5;
C = 0.5;
D = 0.5;
E = 0.5;
F = 0.5;
G = 0.5;
H = 0.5;
I = 0.5;
iirEncL = 0.0; iirDecL = 0.0;
compEncL = 1.0; compDecL = 1.0;
avgEncL = 0.0; avgDecL = 0.0;
iirEncR = 0.0; iirDecR = 0.0;
compEncR = 1.0; compDecR = 1.0;
avgEncR = 0.0; avgDecR = 0.0;
for (int temp = 0; temp < 1001; temp++) {dL[temp] = 0.0;dR[temp] = 0.0;}
sweepL = M_PI;
sweepR = M_PI;
nextmaxL = 0.5;
nextmaxR = 0.5;
gcount = 0;
for (int x = 0; x < gslew_total; x++) gslew[x] = 0.0;
iirMidRollerL = 0.0;
iirLowCutoffL = 0.0;
iirMidRollerR = 0.0;
iirLowCutoffR = 0.0;
headBumpL = 0.0;
headBumpR = 0.0;
for (int x = 0; x < hdb_total; x++) {hdbA[x] = 0.0;hdbB[x] = 0.0;}
//from ZBandpass, so I can use enums with it
iirDecL = 0.0;
iirDecR = 0.0;
lastSampleL = 0.0;
wasPosClipL = false;
wasNegClipL = false;
lastSampleR = 0.0;
wasPosClipR = false;
wasNegClipR = false;
for (int x = 0; x < 16; x++) {intermediateL[x] = 0.0; intermediateR[x] = 0.0;}
//this is reset: values being initialized only once. Startup values, whatever they are.
fpdL = 1.0; while (fpdL < 16386) fpdL = rand()*UINT32_MAX;
fpdR = 1.0; while (fpdR < 16386) fpdR = rand()*UINT32_MAX;
//this is reset: values being initialized only once. Startup values, whatever they are.
_canDo.insert("plugAsChannelInsert"); // plug-in can be used as a channel insert effect.
_canDo.insert("plugAsSend"); // plug-in can be used as a send effect.
_canDo.insert("x2in2out");
setNumInputs(kNumInputs);
setNumOutputs(kNumOutputs);
setUniqueID(kUniqueId);
canProcessReplacing(); // supports output replacing
canDoubleReplacing(); // supports double precision processing
programsAreChunks(true);
vst_strncpy (_programName, "Default", kVstMaxProgNameLen); // default program name
}
ToTape8::~ToTape8() {}
VstInt32 ToTape8::getVendorVersion () {return 1000;}
void ToTape8::setProgramName(char *name) {vst_strncpy (_programName, name, kVstMaxProgNameLen);}
void ToTape8::getProgramName(char *name) {vst_strncpy (name, _programName, kVstMaxProgNameLen);}
//airwindows likes to ignore this stuff. Make your own programs, and make a different plugin rather than
//trying to do versioning and preventing people from using older versions. Maybe they like the old one!
static float pinParameter(float data)
{
if (data < 0.0f) return 0.0f;
if (data > 1.0f) return 1.0f;
return data;
}
VstInt32 ToTape8::getChunk (void** data, bool isPreset)
{
float *chunkData = (float *)calloc(kNumParameters, sizeof(float));
chunkData[0] = A;
chunkData[1] = B;
chunkData[2] = C;
chunkData[3] = D;
chunkData[4] = E;
chunkData[5] = F;
chunkData[6] = G;
chunkData[7] = H;
chunkData[8] = I;
/* Note: The way this is set up, it will break if you manage to save settings on an Intel
machine and load them on a PPC Mac. However, it's fine if you stick to the machine you
started with. */
*data = chunkData;
return kNumParameters * sizeof(float);
}
VstInt32 ToTape8::setChunk (void* data, VstInt32 byteSize, bool isPreset)
{
float *chunkData = (float *)data;
A = pinParameter(chunkData[0]);
B = pinParameter(chunkData[1]);
C = pinParameter(chunkData[2]);
D = pinParameter(chunkData[3]);
E = pinParameter(chunkData[4]);
F = pinParameter(chunkData[5]);
G = pinParameter(chunkData[6]);
H = pinParameter(chunkData[7]);
I = pinParameter(chunkData[8]);
/* We're ignoring byteSize as we found it to be a filthy liar */
/* calculate any other fields you need here - you could copy in
code from setParameter() here. */
return 0;
}
void ToTape8::setParameter(VstInt32 index, float value) {
switch (index) {
case kParamA: A = value; break;
case kParamB: B = value; break;
case kParamC: C = value; break;
case kParamD: D = value; break;
case kParamE: E = value; break;
case kParamF: F = value; break;
case kParamG: G = value; break;
case kParamH: H = value; break;
case kParamI: I = value; break;
default: throw; // unknown parameter, shouldn't happen!
}
}
float ToTape8::getParameter(VstInt32 index) {
switch (index) {
case kParamA: return A; break;
case kParamB: return B; break;
case kParamC: return C; break;
case kParamD: return D; break;
case kParamE: return E; break;
case kParamF: return F; break;
case kParamG: return G; break;
case kParamH: return H; break;
case kParamI: return I; break;
default: break; // unknown parameter, shouldn't happen!
} return 0.0; //we only need to update the relevant name, this is simple to manage
}
void ToTape8::getParameterName(VstInt32 index, char *text) {
switch (index) {
case kParamA: vst_strncpy (text, "Input", kVstMaxParamStrLen); break;
case kParamB: vst_strncpy (text, "Tilt", kVstMaxParamStrLen); break;
case kParamC: vst_strncpy (text, "Shape", kVstMaxParamStrLen); break;
case kParamD: vst_strncpy (text, "Flutter", kVstMaxParamStrLen); break;
case kParamE: vst_strncpy (text, "FlutSpd", kVstMaxParamStrLen); break;
case kParamF: vst_strncpy (text, "Bias", kVstMaxParamStrLen); break;
case kParamG: vst_strncpy (text, "HeadBmp", kVstMaxParamStrLen); break;
case kParamH: vst_strncpy (text, "HeadFrq", kVstMaxParamStrLen); break;
case kParamI: vst_strncpy (text, "Output", kVstMaxParamStrLen); break;
default: break; // unknown parameter, shouldn't happen!
} //this is our labels for displaying in the VST host
}
void ToTape8::getParameterDisplay(VstInt32 index, char *text) {
switch (index) {
case kParamA: float2string (A, text, kVstMaxParamStrLen); break;
case kParamB: float2string (B, text, kVstMaxParamStrLen); break;
case kParamC: float2string (C, text, kVstMaxParamStrLen); break;
case kParamD: float2string (D, text, kVstMaxParamStrLen); break;
case kParamE: float2string (E, text, kVstMaxParamStrLen); break;
case kParamF: float2string (F, text, kVstMaxParamStrLen); break;
case kParamG: float2string (G, text, kVstMaxParamStrLen); break;
case kParamH: float2string (((H*H)*175.0)+25.0, text, kVstMaxParamStrLen); break;
case kParamI: float2string (I, text, kVstMaxParamStrLen); break;
default: break; // unknown parameter, shouldn't happen!
} //this displays the values and handles 'popups' where it's discrete choices
}
void ToTape8::getParameterLabel(VstInt32 index, char *text) {
switch (index) {
case kParamA: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamB: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamC: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamD: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamE: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamF: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamG: vst_strncpy (text, "", kVstMaxParamStrLen); break;
case kParamH: vst_strncpy (text, "hz", kVstMaxParamStrLen); break;
case kParamI: vst_strncpy (text, "", kVstMaxParamStrLen); break;
default: break; // unknown parameter, shouldn't happen!
}
}
VstInt32 ToTape8::canDo(char *text)
{ return (_canDo.find(text) == _canDo.end()) ? -1: 1; } // 1 = yes, -1 = no, 0 = don't know
bool ToTape8::getEffectName(char* name) {
vst_strncpy(name, "ToTape8", kVstMaxProductStrLen); return true;
}
VstPlugCategory ToTape8::getPlugCategory() {return kPlugCategEffect;}
bool ToTape8::getProductString(char* text) {
vst_strncpy (text, "airwindows ToTape8", kVstMaxProductStrLen); return true;
}
bool ToTape8::getVendorString(char* text) {
vst_strncpy (text, "airwindows", kVstMaxVendorStrLen); return true;
}

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/* ========================================
* ToTape8 - ToTape8.h
* Created 8/12/11 by SPIAdmin
* Copyright (c) Airwindows, Airwindows uses the MIT license
* ======================================== */
#ifndef __ToTape8_H
#define __ToTape8_H
#ifndef __audioeffect__
#include "audioeffectx.h"
#endif
#include <set>
#include <string>
#include <math.h>
enum {
kParamA =0,
kParamB =1,
kParamC =2,
kParamD =3,
kParamE =4,
kParamF =5,
kParamG =6,
kParamH =7,
kParamI =8,
kNumParameters = 9
}; //
const int kNumPrograms = 0;
const int kNumInputs = 2;
const int kNumOutputs = 2;
const unsigned long kUniqueId = 'totw'; //Change this to what the AU identity is!
class ToTape8 :
public AudioEffectX
{
public:
ToTape8(audioMasterCallback audioMaster);
~ToTape8();
virtual bool getEffectName(char* name); // The plug-in name
virtual VstPlugCategory getPlugCategory(); // The general category for the plug-in
virtual bool getProductString(char* text); // This is a unique plug-in string provided by Steinberg
virtual bool getVendorString(char* text); // Vendor info
virtual VstInt32 getVendorVersion(); // Version number
virtual void processReplacing (float** inputs, float** outputs, VstInt32 sampleFrames);
virtual void processDoubleReplacing (double** inputs, double** outputs, VstInt32 sampleFrames);
virtual void getProgramName(char *name); // read the name from the host
virtual void setProgramName(char *name); // changes the name of the preset displayed in the host
virtual VstInt32 getChunk (void** data, bool isPreset);
virtual VstInt32 setChunk (void* data, VstInt32 byteSize, bool isPreset);
virtual float getParameter(VstInt32 index); // get the parameter value at the specified index
virtual void setParameter(VstInt32 index, float value); // set the parameter at index to value
virtual void getParameterLabel(VstInt32 index, char *text); // label for the parameter (eg dB)
virtual void getParameterName(VstInt32 index, char *text); // name of the parameter
virtual void getParameterDisplay(VstInt32 index, char *text); // text description of the current value
virtual VstInt32 canDo(char *text);
private:
char _programName[kVstMaxProgNameLen + 1];
std::set< std::string > _canDo;
float A;
float B;
float C;
float D;
float E;
float F;
float G;
float H;
float I;
double iirEncL;
double iirDecL;
double compEncL;
double compDecL;
double avgEncL;
double avgDecL;
double iirEncR;
double iirDecR;
double compEncR;
double compDecR;
double avgEncR;
double avgDecR;
double dL[1002];
double dR[1002];
double sweepL;
double sweepR;
double nextmaxL;
double nextmaxR;
int gcount;
enum {
prevSampL1,
prevSampR1,
threshold1,
prevSampL2,
prevSampR2,
threshold2,
prevSampL3,
prevSampR3,
threshold3,
prevSampL4,
prevSampR4,
threshold4,
prevSampL5,
prevSampR5,
threshold5,
prevSampL6,
prevSampR6,
threshold6,
prevSampL7,
prevSampR7,
threshold7,
prevSampL8,
prevSampR8,
threshold8,
prevSampL9,
prevSampR9,
threshold9,
gslew_total
}; //fixed frequency pear filter for ultrasonics, stereo
double gslew[gslew_total]; //end bias
double iirMidRollerL;
double iirLowCutoffL;
double iirMidRollerR;
double iirLowCutoffR;
double headBumpL;
double headBumpR;
enum {
hdb_freq,
hdb_reso,
hdb_a0,
hdb_a1,
hdb_a2,
hdb_b1,
hdb_b2,
hdb_sL1,
hdb_sL2,
hdb_sR1,
hdb_sR2,
hdb_total
}; //fixed frequency biquad filter for ultrasonics, stereo
double hdbA[hdb_total];
double hdbB[hdb_total];
double lastSampleL;
double intermediateL[16];
bool wasPosClipL;
bool wasNegClipL;
double lastSampleR;
double intermediateR[16];
bool wasPosClipR;
bool wasNegClipR; //Stereo ClipOnly2
uint32_t fpdL;
uint32_t fpdR;
//default stuff
};
#endif

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/* ========================================
* ToTape8 - ToTape8.h
* Copyright (c) airwindows, Airwindows uses the MIT license
* ======================================== */
#ifndef __ToTape8_H
#include "ToTape8.h"
#endif
void ToTape8::processReplacing(float **inputs, float **outputs, VstInt32 sampleFrames)
{
float* in1 = inputs[0];
float* in2 = inputs[1];
float* out1 = outputs[0];
float* out2 = outputs[1];
double overallscale = 1.0;
overallscale /= 44100.0;
overallscale *= getSampleRate();
int spacing = floor(overallscale); //should give us working basic scaling, usually 2 or 4
if (spacing < 1) spacing = 1; if (spacing > 16) spacing = 16;
double inputGain = pow(A*2.0,2.0);
double dublyAmount = B*2.0;
double outlyAmount = (1.0-B)*-2.0;
if (outlyAmount < -1.0) outlyAmount = -1.0;
double iirEncFreq = (1.0-C)/overallscale;
double iirDecFreq = C/overallscale;
double iirMidFreq = ((C * 0.618) + 0.382)/overallscale;
double flutDepth = pow(D,6)*overallscale*50;
if (flutDepth > 498.0) flutDepth = 498.0;
double flutFrequency = (0.02*pow(E,3))/overallscale;
double bias = (F*2.0)-1.0;
double underBias = (pow(bias,4)*0.25)/overallscale;
double overBias = pow(1.0-bias,3)/overallscale;
if (bias > 0.0) underBias = 0.0;
if (bias < 0.0) overBias = 1.0/overallscale;
gslew[threshold9] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold8] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold7] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold6] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold5] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold4] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold3] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold2] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold1] = overBias;
overBias *= 1.618033988749894848204586;
double headBumpDrive = (G*0.1)/overallscale;
double headBumpMix = G*0.5;
double subCurve = sin(G*M_PI);
double iirSubFreq = (subCurve*0.008)/overallscale;
hdbA[hdb_freq] = (((H*H)*175.0)+25.0)/getSampleRate();
hdbB[hdb_freq] = hdbA[hdb_freq]*0.9375;
hdbB[hdb_reso] = hdbA[hdb_reso] = 0.618033988749894848204586;
hdbB[hdb_a1] = hdbA[hdb_a1] = 0.0;
double K = tan(M_PI * hdbA[hdb_freq]);
double norm = 1.0 / (1.0 + K / hdbA[hdb_reso] + K * K);
hdbA[hdb_a0] = K / hdbA[hdb_reso] * norm;
hdbA[hdb_a2] = -hdbA[hdb_a0];
hdbA[hdb_b1] = 2.0 * (K * K - 1.0) * norm;
hdbA[hdb_b2] = (1.0 - K / hdbA[hdb_reso] + K * K) * norm;
K = tan(M_PI * hdbB[hdb_freq]);
norm = 1.0 / (1.0 + K / hdbB[hdb_reso] + K * K);
hdbB[hdb_a0] = K / hdbB[hdb_reso] * norm;
hdbB[hdb_a2] = -hdbB[hdb_a0];
hdbB[hdb_b1] = 2.0 * (K * K - 1.0) * norm;
hdbB[hdb_b2] = (1.0 - K / hdbB[hdb_reso] + K * K) * norm;
double outputGain = I*2.0;
while (--sampleFrames >= 0)
{
double inputSampleL = *in1;
double inputSampleR = *in2;
if (fabs(inputSampleL)<1.18e-23) inputSampleL = fpdL * 1.18e-17;
if (fabs(inputSampleR)<1.18e-23) inputSampleR = fpdR * 1.18e-17;
if (inputGain != 1.0) {
inputSampleL *= inputGain;
inputSampleR *= inputGain;
}
//Dubly encode
iirEncL = (iirEncL * (1.0 - iirEncFreq)) + (inputSampleL * iirEncFreq);
double highPart = ((inputSampleL-iirEncL)*2.848);
highPart += avgEncL; avgEncL = (inputSampleL-iirEncL)*1.152;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
double dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compEncL = (compEncL*(1.0-iirEncFreq))+(dubly*iirEncFreq);
inputSampleL += ((highPart*compEncL)*dublyAmount);
} //end Dubly encode L
iirEncR = (iirEncR * (1.0 - iirEncFreq)) + (inputSampleR * iirEncFreq);
highPart = ((inputSampleR-iirEncR)*2.848);
highPart += avgEncR; avgEncR = (inputSampleR-iirEncR)*1.152;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compEncR = (compEncR*(1.0-iirEncFreq))+(dubly*iirEncFreq);
inputSampleR += ((highPart*compEncR)*dublyAmount);
} //end Dubly encode R
//begin Flutter
if (flutDepth > 0.0) {
if (gcount < 0 || gcount > 999) gcount = 999;
dL[gcount] = inputSampleL;
int count = gcount;
double offset = flutDepth + (flutDepth * sin(sweepL));
sweepL += nextmaxL * flutFrequency;
if (sweepL > (M_PI*2.0)) {
sweepL -= M_PI*2.0;
double flutA = 0.24 + (fpdL / (double)UINT32_MAX * 0.74);
fpdL ^= fpdL << 13; fpdL ^= fpdL >> 17; fpdL ^= fpdL << 5;
double flutB = 0.24 + (fpdL / (double)UINT32_MAX * 0.74);
if (fabs(flutA-sin(sweepR+nextmaxR))<fabs(flutB-sin(sweepR+nextmaxR))) nextmaxL = flutA; else nextmaxL = flutB;
}
count += (int)floor(offset);
inputSampleL = (dL[count-((count > 999)?1000:0)] * (1-(offset-floor(offset))));
inputSampleL += (dL[count+1-((count+1 > 999)?1000:0)] * (offset-floor(offset)));
dR[gcount] = inputSampleR;
count = gcount;
offset = flutDepth + (flutDepth * sin(sweepR));
sweepR += nextmaxR * flutFrequency;
if (sweepR > (M_PI*2.0)) {
sweepR -= M_PI*2.0;
double flutA = 0.24 + (fpdR / (double)UINT32_MAX * 0.74);
fpdR ^= fpdR << 13; fpdR ^= fpdR >> 17; fpdR ^= fpdR << 5;
double flutB = 0.24 + (fpdR / (double)UINT32_MAX * 0.74);
if (fabs(flutA-sin(sweepL+nextmaxL))<fabs(flutB-sin(sweepL+nextmaxL))) nextmaxR = flutA; else nextmaxR = flutB;
}
count += (int)floor(offset);
inputSampleR = (dR[count-((count > 999)?1000:0)] * (1-(offset-floor(offset))));
inputSampleR += (dR[count+1-((count+1 > 999)?1000:0)] * (offset-floor(offset)));
gcount--;
}
//end Flutter
//start bias routine
if (fabs(bias) > 0.001) {
for (int x = 0; x < gslew_total; x += 3) {
if (underBias > 0.0) {
double stuck = fabs(inputSampleL - (gslew[x]/0.975)) / underBias;
if (stuck < 1.0) inputSampleL = (inputSampleL * stuck) + ((gslew[x]/0.975)*(1.0-stuck));
stuck = fabs(inputSampleR - (gslew[x+1]/0.975)) / underBias;
if (stuck < 1.0) inputSampleR = (inputSampleR * stuck) + ((gslew[x+1]/0.975)*(1.0-stuck));
}
if ((inputSampleL - gslew[x]) > gslew[x+2]) inputSampleL = gslew[x] + gslew[x+2];
if (-(inputSampleL - gslew[x]) > gslew[x+2]) inputSampleL = gslew[x] - gslew[x+2];
gslew[x] = inputSampleL * 0.975;
if ((inputSampleR - gslew[x+1]) > gslew[x+2]) inputSampleR = gslew[x+1] + gslew[x+2];
if (-(inputSampleR - gslew[x+1]) > gslew[x+2]) inputSampleR = gslew[x+1] - gslew[x+2];
gslew[x+1] = inputSampleR * 0.975;
}
}
//end bias routine
//toTape basic algorithm L
iirMidRollerL = (iirMidRollerL * (1.0-iirMidFreq)) + (inputSampleL*iirMidFreq);
double HighsSampleL = inputSampleL - iirMidRollerL;
double LowsSampleL = iirMidRollerL;
if (iirSubFreq > 0.0) {
iirLowCutoffL = (iirLowCutoffL * (1.0-iirSubFreq)) + (LowsSampleL*iirSubFreq);
LowsSampleL -= iirLowCutoffL;
}
if (LowsSampleL > 1.57079633) LowsSampleL = 1.57079633;
if (LowsSampleL < -1.57079633) LowsSampleL = -1.57079633;
LowsSampleL = sin(LowsSampleL);
double thinnedHighSample = fabs(HighsSampleL)*1.57079633;
if (thinnedHighSample > 1.57079633) thinnedHighSample = 1.57079633;
thinnedHighSample = 1.0-cos(thinnedHighSample);
if (HighsSampleL < 0) thinnedHighSample = -thinnedHighSample;
HighsSampleL -= thinnedHighSample;
//toTape basic algorithm R
iirMidRollerR = (iirMidRollerR * (1.0-iirMidFreq)) + (inputSampleR*iirMidFreq);
double HighsSampleR = inputSampleR - iirMidRollerR;
double LowsSampleR = iirMidRollerR;
if (iirSubFreq > 0.0) {
iirLowCutoffR = (iirLowCutoffR * (1.0-iirSubFreq)) + (LowsSampleR*iirSubFreq);
LowsSampleR -= iirLowCutoffR;
}
if (LowsSampleR > 1.57079633) LowsSampleR = 1.57079633;
if (LowsSampleR < -1.57079633) LowsSampleR = -1.57079633;
LowsSampleR = sin(LowsSampleR);
thinnedHighSample = fabs(HighsSampleR)*1.57079633;
if (thinnedHighSample > 1.57079633) thinnedHighSample = 1.57079633;
thinnedHighSample = 1.0-cos(thinnedHighSample);
if (HighsSampleR < 0) thinnedHighSample = -thinnedHighSample;
HighsSampleR -= thinnedHighSample;
//begin HeadBump
double headBumpSampleL = 0.0;
double headBumpSampleR = 0.0;
if (headBumpMix > 0.0) {
headBumpL += (LowsSampleL * headBumpDrive);
headBumpL -= (headBumpL * headBumpL * headBumpL * (0.0618/sqrt(overallscale)));
headBumpR += (LowsSampleR * headBumpDrive);
headBumpR -= (headBumpR * headBumpR * headBumpR * (0.0618/sqrt(overallscale)));
double headBiqSampleL = (headBumpL * hdbA[hdb_a0]) + hdbA[hdb_sL1];
hdbA[hdb_sL1] = (headBumpL * hdbA[hdb_a1]) - (headBiqSampleL * hdbA[hdb_b1]) + hdbA[hdb_sL2];
hdbA[hdb_sL2] = (headBumpL * hdbA[hdb_a2]) - (headBiqSampleL * hdbA[hdb_b2]);
headBumpSampleL = (headBiqSampleL * hdbB[hdb_a0]) + hdbB[hdb_sL1];
hdbB[hdb_sL1] = (headBiqSampleL * hdbB[hdb_a1]) - (headBumpSampleL * hdbB[hdb_b1]) + hdbB[hdb_sL2];
hdbB[hdb_sL2] = (headBiqSampleL * hdbB[hdb_a2]) - (headBumpSampleL * hdbB[hdb_b2]);
double headBiqSampleR = (headBumpR * hdbA[hdb_a0]) + hdbA[hdb_sR1];
hdbA[hdb_sR1] = (headBumpR * hdbA[hdb_a1]) - (headBiqSampleR * hdbA[hdb_b1]) + hdbA[hdb_sR2];
hdbA[hdb_sR2] = (headBumpR * hdbA[hdb_a2]) - (headBiqSampleR * hdbA[hdb_b2]);
headBumpSampleR = (headBiqSampleR * hdbB[hdb_a0]) + hdbB[hdb_sR1];
hdbB[hdb_sR1] = (headBiqSampleR * hdbB[hdb_a1]) - (headBumpSampleR * hdbB[hdb_b1]) + hdbB[hdb_sR2];
hdbB[hdb_sR2] = (headBiqSampleR * hdbB[hdb_a2]) - (headBumpSampleR * hdbB[hdb_b2]);
}
//end HeadBump
inputSampleL = LowsSampleL + HighsSampleL + (headBumpSampleL * headBumpMix);
inputSampleR = LowsSampleR + HighsSampleR + (headBumpSampleR * headBumpMix);
//Dubly decode
iirDecL = (iirDecL * (1.0 - iirDecFreq)) + (inputSampleL * iirDecFreq);
highPart = ((inputSampleL-iirDecL)*2.628);
highPart += avgDecL; avgDecL = (inputSampleL-iirDecL)*1.372;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compDecL = (compDecL*(1.0-iirDecFreq))+(dubly*iirDecFreq);
inputSampleL += ((highPart*compDecL)*outlyAmount);
} //end Dubly decode L
iirDecR = (iirDecR * (1.0 - iirDecFreq)) + (inputSampleR * iirDecFreq);
highPart = ((inputSampleR-iirDecR)*2.628);
highPart += avgDecR; avgDecR = (inputSampleR-iirDecR)*1.372;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compDecR = (compDecR*(1.0-iirDecFreq))+(dubly*iirDecFreq);
inputSampleR += ((highPart*compDecR)*outlyAmount);
} //end Dubly decode R
if (outputGain != 1.0) {
inputSampleL *= outputGain;
inputSampleR *= outputGain;
}
//begin ClipOnly2 stereo as a little, compressed chunk that can be dropped into code
if (inputSampleL > 4.0) inputSampleL = 4.0; if (inputSampleL < -4.0) inputSampleL = -4.0;
if (wasPosClipL == true) { //current will be over
if (inputSampleL<lastSampleL) lastSampleL=0.7058208+(inputSampleL*0.2609148);
else lastSampleL = 0.2491717+(lastSampleL*0.7390851);
} wasPosClipL = false;
if (inputSampleL>0.9549925859) {wasPosClipL=true;inputSampleL=0.7058208+(lastSampleL*0.2609148);}
if (wasNegClipL == true) { //current will be -over
if (inputSampleL > lastSampleL) lastSampleL=-0.7058208+(inputSampleL*0.2609148);
else lastSampleL=-0.2491717+(lastSampleL*0.7390851);
} wasNegClipL = false;
if (inputSampleL<-0.9549925859) {wasNegClipL=true;inputSampleL=-0.7058208+(lastSampleL*0.2609148);}
intermediateL[spacing] = inputSampleL;
inputSampleL = lastSampleL; //Latency is however many samples equals one 44.1k sample
for (int x = spacing; x > 0; x--) intermediateL[x-1] = intermediateL[x];
lastSampleL = intermediateL[0]; //run a little buffer to handle this
if (inputSampleR > 4.0) inputSampleR = 4.0; if (inputSampleR < -4.0) inputSampleR = -4.0;
if (wasPosClipR == true) { //current will be over
if (inputSampleR<lastSampleR) lastSampleR=0.7058208+(inputSampleR*0.2609148);
else lastSampleR = 0.2491717+(lastSampleR*0.7390851);
} wasPosClipR = false;
if (inputSampleR>0.9549925859) {wasPosClipR=true;inputSampleR=0.7058208+(lastSampleR*0.2609148);}
if (wasNegClipR == true) { //current will be -over
if (inputSampleR > lastSampleR) lastSampleR=-0.7058208+(inputSampleR*0.2609148);
else lastSampleR=-0.2491717+(lastSampleR*0.7390851);
} wasNegClipR = false;
if (inputSampleR<-0.9549925859) {wasNegClipR=true;inputSampleR=-0.7058208+(lastSampleR*0.2609148);}
intermediateR[spacing] = inputSampleR;
inputSampleR = lastSampleR; //Latency is however many samples equals one 44.1k sample
for (int x = spacing; x > 0; x--) intermediateR[x-1] = intermediateR[x];
lastSampleR = intermediateR[0]; //run a little buffer to handle this
//end ClipOnly2 stereo as a little, compressed chunk that can be dropped into code
//begin 32 bit stereo floating point dither
int expon; frexpf((float)inputSampleL, &expon);
fpdL ^= fpdL << 13; fpdL ^= fpdL >> 17; fpdL ^= fpdL << 5;
inputSampleL += ((double(fpdL)-uint32_t(0x7fffffff)) * 5.5e-36l * pow(2,expon+62));
frexpf((float)inputSampleR, &expon);
fpdR ^= fpdR << 13; fpdR ^= fpdR >> 17; fpdR ^= fpdR << 5;
inputSampleR += ((double(fpdR)-uint32_t(0x7fffffff)) * 5.5e-36l * pow(2,expon+62));
//end 32 bit stereo floating point dither
*out1 = inputSampleL;
*out2 = inputSampleR;
in1++;
in2++;
out1++;
out2++;
}
}
void ToTape8::processDoubleReplacing(double **inputs, double **outputs, VstInt32 sampleFrames)
{
double* in1 = inputs[0];
double* in2 = inputs[1];
double* out1 = outputs[0];
double* out2 = outputs[1];
double overallscale = 1.0;
overallscale /= 44100.0;
overallscale *= getSampleRate();
int spacing = floor(overallscale); //should give us working basic scaling, usually 2 or 4
if (spacing < 1) spacing = 1; if (spacing > 16) spacing = 16;
double inputGain = pow(A*2.0,2.0);
double dublyAmount = B*2.0;
double outlyAmount = (1.0-B)*-2.0;
if (outlyAmount < -1.0) outlyAmount = -1.0;
double iirEncFreq = (1.0-C)/overallscale;
double iirDecFreq = C/overallscale;
double iirMidFreq = ((C * 0.618) + 0.382)/overallscale;
double flutDepth = pow(D,6)*overallscale*50;
if (flutDepth > 498.0) flutDepth = 498.0;
double flutFrequency = (0.02*pow(E,3))/overallscale;
double bias = (F*2.0)-1.0;
double underBias = (pow(bias,4)*0.25)/overallscale;
double overBias = pow(1.0-bias,3)/overallscale;
if (bias > 0.0) underBias = 0.0;
if (bias < 0.0) overBias = 1.0/overallscale;
gslew[threshold9] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold8] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold7] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold6] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold5] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold4] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold3] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold2] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold1] = overBias;
overBias *= 1.618033988749894848204586;
double headBumpDrive = (G*0.1)/overallscale;
double headBumpMix = G*0.5;
double subCurve = sin(G*M_PI);
double iirSubFreq = (subCurve*0.008)/overallscale;
hdbA[hdb_freq] = (((H*H)*175.0)+25.0)/getSampleRate();
hdbB[hdb_freq] = hdbA[hdb_freq]*0.9375;
hdbB[hdb_reso] = hdbA[hdb_reso] = 0.618033988749894848204586;
hdbB[hdb_a1] = hdbA[hdb_a1] = 0.0;
double K = tan(M_PI * hdbA[hdb_freq]);
double norm = 1.0 / (1.0 + K / hdbA[hdb_reso] + K * K);
hdbA[hdb_a0] = K / hdbA[hdb_reso] * norm;
hdbA[hdb_a2] = -hdbA[hdb_a0];
hdbA[hdb_b1] = 2.0 * (K * K - 1.0) * norm;
hdbA[hdb_b2] = (1.0 - K / hdbA[hdb_reso] + K * K) * norm;
K = tan(M_PI * hdbB[hdb_freq]);
norm = 1.0 / (1.0 + K / hdbB[hdb_reso] + K * K);
hdbB[hdb_a0] = K / hdbB[hdb_reso] * norm;
hdbB[hdb_a2] = -hdbB[hdb_a0];
hdbB[hdb_b1] = 2.0 * (K * K - 1.0) * norm;
hdbB[hdb_b2] = (1.0 - K / hdbB[hdb_reso] + K * K) * norm;
double outputGain = I*2.0;
while (--sampleFrames >= 0)
{
double inputSampleL = *in1;
double inputSampleR = *in2;
if (fabs(inputSampleL)<1.18e-23) inputSampleL = fpdL * 1.18e-17;
if (fabs(inputSampleR)<1.18e-23) inputSampleR = fpdR * 1.18e-17;
if (inputGain != 1.0) {
inputSampleL *= inputGain;
inputSampleR *= inputGain;
}
//Dubly encode
iirEncL = (iirEncL * (1.0 - iirEncFreq)) + (inputSampleL * iirEncFreq);
double highPart = ((inputSampleL-iirEncL)*2.848);
highPart += avgEncL; avgEncL = (inputSampleL-iirEncL)*1.152;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
double dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compEncL = (compEncL*(1.0-iirEncFreq))+(dubly*iirEncFreq);
inputSampleL += ((highPart*compEncL)*dublyAmount);
} //end Dubly encode L
iirEncR = (iirEncR * (1.0 - iirEncFreq)) + (inputSampleR * iirEncFreq);
highPart = ((inputSampleR-iirEncR)*2.848);
highPart += avgEncR; avgEncR = (inputSampleR-iirEncR)*1.152;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compEncR = (compEncR*(1.0-iirEncFreq))+(dubly*iirEncFreq);
inputSampleR += ((highPart*compEncR)*dublyAmount);
} //end Dubly encode R
//begin Flutter
if (flutDepth > 0.0) {
if (gcount < 0 || gcount > 999) gcount = 999;
dL[gcount] = inputSampleL;
int count = gcount;
double offset = flutDepth + (flutDepth * sin(sweepL));
sweepL += nextmaxL * flutFrequency;
if (sweepL > (M_PI*2.0)) {
sweepL -= M_PI*2.0;
double flutA = 0.24 + (fpdL / (double)UINT32_MAX * 0.74);
fpdL ^= fpdL << 13; fpdL ^= fpdL >> 17; fpdL ^= fpdL << 5;
double flutB = 0.24 + (fpdL / (double)UINT32_MAX * 0.74);
if (fabs(flutA-sin(sweepR+nextmaxR))<fabs(flutB-sin(sweepR+nextmaxR))) nextmaxL = flutA; else nextmaxL = flutB;
}
count += (int)floor(offset);
inputSampleL = (dL[count-((count > 999)?1000:0)] * (1-(offset-floor(offset))));
inputSampleL += (dL[count+1-((count+1 > 999)?1000:0)] * (offset-floor(offset)));
dR[gcount] = inputSampleR;
count = gcount;
offset = flutDepth + (flutDepth * sin(sweepR));
sweepR += nextmaxR * flutFrequency;
if (sweepR > (M_PI*2.0)) {
sweepR -= M_PI*2.0;
double flutA = 0.24 + (fpdR / (double)UINT32_MAX * 0.74);
fpdR ^= fpdR << 13; fpdR ^= fpdR >> 17; fpdR ^= fpdR << 5;
double flutB = 0.24 + (fpdR / (double)UINT32_MAX * 0.74);
if (fabs(flutA-sin(sweepL+nextmaxL))<fabs(flutB-sin(sweepL+nextmaxL))) nextmaxR = flutA; else nextmaxR = flutB;
}
count += (int)floor(offset);
inputSampleR = (dR[count-((count > 999)?1000:0)] * (1-(offset-floor(offset))));
inputSampleR += (dR[count+1-((count+1 > 999)?1000:0)] * (offset-floor(offset)));
gcount--;
}
//end Flutter
//start bias routine
if (fabs(bias) > 0.001) {
for (int x = 0; x < gslew_total; x += 3) {
if (underBias > 0.0) {
double stuck = fabs(inputSampleL - (gslew[x]/0.975)) / underBias;
if (stuck < 1.0) inputSampleL = (inputSampleL * stuck) + ((gslew[x]/0.975)*(1.0-stuck));
stuck = fabs(inputSampleR - (gslew[x+1]/0.975)) / underBias;
if (stuck < 1.0) inputSampleR = (inputSampleR * stuck) + ((gslew[x+1]/0.975)*(1.0-stuck));
}
if ((inputSampleL - gslew[x]) > gslew[x+2]) inputSampleL = gslew[x] + gslew[x+2];
if (-(inputSampleL - gslew[x]) > gslew[x+2]) inputSampleL = gslew[x] - gslew[x+2];
gslew[x] = inputSampleL * 0.975;
if ((inputSampleR - gslew[x+1]) > gslew[x+2]) inputSampleR = gslew[x+1] + gslew[x+2];
if (-(inputSampleR - gslew[x+1]) > gslew[x+2]) inputSampleR = gslew[x+1] - gslew[x+2];
gslew[x+1] = inputSampleR * 0.975;
}
}
//end bias routine
//toTape basic algorithm L
iirMidRollerL = (iirMidRollerL * (1.0-iirMidFreq)) + (inputSampleL*iirMidFreq);
double HighsSampleL = inputSampleL - iirMidRollerL;
double LowsSampleL = iirMidRollerL;
if (iirSubFreq > 0.0) {
iirLowCutoffL = (iirLowCutoffL * (1.0-iirSubFreq)) + (LowsSampleL*iirSubFreq);
LowsSampleL -= iirLowCutoffL;
}
if (LowsSampleL > 1.57079633) LowsSampleL = 1.57079633;
if (LowsSampleL < -1.57079633) LowsSampleL = -1.57079633;
LowsSampleL = sin(LowsSampleL);
double thinnedHighSample = fabs(HighsSampleL)*1.57079633;
if (thinnedHighSample > 1.57079633) thinnedHighSample = 1.57079633;
thinnedHighSample = 1.0-cos(thinnedHighSample);
if (HighsSampleL < 0) thinnedHighSample = -thinnedHighSample;
HighsSampleL -= thinnedHighSample;
//toTape basic algorithm R
iirMidRollerR = (iirMidRollerR * (1.0-iirMidFreq)) + (inputSampleR*iirMidFreq);
double HighsSampleR = inputSampleR - iirMidRollerR;
double LowsSampleR = iirMidRollerR;
if (iirSubFreq > 0.0) {
iirLowCutoffR = (iirLowCutoffR * (1.0-iirSubFreq)) + (LowsSampleR*iirSubFreq);
LowsSampleR -= iirLowCutoffR;
}
if (LowsSampleR > 1.57079633) LowsSampleR = 1.57079633;
if (LowsSampleR < -1.57079633) LowsSampleR = -1.57079633;
LowsSampleR = sin(LowsSampleR);
thinnedHighSample = fabs(HighsSampleR)*1.57079633;
if (thinnedHighSample > 1.57079633) thinnedHighSample = 1.57079633;
thinnedHighSample = 1.0-cos(thinnedHighSample);
if (HighsSampleR < 0) thinnedHighSample = -thinnedHighSample;
HighsSampleR -= thinnedHighSample;
//begin HeadBump
double headBumpSampleL = 0.0;
double headBumpSampleR = 0.0;
if (headBumpMix > 0.0) {
headBumpL += (LowsSampleL * headBumpDrive);
headBumpL -= (headBumpL * headBumpL * headBumpL * (0.0618/sqrt(overallscale)));
headBumpR += (LowsSampleR * headBumpDrive);
headBumpR -= (headBumpR * headBumpR * headBumpR * (0.0618/sqrt(overallscale)));
double headBiqSampleL = (headBumpL * hdbA[hdb_a0]) + hdbA[hdb_sL1];
hdbA[hdb_sL1] = (headBumpL * hdbA[hdb_a1]) - (headBiqSampleL * hdbA[hdb_b1]) + hdbA[hdb_sL2];
hdbA[hdb_sL2] = (headBumpL * hdbA[hdb_a2]) - (headBiqSampleL * hdbA[hdb_b2]);
headBumpSampleL = (headBiqSampleL * hdbB[hdb_a0]) + hdbB[hdb_sL1];
hdbB[hdb_sL1] = (headBiqSampleL * hdbB[hdb_a1]) - (headBumpSampleL * hdbB[hdb_b1]) + hdbB[hdb_sL2];
hdbB[hdb_sL2] = (headBiqSampleL * hdbB[hdb_a2]) - (headBumpSampleL * hdbB[hdb_b2]);
double headBiqSampleR = (headBumpR * hdbA[hdb_a0]) + hdbA[hdb_sR1];
hdbA[hdb_sR1] = (headBumpR * hdbA[hdb_a1]) - (headBiqSampleR * hdbA[hdb_b1]) + hdbA[hdb_sR2];
hdbA[hdb_sR2] = (headBumpR * hdbA[hdb_a2]) - (headBiqSampleR * hdbA[hdb_b2]);
headBumpSampleR = (headBiqSampleR * hdbB[hdb_a0]) + hdbB[hdb_sR1];
hdbB[hdb_sR1] = (headBiqSampleR * hdbB[hdb_a1]) - (headBumpSampleR * hdbB[hdb_b1]) + hdbB[hdb_sR2];
hdbB[hdb_sR2] = (headBiqSampleR * hdbB[hdb_a2]) - (headBumpSampleR * hdbB[hdb_b2]);
}
//end HeadBump
inputSampleL = LowsSampleL + HighsSampleL + (headBumpSampleL * headBumpMix);
inputSampleR = LowsSampleR + HighsSampleR + (headBumpSampleR * headBumpMix);
//Dubly decode
iirDecL = (iirDecL * (1.0 - iirDecFreq)) + (inputSampleL * iirDecFreq);
highPart = ((inputSampleL-iirDecL)*2.628);
highPart += avgDecL; avgDecL = (inputSampleL-iirDecL)*1.372;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compDecL = (compDecL*(1.0-iirDecFreq))+(dubly*iirDecFreq);
inputSampleL += ((highPart*compDecL)*outlyAmount);
} //end Dubly decode L
iirDecR = (iirDecR * (1.0 - iirDecFreq)) + (inputSampleR * iirDecFreq);
highPart = ((inputSampleR-iirDecR)*2.628);
highPart += avgDecR; avgDecR = (inputSampleR-iirDecR)*1.372;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compDecR = (compDecR*(1.0-iirDecFreq))+(dubly*iirDecFreq);
inputSampleR += ((highPart*compDecR)*outlyAmount);
} //end Dubly decode R
if (outputGain != 1.0) {
inputSampleL *= outputGain;
inputSampleR *= outputGain;
}
//begin ClipOnly2 stereo as a little, compressed chunk that can be dropped into code
if (inputSampleL > 4.0) inputSampleL = 4.0; if (inputSampleL < -4.0) inputSampleL = -4.0;
if (wasPosClipL == true) { //current will be over
if (inputSampleL<lastSampleL) lastSampleL=0.7058208+(inputSampleL*0.2609148);
else lastSampleL = 0.2491717+(lastSampleL*0.7390851);
} wasPosClipL = false;
if (inputSampleL>0.9549925859) {wasPosClipL=true;inputSampleL=0.7058208+(lastSampleL*0.2609148);}
if (wasNegClipL == true) { //current will be -over
if (inputSampleL > lastSampleL) lastSampleL=-0.7058208+(inputSampleL*0.2609148);
else lastSampleL=-0.2491717+(lastSampleL*0.7390851);
} wasNegClipL = false;
if (inputSampleL<-0.9549925859) {wasNegClipL=true;inputSampleL=-0.7058208+(lastSampleL*0.2609148);}
intermediateL[spacing] = inputSampleL;
inputSampleL = lastSampleL; //Latency is however many samples equals one 44.1k sample
for (int x = spacing; x > 0; x--) intermediateL[x-1] = intermediateL[x];
lastSampleL = intermediateL[0]; //run a little buffer to handle this
if (inputSampleR > 4.0) inputSampleR = 4.0; if (inputSampleR < -4.0) inputSampleR = -4.0;
if (wasPosClipR == true) { //current will be over
if (inputSampleR<lastSampleR) lastSampleR=0.7058208+(inputSampleR*0.2609148);
else lastSampleR = 0.2491717+(lastSampleR*0.7390851);
} wasPosClipR = false;
if (inputSampleR>0.9549925859) {wasPosClipR=true;inputSampleR=0.7058208+(lastSampleR*0.2609148);}
if (wasNegClipR == true) { //current will be -over
if (inputSampleR > lastSampleR) lastSampleR=-0.7058208+(inputSampleR*0.2609148);
else lastSampleR=-0.2491717+(lastSampleR*0.7390851);
} wasNegClipR = false;
if (inputSampleR<-0.9549925859) {wasNegClipR=true;inputSampleR=-0.7058208+(lastSampleR*0.2609148);}
intermediateR[spacing] = inputSampleR;
inputSampleR = lastSampleR; //Latency is however many samples equals one 44.1k sample
for (int x = spacing; x > 0; x--) intermediateR[x-1] = intermediateR[x];
lastSampleR = intermediateR[0]; //run a little buffer to handle this
//end ClipOnly2 stereo as a little, compressed chunk that can be dropped into code
//begin 64 bit stereo floating point dither
//int expon; frexp((double)inputSampleL, &expon);
fpdL ^= fpdL << 13; fpdL ^= fpdL >> 17; fpdL ^= fpdL << 5;
//inputSampleL += ((double(fpdL)-uint32_t(0x7fffffff)) * 1.1e-44l * pow(2,expon+62));
//frexp((double)inputSampleR, &expon);
fpdR ^= fpdR << 13; fpdR ^= fpdR >> 17; fpdR ^= fpdR << 5;
//inputSampleR += ((double(fpdR)-uint32_t(0x7fffffff)) * 1.1e-44l * pow(2,expon+62));
//end 64 bit stereo floating point dither
*out1 = inputSampleL;
*out2 = inputSampleR;
in1++;
in2++;
out1++;
out2++;
}
}

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_ConsoleXPreEntry

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/*
* File: ConsoleXPre.h
*
* Version: 1.0
*
* Created: 9/20/24
*
* Copyright: Copyright © 2024 Airwindows, Airwindows uses the MIT license
*
* Disclaimer: IMPORTANT: This Apple software is supplied to you by Apple Computer, Inc. ("Apple") in
* consideration of your agreement to the following terms, and your use, installation, modification
* or redistribution of this Apple software constitutes acceptance of these terms. If you do
* not agree with these terms, please do not use, install, modify or redistribute this Apple
* software.
*
* In consideration of your agreement to abide by the following terms, and subject to these terms,
* Apple grants you a personal, non-exclusive license, under Apple's copyrights in this
* original Apple software (the "Apple Software"), to use, reproduce, modify and redistribute the
* Apple Software, with or without modifications, in source and/or binary forms; provided that if you
* redistribute the Apple Software in its entirety and without modifications, you must retain this
* notice and the following text and disclaimers in all such redistributions of the Apple Software.
* Neither the name, trademarks, service marks or logos of Apple Computer, Inc. may be used to
* endorse or promote products derived from the Apple Software without specific prior written
* permission from Apple. Except as expressly stated in this notice, no other rights or
* licenses, express or implied, are granted by Apple herein, including but not limited to any
* patent rights that may be infringed by your derivative works or by other works in which the
* Apple Software may be incorporated.
*
* The Apple Software is provided by Apple on an "AS IS" basis. APPLE MAKES NO WARRANTIES, EXPRESS OR
* IMPLIED, INCLUDING WITHOUT LIMITATION THE IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE, REGARDING THE APPLE SOFTWARE OR ITS USE AND OPERATION ALONE
* OR IN COMBINATION WITH YOUR PRODUCTS.
*
* IN NO EVENT SHALL APPLE BE LIABLE FOR ANY SPECIAL, INDIRECT, INCIDENTAL OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) ARISING IN ANY WAY OUT OF THE USE,
* REPRODUCTION, MODIFICATION AND/OR DISTRIBUTION OF THE APPLE SOFTWARE, HOWEVER CAUSED AND WHETHER
* UNDER THEORY OF CONTRACT, TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY OR OTHERWISE, EVEN
* IF APPLE HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
*/
#include "AUEffectBase.h"
#include "ConsoleXPreVersion.h"
#if AU_DEBUG_DISPATCHER
#include "AUDebugDispatcher.h"
#endif
#ifndef __ConsoleXPre_h__
#define __ConsoleXPre_h__
#pragma mark ____ConsoleXPre Parameters
// parameters
static const float kDefaultValue_ParamHIP = 0.0;
static const float kDefaultValue_ParamLOP = 0.0;
static CFStringRef kParameterHIPName = CFSTR("Highpas");
static CFStringRef kParameterLOPName = CFSTR("Lowpass");
//distributed highpass and lowpass
static const float kDefaultValue_ParamAIR = 0.5;
static const float kDefaultValue_ParamFIR = 0.5;
static const float kDefaultValue_ParamSTO = 0.5;
static const float kDefaultValue_ParamRNG = 0.5;
static const float kDefaultValue_ParamFCT = 1.0;
static const float kDefaultValue_ParamSCT = 1.0;
static const float kDefaultValue_ParamFCR = 1.0;
static const float kDefaultValue_ParamSCR = 1.0;
static const float kDefaultValue_ParamFCA = 0.5;
static const float kDefaultValue_ParamSCA = 0.5;
static const float kDefaultValue_ParamFCL = 0.5;
static const float kDefaultValue_ParamSCL = 0.5;
static const float kDefaultValue_ParamFGT = 0.0;
static const float kDefaultValue_ParamSGT = 0.0;
static const float kDefaultValue_ParamFGR = 1.0;
static const float kDefaultValue_ParamSGR = 1.0;
static const float kDefaultValue_ParamFGS = 0.5;
static const float kDefaultValue_ParamSGS = 0.5;
static const float kDefaultValue_ParamFGL = 0.5;
static const float kDefaultValue_ParamSGL = 0.5;
static CFStringRef kParameterAIRName = CFSTR("Air");
static CFStringRef kParameterFIRName = CFSTR("Fire");
static CFStringRef kParameterSTOName = CFSTR("Stone");
static CFStringRef kParameterRNGName = CFSTR("Range");
static CFStringRef kParameterFCTName = CFSTR("FC Thrs");
static CFStringRef kParameterSCTName = CFSTR("SC Thrs");
static CFStringRef kParameterFCRName = CFSTR("FC Rati");
static CFStringRef kParameterSCRName = CFSTR("SC Rati");
static CFStringRef kParameterFCAName = CFSTR("FC Atk");
static CFStringRef kParameterSCAName = CFSTR("SC Atk");
static CFStringRef kParameterFCLName = CFSTR("FC Rls");
static CFStringRef kParameterSCLName = CFSTR("SC Rls");
static CFStringRef kParameterFGTName = CFSTR("FG Thrs");
static CFStringRef kParameterSGTName = CFSTR("SG Thrs");
static CFStringRef kParameterFGRName = CFSTR("FG Rati");
static CFStringRef kParameterSGRName = CFSTR("SG Rati");
static CFStringRef kParameterFGSName = CFSTR("FG Sust");
static CFStringRef kParameterSGSName = CFSTR("SG Sust");
static CFStringRef kParameterFGLName = CFSTR("FG Rls");
static CFStringRef kParameterSGLName = CFSTR("SG Rls");
//Stonefire Compression and Gate
static const float kDefaultValue_ParamTRF = 0.5;
static const float kDefaultValue_ParamTRG = 0.5;
static const float kDefaultValue_ParamTRR = 0.5;
static const float kDefaultValue_ParamHMF = 0.5;
static const float kDefaultValue_ParamHMG = 0.5;
static const float kDefaultValue_ParamHMR = 0.5;
static const float kDefaultValue_ParamLMF = 0.5;
static const float kDefaultValue_ParamLMG = 0.5;
static const float kDefaultValue_ParamLMR = 0.5;
static const float kDefaultValue_ParamBSF = 0.5;
static const float kDefaultValue_ParamBSG = 0.5;
static const float kDefaultValue_ParamBSR = 0.5;
static CFStringRef kParameterTRFName = CFSTR("Tr Freq");
static CFStringRef kParameterTRGName = CFSTR("Treble");
static CFStringRef kParameterTRRName = CFSTR("Tr Reso");
static CFStringRef kParameterHMFName = CFSTR("HM Freq");
static CFStringRef kParameterHMGName = CFSTR("HighMid");
static CFStringRef kParameterHMRName = CFSTR("HM Reso");
static CFStringRef kParameterLMFName = CFSTR("LM Freq");
static CFStringRef kParameterLMGName = CFSTR("LowMid");
static CFStringRef kParameterLMRName = CFSTR("LM Reso");
static CFStringRef kParameterBSFName = CFSTR("Bs Freq");
static CFStringRef kParameterBSGName = CFSTR("Bass");
static CFStringRef kParameterBSRName = CFSTR("Bs Reso");
//Parametric
static const float kDefaultValue_ParamDSC = 100.0;
static const float kDefaultValue_ParamPAN = 0.5;
static const float kDefaultValue_ParamFAD = 0.5;
static CFStringRef kParameterDSCName = CFSTR("Top dB");
static CFStringRef kParameterPANName = CFSTR("Pan");
static CFStringRef kParameterFADName = CFSTR("Fader");
//Discontinuity, Pan, Fader
enum {
kParam_HIP = 0,
kParam_LOP = 1,
kParam_AIR = 2,
kParam_FIR = 3,
kParam_STO = 4,
kParam_RNG = 5,
kParam_FCT = 6,
kParam_SCT = 7,
kParam_FCR = 8,
kParam_SCR = 9,
kParam_FCA = 10,
kParam_SCA = 11,
kParam_FCL = 12,
kParam_SCL = 13,
kParam_FGT = 14,
kParam_SGT = 15,
kParam_FGR = 16,
kParam_SGR = 17,
kParam_FGS = 18,
kParam_SGS = 19,
kParam_FGL = 20,
kParam_SGL = 21,
kParam_TRF = 22,
kParam_TRG = 23,
kParam_TRR = 24,
kParam_HMF = 25,
kParam_HMG = 26,
kParam_HMR = 27,
kParam_LMF = 28,
kParam_LMG = 29,
kParam_LMR = 30,
kParam_BSF = 31,
kParam_BSG = 32,
kParam_BSR = 33,
kParam_DSC = 34,
kParam_PAN = 35,
kParam_FAD = 36,
//Add your parameters here...
kNumberOfParameters=37
};
const int dscBuf = 90;
#pragma mark ____ConsoleXPre
class ConsoleXPre : public AUEffectBase
{
public:
ConsoleXPre(AudioUnit component);
#if AU_DEBUG_DISPATCHER
virtual ~ConsoleXPre () { delete mDebugDispatcher; }
#endif
virtual ComponentResult Reset(AudioUnitScope inScope, AudioUnitElement inElement);
virtual OSStatus ProcessBufferLists(AudioUnitRenderActionFlags & ioActionFlags,
const AudioBufferList & inBuffer, AudioBufferList & outBuffer,
UInt32 inFramesToProcess);
virtual UInt32 SupportedNumChannels(const AUChannelInfo ** outInfo);
virtual ComponentResult GetParameterValueStrings(AudioUnitScope inScope,
AudioUnitParameterID inParameterID,
CFArrayRef * outStrings);
virtual ComponentResult GetParameterInfo(AudioUnitScope inScope,
AudioUnitParameterID inParameterID,
AudioUnitParameterInfo &outParameterInfo);
virtual ComponentResult GetPropertyInfo(AudioUnitPropertyID inID,
AudioUnitScope inScope,
AudioUnitElement inElement,
UInt32 & outDataSize,
Boolean & outWritable );
virtual ComponentResult GetProperty(AudioUnitPropertyID inID,
AudioUnitScope inScope,
AudioUnitElement inElement,
void * outData);
virtual ComponentResult Initialize();
virtual bool SupportsTail () { return true; }
virtual Float64 GetTailTime() {return (1.0/GetSampleRate())*0.0;} //in SECONDS! gsr * a number = in samples
virtual Float64 GetLatency() {return (1.0/GetSampleRate())*0.0;} // in SECONDS! gsr * a number = in samples
/*! @method Version */
virtual ComponentResult Version() { return kConsoleXPreVersion; }
private:
enum {
hilp_freq, hilp_temp,
hilp_a0, hilp_a1, hilp_b1, hilp_b2,
hilp_c0, hilp_c1, hilp_d1, hilp_d2,
hilp_e0, hilp_e1, hilp_f1, hilp_f2,
hilp_aL1, hilp_aL2, hilp_aR1, hilp_aR2,
hilp_cL1, hilp_cL2, hilp_cR1, hilp_cR2,
hilp_eL1, hilp_eL2, hilp_eR1, hilp_eR2,
hilp_total
};
double highpass[hilp_total];
double lowpass[hilp_total];
enum {
pvAL1, pvSL1, accSL1, acc2SL1,
pvAL2, pvSL2, accSL2, acc2SL2,
pvAL3, pvSL3, accSL3,
pvAL4, pvSL4,
gndavgL, outAL, gainAL,
pvAR1, pvSR1, accSR1, acc2SR1,
pvAR2, pvSR2, accSR2, acc2SR2,
pvAR3, pvSR3, accSR3,
pvAR4, pvSR4,
gndavgR, outAR, gainAR,
air_total
};
double air[air_total];
enum {
prevSampL1, prevSlewL1, accSlewL1,
prevSampL2, prevSlewL2, accSlewL2,
prevSampL3, prevSlewL3, accSlewL3,
kalGainL, kalOutL,
prevSampR1, prevSlewR1, accSlewR1,
prevSampR2, prevSlewR2, accSlewR2,
prevSampR3, prevSlewR3, accSlewR3,
kalGainR, kalOutR,
kal_total
};
double kal[kal_total];
double fireCompL;
double fireCompR;
double fireGate;
double stoneCompL;
double stoneCompR;
double stoneGate;
double airGainA;
double airGainB;
double fireGainA;
double fireGainB;
double stoneGainA;
double stoneGainB;
enum {
biqs_freq, biqs_reso, biqs_level,
biqs_nonlin, biqs_temp, biqs_dis,
biqs_a0, biqs_a1, biqs_b1, biqs_b2,
biqs_c0, biqs_c1, biqs_d1, biqs_d2,
biqs_e0, biqs_e1, biqs_f1, biqs_f2,
biqs_aL1, biqs_aL2, biqs_aR1, biqs_aR2,
biqs_cL1, biqs_cL2, biqs_cR1, biqs_cR2,
biqs_eL1, biqs_eL2, biqs_eR1, biqs_eR2,
biqs_outL, biqs_outR, biqs_total
};
double high[biqs_total];
double hmid[biqs_total];
double lmid[biqs_total];
double bass[biqs_total];
double dBaL[dscBuf+5];
double dBaR[dscBuf+5];
double dBaPosL;
double dBaPosR;
int dBaXL;
int dBaXR;
double panA;
double panB;
double inTrimA;
double inTrimB;
uint32_t fpdL;
uint32_t fpdR;
};
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
#endif

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/*
* File: ConsoleXPre.r
*
* Version: 1.0
*
* Created: 9/20/24
*
* Copyright: Copyright © 2024 Airwindows, Airwindows uses the MIT license
*
* Disclaimer: IMPORTANT: This Apple software is supplied to you by Apple Computer, Inc. ("Apple") in
* consideration of your agreement to the following terms, and your use, installation, modification
* or redistribution of this Apple software constitutes acceptance of these terms. If you do
* not agree with these terms, please do not use, install, modify or redistribute this Apple
* software.
*
* In consideration of your agreement to abide by the following terms, and subject to these terms,
* Apple grants you a personal, non-exclusive license, under Apple's copyrights in this
* original Apple software (the "Apple Software"), to use, reproduce, modify and redistribute the
* Apple Software, with or without modifications, in source and/or binary forms; provided that if you
* redistribute the Apple Software in its entirety and without modifications, you must retain this
* notice and the following text and disclaimers in all such redistributions of the Apple Software.
* Neither the name, trademarks, service marks or logos of Apple Computer, Inc. may be used to
* endorse or promote products derived from the Apple Software without specific prior written
* permission from Apple. Except as expressly stated in this notice, no other rights or
* licenses, express or implied, are granted by Apple herein, including but not limited to any
* patent rights that may be infringed by your derivative works or by other works in which the
* Apple Software may be incorporated.
*
* The Apple Software is provided by Apple on an "AS IS" basis. APPLE MAKES NO WARRANTIES, EXPRESS OR
* IMPLIED, INCLUDING WITHOUT LIMITATION THE IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE, REGARDING THE APPLE SOFTWARE OR ITS USE AND OPERATION ALONE
* OR IN COMBINATION WITH YOUR PRODUCTS.
*
* IN NO EVENT SHALL APPLE BE LIABLE FOR ANY SPECIAL, INDIRECT, INCIDENTAL OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) ARISING IN ANY WAY OUT OF THE USE,
* REPRODUCTION, MODIFICATION AND/OR DISTRIBUTION OF THE APPLE SOFTWARE, HOWEVER CAUSED AND WHETHER
* UNDER THEORY OF CONTRACT, TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY OR OTHERWISE, EVEN
* IF APPLE HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
*/
#include <AudioUnit/AudioUnit.r>
#include "ConsoleXPreVersion.h"
// Note that resource IDs must be spaced 2 apart for the 'STR ' name and description
#define kAudioUnitResID_ConsoleXPre 1000
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ ConsoleXPre~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
#define RES_ID kAudioUnitResID_ConsoleXPre
#define COMP_TYPE kAudioUnitType_Effect
#define COMP_SUBTYPE ConsoleXPre_COMP_SUBTYPE
#define COMP_MANUF ConsoleXPre_COMP_MANF
#define VERSION kConsoleXPreVersion
#define NAME "Airwindows: ConsoleXPre"
#define DESCRIPTION "ConsoleXPre AU"
#define ENTRY_POINT "ConsoleXPreEntry"
#include "AUResources.r"

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// !$*UTF8*$!
{
089C1669FE841209C02AAC07 /* Project object */ = {
activeBuildConfigurationName = Release;
activeTarget = 8D01CCC60486CAD60068D4B7 /* ConsoleXPre */;
codeSenseManager = 8BD3CCB9148830B20062E48C /* Code sense */;
perUserDictionary = {
PBXConfiguration.PBXFileTableDataSource3.PBXFileTableDataSource = {
PBXFileTableDataSourceColumnSortingDirectionKey = "-1";
PBXFileTableDataSourceColumnSortingKey = PBXFileDataSource_Filename_ColumnID;
PBXFileTableDataSourceColumnWidthsKey = (
20,
364,
20,
48,
43,
43,
20,
);
PBXFileTableDataSourceColumnsKey = (
PBXFileDataSource_FiletypeID,
PBXFileDataSource_Filename_ColumnID,
PBXFileDataSource_Built_ColumnID,
PBXFileDataSource_ObjectSize_ColumnID,
PBXFileDataSource_Errors_ColumnID,
PBXFileDataSource_Warnings_ColumnID,
PBXFileDataSource_Target_ColumnID,
);
};
PBXConfiguration.PBXTargetDataSource.PBXTargetDataSource = {
PBXFileTableDataSourceColumnSortingDirectionKey = "-1";
PBXFileTableDataSourceColumnSortingKey = PBXFileDataSource_Filename_ColumnID;
PBXFileTableDataSourceColumnWidthsKey = (
20,
188,
60,
20,
48,
43,
43,
);
PBXFileTableDataSourceColumnsKey = (
PBXFileDataSource_FiletypeID,
PBXFileDataSource_Filename_ColumnID,
PBXTargetDataSource_PrimaryAttribute,
PBXFileDataSource_Built_ColumnID,
PBXFileDataSource_ObjectSize_ColumnID,
PBXFileDataSource_Errors_ColumnID,
PBXFileDataSource_Warnings_ColumnID,
);
};
PBXPerProjectTemplateStateSaveDate = 748547095;
PBXWorkspaceStateSaveDate = 748547095;
};
sourceControlManager = 8BD3CCB8148830B20062E48C /* Source Control */;
userBuildSettings = {
};
};
8BA05A660720730100365D66 /* ConsoleXPre.cpp */ = {
uiCtxt = {
sepNavIntBoundsRect = "{{0, 0}, {1362, 23562}}";
sepNavSelRange = "{59960, 0}";
sepNavVisRange = "{36396, 2490}";
sepNavWindowFrame = "{{15, 52}, {1000, 821}}";
};
};
8BA05A690720730100365D66 /* ConsoleXPreVersion.h */ = {
uiCtxt = {
sepNavIntBoundsRect = "{{0, 0}, {1056, 1062}}";
sepNavSelRange = "{2920, 0}";
sepNavVisRange = "{1071, 1912}";
sepNavWindowFrame = "{{15, 52}, {1000, 821}}";
};
};
8BA05A7F072073D200365D66 /* AUBase.cpp */ = {
uiCtxt = {
sepNavIntBoundsRect = "{{0, 0}, {516, 23430}}";
sepNavSelRange = "{0, 0}";
sepNavVisRange = "{0, 1336}";
};
};
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8BA05AD7072073D300365D66 /* AUSilentTimeout.h in Headers */,
8BA05AD8072073D300365D66 /* AUTimestampGenerator.h in Headers */,
8BA05AE60720742100365D66 /* CAAudioChannelLayout.h in Headers */,
8BA05AE80720742100365D66 /* CAMutex.h in Headers */,
8BA05AEA0720742100365D66 /* CAStreamBasicDescription.h in Headers */,
8BA05B080720754400365D66 /* CAAUParameter.h in Headers */,
8BC6025C073B072D006C4272 /* ConsoleXPre.h in Headers */,
3EEA126F089847F5002C6BFC /* CAVectorUnit.h in Headers */,
3EEA1270089847F5002C6BFC /* CAVectorUnitTypes.h in Headers */,
F7C347F10ECE5AF8008ADFB6 /* AUBaseHelper.h in Headers */,
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8BA05AB0072073D300365D66 /* AUDispatch.cpp in Sources */,
8BA05AB2072073D300365D66 /* AUInputElement.cpp in Sources */,
8BA05AB4072073D300365D66 /* AUOutputElement.cpp in Sources */,
8BA05AB7072073D300365D66 /* AUScopeElement.cpp in Sources */,
8BA05AB9072073D300365D66 /* ComponentBase.cpp in Sources */,
8BA05AC6072073D300365D66 /* AUEffectBase.cpp in Sources */,
8BA05AD2072073D300365D66 /* AUBuffer.cpp in Sources */,
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View file

@ -0,0 +1,58 @@
/*
* File: ConsoleXPreVersion.h
*
* Version: 1.0
*
* Created: 9/20/24
*
* Copyright: Copyright © 2024 Airwindows, Airwindows uses the MIT license
*
* Disclaimer: IMPORTANT: This Apple software is supplied to you by Apple Computer, Inc. ("Apple") in
* consideration of your agreement to the following terms, and your use, installation, modification
* or redistribution of this Apple software constitutes acceptance of these terms. If you do
* not agree with these terms, please do not use, install, modify or redistribute this Apple
* software.
*
* In consideration of your agreement to abide by the following terms, and subject to these terms,
* Apple grants you a personal, non-exclusive license, under Apple's copyrights in this
* original Apple software (the "Apple Software"), to use, reproduce, modify and redistribute the
* Apple Software, with or without modifications, in source and/or binary forms; provided that if you
* redistribute the Apple Software in its entirety and without modifications, you must retain this
* notice and the following text and disclaimers in all such redistributions of the Apple Software.
* Neither the name, trademarks, service marks or logos of Apple Computer, Inc. may be used to
* endorse or promote products derived from the Apple Software without specific prior written
* permission from Apple. Except as expressly stated in this notice, no other rights or
* licenses, express or implied, are granted by Apple herein, including but not limited to any
* patent rights that may be infringed by your derivative works or by other works in which the
* Apple Software may be incorporated.
*
* The Apple Software is provided by Apple on an "AS IS" basis. APPLE MAKES NO WARRANTIES, EXPRESS OR
* IMPLIED, INCLUDING WITHOUT LIMITATION THE IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE, REGARDING THE APPLE SOFTWARE OR ITS USE AND OPERATION ALONE
* OR IN COMBINATION WITH YOUR PRODUCTS.
*
* IN NO EVENT SHALL APPLE BE LIABLE FOR ANY SPECIAL, INDIRECT, INCIDENTAL OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) ARISING IN ANY WAY OUT OF THE USE,
* REPRODUCTION, MODIFICATION AND/OR DISTRIBUTION OF THE APPLE SOFTWARE, HOWEVER CAUSED AND WHETHER
* UNDER THEORY OF CONTRACT, TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY OR OTHERWISE, EVEN
* IF APPLE HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
*/
#ifndef __ConsoleXPreVersion_h__
#define __ConsoleXPreVersion_h__
#ifdef DEBUG
#define kConsoleXPreVersion 0xFFFFFFFF
#else
#define kConsoleXPreVersion 0x00010000
#endif
//~~~~~~~~~~~~~~ Change!!! ~~~~~~~~~~~~~~~~~~~~~//
#define ConsoleXPre_COMP_MANF 'Dthr'
#define ConsoleXPre_COMP_SUBTYPE 'cnxp'
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~//
#endif

Binary file not shown.

View file

@ -0,0 +1,28 @@
<?xml version="1.0" encoding="UTF-8"?>
<!DOCTYPE plist PUBLIC "-//Apple//DTD PLIST 1.0//EN" "http://www.apple.com/DTDs/PropertyList-1.0.dtd">
<plist version="1.0">
<dict>
<key>CFBundleDevelopmentRegion</key>
<string>English</string>
<key>CFBundleExecutable</key>
<string>${EXECUTABLE_NAME}</string>
<key>CFBundleIconFile</key>
<string></string>
<key>CFBundleIdentifier</key>
<string>com.airwindows.audiounit.${PRODUCT_NAME:identifier}</string>
<key>CFBundleName</key>
<string>${PROJECTNAMEASIDENTIFIER}</string>
<key>CFBundleInfoDictionaryVersion</key>
<string>6.0</string>
<key>CFBundlePackageType</key>
<string>BNDL</string>
<key>CFBundleShortVersionString</key>
<string>1.0</string>
<key>CFBundleSignature</key>
<string>Dthr</string>
<key>CFBundleVersion</key>
<string>1.0</string>
<key>CSResourcesFileMapped</key>
<true/>
</dict>
</plist>

View file

@ -0,0 +1,5 @@
//
// Prefix header for all source files of the '«PROJECTNAMEASIDENTIFIER»' target in the '«PROJECTNAMEASIDENTIFIER»' project.
//
#include <CoreServices/CoreServices.h>

View file

@ -0,0 +1,16 @@
<?xml version="1.0" encoding="UTF-8"?>
<!DOCTYPE plist PUBLIC "-//Apple//DTD PLIST 1.0//EN" "http://www.apple.com/DTDs/PropertyList-1.0.dtd">
<plist version="1.0">
<dict>
<key>BuildVersion</key>
<string>3</string>
<key>CFBundleShortVersionString</key>
<string>1.0</string>
<key>CFBundleVersion</key>
<string>1.0</string>
<key>ProjectName</key>
<string>${EXECUTABLE_NAME}</string>
<key>SourceVersion</key>
<string>590000</string>
</dict>
</plist>

268
plugins/MacAU/Dubly3/Dubly3.cpp Executable file
View file

@ -0,0 +1,268 @@
/*
* File: Dubly3.cpp
*
* Version: 1.0
*
* Created: 9/13/24
*
* Copyright: Copyright © 2024 Airwindows, Airwindows uses the MIT license
*
* Disclaimer: IMPORTANT: This Apple software is supplied to you by Apple Computer, Inc. ("Apple") in
* consideration of your agreement to the following terms, and your use, installation, modification
* or redistribution of this Apple software constitutes acceptance of these terms. If you do
* not agree with these terms, please do not use, install, modify or redistribute this Apple
* software.
*
* In consideration of your agreement to abide by the following terms, and subject to these terms,
* Apple grants you a personal, non-exclusive license, under Apple's copyrights in this
* original Apple software (the "Apple Software"), to use, reproduce, modify and redistribute the
* Apple Software, with or without modifications, in source and/or binary forms; provided that if you
* redistribute the Apple Software in its entirety and without modifications, you must retain this
* notice and the following text and disclaimers in all such redistributions of the Apple Software.
* Neither the name, trademarks, service marks or logos of Apple Computer, Inc. may be used to
* endorse or promote products derived from the Apple Software without specific prior written
* permission from Apple. Except as expressly stated in this notice, no other rights or
* licenses, express or implied, are granted by Apple herein, including but not limited to any
* patent rights that may be infringed by your derivative works or by other works in which the
* Apple Software may be incorporated.
*
* The Apple Software is provided by Apple on an "AS IS" basis. APPLE MAKES NO WARRANTIES, EXPRESS OR
* IMPLIED, INCLUDING WITHOUT LIMITATION THE IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE, REGARDING THE APPLE SOFTWARE OR ITS USE AND OPERATION ALONE
* OR IN COMBINATION WITH YOUR PRODUCTS.
*
* IN NO EVENT SHALL APPLE BE LIABLE FOR ANY SPECIAL, INDIRECT, INCIDENTAL OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) ARISING IN ANY WAY OUT OF THE USE,
* REPRODUCTION, MODIFICATION AND/OR DISTRIBUTION OF THE APPLE SOFTWARE, HOWEVER CAUSED AND WHETHER
* UNDER THEORY OF CONTRACT, TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY OR OTHERWISE, EVEN
* IF APPLE HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
*/
/*=============================================================================
Dubly3.cpp
=============================================================================*/
#include "Dubly3.h"
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
COMPONENT_ENTRY(Dubly3)
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// Dubly3::Dubly3
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
Dubly3::Dubly3(AudioUnit component)
: AUEffectBase(component)
{
CreateElements();
Globals()->UseIndexedParameters(kNumberOfParameters);
SetParameter(kParam_A, kDefaultValue_ParamA );
SetParameter(kParam_B, kDefaultValue_ParamB );
SetParameter(kParam_C, kDefaultValue_ParamC );
SetParameter(kParam_D, kDefaultValue_ParamD );
#if AU_DEBUG_DISPATCHER
mDebugDispatcher = new AUDebugDispatcher (this);
#endif
}
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// Dubly3::GetParameterValueStrings
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ComponentResult Dubly3::GetParameterValueStrings(AudioUnitScope inScope,
AudioUnitParameterID inParameterID,
CFArrayRef * outStrings)
{
return kAudioUnitErr_InvalidProperty;
}
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// Dubly3::GetParameterInfo
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ComponentResult Dubly3::GetParameterInfo(AudioUnitScope inScope,
AudioUnitParameterID inParameterID,
AudioUnitParameterInfo &outParameterInfo )
{
ComponentResult result = noErr;
outParameterInfo.flags = kAudioUnitParameterFlag_IsWritable
| kAudioUnitParameterFlag_IsReadable;
if (inScope == kAudioUnitScope_Global) {
switch(inParameterID)
{
case kParam_A:
AUBase::FillInParameterName (outParameterInfo, kParameterAName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamA;
break;
case kParam_B:
AUBase::FillInParameterName (outParameterInfo, kParameterBName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamB;
break;
case kParam_C:
AUBase::FillInParameterName (outParameterInfo, kParameterCName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamC;
break;
case kParam_D:
AUBase::FillInParameterName (outParameterInfo, kParameterDName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamD;
break;
default:
result = kAudioUnitErr_InvalidParameter;
break;
}
} else {
result = kAudioUnitErr_InvalidParameter;
}
return result;
}
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// Dubly3::GetPropertyInfo
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ComponentResult Dubly3::GetPropertyInfo (AudioUnitPropertyID inID,
AudioUnitScope inScope,
AudioUnitElement inElement,
UInt32 & outDataSize,
Boolean & outWritable)
{
return AUEffectBase::GetPropertyInfo (inID, inScope, inElement, outDataSize, outWritable);
}
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// Dubly3::GetProperty
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ComponentResult Dubly3::GetProperty( AudioUnitPropertyID inID,
AudioUnitScope inScope,
AudioUnitElement inElement,
void * outData )
{
return AUEffectBase::GetProperty (inID, inScope, inElement, outData);
}
// Dubly3::Initialize
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ComponentResult Dubly3::Initialize()
{
ComponentResult result = AUEffectBase::Initialize();
if (result == noErr)
Reset(kAudioUnitScope_Global, 0);
return result;
}
#pragma mark ____Dubly3EffectKernel
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// Dubly3::Dubly3Kernel::Reset()
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
void Dubly3::Dubly3Kernel::Reset()
{
iirEnc = 0.0; iirDec = 0.0;
compEnc = 1.0; compDec = 1.0;
avgEnc = 0.0; avgDec = 0.0;
fpd = 1.0; while (fpd < 16386) fpd = rand()*UINT32_MAX;
}
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// Dubly3::Dubly3Kernel::Process
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
void Dubly3::Dubly3Kernel::Process( const Float32 *inSourceP,
Float32 *inDestP,
UInt32 inFramesToProcess,
UInt32 inNumChannels,
bool &ioSilence )
{
UInt32 nSampleFrames = inFramesToProcess;
const Float32 *sourceP = inSourceP;
Float32 *destP = inDestP;
double overallscale = 1.0;
overallscale /= 44100.0;
overallscale *= GetSampleRate();
double inputGain = pow(GetParameter( kParam_A )*2.0,2.0);
double dublyAmount = GetParameter( kParam_B )*2.0;
double outlyAmount = (1.0-GetParameter( kParam_B ))*-2.0;
if (outlyAmount < -1.0) outlyAmount = -1.0;
double iirEncFreq = (1.0-GetParameter( kParam_C ))/overallscale;
double iirDecFreq = GetParameter( kParam_C )/overallscale;
double outputGain = GetParameter( kParam_D )*2.0;
while (nSampleFrames-- > 0) {
double inputSample = *sourceP;
if (fabs(inputSample)<1.18e-23) inputSample = fpd * 1.18e-17;
if (inputGain != 1.0) {
inputSample *= inputGain;
}
//Dubly encode
iirEnc = (iirEnc * (1.0 - iirEncFreq)) + (inputSample * iirEncFreq);
double highPart = ((inputSample-iirEnc)*2.848);
highPart += avgEnc; avgEnc = (inputSample-iirEnc)*1.152;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
double dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compEnc = (compEnc*(1.0-iirEncFreq))+(dubly*iirEncFreq);
inputSample += ((highPart*compEnc)*dublyAmount);
} //end Dubly encode
if (inputSample > 1.57079633) inputSample = 1.57079633;
if (inputSample < -1.57079633) inputSample = -1.57079633;
inputSample = sin(inputSample);
//Dubly decode
iirDec = (iirDec * (1.0 - iirDecFreq)) + (inputSample * iirDecFreq);
highPart = ((inputSample-iirDec)*2.628);
highPart += avgDec; avgDec = (inputSample-iirDec)*1.372;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compDec = (compDec*(1.0-iirDecFreq))+(dubly*iirDecFreq);
inputSample += ((highPart*compDec)*outlyAmount);
} //end Dubly decode
if (outputGain != 1.0) {
inputSample *= outputGain;
}
//begin 32 bit floating point dither
int expon; frexpf((float)inputSample, &expon);
fpd ^= fpd << 13; fpd ^= fpd >> 17; fpd ^= fpd << 5;
inputSample += ((double(fpd)-uint32_t(0x7fffffff)) * 5.5e-36l * pow(2,expon+62));
//end 32 bit floating point dither
*destP = inputSample;
sourceP += inNumChannels; destP += inNumChannels;
}
}

View file

@ -0,0 +1 @@
_Dubly3Entry

150
plugins/MacAU/Dubly3/Dubly3.h Executable file
View file

@ -0,0 +1,150 @@
/*
* File: Dubly3.h
*
* Version: 1.0
*
* Created: 9/13/24
*
* Copyright: Copyright © 2024 Airwindows, Airwindows uses the MIT license
*
* Disclaimer: IMPORTANT: This Apple software is supplied to you by Apple Computer, Inc. ("Apple") in
* consideration of your agreement to the following terms, and your use, installation, modification
* or redistribution of this Apple software constitutes acceptance of these terms. If you do
* not agree with these terms, please do not use, install, modify or redistribute this Apple
* software.
*
* In consideration of your agreement to abide by the following terms, and subject to these terms,
* Apple grants you a personal, non-exclusive license, under Apple's copyrights in this
* original Apple software (the "Apple Software"), to use, reproduce, modify and redistribute the
* Apple Software, with or without modifications, in source and/or binary forms; provided that if you
* redistribute the Apple Software in its entirety and without modifications, you must retain this
* notice and the following text and disclaimers in all such redistributions of the Apple Software.
* Neither the name, trademarks, service marks or logos of Apple Computer, Inc. may be used to
* endorse or promote products derived from the Apple Software without specific prior written
* permission from Apple. Except as expressly stated in this notice, no other rights or
* licenses, express or implied, are granted by Apple herein, including but not limited to any
* patent rights that may be infringed by your derivative works or by other works in which the
* Apple Software may be incorporated.
*
* The Apple Software is provided by Apple on an "AS IS" basis. APPLE MAKES NO WARRANTIES, EXPRESS OR
* IMPLIED, INCLUDING WITHOUT LIMITATION THE IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE, REGARDING THE APPLE SOFTWARE OR ITS USE AND OPERATION ALONE
* OR IN COMBINATION WITH YOUR PRODUCTS.
*
* IN NO EVENT SHALL APPLE BE LIABLE FOR ANY SPECIAL, INDIRECT, INCIDENTAL OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) ARISING IN ANY WAY OUT OF THE USE,
* REPRODUCTION, MODIFICATION AND/OR DISTRIBUTION OF THE APPLE SOFTWARE, HOWEVER CAUSED AND WHETHER
* UNDER THEORY OF CONTRACT, TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY OR OTHERWISE, EVEN
* IF APPLE HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
*/
#include "AUEffectBase.h"
#include "Dubly3Version.h"
#if AU_DEBUG_DISPATCHER
#include "AUDebugDispatcher.h"
#endif
#ifndef __Dubly3_h__
#define __Dubly3_h__
#pragma mark ____Dubly3 Parameters
// parameters
static const float kDefaultValue_ParamA = 0.5;
static const float kDefaultValue_ParamB = 0.5;
static const float kDefaultValue_ParamC = 0.5;
static const float kDefaultValue_ParamD = 0.5;
static CFStringRef kParameterAName = CFSTR("Input");
static CFStringRef kParameterBName = CFSTR("Tilt");
static CFStringRef kParameterCName = CFSTR("Shape");
static CFStringRef kParameterDName = CFSTR("Output");
enum {
kParam_A =0,
kParam_B =1,
kParam_C =2,
kParam_D =3,
//Add your parameters here...
kNumberOfParameters=4
};
#pragma mark ____Dubly3
class Dubly3 : public AUEffectBase
{
public:
Dubly3(AudioUnit component);
#if AU_DEBUG_DISPATCHER
virtual ~Dubly3 () { delete mDebugDispatcher; }
#endif
virtual AUKernelBase * NewKernel() { return new Dubly3Kernel(this); }
virtual ComponentResult GetParameterValueStrings(AudioUnitScope inScope,
AudioUnitParameterID inParameterID,
CFArrayRef * outStrings);
virtual ComponentResult GetParameterInfo(AudioUnitScope inScope,
AudioUnitParameterID inParameterID,
AudioUnitParameterInfo &outParameterInfo);
virtual ComponentResult GetPropertyInfo(AudioUnitPropertyID inID,
AudioUnitScope inScope,
AudioUnitElement inElement,
UInt32 & outDataSize,
Boolean & outWritable );
virtual ComponentResult GetProperty(AudioUnitPropertyID inID,
AudioUnitScope inScope,
AudioUnitElement inElement,
void * outData);
virtual ComponentResult Initialize();
virtual bool SupportsTail () { return true; }
virtual Float64 GetTailTime() {return (1.0/GetSampleRate())*0.0;} //in SECONDS! gsr * a number = in samples
virtual Float64 GetLatency() {return (1.0/GetSampleRate())*0.0;} // in SECONDS! gsr * a number = in samples
/*! @method Version */
virtual ComponentResult Version() { return kDubly3Version; }
protected:
class Dubly3Kernel : public AUKernelBase // most of the real work happens here
{
public:
Dubly3Kernel(AUEffectBase *inAudioUnit )
: AUKernelBase(inAudioUnit)
{
}
// *Required* overides for the process method for this effect
// processes one channel of interleaved samples
virtual void Process( const Float32 *inSourceP,
Float32 *inDestP,
UInt32 inFramesToProcess,
UInt32 inNumChannels,
bool &ioSilence);
virtual void Reset();
private:
double iirEnc;
double iirDec;
double compEnc;
double compDec;
double avgEnc;
double avgDec;
uint32_t fpd;
};
};
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
#endif

61
plugins/MacAU/Dubly3/Dubly3.r Executable file
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/*
* File: Dubly3.r
*
* Version: 1.0
*
* Created: 9/13/24
*
* Copyright: Copyright © 2024 Airwindows, Airwindows uses the MIT license
*
* Disclaimer: IMPORTANT: This Apple software is supplied to you by Apple Computer, Inc. ("Apple") in
* consideration of your agreement to the following terms, and your use, installation, modification
* or redistribution of this Apple software constitutes acceptance of these terms. If you do
* not agree with these terms, please do not use, install, modify or redistribute this Apple
* software.
*
* In consideration of your agreement to abide by the following terms, and subject to these terms,
* Apple grants you a personal, non-exclusive license, under Apple's copyrights in this
* original Apple software (the "Apple Software"), to use, reproduce, modify and redistribute the
* Apple Software, with or without modifications, in source and/or binary forms; provided that if you
* redistribute the Apple Software in its entirety and without modifications, you must retain this
* notice and the following text and disclaimers in all such redistributions of the Apple Software.
* Neither the name, trademarks, service marks or logos of Apple Computer, Inc. may be used to
* endorse or promote products derived from the Apple Software without specific prior written
* permission from Apple. Except as expressly stated in this notice, no other rights or
* licenses, express or implied, are granted by Apple herein, including but not limited to any
* patent rights that may be infringed by your derivative works or by other works in which the
* Apple Software may be incorporated.
*
* The Apple Software is provided by Apple on an "AS IS" basis. APPLE MAKES NO WARRANTIES, EXPRESS OR
* IMPLIED, INCLUDING WITHOUT LIMITATION THE IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE, REGARDING THE APPLE SOFTWARE OR ITS USE AND OPERATION ALONE
* OR IN COMBINATION WITH YOUR PRODUCTS.
*
* IN NO EVENT SHALL APPLE BE LIABLE FOR ANY SPECIAL, INDIRECT, INCIDENTAL OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) ARISING IN ANY WAY OUT OF THE USE,
* REPRODUCTION, MODIFICATION AND/OR DISTRIBUTION OF THE APPLE SOFTWARE, HOWEVER CAUSED AND WHETHER
* UNDER THEORY OF CONTRACT, TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY OR OTHERWISE, EVEN
* IF APPLE HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
*/
#include <AudioUnit/AudioUnit.r>
#include "Dubly3Version.h"
// Note that resource IDs must be spaced 2 apart for the 'STR ' name and description
#define kAudioUnitResID_Dubly3 1000
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ Dubly3~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
#define RES_ID kAudioUnitResID_Dubly3
#define COMP_TYPE kAudioUnitType_Effect
#define COMP_SUBTYPE Dubly3_COMP_SUBTYPE
#define COMP_MANUF Dubly3_COMP_MANF
#define VERSION kDubly3Version
#define NAME "Airwindows: Dubly3"
#define DESCRIPTION "Dubly3 AU"
#define ENTRY_POINT "Dubly3Entry"
#include "AUResources.r"

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View file

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/*
* File: Dubly3Version.h
*
* Version: 1.0
*
* Created: 9/13/24
*
* Copyright: Copyright © 2024 Airwindows, Airwindows uses the MIT license
*
* Disclaimer: IMPORTANT: This Apple software is supplied to you by Apple Computer, Inc. ("Apple") in
* consideration of your agreement to the following terms, and your use, installation, modification
* or redistribution of this Apple software constitutes acceptance of these terms. If you do
* not agree with these terms, please do not use, install, modify or redistribute this Apple
* software.
*
* In consideration of your agreement to abide by the following terms, and subject to these terms,
* Apple grants you a personal, non-exclusive license, under Apple's copyrights in this
* original Apple software (the "Apple Software"), to use, reproduce, modify and redistribute the
* Apple Software, with or without modifications, in source and/or binary forms; provided that if you
* redistribute the Apple Software in its entirety and without modifications, you must retain this
* notice and the following text and disclaimers in all such redistributions of the Apple Software.
* Neither the name, trademarks, service marks or logos of Apple Computer, Inc. may be used to
* endorse or promote products derived from the Apple Software without specific prior written
* permission from Apple. Except as expressly stated in this notice, no other rights or
* licenses, express or implied, are granted by Apple herein, including but not limited to any
* patent rights that may be infringed by your derivative works or by other works in which the
* Apple Software may be incorporated.
*
* The Apple Software is provided by Apple on an "AS IS" basis. APPLE MAKES NO WARRANTIES, EXPRESS OR
* IMPLIED, INCLUDING WITHOUT LIMITATION THE IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE, REGARDING THE APPLE SOFTWARE OR ITS USE AND OPERATION ALONE
* OR IN COMBINATION WITH YOUR PRODUCTS.
*
* IN NO EVENT SHALL APPLE BE LIABLE FOR ANY SPECIAL, INDIRECT, INCIDENTAL OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) ARISING IN ANY WAY OUT OF THE USE,
* REPRODUCTION, MODIFICATION AND/OR DISTRIBUTION OF THE APPLE SOFTWARE, HOWEVER CAUSED AND WHETHER
* UNDER THEORY OF CONTRACT, TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY OR OTHERWISE, EVEN
* IF APPLE HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
*/
#ifndef __Dubly3Version_h__
#define __Dubly3Version_h__
#ifdef DEBUG
#define kDubly3Version 0xFFFFFFFF
#else
#define kDubly3Version 0x00010000
#endif
//~~~~~~~~~~~~~~ Change!!! ~~~~~~~~~~~~~~~~~~~~~//
#define Dubly3_COMP_MANF 'Dthr'
#define Dubly3_COMP_SUBTYPE 'dblx'
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~//
#endif

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<?xml version="1.0" encoding="UTF-8"?>
<!DOCTYPE plist PUBLIC "-//Apple//DTD PLIST 1.0//EN" "http://www.apple.com/DTDs/PropertyList-1.0.dtd">
<plist version="1.0">
<dict>
<key>CFBundleDevelopmentRegion</key>
<string>English</string>
<key>CFBundleExecutable</key>
<string>${EXECUTABLE_NAME}</string>
<key>CFBundleIconFile</key>
<string></string>
<key>CFBundleIdentifier</key>
<string>com.airwindows.audiounit.${PRODUCT_NAME:identifier}</string>
<key>CFBundleName</key>
<string>${PROJECTNAMEASIDENTIFIER}</string>
<key>CFBundleInfoDictionaryVersion</key>
<string>6.0</string>
<key>CFBundlePackageType</key>
<string>BNDL</string>
<key>CFBundleShortVersionString</key>
<string>1.0</string>
<key>CFBundleSignature</key>
<string>DthX</string>
<key>CFBundleVersion</key>
<string>1.0</string>
<key>CSResourcesFileMapped</key>
<true/>
</dict>
</plist>

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<?xml version="1.0" encoding="UTF-8"?>
<!DOCTYPE plist PUBLIC "-//Apple//DTD PLIST 1.0//EN" "http://www.apple.com/DTDs/PropertyList-1.0.dtd">
<plist version="1.0">
<dict>
<key>BuildVersion</key>
<string>3</string>
<key>CFBundleShortVersionString</key>
<string>1.0</string>
<key>CFBundleVersion</key>
<string>1.0</string>
<key>ProjectName</key>
<string>${EXECUTABLE_NAME}</string>
<key>SourceVersion</key>
<string>590000</string>
</dict>
</plist>

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<?xml version="1.0" encoding="UTF-8"?>
<!DOCTYPE plist PUBLIC "-//Apple//DTD PLIST 1.0//EN" "http://www.apple.com/DTDs/PropertyList-1.0.dtd">
<plist version="1.0">
<dict>
<key>CFBundleDevelopmentRegion</key>
<string>English</string>
<key>CFBundleExecutable</key>
<string>${EXECUTABLE_NAME}</string>
<key>CFBundleIconFile</key>
<string></string>
<key>CFBundleIdentifier</key>
<string>com.airwindows.audiounit.${PRODUCT_NAME:identifier}</string>
<key>CFBundleName</key>
<string>${PROJECTNAMEASIDENTIFIER}</string>
<key>CFBundleInfoDictionaryVersion</key>
<string>6.0</string>
<key>CFBundlePackageType</key>
<string>BNDL</string>
<key>CFBundleShortVersionString</key>
<string>1.0</string>
<key>CFBundleSignature</key>
<string>Dthr</string>
<key>CFBundleVersion</key>
<string>1.0</string>
<key>CSResourcesFileMapped</key>
<true/>
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</plist>

View file

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//
// Prefix header for all source files of the '«PROJECTNAMEASIDENTIFIER»' target in the '«PROJECTNAMEASIDENTIFIER»' project.
//
#include <CoreServices/CoreServices.h>

599
plugins/MacAU/ToTape8/ToTape8.cpp Executable file
View file

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/*
* File: ToTape8.cpp
*
* Version: 1.0
*
* Created: 9/18/24
*
* Copyright: Copyright © 2024 Airwindows, Airwindows uses the MIT license
*
* Disclaimer: IMPORTANT: This Apple software is supplied to you by Apple Computer, Inc. ("Apple") in
* consideration of your agreement to the following terms, and your use, installation, modification
* or redistribution of this Apple software constitutes acceptance of these terms. If you do
* not agree with these terms, please do not use, install, modify or redistribute this Apple
* software.
*
* In consideration of your agreement to abide by the following terms, and subject to these terms,
* Apple grants you a personal, non-exclusive license, under Apple's copyrights in this
* original Apple software (the "Apple Software"), to use, reproduce, modify and redistribute the
* Apple Software, with or without modifications, in source and/or binary forms; provided that if you
* redistribute the Apple Software in its entirety and without modifications, you must retain this
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/*=============================================================================
ToTape8.cpp
=============================================================================*/
#include "ToTape8.h"
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
COMPONENT_ENTRY(ToTape8)
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// ToTape8::ToTape8
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ToTape8::ToTape8(AudioUnit component)
: AUEffectBase(component)
{
CreateElements();
Globals()->UseIndexedParameters(kNumberOfParameters);
SetParameter(kParam_A, kDefaultValue_ParamA );
SetParameter(kParam_B, kDefaultValue_ParamB );
SetParameter(kParam_C, kDefaultValue_ParamC );
SetParameter(kParam_D, kDefaultValue_ParamD );
SetParameter(kParam_E, kDefaultValue_ParamE );
SetParameter(kParam_F, kDefaultValue_ParamF );
SetParameter(kParam_G, kDefaultValue_ParamG );
SetParameter(kParam_H, kDefaultValue_ParamH );
SetParameter(kParam_I, kDefaultValue_ParamI );
#if AU_DEBUG_DISPATCHER
mDebugDispatcher = new AUDebugDispatcher (this);
#endif
}
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// ToTape8::GetParameterValueStrings
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ComponentResult ToTape8::GetParameterValueStrings(AudioUnitScope inScope,
AudioUnitParameterID inParameterID,
CFArrayRef * outStrings)
{
return kAudioUnitErr_InvalidProperty;
}
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// ToTape8::GetParameterInfo
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ComponentResult ToTape8::GetParameterInfo(AudioUnitScope inScope,
AudioUnitParameterID inParameterID,
AudioUnitParameterInfo &outParameterInfo )
{
ComponentResult result = noErr;
outParameterInfo.flags = kAudioUnitParameterFlag_IsWritable
| kAudioUnitParameterFlag_IsReadable;
if (inScope == kAudioUnitScope_Global) {
switch(inParameterID)
{
case kParam_A:
AUBase::FillInParameterName (outParameterInfo, kParameterAName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamA;
break;
case kParam_B:
AUBase::FillInParameterName (outParameterInfo, kParameterBName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamB;
break;
case kParam_C:
AUBase::FillInParameterName (outParameterInfo, kParameterCName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamC;
break;
case kParam_D:
AUBase::FillInParameterName (outParameterInfo, kParameterDName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamD;
break;
case kParam_E:
AUBase::FillInParameterName (outParameterInfo, kParameterEName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamE;
break;
case kParam_F:
AUBase::FillInParameterName (outParameterInfo, kParameterFName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamF;
break;
case kParam_G:
AUBase::FillInParameterName (outParameterInfo, kParameterGName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamG;
break;
case kParam_H:
AUBase::FillInParameterName (outParameterInfo, kParameterHName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_CustomUnit;
outParameterInfo.flags |= kAudioUnitParameterFlag_DisplayLogarithmic;
outParameterInfo.unitName = kParameterHUnit;
outParameterInfo.minValue = 25.0;
outParameterInfo.maxValue = 200.0;
outParameterInfo.defaultValue = kDefaultValue_ParamH;
break;
case kParam_I:
AUBase::FillInParameterName (outParameterInfo, kParameterIName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamI;
break;
default:
result = kAudioUnitErr_InvalidParameter;
break;
}
} else {
result = kAudioUnitErr_InvalidParameter;
}
return result;
}
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// ToTape8::GetPropertyInfo
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ComponentResult ToTape8::GetPropertyInfo (AudioUnitPropertyID inID,
AudioUnitScope inScope,
AudioUnitElement inElement,
UInt32 & outDataSize,
Boolean & outWritable)
{
return AUEffectBase::GetPropertyInfo (inID, inScope, inElement, outDataSize, outWritable);
}
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// state that plugin supports only stereo-in/stereo-out processing
UInt32 ToTape8::SupportedNumChannels(const AUChannelInfo ** outInfo)
{
if (outInfo != NULL)
{
static AUChannelInfo info;
info.inChannels = 2;
info.outChannels = 2;
*outInfo = &info;
}
return 1;
}
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// ToTape8::GetProperty
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ComponentResult ToTape8::GetProperty( AudioUnitPropertyID inID,
AudioUnitScope inScope,
AudioUnitElement inElement,
void * outData )
{
return AUEffectBase::GetProperty (inID, inScope, inElement, outData);
}
// ToTape8::Initialize
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ComponentResult ToTape8::Initialize()
{
ComponentResult result = AUEffectBase::Initialize();
if (result == noErr)
Reset(kAudioUnitScope_Global, 0);
return result;
}
#pragma mark ____ToTape8EffectKernel
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// ToTape8::ToTape8Kernel::Reset()
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ComponentResult ToTape8::Reset(AudioUnitScope inScope, AudioUnitElement inElement)
{
iirEncL = 0.0; iirDecL = 0.0;
compEncL = 1.0; compDecL = 1.0;
avgEncL = 0.0; avgDecL = 0.0;
iirEncR = 0.0; iirDecR = 0.0;
compEncR = 1.0; compDecR = 1.0;
avgEncR = 0.0; avgDecR = 0.0;
for (int temp = 0; temp < 1001; temp++) {dL[temp] = 0.0;dR[temp] = 0.0;}
sweepL = M_PI;
sweepR = M_PI;
nextmaxL = 0.5;
nextmaxR = 0.5;
gcount = 0;
for (int x = 0; x < gslew_total; x++) gslew[x] = 0.0;
iirMidRollerL = 0.0;
iirLowCutoffL = 0.0;
iirMidRollerR = 0.0;
iirLowCutoffR = 0.0;
headBumpL = 0.0;
headBumpR = 0.0;
for (int x = 0; x < hdb_total; x++) {hdbA[x] = 0.0;hdbB[x] = 0.0;}
//from ZBandpass, so I can use enums with it
lastSampleL = 0.0;
wasPosClipL = false;
wasNegClipL = false;
lastSampleR = 0.0;
wasPosClipR = false;
wasNegClipR = false;
for (int x = 0; x < 16; x++) {intermediateL[x] = 0.0; intermediateR[x] = 0.0;}
//this is reset: values being initialized only once. Startup values, whatever they are.
fpdL = 1.0; while (fpdL < 16386) fpdL = rand()*UINT32_MAX;
fpdR = 1.0; while (fpdR < 16386) fpdR = rand()*UINT32_MAX;
return noErr;
}
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// ToTape8::ProcessBufferLists
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
OSStatus ToTape8::ProcessBufferLists(AudioUnitRenderActionFlags & ioActionFlags,
const AudioBufferList & inBuffer,
AudioBufferList & outBuffer,
UInt32 inFramesToProcess)
{
Float32 * inputL = (Float32*)(inBuffer.mBuffers[0].mData);
Float32 * inputR = (Float32*)(inBuffer.mBuffers[1].mData);
Float32 * outputL = (Float32*)(outBuffer.mBuffers[0].mData);
Float32 * outputR = (Float32*)(outBuffer.mBuffers[1].mData);
UInt32 nSampleFrames = inFramesToProcess;
double overallscale = 1.0;
overallscale /= 44100.0;
overallscale *= GetSampleRate();
int spacing = floor(overallscale); //should give us working basic scaling, usually 2 or 4
if (spacing < 1) spacing = 1; if (spacing > 16) spacing = 16;
double inputGain = pow(GetParameter( kParam_A )*2.0,2.0);
double dublyAmount = GetParameter( kParam_B )*2.0;
double outlyAmount = (1.0-GetParameter( kParam_B ))*-2.0;
if (outlyAmount < -1.0) outlyAmount = -1.0;
double iirEncFreq = (1.0-GetParameter( kParam_C ))/overallscale;
double iirDecFreq = GetParameter( kParam_C )/overallscale;
double iirMidFreq = ((GetParameter( kParam_C ) * 0.618) + 0.382)/overallscale;
double flutDepth = pow(GetParameter( kParam_D ),6)*overallscale*50;
if (flutDepth > 498.0) flutDepth = 498.0;
double flutFrequency = (0.02*pow(GetParameter( kParam_E ),3))/overallscale;
double bias = (GetParameter( kParam_F )*2.0)-1.0;
double underBias = (pow(bias,4)*0.25)/overallscale;
double overBias = pow(1.0-bias,3)/overallscale;
if (bias > 0.0) underBias = 0.0;
if (bias < 0.0) overBias = 1.0/overallscale;
gslew[threshold9] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold8] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold7] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold6] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold5] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold4] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold3] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold2] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold1] = overBias;
overBias *= 1.618033988749894848204586;
double headBumpDrive = (GetParameter( kParam_G )*0.1)/overallscale;
double headBumpMix = GetParameter( kParam_G )*0.5;
double subCurve = sin(GetParameter( kParam_G )*M_PI);
double iirSubFreq = (subCurve*0.008)/overallscale;
hdbA[hdb_freq] = GetParameter( kParam_H )/GetSampleRate();
hdbB[hdb_freq] = hdbA[hdb_freq]*0.9375;
hdbB[hdb_reso] = hdbA[hdb_reso] = 0.618033988749894848204586;
hdbB[hdb_a1] = hdbA[hdb_a1] = 0.0;
double K = tan(M_PI * hdbA[hdb_freq]);
double norm = 1.0 / (1.0 + K / hdbA[hdb_reso] + K * K);
hdbA[hdb_a0] = K / hdbA[hdb_reso] * norm;
hdbA[hdb_a2] = -hdbA[hdb_a0];
hdbA[hdb_b1] = 2.0 * (K * K - 1.0) * norm;
hdbA[hdb_b2] = (1.0 - K / hdbA[hdb_reso] + K * K) * norm;
K = tan(M_PI * hdbB[hdb_freq]);
norm = 1.0 / (1.0 + K / hdbB[hdb_reso] + K * K);
hdbB[hdb_a0] = K / hdbB[hdb_reso] * norm;
hdbB[hdb_a2] = -hdbB[hdb_a0];
hdbB[hdb_b1] = 2.0 * (K * K - 1.0) * norm;
hdbB[hdb_b2] = (1.0 - K / hdbB[hdb_reso] + K * K) * norm;
double outputGain = GetParameter( kParam_I )*2.0;
while (nSampleFrames-- > 0) {
double inputSampleL = *inputL;
double inputSampleR = *inputR;
if (fabs(inputSampleL)<1.18e-23) inputSampleL = fpdL * 1.18e-17;
if (fabs(inputSampleR)<1.18e-23) inputSampleR = fpdR * 1.18e-17;
if (inputGain != 1.0) {
inputSampleL *= inputGain;
inputSampleR *= inputGain;
}
//Dubly encode
iirEncL = (iirEncL * (1.0 - iirEncFreq)) + (inputSampleL * iirEncFreq);
double highPart = ((inputSampleL-iirEncL)*2.848);
highPart += avgEncL; avgEncL = (inputSampleL-iirEncL)*1.152;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
double dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compEncL = (compEncL*(1.0-iirEncFreq))+(dubly*iirEncFreq);
inputSampleL += ((highPart*compEncL)*dublyAmount);
} //end Dubly encode L
iirEncR = (iirEncR * (1.0 - iirEncFreq)) + (inputSampleR * iirEncFreq);
highPart = ((inputSampleR-iirEncR)*2.848);
highPart += avgEncR; avgEncR = (inputSampleR-iirEncR)*1.152;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compEncR = (compEncR*(1.0-iirEncFreq))+(dubly*iirEncFreq);
inputSampleR += ((highPart*compEncR)*dublyAmount);
} //end Dubly encode R
//begin Flutter
if (flutDepth > 0.0) {
if (gcount < 0 || gcount > 999) gcount = 999;
dL[gcount] = inputSampleL;
int count = gcount;
double offset = flutDepth + (flutDepth * sin(sweepL));
sweepL += nextmaxL * flutFrequency;
if (sweepL > (M_PI*2.0)) {
sweepL -= M_PI*2.0;
double flutA = 0.24 + (fpdL / (double)UINT32_MAX * 0.74);
fpdL ^= fpdL << 13; fpdL ^= fpdL >> 17; fpdL ^= fpdL << 5;
double flutB = 0.24 + (fpdL / (double)UINT32_MAX * 0.74);
if (fabs(flutA-sin(sweepR+nextmaxR))<fabs(flutB-sin(sweepR+nextmaxR))) nextmaxL = flutA; else nextmaxL = flutB;
}
count += (int)floor(offset);
inputSampleL = (dL[count-((count > 999)?1000:0)] * (1-(offset-floor(offset))));
inputSampleL += (dL[count+1-((count+1 > 999)?1000:0)] * (offset-floor(offset)));
dR[gcount] = inputSampleR;
count = gcount;
offset = flutDepth + (flutDepth * sin(sweepR));
sweepR += nextmaxR * flutFrequency;
if (sweepR > (M_PI*2.0)) {
sweepR -= M_PI*2.0;
double flutA = 0.24 + (fpdR / (double)UINT32_MAX * 0.74);
fpdR ^= fpdR << 13; fpdR ^= fpdR >> 17; fpdR ^= fpdR << 5;
double flutB = 0.24 + (fpdR / (double)UINT32_MAX * 0.74);
if (fabs(flutA-sin(sweepL+nextmaxL))<fabs(flutB-sin(sweepL+nextmaxL))) nextmaxR = flutA; else nextmaxR = flutB;
}
count += (int)floor(offset);
inputSampleR = (dR[count-((count > 999)?1000:0)] * (1-(offset-floor(offset))));
inputSampleR += (dR[count+1-((count+1 > 999)?1000:0)] * (offset-floor(offset)));
gcount--;
}
//end Flutter
//start bias routine
if (fabs(bias) > 0.001) {
for (int x = 0; x < gslew_total; x += 3) {
if (underBias > 0.0) {
double stuck = fabs(inputSampleL - (gslew[x]/0.975)) / underBias;
if (stuck < 1.0) inputSampleL = (inputSampleL * stuck) + ((gslew[x]/0.975)*(1.0-stuck));
stuck = fabs(inputSampleR - (gslew[x+1]/0.975)) / underBias;
if (stuck < 1.0) inputSampleR = (inputSampleR * stuck) + ((gslew[x+1]/0.975)*(1.0-stuck));
}
if ((inputSampleL - gslew[x]) > gslew[x+2]) inputSampleL = gslew[x] + gslew[x+2];
if (-(inputSampleL - gslew[x]) > gslew[x+2]) inputSampleL = gslew[x] - gslew[x+2];
gslew[x] = inputSampleL * 0.975;
if ((inputSampleR - gslew[x+1]) > gslew[x+2]) inputSampleR = gslew[x+1] + gslew[x+2];
if (-(inputSampleR - gslew[x+1]) > gslew[x+2]) inputSampleR = gslew[x+1] - gslew[x+2];
gslew[x+1] = inputSampleR * 0.975;
}
}
//end bias routine
//toTape basic algorithm L
iirMidRollerL = (iirMidRollerL * (1.0-iirMidFreq)) + (inputSampleL*iirMidFreq);
double HighsSampleL = inputSampleL - iirMidRollerL;
double LowsSampleL = iirMidRollerL;
if (iirSubFreq > 0.0) {
iirLowCutoffL = (iirLowCutoffL * (1.0-iirSubFreq)) + (LowsSampleL*iirSubFreq);
LowsSampleL -= iirLowCutoffL;
}
if (LowsSampleL > 1.57079633) LowsSampleL = 1.57079633;
if (LowsSampleL < -1.57079633) LowsSampleL = -1.57079633;
LowsSampleL = sin(LowsSampleL);
double thinnedHighSample = fabs(HighsSampleL)*1.57079633;
if (thinnedHighSample > 1.57079633) thinnedHighSample = 1.57079633;
thinnedHighSample = 1.0-cos(thinnedHighSample);
if (HighsSampleL < 0) thinnedHighSample = -thinnedHighSample;
HighsSampleL -= thinnedHighSample;
//toTape basic algorithm R
iirMidRollerR = (iirMidRollerR * (1.0-iirMidFreq)) + (inputSampleR*iirMidFreq);
double HighsSampleR = inputSampleR - iirMidRollerR;
double LowsSampleR = iirMidRollerR;
if (iirSubFreq > 0.0) {
iirLowCutoffR = (iirLowCutoffR * (1.0-iirSubFreq)) + (LowsSampleR*iirSubFreq);
LowsSampleR -= iirLowCutoffR;
}
if (LowsSampleR > 1.57079633) LowsSampleR = 1.57079633;
if (LowsSampleR < -1.57079633) LowsSampleR = -1.57079633;
LowsSampleR = sin(LowsSampleR);
thinnedHighSample = fabs(HighsSampleR)*1.57079633;
if (thinnedHighSample > 1.57079633) thinnedHighSample = 1.57079633;
thinnedHighSample = 1.0-cos(thinnedHighSample);
if (HighsSampleR < 0) thinnedHighSample = -thinnedHighSample;
HighsSampleR -= thinnedHighSample;
//begin HeadBump
double headBumpSampleL = 0.0;
double headBumpSampleR = 0.0;
if (headBumpMix > 0.0) {
headBumpL += (LowsSampleL * headBumpDrive);
headBumpL -= (headBumpL * headBumpL * headBumpL * (0.0618/sqrt(overallscale)));
headBumpR += (LowsSampleR * headBumpDrive);
headBumpR -= (headBumpR * headBumpR * headBumpR * (0.0618/sqrt(overallscale)));
double headBiqSampleL = (headBumpL * hdbA[hdb_a0]) + hdbA[hdb_sL1];
hdbA[hdb_sL1] = (headBumpL * hdbA[hdb_a1]) - (headBiqSampleL * hdbA[hdb_b1]) + hdbA[hdb_sL2];
hdbA[hdb_sL2] = (headBumpL * hdbA[hdb_a2]) - (headBiqSampleL * hdbA[hdb_b2]);
headBumpSampleL = (headBiqSampleL * hdbB[hdb_a0]) + hdbB[hdb_sL1];
hdbB[hdb_sL1] = (headBiqSampleL * hdbB[hdb_a1]) - (headBumpSampleL * hdbB[hdb_b1]) + hdbB[hdb_sL2];
hdbB[hdb_sL2] = (headBiqSampleL * hdbB[hdb_a2]) - (headBumpSampleL * hdbB[hdb_b2]);
double headBiqSampleR = (headBumpR * hdbA[hdb_a0]) + hdbA[hdb_sR1];
hdbA[hdb_sR1] = (headBumpR * hdbA[hdb_a1]) - (headBiqSampleR * hdbA[hdb_b1]) + hdbA[hdb_sR2];
hdbA[hdb_sR2] = (headBumpR * hdbA[hdb_a2]) - (headBiqSampleR * hdbA[hdb_b2]);
headBumpSampleR = (headBiqSampleR * hdbB[hdb_a0]) + hdbB[hdb_sR1];
hdbB[hdb_sR1] = (headBiqSampleR * hdbB[hdb_a1]) - (headBumpSampleR * hdbB[hdb_b1]) + hdbB[hdb_sR2];
hdbB[hdb_sR2] = (headBiqSampleR * hdbB[hdb_a2]) - (headBumpSampleR * hdbB[hdb_b2]);
}
//end HeadBump
inputSampleL = LowsSampleL + HighsSampleL + (headBumpSampleL * headBumpMix);
inputSampleR = LowsSampleR + HighsSampleR + (headBumpSampleR * headBumpMix);
//Dubly decode
iirDecL = (iirDecL * (1.0 - iirDecFreq)) + (inputSampleL * iirDecFreq);
highPart = ((inputSampleL-iirDecL)*2.628);
highPart += avgDecL; avgDecL = (inputSampleL-iirDecL)*1.372;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compDecL = (compDecL*(1.0-iirDecFreq))+(dubly*iirDecFreq);
inputSampleL += ((highPart*compDecL)*outlyAmount);
} //end Dubly decode L
iirDecR = (iirDecR * (1.0 - iirDecFreq)) + (inputSampleR * iirDecFreq);
highPart = ((inputSampleR-iirDecR)*2.628);
highPart += avgDecR; avgDecR = (inputSampleR-iirDecR)*1.372;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compDecR = (compDecR*(1.0-iirDecFreq))+(dubly*iirDecFreq);
inputSampleR += ((highPart*compDecR)*outlyAmount);
} //end Dubly decode R
if (outputGain != 1.0) {
inputSampleL *= outputGain;
inputSampleR *= outputGain;
}
//begin ClipOnly2 stereo as a little, compressed chunk that can be dropped into code
if (inputSampleL > 4.0) inputSampleL = 4.0; if (inputSampleL < -4.0) inputSampleL = -4.0;
if (wasPosClipL == true) { //current will be over
if (inputSampleL<lastSampleL) lastSampleL=0.7058208+(inputSampleL*0.2609148);
else lastSampleL = 0.2491717+(lastSampleL*0.7390851);
} wasPosClipL = false;
if (inputSampleL>0.9549925859) {wasPosClipL=true;inputSampleL=0.7058208+(lastSampleL*0.2609148);}
if (wasNegClipL == true) { //current will be -over
if (inputSampleL > lastSampleL) lastSampleL=-0.7058208+(inputSampleL*0.2609148);
else lastSampleL=-0.2491717+(lastSampleL*0.7390851);
} wasNegClipL = false;
if (inputSampleL<-0.9549925859) {wasNegClipL=true;inputSampleL=-0.7058208+(lastSampleL*0.2609148);}
intermediateL[spacing] = inputSampleL;
inputSampleL = lastSampleL; //Latency is however many samples equals one 44.1k sample
for (int x = spacing; x > 0; x--) intermediateL[x-1] = intermediateL[x];
lastSampleL = intermediateL[0]; //run a little buffer to handle this
if (inputSampleR > 4.0) inputSampleR = 4.0; if (inputSampleR < -4.0) inputSampleR = -4.0;
if (wasPosClipR == true) { //current will be over
if (inputSampleR<lastSampleR) lastSampleR=0.7058208+(inputSampleR*0.2609148);
else lastSampleR = 0.2491717+(lastSampleR*0.7390851);
} wasPosClipR = false;
if (inputSampleR>0.9549925859) {wasPosClipR=true;inputSampleR=0.7058208+(lastSampleR*0.2609148);}
if (wasNegClipR == true) { //current will be -over
if (inputSampleR > lastSampleR) lastSampleR=-0.7058208+(inputSampleR*0.2609148);
else lastSampleR=-0.2491717+(lastSampleR*0.7390851);
} wasNegClipR = false;
if (inputSampleR<-0.9549925859) {wasNegClipR=true;inputSampleR=-0.7058208+(lastSampleR*0.2609148);}
intermediateR[spacing] = inputSampleR;
inputSampleR = lastSampleR; //Latency is however many samples equals one 44.1k sample
for (int x = spacing; x > 0; x--) intermediateR[x-1] = intermediateR[x];
lastSampleR = intermediateR[0]; //run a little buffer to handle this
//end ClipOnly2 stereo as a little, compressed chunk that can be dropped into code
//begin 32 bit stereo floating point dither
int expon; frexpf((float)inputSampleL, &expon);
fpdL ^= fpdL << 13; fpdL ^= fpdL >> 17; fpdL ^= fpdL << 5;
inputSampleL += ((double(fpdL)-uint32_t(0x7fffffff)) * 5.5e-36l * pow(2,expon+62));
frexpf((float)inputSampleR, &expon);
fpdR ^= fpdR << 13; fpdR ^= fpdR >> 17; fpdR ^= fpdR << 5;
inputSampleR += ((double(fpdR)-uint32_t(0x7fffffff)) * 5.5e-36l * pow(2,expon+62));
//end 32 bit stereo floating point dither
*outputL = inputSampleL;
*outputR = inputSampleR;
//direct stereo out
inputL += 1;
inputR += 1;
outputL += 1;
outputR += 1;
}
return noErr;
}

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@ -0,0 +1 @@
_ToTape8Entry

230
plugins/MacAU/ToTape8/ToTape8.h Executable file
View file

@ -0,0 +1,230 @@
/*
* File: ToTape8.h
*
* Version: 1.0
*
* Created: 9/18/24
*
* Copyright: Copyright © 2024 Airwindows, Airwindows uses the MIT license
*
* Disclaimer: IMPORTANT: This Apple software is supplied to you by Apple Computer, Inc. ("Apple") in
* consideration of your agreement to the following terms, and your use, installation, modification
* or redistribution of this Apple software constitutes acceptance of these terms. If you do
* not agree with these terms, please do not use, install, modify or redistribute this Apple
* software.
*
* In consideration of your agreement to abide by the following terms, and subject to these terms,
* Apple grants you a personal, non-exclusive license, under Apple's copyrights in this
* original Apple software (the "Apple Software"), to use, reproduce, modify and redistribute the
* Apple Software, with or without modifications, in source and/or binary forms; provided that if you
* redistribute the Apple Software in its entirety and without modifications, you must retain this
* notice and the following text and disclaimers in all such redistributions of the Apple Software.
* Neither the name, trademarks, service marks or logos of Apple Computer, Inc. may be used to
* endorse or promote products derived from the Apple Software without specific prior written
* permission from Apple. Except as expressly stated in this notice, no other rights or
* licenses, express or implied, are granted by Apple herein, including but not limited to any
* patent rights that may be infringed by your derivative works or by other works in which the
* Apple Software may be incorporated.
*
* The Apple Software is provided by Apple on an "AS IS" basis. APPLE MAKES NO WARRANTIES, EXPRESS OR
* IMPLIED, INCLUDING WITHOUT LIMITATION THE IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE, REGARDING THE APPLE SOFTWARE OR ITS USE AND OPERATION ALONE
* OR IN COMBINATION WITH YOUR PRODUCTS.
*
* IN NO EVENT SHALL APPLE BE LIABLE FOR ANY SPECIAL, INDIRECT, INCIDENTAL OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) ARISING IN ANY WAY OUT OF THE USE,
* REPRODUCTION, MODIFICATION AND/OR DISTRIBUTION OF THE APPLE SOFTWARE, HOWEVER CAUSED AND WHETHER
* UNDER THEORY OF CONTRACT, TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY OR OTHERWISE, EVEN
* IF APPLE HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
*/
#include "AUEffectBase.h"
#include "ToTape8Version.h"
#if AU_DEBUG_DISPATCHER
#include "AUDebugDispatcher.h"
#endif
#ifndef __ToTape8_h__
#define __ToTape8_h__
#pragma mark ____ToTape8 Parameters
// parameters
static const float kDefaultValue_ParamA = 0.5;
static const float kDefaultValue_ParamB = 0.5;
static const float kDefaultValue_ParamC = 0.5;
static const float kDefaultValue_ParamD = 0.5;
static const float kDefaultValue_ParamE = 0.5;
static const float kDefaultValue_ParamF = 0.5;
static const float kDefaultValue_ParamG = 0.5;
static const float kDefaultValue_ParamH = 50.0;
static const float kDefaultValue_ParamI = 0.5;
static CFStringRef kParameterAName = CFSTR("Input");
static CFStringRef kParameterBName = CFSTR("Tilt");
static CFStringRef kParameterCName = CFSTR("Shape");
static CFStringRef kParameterDName = CFSTR("Flutter");
static CFStringRef kParameterEName = CFSTR("FlutSpd");
static CFStringRef kParameterFName = CFSTR("Bias");
static CFStringRef kParameterGName = CFSTR("HeadBmp");
static CFStringRef kParameterHName = CFSTR("HeadFrq");
static CFStringRef kParameterHUnit = CFSTR("hz");
static CFStringRef kParameterIName = CFSTR("Output");
enum {
kParam_A =0,
kParam_B =1,
kParam_C =2,
kParam_D =3,
kParam_E =4,
kParam_F =5,
kParam_G =6,
kParam_H =7,
kParam_I =8,
//Add your parameters here...
kNumberOfParameters=9
};
#pragma mark ____ToTape8
class ToTape8 : public AUEffectBase
{
public:
ToTape8(AudioUnit component);
#if AU_DEBUG_DISPATCHER
virtual ~ToTape8 () { delete mDebugDispatcher; }
#endif
virtual ComponentResult Reset(AudioUnitScope inScope, AudioUnitElement inElement);
virtual OSStatus ProcessBufferLists(AudioUnitRenderActionFlags & ioActionFlags,
const AudioBufferList & inBuffer, AudioBufferList & outBuffer,
UInt32 inFramesToProcess);
virtual UInt32 SupportedNumChannels(const AUChannelInfo ** outInfo);
virtual ComponentResult GetParameterValueStrings(AudioUnitScope inScope,
AudioUnitParameterID inParameterID,
CFArrayRef * outStrings);
virtual ComponentResult GetParameterInfo(AudioUnitScope inScope,
AudioUnitParameterID inParameterID,
AudioUnitParameterInfo &outParameterInfo);
virtual ComponentResult GetPropertyInfo(AudioUnitPropertyID inID,
AudioUnitScope inScope,
AudioUnitElement inElement,
UInt32 & outDataSize,
Boolean & outWritable );
virtual ComponentResult GetProperty(AudioUnitPropertyID inID,
AudioUnitScope inScope,
AudioUnitElement inElement,
void * outData);
virtual ComponentResult Initialize();
virtual bool SupportsTail () { return true; }
virtual Float64 GetTailTime() {return (1.0/GetSampleRate())*0.0;} //in SECONDS! gsr * a number = in samples
virtual Float64 GetLatency() {return (1.0/GetSampleRate())*0.0;} // in SECONDS! gsr * a number = in samples
/*! @method Version */
virtual ComponentResult Version() { return kToTape8Version; }
private:
double iirEncL;
double iirDecL;
double compEncL;
double compDecL;
double avgEncL;
double avgDecL;
double iirEncR;
double iirDecR;
double compEncR;
double compDecR;
double avgEncR;
double avgDecR;
double dL[1002];
double dR[1002];
double sweepL;
double sweepR;
double nextmaxL;
double nextmaxR;
int gcount;
enum {
prevSampL1,
prevSampR1,
threshold1,
prevSampL2,
prevSampR2,
threshold2,
prevSampL3,
prevSampR3,
threshold3,
prevSampL4,
prevSampR4,
threshold4,
prevSampL5,
prevSampR5,
threshold5,
prevSampL6,
prevSampR6,
threshold6,
prevSampL7,
prevSampR7,
threshold7,
prevSampL8,
prevSampR8,
threshold8,
prevSampL9,
prevSampR9,
threshold9,
gslew_total
}; //fixed frequency pear filter for ultrasonics, stereo
double gslew[gslew_total]; //end bias
double iirMidRollerL;
double iirLowCutoffL;
double iirMidRollerR;
double iirLowCutoffR;
double headBumpL;
double headBumpR;
enum {
hdb_freq,
hdb_reso,
hdb_a0,
hdb_a1,
hdb_a2,
hdb_b1,
hdb_b2,
hdb_sL1,
hdb_sL2,
hdb_sR1,
hdb_sR2,
hdb_total
}; //fixed frequency biquad filter for ultrasonics, stereo
double hdbA[hdb_total];
double hdbB[hdb_total];
double lastSampleL;
double intermediateL[16];
bool wasPosClipL;
bool wasNegClipL;
double lastSampleR;
double intermediateR[16];
bool wasPosClipR;
bool wasNegClipR; //Stereo ClipOnly2
uint32_t fpdL;
uint32_t fpdR;
};
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
#endif

61
plugins/MacAU/ToTape8/ToTape8.r Executable file
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@ -0,0 +1,61 @@
/*
* File: ToTape8.r
*
* Version: 1.0
*
* Created: 9/18/24
*
* Copyright: Copyright © 2024 Airwindows, Airwindows uses the MIT license
*
* Disclaimer: IMPORTANT: This Apple software is supplied to you by Apple Computer, Inc. ("Apple") in
* consideration of your agreement to the following terms, and your use, installation, modification
* or redistribution of this Apple software constitutes acceptance of these terms. If you do
* not agree with these terms, please do not use, install, modify or redistribute this Apple
* software.
*
* In consideration of your agreement to abide by the following terms, and subject to these terms,
* Apple grants you a personal, non-exclusive license, under Apple's copyrights in this
* original Apple software (the "Apple Software"), to use, reproduce, modify and redistribute the
* Apple Software, with or without modifications, in source and/or binary forms; provided that if you
* redistribute the Apple Software in its entirety and without modifications, you must retain this
* notice and the following text and disclaimers in all such redistributions of the Apple Software.
* Neither the name, trademarks, service marks or logos of Apple Computer, Inc. may be used to
* endorse or promote products derived from the Apple Software without specific prior written
* permission from Apple. Except as expressly stated in this notice, no other rights or
* licenses, express or implied, are granted by Apple herein, including but not limited to any
* patent rights that may be infringed by your derivative works or by other works in which the
* Apple Software may be incorporated.
*
* The Apple Software is provided by Apple on an "AS IS" basis. APPLE MAKES NO WARRANTIES, EXPRESS OR
* IMPLIED, INCLUDING WITHOUT LIMITATION THE IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE, REGARDING THE APPLE SOFTWARE OR ITS USE AND OPERATION ALONE
* OR IN COMBINATION WITH YOUR PRODUCTS.
*
* IN NO EVENT SHALL APPLE BE LIABLE FOR ANY SPECIAL, INDIRECT, INCIDENTAL OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) ARISING IN ANY WAY OUT OF THE USE,
* REPRODUCTION, MODIFICATION AND/OR DISTRIBUTION OF THE APPLE SOFTWARE, HOWEVER CAUSED AND WHETHER
* UNDER THEORY OF CONTRACT, TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY OR OTHERWISE, EVEN
* IF APPLE HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
*/
#include <AudioUnit/AudioUnit.r>
#include "ToTape8Version.h"
// Note that resource IDs must be spaced 2 apart for the 'STR ' name and description
#define kAudioUnitResID_ToTape8 1000
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ ToTape8~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
#define RES_ID kAudioUnitResID_ToTape8
#define COMP_TYPE kAudioUnitType_Effect
#define COMP_SUBTYPE ToTape8_COMP_SUBTYPE
#define COMP_MANUF ToTape8_COMP_MANF
#define VERSION kToTape8Version
#define NAME "Airwindows: ToTape8"
#define DESCRIPTION "ToTape8 AU"
#define ENTRY_POINT "ToTape8Entry"
#include "AUResources.r"

File diff suppressed because it is too large Load diff

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@ -0,0 +1,131 @@
// !$*UTF8*$!
{
089C1669FE841209C02AAC07 /* Project object */ = {
activeBuildConfigurationName = Release;
activeTarget = 8D01CCC60486CAD60068D4B7 /* ToTape8 */;
codeSenseManager = 8BD3CCB9148830B20062E48C /* Code sense */;
perUserDictionary = {
PBXConfiguration.PBXFileTableDataSource3.PBXFileTableDataSource = {
PBXFileTableDataSourceColumnSortingDirectionKey = "-1";
PBXFileTableDataSourceColumnSortingKey = PBXFileDataSource_Filename_ColumnID;
PBXFileTableDataSourceColumnWidthsKey = (
20,
364,
20,
48,
43,
43,
20,
);
PBXFileTableDataSourceColumnsKey = (
PBXFileDataSource_FiletypeID,
PBXFileDataSource_Filename_ColumnID,
PBXFileDataSource_Built_ColumnID,
PBXFileDataSource_ObjectSize_ColumnID,
PBXFileDataSource_Errors_ColumnID,
PBXFileDataSource_Warnings_ColumnID,
PBXFileDataSource_Target_ColumnID,
);
};
PBXConfiguration.PBXTargetDataSource.PBXTargetDataSource = {
PBXFileTableDataSourceColumnSortingDirectionKey = "-1";
PBXFileTableDataSourceColumnSortingKey = PBXFileDataSource_Filename_ColumnID;
PBXFileTableDataSourceColumnWidthsKey = (
20,
188,
60,
20,
48,
43,
43,
);
PBXFileTableDataSourceColumnsKey = (
PBXFileDataSource_FiletypeID,
PBXFileDataSource_Filename_ColumnID,
PBXTargetDataSource_PrimaryAttribute,
PBXFileDataSource_Built_ColumnID,
PBXFileDataSource_ObjectSize_ColumnID,
PBXFileDataSource_Errors_ColumnID,
PBXFileDataSource_Warnings_ColumnID,
);
};
PBXPerProjectTemplateStateSaveDate = 748547051;
PBXWorkspaceStateSaveDate = 748547051;
};
perUserProjectItems = {
8B85A11E2C9DE6C2005F4A7E /* PBXTextBookmark */ = 8B85A11E2C9DE6C2005F4A7E /* PBXTextBookmark */;
8B85A17B2C9DEBF1005F4A7E /* PBXTextBookmark */ = 8B85A17B2C9DEBF1005F4A7E /* PBXTextBookmark */;
};
sourceControlManager = 8BD3CCB8148830B20062E48C /* Source Control */;
userBuildSettings = {
};
};
8B85A11E2C9DE6C2005F4A7E /* PBXTextBookmark */ = {
isa = PBXTextBookmark;
fRef = 8BA05A660720730100365D66 /* ToTape8.cpp */;
name = "ToTape8.cpp: 1";
rLen = 0;
rLoc = 0;
rType = 0;
vrLen = 24;
vrLoc = 0;
};
8B85A17B2C9DEBF1005F4A7E /* PBXTextBookmark */ = {
isa = PBXTextBookmark;
fRef = 8BA05A660720730100365D66 /* ToTape8.cpp */;
name = "ToTape8.cpp: 1";
rLen = 0;
rLoc = 0;
rType = 0;
vrLen = 0;
vrLoc = 0;
};
8BA05A660720730100365D66 /* ToTape8.cpp */ = {
uiCtxt = {
sepNavIntBoundsRect = "{{0, 0}, {554, 10782}}";
sepNavSelRange = "{0, 0}";
sepNavVisRange = "{0, 0}";
sepNavWindowFrame = "{{663, 57}, {1000, 821}}";
};
};
8BA05A690720730100365D66 /* ToTape8Version.h */ = {
uiCtxt = {
sepNavIntBoundsRect = "{{0, 0}, {1056, 1062}}";
sepNavSelRange = "{2893, 0}";
sepNavVisRange = "{1067, 1889}";
sepNavWindowFrame = "{{15, 52}, {1000, 821}}";
};
};
8BA05A7F072073D200365D66 /* AUBase.cpp */ = {
uiCtxt = {
sepNavIntBoundsRect = "{{0, 0}, {516, 23430}}";
sepNavSelRange = "{0, 0}";
sepNavVisRange = "{0, 1336}";
};
};
8BC6025B073B072D006C4272 /* ToTape8.h */ = {
uiCtxt = {
sepNavIntBoundsRect = "{{0, 0}, {1146, 4122}}";
sepNavSelRange = "{5677, 208}";
sepNavVisRange = "{6554, 667}";
sepNavWindowFrame = "{{440, 57}, {1000, 821}}";
};
};
8BD3CCB8148830B20062E48C /* Source Control */ = {
isa = PBXSourceControlManager;
fallbackIsa = XCSourceControlManager;
isSCMEnabled = 0;
scmConfiguration = {
repositoryNamesForRoots = {
"" = "";
};
};
};
8BD3CCB9148830B20062E48C /* Code sense */ = {
isa = PBXCodeSenseManager;
indexTemplatePath = "";
};
8D01CCC60486CAD60068D4B7 /* ToTape8 */ = {
activeExec = 0;
};
}

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@ -0,0 +1,490 @@
// !$*UTF8*$!
{
archiveVersion = 1;
classes = {
};
objectVersion = 45;
objects = {
/* Begin PBXBuildFile section */
3EEA126E089847F5002C6BFC /* CAVectorUnit.cpp in Sources */ = {isa = PBXBuildFile; fileRef = 3EEA126B089847F5002C6BFC /* CAVectorUnit.cpp */; };
3EEA126F089847F5002C6BFC /* CAVectorUnit.h in Headers */ = {isa = PBXBuildFile; fileRef = 3EEA126C089847F5002C6BFC /* CAVectorUnit.h */; };
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8BA05A6E0720730100365D66 /* ToTape8Version.h in Headers */ = {isa = PBXBuildFile; fileRef = 8BA05A690720730100365D66 /* ToTape8Version.h */; };
8BA05AAE072073D300365D66 /* AUBase.cpp in Sources */ = {isa = PBXBuildFile; fileRef = 8BA05A7F072073D200365D66 /* AUBase.cpp */; };
8BA05AAF072073D300365D66 /* AUBase.h in Headers */ = {isa = PBXBuildFile; fileRef = 8BA05A80072073D200365D66 /* AUBase.h */; };
8BA05AB0072073D300365D66 /* AUDispatch.cpp in Sources */ = {isa = PBXBuildFile; fileRef = 8BA05A81072073D200365D66 /* AUDispatch.cpp */; };
8BA05AB1072073D300365D66 /* AUDispatch.h in Headers */ = {isa = PBXBuildFile; fileRef = 8BA05A82072073D200365D66 /* AUDispatch.h */; };
8BA05AB2072073D300365D66 /* AUInputElement.cpp in Sources */ = {isa = PBXBuildFile; fileRef = 8BA05A83072073D200365D66 /* AUInputElement.cpp */; };
8BA05AB3072073D300365D66 /* AUInputElement.h in Headers */ = {isa = PBXBuildFile; fileRef = 8BA05A84072073D200365D66 /* AUInputElement.h */; };
8BA05AB4072073D300365D66 /* AUOutputElement.cpp in Sources */ = {isa = PBXBuildFile; fileRef = 8BA05A85072073D200365D66 /* AUOutputElement.cpp */; };
8BA05AB5072073D300365D66 /* AUOutputElement.h in Headers */ = {isa = PBXBuildFile; fileRef = 8BA05A86072073D200365D66 /* AUOutputElement.h */; };
8BA05AB7072073D300365D66 /* AUScopeElement.cpp in Sources */ = {isa = PBXBuildFile; fileRef = 8BA05A88072073D200365D66 /* AUScopeElement.cpp */; };
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};
name = Release;
};
/* End XCBuildConfiguration section */
/* Begin XCConfigurationList section */
3E4BA243089833B7007656EC /* Build configuration list for PBXNativeTarget "ToTape8" */ = {
isa = XCConfigurationList;
buildConfigurations = (
3E4BA244089833B7007656EC /* Debug */,
3E4BA245089833B7007656EC /* Release */,
);
defaultConfigurationIsVisible = 0;
defaultConfigurationName = Debug;
};
3E4BA247089833B7007656EC /* Build configuration list for PBXProject "ToTape8" */ = {
isa = XCConfigurationList;
buildConfigurations = (
3E4BA248089833B7007656EC /* Debug */,
3E4BA249089833B7007656EC /* Release */,
);
defaultConfigurationIsVisible = 0;
defaultConfigurationName = Debug;
};
/* End XCConfigurationList section */
};
rootObject = 089C1669FE841209C02AAC07 /* Project object */;
}

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@ -0,0 +1,58 @@
/*
* File: ToTape8Version.h
*
* Version: 1.0
*
* Created: 9/18/24
*
* Copyright: Copyright © 2024 Airwindows, Airwindows uses the MIT license
*
* Disclaimer: IMPORTANT: This Apple software is supplied to you by Apple Computer, Inc. ("Apple") in
* consideration of your agreement to the following terms, and your use, installation, modification
* or redistribution of this Apple software constitutes acceptance of these terms. If you do
* not agree with these terms, please do not use, install, modify or redistribute this Apple
* software.
*
* In consideration of your agreement to abide by the following terms, and subject to these terms,
* Apple grants you a personal, non-exclusive license, under Apple's copyrights in this
* original Apple software (the "Apple Software"), to use, reproduce, modify and redistribute the
* Apple Software, with or without modifications, in source and/or binary forms; provided that if you
* redistribute the Apple Software in its entirety and without modifications, you must retain this
* notice and the following text and disclaimers in all such redistributions of the Apple Software.
* Neither the name, trademarks, service marks or logos of Apple Computer, Inc. may be used to
* endorse or promote products derived from the Apple Software without specific prior written
* permission from Apple. Except as expressly stated in this notice, no other rights or
* licenses, express or implied, are granted by Apple herein, including but not limited to any
* patent rights that may be infringed by your derivative works or by other works in which the
* Apple Software may be incorporated.
*
* The Apple Software is provided by Apple on an "AS IS" basis. APPLE MAKES NO WARRANTIES, EXPRESS OR
* IMPLIED, INCLUDING WITHOUT LIMITATION THE IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE, REGARDING THE APPLE SOFTWARE OR ITS USE AND OPERATION ALONE
* OR IN COMBINATION WITH YOUR PRODUCTS.
*
* IN NO EVENT SHALL APPLE BE LIABLE FOR ANY SPECIAL, INDIRECT, INCIDENTAL OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) ARISING IN ANY WAY OUT OF THE USE,
* REPRODUCTION, MODIFICATION AND/OR DISTRIBUTION OF THE APPLE SOFTWARE, HOWEVER CAUSED AND WHETHER
* UNDER THEORY OF CONTRACT, TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY OR OTHERWISE, EVEN
* IF APPLE HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
*/
#ifndef __ToTape8Version_h__
#define __ToTape8Version_h__
#ifdef DEBUG
#define kToTape8Version 0xFFFFFFFF
#else
#define kToTape8Version 0x00010000
#endif
//~~~~~~~~~~~~~~ Change!!! ~~~~~~~~~~~~~~~~~~~~~//
#define ToTape8_COMP_MANF 'Dthr'
#define ToTape8_COMP_SUBTYPE 'totw'
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~//
#endif

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@ -0,0 +1,16 @@
<?xml version="1.0" encoding="UTF-8"?>
<!DOCTYPE plist PUBLIC "-//Apple//DTD PLIST 1.0//EN" "http://www.apple.com/DTDs/PropertyList-1.0.dtd">
<plist version="1.0">
<dict>
<key>BuildVersion</key>
<string>3</string>
<key>CFBundleShortVersionString</key>
<string>1.0</string>
<key>CFBundleVersion</key>
<string>1.0</string>
<key>ProjectName</key>
<string>${EXECUTABLE_NAME}</string>
<key>SourceVersion</key>
<string>590000</string>
</dict>
</plist>

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@ -0,0 +1,2 @@
_ConsoleXPreEntry
_ConsoleXPreFactory

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@ -0,0 +1,313 @@
/*
* File: ConsoleXPre.h
*
* Version: 1.0
*
* Created: 9/20/24
*
* Copyright: Copyright © 2024 Airwindows, Airwindows uses the MIT license
*
* Disclaimer: IMPORTANT: This Apple software is supplied to you by Apple Computer, Inc. ("Apple") in
* consideration of your agreement to the following terms, and your use, installation, modification
* or redistribution of this Apple software constitutes acceptance of these terms. If you do
* not agree with these terms, please do not use, install, modify or redistribute this Apple
* software.
*
* In consideration of your agreement to abide by the following terms, and subject to these terms,
* Apple grants you a personal, non-exclusive license, under Apple's copyrights in this
* original Apple software (the "Apple Software"), to use, reproduce, modify and redistribute the
* Apple Software, with or without modifications, in source and/or binary forms; provided that if you
* redistribute the Apple Software in its entirety and without modifications, you must retain this
* notice and the following text and disclaimers in all such redistributions of the Apple Software.
* Neither the name, trademarks, service marks or logos of Apple Computer, Inc. may be used to
* endorse or promote products derived from the Apple Software without specific prior written
* permission from Apple. Except as expressly stated in this notice, no other rights or
* licenses, express or implied, are granted by Apple herein, including but not limited to any
* patent rights that may be infringed by your derivative works or by other works in which the
* Apple Software may be incorporated.
*
* The Apple Software is provided by Apple on an "AS IS" basis. APPLE MAKES NO WARRANTIES, EXPRESS OR
* IMPLIED, INCLUDING WITHOUT LIMITATION THE IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE, REGARDING THE APPLE SOFTWARE OR ITS USE AND OPERATION ALONE
* OR IN COMBINATION WITH YOUR PRODUCTS.
*
* IN NO EVENT SHALL APPLE BE LIABLE FOR ANY SPECIAL, INDIRECT, INCIDENTAL OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) ARISING IN ANY WAY OUT OF THE USE,
* REPRODUCTION, MODIFICATION AND/OR DISTRIBUTION OF THE APPLE SOFTWARE, HOWEVER CAUSED AND WHETHER
* UNDER THEORY OF CONTRACT, TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY OR OTHERWISE, EVEN
* IF APPLE HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
*/
#include "AUEffectBase.h"
#include "ConsoleXPreVersion.h"
#if AU_DEBUG_DISPATCHER
#include "AUDebugDispatcher.h"
#endif
#ifndef __ConsoleXPre_h__
#define __ConsoleXPre_h__
#pragma mark ____ConsoleXPre Parameters
// parameters
static const float kDefaultValue_ParamHIP = 0.0;
static const float kDefaultValue_ParamLOP = 0.0;
static CFStringRef kParameterHIPName = CFSTR("Highpas");
static CFStringRef kParameterLOPName = CFSTR("Lowpass");
//distributed highpass and lowpass
static const float kDefaultValue_ParamAIR = 0.5;
static const float kDefaultValue_ParamFIR = 0.5;
static const float kDefaultValue_ParamSTO = 0.5;
static const float kDefaultValue_ParamRNG = 0.5;
static const float kDefaultValue_ParamFCT = 1.0;
static const float kDefaultValue_ParamSCT = 1.0;
static const float kDefaultValue_ParamFCR = 1.0;
static const float kDefaultValue_ParamSCR = 1.0;
static const float kDefaultValue_ParamFCA = 0.5;
static const float kDefaultValue_ParamSCA = 0.5;
static const float kDefaultValue_ParamFCL = 0.5;
static const float kDefaultValue_ParamSCL = 0.5;
static const float kDefaultValue_ParamFGT = 0.0;
static const float kDefaultValue_ParamSGT = 0.0;
static const float kDefaultValue_ParamFGR = 1.0;
static const float kDefaultValue_ParamSGR = 1.0;
static const float kDefaultValue_ParamFGS = 0.5;
static const float kDefaultValue_ParamSGS = 0.5;
static const float kDefaultValue_ParamFGL = 0.5;
static const float kDefaultValue_ParamSGL = 0.5;
static CFStringRef kParameterAIRName = CFSTR("Air");
static CFStringRef kParameterFIRName = CFSTR("Fire");
static CFStringRef kParameterSTOName = CFSTR("Stone");
static CFStringRef kParameterRNGName = CFSTR("Range");
static CFStringRef kParameterFCTName = CFSTR("FC Thrs");
static CFStringRef kParameterSCTName = CFSTR("SC Thrs");
static CFStringRef kParameterFCRName = CFSTR("FC Rati");
static CFStringRef kParameterSCRName = CFSTR("SC Rati");
static CFStringRef kParameterFCAName = CFSTR("FC Atk");
static CFStringRef kParameterSCAName = CFSTR("SC Atk");
static CFStringRef kParameterFCLName = CFSTR("FC Rls");
static CFStringRef kParameterSCLName = CFSTR("SC Rls");
static CFStringRef kParameterFGTName = CFSTR("FG Thrs");
static CFStringRef kParameterSGTName = CFSTR("SG Thrs");
static CFStringRef kParameterFGRName = CFSTR("FG Rati");
static CFStringRef kParameterSGRName = CFSTR("SG Rati");
static CFStringRef kParameterFGSName = CFSTR("FG Sust");
static CFStringRef kParameterSGSName = CFSTR("SG Sust");
static CFStringRef kParameterFGLName = CFSTR("FG Rls");
static CFStringRef kParameterSGLName = CFSTR("SG Rls");
//Stonefire Compression and Gate
static const float kDefaultValue_ParamTRF = 0.5;
static const float kDefaultValue_ParamTRG = 0.5;
static const float kDefaultValue_ParamTRR = 0.5;
static const float kDefaultValue_ParamHMF = 0.5;
static const float kDefaultValue_ParamHMG = 0.5;
static const float kDefaultValue_ParamHMR = 0.5;
static const float kDefaultValue_ParamLMF = 0.5;
static const float kDefaultValue_ParamLMG = 0.5;
static const float kDefaultValue_ParamLMR = 0.5;
static const float kDefaultValue_ParamBSF = 0.5;
static const float kDefaultValue_ParamBSG = 0.5;
static const float kDefaultValue_ParamBSR = 0.5;
static CFStringRef kParameterTRFName = CFSTR("Tr Freq");
static CFStringRef kParameterTRGName = CFSTR("Treble");
static CFStringRef kParameterTRRName = CFSTR("Tr Reso");
static CFStringRef kParameterHMFName = CFSTR("HM Freq");
static CFStringRef kParameterHMGName = CFSTR("HighMid");
static CFStringRef kParameterHMRName = CFSTR("HM Reso");
static CFStringRef kParameterLMFName = CFSTR("LM Freq");
static CFStringRef kParameterLMGName = CFSTR("LowMid");
static CFStringRef kParameterLMRName = CFSTR("LM Reso");
static CFStringRef kParameterBSFName = CFSTR("Bs Freq");
static CFStringRef kParameterBSGName = CFSTR("Bass");
static CFStringRef kParameterBSRName = CFSTR("Bs Reso");
//Parametric
static const float kDefaultValue_ParamDSC = 100.0;
static const float kDefaultValue_ParamPAN = 0.5;
static const float kDefaultValue_ParamFAD = 0.5;
static CFStringRef kParameterDSCName = CFSTR("Top dB");
static CFStringRef kParameterPANName = CFSTR("Pan");
static CFStringRef kParameterFADName = CFSTR("Fader");
//Discontinuity, Pan, Fader
enum {
kParam_HIP = 0,
kParam_LOP = 1,
kParam_AIR = 2,
kParam_FIR = 3,
kParam_STO = 4,
kParam_RNG = 5,
kParam_FCT = 6,
kParam_SCT = 7,
kParam_FCR = 8,
kParam_SCR = 9,
kParam_FCA = 10,
kParam_SCA = 11,
kParam_FCL = 12,
kParam_SCL = 13,
kParam_FGT = 14,
kParam_SGT = 15,
kParam_FGR = 16,
kParam_SGR = 17,
kParam_FGS = 18,
kParam_SGS = 19,
kParam_FGL = 20,
kParam_SGL = 21,
kParam_TRF = 22,
kParam_TRG = 23,
kParam_TRR = 24,
kParam_HMF = 25,
kParam_HMG = 26,
kParam_HMR = 27,
kParam_LMF = 28,
kParam_LMG = 29,
kParam_LMR = 30,
kParam_BSF = 31,
kParam_BSG = 32,
kParam_BSR = 33,
kParam_DSC = 34,
kParam_PAN = 35,
kParam_FAD = 36,
//Add your parameters here...
kNumberOfParameters=37
};
const int dscBuf = 90;
#pragma mark ____ConsoleXPre
class ConsoleXPre : public AUEffectBase
{
public:
ConsoleXPre(AudioUnit component);
#if AU_DEBUG_DISPATCHER
virtual ~ConsoleXPre () { delete mDebugDispatcher; }
#endif
virtual ComponentResult Reset(AudioUnitScope inScope, AudioUnitElement inElement);
virtual OSStatus ProcessBufferLists(AudioUnitRenderActionFlags & ioActionFlags,
const AudioBufferList & inBuffer, AudioBufferList & outBuffer,
UInt32 inFramesToProcess);
virtual UInt32 SupportedNumChannels(const AUChannelInfo ** outInfo);
virtual ComponentResult GetParameterValueStrings(AudioUnitScope inScope,
AudioUnitParameterID inParameterID,
CFArrayRef * outStrings);
virtual ComponentResult GetParameterInfo(AudioUnitScope inScope,
AudioUnitParameterID inParameterID,
AudioUnitParameterInfo &outParameterInfo);
virtual ComponentResult GetPropertyInfo(AudioUnitPropertyID inID,
AudioUnitScope inScope,
AudioUnitElement inElement,
UInt32 & outDataSize,
Boolean & outWritable );
virtual ComponentResult GetProperty(AudioUnitPropertyID inID,
AudioUnitScope inScope,
AudioUnitElement inElement,
void * outData);
virtual ComponentResult Initialize();
virtual bool SupportsTail () { return true; }
virtual Float64 GetTailTime() {return (1.0/GetSampleRate())*0.0;} //in SECONDS! gsr * a number = in samples
virtual Float64 GetLatency() {return (1.0/GetSampleRate())*0.0;} // in SECONDS! gsr * a number = in samples
/*! @method Version */
virtual ComponentResult Version() { return kConsoleXPreVersion; }
private:
enum {
hilp_freq, hilp_temp,
hilp_a0, hilp_a1, hilp_b1, hilp_b2,
hilp_c0, hilp_c1, hilp_d1, hilp_d2,
hilp_e0, hilp_e1, hilp_f1, hilp_f2,
hilp_aL1, hilp_aL2, hilp_aR1, hilp_aR2,
hilp_cL1, hilp_cL2, hilp_cR1, hilp_cR2,
hilp_eL1, hilp_eL2, hilp_eR1, hilp_eR2,
hilp_total
};
double highpass[hilp_total];
double lowpass[hilp_total];
enum {
pvAL1, pvSL1, accSL1, acc2SL1,
pvAL2, pvSL2, accSL2, acc2SL2,
pvAL3, pvSL3, accSL3,
pvAL4, pvSL4,
gndavgL, outAL, gainAL,
pvAR1, pvSR1, accSR1, acc2SR1,
pvAR2, pvSR2, accSR2, acc2SR2,
pvAR3, pvSR3, accSR3,
pvAR4, pvSR4,
gndavgR, outAR, gainAR,
air_total
};
double air[air_total];
enum {
prevSampL1, prevSlewL1, accSlewL1,
prevSampL2, prevSlewL2, accSlewL2,
prevSampL3, prevSlewL3, accSlewL3,
kalGainL, kalOutL,
prevSampR1, prevSlewR1, accSlewR1,
prevSampR2, prevSlewR2, accSlewR2,
prevSampR3, prevSlewR3, accSlewR3,
kalGainR, kalOutR,
kal_total
};
double kal[kal_total];
double fireCompL;
double fireCompR;
double fireGate;
double stoneCompL;
double stoneCompR;
double stoneGate;
double airGainA;
double airGainB;
double fireGainA;
double fireGainB;
double stoneGainA;
double stoneGainB;
enum {
biqs_freq, biqs_reso, biqs_level,
biqs_nonlin, biqs_temp, biqs_dis,
biqs_a0, biqs_a1, biqs_b1, biqs_b2,
biqs_c0, biqs_c1, biqs_d1, biqs_d2,
biqs_e0, biqs_e1, biqs_f1, biqs_f2,
biqs_aL1, biqs_aL2, biqs_aR1, biqs_aR2,
biqs_cL1, biqs_cL2, biqs_cR1, biqs_cR2,
biqs_eL1, biqs_eL2, biqs_eR1, biqs_eR2,
biqs_outL, biqs_outR, biqs_total
};
double high[biqs_total];
double hmid[biqs_total];
double lmid[biqs_total];
double bass[biqs_total];
double dBaL[dscBuf+5];
double dBaR[dscBuf+5];
double dBaPosL;
double dBaPosR;
int dBaXL;
int dBaXR;
double panA;
double panB;
double inTrimA;
double inTrimB;
uint32_t fpdL;
uint32_t fpdR;
};
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
#endif

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@ -0,0 +1,61 @@
/*
* File: ConsoleXPre.r
*
* Version: 1.0
*
* Created: 9/20/24
*
* Copyright: Copyright © 2024 Airwindows, Airwindows uses the MIT license
*
* Disclaimer: IMPORTANT: This Apple software is supplied to you by Apple Computer, Inc. ("Apple") in
* consideration of your agreement to the following terms, and your use, installation, modification
* or redistribution of this Apple software constitutes acceptance of these terms. If you do
* not agree with these terms, please do not use, install, modify or redistribute this Apple
* software.
*
* In consideration of your agreement to abide by the following terms, and subject to these terms,
* Apple grants you a personal, non-exclusive license, under Apple's copyrights in this
* original Apple software (the "Apple Software"), to use, reproduce, modify and redistribute the
* Apple Software, with or without modifications, in source and/or binary forms; provided that if you
* redistribute the Apple Software in its entirety and without modifications, you must retain this
* notice and the following text and disclaimers in all such redistributions of the Apple Software.
* Neither the name, trademarks, service marks or logos of Apple Computer, Inc. may be used to
* endorse or promote products derived from the Apple Software without specific prior written
* permission from Apple. Except as expressly stated in this notice, no other rights or
* licenses, express or implied, are granted by Apple herein, including but not limited to any
* patent rights that may be infringed by your derivative works or by other works in which the
* Apple Software may be incorporated.
*
* The Apple Software is provided by Apple on an "AS IS" basis. APPLE MAKES NO WARRANTIES, EXPRESS OR
* IMPLIED, INCLUDING WITHOUT LIMITATION THE IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE, REGARDING THE APPLE SOFTWARE OR ITS USE AND OPERATION ALONE
* OR IN COMBINATION WITH YOUR PRODUCTS.
*
* IN NO EVENT SHALL APPLE BE LIABLE FOR ANY SPECIAL, INDIRECT, INCIDENTAL OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) ARISING IN ANY WAY OUT OF THE USE,
* REPRODUCTION, MODIFICATION AND/OR DISTRIBUTION OF THE APPLE SOFTWARE, HOWEVER CAUSED AND WHETHER
* UNDER THEORY OF CONTRACT, TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY OR OTHERWISE, EVEN
* IF APPLE HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
*/
#include <AudioUnit/AudioUnit.r>
#include "ConsoleXPreVersion.h"
// Note that resource IDs must be spaced 2 apart for the 'STR ' name and description
#define kAudioUnitResID_ConsoleXPre 1000
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ ConsoleXPre~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
#define RES_ID kAudioUnitResID_ConsoleXPre
#define COMP_TYPE kAudioUnitType_Effect
#define COMP_SUBTYPE ConsoleXPre_COMP_SUBTYPE
#define COMP_MANUF ConsoleXPre_COMP_MANF
#define VERSION kConsoleXPreVersion
#define NAME "Airwindows: ConsoleXPre"
#define DESCRIPTION "ConsoleXPre AU"
#define ENTRY_POINT "ConsoleXPreEntry"
#include "AUResources.r"

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// !$*UTF8*$!
{
089C1669FE841209C02AAC07 /* Project object */ = {
activeBuildConfigurationName = Release;
activeTarget = 8D01CCC60486CAD60068D4B7 /* ConsoleXPre */;
codeSenseManager = 8BD3CCB9148830B20062E48C /* Code sense */;
perUserDictionary = {
PBXConfiguration.PBXFileTableDataSource3.PBXFileTableDataSource = {
PBXFileTableDataSourceColumnSortingDirectionKey = "-1";
PBXFileTableDataSourceColumnSortingKey = PBXFileDataSource_Filename_ColumnID;
PBXFileTableDataSourceColumnWidthsKey = (
20,
364,
20,
48,
43,
43,
20,
);
PBXFileTableDataSourceColumnsKey = (
PBXFileDataSource_FiletypeID,
PBXFileDataSource_Filename_ColumnID,
PBXFileDataSource_Built_ColumnID,
PBXFileDataSource_ObjectSize_ColumnID,
PBXFileDataSource_Errors_ColumnID,
PBXFileDataSource_Warnings_ColumnID,
PBXFileDataSource_Target_ColumnID,
);
};
PBXConfiguration.PBXTargetDataSource.PBXTargetDataSource = {
PBXFileTableDataSourceColumnSortingDirectionKey = "-1";
PBXFileTableDataSourceColumnSortingKey = PBXFileDataSource_Filename_ColumnID;
PBXFileTableDataSourceColumnWidthsKey = (
20,
188,
60,
20,
48,
43,
43,
);
PBXFileTableDataSourceColumnsKey = (
PBXFileDataSource_FiletypeID,
PBXFileDataSource_Filename_ColumnID,
PBXTargetDataSource_PrimaryAttribute,
PBXFileDataSource_Built_ColumnID,
PBXFileDataSource_ObjectSize_ColumnID,
PBXFileDataSource_Errors_ColumnID,
PBXFileDataSource_Warnings_ColumnID,
);
};
PBXPerProjectTemplateStateSaveDate = 748547095;
PBXWorkspaceStateSaveDate = 748547095;
};
sourceControlManager = 8BD3CCB8148830B20062E48C /* Source Control */;
userBuildSettings = {
};
};
8BA05A660720730100365D66 /* ConsoleXPre.cpp */ = {
uiCtxt = {
sepNavIntBoundsRect = "{{0, 0}, {1362, 23562}}";
sepNavSelRange = "{59960, 0}";
sepNavVisRange = "{36396, 2490}";
sepNavWindowFrame = "{{15, 52}, {1000, 821}}";
};
};
8BA05A690720730100365D66 /* ConsoleXPreVersion.h */ = {
uiCtxt = {
sepNavIntBoundsRect = "{{0, 0}, {1056, 1062}}";
sepNavSelRange = "{2920, 0}";
sepNavVisRange = "{1071, 1912}";
sepNavWindowFrame = "{{15, 52}, {1000, 821}}";
};
};
8BA05A7F072073D200365D66 /* AUBase.cpp */ = {
uiCtxt = {
sepNavIntBoundsRect = "{{0, 0}, {516, 23430}}";
sepNavSelRange = "{0, 0}";
sepNavVisRange = "{0, 1336}";
};
};
8BC6025B073B072D006C4272 /* ConsoleXPre.h */ = {
uiCtxt = {
sepNavIntBoundsRect = "{{0, 0}, {1146, 6138}}";
sepNavSelRange = "{11299, 0}";
sepNavVisRange = "{9349, 963}";
sepNavWindowFrame = "{{15, 52}, {1000, 821}}";
};
};
8BD3CCB8148830B20062E48C /* Source Control */ = {
isa = PBXSourceControlManager;
fallbackIsa = XCSourceControlManager;
isSCMEnabled = 0;
scmConfiguration = {
repositoryNamesForRoots = {
"" = "";
};
};
};
8BD3CCB9148830B20062E48C /* Code sense */ = {
isa = PBXCodeSenseManager;
indexTemplatePath = "";
};
8D01CCC60486CAD60068D4B7 /* ConsoleXPre */ = {
activeExec = 0;
};
}

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// !$*UTF8*$!
{
archiveVersion = 1;
classes = {
};
objectVersion = 45;
objects = {
/* Begin PBXBuildFile section */
8BA05A6B0720730100365D66 /* ConsoleXPre.cpp in Sources */ = {isa = PBXBuildFile; fileRef = 8BA05A660720730100365D66 /* ConsoleXPre.cpp */; };
8BA05A6E0720730100365D66 /* ConsoleXPreVersion.h in Headers */ = {isa = PBXBuildFile; fileRef = 8BA05A690720730100365D66 /* ConsoleXPreVersion.h */; };
8BA05AFC072074E100365D66 /* AudioToolbox.framework in Frameworks */ = {isa = PBXBuildFile; fileRef = 8BA05AF9072074E100365D66 /* AudioToolbox.framework */; };
8BA05AFD072074E100365D66 /* AudioUnit.framework in Frameworks */ = {isa = PBXBuildFile; fileRef = 8BA05AFA072074E100365D66 /* AudioUnit.framework */; };
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8BBAA8792C9E110300FB6A07 /* CAExtAudioFile.h in Headers */ = {isa = PBXBuildFile; fileRef = 8BBAA7F12C9E110300FB6A07 /* CAExtAudioFile.h */; };
8BBAA87A2C9E110300FB6A07 /* CACFMachPort.h in Headers */ = {isa = PBXBuildFile; fileRef = 8BBAA7F22C9E110300FB6A07 /* CACFMachPort.h */; };
8BBAA87B2C9E110300FB6A07 /* CABool.h in Headers */ = {isa = PBXBuildFile; fileRef = 8BBAA7F32C9E110300FB6A07 /* CABool.h */; };
8BBAA87C2C9E110300FB6A07 /* CAComponent.cpp in Sources */ = {isa = PBXBuildFile; fileRef = 8BBAA7F42C9E110300FB6A07 /* CAComponent.cpp */; };
8BBAA87D2C9E110300FB6A07 /* CADebugger.h in Headers */ = {isa = PBXBuildFile; fileRef = 8BBAA7F52C9E110300FB6A07 /* CADebugger.h */; };
8BBAA87E2C9E110300FB6A07 /* CACFNumber.cpp in Sources */ = {isa = PBXBuildFile; fileRef = 8BBAA7F62C9E110300FB6A07 /* CACFNumber.cpp */; };
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/*
* File: ConsoleXPreVersion.h
*
* Version: 1.0
*
* Created: 9/20/24
*
* Copyright: Copyright © 2024 Airwindows, Airwindows uses the MIT license
*
* Disclaimer: IMPORTANT: This Apple software is supplied to you by Apple Computer, Inc. ("Apple") in
* consideration of your agreement to the following terms, and your use, installation, modification
* or redistribution of this Apple software constitutes acceptance of these terms. If you do
* not agree with these terms, please do not use, install, modify or redistribute this Apple
* software.
*
* In consideration of your agreement to abide by the following terms, and subject to these terms,
* Apple grants you a personal, non-exclusive license, under Apple's copyrights in this
* original Apple software (the "Apple Software"), to use, reproduce, modify and redistribute the
* Apple Software, with or without modifications, in source and/or binary forms; provided that if you
* redistribute the Apple Software in its entirety and without modifications, you must retain this
* notice and the following text and disclaimers in all such redistributions of the Apple Software.
* Neither the name, trademarks, service marks or logos of Apple Computer, Inc. may be used to
* endorse or promote products derived from the Apple Software without specific prior written
* permission from Apple. Except as expressly stated in this notice, no other rights or
* licenses, express or implied, are granted by Apple herein, including but not limited to any
* patent rights that may be infringed by your derivative works or by other works in which the
* Apple Software may be incorporated.
*
* The Apple Software is provided by Apple on an "AS IS" basis. APPLE MAKES NO WARRANTIES, EXPRESS OR
* IMPLIED, INCLUDING WITHOUT LIMITATION THE IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE, REGARDING THE APPLE SOFTWARE OR ITS USE AND OPERATION ALONE
* OR IN COMBINATION WITH YOUR PRODUCTS.
*
* IN NO EVENT SHALL APPLE BE LIABLE FOR ANY SPECIAL, INDIRECT, INCIDENTAL OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) ARISING IN ANY WAY OUT OF THE USE,
* REPRODUCTION, MODIFICATION AND/OR DISTRIBUTION OF THE APPLE SOFTWARE, HOWEVER CAUSED AND WHETHER
* UNDER THEORY OF CONTRACT, TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY OR OTHERWISE, EVEN
* IF APPLE HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
*/
#ifndef __ConsoleXPreVersion_h__
#define __ConsoleXPreVersion_h__
#ifdef DEBUG
#define kConsoleXPreVersion 0xFFFFFFFF
#else
#define kConsoleXPreVersion 0x00010000
#endif
//~~~~~~~~~~~~~~ Change!!! ~~~~~~~~~~~~~~~~~~~~~//
#define ConsoleXPre_COMP_MANF 'Dthr'
#define ConsoleXPre_COMP_SUBTYPE 'cnxp'
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~//
#endif

View file

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<dict>
<key>AudioComponents</key>
<array>
<dict>
<key>description</key>
<string>${PRODUCT_NAME:identifier} AU</string>
<key>factoryFunction</key>
<string>${PRODUCT_NAME:identifier}Factory</string>
<key>manufacturer</key>
<string>Dthr</string>
<key>name</key>
<string>Airwindows: ${PRODUCT_NAME:identifier}</string>
<key>subtype</key>
<string>cnxp</string>
<key>type</key>
<string>aufx</string>
<key>version</key>
<integer>65536</integer>
</dict>
</array>
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<string>English</string>
<key>CFBundleExecutable</key>
<string>${EXECUTABLE_NAME}</string>
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<string></string>
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<string>$(PRODUCT_BUNDLE_IDENTIFIER)</string>
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<string>6.0</string>
<key>CFBundleName</key>
<string>${PROJECTNAMEASIDENTIFIER}</string>
<key>CFBundlePackageType</key>
<string>BNDL</string>
<key>CFBundleShortVersionString</key>
<string>1.0</string>
<key>CFBundleSignature</key>
<string>Dthr</string>
<key>CFBundleVersion</key>
<string>1.0</string>
<key>CSResourcesFileMapped</key>
<true/>
</dict>
</plist>

View file

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//
// Prefix header for all source files of the '«PROJECTNAMEASIDENTIFIER»' target in the '«PROJECTNAMEASIDENTIFIER»' project.
//
#include <CoreServices/CoreServices.h>

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View file

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/*
* File: Dubly3.cpp
*
* Version: 1.0
*
* Created: 9/13/24
*
* Copyright: Copyright © 2024 Airwindows, Airwindows uses the MIT license
*
* Disclaimer: IMPORTANT: This Apple software is supplied to you by Apple Computer, Inc. ("Apple") in
* consideration of your agreement to the following terms, and your use, installation, modification
* or redistribution of this Apple software constitutes acceptance of these terms. If you do
* not agree with these terms, please do not use, install, modify or redistribute this Apple
* software.
*
* In consideration of your agreement to abide by the following terms, and subject to these terms,
* Apple grants you a personal, non-exclusive license, under Apple's copyrights in this
* original Apple software (the "Apple Software"), to use, reproduce, modify and redistribute the
* Apple Software, with or without modifications, in source and/or binary forms; provided that if you
* redistribute the Apple Software in its entirety and without modifications, you must retain this
* notice and the following text and disclaimers in all such redistributions of the Apple Software.
* Neither the name, trademarks, service marks or logos of Apple Computer, Inc. may be used to
* endorse or promote products derived from the Apple Software without specific prior written
* permission from Apple. Except as expressly stated in this notice, no other rights or
* licenses, express or implied, are granted by Apple herein, including but not limited to any
* patent rights that may be infringed by your derivative works or by other works in which the
* Apple Software may be incorporated.
*
* The Apple Software is provided by Apple on an "AS IS" basis. APPLE MAKES NO WARRANTIES, EXPRESS OR
* IMPLIED, INCLUDING WITHOUT LIMITATION THE IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE, REGARDING THE APPLE SOFTWARE OR ITS USE AND OPERATION ALONE
* OR IN COMBINATION WITH YOUR PRODUCTS.
*
* IN NO EVENT SHALL APPLE BE LIABLE FOR ANY SPECIAL, INDIRECT, INCIDENTAL OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) ARISING IN ANY WAY OUT OF THE USE,
* REPRODUCTION, MODIFICATION AND/OR DISTRIBUTION OF THE APPLE SOFTWARE, HOWEVER CAUSED AND WHETHER
* UNDER THEORY OF CONTRACT, TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY OR OTHERWISE, EVEN
* IF APPLE HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
*/
/*=============================================================================
Dubly3.cpp
=============================================================================*/
#include "Dubly3.h"
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
AUDIOCOMPONENT_ENTRY(AUBaseFactory, Dubly3)
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// Dubly3::Dubly3
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
Dubly3::Dubly3(AudioUnit component)
: AUEffectBase(component)
{
CreateElements();
Globals()->UseIndexedParameters(kNumberOfParameters);
SetParameter(kParam_A, kDefaultValue_ParamA );
SetParameter(kParam_B, kDefaultValue_ParamB );
SetParameter(kParam_C, kDefaultValue_ParamC );
SetParameter(kParam_D, kDefaultValue_ParamD );
#if AU_DEBUG_DISPATCHER
mDebugDispatcher = new AUDebugDispatcher (this);
#endif
}
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// Dubly3::GetParameterValueStrings
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ComponentResult Dubly3::GetParameterValueStrings(AudioUnitScope inScope,
AudioUnitParameterID inParameterID,
CFArrayRef * outStrings)
{
return kAudioUnitErr_InvalidProperty;
}
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// Dubly3::GetParameterInfo
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ComponentResult Dubly3::GetParameterInfo(AudioUnitScope inScope,
AudioUnitParameterID inParameterID,
AudioUnitParameterInfo &outParameterInfo )
{
ComponentResult result = noErr;
outParameterInfo.flags = kAudioUnitParameterFlag_IsWritable
| kAudioUnitParameterFlag_IsReadable;
if (inScope == kAudioUnitScope_Global) {
switch(inParameterID)
{
case kParam_A:
AUBase::FillInParameterName (outParameterInfo, kParameterAName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamA;
break;
case kParam_B:
AUBase::FillInParameterName (outParameterInfo, kParameterBName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamB;
break;
case kParam_C:
AUBase::FillInParameterName (outParameterInfo, kParameterCName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamC;
break;
case kParam_D:
AUBase::FillInParameterName (outParameterInfo, kParameterDName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamD;
break;
default:
result = kAudioUnitErr_InvalidParameter;
break;
}
} else {
result = kAudioUnitErr_InvalidParameter;
}
return result;
}
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// Dubly3::GetPropertyInfo
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ComponentResult Dubly3::GetPropertyInfo (AudioUnitPropertyID inID,
AudioUnitScope inScope,
AudioUnitElement inElement,
UInt32 & outDataSize,
Boolean & outWritable)
{
return AUEffectBase::GetPropertyInfo (inID, inScope, inElement, outDataSize, outWritable);
}
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// Dubly3::GetProperty
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ComponentResult Dubly3::GetProperty( AudioUnitPropertyID inID,
AudioUnitScope inScope,
AudioUnitElement inElement,
void * outData )
{
return AUEffectBase::GetProperty (inID, inScope, inElement, outData);
}
// Dubly3::Initialize
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ComponentResult Dubly3::Initialize()
{
ComponentResult result = AUEffectBase::Initialize();
if (result == noErr)
Reset(kAudioUnitScope_Global, 0);
return result;
}
#pragma mark ____Dubly3EffectKernel
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// Dubly3::Dubly3Kernel::Reset()
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
void Dubly3::Dubly3Kernel::Reset()
{
iirEnc = 0.0; iirDec = 0.0;
compEnc = 1.0; compDec = 1.0;
avgEnc = 0.0; avgDec = 0.0;
fpd = 1.0; while (fpd < 16386) fpd = rand()*UINT32_MAX;
}
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// Dubly3::Dubly3Kernel::Process
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
void Dubly3::Dubly3Kernel::Process( const Float32 *inSourceP,
Float32 *inDestP,
UInt32 inFramesToProcess,
UInt32 inNumChannels,
bool &ioSilence )
{
UInt32 nSampleFrames = inFramesToProcess;
const Float32 *sourceP = inSourceP;
Float32 *destP = inDestP;
double overallscale = 1.0;
overallscale /= 44100.0;
overallscale *= GetSampleRate();
double inputGain = pow(GetParameter( kParam_A )*2.0,2.0);
double dublyAmount = GetParameter( kParam_B )*2.0;
double outlyAmount = (1.0-GetParameter( kParam_B ))*-2.0;
if (outlyAmount < -1.0) outlyAmount = -1.0;
double iirEncFreq = (1.0-GetParameter( kParam_C ))/overallscale;
double iirDecFreq = GetParameter( kParam_C )/overallscale;
double outputGain = GetParameter( kParam_D )*2.0;
while (nSampleFrames-- > 0) {
double inputSample = *sourceP;
if (fabs(inputSample)<1.18e-23) inputSample = fpd * 1.18e-17;
if (inputGain != 1.0) {
inputSample *= inputGain;
}
//Dubly encode
iirEnc = (iirEnc * (1.0 - iirEncFreq)) + (inputSample * iirEncFreq);
double highPart = ((inputSample-iirEnc)*2.848);
highPart += avgEnc; avgEnc = (inputSample-iirEnc)*1.152;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
double dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compEnc = (compEnc*(1.0-iirEncFreq))+(dubly*iirEncFreq);
inputSample += ((highPart*compEnc)*dublyAmount);
} //end Dubly encode
if (inputSample > 1.57079633) inputSample = 1.57079633;
if (inputSample < -1.57079633) inputSample = -1.57079633;
inputSample = sin(inputSample);
//Dubly decode
iirDec = (iirDec * (1.0 - iirDecFreq)) + (inputSample * iirDecFreq);
highPart = ((inputSample-iirDec)*2.628);
highPart += avgDec; avgDec = (inputSample-iirDec)*1.372;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compDec = (compDec*(1.0-iirDecFreq))+(dubly*iirDecFreq);
inputSample += ((highPart*compDec)*outlyAmount);
} //end Dubly decode
if (outputGain != 1.0) {
inputSample *= outputGain;
}
//begin 32 bit floating point dither
int expon; frexpf((float)inputSample, &expon);
fpd ^= fpd << 13; fpd ^= fpd >> 17; fpd ^= fpd << 5;
inputSample += ((double(fpd)-uint32_t(0x7fffffff)) * 5.5e-36l * pow(2,expon+62));
//end 32 bit floating point dither
*destP = inputSample;
sourceP += inNumChannels; destP += inNumChannels;
}
}

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@ -0,0 +1,2 @@
_Dubly3Entry
_Dubly3Factory

View file

@ -0,0 +1,150 @@
/*
* File: Dubly3.h
*
* Version: 1.0
*
* Created: 9/13/24
*
* Copyright: Copyright © 2024 Airwindows, Airwindows uses the MIT license
*
* Disclaimer: IMPORTANT: This Apple software is supplied to you by Apple Computer, Inc. ("Apple") in
* consideration of your agreement to the following terms, and your use, installation, modification
* or redistribution of this Apple software constitutes acceptance of these terms. If you do
* not agree with these terms, please do not use, install, modify or redistribute this Apple
* software.
*
* In consideration of your agreement to abide by the following terms, and subject to these terms,
* Apple grants you a personal, non-exclusive license, under Apple's copyrights in this
* original Apple software (the "Apple Software"), to use, reproduce, modify and redistribute the
* Apple Software, with or without modifications, in source and/or binary forms; provided that if you
* redistribute the Apple Software in its entirety and without modifications, you must retain this
* notice and the following text and disclaimers in all such redistributions of the Apple Software.
* Neither the name, trademarks, service marks or logos of Apple Computer, Inc. may be used to
* endorse or promote products derived from the Apple Software without specific prior written
* permission from Apple. Except as expressly stated in this notice, no other rights or
* licenses, express or implied, are granted by Apple herein, including but not limited to any
* patent rights that may be infringed by your derivative works or by other works in which the
* Apple Software may be incorporated.
*
* The Apple Software is provided by Apple on an "AS IS" basis. APPLE MAKES NO WARRANTIES, EXPRESS OR
* IMPLIED, INCLUDING WITHOUT LIMITATION THE IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE, REGARDING THE APPLE SOFTWARE OR ITS USE AND OPERATION ALONE
* OR IN COMBINATION WITH YOUR PRODUCTS.
*
* IN NO EVENT SHALL APPLE BE LIABLE FOR ANY SPECIAL, INDIRECT, INCIDENTAL OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) ARISING IN ANY WAY OUT OF THE USE,
* REPRODUCTION, MODIFICATION AND/OR DISTRIBUTION OF THE APPLE SOFTWARE, HOWEVER CAUSED AND WHETHER
* UNDER THEORY OF CONTRACT, TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY OR OTHERWISE, EVEN
* IF APPLE HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
*/
#include "AUEffectBase.h"
#include "Dubly3Version.h"
#if AU_DEBUG_DISPATCHER
#include "AUDebugDispatcher.h"
#endif
#ifndef __Dubly3_h__
#define __Dubly3_h__
#pragma mark ____Dubly3 Parameters
// parameters
static const float kDefaultValue_ParamA = 0.5;
static const float kDefaultValue_ParamB = 0.5;
static const float kDefaultValue_ParamC = 0.5;
static const float kDefaultValue_ParamD = 0.5;
static CFStringRef kParameterAName = CFSTR("Input");
static CFStringRef kParameterBName = CFSTR("Tilt");
static CFStringRef kParameterCName = CFSTR("Shape");
static CFStringRef kParameterDName = CFSTR("Output");
enum {
kParam_A =0,
kParam_B =1,
kParam_C =2,
kParam_D =3,
//Add your parameters here...
kNumberOfParameters=4
};
#pragma mark ____Dubly3
class Dubly3 : public AUEffectBase
{
public:
Dubly3(AudioUnit component);
#if AU_DEBUG_DISPATCHER
virtual ~Dubly3 () { delete mDebugDispatcher; }
#endif
virtual AUKernelBase * NewKernel() { return new Dubly3Kernel(this); }
virtual ComponentResult GetParameterValueStrings(AudioUnitScope inScope,
AudioUnitParameterID inParameterID,
CFArrayRef * outStrings);
virtual ComponentResult GetParameterInfo(AudioUnitScope inScope,
AudioUnitParameterID inParameterID,
AudioUnitParameterInfo &outParameterInfo);
virtual ComponentResult GetPropertyInfo(AudioUnitPropertyID inID,
AudioUnitScope inScope,
AudioUnitElement inElement,
UInt32 & outDataSize,
Boolean & outWritable );
virtual ComponentResult GetProperty(AudioUnitPropertyID inID,
AudioUnitScope inScope,
AudioUnitElement inElement,
void * outData);
virtual ComponentResult Initialize();
virtual bool SupportsTail () { return true; }
virtual Float64 GetTailTime() {return (1.0/GetSampleRate())*0.0;} //in SECONDS! gsr * a number = in samples
virtual Float64 GetLatency() {return (1.0/GetSampleRate())*0.0;} // in SECONDS! gsr * a number = in samples
/*! @method Version */
virtual ComponentResult Version() { return kDubly3Version; }
protected:
class Dubly3Kernel : public AUKernelBase // most of the real work happens here
{
public:
Dubly3Kernel(AUEffectBase *inAudioUnit )
: AUKernelBase(inAudioUnit)
{
}
// *Required* overides for the process method for this effect
// processes one channel of interleaved samples
virtual void Process( const Float32 *inSourceP,
Float32 *inDestP,
UInt32 inFramesToProcess,
UInt32 inNumChannels,
bool &ioSilence);
virtual void Reset();
private:
double iirEnc;
double iirDec;
double compEnc;
double compDec;
double avgEnc;
double avgDec;
uint32_t fpd;
};
};
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
#endif

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@ -0,0 +1,61 @@
/*
* File: Dubly3.r
*
* Version: 1.0
*
* Created: 9/13/24
*
* Copyright: Copyright © 2024 Airwindows, Airwindows uses the MIT license
*
* Disclaimer: IMPORTANT: This Apple software is supplied to you by Apple Computer, Inc. ("Apple") in
* consideration of your agreement to the following terms, and your use, installation, modification
* or redistribution of this Apple software constitutes acceptance of these terms. If you do
* not agree with these terms, please do not use, install, modify or redistribute this Apple
* software.
*
* In consideration of your agreement to abide by the following terms, and subject to these terms,
* Apple grants you a personal, non-exclusive license, under Apple's copyrights in this
* original Apple software (the "Apple Software"), to use, reproduce, modify and redistribute the
* Apple Software, with or without modifications, in source and/or binary forms; provided that if you
* redistribute the Apple Software in its entirety and without modifications, you must retain this
* notice and the following text and disclaimers in all such redistributions of the Apple Software.
* Neither the name, trademarks, service marks or logos of Apple Computer, Inc. may be used to
* endorse or promote products derived from the Apple Software without specific prior written
* permission from Apple. Except as expressly stated in this notice, no other rights or
* licenses, express or implied, are granted by Apple herein, including but not limited to any
* patent rights that may be infringed by your derivative works or by other works in which the
* Apple Software may be incorporated.
*
* The Apple Software is provided by Apple on an "AS IS" basis. APPLE MAKES NO WARRANTIES, EXPRESS OR
* IMPLIED, INCLUDING WITHOUT LIMITATION THE IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE, REGARDING THE APPLE SOFTWARE OR ITS USE AND OPERATION ALONE
* OR IN COMBINATION WITH YOUR PRODUCTS.
*
* IN NO EVENT SHALL APPLE BE LIABLE FOR ANY SPECIAL, INDIRECT, INCIDENTAL OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) ARISING IN ANY WAY OUT OF THE USE,
* REPRODUCTION, MODIFICATION AND/OR DISTRIBUTION OF THE APPLE SOFTWARE, HOWEVER CAUSED AND WHETHER
* UNDER THEORY OF CONTRACT, TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY OR OTHERWISE, EVEN
* IF APPLE HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
*/
#include <AudioUnit/AudioUnit.r>
#include "Dubly3Version.h"
// Note that resource IDs must be spaced 2 apart for the 'STR ' name and description
#define kAudioUnitResID_Dubly3 1000
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ Dubly3~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
#define RES_ID kAudioUnitResID_Dubly3
#define COMP_TYPE kAudioUnitType_Effect
#define COMP_SUBTYPE Dubly3_COMP_SUBTYPE
#define COMP_MANUF Dubly3_COMP_MANF
#define VERSION kDubly3Version
#define NAME "Airwindows: Dubly3"
#define DESCRIPTION "Dubly3 AU"
#define ENTRY_POINT "Dubly3Entry"
#include "AUResources.r"

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View file

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/*
* File: Dubly3Version.h
*
* Version: 1.0
*
* Created: 9/13/24
*
* Copyright: Copyright © 2024 Airwindows, Airwindows uses the MIT license
*
* Disclaimer: IMPORTANT: This Apple software is supplied to you by Apple Computer, Inc. ("Apple") in
* consideration of your agreement to the following terms, and your use, installation, modification
* or redistribution of this Apple software constitutes acceptance of these terms. If you do
* not agree with these terms, please do not use, install, modify or redistribute this Apple
* software.
*
* In consideration of your agreement to abide by the following terms, and subject to these terms,
* Apple grants you a personal, non-exclusive license, under Apple's copyrights in this
* original Apple software (the "Apple Software"), to use, reproduce, modify and redistribute the
* Apple Software, with or without modifications, in source and/or binary forms; provided that if you
* redistribute the Apple Software in its entirety and without modifications, you must retain this
* notice and the following text and disclaimers in all such redistributions of the Apple Software.
* Neither the name, trademarks, service marks or logos of Apple Computer, Inc. may be used to
* endorse or promote products derived from the Apple Software without specific prior written
* permission from Apple. Except as expressly stated in this notice, no other rights or
* licenses, express or implied, are granted by Apple herein, including but not limited to any
* patent rights that may be infringed by your derivative works or by other works in which the
* Apple Software may be incorporated.
*
* The Apple Software is provided by Apple on an "AS IS" basis. APPLE MAKES NO WARRANTIES, EXPRESS OR
* IMPLIED, INCLUDING WITHOUT LIMITATION THE IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE, REGARDING THE APPLE SOFTWARE OR ITS USE AND OPERATION ALONE
* OR IN COMBINATION WITH YOUR PRODUCTS.
*
* IN NO EVENT SHALL APPLE BE LIABLE FOR ANY SPECIAL, INDIRECT, INCIDENTAL OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) ARISING IN ANY WAY OUT OF THE USE,
* REPRODUCTION, MODIFICATION AND/OR DISTRIBUTION OF THE APPLE SOFTWARE, HOWEVER CAUSED AND WHETHER
* UNDER THEORY OF CONTRACT, TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY OR OTHERWISE, EVEN
* IF APPLE HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
*/
#ifndef __Dubly3Version_h__
#define __Dubly3Version_h__
#ifdef DEBUG
#define kDubly3Version 0xFFFFFFFF
#else
#define kDubly3Version 0x00010000
#endif
//~~~~~~~~~~~~~~ Change!!! ~~~~~~~~~~~~~~~~~~~~~//
#define Dubly3_COMP_MANF 'Dthr'
#define Dubly3_COMP_SUBTYPE 'dblx'
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~//
#endif

View file

@ -0,0 +1,47 @@
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<!DOCTYPE plist PUBLIC "-//Apple//DTD PLIST 1.0//EN" "http://www.apple.com/DTDs/PropertyList-1.0.dtd">
<plist version="1.0">
<dict>
<key>AudioComponents</key>
<array>
<dict>
<key>description</key>
<string>${PRODUCT_NAME:identifier} AU</string>
<key>factoryFunction</key>
<string>${PRODUCT_NAME:identifier}Factory</string>
<key>manufacturer</key>
<string>Dthr</string>
<key>name</key>
<string>Airwindows: ${PRODUCT_NAME:identifier}</string>
<key>subtype</key>
<string>dblx</string>
<key>type</key>
<string>aufx</string>
<key>version</key>
<integer>65536</integer>
</dict>
</array>
<key>CFBundleDevelopmentRegion</key>
<string>English</string>
<key>CFBundleExecutable</key>
<string>${EXECUTABLE_NAME}</string>
<key>CFBundleIconFile</key>
<string></string>
<key>CFBundleIdentifier</key>
<string>$(PRODUCT_BUNDLE_IDENTIFIER)</string>
<key>CFBundleInfoDictionaryVersion</key>
<string>6.0</string>
<key>CFBundleName</key>
<string>${PROJECTNAMEASIDENTIFIER}</string>
<key>CFBundlePackageType</key>
<string>BNDL</string>
<key>CFBundleShortVersionString</key>
<string>1.0</string>
<key>CFBundleSignature</key>
<string>DthX</string>
<key>CFBundleVersion</key>
<string>1.0</string>
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<true/>
</dict>
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<?xml version="1.0" encoding="UTF-8"?>
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View file

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<?xml version="1.0" encoding="UTF-8"?>
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<dict>
<key>AudioComponents</key>
<array>
<dict>
<key>description</key>
<string>${PRODUCT_NAME:identifier} AU</string>
<key>factoryFunction</key>
<string>${PRODUCT_NAME:identifier}Factory</string>
<key>manufacturer</key>
<string>Dthr</string>
<key>name</key>
<string>Airwindows: ${PRODUCT_NAME:identifier}</string>
<key>subtype</key>
<string>totw</string>
<key>type</key>
<string>aufx</string>
<key>version</key>
<integer>65536</integer>
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<string>English</string>
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<key>CFBundlePackageType</key>
<string>BNDL</string>
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<string>1.0</string>
<key>CFBundleSignature</key>
<string>Dthr</string>
<key>CFBundleVersion</key>
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View file

@ -0,0 +1,5 @@
//
// Prefix header for all source files of the '«PROJECTNAMEASIDENTIFIER»' target in the '«PROJECTNAMEASIDENTIFIER»' project.
//
#include <CoreServices/CoreServices.h>

View file

@ -0,0 +1,599 @@
/*
* File: ToTape8.cpp
*
* Version: 1.0
*
* Created: 9/18/24
*
* Copyright: Copyright © 2024 Airwindows, Airwindows uses the MIT license
*
* Disclaimer: IMPORTANT: This Apple software is supplied to you by Apple Computer, Inc. ("Apple") in
* consideration of your agreement to the following terms, and your use, installation, modification
* or redistribution of this Apple software constitutes acceptance of these terms. If you do
* not agree with these terms, please do not use, install, modify or redistribute this Apple
* software.
*
* In consideration of your agreement to abide by the following terms, and subject to these terms,
* Apple grants you a personal, non-exclusive license, under Apple's copyrights in this
* original Apple software (the "Apple Software"), to use, reproduce, modify and redistribute the
* Apple Software, with or without modifications, in source and/or binary forms; provided that if you
* redistribute the Apple Software in its entirety and without modifications, you must retain this
* notice and the following text and disclaimers in all such redistributions of the Apple Software.
* Neither the name, trademarks, service marks or logos of Apple Computer, Inc. may be used to
* endorse or promote products derived from the Apple Software without specific prior written
* permission from Apple. Except as expressly stated in this notice, no other rights or
* licenses, express or implied, are granted by Apple herein, including but not limited to any
* patent rights that may be infringed by your derivative works or by other works in which the
* Apple Software may be incorporated.
*
* The Apple Software is provided by Apple on an "AS IS" basis. APPLE MAKES NO WARRANTIES, EXPRESS OR
* IMPLIED, INCLUDING WITHOUT LIMITATION THE IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE, REGARDING THE APPLE SOFTWARE OR ITS USE AND OPERATION ALONE
* OR IN COMBINATION WITH YOUR PRODUCTS.
*
* IN NO EVENT SHALL APPLE BE LIABLE FOR ANY SPECIAL, INDIRECT, INCIDENTAL OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) ARISING IN ANY WAY OUT OF THE USE,
* REPRODUCTION, MODIFICATION AND/OR DISTRIBUTION OF THE APPLE SOFTWARE, HOWEVER CAUSED AND WHETHER
* UNDER THEORY OF CONTRACT, TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY OR OTHERWISE, EVEN
* IF APPLE HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
*/
/*=============================================================================
ToTape8.cpp
=============================================================================*/
#include "ToTape8.h"
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
AUDIOCOMPONENT_ENTRY(AUBaseFactory, ToTape8)
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// ToTape8::ToTape8
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ToTape8::ToTape8(AudioUnit component)
: AUEffectBase(component)
{
CreateElements();
Globals()->UseIndexedParameters(kNumberOfParameters);
SetParameter(kParam_A, kDefaultValue_ParamA );
SetParameter(kParam_B, kDefaultValue_ParamB );
SetParameter(kParam_C, kDefaultValue_ParamC );
SetParameter(kParam_D, kDefaultValue_ParamD );
SetParameter(kParam_E, kDefaultValue_ParamE );
SetParameter(kParam_F, kDefaultValue_ParamF );
SetParameter(kParam_G, kDefaultValue_ParamG );
SetParameter(kParam_H, kDefaultValue_ParamH );
SetParameter(kParam_I, kDefaultValue_ParamI );
#if AU_DEBUG_DISPATCHER
mDebugDispatcher = new AUDebugDispatcher (this);
#endif
}
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// ToTape8::GetParameterValueStrings
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ComponentResult ToTape8::GetParameterValueStrings(AudioUnitScope inScope,
AudioUnitParameterID inParameterID,
CFArrayRef * outStrings)
{
return kAudioUnitErr_InvalidProperty;
}
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// ToTape8::GetParameterInfo
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ComponentResult ToTape8::GetParameterInfo(AudioUnitScope inScope,
AudioUnitParameterID inParameterID,
AudioUnitParameterInfo &outParameterInfo )
{
ComponentResult result = noErr;
outParameterInfo.flags = kAudioUnitParameterFlag_IsWritable
| kAudioUnitParameterFlag_IsReadable;
if (inScope == kAudioUnitScope_Global) {
switch(inParameterID)
{
case kParam_A:
AUBase::FillInParameterName (outParameterInfo, kParameterAName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamA;
break;
case kParam_B:
AUBase::FillInParameterName (outParameterInfo, kParameterBName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamB;
break;
case kParam_C:
AUBase::FillInParameterName (outParameterInfo, kParameterCName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamC;
break;
case kParam_D:
AUBase::FillInParameterName (outParameterInfo, kParameterDName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamD;
break;
case kParam_E:
AUBase::FillInParameterName (outParameterInfo, kParameterEName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamE;
break;
case kParam_F:
AUBase::FillInParameterName (outParameterInfo, kParameterFName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamF;
break;
case kParam_G:
AUBase::FillInParameterName (outParameterInfo, kParameterGName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamG;
break;
case kParam_H:
AUBase::FillInParameterName (outParameterInfo, kParameterHName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_CustomUnit;
outParameterInfo.flags |= kAudioUnitParameterFlag_DisplayLogarithmic;
outParameterInfo.unitName = kParameterHUnit;
outParameterInfo.minValue = 25.0;
outParameterInfo.maxValue = 200.0;
outParameterInfo.defaultValue = kDefaultValue_ParamH;
break;
case kParam_I:
AUBase::FillInParameterName (outParameterInfo, kParameterIName, false);
outParameterInfo.unit = kAudioUnitParameterUnit_Generic;
outParameterInfo.minValue = 0.0;
outParameterInfo.maxValue = 1.0;
outParameterInfo.defaultValue = kDefaultValue_ParamI;
break;
default:
result = kAudioUnitErr_InvalidParameter;
break;
}
} else {
result = kAudioUnitErr_InvalidParameter;
}
return result;
}
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// ToTape8::GetPropertyInfo
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ComponentResult ToTape8::GetPropertyInfo (AudioUnitPropertyID inID,
AudioUnitScope inScope,
AudioUnitElement inElement,
UInt32 & outDataSize,
Boolean & outWritable)
{
return AUEffectBase::GetPropertyInfo (inID, inScope, inElement, outDataSize, outWritable);
}
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// state that plugin supports only stereo-in/stereo-out processing
UInt32 ToTape8::SupportedNumChannels(const AUChannelInfo ** outInfo)
{
if (outInfo != NULL)
{
static AUChannelInfo info;
info.inChannels = 2;
info.outChannels = 2;
*outInfo = &info;
}
return 1;
}
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// ToTape8::GetProperty
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ComponentResult ToTape8::GetProperty( AudioUnitPropertyID inID,
AudioUnitScope inScope,
AudioUnitElement inElement,
void * outData )
{
return AUEffectBase::GetProperty (inID, inScope, inElement, outData);
}
// ToTape8::Initialize
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ComponentResult ToTape8::Initialize()
{
ComponentResult result = AUEffectBase::Initialize();
if (result == noErr)
Reset(kAudioUnitScope_Global, 0);
return result;
}
#pragma mark ____ToTape8EffectKernel
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// ToTape8::ToTape8Kernel::Reset()
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ComponentResult ToTape8::Reset(AudioUnitScope inScope, AudioUnitElement inElement)
{
iirEncL = 0.0; iirDecL = 0.0;
compEncL = 1.0; compDecL = 1.0;
avgEncL = 0.0; avgDecL = 0.0;
iirEncR = 0.0; iirDecR = 0.0;
compEncR = 1.0; compDecR = 1.0;
avgEncR = 0.0; avgDecR = 0.0;
for (int temp = 0; temp < 1001; temp++) {dL[temp] = 0.0;dR[temp] = 0.0;}
sweepL = M_PI;
sweepR = M_PI;
nextmaxL = 0.5;
nextmaxR = 0.5;
gcount = 0;
for (int x = 0; x < gslew_total; x++) gslew[x] = 0.0;
iirMidRollerL = 0.0;
iirLowCutoffL = 0.0;
iirMidRollerR = 0.0;
iirLowCutoffR = 0.0;
headBumpL = 0.0;
headBumpR = 0.0;
for (int x = 0; x < hdb_total; x++) {hdbA[x] = 0.0;hdbB[x] = 0.0;}
//from ZBandpass, so I can use enums with it
lastSampleL = 0.0;
wasPosClipL = false;
wasNegClipL = false;
lastSampleR = 0.0;
wasPosClipR = false;
wasNegClipR = false;
for (int x = 0; x < 16; x++) {intermediateL[x] = 0.0; intermediateR[x] = 0.0;}
//this is reset: values being initialized only once. Startup values, whatever they are.
fpdL = 1.0; while (fpdL < 16386) fpdL = rand()*UINT32_MAX;
fpdR = 1.0; while (fpdR < 16386) fpdR = rand()*UINT32_MAX;
return noErr;
}
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// ToTape8::ProcessBufferLists
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
OSStatus ToTape8::ProcessBufferLists(AudioUnitRenderActionFlags & ioActionFlags,
const AudioBufferList & inBuffer,
AudioBufferList & outBuffer,
UInt32 inFramesToProcess)
{
Float32 * inputL = (Float32*)(inBuffer.mBuffers[0].mData);
Float32 * inputR = (Float32*)(inBuffer.mBuffers[1].mData);
Float32 * outputL = (Float32*)(outBuffer.mBuffers[0].mData);
Float32 * outputR = (Float32*)(outBuffer.mBuffers[1].mData);
UInt32 nSampleFrames = inFramesToProcess;
double overallscale = 1.0;
overallscale /= 44100.0;
overallscale *= GetSampleRate();
int spacing = floor(overallscale); //should give us working basic scaling, usually 2 or 4
if (spacing < 1) spacing = 1; if (spacing > 16) spacing = 16;
double inputGain = pow(GetParameter( kParam_A )*2.0,2.0);
double dublyAmount = GetParameter( kParam_B )*2.0;
double outlyAmount = (1.0-GetParameter( kParam_B ))*-2.0;
if (outlyAmount < -1.0) outlyAmount = -1.0;
double iirEncFreq = (1.0-GetParameter( kParam_C ))/overallscale;
double iirDecFreq = GetParameter( kParam_C )/overallscale;
double iirMidFreq = ((GetParameter( kParam_C ) * 0.618) + 0.382)/overallscale;
double flutDepth = pow(GetParameter( kParam_D ),6)*overallscale*50;
if (flutDepth > 498.0) flutDepth = 498.0;
double flutFrequency = (0.02*pow(GetParameter( kParam_E ),3))/overallscale;
double bias = (GetParameter( kParam_F )*2.0)-1.0;
double underBias = (pow(bias,4)*0.25)/overallscale;
double overBias = pow(1.0-bias,3)/overallscale;
if (bias > 0.0) underBias = 0.0;
if (bias < 0.0) overBias = 1.0/overallscale;
gslew[threshold9] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold8] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold7] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold6] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold5] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold4] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold3] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold2] = overBias;
overBias *= 1.618033988749894848204586;
gslew[threshold1] = overBias;
overBias *= 1.618033988749894848204586;
double headBumpDrive = (GetParameter( kParam_G )*0.1)/overallscale;
double headBumpMix = GetParameter( kParam_G )*0.5;
double subCurve = sin(GetParameter( kParam_G )*M_PI);
double iirSubFreq = (subCurve*0.008)/overallscale;
hdbA[hdb_freq] = GetParameter( kParam_H )/GetSampleRate();
hdbB[hdb_freq] = hdbA[hdb_freq]*0.9375;
hdbB[hdb_reso] = hdbA[hdb_reso] = 0.618033988749894848204586;
hdbB[hdb_a1] = hdbA[hdb_a1] = 0.0;
double K = tan(M_PI * hdbA[hdb_freq]);
double norm = 1.0 / (1.0 + K / hdbA[hdb_reso] + K * K);
hdbA[hdb_a0] = K / hdbA[hdb_reso] * norm;
hdbA[hdb_a2] = -hdbA[hdb_a0];
hdbA[hdb_b1] = 2.0 * (K * K - 1.0) * norm;
hdbA[hdb_b2] = (1.0 - K / hdbA[hdb_reso] + K * K) * norm;
K = tan(M_PI * hdbB[hdb_freq]);
norm = 1.0 / (1.0 + K / hdbB[hdb_reso] + K * K);
hdbB[hdb_a0] = K / hdbB[hdb_reso] * norm;
hdbB[hdb_a2] = -hdbB[hdb_a0];
hdbB[hdb_b1] = 2.0 * (K * K - 1.0) * norm;
hdbB[hdb_b2] = (1.0 - K / hdbB[hdb_reso] + K * K) * norm;
double outputGain = GetParameter( kParam_I )*2.0;
while (nSampleFrames-- > 0) {
double inputSampleL = *inputL;
double inputSampleR = *inputR;
if (fabs(inputSampleL)<1.18e-23) inputSampleL = fpdL * 1.18e-17;
if (fabs(inputSampleR)<1.18e-23) inputSampleR = fpdR * 1.18e-17;
if (inputGain != 1.0) {
inputSampleL *= inputGain;
inputSampleR *= inputGain;
}
//Dubly encode
iirEncL = (iirEncL * (1.0 - iirEncFreq)) + (inputSampleL * iirEncFreq);
double highPart = ((inputSampleL-iirEncL)*2.848);
highPart += avgEncL; avgEncL = (inputSampleL-iirEncL)*1.152;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
double dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compEncL = (compEncL*(1.0-iirEncFreq))+(dubly*iirEncFreq);
inputSampleL += ((highPart*compEncL)*dublyAmount);
} //end Dubly encode L
iirEncR = (iirEncR * (1.0 - iirEncFreq)) + (inputSampleR * iirEncFreq);
highPart = ((inputSampleR-iirEncR)*2.848);
highPart += avgEncR; avgEncR = (inputSampleR-iirEncR)*1.152;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compEncR = (compEncR*(1.0-iirEncFreq))+(dubly*iirEncFreq);
inputSampleR += ((highPart*compEncR)*dublyAmount);
} //end Dubly encode R
//begin Flutter
if (flutDepth > 0.0) {
if (gcount < 0 || gcount > 999) gcount = 999;
dL[gcount] = inputSampleL;
int count = gcount;
double offset = flutDepth + (flutDepth * sin(sweepL));
sweepL += nextmaxL * flutFrequency;
if (sweepL > (M_PI*2.0)) {
sweepL -= M_PI*2.0;
double flutA = 0.24 + (fpdL / (double)UINT32_MAX * 0.74);
fpdL ^= fpdL << 13; fpdL ^= fpdL >> 17; fpdL ^= fpdL << 5;
double flutB = 0.24 + (fpdL / (double)UINT32_MAX * 0.74);
if (fabs(flutA-sin(sweepR+nextmaxR))<fabs(flutB-sin(sweepR+nextmaxR))) nextmaxL = flutA; else nextmaxL = flutB;
}
count += (int)floor(offset);
inputSampleL = (dL[count-((count > 999)?1000:0)] * (1-(offset-floor(offset))));
inputSampleL += (dL[count+1-((count+1 > 999)?1000:0)] * (offset-floor(offset)));
dR[gcount] = inputSampleR;
count = gcount;
offset = flutDepth + (flutDepth * sin(sweepR));
sweepR += nextmaxR * flutFrequency;
if (sweepR > (M_PI*2.0)) {
sweepR -= M_PI*2.0;
double flutA = 0.24 + (fpdR / (double)UINT32_MAX * 0.74);
fpdR ^= fpdR << 13; fpdR ^= fpdR >> 17; fpdR ^= fpdR << 5;
double flutB = 0.24 + (fpdR / (double)UINT32_MAX * 0.74);
if (fabs(flutA-sin(sweepL+nextmaxL))<fabs(flutB-sin(sweepL+nextmaxL))) nextmaxR = flutA; else nextmaxR = flutB;
}
count += (int)floor(offset);
inputSampleR = (dR[count-((count > 999)?1000:0)] * (1-(offset-floor(offset))));
inputSampleR += (dR[count+1-((count+1 > 999)?1000:0)] * (offset-floor(offset)));
gcount--;
}
//end Flutter
//start bias routine
if (fabs(bias) > 0.001) {
for (int x = 0; x < gslew_total; x += 3) {
if (underBias > 0.0) {
double stuck = fabs(inputSampleL - (gslew[x]/0.975)) / underBias;
if (stuck < 1.0) inputSampleL = (inputSampleL * stuck) + ((gslew[x]/0.975)*(1.0-stuck));
stuck = fabs(inputSampleR - (gslew[x+1]/0.975)) / underBias;
if (stuck < 1.0) inputSampleR = (inputSampleR * stuck) + ((gslew[x+1]/0.975)*(1.0-stuck));
}
if ((inputSampleL - gslew[x]) > gslew[x+2]) inputSampleL = gslew[x] + gslew[x+2];
if (-(inputSampleL - gslew[x]) > gslew[x+2]) inputSampleL = gslew[x] - gslew[x+2];
gslew[x] = inputSampleL * 0.975;
if ((inputSampleR - gslew[x+1]) > gslew[x+2]) inputSampleR = gslew[x+1] + gslew[x+2];
if (-(inputSampleR - gslew[x+1]) > gslew[x+2]) inputSampleR = gslew[x+1] - gslew[x+2];
gslew[x+1] = inputSampleR * 0.975;
}
}
//end bias routine
//toTape basic algorithm L
iirMidRollerL = (iirMidRollerL * (1.0-iirMidFreq)) + (inputSampleL*iirMidFreq);
double HighsSampleL = inputSampleL - iirMidRollerL;
double LowsSampleL = iirMidRollerL;
if (iirSubFreq > 0.0) {
iirLowCutoffL = (iirLowCutoffL * (1.0-iirSubFreq)) + (LowsSampleL*iirSubFreq);
LowsSampleL -= iirLowCutoffL;
}
if (LowsSampleL > 1.57079633) LowsSampleL = 1.57079633;
if (LowsSampleL < -1.57079633) LowsSampleL = -1.57079633;
LowsSampleL = sin(LowsSampleL);
double thinnedHighSample = fabs(HighsSampleL)*1.57079633;
if (thinnedHighSample > 1.57079633) thinnedHighSample = 1.57079633;
thinnedHighSample = 1.0-cos(thinnedHighSample);
if (HighsSampleL < 0) thinnedHighSample = -thinnedHighSample;
HighsSampleL -= thinnedHighSample;
//toTape basic algorithm R
iirMidRollerR = (iirMidRollerR * (1.0-iirMidFreq)) + (inputSampleR*iirMidFreq);
double HighsSampleR = inputSampleR - iirMidRollerR;
double LowsSampleR = iirMidRollerR;
if (iirSubFreq > 0.0) {
iirLowCutoffR = (iirLowCutoffR * (1.0-iirSubFreq)) + (LowsSampleR*iirSubFreq);
LowsSampleR -= iirLowCutoffR;
}
if (LowsSampleR > 1.57079633) LowsSampleR = 1.57079633;
if (LowsSampleR < -1.57079633) LowsSampleR = -1.57079633;
LowsSampleR = sin(LowsSampleR);
thinnedHighSample = fabs(HighsSampleR)*1.57079633;
if (thinnedHighSample > 1.57079633) thinnedHighSample = 1.57079633;
thinnedHighSample = 1.0-cos(thinnedHighSample);
if (HighsSampleR < 0) thinnedHighSample = -thinnedHighSample;
HighsSampleR -= thinnedHighSample;
//begin HeadBump
double headBumpSampleL = 0.0;
double headBumpSampleR = 0.0;
if (headBumpMix > 0.0) {
headBumpL += (LowsSampleL * headBumpDrive);
headBumpL -= (headBumpL * headBumpL * headBumpL * (0.0618/sqrt(overallscale)));
headBumpR += (LowsSampleR * headBumpDrive);
headBumpR -= (headBumpR * headBumpR * headBumpR * (0.0618/sqrt(overallscale)));
double headBiqSampleL = (headBumpL * hdbA[hdb_a0]) + hdbA[hdb_sL1];
hdbA[hdb_sL1] = (headBumpL * hdbA[hdb_a1]) - (headBiqSampleL * hdbA[hdb_b1]) + hdbA[hdb_sL2];
hdbA[hdb_sL2] = (headBumpL * hdbA[hdb_a2]) - (headBiqSampleL * hdbA[hdb_b2]);
headBumpSampleL = (headBiqSampleL * hdbB[hdb_a0]) + hdbB[hdb_sL1];
hdbB[hdb_sL1] = (headBiqSampleL * hdbB[hdb_a1]) - (headBumpSampleL * hdbB[hdb_b1]) + hdbB[hdb_sL2];
hdbB[hdb_sL2] = (headBiqSampleL * hdbB[hdb_a2]) - (headBumpSampleL * hdbB[hdb_b2]);
double headBiqSampleR = (headBumpR * hdbA[hdb_a0]) + hdbA[hdb_sR1];
hdbA[hdb_sR1] = (headBumpR * hdbA[hdb_a1]) - (headBiqSampleR * hdbA[hdb_b1]) + hdbA[hdb_sR2];
hdbA[hdb_sR2] = (headBumpR * hdbA[hdb_a2]) - (headBiqSampleR * hdbA[hdb_b2]);
headBumpSampleR = (headBiqSampleR * hdbB[hdb_a0]) + hdbB[hdb_sR1];
hdbB[hdb_sR1] = (headBiqSampleR * hdbB[hdb_a1]) - (headBumpSampleR * hdbB[hdb_b1]) + hdbB[hdb_sR2];
hdbB[hdb_sR2] = (headBiqSampleR * hdbB[hdb_a2]) - (headBumpSampleR * hdbB[hdb_b2]);
}
//end HeadBump
inputSampleL = LowsSampleL + HighsSampleL + (headBumpSampleL * headBumpMix);
inputSampleR = LowsSampleR + HighsSampleR + (headBumpSampleR * headBumpMix);
//Dubly decode
iirDecL = (iirDecL * (1.0 - iirDecFreq)) + (inputSampleL * iirDecFreq);
highPart = ((inputSampleL-iirDecL)*2.628);
highPart += avgDecL; avgDecL = (inputSampleL-iirDecL)*1.372;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compDecL = (compDecL*(1.0-iirDecFreq))+(dubly*iirDecFreq);
inputSampleL += ((highPart*compDecL)*outlyAmount);
} //end Dubly decode L
iirDecR = (iirDecR * (1.0 - iirDecFreq)) + (inputSampleR * iirDecFreq);
highPart = ((inputSampleR-iirDecR)*2.628);
highPart += avgDecR; avgDecR = (inputSampleR-iirDecR)*1.372;
if (highPart > 1.0) highPart = 1.0; if (highPart < -1.0) highPart = -1.0;
dubly = fabs(highPart);
if (dubly > 0.0) {
double adjust = log(1.0+(255.0*dubly))/2.40823996531;
if (adjust > 0.0) dubly /= adjust;
compDecR = (compDecR*(1.0-iirDecFreq))+(dubly*iirDecFreq);
inputSampleR += ((highPart*compDecR)*outlyAmount);
} //end Dubly decode R
if (outputGain != 1.0) {
inputSampleL *= outputGain;
inputSampleR *= outputGain;
}
//begin ClipOnly2 stereo as a little, compressed chunk that can be dropped into code
if (inputSampleL > 4.0) inputSampleL = 4.0; if (inputSampleL < -4.0) inputSampleL = -4.0;
if (wasPosClipL == true) { //current will be over
if (inputSampleL<lastSampleL) lastSampleL=0.7058208+(inputSampleL*0.2609148);
else lastSampleL = 0.2491717+(lastSampleL*0.7390851);
} wasPosClipL = false;
if (inputSampleL>0.9549925859) {wasPosClipL=true;inputSampleL=0.7058208+(lastSampleL*0.2609148);}
if (wasNegClipL == true) { //current will be -over
if (inputSampleL > lastSampleL) lastSampleL=-0.7058208+(inputSampleL*0.2609148);
else lastSampleL=-0.2491717+(lastSampleL*0.7390851);
} wasNegClipL = false;
if (inputSampleL<-0.9549925859) {wasNegClipL=true;inputSampleL=-0.7058208+(lastSampleL*0.2609148);}
intermediateL[spacing] = inputSampleL;
inputSampleL = lastSampleL; //Latency is however many samples equals one 44.1k sample
for (int x = spacing; x > 0; x--) intermediateL[x-1] = intermediateL[x];
lastSampleL = intermediateL[0]; //run a little buffer to handle this
if (inputSampleR > 4.0) inputSampleR = 4.0; if (inputSampleR < -4.0) inputSampleR = -4.0;
if (wasPosClipR == true) { //current will be over
if (inputSampleR<lastSampleR) lastSampleR=0.7058208+(inputSampleR*0.2609148);
else lastSampleR = 0.2491717+(lastSampleR*0.7390851);
} wasPosClipR = false;
if (inputSampleR>0.9549925859) {wasPosClipR=true;inputSampleR=0.7058208+(lastSampleR*0.2609148);}
if (wasNegClipR == true) { //current will be -over
if (inputSampleR > lastSampleR) lastSampleR=-0.7058208+(inputSampleR*0.2609148);
else lastSampleR=-0.2491717+(lastSampleR*0.7390851);
} wasNegClipR = false;
if (inputSampleR<-0.9549925859) {wasNegClipR=true;inputSampleR=-0.7058208+(lastSampleR*0.2609148);}
intermediateR[spacing] = inputSampleR;
inputSampleR = lastSampleR; //Latency is however many samples equals one 44.1k sample
for (int x = spacing; x > 0; x--) intermediateR[x-1] = intermediateR[x];
lastSampleR = intermediateR[0]; //run a little buffer to handle this
//end ClipOnly2 stereo as a little, compressed chunk that can be dropped into code
//begin 32 bit stereo floating point dither
int expon; frexpf((float)inputSampleL, &expon);
fpdL ^= fpdL << 13; fpdL ^= fpdL >> 17; fpdL ^= fpdL << 5;
inputSampleL += ((double(fpdL)-uint32_t(0x7fffffff)) * 5.5e-36l * pow(2,expon+62));
frexpf((float)inputSampleR, &expon);
fpdR ^= fpdR << 13; fpdR ^= fpdR >> 17; fpdR ^= fpdR << 5;
inputSampleR += ((double(fpdR)-uint32_t(0x7fffffff)) * 5.5e-36l * pow(2,expon+62));
//end 32 bit stereo floating point dither
*outputL = inputSampleL;
*outputR = inputSampleR;
//direct stereo out
inputL += 1;
inputR += 1;
outputL += 1;
outputR += 1;
}
return noErr;
}

View file

@ -0,0 +1,2 @@
_ToTape8Entry
_ToTape8Factory

View file

@ -0,0 +1,230 @@
/*
* File: ToTape8.h
*
* Version: 1.0
*
* Created: 9/18/24
*
* Copyright: Copyright © 2024 Airwindows, Airwindows uses the MIT license
*
* Disclaimer: IMPORTANT: This Apple software is supplied to you by Apple Computer, Inc. ("Apple") in
* consideration of your agreement to the following terms, and your use, installation, modification
* or redistribution of this Apple software constitutes acceptance of these terms. If you do
* not agree with these terms, please do not use, install, modify or redistribute this Apple
* software.
*
* In consideration of your agreement to abide by the following terms, and subject to these terms,
* Apple grants you a personal, non-exclusive license, under Apple's copyrights in this
* original Apple software (the "Apple Software"), to use, reproduce, modify and redistribute the
* Apple Software, with or without modifications, in source and/or binary forms; provided that if you
* redistribute the Apple Software in its entirety and without modifications, you must retain this
* notice and the following text and disclaimers in all such redistributions of the Apple Software.
* Neither the name, trademarks, service marks or logos of Apple Computer, Inc. may be used to
* endorse or promote products derived from the Apple Software without specific prior written
* permission from Apple. Except as expressly stated in this notice, no other rights or
* licenses, express or implied, are granted by Apple herein, including but not limited to any
* patent rights that may be infringed by your derivative works or by other works in which the
* Apple Software may be incorporated.
*
* The Apple Software is provided by Apple on an "AS IS" basis. APPLE MAKES NO WARRANTIES, EXPRESS OR
* IMPLIED, INCLUDING WITHOUT LIMITATION THE IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE, REGARDING THE APPLE SOFTWARE OR ITS USE AND OPERATION ALONE
* OR IN COMBINATION WITH YOUR PRODUCTS.
*
* IN NO EVENT SHALL APPLE BE LIABLE FOR ANY SPECIAL, INDIRECT, INCIDENTAL OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) ARISING IN ANY WAY OUT OF THE USE,
* REPRODUCTION, MODIFICATION AND/OR DISTRIBUTION OF THE APPLE SOFTWARE, HOWEVER CAUSED AND WHETHER
* UNDER THEORY OF CONTRACT, TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY OR OTHERWISE, EVEN
* IF APPLE HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
*/
#include "AUEffectBase.h"
#include "ToTape8Version.h"
#if AU_DEBUG_DISPATCHER
#include "AUDebugDispatcher.h"
#endif
#ifndef __ToTape8_h__
#define __ToTape8_h__
#pragma mark ____ToTape8 Parameters
// parameters
static const float kDefaultValue_ParamA = 0.5;
static const float kDefaultValue_ParamB = 0.5;
static const float kDefaultValue_ParamC = 0.5;
static const float kDefaultValue_ParamD = 0.5;
static const float kDefaultValue_ParamE = 0.5;
static const float kDefaultValue_ParamF = 0.5;
static const float kDefaultValue_ParamG = 0.5;
static const float kDefaultValue_ParamH = 50.0;
static const float kDefaultValue_ParamI = 0.5;
static CFStringRef kParameterAName = CFSTR("Input");
static CFStringRef kParameterBName = CFSTR("Tilt");
static CFStringRef kParameterCName = CFSTR("Shape");
static CFStringRef kParameterDName = CFSTR("Flutter");
static CFStringRef kParameterEName = CFSTR("FlutSpd");
static CFStringRef kParameterFName = CFSTR("Bias");
static CFStringRef kParameterGName = CFSTR("HeadBmp");
static CFStringRef kParameterHName = CFSTR("HeadFrq");
static CFStringRef kParameterHUnit = CFSTR("hz");
static CFStringRef kParameterIName = CFSTR("Output");
enum {
kParam_A =0,
kParam_B =1,
kParam_C =2,
kParam_D =3,
kParam_E =4,
kParam_F =5,
kParam_G =6,
kParam_H =7,
kParam_I =8,
//Add your parameters here...
kNumberOfParameters=9
};
#pragma mark ____ToTape8
class ToTape8 : public AUEffectBase
{
public:
ToTape8(AudioUnit component);
#if AU_DEBUG_DISPATCHER
virtual ~ToTape8 () { delete mDebugDispatcher; }
#endif
virtual ComponentResult Reset(AudioUnitScope inScope, AudioUnitElement inElement);
virtual OSStatus ProcessBufferLists(AudioUnitRenderActionFlags & ioActionFlags,
const AudioBufferList & inBuffer, AudioBufferList & outBuffer,
UInt32 inFramesToProcess);
virtual UInt32 SupportedNumChannels(const AUChannelInfo ** outInfo);
virtual ComponentResult GetParameterValueStrings(AudioUnitScope inScope,
AudioUnitParameterID inParameterID,
CFArrayRef * outStrings);
virtual ComponentResult GetParameterInfo(AudioUnitScope inScope,
AudioUnitParameterID inParameterID,
AudioUnitParameterInfo &outParameterInfo);
virtual ComponentResult GetPropertyInfo(AudioUnitPropertyID inID,
AudioUnitScope inScope,
AudioUnitElement inElement,
UInt32 & outDataSize,
Boolean & outWritable );
virtual ComponentResult GetProperty(AudioUnitPropertyID inID,
AudioUnitScope inScope,
AudioUnitElement inElement,
void * outData);
virtual ComponentResult Initialize();
virtual bool SupportsTail () { return true; }
virtual Float64 GetTailTime() {return (1.0/GetSampleRate())*0.0;} //in SECONDS! gsr * a number = in samples
virtual Float64 GetLatency() {return (1.0/GetSampleRate())*0.0;} // in SECONDS! gsr * a number = in samples
/*! @method Version */
virtual ComponentResult Version() { return kToTape8Version; }
private:
double iirEncL;
double iirDecL;
double compEncL;
double compDecL;
double avgEncL;
double avgDecL;
double iirEncR;
double iirDecR;
double compEncR;
double compDecR;
double avgEncR;
double avgDecR;
double dL[1002];
double dR[1002];
double sweepL;
double sweepR;
double nextmaxL;
double nextmaxR;
int gcount;
enum {
prevSampL1,
prevSampR1,
threshold1,
prevSampL2,
prevSampR2,
threshold2,
prevSampL3,
prevSampR3,
threshold3,
prevSampL4,
prevSampR4,
threshold4,
prevSampL5,
prevSampR5,
threshold5,
prevSampL6,
prevSampR6,
threshold6,
prevSampL7,
prevSampR7,
threshold7,
prevSampL8,
prevSampR8,
threshold8,
prevSampL9,
prevSampR9,
threshold9,
gslew_total
}; //fixed frequency pear filter for ultrasonics, stereo
double gslew[gslew_total]; //end bias
double iirMidRollerL;
double iirLowCutoffL;
double iirMidRollerR;
double iirLowCutoffR;
double headBumpL;
double headBumpR;
enum {
hdb_freq,
hdb_reso,
hdb_a0,
hdb_a1,
hdb_a2,
hdb_b1,
hdb_b2,
hdb_sL1,
hdb_sL2,
hdb_sR1,
hdb_sR2,
hdb_total
}; //fixed frequency biquad filter for ultrasonics, stereo
double hdbA[hdb_total];
double hdbB[hdb_total];
double lastSampleL;
double intermediateL[16];
bool wasPosClipL;
bool wasNegClipL;
double lastSampleR;
double intermediateR[16];
bool wasPosClipR;
bool wasNegClipR; //Stereo ClipOnly2
uint32_t fpdL;
uint32_t fpdR;
};
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
#endif

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@ -0,0 +1,61 @@
/*
* File: ToTape8.r
*
* Version: 1.0
*
* Created: 9/18/24
*
* Copyright: Copyright © 2024 Airwindows, Airwindows uses the MIT license
*
* Disclaimer: IMPORTANT: This Apple software is supplied to you by Apple Computer, Inc. ("Apple") in
* consideration of your agreement to the following terms, and your use, installation, modification
* or redistribution of this Apple software constitutes acceptance of these terms. If you do
* not agree with these terms, please do not use, install, modify or redistribute this Apple
* software.
*
* In consideration of your agreement to abide by the following terms, and subject to these terms,
* Apple grants you a personal, non-exclusive license, under Apple's copyrights in this
* original Apple software (the "Apple Software"), to use, reproduce, modify and redistribute the
* Apple Software, with or without modifications, in source and/or binary forms; provided that if you
* redistribute the Apple Software in its entirety and without modifications, you must retain this
* notice and the following text and disclaimers in all such redistributions of the Apple Software.
* Neither the name, trademarks, service marks or logos of Apple Computer, Inc. may be used to
* endorse or promote products derived from the Apple Software without specific prior written
* permission from Apple. Except as expressly stated in this notice, no other rights or
* licenses, express or implied, are granted by Apple herein, including but not limited to any
* patent rights that may be infringed by your derivative works or by other works in which the
* Apple Software may be incorporated.
*
* The Apple Software is provided by Apple on an "AS IS" basis. APPLE MAKES NO WARRANTIES, EXPRESS OR
* IMPLIED, INCLUDING WITHOUT LIMITATION THE IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE, REGARDING THE APPLE SOFTWARE OR ITS USE AND OPERATION ALONE
* OR IN COMBINATION WITH YOUR PRODUCTS.
*
* IN NO EVENT SHALL APPLE BE LIABLE FOR ANY SPECIAL, INDIRECT, INCIDENTAL OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) ARISING IN ANY WAY OUT OF THE USE,
* REPRODUCTION, MODIFICATION AND/OR DISTRIBUTION OF THE APPLE SOFTWARE, HOWEVER CAUSED AND WHETHER
* UNDER THEORY OF CONTRACT, TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY OR OTHERWISE, EVEN
* IF APPLE HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
*/
#include <AudioUnit/AudioUnit.r>
#include "ToTape8Version.h"
// Note that resource IDs must be spaced 2 apart for the 'STR ' name and description
#define kAudioUnitResID_ToTape8 1000
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ ToTape8~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
#define RES_ID kAudioUnitResID_ToTape8
#define COMP_TYPE kAudioUnitType_Effect
#define COMP_SUBTYPE ToTape8_COMP_SUBTYPE
#define COMP_MANUF ToTape8_COMP_MANF
#define VERSION kToTape8Version
#define NAME "Airwindows: ToTape8"
#define DESCRIPTION "ToTape8 AU"
#define ENTRY_POINT "ToTape8Entry"
#include "AUResources.r"

File diff suppressed because it is too large Load diff

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@ -0,0 +1,131 @@
// !$*UTF8*$!
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activeTarget = 8D01CCC60486CAD60068D4B7 /* ToTape8 */;
codeSenseManager = 8BD3CCB9148830B20062E48C /* Code sense */;
perUserDictionary = {
PBXConfiguration.PBXFileTableDataSource3.PBXFileTableDataSource = {
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PBXFileTableDataSourceColumnSortingKey = PBXFileDataSource_Filename_ColumnID;
PBXFileTableDataSourceColumnWidthsKey = (
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20,
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);
PBXFileTableDataSourceColumnsKey = (
PBXFileDataSource_FiletypeID,
PBXFileDataSource_Filename_ColumnID,
PBXFileDataSource_Built_ColumnID,
PBXFileDataSource_ObjectSize_ColumnID,
PBXFileDataSource_Errors_ColumnID,
PBXFileDataSource_Warnings_ColumnID,
PBXFileDataSource_Target_ColumnID,
);
};
PBXConfiguration.PBXTargetDataSource.PBXTargetDataSource = {
PBXFileTableDataSourceColumnSortingDirectionKey = "-1";
PBXFileTableDataSourceColumnSortingKey = PBXFileDataSource_Filename_ColumnID;
PBXFileTableDataSourceColumnWidthsKey = (
20,
188,
60,
20,
48,
43,
43,
);
PBXFileTableDataSourceColumnsKey = (
PBXFileDataSource_FiletypeID,
PBXFileDataSource_Filename_ColumnID,
PBXTargetDataSource_PrimaryAttribute,
PBXFileDataSource_Built_ColumnID,
PBXFileDataSource_ObjectSize_ColumnID,
PBXFileDataSource_Errors_ColumnID,
PBXFileDataSource_Warnings_ColumnID,
);
};
PBXPerProjectTemplateStateSaveDate = 748547051;
PBXWorkspaceStateSaveDate = 748547051;
};
perUserProjectItems = {
8B85A11E2C9DE6C2005F4A7E /* PBXTextBookmark */ = 8B85A11E2C9DE6C2005F4A7E /* PBXTextBookmark */;
8B85A17B2C9DEBF1005F4A7E /* PBXTextBookmark */ = 8B85A17B2C9DEBF1005F4A7E /* PBXTextBookmark */;
};
sourceControlManager = 8BD3CCB8148830B20062E48C /* Source Control */;
userBuildSettings = {
};
};
8B85A11E2C9DE6C2005F4A7E /* PBXTextBookmark */ = {
isa = PBXTextBookmark;
fRef = 8BA05A660720730100365D66 /* ToTape8.cpp */;
name = "ToTape8.cpp: 1";
rLen = 0;
rLoc = 0;
rType = 0;
vrLen = 24;
vrLoc = 0;
};
8B85A17B2C9DEBF1005F4A7E /* PBXTextBookmark */ = {
isa = PBXTextBookmark;
fRef = 8BA05A660720730100365D66 /* ToTape8.cpp */;
name = "ToTape8.cpp: 1";
rLen = 0;
rLoc = 0;
rType = 0;
vrLen = 0;
vrLoc = 0;
};
8BA05A660720730100365D66 /* ToTape8.cpp */ = {
uiCtxt = {
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sepNavSelRange = "{0, 0}";
sepNavVisRange = "{0, 0}";
sepNavWindowFrame = "{{663, 57}, {1000, 821}}";
};
};
8BA05A690720730100365D66 /* ToTape8Version.h */ = {
uiCtxt = {
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sepNavSelRange = "{2893, 0}";
sepNavVisRange = "{1067, 1889}";
sepNavWindowFrame = "{{15, 52}, {1000, 821}}";
};
};
8BA05A7F072073D200365D66 /* AUBase.cpp */ = {
uiCtxt = {
sepNavIntBoundsRect = "{{0, 0}, {516, 23430}}";
sepNavSelRange = "{0, 0}";
sepNavVisRange = "{0, 1336}";
};
};
8BC6025B073B072D006C4272 /* ToTape8.h */ = {
uiCtxt = {
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sepNavSelRange = "{5677, 208}";
sepNavVisRange = "{6554, 667}";
sepNavWindowFrame = "{{440, 57}, {1000, 821}}";
};
};
8BD3CCB8148830B20062E48C /* Source Control */ = {
isa = PBXSourceControlManager;
fallbackIsa = XCSourceControlManager;
isSCMEnabled = 0;
scmConfiguration = {
repositoryNamesForRoots = {
"" = "";
};
};
};
8BD3CCB9148830B20062E48C /* Code sense */ = {
isa = PBXCodeSenseManager;
indexTemplatePath = "";
};
8D01CCC60486CAD60068D4B7 /* ToTape8 */ = {
activeExec = 0;
};
}

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@ -0,0 +1,965 @@
// !$*UTF8*$!
{
archiveVersion = 1;
classes = {
};
objectVersion = 45;
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View file

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View file

@ -0,0 +1,58 @@
/*
* File: ToTape8Version.h
*
* Version: 1.0
*
* Created: 9/18/24
*
* Copyright: Copyright © 2024 Airwindows, Airwindows uses the MIT license
*
* Disclaimer: IMPORTANT: This Apple software is supplied to you by Apple Computer, Inc. ("Apple") in
* consideration of your agreement to the following terms, and your use, installation, modification
* or redistribution of this Apple software constitutes acceptance of these terms. If you do
* not agree with these terms, please do not use, install, modify or redistribute this Apple
* software.
*
* In consideration of your agreement to abide by the following terms, and subject to these terms,
* Apple grants you a personal, non-exclusive license, under Apple's copyrights in this
* original Apple software (the "Apple Software"), to use, reproduce, modify and redistribute the
* Apple Software, with or without modifications, in source and/or binary forms; provided that if you
* redistribute the Apple Software in its entirety and without modifications, you must retain this
* notice and the following text and disclaimers in all such redistributions of the Apple Software.
* Neither the name, trademarks, service marks or logos of Apple Computer, Inc. may be used to
* endorse or promote products derived from the Apple Software without specific prior written
* permission from Apple. Except as expressly stated in this notice, no other rights or
* licenses, express or implied, are granted by Apple herein, including but not limited to any
* patent rights that may be infringed by your derivative works or by other works in which the
* Apple Software may be incorporated.
*
* The Apple Software is provided by Apple on an "AS IS" basis. APPLE MAKES NO WARRANTIES, EXPRESS OR
* IMPLIED, INCLUDING WITHOUT LIMITATION THE IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE, REGARDING THE APPLE SOFTWARE OR ITS USE AND OPERATION ALONE
* OR IN COMBINATION WITH YOUR PRODUCTS.
*
* IN NO EVENT SHALL APPLE BE LIABLE FOR ANY SPECIAL, INDIRECT, INCIDENTAL OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) ARISING IN ANY WAY OUT OF THE USE,
* REPRODUCTION, MODIFICATION AND/OR DISTRIBUTION OF THE APPLE SOFTWARE, HOWEVER CAUSED AND WHETHER
* UNDER THEORY OF CONTRACT, TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY OR OTHERWISE, EVEN
* IF APPLE HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
*/
#ifndef __ToTape8Version_h__
#define __ToTape8Version_h__
#ifdef DEBUG
#define kToTape8Version 0xFFFFFFFF
#else
#define kToTape8Version 0x00010000
#endif
//~~~~~~~~~~~~~~ Change!!! ~~~~~~~~~~~~~~~~~~~~~//
#define ToTape8_COMP_MANF 'Dthr'
#define ToTape8_COMP_SUBTYPE 'totw'
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~//
#endif

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