/* ============================================================================== This file is part of the JUCE library. Copyright (c) 2015 - ROLI Ltd. Permission is granted to use this software under the terms of either: a) the GPL v2 (or any later version) b) the Affero GPL v3 Details of these licenses can be found at: www.gnu.org/licenses JUCE is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. ------------------------------------------------------------------------------ To release a closed-source product which uses JUCE, commercial licenses are available: visit www.juce.com for more information. ============================================================================== */ // Your project must contain an AppConfig.h file with your project-specific settings in it, // and your header search path must make it accessible to the module's files. #include "AppConfig.h" //============================================================================== #if JucePlugin_Build_VST3 && (__APPLE_CPP__ || __APPLE_CC__ || _WIN32 || _WIN64) #include "../../juce_audio_processors/format_types/juce_VST3Headers.h" #include "../utility/juce_CheckSettingMacros.h" #include "../utility/juce_IncludeModuleHeaders.h" #include "../utility/juce_WindowsHooks.h" #include "../../juce_audio_processors/format_types/juce_VST3Common.h" #ifndef JUCE_VST3_CAN_REPLACE_VST2 #define JUCE_VST3_CAN_REPLACE_VST2 1 #endif #if JUCE_VST3_CAN_REPLACE_VST2 #if JUCE_MSVC #pragma warning (push) #pragma warning (disable: 4514 4996) #endif #include #if JUCE_MSVC #pragma warning (pop) #endif #endif #undef Point #undef Component namespace juce { using namespace Steinberg; //============================================================================== #if JUCE_MAC extern void initialiseMacVST(); #if ! JUCE_64BIT extern void updateEditorCompBoundsVST (Component*); #endif extern void* attachComponentToWindowRefVST (Component*, void* parentWindowOrView, bool isNSView); extern void detachComponentFromWindowRefVST (Component*, void* nsWindow, bool isNSView); extern void setNativeHostWindowSizeVST (void* window, Component*, int newWidth, int newHeight, bool isNSView); #endif //============================================================================== class JuceAudioProcessor : public FUnknown { public: JuceAudioProcessor (AudioProcessor* source) noexcept : isBypassed (false), refCount (0), audioProcessor (source) {} virtual ~JuceAudioProcessor() {} AudioProcessor* get() const noexcept { return audioProcessor; } JUCE_DECLARE_VST3_COM_QUERY_METHODS JUCE_DECLARE_VST3_COM_REF_METHODS static const FUID iid; bool isBypassed; private: Atomic refCount; ScopedPointer audioProcessor; ScopedJuceInitialiser_GUI libraryInitialiser; JuceAudioProcessor() JUCE_DELETED_FUNCTION; JUCE_DECLARE_NON_COPYABLE_WITH_LEAK_DETECTOR (JuceAudioProcessor) }; //============================================================================== class JuceVST3EditController : public Vst::EditController, public Vst::IMidiMapping, public AudioProcessorListener { public: JuceVST3EditController (Vst::IHostApplication* host) { if (host != nullptr) host->queryInterface (FUnknown::iid, (void**) &hostContext); } //============================================================================== static const FUID iid; //============================================================================== #if JUCE_CLANG #pragma clang diagnostic push #pragma clang diagnostic ignored "-Winconsistent-missing-override" #endif REFCOUNT_METHODS (ComponentBase) #if JUCE_CLANG #pragma clang diagnostic pop #endif tresult PLUGIN_API queryInterface (const TUID targetIID, void** obj) override { TEST_FOR_AND_RETURN_IF_VALID (targetIID, FObject) TEST_FOR_AND_RETURN_IF_VALID (targetIID, JuceVST3EditController) TEST_FOR_AND_RETURN_IF_VALID (targetIID, Vst::IEditController) TEST_FOR_AND_RETURN_IF_VALID (targetIID, Vst::IEditController2) TEST_FOR_AND_RETURN_IF_VALID (targetIID, Vst::IConnectionPoint) TEST_FOR_AND_RETURN_IF_VALID (targetIID, Vst::IMidiMapping) TEST_FOR_COMMON_BASE_AND_RETURN_IF_VALID (targetIID, IPluginBase, Vst::IEditController) TEST_FOR_COMMON_BASE_AND_RETURN_IF_VALID (targetIID, IDependent, Vst::IEditController) TEST_FOR_COMMON_BASE_AND_RETURN_IF_VALID (targetIID, FUnknown, Vst::IEditController) if (doUIDsMatch (targetIID, JuceAudioProcessor::iid)) { audioProcessor->addRef(); *obj = audioProcessor; return kResultOk; } *obj = nullptr; return kNoInterface; } //============================================================================== tresult PLUGIN_API initialize (FUnknown* context) override { if (hostContext != context) { if (hostContext != nullptr) hostContext->release(); hostContext = context; if (hostContext != nullptr) hostContext->addRef(); } return kResultTrue; } tresult PLUGIN_API terminate() override { if (AudioProcessor* const pluginInstance = getPluginInstance()) pluginInstance->removeListener (this); audioProcessor = nullptr; return EditController::terminate(); } //============================================================================== struct Param : public Vst::Parameter { Param (AudioProcessor& p, int index) : owner (p), paramIndex (index) { info.id = (Vst::ParamID) index; toString128 (info.title, p.getParameterName (index)); toString128 (info.shortTitle, p.getParameterName (index, 8)); toString128 (info.units, p.getParameterLabel (index)); const int numSteps = p.getParameterNumSteps (index); info.stepCount = (Steinberg::int32) (numSteps > 0 && numSteps < 0x7fffffff ? numSteps - 1 : 0); info.defaultNormalizedValue = p.getParameterDefaultValue (index); jassert (info.defaultNormalizedValue >= 0 && info.defaultNormalizedValue <= 1.0f); info.unitId = Vst::kRootUnitId; info.flags = p.isParameterAutomatable (index) ? Vst::ParameterInfo::kCanAutomate : 0; } virtual ~Param() {} bool setNormalized (Vst::ParamValue v) override { v = jlimit (0.0, 1.0, v); if (v != valueNormalized) { valueNormalized = v; changed(); return true; } return false; } void toString (Vst::ParamValue value, Vst::String128 result) const override { if (AudioProcessorParameter* p = owner.getParameters()[paramIndex]) toString128 (result, p->getText ((float) value, 128)); else // remain backward-compatible with old JUCE code toString128 (result, owner.getParameterText (paramIndex, 128)); } bool fromString (const Vst::TChar* text, Vst::ParamValue& outValueNormalized) const override { if (AudioProcessorParameter* p = owner.getParameters()[paramIndex]) { outValueNormalized = p->getValueForText (getStringFromVstTChars (text)); return true; } return false; } static String getStringFromVstTChars (const Vst::TChar* text) { return juce::String (juce::CharPointer_UTF16 (reinterpret_cast (text))); } Vst::ParamValue toPlain (Vst::ParamValue v) const override { return v; } Vst::ParamValue toNormalized (Vst::ParamValue v) const override { return v; } private: AudioProcessor& owner; int paramIndex; JUCE_DECLARE_NON_COPYABLE_WITH_LEAK_DETECTOR (Param) }; //============================================================================== struct BypassParam : public Vst::Parameter { BypassParam (AudioProcessor& p, int index) : owner (p), paramIndex (index) { info.id = (Vst::ParamID) index; toString128 (info.title, "Bypass"); toString128 (info.shortTitle, "Bypass"); toString128 (info.units, ""); info.stepCount = 1; info.defaultNormalizedValue = 0.0f; info.unitId = Vst::kRootUnitId; info.flags = Vst::ParameterInfo::kIsBypass; } virtual ~BypassParam() {} bool setNormalized (Vst::ParamValue v) override { bool bypass = (v != 0.0f); v = (bypass ? 1.0f : 0.0f); if (valueNormalized != v) { valueNormalized = v; changed(); return true; } return false; } void toString (Vst::ParamValue value, Vst::String128 result) const override { bool bypass = (value != 0.0f); toString128 (result, bypass ? "On" : "Off"); } bool fromString (const Vst::TChar* text, Vst::ParamValue& outValueNormalized) const override { const String paramValueString (getStringFromVstTChars (text)); if (paramValueString.equalsIgnoreCase ("on") || paramValueString.equalsIgnoreCase ("yes") || paramValueString.equalsIgnoreCase ("true")) { outValueNormalized = 1.0f; return true; } if (paramValueString.equalsIgnoreCase ("off") || paramValueString.equalsIgnoreCase ("no") || paramValueString.equalsIgnoreCase ("false")) { outValueNormalized = 0.0f; return true; } var varValue = JSON::fromString (paramValueString); if (varValue.isDouble() || varValue.isInt() || varValue.isInt64() || varValue.isBool()) { double value = varValue; outValueNormalized = (value != 0.0) ? 1.0f : 0.0f; return true; } return false; } static String getStringFromVstTChars (const Vst::TChar* text) { return juce::String (juce::CharPointer_UTF16 (reinterpret_cast (text))); } Vst::ParamValue toPlain (Vst::ParamValue v) const override { return v; } Vst::ParamValue toNormalized (Vst::ParamValue v) const override { return v; } private: AudioProcessor& owner; int paramIndex; JUCE_DECLARE_NON_COPYABLE_WITH_LEAK_DETECTOR (BypassParam) }; //============================================================================== tresult PLUGIN_API setComponentState (IBStream* stream) override { // Cubase and Nuendo need to inform the host of the current parameter values if (AudioProcessor* const pluginInstance = getPluginInstance()) { const int numParameters = pluginInstance->getNumParameters(); for (int i = 0; i < numParameters; ++i) setParamNormalized ((Vst::ParamID) i, (double) pluginInstance->getParameter (i)); setParamNormalized ((Vst::ParamID) numParameters, audioProcessor->isBypassed ? 1.0f : 0.0f); } return Vst::EditController::setComponentState (stream); } void setAudioProcessor (JuceAudioProcessor* audioProc) { if (audioProcessor != audioProc) { audioProcessor = audioProc; setupParameters(); } } tresult PLUGIN_API connect (IConnectionPoint* other) override { if (other != nullptr && audioProcessor == nullptr) { const tresult result = ComponentBase::connect (other); if (! audioProcessor.loadFrom (other)) sendIntMessage ("JuceVST3EditController", (Steinberg::int64) (pointer_sized_int) this); else setupParameters(); return result; } jassertfalse; return kResultFalse; } //============================================================================== tresult PLUGIN_API getMidiControllerAssignment (Steinberg::int32 /*busIndex*/, Steinberg::int16 channel, Vst::CtrlNumber midiControllerNumber, Vst::ParamID& resultID) override { resultID = (Vst::ParamID) midiControllerToParameter[channel][midiControllerNumber]; return kResultTrue; // Returning false makes some hosts stop asking for further MIDI Controller Assignments } // Converts an incoming parameter index to a MIDI controller: bool getMidiControllerForParameter (int index, int& channel, int& ctrlNumber) { const int mappedIndex = index - parameterToMidiControllerOffset; if (isPositiveAndBelow (mappedIndex, numElementsInArray (parameterToMidiController))) { const MidiController& mc = parameterToMidiController[mappedIndex]; if (mc.channel != -1 && mc.ctrlNumber != -1) { channel = jlimit (1, 16, mc.channel + 1); ctrlNumber = mc.ctrlNumber; return true; } } return false; } //============================================================================== IPlugView* PLUGIN_API createView (const char* name) override { if (AudioProcessor* const pluginInstance = getPluginInstance()) { if (pluginInstance->hasEditor() && name != nullptr && strcmp (name, Vst::ViewType::kEditor) == 0) { return new JuceVST3Editor (*this, *pluginInstance); } } return nullptr; } //============================================================================== void audioProcessorParameterChangeGestureBegin (AudioProcessor*, int index) override { beginEdit ((Vst::ParamID) index); } void audioProcessorParameterChanged (AudioProcessor*, int index, float newValue) override { // NB: Cubase has problems if performEdit is called without setParamNormalized EditController::setParamNormalized ((Vst::ParamID) index, (double) newValue); performEdit ((Vst::ParamID) index, (double) newValue); } void audioProcessorParameterChangeGestureEnd (AudioProcessor*, int index) override { endEdit ((Vst::ParamID) index); } void audioProcessorChanged (AudioProcessor*) override { if (componentHandler != nullptr) componentHandler->restartComponent (Vst::kLatencyChanged | Vst::kParamValuesChanged); } //============================================================================== AudioProcessor* getPluginInstance() const noexcept { if (audioProcessor != nullptr) return audioProcessor->get(); return nullptr; } private: //============================================================================== ComSmartPtr audioProcessor; ScopedJuceInitialiser_GUI libraryInitialiser; struct MidiController { MidiController() noexcept : channel (-1), ctrlNumber (-1) {} int channel, ctrlNumber; }; enum { numMIDIChannels = 16 }; int parameterToMidiControllerOffset; MidiController parameterToMidiController[numMIDIChannels * Vst::kCountCtrlNumber]; int midiControllerToParameter[numMIDIChannels][Vst::kCountCtrlNumber]; //============================================================================== void setupParameters() { if (AudioProcessor* const pluginInstance = getPluginInstance()) { pluginInstance->addListener (this); if (parameters.getParameterCount() <= 0) { const int numParameters = pluginInstance->getNumParameters(); for (int i = 0; i < numParameters; ++i) parameters.addParameter (new Param (*pluginInstance, i)); parameters.addParameter (new BypassParam (*pluginInstance, numParameters)); } // We need to account for the bypass parameter in the numParameters passed to // the next function initialiseMidiControllerMappings (pluginInstance->getNumParameters() + 1); audioProcessorChanged (pluginInstance); } } void initialiseMidiControllerMappings (const int numVstParameters) { parameterToMidiControllerOffset = numVstParameters; for (int c = 0, p = 0; c < numMIDIChannels; ++c) { for (int i = 0; i < Vst::kCountCtrlNumber; ++i, ++p) { midiControllerToParameter[c][i] = p + parameterToMidiControllerOffset; parameterToMidiController[p].channel = c; parameterToMidiController[p].ctrlNumber = i; parameters.addParameter (new Vst::Parameter (toString ("MIDI CC " + String (c) + "|" + String (i)), (Vst::ParamID) (p + parameterToMidiControllerOffset), 0, 0, 0, Vst::ParameterInfo::kCanAutomate, Vst::kRootUnitId)); } } } void sendIntMessage (const char* idTag, const Steinberg::int64 value) { jassert (hostContext != nullptr); if (Vst::IMessage* message = allocateMessage()) { const FReleaser releaser (message); message->setMessageID (idTag); message->getAttributes()->setInt (idTag, value); sendMessage (message); } } //============================================================================== class JuceVST3Editor : public Vst::EditorView { public: JuceVST3Editor (JuceVST3EditController& ec, AudioProcessor& p) : Vst::EditorView (&ec, nullptr), owner (&ec), pluginInstance (p) { #if JUCE_MAC macHostWindow = nullptr; isNSView = false; #endif component = new ContentWrapperComponent (*this, p); } //============================================================================== tresult PLUGIN_API isPlatformTypeSupported (FIDString type) override { if (type != nullptr && pluginInstance.hasEditor()) { #if JUCE_WINDOWS if (strcmp (type, kPlatformTypeHWND) == 0) #else if (strcmp (type, kPlatformTypeNSView) == 0 || strcmp (type, kPlatformTypeHIView) == 0) #endif return kResultTrue; } return kResultFalse; } tresult PLUGIN_API attached (void* parent, FIDString type) override { if (parent == nullptr || isPlatformTypeSupported (type) == kResultFalse) return kResultFalse; if (component == nullptr) component = new ContentWrapperComponent (*this, pluginInstance); #if JUCE_WINDOWS component->addToDesktop (0, parent); component->setOpaque (true); component->setVisible (true); #else isNSView = (strcmp (type, kPlatformTypeNSView) == 0); macHostWindow = juce::attachComponentToWindowRefVST (component, parent, isNSView); #endif component->resizeHostWindow(); systemWindow = parent; attachedToParent(); return kResultTrue; } tresult PLUGIN_API removed() override { if (component != nullptr) { #if JUCE_WINDOWS component->removeFromDesktop(); #else if (macHostWindow != nullptr) { juce::detachComponentFromWindowRefVST (component, macHostWindow, isNSView); macHostWindow = nullptr; } #endif component = nullptr; } return CPluginView::removed(); } tresult PLUGIN_API onSize (ViewRect* newSize) override { if (newSize != nullptr) { rect = *newSize; if (component != nullptr) component->setSize (rect.getWidth(), rect.getHeight()); return kResultTrue; } jassertfalse; return kResultFalse; } tresult PLUGIN_API getSize (ViewRect* size) override { if (size != nullptr && component != nullptr) { *size = ViewRect (0, 0, component->getWidth(), component->getHeight()); return kResultTrue; } return kResultFalse; } tresult PLUGIN_API canResize() override { return kResultTrue; } tresult PLUGIN_API checkSizeConstraint (ViewRect* rectToCheck) override { if (rectToCheck != nullptr && component != nullptr) { rectToCheck->right = rectToCheck->left + component->getWidth(); rectToCheck->bottom = rectToCheck->top + component->getHeight(); return kResultTrue; } jassertfalse; return kResultFalse; } private: //============================================================================== class ContentWrapperComponent : public juce::Component { public: ContentWrapperComponent (JuceVST3Editor& editor, AudioProcessor& plugin) : owner (editor), pluginEditor (plugin.createEditorIfNeeded()) { setOpaque (true); setBroughtToFrontOnMouseClick (true); // if hasEditor() returns true then createEditorIfNeeded has to return a valid editor jassert (pluginEditor != nullptr); if (pluginEditor != nullptr) { addAndMakeVisible (pluginEditor); setBounds (pluginEditor->getLocalBounds()); resizeHostWindow(); } } ~ContentWrapperComponent() { if (pluginEditor != nullptr) { PopupMenu::dismissAllActiveMenus(); pluginEditor->processor.editorBeingDeleted (pluginEditor); } } void paint (Graphics& g) override { g.fillAll (Colours::black); } void childBoundsChanged (Component*) override { resizeHostWindow(); } void resized() override { if (pluginEditor != nullptr) pluginEditor->setBounds (getLocalBounds()); } void resizeHostWindow() { if (pluginEditor != nullptr) { const int w = pluginEditor->getWidth(); const int h = pluginEditor->getHeight(); #if JUCE_WINDOWS setSize (w, h); #else if (owner.macHostWindow != nullptr && ! getHostType().isWavelab()) juce::setNativeHostWindowSizeVST (owner.macHostWindow, this, w, h, owner.isNSView); #endif if (owner.plugFrame != nullptr) { ViewRect newSize (0, 0, w, h); owner.plugFrame->resizeView (&owner, &newSize); if (getHostType().isWavelab()) setBounds (0, 0, w, h); } } } private: JuceVST3Editor& owner; ScopedPointer pluginEditor; JUCE_DECLARE_NON_COPYABLE_WITH_LEAK_DETECTOR (ContentWrapperComponent) }; //============================================================================== ComSmartPtr owner; AudioProcessor& pluginInstance; ScopedPointer component; friend class ContentWrapperComponent; #if JUCE_MAC void* macHostWindow; bool isNSView; #endif #if JUCE_WINDOWS WindowsHooks hooks; #endif ScopedJuceInitialiser_GUI libraryInitialiser; //============================================================================== JUCE_DECLARE_NON_COPYABLE_WITH_LEAK_DETECTOR (JuceVST3Editor) }; JUCE_DECLARE_NON_COPYABLE_WITH_LEAK_DETECTOR (JuceVST3EditController) }; //============================================================================== class JuceVST3Component : public Vst::IComponent, public Vst::IAudioProcessor, public Vst::IUnitInfo, public Vst::IConnectionPoint, public AudioPlayHead { public: JuceVST3Component (Vst::IHostApplication* h) : refCount (1), host (h), audioInputs (Vst::kAudio, Vst::kInput), audioOutputs (Vst::kAudio, Vst::kOutput), eventInputs (Vst::kEvent, Vst::kInput), eventOutputs (Vst::kEvent, Vst::kOutput) { pluginInstance = createPluginFilterOfType (AudioProcessor::wrapperType_VST3); comPluginInstance = new JuceAudioProcessor (pluginInstance); zerostruct (processContext); processSetup.maxSamplesPerBlock = 1024; processSetup.processMode = Vst::kRealtime; processSetup.sampleRate = 44100.0; processSetup.symbolicSampleSize = Vst::kSample32; vstBypassParameterId = pluginInstance->getNumParameters(); pluginInstance->setPlayHead (this); } ~JuceVST3Component() { if (pluginInstance != nullptr) if (pluginInstance->getPlayHead() == this) pluginInstance->setPlayHead (nullptr); audioInputs.removeAll(); audioOutputs.removeAll(); eventInputs.removeAll(); eventOutputs.removeAll(); } //============================================================================== AudioProcessor& getPluginInstance() const noexcept { return *pluginInstance; } //============================================================================== static const FUID iid; JUCE_DECLARE_VST3_COM_REF_METHODS tresult PLUGIN_API queryInterface (const TUID targetIID, void** obj) override { TEST_FOR_AND_RETURN_IF_VALID (targetIID, IPluginBase) TEST_FOR_AND_RETURN_IF_VALID (targetIID, JuceVST3Component) TEST_FOR_AND_RETURN_IF_VALID (targetIID, Vst::IComponent) TEST_FOR_AND_RETURN_IF_VALID (targetIID, Vst::IAudioProcessor) TEST_FOR_AND_RETURN_IF_VALID (targetIID, Vst::IUnitInfo) TEST_FOR_AND_RETURN_IF_VALID (targetIID, Vst::IConnectionPoint) TEST_FOR_COMMON_BASE_AND_RETURN_IF_VALID (targetIID, FUnknown, Vst::IComponent) if (doUIDsMatch (targetIID, JuceAudioProcessor::iid)) { comPluginInstance->addRef(); *obj = comPluginInstance; return kResultOk; } *obj = nullptr; return kNoInterface; } //============================================================================== tresult PLUGIN_API initialize (FUnknown* hostContext) override { if (host != hostContext) host.loadFrom (hostContext); #if JucePlugin_MaxNumInputChannels > 0 addAudioBusTo (audioInputs, TRANS("Audio Input"), getArrangementForNumChannels (JucePlugin_MaxNumInputChannels)); #endif #if JucePlugin_MaxNumOutputChannels > 0 addAudioBusTo (audioOutputs, TRANS("Audio Output"), getArrangementForNumChannels (JucePlugin_MaxNumOutputChannels)); #endif #if JucePlugin_WantsMidiInput addEventBusTo (eventInputs, TRANS("MIDI Input")); #endif #if JucePlugin_ProducesMidiOutput addEventBusTo (eventOutputs, TRANS("MIDI Output")); #endif processContext.sampleRate = processSetup.sampleRate; preparePlugin (processSetup.sampleRate, (int) processSetup.maxSamplesPerBlock); return kResultTrue; } tresult PLUGIN_API terminate() override { getPluginInstance().releaseResources(); return kResultTrue; } //============================================================================== tresult PLUGIN_API connect (IConnectionPoint* other) override { if (other != nullptr && juceVST3EditController == nullptr) juceVST3EditController.loadFrom (other); return kResultTrue; } tresult PLUGIN_API disconnect (IConnectionPoint*) override { juceVST3EditController = nullptr; return kResultTrue; } tresult PLUGIN_API notify (Vst::IMessage* message) override { if (message != nullptr && juceVST3EditController == nullptr) { Steinberg::int64 value = 0; if (message->getAttributes()->getInt ("JuceVST3EditController", value) == kResultTrue) { juceVST3EditController = (JuceVST3EditController*) (pointer_sized_int) value; if (juceVST3EditController != nullptr) juceVST3EditController->setAudioProcessor (comPluginInstance); else jassertfalse; } } return kResultTrue; } //============================================================================== tresult PLUGIN_API getControllerClassId (TUID classID) override { memcpy (classID, JuceVST3EditController::iid, sizeof (TUID)); return kResultTrue; } Steinberg::int32 PLUGIN_API getBusCount (Vst::MediaType type, Vst::BusDirection dir) override { if (Vst::BusList* const busList = getBusListFor (type, dir)) return busList->total(); return 0; } tresult PLUGIN_API getBusInfo (Vst::MediaType type, Vst::BusDirection dir, Steinberg::int32 index, Vst::BusInfo& info) override { if (Vst::BusList* const busList = getBusListFor (type, dir)) { if (Vst::Bus* const bus = (Vst::Bus*) busList->at (index)) { info.mediaType = type; info.direction = dir; if (bus->getInfo (info)) return kResultTrue; } } zerostruct (info); return kResultFalse; } tresult PLUGIN_API activateBus (Vst::MediaType type, Vst::BusDirection dir, Steinberg::int32 index, TBool state) override { if (Vst::BusList* const busList = getBusListFor (type, dir)) { if (Vst::Bus* const bus = (Vst::Bus*) busList->at (index)) { bus->setActive (state); return kResultTrue; } } jassertfalse; return kResultFalse; } tresult PLUGIN_API setActive (TBool state) override { if (! state) { getPluginInstance().releaseResources(); } else { double sampleRate = getPluginInstance().getSampleRate(); int bufferSize = getPluginInstance().getBlockSize(); sampleRate = processSetup.sampleRate > 0.0 ? processSetup.sampleRate : sampleRate; bufferSize = processSetup.maxSamplesPerBlock > 0 ? (int) processSetup.maxSamplesPerBlock : bufferSize; channelList.clear(); channelList.insertMultiple (0, nullptr, jmax (JucePlugin_MaxNumInputChannels, JucePlugin_MaxNumOutputChannels) + 1); preparePlugin (sampleRate, bufferSize); } return kResultOk; } tresult PLUGIN_API setIoMode (Vst::IoMode) override { return kNotImplemented; } tresult PLUGIN_API getRoutingInfo (Vst::RoutingInfo&, Vst::RoutingInfo&) override { return kNotImplemented; } bool isBypassed() { return comPluginInstance->isBypassed; } void setBypassed (bool bypassed) { comPluginInstance->isBypassed = bypassed; } //============================================================================== void writeJucePrivateStateInformation (MemoryOutputStream& out) { ValueTree privateData (kJucePrivateDataIdentifier); // for now we only store the bypass value privateData.setProperty ("Bypass", var (isBypassed()), nullptr); privateData.writeToStream (out); } void setJucePrivateStateInformation (const void* data, int sizeInBytes) { ValueTree privateData = ValueTree::readFromData (data, static_cast (sizeInBytes)); setBypassed (static_cast (privateData.getProperty ("Bypass", var (false)))); } void getStateInformation (MemoryBlock& destData) { pluginInstance->getStateInformation (destData); // With bypass support, JUCE now needs to store private state data. // Put this at the end of the plug-in state and add a few null characters // so that plug-ins built with older versions of JUCE will hopefully ignore // this data. Additionally, we need to add some sort of magic identifier // at the very end of the private data so that JUCE has some sort of // way to figure out if the data was stored with a newer JUCE version. MemoryOutputStream extraData; extraData.writeInt64 (0); writeJucePrivateStateInformation (extraData); const int64 privateDataSize = (int64) (extraData.getDataSize() - sizeof (int64)); extraData.writeInt64 (privateDataSize); extraData << kJucePrivateDataIdentifier; // write magic string destData.append (extraData.getData(), extraData.getDataSize()); } void setStateInformation (const void* data, int sizeAsInt) { int64 size = sizeAsInt; // Check if this data was written with a newer JUCE version // and if it has the JUCE private data magic code at the end const size_t jucePrivDataIdentifierSize = std::strlen (kJucePrivateDataIdentifier); if (size >= jucePrivDataIdentifierSize + sizeof (int64)) { const char* buffer = static_cast (data); String magic (CharPointer_UTF8 (buffer + size - jucePrivDataIdentifierSize), CharPointer_UTF8 (buffer + size)); if (magic == kJucePrivateDataIdentifier) { // found a JUCE private data section uint64 privateDataSize; std::memcpy (&privateDataSize, buffer + (size - jucePrivDataIdentifierSize - sizeof (uint64)), sizeof (uint64)); privateDataSize = ByteOrder::swapIfBigEndian (privateDataSize); size -= privateDataSize + jucePrivDataIdentifierSize + sizeof (uint64); if (privateDataSize > 0) setJucePrivateStateInformation (buffer + size, static_cast (privateDataSize)); size -= sizeof (uint64); } } if (size >= 0) pluginInstance->setStateInformation (data, static_cast (size)); } //============================================================================== #if JUCE_VST3_CAN_REPLACE_VST2 void loadVST2VstWBlock (const char* data, int size) { const int headerLen = static_cast (htonl (*(juce::int32*) (data + 4))); const struct fxBank* bank = (const struct fxBank*) (data + (8 + headerLen)); const int version = static_cast (htonl (bank->version)); (void) version; jassert ('VstW' == htonl (*(juce::int32*) data)); jassert (1 == htonl (*(juce::int32*) (data + 8))); // version should be 1 according to Steinberg's docs jassert (cMagic == htonl (bank->chunkMagic)); jassert (chunkBankMagic == htonl (bank->fxMagic)); jassert (version == 1 || version == 2); jassert (JucePlugin_VSTUniqueID == htonl (bank->fxID)); setStateInformation (bank->content.data.chunk, jmin ((int) (size - (bank->content.data.chunk - data)), (int) htonl (bank->content.data.size))); } bool loadVST3PresetFile (const char* data, int size) { if (size < 48) return false; // At offset 4 there's a little-endian version number which seems to typically be 1 // At offset 8 there's 32 bytes the SDK calls "ASCII-encoded class id" const int chunkListOffset = (int) ByteOrder::littleEndianInt (data + 40); jassert (memcmp (data + chunkListOffset, "List", 4) == 0); const int entryCount = (int) ByteOrder::littleEndianInt (data + chunkListOffset + 4); jassert (entryCount > 0); for (int i = 0; i < entryCount; ++i) { const int entryOffset = chunkListOffset + 8 + 20 * i; if (entryOffset + 20 > size) return false; if (memcmp (data + entryOffset, "Comp", 4) == 0) { // "Comp" entries seem to contain the data. juce::uint64 chunkOffset = ByteOrder::littleEndianInt64 (data + entryOffset + 4); juce::uint64 chunkSize = ByteOrder::littleEndianInt64 (data + entryOffset + 12); if (chunkOffset + chunkSize > static_cast (size)) { jassertfalse; return false; } loadVST2VstWBlock (data + chunkOffset, (int) chunkSize); } } return true; } bool loadVST2CompatibleState (const char* data, int size) { if (size < 4) return false; if (htonl (*(juce::int32*) data) == 'VstW') { loadVST2VstWBlock (data, size); return true; } if (memcmp (data, "VST3", 4) == 0) { // In Cubase 5, when loading VST3 .vstpreset files, // we get the whole content of the files to load. // In Cubase 7 we get just the contents within and // we go directly to the loadVST2VstW codepath instead. return loadVST3PresetFile (data, size); } return false; } #endif bool loadStateData (const void* data, int size) { #if JUCE_VST3_CAN_REPLACE_VST2 return loadVST2CompatibleState ((const char*) data, size); #else setStateInformation (data, size); return true; #endif } bool readFromMemoryStream (IBStream* state) { FUnknownPtr s (state); if (s != nullptr && s->getData() != nullptr && s->getSize() > 0 && s->getSize() < 1024 * 1024 * 100) // (some hosts seem to return junk for the size) { // Adobe Audition CS6 hack to avoid trying to use corrupted streams: if (getHostType().isAdobeAudition()) if (s->getSize() >= 5 && memcmp (s->getData(), "VC2!E", 5) == 0) return false; return loadStateData (s->getData(), (int) s->getSize()); } return false; } bool readFromUnknownStream (IBStream* state) { MemoryOutputStream allData; { const size_t bytesPerBlock = 4096; HeapBlock buffer (bytesPerBlock); for (;;) { Steinberg::int32 bytesRead = 0; const Steinberg::tresult status = state->read (buffer, (Steinberg::int32) bytesPerBlock, &bytesRead); if (bytesRead <= 0 || (status != kResultTrue && ! getHostType().isWavelab())) break; allData.write (buffer, static_cast (bytesRead)); } } const size_t dataSize = allData.getDataSize(); return dataSize > 0 && dataSize < 0x7fffffff && loadStateData (allData.getData(), (int) dataSize); } tresult PLUGIN_API setState (IBStream* state) override { if (state == nullptr) return kInvalidArgument; FUnknownPtr stateRefHolder (state); // just in case the caller hasn't properly ref-counted the stream object if (state->seek (0, IBStream::kIBSeekSet, nullptr) == kResultTrue) if (readFromMemoryStream (state) || readFromUnknownStream (state)) return kResultTrue; return kResultFalse; } #if JUCE_VST3_CAN_REPLACE_VST2 static tresult writeVST2Int (IBStream* state, int n) { juce::int32 t = (juce::int32) htonl (n); return state->write (&t, 4); } static tresult writeVST2Header (IBStream* state, bool bypassed) { tresult status = writeVST2Int (state, 'VstW'); if (status == kResultOk) status = writeVST2Int (state, 8); // header size if (status == kResultOk) status = writeVST2Int (state, 1); // version if (status == kResultOk) status = writeVST2Int (state, bypassed ? 1 : 0); // bypass return status; } #endif tresult PLUGIN_API getState (IBStream* state) override { if (state == nullptr) return kInvalidArgument; juce::MemoryBlock mem; getStateInformation (mem); #if JUCE_VST3_CAN_REPLACE_VST2 tresult status = writeVST2Header (state, isBypassed()); if (status != kResultOk) return status; const int bankBlockSize = 160; struct fxBank bank; zerostruct (bank); bank.chunkMagic = (VstInt32) htonl (cMagic); bank.byteSize = (VstInt32) htonl (bankBlockSize - 8 + (unsigned int) mem.getSize()); bank.fxMagic = (VstInt32) htonl (chunkBankMagic); bank.version = (VstInt32) htonl (2); bank.fxID = (VstInt32) htonl (JucePlugin_VSTUniqueID); bank.fxVersion = (VstInt32) htonl (JucePlugin_VersionCode); bank.content.data.size = (VstInt32) htonl ((unsigned int) mem.getSize()); status = state->write (&bank, bankBlockSize); if (status != kResultOk) return status; #endif return state->write (mem.getData(), (Steinberg::int32) mem.getSize()); } //============================================================================== Steinberg::int32 PLUGIN_API getUnitCount() override { return 1; } tresult PLUGIN_API getUnitInfo (Steinberg::int32 unitIndex, Vst::UnitInfo& info) override { if (unitIndex == 0) { info.id = Vst::kRootUnitId; info.parentUnitId = Vst::kNoParentUnitId; info.programListId = Vst::kNoProgramListId; toString128 (info.name, TRANS("Root Unit")); return kResultTrue; } zerostruct (info); return kResultFalse; } Steinberg::int32 PLUGIN_API getProgramListCount() override { if (getPluginInstance().getNumPrograms() > 0) return 1; return 0; } tresult PLUGIN_API getProgramListInfo (Steinberg::int32 listIndex, Vst::ProgramListInfo& info) override { if (listIndex == 0) { info.id = paramPreset; info.programCount = (Steinberg::int32) getPluginInstance().getNumPrograms(); toString128 (info.name, TRANS("Factory Presets")); return kResultTrue; } jassertfalse; zerostruct (info); return kResultFalse; } tresult PLUGIN_API getProgramName (Vst::ProgramListID listId, Steinberg::int32 programIndex, Vst::String128 name) override { if (listId == paramPreset && isPositiveAndBelow ((int) programIndex, getPluginInstance().getNumPrograms())) { toString128 (name, getPluginInstance().getProgramName ((int) programIndex)); return kResultTrue; } jassertfalse; toString128 (name, juce::String()); return kResultFalse; } tresult PLUGIN_API getProgramInfo (Vst::ProgramListID, Steinberg::int32, Vst::CString, Vst::String128) override { return kNotImplemented; } tresult PLUGIN_API hasProgramPitchNames (Vst::ProgramListID, Steinberg::int32) override { return kNotImplemented; } tresult PLUGIN_API getProgramPitchName (Vst::ProgramListID, Steinberg::int32, Steinberg::int16, Vst::String128) override { return kNotImplemented; } tresult PLUGIN_API selectUnit (Vst::UnitID) override { return kNotImplemented; } tresult PLUGIN_API setUnitProgramData (Steinberg::int32, Steinberg::int32, IBStream*) override { return kNotImplemented; } Vst::UnitID PLUGIN_API getSelectedUnit() override { return Vst::kRootUnitId; } tresult PLUGIN_API getUnitByBus (Vst::MediaType, Vst::BusDirection, Steinberg::int32, Steinberg::int32, Vst::UnitID& unitId) override { zerostruct (unitId); return kNotImplemented; } //============================================================================== bool getCurrentPosition (CurrentPositionInfo& info) override { info.timeInSamples = jmax ((juce::int64) 0, processContext.projectTimeSamples); info.timeInSeconds = processContext.systemTime / 1000000000.0; info.bpm = jmax (1.0, processContext.tempo); info.timeSigNumerator = jmax (1, (int) processContext.timeSigNumerator); info.timeSigDenominator = jmax (1, (int) processContext.timeSigDenominator); info.ppqPositionOfLastBarStart = processContext.barPositionMusic; info.ppqPosition = processContext.projectTimeMusic; info.ppqLoopStart = processContext.cycleStartMusic; info.ppqLoopEnd = processContext.cycleEndMusic; info.isRecording = (processContext.state & Vst::ProcessContext::kRecording) != 0; info.isPlaying = (processContext.state & Vst::ProcessContext::kPlaying) != 0; info.isLooping = (processContext.state & Vst::ProcessContext::kCycleActive) != 0; info.editOriginTime = 0.0; info.frameRate = AudioPlayHead::fpsUnknown; if ((processContext.state & Vst::ProcessContext::kSmpteValid) != 0) { switch (processContext.frameRate.framesPerSecond) { case 24: info.frameRate = AudioPlayHead::fps24; break; case 25: info.frameRate = AudioPlayHead::fps25; break; case 29: info.frameRate = AudioPlayHead::fps30drop; break; case 30: { if ((processContext.frameRate.flags & Vst::FrameRate::kDropRate) != 0) info.frameRate = AudioPlayHead::fps30drop; else info.frameRate = AudioPlayHead::fps30; } break; default: break; } } return true; } //============================================================================== static tresult setBusArrangementFor (Vst::BusList& list, Vst::SpeakerArrangement* arrangement, Steinberg::int32 numBusses) { if (arrangement != nullptr && numBusses == 1) //Should only be 1 bus per BusList { Steinberg::int32 counter = 0; FOREACH_CAST (IPtr, Vst::AudioBus, bus, list) { if (counter < numBusses) bus->setArrangement (arrangement[counter]); counter++; } ENDFOR return kResultTrue; } return kResultFalse; } tresult PLUGIN_API setBusArrangements (Vst::SpeakerArrangement* inputs, Steinberg::int32 numIns, Vst::SpeakerArrangement* outputs, Steinberg::int32 numOuts) override { (void) inputs; (void) outputs; #if JucePlugin_MaxNumInputChannels > 0 if (setBusArrangementFor (audioInputs, inputs, numIns) != kResultTrue) return kResultFalse; #else if (numIns != 0) return kResultFalse; #endif #if JucePlugin_MaxNumOutputChannels > 0 if (setBusArrangementFor (audioOutputs, outputs, numOuts) != kResultTrue) return kResultFalse; #else if (numOuts != 0) return kResultFalse; #endif preparePlugin (getPluginInstance().getSampleRate(), getPluginInstance().getBlockSize()); return kResultTrue; } tresult PLUGIN_API getBusArrangement (Vst::BusDirection dir, Steinberg::int32 index, Vst::SpeakerArrangement& arr) override { if (Vst::BusList* const busList = getBusListFor (Vst::kAudio, dir)) { if (Vst::AudioBus* const audioBus = FCast (busList->at (index))) { arr = audioBus->getArrangement(); return kResultTrue; } } return kResultFalse; } tresult PLUGIN_API canProcessSampleSize (Steinberg::int32 symbolicSampleSize) override { return symbolicSampleSize == Vst::kSample32 ? kResultTrue : kResultFalse; } Steinberg::uint32 PLUGIN_API getLatencySamples() override { return (Steinberg::uint32) jmax (0, getPluginInstance().getLatencySamples()); } tresult PLUGIN_API setupProcessing (Vst::ProcessSetup& newSetup) override { if (canProcessSampleSize (newSetup.symbolicSampleSize) != kResultTrue) return kResultFalse; processSetup = newSetup; processContext.sampleRate = processSetup.sampleRate; preparePlugin (processSetup.sampleRate, processSetup.maxSamplesPerBlock); return kResultTrue; } tresult PLUGIN_API setProcessing (TBool state) override { if (! state) getPluginInstance().reset(); return kResultTrue; } Steinberg::uint32 PLUGIN_API getTailSamples() override { const double tailLengthSeconds = getPluginInstance().getTailLengthSeconds(); if (tailLengthSeconds <= 0.0 || processSetup.sampleRate > 0.0) return Vst::kNoTail; return (Steinberg::uint32) roundToIntAccurate (tailLengthSeconds * processSetup.sampleRate); } //============================================================================== void processParameterChanges (Vst::IParameterChanges& paramChanges) { jassert (pluginInstance != nullptr); const Steinberg::int32 numParamsChanged = paramChanges.getParameterCount(); for (Steinberg::int32 i = 0; i < numParamsChanged; ++i) { if (Vst::IParamValueQueue* paramQueue = paramChanges.getParameterData (i)) { const Steinberg::int32 numPoints = paramQueue->getPointCount(); Steinberg::int32 offsetSamples; double value = 0.0; if (paramQueue->getPoint (numPoints - 1, offsetSamples, value) == kResultTrue) { const int id = (int) paramQueue->getParameterId(); if (isPositiveAndBelow (id, pluginInstance->getNumParameters())) pluginInstance->setParameter (id, (float) value); else if (id == vstBypassParameterId) setBypassed (static_cast (value) != 0.0f); else addParameterChangeToMidiBuffer (offsetSamples, id, value); } } } } void addParameterChangeToMidiBuffer (const Steinberg::int32 offsetSamples, const int id, const double value) { // If the parameter is mapped to a MIDI CC message then insert it into the midiBuffer. int channel, ctrlNumber; if (juceVST3EditController->getMidiControllerForParameter (id, channel, ctrlNumber)) { if (ctrlNumber == Vst::kAfterTouch) midiBuffer.addEvent (MidiMessage::channelPressureChange (channel, jlimit (0, 127, (int) (value * 128.0))), offsetSamples); else if (ctrlNumber == Vst::kPitchBend) midiBuffer.addEvent (MidiMessage::pitchWheel (channel, jlimit (0, 0x3fff, (int) (value * 0x4000))), offsetSamples); else midiBuffer.addEvent (MidiMessage::controllerEvent (channel, jlimit (0, 127, ctrlNumber), jlimit (0, 127, (int) (value * 128.0))), offsetSamples); } } tresult PLUGIN_API process (Vst::ProcessData& data) override { if (pluginInstance == nullptr) return kResultFalse; if (data.processContext != nullptr) processContext = *data.processContext; else zerostruct (processContext); midiBuffer.clear(); #if JucePlugin_WantsMidiInput if (data.inputEvents != nullptr) MidiEventList::toMidiBuffer (midiBuffer, *data.inputEvents); #endif #if JUCE_DEBUG && ! JucePlugin_ProducesMidiOutput const int numMidiEventsComingIn = midiBuffer.getNumEvents(); #endif const int numInputChans = (data.inputs != nullptr && data.inputs[0].channelBuffers32 != nullptr) ? (int) data.inputs[0].numChannels : 0; const int numOutputChans = (data.outputs != nullptr && data.outputs[0].channelBuffers32 != nullptr) ? (int) data.outputs[0].numChannels : 0; int totalChans = 0; while (totalChans < numInputChans) { channelList.set (totalChans, data.inputs[0].channelBuffers32[totalChans]); ++totalChans; } while (totalChans < numOutputChans) { channelList.set (totalChans, data.outputs[0].channelBuffers32[totalChans]); ++totalChans; } AudioSampleBuffer buffer; if (totalChans != 0) buffer.setDataToReferTo (channelList.getRawDataPointer(), totalChans, (int) data.numSamples); else if (getHostType().isWavelab() && pluginInstance->getNumInputChannels() + pluginInstance->getNumOutputChannels() > 0) return kResultFalse; { const ScopedLock sl (pluginInstance->getCallbackLock()); pluginInstance->setNonRealtime (data.processMode == Vst::kOffline); if (data.inputParameterChanges != nullptr) processParameterChanges (*data.inputParameterChanges); if (pluginInstance->isSuspended()) { buffer.clear(); } else { if (isBypassed()) pluginInstance->processBlockBypassed (buffer, midiBuffer); else pluginInstance->processBlock (buffer, midiBuffer); } } for (int i = 0; i < numOutputChans; ++i) FloatVectorOperations::copy (data.outputs[0].channelBuffers32[i], buffer.getReadPointer (i), (int) data.numSamples); // clear extra busses.. if (data.outputs != nullptr) for (int i = 1; i < data.numOutputs; ++i) for (int f = 0; f < data.outputs[i].numChannels; ++f) FloatVectorOperations::clear (data.outputs[i].channelBuffers32[f], (int) data.numSamples); #if JucePlugin_ProducesMidiOutput if (data.outputEvents != nullptr) MidiEventList::toEventList (*data.outputEvents, midiBuffer); #elif JUCE_DEBUG /* This assertion is caused when you've added some events to the midiMessages array in your processBlock() method, which usually means that you're trying to send them somewhere. But in this case they're getting thrown away. If your plugin does want to send MIDI messages, you'll need to set the JucePlugin_ProducesMidiOutput macro to 1 in your JucePluginCharacteristics.h file. If you don't want to produce any MIDI output, then you should clear the midiMessages array at the end of your processBlock() method, to indicate that you don't want any of the events to be passed through to the output. */ jassert (midiBuffer.getNumEvents() <= numMidiEventsComingIn); #endif return kResultTrue; } private: //============================================================================== Atomic refCount; AudioProcessor* pluginInstance; ComSmartPtr host; ComSmartPtr comPluginInstance; ComSmartPtr juceVST3EditController; /** Since VST3 does not provide a way of knowing the buffer size and sample rate at any point, this object needs to be copied on every call to process() to be up-to-date... */ Vst::ProcessContext processContext; Vst::ProcessSetup processSetup; Vst::BusList audioInputs, audioOutputs, eventInputs, eventOutputs; MidiBuffer midiBuffer; Array channelList; ScopedJuceInitialiser_GUI libraryInitialiser; int vstBypassParameterId; static const char* kJucePrivateDataIdentifier; //============================================================================== void addBusTo (Vst::BusList& busList, Vst::Bus* newBus) { busList.append (IPtr (newBus, false)); } void addAudioBusTo (Vst::BusList& busList, const juce::String& name, Vst::SpeakerArrangement arr) { addBusTo (busList, new Vst::AudioBus (toString (name), Vst::kMain, Vst::BusInfo::kDefaultActive, arr)); } void addEventBusTo (Vst::BusList& busList, const juce::String& name) { addBusTo (busList, new Vst::EventBus (toString (name), Vst::kMain, Vst::BusInfo::kDefaultActive, 16)); } Vst::BusList* getBusListFor (Vst::MediaType type, Vst::BusDirection dir) { if (type == Vst::kAudio) return dir == Vst::kInput ? &audioInputs : &audioOutputs; if (type == Vst::kEvent) return dir == Vst::kInput ? &eventInputs : &eventOutputs; return nullptr; } //============================================================================== enum InternalParameters { paramPreset = 'prst' }; static int getNumChannels (Vst::BusList& busList) { Vst::BusInfo info; info.channelCount = 0; if (Vst::Bus* bus = busList.first()) bus->getInfo (info); return (int) info.channelCount; } void preparePlugin (double sampleRate, int bufferSize) { getPluginInstance().setPlayConfigDetails (getNumChannels (audioInputs), getNumChannels (audioOutputs), sampleRate, bufferSize); getPluginInstance().prepareToPlay (sampleRate, bufferSize); } //============================================================================== JUCE_DECLARE_NON_COPYABLE_WITH_LEAK_DETECTOR (JuceVST3Component) }; #if JucePlugin_Build_VST3 && JUCE_VST3_CAN_REPLACE_VST2 Steinberg::FUID getJuceVST3ComponentIID(); Steinberg::FUID getJuceVST3ComponentIID() { return JuceVST3Component::iid; } #endif const char* JuceVST3Component::kJucePrivateDataIdentifier = "JUCEPrivateData"; //============================================================================== #if JUCE_MSVC #pragma warning (push, 0) #pragma warning (disable: 4310) #elif JUCE_CLANG #pragma clang diagnostic push #pragma clang diagnostic ignored "-Wall" #endif DECLARE_CLASS_IID (JuceAudioProcessor, 0x0101ABAB, 0xABCDEF01, JucePlugin_ManufacturerCode, JucePlugin_PluginCode) DEF_CLASS_IID (JuceAudioProcessor) #if JUCE_VST3_CAN_REPLACE_VST2 // NB: Nasty old-fashioned code in here because it's copied from the Steinberg example code. static FUID getFUIDForVST2ID (bool forControllerUID) { char uidString[33]; const int vstfxid = (('V' << 16) | ('S' << 8) | (forControllerUID ? 'E' : 'T')); char vstfxidStr[7] = { 0 }; sprintf (vstfxidStr, "%06X", vstfxid); strcpy (uidString, vstfxidStr); char uidStr[9] = { 0 }; sprintf (uidStr, "%08X", JucePlugin_VSTUniqueID); strcat (uidString, uidStr); char nameidStr[3] = { 0 }; const size_t len = strlen (JucePlugin_Name); for (size_t i = 0; i <= 8; ++i) { juce::uint8 c = i < len ? static_cast (JucePlugin_Name[i]) : 0; if (c >= 'A' && c <= 'Z') c += 'a' - 'A'; sprintf (nameidStr, "%02X", c); strcat (uidString, nameidStr); } FUID newOne; newOne.fromString (uidString); return newOne; } const Steinberg::FUID JuceVST3Component ::iid (getFUIDForVST2ID (false)); const Steinberg::FUID JuceVST3EditController::iid (getFUIDForVST2ID (true)); #else DECLARE_CLASS_IID (JuceVST3EditController, 0xABCDEF01, 0x1234ABCD, JucePlugin_ManufacturerCode, JucePlugin_PluginCode) DEF_CLASS_IID (JuceVST3EditController) DECLARE_CLASS_IID (JuceVST3Component, 0xABCDEF01, 0x9182FAEB, JucePlugin_ManufacturerCode, JucePlugin_PluginCode) DEF_CLASS_IID (JuceVST3Component) #endif #if JUCE_MSVC #pragma warning (pop) #elif JUCE_CLANG #pragma clang diagnostic pop #endif //============================================================================== bool initModule() { #if JUCE_MAC initialiseMacVST(); #endif return true; } bool shutdownModule() { return true; } #undef JUCE_EXPORTED_FUNCTION #if JUCE_WINDOWS extern "C" __declspec (dllexport) bool InitDll() { return initModule(); } extern "C" __declspec (dllexport) bool ExitDll() { return shutdownModule(); } #define JUCE_EXPORTED_FUNCTION #else #define JUCE_EXPORTED_FUNCTION extern "C" __attribute__ ((visibility ("default"))) CFBundleRef globalBundleInstance = nullptr; juce::uint32 numBundleRefs = 0; juce::Array bundleRefs; enum { MaxPathLength = 2048 }; char modulePath[MaxPathLength] = { 0 }; void* moduleHandle = nullptr; JUCE_EXPORTED_FUNCTION bool bundleEntry (CFBundleRef ref) { if (ref != nullptr) { ++numBundleRefs; CFRetain (ref); bundleRefs.add (ref); if (moduleHandle == nullptr) { globalBundleInstance = ref; moduleHandle = ref; CFURLRef tempURL = CFBundleCopyBundleURL (ref); CFURLGetFileSystemRepresentation (tempURL, true, (UInt8*) modulePath, MaxPathLength); CFRelease (tempURL); } } return initModule(); } JUCE_EXPORTED_FUNCTION bool bundleExit() { if (shutdownModule()) { if (--numBundleRefs == 0) { for (int i = 0; i < bundleRefs.size(); ++i) CFRelease (bundleRefs.getUnchecked (i)); bundleRefs.clear(); } return true; } return false; } #endif //============================================================================== /** This typedef represents VST3's createInstance() function signature */ typedef FUnknown* (*CreateFunction) (Vst::IHostApplication*); static FUnknown* createComponentInstance (Vst::IHostApplication* host) { return (Vst::IAudioProcessor*) new JuceVST3Component (host); } static FUnknown* createControllerInstance (Vst::IHostApplication* host) { return (Vst::IEditController*) new JuceVST3EditController (host); } //============================================================================== class JucePluginFactory; static JucePluginFactory* globalFactory = nullptr; //============================================================================== class JucePluginFactory : public IPluginFactory3 { public: JucePluginFactory() : refCount (1), factoryInfo (JucePlugin_Manufacturer, JucePlugin_ManufacturerWebsite, JucePlugin_ManufacturerEmail, Vst::kDefaultFactoryFlags) { } virtual ~JucePluginFactory() { if (globalFactory == this) globalFactory = nullptr; } //============================================================================== bool registerClass (const PClassInfo2& info, CreateFunction createFunction) { if (createFunction == nullptr) { jassertfalse; return false; } ClassEntry* entry = classes.add (new ClassEntry (info, createFunction)); entry->infoW.fromAscii (info); return true; } bool isClassRegistered (const FUID& cid) const { for (int i = 0; i < classes.size(); ++i) if (classes.getUnchecked (i)->infoW.cid == cid) return true; return false; } //============================================================================== JUCE_DECLARE_VST3_COM_REF_METHODS tresult PLUGIN_API queryInterface (const TUID targetIID, void** obj) override { TEST_FOR_AND_RETURN_IF_VALID (targetIID, IPluginFactory3) TEST_FOR_AND_RETURN_IF_VALID (targetIID, IPluginFactory2) TEST_FOR_AND_RETURN_IF_VALID (targetIID, IPluginFactory) TEST_FOR_AND_RETURN_IF_VALID (targetIID, FUnknown) jassertfalse; // Something new? *obj = nullptr; return kNotImplemented; } //============================================================================== Steinberg::int32 PLUGIN_API countClasses() override { return (Steinberg::int32) classes.size(); } tresult PLUGIN_API getFactoryInfo (PFactoryInfo* info) override { if (info == nullptr) return kInvalidArgument; memcpy (info, &factoryInfo, sizeof (PFactoryInfo)); return kResultOk; } tresult PLUGIN_API getClassInfo (Steinberg::int32 index, PClassInfo* info) override { return getPClassInfo (index, info); } tresult PLUGIN_API getClassInfo2 (Steinberg::int32 index, PClassInfo2* info) override { return getPClassInfo (index, info); } tresult PLUGIN_API getClassInfoUnicode (Steinberg::int32 index, PClassInfoW* info) override { if (info != nullptr) { if (ClassEntry* entry = classes[(int) index]) { memcpy (info, &entry->infoW, sizeof (PClassInfoW)); return kResultOk; } } return kInvalidArgument; } tresult PLUGIN_API createInstance (FIDString cid, FIDString sourceIid, void** obj) override { *obj = nullptr; FUID sourceFuid = sourceIid; if (cid == nullptr || sourceIid == nullptr || ! sourceFuid.isValid()) { jassertfalse; // The host you're running in has severe implementation issues! return kInvalidArgument; } TUID iidToQuery; sourceFuid.toTUID (iidToQuery); for (int i = 0; i < classes.size(); ++i) { const ClassEntry& entry = *classes.getUnchecked (i); if (doUIDsMatch (entry.infoW.cid, cid)) { if (FUnknown* const instance = entry.createFunction (host)) { const FReleaser releaser (instance); if (instance->queryInterface (iidToQuery, obj) == kResultOk) return kResultOk; } break; } } return kNoInterface; } tresult PLUGIN_API setHostContext (FUnknown* context) override { host.loadFrom (context); if (host != nullptr) { Vst::String128 name; host->getName (name); return kResultTrue; } return kNotImplemented; } private: //============================================================================== ScopedJuceInitialiser_GUI libraryInitialiser; Atomic refCount; const PFactoryInfo factoryInfo; ComSmartPtr host; //============================================================================== struct ClassEntry { ClassEntry() noexcept : createFunction (nullptr), isUnicode (false) {} ClassEntry (const PClassInfo2& info, CreateFunction fn) noexcept : info2 (info), createFunction (fn), isUnicode (false) {} PClassInfo2 info2; PClassInfoW infoW; CreateFunction createFunction; bool isUnicode; private: JUCE_DECLARE_NON_COPYABLE_WITH_LEAK_DETECTOR (ClassEntry) }; OwnedArray classes; //============================================================================== template tresult PLUGIN_API getPClassInfo (Steinberg::int32 index, PClassInfoType* info) { if (info != nullptr) { zerostruct (*info); if (ClassEntry* entry = classes[(int) index]) { if (entry->isUnicode) return kResultFalse; memcpy (info, &entry->info2, sizeof (PClassInfoType)); return kResultOk; } } jassertfalse; return kInvalidArgument; } //============================================================================== JUCE_DECLARE_NON_COPYABLE_WITH_LEAK_DETECTOR (JucePluginFactory) }; } // juce namespace //============================================================================== #ifndef JucePlugin_Vst3ComponentFlags #if JucePlugin_IsSynth #define JucePlugin_Vst3ComponentFlags Vst::kSimpleModeSupported #else #define JucePlugin_Vst3ComponentFlags 0 #endif #endif #ifndef JucePlugin_Vst3Category #if JucePlugin_IsSynth #define JucePlugin_Vst3Category Vst::PlugType::kInstrumentSynth #else #define JucePlugin_Vst3Category Vst::PlugType::kFx #endif #endif //============================================================================== // The VST3 plugin entry point. JUCE_EXPORTED_FUNCTION IPluginFactory* PLUGIN_API GetPluginFactory() { #if JUCE_WINDOWS // Cunning trick to force this function to be exported. Life's too short to // faff around creating .def files for this kind of thing. #pragma comment(linker, "/EXPORT:" __FUNCTION__ "=" __FUNCDNAME__) #endif if (globalFactory == nullptr) { globalFactory = new JucePluginFactory(); static const PClassInfo2 componentClass (JuceVST3Component::iid, PClassInfo::kManyInstances, kVstAudioEffectClass, JucePlugin_Name, JucePlugin_Vst3ComponentFlags, JucePlugin_Vst3Category, JucePlugin_Manufacturer, JucePlugin_VersionString, kVstVersionString); globalFactory->registerClass (componentClass, createComponentInstance); static const PClassInfo2 controllerClass (JuceVST3EditController::iid, PClassInfo::kManyInstances, kVstComponentControllerClass, JucePlugin_Name, JucePlugin_Vst3ComponentFlags, JucePlugin_Vst3Category, JucePlugin_Manufacturer, JucePlugin_VersionString, kVstVersionString); globalFactory->registerClass (controllerClass, createControllerInstance); } else { globalFactory->addRef(); } return dynamic_cast (globalFactory); } #endif //JucePlugin_Build_VST3