476 lines
15 KiB
C++
476 lines
15 KiB
C++
// SPDX-License-Identifier: BSD-2-Clause
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// This code is part of the sfizz library and is licensed under a BSD 2-clause
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// license. You should have receive a LICENSE.md file along with the code.
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// If not, contact the sfizz maintainers at https://github.com/sfztools/sfizz
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#include "SfizzVstEditor.h"
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#include "SfizzVstState.h"
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#include "SfizzVstParameters.h"
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#include "SfizzVstUpdates.h"
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#include "SfizzFileScan.h"
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#include "editor/Editor.h"
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#include "editor/EditIds.h"
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#include "plugin/InstrumentDescription.h"
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#include "IdleUpdateHandler.h"
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#if !defined(__APPLE__) && !defined(_WIN32)
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#include "X11RunLoop.h"
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#endif
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#include <ghc/fs_std.hpp>
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using namespace VSTGUI;
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static ViewRect sfizzUiViewRect { 0, 0, Editor::viewWidth, Editor::viewHeight };
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enum {
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kOscTempSize = 8192,
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kOscQueueSize = 65536,
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kNoteEventQueueSize = 8192,
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};
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SfizzVstEditor::SfizzVstEditor(
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SfizzVstController* controller,
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absl::Span<FObject*> continuousUpdates,
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absl::Span<FObject*> triggerUpdates)
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: VSTGUIEditor(controller, &sfizzUiViewRect),
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oscTemp_(new uint8_t[kOscTempSize]),
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continuousUpdates_(continuousUpdates.begin(), continuousUpdates.end()),
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triggerUpdates_(triggerUpdates.begin(), triggerUpdates.end())
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{
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}
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SfizzVstEditor::~SfizzVstEditor()
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{
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}
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bool PLUGIN_API SfizzVstEditor::open(void* parent, const VSTGUI::PlatformType& platformType)
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{
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fprintf(stderr, "[sfizz] about to open view with parent %p\n", parent);
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CRect wsize(0, 0, sfizzUiViewRect.getWidth(), sfizzUiViewRect.getHeight());
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CFrame *frame = new CFrame(wsize, this);
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this->frame = frame;
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IPlatformFrameConfig* config = nullptr;
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#if !defined(__APPLE__) && !defined(_WIN32)
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X11::FrameConfig x11config;
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if (!_runLoop)
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_runLoop = new RunLoop(plugFrame);
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x11config.runLoop = _runLoop;
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config = &x11config;
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#endif
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Editor* editor = editor_.get();
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if (!editor) {
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editor = new Editor(*this);
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editor_.reset(editor);
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}
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{
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std::lock_guard<std::mutex> lock(oscQueueMutex_);
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OscByteVec* queue = new OscByteVec;
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oscQueue_.reset(queue);
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queue->reserve(kOscQueueSize);
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}
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{
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std::lock_guard<std::mutex> lock(noteEventQueueMutex_);
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NoteEventsVec* queue = new NoteEventsVec;
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noteEventQueue_.reset(queue);
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queue->reserve(kNoteEventQueueSize);
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}
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if (!frame->open(parent, platformType, config)) {
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fprintf(stderr, "[sfizz] error opening frame\n");
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return false;
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}
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editor->open(*frame);
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for (FObject* update : continuousUpdates_)
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update->addDependent(this);
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for (FObject* update : triggerUpdates_)
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update->addDependent(this);
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Steinberg::IdleUpdateHandler::start();
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for (FObject* update : continuousUpdates_)
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update->deferUpdate();
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absl::optional<fs::path> userFilesDir = SfizzPaths::getSfzConfigDefaultPath();
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uiReceiveValue(EditId::CanEditUserFilesDir, 1);
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uiReceiveValue(EditId::UserFilesDir, userFilesDir.value_or(fs::path()).u8string());
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uiReceiveValue(EditId::FallbackFilesDir, SfizzPaths::getSfzFallbackDefaultPath().u8string());
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return true;
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}
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void PLUGIN_API SfizzVstEditor::close()
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{
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CFrame *frame = this->frame;
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if (frame) {
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Steinberg::IdleUpdateHandler::stop();
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for (FObject* update : continuousUpdates_)
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update->removeDependent(this);
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for (FObject* update : triggerUpdates_)
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update->removeDependent(this);
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if (editor_)
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editor_->close();
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if (frame->getNbReference() != 1)
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frame->forget();
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else
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frame->close();
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this->frame = nullptr;
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}
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{
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std::lock_guard<std::mutex> lock(oscQueueMutex_);
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oscQueue_.reset();
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}
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{
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std::lock_guard<std::mutex> lock(noteEventQueueMutex_);
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noteEventQueue_.reset();
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}
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}
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///
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CMessageResult SfizzVstEditor::notify(CBaseObject* sender, const char* message)
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{
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CMessageResult result = VSTGUIEditor::notify(sender, message);
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if (result != kMessageNotified)
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return result;
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#if !defined(__APPLE__) && !defined(_WIN32)
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if (message == CVSTGUITimer::kMsgTimer) {
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SharedPointer<VSTGUI::RunLoop> runLoop = RunLoop::get();
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if (runLoop) {
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// note(jpc) I don't find a reliable way to check if the host
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// notifier of X11 events is working. If there is, remove this and
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// avoid polluting Linux hosts which implement the loop correctly.
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runLoop->processSomeEvents();
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runLoop->cleanupDeadHandlers();
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}
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}
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#endif
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if (message == CVSTGUITimer::kMsgTimer) {
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processOscQueue();
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processNoteEventQueue();
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}
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return result;
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}
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void PLUGIN_API SfizzVstEditor::update(FUnknown* changedUnknown, int32 message)
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{
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if (OSCUpdate* update = FCast<OSCUpdate>(changedUnknown)) {
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// this update is synchronous: may happen from non-UI thread
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uint32 size = update->size();
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if (size > 0) {
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const uint8_t* bytes = reinterpret_cast<const uint8_t*>(update->data());
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std::lock_guard<std::mutex> lock(oscQueueMutex_);
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if (OscByteVec* queue = oscQueue_.get())
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std::copy(bytes, bytes + size, std::back_inserter(*queue));
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}
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return;
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}
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if (NoteUpdate* update = FCast<NoteUpdate>(changedUnknown)) {
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// this update is synchronous: may happen from non-UI thread
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uint32 count = update->count();
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if (count > 0) {
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const auto* events = update->events();
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std::lock_guard<std::mutex> lock(noteEventQueueMutex_);
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if (NoteEventsVec* queue = noteEventQueue_.get())
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std::copy(events, events + count, std::back_inserter(*queue));
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}
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}
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if (SfzUpdate* update = FCast<SfzUpdate>(changedUnknown)) {
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const std::string path = update->getPath();
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uiReceiveValue(EditId::SfzFile, path);
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}
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if (SfzDescriptionUpdate* update = FCast<SfzDescriptionUpdate>(changedUnknown)) {
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const InstrumentDescription desc = parseDescriptionBlob(update->getDescription());
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uiReceiveValue(EditId::UINumCurves, desc.numCurves);
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uiReceiveValue(EditId::UINumMasters, desc.numMasters);
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uiReceiveValue(EditId::UINumGroups, desc.numGroups);
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uiReceiveValue(EditId::UINumRegions, desc.numRegions);
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uiReceiveValue(EditId::UINumPreloadedSamples, desc.numSamples);
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const fs::path rootPath = fs::u8path(desc.rootPath);
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const fs::path imagePath = rootPath / fs::u8path(desc.image);
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uiReceiveValue(EditId::BackgroundImage, imagePath.u8string());
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for (unsigned key = 0; key < 128; ++key) {
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bool keyUsed = desc.keyUsed.test(key);
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bool keyswitchUsed = desc.keyswitchUsed.test(key);
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uiReceiveValue(editIdForKeyUsed(int(key)), float(keyUsed));
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uiReceiveValue(editIdForKeyswitchUsed(int(key)), float(keyswitchUsed));
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if (keyUsed)
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uiReceiveValue(editIdForKeyLabel(int(key)), desc.keyLabel[key]);
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if (keyswitchUsed)
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uiReceiveValue(editIdForKeyswitchLabel(int(key)), desc.keyswitchLabel[key]);
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}
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for (unsigned cc = 0; cc < sfz::config::numCCs; ++cc) {
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bool ccUsed = desc.ccUsed.test(cc);
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uiReceiveValue(editIdForCCUsed(int(cc)), float(ccUsed));
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if (ccUsed) {
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uiReceiveValue(editIdForCCDefault(int(cc)), desc.ccDefault[cc]);
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uiReceiveValue(editIdForCCLabel(int(cc)), desc.ccLabel[cc]);
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}
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}
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}
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if (ScalaUpdate* update = FCast<ScalaUpdate>(changedUnknown)) {
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const std::string path = update->getPath();
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uiReceiveValue(EditId::ScalaFile, path);
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}
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if (ProcessorStateUpdate* update = FCast<ProcessorStateUpdate>(changedUnknown)) {
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const SfizzVstState state = update->getState();
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uiReceiveValue(EditId::SfzFile, state.sfzFile);
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uiReceiveValue(EditId::Volume, state.volume);
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uiReceiveValue(EditId::Polyphony, state.numVoices);
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uiReceiveValue(EditId::Oversampling, float(1u << state.oversamplingLog2));
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uiReceiveValue(EditId::PreloadSize, state.preloadSize);
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uiReceiveValue(EditId::ScalaFile, state.scalaFile);
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uiReceiveValue(EditId::ScalaRootKey, state.scalaRootKey);
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uiReceiveValue(EditId::TuningFrequency, state.tuningFrequency);
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uiReceiveValue(EditId::StretchTuning, state.stretchedTuning);
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}
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if (PlayStateUpdate* update = FCast<PlayStateUpdate>(changedUnknown)) {
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const SfizzPlayState playState = update->getState();
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uiReceiveValue(EditId::UINumActiveVoices, playState.activeVoices);
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return;
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}
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if (Vst::RangeParameter* param = Steinberg::FCast<Vst::RangeParameter>(changedUnknown)) {
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const Vst::ParamValue value = param->getNormalized();
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const Vst::ParamID id = param->getInfo().id;
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const SfizzRange range = SfizzRange::getForParameter(id);
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switch (id) {
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case kPidVolume:
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uiReceiveValue(EditId::Volume, range.denormalize(value));
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break;
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case kPidNumVoices:
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uiReceiveValue(EditId::Polyphony, range.denormalize(value));
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break;
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case kPidOversampling:
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uiReceiveValue(EditId::Oversampling, float(1u << (int32)range.denormalize(value)));
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break;
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case kPidPreloadSize:
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uiReceiveValue(EditId::PreloadSize, range.denormalize(value));
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break;
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case kPidScalaRootKey:
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uiReceiveValue(EditId::ScalaRootKey, range.denormalize(value));
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break;
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case kPidTuningFrequency:
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uiReceiveValue(EditId::TuningFrequency, range.denormalize(value));
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break;
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case kPidStretchedTuning:
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uiReceiveValue(EditId::StretchTuning, range.denormalize(value));
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break;
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}
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return;
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}
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Vst::VSTGUIEditor::update(changedUnknown, message);
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}
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void SfizzVstEditor::processOscQueue()
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{
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std::lock_guard<std::mutex> lock(oscQueueMutex_);
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OscByteVec* queue = oscQueue_.get();
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if (!queue)
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return;
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const uint8_t* oscData = queue->data();
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size_t oscSize = queue->size();
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const char* path;
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const char* sig;
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const sfizz_arg_t* args;
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uint8_t buffer[1024];
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uint32_t msgSize;
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while ((msgSize = sfizz_extract_message(oscData, oscSize, buffer, sizeof(buffer), &path, &sig, &args)) > 0) {
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uiReceiveMessage(path, sig, args);
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oscData += msgSize;
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oscSize -= msgSize;
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}
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queue->clear();
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}
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void SfizzVstEditor::processNoteEventQueue()
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{
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std::lock_guard<std::mutex> lock(noteEventQueueMutex_);
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NoteEventsVec* queue = noteEventQueue_.get();
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if (!queue)
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return;
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for (std::pair<uint32, float> event : *queue)
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uiReceiveValue(editIdForKey(event.first), event.second);
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queue->clear();
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}
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///
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void SfizzVstEditor::uiSendValue(EditId id, const EditValue& v)
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{
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if (id == EditId::SfzFile)
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loadSfzFile(v.to_string());
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else if (id == EditId::ScalaFile)
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loadScalaFile(v.to_string());
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else {
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SfizzVstController* ctrl = getController();
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auto normalizeAndSet = [ctrl](Vst::ParamID pid, float value) {
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float normValue = SfizzRange::getForParameter(pid).normalize(value);
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ctrl->setParamNormalized(pid, normValue);
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ctrl->performEdit(pid, normValue);
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};
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switch (id) {
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case EditId::Volume:
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normalizeAndSet(kPidVolume, v.to_float());
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break;
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case EditId::Polyphony:
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normalizeAndSet(kPidNumVoices, v.to_float());
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break;
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case EditId::Oversampling:
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{
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const int32 factor = static_cast<int32>(v.to_float());
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normalizeAndSet(kPidOversampling, integerLog2(factor));
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}
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break;
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case EditId::PreloadSize:
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normalizeAndSet(kPidPreloadSize, v.to_float());
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break;
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case EditId::ScalaRootKey:
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normalizeAndSet(kPidScalaRootKey, v.to_float());
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break;
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case EditId::TuningFrequency:
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normalizeAndSet(kPidTuningFrequency, v.to_float());
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break;
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case EditId::StretchTuning:
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normalizeAndSet(kPidStretchedTuning, v.to_float());
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break;
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case EditId::UserFilesDir:
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SfizzPaths::setSfzConfigDefaultPath(fs::u8path(v.to_string()));
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break;
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default:
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break;
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}
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}
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}
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void SfizzVstEditor::uiBeginSend(EditId id)
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{
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Vst::ParamID pid = parameterOfEditId(id);
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if (pid != Vst::kNoParamId)
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getController()->beginEdit(pid);
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}
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void SfizzVstEditor::uiEndSend(EditId id)
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{
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Vst::ParamID pid = parameterOfEditId(id);
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if (pid != Vst::kNoParamId)
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getController()->endEdit(pid);
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}
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void SfizzVstEditor::uiSendMIDI(const uint8_t* data, uint32_t len)
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{
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SfizzVstController* ctl = getController();
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Steinberg::OPtr<Vst::IMessage> msg { ctl->allocateMessage() };
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if (!msg) {
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fprintf(stderr, "[Sfizz] UI could not allocate message\n");
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return;
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}
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msg->setMessageID("MidiMessage");
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Vst::IAttributeList* attr = msg->getAttributes();
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attr->setBinary("Data", data, len);
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ctl->sendMessage(msg);
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}
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void SfizzVstEditor::uiSendMessage(const char* path, const char* sig, const sfizz_arg_t* args)
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{
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SfizzVstController* ctl = getController();
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Steinberg::OPtr<Vst::IMessage> msg { ctl->allocateMessage() };
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if (!msg) {
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fprintf(stderr, "[Sfizz] UI could not allocate message\n");
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return;
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}
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uint8_t* oscTemp = oscTemp_.get();
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uint32_t oscSize = sfizz_prepare_message(oscTemp, kOscTempSize, path, sig, args);
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if (oscSize <= kOscTempSize) {
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msg->setMessageID("OscMessage");
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Vst::IAttributeList* attr = msg->getAttributes();
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attr->setBinary("Data", oscTemp, oscSize);
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ctl->sendMessage(msg);
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}
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}
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///
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void SfizzVstEditor::loadSfzFile(const std::string& filePath)
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{
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SfizzVstController* ctl = getController();
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Steinberg::OPtr<Vst::IMessage> msg { ctl->allocateMessage() };
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if (!msg) {
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fprintf(stderr, "[Sfizz] UI could not allocate message\n");
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return;
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}
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msg->setMessageID("LoadSfz");
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Vst::IAttributeList* attr = msg->getAttributes();
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attr->setBinary("File", filePath.data(), filePath.size());
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ctl->sendMessage(msg);
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}
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void SfizzVstEditor::loadScalaFile(const std::string& filePath)
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{
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SfizzVstController* ctl = getController();
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Steinberg::OPtr<Vst::IMessage> msg { ctl->allocateMessage() };
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if (!msg) {
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fprintf(stderr, "[Sfizz] UI could not allocate message\n");
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return;
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}
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msg->setMessageID("LoadScala");
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Vst::IAttributeList* attr = msg->getAttributes();
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attr->setBinary("File", filePath.data(), filePath.size());
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ctl->sendMessage(msg);
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}
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Vst::ParamID SfizzVstEditor::parameterOfEditId(EditId id)
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{
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switch (id) {
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case EditId::Volume: return kPidVolume;
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case EditId::Polyphony: return kPidNumVoices;
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case EditId::Oversampling: return kPidOversampling;
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case EditId::PreloadSize: return kPidPreloadSize;
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case EditId::ScalaRootKey: return kPidScalaRootKey;
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case EditId::TuningFrequency: return kPidTuningFrequency;
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case EditId::StretchTuning: return kPidStretchedTuning;
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default: return Vst::kNoParamId;
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}
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}
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