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Copy pathsampler_runtime.cpp
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165 lines (139 loc) · 5.92 KB
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#include "sampler_runtime.h"
void SamplerRuntime::applyDefaultSettings() {
catalog_ = nullptr;
SettingsStore::applyDefaults(settings_);
classificationReport_ = SampleClassifier::ClassificationReport{};
ramLoadReport_ = SampleRamManager::LoadReport{};
activeRegistryReport_ = ActiveSampleRegistry::RegistryReport{};
}
bool SamplerRuntime::loadSettingsFromSd() {
return SettingsStore::loadFromSd(settings_);
}
void SamplerRuntime::applyAssignmentsToUi(Ui &ui, const SampleLibrary::Catalog &catalog) const {
if (settings_.panicNote >= 0 && settings_.panicNote <= 127) {
ui.setPanicMidiNote(settings_.panicNote);
}
for (int i = 0; i < settings_.playbackModeCount; i++) {
const SettingsStore::SamplePlaybackMode &mode = settings_.playbackModes[i];
const int sampleIndex = SampleLibrary::findIndexByPath(catalog, mode.samplePath);
if (sampleIndex < 0) {
continue;
}
ui.setSamplePlaybackMode(sampleIndex,
mode.loopPlaybackEnabled ? Ui::PlaybackMode::Loop
: Ui::PlaybackMode::OneShot);
}
for (int i = 0; i < settings_.assignmentCount; i++) {
const SettingsStore::MidiAssignment &assignment = settings_.assignments[i];
const int sampleIndex = SampleLibrary::findIndexByPath(catalog, assignment.samplePath);
if (sampleIndex < 0) {
continue;
}
ui.setMidiAssignment(assignment.note, sampleIndex);
ui.setSampleVolume(sampleIndex, assignment.volume);
ui.setSamplePlaybackMode(sampleIndex,
assignment.loopPlaybackEnabled ? Ui::PlaybackMode::Loop
: Ui::PlaybackMode::OneShot);
}
}
void SamplerRuntime::collectAssignmentsFromUi(const Ui &ui, const SampleLibrary::Catalog &catalog) {
settings_.panicNote = static_cast<int16_t>(ui.panicMidiNote());
settings_.playbackModeCount = 0;
for (int sampleIndex = 0; sampleIndex < catalog.count; sampleIndex++) {
if (settings_.playbackModeCount >= SettingsStore::SamplerSettings::kMaxPlaybackModes) {
break;
}
if (!ui.sampleLoopPlaybackEnabled(sampleIndex)) {
continue;
}
const String &samplePath = catalog.paths[sampleIndex];
if (samplePath.length() == 0) {
continue;
}
SettingsStore::SamplePlaybackMode &mode = settings_.playbackModes[settings_.playbackModeCount];
mode.samplePath = samplePath;
mode.loopPlaybackEnabled = true;
settings_.playbackModeCount++;
}
settings_.assignmentCount = 0;
for (int note = 0; note < 128; note++) {
if (settings_.assignmentCount >= SettingsStore::SamplerSettings::kMaxAssignments) {
break;
}
const int sampleIndex = ui.assignedSampleForMidiNote(note);
if (sampleIndex < 0 || sampleIndex >= catalog.count) continue;
SettingsStore::MidiAssignment &entry = settings_.assignments[settings_.assignmentCount];
entry.note = static_cast<uint8_t>(note);
entry.samplePath = catalog.paths[sampleIndex];
entry.volume = static_cast<uint8_t>(ui.sampleVolumeForSample(sampleIndex));
entry.loopPlaybackEnabled = ui.sampleLoopPlaybackEnabled(sampleIndex);
settings_.assignmentCount++;
}
}
void SamplerRuntime::rebuildPreparedSamples() {
settings_.sampleRamBudgetBytes = SampleRamManager::budgetBytes();
classifyAssignedSamplesAndLog();
loadClassifiedRamSamplesAndLog();
buildActiveRegistryAndLog();
}
bool SamplerRuntime::saveSettingsToSd() const {
return SettingsStore::saveToSd(settings_);
}
const SettingsStore::SamplerSettings &SamplerRuntime::settings() const {
return settings_;
}
int SamplerRuntime::assignedSamplesCount() const {
return settings_.assignmentCount;
}
int SamplerRuntime::ramSampleCount() const {
return classificationReport_.ramSampleCount;
}
int SamplerRuntime::streamSampleCount() const {
return classificationReport_.streamSampleCount;
}
uint32_t SamplerRuntime::sampleRamUsedBytes() const {
return ramLoadReport_.usedBytes;
}
int SamplerRuntime::ramUsagePercent() const {
const uint32_t budgetBytes = settings_.sampleRamBudgetBytes;
if (budgetBytes == 0) return 0;
const uint32_t pct = (100UL * ramLoadReport_.usedBytes) / budgetBytes;
return (pct > 100UL) ? 100 : static_cast<int>(pct);
}
const ActiveSampleRegistry::Entry *SamplerRuntime::findRegistryEntryForNote(int note) const {
for (int i = 0; i < activeRegistryReport_.itemCount; i++) {
if (activeRegistryReport_.items[i].note == static_cast<uint8_t>(note)) {
return &activeRegistryReport_.items[i];
}
}
return nullptr;
}
const SampleClassifier::AssignedSampleClassification *SamplerRuntime::findClassificationByPath(
const String &path) const {
for (int i = 0; i < classificationReport_.itemCount; i++) {
const SampleClassifier::AssignedSampleClassification &item = classificationReport_.items[i];
if (item.path == path) {
return &item;
}
}
return nullptr;
}
void SamplerRuntime::classifyAssignedSamplesAndLog() {
if (catalog_) SampleClassifier::classifyAssignedSamples(settings_, *catalog_, classificationReport_);
}
void SamplerRuntime::loadClassifiedRamSamplesAndLog() {
const uint32_t startMs = millis();
SampleRamManager::prepare(settings_, classificationReport_, ramLoadReport_);
Serial.printf("RAM: %d samples loaded (%lu of %lu KiB) in %lu ms, %d streamed from SD "
"(%d with preloaded start), %d failed to load\n",
ramLoadReport_.loadedRamCount,
static_cast<unsigned long>(ramLoadReport_.usedBytes / 1024U),
static_cast<unsigned long>(ramLoadReport_.effectiveBudgetBytes / 1024U),
static_cast<unsigned long>(millis() - startMs),
classificationReport_.streamSampleCount + ramLoadReport_.fallbackToStreamCount,
ramLoadReport_.loadedHeadCount,
ramLoadReport_.readErrorCount);
}
void SamplerRuntime::buildActiveRegistryAndLog() {
ActiveSampleRegistry::build(classificationReport_, activeRegistryReport_);
}