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#include "BankFactory.h"
#include "utils/MIODecoder.h"
#include "Companion.h"
#include "audio/samples_table.h"
void BankBinaryExporter::Export(std::ostream &write, std::shared_ptr<IParsedData> raw, std::string& entryName, YAML::Node &node, std::string* replacement ) {
auto writer = LUS::BinaryWriter();
auto bank = std::static_pointer_cast<BankData>(raw);
WriteHeader(writer, LUS::ResourceType::Bank, 0);
writer.Write(bank->mBankId);
writer.Write((uint32_t) bank->mBank.insts.size());
for (auto& instrument : bank->mBank.insts) {
writer.Write((uint8_t) instrument.valid);
if(!instrument.valid) continue;
writer.Write((uint8_t) instrument.releaseRate);
writer.Write((uint8_t) instrument.normalRangeLo);
writer.Write((uint8_t) instrument.normalRangeHi);
auto envelope = bank->mBank.envelopes[instrument.envelope];
if(!envelope.entries.empty()){
writer.Write((uint32_t) envelope.entries.size());
for (auto& entry : envelope.entries) {
writer.Write((uint16_t) entry.delay);
writer.Write((uint16_t) entry.arg);
}
} else {
writer.Write((uint32_t) 0);
}
uint32_t soundFlags = 0;
bool hasLo = instrument.soundLo.has_value();
bool hasMed = instrument.soundMed.has_value();
bool hasHi = instrument.soundHi.has_value();
if(hasLo){
soundFlags |= (1 << 0);
}
if(hasMed){
soundFlags |= (1 << 1);
}
if(hasHi){
soundFlags |= (1 << 2);
}
writer.Write((uint32_t) soundFlags);
if(hasLo){
auto value = instrument.soundLo.value();
uint32_t idx = AudioManager::Instance->get_index(bank->mBank.samples[value.offset]);
writer.Write(std::string(bank->mSampleTable[idx]));
writer.Write(value.tuning);
}
if(hasMed){
auto value = instrument.soundMed.value();
uint32_t idx = AudioManager::Instance->get_index(bank->mBank.samples[value.offset]);
writer.Write(std::string(bank->mSampleTable[idx]));
writer.Write(value.tuning);
}
if(hasHi){
auto value = instrument.soundHi.value();
uint32_t idx = AudioManager::Instance->get_index(bank->mBank.samples[value.offset]);
writer.Write(std::string(bank->mSampleTable[idx]));
writer.Write(value.tuning);
}
}
writer.Write((uint32_t) bank->mBank.drums.size());
for(auto &drum : bank->mBank.drums){
writer.Write((uint8_t) drum.releaseRate);
writer.Write((uint8_t) drum.pan);
auto envelope = bank->mBank.envelopes[drum.envelope];
if(!envelope.entries.empty()){
writer.Write((uint32_t) envelope.entries.size());
for(auto &entry : envelope.entries){
writer.Write(entry.delay);
writer.Write(entry.arg);
}
} else {
writer.Write((uint32_t) 0);
}
uint32_t idx = AudioManager::Instance->get_index(bank->mBank.samples[drum.sound.offset]);
std::string out = std::string(bank->mSampleTable[idx]);
writer.Write(out);
writer.Write(drum.sound.tuning);
}
writer.Finish(write);
}
std::optional<std::shared_ptr<IParsedData>> BankFactory::parse(std::vector<uint8_t>& buffer, YAML::Node& data) {
auto banks = AudioManager::Instance->get_banks();
auto bankId = data["id"].as<uint32_t>();
auto gSampleTable = Companion::Instance->GetCartridge()->GetCountry() == N64::CountryCode::Japan ? gJPSampleTable : gUSSampleTable;
return std::make_shared<BankData>(banks[bankId], bankId, gSampleTable);
}
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