mirror of https://github.com/AxioDL/metaforce.git
199 lines
6.6 KiB
C++
199 lines
6.6 KiB
C++
#include "SCLY.hpp"
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#include "ScriptObjects/ScriptTypes.hpp"
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namespace DataSpec::DNAMP1 {
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template <>
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void SCLY::Enumerate<BigDNA::Read>(athena::io::IStreamReader& rs) {
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fourCC.read(rs);
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version = rs.readUint32Big();
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layerCount = rs.readUint32Big();
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rs.enumerateBig(layerSizes, layerCount);
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atUint32 i = 0;
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rs.enumerate<ScriptLayer>(layers, layerCount, [&i, this](athena::io::IStreamReader& rs, ScriptLayer& layer) {
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atUint64 start = rs.position();
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layer.read(rs);
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rs.seek(start + layerSizes[i++], athena::SeekOrigin::Begin);
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});
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}
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template <>
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void SCLY::Enumerate<BigDNA::Write>(athena::io::IStreamWriter& ws) {
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fourCC.write(ws);
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ws.writeUint32Big(version);
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ws.writeUint32Big(layerCount);
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ws.enumerateBig(layerSizes);
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ws.enumerate(layers);
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}
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template <>
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void SCLY::Enumerate<BigDNA::BinarySize>(size_t& __isz) {
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__isz += 12;
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__isz += layerSizes.size() * 4;
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for (const ScriptLayer& layer : layers)
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layer.binarySize(__isz);
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}
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void SCLY::exportToLayerDirectories(const PAK::Entry& entry, PAKRouter<PAKBridge>& pakRouter, bool force) const {
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for (atUint32 i = 0; i < layerCount; i++) {
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bool active;
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hecl::ProjectPath layerPath = pakRouter.getAreaLayerWorking(entry.id, i, active);
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if (layerPath.isNone())
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layerPath.makeDirChain(true);
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if (active) {
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const hecl::ProjectPath activePath(layerPath, "!defaultactive");
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[[maybe_unused]] const auto fp = hecl::FopenUnique(activePath.getAbsolutePath().data(), "wb");
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}
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hecl::ProjectPath yamlFile(layerPath, "!objects.yaml");
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if (force || yamlFile.isNone()) {
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athena::io::FileWriter writer(yamlFile.getAbsolutePath());
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athena::io::ToYAMLStream(layers[i], writer);
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}
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}
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}
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void SCLY::addCMDLRigPairs(PAKRouter<PAKBridge>& pakRouter, CharacterAssociations<UniqueID32>& charAssoc) const {
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for (const ScriptLayer& layer : layers)
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layer.addCMDLRigPairs(pakRouter, charAssoc);
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}
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void SCLY::ScriptLayer::addCMDLRigPairs(PAKRouter<PAKBridge>& pakRouter,
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CharacterAssociations<UniqueID32>& charAssoc) const {
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for (const std::unique_ptr<IScriptObject>& obj : objects)
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obj->addCMDLRigPairs(pakRouter, charAssoc);
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}
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void SCLY::nameIDs(PAKRouter<PAKBridge>& pakRouter) const {
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for (const ScriptLayer& layer : layers)
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layer.nameIDs(pakRouter);
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}
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void SCLY::ScriptLayer::nameIDs(PAKRouter<PAKBridge>& pakRouter) const {
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for (const std::unique_ptr<IScriptObject>& obj : objects)
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obj->nameIDs(pakRouter);
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}
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template <>
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void SCLY::Enumerate<BigDNA::ReadYaml>(athena::io::YAMLDocReader& docin) {
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Do<BigDNA::ReadYaml>(athena::io::PropId{"fourCC"}, fourCC, docin);
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version = docin.readUint32("version");
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layerCount = docin.enumerate("layerSizes", layerSizes);
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docin.enumerate("layers", layers);
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}
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template <>
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void SCLY::Enumerate<BigDNA::WriteYaml>(athena::io::YAMLDocWriter& docout) {
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Do<BigDNA::WriteYaml>(athena::io::PropId{"fourCC"}, fourCC, docout);
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docout.writeUint32("version", version);
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docout.enumerate("layerSizes", layerSizes);
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docout.enumerate("layers", layers);
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}
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std::string_view SCLY::DNAType() { return "DNAMP1::SCLY"sv; }
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template <>
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void SCLY::ScriptLayer::Enumerate<BigDNA::Read>(athena::io::IStreamReader& rs) {
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unknown = rs.readUByte();
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objectCount = rs.readUint32Big();
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objects.clear();
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objects.reserve(objectCount);
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for (atUint32 i = 0; i < objectCount; i++) {
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atUint8 type = rs.readUByte();
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atUint32 len = rs.readUint32Big();
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atUint64 start = rs.position();
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auto iter = std::find_if(SCRIPT_OBJECT_DB.begin(), SCRIPT_OBJECT_DB.end(),
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[&type](const ScriptObjectSpec* obj) -> bool { return obj->type == type; });
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if (iter != SCRIPT_OBJECT_DB.end()) {
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std::unique_ptr<IScriptObject> obj((*iter)->a());
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obj->type = type;
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obj->read(rs);
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objects.push_back(std::move(obj));
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size_t actualLen = rs.position() - start;
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if (actualLen != len)
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Log.report(logvisor::Fatal,
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FMT_STRING("Error while reading object of type 0x{:02X}, did not read the expected amount of "
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"data, read 0x{:x}, expected 0x{:x}"),
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(atUint32)type, actualLen, len);
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rs.seek(start + len, athena::SeekOrigin::Begin);
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} else {
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Log.report(logvisor::Fatal, FMT_STRING("Unable to find type 0x{:X} in object database"),
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(atUint32)type);
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}
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}
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}
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template <>
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void SCLY::ScriptLayer::Enumerate<BigDNA::ReadYaml>(athena::io::YAMLDocReader& rs) {
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unknown = rs.readUByte("unknown");
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size_t objCount;
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objects.clear();
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if (auto v = rs.enterSubVector("objects", objCount)) {
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objectCount = objCount;
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objects.reserve(objCount);
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for (atUint32 i = 0; i < objectCount; i++) {
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if (auto rec = rs.enterSubRecord()) {
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atUint8 type = rs.readUByte("type");
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auto iter = std::find_if(SCRIPT_OBJECT_DB.begin(), SCRIPT_OBJECT_DB.end(),
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[&type](const ScriptObjectSpec* obj) -> bool { return obj->type == type; });
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if (iter != SCRIPT_OBJECT_DB.end()) {
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std::unique_ptr<IScriptObject> obj((*iter)->a());
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obj->read(rs);
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obj->type = type;
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objects.push_back(std::move(obj));
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} else
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Log.report(logvisor::Fatal, FMT_STRING("Unable to find type 0x{:X} in object database"),
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(atUint32)type);
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}
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}
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} else
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objectCount = 0;
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}
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template <>
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void SCLY::ScriptLayer::Enumerate<BigDNA::Write>(athena::io::IStreamWriter& ws) {
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ws.writeUByte(unknown);
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ws.writeUint32Big(objectCount);
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for (const std::unique_ptr<IScriptObject>& obj : objects) {
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ws.writeByte(obj->type);
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size_t expLen = 0;
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obj->binarySize(expLen);
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ws.writeUint32Big(expLen);
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auto start = ws.position();
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obj->write(ws);
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auto wrote = ws.position() - start;
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if (wrote != expLen)
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Log.report(logvisor::Error, FMT_STRING("expected writing {} byte SCLY obj; wrote {}"), expLen, wrote);
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}
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}
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template <>
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void SCLY::ScriptLayer::Enumerate<BigDNA::BinarySize>(size_t& __isz) {
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__isz += 5;
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for (const std::unique_ptr<IScriptObject>& obj : objects) {
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__isz += 5;
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obj->binarySize(__isz);
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}
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}
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template <>
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void SCLY::ScriptLayer::Enumerate<BigDNA::WriteYaml>(athena::io::YAMLDocWriter& ws) {
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ws.writeUByte("unknown", unknown);
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if (auto v = ws.enterSubVector("objects")) {
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for (const std::unique_ptr<IScriptObject>& obj : objects) {
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if (auto rec = ws.enterSubRecord()) {
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ws.writeUByte("type", obj->type);
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obj->write(ws);
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}
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}
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}
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}
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std::string_view SCLY::ScriptLayer::DNAType() { return "DNAMP1::SCLY::ScriptLayer"sv; }
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} // namespace DataSpec::DNAMP1
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