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#include "UnkSpawnData.h"
#include "Companion.h"
#include "utils/Decompressor.h"
#define NUM(x) std::dec << std::setfill(' ') << std::setw(6) << x
#define COL(c) "0x" << std::hex << std::setw(2) << std::setfill('0') << c
ExportResult MK64::UnkSpawnDataHeaderExporter::Export(std::ostream &write, std::shared_ptr<IParsedData> raw, std::string& entryName, YAML::Node &node, std::string* replacement) {
const auto symbol = GetSafeNode(node, "symbol", entryName);
if(Companion::Instance->IsOTRMode()){
write << "static const ALIGN_ASSET(2) char " << symbol << "[] = \"__OTR__" << (*replacement) << "\";\n\n";
return std::nullopt;
}
write << "extern UnkActorSpawnData " << symbol << "[];\n";
return std::nullopt;
}
ExportResult MK64::UnkSpawnDataCodeExporter::Export(std::ostream &write, std::shared_ptr<IParsedData> raw, std::string& entryName, YAML::Node &node, std::string* replacement ) {
auto spawns = std::static_pointer_cast<UnkSpawnDataData>(raw)->mSpawns;
const auto symbol = GetSafeNode(node, "symbol", entryName);
const auto offset = GetSafeNode<uint32_t>(node, "offset");
write << "UnkActorSpawnData " << symbol << "[] = {\n";
for (int i = 0; i < spawns.size(); i++) {
auto x = spawns[i].x;
auto y = spawns[i].y;
auto z = spawns[i].z;
auto someId = spawns[i].someId;
auto unk8 = spawns[i].unk8;
if(i <= spawns.size() - 1) {
write << fourSpaceTab;
}
// { x, y, z, id },
write << "{" << NUM(x) << ", " << NUM(y) << ", " << NUM(z) << ", " << NUM(someId) << ", " << NUM(unk8) << " },\n";
}
write << "};\n";
return offset + spawns.size() * sizeof(MK64::UnkActorSpawnData);
}
ExportResult MK64::UnkSpawnDataBinaryExporter::Export(std::ostream &write, std::shared_ptr<IParsedData> raw, std::string& entryName, YAML::Node &node, std::string* replacement ) {
auto spawns = std::static_pointer_cast<UnkSpawnDataData>(raw)->mSpawns;
auto writer = LUS::BinaryWriter();
WriteHeader(writer, Torch::ResourceType::UnkSpawnData, 0);
writer.Write((uint32_t) spawns.size());
for(auto s : spawns) {
writer.Write(s.x);
writer.Write(s.y);
writer.Write(s.z);
writer.Write(s.someId);
writer.Write(s.unk8);
}
writer.Finish(write);
return std::nullopt;
}
std::optional<std::shared_ptr<IParsedData>> MK64::UnkSpawnDataFactory::parse(std::vector<uint8_t>& buffer, YAML::Node& node) {
auto count = GetSafeNode<size_t>(node, "count");
auto [_, segment] = Decompressor::AutoDecode(node, buffer);
LUS::BinaryReader reader(segment.data, count * sizeof(MK64::UnkActorSpawnData));
reader.SetEndianness(Torch::Endianness::Big);
std::vector<MK64::UnkActorSpawnData> spawns;
for(size_t i = 0; i < count; i++) {
auto x = reader.ReadInt16();
auto y = reader.ReadInt16();
auto z = reader.ReadInt16();
auto someId = reader.ReadInt16();
auto unk8 = reader.ReadInt16();
spawns.push_back(MK64::UnkActorSpawnData({
x, y, z, someId, unk8
}));
}
return std::make_shared<UnkSpawnDataData>(spawns);
}
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