mirror of https://github.com/AxioDL/metaforce.git
439 lines
15 KiB
C++
439 lines
15 KiB
C++
#include <utility>
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#include <stdio.h>
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#include <string.h>
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#include "SpecBase.hpp"
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#include "DNAMP1/DNAMP1.hpp"
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#include "DNAMP1/MLVL.hpp"
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#include "DNAMP1/STRG.hpp"
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#include "DNAMP1/CMDL.hpp"
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#include "DNAMP1/ANCS.hpp"
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#include "DNACommon/PART.hpp"
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#include "DNACommon/SWHC.hpp"
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#include "DNACommon/ELSC.hpp"
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#include "DNACommon/WPSC.hpp"
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#include "DNACommon/CRSC.hpp"
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#include "DNACommon/DPSC.hpp"
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#include "hecl/ClientProcess.hpp"
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namespace DataSpec
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{
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static logvisor::Module Log("urde::SpecMP1");
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extern hecl::Database::DataSpecEntry SpecEntMP1;
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struct SpecMP1 : SpecBase
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{
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bool checkStandaloneID(const char* id) const
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{
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if (!memcmp(id, "GM8", 3))
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return true;
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return false;
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}
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std::vector<const nod::Node*> m_nonPaks;
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std::vector<DNAMP1::PAKBridge> m_paks;
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std::map<std::string, DNAMP1::PAKBridge*, hecl::CaseInsensitiveCompare> m_orderedPaks;
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hecl::ProjectPath m_workPath;
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hecl::ProjectPath m_cookPath;
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PAKRouter<DNAMP1::PAKBridge> m_pakRouter;
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SpecMP1(const hecl::Database::DataSpecEntry* specEntry, hecl::Database::Project& project, bool pc)
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: SpecBase(specEntry, project, pc),
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m_workPath(project.getProjectWorkingPath(), _S("MP1")),
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m_cookPath(project.getProjectCookedPath(SpecEntMP1), _S("MP1")),
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m_pakRouter(*this, m_workPath, m_cookPath) {}
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void buildPaks(nod::Node& root,
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const std::vector<hecl::SystemString>& args,
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ExtractReport& rep)
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{
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m_nonPaks.clear();
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m_paks.clear();
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for (const nod::Node& child : root)
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{
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bool isPak = false;
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const std::string& name = child.getName();
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std::string lowerName = name;
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std::transform(lowerName.begin(), lowerName.end(), lowerName.begin(), tolower);
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if (name.size() > 4)
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{
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std::string::iterator extit = lowerName.end() - 4;
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if (!std::string(extit, lowerName.end()).compare(".pak"))
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{
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/* This is a pak */
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isPak = true;
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std::string lowerBase(lowerName.begin(), extit);
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/* Needs filter */
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bool good = true;
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if (args.size())
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{
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good = false;
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if (!lowerName.compare(0, 7, "metroid"))
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{
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hecl::SystemChar idxChar = lowerName[7];
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for (const hecl::SystemString& arg : args)
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{
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if (arg.size() == 1 && iswdigit(arg[0]))
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if (arg[0] == idxChar)
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good = true;
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}
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}
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else
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good = true;
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if (!good)
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{
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for (const hecl::SystemString& arg : args)
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{
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std::string lowerArg = hecl::SystemUTF8View(arg).str();
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std::transform(lowerArg.begin(), lowerArg.end(), lowerArg.begin(), tolower);
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if (!lowerArg.compare(0, lowerBase.size(), lowerBase))
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good = true;
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}
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}
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}
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m_paks.emplace_back(m_project, child, good);
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}
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}
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if (!isPak)
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m_nonPaks.push_back(&child);
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}
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/* Sort PAKs alphabetically */
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m_orderedPaks.clear();
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for (DNAMP1::PAKBridge& dpak : m_paks)
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m_orderedPaks[dpak.getName()] = &dpak;
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/* Assemble extract report */
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rep.childOpts.reserve(m_orderedPaks.size());
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for (const std::pair<std::string, DNAMP1::PAKBridge*>& item : m_orderedPaks)
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{
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if (!item.second->m_doExtract)
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continue;
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rep.childOpts.emplace_back();
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ExtractReport& childRep = rep.childOpts.back();
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hecl::SystemStringView nameView(item.first);
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childRep.name = nameView;
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childRep.desc = item.second->getLevelString();
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}
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}
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bool checkFromStandaloneDisc(nod::DiscBase& disc,
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const hecl::SystemString& regstr,
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const std::vector<hecl::SystemString>& args,
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std::vector<ExtractReport>& reps)
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{
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nod::Partition* partition = disc.getDataPartition();
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std::unique_ptr<uint8_t[]> dolBuf = partition->getDOLBuf();
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const char* buildInfo = (char*)memmem(dolBuf.get(), partition->getDOLSize(), "MetroidBuildInfo", 16) + 19;
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if (!buildInfo)
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return false;
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/* Root Report */
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reps.emplace_back();
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ExtractReport& rep = reps.back();
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rep.name = _S("MP1");
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rep.desc = _S("Metroid Prime ") + regstr;
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if (buildInfo)
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{
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std::string buildStr(buildInfo);
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hecl::SystemStringView buildView(buildStr);
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rep.desc += _S(" (") + buildView + _S(")");
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}
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/* Iterate PAKs and build level options */
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nod::Node& root = partition->getFSTRoot();
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buildPaks(root, args, rep);
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return true;
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}
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bool checkFromTrilogyDisc(nod::DiscBase& disc,
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const hecl::SystemString& regstr,
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const std::vector<hecl::SystemString>& args,
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std::vector<ExtractReport>& reps)
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{
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std::vector<hecl::SystemString> mp1args;
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bool doExtract = false;
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if (args.size())
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{
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/* Needs filter */
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for (const hecl::SystemString& arg : args)
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{
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hecl::SystemString lowerArg = arg;
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hecl::ToLower(lowerArg);
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if (!lowerArg.compare(0, 3, _S("mp1")))
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{
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doExtract = true;
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mp1args.reserve(args.size());
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size_t slashPos = arg.find(_S('/'));
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if (slashPos == hecl::SystemString::npos)
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slashPos = arg.find(_S('\\'));
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if (slashPos != hecl::SystemString::npos)
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mp1args.emplace_back(hecl::SystemString(arg.begin() + slashPos + 1, arg.end()));
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}
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}
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}
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else
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doExtract = true;
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if (!doExtract)
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return false;
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nod::Partition* partition = disc.getDataPartition();
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nod::Node& root = partition->getFSTRoot();
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nod::Node::DirectoryIterator dolIt = root.find("rs5mp1_p.dol");
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if (dolIt == root.end())
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return false;
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std::unique_ptr<uint8_t[]> dolBuf = dolIt->getBuf();
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const char* buildInfo = (char*)memmem(dolBuf.get(), dolIt->size(), "MetroidBuildInfo", 16) + 19;
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/* Root Report */
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reps.emplace_back();
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ExtractReport& rep = reps.back();
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rep.name = _S("MP1");
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rep.desc = _S("Metroid Prime ") + regstr;
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if (buildInfo)
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{
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std::string buildStr(buildInfo);
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hecl::SystemStringView buildView(buildStr);
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rep.desc += _S(" (") + buildView + _S(")");
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}
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/* Iterate PAKs and build level options */
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nod::Node::DirectoryIterator mp1It = root.find("MP1");
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if (mp1It == root.end())
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return false;
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buildPaks(*mp1It, mp1args, rep);
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return true;
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}
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bool extractFromDisc(nod::DiscBase&, bool force, FProgress progress)
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{
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m_project.enableDataSpecs({_S("MP1-PC")});
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nod::ExtractionContext ctx = {true, force, nullptr};
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m_workPath.makeDir();
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const hecl::ProjectPath& cookPath = m_project.getProjectCookedPath(SpecEntMP1);
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cookPath.makeDir();
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m_cookPath.makeDir();
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progress(_S("Indexing PAKs"), _S(""), 2, 0.0);
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m_pakRouter.build(m_paks, [&progress](float factor)
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{
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progress(_S("Indexing PAKs"), _S(""), 2, factor);
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});
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progress(_S("Indexing PAKs"), _S(""), 2, 1.0);
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hecl::ProjectPath outPath(m_project.getProjectWorkingPath(), _S("out"));
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outPath.makeDir();
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hecl::ProjectPath mp1OutPath(outPath, _S("MP1"));
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mp1OutPath.makeDir();
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progress(_S("MP1 Root"), _S(""), 3, 0.0);
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int prog = 0;
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ctx.progressCB = [&](const std::string& name) {
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hecl::SystemStringView nameView(name);
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progress(_S("MP1 Root"), nameView.c_str(), 3, prog / (float)m_nonPaks.size());
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};
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for (const nod::Node* node : m_nonPaks)
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{
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node->extractToDirectory(mp1OutPath.getAbsolutePath(), ctx);
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prog++;
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}
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progress(_S("MP1 Root"), _S(""), 3, 1.0);
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std::mutex msgLock;
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hecl::ClientProcess process;
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int compIdx = 4;
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prog = 0;
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for (std::pair<std::string, DNAMP1::PAKBridge*> pair : m_orderedPaks)
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{
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DNAMP1::PAKBridge& pak = *pair.second;
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if (!pak.m_doExtract)
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continue;
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const std::string& name = pak.getName();
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hecl::SystemStringView sysName(name);
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{
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std::unique_lock<std::mutex> lk(msgLock);
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progress(sysName.c_str(), _S(""), compIdx, 0.0);
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}
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hecl::SystemString pakName = sysName.sys_str();
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process.addLambdaTransaction([&, pakName](hecl::BlenderToken& btok)
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{
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m_pakRouter.extractResources(pak, force, btok,
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[&](const hecl::SystemChar* substr, float factor)
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{
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std::unique_lock<std::mutex> lk(msgLock);
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progress(pakName.c_str(), substr, compIdx, factor);
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});
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});
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}
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return true;
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}
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const hecl::Database::DataSpecEntry* getOriginalSpec() const
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{
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return &SpecEntMP1;
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}
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hecl::ProjectPath getWorking(class UniqueID32& id)
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{
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return m_pakRouter.getWorking(id);
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}
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bool checkPathPrefix(const hecl::ProjectPath& path)
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{
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return path.getRelativePath().compare(0, 4, _S("MP1/")) == 0;
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}
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bool validateYAMLDNAType(FILE* fp) const
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{
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athena::io::YAMLDocReader reader;
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yaml_parser_set_input_file(reader.getParser(), fp);
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return reader.ClassTypeOperation([](const char* classType)
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{
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if (!strcmp(classType, DNAMP1::MLVL::DNAType()))
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return true;
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else if (!strcmp(classType, DNAMP1::STRG::DNAType()))
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return true;
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else if (!strcmp(classType, DNAParticle::GPSM<UniqueID32>::DNAType()))
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return true;
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else if (!strcmp(classType, DNAParticle::SWSH<UniqueID32>::DNAType()))
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return true;
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else if (!strcmp(classType, DNAParticle::ELSM<UniqueID32>::DNAType()))
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return true;
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else if (!strcmp(classType, DNAParticle::WPSM<UniqueID32>::DNAType()))
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return true;
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else if (!strcmp(classType, DNAParticle::CRSM<UniqueID32>::DNAType()))
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return true;
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else if (!strcmp(classType, DNAParticle::DPSM<UniqueID32>::DNAType()))
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return true;
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return false;
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});
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}
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void cookMesh(const hecl::ProjectPath& out, const hecl::ProjectPath& in,
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BlendStream& ds, bool fast, FCookProgress progress) const
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{
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Mesh mesh = ds.compileMesh(fast ? hecl::HMDLTopology::Triangles : hecl::HMDLTopology::TriStrips, -1,
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[&progress](int surfCount)
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{
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progress(hecl::SysFormat(_S("%d"), surfCount).c_str());
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});
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if (m_pc)
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DNAMP1::CMDL::HMDLCook(out, in, mesh);
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else
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DNAMP1::CMDL::Cook(out, in, mesh);
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}
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void cookActor(const hecl::ProjectPath& out, const hecl::ProjectPath& in,
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BlendStream& ds, bool fast, FCookProgress progress) const
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{
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Actor actor = ds.compileActor();
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DNAMP1::ANCS::Cook(out, in, actor);
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}
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void cookArea(const hecl::ProjectPath& out, const hecl::ProjectPath& in,
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BlendStream& ds, bool fast, FCookProgress progress) const
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{
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}
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void cookYAML(const hecl::ProjectPath& out, const hecl::ProjectPath& in,
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FILE* fin, FCookProgress progress) const
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{
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athena::io::YAMLDocReader reader;
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yaml_parser_set_input_file(reader.getParser(), fin);
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if (reader.parse())
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{
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std::string classStr = reader.readString("DNAType");
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if (classStr.empty())
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return;
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if (!classStr.compare(DNAMP1::STRG::DNAType()))
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{
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DNAMP1::STRG strg;
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strg.read(reader);
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DNAMP1::STRG::Cook(strg, out);
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}
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else if (!classStr.compare(DNAParticle::GPSM<UniqueID32>::DNAType()))
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{
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DNAParticle::GPSM<UniqueID32> gpsm;
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gpsm.read(reader);
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DNAParticle::WriteGPSM(gpsm, out);
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}
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else if (!classStr.compare(DNAParticle::SWSH<UniqueID32>::DNAType()))
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{
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DNAParticle::SWSH<UniqueID32> swsh;
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swsh.read(reader);
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DNAParticle::WriteSWSH(swsh, out);
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}
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else if (!classStr.compare(DNAParticle::ELSM<UniqueID32>::DNAType()))
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{
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DNAParticle::ELSM<UniqueID32> elsm;
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elsm.read(reader);
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DNAParticle::WriteELSM(elsm, out);
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}
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else if (!classStr.compare(DNAParticle::WPSM<UniqueID32>::DNAType()))
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{
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DNAParticle::WPSM<UniqueID32> wpsm;
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wpsm.read(reader);
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DNAParticle::WriteWPSM(wpsm, out);
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}
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else if (!classStr.compare(DNAParticle::CRSM<UniqueID32>::DNAType()))
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{
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DNAParticle::CRSM<UniqueID32> crsm;
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crsm.read(reader);
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DNAParticle::WriteCRSM(crsm, out);
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}
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else if (!classStr.compare(DNAParticle::DPSM<UniqueID32>::DNAType()))
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{
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DNAParticle::DPSM<UniqueID32> dpsm;
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dpsm.read(reader);
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DNAParticle::WriteDPSM(dpsm, out);
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}
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}
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progress(_S("Done"));
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}
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};
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hecl::Database::DataSpecEntry SpecEntMP1 =
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{
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_S("MP1"),
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_S("Data specification for original Metroid Prime engine"),
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[](hecl::Database::Project& project, hecl::Database::DataSpecTool)
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-> hecl::Database::IDataSpec* {return new struct SpecMP1(&SpecEntMP1, project, false);}
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};
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hecl::Database::DataSpecEntry SpecEntMP1PC =
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{
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_S("MP1-PC"),
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_S("Data specification for PC-optimized Metroid Prime engine"),
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[](hecl::Database::Project& project, hecl::Database::DataSpecTool tool)
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-> hecl::Database::IDataSpec*
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{
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if (tool != hecl::Database::DataSpecTool::Extract)
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return new struct SpecMP1(&SpecEntMP1PC, project, true);
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return nullptr;
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}
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};
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}
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