mirror of https://github.com/AxioDL/metaforce.git
200 lines
7.1 KiB
C++
200 lines
7.1 KiB
C++
#include "DNACommon.hpp"
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#include "PAK.hpp"
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#include "boo/ThreadLocalPtr.hpp"
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namespace DataSpec {
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logvisor::Module LogDNACommon("DataSpec::DNACommon");
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ThreadLocalPtr<SpecBase> g_curSpec;
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ThreadLocalPtr<PAKRouterBase> g_PakRouter;
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ThreadLocalPtr<hecl::blender::Token> g_ThreadBlenderToken;
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ThreadLocalPtr<hecl::Database::Project> UniqueIDBridge::s_Project;
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UniqueID32 UniqueID32::kInvalidId;
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template <class IDType>
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hecl::ProjectPath UniqueIDBridge::TranslatePakIdToPath(const IDType& id, bool silenceWarnings) {
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/* Try PAKRouter first (only available at extract) */
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PAKRouterBase* pakRouter = g_PakRouter.get();
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if (pakRouter) {
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hecl::ProjectPath path = pakRouter->getWorking(id, silenceWarnings);
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if (path)
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return path;
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}
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/* Try project cache second (populated with paths read from YAML resources) */
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hecl::Database::Project* project = s_Project.get();
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if (!project) {
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if (pakRouter) {
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if (hecl::VerbosityLevel >= 1 && !silenceWarnings && id.isValid())
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LogDNACommon.report(logvisor::Warning, FMT_STRING("unable to translate {} to path"), id);
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return {};
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}
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LogDNACommon.report(logvisor::Fatal, FMT_STRING("g_PakRouter or s_Project must be set to non-null before "
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"calling UniqueIDBridge::TranslatePakIdToPath"));
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return {};
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}
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const hecl::ProjectPath* search = project->lookupBridgePath(id.toUint64());
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if (!search) {
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if (hecl::VerbosityLevel >= 1 && !silenceWarnings && id.isValid())
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LogDNACommon.report(logvisor::Warning, FMT_STRING("unable to translate {} to path"), id);
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return {};
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}
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return *search;
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}
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template hecl::ProjectPath UniqueIDBridge::TranslatePakIdToPath(const UniqueID32& id, bool silenceWarnings);
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template hecl::ProjectPath UniqueIDBridge::TranslatePakIdToPath(const UniqueID64& id, bool silenceWarnings);
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template hecl::ProjectPath UniqueIDBridge::TranslatePakIdToPath(const UniqueID128& id, bool silenceWarnings);
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template <class IDType>
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hecl::ProjectPath UniqueIDBridge::MakePathFromString(std::string_view str) {
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if (str.empty())
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return {};
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hecl::Database::Project* project = s_Project.get();
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if (!project)
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LogDNACommon.report(logvisor::Fatal,
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FMT_STRING("UniqueIDBridge::setGlobalProject must be called before MakePathFromString"));
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hecl::ProjectPath path = hecl::ProjectPath(*project, str);
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project->addBridgePathToCache(IDType(path).toUint64(), path);
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return path;
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}
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template hecl::ProjectPath UniqueIDBridge::MakePathFromString<UniqueID32>(std::string_view str);
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template hecl::ProjectPath UniqueIDBridge::MakePathFromString<UniqueID64>(std::string_view str);
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void UniqueIDBridge::SetThreadProject(hecl::Database::Project& project) { s_Project.reset(&project); }
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/** PAK 32-bit Unique ID */
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template <>
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void UniqueID32::Enumerate<BigDNA::Read>(typename Read::StreamT& reader) {
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assign(reader.readUint32Big());
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}
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template <>
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void UniqueID32::Enumerate<BigDNA::Write>(typename Write::StreamT& writer) {
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writer.writeUint32Big(m_id);
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}
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template <>
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void UniqueID32::Enumerate<BigDNA::ReadYaml>(typename ReadYaml::StreamT& reader) {
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*this = UniqueIDBridge::MakePathFromString<UniqueID32>(reader.readString());
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}
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template <>
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void UniqueID32::Enumerate<BigDNA::WriteYaml>(typename WriteYaml::StreamT& writer) {
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if (!isValid())
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return;
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hecl::ProjectPath path = UniqueIDBridge::TranslatePakIdToPath(*this);
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if (!path)
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return;
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writer.writeString(path.getEncodableStringUTF8());
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}
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template <>
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void UniqueID32::Enumerate<BigDNA::BinarySize>(typename BinarySize::StreamT& s) {
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s += 4;
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}
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std::string UniqueID32::toString() const { return fmt::format(FMT_STRING("{}"), *this); }
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template <>
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void UniqueID32Zero::Enumerate<BigDNA::Read>(typename Read::StreamT& reader) {
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UniqueID32::Enumerate<BigDNA::Read>(reader);
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}
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template <>
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void UniqueID32Zero::Enumerate<BigDNA::Write>(typename Write::StreamT& writer) {
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writer.writeUint32Big(isValid() ? m_id : 0);
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}
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template <>
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void UniqueID32Zero::Enumerate<BigDNA::ReadYaml>(typename ReadYaml::StreamT& reader) {
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UniqueID32::Enumerate<BigDNA::ReadYaml>(reader);
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}
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template <>
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void UniqueID32Zero::Enumerate<BigDNA::WriteYaml>(typename WriteYaml::StreamT& writer) {
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UniqueID32::Enumerate<BigDNA::WriteYaml>(writer);
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}
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template <>
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void UniqueID32Zero::Enumerate<BigDNA::BinarySize>(typename BinarySize::StreamT& s) {
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UniqueID32::Enumerate<BigDNA::BinarySize>(s);
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}
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/** PAK 64-bit Unique ID */
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template <>
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void UniqueID64::Enumerate<BigDNA::Read>(typename Read::StreamT& reader) {
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assign(reader.readUint64Big());
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}
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template <>
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void UniqueID64::Enumerate<BigDNA::Write>(typename Write::StreamT& writer) {
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writer.writeUint64Big(m_id);
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}
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template <>
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void UniqueID64::Enumerate<BigDNA::ReadYaml>(typename ReadYaml::StreamT& reader) {
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*this = UniqueIDBridge::MakePathFromString<UniqueID64>(reader.readString());
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}
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template <>
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void UniqueID64::Enumerate<BigDNA::WriteYaml>(typename WriteYaml::StreamT& writer) {
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if (!isValid())
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return;
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hecl::ProjectPath path = UniqueIDBridge::TranslatePakIdToPath(*this);
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if (!path)
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return;
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writer.writeString(path.getEncodableStringUTF8());
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}
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template <>
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void UniqueID64::Enumerate<BigDNA::BinarySize>(typename BinarySize::StreamT& s) {
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s += 8;
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}
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std::string UniqueID64::toString() const { return fmt::format(FMT_STRING("{}"), *this); }
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/** PAK 128-bit Unique ID */
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template <>
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void UniqueID128::Enumerate<BigDNA::Read>(typename Read::StreamT& reader) {
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m_id.id[0] = reader.readUint64Big();
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m_id.id[1] = reader.readUint64Big();
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}
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template <>
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void UniqueID128::Enumerate<BigDNA::Write>(typename Write::StreamT& writer) {
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writer.writeUint64Big(m_id.id[0]);
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writer.writeUint64Big(m_id.id[1]);
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}
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template <>
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void UniqueID128::Enumerate<BigDNA::ReadYaml>(typename ReadYaml::StreamT& reader) {
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*this = UniqueIDBridge::MakePathFromString<UniqueID128>(reader.readString());
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}
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template <>
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void UniqueID128::Enumerate<BigDNA::WriteYaml>(typename WriteYaml::StreamT& writer) {
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if (!isValid())
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return;
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hecl::ProjectPath path = UniqueIDBridge::TranslatePakIdToPath(*this);
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if (!path)
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return;
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writer.writeString(path.getEncodableStringUTF8());
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}
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template <>
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void UniqueID128::Enumerate<BigDNA::BinarySize>(typename BinarySize::StreamT& s) {
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s += 16;
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}
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std::string UniqueID128::toString() const { return fmt::format(FMT_STRING("{}"), *this); }
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/** Word Bitmap reader/writer */
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void WordBitmap::read(athena::io::IStreamReader& reader, size_t bitCount) {
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m_bitCount = bitCount;
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size_t wordCount = (bitCount + 31) / 32;
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m_words.clear();
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m_words.reserve(wordCount);
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for (size_t w = 0; w < wordCount; ++w)
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m_words.push_back(reader.readUint32Big());
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}
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void WordBitmap::write(athena::io::IStreamWriter& writer) const {
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for (atUint32 word : m_words)
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writer.writeUint32Big(word);
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}
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void WordBitmap::binarySize(size_t& __isz) const { __isz += m_words.size() * 4; }
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hecl::ProjectPath GetPathBeginsWith(const hecl::DirectoryEnumerator& dEnum, const hecl::ProjectPath& parentPath,
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hecl::SystemStringView test) {
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for (const auto& ent : dEnum)
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if (hecl::StringUtils::BeginsWith(ent.m_name, test))
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return hecl::ProjectPath(parentPath, ent.m_name);
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return {};
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}
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} // namespace DataSpec
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