mirror of
https://github.com/yuzu-emu/yuzu-android.git
synced 2025-06-12 10:17:56 -05:00
Convert old logging calls to new logging macros
This commit is contained in:
@ -24,12 +24,6 @@ public:
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Kernel::HandleType GetHandleType() const override { return HandleType::AddressArbiter; }
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std::string name; ///< Name of address arbiter object (optional)
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ResultVal<bool> WaitSynchronization() override {
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// TODO(bunnei): ImplementMe
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ERROR_LOG(OSHLE, "(UNIMPLEMENTED)");
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return UnimplementedFunction(ErrorModule::OS);
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}
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};
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////////////////////////////////////////////////////////////////////////////////////////////////////
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@ -59,7 +53,7 @@ ResultCode ArbitrateAddress(Handle handle, ArbitrationType type, u32 address, s3
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break;
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default:
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ERROR_LOG(KERNEL, "unknown type=%d", type);
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LOG_ERROR(Kernel, "unknown type=%d", type);
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return ResultCode(ErrorDescription::InvalidEnumValue, ErrorModule::Kernel, ErrorSummary::WrongArgument, ErrorLevel::Usage);
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}
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return RESULT_SUCCESS;
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@ -94,26 +94,20 @@ public:
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}
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case FileCommand::Close:
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{
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DEBUG_LOG(KERNEL, "Close %s %s", GetTypeName().c_str(), GetName().c_str());
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LOG_TRACE(Service_FS, "Close %s %s", GetTypeName().c_str(), GetName().c_str());
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CloseArchive(backend->GetIdCode());
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break;
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}
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// Unknown command...
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default:
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{
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ERROR_LOG(KERNEL, "Unknown command=0x%08X!", cmd);
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LOG_ERROR(Service_FS, "Unknown command=0x%08X", cmd);
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return UnimplementedFunction(ErrorModule::FS);
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}
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}
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cmd_buff[1] = 0; // No error
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return MakeResult<bool>(false);
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}
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ResultVal<bool> WaitSynchronization() override {
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// TODO(bunnei): ImplementMe
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ERROR_LOG(OSHLE, "(UNIMPLEMENTED)");
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return UnimplementedFunction(ErrorModule::FS);
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}
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};
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class File : public Object {
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@ -138,7 +132,7 @@ public:
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u64 offset = cmd_buff[1] | ((u64) cmd_buff[2]) << 32;
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u32 length = cmd_buff[3];
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u32 address = cmd_buff[5];
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DEBUG_LOG(KERNEL, "Read %s %s: offset=0x%llx length=%d address=0x%x",
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LOG_TRACE(Service_FS, "Read %s %s: offset=0x%llx length=%d address=0x%x",
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GetTypeName().c_str(), GetName().c_str(), offset, length, address);
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cmd_buff[2] = backend->Read(offset, length, Memory::GetPointer(address));
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break;
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@ -151,7 +145,7 @@ public:
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u32 length = cmd_buff[3];
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u32 flush = cmd_buff[4];
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u32 address = cmd_buff[6];
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DEBUG_LOG(KERNEL, "Write %s %s: offset=0x%llx length=%d address=0x%x, flush=0x%x",
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LOG_TRACE(Service_FS, "Write %s %s: offset=0x%llx length=%d address=0x%x, flush=0x%x",
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GetTypeName().c_str(), GetName().c_str(), offset, length, address, flush);
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cmd_buff[2] = backend->Write(offset, length, flush, Memory::GetPointer(address));
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break;
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@ -159,7 +153,7 @@ public:
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case FileCommand::GetSize:
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{
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DEBUG_LOG(KERNEL, "GetSize %s %s", GetTypeName().c_str(), GetName().c_str());
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LOG_TRACE(Service_FS, "GetSize %s %s", GetTypeName().c_str(), GetName().c_str());
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u64 size = backend->GetSize();
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cmd_buff[2] = (u32)size;
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cmd_buff[3] = size >> 32;
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@ -169,7 +163,7 @@ public:
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case FileCommand::SetSize:
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{
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u64 size = cmd_buff[1] | ((u64)cmd_buff[2] << 32);
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DEBUG_LOG(KERNEL, "SetSize %s %s size=%llu",
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LOG_TRACE(Service_FS, "SetSize %s %s size=%llu",
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GetTypeName().c_str(), GetName().c_str(), size);
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backend->SetSize(size);
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break;
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@ -177,14 +171,14 @@ public:
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case FileCommand::Close:
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{
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DEBUG_LOG(KERNEL, "Close %s %s", GetTypeName().c_str(), GetName().c_str());
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LOG_TRACE(Service_FS, "Close %s %s", GetTypeName().c_str(), GetName().c_str());
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Kernel::g_object_pool.Destroy<File>(GetHandle());
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break;
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}
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// Unknown command...
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default:
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ERROR_LOG(KERNEL, "Unknown command=0x%08X!", cmd);
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LOG_ERROR(Service_FS, "Unknown command=0x%08X!", cmd);
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ResultCode error = UnimplementedFunction(ErrorModule::FS);
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cmd_buff[1] = error.raw; // TODO(Link Mauve): use the correct error code for that.
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return error;
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@ -192,12 +186,6 @@ public:
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cmd_buff[1] = 0; // No error
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return MakeResult<bool>(false);
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}
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ResultVal<bool> WaitSynchronization() override {
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// TODO(bunnei): ImplementMe
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ERROR_LOG(OSHLE, "(UNIMPLEMENTED)");
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return UnimplementedFunction(ErrorModule::FS);
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}
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};
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class Directory : public Object {
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@ -222,7 +210,7 @@ public:
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u32 count = cmd_buff[1];
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u32 address = cmd_buff[3];
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auto entries = reinterpret_cast<FileSys::Entry*>(Memory::GetPointer(address));
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DEBUG_LOG(KERNEL, "Read %s %s: count=%d",
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LOG_TRACE(Service_FS, "Read %s %s: count=%d",
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GetTypeName().c_str(), GetName().c_str(), count);
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// Number of entries actually read
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@ -232,14 +220,14 @@ public:
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case DirectoryCommand::Close:
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{
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DEBUG_LOG(KERNEL, "Close %s %s", GetTypeName().c_str(), GetName().c_str());
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LOG_TRACE(Service_FS, "Close %s %s", GetTypeName().c_str(), GetName().c_str());
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Kernel::g_object_pool.Destroy<Directory>(GetHandle());
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break;
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}
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// Unknown command...
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default:
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ERROR_LOG(KERNEL, "Unknown command=0x%08X!", cmd);
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LOG_ERROR(Service_FS, "Unknown command=0x%08X!", cmd);
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ResultCode error = UnimplementedFunction(ErrorModule::FS);
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cmd_buff[1] = error.raw; // TODO(Link Mauve): use the correct error code for that.
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return error;
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@ -247,12 +235,6 @@ public:
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cmd_buff[1] = 0; // No error
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return MakeResult<bool>(false);
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}
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ResultVal<bool> WaitSynchronization() override {
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// TODO(bunnei): ImplementMe
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ERROR_LOG(OSHLE, "(UNIMPLEMENTED)");
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return UnimplementedFunction(ErrorModule::FS);
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}
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};
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////////////////////////////////////////////////////////////////////////////////////////////////////
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@ -272,11 +254,11 @@ ResultVal<Handle> OpenArchive(FileSys::Archive::IdCode id_code) {
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ResultCode CloseArchive(FileSys::Archive::IdCode id_code) {
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auto itr = g_archive_map.find(id_code);
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if (itr == g_archive_map.end()) {
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ERROR_LOG(KERNEL, "Cannot close archive %d, does not exist!", (int)id_code);
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LOG_ERROR(Service_FS, "Cannot close archive %d, does not exist!", (int)id_code);
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return InvalidHandle(ErrorModule::FS);
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}
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INFO_LOG(KERNEL, "Closed archive %d", (int) id_code);
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LOG_TRACE(Service_FS, "Closed archive %d", (int) id_code);
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return RESULT_SUCCESS;
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}
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@ -288,11 +270,11 @@ ResultCode MountArchive(Archive* archive) {
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FileSys::Archive::IdCode id_code = archive->backend->GetIdCode();
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ResultVal<Handle> archive_handle = OpenArchive(id_code);
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if (archive_handle.Succeeded()) {
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ERROR_LOG(KERNEL, "Cannot mount two archives with the same ID code! (%d)", (int) id_code);
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LOG_ERROR(Service_FS, "Cannot mount two archives with the same ID code! (%d)", (int) id_code);
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return archive_handle.Code();
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}
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g_archive_map[id_code] = archive->GetHandle();
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INFO_LOG(KERNEL, "Mounted archive %s", archive->GetName().c_str());
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LOG_TRACE(Service_FS, "Mounted archive %s", archive->GetName().c_str());
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return RESULT_SUCCESS;
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}
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@ -442,7 +424,7 @@ void ArchiveInit() {
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if (archive->Initialize())
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CreateArchive(archive, "SDMC");
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else
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ERROR_LOG(KERNEL, "Can't instantiate SDMC archive with path %s", sdmc_directory.c_str());
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LOG_ERROR(Service_FS, "Can't instantiate SDMC archive with path %s", sdmc_directory.c_str());
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}
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/// Shutdown archives
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@ -35,7 +35,7 @@ Handle ObjectPool::Create(Object* obj, int range_bottom, int range_top) {
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return i + HANDLE_OFFSET;
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}
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}
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ERROR_LOG(HLE, "Unable to allocate kernel object, too many objects slots in use.");
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LOG_ERROR(Kernel, "Unable to allocate kernel object, too many objects slots in use.");
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return 0;
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}
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@ -62,7 +62,7 @@ void ObjectPool::Clear() {
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Object* &ObjectPool::operator [](Handle handle)
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{
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_dbg_assert_msg_(KERNEL, IsValid(handle), "GRABBING UNALLOCED KERNEL OBJ");
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_dbg_assert_msg_(Kernel, IsValid(handle), "GRABBING UNALLOCED KERNEL OBJ");
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return pool[handle - HANDLE_OFFSET];
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}
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@ -70,7 +70,7 @@ void ObjectPool::List() {
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for (int i = 0; i < MAX_COUNT; i++) {
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if (occupied[i]) {
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if (pool[i]) {
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INFO_LOG(KERNEL, "KO %i: %s \"%s\"", i + HANDLE_OFFSET, pool[i]->GetTypeName().c_str(),
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LOG_DEBUG(Kernel, "KO %i: %s \"%s\"", i + HANDLE_OFFSET, pool[i]->GetTypeName().c_str(),
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pool[i]->GetName().c_str());
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}
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}
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@ -82,7 +82,7 @@ int ObjectPool::GetCount() const {
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}
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Object* ObjectPool::CreateByIDType(int type) {
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ERROR_LOG(COMMON, "Unimplemented: %d.", type);
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LOG_ERROR(Kernel, "Unimplemented: %d.", type);
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return nullptr;
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}
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@ -57,7 +57,7 @@ public:
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* @return True if the current thread should wait as a result of the sync
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*/
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virtual ResultVal<bool> SyncRequest() {
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ERROR_LOG(KERNEL, "(UNIMPLEMENTED)");
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LOG_ERROR(Kernel, "(UNIMPLEMENTED)");
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return UnimplementedFunction(ErrorModule::Kernel);
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}
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@ -65,7 +65,10 @@ public:
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* Wait for kernel object to synchronize.
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* @return True if the current thread should wait as a result of the wait
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*/
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virtual ResultVal<bool> WaitSynchronization() = 0;
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virtual ResultVal<bool> WaitSynchronization() {
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LOG_ERROR(Kernel, "(UNIMPLEMENTED)");
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return UnimplementedFunction(ErrorModule::Kernel);
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}
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};
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class ObjectPool : NonCopyable {
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@ -92,13 +95,13 @@ public:
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T* Get(Handle handle) {
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if (handle < HANDLE_OFFSET || handle >= HANDLE_OFFSET + MAX_COUNT || !occupied[handle - HANDLE_OFFSET]) {
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if (handle != 0) {
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WARN_LOG(KERNEL, "Kernel: Bad object handle %i (%08x)", handle, handle);
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LOG_ERROR(Kernel, "Bad object handle %08x", handle, handle);
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}
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return nullptr;
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} else {
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Object* t = pool[handle - HANDLE_OFFSET];
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if (t->GetHandleType() != T::GetStaticHandleType()) {
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WARN_LOG(KERNEL, "Kernel: Wrong object type for %i (%08x)", handle, handle);
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LOG_ERROR(Kernel, "Wrong object type for %08x", handle, handle);
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return nullptr;
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}
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return static_cast<T*>(t);
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@ -109,7 +112,7 @@ public:
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template <class T>
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T *GetFast(Handle handle) {
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const Handle realHandle = handle - HANDLE_OFFSET;
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_dbg_assert_(KERNEL, realHandle >= 0 && realHandle < MAX_COUNT && occupied[realHandle]);
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_dbg_assert_(Kernel, realHandle >= 0 && realHandle < MAX_COUNT && occupied[realHandle]);
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return static_cast<T*>(pool[realHandle]);
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}
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@ -130,8 +133,8 @@ public:
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bool GetIDType(Handle handle, HandleType* type) const {
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if ((handle < HANDLE_OFFSET) || (handle >= HANDLE_OFFSET + MAX_COUNT) ||
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!occupied[handle - HANDLE_OFFSET]) {
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ERROR_LOG(KERNEL, "Kernel: Bad object handle %i (%08x)", handle, handle);
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!occupied[handle - HANDLE_OFFSET]) {
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LOG_ERROR(Kernel, "Bad object handle %08X", handle, handle);
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return false;
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}
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Object* t = pool[handle - HANDLE_OFFSET];
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@ -16,12 +16,6 @@ public:
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static Kernel::HandleType GetStaticHandleType() { return Kernel::HandleType::SharedMemory; }
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Kernel::HandleType GetHandleType() const override { return Kernel::HandleType::SharedMemory; }
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ResultVal<bool> WaitSynchronization() override {
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// TODO(bunnei): ImplementMe
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ERROR_LOG(OSHLE, "(UNIMPLEMENTED)");
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return UnimplementedFunction(ErrorModule::OS);
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}
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u32 base_address; ///< Address of shared memory block in RAM
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MemoryPermission permissions; ///< Permissions of shared memory block (SVC field)
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MemoryPermission other_permissions; ///< Other permissions of shared memory block (SVC field)
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@ -61,7 +55,7 @@ ResultCode MapSharedMemory(u32 handle, u32 address, MemoryPermission permissions
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MemoryPermission other_permissions) {
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if (address < Memory::SHARED_MEMORY_VADDR || address >= Memory::SHARED_MEMORY_VADDR_END) {
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ERROR_LOG(KERNEL, "cannot map handle=0x%08X, address=0x%08X outside of shared mem bounds!",
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LOG_ERROR(Kernel_SVC, "cannot map handle=0x%08X, address=0x%08X outside of shared mem bounds!",
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handle, address);
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return ResultCode(ErrorDescription::InvalidAddress, ErrorModule::Kernel,
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ErrorSummary::InvalidArgument, ErrorLevel::Permanent);
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@ -83,7 +77,7 @@ ResultVal<u8*> GetSharedMemoryPointer(Handle handle, u32 offset) {
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if (0 != shared_memory->base_address)
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return MakeResult<u8*>(Memory::GetPointer(shared_memory->base_address + offset));
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ERROR_LOG(KERNEL, "memory block handle=0x%08X not mapped!", handle);
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LOG_ERROR(Kernel_SVC, "memory block handle=0x%08X not mapped!", handle);
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// TODO(yuriks): Verify error code.
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return ResultCode(ErrorDescription::InvalidAddress, ErrorModule::Kernel,
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ErrorSummary::InvalidState, ErrorLevel::Permanent);
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|
@ -150,13 +150,13 @@ void ChangeReadyState(Thread* t, bool ready) {
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/// Verify that a thread has not been released from waiting
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static bool VerifyWait(const Thread* thread, WaitType type, Handle wait_handle) {
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_dbg_assert_(KERNEL, thread != nullptr);
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_dbg_assert_(Kernel, thread != nullptr);
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return (type == thread->wait_type) && (wait_handle == thread->wait_handle) && (thread->IsWaiting());
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}
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/// Verify that a thread has not been released from waiting (with wait address)
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static bool VerifyWait(const Thread* thread, WaitType type, Handle wait_handle, VAddr wait_address) {
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_dbg_assert_(KERNEL, thread != nullptr);
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_dbg_assert_(Kernel, thread != nullptr);
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return VerifyWait(thread, type, wait_handle) && (wait_address == thread->wait_address);
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}
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@ -196,7 +196,7 @@ void ChangeThreadState(Thread* t, ThreadStatus new_status) {
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if (new_status == THREADSTATUS_WAIT) {
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if (t->wait_type == WAITTYPE_NONE) {
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ERROR_LOG(KERNEL, "Waittype none not allowed");
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LOG_ERROR(Kernel, "Waittype none not allowed");
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}
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}
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}
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@ -318,12 +318,12 @@ void DebugThreadQueue() {
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if (!thread) {
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return;
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}
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INFO_LOG(KERNEL, "0x%02X 0x%08X (current)", thread->current_priority, GetCurrentThreadHandle());
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LOG_DEBUG(Kernel, "0x%02X 0x%08X (current)", thread->current_priority, GetCurrentThreadHandle());
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for (u32 i = 0; i < thread_queue.size(); i++) {
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Handle handle = thread_queue[i];
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s32 priority = thread_ready_queue.contains(handle);
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if (priority != -1) {
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INFO_LOG(KERNEL, "0x%02X 0x%08X", priority, handle);
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LOG_DEBUG(Kernel, "0x%02X 0x%08X", priority, handle);
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}
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}
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}
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@ -333,7 +333,7 @@ Thread* CreateThread(Handle& handle, const char* name, u32 entry_point, s32 prio
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s32 processor_id, u32 stack_top, int stack_size) {
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_assert_msg_(KERNEL, (priority >= THREADPRIO_HIGHEST && priority <= THREADPRIO_LOWEST),
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"CreateThread priority=%d, outside of allowable range!", priority)
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"priority=%d, outside of allowable range!", priority)
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Thread* thread = new Thread;
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@ -362,24 +362,24 @@ Handle CreateThread(const char* name, u32 entry_point, s32 priority, u32 arg, s3
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u32 stack_top, int stack_size) {
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if (name == nullptr) {
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ERROR_LOG(KERNEL, "CreateThread(): nullptr name");
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LOG_ERROR(Kernel_SVC, "nullptr name");
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return -1;
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}
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if ((u32)stack_size < 0x200) {
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ERROR_LOG(KERNEL, "CreateThread(name=%s): invalid stack_size=0x%08X", name,
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LOG_ERROR(Kernel_SVC, "(name=%s): invalid stack_size=0x%08X", name,
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stack_size);
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return -1;
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}
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if (priority < THREADPRIO_HIGHEST || priority > THREADPRIO_LOWEST) {
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s32 new_priority = CLAMP(priority, THREADPRIO_HIGHEST, THREADPRIO_LOWEST);
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WARN_LOG(KERNEL, "CreateThread(name=%s): invalid priority=0x%08X, clamping to %08X",
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LOG_WARNING(Kernel_SVC, "(name=%s): invalid priority=%d, clamping to %d",
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name, priority, new_priority);
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// TODO(bunnei): Clamping to a valid priority is not necessarily correct behavior... Confirm
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// validity of this
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priority = new_priority;
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}
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if (!Memory::GetPointer(entry_point)) {
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ERROR_LOG(KERNEL, "CreateThread(name=%s): invalid entry %08x", name, entry_point);
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LOG_ERROR(Kernel_SVC, "(name=%s): invalid entry %08x", name, entry_point);
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return -1;
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}
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Handle handle;
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@ -416,7 +416,7 @@ ResultCode SetThreadPriority(Handle handle, s32 priority) {
|
||||
// If priority is invalid, clamp to valid range
|
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if (priority < THREADPRIO_HIGHEST || priority > THREADPRIO_LOWEST) {
|
||||
s32 new_priority = CLAMP(priority, THREADPRIO_HIGHEST, THREADPRIO_LOWEST);
|
||||
WARN_LOG(KERNEL, "invalid priority=0x%08X, clamping to %08X", priority, new_priority);
|
||||
LOG_WARNING(Kernel_SVC, "invalid priority=%d, clamping to %d", priority, new_priority);
|
||||
// TODO(bunnei): Clamping to a valid priority is not necessarily correct behavior... Confirm
|
||||
// validity of this
|
||||
priority = new_priority;
|
||||
@ -470,7 +470,7 @@ void Reschedule() {
|
||||
Thread* next = NextThread();
|
||||
HLE::g_reschedule = false;
|
||||
if (next > 0) {
|
||||
INFO_LOG(KERNEL, "context switch 0x%08X -> 0x%08X", prev->GetHandle(), next->GetHandle());
|
||||
LOG_TRACE(Kernel, "context switch 0x%08X -> 0x%08X", prev->GetHandle(), next->GetHandle());
|
||||
|
||||
SwitchContext(next);
|
||||
|
||||
|
Reference in New Issue
Block a user