a1f08788d9
Buffer lengths should be size_t, and file offsets should be u64.
548 lines
21 KiB
C++
548 lines
21 KiB
C++
// Copyright 2014 Citra Emulator Project
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// Licensed under GPLv2 or any later version
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// Refer to the license.txt file included.
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#include <cstddef>
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#include <system_error>
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#include <type_traits>
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#include <memory>
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#include <unordered_map>
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#include <utility>
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#include <boost/container/flat_map.hpp>
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#include "common/assert.h"
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#include "common/common_types.h"
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#include "common/file_util.h"
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#include "common/logging/log.h"
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#include "common/make_unique.h"
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#include "core/file_sys/archive_backend.h"
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#include "core/file_sys/archive_extsavedata.h"
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#include "core/file_sys/archive_savedata.h"
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#include "core/file_sys/archive_savedatacheck.h"
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#include "core/file_sys/archive_sdmc.h"
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#include "core/file_sys/archive_systemsavedata.h"
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#include "core/file_sys/directory_backend.h"
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#include "core/file_sys/file_backend.h"
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#include "core/hle/hle.h"
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#include "core/hle/service/service.h"
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#include "core/hle/service/fs/archive.h"
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#include "core/hle/service/fs/fs_user.h"
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#include "core/hle/result.h"
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#include "core/memory.h"
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// Specializes std::hash for ArchiveIdCode, so that we can use it in std::unordered_map.
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// Workaroung for libstdc++ bug: https://gcc.gnu.org/bugzilla/show_bug.cgi?id=60970
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namespace std {
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template <>
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struct hash<Service::FS::ArchiveIdCode> {
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typedef Service::FS::ArchiveIdCode argument_type;
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typedef std::size_t result_type;
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result_type operator()(const argument_type& id_code) const {
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typedef std::underlying_type<argument_type>::type Type;
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return std::hash<Type>()(static_cast<Type>(id_code));
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}
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};
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}
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/// TODO(Subv): Confirm length of these strings
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const std::string SYSTEM_ID = "00000000000000000000000000000000";
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const std::string SDCARD_ID = "00000000000000000000000000000000";
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namespace Service {
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namespace FS {
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// TODO: Verify code
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/// Returned when a function is passed an invalid handle.
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const ResultCode ERR_INVALID_HANDLE(ErrorDescription::InvalidHandle, ErrorModule::FS,
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ErrorSummary::InvalidArgument, ErrorLevel::Permanent);
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// Command to access archive file
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enum class FileCommand : u32 {
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Dummy1 = 0x000100C6,
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Control = 0x040100C4,
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OpenSubFile = 0x08010100,
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Read = 0x080200C2,
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Write = 0x08030102,
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GetSize = 0x08040000,
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SetSize = 0x08050080,
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GetAttributes = 0x08060000,
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SetAttributes = 0x08070040,
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Close = 0x08080000,
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Flush = 0x08090000,
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SetPriority = 0x080A0040,
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GetPriority = 0x080B0000,
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OpenLinkFile = 0x080C0000,
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};
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// Command to access directory
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enum class DirectoryCommand : u32 {
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Dummy1 = 0x000100C6,
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Control = 0x040100C4,
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Read = 0x08010042,
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Close = 0x08020000,
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};
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File::File(std::unique_ptr<FileSys::FileBackend>&& backend, const FileSys::Path & path)
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: path(path), priority(0), backend(std::move(backend)) {}
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File::~File() {}
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ResultVal<bool> File::SyncRequest() {
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u32* cmd_buff = Kernel::GetCommandBuffer();
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FileCommand cmd = static_cast<FileCommand>(cmd_buff[0]);
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switch (cmd) {
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// Read from file...
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case FileCommand::Read:
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{
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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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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] = static_cast<u32>(backend->Read(offset, length, Memory::GetPointer(address)));
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break;
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}
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// Write to file...
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case FileCommand::Write:
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{
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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 flush = cmd_buff[4];
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u32 address = cmd_buff[6];
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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] = static_cast<u32>(backend->Write(offset, length, flush != 0, Memory::GetPointer(address)));
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break;
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}
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case FileCommand::GetSize:
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{
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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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break;
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}
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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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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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}
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case FileCommand::Close:
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{
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LOG_TRACE(Service_FS, "Close %s %s", GetTypeName().c_str(), GetName().c_str());
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backend->Close();
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break;
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}
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case FileCommand::Flush:
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{
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LOG_TRACE(Service_FS, "Flush");
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backend->Flush();
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break;
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}
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case FileCommand::OpenLinkFile:
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{
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LOG_WARNING(Service_FS, "(STUBBED) File command OpenLinkFile %s", GetName().c_str());
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cmd_buff[3] = Kernel::g_handle_table.Create(this).ValueOr(INVALID_HANDLE);
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break;
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}
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case FileCommand::SetPriority:
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{
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priority = cmd_buff[1];
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LOG_TRACE(Service_FS, "SetPriority %u", priority);
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break;
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}
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case FileCommand::GetPriority:
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{
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cmd_buff[2] = priority;
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LOG_TRACE(Service_FS, "GetPriority");
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break;
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}
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// Unknown command...
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default:
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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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}
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cmd_buff[1] = RESULT_SUCCESS.raw; // No error
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return MakeResult<bool>(false);
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}
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Directory::Directory(std::unique_ptr<FileSys::DirectoryBackend>&& backend, const FileSys::Path & path)
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: path(path), backend(std::move(backend)) {}
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Directory::~Directory() {}
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ResultVal<bool> Directory::SyncRequest() {
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u32* cmd_buff = Kernel::GetCommandBuffer();
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DirectoryCommand cmd = static_cast<DirectoryCommand>(cmd_buff[0]);
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switch (cmd) {
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// Read from directory...
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case DirectoryCommand::Read:
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{
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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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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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cmd_buff[2] = backend->Read(count, entries);
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break;
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}
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case DirectoryCommand::Close:
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{
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LOG_TRACE(Service_FS, "Close %s %s", GetTypeName().c_str(), GetName().c_str());
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backend->Close();
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break;
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}
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// Unknown command...
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default:
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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 MakeResult<bool>(false);
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}
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cmd_buff[1] = RESULT_SUCCESS.raw; // No error
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return MakeResult<bool>(false);
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}
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////////////////////////////////////////////////////////////////////////////////////////////////////
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using FileSys::ArchiveBackend;
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using FileSys::ArchiveFactory;
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/**
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* Map of registered archives, identified by id code. Once an archive is registered here, it is
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* never removed until the FS service is shut down.
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*/
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static boost::container::flat_map<ArchiveIdCode, std::unique_ptr<ArchiveFactory>> id_code_map;
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/**
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* Map of active archive handles. Values are pointers to the archives in `idcode_map`.
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*/
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static std::unordered_map<ArchiveHandle, std::unique_ptr<ArchiveBackend>> handle_map;
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static ArchiveHandle next_handle;
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static ArchiveBackend* GetArchive(ArchiveHandle handle) {
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auto itr = handle_map.find(handle);
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return (itr == handle_map.end()) ? nullptr : itr->second.get();
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}
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ResultVal<ArchiveHandle> OpenArchive(ArchiveIdCode id_code, FileSys::Path& archive_path) {
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LOG_TRACE(Service_FS, "Opening archive with id code 0x%08X", id_code);
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auto itr = id_code_map.find(id_code);
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if (itr == id_code_map.end()) {
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// TODO: Verify error against hardware
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return ResultCode(ErrorDescription::NotFound, ErrorModule::FS,
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ErrorSummary::NotFound, ErrorLevel::Permanent);
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}
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CASCADE_RESULT(std::unique_ptr<ArchiveBackend> res, itr->second->Open(archive_path));
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// This should never even happen in the first place with 64-bit handles,
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while (handle_map.count(next_handle) != 0) {
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++next_handle;
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}
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handle_map.emplace(next_handle, std::move(res));
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return MakeResult<ArchiveHandle>(next_handle++);
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}
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ResultCode CloseArchive(ArchiveHandle handle) {
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if (handle_map.erase(handle) == 0)
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return ERR_INVALID_HANDLE;
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else
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return RESULT_SUCCESS;
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}
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// TODO(yuriks): This might be what the fs:REG service is for. See the Register/Unregister calls in
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// http://3dbrew.org/wiki/Filesystem_services#ProgramRegistry_service_.22fs:REG.22
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ResultCode RegisterArchiveType(std::unique_ptr<FileSys::ArchiveFactory>&& factory, ArchiveIdCode id_code) {
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auto result = id_code_map.emplace(id_code, std::move(factory));
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bool inserted = result.second;
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ASSERT_MSG(inserted, "Tried to register more than one archive with same id code");
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auto& archive = result.first->second;
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LOG_DEBUG(Service_FS, "Registered archive %s with id code 0x%08X", archive->GetName().c_str(), id_code);
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return RESULT_SUCCESS;
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}
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ResultVal<Kernel::SharedPtr<File>> OpenFileFromArchive(ArchiveHandle archive_handle,
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const FileSys::Path& path, const FileSys::Mode mode) {
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ArchiveBackend* archive = GetArchive(archive_handle);
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if (archive == nullptr)
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return ERR_INVALID_HANDLE;
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std::unique_ptr<FileSys::FileBackend> backend = archive->OpenFile(path, mode);
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if (backend == nullptr) {
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return ResultCode(ErrorDescription::FS_NotFound, ErrorModule::FS,
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ErrorSummary::NotFound, ErrorLevel::Status);
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}
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auto file = Kernel::SharedPtr<File>(new File(std::move(backend), path));
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return MakeResult<Kernel::SharedPtr<File>>(std::move(file));
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}
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ResultCode DeleteFileFromArchive(ArchiveHandle archive_handle, const FileSys::Path& path) {
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ArchiveBackend* archive = GetArchive(archive_handle);
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if (archive == nullptr)
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return ERR_INVALID_HANDLE;
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if (archive->DeleteFile(path))
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return RESULT_SUCCESS;
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return ResultCode(ErrorDescription::NoData, ErrorModule::FS, // TODO: verify description
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ErrorSummary::Canceled, ErrorLevel::Status);
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}
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ResultCode RenameFileBetweenArchives(ArchiveHandle src_archive_handle, const FileSys::Path& src_path,
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ArchiveHandle dest_archive_handle, const FileSys::Path& dest_path) {
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ArchiveBackend* src_archive = GetArchive(src_archive_handle);
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ArchiveBackend* dest_archive = GetArchive(dest_archive_handle);
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if (src_archive == nullptr || dest_archive == nullptr)
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return ERR_INVALID_HANDLE;
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if (src_archive == dest_archive) {
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if (src_archive->RenameFile(src_path, dest_path))
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return RESULT_SUCCESS;
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} else {
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// TODO: Implement renaming across archives
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return UnimplementedFunction(ErrorModule::FS);
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}
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// TODO(yuriks): This code probably isn't right, it'll return a Status even if the file didn't
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// exist or similar. Verify.
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return ResultCode(ErrorDescription::NoData, ErrorModule::FS, // TODO: verify description
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ErrorSummary::NothingHappened, ErrorLevel::Status);
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}
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ResultCode DeleteDirectoryFromArchive(ArchiveHandle archive_handle, const FileSys::Path& path) {
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ArchiveBackend* archive = GetArchive(archive_handle);
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if (archive == nullptr)
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return ERR_INVALID_HANDLE;
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if (archive->DeleteDirectory(path))
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return RESULT_SUCCESS;
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return ResultCode(ErrorDescription::NoData, ErrorModule::FS, // TODO: verify description
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ErrorSummary::Canceled, ErrorLevel::Status);
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}
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ResultCode CreateFileInArchive(ArchiveHandle archive_handle, const FileSys::Path& path, u32 file_size) {
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ArchiveBackend* archive = GetArchive(archive_handle);
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if (archive == nullptr)
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return ERR_INVALID_HANDLE;
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return archive->CreateFile(path, file_size);
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}
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ResultCode CreateDirectoryFromArchive(ArchiveHandle archive_handle, const FileSys::Path& path) {
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ArchiveBackend* archive = GetArchive(archive_handle);
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if (archive == nullptr)
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return ERR_INVALID_HANDLE;
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if (archive->CreateDirectory(path))
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return RESULT_SUCCESS;
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return ResultCode(ErrorDescription::NoData, ErrorModule::FS, // TODO: verify description
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ErrorSummary::Canceled, ErrorLevel::Status);
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}
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ResultCode RenameDirectoryBetweenArchives(ArchiveHandle src_archive_handle, const FileSys::Path& src_path,
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ArchiveHandle dest_archive_handle, const FileSys::Path& dest_path) {
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ArchiveBackend* src_archive = GetArchive(src_archive_handle);
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ArchiveBackend* dest_archive = GetArchive(dest_archive_handle);
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if (src_archive == nullptr || dest_archive == nullptr)
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return ERR_INVALID_HANDLE;
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if (src_archive == dest_archive) {
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if (src_archive->RenameDirectory(src_path, dest_path))
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return RESULT_SUCCESS;
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} else {
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// TODO: Implement renaming across archives
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return UnimplementedFunction(ErrorModule::FS);
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}
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// TODO(yuriks): This code probably isn't right, it'll return a Status even if the file didn't
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// exist or similar. Verify.
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return ResultCode(ErrorDescription::NoData, ErrorModule::FS, // TODO: verify description
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ErrorSummary::NothingHappened, ErrorLevel::Status);
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}
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ResultVal<Kernel::SharedPtr<Directory>> OpenDirectoryFromArchive(ArchiveHandle archive_handle,
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const FileSys::Path& path) {
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ArchiveBackend* archive = GetArchive(archive_handle);
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if (archive == nullptr)
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return ERR_INVALID_HANDLE;
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std::unique_ptr<FileSys::DirectoryBackend> backend = archive->OpenDirectory(path);
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if (backend == nullptr) {
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return ResultCode(ErrorDescription::NotFound, ErrorModule::FS,
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ErrorSummary::NotFound, ErrorLevel::Permanent);
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}
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auto directory = Kernel::SharedPtr<Directory>(new Directory(std::move(backend), path));
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return MakeResult<Kernel::SharedPtr<Directory>>(std::move(directory));
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}
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ResultCode FormatArchive(ArchiveIdCode id_code, const FileSys::Path& path) {
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auto archive_itr = id_code_map.find(id_code);
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if (archive_itr == id_code_map.end()) {
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return UnimplementedFunction(ErrorModule::FS); // TODO(Subv): Find the right error
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}
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return archive_itr->second->Format(path);
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}
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ResultCode CreateExtSaveData(MediaType media_type, u32 high, u32 low, VAddr icon_buffer, u32 icon_size) {
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// Construct the binary path to the archive first
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FileSys::Path path = FileSys::ConstructExtDataBinaryPath(static_cast<u32>(media_type), high, low);
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std::string media_type_directory;
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if (media_type == MediaType::NAND) {
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media_type_directory = FileUtil::GetUserPath(D_NAND_IDX);
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} else if (media_type == MediaType::SDMC) {
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media_type_directory = FileUtil::GetUserPath(D_SDMC_IDX);
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} else {
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LOG_ERROR(Service_FS, "Unsupported media type %u", media_type);
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return ResultCode(-1); // TODO(Subv): Find the right error code
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}
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std::string base_path = FileSys::GetExtDataContainerPath(media_type_directory, media_type == MediaType::NAND);
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std::string game_path = FileSys::GetExtSaveDataPath(base_path, path);
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// These two folders are always created with the ExtSaveData
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std::string user_path = game_path + "user/";
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std::string boss_path = game_path + "boss/";
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if (!FileUtil::CreateFullPath(user_path))
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return ResultCode(-1); // TODO(Subv): Find the right error code
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if (!FileUtil::CreateFullPath(boss_path))
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return ResultCode(-1); // TODO(Subv): Find the right error code
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u8* smdh_icon = Memory::GetPointer(icon_buffer);
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if (!smdh_icon)
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return ResultCode(-1); // TODO(Subv): Find the right error code
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// Create the icon
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FileUtil::IOFile icon_file(game_path + "icon", "wb+");
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if (!icon_file.IsGood())
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return ResultCode(-1); // TODO(Subv): Find the right error code
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icon_file.WriteBytes(smdh_icon, icon_size);
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return RESULT_SUCCESS;
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}
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ResultCode DeleteExtSaveData(MediaType media_type, u32 high, u32 low) {
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// Construct the binary path to the archive first
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FileSys::Path path = FileSys::ConstructExtDataBinaryPath(static_cast<u32>(media_type), high, low);
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std::string media_type_directory;
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if (media_type == MediaType::NAND) {
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media_type_directory = FileUtil::GetUserPath(D_NAND_IDX);
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} else if (media_type == MediaType::SDMC) {
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media_type_directory = FileUtil::GetUserPath(D_SDMC_IDX);
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} else {
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LOG_ERROR(Service_FS, "Unsupported media type %u", media_type);
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return ResultCode(-1); // TODO(Subv): Find the right error code
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}
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// Delete all directories (/user, /boss) and the icon file.
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std::string base_path = FileSys::GetExtDataContainerPath(media_type_directory, media_type == MediaType::NAND);
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std::string extsavedata_path = FileSys::GetExtSaveDataPath(base_path, path);
|
|
if (!FileUtil::DeleteDirRecursively(extsavedata_path))
|
|
return ResultCode(-1); // TODO(Subv): Find the right error code
|
|
return RESULT_SUCCESS;
|
|
}
|
|
|
|
ResultCode DeleteSystemSaveData(u32 high, u32 low) {
|
|
// Construct the binary path to the archive first
|
|
FileSys::Path path = FileSys::ConstructSystemSaveDataBinaryPath(high, low);
|
|
|
|
std::string nand_directory = FileUtil::GetUserPath(D_NAND_IDX);
|
|
std::string base_path = FileSys::GetSystemSaveDataContainerPath(nand_directory);
|
|
std::string systemsavedata_path = FileSys::GetSystemSaveDataPath(base_path, path);
|
|
if (!FileUtil::DeleteDirRecursively(systemsavedata_path))
|
|
return ResultCode(-1); // TODO(Subv): Find the right error code
|
|
return RESULT_SUCCESS;
|
|
}
|
|
|
|
ResultCode CreateSystemSaveData(u32 high, u32 low) {
|
|
// Construct the binary path to the archive first
|
|
FileSys::Path path = FileSys::ConstructSystemSaveDataBinaryPath(high, low);
|
|
|
|
std::string nand_directory = FileUtil::GetUserPath(D_NAND_IDX);
|
|
std::string base_path = FileSys::GetSystemSaveDataContainerPath(nand_directory);
|
|
std::string systemsavedata_path = FileSys::GetSystemSaveDataPath(base_path, path);
|
|
if (!FileUtil::CreateFullPath(systemsavedata_path))
|
|
return ResultCode(-1); // TODO(Subv): Find the right error code
|
|
return RESULT_SUCCESS;
|
|
}
|
|
|
|
/// Initialize archives
|
|
void ArchiveInit() {
|
|
next_handle = 1;
|
|
|
|
AddService(new FS::Interface);
|
|
|
|
// TODO(Subv): Add the other archive types (see here for the known types:
|
|
// http://3dbrew.org/wiki/FS:OpenArchive#Archive_idcodes).
|
|
|
|
std::string sdmc_directory = FileUtil::GetUserPath(D_SDMC_IDX);
|
|
std::string nand_directory = FileUtil::GetUserPath(D_NAND_IDX);
|
|
auto sdmc_factory = Common::make_unique<FileSys::ArchiveFactory_SDMC>(sdmc_directory);
|
|
if (sdmc_factory->Initialize())
|
|
RegisterArchiveType(std::move(sdmc_factory), ArchiveIdCode::SDMC);
|
|
else
|
|
LOG_ERROR(Service_FS, "Can't instantiate SDMC archive with path %s", sdmc_directory.c_str());
|
|
|
|
// Create the SaveData archive
|
|
auto savedata_factory = Common::make_unique<FileSys::ArchiveFactory_SaveData>(sdmc_directory);
|
|
RegisterArchiveType(std::move(savedata_factory), ArchiveIdCode::SaveData);
|
|
|
|
auto extsavedata_factory = Common::make_unique<FileSys::ArchiveFactory_ExtSaveData>(sdmc_directory, false);
|
|
if (extsavedata_factory->Initialize())
|
|
RegisterArchiveType(std::move(extsavedata_factory), ArchiveIdCode::ExtSaveData);
|
|
else
|
|
LOG_ERROR(Service_FS, "Can't instantiate ExtSaveData archive with path %s", extsavedata_factory->GetMountPoint().c_str());
|
|
|
|
auto sharedextsavedata_factory = Common::make_unique<FileSys::ArchiveFactory_ExtSaveData>(nand_directory, true);
|
|
if (sharedextsavedata_factory->Initialize())
|
|
RegisterArchiveType(std::move(sharedextsavedata_factory), ArchiveIdCode::SharedExtSaveData);
|
|
else
|
|
LOG_ERROR(Service_FS, "Can't instantiate SharedExtSaveData archive with path %s",
|
|
sharedextsavedata_factory->GetMountPoint().c_str());
|
|
|
|
// Create the SaveDataCheck archive, basically a small variation of the RomFS archive
|
|
auto savedatacheck_factory = Common::make_unique<FileSys::ArchiveFactory_SaveDataCheck>(nand_directory);
|
|
RegisterArchiveType(std::move(savedatacheck_factory), ArchiveIdCode::SaveDataCheck);
|
|
|
|
auto systemsavedata_factory = Common::make_unique<FileSys::ArchiveFactory_SystemSaveData>(nand_directory);
|
|
RegisterArchiveType(std::move(systemsavedata_factory), ArchiveIdCode::SystemSaveData);
|
|
}
|
|
|
|
/// Shutdown archives
|
|
void ArchiveShutdown() {
|
|
handle_map.clear();
|
|
id_code_map.clear();
|
|
}
|
|
|
|
} // namespace FS
|
|
} // namespace Service
|