mirror of
https://github.com/Atmosphere-NX/Atmosphere
synced 2024-11-14 00:56:35 +00:00
170 lines
7.4 KiB
C++
170 lines
7.4 KiB
C++
/*
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* Copyright (c) Atmosphère-NX
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms and conditions of the GNU General Public License,
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* version 2, as published by the Free Software Foundation.
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*
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* This program is distributed in the hope it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
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* more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#pragma once
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#include <stratosphere/fs/fs_common.hpp>
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#include <stratosphere/fs/impl/fs_newable.hpp>
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#include <stratosphere/fs/fsa/fs_ifile.hpp>
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#include <stratosphere/fs/fsa/fs_idirectory.hpp>
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#include <stratosphere/fs/fsa/fs_ifilesystem.hpp>
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namespace ams::fs {
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namespace {
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class ReadOnlyFile : public fsa::IFile, public impl::Newable {
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NON_COPYABLE(ReadOnlyFile);
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NON_MOVEABLE(ReadOnlyFile);
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private:
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std::unique_ptr<fsa::IFile> m_base_file;
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public:
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explicit ReadOnlyFile(std::unique_ptr<fsa::IFile> &&f) : m_base_file(std::move(f)) { /* ... */ }
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virtual ~ReadOnlyFile() { /* ... */ }
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private:
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virtual Result DoRead(size_t *out, s64 offset, void *buffer, size_t size, const fs::ReadOption &option) override final {
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return m_base_file->Read(out, offset, buffer, size, option);
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}
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virtual Result DoGetSize(s64 *out) override final {
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return m_base_file->GetSize(out);
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}
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virtual Result DoFlush() override final {
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return ResultSuccess();
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}
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virtual Result DoWrite(s64 offset, const void *buffer, size_t size, const fs::WriteOption &option) override final {
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AMS_UNUSED(offset, buffer, size, option);
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return fs::ResultUnsupportedOperationInReadOnlyFileA();
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}
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virtual Result DoSetSize(s64 size) override final {
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AMS_UNUSED(size);
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return fs::ResultUnsupportedOperationInReadOnlyFileA();
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}
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virtual Result DoOperateRange(void *dst, size_t dst_size, fs::OperationId op_id, s64 offset, s64 size, const void *src, size_t src_size) override final {
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switch (op_id) {
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case OperationId::Invalidate:
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case OperationId::QueryRange:
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return m_base_file->OperateRange(dst, dst_size, op_id, offset, size, src, src_size);
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default:
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return fs::ResultUnsupportedOperationInReadOnlyFileB();
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}
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}
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public:
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virtual sf::cmif::DomainObjectId GetDomainObjectId() const override {
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return m_base_file->GetDomainObjectId();
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}
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};
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}
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template<typename T>
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class ReadOnlyFileSystemTemplate : public fsa::IFileSystem, public impl::Newable {
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NON_COPYABLE(ReadOnlyFileSystemTemplate);
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NON_MOVEABLE(ReadOnlyFileSystemTemplate);
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private:
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T m_base_fs;
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public:
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explicit ReadOnlyFileSystemTemplate(T &&fs) : m_base_fs(std::move(fs)) { /* ... */ }
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virtual ~ReadOnlyFileSystemTemplate() { /* ... */ }
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private:
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virtual Result DoOpenFile(std::unique_ptr<fsa::IFile> *out_file, const char *path, OpenMode mode) override final {
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/* Only allow opening files with mode = read. */
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R_UNLESS((mode & fs::OpenMode_All) == fs::OpenMode_Read, fs::ResultInvalidOpenMode());
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std::unique_ptr<fsa::IFile> base_file;
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R_TRY(m_base_fs->OpenFile(std::addressof(base_file), path, mode));
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auto read_only_file = std::make_unique<ReadOnlyFile>(std::move(base_file));
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R_UNLESS(read_only_file != nullptr, fs::ResultAllocationFailureInReadOnlyFileSystemA());
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*out_file = std::move(read_only_file);
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return ResultSuccess();
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}
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virtual Result DoOpenDirectory(std::unique_ptr<fsa::IDirectory> *out_dir, const char *path, OpenDirectoryMode mode) override final {
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return m_base_fs->OpenDirectory(out_dir, path, mode);
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}
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virtual Result DoGetEntryType(DirectoryEntryType *out, const char *path) override final {
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return m_base_fs->GetEntryType(out, path);
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}
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virtual Result DoCommit() override final {
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return ResultSuccess();
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}
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virtual Result DoCreateFile(const char *path, s64 size, int flags) override final {
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AMS_UNUSED(path, size, flags);
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return fs::ResultUnsupportedOperationInReadOnlyFileSystemTemplateA();
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}
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virtual Result DoDeleteFile(const char *path) override final {
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AMS_UNUSED(path);
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return fs::ResultUnsupportedOperationInReadOnlyFileSystemTemplateA();
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}
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virtual Result DoCreateDirectory(const char *path) override final {
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AMS_UNUSED(path);
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return fs::ResultUnsupportedOperationInReadOnlyFileSystemTemplateA();
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}
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virtual Result DoDeleteDirectory(const char *path) override final {
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AMS_UNUSED(path);
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return fs::ResultUnsupportedOperationInReadOnlyFileSystemTemplateA();
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}
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virtual Result DoDeleteDirectoryRecursively(const char *path) override final {
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AMS_UNUSED(path);
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return fs::ResultUnsupportedOperationInReadOnlyFileSystemTemplateA();
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}
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virtual Result DoRenameFile(const char *old_path, const char *new_path) override final {
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AMS_UNUSED(old_path, new_path);
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return fs::ResultUnsupportedOperationInReadOnlyFileSystemTemplateA();
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}
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virtual Result DoRenameDirectory(const char *old_path, const char *new_path) override final {
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AMS_UNUSED(old_path, new_path);
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return fs::ResultUnsupportedOperationInReadOnlyFileSystemTemplateA();
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}
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virtual Result DoCleanDirectoryRecursively(const char *path) override final {
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AMS_UNUSED(path);
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return fs::ResultUnsupportedOperationInReadOnlyFileSystemTemplateA();
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}
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virtual Result DoGetFreeSpaceSize(s64 *out, const char *path) override final {
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AMS_UNUSED(out, path);
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return fs::ResultUnsupportedOperationInReadOnlyFileSystemTemplateB();
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}
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virtual Result DoGetTotalSpaceSize(s64 *out, const char *path) override final {
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AMS_UNUSED(out, path);
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return fs::ResultUnsupportedOperationInReadOnlyFileSystemTemplateB();
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}
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virtual Result DoCommitProvisionally(s64 counter) override final {
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AMS_UNUSED(counter);
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return fs::ResultUnsupportedOperationInReadOnlyFileSystemTemplateC();
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}
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};
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using ReadOnlyFileSystem = ReadOnlyFileSystemTemplate<std::unique_ptr<::ams::fs::fsa::IFileSystem>>;
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using ReadOnlyFileSystemShared = ReadOnlyFileSystemTemplate<std::shared_ptr<::ams::fs::fsa::IFileSystem>>;
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}
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