ladybird/Kernel/FileSystem/OpenFileDescription.h
kleines Filmröllchen a6a439243f Kernel: Turn lock ranks into template parameters
This step would ideally not have been necessary (increases amount of
refactoring and templates necessary, which in turn increases build
times), but it gives us a couple of nice properties:
- SpinlockProtected inside Singleton (a very common combination) can now
  obtain any lock rank just via the template parameter. It was not
  previously possible to do this with SingletonInstanceCreator magic.
- SpinlockProtected's lock rank is now mandatory; this is the majority
  of cases and allows us to see where we're still missing proper ranks.
- The type already informs us what lock rank a lock has, which aids code
  readability and (possibly, if gdb cooperates) lock mismatch debugging.
- The rank of a lock can no longer be dynamic, which is not something we
  wanted in the first place (or made use of). Locks randomly changing
  their rank sounds like a disaster waiting to happen.
- In some places, we might be able to statically check that locks are
  taken in the right order (with the right lock rank checking
  implementation) as rank information is fully statically known.

This refactoring even more exposes the fact that Mutex has no lock rank
capabilites, which is not fixed here.
2023-01-02 18:15:27 -05:00

163 lines
4.5 KiB
C++

/*
* Copyright (c) 2018-2022, Andreas Kling <kling@serenityos.org>
*
* SPDX-License-Identifier: BSD-2-Clause
*/
#pragma once
#include <AK/AtomicRefCounted.h>
#include <AK/Badge.h>
#include <AK/RefPtr.h>
#include <Kernel/FileSystem/Custody.h>
#include <Kernel/FileSystem/FIFO.h>
#include <Kernel/FileSystem/Inode.h>
#include <Kernel/FileSystem/InodeMetadata.h>
#include <Kernel/Forward.h>
#include <Kernel/KBuffer.h>
#include <Kernel/VirtualAddress.h>
namespace Kernel {
class OpenFileDescriptionData {
public:
virtual ~OpenFileDescriptionData() = default;
};
class OpenFileDescription final : public AtomicRefCounted<OpenFileDescription> {
public:
static ErrorOr<NonnullLockRefPtr<OpenFileDescription>> try_create(Custody&);
static ErrorOr<NonnullLockRefPtr<OpenFileDescription>> try_create(File&);
~OpenFileDescription();
Thread::FileBlocker::BlockFlags should_unblock(Thread::FileBlocker::BlockFlags) const;
bool is_readable() const;
void set_readable(bool);
bool is_writable() const;
void set_writable(bool);
void set_rw_mode(int options);
ErrorOr<void> close();
ErrorOr<off_t> seek(off_t, int whence);
ErrorOr<size_t> read(UserOrKernelBuffer&, size_t);
ErrorOr<size_t> write(UserOrKernelBuffer const& data, size_t);
ErrorOr<struct stat> stat();
// NOTE: These ignore the current offset of this file description.
ErrorOr<size_t> read(UserOrKernelBuffer&, u64 offset, size_t);
ErrorOr<size_t> write(u64 offset, UserOrKernelBuffer const&, size_t);
ErrorOr<void> chmod(Credentials const& credentials, mode_t);
bool can_read() const;
bool can_write() const;
ErrorOr<size_t> get_dir_entries(UserOrKernelBuffer& buffer, size_t);
ErrorOr<NonnullOwnPtr<KBuffer>> read_entire_file();
ErrorOr<NonnullOwnPtr<KString>> original_absolute_path() const;
ErrorOr<NonnullOwnPtr<KString>> pseudo_path() const;
bool is_direct() const;
bool is_directory() const;
File& file() { return *m_file; }
File const& file() const { return *m_file; }
bool is_device() const;
Device const* device() const;
Device* device();
bool is_tty() const;
const TTY* tty() const;
TTY* tty();
bool is_inode_watcher() const;
InodeWatcher const* inode_watcher() const;
InodeWatcher* inode_watcher();
bool is_master_pty() const;
MasterPTY const* master_pty() const;
MasterPTY* master_pty();
InodeMetadata metadata() const;
Inode* inode() { return m_inode.ptr(); }
Inode const* inode() const { return m_inode.ptr(); }
RefPtr<Custody> custody();
RefPtr<Custody const> custody() const;
ErrorOr<NonnullLockRefPtr<Memory::VMObject>> vmobject_for_mmap(Process&, Memory::VirtualRange const&, u64& offset, bool shared);
bool is_blocking() const;
void set_blocking(bool b);
bool should_append() const;
u32 file_flags() const;
void set_file_flags(u32);
bool is_socket() const;
Socket* socket();
Socket const* socket() const;
bool is_fifo() const;
FIFO* fifo();
FIFO::Direction fifo_direction() const;
void set_fifo_direction(Badge<FIFO>, FIFO::Direction direction);
OwnPtr<OpenFileDescriptionData>& data();
void set_original_inode(Badge<VirtualFileSystem>, NonnullLockRefPtr<Inode>&& inode) { m_inode = move(inode); }
void set_original_custody(Badge<VirtualFileSystem>, Custody& custody);
ErrorOr<void> truncate(u64);
ErrorOr<void> sync();
off_t offset() const;
ErrorOr<void> chown(Credentials const& credentials, UserID, GroupID);
FileBlockerSet& blocker_set();
ErrorOr<void> apply_flock(Process const&, Userspace<flock const*>, ShouldBlock);
ErrorOr<void> get_flock(Userspace<flock*>) const;
private:
friend class VirtualFileSystem;
explicit OpenFileDescription(File&);
ErrorOr<void> attach();
void evaluate_block_conditions()
{
blocker_set().unblock_all_blockers_whose_conditions_are_met();
}
LockRefPtr<Inode> m_inode;
NonnullLockRefPtr<File> m_file;
struct State {
OwnPtr<OpenFileDescriptionData> data;
RefPtr<Custody> custody;
off_t current_offset { 0 };
u32 file_flags { 0 };
bool readable : 1 { false };
bool writable : 1 { false };
bool is_blocking : 1 { true };
bool is_directory : 1 { false };
bool should_append : 1 { false };
bool direct : 1 { false };
FIFO::Direction fifo_direction : 2 { FIFO::Direction::Neither };
};
SpinlockProtected<State, LockRank::None> m_state {};
};
}