286 lines
8.7 KiB
C
286 lines
8.7 KiB
C
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#ifndef _KERNEL_FS_VFS_H
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#define _KERNEL_FS_VFS_H
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#include <algo/sync_ringbuffer.h>
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#include <drivers/driver_manager.h>
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#include <fs/ext2/ext2.h>
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#include <libkern/lock.h>
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#include <libkern/syscall_structs.h>
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#define DENTRY_WAS_IN_CACHE 0
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#define DENTRY_NEWLY_ALLOCATED 1
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#define VFS_MAX_FS_COUNT 5
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#define VFS_MAX_DEV_COUNT 5
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#define VFS_MAX_FILENAME 16
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#define VFS_MAX_FILENAME_EXT 4
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#define VFS_ATTR_NOTFILE 0xff
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// The flag could be used as return when custom mmap function could not handle file.
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// In this case the standard implementation will be used if possible.
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#define VFS_USE_STD_MMAP 0xffffffff
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// VFS Device is a wrapper for each of logical storage device.
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// The wrapper is created only for those.
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struct fs_desc;
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typedef struct {
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int fsid;
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void* fsdata; // Holds data which is needed for FS, like pointers to superblocks and e.g.
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struct fs_desc* fsdesc;
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spinlock_t fslock;
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device_t* dev;
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} vfs_device_t;
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struct dirent {
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ino_t inode;
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uint16_t rec_len;
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uint8_t name_len;
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uint8_t file_type;
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char* name;
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};
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typedef struct dirent dirent_t;
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#define DENTRY_DIRTY 0x1
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#define DENTRY_MOUNTPOINT 0x2
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#define DENTRY_MOUNTED 0x4
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#define DENTRY_INODE_TO_BE_DELETED 0x8
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#define DENTRY_PRIVATE 0x10 // This dentry can't be opened so can't be copied.
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#define DENTRY_CUSTOM 0x20 // Such dentries won't be process in dentry.c file.
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typedef uint32_t dentry_flag_t;
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struct dentry {
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size_t d_count;
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dentry_flag_t flags;
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ino_t inode_indx;
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inode_t* inode;
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// Lock controls all dentry fields, (including inode, since it could be hold only by one dentry).
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spinlock_t lock;
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struct fs_ops* ops;
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dev_t dev_indx;
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vfs_device_t* vfsdev;
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char* filename;
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struct dentry* parent;
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struct dentry* mountpoint;
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struct dentry* mounted_dentry;
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struct socket* sock;
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};
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typedef struct dentry dentry_t;
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struct path {
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dentry_t* dentry;
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};
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typedef struct path path_t;
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struct file;
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struct file_descriptor;
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struct file_ops {
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bool (*can_read)(struct file* file, size_t start);
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bool (*can_write)(struct file* file, size_t start);
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int (*read)(struct file* file, void __user* buf, size_t start, size_t len);
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int (*write)(struct file* file, void __user* buf, size_t start, size_t len);
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int (*truncate)(struct file* file, size_t len);
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int (*open)(const path_t* path, struct file_descriptor* fd, uint32_t flags);
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int (*create)(const path_t* path, const char* name, size_t len, mode_t mode, uid_t uid, gid_t gid);
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int (*unlink)(const path_t* path);
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int (*getdents)(dentry_t* dir, void __user* buf, off_t* offset, size_t len);
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int (*lookup)(const path_t* path, const char* name, size_t len, path_t* result_path);
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int (*mkdir)(const path_t* path, const char* name, size_t len, mode_t mode, uid_t uid, gid_t gid);
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int (*rmdir)(const path_t* path);
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int (*ioctl)(struct file* file, uintptr_t cmd, uintptr_t arg);
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int (*fstat)(struct file* file, stat_t* stat);
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int (*fchmod)(struct file* file, mode_t mode);
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struct memzone* (*mmap)(struct file* file, mmap_params_t* params);
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};
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typedef struct file_ops file_ops_t;
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struct dentry_ops {
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int (*read_inode)(dentry_t* dentry);
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int (*write_inode)(dentry_t* dentry);
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int (*free_inode)(dentry_t* dentry);
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};
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typedef struct dentry_ops dentry_ops_t;
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struct fs_ops {
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int (*recognize)(vfs_device_t* dev);
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int (*prepare_fs)(vfs_device_t* dev);
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int (*eject_device)(vfs_device_t* dev);
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file_ops_t file;
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dentry_ops_t dentry;
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};
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typedef struct fs_ops fs_ops_t;
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struct fs_desc {
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driver_t* driver;
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fs_ops_t* ops;
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};
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typedef struct fs_desc fs_desc_t;
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typedef uint32_t file_type_t;
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enum FTYPES {
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FTYPE_FILE,
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FTYPE_SOCKET,
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};
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struct file {
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size_t count;
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file_type_t type;
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union {
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dentry_t* dentry; // type == FTYPE_FILE
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struct socket* socket; // type == FTYPE_SOCKET
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};
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uint32_t flags;
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path_t path;
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file_ops_t* ops;
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// Used by socket to keep data.
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void* auxdata;
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// Protects flags.
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spinlock_t lock;
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};
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typedef struct file file_t;
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struct file_descriptor {
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file_t* file;
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off_t offset;
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int flags;
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};
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typedef struct file_descriptor file_descriptor_t;
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struct socket {
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size_t d_count;
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int domain;
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int type;
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int protocol;
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mode_t mode;
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sync_ringbuffer_t buffer;
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file_t* bind_file;
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spinlock_t lock;
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};
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typedef struct socket socket_t;
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/**
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* DENTRIES
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*/
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void kdentryflusherd();
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void dentry_set_parent(dentry_t* to, dentry_t* parent);
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void dentry_set_filename(dentry_t* to, char* filename);
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dentry_t* dentry_get(dev_t dev_indx, ino_t inode_indx);
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dentry_t* dentry_get_no_inode(dev_t dev_indx, ino_t inode_indx, int* newly_allocated);
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dentry_t* dentry_get_parent(dentry_t* dentry);
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dentry_t* dentry_duplicate(dentry_t* dentry);
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void dentry_put(dentry_t* dentry);
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void dentry_force_put(dentry_t* dentry);
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void dentry_put_all_dentries_of_dev(dev_t dev_indx);
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int dentry_flush(dentry_t* dentry);
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void dentry_set_inode(dentry_t* dentry, inode_t* inode);
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void dentry_set_flag(dentry_t* dentry, dentry_flag_t flag);
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bool dentry_test_flag(dentry_t* dentry, dentry_flag_t flag);
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void dentry_rem_flag(dentry_t* dentry, dentry_flag_t flag);
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void dentry_inode_set_flag(dentry_t* dentry, mode_t mode);
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bool dentry_test_mode(dentry_t* dentry, mode_t mode);
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void dentry_inode_rem_flag(dentry_t* dentry, mode_t mode);
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void dentry_put_locked(dentry_t* dentry);
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void dentry_set_flag_locked(dentry_t* dentry, dentry_flag_t flag);
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bool dentry_test_flag_locked(dentry_t* dentry, dentry_flag_t flag);
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void dentry_rem_flag_locked(dentry_t* dentry, dentry_flag_t flag);
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bool dentry_test_mode_locked(dentry_t* dentry, mode_t mode);
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size_t dentry_stat_cached_count();
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/**
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* VFS HELPERS
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*/
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ssize_t vfs_helper_write_dirent(dirent_t __user* buf, size_t buf_len, ino_t inode_index, const char* name);
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char* vfs_helper_split_path_with_name(char* name, size_t len);
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void vfs_helper_restore_full_path_after_split(char* path, char* name);
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/**
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* FILE HELPERS
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*/
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static inline dentry_t* file_dentry(file_t* file) { return file->type == FTYPE_FILE ? file->dentry : NULL; }
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static inline socket_t* file_socket(file_t* file) { return file->type == FTYPE_SOCKET ? file->socket : NULL; }
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static inline dentry_t* file_dentry_assert(file_t* file)
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{
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ASSERT(file->type == FTYPE_FILE);
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return file->dentry;
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}
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static inline socket_t* file_socket_assert(file_t* file)
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{
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ASSERT(file->type == FTYPE_SOCKET);
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return file->socket;
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}
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file_t* file_init_pseudo_dentry(dentry_t* pseudo_dentry);
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file_t* file_init_socket(socket_t* socket, file_ops_t* ops);
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file_t* file_init_path(const path_t* path);
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file_t* file_duplicate(file_t* file);
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file_t* file_duplicate_locked(file_t* file);
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void file_put(file_t* file);
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static inline bool path_is_valid(const path_t* path) { return path && path->dentry; }
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path_t path_duplicate(const path_t* path);
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void path_put(path_t* path);
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inline path_t vfs_empty_path()
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{
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path_t a = { .dentry = NULL };
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return a;
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}
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/**
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* VFS APIS
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*/
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void vfs_install();
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int vfs_add_dev(device_t* dev);
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int vfs_add_dev_with_fs(device_t* dev, int fs_id);
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int vfs_add_fs(driver_t* fs);
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int vfs_get_fs_id(const char* name);
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void vfs_eject_device(device_t* t_new_dev);
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int vfs_resolve_path(const char* path, path_t* result);
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int vfs_resolve_path_start_from(const path_t* vfspath, const char* path, path_t* result);
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int vfs_create(const path_t* path, const char* name, size_t len, mode_t mode, uid_t uid, gid_t gid);
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int vfs_unlink(const path_t* path);
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int vfs_lookup(const path_t* path, const char* name, size_t len, path_t* result);
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int vfs_open(const path_t* path, file_descriptor_t* fd, int flags);
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int vfs_close(file_descriptor_t* fd);
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bool vfs_can_read(file_descriptor_t* fd);
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bool vfs_can_write(file_descriptor_t* fd);
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int vfs_read(file_descriptor_t* fd, void __user* buf, size_t len);
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int vfs_write(file_descriptor_t* fd, void __user* buf, size_t len);
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int vfs_mkdir(const path_t* path, const char* name, size_t len, mode_t mode, uid_t uid, gid_t gid);
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int vfs_rmdir(const path_t* path);
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int vfs_getdents(file_descriptor_t* dir_fd, void __user* buf, size_t len);
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int vfs_fstat(file_descriptor_t* fd, stat_t* stat);
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int vfs_chmod(const path_t* path, mode_t mode);
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int vfs_fchmod(file_descriptor_t* fd, mode_t mode);
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int vfs_get_absolute_path(const path_t* path, char* buf, int len);
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int vfs_mount(path_t* mount_path, device_t* dev, uint32_t fs_indx);
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int vfs_umount(dentry_t* mountpoint);
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struct proc;
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struct memzone* vfs_mmap(file_descriptor_t* fd, mmap_params_t* params);
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int vfs_munmap(struct proc* p, struct memzone*);
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struct thread;
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int vfs_check_open_perms(const path_t* path, int flags);
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int vfs_perm_to_read(dentry_t* dentry, struct thread* t);
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int vfs_perm_to_write(dentry_t* dentry, struct thread* t);
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int vfs_perm_to_execute(dentry_t* dentry, struct thread* t);
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#endif // _KERNEL_FS_VFS_H
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