vfs.hpp 9.7 KB

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  1. #pragma once
  2. #include <map>
  3. #include <list>
  4. #include <vector>
  5. #include <functional>
  6. #include <errno.h>
  7. #include <fcntl.h>
  8. #include <sys/stat.h>
  9. #include <sys/types.h>
  10. #include <bits/alltypes.h>
  11. #include <assert.h>
  12. #include <kernel/event/evtqueue.hpp>
  13. #include <stdint.h>
  14. #include <sys/types.h>
  15. #include <types/allocator.hpp>
  16. #include <types/buffer.hpp>
  17. #include <types/cplusplus.hpp>
  18. #include <types/hash_map.hpp>
  19. #include <types/path.hpp>
  20. #include <types/lock.hpp>
  21. #include <types/types.h>
  22. #define NODE_MAJOR(node) ((node) >> 16)
  23. #define NODE_MINOR(node) ((node) & 0xffffU)
  24. namespace fs {
  25. class vfs;
  26. struct inode {
  27. ino_t ino;
  28. vfs* fs;
  29. size_t size;
  30. nlink_t nlink;
  31. mode_t mode;
  32. uid_t uid;
  33. gid_t gid;
  34. };
  35. constexpr dev_t make_device(uint32_t major, uint32_t minor)
  36. {
  37. return (major << 16) | (minor & 0xffff);
  38. }
  39. // buf, buf_size, offset, cnt
  40. using blkdev_read = std::function<ssize_t(char*, std::size_t, std::size_t, std::size_t)>;
  41. // buf, offset, cnt
  42. using blkdev_write = std::function<ssize_t(const char*, std::size_t, std::size_t)>;
  43. struct blkdev_ops {
  44. blkdev_read read;
  45. blkdev_write write;
  46. };
  47. // buf, buf_size, cnt
  48. using chrdev_read = std::function<ssize_t(char*, std::size_t, std::size_t)>;
  49. // buf, cnt
  50. using chrdev_write = std::function<ssize_t(const char*, std::size_t)>;
  51. struct chrdev_ops {
  52. chrdev_read read;
  53. chrdev_write write;
  54. };
  55. struct PACKED user_dirent {
  56. ino_t d_ino; // inode number
  57. uint32_t d_off; // ignored
  58. uint16_t d_reclen; // length of this struct user_dirent
  59. char d_name[1]; // file name with a padding zero
  60. // uint8_t d_type; // file type, with offset of (d_reclen - 1)
  61. };
  62. struct user_dirent64 {
  63. ino64_t d_ino; // inode number
  64. uint64_t d_off; // implementation-defined field, ignored
  65. uint16_t d_reclen; // length of this struct user_dirent
  66. uint8_t d_type; // file type, with offset of (d_reclen - 1)
  67. char d_name[1]; // file name with a padding zero
  68. };
  69. class vfs {
  70. public:
  71. struct dentry {
  72. public:
  73. using name_type = types::string<>;
  74. private:
  75. std::list<dentry>* children = nullptr;
  76. types::hash_map<name_type, dentry*>* idx_children = nullptr;
  77. public:
  78. dentry* parent;
  79. inode* ind;
  80. struct {
  81. uint32_t dir : 1; // whether the dentry is a directory.
  82. // if dir is 1, whether children contains valid data.
  83. // otherwise, ignored
  84. uint32_t present : 1;
  85. } flags;
  86. name_type name;
  87. explicit dentry(dentry* parent, inode* ind, name_type name);
  88. dentry(const dentry& val) = delete;
  89. constexpr dentry(dentry&& val)
  90. : children(std::exchange(val.children, nullptr))
  91. , idx_children(std::exchange(val.idx_children, nullptr))
  92. , parent(std::exchange(val.parent, nullptr))
  93. , ind(std::exchange(val.ind, nullptr))
  94. , flags { val.flags }
  95. , name(std::move(val.name))
  96. {
  97. if (children) {
  98. for (auto& item : *children)
  99. item.parent = this;
  100. }
  101. }
  102. dentry& operator=(const dentry& val) = delete;
  103. dentry& operator=(dentry&& val) = delete;
  104. constexpr ~dentry()
  105. {
  106. if (children) {
  107. delete children;
  108. children = nullptr;
  109. }
  110. if (idx_children) {
  111. delete idx_children;
  112. idx_children = nullptr;
  113. }
  114. }
  115. dentry* append(inode* ind, name_type name);
  116. dentry* find(const name_type& name);
  117. dentry* replace(dentry* val);
  118. void remove(const name_type& name);
  119. // out_dst SHOULD be empty
  120. void path(const dentry& root, types::path& out_dst) const;
  121. };
  122. public:
  123. using filldir_func = std::function<int(const char*, size_t, ino_t, uint8_t)>;
  124. private:
  125. // TODO: use allocator designed for small objects
  126. using inode_list = std::map<ino_t, inode>;
  127. private:
  128. inode_list _inodes;
  129. types::hash_map<dentry*, dentry*> _mount_recover_list;
  130. protected:
  131. dentry _root;
  132. protected:
  133. inode* cache_inode(size_t size, ino_t ino, mode_t mode, uid_t uid, gid_t gid);
  134. void free_inode(ino_t ino);
  135. inode* get_inode(ino_t ino);
  136. void register_root_node(inode* root);
  137. int load_dentry(dentry* ent);
  138. public:
  139. vfs();
  140. vfs(const vfs&) = delete;
  141. vfs& operator=(const vfs&) = delete;
  142. vfs(vfs&&) = delete;
  143. vfs& operator=(vfs&&) = delete;
  144. constexpr dentry* root(void)
  145. {
  146. return &_root;
  147. }
  148. int mount(dentry* mnt, vfs* new_fs);
  149. virtual size_t inode_read(inode* file, char* buf, size_t buf_size, size_t offset, size_t n);
  150. virtual size_t inode_write(inode* file, const char* buf, size_t offset, size_t n);
  151. virtual int inode_mkfile(dentry* dir, const char* filename, mode_t mode);
  152. virtual int inode_mknode(dentry* dir, const char* filename, mode_t mode, dev_t sn);
  153. virtual int inode_rmfile(dentry* dir, const char* filename);
  154. virtual int inode_mkdir(dentry* dir, const char* dirname, mode_t mode);
  155. virtual int inode_statx(dentry* dent, statx* buf, unsigned int mask);
  156. virtual int inode_stat(dentry* dent, struct stat* stat);
  157. virtual int inode_devid(inode* file, dev_t& out_dev);
  158. virtual int truncate(inode* file, size_t size);
  159. // parameter 'length' in callback:
  160. // if 0, 'name' should be null terminated
  161. // else, 'name' size
  162. //
  163. // @return
  164. // return -1 if an error occurred
  165. // return 0 if no more entry available
  166. // otherwise, return bytes to be added to the offset
  167. virtual int inode_readdir(inode* dir, size_t offset, const filldir_func& callback) = 0;
  168. };
  169. class pipe : public types::non_copyable {
  170. private:
  171. static constexpr size_t PIPE_SIZE = 4096;
  172. static constexpr uint32_t READABLE = 1;
  173. static constexpr uint32_t WRITABLE = 2;
  174. private:
  175. types::buffer buf;
  176. kernel::cond_var m_cv;
  177. uint32_t flags;
  178. public:
  179. pipe(void);
  180. void close_read(void);
  181. void close_write(void);
  182. int write(const char* buf, size_t n);
  183. int read(char* buf, size_t n);
  184. constexpr bool is_readable(void) const
  185. {
  186. return flags & READABLE;
  187. }
  188. constexpr bool is_writeable(void) const
  189. {
  190. return flags & WRITABLE;
  191. }
  192. constexpr bool is_free(void) const
  193. {
  194. return !(flags & (READABLE | WRITABLE));
  195. }
  196. };
  197. struct file {
  198. mode_t mode; // stores the file type in the same format as inode::mode
  199. vfs::dentry* parent {};
  200. struct file_flags {
  201. uint32_t read : 1;
  202. uint32_t write : 1;
  203. uint32_t append : 1;
  204. } flags {};
  205. file(mode_t mode, vfs::dentry* parent, file_flags flags)
  206. : mode(mode) , parent(parent), flags(flags) { }
  207. virtual ~file() = default;
  208. virtual ssize_t read(char* __user buf, size_t n) = 0;
  209. virtual ssize_t do_write(const char* __user buf, size_t n) = 0;
  210. virtual off_t seek(off_t n, int whence)
  211. { return (void)n, (void)whence, -ESPIPE; }
  212. ssize_t write(const char* __user buf, size_t n)
  213. {
  214. if (!flags.write)
  215. return -EBADF;
  216. if (flags.append) {
  217. seek(0, SEEK_END);
  218. }
  219. return do_write(buf, n);
  220. }
  221. // regular files should override this method
  222. virtual int getdents(char* __user buf, size_t cnt)
  223. { return (void)buf, (void)cnt, -ENOTDIR; }
  224. virtual int getdents64(char* __user buf, size_t cnt)
  225. { return (void)buf, (void)cnt, -ENOTDIR; }
  226. };
  227. struct regular_file : public virtual file {
  228. virtual ~regular_file() = default;
  229. std::size_t cursor { };
  230. inode* ind { };
  231. regular_file(vfs::dentry* parent, file_flags flags, size_t cursor, inode* ind);
  232. virtual ssize_t read(char* __user buf, size_t n) override;
  233. virtual ssize_t do_write(const char* __user buf, size_t n) override;
  234. virtual off_t seek(off_t n, int whence) override;
  235. virtual int getdents(char* __user buf, size_t cnt) override;
  236. virtual int getdents64(char* __user buf, size_t cnt) override;
  237. };
  238. struct fifo_file : public virtual file {
  239. virtual ~fifo_file() override;
  240. std::shared_ptr<pipe> ppipe;
  241. fifo_file(vfs::dentry* parent, file_flags flags, std::shared_ptr<fs::pipe> ppipe);
  242. virtual ssize_t read(char* __user buf, size_t n) override;
  243. virtual ssize_t do_write(const char* __user buf, size_t n) override;
  244. };
  245. inline fs::vfs::dentry* fs_root;
  246. int register_block_device(dev_t node, blkdev_ops ops);
  247. int register_char_device(dev_t node, chrdev_ops ops);
  248. void partprobe();
  249. ssize_t block_device_read(dev_t node, char* buf, size_t buf_size, size_t offset, size_t n);
  250. ssize_t block_device_write(dev_t node, const char* buf, size_t offset, size_t n);
  251. ssize_t char_device_read(dev_t node, char* buf, size_t buf_size, size_t n);
  252. ssize_t char_device_write(dev_t node, const char* buf, size_t n);
  253. vfs* register_fs(vfs* fs);
  254. size_t vfs_read(inode* file, char* buf, size_t buf_size, size_t offset, size_t n);
  255. size_t vfs_write(inode* file, const char* buf, size_t offset, size_t n);
  256. int vfs_mkfile(fs::vfs::dentry* dir, const char* filename, mode_t mode);
  257. int vfs_mknode(fs::vfs::dentry* dir, const char* filename, mode_t mode, dev_t sn);
  258. int vfs_rmfile(fs::vfs::dentry* dir, const char* filename);
  259. int vfs_mkdir(fs::vfs::dentry* dir, const char* dirname, mode_t mode);
  260. int vfs_stat(fs::vfs::dentry* dent, statx* stat, unsigned int mask);
  261. int vfs_truncate(inode* file, size_t size);
  262. /**
  263. * @brief Opens a file or directory specified by the given path.
  264. *
  265. * @param root The root directory of the file system.
  266. * @param path The absolute path to the file or directory to be opened.
  267. * @return A pointer to the opened file or directory entry if found.
  268. * Otherwise, nullptr is returned.
  269. */
  270. fs::vfs::dentry* vfs_open(fs::vfs::dentry& root, const types::path& path);
  271. } // namespace fs
  272. extern "C" void init_vfs(void);