#pragma once #include #include #include // describes something which can act as an access function struct vfs_backend { /* references: * struct vfs_mount * struct vfs_request * struct process * struct handle */ size_t refcount; size_t potential_handlers; // 0 - orphaned struct vfs_request *queue; bool is_user; union { struct { struct process *handler; } user; struct { void (*accept)(struct vfs_request *); } kern; }; }; // describes an in-process vfs call struct vfs_request { enum vfs_operation type; struct { bool kern; // if false: use .buf ; if true: use .buf_kern union { char __user *buf; char *buf_kern; }; size_t len; } input; struct { char __user *buf; size_t len; } output; void __user *id; // handle.file.id long offset; int flags; /* if caller != NULL, owned by it - don't free, the allocation will be reused * if caller == NULL, free on finish */ struct process *caller; struct vfs_backend *backend; struct vfs_request *queue_next; struct vfs_request *postqueue_next; /* used by kernel backends */ /* only one of these queues is in use at a given moment, they could * be merged into a single field */ }; /** Assigns the vfs_request to the caller, and dispatches the call */ void vfsreq_create(struct vfs_request); void vfsreq_finish(struct vfs_request*, char __user *stored, long ret, int flags, struct process *handler); static inline void vfsreq_finish_short(struct vfs_request *req, long ret) { vfsreq_finish(req, (void __user *)ret, ret, 0, NULL); } /** Try to accept an enqueued request */ void vfs_backend_tryaccept(struct vfs_backend *); void vfs_backend_refdown(struct vfs_backend *);