138c8a9a5SSteve French // SPDX-License-Identifier: GPL-2.0-or-later 238c8a9a5SSteve French /* 338c8a9a5SSteve French * Copyright (C) 2016 Namjae Jeon <linkinjeon@kernel.org> 438c8a9a5SSteve French * Copyright (C) 2018 Samsung Electronics Co., Ltd. 538c8a9a5SSteve French */ 638c8a9a5SSteve French 738c8a9a5SSteve French #include <linux/freezer.h> 838c8a9a5SSteve French 938c8a9a5SSteve French #include "smb_common.h" 1038c8a9a5SSteve French #include "server.h" 1138c8a9a5SSteve French #include "auth.h" 1238c8a9a5SSteve French #include "connection.h" 1338c8a9a5SSteve French #include "transport_tcp.h" 1438c8a9a5SSteve French 1538c8a9a5SSteve French #define IFACE_STATE_DOWN BIT(0) 1638c8a9a5SSteve French #define IFACE_STATE_CONFIGURED BIT(1) 1738c8a9a5SSteve French 1838c8a9a5SSteve French static atomic_t active_num_conn; 1938c8a9a5SSteve French 2038c8a9a5SSteve French struct interface { 2138c8a9a5SSteve French struct task_struct *ksmbd_kthread; 2238c8a9a5SSteve French struct socket *ksmbd_socket; 2338c8a9a5SSteve French struct list_head entry; 2438c8a9a5SSteve French char *name; 2538c8a9a5SSteve French struct mutex sock_release_lock; 2638c8a9a5SSteve French int state; 2738c8a9a5SSteve French }; 2838c8a9a5SSteve French 2938c8a9a5SSteve French static LIST_HEAD(iface_list); 3038c8a9a5SSteve French 3138c8a9a5SSteve French static int bind_additional_ifaces; 3238c8a9a5SSteve French 3338c8a9a5SSteve French struct tcp_transport { 3438c8a9a5SSteve French struct ksmbd_transport transport; 3538c8a9a5SSteve French struct socket *sock; 3638c8a9a5SSteve French struct kvec *iov; 3738c8a9a5SSteve French unsigned int nr_iov; 3838c8a9a5SSteve French }; 3938c8a9a5SSteve French 4038c8a9a5SSteve French static struct ksmbd_transport_ops ksmbd_tcp_transport_ops; 4138c8a9a5SSteve French 4238c8a9a5SSteve French static void tcp_stop_kthread(struct task_struct *kthread); 4338c8a9a5SSteve French static struct interface *alloc_iface(char *ifname); 4438c8a9a5SSteve French 4538c8a9a5SSteve French #define KSMBD_TRANS(t) (&(t)->transport) 4638c8a9a5SSteve French #define TCP_TRANS(t) ((struct tcp_transport *)container_of(t, \ 4738c8a9a5SSteve French struct tcp_transport, transport)) 4838c8a9a5SSteve French 4938c8a9a5SSteve French static inline void ksmbd_tcp_nodelay(struct socket *sock) 5038c8a9a5SSteve French { 5138c8a9a5SSteve French tcp_sock_set_nodelay(sock->sk); 5238c8a9a5SSteve French } 5338c8a9a5SSteve French 5438c8a9a5SSteve French static inline void ksmbd_tcp_reuseaddr(struct socket *sock) 5538c8a9a5SSteve French { 5638c8a9a5SSteve French sock_set_reuseaddr(sock->sk); 5738c8a9a5SSteve French } 5838c8a9a5SSteve French 5938c8a9a5SSteve French static inline void ksmbd_tcp_rcv_timeout(struct socket *sock, s64 secs) 6038c8a9a5SSteve French { 6138c8a9a5SSteve French lock_sock(sock->sk); 6238c8a9a5SSteve French if (secs && secs < MAX_SCHEDULE_TIMEOUT / HZ - 1) 6338c8a9a5SSteve French sock->sk->sk_rcvtimeo = secs * HZ; 6438c8a9a5SSteve French else 6538c8a9a5SSteve French sock->sk->sk_rcvtimeo = MAX_SCHEDULE_TIMEOUT; 6638c8a9a5SSteve French release_sock(sock->sk); 6738c8a9a5SSteve French } 6838c8a9a5SSteve French 6938c8a9a5SSteve French static inline void ksmbd_tcp_snd_timeout(struct socket *sock, s64 secs) 7038c8a9a5SSteve French { 7138c8a9a5SSteve French sock_set_sndtimeo(sock->sk, secs); 7238c8a9a5SSteve French } 7338c8a9a5SSteve French 7438c8a9a5SSteve French static struct tcp_transport *alloc_transport(struct socket *client_sk) 7538c8a9a5SSteve French { 7638c8a9a5SSteve French struct tcp_transport *t; 7738c8a9a5SSteve French struct ksmbd_conn *conn; 7838c8a9a5SSteve French 7938c8a9a5SSteve French t = kzalloc(sizeof(*t), GFP_KERNEL); 8038c8a9a5SSteve French if (!t) 8138c8a9a5SSteve French return NULL; 8238c8a9a5SSteve French t->sock = client_sk; 8338c8a9a5SSteve French 8438c8a9a5SSteve French conn = ksmbd_conn_alloc(); 8538c8a9a5SSteve French if (!conn) { 8638c8a9a5SSteve French kfree(t); 8738c8a9a5SSteve French return NULL; 8838c8a9a5SSteve French } 8938c8a9a5SSteve French 9038c8a9a5SSteve French conn->transport = KSMBD_TRANS(t); 9138c8a9a5SSteve French KSMBD_TRANS(t)->conn = conn; 9238c8a9a5SSteve French KSMBD_TRANS(t)->ops = &ksmbd_tcp_transport_ops; 9338c8a9a5SSteve French return t; 9438c8a9a5SSteve French } 9538c8a9a5SSteve French 9638c8a9a5SSteve French static void free_transport(struct tcp_transport *t) 9738c8a9a5SSteve French { 9838c8a9a5SSteve French kernel_sock_shutdown(t->sock, SHUT_RDWR); 9938c8a9a5SSteve French sock_release(t->sock); 10038c8a9a5SSteve French t->sock = NULL; 10138c8a9a5SSteve French 10238c8a9a5SSteve French ksmbd_conn_free(KSMBD_TRANS(t)->conn); 10338c8a9a5SSteve French kfree(t->iov); 10438c8a9a5SSteve French kfree(t); 10538c8a9a5SSteve French } 10638c8a9a5SSteve French 10738c8a9a5SSteve French /** 10838c8a9a5SSteve French * kvec_array_init() - initialize a IO vector segment 10938c8a9a5SSteve French * @new: IO vector to be initialized 11038c8a9a5SSteve French * @iov: base IO vector 11138c8a9a5SSteve French * @nr_segs: number of segments in base iov 11238c8a9a5SSteve French * @bytes: total iovec length so far for read 11338c8a9a5SSteve French * 11438c8a9a5SSteve French * Return: Number of IO segments 11538c8a9a5SSteve French */ 11638c8a9a5SSteve French static unsigned int kvec_array_init(struct kvec *new, struct kvec *iov, 11738c8a9a5SSteve French unsigned int nr_segs, size_t bytes) 11838c8a9a5SSteve French { 11938c8a9a5SSteve French size_t base = 0; 12038c8a9a5SSteve French 12138c8a9a5SSteve French while (bytes || !iov->iov_len) { 12238c8a9a5SSteve French int copy = min(bytes, iov->iov_len); 12338c8a9a5SSteve French 12438c8a9a5SSteve French bytes -= copy; 12538c8a9a5SSteve French base += copy; 12638c8a9a5SSteve French if (iov->iov_len == base) { 12738c8a9a5SSteve French iov++; 12838c8a9a5SSteve French nr_segs--; 12938c8a9a5SSteve French base = 0; 13038c8a9a5SSteve French } 13138c8a9a5SSteve French } 13238c8a9a5SSteve French 13338c8a9a5SSteve French memcpy(new, iov, sizeof(*iov) * nr_segs); 13438c8a9a5SSteve French new->iov_base += base; 13538c8a9a5SSteve French new->iov_len -= base; 13638c8a9a5SSteve French return nr_segs; 13738c8a9a5SSteve French } 13838c8a9a5SSteve French 13938c8a9a5SSteve French /** 14038c8a9a5SSteve French * get_conn_iovec() - get connection iovec for reading from socket 14138c8a9a5SSteve French * @t: TCP transport instance 14238c8a9a5SSteve French * @nr_segs: number of segments in iov 14338c8a9a5SSteve French * 14438c8a9a5SSteve French * Return: return existing or newly allocate iovec 14538c8a9a5SSteve French */ 14638c8a9a5SSteve French static struct kvec *get_conn_iovec(struct tcp_transport *t, unsigned int nr_segs) 14738c8a9a5SSteve French { 14838c8a9a5SSteve French struct kvec *new_iov; 14938c8a9a5SSteve French 15038c8a9a5SSteve French if (t->iov && nr_segs <= t->nr_iov) 15138c8a9a5SSteve French return t->iov; 15238c8a9a5SSteve French 15338c8a9a5SSteve French /* not big enough -- allocate a new one and release the old */ 15438c8a9a5SSteve French new_iov = kmalloc_array(nr_segs, sizeof(*new_iov), GFP_KERNEL); 15538c8a9a5SSteve French if (new_iov) { 15638c8a9a5SSteve French kfree(t->iov); 15738c8a9a5SSteve French t->iov = new_iov; 15838c8a9a5SSteve French t->nr_iov = nr_segs; 15938c8a9a5SSteve French } 16038c8a9a5SSteve French return new_iov; 16138c8a9a5SSteve French } 16238c8a9a5SSteve French 16338c8a9a5SSteve French static unsigned short ksmbd_tcp_get_port(const struct sockaddr *sa) 16438c8a9a5SSteve French { 16538c8a9a5SSteve French switch (sa->sa_family) { 16638c8a9a5SSteve French case AF_INET: 16738c8a9a5SSteve French return ntohs(((struct sockaddr_in *)sa)->sin_port); 16838c8a9a5SSteve French case AF_INET6: 16938c8a9a5SSteve French return ntohs(((struct sockaddr_in6 *)sa)->sin6_port); 17038c8a9a5SSteve French } 17138c8a9a5SSteve French return 0; 17238c8a9a5SSteve French } 17338c8a9a5SSteve French 17438c8a9a5SSteve French /** 17538c8a9a5SSteve French * ksmbd_tcp_new_connection() - create a new tcp session on mount 17638c8a9a5SSteve French * @client_sk: socket associated with new connection 17738c8a9a5SSteve French * 17838c8a9a5SSteve French * whenever a new connection is requested, create a conn thread 17938c8a9a5SSteve French * (session thread) to handle new incoming smb requests from the connection 18038c8a9a5SSteve French * 18138c8a9a5SSteve French * Return: 0 on success, otherwise error 18238c8a9a5SSteve French */ 18338c8a9a5SSteve French static int ksmbd_tcp_new_connection(struct socket *client_sk) 18438c8a9a5SSteve French { 18538c8a9a5SSteve French struct sockaddr *csin; 18638c8a9a5SSteve French int rc = 0; 18738c8a9a5SSteve French struct tcp_transport *t; 18824290ba9SNamjae Jeon struct task_struct *handler; 18938c8a9a5SSteve French 19038c8a9a5SSteve French t = alloc_transport(client_sk); 19138c8a9a5SSteve French if (!t) { 19238c8a9a5SSteve French sock_release(client_sk); 19338c8a9a5SSteve French return -ENOMEM; 19438c8a9a5SSteve French } 19538c8a9a5SSteve French 19638c8a9a5SSteve French csin = KSMBD_TCP_PEER_SOCKADDR(KSMBD_TRANS(t)->conn); 19738c8a9a5SSteve French if (kernel_getpeername(client_sk, csin) < 0) { 19838c8a9a5SSteve French pr_err("client ip resolution failed\n"); 19938c8a9a5SSteve French rc = -EINVAL; 20038c8a9a5SSteve French goto out_error; 20138c8a9a5SSteve French } 20238c8a9a5SSteve French 20324290ba9SNamjae Jeon handler = kthread_run(ksmbd_conn_handler_loop, 20438c8a9a5SSteve French KSMBD_TRANS(t)->conn, 20538c8a9a5SSteve French "ksmbd:%u", 20638c8a9a5SSteve French ksmbd_tcp_get_port(csin)); 20724290ba9SNamjae Jeon if (IS_ERR(handler)) { 20838c8a9a5SSteve French pr_err("cannot start conn thread\n"); 20924290ba9SNamjae Jeon rc = PTR_ERR(handler); 21038c8a9a5SSteve French free_transport(t); 21138c8a9a5SSteve French } 21238c8a9a5SSteve French return rc; 21338c8a9a5SSteve French 21438c8a9a5SSteve French out_error: 21538c8a9a5SSteve French free_transport(t); 21638c8a9a5SSteve French return rc; 21738c8a9a5SSteve French } 21838c8a9a5SSteve French 21938c8a9a5SSteve French /** 22038c8a9a5SSteve French * ksmbd_kthread_fn() - listen to new SMB connections and callback server 22138c8a9a5SSteve French * @p: arguments to forker thread 22238c8a9a5SSteve French * 22338c8a9a5SSteve French * Return: 0 on success, error number otherwise 22438c8a9a5SSteve French */ 22538c8a9a5SSteve French static int ksmbd_kthread_fn(void *p) 22638c8a9a5SSteve French { 22738c8a9a5SSteve French struct socket *client_sk = NULL; 22838c8a9a5SSteve French struct interface *iface = (struct interface *)p; 22938c8a9a5SSteve French int ret; 23038c8a9a5SSteve French 23138c8a9a5SSteve French while (!kthread_should_stop()) { 23238c8a9a5SSteve French mutex_lock(&iface->sock_release_lock); 23338c8a9a5SSteve French if (!iface->ksmbd_socket) { 23438c8a9a5SSteve French mutex_unlock(&iface->sock_release_lock); 23538c8a9a5SSteve French break; 23638c8a9a5SSteve French } 23738c8a9a5SSteve French ret = kernel_accept(iface->ksmbd_socket, &client_sk, 23838c8a9a5SSteve French SOCK_NONBLOCK); 23938c8a9a5SSteve French mutex_unlock(&iface->sock_release_lock); 24038c8a9a5SSteve French if (ret) { 24138c8a9a5SSteve French if (ret == -EAGAIN) 24238c8a9a5SSteve French /* check for new connections every 100 msecs */ 24338c8a9a5SSteve French schedule_timeout_interruptible(HZ / 10); 24438c8a9a5SSteve French continue; 24538c8a9a5SSteve French } 24638c8a9a5SSteve French 24738c8a9a5SSteve French if (server_conf.max_connections && 24838c8a9a5SSteve French atomic_inc_return(&active_num_conn) >= server_conf.max_connections) { 24938c8a9a5SSteve French pr_info_ratelimited("Limit the maximum number of connections(%u)\n", 25038c8a9a5SSteve French atomic_read(&active_num_conn)); 25138c8a9a5SSteve French atomic_dec(&active_num_conn); 25238c8a9a5SSteve French sock_release(client_sk); 25338c8a9a5SSteve French continue; 25438c8a9a5SSteve French } 25538c8a9a5SSteve French 25638c8a9a5SSteve French ksmbd_debug(CONN, "connect success: accepted new connection\n"); 25738c8a9a5SSteve French client_sk->sk->sk_rcvtimeo = KSMBD_TCP_RECV_TIMEOUT; 25838c8a9a5SSteve French client_sk->sk->sk_sndtimeo = KSMBD_TCP_SEND_TIMEOUT; 25938c8a9a5SSteve French 26038c8a9a5SSteve French ksmbd_tcp_new_connection(client_sk); 26138c8a9a5SSteve French } 26238c8a9a5SSteve French 26338c8a9a5SSteve French ksmbd_debug(CONN, "releasing socket\n"); 26438c8a9a5SSteve French return 0; 26538c8a9a5SSteve French } 26638c8a9a5SSteve French 26738c8a9a5SSteve French /** 26838c8a9a5SSteve French * ksmbd_tcp_run_kthread() - start forker thread 26938c8a9a5SSteve French * @iface: pointer to struct interface 27038c8a9a5SSteve French * 27138c8a9a5SSteve French * start forker thread(ksmbd/0) at module init time to listen 27238c8a9a5SSteve French * on port 445 for new SMB connection requests. It creates per connection 27338c8a9a5SSteve French * server threads(ksmbd/x) 27438c8a9a5SSteve French * 27538c8a9a5SSteve French * Return: 0 on success or error number 27638c8a9a5SSteve French */ 27738c8a9a5SSteve French static int ksmbd_tcp_run_kthread(struct interface *iface) 27838c8a9a5SSteve French { 27938c8a9a5SSteve French int rc; 28038c8a9a5SSteve French struct task_struct *kthread; 28138c8a9a5SSteve French 28238c8a9a5SSteve French kthread = kthread_run(ksmbd_kthread_fn, (void *)iface, "ksmbd-%s", 28338c8a9a5SSteve French iface->name); 28438c8a9a5SSteve French if (IS_ERR(kthread)) { 28538c8a9a5SSteve French rc = PTR_ERR(kthread); 28638c8a9a5SSteve French return rc; 28738c8a9a5SSteve French } 28838c8a9a5SSteve French iface->ksmbd_kthread = kthread; 28938c8a9a5SSteve French 29038c8a9a5SSteve French return 0; 29138c8a9a5SSteve French } 29238c8a9a5SSteve French 29338c8a9a5SSteve French /** 29438c8a9a5SSteve French * ksmbd_tcp_readv() - read data from socket in given iovec 29538c8a9a5SSteve French * @t: TCP transport instance 29638c8a9a5SSteve French * @iov_orig: base IO vector 29738c8a9a5SSteve French * @nr_segs: number of segments in base iov 29838c8a9a5SSteve French * @to_read: number of bytes to read from socket 29938c8a9a5SSteve French * @max_retries: maximum retry count 30038c8a9a5SSteve French * 30138c8a9a5SSteve French * Return: on success return number of bytes read from socket, 30238c8a9a5SSteve French * otherwise return error number 30338c8a9a5SSteve French */ 30438c8a9a5SSteve French static int ksmbd_tcp_readv(struct tcp_transport *t, struct kvec *iov_orig, 30538c8a9a5SSteve French unsigned int nr_segs, unsigned int to_read, 30638c8a9a5SSteve French int max_retries) 30738c8a9a5SSteve French { 30838c8a9a5SSteve French int length = 0; 30938c8a9a5SSteve French int total_read; 31038c8a9a5SSteve French unsigned int segs; 31138c8a9a5SSteve French struct msghdr ksmbd_msg; 31238c8a9a5SSteve French struct kvec *iov; 31338c8a9a5SSteve French struct ksmbd_conn *conn = KSMBD_TRANS(t)->conn; 31438c8a9a5SSteve French 31538c8a9a5SSteve French iov = get_conn_iovec(t, nr_segs); 31638c8a9a5SSteve French if (!iov) 31738c8a9a5SSteve French return -ENOMEM; 31838c8a9a5SSteve French 31938c8a9a5SSteve French ksmbd_msg.msg_control = NULL; 32038c8a9a5SSteve French ksmbd_msg.msg_controllen = 0; 32138c8a9a5SSteve French 32238c8a9a5SSteve French for (total_read = 0; to_read; total_read += length, to_read -= length) { 32338c8a9a5SSteve French try_to_freeze(); 32438c8a9a5SSteve French 32538c8a9a5SSteve French if (!ksmbd_conn_alive(conn)) { 32638c8a9a5SSteve French total_read = -ESHUTDOWN; 32738c8a9a5SSteve French break; 32838c8a9a5SSteve French } 32938c8a9a5SSteve French segs = kvec_array_init(iov, iov_orig, nr_segs, total_read); 33038c8a9a5SSteve French 33138c8a9a5SSteve French length = kernel_recvmsg(t->sock, &ksmbd_msg, 33238c8a9a5SSteve French iov, segs, to_read, 0); 33338c8a9a5SSteve French 33438c8a9a5SSteve French if (length == -EINTR) { 33538c8a9a5SSteve French total_read = -ESHUTDOWN; 33638c8a9a5SSteve French break; 33738c8a9a5SSteve French } else if (ksmbd_conn_need_reconnect(conn)) { 33838c8a9a5SSteve French total_read = -EAGAIN; 33938c8a9a5SSteve French break; 34038c8a9a5SSteve French } else if (length == -ERESTARTSYS || length == -EAGAIN) { 34138c8a9a5SSteve French /* 34238c8a9a5SSteve French * If max_retries is negative, Allow unlimited 34338c8a9a5SSteve French * retries to keep connection with inactive sessions. 34438c8a9a5SSteve French */ 34538c8a9a5SSteve French if (max_retries == 0) { 34638c8a9a5SSteve French total_read = length; 34738c8a9a5SSteve French break; 34838c8a9a5SSteve French } else if (max_retries > 0) { 34938c8a9a5SSteve French max_retries--; 35038c8a9a5SSteve French } 35138c8a9a5SSteve French 35238c8a9a5SSteve French usleep_range(1000, 2000); 35338c8a9a5SSteve French length = 0; 35438c8a9a5SSteve French continue; 35538c8a9a5SSteve French } else if (length <= 0) { 35638c8a9a5SSteve French total_read = length; 35738c8a9a5SSteve French break; 35838c8a9a5SSteve French } 35938c8a9a5SSteve French } 36038c8a9a5SSteve French return total_read; 36138c8a9a5SSteve French } 36238c8a9a5SSteve French 36338c8a9a5SSteve French /** 36438c8a9a5SSteve French * ksmbd_tcp_read() - read data from socket in given buffer 36538c8a9a5SSteve French * @t: TCP transport instance 36638c8a9a5SSteve French * @buf: buffer to store read data from socket 36738c8a9a5SSteve French * @to_read: number of bytes to read from socket 368*5cf3fddbSYang Li * @max_retries: number of retries if reading from socket fails 36938c8a9a5SSteve French * 37038c8a9a5SSteve French * Return: on success return number of bytes read from socket, 37138c8a9a5SSteve French * otherwise return error number 37238c8a9a5SSteve French */ 37338c8a9a5SSteve French static int ksmbd_tcp_read(struct ksmbd_transport *t, char *buf, 37438c8a9a5SSteve French unsigned int to_read, int max_retries) 37538c8a9a5SSteve French { 37638c8a9a5SSteve French struct kvec iov; 37738c8a9a5SSteve French 37838c8a9a5SSteve French iov.iov_base = buf; 37938c8a9a5SSteve French iov.iov_len = to_read; 38038c8a9a5SSteve French 38138c8a9a5SSteve French return ksmbd_tcp_readv(TCP_TRANS(t), &iov, 1, to_read, max_retries); 38238c8a9a5SSteve French } 38338c8a9a5SSteve French 38438c8a9a5SSteve French static int ksmbd_tcp_writev(struct ksmbd_transport *t, struct kvec *iov, 38538c8a9a5SSteve French int nvecs, int size, bool need_invalidate, 38638c8a9a5SSteve French unsigned int remote_key) 38738c8a9a5SSteve French 38838c8a9a5SSteve French { 38938c8a9a5SSteve French struct msghdr smb_msg = {.msg_flags = MSG_NOSIGNAL}; 39038c8a9a5SSteve French 39138c8a9a5SSteve French return kernel_sendmsg(TCP_TRANS(t)->sock, &smb_msg, iov, nvecs, size); 39238c8a9a5SSteve French } 39338c8a9a5SSteve French 39438c8a9a5SSteve French static void ksmbd_tcp_disconnect(struct ksmbd_transport *t) 39538c8a9a5SSteve French { 39638c8a9a5SSteve French free_transport(TCP_TRANS(t)); 39738c8a9a5SSteve French if (server_conf.max_connections) 39838c8a9a5SSteve French atomic_dec(&active_num_conn); 39938c8a9a5SSteve French } 40038c8a9a5SSteve French 40138c8a9a5SSteve French static void tcp_destroy_socket(struct socket *ksmbd_socket) 40238c8a9a5SSteve French { 40338c8a9a5SSteve French int ret; 40438c8a9a5SSteve French 40538c8a9a5SSteve French if (!ksmbd_socket) 40638c8a9a5SSteve French return; 40738c8a9a5SSteve French 40838c8a9a5SSteve French /* set zero to timeout */ 40938c8a9a5SSteve French ksmbd_tcp_rcv_timeout(ksmbd_socket, 0); 41038c8a9a5SSteve French ksmbd_tcp_snd_timeout(ksmbd_socket, 0); 41138c8a9a5SSteve French 41238c8a9a5SSteve French ret = kernel_sock_shutdown(ksmbd_socket, SHUT_RDWR); 41338c8a9a5SSteve French if (ret) 41438c8a9a5SSteve French pr_err("Failed to shutdown socket: %d\n", ret); 41538c8a9a5SSteve French sock_release(ksmbd_socket); 41638c8a9a5SSteve French } 41738c8a9a5SSteve French 41838c8a9a5SSteve French /** 41938c8a9a5SSteve French * create_socket - create socket for ksmbd/0 420*5cf3fddbSYang Li * @iface: interface to bind the created socket to 42138c8a9a5SSteve French * 42238c8a9a5SSteve French * Return: 0 on success, error number otherwise 42338c8a9a5SSteve French */ 42438c8a9a5SSteve French static int create_socket(struct interface *iface) 42538c8a9a5SSteve French { 42638c8a9a5SSteve French int ret; 42738c8a9a5SSteve French struct sockaddr_in6 sin6; 42838c8a9a5SSteve French struct sockaddr_in sin; 42938c8a9a5SSteve French struct socket *ksmbd_socket; 43038c8a9a5SSteve French bool ipv4 = false; 43138c8a9a5SSteve French 43238c8a9a5SSteve French ret = sock_create(PF_INET6, SOCK_STREAM, IPPROTO_TCP, &ksmbd_socket); 43338c8a9a5SSteve French if (ret) { 43438c8a9a5SSteve French if (ret != -EAFNOSUPPORT) 43538c8a9a5SSteve French pr_err("Can't create socket for ipv6, fallback to ipv4: %d\n", ret); 43638c8a9a5SSteve French ret = sock_create(PF_INET, SOCK_STREAM, IPPROTO_TCP, 43738c8a9a5SSteve French &ksmbd_socket); 43838c8a9a5SSteve French if (ret) { 43938c8a9a5SSteve French pr_err("Can't create socket for ipv4: %d\n", ret); 44038c8a9a5SSteve French goto out_clear; 44138c8a9a5SSteve French } 44238c8a9a5SSteve French 44338c8a9a5SSteve French sin.sin_family = PF_INET; 44438c8a9a5SSteve French sin.sin_addr.s_addr = htonl(INADDR_ANY); 44538c8a9a5SSteve French sin.sin_port = htons(server_conf.tcp_port); 44638c8a9a5SSteve French ipv4 = true; 44738c8a9a5SSteve French } else { 44838c8a9a5SSteve French sin6.sin6_family = PF_INET6; 44938c8a9a5SSteve French sin6.sin6_addr = in6addr_any; 45038c8a9a5SSteve French sin6.sin6_port = htons(server_conf.tcp_port); 451b2ed5495SNamjae Jeon 452b2ed5495SNamjae Jeon lock_sock(ksmbd_socket->sk); 453b2ed5495SNamjae Jeon ksmbd_socket->sk->sk_ipv6only = false; 454b2ed5495SNamjae Jeon release_sock(ksmbd_socket->sk); 45538c8a9a5SSteve French } 45638c8a9a5SSteve French 45738c8a9a5SSteve French ksmbd_tcp_nodelay(ksmbd_socket); 45838c8a9a5SSteve French ksmbd_tcp_reuseaddr(ksmbd_socket); 45938c8a9a5SSteve French 46038c8a9a5SSteve French ret = sock_setsockopt(ksmbd_socket, 46138c8a9a5SSteve French SOL_SOCKET, 46238c8a9a5SSteve French SO_BINDTODEVICE, 46338c8a9a5SSteve French KERNEL_SOCKPTR(iface->name), 46438c8a9a5SSteve French strlen(iface->name)); 46538c8a9a5SSteve French if (ret != -ENODEV && ret < 0) { 46638c8a9a5SSteve French pr_err("Failed to set SO_BINDTODEVICE: %d\n", ret); 46738c8a9a5SSteve French goto out_error; 46838c8a9a5SSteve French } 46938c8a9a5SSteve French 47038c8a9a5SSteve French if (ipv4) 47138c8a9a5SSteve French ret = kernel_bind(ksmbd_socket, (struct sockaddr *)&sin, 47238c8a9a5SSteve French sizeof(sin)); 47338c8a9a5SSteve French else 47438c8a9a5SSteve French ret = kernel_bind(ksmbd_socket, (struct sockaddr *)&sin6, 47538c8a9a5SSteve French sizeof(sin6)); 47638c8a9a5SSteve French if (ret) { 47738c8a9a5SSteve French pr_err("Failed to bind socket: %d\n", ret); 47838c8a9a5SSteve French goto out_error; 47938c8a9a5SSteve French } 48038c8a9a5SSteve French 48138c8a9a5SSteve French ksmbd_socket->sk->sk_rcvtimeo = KSMBD_TCP_RECV_TIMEOUT; 48238c8a9a5SSteve French ksmbd_socket->sk->sk_sndtimeo = KSMBD_TCP_SEND_TIMEOUT; 48338c8a9a5SSteve French 48438c8a9a5SSteve French ret = kernel_listen(ksmbd_socket, KSMBD_SOCKET_BACKLOG); 48538c8a9a5SSteve French if (ret) { 48638c8a9a5SSteve French pr_err("Port listen() error: %d\n", ret); 48738c8a9a5SSteve French goto out_error; 48838c8a9a5SSteve French } 48938c8a9a5SSteve French 49038c8a9a5SSteve French iface->ksmbd_socket = ksmbd_socket; 49138c8a9a5SSteve French ret = ksmbd_tcp_run_kthread(iface); 49238c8a9a5SSteve French if (ret) { 49338c8a9a5SSteve French pr_err("Can't start ksmbd main kthread: %d\n", ret); 49438c8a9a5SSteve French goto out_error; 49538c8a9a5SSteve French } 49638c8a9a5SSteve French iface->state = IFACE_STATE_CONFIGURED; 49738c8a9a5SSteve French 49838c8a9a5SSteve French return 0; 49938c8a9a5SSteve French 50038c8a9a5SSteve French out_error: 50138c8a9a5SSteve French tcp_destroy_socket(ksmbd_socket); 50238c8a9a5SSteve French out_clear: 50338c8a9a5SSteve French iface->ksmbd_socket = NULL; 50438c8a9a5SSteve French return ret; 50538c8a9a5SSteve French } 50638c8a9a5SSteve French 50738c8a9a5SSteve French static int ksmbd_netdev_event(struct notifier_block *nb, unsigned long event, 50838c8a9a5SSteve French void *ptr) 50938c8a9a5SSteve French { 51038c8a9a5SSteve French struct net_device *netdev = netdev_notifier_info_to_dev(ptr); 51138c8a9a5SSteve French struct interface *iface; 51238c8a9a5SSteve French int ret, found = 0; 51338c8a9a5SSteve French 51438c8a9a5SSteve French switch (event) { 51538c8a9a5SSteve French case NETDEV_UP: 51638c8a9a5SSteve French if (netif_is_bridge_port(netdev)) 51738c8a9a5SSteve French return NOTIFY_OK; 51838c8a9a5SSteve French 51938c8a9a5SSteve French list_for_each_entry(iface, &iface_list, entry) { 52038c8a9a5SSteve French if (!strcmp(iface->name, netdev->name)) { 52138c8a9a5SSteve French found = 1; 52238c8a9a5SSteve French if (iface->state != IFACE_STATE_DOWN) 52338c8a9a5SSteve French break; 52438c8a9a5SSteve French ret = create_socket(iface); 52538c8a9a5SSteve French if (ret) 52638c8a9a5SSteve French return NOTIFY_OK; 52738c8a9a5SSteve French break; 52838c8a9a5SSteve French } 52938c8a9a5SSteve French } 53038c8a9a5SSteve French if (!found && bind_additional_ifaces) { 53138c8a9a5SSteve French iface = alloc_iface(kstrdup(netdev->name, GFP_KERNEL)); 53238c8a9a5SSteve French if (!iface) 53338c8a9a5SSteve French return NOTIFY_OK; 53438c8a9a5SSteve French ret = create_socket(iface); 53538c8a9a5SSteve French if (ret) 53638c8a9a5SSteve French break; 53738c8a9a5SSteve French } 53838c8a9a5SSteve French break; 53938c8a9a5SSteve French case NETDEV_DOWN: 54038c8a9a5SSteve French list_for_each_entry(iface, &iface_list, entry) { 54138c8a9a5SSteve French if (!strcmp(iface->name, netdev->name) && 54238c8a9a5SSteve French iface->state == IFACE_STATE_CONFIGURED) { 54338c8a9a5SSteve French tcp_stop_kthread(iface->ksmbd_kthread); 54438c8a9a5SSteve French iface->ksmbd_kthread = NULL; 54538c8a9a5SSteve French mutex_lock(&iface->sock_release_lock); 54638c8a9a5SSteve French tcp_destroy_socket(iface->ksmbd_socket); 54738c8a9a5SSteve French iface->ksmbd_socket = NULL; 54838c8a9a5SSteve French mutex_unlock(&iface->sock_release_lock); 54938c8a9a5SSteve French 55038c8a9a5SSteve French iface->state = IFACE_STATE_DOWN; 55138c8a9a5SSteve French break; 55238c8a9a5SSteve French } 55338c8a9a5SSteve French } 55438c8a9a5SSteve French break; 55538c8a9a5SSteve French } 55638c8a9a5SSteve French 55738c8a9a5SSteve French return NOTIFY_DONE; 55838c8a9a5SSteve French } 55938c8a9a5SSteve French 56038c8a9a5SSteve French static struct notifier_block ksmbd_netdev_notifier = { 56138c8a9a5SSteve French .notifier_call = ksmbd_netdev_event, 56238c8a9a5SSteve French }; 56338c8a9a5SSteve French 56438c8a9a5SSteve French int ksmbd_tcp_init(void) 56538c8a9a5SSteve French { 56638c8a9a5SSteve French register_netdevice_notifier(&ksmbd_netdev_notifier); 56738c8a9a5SSteve French 56838c8a9a5SSteve French return 0; 56938c8a9a5SSteve French } 57038c8a9a5SSteve French 57138c8a9a5SSteve French static void tcp_stop_kthread(struct task_struct *kthread) 57238c8a9a5SSteve French { 57338c8a9a5SSteve French int ret; 57438c8a9a5SSteve French 57538c8a9a5SSteve French if (!kthread) 57638c8a9a5SSteve French return; 57738c8a9a5SSteve French 57838c8a9a5SSteve French ret = kthread_stop(kthread); 57938c8a9a5SSteve French if (ret) 58038c8a9a5SSteve French pr_err("failed to stop forker thread\n"); 58138c8a9a5SSteve French } 58238c8a9a5SSteve French 58338c8a9a5SSteve French void ksmbd_tcp_destroy(void) 58438c8a9a5SSteve French { 58538c8a9a5SSteve French struct interface *iface, *tmp; 58638c8a9a5SSteve French 58738c8a9a5SSteve French unregister_netdevice_notifier(&ksmbd_netdev_notifier); 58838c8a9a5SSteve French 58938c8a9a5SSteve French list_for_each_entry_safe(iface, tmp, &iface_list, entry) { 59038c8a9a5SSteve French list_del(&iface->entry); 59138c8a9a5SSteve French kfree(iface->name); 59238c8a9a5SSteve French kfree(iface); 59338c8a9a5SSteve French } 59438c8a9a5SSteve French } 59538c8a9a5SSteve French 59638c8a9a5SSteve French static struct interface *alloc_iface(char *ifname) 59738c8a9a5SSteve French { 59838c8a9a5SSteve French struct interface *iface; 59938c8a9a5SSteve French 60038c8a9a5SSteve French if (!ifname) 60138c8a9a5SSteve French return NULL; 60238c8a9a5SSteve French 60338c8a9a5SSteve French iface = kzalloc(sizeof(struct interface), GFP_KERNEL); 60438c8a9a5SSteve French if (!iface) { 60538c8a9a5SSteve French kfree(ifname); 60638c8a9a5SSteve French return NULL; 60738c8a9a5SSteve French } 60838c8a9a5SSteve French 60938c8a9a5SSteve French iface->name = ifname; 61038c8a9a5SSteve French iface->state = IFACE_STATE_DOWN; 61138c8a9a5SSteve French list_add(&iface->entry, &iface_list); 61238c8a9a5SSteve French mutex_init(&iface->sock_release_lock); 61338c8a9a5SSteve French return iface; 61438c8a9a5SSteve French } 61538c8a9a5SSteve French 61638c8a9a5SSteve French int ksmbd_tcp_set_interfaces(char *ifc_list, int ifc_list_sz) 61738c8a9a5SSteve French { 61838c8a9a5SSteve French int sz = 0; 61938c8a9a5SSteve French 62038c8a9a5SSteve French if (!ifc_list_sz) { 62138c8a9a5SSteve French struct net_device *netdev; 62238c8a9a5SSteve French 62338c8a9a5SSteve French rtnl_lock(); 62438c8a9a5SSteve French for_each_netdev(&init_net, netdev) { 62538c8a9a5SSteve French if (netif_is_bridge_port(netdev)) 62638c8a9a5SSteve French continue; 62738c8a9a5SSteve French if (!alloc_iface(kstrdup(netdev->name, GFP_KERNEL))) 62838c8a9a5SSteve French return -ENOMEM; 62938c8a9a5SSteve French } 63038c8a9a5SSteve French rtnl_unlock(); 63138c8a9a5SSteve French bind_additional_ifaces = 1; 63238c8a9a5SSteve French return 0; 63338c8a9a5SSteve French } 63438c8a9a5SSteve French 63538c8a9a5SSteve French while (ifc_list_sz > 0) { 63638c8a9a5SSteve French if (!alloc_iface(kstrdup(ifc_list, GFP_KERNEL))) 63738c8a9a5SSteve French return -ENOMEM; 63838c8a9a5SSteve French 63938c8a9a5SSteve French sz = strlen(ifc_list); 64038c8a9a5SSteve French if (!sz) 64138c8a9a5SSteve French break; 64238c8a9a5SSteve French 64338c8a9a5SSteve French ifc_list += sz + 1; 64438c8a9a5SSteve French ifc_list_sz -= (sz + 1); 64538c8a9a5SSteve French } 64638c8a9a5SSteve French 64738c8a9a5SSteve French bind_additional_ifaces = 0; 64838c8a9a5SSteve French 64938c8a9a5SSteve French return 0; 65038c8a9a5SSteve French } 65138c8a9a5SSteve French 65238c8a9a5SSteve French static struct ksmbd_transport_ops ksmbd_tcp_transport_ops = { 65338c8a9a5SSteve French .read = ksmbd_tcp_read, 65438c8a9a5SSteve French .writev = ksmbd_tcp_writev, 65538c8a9a5SSteve French .disconnect = ksmbd_tcp_disconnect, 65638c8a9a5SSteve French }; 657