1c18ce101SOliver Hartkopp /* 2c18ce101SOliver Hartkopp * raw.c - Raw sockets for protocol family CAN 3c18ce101SOliver Hartkopp * 4c18ce101SOliver Hartkopp * Copyright (c) 2002-2007 Volkswagen Group Electronic Research 5c18ce101SOliver Hartkopp * All rights reserved. 6c18ce101SOliver Hartkopp * 7c18ce101SOliver Hartkopp * Redistribution and use in source and binary forms, with or without 8c18ce101SOliver Hartkopp * modification, are permitted provided that the following conditions 9c18ce101SOliver Hartkopp * are met: 10c18ce101SOliver Hartkopp * 1. Redistributions of source code must retain the above copyright 11c18ce101SOliver Hartkopp * notice, this list of conditions and the following disclaimer. 12c18ce101SOliver Hartkopp * 2. Redistributions in binary form must reproduce the above copyright 13c18ce101SOliver Hartkopp * notice, this list of conditions and the following disclaimer in the 14c18ce101SOliver Hartkopp * documentation and/or other materials provided with the distribution. 15c18ce101SOliver Hartkopp * 3. Neither the name of Volkswagen nor the names of its contributors 16c18ce101SOliver Hartkopp * may be used to endorse or promote products derived from this software 17c18ce101SOliver Hartkopp * without specific prior written permission. 18c18ce101SOliver Hartkopp * 19c18ce101SOliver Hartkopp * Alternatively, provided that this notice is retained in full, this 20c18ce101SOliver Hartkopp * software may be distributed under the terms of the GNU General 21c18ce101SOliver Hartkopp * Public License ("GPL") version 2, in which case the provisions of the 22c18ce101SOliver Hartkopp * GPL apply INSTEAD OF those given above. 23c18ce101SOliver Hartkopp * 24c18ce101SOliver Hartkopp * The provided data structures and external interfaces from this code 25c18ce101SOliver Hartkopp * are not restricted to be used by modules with a GPL compatible license. 26c18ce101SOliver Hartkopp * 27c18ce101SOliver Hartkopp * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 28c18ce101SOliver Hartkopp * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 29c18ce101SOliver Hartkopp * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 30c18ce101SOliver Hartkopp * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 31c18ce101SOliver Hartkopp * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 32c18ce101SOliver Hartkopp * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 33c18ce101SOliver Hartkopp * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 34c18ce101SOliver Hartkopp * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 35c18ce101SOliver Hartkopp * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 36c18ce101SOliver Hartkopp * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 37c18ce101SOliver Hartkopp * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH 38c18ce101SOliver Hartkopp * DAMAGE. 39c18ce101SOliver Hartkopp * 40c18ce101SOliver Hartkopp */ 41c18ce101SOliver Hartkopp 42c18ce101SOliver Hartkopp #include <linux/module.h> 43c18ce101SOliver Hartkopp #include <linux/init.h> 44c18ce101SOliver Hartkopp #include <linux/uio.h> 45c18ce101SOliver Hartkopp #include <linux/net.h> 465a0e3ad6STejun Heo #include <linux/slab.h> 47c18ce101SOliver Hartkopp #include <linux/netdevice.h> 48c18ce101SOliver Hartkopp #include <linux/socket.h> 49c18ce101SOliver Hartkopp #include <linux/if_arp.h> 50c18ce101SOliver Hartkopp #include <linux/skbuff.h> 51c18ce101SOliver Hartkopp #include <linux/can.h> 52c18ce101SOliver Hartkopp #include <linux/can/core.h> 53156c2bb9SOliver Hartkopp #include <linux/can/skb.h> 54c18ce101SOliver Hartkopp #include <linux/can/raw.h> 55c18ce101SOliver Hartkopp #include <net/sock.h> 56c18ce101SOliver Hartkopp #include <net/net_namespace.h> 57c18ce101SOliver Hartkopp 58c18ce101SOliver Hartkopp #define CAN_RAW_VERSION CAN_VERSION 596299b669SAndi Kleen static __initconst const char banner[] = 60c18ce101SOliver Hartkopp KERN_INFO "can: raw protocol (rev " CAN_RAW_VERSION ")\n"; 61c18ce101SOliver Hartkopp 62c18ce101SOliver Hartkopp MODULE_DESCRIPTION("PF_CAN raw protocol"); 63c18ce101SOliver Hartkopp MODULE_LICENSE("Dual BSD/GPL"); 64c18ce101SOliver Hartkopp MODULE_AUTHOR("Urs Thuermann <urs.thuermann@volkswagen.de>"); 65b13bb2e9SLothar Waßmann MODULE_ALIAS("can-proto-1"); 66c18ce101SOliver Hartkopp 67c18ce101SOliver Hartkopp #define MASK_ALL 0 68c18ce101SOliver Hartkopp 69c18ce101SOliver Hartkopp /* 70c18ce101SOliver Hartkopp * A raw socket has a list of can_filters attached to it, each receiving 71c18ce101SOliver Hartkopp * the CAN frames matching that filter. If the filter list is empty, 72c18ce101SOliver Hartkopp * no CAN frames will be received by the socket. The default after 73c18ce101SOliver Hartkopp * opening the socket, is to have one filter which receives all frames. 74c18ce101SOliver Hartkopp * The filter list is allocated dynamically with the exception of the 75c18ce101SOliver Hartkopp * list containing only one item. This common case is optimized by 76c18ce101SOliver Hartkopp * storing the single filter in dfilter, to avoid using dynamic memory. 77c18ce101SOliver Hartkopp */ 78c18ce101SOliver Hartkopp 79c18ce101SOliver Hartkopp struct raw_sock { 80c18ce101SOliver Hartkopp struct sock sk; 81c18ce101SOliver Hartkopp int bound; 82c18ce101SOliver Hartkopp int ifindex; 83c18ce101SOliver Hartkopp struct notifier_block notifier; 84c18ce101SOliver Hartkopp int loopback; 85c18ce101SOliver Hartkopp int recv_own_msgs; 86e2d265d3SOliver Hartkopp int fd_frames; 87c18ce101SOliver Hartkopp int count; /* number of active filters */ 88c18ce101SOliver Hartkopp struct can_filter dfilter; /* default/single filter */ 89c18ce101SOliver Hartkopp struct can_filter *filter; /* pointer to filter(s) */ 90c18ce101SOliver Hartkopp can_err_mask_t err_mask; 91c18ce101SOliver Hartkopp }; 92c18ce101SOliver Hartkopp 931e55659cSOliver Hartkopp /* 941e55659cSOliver Hartkopp * Return pointer to store the extra msg flags for raw_recvmsg(). 951e55659cSOliver Hartkopp * We use the space of one unsigned int beyond the 'struct sockaddr_can' 961e55659cSOliver Hartkopp * in skb->cb. 971e55659cSOliver Hartkopp */ 981e55659cSOliver Hartkopp static inline unsigned int *raw_flags(struct sk_buff *skb) 991e55659cSOliver Hartkopp { 1001e55659cSOliver Hartkopp BUILD_BUG_ON(sizeof(skb->cb) <= (sizeof(struct sockaddr_can) + 1011e55659cSOliver Hartkopp sizeof(unsigned int))); 1021e55659cSOliver Hartkopp 1031e55659cSOliver Hartkopp /* return pointer after struct sockaddr_can */ 1041e55659cSOliver Hartkopp return (unsigned int *)(&((struct sockaddr_can *)skb->cb)[1]); 1051e55659cSOliver Hartkopp } 1061e55659cSOliver Hartkopp 107c18ce101SOliver Hartkopp static inline struct raw_sock *raw_sk(const struct sock *sk) 108c18ce101SOliver Hartkopp { 109c18ce101SOliver Hartkopp return (struct raw_sock *)sk; 110c18ce101SOliver Hartkopp } 111c18ce101SOliver Hartkopp 1121e55659cSOliver Hartkopp static void raw_rcv(struct sk_buff *oskb, void *data) 113c18ce101SOliver Hartkopp { 114c18ce101SOliver Hartkopp struct sock *sk = (struct sock *)data; 115c18ce101SOliver Hartkopp struct raw_sock *ro = raw_sk(sk); 116c18ce101SOliver Hartkopp struct sockaddr_can *addr; 1171e55659cSOliver Hartkopp struct sk_buff *skb; 1181e55659cSOliver Hartkopp unsigned int *pflags; 119c18ce101SOliver Hartkopp 120c18ce101SOliver Hartkopp /* check the received tx sock reference */ 1211e55659cSOliver Hartkopp if (!ro->recv_own_msgs && oskb->sk == sk) 122c18ce101SOliver Hartkopp return; 1231fa17d4bSOliver Hartkopp 124e2d265d3SOliver Hartkopp /* do not pass frames with DLC > 8 to a legacy socket */ 125e2d265d3SOliver Hartkopp if (!ro->fd_frames) { 126e2d265d3SOliver Hartkopp struct canfd_frame *cfd = (struct canfd_frame *)oskb->data; 127e2d265d3SOliver Hartkopp 128e2d265d3SOliver Hartkopp if (unlikely(cfd->len > CAN_MAX_DLEN)) 129e2d265d3SOliver Hartkopp return; 130e2d265d3SOliver Hartkopp } 131e2d265d3SOliver Hartkopp 1321fa17d4bSOliver Hartkopp /* clone the given skb to be able to enqueue it into the rcv queue */ 1331e55659cSOliver Hartkopp skb = skb_clone(oskb, GFP_ATOMIC); 1341fa17d4bSOliver Hartkopp if (!skb) 1351fa17d4bSOliver Hartkopp return; 136c18ce101SOliver Hartkopp 137c18ce101SOliver Hartkopp /* 138c18ce101SOliver Hartkopp * Put the datagram to the queue so that raw_recvmsg() can 139c18ce101SOliver Hartkopp * get it from there. We need to pass the interface index to 140c18ce101SOliver Hartkopp * raw_recvmsg(). We pass a whole struct sockaddr_can in skb->cb 141c18ce101SOliver Hartkopp * containing the interface index. 142c18ce101SOliver Hartkopp */ 143c18ce101SOliver Hartkopp 144c18ce101SOliver Hartkopp BUILD_BUG_ON(sizeof(skb->cb) < sizeof(struct sockaddr_can)); 145c18ce101SOliver Hartkopp addr = (struct sockaddr_can *)skb->cb; 146c18ce101SOliver Hartkopp memset(addr, 0, sizeof(*addr)); 147c18ce101SOliver Hartkopp addr->can_family = AF_CAN; 148c18ce101SOliver Hartkopp addr->can_ifindex = skb->dev->ifindex; 149c18ce101SOliver Hartkopp 1501e55659cSOliver Hartkopp /* add CAN specific message flags for raw_recvmsg() */ 1511e55659cSOliver Hartkopp pflags = raw_flags(skb); 1521e55659cSOliver Hartkopp *pflags = 0; 1531e55659cSOliver Hartkopp if (oskb->sk) 1541e55659cSOliver Hartkopp *pflags |= MSG_DONTROUTE; 1551e55659cSOliver Hartkopp if (oskb->sk == sk) 1561e55659cSOliver Hartkopp *pflags |= MSG_CONFIRM; 1571e55659cSOliver Hartkopp 158a219994bSUrs Thuermann if (sock_queue_rcv_skb(sk, skb) < 0) 159c18ce101SOliver Hartkopp kfree_skb(skb); 160c18ce101SOliver Hartkopp } 161c18ce101SOliver Hartkopp 162c18ce101SOliver Hartkopp static int raw_enable_filters(struct net_device *dev, struct sock *sk, 163a219994bSUrs Thuermann struct can_filter *filter, int count) 164c18ce101SOliver Hartkopp { 165c18ce101SOliver Hartkopp int err = 0; 166c18ce101SOliver Hartkopp int i; 167c18ce101SOliver Hartkopp 168c18ce101SOliver Hartkopp for (i = 0; i < count; i++) { 169c18ce101SOliver Hartkopp err = can_rx_register(dev, filter[i].can_id, 170c18ce101SOliver Hartkopp filter[i].can_mask, 171c18ce101SOliver Hartkopp raw_rcv, sk, "raw"); 172c18ce101SOliver Hartkopp if (err) { 173c18ce101SOliver Hartkopp /* clean up successfully registered filters */ 174c18ce101SOliver Hartkopp while (--i >= 0) 175c18ce101SOliver Hartkopp can_rx_unregister(dev, filter[i].can_id, 176c18ce101SOliver Hartkopp filter[i].can_mask, 177c18ce101SOliver Hartkopp raw_rcv, sk); 178c18ce101SOliver Hartkopp break; 179c18ce101SOliver Hartkopp } 180c18ce101SOliver Hartkopp } 181c18ce101SOliver Hartkopp 182c18ce101SOliver Hartkopp return err; 183c18ce101SOliver Hartkopp } 184c18ce101SOliver Hartkopp 185c18ce101SOliver Hartkopp static int raw_enable_errfilter(struct net_device *dev, struct sock *sk, 186c18ce101SOliver Hartkopp can_err_mask_t err_mask) 187c18ce101SOliver Hartkopp { 188c18ce101SOliver Hartkopp int err = 0; 189c18ce101SOliver Hartkopp 190c18ce101SOliver Hartkopp if (err_mask) 191c18ce101SOliver Hartkopp err = can_rx_register(dev, 0, err_mask | CAN_ERR_FLAG, 192c18ce101SOliver Hartkopp raw_rcv, sk, "raw"); 193c18ce101SOliver Hartkopp 194c18ce101SOliver Hartkopp return err; 195c18ce101SOliver Hartkopp } 196c18ce101SOliver Hartkopp 197c18ce101SOliver Hartkopp static void raw_disable_filters(struct net_device *dev, struct sock *sk, 198a219994bSUrs Thuermann struct can_filter *filter, int count) 199c18ce101SOliver Hartkopp { 200c18ce101SOliver Hartkopp int i; 201c18ce101SOliver Hartkopp 202c18ce101SOliver Hartkopp for (i = 0; i < count; i++) 203c18ce101SOliver Hartkopp can_rx_unregister(dev, filter[i].can_id, filter[i].can_mask, 204c18ce101SOliver Hartkopp raw_rcv, sk); 205c18ce101SOliver Hartkopp } 206c18ce101SOliver Hartkopp 207c18ce101SOliver Hartkopp static inline void raw_disable_errfilter(struct net_device *dev, 208c18ce101SOliver Hartkopp struct sock *sk, 209c18ce101SOliver Hartkopp can_err_mask_t err_mask) 210c18ce101SOliver Hartkopp 211c18ce101SOliver Hartkopp { 212c18ce101SOliver Hartkopp if (err_mask) 213c18ce101SOliver Hartkopp can_rx_unregister(dev, 0, err_mask | CAN_ERR_FLAG, 214c18ce101SOliver Hartkopp raw_rcv, sk); 215c18ce101SOliver Hartkopp } 216c18ce101SOliver Hartkopp 217c18ce101SOliver Hartkopp static inline void raw_disable_allfilters(struct net_device *dev, 218c18ce101SOliver Hartkopp struct sock *sk) 219c18ce101SOliver Hartkopp { 220c18ce101SOliver Hartkopp struct raw_sock *ro = raw_sk(sk); 221c18ce101SOliver Hartkopp 222c18ce101SOliver Hartkopp raw_disable_filters(dev, sk, ro->filter, ro->count); 223c18ce101SOliver Hartkopp raw_disable_errfilter(dev, sk, ro->err_mask); 224c18ce101SOliver Hartkopp } 225c18ce101SOliver Hartkopp 226c18ce101SOliver Hartkopp static int raw_enable_allfilters(struct net_device *dev, struct sock *sk) 227c18ce101SOliver Hartkopp { 228c18ce101SOliver Hartkopp struct raw_sock *ro = raw_sk(sk); 229c18ce101SOliver Hartkopp int err; 230c18ce101SOliver Hartkopp 231c18ce101SOliver Hartkopp err = raw_enable_filters(dev, sk, ro->filter, ro->count); 232c18ce101SOliver Hartkopp if (!err) { 233c18ce101SOliver Hartkopp err = raw_enable_errfilter(dev, sk, ro->err_mask); 234c18ce101SOliver Hartkopp if (err) 235c18ce101SOliver Hartkopp raw_disable_filters(dev, sk, ro->filter, ro->count); 236c18ce101SOliver Hartkopp } 237c18ce101SOliver Hartkopp 238c18ce101SOliver Hartkopp return err; 239c18ce101SOliver Hartkopp } 240c18ce101SOliver Hartkopp 241c18ce101SOliver Hartkopp static int raw_notifier(struct notifier_block *nb, 242351638e7SJiri Pirko unsigned long msg, void *ptr) 243c18ce101SOliver Hartkopp { 244351638e7SJiri Pirko struct net_device *dev = netdev_notifier_info_to_dev(ptr); 245c18ce101SOliver Hartkopp struct raw_sock *ro = container_of(nb, struct raw_sock, notifier); 246c18ce101SOliver Hartkopp struct sock *sk = &ro->sk; 247c18ce101SOliver Hartkopp 248721499e8SYOSHIFUJI Hideaki if (!net_eq(dev_net(dev), &init_net)) 249c18ce101SOliver Hartkopp return NOTIFY_DONE; 250c18ce101SOliver Hartkopp 251c18ce101SOliver Hartkopp if (dev->type != ARPHRD_CAN) 252c18ce101SOliver Hartkopp return NOTIFY_DONE; 253c18ce101SOliver Hartkopp 254c18ce101SOliver Hartkopp if (ro->ifindex != dev->ifindex) 255c18ce101SOliver Hartkopp return NOTIFY_DONE; 256c18ce101SOliver Hartkopp 257c18ce101SOliver Hartkopp switch (msg) { 258c18ce101SOliver Hartkopp 259c18ce101SOliver Hartkopp case NETDEV_UNREGISTER: 260c18ce101SOliver Hartkopp lock_sock(sk); 261c18ce101SOliver Hartkopp /* remove current filters & unregister */ 262c18ce101SOliver Hartkopp if (ro->bound) 263c18ce101SOliver Hartkopp raw_disable_allfilters(dev, sk); 264c18ce101SOliver Hartkopp 265c18ce101SOliver Hartkopp if (ro->count > 1) 266c18ce101SOliver Hartkopp kfree(ro->filter); 267c18ce101SOliver Hartkopp 268c18ce101SOliver Hartkopp ro->ifindex = 0; 269c18ce101SOliver Hartkopp ro->bound = 0; 270c18ce101SOliver Hartkopp ro->count = 0; 271c18ce101SOliver Hartkopp release_sock(sk); 272c18ce101SOliver Hartkopp 273c18ce101SOliver Hartkopp sk->sk_err = ENODEV; 274c18ce101SOliver Hartkopp if (!sock_flag(sk, SOCK_DEAD)) 275c18ce101SOliver Hartkopp sk->sk_error_report(sk); 276c18ce101SOliver Hartkopp break; 277c18ce101SOliver Hartkopp 278c18ce101SOliver Hartkopp case NETDEV_DOWN: 279c18ce101SOliver Hartkopp sk->sk_err = ENETDOWN; 280c18ce101SOliver Hartkopp if (!sock_flag(sk, SOCK_DEAD)) 281c18ce101SOliver Hartkopp sk->sk_error_report(sk); 282c18ce101SOliver Hartkopp break; 283c18ce101SOliver Hartkopp } 284c18ce101SOliver Hartkopp 285c18ce101SOliver Hartkopp return NOTIFY_DONE; 286c18ce101SOliver Hartkopp } 287c18ce101SOliver Hartkopp 288c18ce101SOliver Hartkopp static int raw_init(struct sock *sk) 289c18ce101SOliver Hartkopp { 290c18ce101SOliver Hartkopp struct raw_sock *ro = raw_sk(sk); 291c18ce101SOliver Hartkopp 292c18ce101SOliver Hartkopp ro->bound = 0; 293c18ce101SOliver Hartkopp ro->ifindex = 0; 294c18ce101SOliver Hartkopp 295c18ce101SOliver Hartkopp /* set default filter to single entry dfilter */ 296c18ce101SOliver Hartkopp ro->dfilter.can_id = 0; 297c18ce101SOliver Hartkopp ro->dfilter.can_mask = MASK_ALL; 298c18ce101SOliver Hartkopp ro->filter = &ro->dfilter; 299c18ce101SOliver Hartkopp ro->count = 1; 300c18ce101SOliver Hartkopp 301c18ce101SOliver Hartkopp /* set default loopback behaviour */ 302c18ce101SOliver Hartkopp ro->loopback = 1; 303c18ce101SOliver Hartkopp ro->recv_own_msgs = 0; 304e2d265d3SOliver Hartkopp ro->fd_frames = 0; 305c18ce101SOliver Hartkopp 306c18ce101SOliver Hartkopp /* set notifier */ 307c18ce101SOliver Hartkopp ro->notifier.notifier_call = raw_notifier; 308c18ce101SOliver Hartkopp 309c18ce101SOliver Hartkopp register_netdevice_notifier(&ro->notifier); 310c18ce101SOliver Hartkopp 311c18ce101SOliver Hartkopp return 0; 312c18ce101SOliver Hartkopp } 313c18ce101SOliver Hartkopp 314c18ce101SOliver Hartkopp static int raw_release(struct socket *sock) 315c18ce101SOliver Hartkopp { 316c18ce101SOliver Hartkopp struct sock *sk = sock->sk; 31710022a6cSOliver Hartkopp struct raw_sock *ro; 31810022a6cSOliver Hartkopp 31910022a6cSOliver Hartkopp if (!sk) 32010022a6cSOliver Hartkopp return 0; 32110022a6cSOliver Hartkopp 32210022a6cSOliver Hartkopp ro = raw_sk(sk); 323c18ce101SOliver Hartkopp 324c18ce101SOliver Hartkopp unregister_netdevice_notifier(&ro->notifier); 325c18ce101SOliver Hartkopp 326c18ce101SOliver Hartkopp lock_sock(sk); 327c18ce101SOliver Hartkopp 328c18ce101SOliver Hartkopp /* remove current filters & unregister */ 329c18ce101SOliver Hartkopp if (ro->bound) { 330c18ce101SOliver Hartkopp if (ro->ifindex) { 331c18ce101SOliver Hartkopp struct net_device *dev; 332c18ce101SOliver Hartkopp 333c18ce101SOliver Hartkopp dev = dev_get_by_index(&init_net, ro->ifindex); 334c18ce101SOliver Hartkopp if (dev) { 335c18ce101SOliver Hartkopp raw_disable_allfilters(dev, sk); 336c18ce101SOliver Hartkopp dev_put(dev); 337c18ce101SOliver Hartkopp } 338c18ce101SOliver Hartkopp } else 339c18ce101SOliver Hartkopp raw_disable_allfilters(NULL, sk); 340c18ce101SOliver Hartkopp } 341c18ce101SOliver Hartkopp 342c18ce101SOliver Hartkopp if (ro->count > 1) 343c18ce101SOliver Hartkopp kfree(ro->filter); 344c18ce101SOliver Hartkopp 345c18ce101SOliver Hartkopp ro->ifindex = 0; 346c18ce101SOliver Hartkopp ro->bound = 0; 347c18ce101SOliver Hartkopp ro->count = 0; 348c18ce101SOliver Hartkopp 349f7e5cc0cSLothar Waßmann sock_orphan(sk); 350f7e5cc0cSLothar Waßmann sock->sk = NULL; 351f7e5cc0cSLothar Waßmann 352c18ce101SOliver Hartkopp release_sock(sk); 353c18ce101SOliver Hartkopp sock_put(sk); 354c18ce101SOliver Hartkopp 355c18ce101SOliver Hartkopp return 0; 356c18ce101SOliver Hartkopp } 357c18ce101SOliver Hartkopp 358c18ce101SOliver Hartkopp static int raw_bind(struct socket *sock, struct sockaddr *uaddr, int len) 359c18ce101SOliver Hartkopp { 360c18ce101SOliver Hartkopp struct sockaddr_can *addr = (struct sockaddr_can *)uaddr; 361c18ce101SOliver Hartkopp struct sock *sk = sock->sk; 362c18ce101SOliver Hartkopp struct raw_sock *ro = raw_sk(sk); 363c18ce101SOliver Hartkopp int ifindex; 364c18ce101SOliver Hartkopp int err = 0; 365c18ce101SOliver Hartkopp int notify_enetdown = 0; 366c18ce101SOliver Hartkopp 367c18ce101SOliver Hartkopp if (len < sizeof(*addr)) 368c18ce101SOliver Hartkopp return -EINVAL; 369c18ce101SOliver Hartkopp 370c18ce101SOliver Hartkopp lock_sock(sk); 371c18ce101SOliver Hartkopp 372c18ce101SOliver Hartkopp if (ro->bound && addr->can_ifindex == ro->ifindex) 373c18ce101SOliver Hartkopp goto out; 374c18ce101SOliver Hartkopp 375c18ce101SOliver Hartkopp if (addr->can_ifindex) { 376c18ce101SOliver Hartkopp struct net_device *dev; 377c18ce101SOliver Hartkopp 378c18ce101SOliver Hartkopp dev = dev_get_by_index(&init_net, addr->can_ifindex); 379c18ce101SOliver Hartkopp if (!dev) { 380c18ce101SOliver Hartkopp err = -ENODEV; 381c18ce101SOliver Hartkopp goto out; 382c18ce101SOliver Hartkopp } 383c18ce101SOliver Hartkopp if (dev->type != ARPHRD_CAN) { 384c18ce101SOliver Hartkopp dev_put(dev); 385c18ce101SOliver Hartkopp err = -ENODEV; 386c18ce101SOliver Hartkopp goto out; 387c18ce101SOliver Hartkopp } 388c18ce101SOliver Hartkopp if (!(dev->flags & IFF_UP)) 389c18ce101SOliver Hartkopp notify_enetdown = 1; 390c18ce101SOliver Hartkopp 391c18ce101SOliver Hartkopp ifindex = dev->ifindex; 392c18ce101SOliver Hartkopp 393c18ce101SOliver Hartkopp /* filters set by default/setsockopt */ 394c18ce101SOliver Hartkopp err = raw_enable_allfilters(dev, sk); 395c18ce101SOliver Hartkopp dev_put(dev); 396c18ce101SOliver Hartkopp } else { 397c18ce101SOliver Hartkopp ifindex = 0; 398c18ce101SOliver Hartkopp 399c18ce101SOliver Hartkopp /* filters set by default/setsockopt */ 400c18ce101SOliver Hartkopp err = raw_enable_allfilters(NULL, sk); 401c18ce101SOliver Hartkopp } 402c18ce101SOliver Hartkopp 403c18ce101SOliver Hartkopp if (!err) { 404c18ce101SOliver Hartkopp if (ro->bound) { 405c18ce101SOliver Hartkopp /* unregister old filters */ 406c18ce101SOliver Hartkopp if (ro->ifindex) { 407c18ce101SOliver Hartkopp struct net_device *dev; 408c18ce101SOliver Hartkopp 409c18ce101SOliver Hartkopp dev = dev_get_by_index(&init_net, ro->ifindex); 410c18ce101SOliver Hartkopp if (dev) { 411c18ce101SOliver Hartkopp raw_disable_allfilters(dev, sk); 412c18ce101SOliver Hartkopp dev_put(dev); 413c18ce101SOliver Hartkopp } 414c18ce101SOliver Hartkopp } else 415c18ce101SOliver Hartkopp raw_disable_allfilters(NULL, sk); 416c18ce101SOliver Hartkopp } 417c18ce101SOliver Hartkopp ro->ifindex = ifindex; 418c18ce101SOliver Hartkopp ro->bound = 1; 419c18ce101SOliver Hartkopp } 420c18ce101SOliver Hartkopp 421c18ce101SOliver Hartkopp out: 422c18ce101SOliver Hartkopp release_sock(sk); 423c18ce101SOliver Hartkopp 424c18ce101SOliver Hartkopp if (notify_enetdown) { 425c18ce101SOliver Hartkopp sk->sk_err = ENETDOWN; 426c18ce101SOliver Hartkopp if (!sock_flag(sk, SOCK_DEAD)) 427c18ce101SOliver Hartkopp sk->sk_error_report(sk); 428c18ce101SOliver Hartkopp } 429c18ce101SOliver Hartkopp 430c18ce101SOliver Hartkopp return err; 431c18ce101SOliver Hartkopp } 432c18ce101SOliver Hartkopp 433c18ce101SOliver Hartkopp static int raw_getname(struct socket *sock, struct sockaddr *uaddr, 434c18ce101SOliver Hartkopp int *len, int peer) 435c18ce101SOliver Hartkopp { 436c18ce101SOliver Hartkopp struct sockaddr_can *addr = (struct sockaddr_can *)uaddr; 437c18ce101SOliver Hartkopp struct sock *sk = sock->sk; 438c18ce101SOliver Hartkopp struct raw_sock *ro = raw_sk(sk); 439c18ce101SOliver Hartkopp 440c18ce101SOliver Hartkopp if (peer) 441c18ce101SOliver Hartkopp return -EOPNOTSUPP; 442c18ce101SOliver Hartkopp 443e84b90aeSEric Dumazet memset(addr, 0, sizeof(*addr)); 444c18ce101SOliver Hartkopp addr->can_family = AF_CAN; 445c18ce101SOliver Hartkopp addr->can_ifindex = ro->ifindex; 446c18ce101SOliver Hartkopp 447c18ce101SOliver Hartkopp *len = sizeof(*addr); 448c18ce101SOliver Hartkopp 449c18ce101SOliver Hartkopp return 0; 450c18ce101SOliver Hartkopp } 451c18ce101SOliver Hartkopp 452c18ce101SOliver Hartkopp static int raw_setsockopt(struct socket *sock, int level, int optname, 453b7058842SDavid S. Miller char __user *optval, unsigned int optlen) 454c18ce101SOliver Hartkopp { 455c18ce101SOliver Hartkopp struct sock *sk = sock->sk; 456c18ce101SOliver Hartkopp struct raw_sock *ro = raw_sk(sk); 457c18ce101SOliver Hartkopp struct can_filter *filter = NULL; /* dyn. alloc'ed filters */ 458c18ce101SOliver Hartkopp struct can_filter sfilter; /* single filter */ 459c18ce101SOliver Hartkopp struct net_device *dev = NULL; 460c18ce101SOliver Hartkopp can_err_mask_t err_mask = 0; 461c18ce101SOliver Hartkopp int count = 0; 462c18ce101SOliver Hartkopp int err = 0; 463c18ce101SOliver Hartkopp 464c18ce101SOliver Hartkopp if (level != SOL_CAN_RAW) 465c18ce101SOliver Hartkopp return -EINVAL; 466c18ce101SOliver Hartkopp 467c18ce101SOliver Hartkopp switch (optname) { 468c18ce101SOliver Hartkopp 469c18ce101SOliver Hartkopp case CAN_RAW_FILTER: 470c18ce101SOliver Hartkopp if (optlen % sizeof(struct can_filter) != 0) 471c18ce101SOliver Hartkopp return -EINVAL; 472c18ce101SOliver Hartkopp 473c18ce101SOliver Hartkopp count = optlen / sizeof(struct can_filter); 474c18ce101SOliver Hartkopp 475c18ce101SOliver Hartkopp if (count > 1) { 476c18ce101SOliver Hartkopp /* filter does not fit into dfilter => alloc space */ 47716dff918SJulia Lawall filter = memdup_user(optval, optlen); 47816dff918SJulia Lawall if (IS_ERR(filter)) 47916dff918SJulia Lawall return PTR_ERR(filter); 480c18ce101SOliver Hartkopp } else if (count == 1) { 4814ffa8701SEric Dumazet if (copy_from_user(&sfilter, optval, sizeof(sfilter))) 4823f91bd42SSam Ravnborg return -EFAULT; 483c18ce101SOliver Hartkopp } 484c18ce101SOliver Hartkopp 485c18ce101SOliver Hartkopp lock_sock(sk); 486c18ce101SOliver Hartkopp 487c18ce101SOliver Hartkopp if (ro->bound && ro->ifindex) 488c18ce101SOliver Hartkopp dev = dev_get_by_index(&init_net, ro->ifindex); 489c18ce101SOliver Hartkopp 490c18ce101SOliver Hartkopp if (ro->bound) { 491c18ce101SOliver Hartkopp /* (try to) register the new filters */ 492c18ce101SOliver Hartkopp if (count == 1) 493c18ce101SOliver Hartkopp err = raw_enable_filters(dev, sk, &sfilter, 1); 494c18ce101SOliver Hartkopp else 495c18ce101SOliver Hartkopp err = raw_enable_filters(dev, sk, filter, 496c18ce101SOliver Hartkopp count); 497c18ce101SOliver Hartkopp if (err) { 498c18ce101SOliver Hartkopp if (count > 1) 499c18ce101SOliver Hartkopp kfree(filter); 500c18ce101SOliver Hartkopp goto out_fil; 501c18ce101SOliver Hartkopp } 502c18ce101SOliver Hartkopp 503c18ce101SOliver Hartkopp /* remove old filter registrations */ 504c18ce101SOliver Hartkopp raw_disable_filters(dev, sk, ro->filter, ro->count); 505c18ce101SOliver Hartkopp } 506c18ce101SOliver Hartkopp 507c18ce101SOliver Hartkopp /* remove old filter space */ 508c18ce101SOliver Hartkopp if (ro->count > 1) 509c18ce101SOliver Hartkopp kfree(ro->filter); 510c18ce101SOliver Hartkopp 511c18ce101SOliver Hartkopp /* link new filters to the socket */ 512c18ce101SOliver Hartkopp if (count == 1) { 513c18ce101SOliver Hartkopp /* copy filter data for single filter */ 514c18ce101SOliver Hartkopp ro->dfilter = sfilter; 515c18ce101SOliver Hartkopp filter = &ro->dfilter; 516c18ce101SOliver Hartkopp } 517c18ce101SOliver Hartkopp ro->filter = filter; 518c18ce101SOliver Hartkopp ro->count = count; 519c18ce101SOliver Hartkopp 520c18ce101SOliver Hartkopp out_fil: 521c18ce101SOliver Hartkopp if (dev) 522c18ce101SOliver Hartkopp dev_put(dev); 523c18ce101SOliver Hartkopp 524c18ce101SOliver Hartkopp release_sock(sk); 525c18ce101SOliver Hartkopp 526c18ce101SOliver Hartkopp break; 527c18ce101SOliver Hartkopp 528c18ce101SOliver Hartkopp case CAN_RAW_ERR_FILTER: 529c18ce101SOliver Hartkopp if (optlen != sizeof(err_mask)) 530c18ce101SOliver Hartkopp return -EINVAL; 531c18ce101SOliver Hartkopp 5323f91bd42SSam Ravnborg if (copy_from_user(&err_mask, optval, optlen)) 5333f91bd42SSam Ravnborg return -EFAULT; 534c18ce101SOliver Hartkopp 535c18ce101SOliver Hartkopp err_mask &= CAN_ERR_MASK; 536c18ce101SOliver Hartkopp 537c18ce101SOliver Hartkopp lock_sock(sk); 538c18ce101SOliver Hartkopp 539c18ce101SOliver Hartkopp if (ro->bound && ro->ifindex) 540c18ce101SOliver Hartkopp dev = dev_get_by_index(&init_net, ro->ifindex); 541c18ce101SOliver Hartkopp 542c18ce101SOliver Hartkopp /* remove current error mask */ 543c18ce101SOliver Hartkopp if (ro->bound) { 544c18ce101SOliver Hartkopp /* (try to) register the new err_mask */ 545c18ce101SOliver Hartkopp err = raw_enable_errfilter(dev, sk, err_mask); 546c18ce101SOliver Hartkopp 547c18ce101SOliver Hartkopp if (err) 548c18ce101SOliver Hartkopp goto out_err; 549c18ce101SOliver Hartkopp 550c18ce101SOliver Hartkopp /* remove old err_mask registration */ 551c18ce101SOliver Hartkopp raw_disable_errfilter(dev, sk, ro->err_mask); 552c18ce101SOliver Hartkopp } 553c18ce101SOliver Hartkopp 554c18ce101SOliver Hartkopp /* link new err_mask to the socket */ 555c18ce101SOliver Hartkopp ro->err_mask = err_mask; 556c18ce101SOliver Hartkopp 557c18ce101SOliver Hartkopp out_err: 558c18ce101SOliver Hartkopp if (dev) 559c18ce101SOliver Hartkopp dev_put(dev); 560c18ce101SOliver Hartkopp 561c18ce101SOliver Hartkopp release_sock(sk); 562c18ce101SOliver Hartkopp 563c18ce101SOliver Hartkopp break; 564c18ce101SOliver Hartkopp 565c18ce101SOliver Hartkopp case CAN_RAW_LOOPBACK: 566c18ce101SOliver Hartkopp if (optlen != sizeof(ro->loopback)) 567c18ce101SOliver Hartkopp return -EINVAL; 568c18ce101SOliver Hartkopp 5693f91bd42SSam Ravnborg if (copy_from_user(&ro->loopback, optval, optlen)) 5703f91bd42SSam Ravnborg return -EFAULT; 571c18ce101SOliver Hartkopp 572c18ce101SOliver Hartkopp break; 573c18ce101SOliver Hartkopp 574c18ce101SOliver Hartkopp case CAN_RAW_RECV_OWN_MSGS: 575c18ce101SOliver Hartkopp if (optlen != sizeof(ro->recv_own_msgs)) 576c18ce101SOliver Hartkopp return -EINVAL; 577c18ce101SOliver Hartkopp 5783f91bd42SSam Ravnborg if (copy_from_user(&ro->recv_own_msgs, optval, optlen)) 5793f91bd42SSam Ravnborg return -EFAULT; 580c18ce101SOliver Hartkopp 581c18ce101SOliver Hartkopp break; 582c18ce101SOliver Hartkopp 583e2d265d3SOliver Hartkopp case CAN_RAW_FD_FRAMES: 584e2d265d3SOliver Hartkopp if (optlen != sizeof(ro->fd_frames)) 585e2d265d3SOliver Hartkopp return -EINVAL; 586e2d265d3SOliver Hartkopp 587e2d265d3SOliver Hartkopp if (copy_from_user(&ro->fd_frames, optval, optlen)) 588e2d265d3SOliver Hartkopp return -EFAULT; 589e2d265d3SOliver Hartkopp 590e2d265d3SOliver Hartkopp break; 591e2d265d3SOliver Hartkopp 592c18ce101SOliver Hartkopp default: 593c18ce101SOliver Hartkopp return -ENOPROTOOPT; 594c18ce101SOliver Hartkopp } 595c18ce101SOliver Hartkopp return err; 596c18ce101SOliver Hartkopp } 597c18ce101SOliver Hartkopp 598c18ce101SOliver Hartkopp static int raw_getsockopt(struct socket *sock, int level, int optname, 599c18ce101SOliver Hartkopp char __user *optval, int __user *optlen) 600c18ce101SOliver Hartkopp { 601c18ce101SOliver Hartkopp struct sock *sk = sock->sk; 602c18ce101SOliver Hartkopp struct raw_sock *ro = raw_sk(sk); 603c18ce101SOliver Hartkopp int len; 604c18ce101SOliver Hartkopp void *val; 605c18ce101SOliver Hartkopp int err = 0; 606c18ce101SOliver Hartkopp 607c18ce101SOliver Hartkopp if (level != SOL_CAN_RAW) 608c18ce101SOliver Hartkopp return -EINVAL; 609c18ce101SOliver Hartkopp if (get_user(len, optlen)) 610c18ce101SOliver Hartkopp return -EFAULT; 611c18ce101SOliver Hartkopp if (len < 0) 612c18ce101SOliver Hartkopp return -EINVAL; 613c18ce101SOliver Hartkopp 614c18ce101SOliver Hartkopp switch (optname) { 615c18ce101SOliver Hartkopp 616c18ce101SOliver Hartkopp case CAN_RAW_FILTER: 617c18ce101SOliver Hartkopp lock_sock(sk); 618c18ce101SOliver Hartkopp if (ro->count > 0) { 619c18ce101SOliver Hartkopp int fsize = ro->count * sizeof(struct can_filter); 620c18ce101SOliver Hartkopp if (len > fsize) 621c18ce101SOliver Hartkopp len = fsize; 622653252c2SPavel Emelyanov if (copy_to_user(optval, ro->filter, len)) 623653252c2SPavel Emelyanov err = -EFAULT; 624c18ce101SOliver Hartkopp } else 625c18ce101SOliver Hartkopp len = 0; 626c18ce101SOliver Hartkopp release_sock(sk); 627c18ce101SOliver Hartkopp 628c18ce101SOliver Hartkopp if (!err) 629c18ce101SOliver Hartkopp err = put_user(len, optlen); 630c18ce101SOliver Hartkopp return err; 631c18ce101SOliver Hartkopp 632c18ce101SOliver Hartkopp case CAN_RAW_ERR_FILTER: 633c18ce101SOliver Hartkopp if (len > sizeof(can_err_mask_t)) 634c18ce101SOliver Hartkopp len = sizeof(can_err_mask_t); 635c18ce101SOliver Hartkopp val = &ro->err_mask; 636c18ce101SOliver Hartkopp break; 637c18ce101SOliver Hartkopp 638c18ce101SOliver Hartkopp case CAN_RAW_LOOPBACK: 639c18ce101SOliver Hartkopp if (len > sizeof(int)) 640c18ce101SOliver Hartkopp len = sizeof(int); 641c18ce101SOliver Hartkopp val = &ro->loopback; 642c18ce101SOliver Hartkopp break; 643c18ce101SOliver Hartkopp 644c18ce101SOliver Hartkopp case CAN_RAW_RECV_OWN_MSGS: 645c18ce101SOliver Hartkopp if (len > sizeof(int)) 646c18ce101SOliver Hartkopp len = sizeof(int); 647c18ce101SOliver Hartkopp val = &ro->recv_own_msgs; 648c18ce101SOliver Hartkopp break; 649c18ce101SOliver Hartkopp 650e2d265d3SOliver Hartkopp case CAN_RAW_FD_FRAMES: 651e2d265d3SOliver Hartkopp if (len > sizeof(int)) 652e2d265d3SOliver Hartkopp len = sizeof(int); 653e2d265d3SOliver Hartkopp val = &ro->fd_frames; 654e2d265d3SOliver Hartkopp break; 655e2d265d3SOliver Hartkopp 656c18ce101SOliver Hartkopp default: 657c18ce101SOliver Hartkopp return -ENOPROTOOPT; 658c18ce101SOliver Hartkopp } 659c18ce101SOliver Hartkopp 660c18ce101SOliver Hartkopp if (put_user(len, optlen)) 661c18ce101SOliver Hartkopp return -EFAULT; 662c18ce101SOliver Hartkopp if (copy_to_user(optval, val, len)) 663c18ce101SOliver Hartkopp return -EFAULT; 664c18ce101SOliver Hartkopp return 0; 665c18ce101SOliver Hartkopp } 666c18ce101SOliver Hartkopp 667c18ce101SOliver Hartkopp static int raw_sendmsg(struct kiocb *iocb, struct socket *sock, 668c18ce101SOliver Hartkopp struct msghdr *msg, size_t size) 669c18ce101SOliver Hartkopp { 670c18ce101SOliver Hartkopp struct sock *sk = sock->sk; 671c18ce101SOliver Hartkopp struct raw_sock *ro = raw_sk(sk); 672c18ce101SOliver Hartkopp struct sk_buff *skb; 673c18ce101SOliver Hartkopp struct net_device *dev; 674c18ce101SOliver Hartkopp int ifindex; 675c18ce101SOliver Hartkopp int err; 676c18ce101SOliver Hartkopp 677c18ce101SOliver Hartkopp if (msg->msg_name) { 678342dfc30SSteffen Hurrle DECLARE_SOCKADDR(struct sockaddr_can *, addr, msg->msg_name); 679c18ce101SOliver Hartkopp 6805e507328SKurt Van Dijck if (msg->msg_namelen < sizeof(*addr)) 6815e507328SKurt Van Dijck return -EINVAL; 6825e507328SKurt Van Dijck 683c18ce101SOliver Hartkopp if (addr->can_family != AF_CAN) 684c18ce101SOliver Hartkopp return -EINVAL; 685c18ce101SOliver Hartkopp 686c18ce101SOliver Hartkopp ifindex = addr->can_ifindex; 687c18ce101SOliver Hartkopp } else 688c18ce101SOliver Hartkopp ifindex = ro->ifindex; 689c18ce101SOliver Hartkopp 690e2d265d3SOliver Hartkopp if (ro->fd_frames) { 691e2d265d3SOliver Hartkopp if (unlikely(size != CANFD_MTU && size != CAN_MTU)) 6927f2d38ebSOliver Hartkopp return -EINVAL; 693e2d265d3SOliver Hartkopp } else { 694e2d265d3SOliver Hartkopp if (unlikely(size != CAN_MTU)) 695e2d265d3SOliver Hartkopp return -EINVAL; 696e2d265d3SOliver Hartkopp } 6977f2d38ebSOliver Hartkopp 698c18ce101SOliver Hartkopp dev = dev_get_by_index(&init_net, ifindex); 699c18ce101SOliver Hartkopp if (!dev) 700c18ce101SOliver Hartkopp return -ENXIO; 701c18ce101SOliver Hartkopp 702156c2bb9SOliver Hartkopp skb = sock_alloc_send_skb(sk, size + sizeof(struct can_skb_priv), 703156c2bb9SOliver Hartkopp msg->msg_flags & MSG_DONTWAIT, &err); 704ebad5c09SIlpo Järvinen if (!skb) 705ebad5c09SIlpo Järvinen goto put_dev; 706c18ce101SOliver Hartkopp 7072bf3440dSOliver Hartkopp can_skb_reserve(skb); 7082bf3440dSOliver Hartkopp can_skb_prv(skb)->ifindex = dev->ifindex; 709156c2bb9SOliver Hartkopp 710c18ce101SOliver Hartkopp err = memcpy_fromiovec(skb_put(skb, size), msg->msg_iov, size); 711ebad5c09SIlpo Järvinen if (err < 0) 712ebad5c09SIlpo Järvinen goto free_skb; 713bf84a010SDaniel Borkmann 714bf84a010SDaniel Borkmann sock_tx_timestamp(sk, &skb_shinfo(skb)->tx_flags); 715cff0d6e6SOliver Hartkopp 716c18ce101SOliver Hartkopp skb->dev = dev; 717c18ce101SOliver Hartkopp skb->sk = sk; 718bb5ecb0cSRostislav Lisovy skb->priority = sk->sk_priority; 719c18ce101SOliver Hartkopp 720c18ce101SOliver Hartkopp err = can_send(skb, ro->loopback); 721c18ce101SOliver Hartkopp 722c18ce101SOliver Hartkopp dev_put(dev); 723c18ce101SOliver Hartkopp 724c18ce101SOliver Hartkopp if (err) 725ebad5c09SIlpo Järvinen goto send_failed; 726c18ce101SOliver Hartkopp 727c18ce101SOliver Hartkopp return size; 728ebad5c09SIlpo Järvinen 729ebad5c09SIlpo Järvinen free_skb: 730ebad5c09SIlpo Järvinen kfree_skb(skb); 731ebad5c09SIlpo Järvinen put_dev: 732ebad5c09SIlpo Järvinen dev_put(dev); 733ebad5c09SIlpo Järvinen send_failed: 734ebad5c09SIlpo Järvinen return err; 735c18ce101SOliver Hartkopp } 736c18ce101SOliver Hartkopp 737c18ce101SOliver Hartkopp static int raw_recvmsg(struct kiocb *iocb, struct socket *sock, 738c18ce101SOliver Hartkopp struct msghdr *msg, size_t size, int flags) 739c18ce101SOliver Hartkopp { 740c18ce101SOliver Hartkopp struct sock *sk = sock->sk; 741e2d265d3SOliver Hartkopp struct raw_sock *ro = raw_sk(sk); 742c18ce101SOliver Hartkopp struct sk_buff *skb; 743e2d265d3SOliver Hartkopp int rxmtu; 744a219994bSUrs Thuermann int err = 0; 745c18ce101SOliver Hartkopp int noblock; 746c18ce101SOliver Hartkopp 747c18ce101SOliver Hartkopp noblock = flags & MSG_DONTWAIT; 748c18ce101SOliver Hartkopp flags &= ~MSG_DONTWAIT; 749c18ce101SOliver Hartkopp 750a219994bSUrs Thuermann skb = skb_recv_datagram(sk, flags, noblock, &err); 751c18ce101SOliver Hartkopp if (!skb) 752a219994bSUrs Thuermann return err; 753c18ce101SOliver Hartkopp 754e2d265d3SOliver Hartkopp /* 755e2d265d3SOliver Hartkopp * when serving a legacy socket the DLC <= 8 is already checked inside 756e2d265d3SOliver Hartkopp * raw_rcv(). Now check if we need to pass a canfd_frame to a legacy 757e2d265d3SOliver Hartkopp * socket and cut the possible CANFD_MTU/CAN_MTU length to CAN_MTU 758e2d265d3SOliver Hartkopp */ 759e2d265d3SOliver Hartkopp if (!ro->fd_frames) 760e2d265d3SOliver Hartkopp rxmtu = CAN_MTU; 761e2d265d3SOliver Hartkopp else 762e2d265d3SOliver Hartkopp rxmtu = skb->len; 763e2d265d3SOliver Hartkopp 764e2d265d3SOliver Hartkopp if (size < rxmtu) 765c18ce101SOliver Hartkopp msg->msg_flags |= MSG_TRUNC; 766c18ce101SOliver Hartkopp else 767e2d265d3SOliver Hartkopp size = rxmtu; 768c18ce101SOliver Hartkopp 769a219994bSUrs Thuermann err = memcpy_toiovec(msg->msg_iov, skb->data, size); 770a219994bSUrs Thuermann if (err < 0) { 771c18ce101SOliver Hartkopp skb_free_datagram(sk, skb); 772a219994bSUrs Thuermann return err; 773c18ce101SOliver Hartkopp } 774c18ce101SOliver Hartkopp 7753b885787SNeil Horman sock_recv_ts_and_drops(msg, sk, skb); 776c18ce101SOliver Hartkopp 777c18ce101SOliver Hartkopp if (msg->msg_name) { 778342dfc30SSteffen Hurrle __sockaddr_check_size(sizeof(struct sockaddr_can)); 779c18ce101SOliver Hartkopp msg->msg_namelen = sizeof(struct sockaddr_can); 780c18ce101SOliver Hartkopp memcpy(msg->msg_name, skb->cb, msg->msg_namelen); 781c18ce101SOliver Hartkopp } 782c18ce101SOliver Hartkopp 7831e55659cSOliver Hartkopp /* assign the flags that have been recorded in raw_rcv() */ 7841e55659cSOliver Hartkopp msg->msg_flags |= *(raw_flags(skb)); 7851e55659cSOliver Hartkopp 786c18ce101SOliver Hartkopp skb_free_datagram(sk, skb); 787c18ce101SOliver Hartkopp 788c18ce101SOliver Hartkopp return size; 789c18ce101SOliver Hartkopp } 790c18ce101SOliver Hartkopp 79153914b67SOliver Hartkopp static const struct proto_ops raw_ops = { 792c18ce101SOliver Hartkopp .family = PF_CAN, 793c18ce101SOliver Hartkopp .release = raw_release, 794c18ce101SOliver Hartkopp .bind = raw_bind, 795c18ce101SOliver Hartkopp .connect = sock_no_connect, 796c18ce101SOliver Hartkopp .socketpair = sock_no_socketpair, 797c18ce101SOliver Hartkopp .accept = sock_no_accept, 798c18ce101SOliver Hartkopp .getname = raw_getname, 799c18ce101SOliver Hartkopp .poll = datagram_poll, 80053914b67SOliver Hartkopp .ioctl = can_ioctl, /* use can_ioctl() from af_can.c */ 801c18ce101SOliver Hartkopp .listen = sock_no_listen, 802c18ce101SOliver Hartkopp .shutdown = sock_no_shutdown, 803c18ce101SOliver Hartkopp .setsockopt = raw_setsockopt, 804c18ce101SOliver Hartkopp .getsockopt = raw_getsockopt, 805c18ce101SOliver Hartkopp .sendmsg = raw_sendmsg, 806c18ce101SOliver Hartkopp .recvmsg = raw_recvmsg, 807c18ce101SOliver Hartkopp .mmap = sock_no_mmap, 808c18ce101SOliver Hartkopp .sendpage = sock_no_sendpage, 809c18ce101SOliver Hartkopp }; 810c18ce101SOliver Hartkopp 811c18ce101SOliver Hartkopp static struct proto raw_proto __read_mostly = { 812c18ce101SOliver Hartkopp .name = "CAN_RAW", 813c18ce101SOliver Hartkopp .owner = THIS_MODULE, 814c18ce101SOliver Hartkopp .obj_size = sizeof(struct raw_sock), 815c18ce101SOliver Hartkopp .init = raw_init, 816c18ce101SOliver Hartkopp }; 817c18ce101SOliver Hartkopp 8181650629dSKurt Van Dijck static const struct can_proto raw_can_proto = { 819c18ce101SOliver Hartkopp .type = SOCK_RAW, 820c18ce101SOliver Hartkopp .protocol = CAN_RAW, 821c18ce101SOliver Hartkopp .ops = &raw_ops, 822c18ce101SOliver Hartkopp .prot = &raw_proto, 823c18ce101SOliver Hartkopp }; 824c18ce101SOliver Hartkopp 825c18ce101SOliver Hartkopp static __init int raw_module_init(void) 826c18ce101SOliver Hartkopp { 827c18ce101SOliver Hartkopp int err; 828c18ce101SOliver Hartkopp 829c18ce101SOliver Hartkopp printk(banner); 830c18ce101SOliver Hartkopp 831c18ce101SOliver Hartkopp err = can_proto_register(&raw_can_proto); 832c18ce101SOliver Hartkopp if (err < 0) 833c18ce101SOliver Hartkopp printk(KERN_ERR "can: registration of raw protocol failed\n"); 834c18ce101SOliver Hartkopp 835c18ce101SOliver Hartkopp return err; 836c18ce101SOliver Hartkopp } 837c18ce101SOliver Hartkopp 838c18ce101SOliver Hartkopp static __exit void raw_module_exit(void) 839c18ce101SOliver Hartkopp { 840c18ce101SOliver Hartkopp can_proto_unregister(&raw_can_proto); 841c18ce101SOliver Hartkopp } 842c18ce101SOliver Hartkopp 843c18ce101SOliver Hartkopp module_init(raw_module_init); 844c18ce101SOliver Hartkopp module_exit(raw_module_exit); 845