drm/i915: fix port checks for MST support on gen >= 11
[linux/fpc-iii.git] / net / qrtr / qrtr.c
blob9605979a349ee763f57feea3395c01fc43c26003
1 /*
2 * Copyright (c) 2015, Sony Mobile Communications Inc.
3 * Copyright (c) 2013, The Linux Foundation. All rights reserved.
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License version 2 and
7 * only version 2 as published by the Free Software Foundation.
9 * This program is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 * GNU General Public License for more details.
14 #include <linux/module.h>
15 #include <linux/netlink.h>
16 #include <linux/qrtr.h>
17 #include <linux/termios.h> /* For TIOCINQ/OUTQ */
19 #include <net/sock.h>
21 #include "qrtr.h"
23 #define QRTR_PROTO_VER_1 1
24 #define QRTR_PROTO_VER_2 3
26 /* auto-bind range */
27 #define QRTR_MIN_EPH_SOCKET 0x4000
28 #define QRTR_MAX_EPH_SOCKET 0x7fff
30 /**
31 * struct qrtr_hdr_v1 - (I|R)PCrouter packet header version 1
32 * @version: protocol version
33 * @type: packet type; one of QRTR_TYPE_*
34 * @src_node_id: source node
35 * @src_port_id: source port
36 * @confirm_rx: boolean; whether a resume-tx packet should be send in reply
37 * @size: length of packet, excluding this header
38 * @dst_node_id: destination node
39 * @dst_port_id: destination port
41 struct qrtr_hdr_v1 {
42 __le32 version;
43 __le32 type;
44 __le32 src_node_id;
45 __le32 src_port_id;
46 __le32 confirm_rx;
47 __le32 size;
48 __le32 dst_node_id;
49 __le32 dst_port_id;
50 } __packed;
52 /**
53 * struct qrtr_hdr_v2 - (I|R)PCrouter packet header later versions
54 * @version: protocol version
55 * @type: packet type; one of QRTR_TYPE_*
56 * @flags: bitmask of QRTR_FLAGS_*
57 * @optlen: length of optional header data
58 * @size: length of packet, excluding this header and optlen
59 * @src_node_id: source node
60 * @src_port_id: source port
61 * @dst_node_id: destination node
62 * @dst_port_id: destination port
64 struct qrtr_hdr_v2 {
65 u8 version;
66 u8 type;
67 u8 flags;
68 u8 optlen;
69 __le32 size;
70 __le16 src_node_id;
71 __le16 src_port_id;
72 __le16 dst_node_id;
73 __le16 dst_port_id;
76 #define QRTR_FLAGS_CONFIRM_RX BIT(0)
78 struct qrtr_cb {
79 u32 src_node;
80 u32 src_port;
81 u32 dst_node;
82 u32 dst_port;
84 u8 type;
85 u8 confirm_rx;
88 #define QRTR_HDR_MAX_SIZE max_t(size_t, sizeof(struct qrtr_hdr_v1), \
89 sizeof(struct qrtr_hdr_v2))
91 struct qrtr_sock {
92 /* WARNING: sk must be the first member */
93 struct sock sk;
94 struct sockaddr_qrtr us;
95 struct sockaddr_qrtr peer;
98 static inline struct qrtr_sock *qrtr_sk(struct sock *sk)
100 BUILD_BUG_ON(offsetof(struct qrtr_sock, sk) != 0);
101 return container_of(sk, struct qrtr_sock, sk);
104 static unsigned int qrtr_local_nid = -1;
106 /* for node ids */
107 static RADIX_TREE(qrtr_nodes, GFP_KERNEL);
108 /* broadcast list */
109 static LIST_HEAD(qrtr_all_nodes);
110 /* lock for qrtr_nodes, qrtr_all_nodes and node reference */
111 static DEFINE_MUTEX(qrtr_node_lock);
113 /* local port allocation management */
114 static DEFINE_IDR(qrtr_ports);
115 static DEFINE_MUTEX(qrtr_port_lock);
118 * struct qrtr_node - endpoint node
119 * @ep_lock: lock for endpoint management and callbacks
120 * @ep: endpoint
121 * @ref: reference count for node
122 * @nid: node id
123 * @rx_queue: receive queue
124 * @work: scheduled work struct for recv work
125 * @item: list item for broadcast list
127 struct qrtr_node {
128 struct mutex ep_lock;
129 struct qrtr_endpoint *ep;
130 struct kref ref;
131 unsigned int nid;
133 struct sk_buff_head rx_queue;
134 struct work_struct work;
135 struct list_head item;
138 static int qrtr_local_enqueue(struct qrtr_node *node, struct sk_buff *skb,
139 int type, struct sockaddr_qrtr *from,
140 struct sockaddr_qrtr *to);
141 static int qrtr_bcast_enqueue(struct qrtr_node *node, struct sk_buff *skb,
142 int type, struct sockaddr_qrtr *from,
143 struct sockaddr_qrtr *to);
145 /* Release node resources and free the node.
147 * Do not call directly, use qrtr_node_release. To be used with
148 * kref_put_mutex. As such, the node mutex is expected to be locked on call.
150 static void __qrtr_node_release(struct kref *kref)
152 struct qrtr_node *node = container_of(kref, struct qrtr_node, ref);
154 if (node->nid != QRTR_EP_NID_AUTO)
155 radix_tree_delete(&qrtr_nodes, node->nid);
157 list_del(&node->item);
158 mutex_unlock(&qrtr_node_lock);
160 cancel_work_sync(&node->work);
161 skb_queue_purge(&node->rx_queue);
162 kfree(node);
165 /* Increment reference to node. */
166 static struct qrtr_node *qrtr_node_acquire(struct qrtr_node *node)
168 if (node)
169 kref_get(&node->ref);
170 return node;
173 /* Decrement reference to node and release as necessary. */
174 static void qrtr_node_release(struct qrtr_node *node)
176 if (!node)
177 return;
178 kref_put_mutex(&node->ref, __qrtr_node_release, &qrtr_node_lock);
181 /* Pass an outgoing packet socket buffer to the endpoint driver. */
182 static int qrtr_node_enqueue(struct qrtr_node *node, struct sk_buff *skb,
183 int type, struct sockaddr_qrtr *from,
184 struct sockaddr_qrtr *to)
186 struct qrtr_hdr_v1 *hdr;
187 size_t len = skb->len;
188 int rc = -ENODEV;
190 hdr = skb_push(skb, sizeof(*hdr));
191 hdr->version = cpu_to_le32(QRTR_PROTO_VER_1);
192 hdr->type = cpu_to_le32(type);
193 hdr->src_node_id = cpu_to_le32(from->sq_node);
194 hdr->src_port_id = cpu_to_le32(from->sq_port);
195 if (to->sq_port == QRTR_PORT_CTRL) {
196 hdr->dst_node_id = cpu_to_le32(node->nid);
197 hdr->dst_port_id = cpu_to_le32(QRTR_NODE_BCAST);
198 } else {
199 hdr->dst_node_id = cpu_to_le32(to->sq_node);
200 hdr->dst_port_id = cpu_to_le32(to->sq_port);
203 hdr->size = cpu_to_le32(len);
204 hdr->confirm_rx = 0;
206 skb_put_padto(skb, ALIGN(len, 4) + sizeof(*hdr));
208 mutex_lock(&node->ep_lock);
209 if (node->ep)
210 rc = node->ep->xmit(node->ep, skb);
211 else
212 kfree_skb(skb);
213 mutex_unlock(&node->ep_lock);
215 return rc;
218 /* Lookup node by id.
220 * callers must release with qrtr_node_release()
222 static struct qrtr_node *qrtr_node_lookup(unsigned int nid)
224 struct qrtr_node *node;
226 mutex_lock(&qrtr_node_lock);
227 node = radix_tree_lookup(&qrtr_nodes, nid);
228 node = qrtr_node_acquire(node);
229 mutex_unlock(&qrtr_node_lock);
231 return node;
234 /* Assign node id to node.
236 * This is mostly useful for automatic node id assignment, based on
237 * the source id in the incoming packet.
239 static void qrtr_node_assign(struct qrtr_node *node, unsigned int nid)
241 if (node->nid != QRTR_EP_NID_AUTO || nid == QRTR_EP_NID_AUTO)
242 return;
244 mutex_lock(&qrtr_node_lock);
245 radix_tree_insert(&qrtr_nodes, nid, node);
246 node->nid = nid;
247 mutex_unlock(&qrtr_node_lock);
251 * qrtr_endpoint_post() - post incoming data
252 * @ep: endpoint handle
253 * @data: data pointer
254 * @len: size of data in bytes
256 * Return: 0 on success; negative error code on failure
258 int qrtr_endpoint_post(struct qrtr_endpoint *ep, const void *data, size_t len)
260 struct qrtr_node *node = ep->node;
261 const struct qrtr_hdr_v1 *v1;
262 const struct qrtr_hdr_v2 *v2;
263 struct sk_buff *skb;
264 struct qrtr_cb *cb;
265 unsigned int size;
266 unsigned int ver;
267 size_t hdrlen;
269 if (len & 3)
270 return -EINVAL;
272 skb = netdev_alloc_skb(NULL, len);
273 if (!skb)
274 return -ENOMEM;
276 cb = (struct qrtr_cb *)skb->cb;
278 /* Version field in v1 is little endian, so this works for both cases */
279 ver = *(u8*)data;
281 switch (ver) {
282 case QRTR_PROTO_VER_1:
283 v1 = data;
284 hdrlen = sizeof(*v1);
286 cb->type = le32_to_cpu(v1->type);
287 cb->src_node = le32_to_cpu(v1->src_node_id);
288 cb->src_port = le32_to_cpu(v1->src_port_id);
289 cb->confirm_rx = !!v1->confirm_rx;
290 cb->dst_node = le32_to_cpu(v1->dst_node_id);
291 cb->dst_port = le32_to_cpu(v1->dst_port_id);
293 size = le32_to_cpu(v1->size);
294 break;
295 case QRTR_PROTO_VER_2:
296 v2 = data;
297 hdrlen = sizeof(*v2) + v2->optlen;
299 cb->type = v2->type;
300 cb->confirm_rx = !!(v2->flags & QRTR_FLAGS_CONFIRM_RX);
301 cb->src_node = le16_to_cpu(v2->src_node_id);
302 cb->src_port = le16_to_cpu(v2->src_port_id);
303 cb->dst_node = le16_to_cpu(v2->dst_node_id);
304 cb->dst_port = le16_to_cpu(v2->dst_port_id);
306 if (cb->src_port == (u16)QRTR_PORT_CTRL)
307 cb->src_port = QRTR_PORT_CTRL;
308 if (cb->dst_port == (u16)QRTR_PORT_CTRL)
309 cb->dst_port = QRTR_PORT_CTRL;
311 size = le32_to_cpu(v2->size);
312 break;
313 default:
314 pr_err("qrtr: Invalid version %d\n", ver);
315 goto err;
318 if (len != ALIGN(size, 4) + hdrlen)
319 goto err;
321 if (cb->dst_port != QRTR_PORT_CTRL && cb->type != QRTR_TYPE_DATA)
322 goto err;
324 skb_put_data(skb, data + hdrlen, size);
326 skb_queue_tail(&node->rx_queue, skb);
327 schedule_work(&node->work);
329 return 0;
331 err:
332 kfree_skb(skb);
333 return -EINVAL;
336 EXPORT_SYMBOL_GPL(qrtr_endpoint_post);
339 * qrtr_alloc_ctrl_packet() - allocate control packet skb
340 * @pkt: reference to qrtr_ctrl_pkt pointer
342 * Returns newly allocated sk_buff, or NULL on failure
344 * This function allocates a sk_buff large enough to carry a qrtr_ctrl_pkt and
345 * on success returns a reference to the control packet in @pkt.
347 static struct sk_buff *qrtr_alloc_ctrl_packet(struct qrtr_ctrl_pkt **pkt)
349 const int pkt_len = sizeof(struct qrtr_ctrl_pkt);
350 struct sk_buff *skb;
352 skb = alloc_skb(QRTR_HDR_MAX_SIZE + pkt_len, GFP_KERNEL);
353 if (!skb)
354 return NULL;
356 skb_reserve(skb, QRTR_HDR_MAX_SIZE);
357 *pkt = skb_put_zero(skb, pkt_len);
359 return skb;
362 static struct qrtr_sock *qrtr_port_lookup(int port);
363 static void qrtr_port_put(struct qrtr_sock *ipc);
365 /* Handle and route a received packet.
367 * This will auto-reply with resume-tx packet as necessary.
369 static void qrtr_node_rx_work(struct work_struct *work)
371 struct qrtr_node *node = container_of(work, struct qrtr_node, work);
372 struct qrtr_ctrl_pkt *pkt;
373 struct sockaddr_qrtr dst;
374 struct sockaddr_qrtr src;
375 struct sk_buff *skb;
377 while ((skb = skb_dequeue(&node->rx_queue)) != NULL) {
378 struct qrtr_sock *ipc;
379 struct qrtr_cb *cb;
380 int confirm;
382 cb = (struct qrtr_cb *)skb->cb;
383 src.sq_node = cb->src_node;
384 src.sq_port = cb->src_port;
385 dst.sq_node = cb->dst_node;
386 dst.sq_port = cb->dst_port;
387 confirm = !!cb->confirm_rx;
389 qrtr_node_assign(node, cb->src_node);
391 ipc = qrtr_port_lookup(cb->dst_port);
392 if (!ipc) {
393 kfree_skb(skb);
394 } else {
395 if (sock_queue_rcv_skb(&ipc->sk, skb))
396 kfree_skb(skb);
398 qrtr_port_put(ipc);
401 if (confirm) {
402 skb = qrtr_alloc_ctrl_packet(&pkt);
403 if (!skb)
404 break;
406 pkt->cmd = cpu_to_le32(QRTR_TYPE_RESUME_TX);
407 pkt->client.node = cpu_to_le32(dst.sq_node);
408 pkt->client.port = cpu_to_le32(dst.sq_port);
410 if (qrtr_node_enqueue(node, skb, QRTR_TYPE_RESUME_TX,
411 &dst, &src))
412 break;
418 * qrtr_endpoint_register() - register a new endpoint
419 * @ep: endpoint to register
420 * @nid: desired node id; may be QRTR_EP_NID_AUTO for auto-assignment
421 * Return: 0 on success; negative error code on failure
423 * The specified endpoint must have the xmit function pointer set on call.
425 int qrtr_endpoint_register(struct qrtr_endpoint *ep, unsigned int nid)
427 struct qrtr_node *node;
429 if (!ep || !ep->xmit)
430 return -EINVAL;
432 node = kzalloc(sizeof(*node), GFP_KERNEL);
433 if (!node)
434 return -ENOMEM;
436 INIT_WORK(&node->work, qrtr_node_rx_work);
437 kref_init(&node->ref);
438 mutex_init(&node->ep_lock);
439 skb_queue_head_init(&node->rx_queue);
440 node->nid = QRTR_EP_NID_AUTO;
441 node->ep = ep;
443 qrtr_node_assign(node, nid);
445 mutex_lock(&qrtr_node_lock);
446 list_add(&node->item, &qrtr_all_nodes);
447 mutex_unlock(&qrtr_node_lock);
448 ep->node = node;
450 return 0;
452 EXPORT_SYMBOL_GPL(qrtr_endpoint_register);
455 * qrtr_endpoint_unregister - unregister endpoint
456 * @ep: endpoint to unregister
458 void qrtr_endpoint_unregister(struct qrtr_endpoint *ep)
460 struct qrtr_node *node = ep->node;
461 struct sockaddr_qrtr src = {AF_QIPCRTR, node->nid, QRTR_PORT_CTRL};
462 struct sockaddr_qrtr dst = {AF_QIPCRTR, qrtr_local_nid, QRTR_PORT_CTRL};
463 struct qrtr_ctrl_pkt *pkt;
464 struct sk_buff *skb;
466 mutex_lock(&node->ep_lock);
467 node->ep = NULL;
468 mutex_unlock(&node->ep_lock);
470 /* Notify the local controller about the event */
471 skb = qrtr_alloc_ctrl_packet(&pkt);
472 if (skb) {
473 pkt->cmd = cpu_to_le32(QRTR_TYPE_BYE);
474 qrtr_local_enqueue(NULL, skb, QRTR_TYPE_BYE, &src, &dst);
477 qrtr_node_release(node);
478 ep->node = NULL;
480 EXPORT_SYMBOL_GPL(qrtr_endpoint_unregister);
482 /* Lookup socket by port.
484 * Callers must release with qrtr_port_put()
486 static struct qrtr_sock *qrtr_port_lookup(int port)
488 struct qrtr_sock *ipc;
490 if (port == QRTR_PORT_CTRL)
491 port = 0;
493 mutex_lock(&qrtr_port_lock);
494 ipc = idr_find(&qrtr_ports, port);
495 if (ipc)
496 sock_hold(&ipc->sk);
497 mutex_unlock(&qrtr_port_lock);
499 return ipc;
502 /* Release acquired socket. */
503 static void qrtr_port_put(struct qrtr_sock *ipc)
505 sock_put(&ipc->sk);
508 /* Remove port assignment. */
509 static void qrtr_port_remove(struct qrtr_sock *ipc)
511 struct qrtr_ctrl_pkt *pkt;
512 struct sk_buff *skb;
513 int port = ipc->us.sq_port;
514 struct sockaddr_qrtr to;
516 to.sq_family = AF_QIPCRTR;
517 to.sq_node = QRTR_NODE_BCAST;
518 to.sq_port = QRTR_PORT_CTRL;
520 skb = qrtr_alloc_ctrl_packet(&pkt);
521 if (skb) {
522 pkt->cmd = cpu_to_le32(QRTR_TYPE_DEL_CLIENT);
523 pkt->client.node = cpu_to_le32(ipc->us.sq_node);
524 pkt->client.port = cpu_to_le32(ipc->us.sq_port);
526 skb_set_owner_w(skb, &ipc->sk);
527 qrtr_bcast_enqueue(NULL, skb, QRTR_TYPE_DEL_CLIENT, &ipc->us,
528 &to);
531 if (port == QRTR_PORT_CTRL)
532 port = 0;
534 __sock_put(&ipc->sk);
536 mutex_lock(&qrtr_port_lock);
537 idr_remove(&qrtr_ports, port);
538 mutex_unlock(&qrtr_port_lock);
541 /* Assign port number to socket.
543 * Specify port in the integer pointed to by port, and it will be adjusted
544 * on return as necesssary.
546 * Port may be:
547 * 0: Assign ephemeral port in [QRTR_MIN_EPH_SOCKET, QRTR_MAX_EPH_SOCKET]
548 * <QRTR_MIN_EPH_SOCKET: Specified; requires CAP_NET_ADMIN
549 * >QRTR_MIN_EPH_SOCKET: Specified; available to all
551 static int qrtr_port_assign(struct qrtr_sock *ipc, int *port)
553 int rc;
555 mutex_lock(&qrtr_port_lock);
556 if (!*port) {
557 rc = idr_alloc(&qrtr_ports, ipc,
558 QRTR_MIN_EPH_SOCKET, QRTR_MAX_EPH_SOCKET + 1,
559 GFP_ATOMIC);
560 if (rc >= 0)
561 *port = rc;
562 } else if (*port < QRTR_MIN_EPH_SOCKET && !capable(CAP_NET_ADMIN)) {
563 rc = -EACCES;
564 } else if (*port == QRTR_PORT_CTRL) {
565 rc = idr_alloc(&qrtr_ports, ipc, 0, 1, GFP_ATOMIC);
566 } else {
567 rc = idr_alloc(&qrtr_ports, ipc, *port, *port + 1, GFP_ATOMIC);
568 if (rc >= 0)
569 *port = rc;
571 mutex_unlock(&qrtr_port_lock);
573 if (rc == -ENOSPC)
574 return -EADDRINUSE;
575 else if (rc < 0)
576 return rc;
578 sock_hold(&ipc->sk);
580 return 0;
583 /* Reset all non-control ports */
584 static void qrtr_reset_ports(void)
586 struct qrtr_sock *ipc;
587 int id;
589 mutex_lock(&qrtr_port_lock);
590 idr_for_each_entry(&qrtr_ports, ipc, id) {
591 /* Don't reset control port */
592 if (id == 0)
593 continue;
595 sock_hold(&ipc->sk);
596 ipc->sk.sk_err = ENETRESET;
597 ipc->sk.sk_error_report(&ipc->sk);
598 sock_put(&ipc->sk);
600 mutex_unlock(&qrtr_port_lock);
603 /* Bind socket to address.
605 * Socket should be locked upon call.
607 static int __qrtr_bind(struct socket *sock,
608 const struct sockaddr_qrtr *addr, int zapped)
610 struct qrtr_sock *ipc = qrtr_sk(sock->sk);
611 struct sock *sk = sock->sk;
612 int port;
613 int rc;
615 /* rebinding ok */
616 if (!zapped && addr->sq_port == ipc->us.sq_port)
617 return 0;
619 port = addr->sq_port;
620 rc = qrtr_port_assign(ipc, &port);
621 if (rc)
622 return rc;
624 /* unbind previous, if any */
625 if (!zapped)
626 qrtr_port_remove(ipc);
627 ipc->us.sq_port = port;
629 sock_reset_flag(sk, SOCK_ZAPPED);
631 /* Notify all open ports about the new controller */
632 if (port == QRTR_PORT_CTRL)
633 qrtr_reset_ports();
635 return 0;
638 /* Auto bind to an ephemeral port. */
639 static int qrtr_autobind(struct socket *sock)
641 struct sock *sk = sock->sk;
642 struct sockaddr_qrtr addr;
644 if (!sock_flag(sk, SOCK_ZAPPED))
645 return 0;
647 addr.sq_family = AF_QIPCRTR;
648 addr.sq_node = qrtr_local_nid;
649 addr.sq_port = 0;
651 return __qrtr_bind(sock, &addr, 1);
654 /* Bind socket to specified sockaddr. */
655 static int qrtr_bind(struct socket *sock, struct sockaddr *saddr, int len)
657 DECLARE_SOCKADDR(struct sockaddr_qrtr *, addr, saddr);
658 struct qrtr_sock *ipc = qrtr_sk(sock->sk);
659 struct sock *sk = sock->sk;
660 int rc;
662 if (len < sizeof(*addr) || addr->sq_family != AF_QIPCRTR)
663 return -EINVAL;
665 if (addr->sq_node != ipc->us.sq_node)
666 return -EINVAL;
668 lock_sock(sk);
669 rc = __qrtr_bind(sock, addr, sock_flag(sk, SOCK_ZAPPED));
670 release_sock(sk);
672 return rc;
675 /* Queue packet to local peer socket. */
676 static int qrtr_local_enqueue(struct qrtr_node *node, struct sk_buff *skb,
677 int type, struct sockaddr_qrtr *from,
678 struct sockaddr_qrtr *to)
680 struct qrtr_sock *ipc;
681 struct qrtr_cb *cb;
683 ipc = qrtr_port_lookup(to->sq_port);
684 if (!ipc || &ipc->sk == skb->sk) { /* do not send to self */
685 kfree_skb(skb);
686 return -ENODEV;
689 cb = (struct qrtr_cb *)skb->cb;
690 cb->src_node = from->sq_node;
691 cb->src_port = from->sq_port;
693 if (sock_queue_rcv_skb(&ipc->sk, skb)) {
694 qrtr_port_put(ipc);
695 kfree_skb(skb);
696 return -ENOSPC;
699 qrtr_port_put(ipc);
701 return 0;
704 /* Queue packet for broadcast. */
705 static int qrtr_bcast_enqueue(struct qrtr_node *node, struct sk_buff *skb,
706 int type, struct sockaddr_qrtr *from,
707 struct sockaddr_qrtr *to)
709 struct sk_buff *skbn;
711 mutex_lock(&qrtr_node_lock);
712 list_for_each_entry(node, &qrtr_all_nodes, item) {
713 skbn = skb_clone(skb, GFP_KERNEL);
714 if (!skbn)
715 break;
716 skb_set_owner_w(skbn, skb->sk);
717 qrtr_node_enqueue(node, skbn, type, from, to);
719 mutex_unlock(&qrtr_node_lock);
721 qrtr_local_enqueue(NULL, skb, type, from, to);
723 return 0;
726 static int qrtr_sendmsg(struct socket *sock, struct msghdr *msg, size_t len)
728 DECLARE_SOCKADDR(struct sockaddr_qrtr *, addr, msg->msg_name);
729 int (*enqueue_fn)(struct qrtr_node *, struct sk_buff *, int,
730 struct sockaddr_qrtr *, struct sockaddr_qrtr *);
731 struct qrtr_sock *ipc = qrtr_sk(sock->sk);
732 struct sock *sk = sock->sk;
733 struct qrtr_node *node;
734 struct sk_buff *skb;
735 size_t plen;
736 u32 type = QRTR_TYPE_DATA;
737 int rc;
739 if (msg->msg_flags & ~(MSG_DONTWAIT))
740 return -EINVAL;
742 if (len > 65535)
743 return -EMSGSIZE;
745 lock_sock(sk);
747 if (addr) {
748 if (msg->msg_namelen < sizeof(*addr)) {
749 release_sock(sk);
750 return -EINVAL;
753 if (addr->sq_family != AF_QIPCRTR) {
754 release_sock(sk);
755 return -EINVAL;
758 rc = qrtr_autobind(sock);
759 if (rc) {
760 release_sock(sk);
761 return rc;
763 } else if (sk->sk_state == TCP_ESTABLISHED) {
764 addr = &ipc->peer;
765 } else {
766 release_sock(sk);
767 return -ENOTCONN;
770 node = NULL;
771 if (addr->sq_node == QRTR_NODE_BCAST) {
772 if (addr->sq_port != QRTR_PORT_CTRL &&
773 qrtr_local_nid != QRTR_NODE_BCAST) {
774 release_sock(sk);
775 return -ENOTCONN;
777 enqueue_fn = qrtr_bcast_enqueue;
778 } else if (addr->sq_node == ipc->us.sq_node) {
779 enqueue_fn = qrtr_local_enqueue;
780 } else {
781 node = qrtr_node_lookup(addr->sq_node);
782 if (!node) {
783 release_sock(sk);
784 return -ECONNRESET;
786 enqueue_fn = qrtr_node_enqueue;
789 plen = (len + 3) & ~3;
790 skb = sock_alloc_send_skb(sk, plen + QRTR_HDR_MAX_SIZE,
791 msg->msg_flags & MSG_DONTWAIT, &rc);
792 if (!skb)
793 goto out_node;
795 skb_reserve(skb, QRTR_HDR_MAX_SIZE);
797 rc = memcpy_from_msg(skb_put(skb, len), msg, len);
798 if (rc) {
799 kfree_skb(skb);
800 goto out_node;
803 if (ipc->us.sq_port == QRTR_PORT_CTRL) {
804 if (len < 4) {
805 rc = -EINVAL;
806 kfree_skb(skb);
807 goto out_node;
810 /* control messages already require the type as 'command' */
811 skb_copy_bits(skb, 0, &type, 4);
812 type = le32_to_cpu(type);
815 rc = enqueue_fn(node, skb, type, &ipc->us, addr);
816 if (rc >= 0)
817 rc = len;
819 out_node:
820 qrtr_node_release(node);
821 release_sock(sk);
823 return rc;
826 static int qrtr_recvmsg(struct socket *sock, struct msghdr *msg,
827 size_t size, int flags)
829 DECLARE_SOCKADDR(struct sockaddr_qrtr *, addr, msg->msg_name);
830 struct sock *sk = sock->sk;
831 struct sk_buff *skb;
832 struct qrtr_cb *cb;
833 int copied, rc;
835 lock_sock(sk);
837 if (sock_flag(sk, SOCK_ZAPPED)) {
838 release_sock(sk);
839 return -EADDRNOTAVAIL;
842 skb = skb_recv_datagram(sk, flags & ~MSG_DONTWAIT,
843 flags & MSG_DONTWAIT, &rc);
844 if (!skb) {
845 release_sock(sk);
846 return rc;
849 copied = skb->len;
850 if (copied > size) {
851 copied = size;
852 msg->msg_flags |= MSG_TRUNC;
855 rc = skb_copy_datagram_msg(skb, 0, msg, copied);
856 if (rc < 0)
857 goto out;
858 rc = copied;
860 if (addr) {
861 cb = (struct qrtr_cb *)skb->cb;
862 addr->sq_family = AF_QIPCRTR;
863 addr->sq_node = cb->src_node;
864 addr->sq_port = cb->src_port;
865 msg->msg_namelen = sizeof(*addr);
868 out:
869 skb_free_datagram(sk, skb);
870 release_sock(sk);
872 return rc;
875 static int qrtr_connect(struct socket *sock, struct sockaddr *saddr,
876 int len, int flags)
878 DECLARE_SOCKADDR(struct sockaddr_qrtr *, addr, saddr);
879 struct qrtr_sock *ipc = qrtr_sk(sock->sk);
880 struct sock *sk = sock->sk;
881 int rc;
883 if (len < sizeof(*addr) || addr->sq_family != AF_QIPCRTR)
884 return -EINVAL;
886 lock_sock(sk);
888 sk->sk_state = TCP_CLOSE;
889 sock->state = SS_UNCONNECTED;
891 rc = qrtr_autobind(sock);
892 if (rc) {
893 release_sock(sk);
894 return rc;
897 ipc->peer = *addr;
898 sock->state = SS_CONNECTED;
899 sk->sk_state = TCP_ESTABLISHED;
901 release_sock(sk);
903 return 0;
906 static int qrtr_getname(struct socket *sock, struct sockaddr *saddr,
907 int peer)
909 struct qrtr_sock *ipc = qrtr_sk(sock->sk);
910 struct sockaddr_qrtr qaddr;
911 struct sock *sk = sock->sk;
913 lock_sock(sk);
914 if (peer) {
915 if (sk->sk_state != TCP_ESTABLISHED) {
916 release_sock(sk);
917 return -ENOTCONN;
920 qaddr = ipc->peer;
921 } else {
922 qaddr = ipc->us;
924 release_sock(sk);
926 qaddr.sq_family = AF_QIPCRTR;
928 memcpy(saddr, &qaddr, sizeof(qaddr));
930 return sizeof(qaddr);
933 static int qrtr_ioctl(struct socket *sock, unsigned int cmd, unsigned long arg)
935 void __user *argp = (void __user *)arg;
936 struct qrtr_sock *ipc = qrtr_sk(sock->sk);
937 struct sock *sk = sock->sk;
938 struct sockaddr_qrtr *sq;
939 struct sk_buff *skb;
940 struct ifreq ifr;
941 long len = 0;
942 int rc = 0;
944 lock_sock(sk);
946 switch (cmd) {
947 case TIOCOUTQ:
948 len = sk->sk_sndbuf - sk_wmem_alloc_get(sk);
949 if (len < 0)
950 len = 0;
951 rc = put_user(len, (int __user *)argp);
952 break;
953 case TIOCINQ:
954 skb = skb_peek(&sk->sk_receive_queue);
955 if (skb)
956 len = skb->len;
957 rc = put_user(len, (int __user *)argp);
958 break;
959 case SIOCGIFADDR:
960 if (copy_from_user(&ifr, argp, sizeof(ifr))) {
961 rc = -EFAULT;
962 break;
965 sq = (struct sockaddr_qrtr *)&ifr.ifr_addr;
966 *sq = ipc->us;
967 if (copy_to_user(argp, &ifr, sizeof(ifr))) {
968 rc = -EFAULT;
969 break;
971 break;
972 case SIOCGSTAMP:
973 rc = sock_get_timestamp(sk, argp);
974 break;
975 case SIOCADDRT:
976 case SIOCDELRT:
977 case SIOCSIFADDR:
978 case SIOCGIFDSTADDR:
979 case SIOCSIFDSTADDR:
980 case SIOCGIFBRDADDR:
981 case SIOCSIFBRDADDR:
982 case SIOCGIFNETMASK:
983 case SIOCSIFNETMASK:
984 rc = -EINVAL;
985 break;
986 default:
987 rc = -ENOIOCTLCMD;
988 break;
991 release_sock(sk);
993 return rc;
996 static int qrtr_release(struct socket *sock)
998 struct sock *sk = sock->sk;
999 struct qrtr_sock *ipc;
1001 if (!sk)
1002 return 0;
1004 lock_sock(sk);
1006 ipc = qrtr_sk(sk);
1007 sk->sk_shutdown = SHUTDOWN_MASK;
1008 if (!sock_flag(sk, SOCK_DEAD))
1009 sk->sk_state_change(sk);
1011 sock_set_flag(sk, SOCK_DEAD);
1012 sock->sk = NULL;
1014 if (!sock_flag(sk, SOCK_ZAPPED))
1015 qrtr_port_remove(ipc);
1017 skb_queue_purge(&sk->sk_receive_queue);
1019 release_sock(sk);
1020 sock_put(sk);
1022 return 0;
1025 static const struct proto_ops qrtr_proto_ops = {
1026 .owner = THIS_MODULE,
1027 .family = AF_QIPCRTR,
1028 .bind = qrtr_bind,
1029 .connect = qrtr_connect,
1030 .socketpair = sock_no_socketpair,
1031 .accept = sock_no_accept,
1032 .listen = sock_no_listen,
1033 .sendmsg = qrtr_sendmsg,
1034 .recvmsg = qrtr_recvmsg,
1035 .getname = qrtr_getname,
1036 .ioctl = qrtr_ioctl,
1037 .poll = datagram_poll,
1038 .shutdown = sock_no_shutdown,
1039 .setsockopt = sock_no_setsockopt,
1040 .getsockopt = sock_no_getsockopt,
1041 .release = qrtr_release,
1042 .mmap = sock_no_mmap,
1043 .sendpage = sock_no_sendpage,
1046 static struct proto qrtr_proto = {
1047 .name = "QIPCRTR",
1048 .owner = THIS_MODULE,
1049 .obj_size = sizeof(struct qrtr_sock),
1052 static int qrtr_create(struct net *net, struct socket *sock,
1053 int protocol, int kern)
1055 struct qrtr_sock *ipc;
1056 struct sock *sk;
1058 if (sock->type != SOCK_DGRAM)
1059 return -EPROTOTYPE;
1061 sk = sk_alloc(net, AF_QIPCRTR, GFP_KERNEL, &qrtr_proto, kern);
1062 if (!sk)
1063 return -ENOMEM;
1065 sock_set_flag(sk, SOCK_ZAPPED);
1067 sock_init_data(sock, sk);
1068 sock->ops = &qrtr_proto_ops;
1070 ipc = qrtr_sk(sk);
1071 ipc->us.sq_family = AF_QIPCRTR;
1072 ipc->us.sq_node = qrtr_local_nid;
1073 ipc->us.sq_port = 0;
1075 return 0;
1078 static const struct nla_policy qrtr_policy[IFA_MAX + 1] = {
1079 [IFA_LOCAL] = { .type = NLA_U32 },
1082 static int qrtr_addr_doit(struct sk_buff *skb, struct nlmsghdr *nlh,
1083 struct netlink_ext_ack *extack)
1085 struct nlattr *tb[IFA_MAX + 1];
1086 struct ifaddrmsg *ifm;
1087 int rc;
1089 if (!netlink_capable(skb, CAP_NET_ADMIN))
1090 return -EPERM;
1092 if (!netlink_capable(skb, CAP_SYS_ADMIN))
1093 return -EPERM;
1095 ASSERT_RTNL();
1097 rc = nlmsg_parse(nlh, sizeof(*ifm), tb, IFA_MAX, qrtr_policy, extack);
1098 if (rc < 0)
1099 return rc;
1101 ifm = nlmsg_data(nlh);
1102 if (!tb[IFA_LOCAL])
1103 return -EINVAL;
1105 qrtr_local_nid = nla_get_u32(tb[IFA_LOCAL]);
1106 return 0;
1109 static const struct net_proto_family qrtr_family = {
1110 .owner = THIS_MODULE,
1111 .family = AF_QIPCRTR,
1112 .create = qrtr_create,
1115 static int __init qrtr_proto_init(void)
1117 int rc;
1119 rc = proto_register(&qrtr_proto, 1);
1120 if (rc)
1121 return rc;
1123 rc = sock_register(&qrtr_family);
1124 if (rc) {
1125 proto_unregister(&qrtr_proto);
1126 return rc;
1129 rc = rtnl_register_module(THIS_MODULE, PF_QIPCRTR, RTM_NEWADDR, qrtr_addr_doit, NULL, 0);
1130 if (rc) {
1131 sock_unregister(qrtr_family.family);
1132 proto_unregister(&qrtr_proto);
1135 return rc;
1137 postcore_initcall(qrtr_proto_init);
1139 static void __exit qrtr_proto_fini(void)
1141 rtnl_unregister(PF_QIPCRTR, RTM_NEWADDR);
1142 sock_unregister(qrtr_family.family);
1143 proto_unregister(&qrtr_proto);
1145 module_exit(qrtr_proto_fini);
1147 MODULE_DESCRIPTION("Qualcomm IPC-router driver");
1148 MODULE_LICENSE("GPL v2");
1149 MODULE_ALIAS_NETPROTO(PF_QIPCRTR);