1d021c344SAndy King /* 2d021c344SAndy King * VMware vSockets Driver 3d021c344SAndy King * 4d021c344SAndy King * Copyright (C) 2007-2013 VMware, Inc. All rights reserved. 5d021c344SAndy King * 6d021c344SAndy King * This program is free software; you can redistribute it and/or modify it 7d021c344SAndy King * under the terms of the GNU General Public License as published by the Free 8d021c344SAndy King * Software Foundation version 2 and no later version. 9d021c344SAndy King * 10d021c344SAndy King * This program is distributed in the hope that it will be useful, but WITHOUT 11d021c344SAndy King * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or 12d021c344SAndy King * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for 13d021c344SAndy King * more details. 14d021c344SAndy King */ 15d021c344SAndy King 16d021c344SAndy King #include <linux/types.h> 17d021c344SAndy King #include <linux/bitops.h> 18d021c344SAndy King #include <linux/cred.h> 19d021c344SAndy King #include <linux/init.h> 20d021c344SAndy King #include <linux/io.h> 21d021c344SAndy King #include <linux/kernel.h> 22d021c344SAndy King #include <linux/kmod.h> 23d021c344SAndy King #include <linux/list.h> 24d021c344SAndy King #include <linux/miscdevice.h> 25d021c344SAndy King #include <linux/module.h> 26d021c344SAndy King #include <linux/mutex.h> 27d021c344SAndy King #include <linux/net.h> 28d021c344SAndy King #include <linux/poll.h> 29d021c344SAndy King #include <linux/skbuff.h> 30d021c344SAndy King #include <linux/smp.h> 31d021c344SAndy King #include <linux/socket.h> 32d021c344SAndy King #include <linux/stddef.h> 33d021c344SAndy King #include <linux/unistd.h> 34d021c344SAndy King #include <linux/wait.h> 35d021c344SAndy King #include <linux/workqueue.h> 36d021c344SAndy King #include <net/sock.h> 3782a54d0eSAsias He #include <net/af_vsock.h> 38d021c344SAndy King 39d021c344SAndy King #include "vmci_transport_notify.h" 40d021c344SAndy King 41d021c344SAndy King static int vmci_transport_recv_dgram_cb(void *data, struct vmci_datagram *dg); 42d021c344SAndy King static int vmci_transport_recv_stream_cb(void *data, struct vmci_datagram *dg); 43d021c344SAndy King static void vmci_transport_peer_detach_cb(u32 sub_id, 44d021c344SAndy King const struct vmci_event_data *ed, 45d021c344SAndy King void *client_data); 46d021c344SAndy King static void vmci_transport_recv_pkt_work(struct work_struct *work); 474ef7ea91SJorgen Hansen static void vmci_transport_cleanup(struct work_struct *work); 48d021c344SAndy King static int vmci_transport_recv_listen(struct sock *sk, 49d021c344SAndy King struct vmci_transport_packet *pkt); 50d021c344SAndy King static int vmci_transport_recv_connecting_server( 51d021c344SAndy King struct sock *sk, 52d021c344SAndy King struct sock *pending, 53d021c344SAndy King struct vmci_transport_packet *pkt); 54d021c344SAndy King static int vmci_transport_recv_connecting_client( 55d021c344SAndy King struct sock *sk, 56d021c344SAndy King struct vmci_transport_packet *pkt); 57d021c344SAndy King static int vmci_transport_recv_connecting_client_negotiate( 58d021c344SAndy King struct sock *sk, 59d021c344SAndy King struct vmci_transport_packet *pkt); 60d021c344SAndy King static int vmci_transport_recv_connecting_client_invalid( 61d021c344SAndy King struct sock *sk, 62d021c344SAndy King struct vmci_transport_packet *pkt); 63d021c344SAndy King static int vmci_transport_recv_connected(struct sock *sk, 64d021c344SAndy King struct vmci_transport_packet *pkt); 65d021c344SAndy King static bool vmci_transport_old_proto_override(bool *old_pkt_proto); 66d021c344SAndy King static u16 vmci_transport_new_proto_supported_versions(void); 67d021c344SAndy King static bool vmci_transport_proto_to_notify_struct(struct sock *sk, u16 *proto, 68d021c344SAndy King bool old_pkt_proto); 69d021c344SAndy King 70d021c344SAndy King struct vmci_transport_recv_pkt_info { 71d021c344SAndy King struct work_struct work; 72d021c344SAndy King struct sock *sk; 73d021c344SAndy King struct vmci_transport_packet pkt; 74d021c344SAndy King }; 75d021c344SAndy King 764ef7ea91SJorgen Hansen static LIST_HEAD(vmci_transport_cleanup_list); 774ef7ea91SJorgen Hansen static DEFINE_SPINLOCK(vmci_transport_cleanup_lock); 784ef7ea91SJorgen Hansen static DECLARE_WORK(vmci_transport_cleanup_work, vmci_transport_cleanup); 794ef7ea91SJorgen Hansen 80d021c344SAndy King static struct vmci_handle vmci_transport_stream_handle = { VMCI_INVALID_ID, 81d021c344SAndy King VMCI_INVALID_ID }; 82d021c344SAndy King static u32 vmci_transport_qp_resumed_sub_id = VMCI_INVALID_ID; 83d021c344SAndy King 84d021c344SAndy King static int PROTOCOL_OVERRIDE = -1; 85d021c344SAndy King 86d021c344SAndy King #define VMCI_TRANSPORT_DEFAULT_QP_SIZE_MIN 128 87d021c344SAndy King #define VMCI_TRANSPORT_DEFAULT_QP_SIZE 262144 88d021c344SAndy King #define VMCI_TRANSPORT_DEFAULT_QP_SIZE_MAX 262144 89d021c344SAndy King 90d021c344SAndy King /* The default peer timeout indicates how long we will wait for a peer response 91d021c344SAndy King * to a control message. 92d021c344SAndy King */ 93d021c344SAndy King #define VSOCK_DEFAULT_CONNECT_TIMEOUT (2 * HZ) 94d021c344SAndy King 95d021c344SAndy King /* Helper function to convert from a VMCI error code to a VSock error code. */ 96d021c344SAndy King 97d021c344SAndy King static s32 vmci_transport_error_to_vsock_error(s32 vmci_error) 98d021c344SAndy King { 99d021c344SAndy King switch (vmci_error) { 100d021c344SAndy King case VMCI_ERROR_NO_MEM: 101*ed8bfd5cSColin Ian King return -ENOMEM; 102d021c344SAndy King case VMCI_ERROR_DUPLICATE_ENTRY: 103d021c344SAndy King case VMCI_ERROR_ALREADY_EXISTS: 104*ed8bfd5cSColin Ian King return -EADDRINUSE; 105d021c344SAndy King case VMCI_ERROR_NO_ACCESS: 106*ed8bfd5cSColin Ian King return -EPERM; 107d021c344SAndy King case VMCI_ERROR_NO_RESOURCES: 108*ed8bfd5cSColin Ian King return -ENOBUFS; 109d021c344SAndy King case VMCI_ERROR_INVALID_RESOURCE: 110*ed8bfd5cSColin Ian King return -EHOSTUNREACH; 111d021c344SAndy King case VMCI_ERROR_INVALID_ARGS: 112d021c344SAndy King default: 113*ed8bfd5cSColin Ian King break; 114d021c344SAndy King } 115*ed8bfd5cSColin Ian King return -EINVAL; 116d021c344SAndy King } 117d021c344SAndy King 1182a89f924SReilly Grant static u32 vmci_transport_peer_rid(u32 peer_cid) 1192a89f924SReilly Grant { 1202a89f924SReilly Grant if (VMADDR_CID_HYPERVISOR == peer_cid) 1212a89f924SReilly Grant return VMCI_TRANSPORT_HYPERVISOR_PACKET_RID; 1222a89f924SReilly Grant 1232a89f924SReilly Grant return VMCI_TRANSPORT_PACKET_RID; 1242a89f924SReilly Grant } 1252a89f924SReilly Grant 126d021c344SAndy King static inline void 127d021c344SAndy King vmci_transport_packet_init(struct vmci_transport_packet *pkt, 128d021c344SAndy King struct sockaddr_vm *src, 129d021c344SAndy King struct sockaddr_vm *dst, 130d021c344SAndy King u8 type, 131d021c344SAndy King u64 size, 132d021c344SAndy King u64 mode, 133d021c344SAndy King struct vmci_transport_waiting_info *wait, 134d021c344SAndy King u16 proto, 135d021c344SAndy King struct vmci_handle handle) 136d021c344SAndy King { 137d021c344SAndy King /* We register the stream control handler as an any cid handle so we 138d021c344SAndy King * must always send from a source address of VMADDR_CID_ANY 139d021c344SAndy King */ 140d021c344SAndy King pkt->dg.src = vmci_make_handle(VMADDR_CID_ANY, 141d021c344SAndy King VMCI_TRANSPORT_PACKET_RID); 142d021c344SAndy King pkt->dg.dst = vmci_make_handle(dst->svm_cid, 1432a89f924SReilly Grant vmci_transport_peer_rid(dst->svm_cid)); 144d021c344SAndy King pkt->dg.payload_size = sizeof(*pkt) - sizeof(pkt->dg); 145d021c344SAndy King pkt->version = VMCI_TRANSPORT_PACKET_VERSION; 146d021c344SAndy King pkt->type = type; 147d021c344SAndy King pkt->src_port = src->svm_port; 148d021c344SAndy King pkt->dst_port = dst->svm_port; 149d021c344SAndy King memset(&pkt->proto, 0, sizeof(pkt->proto)); 150d021c344SAndy King memset(&pkt->_reserved2, 0, sizeof(pkt->_reserved2)); 151d021c344SAndy King 152d021c344SAndy King switch (pkt->type) { 153d021c344SAndy King case VMCI_TRANSPORT_PACKET_TYPE_INVALID: 154d021c344SAndy King pkt->u.size = 0; 155d021c344SAndy King break; 156d021c344SAndy King 157d021c344SAndy King case VMCI_TRANSPORT_PACKET_TYPE_REQUEST: 158d021c344SAndy King case VMCI_TRANSPORT_PACKET_TYPE_NEGOTIATE: 159d021c344SAndy King pkt->u.size = size; 160d021c344SAndy King break; 161d021c344SAndy King 162d021c344SAndy King case VMCI_TRANSPORT_PACKET_TYPE_OFFER: 163d021c344SAndy King case VMCI_TRANSPORT_PACKET_TYPE_ATTACH: 164d021c344SAndy King pkt->u.handle = handle; 165d021c344SAndy King break; 166d021c344SAndy King 167d021c344SAndy King case VMCI_TRANSPORT_PACKET_TYPE_WROTE: 168d021c344SAndy King case VMCI_TRANSPORT_PACKET_TYPE_READ: 169d021c344SAndy King case VMCI_TRANSPORT_PACKET_TYPE_RST: 170d021c344SAndy King pkt->u.size = 0; 171d021c344SAndy King break; 172d021c344SAndy King 173d021c344SAndy King case VMCI_TRANSPORT_PACKET_TYPE_SHUTDOWN: 174d021c344SAndy King pkt->u.mode = mode; 175d021c344SAndy King break; 176d021c344SAndy King 177d021c344SAndy King case VMCI_TRANSPORT_PACKET_TYPE_WAITING_READ: 178d021c344SAndy King case VMCI_TRANSPORT_PACKET_TYPE_WAITING_WRITE: 179d021c344SAndy King memcpy(&pkt->u.wait, wait, sizeof(pkt->u.wait)); 180d021c344SAndy King break; 181d021c344SAndy King 182d021c344SAndy King case VMCI_TRANSPORT_PACKET_TYPE_REQUEST2: 183d021c344SAndy King case VMCI_TRANSPORT_PACKET_TYPE_NEGOTIATE2: 184d021c344SAndy King pkt->u.size = size; 185d021c344SAndy King pkt->proto = proto; 186d021c344SAndy King break; 187d021c344SAndy King } 188d021c344SAndy King } 189d021c344SAndy King 190d021c344SAndy King static inline void 191d021c344SAndy King vmci_transport_packet_get_addresses(struct vmci_transport_packet *pkt, 192d021c344SAndy King struct sockaddr_vm *local, 193d021c344SAndy King struct sockaddr_vm *remote) 194d021c344SAndy King { 195d021c344SAndy King vsock_addr_init(local, pkt->dg.dst.context, pkt->dst_port); 196d021c344SAndy King vsock_addr_init(remote, pkt->dg.src.context, pkt->src_port); 197d021c344SAndy King } 198d021c344SAndy King 199d021c344SAndy King static int 200d021c344SAndy King __vmci_transport_send_control_pkt(struct vmci_transport_packet *pkt, 201d021c344SAndy King struct sockaddr_vm *src, 202d021c344SAndy King struct sockaddr_vm *dst, 203d021c344SAndy King enum vmci_transport_packet_type type, 204d021c344SAndy King u64 size, 205d021c344SAndy King u64 mode, 206d021c344SAndy King struct vmci_transport_waiting_info *wait, 207d021c344SAndy King u16 proto, 208d021c344SAndy King struct vmci_handle handle, 209d021c344SAndy King bool convert_error) 210d021c344SAndy King { 211d021c344SAndy King int err; 212d021c344SAndy King 213d021c344SAndy King vmci_transport_packet_init(pkt, src, dst, type, size, mode, wait, 214d021c344SAndy King proto, handle); 215d021c344SAndy King err = vmci_datagram_send(&pkt->dg); 216d021c344SAndy King if (convert_error && (err < 0)) 217d021c344SAndy King return vmci_transport_error_to_vsock_error(err); 218d021c344SAndy King 219d021c344SAndy King return err; 220d021c344SAndy King } 221d021c344SAndy King 222d021c344SAndy King static int 223d021c344SAndy King vmci_transport_reply_control_pkt_fast(struct vmci_transport_packet *pkt, 224d021c344SAndy King enum vmci_transport_packet_type type, 225d021c344SAndy King u64 size, 226d021c344SAndy King u64 mode, 227d021c344SAndy King struct vmci_transport_waiting_info *wait, 228d021c344SAndy King struct vmci_handle handle) 229d021c344SAndy King { 230d021c344SAndy King struct vmci_transport_packet reply; 231d021c344SAndy King struct sockaddr_vm src, dst; 232d021c344SAndy King 233d021c344SAndy King if (pkt->type == VMCI_TRANSPORT_PACKET_TYPE_RST) { 234d021c344SAndy King return 0; 235d021c344SAndy King } else { 236d021c344SAndy King vmci_transport_packet_get_addresses(pkt, &src, &dst); 237d021c344SAndy King return __vmci_transport_send_control_pkt(&reply, &src, &dst, 238d021c344SAndy King type, 239d021c344SAndy King size, mode, wait, 240d021c344SAndy King VSOCK_PROTO_INVALID, 241d021c344SAndy King handle, true); 242d021c344SAndy King } 243d021c344SAndy King } 244d021c344SAndy King 245d021c344SAndy King static int 246d021c344SAndy King vmci_transport_send_control_pkt_bh(struct sockaddr_vm *src, 247d021c344SAndy King struct sockaddr_vm *dst, 248d021c344SAndy King enum vmci_transport_packet_type type, 249d021c344SAndy King u64 size, 250d021c344SAndy King u64 mode, 251d021c344SAndy King struct vmci_transport_waiting_info *wait, 252d021c344SAndy King struct vmci_handle handle) 253d021c344SAndy King { 254d021c344SAndy King /* Note that it is safe to use a single packet across all CPUs since 255d021c344SAndy King * two tasklets of the same type are guaranteed to not ever run 256d021c344SAndy King * simultaneously. If that ever changes, or VMCI stops using tasklets, 257d021c344SAndy King * we can use per-cpu packets. 258d021c344SAndy King */ 259d021c344SAndy King static struct vmci_transport_packet pkt; 260d021c344SAndy King 261d021c344SAndy King return __vmci_transport_send_control_pkt(&pkt, src, dst, type, 262d021c344SAndy King size, mode, wait, 263d021c344SAndy King VSOCK_PROTO_INVALID, handle, 264d021c344SAndy King false); 265d021c344SAndy King } 266d021c344SAndy King 267d021c344SAndy King static int 268d021c344SAndy King vmci_transport_send_control_pkt(struct sock *sk, 269d021c344SAndy King enum vmci_transport_packet_type type, 270d021c344SAndy King u64 size, 271d021c344SAndy King u64 mode, 272d021c344SAndy King struct vmci_transport_waiting_info *wait, 273d021c344SAndy King u16 proto, 274d021c344SAndy King struct vmci_handle handle) 275d021c344SAndy King { 276d021c344SAndy King struct vmci_transport_packet *pkt; 277d021c344SAndy King struct vsock_sock *vsk; 278d021c344SAndy King int err; 279d021c344SAndy King 280d021c344SAndy King vsk = vsock_sk(sk); 281d021c344SAndy King 282d021c344SAndy King if (!vsock_addr_bound(&vsk->local_addr)) 283d021c344SAndy King return -EINVAL; 284d021c344SAndy King 285d021c344SAndy King if (!vsock_addr_bound(&vsk->remote_addr)) 286d021c344SAndy King return -EINVAL; 287d021c344SAndy King 288d021c344SAndy King pkt = kmalloc(sizeof(*pkt), GFP_KERNEL); 289d021c344SAndy King if (!pkt) 290d021c344SAndy King return -ENOMEM; 291d021c344SAndy King 292d021c344SAndy King err = __vmci_transport_send_control_pkt(pkt, &vsk->local_addr, 293d021c344SAndy King &vsk->remote_addr, type, size, 294d021c344SAndy King mode, wait, proto, handle, 295d021c344SAndy King true); 296d021c344SAndy King kfree(pkt); 297d021c344SAndy King 298d021c344SAndy King return err; 299d021c344SAndy King } 300d021c344SAndy King 301d021c344SAndy King static int vmci_transport_send_reset_bh(struct sockaddr_vm *dst, 302d021c344SAndy King struct sockaddr_vm *src, 303d021c344SAndy King struct vmci_transport_packet *pkt) 304d021c344SAndy King { 305d021c344SAndy King if (pkt->type == VMCI_TRANSPORT_PACKET_TYPE_RST) 306d021c344SAndy King return 0; 307d021c344SAndy King return vmci_transport_send_control_pkt_bh( 308d021c344SAndy King dst, src, 309d021c344SAndy King VMCI_TRANSPORT_PACKET_TYPE_RST, 0, 310d021c344SAndy King 0, NULL, VMCI_INVALID_HANDLE); 311d021c344SAndy King } 312d021c344SAndy King 313d021c344SAndy King static int vmci_transport_send_reset(struct sock *sk, 314d021c344SAndy King struct vmci_transport_packet *pkt) 315d021c344SAndy King { 316d021c344SAndy King if (pkt->type == VMCI_TRANSPORT_PACKET_TYPE_RST) 317d021c344SAndy King return 0; 318d021c344SAndy King return vmci_transport_send_control_pkt(sk, 319d021c344SAndy King VMCI_TRANSPORT_PACKET_TYPE_RST, 320d021c344SAndy King 0, 0, NULL, VSOCK_PROTO_INVALID, 321d021c344SAndy King VMCI_INVALID_HANDLE); 322d021c344SAndy King } 323d021c344SAndy King 324d021c344SAndy King static int vmci_transport_send_negotiate(struct sock *sk, size_t size) 325d021c344SAndy King { 326d021c344SAndy King return vmci_transport_send_control_pkt( 327d021c344SAndy King sk, 328d021c344SAndy King VMCI_TRANSPORT_PACKET_TYPE_NEGOTIATE, 329d021c344SAndy King size, 0, NULL, 330d021c344SAndy King VSOCK_PROTO_INVALID, 331d021c344SAndy King VMCI_INVALID_HANDLE); 332d021c344SAndy King } 333d021c344SAndy King 334d021c344SAndy King static int vmci_transport_send_negotiate2(struct sock *sk, size_t size, 335d021c344SAndy King u16 version) 336d021c344SAndy King { 337d021c344SAndy King return vmci_transport_send_control_pkt( 338d021c344SAndy King sk, 339d021c344SAndy King VMCI_TRANSPORT_PACKET_TYPE_NEGOTIATE2, 340d021c344SAndy King size, 0, NULL, version, 341d021c344SAndy King VMCI_INVALID_HANDLE); 342d021c344SAndy King } 343d021c344SAndy King 344d021c344SAndy King static int vmci_transport_send_qp_offer(struct sock *sk, 345d021c344SAndy King struct vmci_handle handle) 346d021c344SAndy King { 347d021c344SAndy King return vmci_transport_send_control_pkt( 348d021c344SAndy King sk, VMCI_TRANSPORT_PACKET_TYPE_OFFER, 0, 349d021c344SAndy King 0, NULL, 350d021c344SAndy King VSOCK_PROTO_INVALID, handle); 351d021c344SAndy King } 352d021c344SAndy King 353d021c344SAndy King static int vmci_transport_send_attach(struct sock *sk, 354d021c344SAndy King struct vmci_handle handle) 355d021c344SAndy King { 356d021c344SAndy King return vmci_transport_send_control_pkt( 357d021c344SAndy King sk, VMCI_TRANSPORT_PACKET_TYPE_ATTACH, 358d021c344SAndy King 0, 0, NULL, VSOCK_PROTO_INVALID, 359d021c344SAndy King handle); 360d021c344SAndy King } 361d021c344SAndy King 362d021c344SAndy King static int vmci_transport_reply_reset(struct vmci_transport_packet *pkt) 363d021c344SAndy King { 364d021c344SAndy King return vmci_transport_reply_control_pkt_fast( 365d021c344SAndy King pkt, 366d021c344SAndy King VMCI_TRANSPORT_PACKET_TYPE_RST, 367d021c344SAndy King 0, 0, NULL, 368d021c344SAndy King VMCI_INVALID_HANDLE); 369d021c344SAndy King } 370d021c344SAndy King 371d021c344SAndy King static int vmci_transport_send_invalid_bh(struct sockaddr_vm *dst, 372d021c344SAndy King struct sockaddr_vm *src) 373d021c344SAndy King { 374d021c344SAndy King return vmci_transport_send_control_pkt_bh( 375d021c344SAndy King dst, src, 376d021c344SAndy King VMCI_TRANSPORT_PACKET_TYPE_INVALID, 377d021c344SAndy King 0, 0, NULL, VMCI_INVALID_HANDLE); 378d021c344SAndy King } 379d021c344SAndy King 380d021c344SAndy King int vmci_transport_send_wrote_bh(struct sockaddr_vm *dst, 381d021c344SAndy King struct sockaddr_vm *src) 382d021c344SAndy King { 383d021c344SAndy King return vmci_transport_send_control_pkt_bh( 384d021c344SAndy King dst, src, 385d021c344SAndy King VMCI_TRANSPORT_PACKET_TYPE_WROTE, 0, 386d021c344SAndy King 0, NULL, VMCI_INVALID_HANDLE); 387d021c344SAndy King } 388d021c344SAndy King 389d021c344SAndy King int vmci_transport_send_read_bh(struct sockaddr_vm *dst, 390d021c344SAndy King struct sockaddr_vm *src) 391d021c344SAndy King { 392d021c344SAndy King return vmci_transport_send_control_pkt_bh( 393d021c344SAndy King dst, src, 394d021c344SAndy King VMCI_TRANSPORT_PACKET_TYPE_READ, 0, 395d021c344SAndy King 0, NULL, VMCI_INVALID_HANDLE); 396d021c344SAndy King } 397d021c344SAndy King 398d021c344SAndy King int vmci_transport_send_wrote(struct sock *sk) 399d021c344SAndy King { 400d021c344SAndy King return vmci_transport_send_control_pkt( 401d021c344SAndy King sk, VMCI_TRANSPORT_PACKET_TYPE_WROTE, 0, 402d021c344SAndy King 0, NULL, VSOCK_PROTO_INVALID, 403d021c344SAndy King VMCI_INVALID_HANDLE); 404d021c344SAndy King } 405d021c344SAndy King 406d021c344SAndy King int vmci_transport_send_read(struct sock *sk) 407d021c344SAndy King { 408d021c344SAndy King return vmci_transport_send_control_pkt( 409d021c344SAndy King sk, VMCI_TRANSPORT_PACKET_TYPE_READ, 0, 410d021c344SAndy King 0, NULL, VSOCK_PROTO_INVALID, 411d021c344SAndy King VMCI_INVALID_HANDLE); 412d021c344SAndy King } 413d021c344SAndy King 414d021c344SAndy King int vmci_transport_send_waiting_write(struct sock *sk, 415d021c344SAndy King struct vmci_transport_waiting_info *wait) 416d021c344SAndy King { 417d021c344SAndy King return vmci_transport_send_control_pkt( 418d021c344SAndy King sk, VMCI_TRANSPORT_PACKET_TYPE_WAITING_WRITE, 419d021c344SAndy King 0, 0, wait, VSOCK_PROTO_INVALID, 420d021c344SAndy King VMCI_INVALID_HANDLE); 421d021c344SAndy King } 422d021c344SAndy King 423d021c344SAndy King int vmci_transport_send_waiting_read(struct sock *sk, 424d021c344SAndy King struct vmci_transport_waiting_info *wait) 425d021c344SAndy King { 426d021c344SAndy King return vmci_transport_send_control_pkt( 427d021c344SAndy King sk, VMCI_TRANSPORT_PACKET_TYPE_WAITING_READ, 428d021c344SAndy King 0, 0, wait, VSOCK_PROTO_INVALID, 429d021c344SAndy King VMCI_INVALID_HANDLE); 430d021c344SAndy King } 431d021c344SAndy King 432d021c344SAndy King static int vmci_transport_shutdown(struct vsock_sock *vsk, int mode) 433d021c344SAndy King { 434d021c344SAndy King return vmci_transport_send_control_pkt( 435d021c344SAndy King &vsk->sk, 436d021c344SAndy King VMCI_TRANSPORT_PACKET_TYPE_SHUTDOWN, 437d021c344SAndy King 0, mode, NULL, 438d021c344SAndy King VSOCK_PROTO_INVALID, 439d021c344SAndy King VMCI_INVALID_HANDLE); 440d021c344SAndy King } 441d021c344SAndy King 442d021c344SAndy King static int vmci_transport_send_conn_request(struct sock *sk, size_t size) 443d021c344SAndy King { 444d021c344SAndy King return vmci_transport_send_control_pkt(sk, 445d021c344SAndy King VMCI_TRANSPORT_PACKET_TYPE_REQUEST, 446d021c344SAndy King size, 0, NULL, 447d021c344SAndy King VSOCK_PROTO_INVALID, 448d021c344SAndy King VMCI_INVALID_HANDLE); 449d021c344SAndy King } 450d021c344SAndy King 451d021c344SAndy King static int vmci_transport_send_conn_request2(struct sock *sk, size_t size, 452d021c344SAndy King u16 version) 453d021c344SAndy King { 454d021c344SAndy King return vmci_transport_send_control_pkt( 455d021c344SAndy King sk, VMCI_TRANSPORT_PACKET_TYPE_REQUEST2, 456d021c344SAndy King size, 0, NULL, version, 457d021c344SAndy King VMCI_INVALID_HANDLE); 458d021c344SAndy King } 459d021c344SAndy King 460d021c344SAndy King static struct sock *vmci_transport_get_pending( 461d021c344SAndy King struct sock *listener, 462d021c344SAndy King struct vmci_transport_packet *pkt) 463d021c344SAndy King { 464d021c344SAndy King struct vsock_sock *vlistener; 465d021c344SAndy King struct vsock_sock *vpending; 466d021c344SAndy King struct sock *pending; 467990454b5SReilly Grant struct sockaddr_vm src; 468990454b5SReilly Grant 469990454b5SReilly Grant vsock_addr_init(&src, pkt->dg.src.context, pkt->src_port); 470d021c344SAndy King 471d021c344SAndy King vlistener = vsock_sk(listener); 472d021c344SAndy King 473d021c344SAndy King list_for_each_entry(vpending, &vlistener->pending_links, 474d021c344SAndy King pending_links) { 475d021c344SAndy King if (vsock_addr_equals_addr(&src, &vpending->remote_addr) && 476990454b5SReilly Grant pkt->dst_port == vpending->local_addr.svm_port) { 477d021c344SAndy King pending = sk_vsock(vpending); 478d021c344SAndy King sock_hold(pending); 479d021c344SAndy King goto found; 480d021c344SAndy King } 481d021c344SAndy King } 482d021c344SAndy King 483d021c344SAndy King pending = NULL; 484d021c344SAndy King found: 485d021c344SAndy King return pending; 486d021c344SAndy King 487d021c344SAndy King } 488d021c344SAndy King 489d021c344SAndy King static void vmci_transport_release_pending(struct sock *pending) 490d021c344SAndy King { 491d021c344SAndy King sock_put(pending); 492d021c344SAndy King } 493d021c344SAndy King 494d021c344SAndy King /* We allow two kinds of sockets to communicate with a restricted VM: 1) 495d021c344SAndy King * trusted sockets 2) sockets from applications running as the same user as the 496d021c344SAndy King * VM (this is only true for the host side and only when using hosted products) 497d021c344SAndy King */ 498d021c344SAndy King 499d021c344SAndy King static bool vmci_transport_is_trusted(struct vsock_sock *vsock, u32 peer_cid) 500d021c344SAndy King { 501d021c344SAndy King return vsock->trusted || 502d021c344SAndy King vmci_is_context_owner(peer_cid, vsock->owner->uid); 503d021c344SAndy King } 504d021c344SAndy King 505d021c344SAndy King /* We allow sending datagrams to and receiving datagrams from a restricted VM 506d021c344SAndy King * only if it is trusted as described in vmci_transport_is_trusted. 507d021c344SAndy King */ 508d021c344SAndy King 509d021c344SAndy King static bool vmci_transport_allow_dgram(struct vsock_sock *vsock, u32 peer_cid) 510d021c344SAndy King { 5112a89f924SReilly Grant if (VMADDR_CID_HYPERVISOR == peer_cid) 5122a89f924SReilly Grant return true; 5132a89f924SReilly Grant 514d021c344SAndy King if (vsock->cached_peer != peer_cid) { 515d021c344SAndy King vsock->cached_peer = peer_cid; 516d021c344SAndy King if (!vmci_transport_is_trusted(vsock, peer_cid) && 517d021c344SAndy King (vmci_context_get_priv_flags(peer_cid) & 518d021c344SAndy King VMCI_PRIVILEGE_FLAG_RESTRICTED)) { 519d021c344SAndy King vsock->cached_peer_allow_dgram = false; 520d021c344SAndy King } else { 521d021c344SAndy King vsock->cached_peer_allow_dgram = true; 522d021c344SAndy King } 523d021c344SAndy King } 524d021c344SAndy King 525d021c344SAndy King return vsock->cached_peer_allow_dgram; 526d021c344SAndy King } 527d021c344SAndy King 528d021c344SAndy King static int 529d021c344SAndy King vmci_transport_queue_pair_alloc(struct vmci_qp **qpair, 530d021c344SAndy King struct vmci_handle *handle, 531d021c344SAndy King u64 produce_size, 532d021c344SAndy King u64 consume_size, 533d021c344SAndy King u32 peer, u32 flags, bool trusted) 534d021c344SAndy King { 535d021c344SAndy King int err = 0; 536d021c344SAndy King 537d021c344SAndy King if (trusted) { 538d021c344SAndy King /* Try to allocate our queue pair as trusted. This will only 539d021c344SAndy King * work if vsock is running in the host. 540d021c344SAndy King */ 541d021c344SAndy King 542d021c344SAndy King err = vmci_qpair_alloc(qpair, handle, produce_size, 543d021c344SAndy King consume_size, 544d021c344SAndy King peer, flags, 545d021c344SAndy King VMCI_PRIVILEGE_FLAG_TRUSTED); 546d021c344SAndy King if (err != VMCI_ERROR_NO_ACCESS) 547d021c344SAndy King goto out; 548d021c344SAndy King 549d021c344SAndy King } 550d021c344SAndy King 551d021c344SAndy King err = vmci_qpair_alloc(qpair, handle, produce_size, consume_size, 552d021c344SAndy King peer, flags, VMCI_NO_PRIVILEGE_FLAGS); 553d021c344SAndy King out: 554d021c344SAndy King if (err < 0) { 555d021c344SAndy King pr_err("Could not attach to queue pair with %d\n", 556d021c344SAndy King err); 557d021c344SAndy King err = vmci_transport_error_to_vsock_error(err); 558d021c344SAndy King } 559d021c344SAndy King 560d021c344SAndy King return err; 561d021c344SAndy King } 562d021c344SAndy King 563d021c344SAndy King static int 564d021c344SAndy King vmci_transport_datagram_create_hnd(u32 resource_id, 565d021c344SAndy King u32 flags, 566d021c344SAndy King vmci_datagram_recv_cb recv_cb, 567d021c344SAndy King void *client_data, 568d021c344SAndy King struct vmci_handle *out_handle) 569d021c344SAndy King { 570d021c344SAndy King int err = 0; 571d021c344SAndy King 572d021c344SAndy King /* Try to allocate our datagram handler as trusted. This will only work 573d021c344SAndy King * if vsock is running in the host. 574d021c344SAndy King */ 575d021c344SAndy King 576d021c344SAndy King err = vmci_datagram_create_handle_priv(resource_id, flags, 577d021c344SAndy King VMCI_PRIVILEGE_FLAG_TRUSTED, 578d021c344SAndy King recv_cb, 579d021c344SAndy King client_data, out_handle); 580d021c344SAndy King 581d021c344SAndy King if (err == VMCI_ERROR_NO_ACCESS) 582d021c344SAndy King err = vmci_datagram_create_handle(resource_id, flags, 583d021c344SAndy King recv_cb, client_data, 584d021c344SAndy King out_handle); 585d021c344SAndy King 586d021c344SAndy King return err; 587d021c344SAndy King } 588d021c344SAndy King 589d021c344SAndy King /* This is invoked as part of a tasklet that's scheduled when the VMCI 590d021c344SAndy King * interrupt fires. This is run in bottom-half context and if it ever needs to 591d021c344SAndy King * sleep it should defer that work to a work queue. 592d021c344SAndy King */ 593d021c344SAndy King 594d021c344SAndy King static int vmci_transport_recv_dgram_cb(void *data, struct vmci_datagram *dg) 595d021c344SAndy King { 596d021c344SAndy King struct sock *sk; 597d021c344SAndy King size_t size; 598d021c344SAndy King struct sk_buff *skb; 599d021c344SAndy King struct vsock_sock *vsk; 600d021c344SAndy King 601d021c344SAndy King sk = (struct sock *)data; 602d021c344SAndy King 603d021c344SAndy King /* This handler is privileged when this module is running on the host. 604d021c344SAndy King * We will get datagrams from all endpoints (even VMs that are in a 605d021c344SAndy King * restricted context). If we get one from a restricted context then 606d021c344SAndy King * the destination socket must be trusted. 607d021c344SAndy King * 608d021c344SAndy King * NOTE: We access the socket struct without holding the lock here. 609d021c344SAndy King * This is ok because the field we are interested is never modified 610d021c344SAndy King * outside of the create and destruct socket functions. 611d021c344SAndy King */ 612d021c344SAndy King vsk = vsock_sk(sk); 613d021c344SAndy King if (!vmci_transport_allow_dgram(vsk, dg->src.context)) 614d021c344SAndy King return VMCI_ERROR_NO_ACCESS; 615d021c344SAndy King 616d021c344SAndy King size = VMCI_DG_SIZE(dg); 617d021c344SAndy King 618d021c344SAndy King /* Attach the packet to the socket's receive queue as an sk_buff. */ 619d021c344SAndy King skb = alloc_skb(size, GFP_ATOMIC); 620dce1a287SAsias He if (!skb) 621dce1a287SAsias He return VMCI_ERROR_NO_MEM; 622dce1a287SAsias He 623d021c344SAndy King /* sk_receive_skb() will do a sock_put(), so hold here. */ 624d021c344SAndy King sock_hold(sk); 625d021c344SAndy King skb_put(skb, size); 626d021c344SAndy King memcpy(skb->data, dg, size); 627d021c344SAndy King sk_receive_skb(sk, skb, 0); 628d021c344SAndy King 629d021c344SAndy King return VMCI_SUCCESS; 630d021c344SAndy King } 631d021c344SAndy King 632d021c344SAndy King static bool vmci_transport_stream_allow(u32 cid, u32 port) 633d021c344SAndy King { 634d021c344SAndy King static const u32 non_socket_contexts[] = { 635d021c344SAndy King VMADDR_CID_RESERVED, 636d021c344SAndy King }; 637d021c344SAndy King int i; 638d021c344SAndy King 639d021c344SAndy King BUILD_BUG_ON(sizeof(cid) != sizeof(*non_socket_contexts)); 640d021c344SAndy King 641d021c344SAndy King for (i = 0; i < ARRAY_SIZE(non_socket_contexts); i++) { 642d021c344SAndy King if (cid == non_socket_contexts[i]) 643d021c344SAndy King return false; 644d021c344SAndy King } 645d021c344SAndy King 646d021c344SAndy King return true; 647d021c344SAndy King } 648d021c344SAndy King 649d021c344SAndy King /* This is invoked as part of a tasklet that's scheduled when the VMCI 650d021c344SAndy King * interrupt fires. This is run in bottom-half context but it defers most of 651d021c344SAndy King * its work to the packet handling work queue. 652d021c344SAndy King */ 653d021c344SAndy King 654d021c344SAndy King static int vmci_transport_recv_stream_cb(void *data, struct vmci_datagram *dg) 655d021c344SAndy King { 656d021c344SAndy King struct sock *sk; 657d021c344SAndy King struct sockaddr_vm dst; 658d021c344SAndy King struct sockaddr_vm src; 659d021c344SAndy King struct vmci_transport_packet *pkt; 660d021c344SAndy King struct vsock_sock *vsk; 661d021c344SAndy King bool bh_process_pkt; 662d021c344SAndy King int err; 663d021c344SAndy King 664d021c344SAndy King sk = NULL; 665d021c344SAndy King err = VMCI_SUCCESS; 666d021c344SAndy King bh_process_pkt = false; 667d021c344SAndy King 668d021c344SAndy King /* Ignore incoming packets from contexts without sockets, or resources 669d021c344SAndy King * that aren't vsock implementations. 670d021c344SAndy King */ 671d021c344SAndy King 672d021c344SAndy King if (!vmci_transport_stream_allow(dg->src.context, -1) 6732a89f924SReilly Grant || vmci_transport_peer_rid(dg->src.context) != dg->src.resource) 674d021c344SAndy King return VMCI_ERROR_NO_ACCESS; 675d021c344SAndy King 676d021c344SAndy King if (VMCI_DG_SIZE(dg) < sizeof(*pkt)) 677d021c344SAndy King /* Drop datagrams that do not contain full VSock packets. */ 678d021c344SAndy King return VMCI_ERROR_INVALID_ARGS; 679d021c344SAndy King 680d021c344SAndy King pkt = (struct vmci_transport_packet *)dg; 681d021c344SAndy King 682d021c344SAndy King /* Find the socket that should handle this packet. First we look for a 683d021c344SAndy King * connected socket and if there is none we look for a socket bound to 684d021c344SAndy King * the destintation address. 685d021c344SAndy King */ 686d021c344SAndy King vsock_addr_init(&src, pkt->dg.src.context, pkt->src_port); 687d021c344SAndy King vsock_addr_init(&dst, pkt->dg.dst.context, pkt->dst_port); 688d021c344SAndy King 689d021c344SAndy King sk = vsock_find_connected_socket(&src, &dst); 690d021c344SAndy King if (!sk) { 691d021c344SAndy King sk = vsock_find_bound_socket(&dst); 692d021c344SAndy King if (!sk) { 693d021c344SAndy King /* We could not find a socket for this specified 694d021c344SAndy King * address. If this packet is a RST, we just drop it. 695d021c344SAndy King * If it is another packet, we send a RST. Note that 696d021c344SAndy King * we do not send a RST reply to RSTs so that we do not 697d021c344SAndy King * continually send RSTs between two endpoints. 698d021c344SAndy King * 699d021c344SAndy King * Note that since this is a reply, dst is src and src 700d021c344SAndy King * is dst. 701d021c344SAndy King */ 702d021c344SAndy King if (vmci_transport_send_reset_bh(&dst, &src, pkt) < 0) 703d021c344SAndy King pr_err("unable to send reset\n"); 704d021c344SAndy King 705d021c344SAndy King err = VMCI_ERROR_NOT_FOUND; 706d021c344SAndy King goto out; 707d021c344SAndy King } 708d021c344SAndy King } 709d021c344SAndy King 710d021c344SAndy King /* If the received packet type is beyond all types known to this 711d021c344SAndy King * implementation, reply with an invalid message. Hopefully this will 712d021c344SAndy King * help when implementing backwards compatibility in the future. 713d021c344SAndy King */ 714d021c344SAndy King if (pkt->type >= VMCI_TRANSPORT_PACKET_TYPE_MAX) { 715d021c344SAndy King vmci_transport_send_invalid_bh(&dst, &src); 716d021c344SAndy King err = VMCI_ERROR_INVALID_ARGS; 717d021c344SAndy King goto out; 718d021c344SAndy King } 719d021c344SAndy King 720d021c344SAndy King /* This handler is privileged when this module is running on the host. 721d021c344SAndy King * We will get datagram connect requests from all endpoints (even VMs 722d021c344SAndy King * that are in a restricted context). If we get one from a restricted 723d021c344SAndy King * context then the destination socket must be trusted. 724d021c344SAndy King * 725d021c344SAndy King * NOTE: We access the socket struct without holding the lock here. 726d021c344SAndy King * This is ok because the field we are interested is never modified 727d021c344SAndy King * outside of the create and destruct socket functions. 728d021c344SAndy King */ 729d021c344SAndy King vsk = vsock_sk(sk); 730d021c344SAndy King if (!vmci_transport_allow_dgram(vsk, pkt->dg.src.context)) { 731d021c344SAndy King err = VMCI_ERROR_NO_ACCESS; 732d021c344SAndy King goto out; 733d021c344SAndy King } 734d021c344SAndy King 735d021c344SAndy King /* We do most everything in a work queue, but let's fast path the 736d021c344SAndy King * notification of reads and writes to help data transfer performance. 737d021c344SAndy King * We can only do this if there is no process context code executing 738d021c344SAndy King * for this socket since that may change the state. 739d021c344SAndy King */ 740d021c344SAndy King bh_lock_sock(sk); 741d021c344SAndy King 742990454b5SReilly Grant if (!sock_owned_by_user(sk)) { 743990454b5SReilly Grant /* The local context ID may be out of date, update it. */ 744990454b5SReilly Grant vsk->local_addr.svm_cid = dst.svm_cid; 745990454b5SReilly Grant 746990454b5SReilly Grant if (sk->sk_state == SS_CONNECTED) 747d021c344SAndy King vmci_trans(vsk)->notify_ops->handle_notify_pkt( 748d021c344SAndy King sk, pkt, true, &dst, &src, 749d021c344SAndy King &bh_process_pkt); 750990454b5SReilly Grant } 751d021c344SAndy King 752d021c344SAndy King bh_unlock_sock(sk); 753d021c344SAndy King 754d021c344SAndy King if (!bh_process_pkt) { 755d021c344SAndy King struct vmci_transport_recv_pkt_info *recv_pkt_info; 756d021c344SAndy King 757d021c344SAndy King recv_pkt_info = kmalloc(sizeof(*recv_pkt_info), GFP_ATOMIC); 758d021c344SAndy King if (!recv_pkt_info) { 759d021c344SAndy King if (vmci_transport_send_reset_bh(&dst, &src, pkt) < 0) 760d021c344SAndy King pr_err("unable to send reset\n"); 761d021c344SAndy King 762d021c344SAndy King err = VMCI_ERROR_NO_MEM; 763d021c344SAndy King goto out; 764d021c344SAndy King } 765d021c344SAndy King 766d021c344SAndy King recv_pkt_info->sk = sk; 767d021c344SAndy King memcpy(&recv_pkt_info->pkt, pkt, sizeof(recv_pkt_info->pkt)); 768d021c344SAndy King INIT_WORK(&recv_pkt_info->work, vmci_transport_recv_pkt_work); 769d021c344SAndy King 770d021c344SAndy King schedule_work(&recv_pkt_info->work); 771d021c344SAndy King /* Clear sk so that the reference count incremented by one of 772d021c344SAndy King * the Find functions above is not decremented below. We need 773d021c344SAndy King * that reference count for the packet handler we've scheduled 774d021c344SAndy King * to run. 775d021c344SAndy King */ 776d021c344SAndy King sk = NULL; 777d021c344SAndy King } 778d021c344SAndy King 779d021c344SAndy King out: 780d021c344SAndy King if (sk) 781d021c344SAndy King sock_put(sk); 782d021c344SAndy King 783d021c344SAndy King return err; 784d021c344SAndy King } 785d021c344SAndy King 786d021c344SAndy King static void vmci_transport_handle_detach(struct sock *sk) 787d021c344SAndy King { 788d021c344SAndy King struct vsock_sock *vsk; 789d021c344SAndy King 790d021c344SAndy King vsk = vsock_sk(sk); 791d021c344SAndy King if (!vmci_handle_is_invalid(vmci_trans(vsk)->qp_handle)) { 792d021c344SAndy King sock_set_flag(sk, SOCK_DONE); 793d021c344SAndy King 794d021c344SAndy King /* On a detach the peer will not be sending or receiving 795d021c344SAndy King * anymore. 796d021c344SAndy King */ 797d021c344SAndy King vsk->peer_shutdown = SHUTDOWN_MASK; 798d021c344SAndy King 799d021c344SAndy King /* We should not be sending anymore since the peer won't be 800d021c344SAndy King * there to receive, but we can still receive if there is data 801d021c344SAndy King * left in our consume queue. 802d021c344SAndy King */ 803d021c344SAndy King if (vsock_stream_has_data(vsk) <= 0) { 804d021c344SAndy King if (sk->sk_state == SS_CONNECTING) { 805d021c344SAndy King /* The peer may detach from a queue pair while 806d021c344SAndy King * we are still in the connecting state, i.e., 807d021c344SAndy King * if the peer VM is killed after attaching to 808d021c344SAndy King * a queue pair, but before we complete the 809d021c344SAndy King * handshake. In that case, we treat the detach 810d021c344SAndy King * event like a reset. 811d021c344SAndy King */ 812d021c344SAndy King 813d021c344SAndy King sk->sk_state = SS_UNCONNECTED; 814d021c344SAndy King sk->sk_err = ECONNRESET; 815d021c344SAndy King sk->sk_error_report(sk); 816d021c344SAndy King return; 817d021c344SAndy King } 818d021c344SAndy King sk->sk_state = SS_UNCONNECTED; 819d021c344SAndy King } 820d021c344SAndy King sk->sk_state_change(sk); 821d021c344SAndy King } 822d021c344SAndy King } 823d021c344SAndy King 824d021c344SAndy King static void vmci_transport_peer_detach_cb(u32 sub_id, 825d021c344SAndy King const struct vmci_event_data *e_data, 826d021c344SAndy King void *client_data) 827d021c344SAndy King { 8284ef7ea91SJorgen Hansen struct vmci_transport *trans = client_data; 829d021c344SAndy King const struct vmci_event_payload_qp *e_payload; 830d021c344SAndy King 831d021c344SAndy King e_payload = vmci_event_data_const_payload(e_data); 832d021c344SAndy King 833d021c344SAndy King /* XXX This is lame, we should provide a way to lookup sockets by 834d021c344SAndy King * qp_handle. 835d021c344SAndy King */ 8364ef7ea91SJorgen Hansen if (vmci_handle_is_invalid(e_payload->handle) || 8378ab18d71SJorgen Hansen !vmci_handle_is_equal(trans->qp_handle, e_payload->handle)) 8384ef7ea91SJorgen Hansen return; 839d021c344SAndy King 8404ef7ea91SJorgen Hansen /* We don't ask for delayed CBs when we subscribe to this event (we 8414ef7ea91SJorgen Hansen * pass 0 as flags to vmci_event_subscribe()). VMCI makes no 8424ef7ea91SJorgen Hansen * guarantees in that case about what context we might be running in, 8434ef7ea91SJorgen Hansen * so it could be BH or process, blockable or non-blockable. So we 8444ef7ea91SJorgen Hansen * need to account for all possible contexts here. 8454ef7ea91SJorgen Hansen */ 8464ef7ea91SJorgen Hansen spin_lock_bh(&trans->lock); 8474ef7ea91SJorgen Hansen if (!trans->sk) 8484ef7ea91SJorgen Hansen goto out; 8494ef7ea91SJorgen Hansen 8504ef7ea91SJorgen Hansen /* Apart from here, trans->lock is only grabbed as part of sk destruct, 8514ef7ea91SJorgen Hansen * where trans->sk isn't locked. 8524ef7ea91SJorgen Hansen */ 8534ef7ea91SJorgen Hansen bh_lock_sock(trans->sk); 8544ef7ea91SJorgen Hansen 8554ef7ea91SJorgen Hansen vmci_transport_handle_detach(trans->sk); 8564ef7ea91SJorgen Hansen 8574ef7ea91SJorgen Hansen bh_unlock_sock(trans->sk); 8584ef7ea91SJorgen Hansen out: 8594ef7ea91SJorgen Hansen spin_unlock_bh(&trans->lock); 860d021c344SAndy King } 861d021c344SAndy King 862d021c344SAndy King static void vmci_transport_qp_resumed_cb(u32 sub_id, 863d021c344SAndy King const struct vmci_event_data *e_data, 864d021c344SAndy King void *client_data) 865d021c344SAndy King { 866d021c344SAndy King vsock_for_each_connected_socket(vmci_transport_handle_detach); 867d021c344SAndy King } 868d021c344SAndy King 869d021c344SAndy King static void vmci_transport_recv_pkt_work(struct work_struct *work) 870d021c344SAndy King { 871d021c344SAndy King struct vmci_transport_recv_pkt_info *recv_pkt_info; 872d021c344SAndy King struct vmci_transport_packet *pkt; 873d021c344SAndy King struct sock *sk; 874d021c344SAndy King 875d021c344SAndy King recv_pkt_info = 876d021c344SAndy King container_of(work, struct vmci_transport_recv_pkt_info, work); 877d021c344SAndy King sk = recv_pkt_info->sk; 878d021c344SAndy King pkt = &recv_pkt_info->pkt; 879d021c344SAndy King 880d021c344SAndy King lock_sock(sk); 881d021c344SAndy King 882990454b5SReilly Grant /* The local context ID may be out of date. */ 883990454b5SReilly Grant vsock_sk(sk)->local_addr.svm_cid = pkt->dg.dst.context; 884990454b5SReilly Grant 885d021c344SAndy King switch (sk->sk_state) { 886ea3803c1SStefan Hajnoczi case VSOCK_SS_LISTEN: 887d021c344SAndy King vmci_transport_recv_listen(sk, pkt); 888d021c344SAndy King break; 889d021c344SAndy King case SS_CONNECTING: 890d021c344SAndy King /* Processing of pending connections for servers goes through 891d021c344SAndy King * the listening socket, so see vmci_transport_recv_listen() 892d021c344SAndy King * for that path. 893d021c344SAndy King */ 894d021c344SAndy King vmci_transport_recv_connecting_client(sk, pkt); 895d021c344SAndy King break; 896d021c344SAndy King case SS_CONNECTED: 897d021c344SAndy King vmci_transport_recv_connected(sk, pkt); 898d021c344SAndy King break; 899d021c344SAndy King default: 900d021c344SAndy King /* Because this function does not run in the same context as 901d021c344SAndy King * vmci_transport_recv_stream_cb it is possible that the 902d021c344SAndy King * socket has closed. We need to let the other side know or it 903d021c344SAndy King * could be sitting in a connect and hang forever. Send a 904d021c344SAndy King * reset to prevent that. 905d021c344SAndy King */ 906d021c344SAndy King vmci_transport_send_reset(sk, pkt); 9070fc93246SAsias He break; 908d021c344SAndy King } 909d021c344SAndy King 910d021c344SAndy King release_sock(sk); 911d021c344SAndy King kfree(recv_pkt_info); 912d021c344SAndy King /* Release reference obtained in the stream callback when we fetched 913d021c344SAndy King * this socket out of the bound or connected list. 914d021c344SAndy King */ 915d021c344SAndy King sock_put(sk); 916d021c344SAndy King } 917d021c344SAndy King 918d021c344SAndy King static int vmci_transport_recv_listen(struct sock *sk, 919d021c344SAndy King struct vmci_transport_packet *pkt) 920d021c344SAndy King { 921d021c344SAndy King struct sock *pending; 922d021c344SAndy King struct vsock_sock *vpending; 923d021c344SAndy King int err; 924d021c344SAndy King u64 qp_size; 925d021c344SAndy King bool old_request = false; 926d021c344SAndy King bool old_pkt_proto = false; 927d021c344SAndy King 928d021c344SAndy King err = 0; 929d021c344SAndy King 930d021c344SAndy King /* Because we are in the listen state, we could be receiving a packet 931d021c344SAndy King * for ourself or any previous connection requests that we received. 932d021c344SAndy King * If it's the latter, we try to find a socket in our list of pending 933d021c344SAndy King * connections and, if we do, call the appropriate handler for the 934d021c344SAndy King * state that that socket is in. Otherwise we try to service the 935d021c344SAndy King * connection request. 936d021c344SAndy King */ 937d021c344SAndy King pending = vmci_transport_get_pending(sk, pkt); 938d021c344SAndy King if (pending) { 939d021c344SAndy King lock_sock(pending); 940990454b5SReilly Grant 941990454b5SReilly Grant /* The local context ID may be out of date. */ 942990454b5SReilly Grant vsock_sk(pending)->local_addr.svm_cid = pkt->dg.dst.context; 943990454b5SReilly Grant 944d021c344SAndy King switch (pending->sk_state) { 945d021c344SAndy King case SS_CONNECTING: 946d021c344SAndy King err = vmci_transport_recv_connecting_server(sk, 947d021c344SAndy King pending, 948d021c344SAndy King pkt); 949d021c344SAndy King break; 950d021c344SAndy King default: 951d021c344SAndy King vmci_transport_send_reset(pending, pkt); 952d021c344SAndy King err = -EINVAL; 953d021c344SAndy King } 954d021c344SAndy King 955d021c344SAndy King if (err < 0) 956d021c344SAndy King vsock_remove_pending(sk, pending); 957d021c344SAndy King 958d021c344SAndy King release_sock(pending); 959d021c344SAndy King vmci_transport_release_pending(pending); 960d021c344SAndy King 961d021c344SAndy King return err; 962d021c344SAndy King } 963d021c344SAndy King 964d021c344SAndy King /* The listen state only accepts connection requests. Reply with a 965d021c344SAndy King * reset unless we received a reset. 966d021c344SAndy King */ 967d021c344SAndy King 968d021c344SAndy King if (!(pkt->type == VMCI_TRANSPORT_PACKET_TYPE_REQUEST || 969d021c344SAndy King pkt->type == VMCI_TRANSPORT_PACKET_TYPE_REQUEST2)) { 970d021c344SAndy King vmci_transport_reply_reset(pkt); 971d021c344SAndy King return -EINVAL; 972d021c344SAndy King } 973d021c344SAndy King 974d021c344SAndy King if (pkt->u.size == 0) { 975d021c344SAndy King vmci_transport_reply_reset(pkt); 976d021c344SAndy King return -EINVAL; 977d021c344SAndy King } 978d021c344SAndy King 979d021c344SAndy King /* If this socket can't accommodate this connection request, we send a 980d021c344SAndy King * reset. Otherwise we create and initialize a child socket and reply 981d021c344SAndy King * with a connection negotiation. 982d021c344SAndy King */ 983d021c344SAndy King if (sk->sk_ack_backlog >= sk->sk_max_ack_backlog) { 984d021c344SAndy King vmci_transport_reply_reset(pkt); 985d021c344SAndy King return -ECONNREFUSED; 986d021c344SAndy King } 987d021c344SAndy King 988d021c344SAndy King pending = __vsock_create(sock_net(sk), NULL, sk, GFP_KERNEL, 98911aa9c28SEric W. Biederman sk->sk_type, 0); 990d021c344SAndy King if (!pending) { 991d021c344SAndy King vmci_transport_send_reset(sk, pkt); 992d021c344SAndy King return -ENOMEM; 993d021c344SAndy King } 994d021c344SAndy King 995d021c344SAndy King vpending = vsock_sk(pending); 996d021c344SAndy King 997d021c344SAndy King vsock_addr_init(&vpending->local_addr, pkt->dg.dst.context, 998d021c344SAndy King pkt->dst_port); 999d021c344SAndy King vsock_addr_init(&vpending->remote_addr, pkt->dg.src.context, 1000d021c344SAndy King pkt->src_port); 1001d021c344SAndy King 1002d021c344SAndy King /* If the proposed size fits within our min/max, accept it. Otherwise 1003d021c344SAndy King * propose our own size. 1004d021c344SAndy King */ 1005d021c344SAndy King if (pkt->u.size >= vmci_trans(vpending)->queue_pair_min_size && 1006d021c344SAndy King pkt->u.size <= vmci_trans(vpending)->queue_pair_max_size) { 1007d021c344SAndy King qp_size = pkt->u.size; 1008d021c344SAndy King } else { 1009d021c344SAndy King qp_size = vmci_trans(vpending)->queue_pair_size; 1010d021c344SAndy King } 1011d021c344SAndy King 1012d021c344SAndy King /* Figure out if we are using old or new requests based on the 1013d021c344SAndy King * overrides pkt types sent by our peer. 1014d021c344SAndy King */ 1015d021c344SAndy King if (vmci_transport_old_proto_override(&old_pkt_proto)) { 1016d021c344SAndy King old_request = old_pkt_proto; 1017d021c344SAndy King } else { 1018d021c344SAndy King if (pkt->type == VMCI_TRANSPORT_PACKET_TYPE_REQUEST) 1019d021c344SAndy King old_request = true; 1020d021c344SAndy King else if (pkt->type == VMCI_TRANSPORT_PACKET_TYPE_REQUEST2) 1021d021c344SAndy King old_request = false; 1022d021c344SAndy King 1023d021c344SAndy King } 1024d021c344SAndy King 1025d021c344SAndy King if (old_request) { 1026d021c344SAndy King /* Handle a REQUEST (or override) */ 1027d021c344SAndy King u16 version = VSOCK_PROTO_INVALID; 1028d021c344SAndy King if (vmci_transport_proto_to_notify_struct( 1029d021c344SAndy King pending, &version, true)) 1030d021c344SAndy King err = vmci_transport_send_negotiate(pending, qp_size); 1031d021c344SAndy King else 1032d021c344SAndy King err = -EINVAL; 1033d021c344SAndy King 1034d021c344SAndy King } else { 1035d021c344SAndy King /* Handle a REQUEST2 (or override) */ 1036d021c344SAndy King int proto_int = pkt->proto; 1037d021c344SAndy King int pos; 1038d021c344SAndy King u16 active_proto_version = 0; 1039d021c344SAndy King 1040d021c344SAndy King /* The list of possible protocols is the intersection of all 1041d021c344SAndy King * protocols the client supports ... plus all the protocols we 1042d021c344SAndy King * support. 1043d021c344SAndy King */ 1044d021c344SAndy King proto_int &= vmci_transport_new_proto_supported_versions(); 1045d021c344SAndy King 1046d021c344SAndy King /* We choose the highest possible protocol version and use that 1047d021c344SAndy King * one. 1048d021c344SAndy King */ 1049d021c344SAndy King pos = fls(proto_int); 1050d021c344SAndy King if (pos) { 1051d021c344SAndy King active_proto_version = (1 << (pos - 1)); 1052d021c344SAndy King if (vmci_transport_proto_to_notify_struct( 1053d021c344SAndy King pending, &active_proto_version, false)) 1054d021c344SAndy King err = vmci_transport_send_negotiate2(pending, 1055d021c344SAndy King qp_size, 1056d021c344SAndy King active_proto_version); 1057d021c344SAndy King else 1058d021c344SAndy King err = -EINVAL; 1059d021c344SAndy King 1060d021c344SAndy King } else { 1061d021c344SAndy King err = -EINVAL; 1062d021c344SAndy King } 1063d021c344SAndy King } 1064d021c344SAndy King 1065d021c344SAndy King if (err < 0) { 1066d021c344SAndy King vmci_transport_send_reset(sk, pkt); 1067d021c344SAndy King sock_put(pending); 1068d021c344SAndy King err = vmci_transport_error_to_vsock_error(err); 1069d021c344SAndy King goto out; 1070d021c344SAndy King } 1071d021c344SAndy King 1072d021c344SAndy King vsock_add_pending(sk, pending); 1073d021c344SAndy King sk->sk_ack_backlog++; 1074d021c344SAndy King 1075d021c344SAndy King pending->sk_state = SS_CONNECTING; 1076d021c344SAndy King vmci_trans(vpending)->produce_size = 1077d021c344SAndy King vmci_trans(vpending)->consume_size = qp_size; 1078d021c344SAndy King vmci_trans(vpending)->queue_pair_size = qp_size; 1079d021c344SAndy King 1080d021c344SAndy King vmci_trans(vpending)->notify_ops->process_request(pending); 1081d021c344SAndy King 1082d021c344SAndy King /* We might never receive another message for this socket and it's not 1083d021c344SAndy King * connected to any process, so we have to ensure it gets cleaned up 1084d021c344SAndy King * ourself. Our delayed work function will take care of that. Note 1085d021c344SAndy King * that we do not ever cancel this function since we have few 1086d021c344SAndy King * guarantees about its state when calling cancel_delayed_work(). 1087d021c344SAndy King * Instead we hold a reference on the socket for that function and make 1088d021c344SAndy King * it capable of handling cases where it needs to do nothing but 1089d021c344SAndy King * release that reference. 1090d021c344SAndy King */ 1091d021c344SAndy King vpending->listener = sk; 1092d021c344SAndy King sock_hold(sk); 1093d021c344SAndy King sock_hold(pending); 1094d021c344SAndy King INIT_DELAYED_WORK(&vpending->dwork, vsock_pending_work); 1095d021c344SAndy King schedule_delayed_work(&vpending->dwork, HZ); 1096d021c344SAndy King 1097d021c344SAndy King out: 1098d021c344SAndy King return err; 1099d021c344SAndy King } 1100d021c344SAndy King 1101d021c344SAndy King static int 1102d021c344SAndy King vmci_transport_recv_connecting_server(struct sock *listener, 1103d021c344SAndy King struct sock *pending, 1104d021c344SAndy King struct vmci_transport_packet *pkt) 1105d021c344SAndy King { 1106d021c344SAndy King struct vsock_sock *vpending; 1107d021c344SAndy King struct vmci_handle handle; 1108d021c344SAndy King struct vmci_qp *qpair; 1109d021c344SAndy King bool is_local; 1110d021c344SAndy King u32 flags; 1111d021c344SAndy King u32 detach_sub_id; 1112d021c344SAndy King int err; 1113d021c344SAndy King int skerr; 1114d021c344SAndy King 1115d021c344SAndy King vpending = vsock_sk(pending); 1116d021c344SAndy King detach_sub_id = VMCI_INVALID_ID; 1117d021c344SAndy King 1118d021c344SAndy King switch (pkt->type) { 1119d021c344SAndy King case VMCI_TRANSPORT_PACKET_TYPE_OFFER: 1120d021c344SAndy King if (vmci_handle_is_invalid(pkt->u.handle)) { 1121d021c344SAndy King vmci_transport_send_reset(pending, pkt); 1122d021c344SAndy King skerr = EPROTO; 1123d021c344SAndy King err = -EINVAL; 1124d021c344SAndy King goto destroy; 1125d021c344SAndy King } 1126d021c344SAndy King break; 1127d021c344SAndy King default: 1128d021c344SAndy King /* Close and cleanup the connection. */ 1129d021c344SAndy King vmci_transport_send_reset(pending, pkt); 1130d021c344SAndy King skerr = EPROTO; 1131d021c344SAndy King err = pkt->type == VMCI_TRANSPORT_PACKET_TYPE_RST ? 0 : -EINVAL; 1132d021c344SAndy King goto destroy; 1133d021c344SAndy King } 1134d021c344SAndy King 1135d021c344SAndy King /* In order to complete the connection we need to attach to the offered 1136d021c344SAndy King * queue pair and send an attach notification. We also subscribe to the 1137d021c344SAndy King * detach event so we know when our peer goes away, and we do that 1138d021c344SAndy King * before attaching so we don't miss an event. If all this succeeds, 1139d021c344SAndy King * we update our state and wakeup anything waiting in accept() for a 1140d021c344SAndy King * connection. 1141d021c344SAndy King */ 1142d021c344SAndy King 1143d021c344SAndy King /* We don't care about attach since we ensure the other side has 1144d021c344SAndy King * attached by specifying the ATTACH_ONLY flag below. 1145d021c344SAndy King */ 1146d021c344SAndy King err = vmci_event_subscribe(VMCI_EVENT_QP_PEER_DETACH, 1147d021c344SAndy King vmci_transport_peer_detach_cb, 11484ef7ea91SJorgen Hansen vmci_trans(vpending), &detach_sub_id); 1149d021c344SAndy King if (err < VMCI_SUCCESS) { 1150d021c344SAndy King vmci_transport_send_reset(pending, pkt); 1151d021c344SAndy King err = vmci_transport_error_to_vsock_error(err); 1152d021c344SAndy King skerr = -err; 1153d021c344SAndy King goto destroy; 1154d021c344SAndy King } 1155d021c344SAndy King 1156d021c344SAndy King vmci_trans(vpending)->detach_sub_id = detach_sub_id; 1157d021c344SAndy King 1158d021c344SAndy King /* Now attach to the queue pair the client created. */ 1159d021c344SAndy King handle = pkt->u.handle; 1160d021c344SAndy King 1161d021c344SAndy King /* vpending->local_addr always has a context id so we do not need to 1162d021c344SAndy King * worry about VMADDR_CID_ANY in this case. 1163d021c344SAndy King */ 1164d021c344SAndy King is_local = 1165d021c344SAndy King vpending->remote_addr.svm_cid == vpending->local_addr.svm_cid; 1166d021c344SAndy King flags = VMCI_QPFLAG_ATTACH_ONLY; 1167d021c344SAndy King flags |= is_local ? VMCI_QPFLAG_LOCAL : 0; 1168d021c344SAndy King 1169d021c344SAndy King err = vmci_transport_queue_pair_alloc( 1170d021c344SAndy King &qpair, 1171d021c344SAndy King &handle, 1172d021c344SAndy King vmci_trans(vpending)->produce_size, 1173d021c344SAndy King vmci_trans(vpending)->consume_size, 1174d021c344SAndy King pkt->dg.src.context, 1175d021c344SAndy King flags, 1176d021c344SAndy King vmci_transport_is_trusted( 1177d021c344SAndy King vpending, 1178d021c344SAndy King vpending->remote_addr.svm_cid)); 1179d021c344SAndy King if (err < 0) { 1180d021c344SAndy King vmci_transport_send_reset(pending, pkt); 1181d021c344SAndy King skerr = -err; 1182d021c344SAndy King goto destroy; 1183d021c344SAndy King } 1184d021c344SAndy King 1185d021c344SAndy King vmci_trans(vpending)->qp_handle = handle; 1186d021c344SAndy King vmci_trans(vpending)->qpair = qpair; 1187d021c344SAndy King 1188d021c344SAndy King /* When we send the attach message, we must be ready to handle incoming 1189d021c344SAndy King * control messages on the newly connected socket. So we move the 1190d021c344SAndy King * pending socket to the connected state before sending the attach 1191d021c344SAndy King * message. Otherwise, an incoming packet triggered by the attach being 1192d021c344SAndy King * received by the peer may be processed concurrently with what happens 1193d021c344SAndy King * below after sending the attach message, and that incoming packet 1194d021c344SAndy King * will find the listening socket instead of the (currently) pending 1195d021c344SAndy King * socket. Note that enqueueing the socket increments the reference 1196d021c344SAndy King * count, so even if a reset comes before the connection is accepted, 1197d021c344SAndy King * the socket will be valid until it is removed from the queue. 1198d021c344SAndy King * 1199d021c344SAndy King * If we fail sending the attach below, we remove the socket from the 1200d021c344SAndy King * connected list and move the socket to SS_UNCONNECTED before 1201d021c344SAndy King * releasing the lock, so a pending slow path processing of an incoming 1202d021c344SAndy King * packet will not see the socket in the connected state in that case. 1203d021c344SAndy King */ 1204d021c344SAndy King pending->sk_state = SS_CONNECTED; 1205d021c344SAndy King 1206d021c344SAndy King vsock_insert_connected(vpending); 1207d021c344SAndy King 1208d021c344SAndy King /* Notify our peer of our attach. */ 1209d021c344SAndy King err = vmci_transport_send_attach(pending, handle); 1210d021c344SAndy King if (err < 0) { 1211d021c344SAndy King vsock_remove_connected(vpending); 1212d021c344SAndy King pr_err("Could not send attach\n"); 1213d021c344SAndy King vmci_transport_send_reset(pending, pkt); 1214d021c344SAndy King err = vmci_transport_error_to_vsock_error(err); 1215d021c344SAndy King skerr = -err; 1216d021c344SAndy King goto destroy; 1217d021c344SAndy King } 1218d021c344SAndy King 1219d021c344SAndy King /* We have a connection. Move the now connected socket from the 1220d021c344SAndy King * listener's pending list to the accept queue so callers of accept() 1221d021c344SAndy King * can find it. 1222d021c344SAndy King */ 1223d021c344SAndy King vsock_remove_pending(listener, pending); 1224d021c344SAndy King vsock_enqueue_accept(listener, pending); 1225d021c344SAndy King 1226d021c344SAndy King /* Callers of accept() will be be waiting on the listening socket, not 1227d021c344SAndy King * the pending socket. 1228d021c344SAndy King */ 12297362945aSStefan Hajnoczi listener->sk_data_ready(listener); 1230d021c344SAndy King 1231d021c344SAndy King return 0; 1232d021c344SAndy King 1233d021c344SAndy King destroy: 1234d021c344SAndy King pending->sk_err = skerr; 1235d021c344SAndy King pending->sk_state = SS_UNCONNECTED; 1236d021c344SAndy King /* As long as we drop our reference, all necessary cleanup will handle 1237d021c344SAndy King * when the cleanup function drops its reference and our destruct 1238d021c344SAndy King * implementation is called. Note that since the listen handler will 1239d021c344SAndy King * remove pending from the pending list upon our failure, the cleanup 1240d021c344SAndy King * function won't drop the additional reference, which is why we do it 1241d021c344SAndy King * here. 1242d021c344SAndy King */ 1243d021c344SAndy King sock_put(pending); 1244d021c344SAndy King 1245d021c344SAndy King return err; 1246d021c344SAndy King } 1247d021c344SAndy King 1248d021c344SAndy King static int 1249d021c344SAndy King vmci_transport_recv_connecting_client(struct sock *sk, 1250d021c344SAndy King struct vmci_transport_packet *pkt) 1251d021c344SAndy King { 1252d021c344SAndy King struct vsock_sock *vsk; 1253d021c344SAndy King int err; 1254d021c344SAndy King int skerr; 1255d021c344SAndy King 1256d021c344SAndy King vsk = vsock_sk(sk); 1257d021c344SAndy King 1258d021c344SAndy King switch (pkt->type) { 1259d021c344SAndy King case VMCI_TRANSPORT_PACKET_TYPE_ATTACH: 1260d021c344SAndy King if (vmci_handle_is_invalid(pkt->u.handle) || 1261d021c344SAndy King !vmci_handle_is_equal(pkt->u.handle, 1262d021c344SAndy King vmci_trans(vsk)->qp_handle)) { 1263d021c344SAndy King skerr = EPROTO; 1264d021c344SAndy King err = -EINVAL; 1265d021c344SAndy King goto destroy; 1266d021c344SAndy King } 1267d021c344SAndy King 1268d021c344SAndy King /* Signify the socket is connected and wakeup the waiter in 1269d021c344SAndy King * connect(). Also place the socket in the connected table for 1270d021c344SAndy King * accounting (it can already be found since it's in the bound 1271d021c344SAndy King * table). 1272d021c344SAndy King */ 1273d021c344SAndy King sk->sk_state = SS_CONNECTED; 1274d021c344SAndy King sk->sk_socket->state = SS_CONNECTED; 1275d021c344SAndy King vsock_insert_connected(vsk); 1276d021c344SAndy King sk->sk_state_change(sk); 1277d021c344SAndy King 1278d021c344SAndy King break; 1279d021c344SAndy King case VMCI_TRANSPORT_PACKET_TYPE_NEGOTIATE: 1280d021c344SAndy King case VMCI_TRANSPORT_PACKET_TYPE_NEGOTIATE2: 1281d021c344SAndy King if (pkt->u.size == 0 1282d021c344SAndy King || pkt->dg.src.context != vsk->remote_addr.svm_cid 1283d021c344SAndy King || pkt->src_port != vsk->remote_addr.svm_port 1284d021c344SAndy King || !vmci_handle_is_invalid(vmci_trans(vsk)->qp_handle) 1285d021c344SAndy King || vmci_trans(vsk)->qpair 1286d021c344SAndy King || vmci_trans(vsk)->produce_size != 0 1287d021c344SAndy King || vmci_trans(vsk)->consume_size != 0 1288d021c344SAndy King || vmci_trans(vsk)->detach_sub_id != VMCI_INVALID_ID) { 1289d021c344SAndy King skerr = EPROTO; 1290d021c344SAndy King err = -EINVAL; 1291d021c344SAndy King 1292d021c344SAndy King goto destroy; 1293d021c344SAndy King } 1294d021c344SAndy King 1295d021c344SAndy King err = vmci_transport_recv_connecting_client_negotiate(sk, pkt); 1296d021c344SAndy King if (err) { 1297d021c344SAndy King skerr = -err; 1298d021c344SAndy King goto destroy; 1299d021c344SAndy King } 1300d021c344SAndy King 1301d021c344SAndy King break; 1302d021c344SAndy King case VMCI_TRANSPORT_PACKET_TYPE_INVALID: 1303d021c344SAndy King err = vmci_transport_recv_connecting_client_invalid(sk, pkt); 1304d021c344SAndy King if (err) { 1305d021c344SAndy King skerr = -err; 1306d021c344SAndy King goto destroy; 1307d021c344SAndy King } 1308d021c344SAndy King 1309d021c344SAndy King break; 1310d021c344SAndy King case VMCI_TRANSPORT_PACKET_TYPE_RST: 1311d021c344SAndy King /* Older versions of the linux code (WS 6.5 / ESX 4.0) used to 1312d021c344SAndy King * continue processing here after they sent an INVALID packet. 1313d021c344SAndy King * This meant that we got a RST after the INVALID. We ignore a 1314d021c344SAndy King * RST after an INVALID. The common code doesn't send the RST 1315d021c344SAndy King * ... so we can hang if an old version of the common code 1316d021c344SAndy King * fails between getting a REQUEST and sending an OFFER back. 1317d021c344SAndy King * Not much we can do about it... except hope that it doesn't 1318d021c344SAndy King * happen. 1319d021c344SAndy King */ 1320d021c344SAndy King if (vsk->ignore_connecting_rst) { 1321d021c344SAndy King vsk->ignore_connecting_rst = false; 1322d021c344SAndy King } else { 1323d021c344SAndy King skerr = ECONNRESET; 1324d021c344SAndy King err = 0; 1325d021c344SAndy King goto destroy; 1326d021c344SAndy King } 1327d021c344SAndy King 1328d021c344SAndy King break; 1329d021c344SAndy King default: 1330d021c344SAndy King /* Close and cleanup the connection. */ 1331d021c344SAndy King skerr = EPROTO; 1332d021c344SAndy King err = -EINVAL; 1333d021c344SAndy King goto destroy; 1334d021c344SAndy King } 1335d021c344SAndy King 1336d021c344SAndy King return 0; 1337d021c344SAndy King 1338d021c344SAndy King destroy: 1339d021c344SAndy King vmci_transport_send_reset(sk, pkt); 1340d021c344SAndy King 1341d021c344SAndy King sk->sk_state = SS_UNCONNECTED; 1342d021c344SAndy King sk->sk_err = skerr; 1343d021c344SAndy King sk->sk_error_report(sk); 1344d021c344SAndy King return err; 1345d021c344SAndy King } 1346d021c344SAndy King 1347d021c344SAndy King static int vmci_transport_recv_connecting_client_negotiate( 1348d021c344SAndy King struct sock *sk, 1349d021c344SAndy King struct vmci_transport_packet *pkt) 1350d021c344SAndy King { 1351d021c344SAndy King int err; 1352d021c344SAndy King struct vsock_sock *vsk; 1353d021c344SAndy King struct vmci_handle handle; 1354d021c344SAndy King struct vmci_qp *qpair; 1355d021c344SAndy King u32 detach_sub_id; 1356d021c344SAndy King bool is_local; 1357d021c344SAndy King u32 flags; 1358d021c344SAndy King bool old_proto = true; 1359d021c344SAndy King bool old_pkt_proto; 1360d021c344SAndy King u16 version; 1361d021c344SAndy King 1362d021c344SAndy King vsk = vsock_sk(sk); 1363d021c344SAndy King handle = VMCI_INVALID_HANDLE; 1364d021c344SAndy King detach_sub_id = VMCI_INVALID_ID; 1365d021c344SAndy King 1366d021c344SAndy King /* If we have gotten here then we should be past the point where old 1367d021c344SAndy King * linux vsock could have sent the bogus rst. 1368d021c344SAndy King */ 1369d021c344SAndy King vsk->sent_request = false; 1370d021c344SAndy King vsk->ignore_connecting_rst = false; 1371d021c344SAndy King 1372d021c344SAndy King /* Verify that we're OK with the proposed queue pair size */ 1373d021c344SAndy King if (pkt->u.size < vmci_trans(vsk)->queue_pair_min_size || 1374d021c344SAndy King pkt->u.size > vmci_trans(vsk)->queue_pair_max_size) { 1375d021c344SAndy King err = -EINVAL; 1376d021c344SAndy King goto destroy; 1377d021c344SAndy King } 1378d021c344SAndy King 1379d021c344SAndy King /* At this point we know the CID the peer is using to talk to us. */ 1380d021c344SAndy King 1381d021c344SAndy King if (vsk->local_addr.svm_cid == VMADDR_CID_ANY) 1382d021c344SAndy King vsk->local_addr.svm_cid = pkt->dg.dst.context; 1383d021c344SAndy King 1384d021c344SAndy King /* Setup the notify ops to be the highest supported version that both 1385d021c344SAndy King * the server and the client support. 1386d021c344SAndy King */ 1387d021c344SAndy King 1388d021c344SAndy King if (vmci_transport_old_proto_override(&old_pkt_proto)) { 1389d021c344SAndy King old_proto = old_pkt_proto; 1390d021c344SAndy King } else { 1391d021c344SAndy King if (pkt->type == VMCI_TRANSPORT_PACKET_TYPE_NEGOTIATE) 1392d021c344SAndy King old_proto = true; 1393d021c344SAndy King else if (pkt->type == VMCI_TRANSPORT_PACKET_TYPE_NEGOTIATE2) 1394d021c344SAndy King old_proto = false; 1395d021c344SAndy King 1396d021c344SAndy King } 1397d021c344SAndy King 1398d021c344SAndy King if (old_proto) 1399d021c344SAndy King version = VSOCK_PROTO_INVALID; 1400d021c344SAndy King else 1401d021c344SAndy King version = pkt->proto; 1402d021c344SAndy King 1403d021c344SAndy King if (!vmci_transport_proto_to_notify_struct(sk, &version, old_proto)) { 1404d021c344SAndy King err = -EINVAL; 1405d021c344SAndy King goto destroy; 1406d021c344SAndy King } 1407d021c344SAndy King 14084ef7ea91SJorgen Hansen /* Subscribe to detach events first. 1409d021c344SAndy King * 1410d021c344SAndy King * XXX We attach once for each queue pair created for now so it is easy 1411d021c344SAndy King * to find the socket (it's provided), but later we should only 1412d021c344SAndy King * subscribe once and add a way to lookup sockets by queue pair handle. 1413d021c344SAndy King */ 1414d021c344SAndy King err = vmci_event_subscribe(VMCI_EVENT_QP_PEER_DETACH, 1415d021c344SAndy King vmci_transport_peer_detach_cb, 14164ef7ea91SJorgen Hansen vmci_trans(vsk), &detach_sub_id); 1417d021c344SAndy King if (err < VMCI_SUCCESS) { 1418d021c344SAndy King err = vmci_transport_error_to_vsock_error(err); 1419d021c344SAndy King goto destroy; 1420d021c344SAndy King } 1421d021c344SAndy King 1422d021c344SAndy King /* Make VMCI select the handle for us. */ 1423d021c344SAndy King handle = VMCI_INVALID_HANDLE; 1424d021c344SAndy King is_local = vsk->remote_addr.svm_cid == vsk->local_addr.svm_cid; 1425d021c344SAndy King flags = is_local ? VMCI_QPFLAG_LOCAL : 0; 1426d021c344SAndy King 1427d021c344SAndy King err = vmci_transport_queue_pair_alloc(&qpair, 1428d021c344SAndy King &handle, 1429d021c344SAndy King pkt->u.size, 1430d021c344SAndy King pkt->u.size, 1431d021c344SAndy King vsk->remote_addr.svm_cid, 1432d021c344SAndy King flags, 1433d021c344SAndy King vmci_transport_is_trusted( 1434d021c344SAndy King vsk, 1435d021c344SAndy King vsk-> 1436d021c344SAndy King remote_addr.svm_cid)); 1437d021c344SAndy King if (err < 0) 1438d021c344SAndy King goto destroy; 1439d021c344SAndy King 1440d021c344SAndy King err = vmci_transport_send_qp_offer(sk, handle); 1441d021c344SAndy King if (err < 0) { 1442d021c344SAndy King err = vmci_transport_error_to_vsock_error(err); 1443d021c344SAndy King goto destroy; 1444d021c344SAndy King } 1445d021c344SAndy King 1446d021c344SAndy King vmci_trans(vsk)->qp_handle = handle; 1447d021c344SAndy King vmci_trans(vsk)->qpair = qpair; 1448d021c344SAndy King 1449d021c344SAndy King vmci_trans(vsk)->produce_size = vmci_trans(vsk)->consume_size = 1450d021c344SAndy King pkt->u.size; 1451d021c344SAndy King 1452d021c344SAndy King vmci_trans(vsk)->detach_sub_id = detach_sub_id; 1453d021c344SAndy King 1454d021c344SAndy King vmci_trans(vsk)->notify_ops->process_negotiate(sk); 1455d021c344SAndy King 1456d021c344SAndy King return 0; 1457d021c344SAndy King 1458d021c344SAndy King destroy: 1459d021c344SAndy King if (detach_sub_id != VMCI_INVALID_ID) 1460d021c344SAndy King vmci_event_unsubscribe(detach_sub_id); 1461d021c344SAndy King 1462d021c344SAndy King if (!vmci_handle_is_invalid(handle)) 1463d021c344SAndy King vmci_qpair_detach(&qpair); 1464d021c344SAndy King 1465d021c344SAndy King return err; 1466d021c344SAndy King } 1467d021c344SAndy King 1468d021c344SAndy King static int 1469d021c344SAndy King vmci_transport_recv_connecting_client_invalid(struct sock *sk, 1470d021c344SAndy King struct vmci_transport_packet *pkt) 1471d021c344SAndy King { 1472d021c344SAndy King int err = 0; 1473d021c344SAndy King struct vsock_sock *vsk = vsock_sk(sk); 1474d021c344SAndy King 1475d021c344SAndy King if (vsk->sent_request) { 1476d021c344SAndy King vsk->sent_request = false; 1477d021c344SAndy King vsk->ignore_connecting_rst = true; 1478d021c344SAndy King 1479d021c344SAndy King err = vmci_transport_send_conn_request( 1480d021c344SAndy King sk, vmci_trans(vsk)->queue_pair_size); 1481d021c344SAndy King if (err < 0) 1482d021c344SAndy King err = vmci_transport_error_to_vsock_error(err); 1483d021c344SAndy King else 1484d021c344SAndy King err = 0; 1485d021c344SAndy King 1486d021c344SAndy King } 1487d021c344SAndy King 1488d021c344SAndy King return err; 1489d021c344SAndy King } 1490d021c344SAndy King 1491d021c344SAndy King static int vmci_transport_recv_connected(struct sock *sk, 1492d021c344SAndy King struct vmci_transport_packet *pkt) 1493d021c344SAndy King { 1494d021c344SAndy King struct vsock_sock *vsk; 1495d021c344SAndy King bool pkt_processed = false; 1496d021c344SAndy King 1497d021c344SAndy King /* In cases where we are closing the connection, it's sufficient to 1498d021c344SAndy King * mark the state change (and maybe error) and wake up any waiting 1499d021c344SAndy King * threads. Since this is a connected socket, it's owned by a user 1500d021c344SAndy King * process and will be cleaned up when the failure is passed back on 1501d021c344SAndy King * the current or next system call. Our system call implementations 1502d021c344SAndy King * must therefore check for error and state changes on entry and when 1503d021c344SAndy King * being awoken. 1504d021c344SAndy King */ 1505d021c344SAndy King switch (pkt->type) { 1506d021c344SAndy King case VMCI_TRANSPORT_PACKET_TYPE_SHUTDOWN: 1507d021c344SAndy King if (pkt->u.mode) { 1508d021c344SAndy King vsk = vsock_sk(sk); 1509d021c344SAndy King 1510d021c344SAndy King vsk->peer_shutdown |= pkt->u.mode; 1511d021c344SAndy King sk->sk_state_change(sk); 1512d021c344SAndy King } 1513d021c344SAndy King break; 1514d021c344SAndy King 1515d021c344SAndy King case VMCI_TRANSPORT_PACKET_TYPE_RST: 1516d021c344SAndy King vsk = vsock_sk(sk); 1517d021c344SAndy King /* It is possible that we sent our peer a message (e.g a 1518d021c344SAndy King * WAITING_READ) right before we got notified that the peer had 1519d021c344SAndy King * detached. If that happens then we can get a RST pkt back 1520d021c344SAndy King * from our peer even though there is data available for us to 1521d021c344SAndy King * read. In that case, don't shutdown the socket completely but 1522d021c344SAndy King * instead allow the local client to finish reading data off 1523d021c344SAndy King * the queuepair. Always treat a RST pkt in connected mode like 1524d021c344SAndy King * a clean shutdown. 1525d021c344SAndy King */ 1526d021c344SAndy King sock_set_flag(sk, SOCK_DONE); 1527d021c344SAndy King vsk->peer_shutdown = SHUTDOWN_MASK; 1528d021c344SAndy King if (vsock_stream_has_data(vsk) <= 0) 1529d021c344SAndy King sk->sk_state = SS_DISCONNECTING; 1530d021c344SAndy King 1531d021c344SAndy King sk->sk_state_change(sk); 1532d021c344SAndy King break; 1533d021c344SAndy King 1534d021c344SAndy King default: 1535d021c344SAndy King vsk = vsock_sk(sk); 1536d021c344SAndy King vmci_trans(vsk)->notify_ops->handle_notify_pkt( 1537d021c344SAndy King sk, pkt, false, NULL, NULL, 1538d021c344SAndy King &pkt_processed); 1539d021c344SAndy King if (!pkt_processed) 1540d021c344SAndy King return -EINVAL; 1541d021c344SAndy King 1542d021c344SAndy King break; 1543d021c344SAndy King } 1544d021c344SAndy King 1545d021c344SAndy King return 0; 1546d021c344SAndy King } 1547d021c344SAndy King 1548d021c344SAndy King static int vmci_transport_socket_init(struct vsock_sock *vsk, 1549d021c344SAndy King struct vsock_sock *psk) 1550d021c344SAndy King { 1551d021c344SAndy King vsk->trans = kmalloc(sizeof(struct vmci_transport), GFP_KERNEL); 1552d021c344SAndy King if (!vsk->trans) 1553d021c344SAndy King return -ENOMEM; 1554d021c344SAndy King 1555d021c344SAndy King vmci_trans(vsk)->dg_handle = VMCI_INVALID_HANDLE; 1556d021c344SAndy King vmci_trans(vsk)->qp_handle = VMCI_INVALID_HANDLE; 1557d021c344SAndy King vmci_trans(vsk)->qpair = NULL; 1558d021c344SAndy King vmci_trans(vsk)->produce_size = vmci_trans(vsk)->consume_size = 0; 15594ef7ea91SJorgen Hansen vmci_trans(vsk)->detach_sub_id = VMCI_INVALID_ID; 1560d021c344SAndy King vmci_trans(vsk)->notify_ops = NULL; 15614ef7ea91SJorgen Hansen INIT_LIST_HEAD(&vmci_trans(vsk)->elem); 15624ef7ea91SJorgen Hansen vmci_trans(vsk)->sk = &vsk->sk; 15638566b86aSJorgen Hansen spin_lock_init(&vmci_trans(vsk)->lock); 1564d021c344SAndy King if (psk) { 1565d021c344SAndy King vmci_trans(vsk)->queue_pair_size = 1566d021c344SAndy King vmci_trans(psk)->queue_pair_size; 1567d021c344SAndy King vmci_trans(vsk)->queue_pair_min_size = 1568d021c344SAndy King vmci_trans(psk)->queue_pair_min_size; 1569d021c344SAndy King vmci_trans(vsk)->queue_pair_max_size = 1570d021c344SAndy King vmci_trans(psk)->queue_pair_max_size; 1571d021c344SAndy King } else { 1572d021c344SAndy King vmci_trans(vsk)->queue_pair_size = 1573d021c344SAndy King VMCI_TRANSPORT_DEFAULT_QP_SIZE; 1574d021c344SAndy King vmci_trans(vsk)->queue_pair_min_size = 1575d021c344SAndy King VMCI_TRANSPORT_DEFAULT_QP_SIZE_MIN; 1576d021c344SAndy King vmci_trans(vsk)->queue_pair_max_size = 1577d021c344SAndy King VMCI_TRANSPORT_DEFAULT_QP_SIZE_MAX; 1578d021c344SAndy King } 1579d021c344SAndy King 1580d021c344SAndy King return 0; 1581d021c344SAndy King } 1582d021c344SAndy King 15834ef7ea91SJorgen Hansen static void vmci_transport_free_resources(struct list_head *transport_list) 15844ef7ea91SJorgen Hansen { 15854ef7ea91SJorgen Hansen while (!list_empty(transport_list)) { 15864ef7ea91SJorgen Hansen struct vmci_transport *transport = 15874ef7ea91SJorgen Hansen list_first_entry(transport_list, struct vmci_transport, 15884ef7ea91SJorgen Hansen elem); 15894ef7ea91SJorgen Hansen list_del(&transport->elem); 15904ef7ea91SJorgen Hansen 15914ef7ea91SJorgen Hansen if (transport->detach_sub_id != VMCI_INVALID_ID) { 15924ef7ea91SJorgen Hansen vmci_event_unsubscribe(transport->detach_sub_id); 15934ef7ea91SJorgen Hansen transport->detach_sub_id = VMCI_INVALID_ID; 15944ef7ea91SJorgen Hansen } 15954ef7ea91SJorgen Hansen 15964ef7ea91SJorgen Hansen if (!vmci_handle_is_invalid(transport->qp_handle)) { 15974ef7ea91SJorgen Hansen vmci_qpair_detach(&transport->qpair); 15984ef7ea91SJorgen Hansen transport->qp_handle = VMCI_INVALID_HANDLE; 15994ef7ea91SJorgen Hansen transport->produce_size = 0; 16004ef7ea91SJorgen Hansen transport->consume_size = 0; 16014ef7ea91SJorgen Hansen } 16024ef7ea91SJorgen Hansen 16034ef7ea91SJorgen Hansen kfree(transport); 16044ef7ea91SJorgen Hansen } 16054ef7ea91SJorgen Hansen } 16064ef7ea91SJorgen Hansen 16074ef7ea91SJorgen Hansen static void vmci_transport_cleanup(struct work_struct *work) 16084ef7ea91SJorgen Hansen { 16094ef7ea91SJorgen Hansen LIST_HEAD(pending); 16104ef7ea91SJorgen Hansen 16114ef7ea91SJorgen Hansen spin_lock_bh(&vmci_transport_cleanup_lock); 16124ef7ea91SJorgen Hansen list_replace_init(&vmci_transport_cleanup_list, &pending); 16134ef7ea91SJorgen Hansen spin_unlock_bh(&vmci_transport_cleanup_lock); 16144ef7ea91SJorgen Hansen vmci_transport_free_resources(&pending); 16154ef7ea91SJorgen Hansen } 16164ef7ea91SJorgen Hansen 1617d021c344SAndy King static void vmci_transport_destruct(struct vsock_sock *vsk) 1618d021c344SAndy King { 16194ef7ea91SJorgen Hansen /* Ensure that the detach callback doesn't use the sk/vsk 16204ef7ea91SJorgen Hansen * we are about to destruct. 16214ef7ea91SJorgen Hansen */ 16224ef7ea91SJorgen Hansen spin_lock_bh(&vmci_trans(vsk)->lock); 16234ef7ea91SJorgen Hansen vmci_trans(vsk)->sk = NULL; 16244ef7ea91SJorgen Hansen spin_unlock_bh(&vmci_trans(vsk)->lock); 1625d021c344SAndy King 1626d021c344SAndy King if (vmci_trans(vsk)->notify_ops) 1627d021c344SAndy King vmci_trans(vsk)->notify_ops->socket_destruct(vsk); 1628d021c344SAndy King 16294ef7ea91SJorgen Hansen spin_lock_bh(&vmci_transport_cleanup_lock); 16304ef7ea91SJorgen Hansen list_add(&vmci_trans(vsk)->elem, &vmci_transport_cleanup_list); 16314ef7ea91SJorgen Hansen spin_unlock_bh(&vmci_transport_cleanup_lock); 16324ef7ea91SJorgen Hansen schedule_work(&vmci_transport_cleanup_work); 16334ef7ea91SJorgen Hansen 1634d021c344SAndy King vsk->trans = NULL; 1635d021c344SAndy King } 1636d021c344SAndy King 1637d021c344SAndy King static void vmci_transport_release(struct vsock_sock *vsk) 1638d021c344SAndy King { 16396773b7dcSStefan Hajnoczi vsock_remove_sock(vsk); 16406773b7dcSStefan Hajnoczi 1641d021c344SAndy King if (!vmci_handle_is_invalid(vmci_trans(vsk)->dg_handle)) { 1642d021c344SAndy King vmci_datagram_destroy_handle(vmci_trans(vsk)->dg_handle); 1643d021c344SAndy King vmci_trans(vsk)->dg_handle = VMCI_INVALID_HANDLE; 1644d021c344SAndy King } 1645d021c344SAndy King } 1646d021c344SAndy King 1647d021c344SAndy King static int vmci_transport_dgram_bind(struct vsock_sock *vsk, 1648d021c344SAndy King struct sockaddr_vm *addr) 1649d021c344SAndy King { 1650d021c344SAndy King u32 port; 1651d021c344SAndy King u32 flags; 1652d021c344SAndy King int err; 1653d021c344SAndy King 1654d021c344SAndy King /* VMCI will select a resource ID for us if we provide 1655d021c344SAndy King * VMCI_INVALID_ID. 1656d021c344SAndy King */ 1657d021c344SAndy King port = addr->svm_port == VMADDR_PORT_ANY ? 1658d021c344SAndy King VMCI_INVALID_ID : addr->svm_port; 1659d021c344SAndy King 1660d021c344SAndy King if (port <= LAST_RESERVED_PORT && !capable(CAP_NET_BIND_SERVICE)) 1661d021c344SAndy King return -EACCES; 1662d021c344SAndy King 1663d021c344SAndy King flags = addr->svm_cid == VMADDR_CID_ANY ? 1664d021c344SAndy King VMCI_FLAG_ANYCID_DG_HND : 0; 1665d021c344SAndy King 1666d021c344SAndy King err = vmci_transport_datagram_create_hnd(port, flags, 1667d021c344SAndy King vmci_transport_recv_dgram_cb, 1668d021c344SAndy King &vsk->sk, 1669d021c344SAndy King &vmci_trans(vsk)->dg_handle); 1670d021c344SAndy King if (err < VMCI_SUCCESS) 1671d021c344SAndy King return vmci_transport_error_to_vsock_error(err); 1672d021c344SAndy King vsock_addr_init(&vsk->local_addr, addr->svm_cid, 1673d021c344SAndy King vmci_trans(vsk)->dg_handle.resource); 1674d021c344SAndy King 1675d021c344SAndy King return 0; 1676d021c344SAndy King } 1677d021c344SAndy King 1678d021c344SAndy King static int vmci_transport_dgram_enqueue( 1679d021c344SAndy King struct vsock_sock *vsk, 1680d021c344SAndy King struct sockaddr_vm *remote_addr, 16810f7db23aSAl Viro struct msghdr *msg, 1682d021c344SAndy King size_t len) 1683d021c344SAndy King { 1684d021c344SAndy King int err; 1685d021c344SAndy King struct vmci_datagram *dg; 1686d021c344SAndy King 1687d021c344SAndy King if (len > VMCI_MAX_DG_PAYLOAD_SIZE) 1688d021c344SAndy King return -EMSGSIZE; 1689d021c344SAndy King 1690d021c344SAndy King if (!vmci_transport_allow_dgram(vsk, remote_addr->svm_cid)) 1691d021c344SAndy King return -EPERM; 1692d021c344SAndy King 1693d021c344SAndy King /* Allocate a buffer for the user's message and our packet header. */ 1694d021c344SAndy King dg = kmalloc(len + sizeof(*dg), GFP_KERNEL); 1695d021c344SAndy King if (!dg) 1696d021c344SAndy King return -ENOMEM; 1697d021c344SAndy King 16980f7db23aSAl Viro memcpy_from_msg(VMCI_DG_PAYLOAD(dg), msg, len); 1699d021c344SAndy King 1700d021c344SAndy King dg->dst = vmci_make_handle(remote_addr->svm_cid, 1701d021c344SAndy King remote_addr->svm_port); 1702d021c344SAndy King dg->src = vmci_make_handle(vsk->local_addr.svm_cid, 1703d021c344SAndy King vsk->local_addr.svm_port); 1704d021c344SAndy King dg->payload_size = len; 1705d021c344SAndy King 1706d021c344SAndy King err = vmci_datagram_send(dg); 1707d021c344SAndy King kfree(dg); 1708d021c344SAndy King if (err < 0) 1709d021c344SAndy King return vmci_transport_error_to_vsock_error(err); 1710d021c344SAndy King 1711d021c344SAndy King return err - sizeof(*dg); 1712d021c344SAndy King } 1713d021c344SAndy King 17141b784140SYing Xue static int vmci_transport_dgram_dequeue(struct vsock_sock *vsk, 1715d021c344SAndy King struct msghdr *msg, size_t len, 1716d021c344SAndy King int flags) 1717d021c344SAndy King { 1718d021c344SAndy King int err; 1719d021c344SAndy King int noblock; 1720d021c344SAndy King struct vmci_datagram *dg; 1721d021c344SAndy King size_t payload_len; 1722d021c344SAndy King struct sk_buff *skb; 1723d021c344SAndy King 1724d021c344SAndy King noblock = flags & MSG_DONTWAIT; 1725d021c344SAndy King 1726d021c344SAndy King if (flags & MSG_OOB || flags & MSG_ERRQUEUE) 1727d021c344SAndy King return -EOPNOTSUPP; 1728d021c344SAndy King 1729d021c344SAndy King /* Retrieve the head sk_buff from the socket's receive queue. */ 1730d021c344SAndy King err = 0; 1731d021c344SAndy King skb = skb_recv_datagram(&vsk->sk, flags, noblock, &err); 1732d021c344SAndy King if (!skb) 17339c995cc9SJorgen Hansen return err; 1734d021c344SAndy King 1735d021c344SAndy King dg = (struct vmci_datagram *)skb->data; 1736d021c344SAndy King if (!dg) 1737d021c344SAndy King /* err is 0, meaning we read zero bytes. */ 1738d021c344SAndy King goto out; 1739d021c344SAndy King 1740d021c344SAndy King payload_len = dg->payload_size; 1741d021c344SAndy King /* Ensure the sk_buff matches the payload size claimed in the packet. */ 1742d021c344SAndy King if (payload_len != skb->len - sizeof(*dg)) { 1743d021c344SAndy King err = -EINVAL; 1744d021c344SAndy King goto out; 1745d021c344SAndy King } 1746d021c344SAndy King 1747d021c344SAndy King if (payload_len > len) { 1748d021c344SAndy King payload_len = len; 1749d021c344SAndy King msg->msg_flags |= MSG_TRUNC; 1750d021c344SAndy King } 1751d021c344SAndy King 1752d021c344SAndy King /* Place the datagram payload in the user's iovec. */ 175351f3d02bSDavid S. Miller err = skb_copy_datagram_msg(skb, sizeof(*dg), msg, payload_len); 1754d021c344SAndy King if (err) 1755d021c344SAndy King goto out; 1756d021c344SAndy King 1757d021c344SAndy King if (msg->msg_name) { 1758d021c344SAndy King /* Provide the address of the sender. */ 1759342dfc30SSteffen Hurrle DECLARE_SOCKADDR(struct sockaddr_vm *, vm_addr, msg->msg_name); 1760d021c344SAndy King vsock_addr_init(vm_addr, dg->src.context, dg->src.resource); 1761d021c344SAndy King msg->msg_namelen = sizeof(*vm_addr); 1762d021c344SAndy King } 1763d021c344SAndy King err = payload_len; 1764d021c344SAndy King 1765d021c344SAndy King out: 1766d021c344SAndy King skb_free_datagram(&vsk->sk, skb); 1767d021c344SAndy King return err; 1768d021c344SAndy King } 1769d021c344SAndy King 1770d021c344SAndy King static bool vmci_transport_dgram_allow(u32 cid, u32 port) 1771d021c344SAndy King { 1772d021c344SAndy King if (cid == VMADDR_CID_HYPERVISOR) { 1773d021c344SAndy King /* Registrations of PBRPC Servers do not modify VMX/Hypervisor 1774d021c344SAndy King * state and are allowed. 1775d021c344SAndy King */ 1776d021c344SAndy King return port == VMCI_UNITY_PBRPC_REGISTER; 1777d021c344SAndy King } 1778d021c344SAndy King 1779d021c344SAndy King return true; 1780d021c344SAndy King } 1781d021c344SAndy King 1782d021c344SAndy King static int vmci_transport_connect(struct vsock_sock *vsk) 1783d021c344SAndy King { 1784d021c344SAndy King int err; 1785d021c344SAndy King bool old_pkt_proto = false; 1786d021c344SAndy King struct sock *sk = &vsk->sk; 1787d021c344SAndy King 1788d021c344SAndy King if (vmci_transport_old_proto_override(&old_pkt_proto) && 1789d021c344SAndy King old_pkt_proto) { 1790d021c344SAndy King err = vmci_transport_send_conn_request( 1791d021c344SAndy King sk, vmci_trans(vsk)->queue_pair_size); 1792d021c344SAndy King if (err < 0) { 1793d021c344SAndy King sk->sk_state = SS_UNCONNECTED; 1794d021c344SAndy King return err; 1795d021c344SAndy King } 1796d021c344SAndy King } else { 1797d021c344SAndy King int supported_proto_versions = 1798d021c344SAndy King vmci_transport_new_proto_supported_versions(); 1799d021c344SAndy King err = vmci_transport_send_conn_request2( 1800d021c344SAndy King sk, vmci_trans(vsk)->queue_pair_size, 1801d021c344SAndy King supported_proto_versions); 1802d021c344SAndy King if (err < 0) { 1803d021c344SAndy King sk->sk_state = SS_UNCONNECTED; 1804d021c344SAndy King return err; 1805d021c344SAndy King } 1806d021c344SAndy King 1807d021c344SAndy King vsk->sent_request = true; 1808d021c344SAndy King } 1809d021c344SAndy King 1810d021c344SAndy King return err; 1811d021c344SAndy King } 1812d021c344SAndy King 1813d021c344SAndy King static ssize_t vmci_transport_stream_dequeue( 1814d021c344SAndy King struct vsock_sock *vsk, 18150f7db23aSAl Viro struct msghdr *msg, 1816d021c344SAndy King size_t len, 1817d021c344SAndy King int flags) 1818d021c344SAndy King { 1819d021c344SAndy King if (flags & MSG_PEEK) 1820d838df2eSAl Viro return vmci_qpair_peekv(vmci_trans(vsk)->qpair, msg, len, 0); 1821d021c344SAndy King else 1822d838df2eSAl Viro return vmci_qpair_dequev(vmci_trans(vsk)->qpair, msg, len, 0); 1823d021c344SAndy King } 1824d021c344SAndy King 1825d021c344SAndy King static ssize_t vmci_transport_stream_enqueue( 1826d021c344SAndy King struct vsock_sock *vsk, 18270f7db23aSAl Viro struct msghdr *msg, 1828d021c344SAndy King size_t len) 1829d021c344SAndy King { 18304c946d9cSAl Viro return vmci_qpair_enquev(vmci_trans(vsk)->qpair, msg, len, 0); 1831d021c344SAndy King } 1832d021c344SAndy King 1833d021c344SAndy King static s64 vmci_transport_stream_has_data(struct vsock_sock *vsk) 1834d021c344SAndy King { 1835d021c344SAndy King return vmci_qpair_consume_buf_ready(vmci_trans(vsk)->qpair); 1836d021c344SAndy King } 1837d021c344SAndy King 1838d021c344SAndy King static s64 vmci_transport_stream_has_space(struct vsock_sock *vsk) 1839d021c344SAndy King { 1840d021c344SAndy King return vmci_qpair_produce_free_space(vmci_trans(vsk)->qpair); 1841d021c344SAndy King } 1842d021c344SAndy King 1843d021c344SAndy King static u64 vmci_transport_stream_rcvhiwat(struct vsock_sock *vsk) 1844d021c344SAndy King { 1845d021c344SAndy King return vmci_trans(vsk)->consume_size; 1846d021c344SAndy King } 1847d021c344SAndy King 1848d021c344SAndy King static bool vmci_transport_stream_is_active(struct vsock_sock *vsk) 1849d021c344SAndy King { 1850d021c344SAndy King return !vmci_handle_is_invalid(vmci_trans(vsk)->qp_handle); 1851d021c344SAndy King } 1852d021c344SAndy King 1853d021c344SAndy King static u64 vmci_transport_get_buffer_size(struct vsock_sock *vsk) 1854d021c344SAndy King { 1855d021c344SAndy King return vmci_trans(vsk)->queue_pair_size; 1856d021c344SAndy King } 1857d021c344SAndy King 1858d021c344SAndy King static u64 vmci_transport_get_min_buffer_size(struct vsock_sock *vsk) 1859d021c344SAndy King { 1860d021c344SAndy King return vmci_trans(vsk)->queue_pair_min_size; 1861d021c344SAndy King } 1862d021c344SAndy King 1863d021c344SAndy King static u64 vmci_transport_get_max_buffer_size(struct vsock_sock *vsk) 1864d021c344SAndy King { 1865d021c344SAndy King return vmci_trans(vsk)->queue_pair_max_size; 1866d021c344SAndy King } 1867d021c344SAndy King 1868d021c344SAndy King static void vmci_transport_set_buffer_size(struct vsock_sock *vsk, u64 val) 1869d021c344SAndy King { 1870d021c344SAndy King if (val < vmci_trans(vsk)->queue_pair_min_size) 1871d021c344SAndy King vmci_trans(vsk)->queue_pair_min_size = val; 1872d021c344SAndy King if (val > vmci_trans(vsk)->queue_pair_max_size) 1873d021c344SAndy King vmci_trans(vsk)->queue_pair_max_size = val; 1874d021c344SAndy King vmci_trans(vsk)->queue_pair_size = val; 1875d021c344SAndy King } 1876d021c344SAndy King 1877d021c344SAndy King static void vmci_transport_set_min_buffer_size(struct vsock_sock *vsk, 1878d021c344SAndy King u64 val) 1879d021c344SAndy King { 1880d021c344SAndy King if (val > vmci_trans(vsk)->queue_pair_size) 1881d021c344SAndy King vmci_trans(vsk)->queue_pair_size = val; 1882d021c344SAndy King vmci_trans(vsk)->queue_pair_min_size = val; 1883d021c344SAndy King } 1884d021c344SAndy King 1885d021c344SAndy King static void vmci_transport_set_max_buffer_size(struct vsock_sock *vsk, 1886d021c344SAndy King u64 val) 1887d021c344SAndy King { 1888d021c344SAndy King if (val < vmci_trans(vsk)->queue_pair_size) 1889d021c344SAndy King vmci_trans(vsk)->queue_pair_size = val; 1890d021c344SAndy King vmci_trans(vsk)->queue_pair_max_size = val; 1891d021c344SAndy King } 1892d021c344SAndy King 1893d021c344SAndy King static int vmci_transport_notify_poll_in( 1894d021c344SAndy King struct vsock_sock *vsk, 1895d021c344SAndy King size_t target, 1896d021c344SAndy King bool *data_ready_now) 1897d021c344SAndy King { 1898d021c344SAndy King return vmci_trans(vsk)->notify_ops->poll_in( 1899d021c344SAndy King &vsk->sk, target, data_ready_now); 1900d021c344SAndy King } 1901d021c344SAndy King 1902d021c344SAndy King static int vmci_transport_notify_poll_out( 1903d021c344SAndy King struct vsock_sock *vsk, 1904d021c344SAndy King size_t target, 1905d021c344SAndy King bool *space_available_now) 1906d021c344SAndy King { 1907d021c344SAndy King return vmci_trans(vsk)->notify_ops->poll_out( 1908d021c344SAndy King &vsk->sk, target, space_available_now); 1909d021c344SAndy King } 1910d021c344SAndy King 1911d021c344SAndy King static int vmci_transport_notify_recv_init( 1912d021c344SAndy King struct vsock_sock *vsk, 1913d021c344SAndy King size_t target, 1914d021c344SAndy King struct vsock_transport_recv_notify_data *data) 1915d021c344SAndy King { 1916d021c344SAndy King return vmci_trans(vsk)->notify_ops->recv_init( 1917d021c344SAndy King &vsk->sk, target, 1918d021c344SAndy King (struct vmci_transport_recv_notify_data *)data); 1919d021c344SAndy King } 1920d021c344SAndy King 1921d021c344SAndy King static int vmci_transport_notify_recv_pre_block( 1922d021c344SAndy King struct vsock_sock *vsk, 1923d021c344SAndy King size_t target, 1924d021c344SAndy King struct vsock_transport_recv_notify_data *data) 1925d021c344SAndy King { 1926d021c344SAndy King return vmci_trans(vsk)->notify_ops->recv_pre_block( 1927d021c344SAndy King &vsk->sk, target, 1928d021c344SAndy King (struct vmci_transport_recv_notify_data *)data); 1929d021c344SAndy King } 1930d021c344SAndy King 1931d021c344SAndy King static int vmci_transport_notify_recv_pre_dequeue( 1932d021c344SAndy King struct vsock_sock *vsk, 1933d021c344SAndy King size_t target, 1934d021c344SAndy King struct vsock_transport_recv_notify_data *data) 1935d021c344SAndy King { 1936d021c344SAndy King return vmci_trans(vsk)->notify_ops->recv_pre_dequeue( 1937d021c344SAndy King &vsk->sk, target, 1938d021c344SAndy King (struct vmci_transport_recv_notify_data *)data); 1939d021c344SAndy King } 1940d021c344SAndy King 1941d021c344SAndy King static int vmci_transport_notify_recv_post_dequeue( 1942d021c344SAndy King struct vsock_sock *vsk, 1943d021c344SAndy King size_t target, 1944d021c344SAndy King ssize_t copied, 1945d021c344SAndy King bool data_read, 1946d021c344SAndy King struct vsock_transport_recv_notify_data *data) 1947d021c344SAndy King { 1948d021c344SAndy King return vmci_trans(vsk)->notify_ops->recv_post_dequeue( 1949d021c344SAndy King &vsk->sk, target, copied, data_read, 1950d021c344SAndy King (struct vmci_transport_recv_notify_data *)data); 1951d021c344SAndy King } 1952d021c344SAndy King 1953d021c344SAndy King static int vmci_transport_notify_send_init( 1954d021c344SAndy King struct vsock_sock *vsk, 1955d021c344SAndy King struct vsock_transport_send_notify_data *data) 1956d021c344SAndy King { 1957d021c344SAndy King return vmci_trans(vsk)->notify_ops->send_init( 1958d021c344SAndy King &vsk->sk, 1959d021c344SAndy King (struct vmci_transport_send_notify_data *)data); 1960d021c344SAndy King } 1961d021c344SAndy King 1962d021c344SAndy King static int vmci_transport_notify_send_pre_block( 1963d021c344SAndy King struct vsock_sock *vsk, 1964d021c344SAndy King struct vsock_transport_send_notify_data *data) 1965d021c344SAndy King { 1966d021c344SAndy King return vmci_trans(vsk)->notify_ops->send_pre_block( 1967d021c344SAndy King &vsk->sk, 1968d021c344SAndy King (struct vmci_transport_send_notify_data *)data); 1969d021c344SAndy King } 1970d021c344SAndy King 1971d021c344SAndy King static int vmci_transport_notify_send_pre_enqueue( 1972d021c344SAndy King struct vsock_sock *vsk, 1973d021c344SAndy King struct vsock_transport_send_notify_data *data) 1974d021c344SAndy King { 1975d021c344SAndy King return vmci_trans(vsk)->notify_ops->send_pre_enqueue( 1976d021c344SAndy King &vsk->sk, 1977d021c344SAndy King (struct vmci_transport_send_notify_data *)data); 1978d021c344SAndy King } 1979d021c344SAndy King 1980d021c344SAndy King static int vmci_transport_notify_send_post_enqueue( 1981d021c344SAndy King struct vsock_sock *vsk, 1982d021c344SAndy King ssize_t written, 1983d021c344SAndy King struct vsock_transport_send_notify_data *data) 1984d021c344SAndy King { 1985d021c344SAndy King return vmci_trans(vsk)->notify_ops->send_post_enqueue( 1986d021c344SAndy King &vsk->sk, written, 1987d021c344SAndy King (struct vmci_transport_send_notify_data *)data); 1988d021c344SAndy King } 1989d021c344SAndy King 1990d021c344SAndy King static bool vmci_transport_old_proto_override(bool *old_pkt_proto) 1991d021c344SAndy King { 1992d021c344SAndy King if (PROTOCOL_OVERRIDE != -1) { 1993d021c344SAndy King if (PROTOCOL_OVERRIDE == 0) 1994d021c344SAndy King *old_pkt_proto = true; 1995d021c344SAndy King else 1996d021c344SAndy King *old_pkt_proto = false; 1997d021c344SAndy King 1998d021c344SAndy King pr_info("Proto override in use\n"); 1999d021c344SAndy King return true; 2000d021c344SAndy King } 2001d021c344SAndy King 2002d021c344SAndy King return false; 2003d021c344SAndy King } 2004d021c344SAndy King 2005d021c344SAndy King static bool vmci_transport_proto_to_notify_struct(struct sock *sk, 2006d021c344SAndy King u16 *proto, 2007d021c344SAndy King bool old_pkt_proto) 2008d021c344SAndy King { 2009d021c344SAndy King struct vsock_sock *vsk = vsock_sk(sk); 2010d021c344SAndy King 2011d021c344SAndy King if (old_pkt_proto) { 2012d021c344SAndy King if (*proto != VSOCK_PROTO_INVALID) { 2013d021c344SAndy King pr_err("Can't set both an old and new protocol\n"); 2014d021c344SAndy King return false; 2015d021c344SAndy King } 2016d021c344SAndy King vmci_trans(vsk)->notify_ops = &vmci_transport_notify_pkt_ops; 2017d021c344SAndy King goto exit; 2018d021c344SAndy King } 2019d021c344SAndy King 2020d021c344SAndy King switch (*proto) { 2021d021c344SAndy King case VSOCK_PROTO_PKT_ON_NOTIFY: 2022d021c344SAndy King vmci_trans(vsk)->notify_ops = 2023d021c344SAndy King &vmci_transport_notify_pkt_q_state_ops; 2024d021c344SAndy King break; 2025d021c344SAndy King default: 2026d021c344SAndy King pr_err("Unknown notify protocol version\n"); 2027d021c344SAndy King return false; 2028d021c344SAndy King } 2029d021c344SAndy King 2030d021c344SAndy King exit: 2031d021c344SAndy King vmci_trans(vsk)->notify_ops->socket_init(sk); 2032d021c344SAndy King return true; 2033d021c344SAndy King } 2034d021c344SAndy King 2035d021c344SAndy King static u16 vmci_transport_new_proto_supported_versions(void) 2036d021c344SAndy King { 2037d021c344SAndy King if (PROTOCOL_OVERRIDE != -1) 2038d021c344SAndy King return PROTOCOL_OVERRIDE; 2039d021c344SAndy King 2040d021c344SAndy King return VSOCK_PROTO_ALL_SUPPORTED; 2041d021c344SAndy King } 2042d021c344SAndy King 2043d021c344SAndy King static u32 vmci_transport_get_local_cid(void) 2044d021c344SAndy King { 2045d021c344SAndy King return vmci_get_context_id(); 2046d021c344SAndy King } 2047d021c344SAndy King 204856130915SJulia Lawall static const struct vsock_transport vmci_transport = { 2049d021c344SAndy King .init = vmci_transport_socket_init, 2050d021c344SAndy King .destruct = vmci_transport_destruct, 2051d021c344SAndy King .release = vmci_transport_release, 2052d021c344SAndy King .connect = vmci_transport_connect, 2053d021c344SAndy King .dgram_bind = vmci_transport_dgram_bind, 2054d021c344SAndy King .dgram_dequeue = vmci_transport_dgram_dequeue, 2055d021c344SAndy King .dgram_enqueue = vmci_transport_dgram_enqueue, 2056d021c344SAndy King .dgram_allow = vmci_transport_dgram_allow, 2057d021c344SAndy King .stream_dequeue = vmci_transport_stream_dequeue, 2058d021c344SAndy King .stream_enqueue = vmci_transport_stream_enqueue, 2059d021c344SAndy King .stream_has_data = vmci_transport_stream_has_data, 2060d021c344SAndy King .stream_has_space = vmci_transport_stream_has_space, 2061d021c344SAndy King .stream_rcvhiwat = vmci_transport_stream_rcvhiwat, 2062d021c344SAndy King .stream_is_active = vmci_transport_stream_is_active, 2063d021c344SAndy King .stream_allow = vmci_transport_stream_allow, 2064d021c344SAndy King .notify_poll_in = vmci_transport_notify_poll_in, 2065d021c344SAndy King .notify_poll_out = vmci_transport_notify_poll_out, 2066d021c344SAndy King .notify_recv_init = vmci_transport_notify_recv_init, 2067d021c344SAndy King .notify_recv_pre_block = vmci_transport_notify_recv_pre_block, 2068d021c344SAndy King .notify_recv_pre_dequeue = vmci_transport_notify_recv_pre_dequeue, 2069d021c344SAndy King .notify_recv_post_dequeue = vmci_transport_notify_recv_post_dequeue, 2070d021c344SAndy King .notify_send_init = vmci_transport_notify_send_init, 2071d021c344SAndy King .notify_send_pre_block = vmci_transport_notify_send_pre_block, 2072d021c344SAndy King .notify_send_pre_enqueue = vmci_transport_notify_send_pre_enqueue, 2073d021c344SAndy King .notify_send_post_enqueue = vmci_transport_notify_send_post_enqueue, 2074d021c344SAndy King .shutdown = vmci_transport_shutdown, 2075d021c344SAndy King .set_buffer_size = vmci_transport_set_buffer_size, 2076d021c344SAndy King .set_min_buffer_size = vmci_transport_set_min_buffer_size, 2077d021c344SAndy King .set_max_buffer_size = vmci_transport_set_max_buffer_size, 2078d021c344SAndy King .get_buffer_size = vmci_transport_get_buffer_size, 2079d021c344SAndy King .get_min_buffer_size = vmci_transport_get_min_buffer_size, 2080d021c344SAndy King .get_max_buffer_size = vmci_transport_get_max_buffer_size, 2081d021c344SAndy King .get_local_cid = vmci_transport_get_local_cid, 2082d021c344SAndy King }; 2083d021c344SAndy King 2084d021c344SAndy King static int __init vmci_transport_init(void) 2085d021c344SAndy King { 2086d021c344SAndy King int err; 2087d021c344SAndy King 2088d021c344SAndy King /* Create the datagram handle that we will use to send and receive all 2089d021c344SAndy King * VSocket control messages for this context. 2090d021c344SAndy King */ 2091d021c344SAndy King err = vmci_transport_datagram_create_hnd(VMCI_TRANSPORT_PACKET_RID, 2092d021c344SAndy King VMCI_FLAG_ANYCID_DG_HND, 2093d021c344SAndy King vmci_transport_recv_stream_cb, 2094d021c344SAndy King NULL, 2095d021c344SAndy King &vmci_transport_stream_handle); 2096d021c344SAndy King if (err < VMCI_SUCCESS) { 2097d021c344SAndy King pr_err("Unable to create datagram handle. (%d)\n", err); 2098d021c344SAndy King return vmci_transport_error_to_vsock_error(err); 2099d021c344SAndy King } 2100d021c344SAndy King 2101d021c344SAndy King err = vmci_event_subscribe(VMCI_EVENT_QP_RESUMED, 2102d021c344SAndy King vmci_transport_qp_resumed_cb, 2103d021c344SAndy King NULL, &vmci_transport_qp_resumed_sub_id); 2104d021c344SAndy King if (err < VMCI_SUCCESS) { 2105d021c344SAndy King pr_err("Unable to subscribe to resumed event. (%d)\n", err); 2106d021c344SAndy King err = vmci_transport_error_to_vsock_error(err); 2107d021c344SAndy King vmci_transport_qp_resumed_sub_id = VMCI_INVALID_ID; 2108d021c344SAndy King goto err_destroy_stream_handle; 2109d021c344SAndy King } 2110d021c344SAndy King 2111d021c344SAndy King err = vsock_core_init(&vmci_transport); 2112d021c344SAndy King if (err < 0) 2113d021c344SAndy King goto err_unsubscribe; 2114d021c344SAndy King 2115d021c344SAndy King return 0; 2116d021c344SAndy King 2117d021c344SAndy King err_unsubscribe: 2118d021c344SAndy King vmci_event_unsubscribe(vmci_transport_qp_resumed_sub_id); 2119d021c344SAndy King err_destroy_stream_handle: 2120d021c344SAndy King vmci_datagram_destroy_handle(vmci_transport_stream_handle); 2121d021c344SAndy King return err; 2122d021c344SAndy King } 2123d021c344SAndy King module_init(vmci_transport_init); 2124d021c344SAndy King 2125d021c344SAndy King static void __exit vmci_transport_exit(void) 2126d021c344SAndy King { 21274ef7ea91SJorgen Hansen cancel_work_sync(&vmci_transport_cleanup_work); 21284ef7ea91SJorgen Hansen vmci_transport_free_resources(&vmci_transport_cleanup_list); 21294ef7ea91SJorgen Hansen 2130d021c344SAndy King if (!vmci_handle_is_invalid(vmci_transport_stream_handle)) { 2131d021c344SAndy King if (vmci_datagram_destroy_handle( 2132d021c344SAndy King vmci_transport_stream_handle) != VMCI_SUCCESS) 2133d021c344SAndy King pr_err("Couldn't destroy datagram handle\n"); 2134d021c344SAndy King vmci_transport_stream_handle = VMCI_INVALID_HANDLE; 2135d021c344SAndy King } 2136d021c344SAndy King 2137d021c344SAndy King if (vmci_transport_qp_resumed_sub_id != VMCI_INVALID_ID) { 2138d021c344SAndy King vmci_event_unsubscribe(vmci_transport_qp_resumed_sub_id); 2139d021c344SAndy King vmci_transport_qp_resumed_sub_id = VMCI_INVALID_ID; 2140d021c344SAndy King } 2141d021c344SAndy King 2142d021c344SAndy King vsock_core_exit(); 2143d021c344SAndy King } 2144d021c344SAndy King module_exit(vmci_transport_exit); 2145d021c344SAndy King 2146d021c344SAndy King MODULE_AUTHOR("VMware, Inc."); 2147d021c344SAndy King MODULE_DESCRIPTION("VMCI transport for Virtual Sockets"); 21489c995cc9SJorgen Hansen MODULE_VERSION("1.0.4.0-k"); 2149d021c344SAndy King MODULE_LICENSE("GPL v2"); 2150d021c344SAndy King MODULE_ALIAS("vmware_vsock"); 2151d021c344SAndy King MODULE_ALIAS_NETPROTO(PF_VSOCK); 2152