1 // SPDX-License-Identifier: GPL-2.0-only 2 /* 3 * An implementation of host initiated guest snapshot. 4 * 5 * Copyright (C) 2013, Microsoft, Inc. 6 * Author : K. Y. Srinivasan <kys@microsoft.com> 7 */ 8 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt 9 10 #include <linux/net.h> 11 #include <linux/nls.h> 12 #include <linux/connector.h> 13 #include <linux/workqueue.h> 14 #include <linux/hyperv.h> 15 #include <asm/hyperv-tlfs.h> 16 17 #include "hyperv_vmbus.h" 18 #include "hv_utils_transport.h" 19 20 #define VSS_MAJOR 5 21 #define VSS_MINOR 0 22 #define VSS_VERSION (VSS_MAJOR << 16 | VSS_MINOR) 23 24 #define VSS_VER_COUNT 1 25 static const int vss_versions[] = { 26 VSS_VERSION 27 }; 28 29 #define FW_VER_COUNT 1 30 static const int fw_versions[] = { 31 UTIL_FW_VERSION 32 }; 33 34 /* See comment with struct hv_vss_msg regarding the max VMbus packet size */ 35 #define VSS_MAX_PKT_SIZE (HV_HYP_PAGE_SIZE * 2) 36 37 /* 38 * Timeout values are based on expecations from host 39 */ 40 #define VSS_FREEZE_TIMEOUT (15 * 60) 41 42 /* 43 * Global state maintained for transaction that is being processed. For a class 44 * of integration services, including the "VSS service", the specified protocol 45 * is a "request/response" protocol which means that there can only be single 46 * outstanding transaction from the host at any given point in time. We use 47 * this to simplify memory management in this driver - we cache and process 48 * only one message at a time. 49 * 50 * While the request/response protocol is guaranteed by the host, we further 51 * ensure this by serializing packet processing in this driver - we do not 52 * read additional packets from the VMBUs until the current packet is fully 53 * handled. 54 */ 55 56 static struct { 57 int state; /* hvutil_device_state */ 58 int recv_len; /* number of bytes received. */ 59 struct vmbus_channel *recv_channel; /* chn we got the request */ 60 u64 recv_req_id; /* request ID. */ 61 struct hv_vss_msg *msg; /* current message */ 62 } vss_transaction; 63 64 65 static void vss_respond_to_host(int error); 66 67 /* 68 * This state maintains the version number registered by the daemon. 69 */ 70 static int dm_reg_value; 71 72 static const char vss_devname[] = "vmbus/hv_vss"; 73 static __u8 *recv_buffer; 74 static struct hvutil_transport *hvt; 75 76 static void vss_timeout_func(struct work_struct *dummy); 77 static void vss_handle_request(struct work_struct *dummy); 78 79 static DECLARE_DELAYED_WORK(vss_timeout_work, vss_timeout_func); 80 static DECLARE_WORK(vss_handle_request_work, vss_handle_request); 81 82 static void vss_poll_wrapper(void *channel) 83 { 84 /* Transaction is finished, reset the state here to avoid races. */ 85 vss_transaction.state = HVUTIL_READY; 86 tasklet_schedule(&((struct vmbus_channel *)channel)->callback_event); 87 } 88 89 /* 90 * Callback when data is received from user mode. 91 */ 92 93 static void vss_timeout_func(struct work_struct *dummy) 94 { 95 /* 96 * Timeout waiting for userspace component to reply happened. 97 */ 98 pr_warn("VSS: timeout waiting for daemon to reply\n"); 99 vss_respond_to_host(HV_E_FAIL); 100 101 hv_poll_channel(vss_transaction.recv_channel, vss_poll_wrapper); 102 } 103 104 static void vss_register_done(void) 105 { 106 hv_poll_channel(vss_transaction.recv_channel, vss_poll_wrapper); 107 pr_debug("VSS: userspace daemon registered\n"); 108 } 109 110 static int vss_handle_handshake(struct hv_vss_msg *vss_msg) 111 { 112 u32 our_ver = VSS_OP_REGISTER1; 113 114 switch (vss_msg->vss_hdr.operation) { 115 case VSS_OP_REGISTER: 116 /* Daemon doesn't expect us to reply */ 117 dm_reg_value = VSS_OP_REGISTER; 118 break; 119 case VSS_OP_REGISTER1: 120 /* Daemon expects us to reply with our own version */ 121 if (hvutil_transport_send(hvt, &our_ver, sizeof(our_ver), 122 vss_register_done)) 123 return -EFAULT; 124 dm_reg_value = VSS_OP_REGISTER1; 125 break; 126 default: 127 return -EINVAL; 128 } 129 pr_info("VSS: userspace daemon ver. %d connected\n", dm_reg_value); 130 return 0; 131 } 132 133 static int vss_on_msg(void *msg, int len) 134 { 135 struct hv_vss_msg *vss_msg = (struct hv_vss_msg *)msg; 136 137 if (len != sizeof(*vss_msg)) { 138 pr_debug("VSS: Message size does not match length\n"); 139 return -EINVAL; 140 } 141 142 if (vss_msg->vss_hdr.operation == VSS_OP_REGISTER || 143 vss_msg->vss_hdr.operation == VSS_OP_REGISTER1) { 144 /* 145 * Don't process registration messages if we're in the middle 146 * of a transaction processing. 147 */ 148 if (vss_transaction.state > HVUTIL_READY) { 149 pr_debug("VSS: Got unexpected registration request\n"); 150 return -EINVAL; 151 } 152 153 return vss_handle_handshake(vss_msg); 154 } else if (vss_transaction.state == HVUTIL_USERSPACE_REQ) { 155 vss_transaction.state = HVUTIL_USERSPACE_RECV; 156 157 if (vss_msg->vss_hdr.operation == VSS_OP_HOT_BACKUP) 158 vss_transaction.msg->vss_cf.flags = 159 VSS_HBU_NO_AUTO_RECOVERY; 160 161 if (cancel_delayed_work_sync(&vss_timeout_work)) { 162 vss_respond_to_host(vss_msg->error); 163 /* Transaction is finished, reset the state. */ 164 hv_poll_channel(vss_transaction.recv_channel, 165 vss_poll_wrapper); 166 } 167 } else { 168 /* This is a spurious call! */ 169 pr_debug("VSS: Transaction not active\n"); 170 return -EINVAL; 171 } 172 return 0; 173 } 174 175 static void vss_send_op(void) 176 { 177 int op = vss_transaction.msg->vss_hdr.operation; 178 int rc; 179 struct hv_vss_msg *vss_msg; 180 181 /* The transaction state is wrong. */ 182 if (vss_transaction.state != HVUTIL_HOSTMSG_RECEIVED) { 183 pr_debug("VSS: Unexpected attempt to send to daemon\n"); 184 return; 185 } 186 187 vss_msg = kzalloc(sizeof(*vss_msg), GFP_KERNEL); 188 if (!vss_msg) 189 return; 190 191 vss_msg->vss_hdr.operation = op; 192 193 vss_transaction.state = HVUTIL_USERSPACE_REQ; 194 195 schedule_delayed_work(&vss_timeout_work, op == VSS_OP_FREEZE ? 196 secs_to_jiffies(VSS_FREEZE_TIMEOUT) : 197 secs_to_jiffies(HV_UTIL_TIMEOUT)); 198 199 rc = hvutil_transport_send(hvt, vss_msg, sizeof(*vss_msg), NULL); 200 if (rc) { 201 pr_warn("VSS: failed to communicate to the daemon: %d\n", rc); 202 if (cancel_delayed_work_sync(&vss_timeout_work)) { 203 vss_respond_to_host(HV_E_FAIL); 204 vss_transaction.state = HVUTIL_READY; 205 } 206 } 207 208 kfree(vss_msg); 209 } 210 211 static void vss_handle_request(struct work_struct *dummy) 212 { 213 switch (vss_transaction.msg->vss_hdr.operation) { 214 /* 215 * Initiate a "freeze/thaw" operation in the guest. 216 * We respond to the host once the operation is complete. 217 * 218 * We send the message to the user space daemon and the operation is 219 * performed in the daemon. 220 */ 221 case VSS_OP_THAW: 222 case VSS_OP_FREEZE: 223 case VSS_OP_HOT_BACKUP: 224 if (vss_transaction.state < HVUTIL_READY) { 225 /* Userspace is not registered yet */ 226 pr_debug("VSS: Not ready for request.\n"); 227 vss_respond_to_host(HV_E_FAIL); 228 return; 229 } 230 231 pr_debug("VSS: Received request for op code: %d\n", 232 vss_transaction.msg->vss_hdr.operation); 233 vss_transaction.state = HVUTIL_HOSTMSG_RECEIVED; 234 vss_send_op(); 235 return; 236 case VSS_OP_GET_DM_INFO: 237 vss_transaction.msg->dm_info.flags = 0; 238 break; 239 default: 240 break; 241 } 242 243 vss_respond_to_host(0); 244 hv_poll_channel(vss_transaction.recv_channel, vss_poll_wrapper); 245 } 246 247 /* 248 * Send a response back to the host. 249 */ 250 251 static void 252 vss_respond_to_host(int error) 253 { 254 struct icmsg_hdr *icmsghdrp; 255 u32 buf_len; 256 struct vmbus_channel *channel; 257 u64 req_id; 258 259 /* 260 * Copy the global state for completing the transaction. Note that 261 * only one transaction can be active at a time. 262 */ 263 264 buf_len = vss_transaction.recv_len; 265 channel = vss_transaction.recv_channel; 266 req_id = vss_transaction.recv_req_id; 267 268 icmsghdrp = (struct icmsg_hdr *) 269 &recv_buffer[sizeof(struct vmbuspipe_hdr)]; 270 271 if (channel->onchannel_callback == NULL) 272 /* 273 * We have raced with util driver being unloaded; 274 * silently return. 275 */ 276 return; 277 278 icmsghdrp->status = error; 279 280 icmsghdrp->icflags = ICMSGHDRFLAG_TRANSACTION | ICMSGHDRFLAG_RESPONSE; 281 282 vmbus_sendpacket(channel, recv_buffer, buf_len, req_id, 283 VM_PKT_DATA_INBAND, 0); 284 285 } 286 287 /* 288 * This callback is invoked when we get a VSS message from the host. 289 * The host ensures that only one VSS transaction can be active at a time. 290 */ 291 292 void hv_vss_onchannelcallback(void *context) 293 { 294 struct vmbus_channel *channel = context; 295 u32 recvlen; 296 u64 requestid; 297 struct hv_vss_msg *vss_msg; 298 int vss_srv_version; 299 300 struct icmsg_hdr *icmsghdrp; 301 302 if (vss_transaction.state > HVUTIL_READY) 303 return; 304 305 if (vmbus_recvpacket(channel, recv_buffer, VSS_MAX_PKT_SIZE, &recvlen, &requestid)) { 306 pr_err_ratelimited("VSS request received. Could not read into recv buf\n"); 307 return; 308 } 309 310 if (!recvlen) 311 return; 312 313 /* Ensure recvlen is big enough to read header data */ 314 if (recvlen < ICMSG_HDR) { 315 pr_err_ratelimited("VSS request received. Packet length too small: %d\n", 316 recvlen); 317 return; 318 } 319 320 icmsghdrp = (struct icmsg_hdr *)&recv_buffer[sizeof(struct vmbuspipe_hdr)]; 321 322 if (icmsghdrp->icmsgtype == ICMSGTYPE_NEGOTIATE) { 323 if (vmbus_prep_negotiate_resp(icmsghdrp, 324 recv_buffer, recvlen, 325 fw_versions, FW_VER_COUNT, 326 vss_versions, VSS_VER_COUNT, 327 NULL, &vss_srv_version)) { 328 329 pr_info("VSS IC version %d.%d\n", 330 vss_srv_version >> 16, 331 vss_srv_version & 0xFFFF); 332 } 333 } else if (icmsghdrp->icmsgtype == ICMSGTYPE_VSS) { 334 /* Ensure recvlen is big enough to contain hv_vss_msg */ 335 if (recvlen < ICMSG_HDR + sizeof(struct hv_vss_msg)) { 336 pr_err_ratelimited("Invalid VSS msg. Packet length too small: %u\n", 337 recvlen); 338 return; 339 } 340 vss_msg = (struct hv_vss_msg *)&recv_buffer[ICMSG_HDR]; 341 342 /* 343 * Stash away this global state for completing the 344 * transaction; note transactions are serialized. 345 */ 346 347 vss_transaction.recv_len = recvlen; 348 vss_transaction.recv_req_id = requestid; 349 vss_transaction.msg = (struct hv_vss_msg *)vss_msg; 350 351 schedule_work(&vss_handle_request_work); 352 return; 353 } else { 354 pr_err_ratelimited("VSS request received. Invalid msg type: %d\n", 355 icmsghdrp->icmsgtype); 356 return; 357 } 358 359 icmsghdrp->icflags = ICMSGHDRFLAG_TRANSACTION | 360 ICMSGHDRFLAG_RESPONSE; 361 vmbus_sendpacket(channel, recv_buffer, recvlen, requestid, 362 VM_PKT_DATA_INBAND, 0); 363 } 364 365 static void vss_on_reset(void) 366 { 367 if (cancel_delayed_work_sync(&vss_timeout_work)) 368 vss_respond_to_host(HV_E_FAIL); 369 vss_transaction.state = HVUTIL_DEVICE_INIT; 370 } 371 372 int 373 hv_vss_init(struct hv_util_service *srv) 374 { 375 if (vmbus_proto_version < VERSION_WIN8_1) { 376 pr_warn("Integration service 'Backup (volume snapshot)'" 377 " not supported on this host version.\n"); 378 return -ENOTSUPP; 379 } 380 recv_buffer = srv->recv_buffer; 381 vss_transaction.recv_channel = srv->channel; 382 vss_transaction.recv_channel->max_pkt_size = VSS_MAX_PKT_SIZE; 383 384 /* 385 * When this driver loads, the user level daemon that 386 * processes the host requests may not yet be running. 387 * Defer processing channel callbacks until the daemon 388 * has registered. 389 */ 390 vss_transaction.state = HVUTIL_DEVICE_INIT; 391 392 return 0; 393 } 394 395 int 396 hv_vss_init_transport(void) 397 { 398 hvt = hvutil_transport_init(vss_devname, CN_VSS_IDX, CN_VSS_VAL, 399 vss_on_msg, vss_on_reset); 400 if (!hvt) { 401 pr_warn("VSS: Failed to initialize transport\n"); 402 return -EFAULT; 403 } 404 405 return 0; 406 } 407 408 static void hv_vss_cancel_work(void) 409 { 410 cancel_delayed_work_sync(&vss_timeout_work); 411 cancel_work_sync(&vss_handle_request_work); 412 } 413 414 int hv_vss_pre_suspend(void) 415 { 416 struct vmbus_channel *channel = vss_transaction.recv_channel; 417 struct hv_vss_msg *vss_msg; 418 419 /* 420 * Fake a THAW message for the user space daemon in case the daemon 421 * has frozen the file systems. It doesn't matter if there is already 422 * a message pending to be delivered to the user space since we force 423 * vss_transaction.state to be HVUTIL_READY, so the user space daemon's 424 * write() will fail with EINVAL (see vss_on_msg()), and the daemon 425 * will reset the device by closing and re-opening it. 426 */ 427 vss_msg = kzalloc(sizeof(*vss_msg), GFP_KERNEL); 428 if (!vss_msg) 429 return -ENOMEM; 430 431 tasklet_disable(&channel->callback_event); 432 433 vss_msg->vss_hdr.operation = VSS_OP_THAW; 434 435 /* Cancel any possible pending work. */ 436 hv_vss_cancel_work(); 437 438 /* We don't care about the return value. */ 439 hvutil_transport_send(hvt, vss_msg, sizeof(*vss_msg), NULL); 440 441 kfree(vss_msg); 442 443 vss_transaction.state = HVUTIL_READY; 444 445 /* tasklet_enable() will be called in hv_vss_pre_resume(). */ 446 return 0; 447 } 448 449 int hv_vss_pre_resume(void) 450 { 451 struct vmbus_channel *channel = vss_transaction.recv_channel; 452 453 tasklet_enable(&channel->callback_event); 454 455 return 0; 456 } 457 458 void hv_vss_deinit(void) 459 { 460 vss_transaction.state = HVUTIL_DEVICE_DYING; 461 462 hv_vss_cancel_work(); 463 464 hvutil_transport_destroy(hvt); 465 } 466