1 /*- 2 * SPDX-License-Identifier: BSD-2-Clause-FreeBSD 3 * 4 * Copyright (c) 2016 Jakub Klama <jceel@FreeBSD.org>. 5 * Copyright (c) 2018 Marcelo Araujo <araujo@FreeBSD.org>. 6 * All rights reserved. 7 * 8 * Redistribution and use in source and binary forms, with or without 9 * modification, are permitted provided that the following conditions 10 * are met: 11 * 1. Redistributions of source code must retain the above copyright 12 * notice, this list of conditions and the following disclaimer 13 * in this position and unchanged. 14 * 2. Redistributions in binary form must reproduce the above copyright 15 * notice, this list of conditions and the following disclaimer in the 16 * documentation and/or other materials provided with the distribution. 17 * 18 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 19 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 20 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 21 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 22 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 23 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 24 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 25 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 26 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 27 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 28 * SUCH DAMAGE. 29 */ 30 31 #include <sys/cdefs.h> 32 __FBSDID("$FreeBSD$"); 33 34 #include <sys/param.h> 35 #include <sys/linker_set.h> 36 #include <sys/types.h> 37 #include <sys/uio.h> 38 #include <sys/time.h> 39 #include <sys/queue.h> 40 #include <sys/sbuf.h> 41 42 #include <errno.h> 43 #include <fcntl.h> 44 #include <stdio.h> 45 #include <stdlib.h> 46 #include <stdbool.h> 47 #include <string.h> 48 #include <unistd.h> 49 #include <assert.h> 50 #include <pthread.h> 51 #include <pthread_np.h> 52 53 #include <cam/scsi/scsi_all.h> 54 #include <cam/scsi/scsi_message.h> 55 #include <cam/ctl/ctl.h> 56 #include <cam/ctl/ctl_io.h> 57 #include <cam/ctl/ctl_backend.h> 58 #include <cam/ctl/ctl_ioctl.h> 59 #include <cam/ctl/ctl_util.h> 60 #include <cam/ctl/ctl_scsi_all.h> 61 #include <camlib.h> 62 63 #include "bhyverun.h" 64 #include "pci_emul.h" 65 #include "virtio.h" 66 #include "iov.h" 67 68 #define VTSCSI_RINGSZ 64 69 #define VTSCSI_REQUESTQ 1 70 #define VTSCSI_THR_PER_Q 16 71 #define VTSCSI_MAXQ (VTSCSI_REQUESTQ + 2) 72 #define VTSCSI_MAXSEG 64 73 74 #define VTSCSI_IN_HEADER_LEN(_sc) \ 75 (sizeof(struct pci_vtscsi_req_cmd_rd) + _sc->vss_config.cdb_size) 76 77 #define VTSCSI_OUT_HEADER_LEN(_sc) \ 78 (sizeof(struct pci_vtscsi_req_cmd_wr) + _sc->vss_config.sense_size) 79 80 #define VIRTIO_SCSI_MAX_CHANNEL 0 81 #define VIRTIO_SCSI_MAX_TARGET 0 82 #define VIRTIO_SCSI_MAX_LUN 16383 83 84 #define VIRTIO_SCSI_F_INOUT (1 << 0) 85 #define VIRTIO_SCSI_F_HOTPLUG (1 << 1) 86 #define VIRTIO_SCSI_F_CHANGE (1 << 2) 87 88 static int pci_vtscsi_debug = 0; 89 #define DPRINTF(params) if (pci_vtscsi_debug) printf params 90 #define WPRINTF(params) printf params 91 92 struct pci_vtscsi_config { 93 uint32_t num_queues; 94 uint32_t seg_max; 95 uint32_t max_sectors; 96 uint32_t cmd_per_lun; 97 uint32_t event_info_size; 98 uint32_t sense_size; 99 uint32_t cdb_size; 100 uint16_t max_channel; 101 uint16_t max_target; 102 uint32_t max_lun; 103 } __attribute__((packed)); 104 105 struct pci_vtscsi_queue { 106 struct pci_vtscsi_softc * vsq_sc; 107 struct vqueue_info * vsq_vq; 108 pthread_mutex_t vsq_mtx; 109 pthread_mutex_t vsq_qmtx; 110 pthread_cond_t vsq_cv; 111 STAILQ_HEAD(, pci_vtscsi_request) vsq_requests; 112 LIST_HEAD(, pci_vtscsi_worker) vsq_workers; 113 }; 114 115 struct pci_vtscsi_worker { 116 struct pci_vtscsi_queue * vsw_queue; 117 pthread_t vsw_thread; 118 bool vsw_exiting; 119 LIST_ENTRY(pci_vtscsi_worker) vsw_link; 120 }; 121 122 struct pci_vtscsi_request { 123 struct pci_vtscsi_queue * vsr_queue; 124 struct iovec vsr_iov_in[VTSCSI_MAXSEG]; 125 int vsr_niov_in; 126 struct iovec vsr_iov_out[VTSCSI_MAXSEG]; 127 int vsr_niov_out; 128 uint32_t vsr_idx; 129 STAILQ_ENTRY(pci_vtscsi_request) vsr_link; 130 }; 131 132 /* 133 * Per-device softc 134 */ 135 struct pci_vtscsi_softc { 136 struct virtio_softc vss_vs; 137 struct vqueue_info vss_vq[VTSCSI_MAXQ]; 138 struct pci_vtscsi_queue vss_queues[VTSCSI_REQUESTQ]; 139 pthread_mutex_t vss_mtx; 140 int vss_iid; 141 int vss_ctl_fd; 142 uint32_t vss_features; 143 struct pci_vtscsi_config vss_config; 144 }; 145 146 #define VIRTIO_SCSI_T_TMF 0 147 #define VIRTIO_SCSI_T_TMF_ABORT_TASK 0 148 #define VIRTIO_SCSI_T_TMF_ABORT_TASK_SET 1 149 #define VIRTIO_SCSI_T_TMF_CLEAR_ACA 2 150 #define VIRTIO_SCSI_T_TMF_CLEAR_TASK_SET 3 151 #define VIRTIO_SCSI_T_TMF_I_T_NEXUS_RESET 4 152 #define VIRTIO_SCSI_T_TMF_LOGICAL_UNIT_RESET 5 153 #define VIRTIO_SCSI_T_TMF_QUERY_TASK 6 154 #define VIRTIO_SCSI_T_TMF_QUERY_TASK_SET 7 155 156 /* command-specific response values */ 157 #define VIRTIO_SCSI_S_FUNCTION_COMPLETE 0 158 #define VIRTIO_SCSI_S_FUNCTION_SUCCEEDED 10 159 #define VIRTIO_SCSI_S_FUNCTION_REJECTED 11 160 161 struct pci_vtscsi_ctrl_tmf { 162 uint32_t type; 163 uint32_t subtype; 164 uint8_t lun[8]; 165 uint64_t id; 166 uint8_t response; 167 } __attribute__((packed)); 168 169 #define VIRTIO_SCSI_T_AN_QUERY 1 170 #define VIRTIO_SCSI_EVT_ASYNC_OPERATIONAL_CHANGE 2 171 #define VIRTIO_SCSI_EVT_ASYNC_POWER_MGMT 4 172 #define VIRTIO_SCSI_EVT_ASYNC_EXTERNAL_REQUEST 8 173 #define VIRTIO_SCSI_EVT_ASYNC_MEDIA_CHANGE 16 174 #define VIRTIO_SCSI_EVT_ASYNC_MULTI_HOST 32 175 #define VIRTIO_SCSI_EVT_ASYNC_DEVICE_BUSY 64 176 177 struct pci_vtscsi_ctrl_an { 178 uint32_t type; 179 uint8_t lun[8]; 180 uint32_t event_requested; 181 uint32_t event_actual; 182 uint8_t response; 183 } __attribute__((packed)); 184 185 /* command-specific response values */ 186 #define VIRTIO_SCSI_S_OK 0 187 #define VIRTIO_SCSI_S_OVERRUN 1 188 #define VIRTIO_SCSI_S_ABORTED 2 189 #define VIRTIO_SCSI_S_BAD_TARGET 3 190 #define VIRTIO_SCSI_S_RESET 4 191 #define VIRTIO_SCSI_S_BUSY 5 192 #define VIRTIO_SCSI_S_TRANSPORT_FAILURE 6 193 #define VIRTIO_SCSI_S_TARGET_FAILURE 7 194 #define VIRTIO_SCSI_S_NEXUS_FAILURE 8 195 #define VIRTIO_SCSI_S_FAILURE 9 196 #define VIRTIO_SCSI_S_INCORRECT_LUN 12 197 198 /* task_attr */ 199 #define VIRTIO_SCSI_S_SIMPLE 0 200 #define VIRTIO_SCSI_S_ORDERED 1 201 #define VIRTIO_SCSI_S_HEAD 2 202 #define VIRTIO_SCSI_S_ACA 3 203 204 struct pci_vtscsi_event { 205 uint32_t event; 206 uint8_t lun[8]; 207 uint32_t reason; 208 } __attribute__((packed)); 209 210 struct pci_vtscsi_req_cmd_rd { 211 uint8_t lun[8]; 212 uint64_t id; 213 uint8_t task_attr; 214 uint8_t prio; 215 uint8_t crn; 216 uint8_t cdb[]; 217 } __attribute__((packed)); 218 219 struct pci_vtscsi_req_cmd_wr { 220 uint32_t sense_len; 221 uint32_t residual; 222 uint16_t status_qualifier; 223 uint8_t status; 224 uint8_t response; 225 uint8_t sense[]; 226 } __attribute__((packed)); 227 228 static void *pci_vtscsi_proc(void *); 229 static void pci_vtscsi_reset(void *); 230 static void pci_vtscsi_neg_features(void *, uint64_t); 231 static int pci_vtscsi_cfgread(void *, int, int, uint32_t *); 232 static int pci_vtscsi_cfgwrite(void *, int, int, uint32_t); 233 static inline int pci_vtscsi_get_lun(uint8_t *); 234 static int pci_vtscsi_control_handle(struct pci_vtscsi_softc *, void *, size_t); 235 static int pci_vtscsi_tmf_handle(struct pci_vtscsi_softc *, 236 struct pci_vtscsi_ctrl_tmf *); 237 static int pci_vtscsi_an_handle(struct pci_vtscsi_softc *, 238 struct pci_vtscsi_ctrl_an *); 239 static int pci_vtscsi_request_handle(struct pci_vtscsi_queue *, struct iovec *, 240 int, struct iovec *, int); 241 static void pci_vtscsi_controlq_notify(void *, struct vqueue_info *); 242 static void pci_vtscsi_eventq_notify(void *, struct vqueue_info *); 243 static void pci_vtscsi_requestq_notify(void *, struct vqueue_info *); 244 static int pci_vtscsi_init_queue(struct pci_vtscsi_softc *, 245 struct pci_vtscsi_queue *, int); 246 static int pci_vtscsi_init(struct vmctx *, struct pci_devinst *, char *); 247 248 static struct virtio_consts vtscsi_vi_consts = { 249 "vtscsi", /* our name */ 250 VTSCSI_MAXQ, /* we support 2+n virtqueues */ 251 sizeof(struct pci_vtscsi_config), /* config reg size */ 252 pci_vtscsi_reset, /* reset */ 253 NULL, /* device-wide qnotify */ 254 pci_vtscsi_cfgread, /* read virtio config */ 255 pci_vtscsi_cfgwrite, /* write virtio config */ 256 pci_vtscsi_neg_features, /* apply negotiated features */ 257 0, /* our capabilities */ 258 }; 259 260 static void * 261 pci_vtscsi_proc(void *arg) 262 { 263 struct pci_vtscsi_worker *worker = (struct pci_vtscsi_worker *)arg; 264 struct pci_vtscsi_queue *q = worker->vsw_queue; 265 struct pci_vtscsi_request *req; 266 int iolen; 267 268 for (;;) { 269 pthread_mutex_lock(&q->vsq_mtx); 270 271 while (STAILQ_EMPTY(&q->vsq_requests) 272 && !worker->vsw_exiting) 273 pthread_cond_wait(&q->vsq_cv, &q->vsq_mtx); 274 275 if (worker->vsw_exiting) 276 break; 277 278 req = STAILQ_FIRST(&q->vsq_requests); 279 STAILQ_REMOVE_HEAD(&q->vsq_requests, vsr_link); 280 281 pthread_mutex_unlock(&q->vsq_mtx); 282 iolen = pci_vtscsi_request_handle(q, req->vsr_iov_in, 283 req->vsr_niov_in, req->vsr_iov_out, req->vsr_niov_out); 284 285 pthread_mutex_lock(&q->vsq_qmtx); 286 vq_relchain(q->vsq_vq, req->vsr_idx, iolen); 287 vq_endchains(q->vsq_vq, 0); 288 pthread_mutex_unlock(&q->vsq_qmtx); 289 290 DPRINTF(("virtio-scsi: request <idx=%d> completed\n", 291 req->vsr_idx)); 292 free(req); 293 } 294 295 pthread_mutex_unlock(&q->vsq_mtx); 296 return (NULL); 297 } 298 299 static void 300 pci_vtscsi_reset(void *vsc) 301 { 302 struct pci_vtscsi_softc *sc; 303 304 sc = vsc; 305 306 DPRINTF(("vtscsi: device reset requested\n")); 307 vi_reset_dev(&sc->vss_vs); 308 309 /* initialize config structure */ 310 sc->vss_config = (struct pci_vtscsi_config){ 311 .num_queues = VTSCSI_REQUESTQ, 312 .seg_max = VTSCSI_MAXSEG, 313 .max_sectors = 2, 314 .cmd_per_lun = 1, 315 .event_info_size = sizeof(struct pci_vtscsi_event), 316 .sense_size = 96, 317 .cdb_size = 32, 318 .max_channel = VIRTIO_SCSI_MAX_CHANNEL, 319 .max_target = VIRTIO_SCSI_MAX_TARGET, 320 .max_lun = VIRTIO_SCSI_MAX_LUN 321 }; 322 } 323 324 static void 325 pci_vtscsi_neg_features(void *vsc, uint64_t negotiated_features) 326 { 327 struct pci_vtscsi_softc *sc = vsc; 328 329 sc->vss_features = negotiated_features; 330 } 331 332 static int 333 pci_vtscsi_cfgread(void *vsc, int offset, int size, uint32_t *retval) 334 { 335 struct pci_vtscsi_softc *sc = vsc; 336 void *ptr; 337 338 ptr = (uint8_t *)&sc->vss_config + offset; 339 memcpy(retval, ptr, size); 340 return (0); 341 } 342 343 static int 344 pci_vtscsi_cfgwrite(void *vsc, int offset, int size, uint32_t val) 345 { 346 347 return (0); 348 } 349 350 static inline int 351 pci_vtscsi_get_lun(uint8_t *lun) 352 { 353 354 return (((lun[2] << 8) | lun[3]) & 0x3fff); 355 } 356 357 static int 358 pci_vtscsi_control_handle(struct pci_vtscsi_softc *sc, void *buf, 359 size_t bufsize) 360 { 361 struct pci_vtscsi_ctrl_tmf *tmf; 362 struct pci_vtscsi_ctrl_an *an; 363 uint32_t type; 364 365 type = *(uint32_t *)buf; 366 367 if (type == VIRTIO_SCSI_T_TMF) { 368 tmf = (struct pci_vtscsi_ctrl_tmf *)buf; 369 return (pci_vtscsi_tmf_handle(sc, tmf)); 370 } 371 372 if (type == VIRTIO_SCSI_T_AN_QUERY) { 373 an = (struct pci_vtscsi_ctrl_an *)buf; 374 return (pci_vtscsi_an_handle(sc, an)); 375 } 376 377 return (0); 378 } 379 380 static int 381 pci_vtscsi_tmf_handle(struct pci_vtscsi_softc *sc, 382 struct pci_vtscsi_ctrl_tmf *tmf) 383 { 384 union ctl_io *io; 385 int err; 386 387 io = ctl_scsi_alloc_io(sc->vss_iid); 388 ctl_scsi_zero_io(io); 389 390 io->io_hdr.io_type = CTL_IO_TASK; 391 io->io_hdr.nexus.initid = sc->vss_iid; 392 io->io_hdr.nexus.targ_lun = pci_vtscsi_get_lun(tmf->lun); 393 io->taskio.tag_type = CTL_TAG_SIMPLE; 394 io->taskio.tag_num = (uint32_t)tmf->id; 395 396 switch (tmf->subtype) { 397 case VIRTIO_SCSI_T_TMF_ABORT_TASK: 398 io->taskio.task_action = CTL_TASK_ABORT_TASK; 399 break; 400 401 case VIRTIO_SCSI_T_TMF_ABORT_TASK_SET: 402 io->taskio.task_action = CTL_TASK_ABORT_TASK_SET; 403 break; 404 405 case VIRTIO_SCSI_T_TMF_CLEAR_ACA: 406 io->taskio.task_action = CTL_TASK_CLEAR_ACA; 407 break; 408 409 case VIRTIO_SCSI_T_TMF_CLEAR_TASK_SET: 410 io->taskio.task_action = CTL_TASK_CLEAR_TASK_SET; 411 break; 412 413 case VIRTIO_SCSI_T_TMF_I_T_NEXUS_RESET: 414 io->taskio.task_action = CTL_TASK_I_T_NEXUS_RESET; 415 break; 416 417 case VIRTIO_SCSI_T_TMF_LOGICAL_UNIT_RESET: 418 io->taskio.task_action = CTL_TASK_LUN_RESET; 419 break; 420 421 case VIRTIO_SCSI_T_TMF_QUERY_TASK: 422 io->taskio.task_action = CTL_TASK_QUERY_TASK; 423 break; 424 425 case VIRTIO_SCSI_T_TMF_QUERY_TASK_SET: 426 io->taskio.task_action = CTL_TASK_QUERY_TASK_SET; 427 break; 428 } 429 430 if (pci_vtscsi_debug) { 431 struct sbuf *sb = sbuf_new_auto(); 432 ctl_io_sbuf(io, sb); 433 sbuf_finish(sb); 434 DPRINTF(("pci_virtio_scsi: %s", sbuf_data(sb))); 435 sbuf_delete(sb); 436 } 437 438 err = ioctl(sc->vss_ctl_fd, CTL_IO, io); 439 if (err != 0) 440 WPRINTF(("CTL_IO: err=%d (%s)\n", errno, strerror(errno))); 441 442 tmf->response = io->taskio.task_status; 443 ctl_scsi_free_io(io); 444 return (1); 445 } 446 447 static int 448 pci_vtscsi_an_handle(struct pci_vtscsi_softc *sc, 449 struct pci_vtscsi_ctrl_an *an) 450 { 451 452 return (0); 453 } 454 455 static int 456 pci_vtscsi_request_handle(struct pci_vtscsi_queue *q, struct iovec *iov_in, 457 int niov_in, struct iovec *iov_out, int niov_out) 458 { 459 struct pci_vtscsi_softc *sc = q->vsq_sc; 460 struct pci_vtscsi_req_cmd_rd *cmd_rd = NULL; 461 struct pci_vtscsi_req_cmd_wr *cmd_wr; 462 struct iovec data_iov_in[VTSCSI_MAXSEG], data_iov_out[VTSCSI_MAXSEG]; 463 union ctl_io *io; 464 int data_niov_in, data_niov_out; 465 void *ext_data_ptr = NULL; 466 uint32_t ext_data_len = 0, ext_sg_entries = 0; 467 int err; 468 469 seek_iov(iov_in, niov_in, data_iov_in, &data_niov_in, 470 VTSCSI_IN_HEADER_LEN(sc)); 471 seek_iov(iov_out, niov_out, data_iov_out, &data_niov_out, 472 VTSCSI_OUT_HEADER_LEN(sc)); 473 474 truncate_iov(iov_in, &niov_in, VTSCSI_IN_HEADER_LEN(sc)); 475 truncate_iov(iov_out, &niov_out, VTSCSI_OUT_HEADER_LEN(sc)); 476 iov_to_buf(iov_in, niov_in, (void **)&cmd_rd); 477 478 cmd_wr = malloc(VTSCSI_OUT_HEADER_LEN(sc)); 479 io = ctl_scsi_alloc_io(sc->vss_iid); 480 ctl_scsi_zero_io(io); 481 482 io->io_hdr.nexus.initid = sc->vss_iid; 483 io->io_hdr.nexus.targ_lun = pci_vtscsi_get_lun(cmd_rd->lun); 484 485 io->io_hdr.io_type = CTL_IO_SCSI; 486 487 if (data_niov_in > 0) { 488 ext_data_ptr = (void *)data_iov_in; 489 ext_sg_entries = data_niov_in; 490 ext_data_len = count_iov(data_iov_in, data_niov_in); 491 io->io_hdr.flags |= CTL_FLAG_DATA_OUT; 492 } else if (data_niov_out > 0) { 493 ext_data_ptr = (void *)data_iov_out; 494 ext_sg_entries = data_niov_out; 495 ext_data_len = count_iov(data_iov_out, data_niov_out); 496 io->io_hdr.flags |= CTL_FLAG_DATA_IN; 497 } 498 499 io->scsiio.sense_len = sc->vss_config.sense_size; 500 io->scsiio.tag_num = (uint32_t)cmd_rd->id; 501 switch (cmd_rd->task_attr) { 502 case VIRTIO_SCSI_S_ORDERED: 503 io->scsiio.tag_type = CTL_TAG_ORDERED; 504 break; 505 case VIRTIO_SCSI_S_HEAD: 506 io->scsiio.tag_type = CTL_TAG_HEAD_OF_QUEUE; 507 break; 508 case VIRTIO_SCSI_S_ACA: 509 io->scsiio.tag_type = CTL_TAG_ACA; 510 break; 511 case VIRTIO_SCSI_S_SIMPLE: 512 default: 513 io->scsiio.tag_type = CTL_TAG_SIMPLE; 514 break; 515 } 516 io->scsiio.ext_sg_entries = ext_sg_entries; 517 io->scsiio.ext_data_ptr = ext_data_ptr; 518 io->scsiio.ext_data_len = ext_data_len; 519 io->scsiio.ext_data_filled = 0; 520 io->scsiio.cdb_len = sc->vss_config.cdb_size; 521 memcpy(io->scsiio.cdb, cmd_rd->cdb, sc->vss_config.cdb_size); 522 523 if (pci_vtscsi_debug) { 524 struct sbuf *sb = sbuf_new_auto(); 525 ctl_io_sbuf(io, sb); 526 sbuf_finish(sb); 527 DPRINTF(("pci_virtio_scsi: %s", sbuf_data(sb))); 528 sbuf_delete(sb); 529 } 530 531 err = ioctl(sc->vss_ctl_fd, CTL_IO, io); 532 if (err != 0) { 533 WPRINTF(("CTL_IO: err=%d (%s)\n", errno, strerror(errno))); 534 cmd_wr->response = VIRTIO_SCSI_S_FAILURE; 535 } else { 536 cmd_wr->sense_len = MIN(io->scsiio.sense_len, 537 sc->vss_config.sense_size); 538 cmd_wr->residual = io->scsiio.residual; 539 cmd_wr->status = io->scsiio.scsi_status; 540 cmd_wr->response = VIRTIO_SCSI_S_OK; 541 memcpy(&cmd_wr->sense, &io->scsiio.sense_data, 542 cmd_wr->sense_len); 543 } 544 545 buf_to_iov(cmd_wr, VTSCSI_OUT_HEADER_LEN(sc), iov_out, niov_out, 0); 546 free(cmd_rd); 547 free(cmd_wr); 548 ctl_scsi_free_io(io); 549 return (VTSCSI_OUT_HEADER_LEN(sc) + io->scsiio.ext_data_filled); 550 } 551 552 static void 553 pci_vtscsi_controlq_notify(void *vsc, struct vqueue_info *vq) 554 { 555 struct pci_vtscsi_softc *sc; 556 struct iovec iov[VTSCSI_MAXSEG]; 557 uint16_t idx, n; 558 void *buf = NULL; 559 size_t bufsize; 560 int iolen; 561 562 sc = vsc; 563 564 while (vq_has_descs(vq)) { 565 n = vq_getchain(vq, &idx, iov, VTSCSI_MAXSEG, NULL); 566 bufsize = iov_to_buf(iov, n, &buf); 567 iolen = pci_vtscsi_control_handle(sc, buf, bufsize); 568 buf_to_iov(buf + bufsize - iolen, iolen, iov, n, 569 bufsize - iolen); 570 571 /* 572 * Release this chain and handle more 573 */ 574 vq_relchain(vq, idx, iolen); 575 } 576 vq_endchains(vq, 1); /* Generate interrupt if appropriate. */ 577 free(buf); 578 } 579 580 static void 581 pci_vtscsi_eventq_notify(void *vsc, struct vqueue_info *vq) 582 { 583 584 vq->vq_used->vu_flags |= VRING_USED_F_NO_NOTIFY; 585 } 586 587 static void 588 pci_vtscsi_requestq_notify(void *vsc, struct vqueue_info *vq) 589 { 590 struct pci_vtscsi_softc *sc; 591 struct pci_vtscsi_queue *q; 592 struct pci_vtscsi_request *req; 593 struct iovec iov[VTSCSI_MAXSEG]; 594 uint16_t flags[VTSCSI_MAXSEG]; 595 uint16_t idx, n, i; 596 int readable; 597 598 sc = vsc; 599 q = &sc->vss_queues[vq->vq_num - 2]; 600 601 while (vq_has_descs(vq)) { 602 readable = 0; 603 n = vq_getchain(vq, &idx, iov, VTSCSI_MAXSEG, flags); 604 605 /* Count readable descriptors */ 606 for (i = 0; i < n; i++) { 607 if (flags[i] & VRING_DESC_F_WRITE) 608 break; 609 610 readable++; 611 } 612 613 req = calloc(1, sizeof(struct pci_vtscsi_request)); 614 req->vsr_idx = idx; 615 req->vsr_queue = q; 616 req->vsr_niov_in = readable; 617 req->vsr_niov_out = n - readable; 618 memcpy(req->vsr_iov_in, iov, 619 req->vsr_niov_in * sizeof(struct iovec)); 620 memcpy(req->vsr_iov_out, iov + readable, 621 req->vsr_niov_out * sizeof(struct iovec)); 622 623 pthread_mutex_lock(&q->vsq_mtx); 624 STAILQ_INSERT_TAIL(&q->vsq_requests, req, vsr_link); 625 pthread_cond_signal(&q->vsq_cv); 626 pthread_mutex_unlock(&q->vsq_mtx); 627 628 DPRINTF(("virtio-scsi: request <idx=%d> enqueued\n", idx)); 629 } 630 } 631 632 static int 633 pci_vtscsi_init_queue(struct pci_vtscsi_softc *sc, 634 struct pci_vtscsi_queue *queue, int num) 635 { 636 struct pci_vtscsi_worker *worker; 637 char threadname[16]; 638 int i; 639 640 queue->vsq_sc = sc; 641 queue->vsq_vq = &sc->vss_vq[num + 2]; 642 643 pthread_mutex_init(&queue->vsq_mtx, NULL); 644 pthread_mutex_init(&queue->vsq_qmtx, NULL); 645 pthread_cond_init(&queue->vsq_cv, NULL); 646 STAILQ_INIT(&queue->vsq_requests); 647 LIST_INIT(&queue->vsq_workers); 648 649 for (i = 0; i < VTSCSI_THR_PER_Q; i++) { 650 worker = calloc(1, sizeof(struct pci_vtscsi_worker)); 651 worker->vsw_queue = queue; 652 653 pthread_create(&worker->vsw_thread, NULL, &pci_vtscsi_proc, 654 (void *)worker); 655 656 sprintf(threadname, "virtio-scsi:%d-%d", num, i); 657 pthread_set_name_np(worker->vsw_thread, threadname); 658 LIST_INSERT_HEAD(&queue->vsq_workers, worker, vsw_link); 659 } 660 661 return (0); 662 } 663 664 static int 665 pci_vtscsi_init(struct vmctx *ctx, struct pci_devinst *pi, char *opts) 666 { 667 struct pci_vtscsi_softc *sc; 668 char *opt, *optname; 669 const char *devname; 670 int i, optidx = 0; 671 672 sc = calloc(1, sizeof(struct pci_vtscsi_softc)); 673 devname = "/dev/cam/ctl"; 674 while ((opt = strsep(&opts, ",")) != NULL) { 675 optname = strsep(&opt, "="); 676 if (opt == NULL && optidx == 0) { 677 if (optname[0] != 0) 678 devname = optname; 679 } else if (strcmp(optname, "dev") == 0 && opt != NULL) { 680 devname = opt; 681 } else if (strcmp(optname, "iid") == 0 && opt != NULL) { 682 sc->vss_iid = strtoul(opt, NULL, 10); 683 } else { 684 fprintf(stderr, "Invalid option %s\n", optname); 685 free(sc); 686 return (1); 687 } 688 optidx++; 689 } 690 691 sc->vss_ctl_fd = open(devname, O_RDWR); 692 if (sc->vss_ctl_fd < 0) { 693 WPRINTF(("cannot open %s: %s\n", devname, strerror(errno))); 694 free(sc); 695 return (1); 696 } 697 698 vi_softc_linkup(&sc->vss_vs, &vtscsi_vi_consts, sc, pi, sc->vss_vq); 699 sc->vss_vs.vs_mtx = &sc->vss_mtx; 700 701 /* controlq */ 702 sc->vss_vq[0].vq_qsize = VTSCSI_RINGSZ; 703 sc->vss_vq[0].vq_notify = pci_vtscsi_controlq_notify; 704 705 /* eventq */ 706 sc->vss_vq[1].vq_qsize = VTSCSI_RINGSZ; 707 sc->vss_vq[1].vq_notify = pci_vtscsi_eventq_notify; 708 709 /* request queues */ 710 for (i = 2; i < VTSCSI_MAXQ; i++) { 711 sc->vss_vq[i].vq_qsize = VTSCSI_RINGSZ; 712 sc->vss_vq[i].vq_notify = pci_vtscsi_requestq_notify; 713 pci_vtscsi_init_queue(sc, &sc->vss_queues[i - 2], i - 2); 714 } 715 716 /* initialize config space */ 717 pci_set_cfgdata16(pi, PCIR_DEVICE, VIRTIO_DEV_SCSI); 718 pci_set_cfgdata16(pi, PCIR_VENDOR, VIRTIO_VENDOR); 719 pci_set_cfgdata8(pi, PCIR_CLASS, PCIC_STORAGE); 720 pci_set_cfgdata16(pi, PCIR_SUBDEV_0, VIRTIO_TYPE_SCSI); 721 pci_set_cfgdata16(pi, PCIR_SUBVEND_0, VIRTIO_VENDOR); 722 723 if (vi_intr_init(&sc->vss_vs, 1, fbsdrun_virtio_msix())) 724 return (1); 725 vi_set_io_bar(&sc->vss_vs, 0); 726 727 return (0); 728 } 729 730 731 struct pci_devemu pci_de_vscsi = { 732 .pe_emu = "virtio-scsi", 733 .pe_init = pci_vtscsi_init, 734 .pe_barwrite = vi_pci_write, 735 .pe_barread = vi_pci_read 736 }; 737 PCI_EMUL_SET(pci_de_vscsi); 738