1 /*- 2 * Implementation of SCSI Processor Target Peripheral driver for CAM. 3 * 4 * Copyright (c) 1998 Justin T. Gibbs. 5 * All rights reserved. 6 * 7 * Redistribution and use in source and binary forms, with or without 8 * modification, are permitted provided that the following conditions 9 * are met: 10 * 1. Redistributions of source code must retain the above copyright 11 * notice, this list of conditions, and the following disclaimer, 12 * without modification, immediately at the beginning of the file. 13 * 2. The name of the author may not be used to endorse or promote products 14 * derived from this software without specific prior written permission. 15 * 16 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 17 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 18 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 19 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE FOR 20 * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 21 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 22 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 23 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 24 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 25 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 26 * SUCH DAMAGE. 27 */ 28 29 #include <sys/cdefs.h> 30 __FBSDID("$FreeBSD$"); 31 32 #include <sys/param.h> 33 #include <sys/queue.h> 34 #include <sys/systm.h> 35 #include <sys/kernel.h> 36 #include <sys/types.h> 37 #include <sys/bio.h> 38 #include <sys/devicestat.h> 39 #include <sys/malloc.h> 40 #include <sys/conf.h> 41 #include <sys/ptio.h> 42 43 #include <cam/cam.h> 44 #include <cam/cam_ccb.h> 45 #include <cam/cam_periph.h> 46 #include <cam/cam_xpt_periph.h> 47 #include <cam/cam_debug.h> 48 49 #include <cam/scsi/scsi_all.h> 50 #include <cam/scsi/scsi_message.h> 51 #include <cam/scsi/scsi_pt.h> 52 53 #include "opt_pt.h" 54 55 typedef enum { 56 PT_STATE_PROBE, 57 PT_STATE_NORMAL 58 } pt_state; 59 60 typedef enum { 61 PT_FLAG_NONE = 0x00, 62 PT_FLAG_OPEN = 0x01, 63 PT_FLAG_DEVICE_INVALID = 0x02, 64 PT_FLAG_RETRY_UA = 0x04 65 } pt_flags; 66 67 typedef enum { 68 PT_CCB_BUFFER_IO = 0x01, 69 PT_CCB_WAITING = 0x02, 70 PT_CCB_RETRY_UA = 0x04, 71 PT_CCB_BUFFER_IO_UA = PT_CCB_BUFFER_IO|PT_CCB_RETRY_UA 72 } pt_ccb_state; 73 74 /* Offsets into our private area for storing information */ 75 #define ccb_state ppriv_field0 76 #define ccb_bp ppriv_ptr1 77 78 struct pt_softc { 79 struct bio_queue_head bio_queue; 80 struct devstat *device_stats; 81 LIST_HEAD(, ccb_hdr) pending_ccbs; 82 pt_state state; 83 pt_flags flags; 84 union ccb saved_ccb; 85 int io_timeout; 86 struct cdev *dev; 87 }; 88 89 static d_open_t ptopen; 90 static d_close_t ptclose; 91 static d_strategy_t ptstrategy; 92 static periph_init_t ptinit; 93 static void ptasync(void *callback_arg, u_int32_t code, 94 struct cam_path *path, void *arg); 95 static periph_ctor_t ptctor; 96 static periph_oninv_t ptoninvalidate; 97 static periph_dtor_t ptdtor; 98 static periph_start_t ptstart; 99 static void ptdone(struct cam_periph *periph, 100 union ccb *done_ccb); 101 static d_ioctl_t ptioctl; 102 static int pterror(union ccb *ccb, u_int32_t cam_flags, 103 u_int32_t sense_flags); 104 105 void scsi_send_receive(struct ccb_scsiio *csio, u_int32_t retries, 106 void (*cbfcnp)(struct cam_periph *, union ccb *), 107 u_int tag_action, int readop, u_int byte2, 108 u_int32_t xfer_len, u_int8_t *data_ptr, 109 u_int8_t sense_len, u_int32_t timeout); 110 111 static struct periph_driver ptdriver = 112 { 113 ptinit, "pt", 114 TAILQ_HEAD_INITIALIZER(ptdriver.units), /* generation */ 0 115 }; 116 117 PERIPHDRIVER_DECLARE(pt, ptdriver); 118 119 120 static struct cdevsw pt_cdevsw = { 121 .d_version = D_VERSION, 122 .d_flags = D_NEEDGIANT, 123 .d_open = ptopen, 124 .d_close = ptclose, 125 .d_read = physread, 126 .d_write = physwrite, 127 .d_ioctl = ptioctl, 128 .d_strategy = ptstrategy, 129 .d_name = "pt", 130 }; 131 132 #ifndef SCSI_PT_DEFAULT_TIMEOUT 133 #define SCSI_PT_DEFAULT_TIMEOUT 60 134 #endif 135 136 static int 137 ptopen(struct cdev *dev, int flags, int fmt, struct thread *td) 138 { 139 struct cam_periph *periph; 140 struct pt_softc *softc; 141 int unit; 142 int error; 143 int s; 144 145 unit = minor(dev); 146 periph = (struct cam_periph *)dev->si_drv1; 147 if (periph == NULL) 148 return (ENXIO); 149 150 softc = (struct pt_softc *)periph->softc; 151 152 s = splsoftcam(); 153 if (softc->flags & PT_FLAG_DEVICE_INVALID) { 154 splx(s); 155 return(ENXIO); 156 } 157 158 CAM_DEBUG(periph->path, CAM_DEBUG_TRACE, 159 ("ptopen: dev=%s (unit %d)\n", devtoname(dev), unit)); 160 161 if ((error = cam_periph_lock(periph, PRIBIO|PCATCH)) != 0) { 162 splx(s); 163 return (error); /* error code from tsleep */ 164 } 165 166 splx(s); 167 168 if ((softc->flags & PT_FLAG_OPEN) == 0) { 169 if (cam_periph_acquire(periph) != CAM_REQ_CMP) 170 error = ENXIO; 171 else 172 softc->flags |= PT_FLAG_OPEN; 173 } else 174 error = EBUSY; 175 176 cam_periph_unlock(periph); 177 return (error); 178 } 179 180 static int 181 ptclose(struct cdev *dev, int flag, int fmt, struct thread *td) 182 { 183 struct cam_periph *periph; 184 struct pt_softc *softc; 185 int error; 186 187 periph = (struct cam_periph *)dev->si_drv1; 188 if (periph == NULL) 189 return (ENXIO); 190 191 softc = (struct pt_softc *)periph->softc; 192 193 if ((error = cam_periph_lock(periph, PRIBIO)) != 0) 194 return (error); /* error code from tsleep */ 195 196 softc->flags &= ~PT_FLAG_OPEN; 197 cam_periph_unlock(periph); 198 cam_periph_release(periph); 199 return (0); 200 } 201 202 /* 203 * Actually translate the requested transfer into one the physical driver 204 * can understand. The transfer is described by a buf and will include 205 * only one physical transfer. 206 */ 207 static void 208 ptstrategy(struct bio *bp) 209 { 210 struct cam_periph *periph; 211 struct pt_softc *softc; 212 int s; 213 214 periph = (struct cam_periph *)bp->bio_dev->si_drv1; 215 bp->bio_resid = bp->bio_bcount; 216 if (periph == NULL) { 217 biofinish(bp, NULL, ENXIO); 218 return; 219 } 220 softc = (struct pt_softc *)periph->softc; 221 222 /* 223 * Mask interrupts so that the pack cannot be invalidated until 224 * after we are in the queue. Otherwise, we might not properly 225 * clean up one of the buffers. 226 */ 227 s = splbio(); 228 229 /* 230 * If the device has been made invalid, error out 231 */ 232 if ((softc->flags & PT_FLAG_DEVICE_INVALID)) { 233 splx(s); 234 biofinish(bp, NULL, ENXIO); 235 return; 236 } 237 238 /* 239 * Place it in the queue of disk activities for this disk 240 */ 241 bioq_insert_tail(&softc->bio_queue, bp); 242 243 splx(s); 244 245 /* 246 * Schedule ourselves for performing the work. 247 */ 248 xpt_schedule(periph, /* XXX priority */1); 249 250 return; 251 } 252 253 static void 254 ptinit(void) 255 { 256 cam_status status; 257 struct cam_path *path; 258 259 /* 260 * Install a global async callback. This callback will 261 * receive async callbacks like "new device found". 262 */ 263 status = xpt_create_path(&path, /*periph*/NULL, CAM_XPT_PATH_ID, 264 CAM_TARGET_WILDCARD, CAM_LUN_WILDCARD); 265 266 if (status == CAM_REQ_CMP) { 267 struct ccb_setasync csa; 268 269 xpt_setup_ccb(&csa.ccb_h, path, /*priority*/5); 270 csa.ccb_h.func_code = XPT_SASYNC_CB; 271 csa.event_enable = AC_FOUND_DEVICE; 272 csa.callback = ptasync; 273 csa.callback_arg = NULL; 274 xpt_action((union ccb *)&csa); 275 status = csa.ccb_h.status; 276 xpt_free_path(path); 277 } 278 279 if (status != CAM_REQ_CMP) { 280 printf("pt: Failed to attach master async callback " 281 "due to status 0x%x!\n", status); 282 } 283 } 284 285 static cam_status 286 ptctor(struct cam_periph *periph, void *arg) 287 { 288 struct pt_softc *softc; 289 struct ccb_setasync csa; 290 struct ccb_getdev *cgd; 291 292 cgd = (struct ccb_getdev *)arg; 293 if (periph == NULL) { 294 printf("ptregister: periph was NULL!!\n"); 295 return(CAM_REQ_CMP_ERR); 296 } 297 298 if (cgd == NULL) { 299 printf("ptregister: no getdev CCB, can't register device\n"); 300 return(CAM_REQ_CMP_ERR); 301 } 302 303 softc = (struct pt_softc *)malloc(sizeof(*softc),M_DEVBUF,M_NOWAIT); 304 305 if (softc == NULL) { 306 printf("daregister: Unable to probe new device. " 307 "Unable to allocate softc\n"); 308 return(CAM_REQ_CMP_ERR); 309 } 310 311 bzero(softc, sizeof(*softc)); 312 LIST_INIT(&softc->pending_ccbs); 313 softc->state = PT_STATE_NORMAL; 314 bioq_init(&softc->bio_queue); 315 316 softc->io_timeout = SCSI_PT_DEFAULT_TIMEOUT * 1000; 317 318 periph->softc = softc; 319 320 softc->device_stats = devstat_new_entry("pt", 321 periph->unit_number, 0, 322 DEVSTAT_NO_BLOCKSIZE, 323 SID_TYPE(&cgd->inq_data) | DEVSTAT_TYPE_IF_SCSI, 324 DEVSTAT_PRIORITY_OTHER); 325 326 softc->dev = make_dev(&pt_cdevsw, periph->unit_number, UID_ROOT, 327 GID_OPERATOR, 0600, "%s%d", periph->periph_name, 328 periph->unit_number); 329 softc->dev->si_drv1 = periph; 330 331 /* 332 * Add async callbacks for bus reset and 333 * bus device reset calls. I don't bother 334 * checking if this fails as, in most cases, 335 * the system will function just fine without 336 * them and the only alternative would be to 337 * not attach the device on failure. 338 */ 339 xpt_setup_ccb(&csa.ccb_h, periph->path, /*priority*/5); 340 csa.ccb_h.func_code = XPT_SASYNC_CB; 341 csa.event_enable = AC_SENT_BDR | AC_BUS_RESET | AC_LOST_DEVICE; 342 csa.callback = ptasync; 343 csa.callback_arg = periph; 344 xpt_action((union ccb *)&csa); 345 346 /* Tell the user we've attached to the device */ 347 xpt_announce_periph(periph, NULL); 348 349 return(CAM_REQ_CMP); 350 } 351 352 static void 353 ptoninvalidate(struct cam_periph *periph) 354 { 355 int s; 356 struct pt_softc *softc; 357 struct ccb_setasync csa; 358 359 softc = (struct pt_softc *)periph->softc; 360 361 /* 362 * De-register any async callbacks. 363 */ 364 xpt_setup_ccb(&csa.ccb_h, periph->path, 365 /* priority */ 5); 366 csa.ccb_h.func_code = XPT_SASYNC_CB; 367 csa.event_enable = 0; 368 csa.callback = ptasync; 369 csa.callback_arg = periph; 370 xpt_action((union ccb *)&csa); 371 372 softc->flags |= PT_FLAG_DEVICE_INVALID; 373 374 /* 375 * Although the oninvalidate() routines are always called at 376 * splsoftcam, we need to be at splbio() here to keep the buffer 377 * queue from being modified while we traverse it. 378 */ 379 s = splbio(); 380 381 /* 382 * Return all queued I/O with ENXIO. 383 * XXX Handle any transactions queued to the card 384 * with XPT_ABORT_CCB. 385 */ 386 bioq_flush(&softc->bio_queue, NULL, ENXIO); 387 388 splx(s); 389 390 xpt_print(periph->path, "lost device\n"); 391 } 392 393 static void 394 ptdtor(struct cam_periph *periph) 395 { 396 struct pt_softc *softc; 397 398 softc = (struct pt_softc *)periph->softc; 399 400 devstat_remove_entry(softc->device_stats); 401 402 destroy_dev(softc->dev); 403 404 xpt_print(periph->path, "removing device entry\n"); 405 free(softc, M_DEVBUF); 406 } 407 408 static void 409 ptasync(void *callback_arg, u_int32_t code, struct cam_path *path, void *arg) 410 { 411 struct cam_periph *periph; 412 413 periph = (struct cam_periph *)callback_arg; 414 switch (code) { 415 case AC_FOUND_DEVICE: 416 { 417 struct ccb_getdev *cgd; 418 cam_status status; 419 420 cgd = (struct ccb_getdev *)arg; 421 if (cgd == NULL) 422 break; 423 424 if (SID_TYPE(&cgd->inq_data) != T_PROCESSOR) 425 break; 426 427 /* 428 * Allocate a peripheral instance for 429 * this device and start the probe 430 * process. 431 */ 432 status = cam_periph_alloc(ptctor, ptoninvalidate, ptdtor, 433 ptstart, "pt", CAM_PERIPH_BIO, 434 cgd->ccb_h.path, ptasync, 435 AC_FOUND_DEVICE, cgd); 436 437 if (status != CAM_REQ_CMP 438 && status != CAM_REQ_INPROG) 439 printf("ptasync: Unable to attach to new device " 440 "due to status 0x%x\n", status); 441 break; 442 } 443 case AC_SENT_BDR: 444 case AC_BUS_RESET: 445 { 446 struct pt_softc *softc; 447 struct ccb_hdr *ccbh; 448 int s; 449 450 softc = (struct pt_softc *)periph->softc; 451 s = splsoftcam(); 452 /* 453 * Don't fail on the expected unit attention 454 * that will occur. 455 */ 456 softc->flags |= PT_FLAG_RETRY_UA; 457 LIST_FOREACH(ccbh, &softc->pending_ccbs, periph_links.le) 458 ccbh->ccb_state |= PT_CCB_RETRY_UA; 459 splx(s); 460 } 461 /* FALLTHROUGH */ 462 default: 463 cam_periph_async(periph, code, path, arg); 464 break; 465 } 466 } 467 468 static void 469 ptstart(struct cam_periph *periph, union ccb *start_ccb) 470 { 471 struct pt_softc *softc; 472 struct bio *bp; 473 int s; 474 475 softc = (struct pt_softc *)periph->softc; 476 477 /* 478 * See if there is a buf with work for us to do.. 479 */ 480 s = splbio(); 481 bp = bioq_first(&softc->bio_queue); 482 if (periph->immediate_priority <= periph->pinfo.priority) { 483 CAM_DEBUG_PRINT(CAM_DEBUG_SUBTRACE, 484 ("queuing for immediate ccb\n")); 485 start_ccb->ccb_h.ccb_state = PT_CCB_WAITING; 486 SLIST_INSERT_HEAD(&periph->ccb_list, &start_ccb->ccb_h, 487 periph_links.sle); 488 periph->immediate_priority = CAM_PRIORITY_NONE; 489 splx(s); 490 wakeup(&periph->ccb_list); 491 } else if (bp == NULL) { 492 splx(s); 493 xpt_release_ccb(start_ccb); 494 } else { 495 int oldspl; 496 497 bioq_remove(&softc->bio_queue, bp); 498 499 devstat_start_transaction_bio(softc->device_stats, bp); 500 501 scsi_send_receive(&start_ccb->csio, 502 /*retries*/4, 503 ptdone, 504 MSG_SIMPLE_Q_TAG, 505 bp->bio_cmd == BIO_READ, 506 /*byte2*/0, 507 bp->bio_bcount, 508 bp->bio_data, 509 /*sense_len*/SSD_FULL_SIZE, 510 /*timeout*/softc->io_timeout); 511 512 start_ccb->ccb_h.ccb_state = PT_CCB_BUFFER_IO_UA; 513 514 /* 515 * Block out any asyncronous callbacks 516 * while we touch the pending ccb list. 517 */ 518 oldspl = splcam(); 519 LIST_INSERT_HEAD(&softc->pending_ccbs, &start_ccb->ccb_h, 520 periph_links.le); 521 splx(oldspl); 522 523 start_ccb->ccb_h.ccb_bp = bp; 524 bp = bioq_first(&softc->bio_queue); 525 splx(s); 526 527 xpt_action(start_ccb); 528 529 if (bp != NULL) { 530 /* Have more work to do, so ensure we stay scheduled */ 531 xpt_schedule(periph, /* XXX priority */1); 532 } 533 } 534 } 535 536 static void 537 ptdone(struct cam_periph *periph, union ccb *done_ccb) 538 { 539 struct pt_softc *softc; 540 struct ccb_scsiio *csio; 541 542 softc = (struct pt_softc *)periph->softc; 543 csio = &done_ccb->csio; 544 switch (csio->ccb_h.ccb_state) { 545 case PT_CCB_BUFFER_IO: 546 case PT_CCB_BUFFER_IO_UA: 547 { 548 struct bio *bp; 549 int oldspl; 550 551 bp = (struct bio *)done_ccb->ccb_h.ccb_bp; 552 if ((done_ccb->ccb_h.status & CAM_STATUS_MASK) != CAM_REQ_CMP) { 553 int error; 554 int s; 555 int sf; 556 557 if ((csio->ccb_h.ccb_state & PT_CCB_RETRY_UA) != 0) 558 sf = SF_RETRY_UA; 559 else 560 sf = 0; 561 562 error = pterror(done_ccb, CAM_RETRY_SELTO, sf); 563 if (error == ERESTART) { 564 /* 565 * A retry was scheuled, so 566 * just return. 567 */ 568 return; 569 } 570 if (error != 0) { 571 s = splbio(); 572 573 if (error == ENXIO) { 574 /* 575 * Catastrophic error. Mark our device 576 * as invalid. 577 */ 578 xpt_print(periph->path, 579 "Invalidating device\n"); 580 softc->flags |= PT_FLAG_DEVICE_INVALID; 581 } 582 583 /* 584 * return all queued I/O with EIO, so that 585 * the client can retry these I/Os in the 586 * proper order should it attempt to recover. 587 */ 588 bioq_flush(&softc->bio_queue, NULL, EIO); 589 splx(s); 590 bp->bio_error = error; 591 bp->bio_resid = bp->bio_bcount; 592 bp->bio_flags |= BIO_ERROR; 593 } else { 594 bp->bio_resid = csio->resid; 595 bp->bio_error = 0; 596 if (bp->bio_resid != 0) { 597 /* Short transfer ??? */ 598 bp->bio_flags |= BIO_ERROR; 599 } 600 } 601 if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0) 602 cam_release_devq(done_ccb->ccb_h.path, 603 /*relsim_flags*/0, 604 /*reduction*/0, 605 /*timeout*/0, 606 /*getcount_only*/0); 607 } else { 608 bp->bio_resid = csio->resid; 609 if (bp->bio_resid != 0) 610 bp->bio_flags |= BIO_ERROR; 611 } 612 613 /* 614 * Block out any asyncronous callbacks 615 * while we touch the pending ccb list. 616 */ 617 oldspl = splcam(); 618 LIST_REMOVE(&done_ccb->ccb_h, periph_links.le); 619 splx(oldspl); 620 621 biofinish(bp, softc->device_stats, 0); 622 break; 623 } 624 case PT_CCB_WAITING: 625 /* Caller will release the CCB */ 626 wakeup(&done_ccb->ccb_h.cbfcnp); 627 return; 628 } 629 xpt_release_ccb(done_ccb); 630 } 631 632 static int 633 pterror(union ccb *ccb, u_int32_t cam_flags, u_int32_t sense_flags) 634 { 635 struct pt_softc *softc; 636 struct cam_periph *periph; 637 638 periph = xpt_path_periph(ccb->ccb_h.path); 639 softc = (struct pt_softc *)periph->softc; 640 641 return(cam_periph_error(ccb, cam_flags, sense_flags, 642 &softc->saved_ccb)); 643 } 644 645 static int 646 ptioctl(struct cdev *dev, u_long cmd, caddr_t addr, int flag, struct thread *td) 647 { 648 struct cam_periph *periph; 649 struct pt_softc *softc; 650 int error; 651 652 periph = (struct cam_periph *)dev->si_drv1; 653 if (periph == NULL) 654 return(ENXIO); 655 656 softc = (struct pt_softc *)periph->softc; 657 658 if ((error = cam_periph_lock(periph, PRIBIO|PCATCH)) != 0) { 659 return (error); /* error code from tsleep */ 660 } 661 662 switch(cmd) { 663 case PTIOCGETTIMEOUT: 664 if (softc->io_timeout >= 1000) 665 *(int *)addr = softc->io_timeout / 1000; 666 else 667 *(int *)addr = 0; 668 break; 669 case PTIOCSETTIMEOUT: 670 { 671 int s; 672 673 if (*(int *)addr < 1) { 674 error = EINVAL; 675 break; 676 } 677 678 s = splsoftcam(); 679 softc->io_timeout = *(int *)addr * 1000; 680 splx(s); 681 682 break; 683 } 684 default: 685 error = cam_periph_ioctl(periph, cmd, addr, pterror); 686 break; 687 } 688 689 cam_periph_unlock(periph); 690 691 return(error); 692 } 693 694 void 695 scsi_send_receive(struct ccb_scsiio *csio, u_int32_t retries, 696 void (*cbfcnp)(struct cam_periph *, union ccb *), 697 u_int tag_action, int readop, u_int byte2, 698 u_int32_t xfer_len, u_int8_t *data_ptr, u_int8_t sense_len, 699 u_int32_t timeout) 700 { 701 struct scsi_send_receive *scsi_cmd; 702 703 scsi_cmd = (struct scsi_send_receive *)&csio->cdb_io.cdb_bytes; 704 scsi_cmd->opcode = readop ? RECEIVE : SEND; 705 scsi_cmd->byte2 = byte2; 706 scsi_ulto3b(xfer_len, scsi_cmd->xfer_len); 707 scsi_cmd->control = 0; 708 709 cam_fill_csio(csio, 710 retries, 711 cbfcnp, 712 /*flags*/readop ? CAM_DIR_IN : CAM_DIR_OUT, 713 tag_action, 714 data_ptr, 715 xfer_len, 716 sense_len, 717 sizeof(*scsi_cmd), 718 timeout); 719 } 720