1 /* 2 * Linux driver for System z and s390 unit record devices 3 * (z/VM virtual punch, reader, printer) 4 * 5 * Copyright IBM Corp. 2001, 2007 6 * Authors: Malcolm Beattie <beattiem@uk.ibm.com> 7 * Michael Holzheu <holzheu@de.ibm.com> 8 * Frank Munzert <munzert@de.ibm.com> 9 */ 10 11 #include <linux/cdev.h> 12 13 #include <asm/uaccess.h> 14 #include <asm/cio.h> 15 #include <asm/ccwdev.h> 16 #include <asm/debug.h> 17 18 #include "vmur.h" 19 20 /* 21 * Driver overview 22 * 23 * Unit record device support is implemented as a character device driver. 24 * We can fit at least 16 bits into a device minor number and use the 25 * simple method of mapping a character device number with minor abcd 26 * to the unit record device with devno abcd. 27 * I/O to virtual unit record devices is handled as follows: 28 * Reads: Diagnose code 0x14 (input spool file manipulation) 29 * is used to read spool data page-wise. 30 * Writes: The CCW used is WRITE_CCW_CMD (0x01). The device's record length 31 * is available by reading sysfs attr reclen. Each write() to the device 32 * must specify an integral multiple (maximal 511) of reclen. 33 */ 34 35 static char ur_banner[] = "z/VM virtual unit record device driver"; 36 37 MODULE_AUTHOR("IBM Corporation"); 38 MODULE_DESCRIPTION("s390 z/VM virtual unit record device driver"); 39 MODULE_LICENSE("GPL"); 40 41 #define PRINTK_HEADER "vmur: " 42 43 static dev_t ur_first_dev_maj_min; 44 static struct class *vmur_class; 45 static struct debug_info *vmur_dbf; 46 47 /* We put the device's record length (for writes) in the driver_info field */ 48 static struct ccw_device_id ur_ids[] = { 49 { CCWDEV_CU_DI(READER_PUNCH_DEVTYPE, 80) }, 50 { CCWDEV_CU_DI(PRINTER_DEVTYPE, 132) }, 51 { /* end of list */ } 52 }; 53 54 MODULE_DEVICE_TABLE(ccw, ur_ids); 55 56 static int ur_probe(struct ccw_device *cdev); 57 static void ur_remove(struct ccw_device *cdev); 58 static int ur_set_online(struct ccw_device *cdev); 59 static int ur_set_offline(struct ccw_device *cdev); 60 61 static struct ccw_driver ur_driver = { 62 .name = "vmur", 63 .owner = THIS_MODULE, 64 .ids = ur_ids, 65 .probe = ur_probe, 66 .remove = ur_remove, 67 .set_online = ur_set_online, 68 .set_offline = ur_set_offline, 69 }; 70 71 /* 72 * Allocation, freeing, getting and putting of urdev structures 73 */ 74 static struct urdev *urdev_alloc(struct ccw_device *cdev) 75 { 76 struct urdev *urd; 77 78 urd = kzalloc(sizeof(struct urdev), GFP_KERNEL); 79 if (!urd) 80 return NULL; 81 urd->cdev = cdev; 82 urd->reclen = cdev->id.driver_info; 83 ccw_device_get_id(cdev, &urd->dev_id); 84 mutex_init(&urd->io_mutex); 85 mutex_init(&urd->open_mutex); 86 return urd; 87 } 88 89 static void urdev_free(struct urdev *urd) 90 { 91 kfree(urd); 92 } 93 94 /* 95 * This is how the character device driver gets a reference to a 96 * ur device. When this call returns successfully, a reference has 97 * been taken (by get_device) on the underlying kobject. The recipient 98 * of this urdev pointer must eventually drop it with urdev_put(urd) 99 * which does the corresponding put_device(). 100 */ 101 static struct urdev *urdev_get_from_devno(u16 devno) 102 { 103 char bus_id[16]; 104 struct ccw_device *cdev; 105 106 sprintf(bus_id, "0.0.%04x", devno); 107 cdev = get_ccwdev_by_busid(&ur_driver, bus_id); 108 if (!cdev) 109 return NULL; 110 111 return cdev->dev.driver_data; 112 } 113 114 static void urdev_put(struct urdev *urd) 115 { 116 put_device(&urd->cdev->dev); 117 } 118 119 /* 120 * Low-level functions to do I/O to a ur device. 121 * alloc_chan_prog 122 * free_chan_prog 123 * do_ur_io 124 * ur_int_handler 125 * 126 * alloc_chan_prog allocates and builds the channel program 127 * free_chan_prog frees memory of the channel program 128 * 129 * do_ur_io issues the channel program to the device and blocks waiting 130 * on a completion event it publishes at urd->io_done. The function 131 * serialises itself on the device's mutex so that only one I/O 132 * is issued at a time (and that I/O is synchronous). 133 * 134 * ur_int_handler catches the "I/O done" interrupt, writes the 135 * subchannel status word into the scsw member of the urdev structure 136 * and complete()s the io_done to wake the waiting do_ur_io. 137 * 138 * The caller of do_ur_io is responsible for kfree()ing the channel program 139 * address pointer that alloc_chan_prog returned. 140 */ 141 142 static void free_chan_prog(struct ccw1 *cpa) 143 { 144 struct ccw1 *ptr = cpa; 145 146 while (ptr->cda) { 147 kfree((void *)(addr_t) ptr->cda); 148 ptr++; 149 } 150 kfree(cpa); 151 } 152 153 /* 154 * alloc_chan_prog 155 * The channel program we use is write commands chained together 156 * with a final NOP CCW command-chained on (which ensures that CE and DE 157 * are presented together in a single interrupt instead of as separate 158 * interrupts unless an incorrect length indication kicks in first). The 159 * data length in each CCW is reclen. 160 */ 161 static struct ccw1 *alloc_chan_prog(const char __user *ubuf, int rec_count, 162 int reclen) 163 { 164 struct ccw1 *cpa; 165 void *kbuf; 166 int i; 167 168 TRACE("alloc_chan_prog(%p, %i, %i)\n", ubuf, rec_count, reclen); 169 170 /* 171 * We chain a NOP onto the writes to force CE+DE together. 172 * That means we allocate room for CCWs to cover count/reclen 173 * records plus a NOP. 174 */ 175 cpa = kzalloc((rec_count + 1) * sizeof(struct ccw1), 176 GFP_KERNEL | GFP_DMA); 177 if (!cpa) 178 return ERR_PTR(-ENOMEM); 179 180 for (i = 0; i < rec_count; i++) { 181 cpa[i].cmd_code = WRITE_CCW_CMD; 182 cpa[i].flags = CCW_FLAG_CC | CCW_FLAG_SLI; 183 cpa[i].count = reclen; 184 kbuf = kmalloc(reclen, GFP_KERNEL | GFP_DMA); 185 if (!kbuf) { 186 free_chan_prog(cpa); 187 return ERR_PTR(-ENOMEM); 188 } 189 cpa[i].cda = (u32)(addr_t) kbuf; 190 if (copy_from_user(kbuf, ubuf, reclen)) { 191 free_chan_prog(cpa); 192 return ERR_PTR(-EFAULT); 193 } 194 ubuf += reclen; 195 } 196 /* The following NOP CCW forces CE+DE to be presented together */ 197 cpa[i].cmd_code = CCW_CMD_NOOP; 198 return cpa; 199 } 200 201 static int do_ur_io(struct urdev *urd, struct ccw1 *cpa) 202 { 203 int rc; 204 struct ccw_device *cdev = urd->cdev; 205 DECLARE_COMPLETION(event); 206 207 TRACE("do_ur_io: cpa=%p\n", cpa); 208 209 rc = mutex_lock_interruptible(&urd->io_mutex); 210 if (rc) 211 return rc; 212 213 urd->io_done = &event; 214 215 spin_lock_irq(get_ccwdev_lock(cdev)); 216 rc = ccw_device_start(cdev, cpa, 1, 0, 0); 217 spin_unlock_irq(get_ccwdev_lock(cdev)); 218 219 TRACE("do_ur_io: ccw_device_start returned %d\n", rc); 220 if (rc) 221 goto out; 222 223 wait_for_completion(&event); 224 TRACE("do_ur_io: I/O complete\n"); 225 rc = 0; 226 227 out: 228 mutex_unlock(&urd->io_mutex); 229 return rc; 230 } 231 232 /* 233 * ur interrupt handler, called from the ccw_device layer 234 */ 235 static void ur_int_handler(struct ccw_device *cdev, unsigned long intparm, 236 struct irb *irb) 237 { 238 struct urdev *urd; 239 240 TRACE("ur_int_handler: intparm=0x%lx cstat=%02x dstat=%02x res=%u\n", 241 intparm, irb->scsw.cstat, irb->scsw.dstat, irb->scsw.count); 242 243 if (!intparm) { 244 TRACE("ur_int_handler: unsolicited interrupt\n"); 245 return; 246 } 247 urd = cdev->dev.driver_data; 248 /* On special conditions irb is an error pointer */ 249 if (IS_ERR(irb)) 250 urd->io_request_rc = PTR_ERR(irb); 251 else if (irb->scsw.dstat == (DEV_STAT_CHN_END | DEV_STAT_DEV_END)) 252 urd->io_request_rc = 0; 253 else 254 urd->io_request_rc = -EIO; 255 256 complete(urd->io_done); 257 } 258 259 /* 260 * reclen sysfs attribute - The record length to be used for write CCWs 261 */ 262 static ssize_t ur_attr_reclen_show(struct device *dev, 263 struct device_attribute *attr, char *buf) 264 { 265 struct urdev *urd = dev->driver_data; 266 267 return sprintf(buf, "%zu\n", urd->reclen); 268 } 269 270 static DEVICE_ATTR(reclen, 0444, ur_attr_reclen_show, NULL); 271 272 static int ur_create_attributes(struct device *dev) 273 { 274 return device_create_file(dev, &dev_attr_reclen); 275 } 276 277 static void ur_remove_attributes(struct device *dev) 278 { 279 device_remove_file(dev, &dev_attr_reclen); 280 } 281 282 /* 283 * diagnose code 0x210 - retrieve device information 284 * cc=0 normal completion, we have a real device 285 * cc=1 CP paging error 286 * cc=2 The virtual device exists, but is not associated with a real device 287 * cc=3 Invalid device address, or the virtual device does not exist 288 */ 289 static int get_urd_class(struct urdev *urd) 290 { 291 static struct diag210 ur_diag210; 292 int cc; 293 294 ur_diag210.vrdcdvno = urd->dev_id.devno; 295 ur_diag210.vrdclen = sizeof(struct diag210); 296 297 cc = diag210(&ur_diag210); 298 switch (cc) { 299 case 0: 300 return -ENOTSUPP; 301 case 2: 302 return ur_diag210.vrdcvcla; /* virtual device class */ 303 case 3: 304 return -ENODEV; 305 default: 306 return -EIO; 307 } 308 } 309 310 /* 311 * Allocation and freeing of urfile structures 312 */ 313 static struct urfile *urfile_alloc(struct urdev *urd) 314 { 315 struct urfile *urf; 316 317 urf = kzalloc(sizeof(struct urfile), GFP_KERNEL); 318 if (!urf) 319 return NULL; 320 urf->urd = urd; 321 322 TRACE("urfile_alloc: urd=%p urf=%p rl=%zu\n", urd, urf, 323 urf->dev_reclen); 324 325 return urf; 326 } 327 328 static void urfile_free(struct urfile *urf) 329 { 330 TRACE("urfile_free: urf=%p urd=%p\n", urf, urf->urd); 331 kfree(urf); 332 } 333 334 /* 335 * The fops implementation of the character device driver 336 */ 337 static ssize_t do_write(struct urdev *urd, const char __user *udata, 338 size_t count, size_t reclen, loff_t *ppos) 339 { 340 struct ccw1 *cpa; 341 int rc; 342 343 cpa = alloc_chan_prog(udata, count / reclen, reclen); 344 if (IS_ERR(cpa)) 345 return PTR_ERR(cpa); 346 347 rc = do_ur_io(urd, cpa); 348 if (rc) 349 goto fail_kfree_cpa; 350 351 if (urd->io_request_rc) { 352 rc = urd->io_request_rc; 353 goto fail_kfree_cpa; 354 } 355 *ppos += count; 356 rc = count; 357 358 fail_kfree_cpa: 359 free_chan_prog(cpa); 360 return rc; 361 } 362 363 static ssize_t ur_write(struct file *file, const char __user *udata, 364 size_t count, loff_t *ppos) 365 { 366 struct urfile *urf = file->private_data; 367 368 TRACE("ur_write: count=%zu\n", count); 369 370 if (count == 0) 371 return 0; 372 373 if (count % urf->dev_reclen) 374 return -EINVAL; /* count must be a multiple of reclen */ 375 376 if (count > urf->dev_reclen * MAX_RECS_PER_IO) 377 count = urf->dev_reclen * MAX_RECS_PER_IO; 378 379 return do_write(urf->urd, udata, count, urf->dev_reclen, ppos); 380 } 381 382 static int do_diag_14(unsigned long rx, unsigned long ry1, 383 unsigned long subcode) 384 { 385 register unsigned long _ry1 asm("2") = ry1; 386 register unsigned long _ry2 asm("3") = subcode; 387 int rc = 0; 388 389 asm volatile( 390 #ifdef CONFIG_64BIT 391 " sam31\n" 392 " diag %2,2,0x14\n" 393 " sam64\n" 394 #else 395 " diag %2,2,0x14\n" 396 #endif 397 " ipm %0\n" 398 " srl %0,28\n" 399 : "=d" (rc), "+d" (_ry2) 400 : "d" (rx), "d" (_ry1) 401 : "cc"); 402 403 TRACE("diag 14: subcode=0x%lx, cc=%i\n", subcode, rc); 404 return rc; 405 } 406 407 /* 408 * diagnose code 0x14 subcode 0x0028 - position spool file to designated 409 * record 410 * cc=0 normal completion 411 * cc=2 no file active on the virtual reader or device not ready 412 * cc=3 record specified is beyond EOF 413 */ 414 static int diag_position_to_record(int devno, int record) 415 { 416 int cc; 417 418 cc = do_diag_14(record, devno, 0x28); 419 switch (cc) { 420 case 0: 421 return 0; 422 case 2: 423 return -ENOMEDIUM; 424 case 3: 425 return -ENODATA; /* position beyond end of file */ 426 default: 427 return -EIO; 428 } 429 } 430 431 /* 432 * diagnose code 0x14 subcode 0x0000 - read next spool file buffer 433 * cc=0 normal completion 434 * cc=1 EOF reached 435 * cc=2 no file active on the virtual reader, and no file eligible 436 * cc=3 file already active on the virtual reader or specified virtual 437 * reader does not exist or is not a reader 438 */ 439 static int diag_read_file(int devno, char *buf) 440 { 441 int cc; 442 443 cc = do_diag_14((unsigned long) buf, devno, 0x00); 444 switch (cc) { 445 case 0: 446 return 0; 447 case 1: 448 return -ENODATA; 449 case 2: 450 return -ENOMEDIUM; 451 default: 452 return -EIO; 453 } 454 } 455 456 static ssize_t diag14_read(struct file *file, char __user *ubuf, size_t count, 457 loff_t *offs) 458 { 459 size_t len, copied, res; 460 char *buf; 461 int rc; 462 u16 reclen; 463 struct urdev *urd; 464 465 urd = ((struct urfile *) file->private_data)->urd; 466 reclen = ((struct urfile *) file->private_data)->file_reclen; 467 468 rc = diag_position_to_record(urd->dev_id.devno, *offs / PAGE_SIZE + 1); 469 if (rc == -ENODATA) 470 return 0; 471 if (rc) 472 return rc; 473 474 len = min((size_t) PAGE_SIZE, count); 475 buf = kmalloc(PAGE_SIZE, GFP_KERNEL); 476 if (!buf) 477 return -ENOMEM; 478 479 copied = 0; 480 res = (size_t) (*offs % PAGE_SIZE); 481 do { 482 rc = diag_read_file(urd->dev_id.devno, buf); 483 if (rc == -ENODATA) { 484 break; 485 } 486 if (rc) 487 goto fail; 488 if (reclen && (copied == 0) && (*offs < PAGE_SIZE)) 489 *((u16 *) &buf[FILE_RECLEN_OFFSET]) = reclen; 490 len = min(count - copied, PAGE_SIZE - res); 491 if (copy_to_user(ubuf + copied, buf + res, len)) { 492 rc = -EFAULT; 493 goto fail; 494 } 495 res = 0; 496 copied += len; 497 } while (copied != count); 498 499 *offs += copied; 500 rc = copied; 501 fail: 502 kfree(buf); 503 return rc; 504 } 505 506 static ssize_t ur_read(struct file *file, char __user *ubuf, size_t count, 507 loff_t *offs) 508 { 509 struct urdev *urd; 510 int rc; 511 512 TRACE("ur_read: count=%zu ppos=%li\n", count, (unsigned long) *offs); 513 514 if (count == 0) 515 return 0; 516 517 urd = ((struct urfile *) file->private_data)->urd; 518 rc = mutex_lock_interruptible(&urd->io_mutex); 519 if (rc) 520 return rc; 521 rc = diag14_read(file, ubuf, count, offs); 522 mutex_unlock(&urd->io_mutex); 523 return rc; 524 } 525 526 /* 527 * diagnose code 0x14 subcode 0x0fff - retrieve next file descriptor 528 * cc=0 normal completion 529 * cc=1 no files on reader queue or no subsequent file 530 * cc=2 spid specified is invalid 531 */ 532 static int diag_read_next_file_info(struct file_control_block *buf, int spid) 533 { 534 int cc; 535 536 cc = do_diag_14((unsigned long) buf, spid, 0xfff); 537 switch (cc) { 538 case 0: 539 return 0; 540 default: 541 return -ENODATA; 542 } 543 } 544 545 static int verify_device(struct urdev *urd) 546 { 547 struct file_control_block fcb; 548 char *buf; 549 int rc; 550 551 switch (urd->class) { 552 case DEV_CLASS_UR_O: 553 return 0; /* no check needed here */ 554 case DEV_CLASS_UR_I: 555 /* check for empty reader device (beginning of chain) */ 556 rc = diag_read_next_file_info(&fcb, 0); 557 if (rc) 558 return rc; 559 560 /* open file on virtual reader */ 561 buf = kmalloc(PAGE_SIZE, GFP_KERNEL); 562 if (!buf) 563 return -ENOMEM; 564 rc = diag_read_file(urd->dev_id.devno, buf); 565 kfree(buf); 566 567 if ((rc != 0) && (rc != -ENODATA)) /* EOF does not hurt */ 568 return rc; 569 return 0; 570 default: 571 return -ENOTSUPP; 572 } 573 } 574 575 static int get_file_reclen(struct urdev *urd) 576 { 577 struct file_control_block fcb; 578 int rc; 579 580 switch (urd->class) { 581 case DEV_CLASS_UR_O: 582 return 0; 583 case DEV_CLASS_UR_I: 584 rc = diag_read_next_file_info(&fcb, 0); 585 if (rc) 586 return rc; 587 break; 588 default: 589 return -ENOTSUPP; 590 } 591 if (fcb.file_stat & FLG_CP_DUMP) 592 return 0; 593 594 return fcb.rec_len; 595 } 596 597 static int ur_open(struct inode *inode, struct file *file) 598 { 599 u16 devno; 600 struct urdev *urd; 601 struct urfile *urf; 602 unsigned short accmode; 603 int rc; 604 605 accmode = file->f_flags & O_ACCMODE; 606 607 if (accmode == O_RDWR) 608 return -EACCES; 609 610 /* 611 * We treat the minor number as the devno of the ur device 612 * to find in the driver tree. 613 */ 614 devno = MINOR(file->f_dentry->d_inode->i_rdev); 615 616 urd = urdev_get_from_devno(devno); 617 if (!urd) 618 return -ENXIO; 619 620 if (file->f_flags & O_NONBLOCK) { 621 if (!mutex_trylock(&urd->open_mutex)) { 622 rc = -EBUSY; 623 goto fail_put; 624 } 625 } else { 626 if (mutex_lock_interruptible(&urd->open_mutex)) { 627 rc = -ERESTARTSYS; 628 goto fail_put; 629 } 630 } 631 632 TRACE("ur_open\n"); 633 634 if (((accmode == O_RDONLY) && (urd->class != DEV_CLASS_UR_I)) || 635 ((accmode == O_WRONLY) && (urd->class != DEV_CLASS_UR_O))) { 636 TRACE("ur_open: unsupported dev class (%d)\n", urd->class); 637 rc = -EACCES; 638 goto fail_unlock; 639 } 640 641 rc = verify_device(urd); 642 if (rc) 643 goto fail_unlock; 644 645 urf = urfile_alloc(urd); 646 if (!urf) { 647 rc = -ENOMEM; 648 goto fail_unlock; 649 } 650 651 urf->dev_reclen = urd->reclen; 652 rc = get_file_reclen(urd); 653 if (rc < 0) 654 goto fail_urfile_free; 655 urf->file_reclen = rc; 656 file->private_data = urf; 657 return 0; 658 659 fail_urfile_free: 660 urfile_free(urf); 661 fail_unlock: 662 mutex_unlock(&urd->open_mutex); 663 fail_put: 664 urdev_put(urd); 665 return rc; 666 } 667 668 static int ur_release(struct inode *inode, struct file *file) 669 { 670 struct urfile *urf = file->private_data; 671 672 TRACE("ur_release\n"); 673 mutex_unlock(&urf->urd->open_mutex); 674 urdev_put(urf->urd); 675 urfile_free(urf); 676 return 0; 677 } 678 679 static loff_t ur_llseek(struct file *file, loff_t offset, int whence) 680 { 681 loff_t newpos; 682 683 if ((file->f_flags & O_ACCMODE) != O_RDONLY) 684 return -ESPIPE; /* seek allowed only for reader */ 685 if (offset % PAGE_SIZE) 686 return -ESPIPE; /* only multiples of 4K allowed */ 687 switch (whence) { 688 case 0: /* SEEK_SET */ 689 newpos = offset; 690 break; 691 case 1: /* SEEK_CUR */ 692 newpos = file->f_pos + offset; 693 break; 694 default: 695 return -EINVAL; 696 } 697 file->f_pos = newpos; 698 return newpos; 699 } 700 701 static struct file_operations ur_fops = { 702 .owner = THIS_MODULE, 703 .open = ur_open, 704 .release = ur_release, 705 .read = ur_read, 706 .write = ur_write, 707 .llseek = ur_llseek, 708 }; 709 710 /* 711 * ccw_device infrastructure: 712 * ur_probe gets its own ref to the device (i.e. get_device), 713 * creates the struct urdev, the device attributes, sets up 714 * the interrupt handler and validates the virtual unit record device. 715 * ur_remove removes the device attributes, frees the struct urdev 716 * and drops (put_device) the ref to the device we got in ur_probe. 717 */ 718 static int ur_probe(struct ccw_device *cdev) 719 { 720 struct urdev *urd; 721 int rc; 722 723 TRACE("ur_probe: cdev=%p state=%d\n", cdev, *(int *) cdev->private); 724 725 if (!get_device(&cdev->dev)) 726 return -ENODEV; 727 728 urd = urdev_alloc(cdev); 729 if (!urd) { 730 rc = -ENOMEM; 731 goto fail; 732 } 733 rc = ur_create_attributes(&cdev->dev); 734 if (rc) { 735 rc = -ENOMEM; 736 goto fail; 737 } 738 cdev->dev.driver_data = urd; 739 cdev->handler = ur_int_handler; 740 741 /* validate virtual unit record device */ 742 urd->class = get_urd_class(urd); 743 if (urd->class < 0) { 744 rc = urd->class; 745 goto fail; 746 } 747 if ((urd->class != DEV_CLASS_UR_I) && (urd->class != DEV_CLASS_UR_O)) { 748 rc = -ENOTSUPP; 749 goto fail; 750 } 751 752 return 0; 753 754 fail: 755 urdev_free(urd); 756 put_device(&cdev->dev); 757 return rc; 758 } 759 760 static void ur_remove(struct ccw_device *cdev) 761 { 762 struct urdev *urd = cdev->dev.driver_data; 763 764 TRACE("ur_remove\n"); 765 if (cdev->online) 766 ur_set_offline(cdev); 767 ur_remove_attributes(&cdev->dev); 768 urdev_free(urd); 769 put_device(&cdev->dev); 770 } 771 772 static int ur_set_online(struct ccw_device *cdev) 773 { 774 struct urdev *urd; 775 int minor, major, rc; 776 char node_id[16]; 777 778 TRACE("ur_set_online: cdev=%p state=%d\n", cdev, 779 *(int *) cdev->private); 780 781 if (!try_module_get(ur_driver.owner)) 782 return -EINVAL; 783 784 urd = (struct urdev *) cdev->dev.driver_data; 785 minor = urd->dev_id.devno; 786 major = MAJOR(ur_first_dev_maj_min); 787 788 urd->char_device = cdev_alloc(); 789 if (!urd->char_device) { 790 rc = -ENOMEM; 791 goto fail_module_put; 792 } 793 794 cdev_init(urd->char_device, &ur_fops); 795 urd->char_device->dev = MKDEV(major, minor); 796 urd->char_device->owner = ur_fops.owner; 797 798 rc = cdev_add(urd->char_device, urd->char_device->dev, 1); 799 if (rc) 800 goto fail_free_cdev; 801 if (urd->cdev->id.cu_type == READER_PUNCH_DEVTYPE) { 802 if (urd->class == DEV_CLASS_UR_I) 803 sprintf(node_id, "vmrdr-%s", cdev->dev.bus_id); 804 if (urd->class == DEV_CLASS_UR_O) 805 sprintf(node_id, "vmpun-%s", cdev->dev.bus_id); 806 } else if (urd->cdev->id.cu_type == PRINTER_DEVTYPE) { 807 sprintf(node_id, "vmprt-%s", cdev->dev.bus_id); 808 } else { 809 rc = -ENOTSUPP; 810 goto fail_free_cdev; 811 } 812 813 urd->device = device_create(vmur_class, NULL, urd->char_device->dev, 814 "%s", node_id); 815 if (IS_ERR(urd->device)) { 816 rc = PTR_ERR(urd->device); 817 TRACE("ur_set_online: device_create rc=%d\n", rc); 818 goto fail_free_cdev; 819 } 820 821 return 0; 822 823 fail_free_cdev: 824 cdev_del(urd->char_device); 825 fail_module_put: 826 module_put(ur_driver.owner); 827 828 return rc; 829 } 830 831 static int ur_set_offline(struct ccw_device *cdev) 832 { 833 struct urdev *urd; 834 835 TRACE("ur_set_offline: cdev=%p cdev->private=%p state=%d\n", 836 cdev, cdev->private, *(int *) cdev->private); 837 urd = (struct urdev *) cdev->dev.driver_data; 838 device_destroy(vmur_class, urd->char_device->dev); 839 cdev_del(urd->char_device); 840 module_put(ur_driver.owner); 841 842 return 0; 843 } 844 845 /* 846 * Module initialisation and cleanup 847 */ 848 static int __init ur_init(void) 849 { 850 int rc; 851 dev_t dev; 852 853 if (!MACHINE_IS_VM) { 854 PRINT_ERR("%s is only available under z/VM.\n", ur_banner); 855 return -ENODEV; 856 } 857 858 vmur_dbf = debug_register("vmur", 4, 1, 4 * sizeof(long)); 859 if (!vmur_dbf) 860 return -ENOMEM; 861 rc = debug_register_view(vmur_dbf, &debug_sprintf_view); 862 if (rc) 863 goto fail_free_dbf; 864 865 debug_set_level(vmur_dbf, 6); 866 867 rc = ccw_driver_register(&ur_driver); 868 if (rc) 869 goto fail_free_dbf; 870 871 rc = alloc_chrdev_region(&dev, 0, NUM_MINORS, "vmur"); 872 if (rc) { 873 PRINT_ERR("alloc_chrdev_region failed: err = %d\n", rc); 874 goto fail_unregister_driver; 875 } 876 ur_first_dev_maj_min = MKDEV(MAJOR(dev), 0); 877 878 vmur_class = class_create(THIS_MODULE, "vmur"); 879 if (IS_ERR(vmur_class)) { 880 rc = PTR_ERR(vmur_class); 881 goto fail_unregister_region; 882 } 883 PRINT_INFO("%s loaded.\n", ur_banner); 884 return 0; 885 886 fail_unregister_region: 887 unregister_chrdev_region(ur_first_dev_maj_min, NUM_MINORS); 888 fail_unregister_driver: 889 ccw_driver_unregister(&ur_driver); 890 fail_free_dbf: 891 debug_unregister(vmur_dbf); 892 return rc; 893 } 894 895 static void __exit ur_exit(void) 896 { 897 class_destroy(vmur_class); 898 unregister_chrdev_region(ur_first_dev_maj_min, NUM_MINORS); 899 ccw_driver_unregister(&ur_driver); 900 debug_unregister(vmur_dbf); 901 PRINT_INFO("%s unloaded.\n", ur_banner); 902 } 903 904 module_init(ur_init); 905 module_exit(ur_exit); 906