1 /* 2 * drivers/s390/cio/cio.c 3 * S/390 common I/O routines -- low level i/o calls 4 * 5 * Copyright (C) IBM Corp. 1999,2006 6 * Author(s): Ingo Adlung (adlung@de.ibm.com) 7 * Cornelia Huck (cornelia.huck@de.ibm.com) 8 * Arnd Bergmann (arndb@de.ibm.com) 9 * Martin Schwidefsky (schwidefsky@de.ibm.com) 10 */ 11 12 #include <linux/module.h> 13 #include <linux/init.h> 14 #include <linux/slab.h> 15 #include <linux/device.h> 16 #include <linux/kernel_stat.h> 17 #include <linux/interrupt.h> 18 #include <asm/cio.h> 19 #include <asm/delay.h> 20 #include <asm/irq.h> 21 #include <asm/irq_regs.h> 22 #include <asm/setup.h> 23 #include <asm/reset.h> 24 #include <asm/ipl.h> 25 #include <asm/chpid.h> 26 #include "airq.h" 27 #include "cio.h" 28 #include "css.h" 29 #include "chsc.h" 30 #include "ioasm.h" 31 #include "blacklist.h" 32 #include "cio_debug.h" 33 #include "chp.h" 34 #include "../s390mach.h" 35 36 debug_info_t *cio_debug_msg_id; 37 debug_info_t *cio_debug_trace_id; 38 debug_info_t *cio_debug_crw_id; 39 40 int cio_show_msg; 41 42 static int __init 43 cio_setup (char *parm) 44 { 45 if (!strcmp (parm, "yes")) 46 cio_show_msg = 1; 47 else if (!strcmp (parm, "no")) 48 cio_show_msg = 0; 49 else 50 printk(KERN_ERR "cio: cio_setup: " 51 "invalid cio_msg parameter '%s'", parm); 52 return 1; 53 } 54 55 __setup ("cio_msg=", cio_setup); 56 57 /* 58 * Function: cio_debug_init 59 * Initializes three debug logs (under /proc/s390dbf) for common I/O: 60 * - cio_msg logs the messages which are printk'ed when CONFIG_DEBUG_IO is on 61 * - cio_trace logs the calling of different functions 62 * - cio_crw logs the messages which are printk'ed when CONFIG_DEBUG_CRW is on 63 * debug levels depend on CONFIG_DEBUG_IO resp. CONFIG_DEBUG_CRW 64 */ 65 static int __init 66 cio_debug_init (void) 67 { 68 cio_debug_msg_id = debug_register ("cio_msg", 16, 4, 16*sizeof (long)); 69 if (!cio_debug_msg_id) 70 goto out_unregister; 71 debug_register_view (cio_debug_msg_id, &debug_sprintf_view); 72 debug_set_level (cio_debug_msg_id, 2); 73 cio_debug_trace_id = debug_register ("cio_trace", 16, 4, 16); 74 if (!cio_debug_trace_id) 75 goto out_unregister; 76 debug_register_view (cio_debug_trace_id, &debug_hex_ascii_view); 77 debug_set_level (cio_debug_trace_id, 2); 78 cio_debug_crw_id = debug_register ("cio_crw", 4, 4, 16*sizeof (long)); 79 if (!cio_debug_crw_id) 80 goto out_unregister; 81 debug_register_view (cio_debug_crw_id, &debug_sprintf_view); 82 debug_set_level (cio_debug_crw_id, 2); 83 return 0; 84 85 out_unregister: 86 if (cio_debug_msg_id) 87 debug_unregister (cio_debug_msg_id); 88 if (cio_debug_trace_id) 89 debug_unregister (cio_debug_trace_id); 90 if (cio_debug_crw_id) 91 debug_unregister (cio_debug_crw_id); 92 printk(KERN_WARNING"cio: could not initialize debugging\n"); 93 return -1; 94 } 95 96 arch_initcall (cio_debug_init); 97 98 int 99 cio_set_options (struct subchannel *sch, int flags) 100 { 101 sch->options.suspend = (flags & DOIO_ALLOW_SUSPEND) != 0; 102 sch->options.prefetch = (flags & DOIO_DENY_PREFETCH) != 0; 103 sch->options.inter = (flags & DOIO_SUPPRESS_INTER) != 0; 104 return 0; 105 } 106 107 /* FIXME: who wants to use this? */ 108 int 109 cio_get_options (struct subchannel *sch) 110 { 111 int flags; 112 113 flags = 0; 114 if (sch->options.suspend) 115 flags |= DOIO_ALLOW_SUSPEND; 116 if (sch->options.prefetch) 117 flags |= DOIO_DENY_PREFETCH; 118 if (sch->options.inter) 119 flags |= DOIO_SUPPRESS_INTER; 120 return flags; 121 } 122 123 /* 124 * Use tpi to get a pending interrupt, call the interrupt handler and 125 * return a pointer to the subchannel structure. 126 */ 127 static int 128 cio_tpi(void) 129 { 130 struct tpi_info *tpi_info; 131 struct subchannel *sch; 132 struct irb *irb; 133 134 tpi_info = (struct tpi_info *) __LC_SUBCHANNEL_ID; 135 if (tpi (NULL) != 1) 136 return 0; 137 irb = (struct irb *) __LC_IRB; 138 /* Store interrupt response block to lowcore. */ 139 if (tsch (tpi_info->schid, irb) != 0) 140 /* Not status pending or not operational. */ 141 return 1; 142 sch = (struct subchannel *)(unsigned long)tpi_info->intparm; 143 if (!sch) 144 return 1; 145 local_bh_disable(); 146 irq_enter (); 147 spin_lock(sch->lock); 148 memcpy (&sch->schib.scsw, &irb->scsw, sizeof (struct scsw)); 149 if (sch->driver && sch->driver->irq) 150 sch->driver->irq(&sch->dev); 151 spin_unlock(sch->lock); 152 irq_exit (); 153 _local_bh_enable(); 154 return 1; 155 } 156 157 static int 158 cio_start_handle_notoper(struct subchannel *sch, __u8 lpm) 159 { 160 char dbf_text[15]; 161 162 if (lpm != 0) 163 sch->lpm &= ~lpm; 164 else 165 sch->lpm = 0; 166 167 stsch (sch->schid, &sch->schib); 168 169 CIO_MSG_EVENT(0, "cio_start: 'not oper' status for " 170 "subchannel 0.%x.%04x!\n", sch->schid.ssid, 171 sch->schid.sch_no); 172 sprintf(dbf_text, "no%s", sch->dev.bus_id); 173 CIO_TRACE_EVENT(0, dbf_text); 174 CIO_HEX_EVENT(0, &sch->schib, sizeof (struct schib)); 175 176 return (sch->lpm ? -EACCES : -ENODEV); 177 } 178 179 int 180 cio_start_key (struct subchannel *sch, /* subchannel structure */ 181 struct ccw1 * cpa, /* logical channel prog addr */ 182 __u8 lpm, /* logical path mask */ 183 __u8 key) /* storage key */ 184 { 185 char dbf_txt[15]; 186 int ccode; 187 188 CIO_TRACE_EVENT (4, "stIO"); 189 CIO_TRACE_EVENT (4, sch->dev.bus_id); 190 191 /* sch is always under 2G. */ 192 sch->orb.intparm = (__u32)(unsigned long)sch; 193 sch->orb.fmt = 1; 194 195 sch->orb.pfch = sch->options.prefetch == 0; 196 sch->orb.spnd = sch->options.suspend; 197 sch->orb.ssic = sch->options.suspend && sch->options.inter; 198 sch->orb.lpm = (lpm != 0) ? lpm : sch->lpm; 199 #ifdef CONFIG_64BIT 200 /* 201 * for 64 bit we always support 64 bit IDAWs with 4k page size only 202 */ 203 sch->orb.c64 = 1; 204 sch->orb.i2k = 0; 205 #endif 206 sch->orb.key = key >> 4; 207 /* issue "Start Subchannel" */ 208 sch->orb.cpa = (__u32) __pa (cpa); 209 ccode = ssch (sch->schid, &sch->orb); 210 211 /* process condition code */ 212 sprintf (dbf_txt, "ccode:%d", ccode); 213 CIO_TRACE_EVENT (4, dbf_txt); 214 215 switch (ccode) { 216 case 0: 217 /* 218 * initialize device status information 219 */ 220 sch->schib.scsw.actl |= SCSW_ACTL_START_PEND; 221 return 0; 222 case 1: /* status pending */ 223 case 2: /* busy */ 224 return -EBUSY; 225 default: /* device/path not operational */ 226 return cio_start_handle_notoper(sch, lpm); 227 } 228 } 229 230 int 231 cio_start (struct subchannel *sch, struct ccw1 *cpa, __u8 lpm) 232 { 233 return cio_start_key(sch, cpa, lpm, PAGE_DEFAULT_KEY); 234 } 235 236 /* 237 * resume suspended I/O operation 238 */ 239 int 240 cio_resume (struct subchannel *sch) 241 { 242 char dbf_txt[15]; 243 int ccode; 244 245 CIO_TRACE_EVENT (4, "resIO"); 246 CIO_TRACE_EVENT (4, sch->dev.bus_id); 247 248 ccode = rsch (sch->schid); 249 250 sprintf (dbf_txt, "ccode:%d", ccode); 251 CIO_TRACE_EVENT (4, dbf_txt); 252 253 switch (ccode) { 254 case 0: 255 sch->schib.scsw.actl |= SCSW_ACTL_RESUME_PEND; 256 return 0; 257 case 1: 258 return -EBUSY; 259 case 2: 260 return -EINVAL; 261 default: 262 /* 263 * useless to wait for request completion 264 * as device is no longer operational ! 265 */ 266 return -ENODEV; 267 } 268 } 269 270 /* 271 * halt I/O operation 272 */ 273 int 274 cio_halt(struct subchannel *sch) 275 { 276 char dbf_txt[15]; 277 int ccode; 278 279 if (!sch) 280 return -ENODEV; 281 282 CIO_TRACE_EVENT (2, "haltIO"); 283 CIO_TRACE_EVENT (2, sch->dev.bus_id); 284 285 /* 286 * Issue "Halt subchannel" and process condition code 287 */ 288 ccode = hsch (sch->schid); 289 290 sprintf (dbf_txt, "ccode:%d", ccode); 291 CIO_TRACE_EVENT (2, dbf_txt); 292 293 switch (ccode) { 294 case 0: 295 sch->schib.scsw.actl |= SCSW_ACTL_HALT_PEND; 296 return 0; 297 case 1: /* status pending */ 298 case 2: /* busy */ 299 return -EBUSY; 300 default: /* device not operational */ 301 return -ENODEV; 302 } 303 } 304 305 /* 306 * Clear I/O operation 307 */ 308 int 309 cio_clear(struct subchannel *sch) 310 { 311 char dbf_txt[15]; 312 int ccode; 313 314 if (!sch) 315 return -ENODEV; 316 317 CIO_TRACE_EVENT (2, "clearIO"); 318 CIO_TRACE_EVENT (2, sch->dev.bus_id); 319 320 /* 321 * Issue "Clear subchannel" and process condition code 322 */ 323 ccode = csch (sch->schid); 324 325 sprintf (dbf_txt, "ccode:%d", ccode); 326 CIO_TRACE_EVENT (2, dbf_txt); 327 328 switch (ccode) { 329 case 0: 330 sch->schib.scsw.actl |= SCSW_ACTL_CLEAR_PEND; 331 return 0; 332 default: /* device not operational */ 333 return -ENODEV; 334 } 335 } 336 337 /* 338 * Function: cio_cancel 339 * Issues a "Cancel Subchannel" on the specified subchannel 340 * Note: We don't need any fancy intparms and flags here 341 * since xsch is executed synchronously. 342 * Only for common I/O internal use as for now. 343 */ 344 int 345 cio_cancel (struct subchannel *sch) 346 { 347 char dbf_txt[15]; 348 int ccode; 349 350 if (!sch) 351 return -ENODEV; 352 353 CIO_TRACE_EVENT (2, "cancelIO"); 354 CIO_TRACE_EVENT (2, sch->dev.bus_id); 355 356 ccode = xsch (sch->schid); 357 358 sprintf (dbf_txt, "ccode:%d", ccode); 359 CIO_TRACE_EVENT (2, dbf_txt); 360 361 switch (ccode) { 362 case 0: /* success */ 363 /* Update information in scsw. */ 364 stsch (sch->schid, &sch->schib); 365 return 0; 366 case 1: /* status pending */ 367 return -EBUSY; 368 case 2: /* not applicable */ 369 return -EINVAL; 370 default: /* not oper */ 371 return -ENODEV; 372 } 373 } 374 375 /* 376 * Function: cio_modify 377 * Issues a "Modify Subchannel" on the specified subchannel 378 */ 379 int 380 cio_modify (struct subchannel *sch) 381 { 382 int ccode, retry, ret; 383 384 ret = 0; 385 for (retry = 0; retry < 5; retry++) { 386 ccode = msch_err (sch->schid, &sch->schib); 387 if (ccode < 0) /* -EIO if msch gets a program check. */ 388 return ccode; 389 switch (ccode) { 390 case 0: /* successfull */ 391 return 0; 392 case 1: /* status pending */ 393 return -EBUSY; 394 case 2: /* busy */ 395 udelay (100); /* allow for recovery */ 396 ret = -EBUSY; 397 break; 398 case 3: /* not operational */ 399 return -ENODEV; 400 } 401 } 402 return ret; 403 } 404 405 /* 406 * Enable subchannel. 407 */ 408 int 409 cio_enable_subchannel (struct subchannel *sch, unsigned int isc) 410 { 411 char dbf_txt[15]; 412 int ccode; 413 int retry; 414 int ret; 415 416 CIO_TRACE_EVENT (2, "ensch"); 417 CIO_TRACE_EVENT (2, sch->dev.bus_id); 418 419 if (sch_is_pseudo_sch(sch)) 420 return -EINVAL; 421 ccode = stsch (sch->schid, &sch->schib); 422 if (ccode) 423 return -ENODEV; 424 425 for (retry = 5, ret = 0; retry > 0; retry--) { 426 sch->schib.pmcw.ena = 1; 427 sch->schib.pmcw.isc = isc; 428 sch->schib.pmcw.intparm = (__u32)(unsigned long)sch; 429 ret = cio_modify(sch); 430 if (ret == -ENODEV) 431 break; 432 if (ret == -EIO) 433 /* 434 * Got a program check in cio_modify. Try without 435 * the concurrent sense bit the next time. 436 */ 437 sch->schib.pmcw.csense = 0; 438 if (ret == 0) { 439 stsch (sch->schid, &sch->schib); 440 if (sch->schib.pmcw.ena) 441 break; 442 } 443 if (ret == -EBUSY) { 444 struct irb irb; 445 if (tsch(sch->schid, &irb) != 0) 446 break; 447 } 448 } 449 sprintf (dbf_txt, "ret:%d", ret); 450 CIO_TRACE_EVENT (2, dbf_txt); 451 return ret; 452 } 453 454 /* 455 * Disable subchannel. 456 */ 457 int 458 cio_disable_subchannel (struct subchannel *sch) 459 { 460 char dbf_txt[15]; 461 int ccode; 462 int retry; 463 int ret; 464 465 CIO_TRACE_EVENT (2, "dissch"); 466 CIO_TRACE_EVENT (2, sch->dev.bus_id); 467 468 if (sch_is_pseudo_sch(sch)) 469 return 0; 470 ccode = stsch (sch->schid, &sch->schib); 471 if (ccode == 3) /* Not operational. */ 472 return -ENODEV; 473 474 if (sch->schib.scsw.actl != 0) 475 /* 476 * the disable function must not be called while there are 477 * requests pending for completion ! 478 */ 479 return -EBUSY; 480 481 for (retry = 5, ret = 0; retry > 0; retry--) { 482 sch->schib.pmcw.ena = 0; 483 ret = cio_modify(sch); 484 if (ret == -ENODEV) 485 break; 486 if (ret == -EBUSY) 487 /* 488 * The subchannel is busy or status pending. 489 * We'll disable when the next interrupt was delivered 490 * via the state machine. 491 */ 492 break; 493 if (ret == 0) { 494 stsch (sch->schid, &sch->schib); 495 if (!sch->schib.pmcw.ena) 496 break; 497 } 498 } 499 sprintf (dbf_txt, "ret:%d", ret); 500 CIO_TRACE_EVENT (2, dbf_txt); 501 return ret; 502 } 503 504 int cio_create_sch_lock(struct subchannel *sch) 505 { 506 sch->lock = kmalloc(sizeof(spinlock_t), GFP_KERNEL); 507 if (!sch->lock) 508 return -ENOMEM; 509 spin_lock_init(sch->lock); 510 return 0; 511 } 512 513 /* 514 * cio_validate_subchannel() 515 * 516 * Find out subchannel type and initialize struct subchannel. 517 * Return codes: 518 * SUBCHANNEL_TYPE_IO for a normal io subchannel 519 * SUBCHANNEL_TYPE_CHSC for a chsc subchannel 520 * SUBCHANNEL_TYPE_MESSAGE for a messaging subchannel 521 * SUBCHANNEL_TYPE_ADM for a adm(?) subchannel 522 * -ENXIO for non-defined subchannels 523 * -ENODEV for subchannels with invalid device number or blacklisted devices 524 */ 525 int 526 cio_validate_subchannel (struct subchannel *sch, struct subchannel_id schid) 527 { 528 char dbf_txt[15]; 529 int ccode; 530 int err; 531 532 sprintf (dbf_txt, "valsch%x", schid.sch_no); 533 CIO_TRACE_EVENT (4, dbf_txt); 534 535 /* Nuke all fields. */ 536 memset(sch, 0, sizeof(struct subchannel)); 537 538 sch->schid = schid; 539 if (cio_is_console(schid)) { 540 sch->lock = cio_get_console_lock(); 541 } else { 542 err = cio_create_sch_lock(sch); 543 if (err) 544 goto out; 545 } 546 mutex_init(&sch->reg_mutex); 547 /* Set a name for the subchannel */ 548 snprintf (sch->dev.bus_id, BUS_ID_SIZE, "0.%x.%04x", schid.ssid, 549 schid.sch_no); 550 551 /* 552 * The first subchannel that is not-operational (ccode==3) 553 * indicates that there aren't any more devices available. 554 * If stsch gets an exception, it means the current subchannel set 555 * is not valid. 556 */ 557 ccode = stsch_err (schid, &sch->schib); 558 if (ccode) { 559 err = (ccode == 3) ? -ENXIO : ccode; 560 goto out; 561 } 562 /* Copy subchannel type from path management control word. */ 563 sch->st = sch->schib.pmcw.st; 564 565 /* 566 * ... just being curious we check for non I/O subchannels 567 */ 568 if (sch->st != 0) { 569 CIO_DEBUG(KERN_INFO, 0, 570 "cio: Subchannel 0.%x.%04x reports " 571 "non-I/O subchannel type %04X\n", 572 sch->schid.ssid, sch->schid.sch_no, sch->st); 573 /* We stop here for non-io subchannels. */ 574 err = sch->st; 575 goto out; 576 } 577 578 /* Initialization for io subchannels. */ 579 if (!sch->schib.pmcw.dnv) { 580 /* io subchannel but device number is invalid. */ 581 err = -ENODEV; 582 goto out; 583 } 584 /* Devno is valid. */ 585 if (is_blacklisted (sch->schid.ssid, sch->schib.pmcw.dev)) { 586 /* 587 * This device must not be known to Linux. So we simply 588 * say that there is no device and return ENODEV. 589 */ 590 CIO_MSG_EVENT(4, "Blacklisted device detected " 591 "at devno %04X, subchannel set %x\n", 592 sch->schib.pmcw.dev, sch->schid.ssid); 593 err = -ENODEV; 594 goto out; 595 } 596 if (cio_is_console(sch->schid)) 597 sch->opm = 0xff; 598 else 599 sch->opm = chp_get_sch_opm(sch); 600 sch->lpm = sch->schib.pmcw.pam & sch->opm; 601 602 CIO_DEBUG(KERN_INFO, 0, 603 "cio: Detected device %04x on subchannel 0.%x.%04X" 604 " - PIM = %02X, PAM = %02X, POM = %02X\n", 605 sch->schib.pmcw.dev, sch->schid.ssid, 606 sch->schid.sch_no, sch->schib.pmcw.pim, 607 sch->schib.pmcw.pam, sch->schib.pmcw.pom); 608 609 /* 610 * We now have to initially ... 611 * ... set "interruption subclass" 612 * ... enable "concurrent sense" 613 * ... enable "multipath mode" if more than one 614 * CHPID is available. This is done regardless 615 * whether multiple paths are available for us. 616 */ 617 sch->schib.pmcw.isc = 3; /* could be smth. else */ 618 sch->schib.pmcw.csense = 1; /* concurrent sense */ 619 sch->schib.pmcw.ena = 0; 620 if ((sch->lpm & (sch->lpm - 1)) != 0) 621 sch->schib.pmcw.mp = 1; /* multipath mode */ 622 return 0; 623 out: 624 if (!cio_is_console(schid)) 625 kfree(sch->lock); 626 sch->lock = NULL; 627 return err; 628 } 629 630 /* 631 * do_IRQ() handles all normal I/O device IRQ's (the special 632 * SMP cross-CPU interrupts have their own specific 633 * handlers). 634 * 635 */ 636 void 637 do_IRQ (struct pt_regs *regs) 638 { 639 struct tpi_info *tpi_info; 640 struct subchannel *sch; 641 struct irb *irb; 642 struct pt_regs *old_regs; 643 644 old_regs = set_irq_regs(regs); 645 irq_enter(); 646 asm volatile ("mc 0,0"); 647 if (S390_lowcore.int_clock >= S390_lowcore.jiffy_timer) 648 /** 649 * Make sure that the i/o interrupt did not "overtake" 650 * the last HZ timer interrupt. 651 */ 652 account_ticks(S390_lowcore.int_clock); 653 /* 654 * Get interrupt information from lowcore 655 */ 656 tpi_info = (struct tpi_info *) __LC_SUBCHANNEL_ID; 657 irb = (struct irb *) __LC_IRB; 658 do { 659 kstat_cpu(smp_processor_id()).irqs[IO_INTERRUPT]++; 660 /* 661 * Non I/O-subchannel thin interrupts are processed differently 662 */ 663 if (tpi_info->adapter_IO == 1 && 664 tpi_info->int_type == IO_INTERRUPT_TYPE) { 665 do_adapter_IO(); 666 continue; 667 } 668 sch = (struct subchannel *)(unsigned long)tpi_info->intparm; 669 if (sch) 670 spin_lock(sch->lock); 671 /* Store interrupt response block to lowcore. */ 672 if (tsch (tpi_info->schid, irb) == 0 && sch) { 673 /* Keep subchannel information word up to date. */ 674 memcpy (&sch->schib.scsw, &irb->scsw, 675 sizeof (irb->scsw)); 676 /* Call interrupt handler if there is one. */ 677 if (sch->driver && sch->driver->irq) 678 sch->driver->irq(&sch->dev); 679 } 680 if (sch) 681 spin_unlock(sch->lock); 682 /* 683 * Are more interrupts pending? 684 * If so, the tpi instruction will update the lowcore 685 * to hold the info for the next interrupt. 686 * We don't do this for VM because a tpi drops the cpu 687 * out of the sie which costs more cycles than it saves. 688 */ 689 } while (!MACHINE_IS_VM && tpi (NULL) != 0); 690 irq_exit(); 691 set_irq_regs(old_regs); 692 } 693 694 #ifdef CONFIG_CCW_CONSOLE 695 static struct subchannel console_subchannel; 696 static int console_subchannel_in_use; 697 698 /* 699 * busy wait for the next interrupt on the console 700 */ 701 void 702 wait_cons_dev (void) 703 { 704 unsigned long cr6 __attribute__ ((aligned (8))); 705 unsigned long save_cr6 __attribute__ ((aligned (8))); 706 707 /* 708 * before entering the spinlock we may already have 709 * processed the interrupt on a different CPU... 710 */ 711 if (!console_subchannel_in_use) 712 return; 713 714 /* disable all but isc 7 (console device) */ 715 __ctl_store (save_cr6, 6, 6); 716 cr6 = 0x01000000; 717 __ctl_load (cr6, 6, 6); 718 719 do { 720 spin_unlock(console_subchannel.lock); 721 if (!cio_tpi()) 722 cpu_relax(); 723 spin_lock(console_subchannel.lock); 724 } while (console_subchannel.schib.scsw.actl != 0); 725 /* 726 * restore previous isc value 727 */ 728 __ctl_load (save_cr6, 6, 6); 729 } 730 731 static int 732 cio_test_for_console(struct subchannel_id schid, void *data) 733 { 734 if (stsch_err(schid, &console_subchannel.schib) != 0) 735 return -ENXIO; 736 if (console_subchannel.schib.pmcw.dnv && 737 console_subchannel.schib.pmcw.dev == 738 console_devno) { 739 console_irq = schid.sch_no; 740 return 1; /* found */ 741 } 742 return 0; 743 } 744 745 746 static int 747 cio_get_console_sch_no(void) 748 { 749 struct subchannel_id schid; 750 751 init_subchannel_id(&schid); 752 if (console_irq != -1) { 753 /* VM provided us with the irq number of the console. */ 754 schid.sch_no = console_irq; 755 if (stsch(schid, &console_subchannel.schib) != 0 || 756 !console_subchannel.schib.pmcw.dnv) 757 return -1; 758 console_devno = console_subchannel.schib.pmcw.dev; 759 } else if (console_devno != -1) { 760 /* At least the console device number is known. */ 761 for_each_subchannel(cio_test_for_console, NULL); 762 if (console_irq == -1) 763 return -1; 764 } else { 765 /* unlike in 2.4, we cannot autoprobe here, since 766 * the channel subsystem is not fully initialized. 767 * With some luck, the HWC console can take over */ 768 printk(KERN_WARNING "cio: No ccw console found!\n"); 769 return -1; 770 } 771 return console_irq; 772 } 773 774 struct subchannel * 775 cio_probe_console(void) 776 { 777 int sch_no, ret; 778 struct subchannel_id schid; 779 780 if (xchg(&console_subchannel_in_use, 1) != 0) 781 return ERR_PTR(-EBUSY); 782 sch_no = cio_get_console_sch_no(); 783 if (sch_no == -1) { 784 console_subchannel_in_use = 0; 785 return ERR_PTR(-ENODEV); 786 } 787 memset(&console_subchannel, 0, sizeof(struct subchannel)); 788 init_subchannel_id(&schid); 789 schid.sch_no = sch_no; 790 ret = cio_validate_subchannel(&console_subchannel, schid); 791 if (ret) { 792 console_subchannel_in_use = 0; 793 return ERR_PTR(-ENODEV); 794 } 795 796 /* 797 * enable console I/O-interrupt subclass 7 798 */ 799 ctl_set_bit(6, 24); 800 console_subchannel.schib.pmcw.isc = 7; 801 console_subchannel.schib.pmcw.intparm = 802 (__u32)(unsigned long)&console_subchannel; 803 ret = cio_modify(&console_subchannel); 804 if (ret) { 805 console_subchannel_in_use = 0; 806 return ERR_PTR(ret); 807 } 808 return &console_subchannel; 809 } 810 811 void 812 cio_release_console(void) 813 { 814 console_subchannel.schib.pmcw.intparm = 0; 815 cio_modify(&console_subchannel); 816 ctl_clear_bit(6, 24); 817 console_subchannel_in_use = 0; 818 } 819 820 /* Bah... hack to catch console special sausages. */ 821 int 822 cio_is_console(struct subchannel_id schid) 823 { 824 if (!console_subchannel_in_use) 825 return 0; 826 return schid_equal(&schid, &console_subchannel.schid); 827 } 828 829 struct subchannel * 830 cio_get_console_subchannel(void) 831 { 832 if (!console_subchannel_in_use) 833 return NULL; 834 return &console_subchannel; 835 } 836 837 #endif 838 static int 839 __disable_subchannel_easy(struct subchannel_id schid, struct schib *schib) 840 { 841 int retry, cc; 842 843 cc = 0; 844 for (retry=0;retry<3;retry++) { 845 schib->pmcw.ena = 0; 846 cc = msch(schid, schib); 847 if (cc) 848 return (cc==3?-ENODEV:-EBUSY); 849 stsch(schid, schib); 850 if (!schib->pmcw.ena) 851 return 0; 852 } 853 return -EBUSY; /* uhm... */ 854 } 855 856 /* we can't use the normal udelay here, since it enables external interrupts */ 857 858 static void udelay_reset(unsigned long usecs) 859 { 860 uint64_t start_cc, end_cc; 861 862 asm volatile ("STCK %0" : "=m" (start_cc)); 863 do { 864 cpu_relax(); 865 asm volatile ("STCK %0" : "=m" (end_cc)); 866 } while (((end_cc - start_cc)/4096) < usecs); 867 } 868 869 static int 870 __clear_subchannel_easy(struct subchannel_id schid) 871 { 872 int retry; 873 874 if (csch(schid)) 875 return -ENODEV; 876 for (retry=0;retry<20;retry++) { 877 struct tpi_info ti; 878 879 if (tpi(&ti)) { 880 tsch(ti.schid, (struct irb *)__LC_IRB); 881 if (schid_equal(&ti.schid, &schid)) 882 return 0; 883 } 884 udelay_reset(100); 885 } 886 return -EBUSY; 887 } 888 889 static int pgm_check_occured; 890 891 static void cio_reset_pgm_check_handler(void) 892 { 893 pgm_check_occured = 1; 894 } 895 896 static int stsch_reset(struct subchannel_id schid, volatile struct schib *addr) 897 { 898 int rc; 899 900 pgm_check_occured = 0; 901 s390_base_pgm_handler_fn = cio_reset_pgm_check_handler; 902 rc = stsch(schid, addr); 903 s390_base_pgm_handler_fn = NULL; 904 905 /* The program check handler could have changed pgm_check_occured. */ 906 barrier(); 907 908 if (pgm_check_occured) 909 return -EIO; 910 else 911 return rc; 912 } 913 914 static int __shutdown_subchannel_easy(struct subchannel_id schid, void *data) 915 { 916 struct schib schib; 917 918 if (stsch_reset(schid, &schib)) 919 return -ENXIO; 920 if (!schib.pmcw.ena) 921 return 0; 922 switch(__disable_subchannel_easy(schid, &schib)) { 923 case 0: 924 case -ENODEV: 925 break; 926 default: /* -EBUSY */ 927 if (__clear_subchannel_easy(schid)) 928 break; /* give up... */ 929 stsch(schid, &schib); 930 __disable_subchannel_easy(schid, &schib); 931 } 932 return 0; 933 } 934 935 static atomic_t chpid_reset_count; 936 937 static void s390_reset_chpids_mcck_handler(void) 938 { 939 struct crw crw; 940 struct mci *mci; 941 942 /* Check for pending channel report word. */ 943 mci = (struct mci *)&S390_lowcore.mcck_interruption_code; 944 if (!mci->cp) 945 return; 946 /* Process channel report words. */ 947 while (stcrw(&crw) == 0) { 948 /* Check for responses to RCHP. */ 949 if (crw.slct && crw.rsc == CRW_RSC_CPATH) 950 atomic_dec(&chpid_reset_count); 951 } 952 } 953 954 #define RCHP_TIMEOUT (30 * USEC_PER_SEC) 955 static void css_reset(void) 956 { 957 int i, ret; 958 unsigned long long timeout; 959 struct chp_id chpid; 960 961 /* Reset subchannels. */ 962 for_each_subchannel(__shutdown_subchannel_easy, NULL); 963 /* Reset channel paths. */ 964 s390_base_mcck_handler_fn = s390_reset_chpids_mcck_handler; 965 /* Enable channel report machine checks. */ 966 __ctl_set_bit(14, 28); 967 /* Temporarily reenable machine checks. */ 968 local_mcck_enable(); 969 chp_id_init(&chpid); 970 for (i = 0; i <= __MAX_CHPID; i++) { 971 chpid.id = i; 972 ret = rchp(chpid); 973 if ((ret == 0) || (ret == 2)) 974 /* 975 * rchp either succeeded, or another rchp is already 976 * in progress. In either case, we'll get a crw. 977 */ 978 atomic_inc(&chpid_reset_count); 979 } 980 /* Wait for machine check for all channel paths. */ 981 timeout = get_clock() + (RCHP_TIMEOUT << 12); 982 while (atomic_read(&chpid_reset_count) != 0) { 983 if (get_clock() > timeout) 984 break; 985 cpu_relax(); 986 } 987 /* Disable machine checks again. */ 988 local_mcck_disable(); 989 /* Disable channel report machine checks. */ 990 __ctl_clear_bit(14, 28); 991 s390_base_mcck_handler_fn = NULL; 992 } 993 994 static struct reset_call css_reset_call = { 995 .fn = css_reset, 996 }; 997 998 static int __init init_css_reset_call(void) 999 { 1000 atomic_set(&chpid_reset_count, 0); 1001 register_reset_call(&css_reset_call); 1002 return 0; 1003 } 1004 1005 arch_initcall(init_css_reset_call); 1006 1007 struct sch_match_id { 1008 struct subchannel_id schid; 1009 struct ccw_dev_id devid; 1010 int rc; 1011 }; 1012 1013 static int __reipl_subchannel_match(struct subchannel_id schid, void *data) 1014 { 1015 struct schib schib; 1016 struct sch_match_id *match_id = data; 1017 1018 if (stsch_reset(schid, &schib)) 1019 return -ENXIO; 1020 if (schib.pmcw.dnv && 1021 (schib.pmcw.dev == match_id->devid.devno) && 1022 (schid.ssid == match_id->devid.ssid)) { 1023 match_id->schid = schid; 1024 match_id->rc = 0; 1025 return 1; 1026 } 1027 return 0; 1028 } 1029 1030 static int reipl_find_schid(struct ccw_dev_id *devid, 1031 struct subchannel_id *schid) 1032 { 1033 struct sch_match_id match_id; 1034 1035 match_id.devid = *devid; 1036 match_id.rc = -ENODEV; 1037 for_each_subchannel(__reipl_subchannel_match, &match_id); 1038 if (match_id.rc == 0) 1039 *schid = match_id.schid; 1040 return match_id.rc; 1041 } 1042 1043 extern void do_reipl_asm(__u32 schid); 1044 1045 /* Make sure all subchannels are quiet before we re-ipl an lpar. */ 1046 void reipl_ccw_dev(struct ccw_dev_id *devid) 1047 { 1048 struct subchannel_id schid; 1049 1050 s390_reset_system(); 1051 if (reipl_find_schid(devid, &schid) != 0) 1052 panic("IPL Device not found\n"); 1053 do_reipl_asm(*((__u32*)&schid)); 1054 } 1055 1056 int __init cio_get_iplinfo(struct cio_iplinfo *iplinfo) 1057 { 1058 struct subchannel_id schid; 1059 struct schib schib; 1060 1061 schid = *(struct subchannel_id *)__LC_SUBCHANNEL_ID; 1062 if (!schid.one) 1063 return -ENODEV; 1064 if (stsch(schid, &schib)) 1065 return -ENODEV; 1066 if (!schib.pmcw.dnv) 1067 return -ENODEV; 1068 iplinfo->devno = schib.pmcw.dev; 1069 iplinfo->is_qdio = schib.pmcw.qf; 1070 return 0; 1071 } 1072