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1/* 2 * NCR 5380 generic driver routines. These should make it *trivial* 3 * to implement 5380 SCSI drivers under Linux with a non-trantor 4 * architecture. 5 * 6 * Note that these routines also work with NR53c400 family chips. 7 * 8 * Copyright 1993, Drew Eckhardt 9 * Visionary Computing 10 * (Unix and Linux consulting and custom programming) 11 * drew@colorado.edu 12 * +1 (303) 666-5836 13 * 14 * DISTRIBUTION RELEASE 6. 15 * 16 * For more information, please consult 17 * 18 * NCR 5380 Family 19 * SCSI Protocol Controller 20 * Databook 21 * 22 * NCR Microelectronics 23 * 1635 Aeroplaza Drive 24 * Colorado Springs, CO 80916 25 * 1+ (719) 578-3400 26 * 1+ (800) 334-5454 27 */ 28 29/* 30 * $Log: NCR5380.c,v $ 31 32 * Revision 1.10 1998/9/2 Alan Cox 33 * (alan@lxorguk.ukuu.org.uk) 34 * Fixed up the timer lockups reported so far. Things still suck. Looking 35 * forward to 2.3 and per device request queues. Then it'll be possible to 36 * SMP thread this beast and improve life no end. 37 38 * Revision 1.9 1997/7/27 Ronald van Cuijlenborg 39 * (ronald.van.cuijlenborg@tip.nl or nutty@dds.nl) 40 * (hopefully) fixed and enhanced USLEEP 41 * added support for DTC3181E card (for Mustek scanner) 42 * 43 44 * Revision 1.8 Ingmar Baumgart 45 * (ingmar@gonzo.schwaben.de) 46 * added support for NCR53C400a card 47 * 48 49 * Revision 1.7 1996/3/2 Ray Van Tassle (rayvt@comm.mot.com) 50 * added proc_info 51 * added support needed for DTC 3180/3280 52 * fixed a couple of bugs 53 * 54 55 * Revision 1.5 1994/01/19 09:14:57 drew 56 * Fixed udelay() hack that was being used on DATAOUT phases 57 * instead of a proper wait for the final handshake. 58 * 59 * Revision 1.4 1994/01/19 06:44:25 drew 60 * *** empty log message *** 61 * 62 * Revision 1.3 1994/01/19 05:24:40 drew 63 * Added support for TCR LAST_BYTE_SENT bit. 64 * 65 * Revision 1.2 1994/01/15 06:14:11 drew 66 * REAL DMA support, bug fixes. 67 * 68 * Revision 1.1 1994/01/15 06:00:54 drew 69 * Initial revision 70 * 71 */ 72 73/* 74 * Further development / testing that should be done : 75 * 1. Cleanup the NCR5380_transfer_dma function and DMA operation complete 76 * code so that everything does the same thing that's done at the 77 * end of a pseudo-DMA read operation. 78 * 79 * 2. Fix REAL_DMA (interrupt driven, polled works fine) - 80 * basically, transfer size needs to be reduced by one 81 * and the last byte read as is done with PSEUDO_DMA. 82 * 83 * 4. Test SCSI-II tagged queueing (I have no devices which support 84 * tagged queueing) 85 * 86 * 5. Test linked command handling code after Eric is ready with 87 * the high level code. 88 */ 89#include <scsi/scsi_dbg.h> 90#include <scsi/scsi_transport_spi.h> 91 92#ifndef NDEBUG 93#define NDEBUG 0 94#endif 95#ifndef NDEBUG_ABORT 96#define NDEBUG_ABORT 0 97#endif 98 99#if (NDEBUG & NDEBUG_LISTS) 100#define LIST(x,y) {printk("LINE:%d Adding %p to %p\n", __LINE__, (void*)(x), (void*)(y)); if ((x)==(y)) udelay(5); } 101#define REMOVE(w,x,y,z) {printk("LINE:%d Removing: %p->%p %p->%p \n", __LINE__, (void*)(w), (void*)(x), (void*)(y), (void*)(z)); if ((x)==(y)) udelay(5); } 102#else 103#define LIST(x,y) 104#define REMOVE(w,x,y,z) 105#endif 106 107#ifndef notyet 108#undef LINKED 109#undef REAL_DMA 110#endif 111 112#ifdef REAL_DMA_POLL 113#undef READ_OVERRUNS 114#define READ_OVERRUNS 115#endif 116 117#ifdef BOARD_REQUIRES_NO_DELAY 118#define io_recovery_delay(x) 119#else 120#define io_recovery_delay(x) udelay(x) 121#endif 122 123/* 124 * Design 125 * 126 * This is a generic 5380 driver. To use it on a different platform, 127 * one simply writes appropriate system specific macros (ie, data 128 * transfer - some PC's will use the I/O bus, 68K's must use 129 * memory mapped) and drops this file in their 'C' wrapper. 130 * 131 * (Note from hch: unfortunately it was not enough for the different 132 * m68k folks and instead of improving this driver they copied it 133 * and hacked it up for their needs. As a consequence they lost 134 * most updates to this driver. Maybe someone will fix all these 135 * drivers to use a common core one day..) 136 * 137 * As far as command queueing, two queues are maintained for 138 * each 5380 in the system - commands that haven't been issued yet, 139 * and commands that are currently executing. This means that an 140 * unlimited number of commands may be queued, letting 141 * more commands propagate from the higher driver levels giving higher 142 * throughput. Note that both I_T_L and I_T_L_Q nexuses are supported, 143 * allowing multiple commands to propagate all the way to a SCSI-II device 144 * while a command is already executing. 145 * 146 * 147 * Issues specific to the NCR5380 : 148 * 149 * When used in a PIO or pseudo-dma mode, the NCR5380 is a braindead 150 * piece of hardware that requires you to sit in a loop polling for 151 * the REQ signal as long as you are connected. Some devices are 152 * brain dead (ie, many TEXEL CD ROM drives) and won't disconnect 153 * while doing long seek operations. 154 * 155 * The workaround for this is to keep track of devices that have 156 * disconnected. If the device hasn't disconnected, for commands that 157 * should disconnect, we do something like 158 * 159 * while (!REQ is asserted) { sleep for N usecs; poll for M usecs } 160 * 161 * Some tweaking of N and M needs to be done. An algorithm based 162 * on "time to data" would give the best results as long as short time 163 * to datas (ie, on the same track) were considered, however these 164 * broken devices are the exception rather than the rule and I'd rather 165 * spend my time optimizing for the normal case. 166 * 167 * Architecture : 168 * 169 * At the heart of the design is a coroutine, NCR5380_main, 170 * which is started from a workqueue for each NCR5380 host in the 171 * system. It attempts to establish I_T_L or I_T_L_Q nexuses by 172 * removing the commands from the issue queue and calling 173 * NCR5380_select() if a nexus is not established. 174 * 175 * Once a nexus is established, the NCR5380_information_transfer() 176 * phase goes through the various phases as instructed by the target. 177 * if the target goes into MSG IN and sends a DISCONNECT message, 178 * the command structure is placed into the per instance disconnected 179 * queue, and NCR5380_main tries to find more work. If the target is 180 * idle for too long, the system will try to sleep. 181 * 182 * If a command has disconnected, eventually an interrupt will trigger, 183 * calling NCR5380_intr() which will in turn call NCR5380_reselect 184 * to reestablish a nexus. This will run main if necessary. 185 * 186 * On command termination, the done function will be called as 187 * appropriate. 188 * 189 * SCSI pointers are maintained in the SCp field of SCSI command 190 * structures, being initialized after the command is connected 191 * in NCR5380_select, and set as appropriate in NCR5380_information_transfer. 192 * Note that in violation of the standard, an implicit SAVE POINTERS operation 193 * is done, since some BROKEN disks fail to issue an explicit SAVE POINTERS. 194 */ 195 196/* 197 * Using this file : 198 * This file a skeleton Linux SCSI driver for the NCR 5380 series 199 * of chips. To use it, you write an architecture specific functions 200 * and macros and include this file in your driver. 201 * 202 * These macros control options : 203 * AUTOPROBE_IRQ - if defined, the NCR5380_probe_irq() function will be 204 * defined. 205 * 206 * AUTOSENSE - if defined, REQUEST SENSE will be performed automatically 207 * for commands that return with a CHECK CONDITION status. 208 * 209 * DIFFERENTIAL - if defined, NCR53c81 chips will use external differential 210 * transceivers. 211 * 212 * DONT_USE_INTR - if defined, never use interrupts, even if we probe or 213 * override-configure an IRQ. 214 * 215 * LIMIT_TRANSFERSIZE - if defined, limit the pseudo-dma transfers to 512 216 * bytes at a time. Since interrupts are disabled by default during 217 * these transfers, we might need this to give reasonable interrupt 218 * service time if the transfer size gets too large. 219 * 220 * LINKED - if defined, linked commands are supported. 221 * 222 * PSEUDO_DMA - if defined, PSEUDO DMA is used during the data transfer phases. 223 * 224 * REAL_DMA - if defined, REAL DMA is used during the data transfer phases. 225 * 226 * REAL_DMA_POLL - if defined, REAL DMA is used but the driver doesn't 227 * rely on phase mismatch and EOP interrupts to determine end 228 * of phase. 229 * 230 * UNSAFE - leave interrupts enabled during pseudo-DMA transfers. You 231 * only really want to use this if you're having a problem with 232 * dropped characters during high speed communications, and even 233 * then, you're going to be better off twiddling with transfersize 234 * in the high level code. 235 * 236 * Defaults for these will be provided although the user may want to adjust 237 * these to allocate CPU resources to the SCSI driver or "real" code. 238 * 239 * USLEEP_SLEEP - amount of time, in jiffies, to sleep 240 * 241 * USLEEP_POLL - amount of time, in jiffies, to poll 242 * 243 * These macros MUST be defined : 244 * NCR5380_local_declare() - declare any local variables needed for your 245 * transfer routines. 246 * 247 * NCR5380_setup(instance) - initialize any local variables needed from a given 248 * instance of the host adapter for NCR5380_{read,write,pread,pwrite} 249 * 250 * NCR5380_read(register) - read from the specified register 251 * 252 * NCR5380_write(register, value) - write to the specific register 253 * 254 * NCR5380_implementation_fields - additional fields needed for this 255 * specific implementation of the NCR5380 256 * 257 * Either real DMA *or* pseudo DMA may be implemented 258 * REAL functions : 259 * NCR5380_REAL_DMA should be defined if real DMA is to be used. 260 * Note that the DMA setup functions should return the number of bytes 261 * that they were able to program the controller for. 262 * 263 * Also note that generic i386/PC versions of these macros are 264 * available as NCR5380_i386_dma_write_setup, 265 * NCR5380_i386_dma_read_setup, and NCR5380_i386_dma_residual. 266 * 267 * NCR5380_dma_write_setup(instance, src, count) - initialize 268 * NCR5380_dma_read_setup(instance, dst, count) - initialize 269 * NCR5380_dma_residual(instance); - residual count 270 * 271 * PSEUDO functions : 272 * NCR5380_pwrite(instance, src, count) 273 * NCR5380_pread(instance, dst, count); 274 * 275 * The generic driver is initialized by calling NCR5380_init(instance), 276 * after setting the appropriate host specific fields and ID. If the 277 * driver wishes to autoprobe for an IRQ line, the NCR5380_probe_irq(instance, 278 * possible) function may be used. 279 */ 280 281static int do_abort(struct Scsi_Host *host); 282static void do_reset(struct Scsi_Host *host); 283 284/* 285 * initialize_SCp - init the scsi pointer field 286 * @cmd: command block to set up 287 * 288 * Set up the internal fields in the SCSI command. 289 */ 290 291static __inline__ void initialize_SCp(Scsi_Cmnd * cmd) 292{ 293 /* 294 * Initialize the Scsi Pointer field so that all of the commands in the 295 * various queues are valid. 296 */ 297 298 if (scsi_bufflen(cmd)) { 299 cmd->SCp.buffer = scsi_sglist(cmd); 300 cmd->SCp.buffers_residual = scsi_sg_count(cmd) - 1; 301 cmd->SCp.ptr = sg_virt(cmd->SCp.buffer); 302 cmd->SCp.this_residual = cmd->SCp.buffer->length; 303 } else { 304 cmd->SCp.buffer = NULL; 305 cmd->SCp.buffers_residual = 0; 306 cmd->SCp.ptr = NULL; 307 cmd->SCp.this_residual = 0; 308 } 309} 310 311/** 312 * NCR5380_poll_politely - wait for NCR5380 status bits 313 * @instance: controller to poll 314 * @reg: 5380 register to poll 315 * @bit: Bitmask to check 316 * @val: Value required to exit 317 * 318 * Polls the NCR5380 in a reasonably efficient manner waiting for 319 * an event to occur, after a short quick poll we begin giving the 320 * CPU back in non IRQ contexts 321 * 322 * Returns the value of the register or a negative error code. 323 */ 324 325static int NCR5380_poll_politely(struct Scsi_Host *instance, int reg, int bit, int val, int t) 326{ 327 NCR5380_local_declare(); 328 int n = 500; /* At about 8uS a cycle for the cpu access */ 329 unsigned long end = jiffies + t; 330 int r; 331 332 NCR5380_setup(instance); 333 334 while( n-- > 0) 335 { 336 r = NCR5380_read(reg); 337 if((r & bit) == val) 338 return 0; 339 cpu_relax(); 340 } 341 342 /* t time yet ? */ 343 while(time_before(jiffies, end)) 344 { 345 r = NCR5380_read(reg); 346 if((r & bit) == val) 347 return 0; 348 if(!in_interrupt()) 349 cond_resched(); 350 else 351 cpu_relax(); 352 } 353 return -ETIMEDOUT; 354} 355 356static struct { 357 unsigned char value; 358 const char *name; 359} phases[] __maybe_unused = { 360 {PHASE_DATAOUT, "DATAOUT"}, 361 {PHASE_DATAIN, "DATAIN"}, 362 {PHASE_CMDOUT, "CMDOUT"}, 363 {PHASE_STATIN, "STATIN"}, 364 {PHASE_MSGOUT, "MSGOUT"}, 365 {PHASE_MSGIN, "MSGIN"}, 366 {PHASE_UNKNOWN, "UNKNOWN"} 367}; 368 369#if NDEBUG 370static struct { 371 unsigned char mask; 372 const char *name; 373} signals[] = { 374 {SR_DBP, "PARITY"}, 375 {SR_RST, "RST"}, 376 {SR_BSY, "BSY"}, 377 {SR_REQ, "REQ"}, 378 {SR_MSG, "MSG"}, 379 {SR_CD, "CD"}, 380 {SR_IO, "IO"}, 381 {SR_SEL, "SEL"}, 382 {0, NULL} 383}, 384basrs[] = { 385 {BASR_ATN, "ATN"}, 386 {BASR_ACK, "ACK"}, 387 {0, NULL} 388}, 389icrs[] = { 390 {ICR_ASSERT_RST, "ASSERT RST"}, 391 {ICR_ASSERT_ACK, "ASSERT ACK"}, 392 {ICR_ASSERT_BSY, "ASSERT BSY"}, 393 {ICR_ASSERT_SEL, "ASSERT SEL"}, 394 {ICR_ASSERT_ATN, "ASSERT ATN"}, 395 {ICR_ASSERT_DATA, "ASSERT DATA"}, 396 {0, NULL} 397}, 398mrs[] = { 399 {MR_BLOCK_DMA_MODE, "MODE BLOCK DMA"}, 400 {MR_TARGET, "MODE TARGET"}, 401 {MR_ENABLE_PAR_CHECK, "MODE PARITY CHECK"}, 402 {MR_ENABLE_PAR_INTR, "MODE PARITY INTR"}, 403 {MR_MONITOR_BSY, "MODE MONITOR BSY"}, 404 {MR_DMA_MODE, "MODE DMA"}, 405 {MR_ARBITRATE, "MODE ARBITRATION"}, 406 {0, NULL} 407}; 408 409/** 410 * NCR5380_print - print scsi bus signals 411 * @instance: adapter state to dump 412 * 413 * Print the SCSI bus signals for debugging purposes 414 * 415 * Locks: caller holds hostdata lock (not essential) 416 */ 417 418static void NCR5380_print(struct Scsi_Host *instance) 419{ 420 NCR5380_local_declare(); 421 unsigned char status, data, basr, mr, icr, i; 422 NCR5380_setup(instance); 423 424 data = NCR5380_read(CURRENT_SCSI_DATA_REG); 425 status = NCR5380_read(STATUS_REG); 426 mr = NCR5380_read(MODE_REG); 427 icr = NCR5380_read(INITIATOR_COMMAND_REG); 428 basr = NCR5380_read(BUS_AND_STATUS_REG); 429 430 printk("STATUS_REG: %02x ", status); 431 for (i = 0; signals[i].mask; ++i) 432 if (status & signals[i].mask) 433 printk(",%s", signals[i].name); 434 printk("\nBASR: %02x ", basr); 435 for (i = 0; basrs[i].mask; ++i) 436 if (basr & basrs[i].mask) 437 printk(",%s", basrs[i].name); 438 printk("\nICR: %02x ", icr); 439 for (i = 0; icrs[i].mask; ++i) 440 if (icr & icrs[i].mask) 441 printk(",%s", icrs[i].name); 442 printk("\nMODE: %02x ", mr); 443 for (i = 0; mrs[i].mask; ++i) 444 if (mr & mrs[i].mask) 445 printk(",%s", mrs[i].name); 446 printk("\n"); 447} 448 449 450/* 451 * NCR5380_print_phase - show SCSI phase 452 * @instance: adapter to dump 453 * 454 * Print the current SCSI phase for debugging purposes 455 * 456 * Locks: none 457 */ 458 459static void NCR5380_print_phase(struct Scsi_Host *instance) 460{ 461 NCR5380_local_declare(); 462 unsigned char status; 463 int i; 464 NCR5380_setup(instance); 465 466 status = NCR5380_read(STATUS_REG); 467 if (!(status & SR_REQ)) 468 printk("scsi%d : REQ not asserted, phase unknown.\n", instance->host_no); 469 else { 470 for (i = 0; (phases[i].value != PHASE_UNKNOWN) && (phases[i].value != (status & PHASE_MASK)); ++i); 471 printk("scsi%d : phase %s\n", instance->host_no, phases[i].name); 472 } 473} 474#endif 475 476/* 477 * These need tweaking, and would probably work best as per-device 478 * flags initialized differently for disk, tape, cd, etc devices. 479 * People with broken devices are free to experiment as to what gives 480 * the best results for them. 481 * 482 * USLEEP_SLEEP should be a minimum seek time. 483 * 484 * USLEEP_POLL should be a maximum rotational latency. 485 */ 486#ifndef USLEEP_SLEEP 487/* 20 ms (reasonable hard disk speed) */ 488#define USLEEP_SLEEP (20*HZ/1000) 489#endif 490/* 300 RPM (floppy speed) */ 491#ifndef USLEEP_POLL 492#define USLEEP_POLL (200*HZ/1000) 493#endif 494#ifndef USLEEP_WAITLONG 495/* RvC: (reasonable time to wait on select error) */ 496#define USLEEP_WAITLONG USLEEP_SLEEP 497#endif 498 499/* 500 * Function : int should_disconnect (unsigned char cmd) 501 * 502 * Purpose : decide whether a command would normally disconnect or 503 * not, since if it won't disconnect we should go to sleep. 504 * 505 * Input : cmd - opcode of SCSI command 506 * 507 * Returns : DISCONNECT_LONG if we should disconnect for a really long 508 * time (ie always, sleep, look for REQ active, sleep), 509 * DISCONNECT_TIME_TO_DATA if we would only disconnect for a normal 510 * time-to-data delay, DISCONNECT_NONE if this command would return 511 * immediately. 512 * 513 * Future sleep algorithms based on time to data can exploit 514 * something like this so they can differentiate between "normal" 515 * (ie, read, write, seek) and unusual commands (ie, * format). 516 * 517 * Note : We don't deal with commands that handle an immediate disconnect, 518 * 519 */ 520 521static int should_disconnect(unsigned char cmd) 522{ 523 switch (cmd) { 524 case READ_6: 525 case WRITE_6: 526 case SEEK_6: 527 case READ_10: 528 case WRITE_10: 529 case SEEK_10: 530 return DISCONNECT_TIME_TO_DATA; 531 case FORMAT_UNIT: 532 case SEARCH_HIGH: 533 case SEARCH_LOW: 534 case SEARCH_EQUAL: 535 return DISCONNECT_LONG; 536 default: 537 return DISCONNECT_NONE; 538 } 539} 540 541static void NCR5380_set_timer(struct NCR5380_hostdata *hostdata, unsigned long timeout) 542{ 543 hostdata->time_expires = jiffies + timeout; 544 schedule_delayed_work(&hostdata->coroutine, timeout); 545} 546 547 548static int probe_irq __initdata = 0; 549 550/** 551 * probe_intr - helper for IRQ autoprobe 552 * @irq: interrupt number 553 * @dev_id: unused 554 * @regs: unused 555 * 556 * Set a flag to indicate the IRQ in question was received. This is 557 * used by the IRQ probe code. 558 */ 559 560static irqreturn_t __init probe_intr(int irq, void *dev_id) 561{ 562 probe_irq = irq; 563 return IRQ_HANDLED; 564} 565 566/** 567 * NCR5380_probe_irq - find the IRQ of an NCR5380 568 * @instance: NCR5380 controller 569 * @possible: bitmask of ISA IRQ lines 570 * 571 * Autoprobe for the IRQ line used by the NCR5380 by triggering an IRQ 572 * and then looking to see what interrupt actually turned up. 573 * 574 * Locks: none, irqs must be enabled on entry 575 */ 576 577static int __init __maybe_unused NCR5380_probe_irq(struct Scsi_Host *instance, 578 int possible) 579{ 580 NCR5380_local_declare(); 581 struct NCR5380_hostdata *hostdata = (struct NCR5380_hostdata *) instance->hostdata; 582 unsigned long timeout; 583 int trying_irqs, i, mask; 584 NCR5380_setup(instance); 585 586 for (trying_irqs = i = 0, mask = 1; i < 16; ++i, mask <<= 1) 587 if ((mask & possible) && (request_irq(i, &probe_intr, IRQF_DISABLED, "NCR-probe", NULL) == 0)) 588 trying_irqs |= mask; 589 590 timeout = jiffies + (250 * HZ / 1000); 591 probe_irq = SCSI_IRQ_NONE; 592 593 /* 594 * A interrupt is triggered whenever BSY = false, SEL = true 595 * and a bit set in the SELECT_ENABLE_REG is asserted on the 596 * SCSI bus. 597 * 598 * Note that the bus is only driven when the phase control signals 599 * (I/O, C/D, and MSG) match those in the TCR, so we must reset that 600 * to zero. 601 */ 602 603 NCR5380_write(TARGET_COMMAND_REG, 0); 604 NCR5380_write(SELECT_ENABLE_REG, hostdata->id_mask); 605 NCR5380_write(OUTPUT_DATA_REG, hostdata->id_mask); 606 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE | ICR_ASSERT_DATA | ICR_ASSERT_SEL); 607 608 while (probe_irq == SCSI_IRQ_NONE && time_before(jiffies, timeout)) 609 schedule_timeout_uninterruptible(1); 610 611 NCR5380_write(SELECT_ENABLE_REG, 0); 612 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE); 613 614 for (i = 0, mask = 1; i < 16; ++i, mask <<= 1) 615 if (trying_irqs & mask) 616 free_irq(i, NULL); 617 618 return probe_irq; 619} 620 621/** 622 * NCR58380_print_options - show options 623 * @instance: unused for now 624 * 625 * Called by probe code indicating the NCR5380 driver options that 626 * were selected. At some point this will switch to runtime options 627 * read from the adapter in question 628 * 629 * Locks: none 630 */ 631 632static void __init __maybe_unused 633NCR5380_print_options(struct Scsi_Host *instance) 634{ 635 printk(" generic options" 636#ifdef AUTOPROBE_IRQ 637 " AUTOPROBE_IRQ" 638#endif 639#ifdef AUTOSENSE 640 " AUTOSENSE" 641#endif 642#ifdef DIFFERENTIAL 643 " DIFFERENTIAL" 644#endif 645#ifdef REAL_DMA 646 " REAL DMA" 647#endif 648#ifdef REAL_DMA_POLL 649 " REAL DMA POLL" 650#endif 651#ifdef PARITY 652 " PARITY" 653#endif 654#ifdef PSEUDO_DMA 655 " PSEUDO DMA" 656#endif 657#ifdef UNSAFE 658 " UNSAFE " 659#endif 660 ); 661 printk(" USLEEP, USLEEP_POLL=%d USLEEP_SLEEP=%d", USLEEP_POLL, USLEEP_SLEEP); 662 printk(" generic release=%d", NCR5380_PUBLIC_RELEASE); 663 if (((struct NCR5380_hostdata *) instance->hostdata)->flags & FLAG_NCR53C400) { 664 printk(" ncr53c400 release=%d", NCR53C400_PUBLIC_RELEASE); 665 } 666} 667 668/** 669 * NCR5380_print_status - dump controller info 670 * @instance: controller to dump 671 * 672 * Print commands in the various queues, called from NCR5380_abort 673 * and NCR5380_debug to aid debugging. 674 * 675 * Locks: called functions disable irqs 676 */ 677 678static void NCR5380_print_status(struct Scsi_Host *instance) 679{ 680 NCR5380_dprint(NDEBUG_ANY, instance); 681 NCR5380_dprint_phase(NDEBUG_ANY, instance); 682} 683 684/******************************************/ 685/* 686 * /proc/scsi/[dtc pas16 t128 generic]/[0-ASC_NUM_BOARD_SUPPORTED] 687 * 688 * *buffer: I/O buffer 689 * **start: if inout == FALSE pointer into buffer where user read should start 690 * offset: current offset 691 * length: length of buffer 692 * hostno: Scsi_Host host_no 693 * inout: TRUE - user is writing; FALSE - user is reading 694 * 695 * Return the number of bytes read from or written 696 */ 697 698#undef SPRINTF 699#define SPRINTF(args...) do { if(pos < buffer + length-80) pos += sprintf(pos, ## args); } while(0) 700static 701char *lprint_Scsi_Cmnd(Scsi_Cmnd * cmd, char *pos, char *buffer, int length); 702static 703char *lprint_command(unsigned char *cmd, char *pos, char *buffer, int len); 704static 705char *lprint_opcode(int opcode, char *pos, char *buffer, int length); 706 707static int __maybe_unused NCR5380_proc_info(struct Scsi_Host *instance, 708 char *buffer, char **start, off_t offset, int length, int inout) 709{ 710 char *pos = buffer; 711 struct NCR5380_hostdata *hostdata; 712 Scsi_Cmnd *ptr; 713 714 hostdata = (struct NCR5380_hostdata *) instance->hostdata; 715 716 if (inout) { /* Has data been written to the file ? */ 717#ifdef DTC_PUBLIC_RELEASE 718 dtc_wmaxi = dtc_maxi = 0; 719#endif 720#ifdef PAS16_PUBLIC_RELEASE 721 pas_wmaxi = pas_maxi = 0; 722#endif 723 return (-ENOSYS); /* Currently this is a no-op */ 724 } 725 SPRINTF("NCR5380 core release=%d. ", NCR5380_PUBLIC_RELEASE); 726 if (((struct NCR5380_hostdata *) instance->hostdata)->flags & FLAG_NCR53C400) 727 SPRINTF("ncr53c400 release=%d. ", NCR53C400_PUBLIC_RELEASE); 728#ifdef DTC_PUBLIC_RELEASE 729 SPRINTF("DTC 3180/3280 release %d", DTC_PUBLIC_RELEASE); 730#endif 731#ifdef T128_PUBLIC_RELEASE 732 SPRINTF("T128 release %d", T128_PUBLIC_RELEASE); 733#endif 734#ifdef GENERIC_NCR5380_PUBLIC_RELEASE 735 SPRINTF("Generic5380 release %d", GENERIC_NCR5380_PUBLIC_RELEASE); 736#endif 737#ifdef PAS16_PUBLIC_RELEASE 738 SPRINTF("PAS16 release=%d", PAS16_PUBLIC_RELEASE); 739#endif 740 741 SPRINTF("\nBase Addr: 0x%05lX ", (long) instance->base); 742 SPRINTF("io_port: %04x ", (int) instance->io_port); 743 if (instance->irq == SCSI_IRQ_NONE) 744 SPRINTF("IRQ: None.\n"); 745 else 746 SPRINTF("IRQ: %d.\n", instance->irq); 747 748#ifdef DTC_PUBLIC_RELEASE 749 SPRINTF("Highwater I/O busy_spin_counts -- write: %d read: %d\n", dtc_wmaxi, dtc_maxi); 750#endif 751#ifdef PAS16_PUBLIC_RELEASE 752 SPRINTF("Highwater I/O busy_spin_counts -- write: %d read: %d\n", pas_wmaxi, pas_maxi); 753#endif 754 spin_lock_irq(instance->host_lock); 755 if (!hostdata->connected) 756 SPRINTF("scsi%d: no currently connected command\n", instance->host_no); 757 else 758 pos = lprint_Scsi_Cmnd((Scsi_Cmnd *) hostdata->connected, pos, buffer, length); 759 SPRINTF("scsi%d: issue_queue\n", instance->host_no); 760 for (ptr = (Scsi_Cmnd *) hostdata->issue_queue; ptr; ptr = (Scsi_Cmnd *) ptr->host_scribble) 761 pos = lprint_Scsi_Cmnd(ptr, pos, buffer, length); 762 763 SPRINTF("scsi%d: disconnected_queue\n", instance->host_no); 764 for (ptr = (Scsi_Cmnd *) hostdata->disconnected_queue; ptr; ptr = (Scsi_Cmnd *) ptr->host_scribble) 765 pos = lprint_Scsi_Cmnd(ptr, pos, buffer, length); 766 spin_unlock_irq(instance->host_lock); 767 768 *start = buffer; 769 if (pos - buffer < offset) 770 return 0; 771 else if (pos - buffer - offset < length) 772 return pos - buffer - offset; 773 return length; 774} 775 776static char *lprint_Scsi_Cmnd(Scsi_Cmnd * cmd, char *pos, char *buffer, int length) 777{ 778 SPRINTF("scsi%d : destination target %d, lun %d\n", cmd->device->host->host_no, cmd->device->id, cmd->device->lun); 779 SPRINTF(" command = "); 780 pos = lprint_command(cmd->cmnd, pos, buffer, length); 781 return (pos); 782} 783 784static char *lprint_command(unsigned char *command, char *pos, char *buffer, int length) 785{ 786 int i, s; 787 pos = lprint_opcode(command[0], pos, buffer, length); 788 for (i = 1, s = COMMAND_SIZE(command[0]); i < s; ++i) 789 SPRINTF("%02x ", command[i]); 790 SPRINTF("\n"); 791 return (pos); 792} 793 794static char *lprint_opcode(int opcode, char *pos, char *buffer, int length) 795{ 796 SPRINTF("%2d (0x%02x)", opcode, opcode); 797 return (pos); 798} 799 800 801/** 802 * NCR5380_init - initialise an NCR5380 803 * @instance: adapter to configure 804 * @flags: control flags 805 * 806 * Initializes *instance and corresponding 5380 chip, 807 * with flags OR'd into the initial flags value. 808 * 809 * Notes : I assume that the host, hostno, and id bits have been 810 * set correctly. I don't care about the irq and other fields. 811 * 812 * Returns 0 for success 813 * 814 * Locks: interrupts must be enabled when we are called 815 */ 816 817static int __devinit NCR5380_init(struct Scsi_Host *instance, int flags) 818{ 819 NCR5380_local_declare(); 820 int i, pass; 821 unsigned long timeout; 822 struct NCR5380_hostdata *hostdata = (struct NCR5380_hostdata *) instance->hostdata; 823 824 if(in_interrupt()) 825 printk(KERN_ERR "NCR5380_init called with interrupts off!\n"); 826 /* 827 * On NCR53C400 boards, NCR5380 registers are mapped 8 past 828 * the base address. 829 */ 830 831#ifdef NCR53C400 832 if (flags & FLAG_NCR53C400) 833 instance->NCR5380_instance_name += NCR53C400_address_adjust; 834#endif 835 836 NCR5380_setup(instance); 837 838 hostdata->aborted = 0; 839 hostdata->id_mask = 1 << instance->this_id; 840 for (i = hostdata->id_mask; i <= 0x80; i <<= 1) 841 if (i > hostdata->id_mask) 842 hostdata->id_higher_mask |= i; 843 for (i = 0; i < 8; ++i) 844 hostdata->busy[i] = 0; 845#ifdef REAL_DMA 846 hostdata->dmalen = 0; 847#endif 848 hostdata->targets_present = 0; 849 hostdata->connected = NULL; 850 hostdata->issue_queue = NULL; 851 hostdata->disconnected_queue = NULL; 852 853 INIT_DELAYED_WORK(&hostdata->coroutine, NCR5380_main); 854 855#ifdef NCR5380_STATS 856 for (i = 0; i < 8; ++i) { 857 hostdata->time_read[i] = 0; 858 hostdata->time_write[i] = 0; 859 hostdata->bytes_read[i] = 0; 860 hostdata->bytes_write[i] = 0; 861 } 862 hostdata->timebase = 0; 863 hostdata->pendingw = 0; 864 hostdata->pendingr = 0; 865#endif 866 867 /* The CHECK code seems to break the 53C400. Will check it later maybe */ 868 if (flags & FLAG_NCR53C400) 869 hostdata->flags = FLAG_HAS_LAST_BYTE_SENT | flags; 870 else 871 hostdata->flags = FLAG_CHECK_LAST_BYTE_SENT | flags; 872 873 hostdata->host = instance; 874 hostdata->time_expires = 0; 875 876#ifndef AUTOSENSE 877 if ((instance->cmd_per_lun > 1) || instance->can_queue > 1) 878 printk(KERN_WARNING "scsi%d : WARNING : support for multiple outstanding commands enabled\n" " without AUTOSENSE option, contingent allegiance conditions may\n" 879 " be incorrectly cleared.\n", instance->host_no); 880#endif /* def AUTOSENSE */ 881 882 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE); 883 NCR5380_write(MODE_REG, MR_BASE); 884 NCR5380_write(TARGET_COMMAND_REG, 0); 885 NCR5380_write(SELECT_ENABLE_REG, 0); 886 887#ifdef NCR53C400 888 if (hostdata->flags & FLAG_NCR53C400) { 889 NCR5380_write(C400_CONTROL_STATUS_REG, CSR_BASE); 890 } 891#endif 892 893 /* 894 * Detect and correct bus wedge problems. 895 * 896 * If the system crashed, it may have crashed in a state 897 * where a SCSI command was still executing, and the 898 * SCSI bus is not in a BUS FREE STATE. 899 * 900 * If this is the case, we'll try to abort the currently 901 * established nexus which we know nothing about, and that 902 * failing, do a hard reset of the SCSI bus 903 */ 904 905 for (pass = 1; (NCR5380_read(STATUS_REG) & SR_BSY) && pass <= 6; ++pass) { 906 switch (pass) { 907 case 1: 908 case 3: 909 case 5: 910 printk(KERN_INFO "scsi%d: SCSI bus busy, waiting up to five seconds\n", instance->host_no); 911 timeout = jiffies + 5 * HZ; 912 NCR5380_poll_politely(instance, STATUS_REG, SR_BSY, 0, 5*HZ); 913 break; 914 case 2: 915 printk(KERN_WARNING "scsi%d: bus busy, attempting abort\n", instance->host_no); 916 do_abort(instance); 917 break; 918 case 4: 919 printk(KERN_WARNING "scsi%d: bus busy, attempting reset\n", instance->host_no); 920 do_reset(instance); 921 break; 922 case 6: 923 printk(KERN_ERR "scsi%d: bus locked solid or invalid override\n", instance->host_no); 924 return -ENXIO; 925 } 926 } 927 return 0; 928} 929 930/** 931 * NCR5380_exit - remove an NCR5380 932 * @instance: adapter to remove 933 */ 934 935static void NCR5380_exit(struct Scsi_Host *instance) 936{ 937 struct NCR5380_hostdata *hostdata = (struct NCR5380_hostdata *) instance->hostdata; 938 939 cancel_delayed_work(&hostdata->coroutine); 940 flush_scheduled_work(); 941} 942 943/** 944 * NCR5380_queue_command - queue a command 945 * @cmd: SCSI command 946 * @done: completion handler 947 * 948 * cmd is added to the per instance issue_queue, with minor 949 * twiddling done to the host specific fields of cmd. If the 950 * main coroutine is not running, it is restarted. 951 * 952 * Locks: host lock taken by caller 953 */ 954 955static int NCR5380_queue_command_lck(Scsi_Cmnd * cmd, void (*done) (Scsi_Cmnd *)) 956{ 957 struct Scsi_Host *instance = cmd->device->host; 958 struct NCR5380_hostdata *hostdata = (struct NCR5380_hostdata *) instance->hostdata; 959 Scsi_Cmnd *tmp; 960 961#if (NDEBUG & NDEBUG_NO_WRITE) 962 switch (cmd->cmnd[0]) { 963 case WRITE_6: 964 case WRITE_10: 965 printk("scsi%d : WRITE attempted with NO_WRITE debugging flag set\n", instance->host_no); 966 cmd->result = (DID_ERROR << 16); 967 done(cmd); 968 return 0; 969 } 970#endif /* (NDEBUG & NDEBUG_NO_WRITE) */ 971 972#ifdef NCR5380_STATS 973 switch (cmd->cmnd[0]) { 974 case WRITE: 975 case WRITE_6: 976 case WRITE_10: 977 hostdata->time_write[cmd->device->id] -= (jiffies - hostdata->timebase); 978 hostdata->bytes_write[cmd->device->id] += scsi_bufflen(cmd); 979 hostdata->pendingw++; 980 break; 981 case READ: 982 case READ_6: 983 case READ_10: 984 hostdata->time_read[cmd->device->id] -= (jiffies - hostdata->timebase); 985 hostdata->bytes_read[cmd->device->id] += scsi_bufflen(cmd); 986 hostdata->pendingr++; 987 break; 988 } 989#endif 990 991 /* 992 * We use the host_scribble field as a pointer to the next command 993 * in a queue 994 */ 995 996 cmd->host_scribble = NULL; 997 cmd->scsi_done = done; 998 cmd->result = 0; 999 1000 /* 1001 * Insert the cmd into the issue queue. Note that REQUEST SENSE 1002 * commands are added to the head of the queue since any command will 1003 * clear the contingent allegiance condition that exists and the 1004 * sense data is only guaranteed to be valid while the condition exists. 1005 */ 1006 1007 if (!(hostdata->issue_queue) || (cmd->cmnd[0] == REQUEST_SENSE)) { 1008 LIST(cmd, hostdata->issue_queue); 1009 cmd->host_scribble = (unsigned char *) hostdata->issue_queue; 1010 hostdata->issue_queue = cmd; 1011 } else { 1012 for (tmp = (Scsi_Cmnd *) hostdata->issue_queue; tmp->host_scribble; tmp = (Scsi_Cmnd *) tmp->host_scribble); 1013 LIST(cmd, tmp); 1014 tmp->host_scribble = (unsigned char *) cmd; 1015 } 1016 dprintk(NDEBUG_QUEUES, ("scsi%d : command added to %s of queue\n", instance->host_no, (cmd->cmnd[0] == REQUEST_SENSE) ? "head" : "tail")); 1017 1018 /* Run the coroutine if it isn't already running. */ 1019 /* Kick off command processing */ 1020 schedule_delayed_work(&hostdata->coroutine, 0); 1021 return 0; 1022} 1023 1024static DEF_SCSI_QCMD(NCR5380_queue_command) 1025 1026/** 1027 * NCR5380_main - NCR state machines 1028 * 1029 * NCR5380_main is a coroutine that runs as long as more work can 1030 * be done on the NCR5380 host adapters in a system. Both 1031 * NCR5380_queue_command() and NCR5380_intr() will try to start it 1032 * in case it is not running. 1033 * 1034 * Locks: called as its own thread with no locks held. Takes the 1035 * host lock and called routines may take the isa dma lock. 1036 */ 1037 1038static void NCR5380_main(struct work_struct *work) 1039{ 1040 struct NCR5380_hostdata *hostdata = 1041 container_of(work, struct NCR5380_hostdata, coroutine.work); 1042 struct Scsi_Host *instance = hostdata->host; 1043 Scsi_Cmnd *tmp, *prev; 1044 int done; 1045 1046 spin_lock_irq(instance->host_lock); 1047 do { 1048 /* Lock held here */ 1049 done = 1; 1050 if (!hostdata->connected && !hostdata->selecting) { 1051 dprintk(NDEBUG_MAIN, ("scsi%d : not connected\n", instance->host_no)); 1052 /* 1053 * Search through the issue_queue for a command destined 1054 * for a target that's not busy. 1055 */ 1056 for (tmp = (Scsi_Cmnd *) hostdata->issue_queue, prev = NULL; tmp; prev = tmp, tmp = (Scsi_Cmnd *) tmp->host_scribble) 1057 { 1058 if (prev != tmp) 1059 dprintk(NDEBUG_LISTS, ("MAIN tmp=%p target=%d busy=%d lun=%d\n", tmp, tmp->target, hostdata->busy[tmp->target], tmp->lun)); 1060 /* When we find one, remove it from the issue queue. */ 1061 if (!(hostdata->busy[tmp->device->id] & (1 << tmp->device->lun))) { 1062 if (prev) { 1063 REMOVE(prev, prev->host_scribble, tmp, tmp->host_scribble); 1064 prev->host_scribble = tmp->host_scribble; 1065 } else { 1066 REMOVE(-1, hostdata->issue_queue, tmp, tmp->host_scribble); 1067 hostdata->issue_queue = (Scsi_Cmnd *) tmp->host_scribble; 1068 } 1069 tmp->host_scribble = NULL; 1070 1071 /* 1072 * Attempt to establish an I_T_L nexus here. 1073 * On success, instance->hostdata->connected is set. 1074 * On failure, we must add the command back to the 1075 * issue queue so we can keep trying. 1076 */ 1077 dprintk(NDEBUG_MAIN|NDEBUG_QUEUES, ("scsi%d : main() : command for target %d lun %d removed from issue_queue\n", instance->host_no, tmp->target, tmp->lun)); 1078 1079 /* 1080 * A successful selection is defined as one that 1081 * leaves us with the command connected and 1082 * in hostdata->connected, OR has terminated the 1083 * command. 1084 * 1085 * With successful commands, we fall through 1086 * and see if we can do an information transfer, 1087 * with failures we will restart. 1088 */ 1089 hostdata->selecting = NULL; 1090 /* RvC: have to preset this to indicate a new command is being performed */ 1091 1092 if (!NCR5380_select(instance, tmp, 1093 /* 1094 * REQUEST SENSE commands are issued without tagged 1095 * queueing, even on SCSI-II devices because the 1096 * contingent allegiance condition exists for the 1097 * entire unit. 1098 */ 1099 (tmp->cmnd[0] == REQUEST_SENSE) ? TAG_NONE : TAG_NEXT)) { 1100 break; 1101 } else { 1102 LIST(tmp, hostdata->issue_queue); 1103 tmp->host_scribble = (unsigned char *) hostdata->issue_queue; 1104 hostdata->issue_queue = tmp; 1105 done = 0; 1106 dprintk(NDEBUG_MAIN|NDEBUG_QUEUES, ("scsi%d : main(): select() failed, returned to issue_queue\n", instance->host_no)); 1107 } 1108 /* lock held here still */ 1109 } /* if target/lun is not busy */ 1110 } /* for */ 1111 /* exited locked */ 1112 } /* if (!hostdata->connected) */ 1113 if (hostdata->selecting) { 1114 tmp = (Scsi_Cmnd *) hostdata->selecting; 1115 /* Selection will drop and retake the lock */ 1116 if (!NCR5380_select(instance, tmp, (tmp->cmnd[0] == REQUEST_SENSE) ? TAG_NONE : TAG_NEXT)) { 1117 /* Ok ?? */ 1118 } else { 1119 /* RvC: device failed, so we wait a long time 1120 this is needed for Mustek scanners, that 1121 do not respond to commands immediately 1122 after a scan */ 1123 printk(KERN_DEBUG "scsi%d: device %d did not respond in time\n", instance->host_no, tmp->device->id); 1124 LIST(tmp, hostdata->issue_queue); 1125 tmp->host_scribble = (unsigned char *) hostdata->issue_queue; 1126 hostdata->issue_queue = tmp; 1127 NCR5380_set_timer(hostdata, USLEEP_WAITLONG); 1128 } 1129 } /* if hostdata->selecting */ 1130 if (hostdata->connected 1131#ifdef REAL_DMA 1132 && !hostdata->dmalen 1133#endif 1134 && (!hostdata->time_expires || time_before_eq(hostdata->time_expires, jiffies)) 1135 ) { 1136 dprintk(NDEBUG_MAIN, ("scsi%d : main() : performing information transfer\n", instance->host_no)); 1137 NCR5380_information_transfer(instance); 1138 dprintk(NDEBUG_MAIN, ("scsi%d : main() : done set false\n", instance->host_no)); 1139 done = 0; 1140 } else 1141 break; 1142 } while (!done); 1143 1144 spin_unlock_irq(instance->host_lock); 1145} 1146 1147#ifndef DONT_USE_INTR 1148 1149/** 1150 * NCR5380_intr - generic NCR5380 irq handler 1151 * @irq: interrupt number 1152 * @dev_id: device info 1153 * 1154 * Handle interrupts, reestablishing I_T_L or I_T_L_Q nexuses 1155 * from the disconnected queue, and restarting NCR5380_main() 1156 * as required. 1157 * 1158 * Locks: takes the needed instance locks 1159 */ 1160 1161static irqreturn_t NCR5380_intr(int dummy, void *dev_id) 1162{ 1163 NCR5380_local_declare(); 1164 struct Scsi_Host *instance = dev_id; 1165 struct NCR5380_hostdata *hostdata = (struct NCR5380_hostdata *) instance->hostdata; 1166 int done; 1167 unsigned char basr; 1168 unsigned long flags; 1169 1170 dprintk(NDEBUG_INTR, ("scsi : NCR5380 irq %d triggered\n", 1171 instance->irq)); 1172 1173 do { 1174 done = 1; 1175 spin_lock_irqsave(instance->host_lock, flags); 1176 /* Look for pending interrupts */ 1177 NCR5380_setup(instance); 1178 basr = NCR5380_read(BUS_AND_STATUS_REG); 1179 /* XXX dispatch to appropriate routine if found and done=0 */ 1180 if (basr & BASR_IRQ) { 1181 NCR5380_dprint(NDEBUG_INTR, instance); 1182 if ((NCR5380_read(STATUS_REG) & (SR_SEL | SR_IO)) == (SR_SEL | SR_IO)) { 1183 done = 0; 1184 dprintk(NDEBUG_INTR, ("scsi%d : SEL interrupt\n", instance->host_no)); 1185 NCR5380_reselect(instance); 1186 (void) NCR5380_read(RESET_PARITY_INTERRUPT_REG); 1187 } else if (basr & BASR_PARITY_ERROR) { 1188 dprintk(NDEBUG_INTR, ("scsi%d : PARITY interrupt\n", instance->host_no)); 1189 (void) NCR5380_read(RESET_PARITY_INTERRUPT_REG); 1190 } else if ((NCR5380_read(STATUS_REG) & SR_RST) == SR_RST) { 1191 dprintk(NDEBUG_INTR, ("scsi%d : RESET interrupt\n", instance->host_no)); 1192 (void) NCR5380_read(RESET_PARITY_INTERRUPT_REG); 1193 } else { 1194#if defined(REAL_DMA) 1195 /* 1196 * We should only get PHASE MISMATCH and EOP interrupts 1197 * if we have DMA enabled, so do a sanity check based on 1198 * the current setting of the MODE register. 1199 */ 1200 1201 if ((NCR5380_read(MODE_REG) & MR_DMA) && ((basr & BASR_END_DMA_TRANSFER) || !(basr & BASR_PHASE_MATCH))) { 1202 int transfered; 1203 1204 if (!hostdata->connected) 1205 panic("scsi%d : received end of DMA interrupt with no connected cmd\n", instance->hostno); 1206 1207 transfered = (hostdata->dmalen - NCR5380_dma_residual(instance)); 1208 hostdata->connected->SCp.this_residual -= transferred; 1209 hostdata->connected->SCp.ptr += transferred; 1210 hostdata->dmalen = 0; 1211 1212 (void) NCR5380_read(RESET_PARITY_INTERRUPT_REG); 1213 1214 /* FIXME: we need to poll briefly then defer a workqueue task ! */ 1215 NCR5380_poll_politely(hostdata, BUS_AND_STATUS_REG, BASR_ACK, 0, 2*HZ); 1216 1217 NCR5380_write(MODE_REG, MR_BASE); 1218 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE); 1219 } 1220#else 1221 dprintk(NDEBUG_INTR, ("scsi : unknown interrupt, BASR 0x%X, MR 0x%X, SR 0x%x\n", basr, NCR5380_read(MODE_REG), NCR5380_read(STATUS_REG))); 1222 (void) NCR5380_read(RESET_PARITY_INTERRUPT_REG); 1223#endif 1224 } 1225 } /* if BASR_IRQ */ 1226 spin_unlock_irqrestore(instance->host_lock, flags); 1227 if(!done) 1228 schedule_delayed_work(&hostdata->coroutine, 0); 1229 } while (!done); 1230 return IRQ_HANDLED; 1231} 1232 1233#endif 1234 1235/** 1236 * collect_stats - collect stats on a scsi command 1237 * @hostdata: adapter 1238 * @cmd: command being issued 1239 * 1240 * Update the statistical data by parsing the command in question 1241 */ 1242 1243static void collect_stats(struct NCR5380_hostdata *hostdata, Scsi_Cmnd * cmd) 1244{ 1245#ifdef NCR5380_STATS 1246 switch (cmd->cmnd[0]) { 1247 case WRITE: 1248 case WRITE_6: 1249 case WRITE_10: 1250 hostdata->time_write[scmd_id(cmd)] += (jiffies - hostdata->timebase); 1251 hostdata->pendingw--; 1252 break; 1253 case READ: 1254 case READ_6: 1255 case READ_10: 1256 hostdata->time_read[scmd_id(cmd)] += (jiffies - hostdata->timebase); 1257 hostdata->pendingr--; 1258 break; 1259 } 1260#endif 1261} 1262 1263 1264/* 1265 * Function : int NCR5380_select (struct Scsi_Host *instance, Scsi_Cmnd *cmd, 1266 * int tag); 1267 * 1268 * Purpose : establishes I_T_L or I_T_L_Q nexus for new or existing command, 1269 * including ARBITRATION, SELECTION, and initial message out for 1270 * IDENTIFY and queue messages. 1271 * 1272 * Inputs : instance - instantiation of the 5380 driver on which this 1273 * target lives, cmd - SCSI command to execute, tag - set to TAG_NEXT for 1274 * new tag, TAG_NONE for untagged queueing, otherwise set to the tag for 1275 * the command that is presently connected. 1276 * 1277 * Returns : -1 if selection could not execute for some reason, 1278 * 0 if selection succeeded or failed because the target 1279 * did not respond. 1280 * 1281 * Side effects : 1282 * If bus busy, arbitration failed, etc, NCR5380_select() will exit 1283 * with registers as they should have been on entry - ie 1284 * SELECT_ENABLE will be set appropriately, the NCR5380 1285 * will cease to drive any SCSI bus signals. 1286 * 1287 * If successful : I_T_L or I_T_L_Q nexus will be established, 1288 * instance->connected will be set to cmd. 1289 * SELECT interrupt will be disabled. 1290 * 1291 * If failed (no target) : cmd->scsi_done() will be called, and the 1292 * cmd->result host byte set to DID_BAD_TARGET. 1293 * 1294 * Locks: caller holds hostdata lock in IRQ mode 1295 */ 1296 1297static int NCR5380_select(struct Scsi_Host *instance, Scsi_Cmnd * cmd, int tag) 1298{ 1299 NCR5380_local_declare(); 1300 struct NCR5380_hostdata *hostdata = (struct NCR5380_hostdata *) instance->hostdata; 1301 unsigned char tmp[3], phase; 1302 unsigned char *data; 1303 int len; 1304 unsigned long timeout; 1305 unsigned char value; 1306 int err; 1307 NCR5380_setup(instance); 1308 1309 if (hostdata->selecting) 1310 goto part2; 1311 1312 hostdata->restart_select = 0; 1313 1314 NCR5380_dprint(NDEBUG_ARBITRATION, instance); 1315 dprintk(NDEBUG_ARBITRATION, ("scsi%d : starting arbitration, id = %d\n", instance->host_no, instance->this_id)); 1316 1317 /* 1318 * Set the phase bits to 0, otherwise the NCR5380 won't drive the 1319 * data bus during SELECTION. 1320 */ 1321 1322 NCR5380_write(TARGET_COMMAND_REG, 0); 1323 1324 /* 1325 * Start arbitration. 1326 */ 1327 1328 NCR5380_write(OUTPUT_DATA_REG, hostdata->id_mask); 1329 NCR5380_write(MODE_REG, MR_ARBITRATE); 1330 1331 1332 /* We can be relaxed here, interrupts are on, we are 1333 in workqueue context, the birds are singing in the trees */ 1334 spin_unlock_irq(instance->host_lock); 1335 err = NCR5380_poll_politely(instance, INITIATOR_COMMAND_REG, ICR_ARBITRATION_PROGRESS, ICR_ARBITRATION_PROGRESS, 5*HZ); 1336 spin_lock_irq(instance->host_lock); 1337 if (err < 0) { 1338 printk(KERN_DEBUG "scsi: arbitration timeout at %d\n", __LINE__); 1339 NCR5380_write(MODE_REG, MR_BASE); 1340 NCR5380_write(SELECT_ENABLE_REG, hostdata->id_mask); 1341 goto failed; 1342 } 1343 1344 dprintk(NDEBUG_ARBITRATION, ("scsi%d : arbitration complete\n", instance->host_no)); 1345 1346 /* 1347 * The arbitration delay is 2.2us, but this is a minimum and there is 1348 * no maximum so we can safely sleep for ceil(2.2) usecs to accommodate 1349 * the integral nature of udelay(). 1350 * 1351 */ 1352 1353 udelay(3); 1354 1355 /* Check for lost arbitration */ 1356 if ((NCR5380_read(INITIATOR_COMMAND_REG) & ICR_ARBITRATION_LOST) || (NCR5380_read(CURRENT_SCSI_DATA_REG) & hostdata->id_higher_mask) || (NCR5380_read(INITIATOR_COMMAND_REG) & ICR_ARBITRATION_LOST)) { 1357 NCR5380_write(MODE_REG, MR_BASE); 1358 dprintk(NDEBUG_ARBITRATION, ("scsi%d : lost arbitration, deasserting MR_ARBITRATE\n", instance->host_no)); 1359 goto failed; 1360 } 1361 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE | ICR_ASSERT_SEL); 1362 1363 if (!(hostdata->flags & FLAG_DTC3181E) && 1364 /* RvC: DTC3181E has some trouble with this 1365 * so we simply removed it. Seems to work with 1366 * only Mustek scanner attached 1367 */ 1368 (NCR5380_read(INITIATOR_COMMAND_REG) & ICR_ARBITRATION_LOST)) { 1369 NCR5380_write(MODE_REG, MR_BASE); 1370 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE); 1371 dprintk(NDEBUG_ARBITRATION, ("scsi%d : lost arbitration, deasserting ICR_ASSERT_SEL\n", instance->host_no)); 1372 goto failed; 1373 } 1374 /* 1375 * Again, bus clear + bus settle time is 1.2us, however, this is 1376 * a minimum so we'll udelay ceil(1.2) 1377 */ 1378 1379 udelay(2); 1380 1381 dprintk(NDEBUG_ARBITRATION, ("scsi%d : won arbitration\n", instance->host_no)); 1382 1383 /* 1384 * Now that we have won arbitration, start Selection process, asserting 1385 * the host and target ID's on the SCSI bus. 1386 */ 1387 1388 NCR5380_write(OUTPUT_DATA_REG, (hostdata->id_mask | (1 << scmd_id(cmd)))); 1389 1390 /* 1391 * Raise ATN while SEL is true before BSY goes false from arbitration, 1392 * since this is the only way to guarantee that we'll get a MESSAGE OUT 1393 * phase immediately after selection. 1394 */ 1395 1396 NCR5380_write(INITIATOR_COMMAND_REG, (ICR_BASE | ICR_ASSERT_BSY | ICR_ASSERT_DATA | ICR_ASSERT_ATN | ICR_ASSERT_SEL)); 1397 NCR5380_write(MODE_REG, MR_BASE); 1398 1399 /* 1400 * Reselect interrupts must be turned off prior to the dropping of BSY, 1401 * otherwise we will trigger an interrupt. 1402 */ 1403 NCR5380_write(SELECT_ENABLE_REG, 0); 1404 1405 /* 1406 * The initiator shall then wait at least two deskew delays and release 1407 * the BSY signal. 1408 */ 1409 udelay(1); /* wingel -- wait two bus deskew delay >2*45ns */ 1410 1411 /* Reset BSY */ 1412 NCR5380_write(INITIATOR_COMMAND_REG, (ICR_BASE | ICR_ASSERT_DATA | ICR_ASSERT_ATN | ICR_ASSERT_SEL)); 1413 1414 /* 1415 * Something weird happens when we cease to drive BSY - looks 1416 * like the board/chip is letting us do another read before the 1417 * appropriate propagation delay has expired, and we're confusing 1418 * a BSY signal from ourselves as the target's response to SELECTION. 1419 * 1420 * A small delay (the 'C++' frontend breaks the pipeline with an 1421 * unnecessary jump, making it work on my 386-33/Trantor T128, the 1422 * tighter 'C' code breaks and requires this) solves the problem - 1423 * the 1 us delay is arbitrary, and only used because this delay will 1424 * be the same on other platforms and since it works here, it should 1425 * work there. 1426 * 1427 * wingel suggests that this could be due to failing to wait 1428 * one deskew delay. 1429 */ 1430 1431 udelay(1); 1432 1433 dprintk(NDEBUG_SELECTION, ("scsi%d : selecting target %d\n", instance->host_no, scmd_id(cmd))); 1434 1435 /* 1436 * The SCSI specification calls for a 250 ms timeout for the actual 1437 * selection. 1438 */ 1439 1440 timeout = jiffies + (250 * HZ / 1000); 1441 1442 /* 1443 * XXX very interesting - we're seeing a bounce where the BSY we 1444 * asserted is being reflected / still asserted (propagation delay?) 1445 * and it's detecting as true. Sigh. 1446 */ 1447 1448 hostdata->select_time = 0; /* we count the clock ticks at which we polled */ 1449 hostdata->selecting = cmd; 1450 1451part2: 1452 /* RvC: here we enter after a sleeping period, or immediately after 1453 execution of part 1 1454 we poll only once ech clock tick */ 1455 value = NCR5380_read(STATUS_REG) & (SR_BSY | SR_IO); 1456 1457 if (!value && (hostdata->select_time < HZ/4)) { 1458 /* RvC: we still must wait for a device response */ 1459 hostdata->select_time++; /* after 25 ticks the device has failed */ 1460 NCR5380_set_timer(hostdata, 1); 1461 return 0; /* RvC: we return here with hostdata->selecting set, 1462 to go to sleep */ 1463 } 1464 1465 hostdata->selecting = NULL;/* clear this pointer, because we passed the 1466 waiting period */ 1467 if ((NCR5380_read(STATUS_REG) & (SR_SEL | SR_IO)) == (SR_SEL | SR_IO)) { 1468 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE); 1469 NCR5380_reselect(instance); 1470 printk("scsi%d : reselection after won arbitration?\n", instance->host_no); 1471 NCR5380_write(SELECT_ENABLE_REG, hostdata->id_mask); 1472 return -1; 1473 } 1474 /* 1475 * No less than two deskew delays after the initiator detects the 1476 * BSY signal is true, it shall release the SEL signal and may 1477 * change the DATA BUS. -wingel 1478 */ 1479 1480 udelay(1); 1481 1482 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE | ICR_ASSERT_ATN); 1483 1484 if (!(NCR5380_read(STATUS_REG) & SR_BSY)) { 1485 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE); 1486 if (hostdata->targets_present & (1 << scmd_id(cmd))) { 1487 printk(KERN_DEBUG "scsi%d : weirdness\n", instance->host_no); 1488 if (hostdata->restart_select) 1489 printk(KERN_DEBUG "\trestart select\n"); 1490 NCR5380_dprint(NDEBUG_SELECTION, instance); 1491 NCR5380_write(SELECT_ENABLE_REG, hostdata->id_mask); 1492 return -1; 1493 } 1494 cmd->result = DID_BAD_TARGET << 16; 1495 collect_stats(hostdata, cmd); 1496 cmd->scsi_done(cmd); 1497 NCR5380_write(SELECT_ENABLE_REG, hostdata->id_mask); 1498 dprintk(NDEBUG_SELECTION, ("scsi%d : target did not respond within 250ms\n", instance->host_no)); 1499 NCR5380_write(SELECT_ENABLE_REG, hostdata->id_mask); 1500 return 0; 1501 } 1502 hostdata->targets_present |= (1 << scmd_id(cmd)); 1503 1504 /* 1505 * Since we followed the SCSI spec, and raised ATN while SEL 1506 * was true but before BSY was false during selection, the information 1507 * transfer phase should be a MESSAGE OUT phase so that we can send the 1508 * IDENTIFY message. 1509 * 1510 * If SCSI-II tagged queuing is enabled, we also send a SIMPLE_QUEUE_TAG 1511 * message (2 bytes) with a tag ID that we increment with every command 1512 * until it wraps back to 0. 1513 * 1514 * XXX - it turns out that there are some broken SCSI-II devices, 1515 * which claim to support tagged queuing but fail when more than 1516 * some number of commands are issued at once. 1517 */ 1518 1519 /* Wait for start of REQ/ACK handshake */ 1520 1521 spin_unlock_irq(instance->host_lock); 1522 err = NCR5380_poll_politely(instance, STATUS_REG, SR_REQ, SR_REQ, HZ); 1523 spin_lock_irq(instance->host_lock); 1524 1525 if(err) { 1526 printk(KERN_ERR "scsi%d: timeout at NCR5380.c:%d\n", instance->host_no, __LINE__); 1527 NCR5380_write(SELECT_ENABLE_REG, hostdata->id_mask); 1528 goto failed; 1529 } 1530 1531 dprintk(NDEBUG_SELECTION, ("scsi%d : target %d selected, going into MESSAGE OUT phase.\n", instance->host_no, cmd->device->id)); 1532 tmp[0] = IDENTIFY(((instance->irq == SCSI_IRQ_NONE) ? 0 : 1), cmd->device->lun); 1533 1534 len = 1; 1535 cmd->tag = 0; 1536 1537 /* Send message(s) */ 1538 data = tmp; 1539 phase = PHASE_MSGOUT; 1540 NCR5380_transfer_pio(instance, &phase, &len, &data); 1541 dprintk(NDEBUG_SELECTION, ("scsi%d : nexus established.\n", instance->host_no)); 1542 /* XXX need to handle errors here */ 1543 hostdata->connected = cmd; 1544 hostdata->busy[cmd->device->id] |= (1 << cmd->device->lun); 1545 1546 initialize_SCp(cmd); 1547 1548 return 0; 1549 1550 /* Selection failed */ 1551failed: 1552 return -1; 1553 1554} 1555 1556/* 1557 * Function : int NCR5380_transfer_pio (struct Scsi_Host *instance, 1558 * unsigned char *phase, int *count, unsigned char **data) 1559 * 1560 * Purpose : transfers data in given phase using polled I/O 1561 * 1562 * Inputs : instance - instance of driver, *phase - pointer to 1563 * what phase is expected, *count - pointer to number of 1564 * bytes to transfer, **data - pointer to data pointer. 1565 * 1566 * Returns : -1 when different phase is entered without transferring 1567 * maximum number of bytes, 0 if all bytes or transfered or exit 1568 * is in same phase. 1569 * 1570 * Also, *phase, *count, *data are modified in place. 1571 * 1572 * XXX Note : handling for bus free may be useful. 1573 */ 1574 1575/* 1576 * Note : this code is not as quick as it could be, however it 1577 * IS 100% reliable, and for the actual data transfer where speed 1578 * counts, we will always do a pseudo DMA or DMA transfer. 1579 */ 1580 1581static int NCR5380_transfer_pio(struct Scsi_Host *instance, unsigned char *phase, int *count, unsigned char **data) { 1582 NCR5380_local_declare(); 1583 unsigned char p = *phase, tmp; 1584 int c = *count; 1585 unsigned char *d = *data; 1586 /* 1587 * RvC: some administrative data to process polling time 1588 */ 1589 int break_allowed = 0; 1590 struct NCR5380_hostdata *hostdata = (struct NCR5380_hostdata *) instance->hostdata; 1591 NCR5380_setup(instance); 1592 1593 if (!(p & SR_IO)) 1594 dprintk(NDEBUG_PIO, ("scsi%d : pio write %d bytes\n", instance->host_no, c)); 1595 else 1596 dprintk(NDEBUG_PIO, ("scsi%d : pio read %d bytes\n", instance->host_no, c)); 1597 1598 /* 1599 * The NCR5380 chip will only drive the SCSI bus when the 1600 * phase specified in the appropriate bits of the TARGET COMMAND 1601 * REGISTER match the STATUS REGISTER 1602 */ 1603 1604 NCR5380_write(TARGET_COMMAND_REG, PHASE_SR_TO_TCR(p)); 1605 1606 /* RvC: don't know if this is necessary, but other SCSI I/O is short 1607 * so breaks are not necessary there 1608 */ 1609 if ((p == PHASE_DATAIN) || (p == PHASE_DATAOUT)) { 1610 break_allowed = 1; 1611 } 1612 do { 1613 /* 1614 * Wait for assertion of REQ, after which the phase bits will be 1615 * valid 1616 */ 1617 1618 /* RvC: we simply poll once, after that we stop temporarily 1619 * and let the device buffer fill up 1620 * if breaking is not allowed, we keep polling as long as needed 1621 */ 1622 1623 /* FIXME */ 1624 while (!((tmp = NCR5380_read(STATUS_REG)) & SR_REQ) && !break_allowed); 1625 if (!(tmp & SR_REQ)) { 1626 /* timeout condition */ 1627 NCR5380_set_timer(hostdata, USLEEP_SLEEP); 1628 break; 1629 } 1630 1631 dprintk(NDEBUG_HANDSHAKE, ("scsi%d : REQ detected\n", instance->host_no)); 1632 1633 /* Check for phase mismatch */ 1634 if ((tmp & PHASE_MASK) != p) { 1635 dprintk(NDEBUG_HANDSHAKE, ("scsi%d : phase mismatch\n", instance->host_no)); 1636 NCR5380_dprint_phase(NDEBUG_HANDSHAKE, instance); 1637 break; 1638 } 1639 /* Do actual transfer from SCSI bus to / from memory */ 1640 if (!(p & SR_IO)) 1641 NCR5380_write(OUTPUT_DATA_REG, *d); 1642 else 1643 *d = NCR5380_read(CURRENT_SCSI_DATA_REG); 1644 1645 ++d; 1646 1647 /* 1648 * The SCSI standard suggests that in MSGOUT phase, the initiator 1649 * should drop ATN on the last byte of the message phase 1650 * after REQ has been asserted for the handshake but before 1651 * the initiator raises ACK. 1652 */ 1653 1654 if (!(p & SR_IO)) { 1655 if (!((p & SR_MSG) && c > 1)) { 1656 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE | ICR_ASSERT_DATA); 1657 NCR5380_dprint(NDEBUG_PIO, instance); 1658 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE | ICR_ASSERT_DATA | ICR_ASSERT_ACK); 1659 } else { 1660 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE | ICR_ASSERT_DATA | ICR_ASSERT_ATN); 1661 NCR5380_dprint(NDEBUG_PIO, instance); 1662 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE | ICR_ASSERT_DATA | ICR_ASSERT_ATN | ICR_ASSERT_ACK); 1663 } 1664 } else { 1665 NCR5380_dprint(NDEBUG_PIO, instance); 1666 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE | ICR_ASSERT_ACK); 1667 } 1668 1669 /* FIXME - if this fails bus reset ?? */ 1670 NCR5380_poll_politely(instance, STATUS_REG, SR_REQ, 0, 5*HZ); 1671 dprintk(NDEBUG_HANDSHAKE, ("scsi%d : req false, handshake complete\n", instance->host_no)); 1672 1673/* 1674 * We have several special cases to consider during REQ/ACK handshaking : 1675 * 1. We were in MSGOUT phase, and we are on the last byte of the 1676 * message. ATN must be dropped as ACK is dropped. 1677 * 1678 * 2. We are in a MSGIN phase, and we are on the last byte of the 1679 * message. We must exit with ACK asserted, so that the calling 1680 * code may raise ATN before dropping ACK to reject the message. 1681 * 1682 * 3. ACK and ATN are clear and the target may proceed as normal. 1683 */ 1684 if (!(p == PHASE_MSGIN && c == 1)) { 1685 if (p == PHASE_MSGOUT && c > 1) 1686 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE | ICR_ASSERT_ATN); 1687 else 1688 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE); 1689 } 1690 } while (--c); 1691 1692 dprintk(NDEBUG_PIO, ("scsi%d : residual %d\n", instance->host_no, c)); 1693 1694 *count = c; 1695 *data = d; 1696 tmp = NCR5380_read(STATUS_REG); 1697 if (tmp & SR_REQ) 1698 *phase = tmp & PHASE_MASK; 1699 else 1700 *phase = PHASE_UNKNOWN; 1701 1702 if (!c || (*phase == p)) 1703 return 0; 1704 else 1705 return -1; 1706} 1707 1708/** 1709 * do_reset - issue a reset command 1710 * @host: adapter to reset 1711 * 1712 * Issue a reset sequence to the NCR5380 and try and get the bus 1713 * back into sane shape. 1714 * 1715 * Locks: caller holds queue lock 1716 */ 1717 1718static void do_reset(struct Scsi_Host *host) { 1719 NCR5380_local_declare(); 1720 NCR5380_setup(host); 1721 1722 NCR5380_write(TARGET_COMMAND_REG, PHASE_SR_TO_TCR(NCR5380_read(STATUS_REG) & PHASE_MASK)); 1723 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE | ICR_ASSERT_RST); 1724 udelay(25); 1725 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE); 1726} 1727 1728/* 1729 * Function : do_abort (Scsi_Host *host) 1730 * 1731 * Purpose : abort the currently established nexus. Should only be 1732 * called from a routine which can drop into a 1733 * 1734 * Returns : 0 on success, -1 on failure. 1735 * 1736 * Locks: queue lock held by caller 1737 * FIXME: sort this out and get new_eh running 1738 */ 1739 1740static int do_abort(struct Scsi_Host *host) { 1741 NCR5380_local_declare(); 1742 unsigned char *msgptr, phase, tmp; 1743 int len; 1744 int rc; 1745 NCR5380_setup(host); 1746 1747 1748 /* Request message out phase */ 1749 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE | ICR_ASSERT_ATN); 1750 1751 /* 1752 * Wait for the target to indicate a valid phase by asserting 1753 * REQ. Once this happens, we'll have either a MSGOUT phase 1754 * and can immediately send the ABORT message, or we'll have some 1755 * other phase and will have to source/sink data. 1756 * 1757 * We really don't care what value was on the bus or what value 1758 * the target sees, so we just handshake. 1759 */ 1760 1761 rc = NCR5380_poll_politely(host, STATUS_REG, SR_REQ, SR_REQ, 60 * HZ); 1762 1763 if(rc < 0) 1764 return -1; 1765 1766 tmp = (unsigned char)rc; 1767 1768 NCR5380_write(TARGET_COMMAND_REG, PHASE_SR_TO_TCR(tmp)); 1769 1770 if ((tmp & PHASE_MASK) != PHASE_MSGOUT) { 1771 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE | ICR_ASSERT_ATN | ICR_ASSERT_ACK); 1772 rc = NCR5380_poll_politely(host, STATUS_REG, SR_REQ, 0, 3*HZ); 1773 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE | ICR_ASSERT_ATN); 1774 if(rc == -1) 1775 return -1; 1776 } 1777 tmp = ABORT; 1778 msgptr = &tmp; 1779 len = 1; 1780 phase = PHASE_MSGOUT; 1781 NCR5380_transfer_pio(host, &phase, &len, &msgptr); 1782 1783 /* 1784 * If we got here, and the command completed successfully, 1785 * we're about to go into bus free state. 1786 */ 1787 1788 return len ? -1 : 0; 1789} 1790 1791#if defined(REAL_DMA) || defined(PSEUDO_DMA) || defined (REAL_DMA_POLL) 1792/* 1793 * Function : int NCR5380_transfer_dma (struct Scsi_Host *instance, 1794 * unsigned char *phase, int *count, unsigned char **data) 1795 * 1796 * Purpose : transfers data in given phase using either real 1797 * or pseudo DMA. 1798 * 1799 * Inputs : instance - instance of driver, *phase - pointer to 1800 * what phase is expected, *count - pointer to number of 1801 * bytes to transfer, **data - pointer to data pointer. 1802 * 1803 * Returns : -1 when different phase is entered without transferring 1804 * maximum number of bytes, 0 if all bytes or transfered or exit 1805 * is in same phase. 1806 * 1807 * Also, *phase, *count, *data are modified in place. 1808 * 1809 * Locks: io_request lock held by caller 1810 */ 1811 1812 1813static int NCR5380_transfer_dma(struct Scsi_Host *instance, unsigned char *phase, int *count, unsigned char **data) { 1814 NCR5380_local_declare(); 1815 register int c = *count; 1816 register unsigned char p = *phase; 1817 register unsigned char *d = *data; 1818 unsigned char tmp; 1819 int foo; 1820#if defined(REAL_DMA_POLL) 1821 int cnt, toPIO; 1822 unsigned char saved_data = 0, overrun = 0, residue; 1823#endif 1824 1825 struct NCR5380_hostdata *hostdata = (struct NCR5380_hostdata *) instance->hostdata; 1826 1827 NCR5380_setup(instance); 1828 1829 if ((tmp = (NCR5380_read(STATUS_REG) & PHASE_MASK)) != p) { 1830 *phase = tmp; 1831 return -1; 1832 } 1833#if defined(REAL_DMA) || defined(REAL_DMA_POLL) 1834#ifdef READ_OVERRUNS 1835 if (p & SR_IO) { 1836 c -= 2; 1837 } 1838#endif 1839 dprintk(NDEBUG_DMA, ("scsi%d : initializing DMA channel %d for %s, %d bytes %s %0x\n", instance->host_no, instance->dma_channel, (p & SR_IO) ? "reading" : "writing", c, (p & SR_IO) ? "to" : "from", (unsigned) d)); 1840 hostdata->dma_len = (p & SR_IO) ? NCR5380_dma_read_setup(instance, d, c) : NCR5380_dma_write_setup(instance, d, c); 1841#endif 1842 1843 NCR5380_write(TARGET_COMMAND_REG, PHASE_SR_TO_TCR(p)); 1844 1845#ifdef REAL_DMA 1846 NCR5380_write(MODE_REG, MR_BASE | MR_DMA_MODE | MR_ENABLE_EOP_INTR | MR_MONITOR_BSY); 1847#elif defined(REAL_DMA_POLL) 1848 NCR5380_write(MODE_REG, MR_BASE | MR_DMA_MODE); 1849#else 1850 /* 1851 * Note : on my sample board, watch-dog timeouts occurred when interrupts 1852 * were not disabled for the duration of a single DMA transfer, from 1853 * before the setting of DMA mode to after transfer of the last byte. 1854 */ 1855 1856#if defined(PSEUDO_DMA) && defined(UNSAFE) 1857 spin_unlock_irq(instance->host_lock); 1858#endif 1859 /* KLL May need eop and parity in 53c400 */ 1860 if (hostdata->flags & FLAG_NCR53C400) 1861 NCR5380_write(MODE_REG, MR_BASE | MR_DMA_MODE | 1862 MR_ENABLE_PAR_CHECK | MR_ENABLE_PAR_INTR | 1863 MR_ENABLE_EOP_INTR | MR_MONITOR_BSY); 1864 else 1865 NCR5380_write(MODE_REG, MR_BASE | MR_DMA_MODE); 1866#endif /* def REAL_DMA */ 1867 1868 dprintk(NDEBUG_DMA, ("scsi%d : mode reg = 0x%X\n", instance->host_no, NCR5380_read(MODE_REG))); 1869 1870 /* 1871 * On the PAS16 at least I/O recovery delays are not needed here. 1872 * Everyone else seems to want them. 1873 */ 1874 1875 if (p & SR_IO) { 1876 io_recovery_delay(1); 1877 NCR5380_write(START_DMA_INITIATOR_RECEIVE_REG, 0); 1878 } else { 1879 io_recovery_delay(1); 1880 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE | ICR_ASSERT_DATA); 1881 io_recovery_delay(1); 1882 NCR5380_write(START_DMA_SEND_REG, 0); 1883 io_recovery_delay(1); 1884 } 1885 1886#if defined(REAL_DMA_POLL) 1887 do { 1888 tmp = NCR5380_read(BUS_AND_STATUS_REG); 1889 } while ((tmp & BASR_PHASE_MATCH) && !(tmp & (BASR_BUSY_ERROR | BASR_END_DMA_TRANSFER))); 1890 1891/* 1892 At this point, either we've completed DMA, or we have a phase mismatch, 1893 or we've unexpectedly lost BUSY (which is a real error). 1894 1895 For write DMAs, we want to wait until the last byte has been 1896 transferred out over the bus before we turn off DMA mode. Alas, there 1897 seems to be no terribly good way of doing this on a 5380 under all 1898 conditions. For non-scatter-gather operations, we can wait until REQ 1899 and ACK both go false, or until a phase mismatch occurs. Gather-writes 1900 are nastier, since the device will be expecting more data than we 1901 are prepared to send it, and REQ will remain asserted. On a 53C8[01] we 1902 could test LAST BIT SENT to assure transfer (I imagine this is precisely 1903 why this signal was added to the newer chips) but on the older 538[01] 1904 this signal does not exist. The workaround for this lack is a watchdog; 1905 we bail out of the wait-loop after a modest amount of wait-time if 1906 the usual exit conditions are not met. Not a terribly clean or 1907 correct solution :-% 1908 1909 Reads are equally tricky due to a nasty characteristic of the NCR5380. 1910 If the chip is in DMA mode for an READ, it will respond to a target's 1911 REQ by latching the SCSI data into the INPUT DATA register and asserting 1912 ACK, even if it has _already_ been notified by the DMA controller that 1913 the current DMA transfer has completed! If the NCR5380 is then taken 1914 out of DMA mode, this already-acknowledged byte is lost. 1915 1916 This is not a problem for "one DMA transfer per command" reads, because 1917 the situation will never arise... either all of the data is DMA'ed 1918 properly, or the target switches to MESSAGE IN phase to signal a 1919 disconnection (either operation bringing the DMA to a clean halt). 1920 However, in order to handle scatter-reads, we must work around the 1921 problem. The chosen fix is to DMA N-2 bytes, then check for the 1922 condition before taking the NCR5380 out of DMA mode. One or two extra 1923 bytes are transferred via PIO as necessary to fill out the original 1924 request. 1925 */ 1926 1927 if (p & SR_IO) { 1928#ifdef READ_OVERRUNS 1929 udelay(10); 1930 if (((NCR5380_read(BUS_AND_STATUS_REG) & (BASR_PHASE_MATCH | BASR_ACK)) == (BASR_PHASE_MATCH | BASR_ACK))) { 1931 saved_data = NCR5380_read(INPUT_DATA_REGISTER); 1932 overrun = 1; 1933 } 1934#endif 1935 } else { 1936 int limit = 100; 1937 while (((tmp = NCR5380_read(BUS_AND_STATUS_REG)) & BASR_ACK) || (NCR5380_read(STATUS_REG) & SR_REQ)) { 1938 if (!(tmp & BASR_PHASE_MATCH)) 1939 break; 1940 if (--limit < 0) 1941 break; 1942 } 1943 } 1944 1945 dprintk(NDEBUG_DMA, ("scsi%d : polled DMA transfer complete, basr 0x%X, sr 0x%X\n", instance->host_no, tmp, NCR5380_read(STATUS_REG))); 1946 1947 NCR5380_write(MODE_REG, MR_BASE); 1948 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE); 1949 1950 residue = NCR5380_dma_residual(instance); 1951 c -= residue; 1952 *count -= c; 1953 *data += c; 1954 *phase = NCR5380_read(STATUS_REG) & PHASE_MASK; 1955 1956#ifdef READ_OVERRUNS 1957 if (*phase == p && (p & SR_IO) && residue == 0) { 1958 if (overrun) { 1959 dprintk(NDEBUG_DMA, ("Got an input overrun, using saved byte\n")); 1960 **data = saved_data; 1961 *data += 1; 1962 *count -= 1; 1963 cnt = toPIO = 1; 1964 } else { 1965 printk("No overrun??\n"); 1966 cnt = toPIO = 2; 1967 } 1968 dprintk(NDEBUG_DMA, ("Doing %d-byte PIO to 0x%X\n", cnt, *data)); 1969 NCR5380_transfer_pio(instance, phase, &cnt, data); 1970 *count -= toPIO - cnt; 1971 } 1972#endif 1973 1974 dprintk(NDEBUG_DMA, ("Return with data ptr = 0x%X, count %d, last 0x%X, next 0x%X\n", *data, *count, *(*data + *count - 1), *(*data + *count))); 1975 return 0; 1976 1977#elif defined(REAL_DMA) 1978 return 0; 1979#else /* defined(REAL_DMA_POLL) */ 1980 if (p & SR_IO) { 1981#ifdef DMA_WORKS_RIGHT 1982 foo = NCR5380_pread(instance, d, c); 1983#else 1984 int diff = 1; 1985 if (hostdata->flags & FLAG_NCR53C400) { 1986 diff = 0; 1987 } 1988 if (!(foo = NCR5380_pread(instance, d, c - diff))) { 1989 /* 1990 * We can't disable DMA mode after successfully transferring 1991 * what we plan to be the last byte, since that would open up 1992 * a race condition where if the target asserted REQ before 1993 * we got the DMA mode reset, the NCR5380 would have latched 1994 * an additional byte into the INPUT DATA register and we'd 1995 * have dropped it. 1996 * 1997 * The workaround was to transfer one fewer bytes than we 1998 * intended to with the pseudo-DMA read function, wait for 1999 * the chip to latch the last byte, read it, and then disable 2000 * pseudo-DMA mode. 2001 * 2002 * After REQ is asserted, the NCR5380 asserts DRQ and ACK. 2003 * REQ is deasserted when ACK is asserted, and not reasserted 2004 * until ACK goes false. Since the NCR5380 won't lower ACK 2005 * until DACK is asserted, which won't happen unless we twiddle 2006 * the DMA port or we take the NCR5380 out of DMA mode, we 2007 * can guarantee that we won't handshake another extra 2008 * byte. 2009 */ 2010 2011 if (!(hostdata->flags & FLAG_NCR53C400)) { 2012 while (!(NCR5380_read(BUS_AND_STATUS_REG) & BASR_DRQ)); 2013 /* Wait for clean handshake */ 2014 while (NCR5380_read(STATUS_REG) & SR_REQ); 2015 d[c - 1] = NCR5380_read(INPUT_DATA_REG); 2016 } 2017 } 2018#endif 2019 } else { 2020#ifdef DMA_WORKS_RIGHT 2021 foo = NCR5380_pwrite(instance, d, c); 2022#else 2023 int timeout; 2024 dprintk(NDEBUG_C400_PWRITE, ("About to pwrite %d bytes\n", c)); 2025 if (!(foo = NCR5380_pwrite(instance, d, c))) { 2026 /* 2027 * Wait for the last byte to be sent. If REQ is being asserted for 2028 * the byte we're interested, we'll ACK it and it will go false. 2029 */ 2030 if (!(hostdata->flags & FLAG_HAS_LAST_BYTE_SENT)) { 2031 timeout = 20000; 2032 while (!(NCR5380_read(BUS_AND_STATUS_REG) & BASR_DRQ) && (NCR5380_read(BUS_AND_STATUS_REG) & BASR_PHASE_MATCH)); 2033 2034 if (!timeout) 2035 dprintk(NDEBUG_LAST_BYTE_SENT, ("scsi%d : timed out on last byte\n", instance->host_no)); 2036 2037 if (hostdata->flags & FLAG_CHECK_LAST_BYTE_SENT) { 2038 hostdata->flags &= ~FLAG_CHECK_LAST_BYTE_SENT; 2039 if (NCR5380_read(TARGET_COMMAND_REG) & TCR_LAST_BYTE_SENT) { 2040 hostdata->flags |= FLAG_HAS_LAST_BYTE_SENT; 2041 dprintk(NDEBUG_LAST_WRITE_SENT, ("scsi%d : last bit sent works\n", instance->host_no)); 2042 } 2043 } 2044 } else { 2045 dprintk(NDEBUG_C400_PWRITE, ("Waiting for LASTBYTE\n")); 2046 while (!(NCR5380_read(TARGET_COMMAND_REG) & TCR_LAST_BYTE_SENT)); 2047 dprintk(NDEBUG_C400_PWRITE, ("Got LASTBYTE\n")); 2048 } 2049 } 2050#endif 2051 } 2052 NCR5380_write(MODE_REG, MR_BASE); 2053 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE); 2054 2055 if ((!(p & SR_IO)) && (hostdata->flags & FLAG_NCR53C400)) { 2056 dprintk(NDEBUG_C400_PWRITE, ("53C400w: Checking for IRQ\n")); 2057 if (NCR5380_read(BUS_AND_STATUS_REG) & BASR_IRQ) { 2058 dprintk(NDEBUG_C400_PWRITE, ("53C400w: got it, reading reset interrupt reg\n")); 2059 NCR5380_read(RESET_PARITY_INTERRUPT_REG); 2060 } else { 2061 printk("53C400w: IRQ NOT THERE!\n"); 2062 } 2063 } 2064 *data = d + c; 2065 *count = 0; 2066 *phase = NCR5380_read(STATUS_REG) & PHASE_MASK; 2067#if defined(PSEUDO_DMA) && defined(UNSAFE) 2068 spin_lock_irq(instance->host_lock); 2069#endif /* defined(REAL_DMA_POLL) */ 2070 return foo; 2071#endif /* def REAL_DMA */ 2072} 2073#endif /* defined(REAL_DMA) | defined(PSEUDO_DMA) */ 2074 2075/* 2076 * Function : NCR5380_information_transfer (struct Scsi_Host *instance) 2077 * 2078 * Purpose : run through the various SCSI phases and do as the target 2079 * directs us to. Operates on the currently connected command, 2080 * instance->connected. 2081 * 2082 * Inputs : instance, instance for which we are doing commands 2083 * 2084 * Side effects : SCSI things happen, the disconnected queue will be 2085 * modified if a command disconnects, *instance->connected will 2086 * change. 2087 * 2088 * XXX Note : we need to watch for bus free or a reset condition here 2089 * to recover from an unexpected bus free condition. 2090 * 2091 * Locks: io_request_lock held by caller in IRQ mode 2092 */ 2093 2094static void NCR5380_information_transfer(struct Scsi_Host *instance) { 2095 NCR5380_local_declare(); 2096 struct NCR5380_hostdata *hostdata = (struct NCR5380_hostdata *)instance->hostdata; 2097 unsigned char msgout = NOP; 2098 int sink = 0; 2099 int len; 2100#if defined(PSEUDO_DMA) || defined(REAL_DMA_POLL) 2101 int transfersize; 2102#endif 2103 unsigned char *data; 2104 unsigned char phase, tmp, extended_msg[10], old_phase = 0xff; 2105 Scsi_Cmnd *cmd = (Scsi_Cmnd *) hostdata->connected; 2106 /* RvC: we need to set the end of the polling time */ 2107 unsigned long poll_time = jiffies + USLEEP_POLL; 2108 2109 NCR5380_setup(instance); 2110 2111 while (1) { 2112 tmp = NCR5380_read(STATUS_REG); 2113 /* We only have a valid SCSI phase when REQ is asserted */ 2114 if (tmp & SR_REQ) { 2115 phase = (tmp & PHASE_MASK); 2116 if (phase != old_phase) { 2117 old_phase = phase; 2118 NCR5380_dprint_phase(NDEBUG_INFORMATION, instance); 2119 } 2120 if (sink && (phase != PHASE_MSGOUT)) { 2121 NCR5380_write(TARGET_COMMAND_REG, PHASE_SR_TO_TCR(tmp)); 2122 2123 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE | ICR_ASSERT_ATN | ICR_ASSERT_ACK); 2124 while (NCR5380_read(STATUS_REG) & SR_REQ); 2125 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE | ICR_ASSERT_ATN); 2126 sink = 0; 2127 continue; 2128 } 2129 switch (phase) { 2130 case PHASE_DATAIN: 2131 case PHASE_DATAOUT: 2132#if (NDEBUG & NDEBUG_NO_DATAOUT) 2133 printk("scsi%d : NDEBUG_NO_DATAOUT set, attempted DATAOUT aborted\n", instance->host_no); 2134 sink = 1; 2135 do_abort(instance); 2136 cmd->result = DID_ERROR << 16; 2137 cmd->scsi_done(cmd); 2138 return; 2139#endif 2140 /* 2141 * If there is no room left in the current buffer in the 2142 * scatter-gather list, move onto the next one. 2143 */ 2144 2145 if (!cmd->SCp.this_residual && cmd->SCp.buffers_residual) { 2146 ++cmd->SCp.buffer; 2147 --cmd->SCp.buffers_residual; 2148 cmd->SCp.this_residual = cmd->SCp.buffer->length; 2149 cmd->SCp.ptr = sg_virt(cmd->SCp.buffer); 2150 dprintk(NDEBUG_INFORMATION, ("scsi%d : %d bytes and %d buffers left\n", instance->host_no, cmd->SCp.this_residual, cmd->SCp.buffers_residual)); 2151 } 2152 /* 2153 * The preferred transfer method is going to be 2154 * PSEUDO-DMA for systems that are strictly PIO, 2155 * since we can let the hardware do the handshaking. 2156 * 2157 * For this to work, we need to know the transfersize 2158 * ahead of time, since the pseudo-DMA code will sit 2159 * in an unconditional loop. 2160 */ 2161 2162#if defined(PSEUDO_DMA) || defined(REAL_DMA_POLL) 2163 /* KLL 2164 * PSEUDO_DMA is defined here. If this is the g_NCR5380 2165 * driver then it will always be defined, so the 2166 * FLAG_NO_PSEUDO_DMA is used to inhibit PDMA in the base 2167 * NCR5380 case. I think this is a fairly clean solution. 2168 * We supplement these 2 if's with the flag. 2169 */ 2170#ifdef NCR5380_dma_xfer_len 2171 if (!cmd->device->borken && !(hostdata->flags & FLAG_NO_PSEUDO_DMA) && (transfersize = NCR5380_dma_xfer_len(instance, cmd)) != 0) { 2172#else 2173 transfersize = cmd->transfersize; 2174 2175#ifdef LIMIT_TRANSFERSIZE /* If we have problems with interrupt service */ 2176 if (transfersize > 512) 2177 transfersize = 512; 2178#endif /* LIMIT_TRANSFERSIZE */ 2179 2180 if (!cmd->device->borken && transfersize && !(hostdata->flags & FLAG_NO_PSEUDO_DMA) && cmd->SCp.this_residual && !(cmd->SCp.this_residual % transfersize)) { 2181 /* Limit transfers to 32K, for xx400 & xx406 2182 * pseudoDMA that transfers in 128 bytes blocks. */ 2183 if (transfersize > 32 * 1024) 2184 transfersize = 32 * 1024; 2185#endif 2186 len = transfersize; 2187 if (NCR5380_transfer_dma(instance, &phase, &len, (unsigned char **) &cmd->SCp.ptr)) { 2188 /* 2189 * If the watchdog timer fires, all future accesses to this 2190 * device will use the polled-IO. 2191 */ 2192 scmd_printk(KERN_INFO, cmd, 2193 "switching to slow handshake\n"); 2194 cmd->device->borken = 1; 2195 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE | ICR_ASSERT_ATN); 2196 sink = 1; 2197 do_abort(instance); 2198 cmd->result = DID_ERROR << 16; 2199 cmd->scsi_done(cmd); 2200 /* XXX - need to source or sink data here, as appropriate */ 2201 } else 2202 cmd->SCp.this_residual -= transfersize - len; 2203 } else 2204#endif /* defined(PSEUDO_DMA) || defined(REAL_DMA_POLL) */ 2205 NCR5380_transfer_pio(instance, &phase, (int *) &cmd->SCp.this_residual, (unsigned char **) 2206 &cmd->SCp.ptr); 2207 break; 2208 case PHASE_MSGIN: 2209 len = 1; 2210 data = &tmp; 2211 NCR5380_transfer_pio(instance, &phase, &len, &data); 2212 cmd->SCp.Message = tmp; 2213 2214 switch (tmp) { 2215 /* 2216 * Linking lets us reduce the time required to get the 2217 * next command out to the device, hopefully this will 2218 * mean we don't waste another revolution due to the delays 2219 * required by ARBITRATION and another SELECTION. 2220 * 2221 * In the current implementation proposal, low level drivers 2222 * merely have to start the next command, pointed to by 2223 * next_link, done() is called as with unlinked commands. 2224 */ 2225#ifdef LINKED 2226 case LINKED_CMD_COMPLETE: 2227 case LINKED_FLG_CMD_COMPLETE: 2228 /* Accept message by clearing ACK */ 2229 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE); 2230 dprintk(NDEBUG_LINKED, ("scsi%d : target %d lun %d linked command complete.\n", instance->host_no, cmd->device->id, cmd->device->lun)); 2231 /* 2232 * Sanity check : A linked command should only terminate with 2233 * one of these messages if there are more linked commands 2234 * available. 2235 */ 2236 if (!cmd->next_link) { 2237 printk("scsi%d : target %d lun %d linked command complete, no next_link\n" instance->host_no, cmd->device->id, cmd->device->lun); 2238 sink = 1; 2239 do_abort(instance); 2240 return; 2241 } 2242 initialize_SCp(cmd->next_link); 2243 /* The next command is still part of this process */ 2244 cmd->next_link->tag = cmd->tag; 2245 cmd->result = cmd->SCp.Status | (cmd->SCp.Message << 8); 2246 dprintk(NDEBUG_LINKED, ("scsi%d : target %d lun %d linked request done, calling scsi_done().\n", instance->host_no, cmd->device->id, cmd->device->lun)); 2247 collect_stats(hostdata, cmd); 2248 cmd->scsi_done(cmd); 2249 cmd = hostdata->connected; 2250 break; 2251#endif /* def LINKED */ 2252 case ABORT: 2253 case COMMAND_COMPLETE: 2254 /* Accept message by clearing ACK */ 2255 sink = 1; 2256 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE); 2257 hostdata->connected = NULL; 2258 dprintk(NDEBUG_QUEUES, ("scsi%d : command for target %d, lun %d completed\n", instance->host_no, cmd->device->id, cmd->device->lun)); 2259 hostdata->busy[cmd->device->id] &= ~(1 << cmd->device->lun); 2260 2261 /* 2262 * I'm not sure what the correct thing to do here is : 2263 * 2264 * If the command that just executed is NOT a request 2265 * sense, the obvious thing to do is to set the result 2266 * code to the values of the stored parameters. 2267 * 2268 * If it was a REQUEST SENSE command, we need some way 2269 * to differentiate between the failure code of the original 2270 * and the failure code of the REQUEST sense - the obvious 2271 * case is success, where we fall through and leave the result 2272 * code unchanged. 2273 * 2274 * The non-obvious place is where the REQUEST SENSE failed 2275 */ 2276 2277 if (cmd->cmnd[0] != REQUEST_SENSE) 2278 cmd->result = cmd->SCp.Status | (cmd->SCp.Message << 8); 2279 else if (status_byte(cmd->SCp.Status) != GOOD) 2280 cmd->result = (cmd->result & 0x00ffff) | (DID_ERROR << 16); 2281 2282#ifdef AUTOSENSE 2283 if ((cmd->cmnd[0] == REQUEST_SENSE) && 2284 hostdata->ses.cmd_len) { 2285 scsi_eh_restore_cmnd(cmd, &hostdata->ses); 2286 hostdata->ses.cmd_len = 0 ; 2287 } 2288 2289 if ((cmd->cmnd[0] != REQUEST_SENSE) && (status_byte(cmd->SCp.Status) == CHECK_CONDITION)) { 2290 scsi_eh_prep_cmnd(cmd, &hostdata->ses, NULL, 0, ~0); 2291 2292 dprintk(NDEBUG_AUTOSENSE, ("scsi%d : performing request sense\n", instance->host_no)); 2293 2294 LIST(cmd, hostdata->issue_queue); 2295 cmd->host_scribble = (unsigned char *) 2296 hostdata->issue_queue; 2297 hostdata->issue_queue = (Scsi_Cmnd *) cmd; 2298 dprintk(NDEBUG_QUEUES, ("scsi%d : REQUEST SENSE added to head of issue queue\n", instance->host_no)); 2299 } else 2300#endif /* def AUTOSENSE */ 2301 { 2302 collect_stats(hostdata, cmd); 2303 cmd->scsi_done(cmd); 2304 } 2305 2306 NCR5380_write(SELECT_ENABLE_REG, hostdata->id_mask); 2307 /* 2308 * Restore phase bits to 0 so an interrupted selection, 2309 * arbitration can resume. 2310 */ 2311 NCR5380_write(TARGET_COMMAND_REG, 0); 2312 2313 while ((NCR5380_read(STATUS_REG) & SR_BSY) && !hostdata->connected) 2314 barrier(); 2315 return; 2316 case MESSAGE_REJECT: 2317 /* Accept message by clearing ACK */ 2318 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE); 2319 switch (hostdata->last_message) { 2320 case HEAD_OF_QUEUE_TAG: 2321 case ORDERED_QUEUE_TAG: 2322 case SIMPLE_QUEUE_TAG: 2323 cmd->device->simple_tags = 0; 2324 hostdata->busy[cmd->device->id] |= (1 << cmd->device->lun); 2325 break; 2326 default: 2327 break; 2328 } 2329 case DISCONNECT:{ 2330 /* Accept message by clearing ACK */ 2331 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE); 2332 cmd->device->disconnect = 1; 2333 LIST(cmd, hostdata->disconnected_queue); 2334 cmd->host_scribble = (unsigned char *) 2335 hostdata->disconnected_queue; 2336 hostdata->connected = NULL; 2337 hostdata->disconnected_queue = cmd; 2338 dprintk(NDEBUG_QUEUES, ("scsi%d : command for target %d lun %d was moved from connected to" " the disconnected_queue\n", instance->host_no, cmd->device->id, cmd->device->lun)); 2339 /* 2340 * Restore phase bits to 0 so an interrupted selection, 2341 * arbitration can resume. 2342 */ 2343 NCR5380_write(TARGET_COMMAND_REG, 0); 2344 2345 /* Enable reselect interrupts */ 2346 NCR5380_write(SELECT_ENABLE_REG, hostdata->id_mask); 2347 /* Wait for bus free to avoid nasty timeouts - FIXME timeout !*/ 2348 /* NCR538_poll_politely(instance, STATUS_REG, SR_BSY, 0, 30 * HZ); */ 2349 while ((NCR5380_read(STATUS_REG) & SR_BSY) && !hostdata->connected) 2350 barrier(); 2351 return; 2352 } 2353 /* 2354 * The SCSI data pointer is *IMPLICITLY* saved on a disconnect 2355 * operation, in violation of the SCSI spec so we can safely 2356 * ignore SAVE/RESTORE pointers calls. 2357 * 2358 * Unfortunately, some disks violate the SCSI spec and 2359 * don't issue the required SAVE_POINTERS message before 2360 * disconnecting, and we have to break spec to remain 2361 * compatible. 2362 */ 2363 case SAVE_POINTERS: 2364 case RESTORE_POINTERS: 2365 /* Accept message by clearing ACK */ 2366 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE); 2367 break; 2368 case EXTENDED_MESSAGE: 2369/* 2370 * Extended messages are sent in the following format : 2371 * Byte 2372 * 0 EXTENDED_MESSAGE == 1 2373 * 1 length (includes one byte for code, doesn't 2374 * include first two bytes) 2375 * 2 code 2376 * 3..length+1 arguments 2377 * 2378 * Start the extended message buffer with the EXTENDED_MESSAGE 2379 * byte, since spi_print_msg() wants the whole thing. 2380 */ 2381 extended_msg[0] = EXTENDED_MESSAGE; 2382 /* Accept first byte by clearing ACK */ 2383 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE); 2384 dprintk(NDEBUG_EXTENDED, ("scsi%d : receiving extended message\n", instance->host_no)); 2385 2386 len = 2; 2387 data = extended_msg + 1; 2388 phase = PHASE_MSGIN; 2389 NCR5380_transfer_pio(instance, &phase, &len, &data); 2390 2391 dprintk(NDEBUG_EXTENDED, ("scsi%d : length=%d, code=0x%02x\n", instance->host_no, (int) extended_msg[1], (int) extended_msg[2])); 2392 2393 if (!len && extended_msg[1] <= (sizeof(extended_msg) - 1)) { 2394 /* Accept third byte by clearing ACK */ 2395 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE); 2396 len = extended_msg[1] - 1; 2397 data = extended_msg + 3; 2398 phase = PHASE_MSGIN; 2399 2400 NCR5380_transfer_pio(instance, &phase, &len, &data); 2401 dprintk(NDEBUG_EXTENDED, ("scsi%d : message received, residual %d\n", instance->host_no, len)); 2402 2403 switch (extended_msg[2]) { 2404 case EXTENDED_SDTR: 2405 case EXTENDED_WDTR: 2406 case EXTENDED_MODIFY_DATA_POINTER: 2407 case EXTENDED_EXTENDED_IDENTIFY: 2408 tmp = 0; 2409 } 2410 } else if (len) { 2411 printk("scsi%d: error receiving extended message\n", instance->host_no); 2412 tmp = 0; 2413 } else { 2414 printk("scsi%d: extended message code %02x length %d is too long\n", instance->host_no, extended_msg[2], extended_msg[1]); 2415 tmp = 0; 2416 } 2417 /* Fall through to reject message */ 2418 2419 /* 2420 * If we get something weird that we aren't expecting, 2421 * reject it. 2422 */ 2423 default: 2424 if (!tmp) { 2425 printk("scsi%d: rejecting message ", instance->host_no); 2426 spi_print_msg(extended_msg); 2427 printk("\n"); 2428 } else if (tmp != EXTENDED_MESSAGE) 2429 scmd_printk(KERN_INFO, cmd, 2430 "rejecting unknown message %02x\n",tmp); 2431 else 2432 scmd_printk(KERN_INFO, cmd, 2433 "rejecting unknown extended message code %02x, length %d\n", extended_msg[1], extended_msg[0]); 2434 2435 msgout = MESSAGE_REJECT; 2436 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE | ICR_ASSERT_ATN); 2437 break; 2438 } /* switch (tmp) */ 2439 break; 2440 case PHASE_MSGOUT: 2441 len = 1; 2442 data = &msgout; 2443 hostdata->last_message = msgout; 2444 NCR5380_transfer_pio(instance, &phase, &len, &data); 2445 if (msgout == ABORT) { 2446 hostdata->busy[cmd->device->id] &= ~(1 << cmd->device->lun); 2447 hostdata->connected = NULL; 2448 cmd->result = DID_ERROR << 16; 2449 collect_stats(hostdata, cmd); 2450 cmd->scsi_done(cmd); 2451 NCR5380_write(SELECT_ENABLE_REG, hostdata->id_mask); 2452 return; 2453 } 2454 msgout = NOP; 2455 break; 2456 case PHASE_CMDOUT: 2457 len = cmd->cmd_len; 2458 data = cmd->cmnd; 2459 /* 2460 * XXX for performance reasons, on machines with a 2461 * PSEUDO-DMA architecture we should probably 2462 * use the dma transfer function. 2463 */ 2464 NCR5380_transfer_pio(instance, &phase, &len, &data); 2465 if (!cmd->device->disconnect && should_disconnect(cmd->cmnd[0])) { 2466 NCR5380_set_timer(hostdata, USLEEP_SLEEP); 2467 dprintk(NDEBUG_USLEEP, ("scsi%d : issued command, sleeping until %ul\n", instance->host_no, hostdata->time_expires)); 2468 return; 2469 } 2470 break; 2471 case PHASE_STATIN: 2472 len = 1; 2473 data = &tmp; 2474 NCR5380_transfer_pio(instance, &phase, &len, &data); 2475 cmd->SCp.Status = tmp; 2476 break; 2477 default: 2478 printk("scsi%d : unknown phase\n", instance->host_no); 2479 NCR5380_dprint(NDEBUG_ALL, instance); 2480 } /* switch(phase) */ 2481 } /* if (tmp * SR_REQ) */ 2482 else { 2483 /* RvC: go to sleep if polling time expired 2484 */ 2485 if (!cmd->device->disconnect && time_after_eq(jiffies, poll_time)) { 2486 NCR5380_set_timer(hostdata, USLEEP_SLEEP); 2487 dprintk(NDEBUG_USLEEP, ("scsi%d : poll timed out, sleeping until %ul\n", instance->host_no, hostdata->time_expires)); 2488 return; 2489 } 2490 } 2491 } /* while (1) */ 2492} 2493 2494/* 2495 * Function : void NCR5380_reselect (struct Scsi_Host *instance) 2496 * 2497 * Purpose : does reselection, initializing the instance->connected 2498 * field to point to the Scsi_Cmnd for which the I_T_L or I_T_L_Q 2499 * nexus has been reestablished, 2500 * 2501 * Inputs : instance - this instance of the NCR5380. 2502 * 2503 * Locks: io_request_lock held by caller if IRQ driven 2504 */ 2505 2506static void NCR5380_reselect(struct Scsi_Host *instance) { 2507 NCR5380_local_declare(); 2508 struct NCR5380_hostdata *hostdata = (struct NCR5380_hostdata *) 2509 instance->hostdata; 2510 unsigned char target_mask; 2511 unsigned char lun, phase; 2512 int len; 2513 unsigned char msg[3]; 2514 unsigned char *data; 2515 Scsi_Cmnd *tmp = NULL, *prev; 2516 int abort = 0; 2517 NCR5380_setup(instance); 2518 2519 /* 2520 * Disable arbitration, etc. since the host adapter obviously 2521 * lost, and tell an interrupted NCR5380_select() to restart. 2522 */ 2523 2524 NCR5380_write(MODE_REG, MR_BASE); 2525 hostdata->restart_select = 1; 2526 2527 target_mask = NCR5380_read(CURRENT_SCSI_DATA_REG) & ~(hostdata->id_mask); 2528 dprintk(NDEBUG_SELECTION, ("scsi%d : reselect\n", instance->host_no)); 2529 2530 /* 2531 * At this point, we have detected that our SCSI ID is on the bus, 2532 * SEL is true and BSY was false for at least one bus settle delay 2533 * (400 ns). 2534 * 2535 * We must assert BSY ourselves, until the target drops the SEL 2536 * signal. 2537 */ 2538 2539 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE | ICR_ASSERT_BSY); 2540 2541 /* FIXME: timeout too long, must fail to workqueue */ 2542 if(NCR5380_poll_politely(instance, STATUS_REG, SR_SEL, 0, 2*HZ)<0) 2543 abort = 1; 2544 2545 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE); 2546 2547 /* 2548 * Wait for target to go into MSGIN. 2549 * FIXME: timeout needed and fail to work queeu 2550 */ 2551 2552 if(NCR5380_poll_politely(instance, STATUS_REG, SR_REQ, SR_REQ, 2*HZ)) 2553 abort = 1; 2554 2555 len = 1; 2556 data = msg; 2557 phase = PHASE_MSGIN; 2558 NCR5380_transfer_pio(instance, &phase, &len, &data); 2559 2560 if (!(msg[0] & 0x80)) { 2561 printk(KERN_ERR "scsi%d : expecting IDENTIFY message, got ", instance->host_no); 2562 spi_print_msg(msg); 2563 abort = 1; 2564 } else { 2565 /* Accept message by clearing ACK */ 2566 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE); 2567 lun = (msg[0] & 0x07); 2568 2569 /* 2570 * We need to add code for SCSI-II to track which devices have 2571 * I_T_L_Q nexuses established, and which have simple I_T_L 2572 * nexuses so we can chose to do additional data transfer. 2573 */ 2574 2575 /* 2576 * Find the command corresponding to the I_T_L or I_T_L_Q nexus we 2577 * just reestablished, and remove it from the disconnected queue. 2578 */ 2579 2580 2581 for (tmp = (Scsi_Cmnd *) hostdata->disconnected_queue, prev = NULL; tmp; prev = tmp, tmp = (Scsi_Cmnd *) tmp->host_scribble) 2582 if ((target_mask == (1 << tmp->device->id)) && (lun == tmp->device->lun) 2583 ) { 2584 if (prev) { 2585 REMOVE(prev, prev->host_scribble, tmp, tmp->host_scribble); 2586 prev->host_scribble = tmp->host_scribble; 2587 } else { 2588 REMOVE(-1, hostdata->disconnected_queue, tmp, tmp->host_scribble); 2589 hostdata->disconnected_queue = (Scsi_Cmnd *) tmp->host_scribble; 2590 } 2591 tmp->host_scribble = NULL; 2592 break; 2593 } 2594 if (!tmp) { 2595 printk(KERN_ERR "scsi%d : warning : target bitmask %02x lun %d not in disconnect_queue.\n", instance->host_no, target_mask, lun); 2596 /* 2597 * Since we have an established nexus that we can't do anything with, 2598 * we must abort it. 2599 */ 2600 abort = 1; 2601 } 2602 } 2603 2604 if (abort) { 2605 do_abort(instance); 2606 } else { 2607 hostdata->connected = tmp; 2608 dprintk(NDEBUG_RESELECTION, ("scsi%d : nexus established, target = %d, lun = %d, tag = %d\n", instance->host_no, tmp->target, tmp->lun, tmp->tag)); 2609 } 2610} 2611 2612/* 2613 * Function : void NCR5380_dma_complete (struct Scsi_Host *instance) 2614 * 2615 * Purpose : called by interrupt handler when DMA finishes or a phase 2616 * mismatch occurs (which would finish the DMA transfer). 2617 * 2618 * Inputs : instance - this instance of the NCR5380. 2619 * 2620 * Returns : pointer to the Scsi_Cmnd structure for which the I_T_L 2621 * nexus has been reestablished, on failure NULL is returned. 2622 */ 2623 2624#ifdef REAL_DMA 2625static void NCR5380_dma_complete(NCR5380_instance * instance) { 2626 NCR5380_local_declare(); 2627 struct NCR5380_hostdata *hostdata = (struct NCR5380_hostdata *) instance->hostdata; 2628 int transferred; 2629 NCR5380_setup(instance); 2630 2631 /* 2632 * XXX this might not be right. 2633 * 2634 * Wait for final byte to transfer, ie wait for ACK to go false. 2635 * 2636 * We should use the Last Byte Sent bit, unfortunately this is 2637 * not available on the 5380/5381 (only the various CMOS chips) 2638 * 2639 * FIXME: timeout, and need to handle long timeout/irq case 2640 */ 2641 2642 NCR5380_poll_politely(instance, BUS_AND_STATUS_REG, BASR_ACK, 0, 5*HZ); 2643 2644 NCR5380_write(MODE_REG, MR_BASE); 2645 NCR5380_write(INITIATOR_COMMAND_REG, ICR_BASE); 2646 2647 /* 2648 * The only places we should see a phase mismatch and have to send 2649 * data from the same set of pointers will be the data transfer 2650 * phases. So, residual, requested length are only important here. 2651 */ 2652 2653 if (!(hostdata->connected->SCp.phase & SR_CD)) { 2654 transferred = instance->dmalen - NCR5380_dma_residual(); 2655 hostdata->connected->SCp.this_residual -= transferred; 2656 hostdata->connected->SCp.ptr += transferred; 2657 } 2658} 2659#endif /* def REAL_DMA */ 2660 2661/* 2662 * Function : int NCR5380_abort (Scsi_Cmnd *cmd) 2663 * 2664 * Purpose : abort a command 2665 * 2666 * Inputs : cmd - the Scsi_Cmnd to abort, code - code to set the 2667 * host byte of the result field to, if zero DID_ABORTED is 2668 * used. 2669 * 2670 * Returns : 0 - success, -1 on failure. 2671 * 2672 * XXX - there is no way to abort the command that is currently 2673 * connected, you have to wait for it to complete. If this is 2674 * a problem, we could implement longjmp() / setjmp(), setjmp() 2675 * called where the loop started in NCR5380_main(). 2676 * 2677 * Locks: host lock taken by caller 2678 */ 2679 2680static int NCR5380_abort(Scsi_Cmnd * cmd) { 2681 NCR5380_local_declare(); 2682 struct Scsi_Host *instance = cmd->device->host; 2683 struct NCR5380_hostdata *hostdata = (struct NCR5380_hostdata *) instance->hostdata; 2684 Scsi_Cmnd *tmp, **prev; 2685 2686 printk(KERN_WARNING "scsi%d : aborting command\n", instance->host_no); 2687 scsi_print_command(cmd); 2688 2689 NCR5380_print_status(instance); 2690 2691 NCR5380_setup(instance); 2692 2693 dprintk(NDEBUG_ABORT, ("scsi%d : abort called\n", instance->host_no)); 2694 dprintk(NDEBUG_ABORT, (" basr 0x%X, sr 0x%X\n", NCR5380_read(BUS_AND_STATUS_REG), NCR5380_read(STATUS_REG))); 2695 2696#if 0 2697/* 2698 * Case 1 : If the command is the currently executing command, 2699 * we'll set the aborted flag and return control so that 2700 * information transfer routine can exit cleanly. 2701 */ 2702 2703 if (hostdata->connected == cmd) { 2704 dprintk(NDEBUG_ABORT, ("scsi%d : aborting connected command\n", instance->host_no)); 2705 hostdata->aborted = 1; 2706/* 2707 * We should perform BSY checking, and make sure we haven't slipped 2708 * into BUS FREE. 2709 */ 2710 2711 NCR5380_write(INITIATOR_COMMAND_REG, ICR_ASSERT_ATN); 2712/* 2713 * Since we can't change phases until we've completed the current 2714 * handshake, we have to source or sink a byte of data if the current 2715 * phase is not MSGOUT. 2716 */ 2717 2718/* 2719 * Return control to the executing NCR drive so we can clear the 2720 * aborted flag and get back into our main loop. 2721 */ 2722 2723 return 0; 2724 } 2725#endif 2726 2727/* 2728 * Case 2 : If the command hasn't been issued yet, we simply remove it 2729 * from the issue queue. 2730 */ 2731 2732 dprintk(NDEBUG_ABORT, ("scsi%d : abort going into loop.\n", instance->host_no)); 2733 for (prev = (Scsi_Cmnd **) & (hostdata->issue_queue), tmp = (Scsi_Cmnd *) hostdata->issue_queue; tmp; prev = (Scsi_Cmnd **) & (tmp->host_scribble), tmp = (Scsi_Cmnd *) tmp->host_scribble) 2734 if (cmd == tmp) { 2735 REMOVE(5, *prev, tmp, tmp->host_scribble); 2736 (*prev) = (Scsi_Cmnd *) tmp->host_scribble; 2737 tmp->host_scribble = NULL; 2738 tmp->result = DID_ABORT << 16; 2739 dprintk(NDEBUG_ABORT, ("scsi%d : abort removed command from issue queue.\n", instance->host_no)); 2740 tmp->scsi_done(tmp); 2741 return SUCCESS; 2742 } 2743#if (NDEBUG & NDEBUG_ABORT) 2744 /* KLL */ 2745 else if (prev == tmp) 2746 printk(KERN_ERR "scsi%d : LOOP\n", instance->host_no); 2747#endif 2748 2749/* 2750 * Case 3 : If any commands are connected, we're going to fail the abort 2751 * and let the high level SCSI driver retry at a later time or 2752 * issue a reset. 2753 * 2754 * Timeouts, and therefore aborted commands, will be highly unlikely 2755 * and handling them cleanly in this situation would make the common 2756 * case of noresets less efficient, and would pollute our code. So, 2757 * we fail. 2758 */ 2759 2760 if (hostdata->connected) { 2761 dprintk(NDEBUG_ABORT, ("scsi%d : abort failed, command connected.\n", instance->host_no)); 2762 return FAILED; 2763 } 2764/* 2765 * Case 4: If the command is currently disconnected from the bus, and 2766 * there are no connected commands, we reconnect the I_T_L or 2767 * I_T_L_Q nexus associated with it, go into message out, and send 2768 * an abort message. 2769 * 2770 * This case is especially ugly. In order to reestablish the nexus, we 2771 * need to call NCR5380_select(). The easiest way to implement this 2772 * function was to abort if the bus was busy, and let the interrupt 2773 * handler triggered on the SEL for reselect take care of lost arbitrations 2774 * where necessary, meaning interrupts need to be enabled. 2775 * 2776 * When interrupts are enabled, the queues may change - so we 2777 * can't remove it from the disconnected queue before selecting it 2778 * because that could cause a failure in hashing the nexus if that 2779 * device reselected. 2780 * 2781 * Since the queues may change, we can't use the pointers from when we 2782 * first locate it. 2783 * 2784 * So, we must first locate the command, and if NCR5380_select() 2785 * succeeds, then issue the abort, relocate the command and remove 2786 * it from the disconnected queue. 2787 */ 2788 2789 for (tmp = (Scsi_Cmnd *) hostdata->disconnected_queue; tmp; tmp = (Scsi_Cmnd *) tmp->host_scribble) 2790 if (cmd == tmp) { 2791 dprintk(NDEBUG_ABORT, ("scsi%d : aborting disconnected command.\n", instance->host_no)); 2792 2793 if (NCR5380_select(instance, cmd, (int) cmd->tag)) 2794 return FAILED; 2795 dprintk(NDEBUG_ABORT, ("scsi%d : nexus reestablished.\n", instance->host_no)); 2796 2797 do_abort(instance); 2798 2799 for (prev = (Scsi_Cmnd **) & (hostdata->disconnected_queue), tmp = (Scsi_Cmnd *) hostdata->disconnected_queue; tmp; prev = (Scsi_Cmnd **) & (tmp->host_scribble), tmp = (Scsi_Cmnd *) tmp->host_scribble) 2800 if (cmd == tmp) { 2801 REMOVE(5, *prev, tmp, tmp->host_scribble); 2802 *prev = (Scsi_Cmnd *) tmp->host_scribble; 2803 tmp->host_scribble = NULL; 2804 tmp->result = DID_ABORT << 16; 2805 tmp->scsi_done(tmp); 2806 return SUCCESS; 2807 } 2808 } 2809/* 2810 * Case 5 : If we reached this point, the command was not found in any of 2811 * the queues. 2812 * 2813 * We probably reached this point because of an unlikely race condition 2814 * between the command completing successfully and the abortion code, 2815 * so we won't panic, but we will notify the user in case something really 2816 * broke. 2817 */ 2818 printk(KERN_WARNING "scsi%d : warning : SCSI command probably completed successfully\n" 2819 " before abortion\n", instance->host_no); 2820 return FAILED; 2821} 2822 2823 2824/* 2825 * Function : int NCR5380_bus_reset (Scsi_Cmnd *cmd) 2826 * 2827 * Purpose : reset the SCSI bus. 2828 * 2829 * Returns : SUCCESS 2830 * 2831 * Locks: host lock taken by caller 2832 */ 2833 2834static int NCR5380_bus_reset(Scsi_Cmnd * cmd) 2835{ 2836 struct Scsi_Host *instance = cmd->device->host; 2837 2838 NCR5380_local_declare(); 2839 NCR5380_setup(instance); 2840 NCR5380_print_status(instance); 2841 2842 spin_lock_irq(instance->host_lock); 2843 do_reset(instance); 2844 spin_unlock_irq(instance->host_lock); 2845 2846 return SUCCESS; 2847}