1 /* 2 * Adaptec AIC79xx device driver for Linux. 3 * 4 * $Id: //depot/aic7xxx/linux/drivers/scsi/aic7xxx/aic79xx_osm.c#171 $ 5 * 6 * -------------------------------------------------------------------------- 7 * Copyright (c) 1994-2000 Justin T. Gibbs. 8 * Copyright (c) 1997-1999 Doug Ledford 9 * Copyright (c) 2000-2003 Adaptec Inc. 10 * All rights reserved. 11 * 12 * Redistribution and use in source and binary forms, with or without 13 * modification, are permitted provided that the following conditions 14 * are met: 15 * 1. Redistributions of source code must retain the above copyright 16 * notice, this list of conditions, and the following disclaimer, 17 * without modification. 18 * 2. Redistributions in binary form must reproduce at minimum a disclaimer 19 * substantially similar to the "NO WARRANTY" disclaimer below 20 * ("Disclaimer") and any redistribution must be conditioned upon 21 * including a substantially similar Disclaimer requirement for further 22 * binary redistribution. 23 * 3. Neither the names of the above-listed copyright holders nor the names 24 * of any contributors may be used to endorse or promote products derived 25 * from this software without specific prior written permission. 26 * 27 * Alternatively, this software may be distributed under the terms of the 28 * GNU General Public License ("GPL") version 2 as published by the Free 29 * Software Foundation. 30 * 31 * NO WARRANTY 32 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 33 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 34 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR 35 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 36 * HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 37 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 38 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 39 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, 40 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING 41 * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 42 * POSSIBILITY OF SUCH DAMAGES. 43 */ 44 45 #include "aic79xx_osm.h" 46 #include "aic79xx_inline.h" 47 #include <scsi/scsicam.h> 48 49 static struct scsi_transport_template *ahd_linux_transport_template = NULL; 50 51 #include <linux/init.h> /* __setup */ 52 #include <linux/mm.h> /* For fetching system memory size */ 53 #include <linux/blkdev.h> /* For block_size() */ 54 #include <linux/delay.h> /* For ssleep/msleep */ 55 #include <linux/device.h> 56 57 /* 58 * Bucket size for counting good commands in between bad ones. 59 */ 60 #define AHD_LINUX_ERR_THRESH 1000 61 62 /* 63 * Set this to the delay in seconds after SCSI bus reset. 64 * Note, we honor this only for the initial bus reset. 65 * The scsi error recovery code performs its own bus settle 66 * delay handling for error recovery actions. 67 */ 68 #ifdef CONFIG_AIC79XX_RESET_DELAY_MS 69 #define AIC79XX_RESET_DELAY CONFIG_AIC79XX_RESET_DELAY_MS 70 #else 71 #define AIC79XX_RESET_DELAY 5000 72 #endif 73 74 /* 75 * To change the default number of tagged transactions allowed per-device, 76 * add a line to the lilo.conf file like: 77 * append="aic79xx=verbose,tag_info:{{32,32,32,32},{32,32,32,32}}" 78 * which will result in the first four devices on the first two 79 * controllers being set to a tagged queue depth of 32. 80 * 81 * The tag_commands is an array of 16 to allow for wide and twin adapters. 82 * Twin adapters will use indexes 0-7 for channel 0, and indexes 8-15 83 * for channel 1. 84 */ 85 typedef struct { 86 uint16_t tag_commands[16]; /* Allow for wide/twin adapters. */ 87 } adapter_tag_info_t; 88 89 /* 90 * Modify this as you see fit for your system. 91 * 92 * 0 tagged queuing disabled 93 * 1 <= n <= 253 n == max tags ever dispatched. 94 * 95 * The driver will throttle the number of commands dispatched to a 96 * device if it returns queue full. For devices with a fixed maximum 97 * queue depth, the driver will eventually determine this depth and 98 * lock it in (a console message is printed to indicate that a lock 99 * has occurred). On some devices, queue full is returned for a temporary 100 * resource shortage. These devices will return queue full at varying 101 * depths. The driver will throttle back when the queue fulls occur and 102 * attempt to slowly increase the depth over time as the device recovers 103 * from the resource shortage. 104 * 105 * In this example, the first line will disable tagged queueing for all 106 * the devices on the first probed aic79xx adapter. 107 * 108 * The second line enables tagged queueing with 4 commands/LUN for IDs 109 * (0, 2-11, 13-15), disables tagged queueing for ID 12, and tells the 110 * driver to attempt to use up to 64 tags for ID 1. 111 * 112 * The third line is the same as the first line. 113 * 114 * The fourth line disables tagged queueing for devices 0 and 3. It 115 * enables tagged queueing for the other IDs, with 16 commands/LUN 116 * for IDs 1 and 4, 127 commands/LUN for ID 8, and 4 commands/LUN for 117 * IDs 2, 5-7, and 9-15. 118 */ 119 120 /* 121 * NOTE: The below structure is for reference only, the actual structure 122 * to modify in order to change things is just below this comment block. 123 adapter_tag_info_t aic79xx_tag_info[] = 124 { 125 {{0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}}, 126 {{4, 64, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 0, 4, 4, 4}}, 127 {{0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}}, 128 {{0, 16, 4, 0, 16, 4, 4, 4, 127, 4, 4, 4, 4, 4, 4, 4}} 129 }; 130 */ 131 132 #ifdef CONFIG_AIC79XX_CMDS_PER_DEVICE 133 #define AIC79XX_CMDS_PER_DEVICE CONFIG_AIC79XX_CMDS_PER_DEVICE 134 #else 135 #define AIC79XX_CMDS_PER_DEVICE AHD_MAX_QUEUE 136 #endif 137 138 #define AIC79XX_CONFIGED_TAG_COMMANDS { \ 139 AIC79XX_CMDS_PER_DEVICE, AIC79XX_CMDS_PER_DEVICE, \ 140 AIC79XX_CMDS_PER_DEVICE, AIC79XX_CMDS_PER_DEVICE, \ 141 AIC79XX_CMDS_PER_DEVICE, AIC79XX_CMDS_PER_DEVICE, \ 142 AIC79XX_CMDS_PER_DEVICE, AIC79XX_CMDS_PER_DEVICE, \ 143 AIC79XX_CMDS_PER_DEVICE, AIC79XX_CMDS_PER_DEVICE, \ 144 AIC79XX_CMDS_PER_DEVICE, AIC79XX_CMDS_PER_DEVICE, \ 145 AIC79XX_CMDS_PER_DEVICE, AIC79XX_CMDS_PER_DEVICE, \ 146 AIC79XX_CMDS_PER_DEVICE, AIC79XX_CMDS_PER_DEVICE \ 147 } 148 149 /* 150 * By default, use the number of commands specified by 151 * the users kernel configuration. 152 */ 153 static adapter_tag_info_t aic79xx_tag_info[] = 154 { 155 {AIC79XX_CONFIGED_TAG_COMMANDS}, 156 {AIC79XX_CONFIGED_TAG_COMMANDS}, 157 {AIC79XX_CONFIGED_TAG_COMMANDS}, 158 {AIC79XX_CONFIGED_TAG_COMMANDS}, 159 {AIC79XX_CONFIGED_TAG_COMMANDS}, 160 {AIC79XX_CONFIGED_TAG_COMMANDS}, 161 {AIC79XX_CONFIGED_TAG_COMMANDS}, 162 {AIC79XX_CONFIGED_TAG_COMMANDS}, 163 {AIC79XX_CONFIGED_TAG_COMMANDS}, 164 {AIC79XX_CONFIGED_TAG_COMMANDS}, 165 {AIC79XX_CONFIGED_TAG_COMMANDS}, 166 {AIC79XX_CONFIGED_TAG_COMMANDS}, 167 {AIC79XX_CONFIGED_TAG_COMMANDS}, 168 {AIC79XX_CONFIGED_TAG_COMMANDS}, 169 {AIC79XX_CONFIGED_TAG_COMMANDS}, 170 {AIC79XX_CONFIGED_TAG_COMMANDS} 171 }; 172 173 /* 174 * The I/O cell on the chip is very configurable in respect to its analog 175 * characteristics. Set the defaults here; they can be overriden with 176 * the proper insmod parameters. 177 */ 178 struct ahd_linux_iocell_opts 179 { 180 uint8_t precomp; 181 uint8_t slewrate; 182 uint8_t amplitude; 183 }; 184 #define AIC79XX_DEFAULT_PRECOMP 0xFF 185 #define AIC79XX_DEFAULT_SLEWRATE 0xFF 186 #define AIC79XX_DEFAULT_AMPLITUDE 0xFF 187 #define AIC79XX_DEFAULT_IOOPTS \ 188 { \ 189 AIC79XX_DEFAULT_PRECOMP, \ 190 AIC79XX_DEFAULT_SLEWRATE, \ 191 AIC79XX_DEFAULT_AMPLITUDE \ 192 } 193 #define AIC79XX_PRECOMP_INDEX 0 194 #define AIC79XX_SLEWRATE_INDEX 1 195 #define AIC79XX_AMPLITUDE_INDEX 2 196 static struct ahd_linux_iocell_opts aic79xx_iocell_info[] = 197 { 198 AIC79XX_DEFAULT_IOOPTS, 199 AIC79XX_DEFAULT_IOOPTS, 200 AIC79XX_DEFAULT_IOOPTS, 201 AIC79XX_DEFAULT_IOOPTS, 202 AIC79XX_DEFAULT_IOOPTS, 203 AIC79XX_DEFAULT_IOOPTS, 204 AIC79XX_DEFAULT_IOOPTS, 205 AIC79XX_DEFAULT_IOOPTS, 206 AIC79XX_DEFAULT_IOOPTS, 207 AIC79XX_DEFAULT_IOOPTS, 208 AIC79XX_DEFAULT_IOOPTS, 209 AIC79XX_DEFAULT_IOOPTS, 210 AIC79XX_DEFAULT_IOOPTS, 211 AIC79XX_DEFAULT_IOOPTS, 212 AIC79XX_DEFAULT_IOOPTS, 213 AIC79XX_DEFAULT_IOOPTS 214 }; 215 216 /* 217 * There should be a specific return value for this in scsi.h, but 218 * it seems that most drivers ignore it. 219 */ 220 #define DID_UNDERFLOW DID_ERROR 221 222 void 223 ahd_print_path(struct ahd_softc *ahd, struct scb *scb) 224 { 225 printk("(scsi%d:%c:%d:%d): ", 226 ahd->platform_data->host->host_no, 227 scb != NULL ? SCB_GET_CHANNEL(ahd, scb) : 'X', 228 scb != NULL ? SCB_GET_TARGET(ahd, scb) : -1, 229 scb != NULL ? SCB_GET_LUN(scb) : -1); 230 } 231 232 /* 233 * XXX - these options apply unilaterally to _all_ adapters 234 * cards in the system. This should be fixed. Exceptions to this 235 * rule are noted in the comments. 236 */ 237 238 /* 239 * Skip the scsi bus reset. Non 0 make us skip the reset at startup. This 240 * has no effect on any later resets that might occur due to things like 241 * SCSI bus timeouts. 242 */ 243 static uint32_t aic79xx_no_reset; 244 245 /* 246 * Should we force EXTENDED translation on a controller. 247 * 0 == Use whatever is in the SEEPROM or default to off 248 * 1 == Use whatever is in the SEEPROM or default to on 249 */ 250 static uint32_t aic79xx_extended; 251 252 /* 253 * PCI bus parity checking of the Adaptec controllers. This is somewhat 254 * dubious at best. To my knowledge, this option has never actually 255 * solved a PCI parity problem, but on certain machines with broken PCI 256 * chipset configurations, it can generate tons of false error messages. 257 * It's included in the driver for completeness. 258 * 0 = Shut off PCI parity check 259 * non-0 = Enable PCI parity check 260 * 261 * NOTE: you can't actually pass -1 on the lilo prompt. So, to set this 262 * variable to -1 you would actually want to simply pass the variable 263 * name without a number. That will invert the 0 which will result in 264 * -1. 265 */ 266 static uint32_t aic79xx_pci_parity = ~0; 267 268 /* 269 * There are lots of broken chipsets in the world. Some of them will 270 * violate the PCI spec when we issue byte sized memory writes to our 271 * controller. I/O mapped register access, if allowed by the given 272 * platform, will work in almost all cases. 273 */ 274 uint32_t aic79xx_allow_memio = ~0; 275 276 /* 277 * So that we can set how long each device is given as a selection timeout. 278 * The table of values goes like this: 279 * 0 - 256ms 280 * 1 - 128ms 281 * 2 - 64ms 282 * 3 - 32ms 283 * We default to 256ms because some older devices need a longer time 284 * to respond to initial selection. 285 */ 286 static uint32_t aic79xx_seltime; 287 288 /* 289 * Certain devices do not perform any aging on commands. Should the 290 * device be saturated by commands in one portion of the disk, it is 291 * possible for transactions on far away sectors to never be serviced. 292 * To handle these devices, we can periodically send an ordered tag to 293 * force all outstanding transactions to be serviced prior to a new 294 * transaction. 295 */ 296 static uint32_t aic79xx_periodic_otag; 297 298 /* Some storage boxes are using an LSI chip which has a bug making it 299 * impossible to use aic79xx Rev B chip in 320 speeds. The following 300 * storage boxes have been reported to be buggy: 301 * EonStor 3U 16-Bay: U16U-G3A3 302 * EonStor 2U 12-Bay: U12U-G3A3 303 * SentinelRAID: 2500F R5 / R6 304 * SentinelRAID: 2500F R1 305 * SentinelRAID: 2500F/1500F 306 * SentinelRAID: 150F 307 * 308 * To get around this LSI bug, you can set your board to 160 mode 309 * or you can enable the SLOWCRC bit. 310 */ 311 uint32_t aic79xx_slowcrc; 312 313 /* 314 * Module information and settable options. 315 */ 316 static char *aic79xx = NULL; 317 318 MODULE_AUTHOR("Maintainer: Justin T. Gibbs <gibbs@scsiguy.com>"); 319 MODULE_DESCRIPTION("Adaptec Aic790X U320 SCSI Host Bus Adapter driver"); 320 MODULE_LICENSE("Dual BSD/GPL"); 321 MODULE_VERSION(AIC79XX_DRIVER_VERSION); 322 module_param(aic79xx, charp, 0444); 323 MODULE_PARM_DESC(aic79xx, 324 "period-delimited options string:\n" 325 " verbose Enable verbose/diagnostic logging\n" 326 " allow_memio Allow device registers to be memory mapped\n" 327 " debug Bitmask of debug values to enable\n" 328 " no_reset Supress initial bus resets\n" 329 " extended Enable extended geometry on all controllers\n" 330 " periodic_otag Send an ordered tagged transaction\n" 331 " periodically to prevent tag starvation.\n" 332 " This may be required by some older disk\n" 333 " or drives/RAID arrays.\n" 334 " tag_info:<tag_str> Set per-target tag depth\n" 335 " global_tag_depth:<int> Global tag depth for all targets on all buses\n" 336 " slewrate:<slewrate_list>Set the signal slew rate (0-15).\n" 337 " precomp:<pcomp_list> Set the signal precompensation (0-7).\n" 338 " amplitude:<int> Set the signal amplitude (0-7).\n" 339 " seltime:<int> Selection Timeout:\n" 340 " (0/256ms,1/128ms,2/64ms,3/32ms)\n" 341 " slowcrc Turn on the SLOWCRC bit (Rev B only)\n" 342 "\n" 343 " Sample /etc/modprobe.conf line:\n" 344 " Enable verbose logging\n" 345 " Set tag depth on Controller 2/Target 2 to 10 tags\n" 346 " Shorten the selection timeout to 128ms\n" 347 "\n" 348 " options aic79xx 'aic79xx=verbose.tag_info:{{}.{}.{..10}}.seltime:1'\n" 349 ); 350 351 static void ahd_linux_handle_scsi_status(struct ahd_softc *, 352 struct scsi_device *, 353 struct scb *); 354 static void ahd_linux_queue_cmd_complete(struct ahd_softc *ahd, 355 struct scsi_cmnd *cmd); 356 static int ahd_linux_queue_abort_cmd(struct scsi_cmnd *cmd); 357 static void ahd_linux_initialize_scsi_bus(struct ahd_softc *ahd); 358 static u_int ahd_linux_user_tagdepth(struct ahd_softc *ahd, 359 struct ahd_devinfo *devinfo); 360 static void ahd_linux_device_queue_depth(struct scsi_device *); 361 static int ahd_linux_run_command(struct ahd_softc*, 362 struct ahd_linux_device *, 363 struct scsi_cmnd *); 364 static void ahd_linux_setup_tag_info_global(char *p); 365 static int aic79xx_setup(char *c); 366 static void ahd_freeze_simq(struct ahd_softc *ahd); 367 static void ahd_release_simq(struct ahd_softc *ahd); 368 369 static int ahd_linux_unit; 370 371 372 /****************************** Inlines ***************************************/ 373 static __inline void ahd_linux_unmap_scb(struct ahd_softc*, struct scb*); 374 375 static __inline void 376 ahd_linux_unmap_scb(struct ahd_softc *ahd, struct scb *scb) 377 { 378 struct scsi_cmnd *cmd; 379 int direction; 380 381 cmd = scb->io_ctx; 382 direction = cmd->sc_data_direction; 383 ahd_sync_sglist(ahd, scb, BUS_DMASYNC_POSTWRITE); 384 if (cmd->use_sg != 0) { 385 struct scatterlist *sg; 386 387 sg = (struct scatterlist *)cmd->request_buffer; 388 pci_unmap_sg(ahd->dev_softc, sg, cmd->use_sg, direction); 389 } else if (cmd->request_bufflen != 0) { 390 pci_unmap_single(ahd->dev_softc, 391 scb->platform_data->buf_busaddr, 392 cmd->request_bufflen, direction); 393 } 394 } 395 396 /******************************** Macros **************************************/ 397 #define BUILD_SCSIID(ahd, cmd) \ 398 (((scmd_id(cmd) << TID_SHIFT) & TID) | (ahd)->our_id) 399 400 /* 401 * Return a string describing the driver. 402 */ 403 static const char * 404 ahd_linux_info(struct Scsi_Host *host) 405 { 406 static char buffer[512]; 407 char ahd_info[256]; 408 char *bp; 409 struct ahd_softc *ahd; 410 411 bp = &buffer[0]; 412 ahd = *(struct ahd_softc **)host->hostdata; 413 memset(bp, 0, sizeof(buffer)); 414 strcpy(bp, "Adaptec AIC79XX PCI-X SCSI HBA DRIVER, Rev "); 415 strcat(bp, AIC79XX_DRIVER_VERSION); 416 strcat(bp, "\n"); 417 strcat(bp, " <"); 418 strcat(bp, ahd->description); 419 strcat(bp, ">\n"); 420 strcat(bp, " "); 421 ahd_controller_info(ahd, ahd_info); 422 strcat(bp, ahd_info); 423 424 return (bp); 425 } 426 427 /* 428 * Queue an SCB to the controller. 429 */ 430 static int 431 ahd_linux_queue(struct scsi_cmnd * cmd, void (*scsi_done) (struct scsi_cmnd *)) 432 { 433 struct ahd_softc *ahd; 434 struct ahd_linux_device *dev = scsi_transport_device_data(cmd->device); 435 int rtn = SCSI_MLQUEUE_HOST_BUSY; 436 437 ahd = *(struct ahd_softc **)cmd->device->host->hostdata; 438 439 cmd->scsi_done = scsi_done; 440 cmd->result = CAM_REQ_INPROG << 16; 441 rtn = ahd_linux_run_command(ahd, dev, cmd); 442 443 return rtn; 444 } 445 446 static inline struct scsi_target ** 447 ahd_linux_target_in_softc(struct scsi_target *starget) 448 { 449 struct ahd_softc *ahd = 450 *((struct ahd_softc **)dev_to_shost(&starget->dev)->hostdata); 451 unsigned int target_offset; 452 453 target_offset = starget->id; 454 if (starget->channel != 0) 455 target_offset += 8; 456 457 return &ahd->platform_data->starget[target_offset]; 458 } 459 460 static int 461 ahd_linux_target_alloc(struct scsi_target *starget) 462 { 463 struct ahd_softc *ahd = 464 *((struct ahd_softc **)dev_to_shost(&starget->dev)->hostdata); 465 struct seeprom_config *sc = ahd->seep_config; 466 unsigned long flags; 467 struct scsi_target **ahd_targp = ahd_linux_target_in_softc(starget); 468 struct ahd_devinfo devinfo; 469 struct ahd_initiator_tinfo *tinfo; 470 struct ahd_tmode_tstate *tstate; 471 char channel = starget->channel + 'A'; 472 473 ahd_lock(ahd, &flags); 474 475 BUG_ON(*ahd_targp != NULL); 476 477 *ahd_targp = starget; 478 479 if (sc) { 480 int flags = sc->device_flags[starget->id]; 481 482 tinfo = ahd_fetch_transinfo(ahd, 'A', ahd->our_id, 483 starget->id, &tstate); 484 485 if ((flags & CFPACKETIZED) == 0) { 486 /* Do not negotiate packetized transfers */ 487 spi_rd_strm(starget) = 0; 488 spi_pcomp_en(starget) = 0; 489 spi_rti(starget) = 0; 490 spi_wr_flow(starget) = 0; 491 spi_hold_mcs(starget) = 0; 492 } else { 493 if ((ahd->features & AHD_RTI) == 0) 494 spi_rti(starget) = 0; 495 } 496 497 if ((flags & CFQAS) == 0) 498 spi_qas(starget) = 0; 499 500 /* Transinfo values have been set to BIOS settings */ 501 spi_max_width(starget) = (flags & CFWIDEB) ? 1 : 0; 502 spi_min_period(starget) = tinfo->user.period; 503 spi_max_offset(starget) = tinfo->user.offset; 504 } 505 506 tinfo = ahd_fetch_transinfo(ahd, channel, ahd->our_id, 507 starget->id, &tstate); 508 ahd_compile_devinfo(&devinfo, ahd->our_id, starget->id, 509 CAM_LUN_WILDCARD, channel, 510 ROLE_INITIATOR); 511 ahd_set_syncrate(ahd, &devinfo, 0, 0, 0, 512 AHD_TRANS_GOAL, /*paused*/FALSE); 513 ahd_set_width(ahd, &devinfo, MSG_EXT_WDTR_BUS_8_BIT, 514 AHD_TRANS_GOAL, /*paused*/FALSE); 515 ahd_unlock(ahd, &flags); 516 517 return 0; 518 } 519 520 static void 521 ahd_linux_target_destroy(struct scsi_target *starget) 522 { 523 struct scsi_target **ahd_targp = ahd_linux_target_in_softc(starget); 524 525 *ahd_targp = NULL; 526 } 527 528 static int 529 ahd_linux_slave_alloc(struct scsi_device *sdev) 530 { 531 struct ahd_softc *ahd = 532 *((struct ahd_softc **)sdev->host->hostdata); 533 struct ahd_linux_device *dev; 534 535 if (bootverbose) 536 printf("%s: Slave Alloc %d\n", ahd_name(ahd), sdev->id); 537 538 dev = scsi_transport_device_data(sdev); 539 memset(dev, 0, sizeof(*dev)); 540 541 /* 542 * We start out life using untagged 543 * transactions of which we allow one. 544 */ 545 dev->openings = 1; 546 547 /* 548 * Set maxtags to 0. This will be changed if we 549 * later determine that we are dealing with 550 * a tagged queuing capable device. 551 */ 552 dev->maxtags = 0; 553 554 return (0); 555 } 556 557 static int 558 ahd_linux_slave_configure(struct scsi_device *sdev) 559 { 560 struct ahd_softc *ahd; 561 562 ahd = *((struct ahd_softc **)sdev->host->hostdata); 563 if (bootverbose) 564 sdev_printk(KERN_INFO, sdev, "Slave Configure\n"); 565 566 ahd_linux_device_queue_depth(sdev); 567 568 /* Initial Domain Validation */ 569 if (!spi_initial_dv(sdev->sdev_target)) 570 spi_dv_device(sdev); 571 572 return 0; 573 } 574 575 #if defined(__i386__) 576 /* 577 * Return the disk geometry for the given SCSI device. 578 */ 579 static int 580 ahd_linux_biosparam(struct scsi_device *sdev, struct block_device *bdev, 581 sector_t capacity, int geom[]) 582 { 583 uint8_t *bh; 584 int heads; 585 int sectors; 586 int cylinders; 587 int ret; 588 int extended; 589 struct ahd_softc *ahd; 590 591 ahd = *((struct ahd_softc **)sdev->host->hostdata); 592 593 bh = scsi_bios_ptable(bdev); 594 if (bh) { 595 ret = scsi_partsize(bh, capacity, 596 &geom[2], &geom[0], &geom[1]); 597 kfree(bh); 598 if (ret != -1) 599 return (ret); 600 } 601 heads = 64; 602 sectors = 32; 603 cylinders = aic_sector_div(capacity, heads, sectors); 604 605 if (aic79xx_extended != 0) 606 extended = 1; 607 else 608 extended = (ahd->flags & AHD_EXTENDED_TRANS_A) != 0; 609 if (extended && cylinders >= 1024) { 610 heads = 255; 611 sectors = 63; 612 cylinders = aic_sector_div(capacity, heads, sectors); 613 } 614 geom[0] = heads; 615 geom[1] = sectors; 616 geom[2] = cylinders; 617 return (0); 618 } 619 #endif 620 621 /* 622 * Abort the current SCSI command(s). 623 */ 624 static int 625 ahd_linux_abort(struct scsi_cmnd *cmd) 626 { 627 int error; 628 629 error = ahd_linux_queue_abort_cmd(cmd); 630 631 return error; 632 } 633 634 /* 635 * Attempt to send a target reset message to the device that timed out. 636 */ 637 static int 638 ahd_linux_dev_reset(struct scsi_cmnd *cmd) 639 { 640 struct ahd_softc *ahd; 641 struct ahd_linux_device *dev; 642 struct scb *reset_scb; 643 u_int cdb_byte; 644 int retval = SUCCESS; 645 int paused; 646 int wait; 647 struct ahd_initiator_tinfo *tinfo; 648 struct ahd_tmode_tstate *tstate; 649 unsigned long flags; 650 DECLARE_COMPLETION_ONSTACK(done); 651 652 reset_scb = NULL; 653 paused = FALSE; 654 wait = FALSE; 655 ahd = *(struct ahd_softc **)cmd->device->host->hostdata; 656 657 scmd_printk(KERN_INFO, cmd, 658 "Attempting to queue a TARGET RESET message:"); 659 660 printf("CDB:"); 661 for (cdb_byte = 0; cdb_byte < cmd->cmd_len; cdb_byte++) 662 printf(" 0x%x", cmd->cmnd[cdb_byte]); 663 printf("\n"); 664 665 /* 666 * Determine if we currently own this command. 667 */ 668 dev = scsi_transport_device_data(cmd->device); 669 670 if (dev == NULL) { 671 /* 672 * No target device for this command exists, 673 * so we must not still own the command. 674 */ 675 scmd_printk(KERN_INFO, cmd, "Is not an active device\n"); 676 return SUCCESS; 677 } 678 679 /* 680 * Generate us a new SCB 681 */ 682 reset_scb = ahd_get_scb(ahd, AHD_NEVER_COL_IDX); 683 if (!reset_scb) { 684 scmd_printk(KERN_INFO, cmd, "No SCB available\n"); 685 return FAILED; 686 } 687 688 tinfo = ahd_fetch_transinfo(ahd, 'A', ahd->our_id, 689 cmd->device->id, &tstate); 690 reset_scb->io_ctx = cmd; 691 reset_scb->platform_data->dev = dev; 692 reset_scb->sg_count = 0; 693 ahd_set_residual(reset_scb, 0); 694 ahd_set_sense_residual(reset_scb, 0); 695 reset_scb->platform_data->xfer_len = 0; 696 reset_scb->hscb->control = 0; 697 reset_scb->hscb->scsiid = BUILD_SCSIID(ahd,cmd); 698 reset_scb->hscb->lun = cmd->device->lun; 699 reset_scb->hscb->cdb_len = 0; 700 reset_scb->hscb->task_management = SIU_TASKMGMT_LUN_RESET; 701 reset_scb->flags |= SCB_DEVICE_RESET|SCB_RECOVERY_SCB|SCB_ACTIVE; 702 if ((tinfo->curr.ppr_options & MSG_EXT_PPR_IU_REQ) != 0) { 703 reset_scb->flags |= SCB_PACKETIZED; 704 } else { 705 reset_scb->hscb->control |= MK_MESSAGE; 706 } 707 dev->openings--; 708 dev->active++; 709 dev->commands_issued++; 710 711 ahd_lock(ahd, &flags); 712 713 LIST_INSERT_HEAD(&ahd->pending_scbs, reset_scb, pending_links); 714 ahd_queue_scb(ahd, reset_scb); 715 716 ahd->platform_data->eh_done = &done; 717 ahd_unlock(ahd, &flags); 718 719 printf("%s: Device reset code sleeping\n", ahd_name(ahd)); 720 if (!wait_for_completion_timeout(&done, 5 * HZ)) { 721 ahd_lock(ahd, &flags); 722 ahd->platform_data->eh_done = NULL; 723 ahd_unlock(ahd, &flags); 724 printf("%s: Device reset timer expired (active %d)\n", 725 ahd_name(ahd), dev->active); 726 retval = FAILED; 727 } 728 printf("%s: Device reset returning 0x%x\n", ahd_name(ahd), retval); 729 730 return (retval); 731 } 732 733 /* 734 * Reset the SCSI bus. 735 */ 736 static int 737 ahd_linux_bus_reset(struct scsi_cmnd *cmd) 738 { 739 struct ahd_softc *ahd; 740 int found; 741 unsigned long flags; 742 743 ahd = *(struct ahd_softc **)cmd->device->host->hostdata; 744 #ifdef AHD_DEBUG 745 if ((ahd_debug & AHD_SHOW_RECOVERY) != 0) 746 printf("%s: Bus reset called for cmd %p\n", 747 ahd_name(ahd), cmd); 748 #endif 749 ahd_lock(ahd, &flags); 750 751 found = ahd_reset_channel(ahd, scmd_channel(cmd) + 'A', 752 /*initiate reset*/TRUE); 753 ahd_unlock(ahd, &flags); 754 755 if (bootverbose) 756 printf("%s: SCSI bus reset delivered. " 757 "%d SCBs aborted.\n", ahd_name(ahd), found); 758 759 return (SUCCESS); 760 } 761 762 struct scsi_host_template aic79xx_driver_template = { 763 .module = THIS_MODULE, 764 .name = "aic79xx", 765 .proc_name = "aic79xx", 766 .proc_info = ahd_linux_proc_info, 767 .info = ahd_linux_info, 768 .queuecommand = ahd_linux_queue, 769 .eh_abort_handler = ahd_linux_abort, 770 .eh_device_reset_handler = ahd_linux_dev_reset, 771 .eh_bus_reset_handler = ahd_linux_bus_reset, 772 #if defined(__i386__) 773 .bios_param = ahd_linux_biosparam, 774 #endif 775 .can_queue = AHD_MAX_QUEUE, 776 .this_id = -1, 777 .max_sectors = 8192, 778 .cmd_per_lun = 2, 779 .use_clustering = ENABLE_CLUSTERING, 780 .slave_alloc = ahd_linux_slave_alloc, 781 .slave_configure = ahd_linux_slave_configure, 782 .target_alloc = ahd_linux_target_alloc, 783 .target_destroy = ahd_linux_target_destroy, 784 }; 785 786 /******************************** Bus DMA *************************************/ 787 int 788 ahd_dma_tag_create(struct ahd_softc *ahd, bus_dma_tag_t parent, 789 bus_size_t alignment, bus_size_t boundary, 790 dma_addr_t lowaddr, dma_addr_t highaddr, 791 bus_dma_filter_t *filter, void *filterarg, 792 bus_size_t maxsize, int nsegments, 793 bus_size_t maxsegsz, int flags, bus_dma_tag_t *ret_tag) 794 { 795 bus_dma_tag_t dmat; 796 797 dmat = malloc(sizeof(*dmat), M_DEVBUF, M_NOWAIT); 798 if (dmat == NULL) 799 return (ENOMEM); 800 801 /* 802 * Linux is very simplistic about DMA memory. For now don't 803 * maintain all specification information. Once Linux supplies 804 * better facilities for doing these operations, or the 805 * needs of this particular driver change, we might need to do 806 * more here. 807 */ 808 dmat->alignment = alignment; 809 dmat->boundary = boundary; 810 dmat->maxsize = maxsize; 811 *ret_tag = dmat; 812 return (0); 813 } 814 815 void 816 ahd_dma_tag_destroy(struct ahd_softc *ahd, bus_dma_tag_t dmat) 817 { 818 free(dmat, M_DEVBUF); 819 } 820 821 int 822 ahd_dmamem_alloc(struct ahd_softc *ahd, bus_dma_tag_t dmat, void** vaddr, 823 int flags, bus_dmamap_t *mapp) 824 { 825 *vaddr = pci_alloc_consistent(ahd->dev_softc, 826 dmat->maxsize, mapp); 827 if (*vaddr == NULL) 828 return (ENOMEM); 829 return(0); 830 } 831 832 void 833 ahd_dmamem_free(struct ahd_softc *ahd, bus_dma_tag_t dmat, 834 void* vaddr, bus_dmamap_t map) 835 { 836 pci_free_consistent(ahd->dev_softc, dmat->maxsize, 837 vaddr, map); 838 } 839 840 int 841 ahd_dmamap_load(struct ahd_softc *ahd, bus_dma_tag_t dmat, bus_dmamap_t map, 842 void *buf, bus_size_t buflen, bus_dmamap_callback_t *cb, 843 void *cb_arg, int flags) 844 { 845 /* 846 * Assume for now that this will only be used during 847 * initialization and not for per-transaction buffer mapping. 848 */ 849 bus_dma_segment_t stack_sg; 850 851 stack_sg.ds_addr = map; 852 stack_sg.ds_len = dmat->maxsize; 853 cb(cb_arg, &stack_sg, /*nseg*/1, /*error*/0); 854 return (0); 855 } 856 857 void 858 ahd_dmamap_destroy(struct ahd_softc *ahd, bus_dma_tag_t dmat, bus_dmamap_t map) 859 { 860 } 861 862 int 863 ahd_dmamap_unload(struct ahd_softc *ahd, bus_dma_tag_t dmat, bus_dmamap_t map) 864 { 865 /* Nothing to do */ 866 return (0); 867 } 868 869 /********************* Platform Dependent Functions ***************************/ 870 static void 871 ahd_linux_setup_iocell_info(u_long index, int instance, int targ, int32_t value) 872 { 873 874 if ((instance >= 0) 875 && (instance < ARRAY_SIZE(aic79xx_iocell_info))) { 876 uint8_t *iocell_info; 877 878 iocell_info = (uint8_t*)&aic79xx_iocell_info[instance]; 879 iocell_info[index] = value & 0xFFFF; 880 if (bootverbose) 881 printf("iocell[%d:%ld] = %d\n", instance, index, value); 882 } 883 } 884 885 static void 886 ahd_linux_setup_tag_info_global(char *p) 887 { 888 int tags, i, j; 889 890 tags = simple_strtoul(p + 1, NULL, 0) & 0xff; 891 printf("Setting Global Tags= %d\n", tags); 892 893 for (i = 0; i < ARRAY_SIZE(aic79xx_tag_info); i++) { 894 for (j = 0; j < AHD_NUM_TARGETS; j++) { 895 aic79xx_tag_info[i].tag_commands[j] = tags; 896 } 897 } 898 } 899 900 static void 901 ahd_linux_setup_tag_info(u_long arg, int instance, int targ, int32_t value) 902 { 903 904 if ((instance >= 0) && (targ >= 0) 905 && (instance < ARRAY_SIZE(aic79xx_tag_info)) 906 && (targ < AHD_NUM_TARGETS)) { 907 aic79xx_tag_info[instance].tag_commands[targ] = value & 0x1FF; 908 if (bootverbose) 909 printf("tag_info[%d:%d] = %d\n", instance, targ, value); 910 } 911 } 912 913 static char * 914 ahd_parse_brace_option(char *opt_name, char *opt_arg, char *end, int depth, 915 void (*callback)(u_long, int, int, int32_t), 916 u_long callback_arg) 917 { 918 char *tok_end; 919 char *tok_end2; 920 int i; 921 int instance; 922 int targ; 923 int done; 924 char tok_list[] = {'.', ',', '{', '}', '\0'}; 925 926 /* All options use a ':' name/arg separator */ 927 if (*opt_arg != ':') 928 return (opt_arg); 929 opt_arg++; 930 instance = -1; 931 targ = -1; 932 done = FALSE; 933 /* 934 * Restore separator that may be in 935 * the middle of our option argument. 936 */ 937 tok_end = strchr(opt_arg, '\0'); 938 if (tok_end < end) 939 *tok_end = ','; 940 while (!done) { 941 switch (*opt_arg) { 942 case '{': 943 if (instance == -1) { 944 instance = 0; 945 } else { 946 if (depth > 1) { 947 if (targ == -1) 948 targ = 0; 949 } else { 950 printf("Malformed Option %s\n", 951 opt_name); 952 done = TRUE; 953 } 954 } 955 opt_arg++; 956 break; 957 case '}': 958 if (targ != -1) 959 targ = -1; 960 else if (instance != -1) 961 instance = -1; 962 opt_arg++; 963 break; 964 case ',': 965 case '.': 966 if (instance == -1) 967 done = TRUE; 968 else if (targ >= 0) 969 targ++; 970 else if (instance >= 0) 971 instance++; 972 opt_arg++; 973 break; 974 case '\0': 975 done = TRUE; 976 break; 977 default: 978 tok_end = end; 979 for (i = 0; tok_list[i]; i++) { 980 tok_end2 = strchr(opt_arg, tok_list[i]); 981 if ((tok_end2) && (tok_end2 < tok_end)) 982 tok_end = tok_end2; 983 } 984 callback(callback_arg, instance, targ, 985 simple_strtol(opt_arg, NULL, 0)); 986 opt_arg = tok_end; 987 break; 988 } 989 } 990 return (opt_arg); 991 } 992 993 /* 994 * Handle Linux boot parameters. This routine allows for assigning a value 995 * to a parameter with a ':' between the parameter and the value. 996 * ie. aic79xx=stpwlev:1,extended 997 */ 998 static int 999 aic79xx_setup(char *s) 1000 { 1001 int i, n; 1002 char *p; 1003 char *end; 1004 1005 static struct { 1006 const char *name; 1007 uint32_t *flag; 1008 } options[] = { 1009 { "extended", &aic79xx_extended }, 1010 { "no_reset", &aic79xx_no_reset }, 1011 { "verbose", &aic79xx_verbose }, 1012 { "allow_memio", &aic79xx_allow_memio}, 1013 #ifdef AHD_DEBUG 1014 { "debug", &ahd_debug }, 1015 #endif 1016 { "periodic_otag", &aic79xx_periodic_otag }, 1017 { "pci_parity", &aic79xx_pci_parity }, 1018 { "seltime", &aic79xx_seltime }, 1019 { "tag_info", NULL }, 1020 { "global_tag_depth", NULL}, 1021 { "slewrate", NULL }, 1022 { "precomp", NULL }, 1023 { "amplitude", NULL }, 1024 { "slowcrc", &aic79xx_slowcrc }, 1025 }; 1026 1027 end = strchr(s, '\0'); 1028 1029 /* 1030 * XXX ia64 gcc isn't smart enough to know that ARRAY_SIZE 1031 * will never be 0 in this case. 1032 */ 1033 n = 0; 1034 1035 while ((p = strsep(&s, ",.")) != NULL) { 1036 if (*p == '\0') 1037 continue; 1038 for (i = 0; i < ARRAY_SIZE(options); i++) { 1039 1040 n = strlen(options[i].name); 1041 if (strncmp(options[i].name, p, n) == 0) 1042 break; 1043 } 1044 if (i == ARRAY_SIZE(options)) 1045 continue; 1046 1047 if (strncmp(p, "global_tag_depth", n) == 0) { 1048 ahd_linux_setup_tag_info_global(p + n); 1049 } else if (strncmp(p, "tag_info", n) == 0) { 1050 s = ahd_parse_brace_option("tag_info", p + n, end, 1051 2, ahd_linux_setup_tag_info, 0); 1052 } else if (strncmp(p, "slewrate", n) == 0) { 1053 s = ahd_parse_brace_option("slewrate", 1054 p + n, end, 1, ahd_linux_setup_iocell_info, 1055 AIC79XX_SLEWRATE_INDEX); 1056 } else if (strncmp(p, "precomp", n) == 0) { 1057 s = ahd_parse_brace_option("precomp", 1058 p + n, end, 1, ahd_linux_setup_iocell_info, 1059 AIC79XX_PRECOMP_INDEX); 1060 } else if (strncmp(p, "amplitude", n) == 0) { 1061 s = ahd_parse_brace_option("amplitude", 1062 p + n, end, 1, ahd_linux_setup_iocell_info, 1063 AIC79XX_AMPLITUDE_INDEX); 1064 } else if (p[n] == ':') { 1065 *(options[i].flag) = simple_strtoul(p + n + 1, NULL, 0); 1066 } else if (!strncmp(p, "verbose", n)) { 1067 *(options[i].flag) = 1; 1068 } else { 1069 *(options[i].flag) ^= 0xFFFFFFFF; 1070 } 1071 } 1072 return 1; 1073 } 1074 1075 __setup("aic79xx=", aic79xx_setup); 1076 1077 uint32_t aic79xx_verbose; 1078 1079 int 1080 ahd_linux_register_host(struct ahd_softc *ahd, struct scsi_host_template *template) 1081 { 1082 char buf[80]; 1083 struct Scsi_Host *host; 1084 char *new_name; 1085 u_long s; 1086 int retval; 1087 1088 template->name = ahd->description; 1089 host = scsi_host_alloc(template, sizeof(struct ahd_softc *)); 1090 if (host == NULL) 1091 return (ENOMEM); 1092 1093 *((struct ahd_softc **)host->hostdata) = ahd; 1094 ahd->platform_data->host = host; 1095 host->can_queue = AHD_MAX_QUEUE; 1096 host->cmd_per_lun = 2; 1097 host->sg_tablesize = AHD_NSEG; 1098 host->this_id = ahd->our_id; 1099 host->irq = ahd->platform_data->irq; 1100 host->max_id = (ahd->features & AHD_WIDE) ? 16 : 8; 1101 host->max_lun = AHD_NUM_LUNS; 1102 host->max_channel = 0; 1103 host->sg_tablesize = AHD_NSEG; 1104 ahd_lock(ahd, &s); 1105 ahd_set_unit(ahd, ahd_linux_unit++); 1106 ahd_unlock(ahd, &s); 1107 sprintf(buf, "scsi%d", host->host_no); 1108 new_name = malloc(strlen(buf) + 1, M_DEVBUF, M_NOWAIT); 1109 if (new_name != NULL) { 1110 strcpy(new_name, buf); 1111 ahd_set_name(ahd, new_name); 1112 } 1113 host->unique_id = ahd->unit; 1114 ahd_linux_initialize_scsi_bus(ahd); 1115 ahd_intr_enable(ahd, TRUE); 1116 1117 host->transportt = ahd_linux_transport_template; 1118 1119 retval = scsi_add_host(host, &ahd->dev_softc->dev); 1120 if (retval) { 1121 printk(KERN_WARNING "aic79xx: scsi_add_host failed\n"); 1122 scsi_host_put(host); 1123 return retval; 1124 } 1125 1126 scsi_scan_host(host); 1127 return 0; 1128 } 1129 1130 /* 1131 * Place the SCSI bus into a known state by either resetting it, 1132 * or forcing transfer negotiations on the next command to any 1133 * target. 1134 */ 1135 static void 1136 ahd_linux_initialize_scsi_bus(struct ahd_softc *ahd) 1137 { 1138 u_int target_id; 1139 u_int numtarg; 1140 unsigned long s; 1141 1142 target_id = 0; 1143 numtarg = 0; 1144 1145 if (aic79xx_no_reset != 0) 1146 ahd->flags &= ~AHD_RESET_BUS_A; 1147 1148 if ((ahd->flags & AHD_RESET_BUS_A) != 0) 1149 ahd_reset_channel(ahd, 'A', /*initiate_reset*/TRUE); 1150 else 1151 numtarg = (ahd->features & AHD_WIDE) ? 16 : 8; 1152 1153 ahd_lock(ahd, &s); 1154 1155 /* 1156 * Force negotiation to async for all targets that 1157 * will not see an initial bus reset. 1158 */ 1159 for (; target_id < numtarg; target_id++) { 1160 struct ahd_devinfo devinfo; 1161 struct ahd_initiator_tinfo *tinfo; 1162 struct ahd_tmode_tstate *tstate; 1163 1164 tinfo = ahd_fetch_transinfo(ahd, 'A', ahd->our_id, 1165 target_id, &tstate); 1166 ahd_compile_devinfo(&devinfo, ahd->our_id, target_id, 1167 CAM_LUN_WILDCARD, 'A', ROLE_INITIATOR); 1168 ahd_update_neg_request(ahd, &devinfo, tstate, 1169 tinfo, AHD_NEG_ALWAYS); 1170 } 1171 ahd_unlock(ahd, &s); 1172 /* Give the bus some time to recover */ 1173 if ((ahd->flags & AHD_RESET_BUS_A) != 0) { 1174 ahd_freeze_simq(ahd); 1175 msleep(AIC79XX_RESET_DELAY); 1176 ahd_release_simq(ahd); 1177 } 1178 } 1179 1180 int 1181 ahd_platform_alloc(struct ahd_softc *ahd, void *platform_arg) 1182 { 1183 ahd->platform_data = 1184 malloc(sizeof(struct ahd_platform_data), M_DEVBUF, M_NOWAIT); 1185 if (ahd->platform_data == NULL) 1186 return (ENOMEM); 1187 memset(ahd->platform_data, 0, sizeof(struct ahd_platform_data)); 1188 ahd->platform_data->irq = AHD_LINUX_NOIRQ; 1189 ahd_lockinit(ahd); 1190 ahd->seltime = (aic79xx_seltime & 0x3) << 4; 1191 return (0); 1192 } 1193 1194 void 1195 ahd_platform_free(struct ahd_softc *ahd) 1196 { 1197 struct scsi_target *starget; 1198 int i; 1199 1200 if (ahd->platform_data != NULL) { 1201 /* destroy all of the device and target objects */ 1202 for (i = 0; i < AHD_NUM_TARGETS; i++) { 1203 starget = ahd->platform_data->starget[i]; 1204 if (starget != NULL) { 1205 ahd->platform_data->starget[i] = NULL; 1206 } 1207 } 1208 1209 if (ahd->platform_data->irq != AHD_LINUX_NOIRQ) 1210 free_irq(ahd->platform_data->irq, ahd); 1211 if (ahd->tags[0] == BUS_SPACE_PIO 1212 && ahd->bshs[0].ioport != 0) 1213 release_region(ahd->bshs[0].ioport, 256); 1214 if (ahd->tags[1] == BUS_SPACE_PIO 1215 && ahd->bshs[1].ioport != 0) 1216 release_region(ahd->bshs[1].ioport, 256); 1217 if (ahd->tags[0] == BUS_SPACE_MEMIO 1218 && ahd->bshs[0].maddr != NULL) { 1219 iounmap(ahd->bshs[0].maddr); 1220 release_mem_region(ahd->platform_data->mem_busaddr, 1221 0x1000); 1222 } 1223 if (ahd->platform_data->host) 1224 scsi_host_put(ahd->platform_data->host); 1225 1226 free(ahd->platform_data, M_DEVBUF); 1227 } 1228 } 1229 1230 void 1231 ahd_platform_init(struct ahd_softc *ahd) 1232 { 1233 /* 1234 * Lookup and commit any modified IO Cell options. 1235 */ 1236 if (ahd->unit < ARRAY_SIZE(aic79xx_iocell_info)) { 1237 struct ahd_linux_iocell_opts *iocell_opts; 1238 1239 iocell_opts = &aic79xx_iocell_info[ahd->unit]; 1240 if (iocell_opts->precomp != AIC79XX_DEFAULT_PRECOMP) 1241 AHD_SET_PRECOMP(ahd, iocell_opts->precomp); 1242 if (iocell_opts->slewrate != AIC79XX_DEFAULT_SLEWRATE) 1243 AHD_SET_SLEWRATE(ahd, iocell_opts->slewrate); 1244 if (iocell_opts->amplitude != AIC79XX_DEFAULT_AMPLITUDE) 1245 AHD_SET_AMPLITUDE(ahd, iocell_opts->amplitude); 1246 } 1247 1248 } 1249 1250 void 1251 ahd_platform_freeze_devq(struct ahd_softc *ahd, struct scb *scb) 1252 { 1253 ahd_platform_abort_scbs(ahd, SCB_GET_TARGET(ahd, scb), 1254 SCB_GET_CHANNEL(ahd, scb), 1255 SCB_GET_LUN(scb), SCB_LIST_NULL, 1256 ROLE_UNKNOWN, CAM_REQUEUE_REQ); 1257 } 1258 1259 void 1260 ahd_platform_set_tags(struct ahd_softc *ahd, struct scsi_device *sdev, 1261 struct ahd_devinfo *devinfo, ahd_queue_alg alg) 1262 { 1263 struct ahd_linux_device *dev; 1264 int was_queuing; 1265 int now_queuing; 1266 1267 if (sdev == NULL) 1268 return; 1269 1270 dev = scsi_transport_device_data(sdev); 1271 1272 if (dev == NULL) 1273 return; 1274 was_queuing = dev->flags & (AHD_DEV_Q_BASIC|AHD_DEV_Q_TAGGED); 1275 switch (alg) { 1276 default: 1277 case AHD_QUEUE_NONE: 1278 now_queuing = 0; 1279 break; 1280 case AHD_QUEUE_BASIC: 1281 now_queuing = AHD_DEV_Q_BASIC; 1282 break; 1283 case AHD_QUEUE_TAGGED: 1284 now_queuing = AHD_DEV_Q_TAGGED; 1285 break; 1286 } 1287 if ((dev->flags & AHD_DEV_FREEZE_TIL_EMPTY) == 0 1288 && (was_queuing != now_queuing) 1289 && (dev->active != 0)) { 1290 dev->flags |= AHD_DEV_FREEZE_TIL_EMPTY; 1291 dev->qfrozen++; 1292 } 1293 1294 dev->flags &= ~(AHD_DEV_Q_BASIC|AHD_DEV_Q_TAGGED|AHD_DEV_PERIODIC_OTAG); 1295 if (now_queuing) { 1296 u_int usertags; 1297 1298 usertags = ahd_linux_user_tagdepth(ahd, devinfo); 1299 if (!was_queuing) { 1300 /* 1301 * Start out agressively and allow our 1302 * dynamic queue depth algorithm to take 1303 * care of the rest. 1304 */ 1305 dev->maxtags = usertags; 1306 dev->openings = dev->maxtags - dev->active; 1307 } 1308 if (dev->maxtags == 0) { 1309 /* 1310 * Queueing is disabled by the user. 1311 */ 1312 dev->openings = 1; 1313 } else if (alg == AHD_QUEUE_TAGGED) { 1314 dev->flags |= AHD_DEV_Q_TAGGED; 1315 if (aic79xx_periodic_otag != 0) 1316 dev->flags |= AHD_DEV_PERIODIC_OTAG; 1317 } else 1318 dev->flags |= AHD_DEV_Q_BASIC; 1319 } else { 1320 /* We can only have one opening. */ 1321 dev->maxtags = 0; 1322 dev->openings = 1 - dev->active; 1323 } 1324 1325 switch ((dev->flags & (AHD_DEV_Q_BASIC|AHD_DEV_Q_TAGGED))) { 1326 case AHD_DEV_Q_BASIC: 1327 scsi_set_tag_type(sdev, MSG_SIMPLE_TASK); 1328 scsi_activate_tcq(sdev, dev->openings + dev->active); 1329 break; 1330 case AHD_DEV_Q_TAGGED: 1331 scsi_set_tag_type(sdev, MSG_ORDERED_TASK); 1332 scsi_activate_tcq(sdev, dev->openings + dev->active); 1333 break; 1334 default: 1335 /* 1336 * We allow the OS to queue 2 untagged transactions to 1337 * us at any time even though we can only execute them 1338 * serially on the controller/device. This should 1339 * remove some latency. 1340 */ 1341 scsi_deactivate_tcq(sdev, 1); 1342 break; 1343 } 1344 } 1345 1346 int 1347 ahd_platform_abort_scbs(struct ahd_softc *ahd, int target, char channel, 1348 int lun, u_int tag, role_t role, uint32_t status) 1349 { 1350 return 0; 1351 } 1352 1353 static u_int 1354 ahd_linux_user_tagdepth(struct ahd_softc *ahd, struct ahd_devinfo *devinfo) 1355 { 1356 static int warned_user; 1357 u_int tags; 1358 1359 tags = 0; 1360 if ((ahd->user_discenable & devinfo->target_mask) != 0) { 1361 if (ahd->unit >= ARRAY_SIZE(aic79xx_tag_info)) { 1362 1363 if (warned_user == 0) { 1364 printf(KERN_WARNING 1365 "aic79xx: WARNING: Insufficient tag_info instances\n" 1366 "aic79xx: for installed controllers. Using defaults\n" 1367 "aic79xx: Please update the aic79xx_tag_info array in\n" 1368 "aic79xx: the aic79xx_osm.c source file.\n"); 1369 warned_user++; 1370 } 1371 tags = AHD_MAX_QUEUE; 1372 } else { 1373 adapter_tag_info_t *tag_info; 1374 1375 tag_info = &aic79xx_tag_info[ahd->unit]; 1376 tags = tag_info->tag_commands[devinfo->target_offset]; 1377 if (tags > AHD_MAX_QUEUE) 1378 tags = AHD_MAX_QUEUE; 1379 } 1380 } 1381 return (tags); 1382 } 1383 1384 /* 1385 * Determines the queue depth for a given device. 1386 */ 1387 static void 1388 ahd_linux_device_queue_depth(struct scsi_device *sdev) 1389 { 1390 struct ahd_devinfo devinfo; 1391 u_int tags; 1392 struct ahd_softc *ahd = *((struct ahd_softc **)sdev->host->hostdata); 1393 1394 ahd_compile_devinfo(&devinfo, 1395 ahd->our_id, 1396 sdev->sdev_target->id, sdev->lun, 1397 sdev->sdev_target->channel == 0 ? 'A' : 'B', 1398 ROLE_INITIATOR); 1399 tags = ahd_linux_user_tagdepth(ahd, &devinfo); 1400 if (tags != 0 && sdev->tagged_supported != 0) { 1401 1402 ahd_platform_set_tags(ahd, sdev, &devinfo, AHD_QUEUE_TAGGED); 1403 ahd_send_async(ahd, devinfo.channel, devinfo.target, 1404 devinfo.lun, AC_TRANSFER_NEG); 1405 ahd_print_devinfo(ahd, &devinfo); 1406 printf("Tagged Queuing enabled. Depth %d\n", tags); 1407 } else { 1408 ahd_platform_set_tags(ahd, sdev, &devinfo, AHD_QUEUE_NONE); 1409 ahd_send_async(ahd, devinfo.channel, devinfo.target, 1410 devinfo.lun, AC_TRANSFER_NEG); 1411 } 1412 } 1413 1414 static int 1415 ahd_linux_run_command(struct ahd_softc *ahd, struct ahd_linux_device *dev, 1416 struct scsi_cmnd *cmd) 1417 { 1418 struct scb *scb; 1419 struct hardware_scb *hscb; 1420 struct ahd_initiator_tinfo *tinfo; 1421 struct ahd_tmode_tstate *tstate; 1422 u_int col_idx; 1423 uint16_t mask; 1424 unsigned long flags; 1425 1426 ahd_lock(ahd, &flags); 1427 1428 /* 1429 * Get an scb to use. 1430 */ 1431 tinfo = ahd_fetch_transinfo(ahd, 'A', ahd->our_id, 1432 cmd->device->id, &tstate); 1433 if ((dev->flags & (AHD_DEV_Q_TAGGED|AHD_DEV_Q_BASIC)) == 0 1434 || (tinfo->curr.ppr_options & MSG_EXT_PPR_IU_REQ) != 0) { 1435 col_idx = AHD_NEVER_COL_IDX; 1436 } else { 1437 col_idx = AHD_BUILD_COL_IDX(cmd->device->id, 1438 cmd->device->lun); 1439 } 1440 if ((scb = ahd_get_scb(ahd, col_idx)) == NULL) { 1441 ahd->flags |= AHD_RESOURCE_SHORTAGE; 1442 ahd_unlock(ahd, &flags); 1443 return SCSI_MLQUEUE_HOST_BUSY; 1444 } 1445 1446 scb->io_ctx = cmd; 1447 scb->platform_data->dev = dev; 1448 hscb = scb->hscb; 1449 cmd->host_scribble = (char *)scb; 1450 1451 /* 1452 * Fill out basics of the HSCB. 1453 */ 1454 hscb->control = 0; 1455 hscb->scsiid = BUILD_SCSIID(ahd, cmd); 1456 hscb->lun = cmd->device->lun; 1457 scb->hscb->task_management = 0; 1458 mask = SCB_GET_TARGET_MASK(ahd, scb); 1459 1460 if ((ahd->user_discenable & mask) != 0) 1461 hscb->control |= DISCENB; 1462 1463 if ((tinfo->curr.ppr_options & MSG_EXT_PPR_IU_REQ) != 0) 1464 scb->flags |= SCB_PACKETIZED; 1465 1466 if ((tstate->auto_negotiate & mask) != 0) { 1467 scb->flags |= SCB_AUTO_NEGOTIATE; 1468 scb->hscb->control |= MK_MESSAGE; 1469 } 1470 1471 if ((dev->flags & (AHD_DEV_Q_TAGGED|AHD_DEV_Q_BASIC)) != 0) { 1472 int msg_bytes; 1473 uint8_t tag_msgs[2]; 1474 1475 msg_bytes = scsi_populate_tag_msg(cmd, tag_msgs); 1476 if (msg_bytes && tag_msgs[0] != MSG_SIMPLE_TASK) { 1477 hscb->control |= tag_msgs[0]; 1478 if (tag_msgs[0] == MSG_ORDERED_TASK) 1479 dev->commands_since_idle_or_otag = 0; 1480 } else 1481 if (dev->commands_since_idle_or_otag == AHD_OTAG_THRESH 1482 && (dev->flags & AHD_DEV_Q_TAGGED) != 0) { 1483 hscb->control |= MSG_ORDERED_TASK; 1484 dev->commands_since_idle_or_otag = 0; 1485 } else { 1486 hscb->control |= MSG_SIMPLE_TASK; 1487 } 1488 } 1489 1490 hscb->cdb_len = cmd->cmd_len; 1491 memcpy(hscb->shared_data.idata.cdb, cmd->cmnd, hscb->cdb_len); 1492 1493 scb->platform_data->xfer_len = 0; 1494 ahd_set_residual(scb, 0); 1495 ahd_set_sense_residual(scb, 0); 1496 scb->sg_count = 0; 1497 if (cmd->use_sg != 0) { 1498 void *sg; 1499 struct scatterlist *cur_seg; 1500 u_int nseg; 1501 int dir; 1502 1503 cur_seg = (struct scatterlist *)cmd->request_buffer; 1504 dir = cmd->sc_data_direction; 1505 nseg = pci_map_sg(ahd->dev_softc, cur_seg, 1506 cmd->use_sg, dir); 1507 scb->platform_data->xfer_len = 0; 1508 for (sg = scb->sg_list; nseg > 0; nseg--, cur_seg++) { 1509 dma_addr_t addr; 1510 bus_size_t len; 1511 1512 addr = sg_dma_address(cur_seg); 1513 len = sg_dma_len(cur_seg); 1514 scb->platform_data->xfer_len += len; 1515 sg = ahd_sg_setup(ahd, scb, sg, addr, len, 1516 /*last*/nseg == 1); 1517 } 1518 } else if (cmd->request_bufflen != 0) { 1519 void *sg; 1520 dma_addr_t addr; 1521 int dir; 1522 1523 sg = scb->sg_list; 1524 dir = cmd->sc_data_direction; 1525 addr = pci_map_single(ahd->dev_softc, 1526 cmd->request_buffer, 1527 cmd->request_bufflen, dir); 1528 scb->platform_data->xfer_len = cmd->request_bufflen; 1529 scb->platform_data->buf_busaddr = addr; 1530 sg = ahd_sg_setup(ahd, scb, sg, addr, 1531 cmd->request_bufflen, /*last*/TRUE); 1532 } 1533 1534 LIST_INSERT_HEAD(&ahd->pending_scbs, scb, pending_links); 1535 dev->openings--; 1536 dev->active++; 1537 dev->commands_issued++; 1538 1539 if ((dev->flags & AHD_DEV_PERIODIC_OTAG) != 0) 1540 dev->commands_since_idle_or_otag++; 1541 scb->flags |= SCB_ACTIVE; 1542 ahd_queue_scb(ahd, scb); 1543 1544 ahd_unlock(ahd, &flags); 1545 1546 return 0; 1547 } 1548 1549 /* 1550 * SCSI controller interrupt handler. 1551 */ 1552 irqreturn_t 1553 ahd_linux_isr(int irq, void *dev_id) 1554 { 1555 struct ahd_softc *ahd; 1556 u_long flags; 1557 int ours; 1558 1559 ahd = (struct ahd_softc *) dev_id; 1560 ahd_lock(ahd, &flags); 1561 ours = ahd_intr(ahd); 1562 ahd_unlock(ahd, &flags); 1563 return IRQ_RETVAL(ours); 1564 } 1565 1566 void 1567 ahd_send_async(struct ahd_softc *ahd, char channel, 1568 u_int target, u_int lun, ac_code code) 1569 { 1570 switch (code) { 1571 case AC_TRANSFER_NEG: 1572 { 1573 char buf[80]; 1574 struct scsi_target *starget; 1575 struct info_str info; 1576 struct ahd_initiator_tinfo *tinfo; 1577 struct ahd_tmode_tstate *tstate; 1578 unsigned int target_ppr_options; 1579 1580 BUG_ON(target == CAM_TARGET_WILDCARD); 1581 1582 info.buffer = buf; 1583 info.length = sizeof(buf); 1584 info.offset = 0; 1585 info.pos = 0; 1586 tinfo = ahd_fetch_transinfo(ahd, channel, ahd->our_id, 1587 target, &tstate); 1588 1589 /* 1590 * Don't bother reporting results while 1591 * negotiations are still pending. 1592 */ 1593 if (tinfo->curr.period != tinfo->goal.period 1594 || tinfo->curr.width != tinfo->goal.width 1595 || tinfo->curr.offset != tinfo->goal.offset 1596 || tinfo->curr.ppr_options != tinfo->goal.ppr_options) 1597 if (bootverbose == 0) 1598 break; 1599 1600 /* 1601 * Don't bother reporting results that 1602 * are identical to those last reported. 1603 */ 1604 starget = ahd->platform_data->starget[target]; 1605 if (starget == NULL) 1606 break; 1607 1608 target_ppr_options = 1609 (spi_dt(starget) ? MSG_EXT_PPR_DT_REQ : 0) 1610 + (spi_qas(starget) ? MSG_EXT_PPR_QAS_REQ : 0) 1611 + (spi_iu(starget) ? MSG_EXT_PPR_IU_REQ : 0) 1612 + (spi_rd_strm(starget) ? MSG_EXT_PPR_RD_STRM : 0) 1613 + (spi_pcomp_en(starget) ? MSG_EXT_PPR_PCOMP_EN : 0) 1614 + (spi_rti(starget) ? MSG_EXT_PPR_RTI : 0) 1615 + (spi_wr_flow(starget) ? MSG_EXT_PPR_WR_FLOW : 0) 1616 + (spi_hold_mcs(starget) ? MSG_EXT_PPR_HOLD_MCS : 0); 1617 1618 if (tinfo->curr.period == spi_period(starget) 1619 && tinfo->curr.width == spi_width(starget) 1620 && tinfo->curr.offset == spi_offset(starget) 1621 && tinfo->curr.ppr_options == target_ppr_options) 1622 if (bootverbose == 0) 1623 break; 1624 1625 spi_period(starget) = tinfo->curr.period; 1626 spi_width(starget) = tinfo->curr.width; 1627 spi_offset(starget) = tinfo->curr.offset; 1628 spi_dt(starget) = tinfo->curr.ppr_options & MSG_EXT_PPR_DT_REQ ? 1 : 0; 1629 spi_qas(starget) = tinfo->curr.ppr_options & MSG_EXT_PPR_QAS_REQ ? 1 : 0; 1630 spi_iu(starget) = tinfo->curr.ppr_options & MSG_EXT_PPR_IU_REQ ? 1 : 0; 1631 spi_rd_strm(starget) = tinfo->curr.ppr_options & MSG_EXT_PPR_RD_STRM ? 1 : 0; 1632 spi_pcomp_en(starget) = tinfo->curr.ppr_options & MSG_EXT_PPR_PCOMP_EN ? 1 : 0; 1633 spi_rti(starget) = tinfo->curr.ppr_options & MSG_EXT_PPR_RTI ? 1 : 0; 1634 spi_wr_flow(starget) = tinfo->curr.ppr_options & MSG_EXT_PPR_WR_FLOW ? 1 : 0; 1635 spi_hold_mcs(starget) = tinfo->curr.ppr_options & MSG_EXT_PPR_HOLD_MCS ? 1 : 0; 1636 spi_display_xfer_agreement(starget); 1637 break; 1638 } 1639 case AC_SENT_BDR: 1640 { 1641 WARN_ON(lun != CAM_LUN_WILDCARD); 1642 scsi_report_device_reset(ahd->platform_data->host, 1643 channel - 'A', target); 1644 break; 1645 } 1646 case AC_BUS_RESET: 1647 if (ahd->platform_data->host != NULL) { 1648 scsi_report_bus_reset(ahd->platform_data->host, 1649 channel - 'A'); 1650 } 1651 break; 1652 default: 1653 panic("ahd_send_async: Unexpected async event"); 1654 } 1655 } 1656 1657 /* 1658 * Calls the higher level scsi done function and frees the scb. 1659 */ 1660 void 1661 ahd_done(struct ahd_softc *ahd, struct scb *scb) 1662 { 1663 struct scsi_cmnd *cmd; 1664 struct ahd_linux_device *dev; 1665 1666 if ((scb->flags & SCB_ACTIVE) == 0) { 1667 printf("SCB %d done'd twice\n", SCB_GET_TAG(scb)); 1668 ahd_dump_card_state(ahd); 1669 panic("Stopping for safety"); 1670 } 1671 LIST_REMOVE(scb, pending_links); 1672 cmd = scb->io_ctx; 1673 dev = scb->platform_data->dev; 1674 dev->active--; 1675 dev->openings++; 1676 if ((cmd->result & (CAM_DEV_QFRZN << 16)) != 0) { 1677 cmd->result &= ~(CAM_DEV_QFRZN << 16); 1678 dev->qfrozen--; 1679 } 1680 ahd_linux_unmap_scb(ahd, scb); 1681 1682 /* 1683 * Guard against stale sense data. 1684 * The Linux mid-layer assumes that sense 1685 * was retrieved anytime the first byte of 1686 * the sense buffer looks "sane". 1687 */ 1688 cmd->sense_buffer[0] = 0; 1689 if (ahd_get_transaction_status(scb) == CAM_REQ_INPROG) { 1690 uint32_t amount_xferred; 1691 1692 amount_xferred = 1693 ahd_get_transfer_length(scb) - ahd_get_residual(scb); 1694 if ((scb->flags & SCB_TRANSMISSION_ERROR) != 0) { 1695 #ifdef AHD_DEBUG 1696 if ((ahd_debug & AHD_SHOW_MISC) != 0) { 1697 ahd_print_path(ahd, scb); 1698 printf("Set CAM_UNCOR_PARITY\n"); 1699 } 1700 #endif 1701 ahd_set_transaction_status(scb, CAM_UNCOR_PARITY); 1702 #ifdef AHD_REPORT_UNDERFLOWS 1703 /* 1704 * This code is disabled by default as some 1705 * clients of the SCSI system do not properly 1706 * initialize the underflow parameter. This 1707 * results in spurious termination of commands 1708 * that complete as expected (e.g. underflow is 1709 * allowed as command can return variable amounts 1710 * of data. 1711 */ 1712 } else if (amount_xferred < scb->io_ctx->underflow) { 1713 u_int i; 1714 1715 ahd_print_path(ahd, scb); 1716 printf("CDB:"); 1717 for (i = 0; i < scb->io_ctx->cmd_len; i++) 1718 printf(" 0x%x", scb->io_ctx->cmnd[i]); 1719 printf("\n"); 1720 ahd_print_path(ahd, scb); 1721 printf("Saw underflow (%ld of %ld bytes). " 1722 "Treated as error\n", 1723 ahd_get_residual(scb), 1724 ahd_get_transfer_length(scb)); 1725 ahd_set_transaction_status(scb, CAM_DATA_RUN_ERR); 1726 #endif 1727 } else { 1728 ahd_set_transaction_status(scb, CAM_REQ_CMP); 1729 } 1730 } else if (ahd_get_transaction_status(scb) == CAM_SCSI_STATUS_ERROR) { 1731 ahd_linux_handle_scsi_status(ahd, cmd->device, scb); 1732 } 1733 1734 if (dev->openings == 1 1735 && ahd_get_transaction_status(scb) == CAM_REQ_CMP 1736 && ahd_get_scsi_status(scb) != SCSI_STATUS_QUEUE_FULL) 1737 dev->tag_success_count++; 1738 /* 1739 * Some devices deal with temporary internal resource 1740 * shortages by returning queue full. When the queue 1741 * full occurrs, we throttle back. Slowly try to get 1742 * back to our previous queue depth. 1743 */ 1744 if ((dev->openings + dev->active) < dev->maxtags 1745 && dev->tag_success_count > AHD_TAG_SUCCESS_INTERVAL) { 1746 dev->tag_success_count = 0; 1747 dev->openings++; 1748 } 1749 1750 if (dev->active == 0) 1751 dev->commands_since_idle_or_otag = 0; 1752 1753 if ((scb->flags & SCB_RECOVERY_SCB) != 0) { 1754 printf("Recovery SCB completes\n"); 1755 if (ahd_get_transaction_status(scb) == CAM_BDR_SENT 1756 || ahd_get_transaction_status(scb) == CAM_REQ_ABORTED) 1757 ahd_set_transaction_status(scb, CAM_CMD_TIMEOUT); 1758 1759 if (ahd->platform_data->eh_done) 1760 complete(ahd->platform_data->eh_done); 1761 } 1762 1763 ahd_free_scb(ahd, scb); 1764 ahd_linux_queue_cmd_complete(ahd, cmd); 1765 } 1766 1767 static void 1768 ahd_linux_handle_scsi_status(struct ahd_softc *ahd, 1769 struct scsi_device *sdev, struct scb *scb) 1770 { 1771 struct ahd_devinfo devinfo; 1772 struct ahd_linux_device *dev = scsi_transport_device_data(sdev); 1773 1774 ahd_compile_devinfo(&devinfo, 1775 ahd->our_id, 1776 sdev->sdev_target->id, sdev->lun, 1777 sdev->sdev_target->channel == 0 ? 'A' : 'B', 1778 ROLE_INITIATOR); 1779 1780 /* 1781 * We don't currently trust the mid-layer to 1782 * properly deal with queue full or busy. So, 1783 * when one occurs, we tell the mid-layer to 1784 * unconditionally requeue the command to us 1785 * so that we can retry it ourselves. We also 1786 * implement our own throttling mechanism so 1787 * we don't clobber the device with too many 1788 * commands. 1789 */ 1790 switch (ahd_get_scsi_status(scb)) { 1791 default: 1792 break; 1793 case SCSI_STATUS_CHECK_COND: 1794 case SCSI_STATUS_CMD_TERMINATED: 1795 { 1796 struct scsi_cmnd *cmd; 1797 1798 /* 1799 * Copy sense information to the OS's cmd 1800 * structure if it is available. 1801 */ 1802 cmd = scb->io_ctx; 1803 if ((scb->flags & (SCB_SENSE|SCB_PKT_SENSE)) != 0) { 1804 struct scsi_status_iu_header *siu; 1805 u_int sense_size; 1806 u_int sense_offset; 1807 1808 if (scb->flags & SCB_SENSE) { 1809 sense_size = min(sizeof(struct scsi_sense_data) 1810 - ahd_get_sense_residual(scb), 1811 (u_long)sizeof(cmd->sense_buffer)); 1812 sense_offset = 0; 1813 } else { 1814 /* 1815 * Copy only the sense data into the provided 1816 * buffer. 1817 */ 1818 siu = (struct scsi_status_iu_header *) 1819 scb->sense_data; 1820 sense_size = min_t(size_t, 1821 scsi_4btoul(siu->sense_length), 1822 sizeof(cmd->sense_buffer)); 1823 sense_offset = SIU_SENSE_OFFSET(siu); 1824 } 1825 1826 memset(cmd->sense_buffer, 0, sizeof(cmd->sense_buffer)); 1827 memcpy(cmd->sense_buffer, 1828 ahd_get_sense_buf(ahd, scb) 1829 + sense_offset, sense_size); 1830 cmd->result |= (DRIVER_SENSE << 24); 1831 1832 #ifdef AHD_DEBUG 1833 if (ahd_debug & AHD_SHOW_SENSE) { 1834 int i; 1835 1836 printf("Copied %d bytes of sense data at %d:", 1837 sense_size, sense_offset); 1838 for (i = 0; i < sense_size; i++) { 1839 if ((i & 0xF) == 0) 1840 printf("\n"); 1841 printf("0x%x ", cmd->sense_buffer[i]); 1842 } 1843 printf("\n"); 1844 } 1845 #endif 1846 } 1847 break; 1848 } 1849 case SCSI_STATUS_QUEUE_FULL: 1850 /* 1851 * By the time the core driver has returned this 1852 * command, all other commands that were queued 1853 * to us but not the device have been returned. 1854 * This ensures that dev->active is equal to 1855 * the number of commands actually queued to 1856 * the device. 1857 */ 1858 dev->tag_success_count = 0; 1859 if (dev->active != 0) { 1860 /* 1861 * Drop our opening count to the number 1862 * of commands currently outstanding. 1863 */ 1864 dev->openings = 0; 1865 #ifdef AHD_DEBUG 1866 if ((ahd_debug & AHD_SHOW_QFULL) != 0) { 1867 ahd_print_path(ahd, scb); 1868 printf("Dropping tag count to %d\n", 1869 dev->active); 1870 } 1871 #endif 1872 if (dev->active == dev->tags_on_last_queuefull) { 1873 1874 dev->last_queuefull_same_count++; 1875 /* 1876 * If we repeatedly see a queue full 1877 * at the same queue depth, this 1878 * device has a fixed number of tag 1879 * slots. Lock in this tag depth 1880 * so we stop seeing queue fulls from 1881 * this device. 1882 */ 1883 if (dev->last_queuefull_same_count 1884 == AHD_LOCK_TAGS_COUNT) { 1885 dev->maxtags = dev->active; 1886 ahd_print_path(ahd, scb); 1887 printf("Locking max tag count at %d\n", 1888 dev->active); 1889 } 1890 } else { 1891 dev->tags_on_last_queuefull = dev->active; 1892 dev->last_queuefull_same_count = 0; 1893 } 1894 ahd_set_transaction_status(scb, CAM_REQUEUE_REQ); 1895 ahd_set_scsi_status(scb, SCSI_STATUS_OK); 1896 ahd_platform_set_tags(ahd, sdev, &devinfo, 1897 (dev->flags & AHD_DEV_Q_BASIC) 1898 ? AHD_QUEUE_BASIC : AHD_QUEUE_TAGGED); 1899 break; 1900 } 1901 /* 1902 * Drop down to a single opening, and treat this 1903 * as if the target returned BUSY SCSI status. 1904 */ 1905 dev->openings = 1; 1906 ahd_platform_set_tags(ahd, sdev, &devinfo, 1907 (dev->flags & AHD_DEV_Q_BASIC) 1908 ? AHD_QUEUE_BASIC : AHD_QUEUE_TAGGED); 1909 ahd_set_scsi_status(scb, SCSI_STATUS_BUSY); 1910 } 1911 } 1912 1913 static void 1914 ahd_linux_queue_cmd_complete(struct ahd_softc *ahd, struct scsi_cmnd *cmd) 1915 { 1916 int status; 1917 int new_status = DID_OK; 1918 int do_fallback = 0; 1919 int scsi_status; 1920 1921 /* 1922 * Map CAM error codes into Linux Error codes. We 1923 * avoid the conversion so that the DV code has the 1924 * full error information available when making 1925 * state change decisions. 1926 */ 1927 1928 status = ahd_cmd_get_transaction_status(cmd); 1929 switch (status) { 1930 case CAM_REQ_INPROG: 1931 case CAM_REQ_CMP: 1932 new_status = DID_OK; 1933 break; 1934 case CAM_AUTOSENSE_FAIL: 1935 new_status = DID_ERROR; 1936 /* Fallthrough */ 1937 case CAM_SCSI_STATUS_ERROR: 1938 scsi_status = ahd_cmd_get_scsi_status(cmd); 1939 1940 switch(scsi_status) { 1941 case SCSI_STATUS_CMD_TERMINATED: 1942 case SCSI_STATUS_CHECK_COND: 1943 if ((cmd->result >> 24) != DRIVER_SENSE) { 1944 do_fallback = 1; 1945 } else { 1946 struct scsi_sense_data *sense; 1947 1948 sense = (struct scsi_sense_data *) 1949 &cmd->sense_buffer; 1950 if (sense->extra_len >= 5 && 1951 (sense->add_sense_code == 0x47 1952 || sense->add_sense_code == 0x48)) 1953 do_fallback = 1; 1954 } 1955 break; 1956 default: 1957 break; 1958 } 1959 break; 1960 case CAM_REQ_ABORTED: 1961 new_status = DID_ABORT; 1962 break; 1963 case CAM_BUSY: 1964 new_status = DID_BUS_BUSY; 1965 break; 1966 case CAM_REQ_INVALID: 1967 case CAM_PATH_INVALID: 1968 new_status = DID_BAD_TARGET; 1969 break; 1970 case CAM_SEL_TIMEOUT: 1971 new_status = DID_NO_CONNECT; 1972 break; 1973 case CAM_SCSI_BUS_RESET: 1974 case CAM_BDR_SENT: 1975 new_status = DID_RESET; 1976 break; 1977 case CAM_UNCOR_PARITY: 1978 new_status = DID_PARITY; 1979 do_fallback = 1; 1980 break; 1981 case CAM_CMD_TIMEOUT: 1982 new_status = DID_TIME_OUT; 1983 do_fallback = 1; 1984 break; 1985 case CAM_REQ_CMP_ERR: 1986 case CAM_UNEXP_BUSFREE: 1987 case CAM_DATA_RUN_ERR: 1988 new_status = DID_ERROR; 1989 do_fallback = 1; 1990 break; 1991 case CAM_UA_ABORT: 1992 case CAM_NO_HBA: 1993 case CAM_SEQUENCE_FAIL: 1994 case CAM_CCB_LEN_ERR: 1995 case CAM_PROVIDE_FAIL: 1996 case CAM_REQ_TERMIO: 1997 case CAM_UNREC_HBA_ERROR: 1998 case CAM_REQ_TOO_BIG: 1999 new_status = DID_ERROR; 2000 break; 2001 case CAM_REQUEUE_REQ: 2002 new_status = DID_REQUEUE; 2003 break; 2004 default: 2005 /* We should never get here */ 2006 new_status = DID_ERROR; 2007 break; 2008 } 2009 2010 if (do_fallback) { 2011 printf("%s: device overrun (status %x) on %d:%d:%d\n", 2012 ahd_name(ahd), status, cmd->device->channel, 2013 cmd->device->id, cmd->device->lun); 2014 } 2015 2016 ahd_cmd_set_transaction_status(cmd, new_status); 2017 2018 cmd->scsi_done(cmd); 2019 } 2020 2021 static void 2022 ahd_freeze_simq(struct ahd_softc *ahd) 2023 { 2024 scsi_block_requests(ahd->platform_data->host); 2025 } 2026 2027 static void 2028 ahd_release_simq(struct ahd_softc *ahd) 2029 { 2030 scsi_unblock_requests(ahd->platform_data->host); 2031 } 2032 2033 static int 2034 ahd_linux_queue_abort_cmd(struct scsi_cmnd *cmd) 2035 { 2036 struct ahd_softc *ahd; 2037 struct ahd_linux_device *dev; 2038 struct scb *pending_scb; 2039 u_int saved_scbptr; 2040 u_int active_scbptr; 2041 u_int last_phase; 2042 u_int saved_scsiid; 2043 u_int cdb_byte; 2044 int retval; 2045 int was_paused; 2046 int paused; 2047 int wait; 2048 int disconnected; 2049 ahd_mode_state saved_modes; 2050 unsigned long flags; 2051 2052 pending_scb = NULL; 2053 paused = FALSE; 2054 wait = FALSE; 2055 ahd = *(struct ahd_softc **)cmd->device->host->hostdata; 2056 2057 scmd_printk(KERN_INFO, cmd, 2058 "Attempting to queue an ABORT message:"); 2059 2060 printf("CDB:"); 2061 for (cdb_byte = 0; cdb_byte < cmd->cmd_len; cdb_byte++) 2062 printf(" 0x%x", cmd->cmnd[cdb_byte]); 2063 printf("\n"); 2064 2065 ahd_lock(ahd, &flags); 2066 2067 /* 2068 * First determine if we currently own this command. 2069 * Start by searching the device queue. If not found 2070 * there, check the pending_scb list. If not found 2071 * at all, and the system wanted us to just abort the 2072 * command, return success. 2073 */ 2074 dev = scsi_transport_device_data(cmd->device); 2075 2076 if (dev == NULL) { 2077 /* 2078 * No target device for this command exists, 2079 * so we must not still own the command. 2080 */ 2081 scmd_printk(KERN_INFO, cmd, "Is not an active device\n"); 2082 retval = SUCCESS; 2083 goto no_cmd; 2084 } 2085 2086 /* 2087 * See if we can find a matching cmd in the pending list. 2088 */ 2089 LIST_FOREACH(pending_scb, &ahd->pending_scbs, pending_links) { 2090 if (pending_scb->io_ctx == cmd) 2091 break; 2092 } 2093 2094 if (pending_scb == NULL) { 2095 scmd_printk(KERN_INFO, cmd, "Command not found\n"); 2096 goto no_cmd; 2097 } 2098 2099 if ((pending_scb->flags & SCB_RECOVERY_SCB) != 0) { 2100 /* 2101 * We can't queue two recovery actions using the same SCB 2102 */ 2103 retval = FAILED; 2104 goto done; 2105 } 2106 2107 /* 2108 * Ensure that the card doesn't do anything 2109 * behind our back. Also make sure that we 2110 * didn't "just" miss an interrupt that would 2111 * affect this cmd. 2112 */ 2113 was_paused = ahd_is_paused(ahd); 2114 ahd_pause_and_flushwork(ahd); 2115 paused = TRUE; 2116 2117 if ((pending_scb->flags & SCB_ACTIVE) == 0) { 2118 scmd_printk(KERN_INFO, cmd, "Command already completed\n"); 2119 goto no_cmd; 2120 } 2121 2122 printf("%s: At time of recovery, card was %spaused\n", 2123 ahd_name(ahd), was_paused ? "" : "not "); 2124 ahd_dump_card_state(ahd); 2125 2126 disconnected = TRUE; 2127 if (ahd_search_qinfifo(ahd, cmd->device->id, 2128 cmd->device->channel + 'A', 2129 cmd->device->lun, 2130 pending_scb->hscb->tag, 2131 ROLE_INITIATOR, CAM_REQ_ABORTED, 2132 SEARCH_COMPLETE) > 0) { 2133 printf("%s:%d:%d:%d: Cmd aborted from QINFIFO\n", 2134 ahd_name(ahd), cmd->device->channel, 2135 cmd->device->id, cmd->device->lun); 2136 retval = SUCCESS; 2137 goto done; 2138 } 2139 2140 saved_modes = ahd_save_modes(ahd); 2141 ahd_set_modes(ahd, AHD_MODE_SCSI, AHD_MODE_SCSI); 2142 last_phase = ahd_inb(ahd, LASTPHASE); 2143 saved_scbptr = ahd_get_scbptr(ahd); 2144 active_scbptr = saved_scbptr; 2145 if (disconnected && (ahd_inb(ahd, SEQ_FLAGS) & NOT_IDENTIFIED) == 0) { 2146 struct scb *bus_scb; 2147 2148 bus_scb = ahd_lookup_scb(ahd, active_scbptr); 2149 if (bus_scb == pending_scb) 2150 disconnected = FALSE; 2151 } 2152 2153 /* 2154 * At this point, pending_scb is the scb associated with the 2155 * passed in command. That command is currently active on the 2156 * bus or is in the disconnected state. 2157 */ 2158 saved_scsiid = ahd_inb(ahd, SAVED_SCSIID); 2159 if (last_phase != P_BUSFREE 2160 && SCB_GET_TAG(pending_scb) == active_scbptr) { 2161 2162 /* 2163 * We're active on the bus, so assert ATN 2164 * and hope that the target responds. 2165 */ 2166 pending_scb = ahd_lookup_scb(ahd, active_scbptr); 2167 pending_scb->flags |= SCB_RECOVERY_SCB|SCB_ABORT; 2168 ahd_outb(ahd, MSG_OUT, HOST_MSG); 2169 ahd_outb(ahd, SCSISIGO, last_phase|ATNO); 2170 scmd_printk(KERN_INFO, cmd, "Device is active, asserting ATN\n"); 2171 wait = TRUE; 2172 } else if (disconnected) { 2173 2174 /* 2175 * Actually re-queue this SCB in an attempt 2176 * to select the device before it reconnects. 2177 */ 2178 pending_scb->flags |= SCB_RECOVERY_SCB|SCB_ABORT; 2179 ahd_set_scbptr(ahd, SCB_GET_TAG(pending_scb)); 2180 pending_scb->hscb->cdb_len = 0; 2181 pending_scb->hscb->task_attribute = 0; 2182 pending_scb->hscb->task_management = SIU_TASKMGMT_ABORT_TASK; 2183 2184 if ((pending_scb->flags & SCB_PACKETIZED) != 0) { 2185 /* 2186 * Mark the SCB has having an outstanding 2187 * task management function. Should the command 2188 * complete normally before the task management 2189 * function can be sent, the host will be notified 2190 * to abort our requeued SCB. 2191 */ 2192 ahd_outb(ahd, SCB_TASK_MANAGEMENT, 2193 pending_scb->hscb->task_management); 2194 } else { 2195 /* 2196 * If non-packetized, set the MK_MESSAGE control 2197 * bit indicating that we desire to send a message. 2198 * We also set the disconnected flag since there is 2199 * no guarantee that our SCB control byte matches 2200 * the version on the card. We don't want the 2201 * sequencer to abort the command thinking an 2202 * unsolicited reselection occurred. 2203 */ 2204 pending_scb->hscb->control |= MK_MESSAGE|DISCONNECTED; 2205 2206 /* 2207 * The sequencer will never re-reference the 2208 * in-core SCB. To make sure we are notified 2209 * during reslection, set the MK_MESSAGE flag in 2210 * the card's copy of the SCB. 2211 */ 2212 ahd_outb(ahd, SCB_CONTROL, 2213 ahd_inb(ahd, SCB_CONTROL)|MK_MESSAGE); 2214 } 2215 2216 /* 2217 * Clear out any entries in the QINFIFO first 2218 * so we are the next SCB for this target 2219 * to run. 2220 */ 2221 ahd_search_qinfifo(ahd, cmd->device->id, 2222 cmd->device->channel + 'A', cmd->device->lun, 2223 SCB_LIST_NULL, ROLE_INITIATOR, 2224 CAM_REQUEUE_REQ, SEARCH_COMPLETE); 2225 ahd_qinfifo_requeue_tail(ahd, pending_scb); 2226 ahd_set_scbptr(ahd, saved_scbptr); 2227 ahd_print_path(ahd, pending_scb); 2228 printf("Device is disconnected, re-queuing SCB\n"); 2229 wait = TRUE; 2230 } else { 2231 scmd_printk(KERN_INFO, cmd, "Unable to deliver message\n"); 2232 retval = FAILED; 2233 goto done; 2234 } 2235 2236 no_cmd: 2237 /* 2238 * Our assumption is that if we don't have the command, no 2239 * recovery action was required, so we return success. Again, 2240 * the semantics of the mid-layer recovery engine are not 2241 * well defined, so this may change in time. 2242 */ 2243 retval = SUCCESS; 2244 done: 2245 if (paused) 2246 ahd_unpause(ahd); 2247 if (wait) { 2248 DECLARE_COMPLETION_ONSTACK(done); 2249 2250 ahd->platform_data->eh_done = &done; 2251 ahd_unlock(ahd, &flags); 2252 2253 printf("%s: Recovery code sleeping\n", ahd_name(ahd)); 2254 if (!wait_for_completion_timeout(&done, 5 * HZ)) { 2255 ahd_lock(ahd, &flags); 2256 ahd->platform_data->eh_done = NULL; 2257 ahd_unlock(ahd, &flags); 2258 printf("%s: Timer Expired (active %d)\n", 2259 ahd_name(ahd), dev->active); 2260 retval = FAILED; 2261 } 2262 printf("Recovery code awake\n"); 2263 } else 2264 ahd_unlock(ahd, &flags); 2265 2266 if (retval != SUCCESS) 2267 printf("%s: Command abort returning 0x%x\n", 2268 ahd_name(ahd), retval); 2269 2270 return retval; 2271 } 2272 2273 static void ahd_linux_set_width(struct scsi_target *starget, int width) 2274 { 2275 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent); 2276 struct ahd_softc *ahd = *((struct ahd_softc **)shost->hostdata); 2277 struct ahd_devinfo devinfo; 2278 unsigned long flags; 2279 2280 ahd_compile_devinfo(&devinfo, shost->this_id, starget->id, 0, 2281 starget->channel + 'A', ROLE_INITIATOR); 2282 ahd_lock(ahd, &flags); 2283 ahd_set_width(ahd, &devinfo, width, AHD_TRANS_GOAL, FALSE); 2284 ahd_unlock(ahd, &flags); 2285 } 2286 2287 static void ahd_linux_set_period(struct scsi_target *starget, int period) 2288 { 2289 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent); 2290 struct ahd_softc *ahd = *((struct ahd_softc **)shost->hostdata); 2291 struct ahd_tmode_tstate *tstate; 2292 struct ahd_initiator_tinfo *tinfo 2293 = ahd_fetch_transinfo(ahd, 2294 starget->channel + 'A', 2295 shost->this_id, starget->id, &tstate); 2296 struct ahd_devinfo devinfo; 2297 unsigned int ppr_options = tinfo->goal.ppr_options; 2298 unsigned int dt; 2299 unsigned long flags; 2300 unsigned long offset = tinfo->goal.offset; 2301 2302 #ifdef AHD_DEBUG 2303 if ((ahd_debug & AHD_SHOW_DV) != 0) 2304 printf("%s: set period to %d\n", ahd_name(ahd), period); 2305 #endif 2306 if (offset == 0) 2307 offset = MAX_OFFSET; 2308 2309 if (period < 8) 2310 period = 8; 2311 if (period < 10) { 2312 ppr_options |= MSG_EXT_PPR_DT_REQ; 2313 if (period == 8) 2314 ppr_options |= MSG_EXT_PPR_IU_REQ; 2315 } 2316 2317 dt = ppr_options & MSG_EXT_PPR_DT_REQ; 2318 2319 ahd_compile_devinfo(&devinfo, shost->this_id, starget->id, 0, 2320 starget->channel + 'A', ROLE_INITIATOR); 2321 2322 /* all PPR requests apart from QAS require wide transfers */ 2323 if (ppr_options & ~MSG_EXT_PPR_QAS_REQ) { 2324 if (spi_width(starget) == 0) 2325 ppr_options &= MSG_EXT_PPR_QAS_REQ; 2326 } 2327 2328 ahd_find_syncrate(ahd, &period, &ppr_options, 2329 dt ? AHD_SYNCRATE_MAX : AHD_SYNCRATE_ULTRA2); 2330 2331 ahd_lock(ahd, &flags); 2332 ahd_set_syncrate(ahd, &devinfo, period, offset, 2333 ppr_options, AHD_TRANS_GOAL, FALSE); 2334 ahd_unlock(ahd, &flags); 2335 } 2336 2337 static void ahd_linux_set_offset(struct scsi_target *starget, int offset) 2338 { 2339 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent); 2340 struct ahd_softc *ahd = *((struct ahd_softc **)shost->hostdata); 2341 struct ahd_tmode_tstate *tstate; 2342 struct ahd_initiator_tinfo *tinfo 2343 = ahd_fetch_transinfo(ahd, 2344 starget->channel + 'A', 2345 shost->this_id, starget->id, &tstate); 2346 struct ahd_devinfo devinfo; 2347 unsigned int ppr_options = 0; 2348 unsigned int period = 0; 2349 unsigned int dt = ppr_options & MSG_EXT_PPR_DT_REQ; 2350 unsigned long flags; 2351 2352 #ifdef AHD_DEBUG 2353 if ((ahd_debug & AHD_SHOW_DV) != 0) 2354 printf("%s: set offset to %d\n", ahd_name(ahd), offset); 2355 #endif 2356 2357 ahd_compile_devinfo(&devinfo, shost->this_id, starget->id, 0, 2358 starget->channel + 'A', ROLE_INITIATOR); 2359 if (offset != 0) { 2360 period = tinfo->goal.period; 2361 ppr_options = tinfo->goal.ppr_options; 2362 ahd_find_syncrate(ahd, &period, &ppr_options, 2363 dt ? AHD_SYNCRATE_MAX : AHD_SYNCRATE_ULTRA2); 2364 } 2365 2366 ahd_lock(ahd, &flags); 2367 ahd_set_syncrate(ahd, &devinfo, period, offset, ppr_options, 2368 AHD_TRANS_GOAL, FALSE); 2369 ahd_unlock(ahd, &flags); 2370 } 2371 2372 static void ahd_linux_set_dt(struct scsi_target *starget, int dt) 2373 { 2374 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent); 2375 struct ahd_softc *ahd = *((struct ahd_softc **)shost->hostdata); 2376 struct ahd_tmode_tstate *tstate; 2377 struct ahd_initiator_tinfo *tinfo 2378 = ahd_fetch_transinfo(ahd, 2379 starget->channel + 'A', 2380 shost->this_id, starget->id, &tstate); 2381 struct ahd_devinfo devinfo; 2382 unsigned int ppr_options = tinfo->goal.ppr_options 2383 & ~MSG_EXT_PPR_DT_REQ; 2384 unsigned int period = tinfo->goal.period; 2385 unsigned int width = tinfo->goal.width; 2386 unsigned long flags; 2387 2388 #ifdef AHD_DEBUG 2389 if ((ahd_debug & AHD_SHOW_DV) != 0) 2390 printf("%s: %s DT\n", ahd_name(ahd), 2391 dt ? "enabling" : "disabling"); 2392 #endif 2393 if (dt) { 2394 ppr_options |= MSG_EXT_PPR_DT_REQ; 2395 if (!width) 2396 ahd_linux_set_width(starget, 1); 2397 } else { 2398 if (period <= 9) 2399 period = 10; /* If resetting DT, period must be >= 25ns */ 2400 /* IU is invalid without DT set */ 2401 ppr_options &= ~MSG_EXT_PPR_IU_REQ; 2402 } 2403 ahd_compile_devinfo(&devinfo, shost->this_id, starget->id, 0, 2404 starget->channel + 'A', ROLE_INITIATOR); 2405 ahd_find_syncrate(ahd, &period, &ppr_options, 2406 dt ? AHD_SYNCRATE_MAX : AHD_SYNCRATE_ULTRA2); 2407 2408 ahd_lock(ahd, &flags); 2409 ahd_set_syncrate(ahd, &devinfo, period, tinfo->goal.offset, 2410 ppr_options, AHD_TRANS_GOAL, FALSE); 2411 ahd_unlock(ahd, &flags); 2412 } 2413 2414 static void ahd_linux_set_qas(struct scsi_target *starget, int qas) 2415 { 2416 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent); 2417 struct ahd_softc *ahd = *((struct ahd_softc **)shost->hostdata); 2418 struct ahd_tmode_tstate *tstate; 2419 struct ahd_initiator_tinfo *tinfo 2420 = ahd_fetch_transinfo(ahd, 2421 starget->channel + 'A', 2422 shost->this_id, starget->id, &tstate); 2423 struct ahd_devinfo devinfo; 2424 unsigned int ppr_options = tinfo->goal.ppr_options 2425 & ~MSG_EXT_PPR_QAS_REQ; 2426 unsigned int period = tinfo->goal.period; 2427 unsigned int dt; 2428 unsigned long flags; 2429 2430 #ifdef AHD_DEBUG 2431 if ((ahd_debug & AHD_SHOW_DV) != 0) 2432 printf("%s: %s QAS\n", ahd_name(ahd), 2433 qas ? "enabling" : "disabling"); 2434 #endif 2435 2436 if (qas) { 2437 ppr_options |= MSG_EXT_PPR_QAS_REQ; 2438 } 2439 2440 dt = ppr_options & MSG_EXT_PPR_DT_REQ; 2441 2442 ahd_compile_devinfo(&devinfo, shost->this_id, starget->id, 0, 2443 starget->channel + 'A', ROLE_INITIATOR); 2444 ahd_find_syncrate(ahd, &period, &ppr_options, 2445 dt ? AHD_SYNCRATE_MAX : AHD_SYNCRATE_ULTRA2); 2446 2447 ahd_lock(ahd, &flags); 2448 ahd_set_syncrate(ahd, &devinfo, period, tinfo->goal.offset, 2449 ppr_options, AHD_TRANS_GOAL, FALSE); 2450 ahd_unlock(ahd, &flags); 2451 } 2452 2453 static void ahd_linux_set_iu(struct scsi_target *starget, int iu) 2454 { 2455 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent); 2456 struct ahd_softc *ahd = *((struct ahd_softc **)shost->hostdata); 2457 struct ahd_tmode_tstate *tstate; 2458 struct ahd_initiator_tinfo *tinfo 2459 = ahd_fetch_transinfo(ahd, 2460 starget->channel + 'A', 2461 shost->this_id, starget->id, &tstate); 2462 struct ahd_devinfo devinfo; 2463 unsigned int ppr_options = tinfo->goal.ppr_options 2464 & ~MSG_EXT_PPR_IU_REQ; 2465 unsigned int period = tinfo->goal.period; 2466 unsigned int dt; 2467 unsigned long flags; 2468 2469 #ifdef AHD_DEBUG 2470 if ((ahd_debug & AHD_SHOW_DV) != 0) 2471 printf("%s: %s IU\n", ahd_name(ahd), 2472 iu ? "enabling" : "disabling"); 2473 #endif 2474 2475 if (iu) { 2476 ppr_options |= MSG_EXT_PPR_IU_REQ; 2477 ppr_options |= MSG_EXT_PPR_DT_REQ; /* IU requires DT */ 2478 } 2479 2480 dt = ppr_options & MSG_EXT_PPR_DT_REQ; 2481 2482 ahd_compile_devinfo(&devinfo, shost->this_id, starget->id, 0, 2483 starget->channel + 'A', ROLE_INITIATOR); 2484 ahd_find_syncrate(ahd, &period, &ppr_options, 2485 dt ? AHD_SYNCRATE_MAX : AHD_SYNCRATE_ULTRA2); 2486 2487 ahd_lock(ahd, &flags); 2488 ahd_set_syncrate(ahd, &devinfo, period, tinfo->goal.offset, 2489 ppr_options, AHD_TRANS_GOAL, FALSE); 2490 ahd_unlock(ahd, &flags); 2491 } 2492 2493 static void ahd_linux_set_rd_strm(struct scsi_target *starget, int rdstrm) 2494 { 2495 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent); 2496 struct ahd_softc *ahd = *((struct ahd_softc **)shost->hostdata); 2497 struct ahd_tmode_tstate *tstate; 2498 struct ahd_initiator_tinfo *tinfo 2499 = ahd_fetch_transinfo(ahd, 2500 starget->channel + 'A', 2501 shost->this_id, starget->id, &tstate); 2502 struct ahd_devinfo devinfo; 2503 unsigned int ppr_options = tinfo->goal.ppr_options 2504 & ~MSG_EXT_PPR_RD_STRM; 2505 unsigned int period = tinfo->goal.period; 2506 unsigned int dt = ppr_options & MSG_EXT_PPR_DT_REQ; 2507 unsigned long flags; 2508 2509 #ifdef AHD_DEBUG 2510 if ((ahd_debug & AHD_SHOW_DV) != 0) 2511 printf("%s: %s Read Streaming\n", ahd_name(ahd), 2512 rdstrm ? "enabling" : "disabling"); 2513 #endif 2514 2515 if (rdstrm) 2516 ppr_options |= MSG_EXT_PPR_RD_STRM; 2517 2518 ahd_compile_devinfo(&devinfo, shost->this_id, starget->id, 0, 2519 starget->channel + 'A', ROLE_INITIATOR); 2520 ahd_find_syncrate(ahd, &period, &ppr_options, 2521 dt ? AHD_SYNCRATE_MAX : AHD_SYNCRATE_ULTRA2); 2522 2523 ahd_lock(ahd, &flags); 2524 ahd_set_syncrate(ahd, &devinfo, period, tinfo->goal.offset, 2525 ppr_options, AHD_TRANS_GOAL, FALSE); 2526 ahd_unlock(ahd, &flags); 2527 } 2528 2529 static void ahd_linux_set_wr_flow(struct scsi_target *starget, int wrflow) 2530 { 2531 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent); 2532 struct ahd_softc *ahd = *((struct ahd_softc **)shost->hostdata); 2533 struct ahd_tmode_tstate *tstate; 2534 struct ahd_initiator_tinfo *tinfo 2535 = ahd_fetch_transinfo(ahd, 2536 starget->channel + 'A', 2537 shost->this_id, starget->id, &tstate); 2538 struct ahd_devinfo devinfo; 2539 unsigned int ppr_options = tinfo->goal.ppr_options 2540 & ~MSG_EXT_PPR_WR_FLOW; 2541 unsigned int period = tinfo->goal.period; 2542 unsigned int dt = ppr_options & MSG_EXT_PPR_DT_REQ; 2543 unsigned long flags; 2544 2545 #ifdef AHD_DEBUG 2546 if ((ahd_debug & AHD_SHOW_DV) != 0) 2547 printf("%s: %s Write Flow Control\n", ahd_name(ahd), 2548 wrflow ? "enabling" : "disabling"); 2549 #endif 2550 2551 if (wrflow) 2552 ppr_options |= MSG_EXT_PPR_WR_FLOW; 2553 2554 ahd_compile_devinfo(&devinfo, shost->this_id, starget->id, 0, 2555 starget->channel + 'A', ROLE_INITIATOR); 2556 ahd_find_syncrate(ahd, &period, &ppr_options, 2557 dt ? AHD_SYNCRATE_MAX : AHD_SYNCRATE_ULTRA2); 2558 2559 ahd_lock(ahd, &flags); 2560 ahd_set_syncrate(ahd, &devinfo, period, tinfo->goal.offset, 2561 ppr_options, AHD_TRANS_GOAL, FALSE); 2562 ahd_unlock(ahd, &flags); 2563 } 2564 2565 static void ahd_linux_set_rti(struct scsi_target *starget, int rti) 2566 { 2567 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent); 2568 struct ahd_softc *ahd = *((struct ahd_softc **)shost->hostdata); 2569 struct ahd_tmode_tstate *tstate; 2570 struct ahd_initiator_tinfo *tinfo 2571 = ahd_fetch_transinfo(ahd, 2572 starget->channel + 'A', 2573 shost->this_id, starget->id, &tstate); 2574 struct ahd_devinfo devinfo; 2575 unsigned int ppr_options = tinfo->goal.ppr_options 2576 & ~MSG_EXT_PPR_RTI; 2577 unsigned int period = tinfo->goal.period; 2578 unsigned int dt = ppr_options & MSG_EXT_PPR_DT_REQ; 2579 unsigned long flags; 2580 2581 if ((ahd->features & AHD_RTI) == 0) { 2582 #ifdef AHD_DEBUG 2583 if ((ahd_debug & AHD_SHOW_DV) != 0) 2584 printf("%s: RTI not available\n", ahd_name(ahd)); 2585 #endif 2586 return; 2587 } 2588 2589 #ifdef AHD_DEBUG 2590 if ((ahd_debug & AHD_SHOW_DV) != 0) 2591 printf("%s: %s RTI\n", ahd_name(ahd), 2592 rti ? "enabling" : "disabling"); 2593 #endif 2594 2595 if (rti) 2596 ppr_options |= MSG_EXT_PPR_RTI; 2597 2598 ahd_compile_devinfo(&devinfo, shost->this_id, starget->id, 0, 2599 starget->channel + 'A', ROLE_INITIATOR); 2600 ahd_find_syncrate(ahd, &period, &ppr_options, 2601 dt ? AHD_SYNCRATE_MAX : AHD_SYNCRATE_ULTRA2); 2602 2603 ahd_lock(ahd, &flags); 2604 ahd_set_syncrate(ahd, &devinfo, period, tinfo->goal.offset, 2605 ppr_options, AHD_TRANS_GOAL, FALSE); 2606 ahd_unlock(ahd, &flags); 2607 } 2608 2609 static void ahd_linux_set_pcomp_en(struct scsi_target *starget, int pcomp) 2610 { 2611 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent); 2612 struct ahd_softc *ahd = *((struct ahd_softc **)shost->hostdata); 2613 struct ahd_tmode_tstate *tstate; 2614 struct ahd_initiator_tinfo *tinfo 2615 = ahd_fetch_transinfo(ahd, 2616 starget->channel + 'A', 2617 shost->this_id, starget->id, &tstate); 2618 struct ahd_devinfo devinfo; 2619 unsigned int ppr_options = tinfo->goal.ppr_options 2620 & ~MSG_EXT_PPR_PCOMP_EN; 2621 unsigned int period = tinfo->goal.period; 2622 unsigned int dt = ppr_options & MSG_EXT_PPR_DT_REQ; 2623 unsigned long flags; 2624 2625 #ifdef AHD_DEBUG 2626 if ((ahd_debug & AHD_SHOW_DV) != 0) 2627 printf("%s: %s Precompensation\n", ahd_name(ahd), 2628 pcomp ? "Enable" : "Disable"); 2629 #endif 2630 2631 if (pcomp) { 2632 uint8_t precomp; 2633 2634 if (ahd->unit < ARRAY_SIZE(aic79xx_iocell_info)) { 2635 struct ahd_linux_iocell_opts *iocell_opts; 2636 2637 iocell_opts = &aic79xx_iocell_info[ahd->unit]; 2638 precomp = iocell_opts->precomp; 2639 } else { 2640 precomp = AIC79XX_DEFAULT_PRECOMP; 2641 } 2642 ppr_options |= MSG_EXT_PPR_PCOMP_EN; 2643 AHD_SET_PRECOMP(ahd, precomp); 2644 } else { 2645 AHD_SET_PRECOMP(ahd, 0); 2646 } 2647 2648 ahd_compile_devinfo(&devinfo, shost->this_id, starget->id, 0, 2649 starget->channel + 'A', ROLE_INITIATOR); 2650 ahd_find_syncrate(ahd, &period, &ppr_options, 2651 dt ? AHD_SYNCRATE_MAX : AHD_SYNCRATE_ULTRA2); 2652 2653 ahd_lock(ahd, &flags); 2654 ahd_set_syncrate(ahd, &devinfo, period, tinfo->goal.offset, 2655 ppr_options, AHD_TRANS_GOAL, FALSE); 2656 ahd_unlock(ahd, &flags); 2657 } 2658 2659 static void ahd_linux_set_hold_mcs(struct scsi_target *starget, int hold) 2660 { 2661 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent); 2662 struct ahd_softc *ahd = *((struct ahd_softc **)shost->hostdata); 2663 struct ahd_tmode_tstate *tstate; 2664 struct ahd_initiator_tinfo *tinfo 2665 = ahd_fetch_transinfo(ahd, 2666 starget->channel + 'A', 2667 shost->this_id, starget->id, &tstate); 2668 struct ahd_devinfo devinfo; 2669 unsigned int ppr_options = tinfo->goal.ppr_options 2670 & ~MSG_EXT_PPR_HOLD_MCS; 2671 unsigned int period = tinfo->goal.period; 2672 unsigned int dt = ppr_options & MSG_EXT_PPR_DT_REQ; 2673 unsigned long flags; 2674 2675 if (hold) 2676 ppr_options |= MSG_EXT_PPR_HOLD_MCS; 2677 2678 ahd_compile_devinfo(&devinfo, shost->this_id, starget->id, 0, 2679 starget->channel + 'A', ROLE_INITIATOR); 2680 ahd_find_syncrate(ahd, &period, &ppr_options, 2681 dt ? AHD_SYNCRATE_MAX : AHD_SYNCRATE_ULTRA2); 2682 2683 ahd_lock(ahd, &flags); 2684 ahd_set_syncrate(ahd, &devinfo, period, tinfo->goal.offset, 2685 ppr_options, AHD_TRANS_GOAL, FALSE); 2686 ahd_unlock(ahd, &flags); 2687 } 2688 2689 static void ahd_linux_get_signalling(struct Scsi_Host *shost) 2690 { 2691 struct ahd_softc *ahd = *(struct ahd_softc **)shost->hostdata; 2692 unsigned long flags; 2693 u8 mode; 2694 2695 ahd_lock(ahd, &flags); 2696 ahd_pause(ahd); 2697 mode = ahd_inb(ahd, SBLKCTL); 2698 ahd_unpause(ahd); 2699 ahd_unlock(ahd, &flags); 2700 2701 if (mode & ENAB40) 2702 spi_signalling(shost) = SPI_SIGNAL_LVD; 2703 else if (mode & ENAB20) 2704 spi_signalling(shost) = SPI_SIGNAL_SE; 2705 else 2706 spi_signalling(shost) = SPI_SIGNAL_UNKNOWN; 2707 } 2708 2709 static struct spi_function_template ahd_linux_transport_functions = { 2710 .set_offset = ahd_linux_set_offset, 2711 .show_offset = 1, 2712 .set_period = ahd_linux_set_period, 2713 .show_period = 1, 2714 .set_width = ahd_linux_set_width, 2715 .show_width = 1, 2716 .set_dt = ahd_linux_set_dt, 2717 .show_dt = 1, 2718 .set_iu = ahd_linux_set_iu, 2719 .show_iu = 1, 2720 .set_qas = ahd_linux_set_qas, 2721 .show_qas = 1, 2722 .set_rd_strm = ahd_linux_set_rd_strm, 2723 .show_rd_strm = 1, 2724 .set_wr_flow = ahd_linux_set_wr_flow, 2725 .show_wr_flow = 1, 2726 .set_rti = ahd_linux_set_rti, 2727 .show_rti = 1, 2728 .set_pcomp_en = ahd_linux_set_pcomp_en, 2729 .show_pcomp_en = 1, 2730 .set_hold_mcs = ahd_linux_set_hold_mcs, 2731 .show_hold_mcs = 1, 2732 .get_signalling = ahd_linux_get_signalling, 2733 }; 2734 2735 static int __init 2736 ahd_linux_init(void) 2737 { 2738 int error = 0; 2739 2740 /* 2741 * If we've been passed any parameters, process them now. 2742 */ 2743 if (aic79xx) 2744 aic79xx_setup(aic79xx); 2745 2746 ahd_linux_transport_template = 2747 spi_attach_transport(&ahd_linux_transport_functions); 2748 if (!ahd_linux_transport_template) 2749 return -ENODEV; 2750 2751 scsi_transport_reserve_device(ahd_linux_transport_template, 2752 sizeof(struct ahd_linux_device)); 2753 2754 error = ahd_linux_pci_init(); 2755 if (error) 2756 spi_release_transport(ahd_linux_transport_template); 2757 return error; 2758 } 2759 2760 static void __exit 2761 ahd_linux_exit(void) 2762 { 2763 ahd_linux_pci_exit(); 2764 spi_release_transport(ahd_linux_transport_template); 2765 } 2766 2767 module_init(ahd_linux_init); 2768 module_exit(ahd_linux_exit); 2769