[PATCH] configfs: User-driven configuration filesystem
[linux-2.6/mini2440.git] / drivers / scsi / aic7xxx / aic79xx_osm.c
blob6aab9dacdeeaaef59144cb5d5f072cb05deddef3
1 /*
2 * Adaptec AIC79xx device driver for Linux.
4 * $Id: //depot/aic7xxx/linux/drivers/scsi/aic7xxx/aic79xx_osm.c#171 $
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.
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.
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.
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.
45 #include "aic79xx_osm.h"
46 #include "aic79xx_inline.h"
47 #include <scsi/scsicam.h>
49 static struct scsi_transport_template *ahd_linux_transport_template = NULL;
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>
58 * Bucket size for counting good commands in between bad ones.
60 #define AHD_LINUX_ERR_THRESH 1000
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.
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
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.
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.
85 typedef struct {
86 uint16_t tag_commands[16]; /* Allow for wide/twin adapters. */
87 } adapter_tag_info_t;
90 * Modify this as you see fit for your system.
92 * 0 tagged queuing disabled
93 * 1 <= n <= 253 n == max tags ever dispatched.
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.
105 * In this example, the first line will disable tagged queueing for all
106 * the devices on the first probed aic79xx adapter.
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.
112 * The third line is the same as the first line.
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.
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[] =
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}}
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
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 \
150 * By default, use the number of commands specified by
151 * the users kernel configuration.
153 static adapter_tag_info_t aic79xx_tag_info[] =
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}
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.
178 struct ahd_linux_iocell_opts
180 uint8_t precomp;
181 uint8_t slewrate;
182 uint8_t amplitude;
184 #define AIC79XX_DEFAULT_PRECOMP 0xFF
185 #define AIC79XX_DEFAULT_SLEWRATE 0xFF
186 #define AIC79XX_DEFAULT_AMPLITUDE 0xFF
187 #define AIC79XX_DEFAULT_IOOPTS \
189 AIC79XX_DEFAULT_PRECOMP, \
190 AIC79XX_DEFAULT_SLEWRATE, \
191 AIC79XX_DEFAULT_AMPLITUDE \
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[] =
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
217 * There should be a specific return value for this in scsi.h, but
218 * it seems that most drivers ignore it.
220 #define DID_UNDERFLOW DID_ERROR
222 void
223 ahd_print_path(struct ahd_softc *ahd, struct scb *scb)
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);
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.
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.
243 static uint32_t aic79xx_no_reset;
246 * Certain PCI motherboards will scan PCI devices from highest to lowest,
247 * others scan from lowest to highest, and they tend to do all kinds of
248 * strange things when they come into contact with PCI bridge chips. The
249 * net result of all this is that the PCI card that is actually used to boot
250 * the machine is very hard to detect. Most motherboards go from lowest
251 * PCI slot number to highest, and the first SCSI controller found is the
252 * one you boot from. The only exceptions to this are when a controller
253 * has its BIOS disabled. So, we by default sort all of our SCSI controllers
254 * from lowest PCI slot number to highest PCI slot number. We also force
255 * all controllers with their BIOS disabled to the end of the list. This
256 * works on *almost* all computers. Where it doesn't work, we have this
257 * option. Setting this option to non-0 will reverse the order of the sort
258 * to highest first, then lowest, but will still leave cards with their BIOS
259 * disabled at the very end. That should fix everyone up unless there are
260 * really strange cirumstances.
262 static uint32_t aic79xx_reverse_scan;
265 * Should we force EXTENDED translation on a controller.
266 * 0 == Use whatever is in the SEEPROM or default to off
267 * 1 == Use whatever is in the SEEPROM or default to on
269 static uint32_t aic79xx_extended;
272 * PCI bus parity checking of the Adaptec controllers. This is somewhat
273 * dubious at best. To my knowledge, this option has never actually
274 * solved a PCI parity problem, but on certain machines with broken PCI
275 * chipset configurations, it can generate tons of false error messages.
276 * It's included in the driver for completeness.
277 * 0 = Shut off PCI parity check
278 * non-0 = Enable PCI parity check
280 * NOTE: you can't actually pass -1 on the lilo prompt. So, to set this
281 * variable to -1 you would actually want to simply pass the variable
282 * name without a number. That will invert the 0 which will result in
283 * -1.
285 static uint32_t aic79xx_pci_parity = ~0;
288 * There are lots of broken chipsets in the world. Some of them will
289 * violate the PCI spec when we issue byte sized memory writes to our
290 * controller. I/O mapped register access, if allowed by the given
291 * platform, will work in almost all cases.
293 uint32_t aic79xx_allow_memio = ~0;
296 * So that we can set how long each device is given as a selection timeout.
297 * The table of values goes like this:
298 * 0 - 256ms
299 * 1 - 128ms
300 * 2 - 64ms
301 * 3 - 32ms
302 * We default to 256ms because some older devices need a longer time
303 * to respond to initial selection.
305 static uint32_t aic79xx_seltime;
308 * Certain devices do not perform any aging on commands. Should the
309 * device be saturated by commands in one portion of the disk, it is
310 * possible for transactions on far away sectors to never be serviced.
311 * To handle these devices, we can periodically send an ordered tag to
312 * force all outstanding transactions to be serviced prior to a new
313 * transaction.
315 uint32_t aic79xx_periodic_otag;
318 * Module information and settable options.
320 static char *aic79xx = NULL;
322 MODULE_AUTHOR("Maintainer: Justin T. Gibbs <gibbs@scsiguy.com>");
323 MODULE_DESCRIPTION("Adaptec Aic790X U320 SCSI Host Bus Adapter driver");
324 MODULE_LICENSE("Dual BSD/GPL");
325 MODULE_VERSION(AIC79XX_DRIVER_VERSION);
326 module_param(aic79xx, charp, 0444);
327 MODULE_PARM_DESC(aic79xx,
328 "period delimited, options string.\n"
329 " verbose Enable verbose/diagnostic logging\n"
330 " allow_memio Allow device registers to be memory mapped\n"
331 " debug Bitmask of debug values to enable\n"
332 " no_reset Supress initial bus resets\n"
333 " extended Enable extended geometry on all controllers\n"
334 " periodic_otag Send an ordered tagged transaction\n"
335 " periodically to prevent tag starvation.\n"
336 " This may be required by some older disk\n"
337 " or drives/RAID arrays.\n"
338 " reverse_scan Sort PCI devices highest Bus/Slot to lowest\n"
339 " tag_info:<tag_str> Set per-target tag depth\n"
340 " global_tag_depth:<int> Global tag depth for all targets on all buses\n"
341 " slewrate:<slewrate_list>Set the signal slew rate (0-15).\n"
342 " precomp:<pcomp_list> Set the signal precompensation (0-7).\n"
343 " amplitude:<int> Set the signal amplitude (0-7).\n"
344 " seltime:<int> Selection Timeout:\n"
345 " (0/256ms,1/128ms,2/64ms,3/32ms)\n"
346 "\n"
347 " Sample /etc/modprobe.conf line:\n"
348 " Enable verbose logging\n"
349 " Set tag depth on Controller 2/Target 2 to 10 tags\n"
350 " Shorten the selection timeout to 128ms\n"
351 "\n"
352 " options aic79xx 'aic79xx=verbose.tag_info:{{}.{}.{..10}}.seltime:1'\n"
353 "\n");
355 static void ahd_linux_handle_scsi_status(struct ahd_softc *,
356 struct scsi_device *,
357 struct scb *);
358 static void ahd_linux_queue_cmd_complete(struct ahd_softc *ahd,
359 struct scsi_cmnd *cmd);
360 static void ahd_linux_sem_timeout(u_long arg);
361 static int ahd_linux_queue_recovery_cmd(struct scsi_cmnd *cmd, scb_flag flag);
362 static void ahd_linux_initialize_scsi_bus(struct ahd_softc *ahd);
363 static u_int ahd_linux_user_tagdepth(struct ahd_softc *ahd,
364 struct ahd_devinfo *devinfo);
365 static void ahd_linux_device_queue_depth(struct scsi_device *);
366 static int ahd_linux_run_command(struct ahd_softc*,
367 struct ahd_linux_device *,
368 struct scsi_cmnd *);
369 static void ahd_linux_setup_tag_info_global(char *p);
370 static int aic79xx_setup(char *c);
372 static int ahd_linux_unit;
375 /****************************** Inlines ***************************************/
376 static __inline void ahd_linux_unmap_scb(struct ahd_softc*, struct scb*);
378 static __inline void
379 ahd_linux_unmap_scb(struct ahd_softc *ahd, struct scb *scb)
381 struct scsi_cmnd *cmd;
382 int direction;
384 cmd = scb->io_ctx;
385 direction = cmd->sc_data_direction;
386 ahd_sync_sglist(ahd, scb, BUS_DMASYNC_POSTWRITE);
387 if (cmd->use_sg != 0) {
388 struct scatterlist *sg;
390 sg = (struct scatterlist *)cmd->request_buffer;
391 pci_unmap_sg(ahd->dev_softc, sg, cmd->use_sg, direction);
392 } else if (cmd->request_bufflen != 0) {
393 pci_unmap_single(ahd->dev_softc,
394 scb->platform_data->buf_busaddr,
395 cmd->request_bufflen, direction);
399 /******************************** Macros **************************************/
400 #define BUILD_SCSIID(ahd, cmd) \
401 (((scmd_id(cmd) << TID_SHIFT) & TID) | (ahd)->our_id)
404 * Return a string describing the driver.
406 static const char *
407 ahd_linux_info(struct Scsi_Host *host)
409 static char buffer[512];
410 char ahd_info[256];
411 char *bp;
412 struct ahd_softc *ahd;
414 bp = &buffer[0];
415 ahd = *(struct ahd_softc **)host->hostdata;
416 memset(bp, 0, sizeof(buffer));
417 strcpy(bp, "Adaptec AIC79XX PCI-X SCSI HBA DRIVER, Rev ");
418 strcat(bp, AIC79XX_DRIVER_VERSION);
419 strcat(bp, "\n");
420 strcat(bp, " <");
421 strcat(bp, ahd->description);
422 strcat(bp, ">\n");
423 strcat(bp, " ");
424 ahd_controller_info(ahd, ahd_info);
425 strcat(bp, ahd_info);
426 strcat(bp, "\n");
428 return (bp);
432 * Queue an SCB to the controller.
434 static int
435 ahd_linux_queue(struct scsi_cmnd * cmd, void (*scsi_done) (struct scsi_cmnd *))
437 struct ahd_softc *ahd;
438 struct ahd_linux_device *dev = scsi_transport_device_data(cmd->device);
439 int rtn = SCSI_MLQUEUE_HOST_BUSY;
440 unsigned long flags;
442 ahd = *(struct ahd_softc **)cmd->device->host->hostdata;
444 ahd_lock(ahd, &flags);
445 if (ahd->platform_data->qfrozen == 0) {
446 cmd->scsi_done = scsi_done;
447 cmd->result = CAM_REQ_INPROG << 16;
448 rtn = ahd_linux_run_command(ahd, dev, cmd);
451 ahd_unlock(ahd, &flags);
452 return rtn;
455 static inline struct scsi_target **
456 ahd_linux_target_in_softc(struct scsi_target *starget)
458 struct ahd_softc *ahd =
459 *((struct ahd_softc **)dev_to_shost(&starget->dev)->hostdata);
460 unsigned int target_offset;
462 target_offset = starget->id;
463 if (starget->channel != 0)
464 target_offset += 8;
466 return &ahd->platform_data->starget[target_offset];
469 static int
470 ahd_linux_target_alloc(struct scsi_target *starget)
472 struct ahd_softc *ahd =
473 *((struct ahd_softc **)dev_to_shost(&starget->dev)->hostdata);
474 unsigned long flags;
475 struct scsi_target **ahd_targp = ahd_linux_target_in_softc(starget);
476 struct ahd_linux_target *targ = scsi_transport_target_data(starget);
477 struct ahd_devinfo devinfo;
478 struct ahd_initiator_tinfo *tinfo;
479 struct ahd_tmode_tstate *tstate;
480 char channel = starget->channel + 'A';
482 ahd_lock(ahd, &flags);
484 BUG_ON(*ahd_targp != NULL);
486 *ahd_targp = starget;
487 memset(targ, 0, sizeof(*targ));
489 tinfo = ahd_fetch_transinfo(ahd, channel, ahd->our_id,
490 starget->id, &tstate);
491 ahd_compile_devinfo(&devinfo, ahd->our_id, starget->id,
492 CAM_LUN_WILDCARD, channel,
493 ROLE_INITIATOR);
494 spi_min_period(starget) = AHD_SYNCRATE_MAX; /* We can do U320 */
495 if ((ahd->bugs & AHD_PACED_NEGTABLE_BUG) != 0)
496 spi_max_offset(starget) = MAX_OFFSET_PACED_BUG;
497 else
498 spi_max_offset(starget) = MAX_OFFSET_PACED;
499 spi_max_width(starget) = ahd->features & AHD_WIDE;
501 ahd_set_syncrate(ahd, &devinfo, 0, 0, 0,
502 AHD_TRANS_GOAL, /*paused*/FALSE);
503 ahd_set_width(ahd, &devinfo, MSG_EXT_WDTR_BUS_8_BIT,
504 AHD_TRANS_GOAL, /*paused*/FALSE);
505 ahd_unlock(ahd, &flags);
507 return 0;
510 static void
511 ahd_linux_target_destroy(struct scsi_target *starget)
513 struct scsi_target **ahd_targp = ahd_linux_target_in_softc(starget);
515 *ahd_targp = NULL;
518 static int
519 ahd_linux_slave_alloc(struct scsi_device *sdev)
521 struct ahd_softc *ahd =
522 *((struct ahd_softc **)sdev->host->hostdata);
523 struct scsi_target *starget = sdev->sdev_target;
524 struct ahd_linux_target *targ = scsi_transport_target_data(starget);
525 struct ahd_linux_device *dev;
527 if (bootverbose)
528 printf("%s: Slave Alloc %d\n", ahd_name(ahd), sdev->id);
530 BUG_ON(targ->sdev[sdev->lun] != NULL);
532 dev = scsi_transport_device_data(sdev);
533 memset(dev, 0, sizeof(*dev));
536 * We start out life using untagged
537 * transactions of which we allow one.
539 dev->openings = 1;
542 * Set maxtags to 0. This will be changed if we
543 * later determine that we are dealing with
544 * a tagged queuing capable device.
546 dev->maxtags = 0;
548 targ->sdev[sdev->lun] = sdev;
550 return (0);
553 static int
554 ahd_linux_slave_configure(struct scsi_device *sdev)
556 struct ahd_softc *ahd;
558 ahd = *((struct ahd_softc **)sdev->host->hostdata);
559 if (bootverbose)
560 sdev_printk(KERN_INFO, sdev, "Slave Configure\n");
562 ahd_linux_device_queue_depth(sdev);
564 /* Initial Domain Validation */
565 if (!spi_initial_dv(sdev->sdev_target))
566 spi_dv_device(sdev);
568 return 0;
571 static void
572 ahd_linux_slave_destroy(struct scsi_device *sdev)
574 struct ahd_softc *ahd;
575 struct ahd_linux_device *dev = scsi_transport_device_data(sdev);
576 struct ahd_linux_target *targ = scsi_transport_target_data(sdev->sdev_target);
578 ahd = *((struct ahd_softc **)sdev->host->hostdata);
579 if (bootverbose)
580 printf("%s: Slave Destroy %d\n", ahd_name(ahd), sdev->id);
582 BUG_ON(dev->active);
584 targ->sdev[sdev->lun] = NULL;
588 #if defined(__i386__)
590 * Return the disk geometry for the given SCSI device.
592 static int
593 ahd_linux_biosparam(struct scsi_device *sdev, struct block_device *bdev,
594 sector_t capacity, int geom[])
596 uint8_t *bh;
597 int heads;
598 int sectors;
599 int cylinders;
600 int ret;
601 int extended;
602 struct ahd_softc *ahd;
604 ahd = *((struct ahd_softc **)sdev->host->hostdata);
606 bh = scsi_bios_ptable(bdev);
607 if (bh) {
608 ret = scsi_partsize(bh, capacity,
609 &geom[2], &geom[0], &geom[1]);
610 kfree(bh);
611 if (ret != -1)
612 return (ret);
614 heads = 64;
615 sectors = 32;
616 cylinders = aic_sector_div(capacity, heads, sectors);
618 if (aic79xx_extended != 0)
619 extended = 1;
620 else
621 extended = (ahd->flags & AHD_EXTENDED_TRANS_A) != 0;
622 if (extended && cylinders >= 1024) {
623 heads = 255;
624 sectors = 63;
625 cylinders = aic_sector_div(capacity, heads, sectors);
627 geom[0] = heads;
628 geom[1] = sectors;
629 geom[2] = cylinders;
630 return (0);
632 #endif
635 * Abort the current SCSI command(s).
637 static int
638 ahd_linux_abort(struct scsi_cmnd *cmd)
640 int error;
642 error = ahd_linux_queue_recovery_cmd(cmd, SCB_ABORT);
643 if (error != 0)
644 printf("aic79xx_abort returns 0x%x\n", error);
645 return error;
649 * Attempt to send a target reset message to the device that timed out.
651 static int
652 ahd_linux_dev_reset(struct scsi_cmnd *cmd)
654 int error;
656 error = ahd_linux_queue_recovery_cmd(cmd, SCB_DEVICE_RESET);
657 if (error != 0)
658 printf("aic79xx_dev_reset returns 0x%x\n", error);
659 return error;
663 * Reset the SCSI bus.
665 static int
666 ahd_linux_bus_reset(struct scsi_cmnd *cmd)
668 struct ahd_softc *ahd;
669 u_long s;
670 int found;
672 ahd = *(struct ahd_softc **)cmd->device->host->hostdata;
673 #ifdef AHD_DEBUG
674 if ((ahd_debug & AHD_SHOW_RECOVERY) != 0)
675 printf("%s: Bus reset called for cmd %p\n",
676 ahd_name(ahd), cmd);
677 #endif
678 ahd_lock(ahd, &s);
679 found = ahd_reset_channel(ahd, scmd_channel(cmd) + 'A',
680 /*initiate reset*/TRUE);
681 ahd_unlock(ahd, &s);
683 if (bootverbose)
684 printf("%s: SCSI bus reset delivered. "
685 "%d SCBs aborted.\n", ahd_name(ahd), found);
687 return (SUCCESS);
690 struct scsi_host_template aic79xx_driver_template = {
691 .module = THIS_MODULE,
692 .name = "aic79xx",
693 .proc_name = "aic79xx",
694 .proc_info = ahd_linux_proc_info,
695 .info = ahd_linux_info,
696 .queuecommand = ahd_linux_queue,
697 .eh_abort_handler = ahd_linux_abort,
698 .eh_device_reset_handler = ahd_linux_dev_reset,
699 .eh_bus_reset_handler = ahd_linux_bus_reset,
700 #if defined(__i386__)
701 .bios_param = ahd_linux_biosparam,
702 #endif
703 .can_queue = AHD_MAX_QUEUE,
704 .this_id = -1,
705 .cmd_per_lun = 2,
706 .use_clustering = ENABLE_CLUSTERING,
707 .slave_alloc = ahd_linux_slave_alloc,
708 .slave_configure = ahd_linux_slave_configure,
709 .slave_destroy = ahd_linux_slave_destroy,
710 .target_alloc = ahd_linux_target_alloc,
711 .target_destroy = ahd_linux_target_destroy,
714 /******************************** Bus DMA *************************************/
716 ahd_dma_tag_create(struct ahd_softc *ahd, bus_dma_tag_t parent,
717 bus_size_t alignment, bus_size_t boundary,
718 dma_addr_t lowaddr, dma_addr_t highaddr,
719 bus_dma_filter_t *filter, void *filterarg,
720 bus_size_t maxsize, int nsegments,
721 bus_size_t maxsegsz, int flags, bus_dma_tag_t *ret_tag)
723 bus_dma_tag_t dmat;
725 dmat = malloc(sizeof(*dmat), M_DEVBUF, M_NOWAIT);
726 if (dmat == NULL)
727 return (ENOMEM);
730 * Linux is very simplistic about DMA memory. For now don't
731 * maintain all specification information. Once Linux supplies
732 * better facilities for doing these operations, or the
733 * needs of this particular driver change, we might need to do
734 * more here.
736 dmat->alignment = alignment;
737 dmat->boundary = boundary;
738 dmat->maxsize = maxsize;
739 *ret_tag = dmat;
740 return (0);
743 void
744 ahd_dma_tag_destroy(struct ahd_softc *ahd, bus_dma_tag_t dmat)
746 free(dmat, M_DEVBUF);
750 ahd_dmamem_alloc(struct ahd_softc *ahd, bus_dma_tag_t dmat, void** vaddr,
751 int flags, bus_dmamap_t *mapp)
753 *vaddr = pci_alloc_consistent(ahd->dev_softc,
754 dmat->maxsize, mapp);
755 if (*vaddr == NULL)
756 return (ENOMEM);
757 return(0);
760 void
761 ahd_dmamem_free(struct ahd_softc *ahd, bus_dma_tag_t dmat,
762 void* vaddr, bus_dmamap_t map)
764 pci_free_consistent(ahd->dev_softc, dmat->maxsize,
765 vaddr, map);
769 ahd_dmamap_load(struct ahd_softc *ahd, bus_dma_tag_t dmat, bus_dmamap_t map,
770 void *buf, bus_size_t buflen, bus_dmamap_callback_t *cb,
771 void *cb_arg, int flags)
774 * Assume for now that this will only be used during
775 * initialization and not for per-transaction buffer mapping.
777 bus_dma_segment_t stack_sg;
779 stack_sg.ds_addr = map;
780 stack_sg.ds_len = dmat->maxsize;
781 cb(cb_arg, &stack_sg, /*nseg*/1, /*error*/0);
782 return (0);
785 void
786 ahd_dmamap_destroy(struct ahd_softc *ahd, bus_dma_tag_t dmat, bus_dmamap_t map)
791 ahd_dmamap_unload(struct ahd_softc *ahd, bus_dma_tag_t dmat, bus_dmamap_t map)
793 /* Nothing to do */
794 return (0);
797 /********************* Platform Dependent Functions ***************************/
799 * Compare "left hand" softc with "right hand" softc, returning:
800 * < 0 - lahd has a lower priority than rahd
801 * 0 - Softcs are equal
802 * > 0 - lahd has a higher priority than rahd
805 ahd_softc_comp(struct ahd_softc *lahd, struct ahd_softc *rahd)
807 int value;
810 * Under Linux, cards are ordered as follows:
811 * 1) PCI devices that are marked as the boot controller.
812 * 2) PCI devices with BIOS enabled sorted by bus/slot/func.
813 * 3) All remaining PCI devices sorted by bus/slot/func.
815 #if 0
816 value = (lahd->flags & AHD_BOOT_CHANNEL)
817 - (rahd->flags & AHD_BOOT_CHANNEL);
818 if (value != 0)
819 /* Controllers set for boot have a *higher* priority */
820 return (value);
821 #endif
823 value = (lahd->flags & AHD_BIOS_ENABLED)
824 - (rahd->flags & AHD_BIOS_ENABLED);
825 if (value != 0)
826 /* Controllers with BIOS enabled have a *higher* priority */
827 return (value);
829 /* Still equal. Sort by bus/slot/func. */
830 if (aic79xx_reverse_scan != 0)
831 value = ahd_get_pci_bus(lahd->dev_softc)
832 - ahd_get_pci_bus(rahd->dev_softc);
833 else
834 value = ahd_get_pci_bus(rahd->dev_softc)
835 - ahd_get_pci_bus(lahd->dev_softc);
836 if (value != 0)
837 return (value);
838 if (aic79xx_reverse_scan != 0)
839 value = ahd_get_pci_slot(lahd->dev_softc)
840 - ahd_get_pci_slot(rahd->dev_softc);
841 else
842 value = ahd_get_pci_slot(rahd->dev_softc)
843 - ahd_get_pci_slot(lahd->dev_softc);
844 if (value != 0)
845 return (value);
847 value = rahd->channel - lahd->channel;
848 return (value);
851 static void
852 ahd_linux_setup_iocell_info(u_long index, int instance, int targ, int32_t value)
855 if ((instance >= 0)
856 && (instance < NUM_ELEMENTS(aic79xx_iocell_info))) {
857 uint8_t *iocell_info;
859 iocell_info = (uint8_t*)&aic79xx_iocell_info[instance];
860 iocell_info[index] = value & 0xFFFF;
861 if (bootverbose)
862 printf("iocell[%d:%ld] = %d\n", instance, index, value);
866 static void
867 ahd_linux_setup_tag_info_global(char *p)
869 int tags, i, j;
871 tags = simple_strtoul(p + 1, NULL, 0) & 0xff;
872 printf("Setting Global Tags= %d\n", tags);
874 for (i = 0; i < NUM_ELEMENTS(aic79xx_tag_info); i++) {
875 for (j = 0; j < AHD_NUM_TARGETS; j++) {
876 aic79xx_tag_info[i].tag_commands[j] = tags;
881 static void
882 ahd_linux_setup_tag_info(u_long arg, int instance, int targ, int32_t value)
885 if ((instance >= 0) && (targ >= 0)
886 && (instance < NUM_ELEMENTS(aic79xx_tag_info))
887 && (targ < AHD_NUM_TARGETS)) {
888 aic79xx_tag_info[instance].tag_commands[targ] = value & 0x1FF;
889 if (bootverbose)
890 printf("tag_info[%d:%d] = %d\n", instance, targ, value);
894 static char *
895 ahd_parse_brace_option(char *opt_name, char *opt_arg, char *end, int depth,
896 void (*callback)(u_long, int, int, int32_t),
897 u_long callback_arg)
899 char *tok_end;
900 char *tok_end2;
901 int i;
902 int instance;
903 int targ;
904 int done;
905 char tok_list[] = {'.', ',', '{', '}', '\0'};
907 /* All options use a ':' name/arg separator */
908 if (*opt_arg != ':')
909 return (opt_arg);
910 opt_arg++;
911 instance = -1;
912 targ = -1;
913 done = FALSE;
915 * Restore separator that may be in
916 * the middle of our option argument.
918 tok_end = strchr(opt_arg, '\0');
919 if (tok_end < end)
920 *tok_end = ',';
921 while (!done) {
922 switch (*opt_arg) {
923 case '{':
924 if (instance == -1) {
925 instance = 0;
926 } else {
927 if (depth > 1) {
928 if (targ == -1)
929 targ = 0;
930 } else {
931 printf("Malformed Option %s\n",
932 opt_name);
933 done = TRUE;
936 opt_arg++;
937 break;
938 case '}':
939 if (targ != -1)
940 targ = -1;
941 else if (instance != -1)
942 instance = -1;
943 opt_arg++;
944 break;
945 case ',':
946 case '.':
947 if (instance == -1)
948 done = TRUE;
949 else if (targ >= 0)
950 targ++;
951 else if (instance >= 0)
952 instance++;
953 opt_arg++;
954 break;
955 case '\0':
956 done = TRUE;
957 break;
958 default:
959 tok_end = end;
960 for (i = 0; tok_list[i]; i++) {
961 tok_end2 = strchr(opt_arg, tok_list[i]);
962 if ((tok_end2) && (tok_end2 < tok_end))
963 tok_end = tok_end2;
965 callback(callback_arg, instance, targ,
966 simple_strtol(opt_arg, NULL, 0));
967 opt_arg = tok_end;
968 break;
971 return (opt_arg);
975 * Handle Linux boot parameters. This routine allows for assigning a value
976 * to a parameter with a ':' between the parameter and the value.
977 * ie. aic79xx=stpwlev:1,extended
979 static int
980 aic79xx_setup(char *s)
982 int i, n;
983 char *p;
984 char *end;
986 static struct {
987 const char *name;
988 uint32_t *flag;
989 } options[] = {
990 { "extended", &aic79xx_extended },
991 { "no_reset", &aic79xx_no_reset },
992 { "verbose", &aic79xx_verbose },
993 { "allow_memio", &aic79xx_allow_memio},
994 #ifdef AHD_DEBUG
995 { "debug", &ahd_debug },
996 #endif
997 { "reverse_scan", &aic79xx_reverse_scan },
998 { "periodic_otag", &aic79xx_periodic_otag },
999 { "pci_parity", &aic79xx_pci_parity },
1000 { "seltime", &aic79xx_seltime },
1001 { "tag_info", NULL },
1002 { "global_tag_depth", NULL},
1003 { "slewrate", NULL },
1004 { "precomp", NULL },
1005 { "amplitude", NULL },
1008 end = strchr(s, '\0');
1011 * XXX ia64 gcc isn't smart enough to know that NUM_ELEMENTS
1012 * will never be 0 in this case.
1014 n = 0;
1016 while ((p = strsep(&s, ",.")) != NULL) {
1017 if (*p == '\0')
1018 continue;
1019 for (i = 0; i < NUM_ELEMENTS(options); i++) {
1021 n = strlen(options[i].name);
1022 if (strncmp(options[i].name, p, n) == 0)
1023 break;
1025 if (i == NUM_ELEMENTS(options))
1026 continue;
1028 if (strncmp(p, "global_tag_depth", n) == 0) {
1029 ahd_linux_setup_tag_info_global(p + n);
1030 } else if (strncmp(p, "tag_info", n) == 0) {
1031 s = ahd_parse_brace_option("tag_info", p + n, end,
1032 2, ahd_linux_setup_tag_info, 0);
1033 } else if (strncmp(p, "slewrate", n) == 0) {
1034 s = ahd_parse_brace_option("slewrate",
1035 p + n, end, 1, ahd_linux_setup_iocell_info,
1036 AIC79XX_SLEWRATE_INDEX);
1037 } else if (strncmp(p, "precomp", n) == 0) {
1038 s = ahd_parse_brace_option("precomp",
1039 p + n, end, 1, ahd_linux_setup_iocell_info,
1040 AIC79XX_PRECOMP_INDEX);
1041 } else if (strncmp(p, "amplitude", n) == 0) {
1042 s = ahd_parse_brace_option("amplitude",
1043 p + n, end, 1, ahd_linux_setup_iocell_info,
1044 AIC79XX_AMPLITUDE_INDEX);
1045 } else if (p[n] == ':') {
1046 *(options[i].flag) = simple_strtoul(p + n + 1, NULL, 0);
1047 } else if (!strncmp(p, "verbose", n)) {
1048 *(options[i].flag) = 1;
1049 } else {
1050 *(options[i].flag) ^= 0xFFFFFFFF;
1053 return 1;
1056 __setup("aic79xx=", aic79xx_setup);
1058 uint32_t aic79xx_verbose;
1061 ahd_linux_register_host(struct ahd_softc *ahd, struct scsi_host_template *template)
1063 char buf[80];
1064 struct Scsi_Host *host;
1065 char *new_name;
1066 u_long s;
1068 template->name = ahd->description;
1069 host = scsi_host_alloc(template, sizeof(struct ahd_softc *));
1070 if (host == NULL)
1071 return (ENOMEM);
1073 *((struct ahd_softc **)host->hostdata) = ahd;
1074 ahd_lock(ahd, &s);
1075 ahd->platform_data->host = host;
1076 host->can_queue = AHD_MAX_QUEUE;
1077 host->cmd_per_lun = 2;
1078 host->sg_tablesize = AHD_NSEG;
1079 host->this_id = ahd->our_id;
1080 host->irq = ahd->platform_data->irq;
1081 host->max_id = (ahd->features & AHD_WIDE) ? 16 : 8;
1082 host->max_lun = AHD_NUM_LUNS;
1083 host->max_channel = 0;
1084 host->sg_tablesize = AHD_NSEG;
1085 ahd_set_unit(ahd, ahd_linux_unit++);
1086 sprintf(buf, "scsi%d", host->host_no);
1087 new_name = malloc(strlen(buf) + 1, M_DEVBUF, M_NOWAIT);
1088 if (new_name != NULL) {
1089 strcpy(new_name, buf);
1090 ahd_set_name(ahd, new_name);
1092 host->unique_id = ahd->unit;
1093 ahd_linux_initialize_scsi_bus(ahd);
1094 ahd_intr_enable(ahd, TRUE);
1095 ahd_unlock(ahd, &s);
1097 host->transportt = ahd_linux_transport_template;
1099 scsi_add_host(host, &ahd->dev_softc->dev); /* XXX handle failure */
1100 scsi_scan_host(host);
1101 return (0);
1104 uint64_t
1105 ahd_linux_get_memsize(void)
1107 struct sysinfo si;
1109 si_meminfo(&si);
1110 return ((uint64_t)si.totalram << PAGE_SHIFT);
1114 * Place the SCSI bus into a known state by either resetting it,
1115 * or forcing transfer negotiations on the next command to any
1116 * target.
1118 static void
1119 ahd_linux_initialize_scsi_bus(struct ahd_softc *ahd)
1121 u_int target_id;
1122 u_int numtarg;
1124 target_id = 0;
1125 numtarg = 0;
1127 if (aic79xx_no_reset != 0)
1128 ahd->flags &= ~AHD_RESET_BUS_A;
1130 if ((ahd->flags & AHD_RESET_BUS_A) != 0)
1131 ahd_reset_channel(ahd, 'A', /*initiate_reset*/TRUE);
1132 else
1133 numtarg = (ahd->features & AHD_WIDE) ? 16 : 8;
1136 * Force negotiation to async for all targets that
1137 * will not see an initial bus reset.
1139 for (; target_id < numtarg; target_id++) {
1140 struct ahd_devinfo devinfo;
1141 struct ahd_initiator_tinfo *tinfo;
1142 struct ahd_tmode_tstate *tstate;
1144 tinfo = ahd_fetch_transinfo(ahd, 'A', ahd->our_id,
1145 target_id, &tstate);
1146 ahd_compile_devinfo(&devinfo, ahd->our_id, target_id,
1147 CAM_LUN_WILDCARD, 'A', ROLE_INITIATOR);
1148 ahd_update_neg_request(ahd, &devinfo, tstate,
1149 tinfo, AHD_NEG_ALWAYS);
1151 /* Give the bus some time to recover */
1152 if ((ahd->flags & AHD_RESET_BUS_A) != 0) {
1153 ahd_freeze_simq(ahd);
1154 init_timer(&ahd->platform_data->reset_timer);
1155 ahd->platform_data->reset_timer.data = (u_long)ahd;
1156 ahd->platform_data->reset_timer.expires =
1157 jiffies + (AIC79XX_RESET_DELAY * HZ)/1000;
1158 ahd->platform_data->reset_timer.function =
1159 (ahd_linux_callback_t *)ahd_release_simq;
1160 add_timer(&ahd->platform_data->reset_timer);
1165 ahd_platform_alloc(struct ahd_softc *ahd, void *platform_arg)
1167 ahd->platform_data =
1168 malloc(sizeof(struct ahd_platform_data), M_DEVBUF, M_NOWAIT);
1169 if (ahd->platform_data == NULL)
1170 return (ENOMEM);
1171 memset(ahd->platform_data, 0, sizeof(struct ahd_platform_data));
1172 ahd->platform_data->irq = AHD_LINUX_NOIRQ;
1173 ahd_lockinit(ahd);
1174 init_MUTEX_LOCKED(&ahd->platform_data->eh_sem);
1175 ahd->seltime = (aic79xx_seltime & 0x3) << 4;
1176 return (0);
1179 void
1180 ahd_platform_free(struct ahd_softc *ahd)
1182 struct scsi_target *starget;
1183 int i, j;
1185 if (ahd->platform_data != NULL) {
1186 /* destroy all of the device and target objects */
1187 for (i = 0; i < AHD_NUM_TARGETS; i++) {
1188 starget = ahd->platform_data->starget[i];
1189 if (starget != NULL) {
1190 for (j = 0; j < AHD_NUM_LUNS; j++) {
1191 struct ahd_linux_target *targ =
1192 scsi_transport_target_data(starget);
1193 if (targ->sdev[j] == NULL)
1194 continue;
1195 targ->sdev[j] = NULL;
1197 ahd->platform_data->starget[i] = NULL;
1201 if (ahd->platform_data->irq != AHD_LINUX_NOIRQ)
1202 free_irq(ahd->platform_data->irq, ahd);
1203 if (ahd->tags[0] == BUS_SPACE_PIO
1204 && ahd->bshs[0].ioport != 0)
1205 release_region(ahd->bshs[0].ioport, 256);
1206 if (ahd->tags[1] == BUS_SPACE_PIO
1207 && ahd->bshs[1].ioport != 0)
1208 release_region(ahd->bshs[1].ioport, 256);
1209 if (ahd->tags[0] == BUS_SPACE_MEMIO
1210 && ahd->bshs[0].maddr != NULL) {
1211 iounmap(ahd->bshs[0].maddr);
1212 release_mem_region(ahd->platform_data->mem_busaddr,
1213 0x1000);
1215 if (ahd->platform_data->host)
1216 scsi_host_put(ahd->platform_data->host);
1218 free(ahd->platform_data, M_DEVBUF);
1222 void
1223 ahd_platform_init(struct ahd_softc *ahd)
1226 * Lookup and commit any modified IO Cell options.
1228 if (ahd->unit < NUM_ELEMENTS(aic79xx_iocell_info)) {
1229 struct ahd_linux_iocell_opts *iocell_opts;
1231 iocell_opts = &aic79xx_iocell_info[ahd->unit];
1232 if (iocell_opts->precomp != AIC79XX_DEFAULT_PRECOMP)
1233 AHD_SET_PRECOMP(ahd, iocell_opts->precomp);
1234 if (iocell_opts->slewrate != AIC79XX_DEFAULT_SLEWRATE)
1235 AHD_SET_SLEWRATE(ahd, iocell_opts->slewrate);
1236 if (iocell_opts->amplitude != AIC79XX_DEFAULT_AMPLITUDE)
1237 AHD_SET_AMPLITUDE(ahd, iocell_opts->amplitude);
1242 void
1243 ahd_platform_freeze_devq(struct ahd_softc *ahd, struct scb *scb)
1245 ahd_platform_abort_scbs(ahd, SCB_GET_TARGET(ahd, scb),
1246 SCB_GET_CHANNEL(ahd, scb),
1247 SCB_GET_LUN(scb), SCB_LIST_NULL,
1248 ROLE_UNKNOWN, CAM_REQUEUE_REQ);
1251 void
1252 ahd_platform_set_tags(struct ahd_softc *ahd, struct ahd_devinfo *devinfo,
1253 ahd_queue_alg alg)
1255 struct scsi_target *starget;
1256 struct ahd_linux_target *targ;
1257 struct ahd_linux_device *dev;
1258 struct scsi_device *sdev;
1259 int was_queuing;
1260 int now_queuing;
1262 starget = ahd->platform_data->starget[devinfo->target];
1263 targ = scsi_transport_target_data(starget);
1264 BUG_ON(targ == NULL);
1265 sdev = targ->sdev[devinfo->lun];
1266 if (sdev == NULL)
1267 return;
1269 dev = scsi_transport_device_data(sdev);
1271 if (dev == NULL)
1272 return;
1273 was_queuing = dev->flags & (AHD_DEV_Q_BASIC|AHD_DEV_Q_TAGGED);
1274 switch (alg) {
1275 default:
1276 case AHD_QUEUE_NONE:
1277 now_queuing = 0;
1278 break;
1279 case AHD_QUEUE_BASIC:
1280 now_queuing = AHD_DEV_Q_BASIC;
1281 break;
1282 case AHD_QUEUE_TAGGED:
1283 now_queuing = AHD_DEV_Q_TAGGED;
1284 break;
1286 if ((dev->flags & AHD_DEV_FREEZE_TIL_EMPTY) == 0
1287 && (was_queuing != now_queuing)
1288 && (dev->active != 0)) {
1289 dev->flags |= AHD_DEV_FREEZE_TIL_EMPTY;
1290 dev->qfrozen++;
1293 dev->flags &= ~(AHD_DEV_Q_BASIC|AHD_DEV_Q_TAGGED|AHD_DEV_PERIODIC_OTAG);
1294 if (now_queuing) {
1295 u_int usertags;
1297 usertags = ahd_linux_user_tagdepth(ahd, devinfo);
1298 if (!was_queuing) {
1300 * Start out agressively and allow our
1301 * dynamic queue depth algorithm to take
1302 * care of the rest.
1304 dev->maxtags = usertags;
1305 dev->openings = dev->maxtags - dev->active;
1307 if (dev->maxtags == 0) {
1309 * Queueing is disabled by the user.
1311 dev->openings = 1;
1312 } else if (alg == AHD_QUEUE_TAGGED) {
1313 dev->flags |= AHD_DEV_Q_TAGGED;
1314 if (aic79xx_periodic_otag != 0)
1315 dev->flags |= AHD_DEV_PERIODIC_OTAG;
1316 } else
1317 dev->flags |= AHD_DEV_Q_BASIC;
1318 } else {
1319 /* We can only have one opening. */
1320 dev->maxtags = 0;
1321 dev->openings = 1 - dev->active;
1324 switch ((dev->flags & (AHD_DEV_Q_BASIC|AHD_DEV_Q_TAGGED))) {
1325 case AHD_DEV_Q_BASIC:
1326 scsi_adjust_queue_depth(sdev,
1327 MSG_SIMPLE_TASK,
1328 dev->openings + dev->active);
1329 break;
1330 case AHD_DEV_Q_TAGGED:
1331 scsi_adjust_queue_depth(sdev,
1332 MSG_ORDERED_TASK,
1333 dev->openings + dev->active);
1334 break;
1335 default:
1337 * We allow the OS to queue 2 untagged transactions to
1338 * us at any time even though we can only execute them
1339 * serially on the controller/device. This should
1340 * remove some latency.
1342 scsi_adjust_queue_depth(sdev,
1343 /*NON-TAGGED*/0,
1344 /*queue depth*/2);
1345 break;
1350 ahd_platform_abort_scbs(struct ahd_softc *ahd, int target, char channel,
1351 int lun, u_int tag, role_t role, uint32_t status)
1353 return 0;
1356 static u_int
1357 ahd_linux_user_tagdepth(struct ahd_softc *ahd, struct ahd_devinfo *devinfo)
1359 static int warned_user;
1360 u_int tags;
1362 tags = 0;
1363 if ((ahd->user_discenable & devinfo->target_mask) != 0) {
1364 if (ahd->unit >= NUM_ELEMENTS(aic79xx_tag_info)) {
1366 if (warned_user == 0) {
1367 printf(KERN_WARNING
1368 "aic79xx: WARNING: Insufficient tag_info instances\n"
1369 "aic79xx: for installed controllers. Using defaults\n"
1370 "aic79xx: Please update the aic79xx_tag_info array in\n"
1371 "aic79xx: the aic79xx_osm.c source file.\n");
1372 warned_user++;
1374 tags = AHD_MAX_QUEUE;
1375 } else {
1376 adapter_tag_info_t *tag_info;
1378 tag_info = &aic79xx_tag_info[ahd->unit];
1379 tags = tag_info->tag_commands[devinfo->target_offset];
1380 if (tags > AHD_MAX_QUEUE)
1381 tags = AHD_MAX_QUEUE;
1384 return (tags);
1388 * Determines the queue depth for a given device.
1390 static void
1391 ahd_linux_device_queue_depth(struct scsi_device *sdev)
1393 struct ahd_devinfo devinfo;
1394 u_int tags;
1395 struct ahd_softc *ahd = *((struct ahd_softc **)sdev->host->hostdata);
1397 ahd_compile_devinfo(&devinfo,
1398 ahd->our_id,
1399 sdev->sdev_target->id, sdev->lun,
1400 sdev->sdev_target->channel == 0 ? 'A' : 'B',
1401 ROLE_INITIATOR);
1402 tags = ahd_linux_user_tagdepth(ahd, &devinfo);
1403 if (tags != 0 && sdev->tagged_supported != 0) {
1405 ahd_set_tags(ahd, &devinfo, AHD_QUEUE_TAGGED);
1406 ahd_print_devinfo(ahd, &devinfo);
1407 printf("Tagged Queuing enabled. Depth %d\n", tags);
1408 } else {
1409 ahd_set_tags(ahd, &devinfo, AHD_QUEUE_NONE);
1413 static int
1414 ahd_linux_run_command(struct ahd_softc *ahd, struct ahd_linux_device *dev,
1415 struct scsi_cmnd *cmd)
1417 struct scb *scb;
1418 struct hardware_scb *hscb;
1419 struct ahd_initiator_tinfo *tinfo;
1420 struct ahd_tmode_tstate *tstate;
1421 u_int col_idx;
1422 uint16_t mask;
1425 * Get an scb to use.
1427 tinfo = ahd_fetch_transinfo(ahd, 'A', ahd->our_id,
1428 cmd->device->id, &tstate);
1429 if ((dev->flags & (AHD_DEV_Q_TAGGED|AHD_DEV_Q_BASIC)) == 0
1430 || (tinfo->curr.ppr_options & MSG_EXT_PPR_IU_REQ) != 0) {
1431 col_idx = AHD_NEVER_COL_IDX;
1432 } else {
1433 col_idx = AHD_BUILD_COL_IDX(cmd->device->id,
1434 cmd->device->lun);
1436 if ((scb = ahd_get_scb(ahd, col_idx)) == NULL) {
1437 ahd->flags |= AHD_RESOURCE_SHORTAGE;
1438 return SCSI_MLQUEUE_HOST_BUSY;
1441 scb->io_ctx = cmd;
1442 scb->platform_data->dev = dev;
1443 hscb = scb->hscb;
1444 cmd->host_scribble = (char *)scb;
1447 * Fill out basics of the HSCB.
1449 hscb->control = 0;
1450 hscb->scsiid = BUILD_SCSIID(ahd, cmd);
1451 hscb->lun = cmd->device->lun;
1452 scb->hscb->task_management = 0;
1453 mask = SCB_GET_TARGET_MASK(ahd, scb);
1455 if ((ahd->user_discenable & mask) != 0)
1456 hscb->control |= DISCENB;
1458 if ((tinfo->curr.ppr_options & MSG_EXT_PPR_IU_REQ) != 0)
1459 scb->flags |= SCB_PACKETIZED;
1461 if ((tstate->auto_negotiate & mask) != 0) {
1462 scb->flags |= SCB_AUTO_NEGOTIATE;
1463 scb->hscb->control |= MK_MESSAGE;
1466 if ((dev->flags & (AHD_DEV_Q_TAGGED|AHD_DEV_Q_BASIC)) != 0) {
1467 int msg_bytes;
1468 uint8_t tag_msgs[2];
1470 msg_bytes = scsi_populate_tag_msg(cmd, tag_msgs);
1471 if (msg_bytes && tag_msgs[0] != MSG_SIMPLE_TASK) {
1472 hscb->control |= tag_msgs[0];
1473 if (tag_msgs[0] == MSG_ORDERED_TASK)
1474 dev->commands_since_idle_or_otag = 0;
1475 } else
1476 if (dev->commands_since_idle_or_otag == AHD_OTAG_THRESH
1477 && (dev->flags & AHD_DEV_Q_TAGGED) != 0) {
1478 hscb->control |= MSG_ORDERED_TASK;
1479 dev->commands_since_idle_or_otag = 0;
1480 } else {
1481 hscb->control |= MSG_SIMPLE_TASK;
1485 hscb->cdb_len = cmd->cmd_len;
1486 memcpy(hscb->shared_data.idata.cdb, cmd->cmnd, hscb->cdb_len);
1488 scb->platform_data->xfer_len = 0;
1489 ahd_set_residual(scb, 0);
1490 ahd_set_sense_residual(scb, 0);
1491 scb->sg_count = 0;
1492 if (cmd->use_sg != 0) {
1493 void *sg;
1494 struct scatterlist *cur_seg;
1495 u_int nseg;
1496 int dir;
1498 cur_seg = (struct scatterlist *)cmd->request_buffer;
1499 dir = cmd->sc_data_direction;
1500 nseg = pci_map_sg(ahd->dev_softc, cur_seg,
1501 cmd->use_sg, dir);
1502 scb->platform_data->xfer_len = 0;
1503 for (sg = scb->sg_list; nseg > 0; nseg--, cur_seg++) {
1504 dma_addr_t addr;
1505 bus_size_t len;
1507 addr = sg_dma_address(cur_seg);
1508 len = sg_dma_len(cur_seg);
1509 scb->platform_data->xfer_len += len;
1510 sg = ahd_sg_setup(ahd, scb, sg, addr, len,
1511 /*last*/nseg == 1);
1513 } else if (cmd->request_bufflen != 0) {
1514 void *sg;
1515 dma_addr_t addr;
1516 int dir;
1518 sg = scb->sg_list;
1519 dir = cmd->sc_data_direction;
1520 addr = pci_map_single(ahd->dev_softc,
1521 cmd->request_buffer,
1522 cmd->request_bufflen, dir);
1523 scb->platform_data->xfer_len = cmd->request_bufflen;
1524 scb->platform_data->buf_busaddr = addr;
1525 sg = ahd_sg_setup(ahd, scb, sg, addr,
1526 cmd->request_bufflen, /*last*/TRUE);
1529 LIST_INSERT_HEAD(&ahd->pending_scbs, scb, pending_links);
1530 dev->openings--;
1531 dev->active++;
1532 dev->commands_issued++;
1534 if ((dev->flags & AHD_DEV_PERIODIC_OTAG) != 0)
1535 dev->commands_since_idle_or_otag++;
1536 scb->flags |= SCB_ACTIVE;
1537 ahd_queue_scb(ahd, scb);
1539 return 0;
1543 * SCSI controller interrupt handler.
1545 irqreturn_t
1546 ahd_linux_isr(int irq, void *dev_id, struct pt_regs * regs)
1548 struct ahd_softc *ahd;
1549 u_long flags;
1550 int ours;
1552 ahd = (struct ahd_softc *) dev_id;
1553 ahd_lock(ahd, &flags);
1554 ours = ahd_intr(ahd);
1555 ahd_unlock(ahd, &flags);
1556 return IRQ_RETVAL(ours);
1559 void
1560 ahd_platform_flushwork(struct ahd_softc *ahd)
1565 void
1566 ahd_send_async(struct ahd_softc *ahd, char channel,
1567 u_int target, u_int lun, ac_code code, void *arg)
1569 switch (code) {
1570 case AC_TRANSFER_NEG:
1572 char buf[80];
1573 struct scsi_target *starget;
1574 struct ahd_linux_target *targ;
1575 struct info_str info;
1576 struct ahd_initiator_tinfo *tinfo;
1577 struct ahd_tmode_tstate *tstate;
1578 unsigned int target_ppr_options;
1580 BUG_ON(target == CAM_TARGET_WILDCARD);
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);
1590 * Don't bother reporting results while
1591 * negotiations are still pending.
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;
1601 * Don't bother reporting results that
1602 * are identical to those last reported.
1604 starget = ahd->platform_data->starget[target];
1605 if (starget == NULL)
1606 break;
1607 targ = scsi_transport_target_data(starget);
1609 target_ppr_options =
1610 (spi_dt(starget) ? MSG_EXT_PPR_DT_REQ : 0)
1611 + (spi_qas(starget) ? MSG_EXT_PPR_QAS_REQ : 0)
1612 + (spi_iu(starget) ? MSG_EXT_PPR_IU_REQ : 0)
1613 + (spi_rd_strm(starget) ? MSG_EXT_PPR_RD_STRM : 0)
1614 + (spi_pcomp_en(starget) ? MSG_EXT_PPR_PCOMP_EN : 0)
1615 + (spi_rti(starget) ? MSG_EXT_PPR_RTI : 0)
1616 + (spi_wr_flow(starget) ? MSG_EXT_PPR_WR_FLOW : 0)
1617 + (spi_hold_mcs(starget) ? MSG_EXT_PPR_HOLD_MCS : 0);
1619 if (tinfo->curr.period == spi_period(starget)
1620 && tinfo->curr.width == spi_width(starget)
1621 && tinfo->curr.offset == spi_offset(starget)
1622 && tinfo->curr.ppr_options == target_ppr_options)
1623 if (bootverbose == 0)
1624 break;
1626 spi_period(starget) = tinfo->curr.period;
1627 spi_width(starget) = tinfo->curr.width;
1628 spi_offset(starget) = tinfo->curr.offset;
1629 spi_dt(starget) = tinfo->curr.ppr_options & MSG_EXT_PPR_DT_REQ ? 1 : 0;
1630 spi_qas(starget) = tinfo->curr.ppr_options & MSG_EXT_PPR_QAS_REQ ? 1 : 0;
1631 spi_iu(starget) = tinfo->curr.ppr_options & MSG_EXT_PPR_IU_REQ ? 1 : 0;
1632 spi_rd_strm(starget) = tinfo->curr.ppr_options & MSG_EXT_PPR_RD_STRM ? 1 : 0;
1633 spi_pcomp_en(starget) = tinfo->curr.ppr_options & MSG_EXT_PPR_PCOMP_EN ? 1 : 0;
1634 spi_rti(starget) = tinfo->curr.ppr_options & MSG_EXT_PPR_RTI ? 1 : 0;
1635 spi_wr_flow(starget) = tinfo->curr.ppr_options & MSG_EXT_PPR_WR_FLOW ? 1 : 0;
1636 spi_hold_mcs(starget) = tinfo->curr.ppr_options & MSG_EXT_PPR_HOLD_MCS ? 1 : 0;
1637 spi_display_xfer_agreement(starget);
1638 break;
1640 case AC_SENT_BDR:
1642 WARN_ON(lun != CAM_LUN_WILDCARD);
1643 scsi_report_device_reset(ahd->platform_data->host,
1644 channel - 'A', target);
1645 break;
1647 case AC_BUS_RESET:
1648 if (ahd->platform_data->host != NULL) {
1649 scsi_report_bus_reset(ahd->platform_data->host,
1650 channel - 'A');
1652 break;
1653 default:
1654 panic("ahd_send_async: Unexpected async event");
1659 * Calls the higher level scsi done function and frees the scb.
1661 void
1662 ahd_done(struct ahd_softc *ahd, struct scb *scb)
1664 struct scsi_cmnd *cmd;
1665 struct ahd_linux_device *dev;
1667 if ((scb->flags & SCB_ACTIVE) == 0) {
1668 printf("SCB %d done'd twice\n", SCB_GET_TAG(scb));
1669 ahd_dump_card_state(ahd);
1670 panic("Stopping for safety");
1672 LIST_REMOVE(scb, pending_links);
1673 cmd = scb->io_ctx;
1674 dev = scb->platform_data->dev;
1675 dev->active--;
1676 dev->openings++;
1677 if ((cmd->result & (CAM_DEV_QFRZN << 16)) != 0) {
1678 cmd->result &= ~(CAM_DEV_QFRZN << 16);
1679 dev->qfrozen--;
1681 ahd_linux_unmap_scb(ahd, scb);
1684 * Guard against stale sense data.
1685 * The Linux mid-layer assumes that sense
1686 * was retrieved anytime the first byte of
1687 * the sense buffer looks "sane".
1689 cmd->sense_buffer[0] = 0;
1690 if (ahd_get_transaction_status(scb) == CAM_REQ_INPROG) {
1691 uint32_t amount_xferred;
1693 amount_xferred =
1694 ahd_get_transfer_length(scb) - ahd_get_residual(scb);
1695 if ((scb->flags & SCB_TRANSMISSION_ERROR) != 0) {
1696 #ifdef AHD_DEBUG
1697 if ((ahd_debug & AHD_SHOW_MISC) != 0) {
1698 ahd_print_path(ahd, scb);
1699 printf("Set CAM_UNCOR_PARITY\n");
1701 #endif
1702 ahd_set_transaction_status(scb, CAM_UNCOR_PARITY);
1703 #ifdef AHD_REPORT_UNDERFLOWS
1705 * This code is disabled by default as some
1706 * clients of the SCSI system do not properly
1707 * initialize the underflow parameter. This
1708 * results in spurious termination of commands
1709 * that complete as expected (e.g. underflow is
1710 * allowed as command can return variable amounts
1711 * of data.
1713 } else if (amount_xferred < scb->io_ctx->underflow) {
1714 u_int i;
1716 ahd_print_path(ahd, scb);
1717 printf("CDB:");
1718 for (i = 0; i < scb->io_ctx->cmd_len; i++)
1719 printf(" 0x%x", scb->io_ctx->cmnd[i]);
1720 printf("\n");
1721 ahd_print_path(ahd, scb);
1722 printf("Saw underflow (%ld of %ld bytes). "
1723 "Treated as error\n",
1724 ahd_get_residual(scb),
1725 ahd_get_transfer_length(scb));
1726 ahd_set_transaction_status(scb, CAM_DATA_RUN_ERR);
1727 #endif
1728 } else {
1729 ahd_set_transaction_status(scb, CAM_REQ_CMP);
1731 } else if (ahd_get_transaction_status(scb) == CAM_SCSI_STATUS_ERROR) {
1732 ahd_linux_handle_scsi_status(ahd, cmd->device, scb);
1735 if (dev->openings == 1
1736 && ahd_get_transaction_status(scb) == CAM_REQ_CMP
1737 && ahd_get_scsi_status(scb) != SCSI_STATUS_QUEUE_FULL)
1738 dev->tag_success_count++;
1740 * Some devices deal with temporary internal resource
1741 * shortages by returning queue full. When the queue
1742 * full occurrs, we throttle back. Slowly try to get
1743 * back to our previous queue depth.
1745 if ((dev->openings + dev->active) < dev->maxtags
1746 && dev->tag_success_count > AHD_TAG_SUCCESS_INTERVAL) {
1747 dev->tag_success_count = 0;
1748 dev->openings++;
1751 if (dev->active == 0)
1752 dev->commands_since_idle_or_otag = 0;
1754 if ((scb->flags & SCB_RECOVERY_SCB) != 0) {
1755 printf("Recovery SCB completes\n");
1756 if (ahd_get_transaction_status(scb) == CAM_BDR_SENT
1757 || ahd_get_transaction_status(scb) == CAM_REQ_ABORTED)
1758 ahd_set_transaction_status(scb, CAM_CMD_TIMEOUT);
1759 if ((ahd->platform_data->flags & AHD_SCB_UP_EH_SEM) != 0) {
1760 ahd->platform_data->flags &= ~AHD_SCB_UP_EH_SEM;
1761 up(&ahd->platform_data->eh_sem);
1765 ahd_free_scb(ahd, scb);
1766 ahd_linux_queue_cmd_complete(ahd, cmd);
1769 static void
1770 ahd_linux_handle_scsi_status(struct ahd_softc *ahd,
1771 struct scsi_device *sdev, struct scb *scb)
1773 struct ahd_devinfo devinfo;
1774 struct ahd_linux_device *dev = scsi_transport_device_data(sdev);
1776 ahd_compile_devinfo(&devinfo,
1777 ahd->our_id,
1778 sdev->sdev_target->id, sdev->lun,
1779 sdev->sdev_target->channel == 0 ? 'A' : 'B',
1780 ROLE_INITIATOR);
1783 * We don't currently trust the mid-layer to
1784 * properly deal with queue full or busy. So,
1785 * when one occurs, we tell the mid-layer to
1786 * unconditionally requeue the command to us
1787 * so that we can retry it ourselves. We also
1788 * implement our own throttling mechanism so
1789 * we don't clobber the device with too many
1790 * commands.
1792 switch (ahd_get_scsi_status(scb)) {
1793 default:
1794 break;
1795 case SCSI_STATUS_CHECK_COND:
1796 case SCSI_STATUS_CMD_TERMINATED:
1798 struct scsi_cmnd *cmd;
1801 * Copy sense information to the OS's cmd
1802 * structure if it is available.
1804 cmd = scb->io_ctx;
1805 if ((scb->flags & (SCB_SENSE|SCB_PKT_SENSE)) != 0) {
1806 struct scsi_status_iu_header *siu;
1807 u_int sense_size;
1808 u_int sense_offset;
1810 if (scb->flags & SCB_SENSE) {
1811 sense_size = MIN(sizeof(struct scsi_sense_data)
1812 - ahd_get_sense_residual(scb),
1813 sizeof(cmd->sense_buffer));
1814 sense_offset = 0;
1815 } else {
1817 * Copy only the sense data into the provided
1818 * buffer.
1820 siu = (struct scsi_status_iu_header *)
1821 scb->sense_data;
1822 sense_size = MIN(scsi_4btoul(siu->sense_length),
1823 sizeof(cmd->sense_buffer));
1824 sense_offset = SIU_SENSE_OFFSET(siu);
1827 memset(cmd->sense_buffer, 0, sizeof(cmd->sense_buffer));
1828 memcpy(cmd->sense_buffer,
1829 ahd_get_sense_buf(ahd, scb)
1830 + sense_offset, sense_size);
1831 cmd->result |= (DRIVER_SENSE << 24);
1833 #ifdef AHD_DEBUG
1834 if (ahd_debug & AHD_SHOW_SENSE) {
1835 int i;
1837 printf("Copied %d bytes of sense data at %d:",
1838 sense_size, sense_offset);
1839 for (i = 0; i < sense_size; i++) {
1840 if ((i & 0xF) == 0)
1841 printf("\n");
1842 printf("0x%x ", cmd->sense_buffer[i]);
1844 printf("\n");
1846 #endif
1848 break;
1850 case SCSI_STATUS_QUEUE_FULL:
1852 * By the time the core driver has returned this
1853 * command, all other commands that were queued
1854 * to us but not the device have been returned.
1855 * This ensures that dev->active is equal to
1856 * the number of commands actually queued to
1857 * the device.
1859 dev->tag_success_count = 0;
1860 if (dev->active != 0) {
1862 * Drop our opening count to the number
1863 * of commands currently outstanding.
1865 dev->openings = 0;
1866 #ifdef AHD_DEBUG
1867 if ((ahd_debug & AHD_SHOW_QFULL) != 0) {
1868 ahd_print_path(ahd, scb);
1869 printf("Dropping tag count to %d\n",
1870 dev->active);
1872 #endif
1873 if (dev->active == dev->tags_on_last_queuefull) {
1875 dev->last_queuefull_same_count++;
1877 * If we repeatedly see a queue full
1878 * at the same queue depth, this
1879 * device has a fixed number of tag
1880 * slots. Lock in this tag depth
1881 * so we stop seeing queue fulls from
1882 * this device.
1884 if (dev->last_queuefull_same_count
1885 == AHD_LOCK_TAGS_COUNT) {
1886 dev->maxtags = dev->active;
1887 ahd_print_path(ahd, scb);
1888 printf("Locking max tag count at %d\n",
1889 dev->active);
1891 } else {
1892 dev->tags_on_last_queuefull = dev->active;
1893 dev->last_queuefull_same_count = 0;
1895 ahd_set_transaction_status(scb, CAM_REQUEUE_REQ);
1896 ahd_set_scsi_status(scb, SCSI_STATUS_OK);
1897 ahd_platform_set_tags(ahd, &devinfo,
1898 (dev->flags & AHD_DEV_Q_BASIC)
1899 ? AHD_QUEUE_BASIC : AHD_QUEUE_TAGGED);
1900 break;
1903 * Drop down to a single opening, and treat this
1904 * as if the target returned BUSY SCSI status.
1906 dev->openings = 1;
1907 ahd_platform_set_tags(ahd, &devinfo,
1908 (dev->flags & AHD_DEV_Q_BASIC)
1909 ? AHD_QUEUE_BASIC : AHD_QUEUE_TAGGED);
1910 ahd_set_scsi_status(scb, SCSI_STATUS_BUSY);
1914 static void
1915 ahd_linux_queue_cmd_complete(struct ahd_softc *ahd, struct scsi_cmnd *cmd)
1918 * Map CAM error codes into Linux Error codes. We
1919 * avoid the conversion so that the DV code has the
1920 * full error information available when making
1921 * state change decisions.
1924 uint32_t status;
1925 u_int new_status;
1927 status = ahd_cmd_get_transaction_status(cmd);
1928 switch (status) {
1929 case CAM_REQ_INPROG:
1930 case CAM_REQ_CMP:
1931 case CAM_SCSI_STATUS_ERROR:
1932 new_status = DID_OK;
1933 break;
1934 case CAM_REQ_ABORTED:
1935 new_status = DID_ABORT;
1936 break;
1937 case CAM_BUSY:
1938 new_status = DID_BUS_BUSY;
1939 break;
1940 case CAM_REQ_INVALID:
1941 case CAM_PATH_INVALID:
1942 new_status = DID_BAD_TARGET;
1943 break;
1944 case CAM_SEL_TIMEOUT:
1945 new_status = DID_NO_CONNECT;
1946 break;
1947 case CAM_SCSI_BUS_RESET:
1948 case CAM_BDR_SENT:
1949 new_status = DID_RESET;
1950 break;
1951 case CAM_UNCOR_PARITY:
1952 new_status = DID_PARITY;
1953 break;
1954 case CAM_CMD_TIMEOUT:
1955 new_status = DID_TIME_OUT;
1956 break;
1957 case CAM_UA_ABORT:
1958 case CAM_REQ_CMP_ERR:
1959 case CAM_AUTOSENSE_FAIL:
1960 case CAM_NO_HBA:
1961 case CAM_DATA_RUN_ERR:
1962 case CAM_UNEXP_BUSFREE:
1963 case CAM_SEQUENCE_FAIL:
1964 case CAM_CCB_LEN_ERR:
1965 case CAM_PROVIDE_FAIL:
1966 case CAM_REQ_TERMIO:
1967 case CAM_UNREC_HBA_ERROR:
1968 case CAM_REQ_TOO_BIG:
1969 new_status = DID_ERROR;
1970 break;
1971 case CAM_REQUEUE_REQ:
1972 new_status = DID_REQUEUE;
1973 break;
1974 default:
1975 /* We should never get here */
1976 new_status = DID_ERROR;
1977 break;
1980 ahd_cmd_set_transaction_status(cmd, new_status);
1983 cmd->scsi_done(cmd);
1986 static void
1987 ahd_linux_sem_timeout(u_long arg)
1989 struct ahd_softc *ahd;
1990 u_long s;
1992 ahd = (struct ahd_softc *)arg;
1994 ahd_lock(ahd, &s);
1995 if ((ahd->platform_data->flags & AHD_SCB_UP_EH_SEM) != 0) {
1996 ahd->platform_data->flags &= ~AHD_SCB_UP_EH_SEM;
1997 up(&ahd->platform_data->eh_sem);
1999 ahd_unlock(ahd, &s);
2002 void
2003 ahd_freeze_simq(struct ahd_softc *ahd)
2005 ahd->platform_data->qfrozen++;
2006 if (ahd->platform_data->qfrozen == 1) {
2007 scsi_block_requests(ahd->platform_data->host);
2008 ahd_platform_abort_scbs(ahd, CAM_TARGET_WILDCARD, ALL_CHANNELS,
2009 CAM_LUN_WILDCARD, SCB_LIST_NULL,
2010 ROLE_INITIATOR, CAM_REQUEUE_REQ);
2014 void
2015 ahd_release_simq(struct ahd_softc *ahd)
2017 u_long s;
2018 int unblock_reqs;
2020 unblock_reqs = 0;
2021 ahd_lock(ahd, &s);
2022 if (ahd->platform_data->qfrozen > 0)
2023 ahd->platform_data->qfrozen--;
2024 if (ahd->platform_data->qfrozen == 0) {
2025 unblock_reqs = 1;
2027 ahd_unlock(ahd, &s);
2029 * There is still a race here. The mid-layer
2030 * should keep its own freeze count and use
2031 * a bottom half handler to run the queues
2032 * so we can unblock with our own lock held.
2034 if (unblock_reqs)
2035 scsi_unblock_requests(ahd->platform_data->host);
2038 static int
2039 ahd_linux_queue_recovery_cmd(struct scsi_cmnd *cmd, scb_flag flag)
2041 struct ahd_softc *ahd;
2042 struct ahd_linux_device *dev;
2043 struct scb *pending_scb;
2044 u_int saved_scbptr;
2045 u_int active_scbptr;
2046 u_int last_phase;
2047 u_int saved_scsiid;
2048 u_int cdb_byte;
2049 int retval;
2050 int was_paused;
2051 int paused;
2052 int wait;
2053 int disconnected;
2054 ahd_mode_state saved_modes;
2055 unsigned long flags;
2057 pending_scb = NULL;
2058 paused = FALSE;
2059 wait = FALSE;
2060 ahd = *(struct ahd_softc **)cmd->device->host->hostdata;
2062 scmd_printk(KERN_INFO, cmd,
2063 "Attempting to queue a%s message:",
2064 flag == SCB_ABORT ? "n ABORT" : " TARGET RESET");
2066 printf("CDB:");
2067 for (cdb_byte = 0; cdb_byte < cmd->cmd_len; cdb_byte++)
2068 printf(" 0x%x", cmd->cmnd[cdb_byte]);
2069 printf("\n");
2071 ahd_lock(ahd, &flags);
2074 * First determine if we currently own this command.
2075 * Start by searching the device queue. If not found
2076 * there, check the pending_scb list. If not found
2077 * at all, and the system wanted us to just abort the
2078 * command, return success.
2080 dev = scsi_transport_device_data(cmd->device);
2082 if (dev == NULL) {
2084 * No target device for this command exists,
2085 * so we must not still own the command.
2087 scmd_printk(KERN_INFO, cmd, "Is not an active device\n");
2088 retval = SUCCESS;
2089 goto no_cmd;
2093 * See if we can find a matching cmd in the pending list.
2095 LIST_FOREACH(pending_scb, &ahd->pending_scbs, pending_links) {
2096 if (pending_scb->io_ctx == cmd)
2097 break;
2100 if (pending_scb == NULL && flag == SCB_DEVICE_RESET) {
2102 /* Any SCB for this device will do for a target reset */
2103 LIST_FOREACH(pending_scb, &ahd->pending_scbs, pending_links) {
2104 if (ahd_match_scb(ahd, pending_scb,
2105 scmd_id(cmd),
2106 scmd_channel(cmd) + 'A',
2107 CAM_LUN_WILDCARD,
2108 SCB_LIST_NULL, ROLE_INITIATOR))
2109 break;
2113 if (pending_scb == NULL) {
2114 scmd_printk(KERN_INFO, cmd, "Command not found\n");
2115 goto no_cmd;
2118 if ((pending_scb->flags & SCB_RECOVERY_SCB) != 0) {
2120 * We can't queue two recovery actions using the same SCB
2122 retval = FAILED;
2123 goto done;
2127 * Ensure that the card doesn't do anything
2128 * behind our back. Also make sure that we
2129 * didn't "just" miss an interrupt that would
2130 * affect this cmd.
2132 was_paused = ahd_is_paused(ahd);
2133 ahd_pause_and_flushwork(ahd);
2134 paused = TRUE;
2136 if ((pending_scb->flags & SCB_ACTIVE) == 0) {
2137 scmd_printk(KERN_INFO, cmd, "Command already completed\n");
2138 goto no_cmd;
2141 printf("%s: At time of recovery, card was %spaused\n",
2142 ahd_name(ahd), was_paused ? "" : "not ");
2143 ahd_dump_card_state(ahd);
2145 disconnected = TRUE;
2146 if (flag == SCB_ABORT) {
2147 if (ahd_search_qinfifo(ahd, cmd->device->id,
2148 cmd->device->channel + 'A',
2149 cmd->device->lun,
2150 pending_scb->hscb->tag,
2151 ROLE_INITIATOR, CAM_REQ_ABORTED,
2152 SEARCH_COMPLETE) > 0) {
2153 printf("%s:%d:%d:%d: Cmd aborted from QINFIFO\n",
2154 ahd_name(ahd), cmd->device->channel,
2155 cmd->device->id, cmd->device->lun);
2156 retval = SUCCESS;
2157 goto done;
2159 } else if (ahd_search_qinfifo(ahd, cmd->device->id,
2160 cmd->device->channel + 'A',
2161 cmd->device->lun, pending_scb->hscb->tag,
2162 ROLE_INITIATOR, /*status*/0,
2163 SEARCH_COUNT) > 0) {
2164 disconnected = FALSE;
2167 saved_modes = ahd_save_modes(ahd);
2168 ahd_set_modes(ahd, AHD_MODE_SCSI, AHD_MODE_SCSI);
2169 last_phase = ahd_inb(ahd, LASTPHASE);
2170 saved_scbptr = ahd_get_scbptr(ahd);
2171 active_scbptr = saved_scbptr;
2172 if (disconnected && (ahd_inb(ahd, SEQ_FLAGS) & NOT_IDENTIFIED) == 0) {
2173 struct scb *bus_scb;
2175 bus_scb = ahd_lookup_scb(ahd, active_scbptr);
2176 if (bus_scb == pending_scb)
2177 disconnected = FALSE;
2178 else if (flag != SCB_ABORT
2179 && ahd_inb(ahd, SAVED_SCSIID) == pending_scb->hscb->scsiid
2180 && ahd_inb(ahd, SAVED_LUN) == SCB_GET_LUN(pending_scb))
2181 disconnected = FALSE;
2185 * At this point, pending_scb is the scb associated with the
2186 * passed in command. That command is currently active on the
2187 * bus or is in the disconnected state.
2189 saved_scsiid = ahd_inb(ahd, SAVED_SCSIID);
2190 if (last_phase != P_BUSFREE
2191 && (SCB_GET_TAG(pending_scb) == active_scbptr
2192 || (flag == SCB_DEVICE_RESET
2193 && SCSIID_TARGET(ahd, saved_scsiid) == scmd_id(cmd)))) {
2196 * We're active on the bus, so assert ATN
2197 * and hope that the target responds.
2199 pending_scb = ahd_lookup_scb(ahd, active_scbptr);
2200 pending_scb->flags |= SCB_RECOVERY_SCB|flag;
2201 ahd_outb(ahd, MSG_OUT, HOST_MSG);
2202 ahd_outb(ahd, SCSISIGO, last_phase|ATNO);
2203 scmd_printk(KERN_INFO, cmd, "Device is active, asserting ATN\n");
2204 wait = TRUE;
2205 } else if (disconnected) {
2208 * Actually re-queue this SCB in an attempt
2209 * to select the device before it reconnects.
2211 pending_scb->flags |= SCB_RECOVERY_SCB|SCB_ABORT;
2212 ahd_set_scbptr(ahd, SCB_GET_TAG(pending_scb));
2213 pending_scb->hscb->cdb_len = 0;
2214 pending_scb->hscb->task_attribute = 0;
2215 pending_scb->hscb->task_management = SIU_TASKMGMT_ABORT_TASK;
2217 if ((pending_scb->flags & SCB_PACKETIZED) != 0) {
2219 * Mark the SCB has having an outstanding
2220 * task management function. Should the command
2221 * complete normally before the task management
2222 * function can be sent, the host will be notified
2223 * to abort our requeued SCB.
2225 ahd_outb(ahd, SCB_TASK_MANAGEMENT,
2226 pending_scb->hscb->task_management);
2227 } else {
2229 * If non-packetized, set the MK_MESSAGE control
2230 * bit indicating that we desire to send a message.
2231 * We also set the disconnected flag since there is
2232 * no guarantee that our SCB control byte matches
2233 * the version on the card. We don't want the
2234 * sequencer to abort the command thinking an
2235 * unsolicited reselection occurred.
2237 pending_scb->hscb->control |= MK_MESSAGE|DISCONNECTED;
2240 * The sequencer will never re-reference the
2241 * in-core SCB. To make sure we are notified
2242 * during reslection, set the MK_MESSAGE flag in
2243 * the card's copy of the SCB.
2245 ahd_outb(ahd, SCB_CONTROL,
2246 ahd_inb(ahd, SCB_CONTROL)|MK_MESSAGE);
2250 * Clear out any entries in the QINFIFO first
2251 * so we are the next SCB for this target
2252 * to run.
2254 ahd_search_qinfifo(ahd, cmd->device->id,
2255 cmd->device->channel + 'A', cmd->device->lun,
2256 SCB_LIST_NULL, ROLE_INITIATOR,
2257 CAM_REQUEUE_REQ, SEARCH_COMPLETE);
2258 ahd_qinfifo_requeue_tail(ahd, pending_scb);
2259 ahd_set_scbptr(ahd, saved_scbptr);
2260 ahd_print_path(ahd, pending_scb);
2261 printf("Device is disconnected, re-queuing SCB\n");
2262 wait = TRUE;
2263 } else {
2264 scmd_printk(KERN_INFO, cmd, "Unable to deliver message\n");
2265 retval = FAILED;
2266 goto done;
2269 no_cmd:
2271 * Our assumption is that if we don't have the command, no
2272 * recovery action was required, so we return success. Again,
2273 * the semantics of the mid-layer recovery engine are not
2274 * well defined, so this may change in time.
2276 retval = SUCCESS;
2277 done:
2278 if (paused)
2279 ahd_unpause(ahd);
2280 if (wait) {
2281 struct timer_list timer;
2282 int ret;
2284 ahd->platform_data->flags |= AHD_SCB_UP_EH_SEM;
2285 ahd_unlock(ahd, &flags);
2287 init_timer(&timer);
2288 timer.data = (u_long)ahd;
2289 timer.expires = jiffies + (5 * HZ);
2290 timer.function = ahd_linux_sem_timeout;
2291 add_timer(&timer);
2292 printf("Recovery code sleeping\n");
2293 down(&ahd->platform_data->eh_sem);
2294 printf("Recovery code awake\n");
2295 ret = del_timer_sync(&timer);
2296 if (ret == 0) {
2297 printf("Timer Expired\n");
2298 retval = FAILED;
2301 ahd_unlock(ahd, &flags);
2302 return (retval);
2305 static void ahd_linux_set_width(struct scsi_target *starget, int width)
2307 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent);
2308 struct ahd_softc *ahd = *((struct ahd_softc **)shost->hostdata);
2309 struct ahd_devinfo devinfo;
2310 unsigned long flags;
2312 ahd_compile_devinfo(&devinfo, shost->this_id, starget->id, 0,
2313 starget->channel + 'A', ROLE_INITIATOR);
2314 ahd_lock(ahd, &flags);
2315 ahd_set_width(ahd, &devinfo, width, AHD_TRANS_GOAL, FALSE);
2316 ahd_unlock(ahd, &flags);
2319 static void ahd_linux_set_period(struct scsi_target *starget, int period)
2321 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent);
2322 struct ahd_softc *ahd = *((struct ahd_softc **)shost->hostdata);
2323 struct ahd_tmode_tstate *tstate;
2324 struct ahd_initiator_tinfo *tinfo
2325 = ahd_fetch_transinfo(ahd,
2326 starget->channel + 'A',
2327 shost->this_id, starget->id, &tstate);
2328 struct ahd_devinfo devinfo;
2329 unsigned int ppr_options = tinfo->goal.ppr_options;
2330 unsigned int dt;
2331 unsigned long flags;
2332 unsigned long offset = tinfo->goal.offset;
2334 #ifdef AHD_DEBUG
2335 if ((ahd_debug & AHD_SHOW_DV) != 0)
2336 printf("%s: set period to %d\n", ahd_name(ahd), period);
2337 #endif
2338 if (offset == 0)
2339 offset = MAX_OFFSET;
2341 if (period < 8)
2342 period = 8;
2343 if (period < 10) {
2344 ppr_options |= MSG_EXT_PPR_DT_REQ;
2345 if (period == 8)
2346 ppr_options |= MSG_EXT_PPR_IU_REQ;
2349 dt = ppr_options & MSG_EXT_PPR_DT_REQ;
2351 ahd_compile_devinfo(&devinfo, shost->this_id, starget->id, 0,
2352 starget->channel + 'A', ROLE_INITIATOR);
2354 /* all PPR requests apart from QAS require wide transfers */
2355 if (ppr_options & ~MSG_EXT_PPR_QAS_REQ) {
2356 if (spi_width(starget) == 0)
2357 ppr_options &= MSG_EXT_PPR_QAS_REQ;
2360 ahd_find_syncrate(ahd, &period, &ppr_options,
2361 dt ? AHD_SYNCRATE_MAX : AHD_SYNCRATE_ULTRA2);
2363 ahd_lock(ahd, &flags);
2364 ahd_set_syncrate(ahd, &devinfo, period, offset,
2365 ppr_options, AHD_TRANS_GOAL, FALSE);
2366 ahd_unlock(ahd, &flags);
2369 static void ahd_linux_set_offset(struct scsi_target *starget, int offset)
2371 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent);
2372 struct ahd_softc *ahd = *((struct ahd_softc **)shost->hostdata);
2373 struct ahd_tmode_tstate *tstate;
2374 struct ahd_initiator_tinfo *tinfo
2375 = ahd_fetch_transinfo(ahd,
2376 starget->channel + 'A',
2377 shost->this_id, starget->id, &tstate);
2378 struct ahd_devinfo devinfo;
2379 unsigned int ppr_options = 0;
2380 unsigned int period = 0;
2381 unsigned int dt = ppr_options & MSG_EXT_PPR_DT_REQ;
2382 unsigned long flags;
2384 #ifdef AHD_DEBUG
2385 if ((ahd_debug & AHD_SHOW_DV) != 0)
2386 printf("%s: set offset to %d\n", ahd_name(ahd), offset);
2387 #endif
2389 ahd_compile_devinfo(&devinfo, shost->this_id, starget->id, 0,
2390 starget->channel + 'A', ROLE_INITIATOR);
2391 if (offset != 0) {
2392 period = tinfo->goal.period;
2393 ppr_options = tinfo->goal.ppr_options;
2394 ahd_find_syncrate(ahd, &period, &ppr_options,
2395 dt ? AHD_SYNCRATE_MAX : AHD_SYNCRATE_ULTRA2);
2398 ahd_lock(ahd, &flags);
2399 ahd_set_syncrate(ahd, &devinfo, period, offset, ppr_options,
2400 AHD_TRANS_GOAL, FALSE);
2401 ahd_unlock(ahd, &flags);
2404 static void ahd_linux_set_dt(struct scsi_target *starget, int dt)
2406 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent);
2407 struct ahd_softc *ahd = *((struct ahd_softc **)shost->hostdata);
2408 struct ahd_tmode_tstate *tstate;
2409 struct ahd_initiator_tinfo *tinfo
2410 = ahd_fetch_transinfo(ahd,
2411 starget->channel + 'A',
2412 shost->this_id, starget->id, &tstate);
2413 struct ahd_devinfo devinfo;
2414 unsigned int ppr_options = tinfo->goal.ppr_options
2415 & ~MSG_EXT_PPR_DT_REQ;
2416 unsigned int period = tinfo->goal.period;
2417 unsigned int width = tinfo->goal.width;
2418 unsigned long flags;
2420 #ifdef AHD_DEBUG
2421 if ((ahd_debug & AHD_SHOW_DV) != 0)
2422 printf("%s: %s DT\n", ahd_name(ahd),
2423 dt ? "enabling" : "disabling");
2424 #endif
2425 if (dt) {
2426 ppr_options |= MSG_EXT_PPR_DT_REQ;
2427 if (!width)
2428 ahd_linux_set_width(starget, 1);
2429 } else {
2430 if (period <= 9)
2431 period = 10; /* If resetting DT, period must be >= 25ns */
2432 /* IU is invalid without DT set */
2433 ppr_options &= ~MSG_EXT_PPR_IU_REQ;
2435 ahd_compile_devinfo(&devinfo, shost->this_id, starget->id, 0,
2436 starget->channel + 'A', ROLE_INITIATOR);
2437 ahd_find_syncrate(ahd, &period, &ppr_options,
2438 dt ? AHD_SYNCRATE_MAX : AHD_SYNCRATE_ULTRA2);
2440 ahd_lock(ahd, &flags);
2441 ahd_set_syncrate(ahd, &devinfo, period, tinfo->goal.offset,
2442 ppr_options, AHD_TRANS_GOAL, FALSE);
2443 ahd_unlock(ahd, &flags);
2446 static void ahd_linux_set_qas(struct scsi_target *starget, int qas)
2448 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent);
2449 struct ahd_softc *ahd = *((struct ahd_softc **)shost->hostdata);
2450 struct ahd_tmode_tstate *tstate;
2451 struct ahd_initiator_tinfo *tinfo
2452 = ahd_fetch_transinfo(ahd,
2453 starget->channel + 'A',
2454 shost->this_id, starget->id, &tstate);
2455 struct ahd_devinfo devinfo;
2456 unsigned int ppr_options = tinfo->goal.ppr_options
2457 & ~MSG_EXT_PPR_QAS_REQ;
2458 unsigned int period = tinfo->goal.period;
2459 unsigned int dt;
2460 unsigned long flags;
2462 #ifdef AHD_DEBUG
2463 if ((ahd_debug & AHD_SHOW_DV) != 0)
2464 printf("%s: %s QAS\n", ahd_name(ahd),
2465 qas ? "enabling" : "disabling");
2466 #endif
2468 if (qas) {
2469 ppr_options |= MSG_EXT_PPR_QAS_REQ;
2472 dt = ppr_options & MSG_EXT_PPR_DT_REQ;
2474 ahd_compile_devinfo(&devinfo, shost->this_id, starget->id, 0,
2475 starget->channel + 'A', ROLE_INITIATOR);
2476 ahd_find_syncrate(ahd, &period, &ppr_options,
2477 dt ? AHD_SYNCRATE_MAX : AHD_SYNCRATE_ULTRA2);
2479 ahd_lock(ahd, &flags);
2480 ahd_set_syncrate(ahd, &devinfo, period, tinfo->goal.offset,
2481 ppr_options, AHD_TRANS_GOAL, FALSE);
2482 ahd_unlock(ahd, &flags);
2485 static void ahd_linux_set_iu(struct scsi_target *starget, int iu)
2487 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent);
2488 struct ahd_softc *ahd = *((struct ahd_softc **)shost->hostdata);
2489 struct ahd_tmode_tstate *tstate;
2490 struct ahd_initiator_tinfo *tinfo
2491 = ahd_fetch_transinfo(ahd,
2492 starget->channel + 'A',
2493 shost->this_id, starget->id, &tstate);
2494 struct ahd_devinfo devinfo;
2495 unsigned int ppr_options = tinfo->goal.ppr_options
2496 & ~MSG_EXT_PPR_IU_REQ;
2497 unsigned int period = tinfo->goal.period;
2498 unsigned int dt;
2499 unsigned long flags;
2501 #ifdef AHD_DEBUG
2502 if ((ahd_debug & AHD_SHOW_DV) != 0)
2503 printf("%s: %s IU\n", ahd_name(ahd),
2504 iu ? "enabling" : "disabling");
2505 #endif
2507 if (iu) {
2508 ppr_options |= MSG_EXT_PPR_IU_REQ;
2509 ppr_options |= MSG_EXT_PPR_DT_REQ; /* IU requires DT */
2512 dt = ppr_options & MSG_EXT_PPR_DT_REQ;
2514 ahd_compile_devinfo(&devinfo, shost->this_id, starget->id, 0,
2515 starget->channel + 'A', ROLE_INITIATOR);
2516 ahd_find_syncrate(ahd, &period, &ppr_options,
2517 dt ? AHD_SYNCRATE_MAX : AHD_SYNCRATE_ULTRA2);
2519 ahd_lock(ahd, &flags);
2520 ahd_set_syncrate(ahd, &devinfo, period, tinfo->goal.offset,
2521 ppr_options, AHD_TRANS_GOAL, FALSE);
2522 ahd_unlock(ahd, &flags);
2525 static void ahd_linux_set_rd_strm(struct scsi_target *starget, int rdstrm)
2527 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent);
2528 struct ahd_softc *ahd = *((struct ahd_softc **)shost->hostdata);
2529 struct ahd_tmode_tstate *tstate;
2530 struct ahd_initiator_tinfo *tinfo
2531 = ahd_fetch_transinfo(ahd,
2532 starget->channel + 'A',
2533 shost->this_id, starget->id, &tstate);
2534 struct ahd_devinfo devinfo;
2535 unsigned int ppr_options = tinfo->goal.ppr_options
2536 & ~MSG_EXT_PPR_RD_STRM;
2537 unsigned int period = tinfo->goal.period;
2538 unsigned int dt = ppr_options & MSG_EXT_PPR_DT_REQ;
2539 unsigned long flags;
2541 #ifdef AHD_DEBUG
2542 if ((ahd_debug & AHD_SHOW_DV) != 0)
2543 printf("%s: %s Read Streaming\n", ahd_name(ahd),
2544 rdstrm ? "enabling" : "disabling");
2545 #endif
2547 if (rdstrm)
2548 ppr_options |= MSG_EXT_PPR_RD_STRM;
2550 ahd_compile_devinfo(&devinfo, shost->this_id, starget->id, 0,
2551 starget->channel + 'A', ROLE_INITIATOR);
2552 ahd_find_syncrate(ahd, &period, &ppr_options,
2553 dt ? AHD_SYNCRATE_MAX : AHD_SYNCRATE_ULTRA2);
2555 ahd_lock(ahd, &flags);
2556 ahd_set_syncrate(ahd, &devinfo, period, tinfo->goal.offset,
2557 ppr_options, AHD_TRANS_GOAL, FALSE);
2558 ahd_unlock(ahd, &flags);
2561 static void ahd_linux_set_wr_flow(struct scsi_target *starget, int wrflow)
2563 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent);
2564 struct ahd_softc *ahd = *((struct ahd_softc **)shost->hostdata);
2565 struct ahd_tmode_tstate *tstate;
2566 struct ahd_initiator_tinfo *tinfo
2567 = ahd_fetch_transinfo(ahd,
2568 starget->channel + 'A',
2569 shost->this_id, starget->id, &tstate);
2570 struct ahd_devinfo devinfo;
2571 unsigned int ppr_options = tinfo->goal.ppr_options
2572 & ~MSG_EXT_PPR_WR_FLOW;
2573 unsigned int period = tinfo->goal.period;
2574 unsigned int dt = ppr_options & MSG_EXT_PPR_DT_REQ;
2575 unsigned long flags;
2577 #ifdef AHD_DEBUG
2578 if ((ahd_debug & AHD_SHOW_DV) != 0)
2579 printf("%s: %s Write Flow Control\n", ahd_name(ahd),
2580 wrflow ? "enabling" : "disabling");
2581 #endif
2583 if (wrflow)
2584 ppr_options |= MSG_EXT_PPR_WR_FLOW;
2586 ahd_compile_devinfo(&devinfo, shost->this_id, starget->id, 0,
2587 starget->channel + 'A', ROLE_INITIATOR);
2588 ahd_find_syncrate(ahd, &period, &ppr_options,
2589 dt ? AHD_SYNCRATE_MAX : AHD_SYNCRATE_ULTRA2);
2591 ahd_lock(ahd, &flags);
2592 ahd_set_syncrate(ahd, &devinfo, period, tinfo->goal.offset,
2593 ppr_options, AHD_TRANS_GOAL, FALSE);
2594 ahd_unlock(ahd, &flags);
2597 static void ahd_linux_set_rti(struct scsi_target *starget, int rti)
2599 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent);
2600 struct ahd_softc *ahd = *((struct ahd_softc **)shost->hostdata);
2601 struct ahd_tmode_tstate *tstate;
2602 struct ahd_initiator_tinfo *tinfo
2603 = ahd_fetch_transinfo(ahd,
2604 starget->channel + 'A',
2605 shost->this_id, starget->id, &tstate);
2606 struct ahd_devinfo devinfo;
2607 unsigned int ppr_options = tinfo->goal.ppr_options
2608 & ~MSG_EXT_PPR_RTI;
2609 unsigned int period = tinfo->goal.period;
2610 unsigned int dt = ppr_options & MSG_EXT_PPR_DT_REQ;
2611 unsigned long flags;
2613 if ((ahd->features & AHD_RTI) == 0) {
2614 #ifdef AHD_DEBUG
2615 if ((ahd_debug & AHD_SHOW_DV) != 0)
2616 printf("%s: RTI not available\n", ahd_name(ahd));
2617 #endif
2618 return;
2621 #ifdef AHD_DEBUG
2622 if ((ahd_debug & AHD_SHOW_DV) != 0)
2623 printf("%s: %s RTI\n", ahd_name(ahd),
2624 rti ? "enabling" : "disabling");
2625 #endif
2627 if (rti)
2628 ppr_options |= MSG_EXT_PPR_RTI;
2630 ahd_compile_devinfo(&devinfo, shost->this_id, starget->id, 0,
2631 starget->channel + 'A', ROLE_INITIATOR);
2632 ahd_find_syncrate(ahd, &period, &ppr_options,
2633 dt ? AHD_SYNCRATE_MAX : AHD_SYNCRATE_ULTRA2);
2635 ahd_lock(ahd, &flags);
2636 ahd_set_syncrate(ahd, &devinfo, period, tinfo->goal.offset,
2637 ppr_options, AHD_TRANS_GOAL, FALSE);
2638 ahd_unlock(ahd, &flags);
2641 static void ahd_linux_set_pcomp_en(struct scsi_target *starget, int pcomp)
2643 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent);
2644 struct ahd_softc *ahd = *((struct ahd_softc **)shost->hostdata);
2645 struct ahd_tmode_tstate *tstate;
2646 struct ahd_initiator_tinfo *tinfo
2647 = ahd_fetch_transinfo(ahd,
2648 starget->channel + 'A',
2649 shost->this_id, starget->id, &tstate);
2650 struct ahd_devinfo devinfo;
2651 unsigned int ppr_options = tinfo->goal.ppr_options
2652 & ~MSG_EXT_PPR_PCOMP_EN;
2653 unsigned int period = tinfo->goal.period;
2654 unsigned int dt = ppr_options & MSG_EXT_PPR_DT_REQ;
2655 unsigned long flags;
2657 #ifdef AHD_DEBUG
2658 if ((ahd_debug & AHD_SHOW_DV) != 0)
2659 printf("%s: %s Precompensation\n", ahd_name(ahd),
2660 pcomp ? "Enable" : "Disable");
2661 #endif
2663 if (pcomp)
2664 ppr_options |= MSG_EXT_PPR_PCOMP_EN;
2666 ahd_compile_devinfo(&devinfo, shost->this_id, starget->id, 0,
2667 starget->channel + 'A', ROLE_INITIATOR);
2668 ahd_find_syncrate(ahd, &period, &ppr_options,
2669 dt ? AHD_SYNCRATE_MAX : AHD_SYNCRATE_ULTRA2);
2671 ahd_lock(ahd, &flags);
2672 ahd_set_syncrate(ahd, &devinfo, period, tinfo->goal.offset,
2673 ppr_options, AHD_TRANS_GOAL, FALSE);
2674 ahd_unlock(ahd, &flags);
2677 static void ahd_linux_set_hold_mcs(struct scsi_target *starget, int hold)
2679 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent);
2680 struct ahd_softc *ahd = *((struct ahd_softc **)shost->hostdata);
2681 struct ahd_tmode_tstate *tstate;
2682 struct ahd_initiator_tinfo *tinfo
2683 = ahd_fetch_transinfo(ahd,
2684 starget->channel + 'A',
2685 shost->this_id, starget->id, &tstate);
2686 struct ahd_devinfo devinfo;
2687 unsigned int ppr_options = tinfo->goal.ppr_options
2688 & ~MSG_EXT_PPR_HOLD_MCS;
2689 unsigned int period = tinfo->goal.period;
2690 unsigned int dt = ppr_options & MSG_EXT_PPR_DT_REQ;
2691 unsigned long flags;
2693 if (hold)
2694 ppr_options |= MSG_EXT_PPR_HOLD_MCS;
2696 ahd_compile_devinfo(&devinfo, shost->this_id, starget->id, 0,
2697 starget->channel + 'A', ROLE_INITIATOR);
2698 ahd_find_syncrate(ahd, &period, &ppr_options,
2699 dt ? AHD_SYNCRATE_MAX : AHD_SYNCRATE_ULTRA2);
2701 ahd_lock(ahd, &flags);
2702 ahd_set_syncrate(ahd, &devinfo, period, tinfo->goal.offset,
2703 ppr_options, AHD_TRANS_GOAL, FALSE);
2704 ahd_unlock(ahd, &flags);
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,
2734 static int __init
2735 ahd_linux_init(void)
2737 int error = 0;
2740 * If we've been passed any parameters, process them now.
2742 if (aic79xx)
2743 aic79xx_setup(aic79xx);
2745 ahd_linux_transport_template =
2746 spi_attach_transport(&ahd_linux_transport_functions);
2747 if (!ahd_linux_transport_template)
2748 return -ENODEV;
2750 scsi_transport_reserve_target(ahd_linux_transport_template,
2751 sizeof(struct ahd_linux_target));
2752 scsi_transport_reserve_device(ahd_linux_transport_template,
2753 sizeof(struct ahd_linux_device));
2755 error = ahd_linux_pci_init();
2756 if (error)
2757 spi_release_transport(ahd_linux_transport_template);
2758 return error;
2761 static void __exit
2762 ahd_linux_exit(void)
2764 ahd_linux_pci_exit();
2765 spi_release_transport(ahd_linux_transport_template);
2768 module_init(ahd_linux_init);
2769 module_exit(ahd_linux_exit);