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Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
2 * Adaptec AAC series RAID controller driver
3 * (c) Copyright 2001 Red Hat Inc. <alan@redhat.com>
4 *
5 * based on the old aacraid driver that is..
6 * Adaptec aacraid device driver for Linux.
7 *
8 * Copyright (c) 2000 Adaptec, Inc. (aacraid@adaptec.com)
9 *
10 * This program is free software; you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License as published by
12 * the Free Software Foundation; either version 2, or (at your option)
13 * any later version.
14 *
15 * This program is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 * GNU General Public License for more details.
19 *
20 * You should have received a copy of the GNU General Public License
21 * along with this program; see the file COPYING. If not, write to
22 * the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
23 *
24 */
25
26#include <linux/kernel.h>
27#include <linux/init.h>
28#include <linux/types.h>
29#include <linux/sched.h>
30#include <linux/pci.h>
31#include <linux/spinlock.h>
32#include <linux/slab.h>
33#include <linux/completion.h>
34#include <linux/blkdev.h>
35#include <asm/semaphore.h>
36#include <asm/uaccess.h>
37
38#include <scsi/scsi.h>
39#include <scsi/scsi_cmnd.h>
40#include <scsi/scsi_device.h>
41#include <scsi/scsi_host.h>
42
43#include "aacraid.h"
44
45/* values for inqd_pdt: Peripheral device type in plain English */
46#define INQD_PDT_DA 0x00 /* Direct-access (DISK) device */
47#define INQD_PDT_PROC 0x03 /* Processor device */
48#define INQD_PDT_CHNGR 0x08 /* Changer (jukebox, scsi2) */
49#define INQD_PDT_COMM 0x09 /* Communication device (scsi2) */
50#define INQD_PDT_NOLUN2 0x1f /* Unknown Device (scsi2) */
51#define INQD_PDT_NOLUN 0x7f /* Logical Unit Not Present */
52
53#define INQD_PDT_DMASK 0x1F /* Peripheral Device Type Mask */
54#define INQD_PDT_QMASK 0xE0 /* Peripheral Device Qualifer Mask */
55
Linus Torvalds1da177e2005-04-16 15:20:36 -070056/*
57 * Sense codes
58 */
59
60#define SENCODE_NO_SENSE 0x00
61#define SENCODE_END_OF_DATA 0x00
62#define SENCODE_BECOMING_READY 0x04
63#define SENCODE_INIT_CMD_REQUIRED 0x04
64#define SENCODE_PARAM_LIST_LENGTH_ERROR 0x1A
65#define SENCODE_INVALID_COMMAND 0x20
66#define SENCODE_LBA_OUT_OF_RANGE 0x21
67#define SENCODE_INVALID_CDB_FIELD 0x24
68#define SENCODE_LUN_NOT_SUPPORTED 0x25
69#define SENCODE_INVALID_PARAM_FIELD 0x26
70#define SENCODE_PARAM_NOT_SUPPORTED 0x26
71#define SENCODE_PARAM_VALUE_INVALID 0x26
72#define SENCODE_RESET_OCCURRED 0x29
73#define SENCODE_LUN_NOT_SELF_CONFIGURED_YET 0x3E
74#define SENCODE_INQUIRY_DATA_CHANGED 0x3F
75#define SENCODE_SAVING_PARAMS_NOT_SUPPORTED 0x39
76#define SENCODE_DIAGNOSTIC_FAILURE 0x40
77#define SENCODE_INTERNAL_TARGET_FAILURE 0x44
78#define SENCODE_INVALID_MESSAGE_ERROR 0x49
79#define SENCODE_LUN_FAILED_SELF_CONFIG 0x4c
80#define SENCODE_OVERLAPPED_COMMAND 0x4E
81
82/*
83 * Additional sense codes
84 */
85
86#define ASENCODE_NO_SENSE 0x00
87#define ASENCODE_END_OF_DATA 0x05
88#define ASENCODE_BECOMING_READY 0x01
89#define ASENCODE_INIT_CMD_REQUIRED 0x02
90#define ASENCODE_PARAM_LIST_LENGTH_ERROR 0x00
91#define ASENCODE_INVALID_COMMAND 0x00
92#define ASENCODE_LBA_OUT_OF_RANGE 0x00
93#define ASENCODE_INVALID_CDB_FIELD 0x00
94#define ASENCODE_LUN_NOT_SUPPORTED 0x00
95#define ASENCODE_INVALID_PARAM_FIELD 0x00
96#define ASENCODE_PARAM_NOT_SUPPORTED 0x01
97#define ASENCODE_PARAM_VALUE_INVALID 0x02
98#define ASENCODE_RESET_OCCURRED 0x00
99#define ASENCODE_LUN_NOT_SELF_CONFIGURED_YET 0x00
100#define ASENCODE_INQUIRY_DATA_CHANGED 0x03
101#define ASENCODE_SAVING_PARAMS_NOT_SUPPORTED 0x00
102#define ASENCODE_DIAGNOSTIC_FAILURE 0x80
103#define ASENCODE_INTERNAL_TARGET_FAILURE 0x00
104#define ASENCODE_INVALID_MESSAGE_ERROR 0x00
105#define ASENCODE_LUN_FAILED_SELF_CONFIG 0x00
106#define ASENCODE_OVERLAPPED_COMMAND 0x00
107
108#define BYTE0(x) (unsigned char)(x)
109#define BYTE1(x) (unsigned char)((x) >> 8)
110#define BYTE2(x) (unsigned char)((x) >> 16)
111#define BYTE3(x) (unsigned char)((x) >> 24)
112
113/*------------------------------------------------------------------------------
114 * S T R U C T S / T Y P E D E F S
115 *----------------------------------------------------------------------------*/
116/* SCSI inquiry data */
117struct inquiry_data {
118 u8 inqd_pdt; /* Peripheral qualifier | Peripheral Device Type */
119 u8 inqd_dtq; /* RMB | Device Type Qualifier */
120 u8 inqd_ver; /* ISO version | ECMA version | ANSI-approved version */
121 u8 inqd_rdf; /* AENC | TrmIOP | Response data format */
122 u8 inqd_len; /* Additional length (n-4) */
123 u8 inqd_pad1[2];/* Reserved - must be zero */
124 u8 inqd_pad2; /* RelAdr | WBus32 | WBus16 | Sync | Linked |Reserved| CmdQue | SftRe */
125 u8 inqd_vid[8]; /* Vendor ID */
126 u8 inqd_pid[16];/* Product ID */
127 u8 inqd_prl[4]; /* Product Revision Level */
128};
129
130/*
131 * M O D U L E G L O B A L S
132 */
133
134static unsigned long aac_build_sg(struct scsi_cmnd* scsicmd, struct sgmap* sgmap);
135static unsigned long aac_build_sg64(struct scsi_cmnd* scsicmd, struct sgmap64* psg);
136static int aac_send_srb_fib(struct scsi_cmnd* scsicmd);
137#ifdef AAC_DETAILED_STATUS_INFO
138static char *aac_get_status_string(u32 status);
139#endif
140
141/*
142 * Non dasd selection is handled entirely in aachba now
143 */
144
145static int nondasd = -1;
146static int dacmode = -1;
147
148static int commit = -1;
149
150module_param(nondasd, int, 0);
151MODULE_PARM_DESC(nondasd, "Control scanning of hba for nondasd devices. 0=off, 1=on");
152module_param(dacmode, int, 0);
153MODULE_PARM_DESC(dacmode, "Control whether dma addressing is using 64 bit DAC. 0=off, 1=on");
154module_param(commit, int, 0);
155MODULE_PARM_DESC(commit, "Control whether a COMMIT_CONFIG is issued to the adapter for foreign arrays.\nThis is typically needed in systems that do not have a BIOS. 0=off, 1=on");
156
Mark Haverkamp 7c00ffa2005-05-16 18:28:42 -0700157int numacb = -1;
158module_param(numacb, int, S_IRUGO|S_IWUSR);
159MODULE_PARM_DESC(numacb, "Request a limit to the number of adapter control blocks (FIB) allocated. Valid\nvalues are 512 and down. Default is to use suggestion from Firmware.");
160
161int acbsize = -1;
162module_param(acbsize, int, S_IRUGO|S_IWUSR);
163MODULE_PARM_DESC(acbsize, "Request a specific adapter control block (FIB) size. Valid values are 512,\n2048, 4096 and 8192. Default is to use suggestion from Firmware.");
Linus Torvalds1da177e2005-04-16 15:20:36 -0700164/**
165 * aac_get_config_status - check the adapter configuration
166 * @common: adapter to query
167 *
168 * Query config status, and commit the configuration if needed.
169 */
170int aac_get_config_status(struct aac_dev *dev)
171{
172 int status = 0;
173 struct fib * fibptr;
174
175 if (!(fibptr = fib_alloc(dev)))
176 return -ENOMEM;
177
178 fib_init(fibptr);
179 {
180 struct aac_get_config_status *dinfo;
181 dinfo = (struct aac_get_config_status *) fib_data(fibptr);
182
183 dinfo->command = cpu_to_le32(VM_ContainerConfig);
184 dinfo->type = cpu_to_le32(CT_GET_CONFIG_STATUS);
185 dinfo->count = cpu_to_le32(sizeof(((struct aac_get_config_status_resp *)NULL)->data));
186 }
187
188 status = fib_send(ContainerCommand,
189 fibptr,
190 sizeof (struct aac_get_config_status),
191 FsaNormal,
192 1, 1,
193 NULL, NULL);
194 if (status < 0 ) {
195 printk(KERN_WARNING "aac_get_config_status: SendFIB failed.\n");
196 } else {
197 struct aac_get_config_status_resp *reply
198 = (struct aac_get_config_status_resp *) fib_data(fibptr);
199 dprintk((KERN_WARNING
200 "aac_get_config_status: response=%d status=%d action=%d\n",
201 le32_to_cpu(reply->response),
202 le32_to_cpu(reply->status),
203 le32_to_cpu(reply->data.action)));
204 if ((le32_to_cpu(reply->response) != ST_OK) ||
205 (le32_to_cpu(reply->status) != CT_OK) ||
206 (le32_to_cpu(reply->data.action) > CFACT_PAUSE)) {
207 printk(KERN_WARNING "aac_get_config_status: Will not issue the Commit Configuration\n");
208 status = -EINVAL;
209 }
210 }
211 fib_complete(fibptr);
212 /* Send a CT_COMMIT_CONFIG to enable discovery of devices */
213 if (status >= 0) {
214 if (commit == 1) {
215 struct aac_commit_config * dinfo;
216 fib_init(fibptr);
217 dinfo = (struct aac_commit_config *) fib_data(fibptr);
218
219 dinfo->command = cpu_to_le32(VM_ContainerConfig);
220 dinfo->type = cpu_to_le32(CT_COMMIT_CONFIG);
221
222 status = fib_send(ContainerCommand,
223 fibptr,
224 sizeof (struct aac_commit_config),
225 FsaNormal,
226 1, 1,
227 NULL, NULL);
228 fib_complete(fibptr);
229 } else if (commit == 0) {
230 printk(KERN_WARNING
231 "aac_get_config_status: Foreign device configurations are being ignored\n");
232 }
233 }
234 fib_free(fibptr);
235 return status;
236}
237
238/**
239 * aac_get_containers - list containers
240 * @common: adapter to probe
241 *
242 * Make a list of all containers on this controller
243 */
244int aac_get_containers(struct aac_dev *dev)
245{
246 struct fsa_dev_info *fsa_dev_ptr;
247 u32 index;
248 int status = 0;
249 struct fib * fibptr;
250 unsigned instance;
251 struct aac_get_container_count *dinfo;
252 struct aac_get_container_count_resp *dresp;
253 int maximum_num_containers = MAXIMUM_NUM_CONTAINERS;
254
255 instance = dev->scsi_host_ptr->unique_id;
256
257 if (!(fibptr = fib_alloc(dev)))
258 return -ENOMEM;
259
260 fib_init(fibptr);
261 dinfo = (struct aac_get_container_count *) fib_data(fibptr);
262 dinfo->command = cpu_to_le32(VM_ContainerConfig);
263 dinfo->type = cpu_to_le32(CT_GET_CONTAINER_COUNT);
264
265 status = fib_send(ContainerCommand,
266 fibptr,
267 sizeof (struct aac_get_container_count),
268 FsaNormal,
269 1, 1,
270 NULL, NULL);
271 if (status >= 0) {
272 dresp = (struct aac_get_container_count_resp *)fib_data(fibptr);
273 maximum_num_containers = le32_to_cpu(dresp->ContainerSwitchEntries);
274 fib_complete(fibptr);
275 }
276
277 if (maximum_num_containers < MAXIMUM_NUM_CONTAINERS)
278 maximum_num_containers = MAXIMUM_NUM_CONTAINERS;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700279 fsa_dev_ptr = (struct fsa_dev_info *) kmalloc(
280 sizeof(*fsa_dev_ptr) * maximum_num_containers, GFP_KERNEL);
281 if (!fsa_dev_ptr) {
282 fib_free(fibptr);
283 return -ENOMEM;
284 }
285 memset(fsa_dev_ptr, 0, sizeof(*fsa_dev_ptr) * maximum_num_containers);
286
287 dev->fsa_dev = fsa_dev_ptr;
288 dev->maximum_num_containers = maximum_num_containers;
289
290 for (index = 0; index < dev->maximum_num_containers; index++) {
291 struct aac_query_mount *dinfo;
292 struct aac_mount *dresp;
293
294 fsa_dev_ptr[index].devname[0] = '\0';
295
296 fib_init(fibptr);
297 dinfo = (struct aac_query_mount *) fib_data(fibptr);
298
299 dinfo->command = cpu_to_le32(VM_NameServe);
300 dinfo->count = cpu_to_le32(index);
301 dinfo->type = cpu_to_le32(FT_FILESYS);
302
303 status = fib_send(ContainerCommand,
304 fibptr,
305 sizeof (struct aac_query_mount),
306 FsaNormal,
307 1, 1,
308 NULL, NULL);
309 if (status < 0 ) {
310 printk(KERN_WARNING "aac_get_containers: SendFIB failed.\n");
311 break;
312 }
313 dresp = (struct aac_mount *)fib_data(fibptr);
314
315 dprintk ((KERN_DEBUG
316 "VM_NameServe cid=%d status=%d vol=%d state=%d cap=%u\n",
317 (int)index, (int)le32_to_cpu(dresp->status),
318 (int)le32_to_cpu(dresp->mnt[0].vol),
319 (int)le32_to_cpu(dresp->mnt[0].state),
320 (unsigned)le32_to_cpu(dresp->mnt[0].capacity)));
321 if ((le32_to_cpu(dresp->status) == ST_OK) &&
322 (le32_to_cpu(dresp->mnt[0].vol) != CT_NONE) &&
323 (le32_to_cpu(dresp->mnt[0].state) != FSCS_HIDDEN)) {
324 fsa_dev_ptr[index].valid = 1;
325 fsa_dev_ptr[index].type = le32_to_cpu(dresp->mnt[0].vol);
326 fsa_dev_ptr[index].size = le32_to_cpu(dresp->mnt[0].capacity);
327 if (le32_to_cpu(dresp->mnt[0].state) & FSCS_READONLY)
328 fsa_dev_ptr[index].ro = 1;
329 }
330 fib_complete(fibptr);
331 /*
332 * If there are no more containers, then stop asking.
333 */
334 if ((index + 1) >= le32_to_cpu(dresp->count)){
335 break;
336 }
337 }
338 fib_free(fibptr);
339 return status;
340}
341
342static void aac_io_done(struct scsi_cmnd * scsicmd)
343{
344 unsigned long cpu_flags;
345 struct Scsi_Host *host = scsicmd->device->host;
346 spin_lock_irqsave(host->host_lock, cpu_flags);
347 scsicmd->scsi_done(scsicmd);
348 spin_unlock_irqrestore(host->host_lock, cpu_flags);
349}
350
351static void get_container_name_callback(void *context, struct fib * fibptr)
352{
353 struct aac_get_name_resp * get_name_reply;
354 struct scsi_cmnd * scsicmd;
355
356 scsicmd = (struct scsi_cmnd *) context;
357
358 dprintk((KERN_DEBUG "get_container_name_callback[cpu %d]: t = %ld.\n", smp_processor_id(), jiffies));
359 if (fibptr == NULL)
360 BUG();
361
362 get_name_reply = (struct aac_get_name_resp *) fib_data(fibptr);
363 /* Failure is irrelevant, using default value instead */
364 if ((le32_to_cpu(get_name_reply->status) == CT_OK)
365 && (get_name_reply->data[0] != '\0')) {
366 int count;
367 char * dp;
368 char * sp = get_name_reply->data;
369 sp[sizeof(((struct aac_get_name_resp *)NULL)->data)-1] = '\0';
370 while (*sp == ' ')
371 ++sp;
372 count = sizeof(((struct inquiry_data *)NULL)->inqd_pid);
373 dp = ((struct inquiry_data *)scsicmd->request_buffer)->inqd_pid;
374 if (*sp) do {
375 *dp++ = (*sp) ? *sp++ : ' ';
376 } while (--count > 0);
377 }
378 scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;
379
380 fib_complete(fibptr);
381 fib_free(fibptr);
382 aac_io_done(scsicmd);
383}
384
385/**
386 * aac_get_container_name - get container name, none blocking.
387 */
388static int aac_get_container_name(struct scsi_cmnd * scsicmd, int cid)
389{
390 int status;
391 struct aac_get_name *dinfo;
392 struct fib * cmd_fibcontext;
393 struct aac_dev * dev;
394
395 dev = (struct aac_dev *)scsicmd->device->host->hostdata;
396
397 if (!(cmd_fibcontext = fib_alloc(dev)))
398 return -ENOMEM;
399
400 fib_init(cmd_fibcontext);
401 dinfo = (struct aac_get_name *) fib_data(cmd_fibcontext);
402
403 dinfo->command = cpu_to_le32(VM_ContainerConfig);
404 dinfo->type = cpu_to_le32(CT_READ_NAME);
405 dinfo->cid = cpu_to_le32(cid);
406 dinfo->count = cpu_to_le32(sizeof(((struct aac_get_name_resp *)NULL)->data));
407
408 status = fib_send(ContainerCommand,
409 cmd_fibcontext,
410 sizeof (struct aac_get_name),
411 FsaNormal,
412 0, 1,
413 (fib_callback) get_container_name_callback,
414 (void *) scsicmd);
415
416 /*
417 * Check that the command queued to the controller
418 */
419 if (status == -EINPROGRESS)
420 return 0;
421
422 printk(KERN_WARNING "aac_get_container_name: fib_send failed with status: %d.\n", status);
423 fib_complete(cmd_fibcontext);
424 fib_free(cmd_fibcontext);
425 return -1;
426}
427
428/**
429 * probe_container - query a logical volume
430 * @dev: device to query
431 * @cid: container identifier
432 *
433 * Queries the controller about the given volume. The volume information
434 * is updated in the struct fsa_dev_info structure rather than returned.
435 */
436
437static int probe_container(struct aac_dev *dev, int cid)
438{
439 struct fsa_dev_info *fsa_dev_ptr;
440 int status;
441 struct aac_query_mount *dinfo;
442 struct aac_mount *dresp;
443 struct fib * fibptr;
444 unsigned instance;
445
446 fsa_dev_ptr = dev->fsa_dev;
447 instance = dev->scsi_host_ptr->unique_id;
448
449 if (!(fibptr = fib_alloc(dev)))
450 return -ENOMEM;
451
452 fib_init(fibptr);
453
454 dinfo = (struct aac_query_mount *)fib_data(fibptr);
455
456 dinfo->command = cpu_to_le32(VM_NameServe);
457 dinfo->count = cpu_to_le32(cid);
458 dinfo->type = cpu_to_le32(FT_FILESYS);
459
460 status = fib_send(ContainerCommand,
461 fibptr,
462 sizeof(struct aac_query_mount),
463 FsaNormal,
464 1, 1,
465 NULL, NULL);
466 if (status < 0) {
Mark Haverkamp 7c00ffa2005-05-16 18:28:42 -0700467 printk(KERN_WARNING "aacraid: probe_container query failed.\n");
Linus Torvalds1da177e2005-04-16 15:20:36 -0700468 goto error;
469 }
470
471 dresp = (struct aac_mount *) fib_data(fibptr);
472
473 if ((le32_to_cpu(dresp->status) == ST_OK) &&
474 (le32_to_cpu(dresp->mnt[0].vol) != CT_NONE) &&
475 (le32_to_cpu(dresp->mnt[0].state) != FSCS_HIDDEN)) {
476 fsa_dev_ptr[cid].valid = 1;
477 fsa_dev_ptr[cid].type = le32_to_cpu(dresp->mnt[0].vol);
478 fsa_dev_ptr[cid].size = le32_to_cpu(dresp->mnt[0].capacity);
479 if (le32_to_cpu(dresp->mnt[0].state) & FSCS_READONLY)
480 fsa_dev_ptr[cid].ro = 1;
481 }
482
483error:
484 fib_complete(fibptr);
485 fib_free(fibptr);
486
487 return status;
488}
489
490/* Local Structure to set SCSI inquiry data strings */
491struct scsi_inq {
492 char vid[8]; /* Vendor ID */
493 char pid[16]; /* Product ID */
494 char prl[4]; /* Product Revision Level */
495};
496
497/**
498 * InqStrCopy - string merge
499 * @a: string to copy from
500 * @b: string to copy to
501 *
502 * Copy a String from one location to another
503 * without copying \0
504 */
505
506static void inqstrcpy(char *a, char *b)
507{
508
509 while(*a != (char)0)
510 *b++ = *a++;
511}
512
513static char *container_types[] = {
514 "None",
515 "Volume",
516 "Mirror",
517 "Stripe",
518 "RAID5",
519 "SSRW",
520 "SSRO",
521 "Morph",
522 "Legacy",
523 "RAID4",
524 "RAID10",
525 "RAID00",
526 "V-MIRRORS",
527 "PSEUDO R4",
528 "RAID50",
Mark Haverkamp84971732005-06-20 11:55:24 -0700529 "RAID5D",
530 "RAID5D0",
531 "RAID1E",
532 "RAID6",
533 "RAID60",
Linus Torvalds1da177e2005-04-16 15:20:36 -0700534 "Unknown"
535};
536
537
538
539/* Function: setinqstr
540 *
541 * Arguments: [1] pointer to void [1] int
542 *
543 * Purpose: Sets SCSI inquiry data strings for vendor, product
544 * and revision level. Allows strings to be set in platform dependant
545 * files instead of in OS dependant driver source.
546 */
547
548static void setinqstr(int devtype, void *data, int tindex)
549{
550 struct scsi_inq *str;
551 struct aac_driver_ident *mp;
552
553 mp = aac_get_driver_ident(devtype);
554
555 str = (struct scsi_inq *)(data); /* cast data to scsi inq block */
556
557 inqstrcpy (mp->vname, str->vid);
558 inqstrcpy (mp->model, str->pid); /* last six chars reserved for vol type */
559
560 if (tindex < (sizeof(container_types)/sizeof(char *))){
561 char *findit = str->pid;
562
563 for ( ; *findit != ' '; findit++); /* walk till we find a space */
564 /* RAID is superfluous in the context of a RAID device */
565 if (memcmp(findit-4, "RAID", 4) == 0)
566 *(findit -= 4) = ' ';
567 inqstrcpy (container_types[tindex], findit + 1);
568 }
569 inqstrcpy ("V1.0", str->prl);
570}
571
Adrian Bunk 48338692005-04-25 19:45:58 -0700572static void set_sense(u8 *sense_buf, u8 sense_key, u8 sense_code,
573 u8 a_sense_code, u8 incorrect_length,
574 u8 bit_pointer, u16 field_pointer,
575 u32 residue)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700576{
577 sense_buf[0] = 0xF0; /* Sense data valid, err code 70h (current error) */
578 sense_buf[1] = 0; /* Segment number, always zero */
579
580 if (incorrect_length) {
581 sense_buf[2] = sense_key | 0x20;/* Set ILI bit | sense key */
582 sense_buf[3] = BYTE3(residue);
583 sense_buf[4] = BYTE2(residue);
584 sense_buf[5] = BYTE1(residue);
585 sense_buf[6] = BYTE0(residue);
586 } else
587 sense_buf[2] = sense_key; /* Sense key */
588
589 if (sense_key == ILLEGAL_REQUEST)
590 sense_buf[7] = 10; /* Additional sense length */
591 else
592 sense_buf[7] = 6; /* Additional sense length */
593
594 sense_buf[12] = sense_code; /* Additional sense code */
595 sense_buf[13] = a_sense_code; /* Additional sense code qualifier */
596 if (sense_key == ILLEGAL_REQUEST) {
597 sense_buf[15] = 0;
598
599 if (sense_code == SENCODE_INVALID_PARAM_FIELD)
600 sense_buf[15] = 0x80;/* Std sense key specific field */
601 /* Illegal parameter is in the parameter block */
602
603 if (sense_code == SENCODE_INVALID_CDB_FIELD)
604 sense_buf[15] = 0xc0;/* Std sense key specific field */
605 /* Illegal parameter is in the CDB block */
606 sense_buf[15] |= bit_pointer;
607 sense_buf[16] = field_pointer >> 8; /* MSB */
608 sense_buf[17] = field_pointer; /* LSB */
609 }
610}
611
612int aac_get_adapter_info(struct aac_dev* dev)
613{
614 struct fib* fibptr;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700615 int rcode;
616 u32 tmp;
Mark Haverkamp84971732005-06-20 11:55:24 -0700617 struct aac_adapter_info *info;
618 struct aac_bus_info *command;
619 struct aac_bus_info_response *bus_info;
Mark Haverkamp 7c00ffa2005-05-16 18:28:42 -0700620
Linus Torvalds1da177e2005-04-16 15:20:36 -0700621 if (!(fibptr = fib_alloc(dev)))
622 return -ENOMEM;
623
624 fib_init(fibptr);
Mark Haverkamp 7c00ffa2005-05-16 18:28:42 -0700625 info = (struct aac_adapter_info *) fib_data(fibptr);
626 memset(info,0,sizeof(*info));
Linus Torvalds1da177e2005-04-16 15:20:36 -0700627
628 rcode = fib_send(RequestAdapterInfo,
Mark Haverkamp 7c00ffa2005-05-16 18:28:42 -0700629 fibptr,
630 sizeof(*info),
631 FsaNormal,
632 1, 1,
633 NULL,
634 NULL);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700635
Mark Haverkamp 7c00ffa2005-05-16 18:28:42 -0700636 if (rcode < 0) {
637 fib_complete(fibptr);
638 fib_free(fibptr);
639 return rcode;
640 }
641 memcpy(&dev->adapter_info, info, sizeof(*info));
642
643 if (dev->adapter_info.options & AAC_OPT_SUPPLEMENT_ADAPTER_INFO) {
644 struct aac_supplement_adapter_info * info;
645
646 fib_init(fibptr);
647
648 info = (struct aac_supplement_adapter_info *) fib_data(fibptr);
649
650 memset(info,0,sizeof(*info));
651
652 rcode = fib_send(RequestSupplementAdapterInfo,
653 fibptr,
654 sizeof(*info),
655 FsaNormal,
656 1, 1,
657 NULL,
658 NULL);
659
660 if (rcode >= 0)
661 memcpy(&dev->supplement_adapter_info, info, sizeof(*info));
662 }
Linus Torvalds1da177e2005-04-16 15:20:36 -0700663
Mark Haverkamp84971732005-06-20 11:55:24 -0700664
665 /*
666 * GetBusInfo
667 */
668
669 fib_init(fibptr);
670
671 bus_info = (struct aac_bus_info_response *) fib_data(fibptr);
672
673 memset(bus_info, 0, sizeof(*bus_info));
674
675 command = (struct aac_bus_info *)bus_info;
676
677 command->Command = cpu_to_le32(VM_Ioctl);
678 command->ObjType = cpu_to_le32(FT_DRIVE);
679 command->MethodId = cpu_to_le32(1);
680 command->CtlCmd = cpu_to_le32(GetBusInfo);
681
682 rcode = fib_send(ContainerCommand,
683 fibptr,
684 sizeof (*bus_info),
685 FsaNormal,
686 1, 1,
687 NULL, NULL);
688
689 if (rcode >= 0 && le32_to_cpu(bus_info->Status) == ST_OK) {
690 dev->maximum_num_physicals = le32_to_cpu(bus_info->TargetsPerBus);
691 dev->maximum_num_channels = le32_to_cpu(bus_info->BusCount);
692 }
693
Linus Torvalds1da177e2005-04-16 15:20:36 -0700694 tmp = le32_to_cpu(dev->adapter_info.kernelrev);
Mark Haverkamp 7c00ffa2005-05-16 18:28:42 -0700695 printk(KERN_INFO "%s%d: kernel %d.%d-%d[%d] %.*s\n",
Linus Torvalds1da177e2005-04-16 15:20:36 -0700696 dev->name,
697 dev->id,
698 tmp>>24,
699 (tmp>>16)&0xff,
700 tmp&0xff,
Mark Haverkamp 7c00ffa2005-05-16 18:28:42 -0700701 le32_to_cpu(dev->adapter_info.kernelbuild),
702 (int)sizeof(dev->supplement_adapter_info.BuildDate),
703 dev->supplement_adapter_info.BuildDate);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700704 tmp = le32_to_cpu(dev->adapter_info.monitorrev);
705 printk(KERN_INFO "%s%d: monitor %d.%d-%d[%d]\n",
706 dev->name, dev->id,
707 tmp>>24,(tmp>>16)&0xff,tmp&0xff,
708 le32_to_cpu(dev->adapter_info.monitorbuild));
709 tmp = le32_to_cpu(dev->adapter_info.biosrev);
710 printk(KERN_INFO "%s%d: bios %d.%d-%d[%d]\n",
711 dev->name, dev->id,
712 tmp>>24,(tmp>>16)&0xff,tmp&0xff,
713 le32_to_cpu(dev->adapter_info.biosbuild));
714 if (le32_to_cpu(dev->adapter_info.serial[0]) != 0xBAD0)
715 printk(KERN_INFO "%s%d: serial %x\n",
716 dev->name, dev->id,
717 le32_to_cpu(dev->adapter_info.serial[0]));
718
719 dev->nondasd_support = 0;
720 dev->raid_scsi_mode = 0;
721 if(dev->adapter_info.options & AAC_OPT_NONDASD){
722 dev->nondasd_support = 1;
723 }
724
725 /*
726 * If the firmware supports ROMB RAID/SCSI mode and we are currently
727 * in RAID/SCSI mode, set the flag. For now if in this mode we will
728 * force nondasd support on. If we decide to allow the non-dasd flag
729 * additional changes changes will have to be made to support
730 * RAID/SCSI. the function aac_scsi_cmd in this module will have to be
731 * changed to support the new dev->raid_scsi_mode flag instead of
732 * leaching off of the dev->nondasd_support flag. Also in linit.c the
733 * function aac_detect will have to be modified where it sets up the
734 * max number of channels based on the aac->nondasd_support flag only.
735 */
736 if ((dev->adapter_info.options & AAC_OPT_SCSI_MANAGED) &&
737 (dev->adapter_info.options & AAC_OPT_RAID_SCSI_MODE)) {
738 dev->nondasd_support = 1;
739 dev->raid_scsi_mode = 1;
740 }
741 if (dev->raid_scsi_mode != 0)
742 printk(KERN_INFO "%s%d: ROMB RAID/SCSI mode enabled\n",
743 dev->name, dev->id);
744
745 if(nondasd != -1) {
746 dev->nondasd_support = (nondasd!=0);
747 }
748 if(dev->nondasd_support != 0){
749 printk(KERN_INFO "%s%d: Non-DASD support enabled.\n",dev->name, dev->id);
750 }
751
752 dev->dac_support = 0;
753 if( (sizeof(dma_addr_t) > 4) && (dev->adapter_info.options & AAC_OPT_SGMAP_HOST64)){
754 printk(KERN_INFO "%s%d: 64bit support enabled.\n", dev->name, dev->id);
755 dev->dac_support = 1;
756 }
757
758 if(dacmode != -1) {
759 dev->dac_support = (dacmode!=0);
760 }
761 if(dev->dac_support != 0) {
762 if (!pci_set_dma_mask(dev->pdev, 0xFFFFFFFFFFFFFFFFULL) &&
763 !pci_set_consistent_dma_mask(dev->pdev, 0xFFFFFFFFFFFFFFFFULL)) {
764 printk(KERN_INFO"%s%d: 64 Bit DAC enabled\n",
765 dev->name, dev->id);
766 } else if (!pci_set_dma_mask(dev->pdev, 0xFFFFFFFFULL) &&
767 !pci_set_consistent_dma_mask(dev->pdev, 0xFFFFFFFFULL)) {
768 printk(KERN_INFO"%s%d: DMA mask set failed, 64 Bit DAC disabled\n",
769 dev->name, dev->id);
770 dev->dac_support = 0;
771 } else {
772 printk(KERN_WARNING"%s%d: No suitable DMA available.\n",
773 dev->name, dev->id);
774 rcode = -ENOMEM;
775 }
776 }
Mark Haverkamp 7c00ffa2005-05-16 18:28:42 -0700777 /*
778 * 57 scatter gather elements
779 */
780 dev->scsi_host_ptr->sg_tablesize = (dev->max_fib_size -
781 sizeof(struct aac_fibhdr) -
782 sizeof(struct aac_write) + sizeof(struct sgmap)) /
783 sizeof(struct sgmap);
784 if (dev->dac_support) {
785 /*
786 * 38 scatter gather elements
787 */
788 dev->scsi_host_ptr->sg_tablesize =
789 (dev->max_fib_size -
790 sizeof(struct aac_fibhdr) -
791 sizeof(struct aac_write64) +
792 sizeof(struct sgmap64)) /
793 sizeof(struct sgmap64);
794 }
795 dev->scsi_host_ptr->max_sectors = AAC_MAX_32BIT_SGBCOUNT;
796 if(!(dev->adapter_info.options & AAC_OPT_NEW_COMM)) {
797 /*
798 * Worst case size that could cause sg overflow when
799 * we break up SG elements that are larger than 64KB.
800 * Would be nice if we could tell the SCSI layer what
801 * the maximum SG element size can be. Worst case is
802 * (sg_tablesize-1) 4KB elements with one 64KB
803 * element.
804 * 32bit -> 468 or 238KB 64bit -> 424 or 212KB
805 */
806 dev->scsi_host_ptr->max_sectors =
807 (dev->scsi_host_ptr->sg_tablesize * 8) + 112;
808 }
Linus Torvalds1da177e2005-04-16 15:20:36 -0700809
810 fib_complete(fibptr);
811 fib_free(fibptr);
812
813 return rcode;
814}
815
816
Mark Haverkampe53cb352005-08-03 15:39:09 -0700817static void io_callback(void *context, struct fib * fibptr)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700818{
819 struct aac_dev *dev;
820 struct aac_read_reply *readreply;
821 struct scsi_cmnd *scsicmd;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700822 u32 cid;
823
824 scsicmd = (struct scsi_cmnd *) context;
825
826 dev = (struct aac_dev *)scsicmd->device->host->hostdata;
827 cid = ID_LUN_TO_CONTAINER(scsicmd->device->id, scsicmd->device->lun);
828
Mark Haverkampe53cb352005-08-03 15:39:09 -0700829 dprintk((KERN_DEBUG "io_callback[cpu %d]: lba = %u, t = %ld.\n", smp_processor_id(), ((scsicmd->cmnd[1] & 0x1F) << 16) | (scsicmd->cmnd[2] << 8) | scsicmd->cmnd[3], jiffies));
Linus Torvalds1da177e2005-04-16 15:20:36 -0700830
831 if (fibptr == NULL)
832 BUG();
833
834 if(scsicmd->use_sg)
835 pci_unmap_sg(dev->pdev,
836 (struct scatterlist *)scsicmd->buffer,
837 scsicmd->use_sg,
838 scsicmd->sc_data_direction);
839 else if(scsicmd->request_bufflen)
840 pci_unmap_single(dev->pdev, scsicmd->SCp.dma_handle,
841 scsicmd->request_bufflen,
842 scsicmd->sc_data_direction);
843 readreply = (struct aac_read_reply *)fib_data(fibptr);
844 if (le32_to_cpu(readreply->status) == ST_OK)
845 scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;
846 else {
Mark Haverkamp 7c00ffa2005-05-16 18:28:42 -0700847#ifdef AAC_DETAILED_STATUS_INFO
Mark Haverkampe53cb352005-08-03 15:39:09 -0700848 printk(KERN_WARNING "io_callback: io failed, status = %d\n",
Mark Haverkamp 7c00ffa2005-05-16 18:28:42 -0700849 le32_to_cpu(readreply->status));
850#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -0700851 scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_CHECK_CONDITION;
852 set_sense((u8 *) &dev->fsa_dev[cid].sense_data,
853 HARDWARE_ERROR,
854 SENCODE_INTERNAL_TARGET_FAILURE,
855 ASENCODE_INTERNAL_TARGET_FAILURE, 0, 0,
856 0, 0);
857 memcpy(scsicmd->sense_buffer, &dev->fsa_dev[cid].sense_data,
858 (sizeof(dev->fsa_dev[cid].sense_data) > sizeof(scsicmd->sense_buffer))
859 ? sizeof(scsicmd->sense_buffer)
860 : sizeof(dev->fsa_dev[cid].sense_data));
861 }
862 fib_complete(fibptr);
863 fib_free(fibptr);
864
865 aac_io_done(scsicmd);
866}
867
Adrian Bunk 48338692005-04-25 19:45:58 -0700868static int aac_read(struct scsi_cmnd * scsicmd, int cid)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700869{
870 u32 lba;
871 u32 count;
872 int status;
873
874 u16 fibsize;
875 struct aac_dev *dev;
876 struct fib * cmd_fibcontext;
877
878 dev = (struct aac_dev *)scsicmd->device->host->hostdata;
879 /*
880 * Get block address and transfer length
881 */
882 if (scsicmd->cmnd[0] == READ_6) /* 6 byte command */
883 {
884 dprintk((KERN_DEBUG "aachba: received a read(6) command on id %d.\n", cid));
885
886 lba = ((scsicmd->cmnd[1] & 0x1F) << 16) | (scsicmd->cmnd[2] << 8) | scsicmd->cmnd[3];
887 count = scsicmd->cmnd[4];
888
889 if (count == 0)
890 count = 256;
891 } else {
892 dprintk((KERN_DEBUG "aachba: received a read(10) command on id %d.\n", cid));
893
894 lba = (scsicmd->cmnd[2] << 24) | (scsicmd->cmnd[3] << 16) | (scsicmd->cmnd[4] << 8) | scsicmd->cmnd[5];
895 count = (scsicmd->cmnd[7] << 8) | scsicmd->cmnd[8];
896 }
Mark Haverkamp 7c00ffa2005-05-16 18:28:42 -0700897 dprintk((KERN_DEBUG "aac_read[cpu %d]: lba = %u, t = %ld.\n",
898 smp_processor_id(), (unsigned long long)lba, jiffies));
Linus Torvalds1da177e2005-04-16 15:20:36 -0700899 /*
900 * Alocate and initialize a Fib
901 */
902 if (!(cmd_fibcontext = fib_alloc(dev))) {
903 return -1;
904 }
905
906 fib_init(cmd_fibcontext);
907
Mark Haverkamp 7c00ffa2005-05-16 18:28:42 -0700908 if (dev->dac_support == 1) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700909 struct aac_read64 *readcmd;
910 readcmd = (struct aac_read64 *) fib_data(cmd_fibcontext);
911 readcmd->command = cpu_to_le32(VM_CtHostRead64);
912 readcmd->cid = cpu_to_le16(cid);
913 readcmd->sector_count = cpu_to_le16(count);
914 readcmd->block = cpu_to_le32(lba);
915 readcmd->pad = 0;
916 readcmd->flags = 0;
917
918 aac_build_sg64(scsicmd, &readcmd->sg);
919 fibsize = sizeof(struct aac_read64) +
920 ((le32_to_cpu(readcmd->sg.count) - 1) *
921 sizeof (struct sgentry64));
922 BUG_ON (fibsize > (sizeof(struct hw_fib) -
923 sizeof(struct aac_fibhdr)));
924 /*
925 * Now send the Fib to the adapter
926 */
927 status = fib_send(ContainerCommand64,
928 cmd_fibcontext,
929 fibsize,
930 FsaNormal,
931 0, 1,
Mark Haverkampe53cb352005-08-03 15:39:09 -0700932 (fib_callback) io_callback,
Linus Torvalds1da177e2005-04-16 15:20:36 -0700933 (void *) scsicmd);
934 } else {
935 struct aac_read *readcmd;
936 readcmd = (struct aac_read *) fib_data(cmd_fibcontext);
937 readcmd->command = cpu_to_le32(VM_CtBlockRead);
938 readcmd->cid = cpu_to_le32(cid);
939 readcmd->block = cpu_to_le32(lba);
940 readcmd->count = cpu_to_le32(count * 512);
941
Linus Torvalds1da177e2005-04-16 15:20:36 -0700942 aac_build_sg(scsicmd, &readcmd->sg);
943 fibsize = sizeof(struct aac_read) +
944 ((le32_to_cpu(readcmd->sg.count) - 1) *
945 sizeof (struct sgentry));
Mark Haverkamp 7c00ffa2005-05-16 18:28:42 -0700946 BUG_ON (fibsize > (dev->max_fib_size -
Linus Torvalds1da177e2005-04-16 15:20:36 -0700947 sizeof(struct aac_fibhdr)));
948 /*
949 * Now send the Fib to the adapter
950 */
951 status = fib_send(ContainerCommand,
952 cmd_fibcontext,
953 fibsize,
954 FsaNormal,
955 0, 1,
Mark Haverkampe53cb352005-08-03 15:39:09 -0700956 (fib_callback) io_callback,
Linus Torvalds1da177e2005-04-16 15:20:36 -0700957 (void *) scsicmd);
958 }
959
960
961
962 /*
963 * Check that the command queued to the controller
964 */
965 if (status == -EINPROGRESS)
966 return 0;
967
968 printk(KERN_WARNING "aac_read: fib_send failed with status: %d.\n", status);
969 /*
970 * For some reason, the Fib didn't queue, return QUEUE_FULL
971 */
972 scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_TASK_SET_FULL;
973 aac_io_done(scsicmd);
974 fib_complete(cmd_fibcontext);
975 fib_free(cmd_fibcontext);
976 return 0;
977}
978
979static int aac_write(struct scsi_cmnd * scsicmd, int cid)
980{
981 u32 lba;
982 u32 count;
983 int status;
984 u16 fibsize;
985 struct aac_dev *dev;
986 struct fib * cmd_fibcontext;
987
988 dev = (struct aac_dev *)scsicmd->device->host->hostdata;
989 /*
990 * Get block address and transfer length
991 */
992 if (scsicmd->cmnd[0] == WRITE_6) /* 6 byte command */
993 {
994 lba = ((scsicmd->cmnd[1] & 0x1F) << 16) | (scsicmd->cmnd[2] << 8) | scsicmd->cmnd[3];
995 count = scsicmd->cmnd[4];
996 if (count == 0)
997 count = 256;
998 } else {
999 dprintk((KERN_DEBUG "aachba: received a write(10) command on id %d.\n", cid));
1000 lba = (scsicmd->cmnd[2] << 24) | (scsicmd->cmnd[3] << 16) | (scsicmd->cmnd[4] << 8) | scsicmd->cmnd[5];
1001 count = (scsicmd->cmnd[7] << 8) | scsicmd->cmnd[8];
1002 }
1003 dprintk((KERN_DEBUG "aac_write[cpu %d]: lba = %u, t = %ld.\n",
1004 smp_processor_id(), (unsigned long long)lba, jiffies));
1005 /*
1006 * Allocate and initialize a Fib then setup a BlockWrite command
1007 */
1008 if (!(cmd_fibcontext = fib_alloc(dev))) {
1009 scsicmd->result = DID_ERROR << 16;
1010 aac_io_done(scsicmd);
1011 return 0;
1012 }
1013 fib_init(cmd_fibcontext);
1014
1015 if(dev->dac_support == 1) {
1016 struct aac_write64 *writecmd;
1017 writecmd = (struct aac_write64 *) fib_data(cmd_fibcontext);
1018 writecmd->command = cpu_to_le32(VM_CtHostWrite64);
1019 writecmd->cid = cpu_to_le16(cid);
1020 writecmd->sector_count = cpu_to_le16(count);
1021 writecmd->block = cpu_to_le32(lba);
1022 writecmd->pad = 0;
1023 writecmd->flags = 0;
1024
1025 aac_build_sg64(scsicmd, &writecmd->sg);
1026 fibsize = sizeof(struct aac_write64) +
1027 ((le32_to_cpu(writecmd->sg.count) - 1) *
1028 sizeof (struct sgentry64));
Mark Haverkamp 7c00ffa2005-05-16 18:28:42 -07001029 BUG_ON (fibsize > (dev->max_fib_size -
Linus Torvalds1da177e2005-04-16 15:20:36 -07001030 sizeof(struct aac_fibhdr)));
1031 /*
1032 * Now send the Fib to the adapter
1033 */
1034 status = fib_send(ContainerCommand64,
1035 cmd_fibcontext,
1036 fibsize,
1037 FsaNormal,
1038 0, 1,
Mark Haverkampe53cb352005-08-03 15:39:09 -07001039 (fib_callback) io_callback,
Linus Torvalds1da177e2005-04-16 15:20:36 -07001040 (void *) scsicmd);
1041 } else {
1042 struct aac_write *writecmd;
1043 writecmd = (struct aac_write *) fib_data(cmd_fibcontext);
1044 writecmd->command = cpu_to_le32(VM_CtBlockWrite);
1045 writecmd->cid = cpu_to_le32(cid);
1046 writecmd->block = cpu_to_le32(lba);
1047 writecmd->count = cpu_to_le32(count * 512);
1048 writecmd->sg.count = cpu_to_le32(1);
1049 /* ->stable is not used - it did mean which type of write */
1050
Linus Torvalds1da177e2005-04-16 15:20:36 -07001051 aac_build_sg(scsicmd, &writecmd->sg);
1052 fibsize = sizeof(struct aac_write) +
1053 ((le32_to_cpu(writecmd->sg.count) - 1) *
1054 sizeof (struct sgentry));
Mark Haverkamp 7c00ffa2005-05-16 18:28:42 -07001055 BUG_ON (fibsize > (dev->max_fib_size -
Linus Torvalds1da177e2005-04-16 15:20:36 -07001056 sizeof(struct aac_fibhdr)));
1057 /*
1058 * Now send the Fib to the adapter
1059 */
1060 status = fib_send(ContainerCommand,
1061 cmd_fibcontext,
1062 fibsize,
1063 FsaNormal,
1064 0, 1,
Mark Haverkampe53cb352005-08-03 15:39:09 -07001065 (fib_callback) io_callback,
Linus Torvalds1da177e2005-04-16 15:20:36 -07001066 (void *) scsicmd);
1067 }
1068
1069 /*
1070 * Check that the command queued to the controller
1071 */
1072 if (status == -EINPROGRESS)
1073 {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001074 return 0;
1075 }
1076
1077 printk(KERN_WARNING "aac_write: fib_send failed with status: %d\n", status);
1078 /*
1079 * For some reason, the Fib didn't queue, return QUEUE_FULL
1080 */
1081 scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_TASK_SET_FULL;
1082 aac_io_done(scsicmd);
1083
1084 fib_complete(cmd_fibcontext);
1085 fib_free(cmd_fibcontext);
1086 return 0;
1087}
1088
1089static void synchronize_callback(void *context, struct fib *fibptr)
1090{
1091 struct aac_synchronize_reply *synchronizereply;
1092 struct scsi_cmnd *cmd;
1093
1094 cmd = context;
1095
1096 dprintk((KERN_DEBUG "synchronize_callback[cpu %d]: t = %ld.\n",
1097 smp_processor_id(), jiffies));
1098 BUG_ON(fibptr == NULL);
1099
1100
1101 synchronizereply = fib_data(fibptr);
1102 if (le32_to_cpu(synchronizereply->status) == CT_OK)
1103 cmd->result = DID_OK << 16 |
1104 COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;
1105 else {
1106 struct scsi_device *sdev = cmd->device;
1107 struct aac_dev *dev = (struct aac_dev *)sdev->host->hostdata;
1108 u32 cid = ID_LUN_TO_CONTAINER(sdev->id, sdev->lun);
1109 printk(KERN_WARNING
1110 "synchronize_callback: synchronize failed, status = %d\n",
1111 le32_to_cpu(synchronizereply->status));
1112 cmd->result = DID_OK << 16 |
1113 COMMAND_COMPLETE << 8 | SAM_STAT_CHECK_CONDITION;
1114 set_sense((u8 *)&dev->fsa_dev[cid].sense_data,
1115 HARDWARE_ERROR,
1116 SENCODE_INTERNAL_TARGET_FAILURE,
1117 ASENCODE_INTERNAL_TARGET_FAILURE, 0, 0,
1118 0, 0);
1119 memcpy(cmd->sense_buffer, &dev->fsa_dev[cid].sense_data,
1120 min(sizeof(dev->fsa_dev[cid].sense_data),
1121 sizeof(cmd->sense_buffer)));
1122 }
1123
1124 fib_complete(fibptr);
1125 fib_free(fibptr);
1126 aac_io_done(cmd);
1127}
1128
1129static int aac_synchronize(struct scsi_cmnd *scsicmd, int cid)
1130{
1131 int status;
1132 struct fib *cmd_fibcontext;
1133 struct aac_synchronize *synchronizecmd;
1134 struct scsi_cmnd *cmd;
1135 struct scsi_device *sdev = scsicmd->device;
1136 int active = 0;
1137 unsigned long flags;
1138
1139 /*
1140 * Wait for all commands to complete to this specific
1141 * target (block).
1142 */
1143 spin_lock_irqsave(&sdev->list_lock, flags);
1144 list_for_each_entry(cmd, &sdev->cmd_list, list)
1145 if (cmd != scsicmd && cmd->serial_number != 0) {
1146 ++active;
1147 break;
1148 }
1149
1150 spin_unlock_irqrestore(&sdev->list_lock, flags);
1151
1152 /*
1153 * Yield the processor (requeue for later)
1154 */
1155 if (active)
1156 return SCSI_MLQUEUE_DEVICE_BUSY;
1157
1158 /*
Mark Haverkamp 7c00ffa2005-05-16 18:28:42 -07001159 * Allocate and initialize a Fib
Linus Torvalds1da177e2005-04-16 15:20:36 -07001160 */
1161 if (!(cmd_fibcontext =
1162 fib_alloc((struct aac_dev *)scsicmd->device->host->hostdata)))
1163 return SCSI_MLQUEUE_HOST_BUSY;
1164
1165 fib_init(cmd_fibcontext);
1166
1167 synchronizecmd = fib_data(cmd_fibcontext);
1168 synchronizecmd->command = cpu_to_le32(VM_ContainerConfig);
1169 synchronizecmd->type = cpu_to_le32(CT_FLUSH_CACHE);
1170 synchronizecmd->cid = cpu_to_le32(cid);
1171 synchronizecmd->count =
1172 cpu_to_le32(sizeof(((struct aac_synchronize_reply *)NULL)->data));
1173
1174 /*
1175 * Now send the Fib to the adapter
1176 */
1177 status = fib_send(ContainerCommand,
1178 cmd_fibcontext,
1179 sizeof(struct aac_synchronize),
1180 FsaNormal,
1181 0, 1,
1182 (fib_callback)synchronize_callback,
1183 (void *)scsicmd);
1184
1185 /*
1186 * Check that the command queued to the controller
1187 */
1188 if (status == -EINPROGRESS)
1189 return 0;
1190
1191 printk(KERN_WARNING
1192 "aac_synchronize: fib_send failed with status: %d.\n", status);
1193 fib_complete(cmd_fibcontext);
1194 fib_free(cmd_fibcontext);
1195 return SCSI_MLQUEUE_HOST_BUSY;
1196}
1197
1198/**
1199 * aac_scsi_cmd() - Process SCSI command
1200 * @scsicmd: SCSI command block
1201 *
1202 * Emulate a SCSI command and queue the required request for the
1203 * aacraid firmware.
1204 */
1205
1206int aac_scsi_cmd(struct scsi_cmnd * scsicmd)
1207{
1208 u32 cid = 0;
1209 struct Scsi_Host *host = scsicmd->device->host;
1210 struct aac_dev *dev = (struct aac_dev *)host->hostdata;
1211 struct fsa_dev_info *fsa_dev_ptr = dev->fsa_dev;
1212 int cardtype = dev->cardtype;
1213 int ret;
1214
1215 /*
1216 * If the bus, id or lun is out of range, return fail
1217 * Test does not apply to ID 16, the pseudo id for the controller
1218 * itself.
1219 */
1220 if (scsicmd->device->id != host->this_id) {
1221 if ((scsicmd->device->channel == 0) ){
1222 if( (scsicmd->device->id >= dev->maximum_num_containers) || (scsicmd->device->lun != 0)){
1223 scsicmd->result = DID_NO_CONNECT << 16;
1224 scsicmd->scsi_done(scsicmd);
1225 return 0;
1226 }
1227 cid = ID_LUN_TO_CONTAINER(scsicmd->device->id, scsicmd->device->lun);
1228
1229 /*
1230 * If the target container doesn't exist, it may have
1231 * been newly created
1232 */
1233 if ((fsa_dev_ptr[cid].valid & 1) == 0) {
1234 switch (scsicmd->cmnd[0]) {
1235 case INQUIRY:
1236 case READ_CAPACITY:
1237 case TEST_UNIT_READY:
1238 spin_unlock_irq(host->host_lock);
1239 probe_container(dev, cid);
1240 spin_lock_irq(host->host_lock);
1241 if (fsa_dev_ptr[cid].valid == 0) {
1242 scsicmd->result = DID_NO_CONNECT << 16;
1243 scsicmd->scsi_done(scsicmd);
1244 return 0;
1245 }
1246 default:
1247 break;
1248 }
1249 }
1250 /*
1251 * If the target container still doesn't exist,
1252 * return failure
1253 */
1254 if (fsa_dev_ptr[cid].valid == 0) {
1255 scsicmd->result = DID_BAD_TARGET << 16;
1256 scsicmd->scsi_done(scsicmd);
1257 return 0;
1258 }
1259 } else { /* check for physical non-dasd devices */
1260 if(dev->nondasd_support == 1){
1261 return aac_send_srb_fib(scsicmd);
1262 } else {
1263 scsicmd->result = DID_NO_CONNECT << 16;
1264 scsicmd->scsi_done(scsicmd);
1265 return 0;
1266 }
1267 }
1268 }
1269 /*
1270 * else Command for the controller itself
1271 */
1272 else if ((scsicmd->cmnd[0] != INQUIRY) && /* only INQUIRY & TUR cmnd supported for controller */
1273 (scsicmd->cmnd[0] != TEST_UNIT_READY))
1274 {
1275 dprintk((KERN_WARNING "Only INQUIRY & TUR command supported for controller, rcvd = 0x%x.\n", scsicmd->cmnd[0]));
1276 scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_CHECK_CONDITION;
1277 set_sense((u8 *) &dev->fsa_dev[cid].sense_data,
1278 ILLEGAL_REQUEST,
1279 SENCODE_INVALID_COMMAND,
1280 ASENCODE_INVALID_COMMAND, 0, 0, 0, 0);
1281 memcpy(scsicmd->sense_buffer, &dev->fsa_dev[cid].sense_data,
1282 (sizeof(dev->fsa_dev[cid].sense_data) > sizeof(scsicmd->sense_buffer))
1283 ? sizeof(scsicmd->sense_buffer)
1284 : sizeof(dev->fsa_dev[cid].sense_data));
1285 scsicmd->scsi_done(scsicmd);
1286 return 0;
1287 }
1288
1289
1290 /* Handle commands here that don't really require going out to the adapter */
1291 switch (scsicmd->cmnd[0]) {
1292 case INQUIRY:
1293 {
1294 struct inquiry_data *inq_data_ptr;
1295
1296 dprintk((KERN_DEBUG "INQUIRY command, ID: %d.\n", scsicmd->device->id));
1297 inq_data_ptr = (struct inquiry_data *)scsicmd->request_buffer;
1298 memset(inq_data_ptr, 0, sizeof (struct inquiry_data));
1299
1300 inq_data_ptr->inqd_ver = 2; /* claim compliance to SCSI-2 */
1301 inq_data_ptr->inqd_dtq = 0x80; /* set RMB bit to one indicating that the medium is removable */
1302 inq_data_ptr->inqd_rdf = 2; /* A response data format value of two indicates that the data shall be in the format specified in SCSI-2 */
1303 inq_data_ptr->inqd_len = 31;
1304 /*Format for "pad2" is RelAdr | WBus32 | WBus16 | Sync | Linked |Reserved| CmdQue | SftRe */
1305 inq_data_ptr->inqd_pad2= 0x32 ; /*WBus16|Sync|CmdQue */
1306 /*
1307 * Set the Vendor, Product, and Revision Level
1308 * see: <vendor>.c i.e. aac.c
1309 */
1310 if (scsicmd->device->id == host->this_id) {
1311 setinqstr(cardtype, (void *) (inq_data_ptr->inqd_vid), (sizeof(container_types)/sizeof(char *)));
1312 inq_data_ptr->inqd_pdt = INQD_PDT_PROC; /* Processor device */
1313 scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;
1314 scsicmd->scsi_done(scsicmd);
1315 return 0;
1316 }
1317 setinqstr(cardtype, (void *) (inq_data_ptr->inqd_vid), fsa_dev_ptr[cid].type);
1318 inq_data_ptr->inqd_pdt = INQD_PDT_DA; /* Direct/random access device */
1319 return aac_get_container_name(scsicmd, cid);
1320 }
1321 case READ_CAPACITY:
1322 {
1323 u32 capacity;
1324 char *cp;
1325
1326 dprintk((KERN_DEBUG "READ CAPACITY command.\n"));
1327 if (fsa_dev_ptr[cid].size <= 0x100000000LL)
1328 capacity = fsa_dev_ptr[cid].size - 1;
1329 else
1330 capacity = (u32)-1;
1331 cp = scsicmd->request_buffer;
1332 cp[0] = (capacity >> 24) & 0xff;
1333 cp[1] = (capacity >> 16) & 0xff;
1334 cp[2] = (capacity >> 8) & 0xff;
1335 cp[3] = (capacity >> 0) & 0xff;
1336 cp[4] = 0;
1337 cp[5] = 0;
1338 cp[6] = 2;
1339 cp[7] = 0;
1340
1341 scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;
1342 scsicmd->scsi_done(scsicmd);
1343
1344 return 0;
1345 }
1346
1347 case MODE_SENSE:
1348 {
1349 char *mode_buf;
1350
1351 dprintk((KERN_DEBUG "MODE SENSE command.\n"));
1352 mode_buf = scsicmd->request_buffer;
1353 mode_buf[0] = 3; /* Mode data length */
1354 mode_buf[1] = 0; /* Medium type - default */
1355 mode_buf[2] = 0; /* Device-specific param, bit 8: 0/1 = write enabled/protected */
1356 mode_buf[3] = 0; /* Block descriptor length */
1357
1358 scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;
1359 scsicmd->scsi_done(scsicmd);
1360
1361 return 0;
1362 }
1363 case MODE_SENSE_10:
1364 {
1365 char *mode_buf;
1366
1367 dprintk((KERN_DEBUG "MODE SENSE 10 byte command.\n"));
1368 mode_buf = scsicmd->request_buffer;
1369 mode_buf[0] = 0; /* Mode data length (MSB) */
1370 mode_buf[1] = 6; /* Mode data length (LSB) */
1371 mode_buf[2] = 0; /* Medium type - default */
1372 mode_buf[3] = 0; /* Device-specific param, bit 8: 0/1 = write enabled/protected */
1373 mode_buf[4] = 0; /* reserved */
1374 mode_buf[5] = 0; /* reserved */
1375 mode_buf[6] = 0; /* Block descriptor length (MSB) */
1376 mode_buf[7] = 0; /* Block descriptor length (LSB) */
1377
1378 scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;
1379 scsicmd->scsi_done(scsicmd);
1380
1381 return 0;
1382 }
1383 case REQUEST_SENSE:
1384 dprintk((KERN_DEBUG "REQUEST SENSE command.\n"));
1385 memcpy(scsicmd->sense_buffer, &dev->fsa_dev[cid].sense_data, sizeof (struct sense_data));
1386 memset(&dev->fsa_dev[cid].sense_data, 0, sizeof (struct sense_data));
1387 scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;
1388 scsicmd->scsi_done(scsicmd);
1389 return 0;
1390
1391 case ALLOW_MEDIUM_REMOVAL:
1392 dprintk((KERN_DEBUG "LOCK command.\n"));
1393 if (scsicmd->cmnd[4])
1394 fsa_dev_ptr[cid].locked = 1;
1395 else
1396 fsa_dev_ptr[cid].locked = 0;
1397
1398 scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;
1399 scsicmd->scsi_done(scsicmd);
1400 return 0;
1401 /*
1402 * These commands are all No-Ops
1403 */
1404 case TEST_UNIT_READY:
1405 case RESERVE:
1406 case RELEASE:
1407 case REZERO_UNIT:
1408 case REASSIGN_BLOCKS:
1409 case SEEK_10:
1410 case START_STOP:
1411 scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;
1412 scsicmd->scsi_done(scsicmd);
1413 return 0;
1414 }
1415
1416 switch (scsicmd->cmnd[0])
1417 {
1418 case READ_6:
1419 case READ_10:
1420 /*
1421 * Hack to keep track of ordinal number of the device that
1422 * corresponds to a container. Needed to convert
1423 * containers to /dev/sd device names
1424 */
1425
1426 spin_unlock_irq(host->host_lock);
1427 if (scsicmd->request->rq_disk)
1428 memcpy(fsa_dev_ptr[cid].devname,
1429 scsicmd->request->rq_disk->disk_name,
1430 8);
1431
1432 ret = aac_read(scsicmd, cid);
1433 spin_lock_irq(host->host_lock);
1434 return ret;
1435
1436 case WRITE_6:
1437 case WRITE_10:
1438 spin_unlock_irq(host->host_lock);
1439 ret = aac_write(scsicmd, cid);
1440 spin_lock_irq(host->host_lock);
1441 return ret;
1442
1443 case SYNCHRONIZE_CACHE:
1444 /* Issue FIB to tell Firmware to flush it's cache */
1445 return aac_synchronize(scsicmd, cid);
1446
1447 default:
1448 /*
1449 * Unhandled commands
1450 */
Mark Haverkamp 7c00ffa2005-05-16 18:28:42 -07001451 dprintk((KERN_WARNING "Unhandled SCSI Command: 0x%x.\n", scsicmd->cmnd[0]));
Linus Torvalds1da177e2005-04-16 15:20:36 -07001452 scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_CHECK_CONDITION;
1453 set_sense((u8 *) &dev->fsa_dev[cid].sense_data,
1454 ILLEGAL_REQUEST, SENCODE_INVALID_COMMAND,
1455 ASENCODE_INVALID_COMMAND, 0, 0, 0, 0);
1456 memcpy(scsicmd->sense_buffer, &dev->fsa_dev[cid].sense_data,
1457 (sizeof(dev->fsa_dev[cid].sense_data) > sizeof(scsicmd->sense_buffer))
1458 ? sizeof(scsicmd->sense_buffer)
1459 : sizeof(dev->fsa_dev[cid].sense_data));
1460 scsicmd->scsi_done(scsicmd);
1461 return 0;
1462 }
1463}
1464
1465static int query_disk(struct aac_dev *dev, void __user *arg)
1466{
1467 struct aac_query_disk qd;
1468 struct fsa_dev_info *fsa_dev_ptr;
1469
1470 fsa_dev_ptr = dev->fsa_dev;
1471 if (copy_from_user(&qd, arg, sizeof (struct aac_query_disk)))
1472 return -EFAULT;
1473 if (qd.cnum == -1)
1474 qd.cnum = ID_LUN_TO_CONTAINER(qd.id, qd.lun);
1475 else if ((qd.bus == -1) && (qd.id == -1) && (qd.lun == -1))
1476 {
1477 if (qd.cnum < 0 || qd.cnum >= dev->maximum_num_containers)
1478 return -EINVAL;
1479 qd.instance = dev->scsi_host_ptr->host_no;
1480 qd.bus = 0;
1481 qd.id = CONTAINER_TO_ID(qd.cnum);
1482 qd.lun = CONTAINER_TO_LUN(qd.cnum);
1483 }
1484 else return -EINVAL;
1485
1486 qd.valid = fsa_dev_ptr[qd.cnum].valid;
1487 qd.locked = fsa_dev_ptr[qd.cnum].locked;
1488 qd.deleted = fsa_dev_ptr[qd.cnum].deleted;
1489
1490 if (fsa_dev_ptr[qd.cnum].devname[0] == '\0')
1491 qd.unmapped = 1;
1492 else
1493 qd.unmapped = 0;
1494
1495 strlcpy(qd.name, fsa_dev_ptr[qd.cnum].devname,
1496 min(sizeof(qd.name), sizeof(fsa_dev_ptr[qd.cnum].devname) + 1));
1497
1498 if (copy_to_user(arg, &qd, sizeof (struct aac_query_disk)))
1499 return -EFAULT;
1500 return 0;
1501}
1502
1503static int force_delete_disk(struct aac_dev *dev, void __user *arg)
1504{
1505 struct aac_delete_disk dd;
1506 struct fsa_dev_info *fsa_dev_ptr;
1507
1508 fsa_dev_ptr = dev->fsa_dev;
1509
1510 if (copy_from_user(&dd, arg, sizeof (struct aac_delete_disk)))
1511 return -EFAULT;
1512
1513 if (dd.cnum >= dev->maximum_num_containers)
1514 return -EINVAL;
1515 /*
1516 * Mark this container as being deleted.
1517 */
1518 fsa_dev_ptr[dd.cnum].deleted = 1;
1519 /*
1520 * Mark the container as no longer valid
1521 */
1522 fsa_dev_ptr[dd.cnum].valid = 0;
1523 return 0;
1524}
1525
1526static int delete_disk(struct aac_dev *dev, void __user *arg)
1527{
1528 struct aac_delete_disk dd;
1529 struct fsa_dev_info *fsa_dev_ptr;
1530
1531 fsa_dev_ptr = dev->fsa_dev;
1532
1533 if (copy_from_user(&dd, arg, sizeof (struct aac_delete_disk)))
1534 return -EFAULT;
1535
1536 if (dd.cnum >= dev->maximum_num_containers)
1537 return -EINVAL;
1538 /*
1539 * If the container is locked, it can not be deleted by the API.
1540 */
1541 if (fsa_dev_ptr[dd.cnum].locked)
1542 return -EBUSY;
1543 else {
1544 /*
1545 * Mark the container as no longer being valid.
1546 */
1547 fsa_dev_ptr[dd.cnum].valid = 0;
1548 fsa_dev_ptr[dd.cnum].devname[0] = '\0';
1549 return 0;
1550 }
1551}
1552
1553int aac_dev_ioctl(struct aac_dev *dev, int cmd, void __user *arg)
1554{
1555 switch (cmd) {
1556 case FSACTL_QUERY_DISK:
1557 return query_disk(dev, arg);
1558 case FSACTL_DELETE_DISK:
1559 return delete_disk(dev, arg);
1560 case FSACTL_FORCE_DELETE_DISK:
1561 return force_delete_disk(dev, arg);
1562 case FSACTL_GET_CONTAINERS:
1563 return aac_get_containers(dev);
1564 default:
1565 return -ENOTTY;
1566 }
1567}
1568
1569/**
1570 *
1571 * aac_srb_callback
1572 * @context: the context set in the fib - here it is scsi cmd
1573 * @fibptr: pointer to the fib
1574 *
1575 * Handles the completion of a scsi command to a non dasd device
1576 *
1577 */
1578
1579static void aac_srb_callback(void *context, struct fib * fibptr)
1580{
1581 struct aac_dev *dev;
1582 struct aac_srb_reply *srbreply;
1583 struct scsi_cmnd *scsicmd;
1584
1585 scsicmd = (struct scsi_cmnd *) context;
1586 dev = (struct aac_dev *)scsicmd->device->host->hostdata;
1587
1588 if (fibptr == NULL)
1589 BUG();
1590
1591 srbreply = (struct aac_srb_reply *) fib_data(fibptr);
1592
1593 scsicmd->sense_buffer[0] = '\0'; /* Initialize sense valid flag to false */
1594 /*
1595 * Calculate resid for sg
1596 */
1597
1598 scsicmd->resid = scsicmd->request_bufflen -
1599 le32_to_cpu(srbreply->data_xfer_length);
1600
1601 if(scsicmd->use_sg)
1602 pci_unmap_sg(dev->pdev,
1603 (struct scatterlist *)scsicmd->buffer,
1604 scsicmd->use_sg,
1605 scsicmd->sc_data_direction);
1606 else if(scsicmd->request_bufflen)
1607 pci_unmap_single(dev->pdev, scsicmd->SCp.dma_handle, scsicmd->request_bufflen,
1608 scsicmd->sc_data_direction);
1609
1610 /*
1611 * First check the fib status
1612 */
1613
1614 if (le32_to_cpu(srbreply->status) != ST_OK){
1615 int len;
1616 printk(KERN_WARNING "aac_srb_callback: srb failed, status = %d\n", le32_to_cpu(srbreply->status));
1617 len = (le32_to_cpu(srbreply->sense_data_size) >
1618 sizeof(scsicmd->sense_buffer)) ?
1619 sizeof(scsicmd->sense_buffer) :
1620 le32_to_cpu(srbreply->sense_data_size);
1621 scsicmd->result = DID_ERROR << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_CHECK_CONDITION;
1622 memcpy(scsicmd->sense_buffer, srbreply->sense_data, len);
1623 }
1624
1625 /*
1626 * Next check the srb status
1627 */
1628 switch( (le32_to_cpu(srbreply->srb_status))&0x3f){
1629 case SRB_STATUS_ERROR_RECOVERY:
1630 case SRB_STATUS_PENDING:
1631 case SRB_STATUS_SUCCESS:
1632 if(scsicmd->cmnd[0] == INQUIRY ){
1633 u8 b;
1634 u8 b1;
1635 /* We can't expose disk devices because we can't tell whether they
1636 * are the raw container drives or stand alone drives. If they have
1637 * the removable bit set then we should expose them though.
1638 */
1639 b = (*(u8*)scsicmd->buffer)&0x1f;
1640 b1 = ((u8*)scsicmd->buffer)[1];
1641 if( b==TYPE_TAPE || b==TYPE_WORM || b==TYPE_ROM || b==TYPE_MOD|| b==TYPE_MEDIUM_CHANGER
1642 || (b==TYPE_DISK && (b1&0x80)) ){
1643 scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8;
1644 /*
1645 * We will allow disk devices if in RAID/SCSI mode and
1646 * the channel is 2
1647 */
1648 } else if ((dev->raid_scsi_mode) &&
1649 (scsicmd->device->channel == 2)) {
1650 scsicmd->result = DID_OK << 16 |
1651 COMMAND_COMPLETE << 8;
1652 } else {
1653 scsicmd->result = DID_NO_CONNECT << 16 |
1654 COMMAND_COMPLETE << 8;
1655 }
1656 } else {
1657 scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8;
1658 }
1659 break;
1660 case SRB_STATUS_DATA_OVERRUN:
1661 switch(scsicmd->cmnd[0]){
1662 case READ_6:
1663 case WRITE_6:
1664 case READ_10:
1665 case WRITE_10:
1666 case READ_12:
1667 case WRITE_12:
1668 if(le32_to_cpu(srbreply->data_xfer_length) < scsicmd->underflow ) {
1669 printk(KERN_WARNING"aacraid: SCSI CMD underflow\n");
1670 } else {
1671 printk(KERN_WARNING"aacraid: SCSI CMD Data Overrun\n");
1672 }
1673 scsicmd->result = DID_ERROR << 16 | COMMAND_COMPLETE << 8;
1674 break;
1675 case INQUIRY: {
1676 u8 b;
1677 u8 b1;
1678 /* We can't expose disk devices because we can't tell whether they
1679 * are the raw container drives or stand alone drives
1680 */
1681 b = (*(u8*)scsicmd->buffer)&0x0f;
1682 b1 = ((u8*)scsicmd->buffer)[1];
1683 if( b==TYPE_TAPE || b==TYPE_WORM || b==TYPE_ROM || b==TYPE_MOD|| b==TYPE_MEDIUM_CHANGER
1684 || (b==TYPE_DISK && (b1&0x80)) ){
1685 scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8;
1686 /*
1687 * We will allow disk devices if in RAID/SCSI mode and
1688 * the channel is 2
1689 */
1690 } else if ((dev->raid_scsi_mode) &&
1691 (scsicmd->device->channel == 2)) {
1692 scsicmd->result = DID_OK << 16 |
1693 COMMAND_COMPLETE << 8;
1694 } else {
1695 scsicmd->result = DID_NO_CONNECT << 16 |
1696 COMMAND_COMPLETE << 8;
1697 }
1698 break;
1699 }
1700 default:
1701 scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8;
1702 break;
1703 }
1704 break;
1705 case SRB_STATUS_ABORTED:
1706 scsicmd->result = DID_ABORT << 16 | ABORT << 8;
1707 break;
1708 case SRB_STATUS_ABORT_FAILED:
1709 // Not sure about this one - but assuming the hba was trying to abort for some reason
1710 scsicmd->result = DID_ERROR << 16 | ABORT << 8;
1711 break;
1712 case SRB_STATUS_PARITY_ERROR:
1713 scsicmd->result = DID_PARITY << 16 | MSG_PARITY_ERROR << 8;
1714 break;
1715 case SRB_STATUS_NO_DEVICE:
1716 case SRB_STATUS_INVALID_PATH_ID:
1717 case SRB_STATUS_INVALID_TARGET_ID:
1718 case SRB_STATUS_INVALID_LUN:
1719 case SRB_STATUS_SELECTION_TIMEOUT:
1720 scsicmd->result = DID_NO_CONNECT << 16 | COMMAND_COMPLETE << 8;
1721 break;
1722
1723 case SRB_STATUS_COMMAND_TIMEOUT:
1724 case SRB_STATUS_TIMEOUT:
1725 scsicmd->result = DID_TIME_OUT << 16 | COMMAND_COMPLETE << 8;
1726 break;
1727
1728 case SRB_STATUS_BUSY:
1729 scsicmd->result = DID_NO_CONNECT << 16 | COMMAND_COMPLETE << 8;
1730 break;
1731
1732 case SRB_STATUS_BUS_RESET:
1733 scsicmd->result = DID_RESET << 16 | COMMAND_COMPLETE << 8;
1734 break;
1735
1736 case SRB_STATUS_MESSAGE_REJECTED:
1737 scsicmd->result = DID_ERROR << 16 | MESSAGE_REJECT << 8;
1738 break;
1739 case SRB_STATUS_REQUEST_FLUSHED:
1740 case SRB_STATUS_ERROR:
1741 case SRB_STATUS_INVALID_REQUEST:
1742 case SRB_STATUS_REQUEST_SENSE_FAILED:
1743 case SRB_STATUS_NO_HBA:
1744 case SRB_STATUS_UNEXPECTED_BUS_FREE:
1745 case SRB_STATUS_PHASE_SEQUENCE_FAILURE:
1746 case SRB_STATUS_BAD_SRB_BLOCK_LENGTH:
1747 case SRB_STATUS_DELAYED_RETRY:
1748 case SRB_STATUS_BAD_FUNCTION:
1749 case SRB_STATUS_NOT_STARTED:
1750 case SRB_STATUS_NOT_IN_USE:
1751 case SRB_STATUS_FORCE_ABORT:
1752 case SRB_STATUS_DOMAIN_VALIDATION_FAIL:
1753 default:
1754#ifdef AAC_DETAILED_STATUS_INFO
1755 printk("aacraid: SRB ERROR(%u) %s scsi cmd 0x%x - scsi status 0x%x\n",
1756 le32_to_cpu(srbreply->srb_status) & 0x3F,
1757 aac_get_status_string(
1758 le32_to_cpu(srbreply->srb_status) & 0x3F),
1759 scsicmd->cmnd[0],
1760 le32_to_cpu(srbreply->scsi_status));
1761#endif
1762 scsicmd->result = DID_ERROR << 16 | COMMAND_COMPLETE << 8;
1763 break;
1764 }
1765 if (le32_to_cpu(srbreply->scsi_status) == 0x02 ){ // Check Condition
1766 int len;
1767 scsicmd->result |= SAM_STAT_CHECK_CONDITION;
1768 len = (le32_to_cpu(srbreply->sense_data_size) >
1769 sizeof(scsicmd->sense_buffer)) ?
1770 sizeof(scsicmd->sense_buffer) :
1771 le32_to_cpu(srbreply->sense_data_size);
1772#ifdef AAC_DETAILED_STATUS_INFO
1773 dprintk((KERN_WARNING "aac_srb_callback: check condition, status = %d len=%d\n",
1774 le32_to_cpu(srbreply->status), len));
1775#endif
1776 memcpy(scsicmd->sense_buffer, srbreply->sense_data, len);
1777
1778 }
1779 /*
1780 * OR in the scsi status (already shifted up a bit)
1781 */
1782 scsicmd->result |= le32_to_cpu(srbreply->scsi_status);
1783
1784 fib_complete(fibptr);
1785 fib_free(fibptr);
1786 aac_io_done(scsicmd);
1787}
1788
1789/**
1790 *
1791 * aac_send_scb_fib
1792 * @scsicmd: the scsi command block
1793 *
1794 * This routine will form a FIB and fill in the aac_srb from the
1795 * scsicmd passed in.
1796 */
1797
1798static int aac_send_srb_fib(struct scsi_cmnd* scsicmd)
1799{
1800 struct fib* cmd_fibcontext;
1801 struct aac_dev* dev;
1802 int status;
1803 struct aac_srb *srbcmd;
1804 u16 fibsize;
1805 u32 flag;
1806 u32 timeout;
1807
Mark Haverkamp84971732005-06-20 11:55:24 -07001808 dev = (struct aac_dev *)scsicmd->device->host->hostdata;
1809 if (scsicmd->device->id >= dev->maximum_num_physicals ||
1810 scsicmd->device->lun > 7) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001811 scsicmd->result = DID_NO_CONNECT << 16;
1812 scsicmd->scsi_done(scsicmd);
1813 return 0;
1814 }
1815
1816 dev = (struct aac_dev *)scsicmd->device->host->hostdata;
1817 switch(scsicmd->sc_data_direction){
1818 case DMA_TO_DEVICE:
1819 flag = SRB_DataOut;
1820 break;
1821 case DMA_BIDIRECTIONAL:
1822 flag = SRB_DataIn | SRB_DataOut;
1823 break;
1824 case DMA_FROM_DEVICE:
1825 flag = SRB_DataIn;
1826 break;
1827 case DMA_NONE:
1828 default: /* shuts up some versions of gcc */
1829 flag = SRB_NoDataXfer;
1830 break;
1831 }
1832
1833
1834 /*
1835 * Allocate and initialize a Fib then setup a BlockWrite command
1836 */
1837 if (!(cmd_fibcontext = fib_alloc(dev))) {
1838 return -1;
1839 }
1840 fib_init(cmd_fibcontext);
1841
1842 srbcmd = (struct aac_srb*) fib_data(cmd_fibcontext);
1843 srbcmd->function = cpu_to_le32(SRBF_ExecuteScsi);
1844 srbcmd->channel = cpu_to_le32(aac_logical_to_phys(scsicmd->device->channel));
1845 srbcmd->id = cpu_to_le32(scsicmd->device->id);
1846 srbcmd->lun = cpu_to_le32(scsicmd->device->lun);
1847 srbcmd->flags = cpu_to_le32(flag);
1848 timeout = (scsicmd->timeout-jiffies)/HZ;
1849 if(timeout == 0){
1850 timeout = 1;
1851 }
1852 srbcmd->timeout = cpu_to_le32(timeout); // timeout in seconds
1853 srbcmd->retry_limit = 0; /* Obsolete parameter */
1854 srbcmd->cdb_size = cpu_to_le32(scsicmd->cmd_len);
1855
1856 if( dev->dac_support == 1 ) {
1857 aac_build_sg64(scsicmd, (struct sgmap64*) &srbcmd->sg);
1858 srbcmd->count = cpu_to_le32(scsicmd->request_bufflen);
1859
1860 memset(srbcmd->cdb, 0, sizeof(srbcmd->cdb));
1861 memcpy(srbcmd->cdb, scsicmd->cmnd, scsicmd->cmd_len);
1862 /*
1863 * Build Scatter/Gather list
1864 */
1865 fibsize = sizeof (struct aac_srb) - sizeof (struct sgentry) +
1866 ((le32_to_cpu(srbcmd->sg.count) & 0xff) *
1867 sizeof (struct sgentry64));
Mark Haverkamp 7c00ffa2005-05-16 18:28:42 -07001868 BUG_ON (fibsize > (dev->max_fib_size -
Linus Torvalds1da177e2005-04-16 15:20:36 -07001869 sizeof(struct aac_fibhdr)));
1870
1871 /*
1872 * Now send the Fib to the adapter
1873 */
1874 status = fib_send(ScsiPortCommand64, cmd_fibcontext,
1875 fibsize, FsaNormal, 0, 1,
1876 (fib_callback) aac_srb_callback,
1877 (void *) scsicmd);
1878 } else {
1879 aac_build_sg(scsicmd, (struct sgmap*)&srbcmd->sg);
1880 srbcmd->count = cpu_to_le32(scsicmd->request_bufflen);
1881
1882 memset(srbcmd->cdb, 0, sizeof(srbcmd->cdb));
1883 memcpy(srbcmd->cdb, scsicmd->cmnd, scsicmd->cmd_len);
1884 /*
1885 * Build Scatter/Gather list
1886 */
1887 fibsize = sizeof (struct aac_srb) +
1888 (((le32_to_cpu(srbcmd->sg.count) & 0xff) - 1) *
1889 sizeof (struct sgentry));
Mark Haverkamp 7c00ffa2005-05-16 18:28:42 -07001890 BUG_ON (fibsize > (dev->max_fib_size -
Linus Torvalds1da177e2005-04-16 15:20:36 -07001891 sizeof(struct aac_fibhdr)));
1892
1893 /*
1894 * Now send the Fib to the adapter
1895 */
1896 status = fib_send(ScsiPortCommand, cmd_fibcontext, fibsize, FsaNormal, 0, 1,
1897 (fib_callback) aac_srb_callback, (void *) scsicmd);
1898 }
1899 /*
1900 * Check that the command queued to the controller
1901 */
1902 if (status == -EINPROGRESS){
1903 return 0;
1904 }
1905
1906 printk(KERN_WARNING "aac_srb: fib_send failed with status: %d\n", status);
1907 fib_complete(cmd_fibcontext);
1908 fib_free(cmd_fibcontext);
1909
1910 return -1;
1911}
1912
1913static unsigned long aac_build_sg(struct scsi_cmnd* scsicmd, struct sgmap* psg)
1914{
1915 struct aac_dev *dev;
1916 unsigned long byte_count = 0;
1917
1918 dev = (struct aac_dev *)scsicmd->device->host->hostdata;
1919 // Get rid of old data
1920 psg->count = 0;
1921 psg->sg[0].addr = 0;
1922 psg->sg[0].count = 0;
1923 if (scsicmd->use_sg) {
1924 struct scatterlist *sg;
1925 int i;
1926 int sg_count;
1927 sg = (struct scatterlist *) scsicmd->request_buffer;
1928
1929 sg_count = pci_map_sg(dev->pdev, sg, scsicmd->use_sg,
1930 scsicmd->sc_data_direction);
1931 psg->count = cpu_to_le32(sg_count);
1932
1933 byte_count = 0;
1934
1935 for (i = 0; i < sg_count; i++) {
1936 psg->sg[i].addr = cpu_to_le32(sg_dma_address(sg));
1937 psg->sg[i].count = cpu_to_le32(sg_dma_len(sg));
1938 byte_count += sg_dma_len(sg);
1939 sg++;
1940 }
1941 /* hba wants the size to be exact */
1942 if(byte_count > scsicmd->request_bufflen){
Mark Haverkamp 56b58712005-04-27 06:05:51 -07001943 u32 temp = le32_to_cpu(psg->sg[i-1].count) -
1944 (byte_count - scsicmd->request_bufflen);
1945 psg->sg[i-1].count = cpu_to_le32(temp);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001946 byte_count = scsicmd->request_bufflen;
1947 }
1948 /* Check for command underflow */
1949 if(scsicmd->underflow && (byte_count < scsicmd->underflow)){
1950 printk(KERN_WARNING"aacraid: cmd len %08lX cmd underflow %08X\n",
1951 byte_count, scsicmd->underflow);
1952 }
1953 }
1954 else if(scsicmd->request_bufflen) {
1955 dma_addr_t addr;
1956 addr = pci_map_single(dev->pdev,
1957 scsicmd->request_buffer,
1958 scsicmd->request_bufflen,
1959 scsicmd->sc_data_direction);
1960 psg->count = cpu_to_le32(1);
1961 psg->sg[0].addr = cpu_to_le32(addr);
1962 psg->sg[0].count = cpu_to_le32(scsicmd->request_bufflen);
1963 scsicmd->SCp.dma_handle = addr;
1964 byte_count = scsicmd->request_bufflen;
1965 }
1966 return byte_count;
1967}
1968
1969
1970static unsigned long aac_build_sg64(struct scsi_cmnd* scsicmd, struct sgmap64* psg)
1971{
1972 struct aac_dev *dev;
1973 unsigned long byte_count = 0;
Mark Haverkamp 56b58712005-04-27 06:05:51 -07001974 u64 addr;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001975
1976 dev = (struct aac_dev *)scsicmd->device->host->hostdata;
1977 // Get rid of old data
1978 psg->count = 0;
1979 psg->sg[0].addr[0] = 0;
1980 psg->sg[0].addr[1] = 0;
1981 psg->sg[0].count = 0;
1982 if (scsicmd->use_sg) {
1983 struct scatterlist *sg;
1984 int i;
1985 int sg_count;
1986 sg = (struct scatterlist *) scsicmd->request_buffer;
1987
1988 sg_count = pci_map_sg(dev->pdev, sg, scsicmd->use_sg,
1989 scsicmd->sc_data_direction);
1990 psg->count = cpu_to_le32(sg_count);
1991
1992 byte_count = 0;
1993
1994 for (i = 0; i < sg_count; i++) {
Mark Haverkamp 56b58712005-04-27 06:05:51 -07001995 addr = sg_dma_address(sg);
1996 psg->sg[i].addr[0] = cpu_to_le32(addr & 0xffffffff);
1997 psg->sg[i].addr[1] = cpu_to_le32(addr>>32);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001998 psg->sg[i].count = cpu_to_le32(sg_dma_len(sg));
1999 byte_count += sg_dma_len(sg);
2000 sg++;
2001 }
2002 /* hba wants the size to be exact */
2003 if(byte_count > scsicmd->request_bufflen){
Mark Haverkamp 56b58712005-04-27 06:05:51 -07002004 u32 temp = le32_to_cpu(psg->sg[i-1].count) -
2005 (byte_count - scsicmd->request_bufflen);
2006 psg->sg[i-1].count = cpu_to_le32(temp);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002007 byte_count = scsicmd->request_bufflen;
2008 }
2009 /* Check for command underflow */
2010 if(scsicmd->underflow && (byte_count < scsicmd->underflow)){
2011 printk(KERN_WARNING"aacraid: cmd len %08lX cmd underflow %08X\n",
2012 byte_count, scsicmd->underflow);
2013 }
2014 }
2015 else if(scsicmd->request_bufflen) {
Mark Haverkamp 56b58712005-04-27 06:05:51 -07002016 u64 addr;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002017 addr = pci_map_single(dev->pdev,
2018 scsicmd->request_buffer,
2019 scsicmd->request_bufflen,
2020 scsicmd->sc_data_direction);
2021 psg->count = cpu_to_le32(1);
Mark Haverkamp 56b58712005-04-27 06:05:51 -07002022 psg->sg[0].addr[0] = cpu_to_le32(addr & 0xffffffff);
2023 psg->sg[0].addr[1] = cpu_to_le32(addr >> 32);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002024 psg->sg[0].count = cpu_to_le32(scsicmd->request_bufflen);
2025 scsicmd->SCp.dma_handle = addr;
2026 byte_count = scsicmd->request_bufflen;
2027 }
2028 return byte_count;
2029}
2030
2031#ifdef AAC_DETAILED_STATUS_INFO
2032
2033struct aac_srb_status_info {
2034 u32 status;
2035 char *str;
2036};
2037
2038
2039static struct aac_srb_status_info srb_status_info[] = {
2040 { SRB_STATUS_PENDING, "Pending Status"},
2041 { SRB_STATUS_SUCCESS, "Success"},
2042 { SRB_STATUS_ABORTED, "Aborted Command"},
2043 { SRB_STATUS_ABORT_FAILED, "Abort Failed"},
2044 { SRB_STATUS_ERROR, "Error Event"},
2045 { SRB_STATUS_BUSY, "Device Busy"},
2046 { SRB_STATUS_INVALID_REQUEST, "Invalid Request"},
2047 { SRB_STATUS_INVALID_PATH_ID, "Invalid Path ID"},
2048 { SRB_STATUS_NO_DEVICE, "No Device"},
2049 { SRB_STATUS_TIMEOUT, "Timeout"},
2050 { SRB_STATUS_SELECTION_TIMEOUT, "Selection Timeout"},
2051 { SRB_STATUS_COMMAND_TIMEOUT, "Command Timeout"},
2052 { SRB_STATUS_MESSAGE_REJECTED, "Message Rejected"},
2053 { SRB_STATUS_BUS_RESET, "Bus Reset"},
2054 { SRB_STATUS_PARITY_ERROR, "Parity Error"},
2055 { SRB_STATUS_REQUEST_SENSE_FAILED,"Request Sense Failed"},
2056 { SRB_STATUS_NO_HBA, "No HBA"},
2057 { SRB_STATUS_DATA_OVERRUN, "Data Overrun/Data Underrun"},
2058 { SRB_STATUS_UNEXPECTED_BUS_FREE,"Unexpected Bus Free"},
2059 { SRB_STATUS_PHASE_SEQUENCE_FAILURE,"Phase Error"},
2060 { SRB_STATUS_BAD_SRB_BLOCK_LENGTH,"Bad Srb Block Length"},
2061 { SRB_STATUS_REQUEST_FLUSHED, "Request Flushed"},
2062 { SRB_STATUS_DELAYED_RETRY, "Delayed Retry"},
2063 { SRB_STATUS_INVALID_LUN, "Invalid LUN"},
2064 { SRB_STATUS_INVALID_TARGET_ID, "Invalid TARGET ID"},
2065 { SRB_STATUS_BAD_FUNCTION, "Bad Function"},
2066 { SRB_STATUS_ERROR_RECOVERY, "Error Recovery"},
2067 { SRB_STATUS_NOT_STARTED, "Not Started"},
2068 { SRB_STATUS_NOT_IN_USE, "Not In Use"},
2069 { SRB_STATUS_FORCE_ABORT, "Force Abort"},
2070 { SRB_STATUS_DOMAIN_VALIDATION_FAIL,"Domain Validation Failure"},
2071 { 0xff, "Unknown Error"}
2072};
2073
2074char *aac_get_status_string(u32 status)
2075{
2076 int i;
2077
2078 for(i=0; i < (sizeof(srb_status_info)/sizeof(struct aac_srb_status_info)); i++ ){
2079 if(srb_status_info[i].status == status){
2080 return srb_status_info[i].str;
2081 }
2082 }
2083
2084 return "Bad Status Code";
2085}
2086
2087#endif