Merge tag 'for_linus' of git://git.kernel.org/pub/scm/linux/kernel/git/mst/vhost
[cris-mirror.git] / drivers / block / DAC960.c
blobf781eff7d23eacf803c764e980e8cc325402e8a6
1 /*
3 Linux Driver for Mylex DAC960/AcceleRAID/eXtremeRAID PCI RAID Controllers
5 Copyright 1998-2001 by Leonard N. Zubkoff <lnz@dandelion.com>
6 Portions Copyright 2002 by Mylex (An IBM Business Unit)
8 This program is free software; you may redistribute and/or modify it under
9 the terms of the GNU General Public License Version 2 as published by the
10 Free Software Foundation.
12 This program is distributed in the hope that it will be useful, but
13 WITHOUT ANY WARRANTY, without even the implied warranty of MERCHANTABILITY
14 or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
15 for complete details.
20 #define DAC960_DriverVersion "2.5.49"
21 #define DAC960_DriverDate "21 Aug 2007"
24 #include <linux/module.h>
25 #include <linux/types.h>
26 #include <linux/miscdevice.h>
27 #include <linux/blkdev.h>
28 #include <linux/bio.h>
29 #include <linux/completion.h>
30 #include <linux/delay.h>
31 #include <linux/genhd.h>
32 #include <linux/hdreg.h>
33 #include <linux/blkpg.h>
34 #include <linux/dma-mapping.h>
35 #include <linux/interrupt.h>
36 #include <linux/ioport.h>
37 #include <linux/mm.h>
38 #include <linux/slab.h>
39 #include <linux/mutex.h>
40 #include <linux/proc_fs.h>
41 #include <linux/seq_file.h>
42 #include <linux/reboot.h>
43 #include <linux/spinlock.h>
44 #include <linux/timer.h>
45 #include <linux/pci.h>
46 #include <linux/init.h>
47 #include <linux/jiffies.h>
48 #include <linux/random.h>
49 #include <linux/scatterlist.h>
50 #include <asm/io.h>
51 #include <linux/uaccess.h>
52 #include "DAC960.h"
54 #define DAC960_GAM_MINOR 252
57 static DEFINE_MUTEX(DAC960_mutex);
58 static DAC960_Controller_T *DAC960_Controllers[DAC960_MaxControllers];
59 static int DAC960_ControllerCount;
60 static struct proc_dir_entry *DAC960_ProcDirectoryEntry;
62 static long disk_size(DAC960_Controller_T *p, int drive_nr)
64 if (p->FirmwareType == DAC960_V1_Controller) {
65 if (drive_nr >= p->LogicalDriveCount)
66 return 0;
67 return p->V1.LogicalDriveInformation[drive_nr].
68 LogicalDriveSize;
69 } else {
70 DAC960_V2_LogicalDeviceInfo_T *i =
71 p->V2.LogicalDeviceInformation[drive_nr];
72 if (i == NULL)
73 return 0;
74 return i->ConfigurableDeviceSize;
78 static int DAC960_open(struct block_device *bdev, fmode_t mode)
80 struct gendisk *disk = bdev->bd_disk;
81 DAC960_Controller_T *p = disk->queue->queuedata;
82 int drive_nr = (long)disk->private_data;
83 int ret = -ENXIO;
85 mutex_lock(&DAC960_mutex);
86 if (p->FirmwareType == DAC960_V1_Controller) {
87 if (p->V1.LogicalDriveInformation[drive_nr].
88 LogicalDriveState == DAC960_V1_LogicalDrive_Offline)
89 goto out;
90 } else {
91 DAC960_V2_LogicalDeviceInfo_T *i =
92 p->V2.LogicalDeviceInformation[drive_nr];
93 if (!i || i->LogicalDeviceState == DAC960_V2_LogicalDevice_Offline)
94 goto out;
97 check_disk_change(bdev);
99 if (!get_capacity(p->disks[drive_nr]))
100 goto out;
101 ret = 0;
102 out:
103 mutex_unlock(&DAC960_mutex);
104 return ret;
107 static int DAC960_getgeo(struct block_device *bdev, struct hd_geometry *geo)
109 struct gendisk *disk = bdev->bd_disk;
110 DAC960_Controller_T *p = disk->queue->queuedata;
111 int drive_nr = (long)disk->private_data;
113 if (p->FirmwareType == DAC960_V1_Controller) {
114 geo->heads = p->V1.GeometryTranslationHeads;
115 geo->sectors = p->V1.GeometryTranslationSectors;
116 geo->cylinders = p->V1.LogicalDriveInformation[drive_nr].
117 LogicalDriveSize / (geo->heads * geo->sectors);
118 } else {
119 DAC960_V2_LogicalDeviceInfo_T *i =
120 p->V2.LogicalDeviceInformation[drive_nr];
121 switch (i->DriveGeometry) {
122 case DAC960_V2_Geometry_128_32:
123 geo->heads = 128;
124 geo->sectors = 32;
125 break;
126 case DAC960_V2_Geometry_255_63:
127 geo->heads = 255;
128 geo->sectors = 63;
129 break;
130 default:
131 DAC960_Error("Illegal Logical Device Geometry %d\n",
132 p, i->DriveGeometry);
133 return -EINVAL;
136 geo->cylinders = i->ConfigurableDeviceSize /
137 (geo->heads * geo->sectors);
140 return 0;
143 static unsigned int DAC960_check_events(struct gendisk *disk,
144 unsigned int clearing)
146 DAC960_Controller_T *p = disk->queue->queuedata;
147 int drive_nr = (long)disk->private_data;
149 if (!p->LogicalDriveInitiallyAccessible[drive_nr])
150 return DISK_EVENT_MEDIA_CHANGE;
151 return 0;
154 static int DAC960_revalidate_disk(struct gendisk *disk)
156 DAC960_Controller_T *p = disk->queue->queuedata;
157 int unit = (long)disk->private_data;
159 set_capacity(disk, disk_size(p, unit));
160 return 0;
163 static const struct block_device_operations DAC960_BlockDeviceOperations = {
164 .owner = THIS_MODULE,
165 .open = DAC960_open,
166 .getgeo = DAC960_getgeo,
167 .check_events = DAC960_check_events,
168 .revalidate_disk = DAC960_revalidate_disk,
173 DAC960_AnnounceDriver announces the Driver Version and Date, Author's Name,
174 Copyright Notice, and Electronic Mail Address.
177 static void DAC960_AnnounceDriver(DAC960_Controller_T *Controller)
179 DAC960_Announce("***** DAC960 RAID Driver Version "
180 DAC960_DriverVersion " of "
181 DAC960_DriverDate " *****\n", Controller);
182 DAC960_Announce("Copyright 1998-2001 by Leonard N. Zubkoff "
183 "<lnz@dandelion.com>\n", Controller);
188 DAC960_Failure prints a standardized error message, and then returns false.
191 static bool DAC960_Failure(DAC960_Controller_T *Controller,
192 unsigned char *ErrorMessage)
194 DAC960_Error("While configuring DAC960 PCI RAID Controller at\n",
195 Controller);
196 if (Controller->IO_Address == 0)
197 DAC960_Error("PCI Bus %d Device %d Function %d I/O Address N/A "
198 "PCI Address 0x%X\n", Controller,
199 Controller->Bus, Controller->Device,
200 Controller->Function, Controller->PCI_Address);
201 else DAC960_Error("PCI Bus %d Device %d Function %d I/O Address "
202 "0x%X PCI Address 0x%X\n", Controller,
203 Controller->Bus, Controller->Device,
204 Controller->Function, Controller->IO_Address,
205 Controller->PCI_Address);
206 DAC960_Error("%s FAILED - DETACHING\n", Controller, ErrorMessage);
207 return false;
211 init_dma_loaf() and slice_dma_loaf() are helper functions for
212 aggregating the dma-mapped memory for a well-known collection of
213 data structures that are of different lengths.
215 These routines don't guarantee any alignment. The caller must
216 include any space needed for alignment in the sizes of the structures
217 that are passed in.
220 static bool init_dma_loaf(struct pci_dev *dev, struct dma_loaf *loaf,
221 size_t len)
223 void *cpu_addr;
224 dma_addr_t dma_handle;
226 cpu_addr = pci_alloc_consistent(dev, len, &dma_handle);
227 if (cpu_addr == NULL)
228 return false;
230 loaf->cpu_free = loaf->cpu_base = cpu_addr;
231 loaf->dma_free =loaf->dma_base = dma_handle;
232 loaf->length = len;
233 memset(cpu_addr, 0, len);
234 return true;
237 static void *slice_dma_loaf(struct dma_loaf *loaf, size_t len,
238 dma_addr_t *dma_handle)
240 void *cpu_end = loaf->cpu_free + len;
241 void *cpu_addr = loaf->cpu_free;
243 BUG_ON(cpu_end > loaf->cpu_base + loaf->length);
244 *dma_handle = loaf->dma_free;
245 loaf->cpu_free = cpu_end;
246 loaf->dma_free += len;
247 return cpu_addr;
250 static void free_dma_loaf(struct pci_dev *dev, struct dma_loaf *loaf_handle)
252 if (loaf_handle->cpu_base != NULL)
253 pci_free_consistent(dev, loaf_handle->length,
254 loaf_handle->cpu_base, loaf_handle->dma_base);
259 DAC960_CreateAuxiliaryStructures allocates and initializes the auxiliary
260 data structures for Controller. It returns true on success and false on
261 failure.
264 static bool DAC960_CreateAuxiliaryStructures(DAC960_Controller_T *Controller)
266 int CommandAllocationLength, CommandAllocationGroupSize;
267 int CommandsRemaining = 0, CommandIdentifier, CommandGroupByteCount;
268 void *AllocationPointer = NULL;
269 void *ScatterGatherCPU = NULL;
270 dma_addr_t ScatterGatherDMA;
271 struct dma_pool *ScatterGatherPool;
272 void *RequestSenseCPU = NULL;
273 dma_addr_t RequestSenseDMA;
274 struct dma_pool *RequestSensePool = NULL;
276 if (Controller->FirmwareType == DAC960_V1_Controller)
278 CommandAllocationLength = offsetof(DAC960_Command_T, V1.EndMarker);
279 CommandAllocationGroupSize = DAC960_V1_CommandAllocationGroupSize;
280 ScatterGatherPool = dma_pool_create("DAC960_V1_ScatterGather",
281 &Controller->PCIDevice->dev,
282 DAC960_V1_ScatterGatherLimit * sizeof(DAC960_V1_ScatterGatherSegment_T),
283 sizeof(DAC960_V1_ScatterGatherSegment_T), 0);
284 if (ScatterGatherPool == NULL)
285 return DAC960_Failure(Controller,
286 "AUXILIARY STRUCTURE CREATION (SG)");
287 Controller->ScatterGatherPool = ScatterGatherPool;
289 else
291 CommandAllocationLength = offsetof(DAC960_Command_T, V2.EndMarker);
292 CommandAllocationGroupSize = DAC960_V2_CommandAllocationGroupSize;
293 ScatterGatherPool = dma_pool_create("DAC960_V2_ScatterGather",
294 &Controller->PCIDevice->dev,
295 DAC960_V2_ScatterGatherLimit * sizeof(DAC960_V2_ScatterGatherSegment_T),
296 sizeof(DAC960_V2_ScatterGatherSegment_T), 0);
297 if (ScatterGatherPool == NULL)
298 return DAC960_Failure(Controller,
299 "AUXILIARY STRUCTURE CREATION (SG)");
300 RequestSensePool = dma_pool_create("DAC960_V2_RequestSense",
301 &Controller->PCIDevice->dev, sizeof(DAC960_SCSI_RequestSense_T),
302 sizeof(int), 0);
303 if (RequestSensePool == NULL) {
304 dma_pool_destroy(ScatterGatherPool);
305 return DAC960_Failure(Controller,
306 "AUXILIARY STRUCTURE CREATION (SG)");
308 Controller->ScatterGatherPool = ScatterGatherPool;
309 Controller->V2.RequestSensePool = RequestSensePool;
311 Controller->CommandAllocationGroupSize = CommandAllocationGroupSize;
312 Controller->FreeCommands = NULL;
313 for (CommandIdentifier = 1;
314 CommandIdentifier <= Controller->DriverQueueDepth;
315 CommandIdentifier++)
317 DAC960_Command_T *Command;
318 if (--CommandsRemaining <= 0)
320 CommandsRemaining =
321 Controller->DriverQueueDepth - CommandIdentifier + 1;
322 if (CommandsRemaining > CommandAllocationGroupSize)
323 CommandsRemaining = CommandAllocationGroupSize;
324 CommandGroupByteCount =
325 CommandsRemaining * CommandAllocationLength;
326 AllocationPointer = kzalloc(CommandGroupByteCount, GFP_ATOMIC);
327 if (AllocationPointer == NULL)
328 return DAC960_Failure(Controller,
329 "AUXILIARY STRUCTURE CREATION");
331 Command = (DAC960_Command_T *) AllocationPointer;
332 AllocationPointer += CommandAllocationLength;
333 Command->CommandIdentifier = CommandIdentifier;
334 Command->Controller = Controller;
335 Command->Next = Controller->FreeCommands;
336 Controller->FreeCommands = Command;
337 Controller->Commands[CommandIdentifier-1] = Command;
338 ScatterGatherCPU = dma_pool_alloc(ScatterGatherPool, GFP_ATOMIC,
339 &ScatterGatherDMA);
340 if (ScatterGatherCPU == NULL)
341 return DAC960_Failure(Controller, "AUXILIARY STRUCTURE CREATION");
343 if (RequestSensePool != NULL) {
344 RequestSenseCPU = dma_pool_alloc(RequestSensePool, GFP_ATOMIC,
345 &RequestSenseDMA);
346 if (RequestSenseCPU == NULL) {
347 dma_pool_free(ScatterGatherPool, ScatterGatherCPU,
348 ScatterGatherDMA);
349 return DAC960_Failure(Controller,
350 "AUXILIARY STRUCTURE CREATION");
353 if (Controller->FirmwareType == DAC960_V1_Controller) {
354 Command->cmd_sglist = Command->V1.ScatterList;
355 Command->V1.ScatterGatherList =
356 (DAC960_V1_ScatterGatherSegment_T *)ScatterGatherCPU;
357 Command->V1.ScatterGatherListDMA = ScatterGatherDMA;
358 sg_init_table(Command->cmd_sglist, DAC960_V1_ScatterGatherLimit);
359 } else {
360 Command->cmd_sglist = Command->V2.ScatterList;
361 Command->V2.ScatterGatherList =
362 (DAC960_V2_ScatterGatherSegment_T *)ScatterGatherCPU;
363 Command->V2.ScatterGatherListDMA = ScatterGatherDMA;
364 Command->V2.RequestSense =
365 (DAC960_SCSI_RequestSense_T *)RequestSenseCPU;
366 Command->V2.RequestSenseDMA = RequestSenseDMA;
367 sg_init_table(Command->cmd_sglist, DAC960_V2_ScatterGatherLimit);
370 return true;
375 DAC960_DestroyAuxiliaryStructures deallocates the auxiliary data
376 structures for Controller.
379 static void DAC960_DestroyAuxiliaryStructures(DAC960_Controller_T *Controller)
381 int i;
382 struct dma_pool *ScatterGatherPool = Controller->ScatterGatherPool;
383 struct dma_pool *RequestSensePool = NULL;
384 void *ScatterGatherCPU;
385 dma_addr_t ScatterGatherDMA;
386 void *RequestSenseCPU;
387 dma_addr_t RequestSenseDMA;
388 DAC960_Command_T *CommandGroup = NULL;
391 if (Controller->FirmwareType == DAC960_V2_Controller)
392 RequestSensePool = Controller->V2.RequestSensePool;
394 Controller->FreeCommands = NULL;
395 for (i = 0; i < Controller->DriverQueueDepth; i++)
397 DAC960_Command_T *Command = Controller->Commands[i];
399 if (Command == NULL)
400 continue;
402 if (Controller->FirmwareType == DAC960_V1_Controller) {
403 ScatterGatherCPU = (void *)Command->V1.ScatterGatherList;
404 ScatterGatherDMA = Command->V1.ScatterGatherListDMA;
405 RequestSenseCPU = NULL;
406 RequestSenseDMA = (dma_addr_t)0;
407 } else {
408 ScatterGatherCPU = (void *)Command->V2.ScatterGatherList;
409 ScatterGatherDMA = Command->V2.ScatterGatherListDMA;
410 RequestSenseCPU = (void *)Command->V2.RequestSense;
411 RequestSenseDMA = Command->V2.RequestSenseDMA;
413 if (ScatterGatherCPU != NULL)
414 dma_pool_free(ScatterGatherPool, ScatterGatherCPU, ScatterGatherDMA);
415 if (RequestSenseCPU != NULL)
416 dma_pool_free(RequestSensePool, RequestSenseCPU, RequestSenseDMA);
418 if ((Command->CommandIdentifier
419 % Controller->CommandAllocationGroupSize) == 1) {
421 * We can't free the group of commands until all of the
422 * request sense and scatter gather dma structures are free.
423 * Remember the beginning of the group, but don't free it
424 * until we've reached the beginning of the next group.
426 kfree(CommandGroup);
427 CommandGroup = Command;
429 Controller->Commands[i] = NULL;
431 kfree(CommandGroup);
433 if (Controller->CombinedStatusBuffer != NULL)
435 kfree(Controller->CombinedStatusBuffer);
436 Controller->CombinedStatusBuffer = NULL;
437 Controller->CurrentStatusBuffer = NULL;
440 dma_pool_destroy(ScatterGatherPool);
441 if (Controller->FirmwareType == DAC960_V1_Controller)
442 return;
444 dma_pool_destroy(RequestSensePool);
446 for (i = 0; i < DAC960_MaxLogicalDrives; i++) {
447 kfree(Controller->V2.LogicalDeviceInformation[i]);
448 Controller->V2.LogicalDeviceInformation[i] = NULL;
451 for (i = 0; i < DAC960_V2_MaxPhysicalDevices; i++)
453 kfree(Controller->V2.PhysicalDeviceInformation[i]);
454 Controller->V2.PhysicalDeviceInformation[i] = NULL;
455 kfree(Controller->V2.InquiryUnitSerialNumber[i]);
456 Controller->V2.InquiryUnitSerialNumber[i] = NULL;
462 DAC960_V1_ClearCommand clears critical fields of Command for DAC960 V1
463 Firmware Controllers.
466 static inline void DAC960_V1_ClearCommand(DAC960_Command_T *Command)
468 DAC960_V1_CommandMailbox_T *CommandMailbox = &Command->V1.CommandMailbox;
469 memset(CommandMailbox, 0, sizeof(DAC960_V1_CommandMailbox_T));
470 Command->V1.CommandStatus = 0;
475 DAC960_V2_ClearCommand clears critical fields of Command for DAC960 V2
476 Firmware Controllers.
479 static inline void DAC960_V2_ClearCommand(DAC960_Command_T *Command)
481 DAC960_V2_CommandMailbox_T *CommandMailbox = &Command->V2.CommandMailbox;
482 memset(CommandMailbox, 0, sizeof(DAC960_V2_CommandMailbox_T));
483 Command->V2.CommandStatus = 0;
488 DAC960_AllocateCommand allocates a Command structure from Controller's
489 free list. During driver initialization, a special initialization command
490 has been placed on the free list to guarantee that command allocation can
491 never fail.
494 static inline DAC960_Command_T *DAC960_AllocateCommand(DAC960_Controller_T
495 *Controller)
497 DAC960_Command_T *Command = Controller->FreeCommands;
498 if (Command == NULL) return NULL;
499 Controller->FreeCommands = Command->Next;
500 Command->Next = NULL;
501 return Command;
506 DAC960_DeallocateCommand deallocates Command, returning it to Controller's
507 free list.
510 static inline void DAC960_DeallocateCommand(DAC960_Command_T *Command)
512 DAC960_Controller_T *Controller = Command->Controller;
514 Command->Request = NULL;
515 Command->Next = Controller->FreeCommands;
516 Controller->FreeCommands = Command;
521 DAC960_WaitForCommand waits for a wake_up on Controller's Command Wait Queue.
524 static void DAC960_WaitForCommand(DAC960_Controller_T *Controller)
526 spin_unlock_irq(&Controller->queue_lock);
527 __wait_event(Controller->CommandWaitQueue, Controller->FreeCommands);
528 spin_lock_irq(&Controller->queue_lock);
532 DAC960_GEM_QueueCommand queues Command for DAC960 GEM Series Controllers.
535 static void DAC960_GEM_QueueCommand(DAC960_Command_T *Command)
537 DAC960_Controller_T *Controller = Command->Controller;
538 void __iomem *ControllerBaseAddress = Controller->BaseAddress;
539 DAC960_V2_CommandMailbox_T *CommandMailbox = &Command->V2.CommandMailbox;
540 DAC960_V2_CommandMailbox_T *NextCommandMailbox =
541 Controller->V2.NextCommandMailbox;
543 CommandMailbox->Common.CommandIdentifier = Command->CommandIdentifier;
544 DAC960_GEM_WriteCommandMailbox(NextCommandMailbox, CommandMailbox);
546 if (Controller->V2.PreviousCommandMailbox1->Words[0] == 0 ||
547 Controller->V2.PreviousCommandMailbox2->Words[0] == 0)
548 DAC960_GEM_MemoryMailboxNewCommand(ControllerBaseAddress);
550 Controller->V2.PreviousCommandMailbox2 =
551 Controller->V2.PreviousCommandMailbox1;
552 Controller->V2.PreviousCommandMailbox1 = NextCommandMailbox;
554 if (++NextCommandMailbox > Controller->V2.LastCommandMailbox)
555 NextCommandMailbox = Controller->V2.FirstCommandMailbox;
557 Controller->V2.NextCommandMailbox = NextCommandMailbox;
561 DAC960_BA_QueueCommand queues Command for DAC960 BA Series Controllers.
564 static void DAC960_BA_QueueCommand(DAC960_Command_T *Command)
566 DAC960_Controller_T *Controller = Command->Controller;
567 void __iomem *ControllerBaseAddress = Controller->BaseAddress;
568 DAC960_V2_CommandMailbox_T *CommandMailbox = &Command->V2.CommandMailbox;
569 DAC960_V2_CommandMailbox_T *NextCommandMailbox =
570 Controller->V2.NextCommandMailbox;
571 CommandMailbox->Common.CommandIdentifier = Command->CommandIdentifier;
572 DAC960_BA_WriteCommandMailbox(NextCommandMailbox, CommandMailbox);
573 if (Controller->V2.PreviousCommandMailbox1->Words[0] == 0 ||
574 Controller->V2.PreviousCommandMailbox2->Words[0] == 0)
575 DAC960_BA_MemoryMailboxNewCommand(ControllerBaseAddress);
576 Controller->V2.PreviousCommandMailbox2 =
577 Controller->V2.PreviousCommandMailbox1;
578 Controller->V2.PreviousCommandMailbox1 = NextCommandMailbox;
579 if (++NextCommandMailbox > Controller->V2.LastCommandMailbox)
580 NextCommandMailbox = Controller->V2.FirstCommandMailbox;
581 Controller->V2.NextCommandMailbox = NextCommandMailbox;
586 DAC960_LP_QueueCommand queues Command for DAC960 LP Series Controllers.
589 static void DAC960_LP_QueueCommand(DAC960_Command_T *Command)
591 DAC960_Controller_T *Controller = Command->Controller;
592 void __iomem *ControllerBaseAddress = Controller->BaseAddress;
593 DAC960_V2_CommandMailbox_T *CommandMailbox = &Command->V2.CommandMailbox;
594 DAC960_V2_CommandMailbox_T *NextCommandMailbox =
595 Controller->V2.NextCommandMailbox;
596 CommandMailbox->Common.CommandIdentifier = Command->CommandIdentifier;
597 DAC960_LP_WriteCommandMailbox(NextCommandMailbox, CommandMailbox);
598 if (Controller->V2.PreviousCommandMailbox1->Words[0] == 0 ||
599 Controller->V2.PreviousCommandMailbox2->Words[0] == 0)
600 DAC960_LP_MemoryMailboxNewCommand(ControllerBaseAddress);
601 Controller->V2.PreviousCommandMailbox2 =
602 Controller->V2.PreviousCommandMailbox1;
603 Controller->V2.PreviousCommandMailbox1 = NextCommandMailbox;
604 if (++NextCommandMailbox > Controller->V2.LastCommandMailbox)
605 NextCommandMailbox = Controller->V2.FirstCommandMailbox;
606 Controller->V2.NextCommandMailbox = NextCommandMailbox;
611 DAC960_LA_QueueCommandDualMode queues Command for DAC960 LA Series
612 Controllers with Dual Mode Firmware.
615 static void DAC960_LA_QueueCommandDualMode(DAC960_Command_T *Command)
617 DAC960_Controller_T *Controller = Command->Controller;
618 void __iomem *ControllerBaseAddress = Controller->BaseAddress;
619 DAC960_V1_CommandMailbox_T *CommandMailbox = &Command->V1.CommandMailbox;
620 DAC960_V1_CommandMailbox_T *NextCommandMailbox =
621 Controller->V1.NextCommandMailbox;
622 CommandMailbox->Common.CommandIdentifier = Command->CommandIdentifier;
623 DAC960_LA_WriteCommandMailbox(NextCommandMailbox, CommandMailbox);
624 if (Controller->V1.PreviousCommandMailbox1->Words[0] == 0 ||
625 Controller->V1.PreviousCommandMailbox2->Words[0] == 0)
626 DAC960_LA_MemoryMailboxNewCommand(ControllerBaseAddress);
627 Controller->V1.PreviousCommandMailbox2 =
628 Controller->V1.PreviousCommandMailbox1;
629 Controller->V1.PreviousCommandMailbox1 = NextCommandMailbox;
630 if (++NextCommandMailbox > Controller->V1.LastCommandMailbox)
631 NextCommandMailbox = Controller->V1.FirstCommandMailbox;
632 Controller->V1.NextCommandMailbox = NextCommandMailbox;
637 DAC960_LA_QueueCommandSingleMode queues Command for DAC960 LA Series
638 Controllers with Single Mode Firmware.
641 static void DAC960_LA_QueueCommandSingleMode(DAC960_Command_T *Command)
643 DAC960_Controller_T *Controller = Command->Controller;
644 void __iomem *ControllerBaseAddress = Controller->BaseAddress;
645 DAC960_V1_CommandMailbox_T *CommandMailbox = &Command->V1.CommandMailbox;
646 DAC960_V1_CommandMailbox_T *NextCommandMailbox =
647 Controller->V1.NextCommandMailbox;
648 CommandMailbox->Common.CommandIdentifier = Command->CommandIdentifier;
649 DAC960_LA_WriteCommandMailbox(NextCommandMailbox, CommandMailbox);
650 if (Controller->V1.PreviousCommandMailbox1->Words[0] == 0 ||
651 Controller->V1.PreviousCommandMailbox2->Words[0] == 0)
652 DAC960_LA_HardwareMailboxNewCommand(ControllerBaseAddress);
653 Controller->V1.PreviousCommandMailbox2 =
654 Controller->V1.PreviousCommandMailbox1;
655 Controller->V1.PreviousCommandMailbox1 = NextCommandMailbox;
656 if (++NextCommandMailbox > Controller->V1.LastCommandMailbox)
657 NextCommandMailbox = Controller->V1.FirstCommandMailbox;
658 Controller->V1.NextCommandMailbox = NextCommandMailbox;
663 DAC960_PG_QueueCommandDualMode queues Command for DAC960 PG Series
664 Controllers with Dual Mode Firmware.
667 static void DAC960_PG_QueueCommandDualMode(DAC960_Command_T *Command)
669 DAC960_Controller_T *Controller = Command->Controller;
670 void __iomem *ControllerBaseAddress = Controller->BaseAddress;
671 DAC960_V1_CommandMailbox_T *CommandMailbox = &Command->V1.CommandMailbox;
672 DAC960_V1_CommandMailbox_T *NextCommandMailbox =
673 Controller->V1.NextCommandMailbox;
674 CommandMailbox->Common.CommandIdentifier = Command->CommandIdentifier;
675 DAC960_PG_WriteCommandMailbox(NextCommandMailbox, CommandMailbox);
676 if (Controller->V1.PreviousCommandMailbox1->Words[0] == 0 ||
677 Controller->V1.PreviousCommandMailbox2->Words[0] == 0)
678 DAC960_PG_MemoryMailboxNewCommand(ControllerBaseAddress);
679 Controller->V1.PreviousCommandMailbox2 =
680 Controller->V1.PreviousCommandMailbox1;
681 Controller->V1.PreviousCommandMailbox1 = NextCommandMailbox;
682 if (++NextCommandMailbox > Controller->V1.LastCommandMailbox)
683 NextCommandMailbox = Controller->V1.FirstCommandMailbox;
684 Controller->V1.NextCommandMailbox = NextCommandMailbox;
689 DAC960_PG_QueueCommandSingleMode queues Command for DAC960 PG Series
690 Controllers with Single Mode Firmware.
693 static void DAC960_PG_QueueCommandSingleMode(DAC960_Command_T *Command)
695 DAC960_Controller_T *Controller = Command->Controller;
696 void __iomem *ControllerBaseAddress = Controller->BaseAddress;
697 DAC960_V1_CommandMailbox_T *CommandMailbox = &Command->V1.CommandMailbox;
698 DAC960_V1_CommandMailbox_T *NextCommandMailbox =
699 Controller->V1.NextCommandMailbox;
700 CommandMailbox->Common.CommandIdentifier = Command->CommandIdentifier;
701 DAC960_PG_WriteCommandMailbox(NextCommandMailbox, CommandMailbox);
702 if (Controller->V1.PreviousCommandMailbox1->Words[0] == 0 ||
703 Controller->V1.PreviousCommandMailbox2->Words[0] == 0)
704 DAC960_PG_HardwareMailboxNewCommand(ControllerBaseAddress);
705 Controller->V1.PreviousCommandMailbox2 =
706 Controller->V1.PreviousCommandMailbox1;
707 Controller->V1.PreviousCommandMailbox1 = NextCommandMailbox;
708 if (++NextCommandMailbox > Controller->V1.LastCommandMailbox)
709 NextCommandMailbox = Controller->V1.FirstCommandMailbox;
710 Controller->V1.NextCommandMailbox = NextCommandMailbox;
715 DAC960_PD_QueueCommand queues Command for DAC960 PD Series Controllers.
718 static void DAC960_PD_QueueCommand(DAC960_Command_T *Command)
720 DAC960_Controller_T *Controller = Command->Controller;
721 void __iomem *ControllerBaseAddress = Controller->BaseAddress;
722 DAC960_V1_CommandMailbox_T *CommandMailbox = &Command->V1.CommandMailbox;
723 CommandMailbox->Common.CommandIdentifier = Command->CommandIdentifier;
724 while (DAC960_PD_MailboxFullP(ControllerBaseAddress))
725 udelay(1);
726 DAC960_PD_WriteCommandMailbox(ControllerBaseAddress, CommandMailbox);
727 DAC960_PD_NewCommand(ControllerBaseAddress);
732 DAC960_P_QueueCommand queues Command for DAC960 P Series Controllers.
735 static void DAC960_P_QueueCommand(DAC960_Command_T *Command)
737 DAC960_Controller_T *Controller = Command->Controller;
738 void __iomem *ControllerBaseAddress = Controller->BaseAddress;
739 DAC960_V1_CommandMailbox_T *CommandMailbox = &Command->V1.CommandMailbox;
740 CommandMailbox->Common.CommandIdentifier = Command->CommandIdentifier;
741 switch (CommandMailbox->Common.CommandOpcode)
743 case DAC960_V1_Enquiry:
744 CommandMailbox->Common.CommandOpcode = DAC960_V1_Enquiry_Old;
745 break;
746 case DAC960_V1_GetDeviceState:
747 CommandMailbox->Common.CommandOpcode = DAC960_V1_GetDeviceState_Old;
748 break;
749 case DAC960_V1_Read:
750 CommandMailbox->Common.CommandOpcode = DAC960_V1_Read_Old;
751 DAC960_PD_To_P_TranslateReadWriteCommand(CommandMailbox);
752 break;
753 case DAC960_V1_Write:
754 CommandMailbox->Common.CommandOpcode = DAC960_V1_Write_Old;
755 DAC960_PD_To_P_TranslateReadWriteCommand(CommandMailbox);
756 break;
757 case DAC960_V1_ReadWithScatterGather:
758 CommandMailbox->Common.CommandOpcode =
759 DAC960_V1_ReadWithScatterGather_Old;
760 DAC960_PD_To_P_TranslateReadWriteCommand(CommandMailbox);
761 break;
762 case DAC960_V1_WriteWithScatterGather:
763 CommandMailbox->Common.CommandOpcode =
764 DAC960_V1_WriteWithScatterGather_Old;
765 DAC960_PD_To_P_TranslateReadWriteCommand(CommandMailbox);
766 break;
767 default:
768 break;
770 while (DAC960_PD_MailboxFullP(ControllerBaseAddress))
771 udelay(1);
772 DAC960_PD_WriteCommandMailbox(ControllerBaseAddress, CommandMailbox);
773 DAC960_PD_NewCommand(ControllerBaseAddress);
778 DAC960_ExecuteCommand executes Command and waits for completion.
781 static void DAC960_ExecuteCommand(DAC960_Command_T *Command)
783 DAC960_Controller_T *Controller = Command->Controller;
784 DECLARE_COMPLETION_ONSTACK(Completion);
785 unsigned long flags;
786 Command->Completion = &Completion;
788 spin_lock_irqsave(&Controller->queue_lock, flags);
789 DAC960_QueueCommand(Command);
790 spin_unlock_irqrestore(&Controller->queue_lock, flags);
792 if (in_interrupt())
793 return;
794 wait_for_completion(&Completion);
799 DAC960_V1_ExecuteType3 executes a DAC960 V1 Firmware Controller Type 3
800 Command and waits for completion. It returns true on success and false
801 on failure.
804 static bool DAC960_V1_ExecuteType3(DAC960_Controller_T *Controller,
805 DAC960_V1_CommandOpcode_T CommandOpcode,
806 dma_addr_t DataDMA)
808 DAC960_Command_T *Command = DAC960_AllocateCommand(Controller);
809 DAC960_V1_CommandMailbox_T *CommandMailbox = &Command->V1.CommandMailbox;
810 DAC960_V1_CommandStatus_T CommandStatus;
811 DAC960_V1_ClearCommand(Command);
812 Command->CommandType = DAC960_ImmediateCommand;
813 CommandMailbox->Type3.CommandOpcode = CommandOpcode;
814 CommandMailbox->Type3.BusAddress = DataDMA;
815 DAC960_ExecuteCommand(Command);
816 CommandStatus = Command->V1.CommandStatus;
817 DAC960_DeallocateCommand(Command);
818 return (CommandStatus == DAC960_V1_NormalCompletion);
823 DAC960_V1_ExecuteTypeB executes a DAC960 V1 Firmware Controller Type 3B
824 Command and waits for completion. It returns true on success and false
825 on failure.
828 static bool DAC960_V1_ExecuteType3B(DAC960_Controller_T *Controller,
829 DAC960_V1_CommandOpcode_T CommandOpcode,
830 unsigned char CommandOpcode2,
831 dma_addr_t DataDMA)
833 DAC960_Command_T *Command = DAC960_AllocateCommand(Controller);
834 DAC960_V1_CommandMailbox_T *CommandMailbox = &Command->V1.CommandMailbox;
835 DAC960_V1_CommandStatus_T CommandStatus;
836 DAC960_V1_ClearCommand(Command);
837 Command->CommandType = DAC960_ImmediateCommand;
838 CommandMailbox->Type3B.CommandOpcode = CommandOpcode;
839 CommandMailbox->Type3B.CommandOpcode2 = CommandOpcode2;
840 CommandMailbox->Type3B.BusAddress = DataDMA;
841 DAC960_ExecuteCommand(Command);
842 CommandStatus = Command->V1.CommandStatus;
843 DAC960_DeallocateCommand(Command);
844 return (CommandStatus == DAC960_V1_NormalCompletion);
849 DAC960_V1_ExecuteType3D executes a DAC960 V1 Firmware Controller Type 3D
850 Command and waits for completion. It returns true on success and false
851 on failure.
854 static bool DAC960_V1_ExecuteType3D(DAC960_Controller_T *Controller,
855 DAC960_V1_CommandOpcode_T CommandOpcode,
856 unsigned char Channel,
857 unsigned char TargetID,
858 dma_addr_t DataDMA)
860 DAC960_Command_T *Command = DAC960_AllocateCommand(Controller);
861 DAC960_V1_CommandMailbox_T *CommandMailbox = &Command->V1.CommandMailbox;
862 DAC960_V1_CommandStatus_T CommandStatus;
863 DAC960_V1_ClearCommand(Command);
864 Command->CommandType = DAC960_ImmediateCommand;
865 CommandMailbox->Type3D.CommandOpcode = CommandOpcode;
866 CommandMailbox->Type3D.Channel = Channel;
867 CommandMailbox->Type3D.TargetID = TargetID;
868 CommandMailbox->Type3D.BusAddress = DataDMA;
869 DAC960_ExecuteCommand(Command);
870 CommandStatus = Command->V1.CommandStatus;
871 DAC960_DeallocateCommand(Command);
872 return (CommandStatus == DAC960_V1_NormalCompletion);
877 DAC960_V2_GeneralInfo executes a DAC960 V2 Firmware General Information
878 Reading IOCTL Command and waits for completion. It returns true on success
879 and false on failure.
881 Return data in The controller's HealthStatusBuffer, which is dma-able memory
884 static bool DAC960_V2_GeneralInfo(DAC960_Controller_T *Controller)
886 DAC960_Command_T *Command = DAC960_AllocateCommand(Controller);
887 DAC960_V2_CommandMailbox_T *CommandMailbox = &Command->V2.CommandMailbox;
888 DAC960_V2_CommandStatus_T CommandStatus;
889 DAC960_V2_ClearCommand(Command);
890 Command->CommandType = DAC960_ImmediateCommand;
891 CommandMailbox->Common.CommandOpcode = DAC960_V2_IOCTL;
892 CommandMailbox->Common.CommandControlBits
893 .DataTransferControllerToHost = true;
894 CommandMailbox->Common.CommandControlBits
895 .NoAutoRequestSense = true;
896 CommandMailbox->Common.DataTransferSize = sizeof(DAC960_V2_HealthStatusBuffer_T);
897 CommandMailbox->Common.IOCTL_Opcode = DAC960_V2_GetHealthStatus;
898 CommandMailbox->Common.DataTransferMemoryAddress
899 .ScatterGatherSegments[0]
900 .SegmentDataPointer =
901 Controller->V2.HealthStatusBufferDMA;
902 CommandMailbox->Common.DataTransferMemoryAddress
903 .ScatterGatherSegments[0]
904 .SegmentByteCount =
905 CommandMailbox->Common.DataTransferSize;
906 DAC960_ExecuteCommand(Command);
907 CommandStatus = Command->V2.CommandStatus;
908 DAC960_DeallocateCommand(Command);
909 return (CommandStatus == DAC960_V2_NormalCompletion);
914 DAC960_V2_ControllerInfo executes a DAC960 V2 Firmware Controller
915 Information Reading IOCTL Command and waits for completion. It returns
916 true on success and false on failure.
918 Data is returned in the controller's V2.NewControllerInformation dma-able
919 memory buffer.
922 static bool DAC960_V2_NewControllerInfo(DAC960_Controller_T *Controller)
924 DAC960_Command_T *Command = DAC960_AllocateCommand(Controller);
925 DAC960_V2_CommandMailbox_T *CommandMailbox = &Command->V2.CommandMailbox;
926 DAC960_V2_CommandStatus_T CommandStatus;
927 DAC960_V2_ClearCommand(Command);
928 Command->CommandType = DAC960_ImmediateCommand;
929 CommandMailbox->ControllerInfo.CommandOpcode = DAC960_V2_IOCTL;
930 CommandMailbox->ControllerInfo.CommandControlBits
931 .DataTransferControllerToHost = true;
932 CommandMailbox->ControllerInfo.CommandControlBits
933 .NoAutoRequestSense = true;
934 CommandMailbox->ControllerInfo.DataTransferSize = sizeof(DAC960_V2_ControllerInfo_T);
935 CommandMailbox->ControllerInfo.ControllerNumber = 0;
936 CommandMailbox->ControllerInfo.IOCTL_Opcode = DAC960_V2_GetControllerInfo;
937 CommandMailbox->ControllerInfo.DataTransferMemoryAddress
938 .ScatterGatherSegments[0]
939 .SegmentDataPointer =
940 Controller->V2.NewControllerInformationDMA;
941 CommandMailbox->ControllerInfo.DataTransferMemoryAddress
942 .ScatterGatherSegments[0]
943 .SegmentByteCount =
944 CommandMailbox->ControllerInfo.DataTransferSize;
945 DAC960_ExecuteCommand(Command);
946 CommandStatus = Command->V2.CommandStatus;
947 DAC960_DeallocateCommand(Command);
948 return (CommandStatus == DAC960_V2_NormalCompletion);
953 DAC960_V2_LogicalDeviceInfo executes a DAC960 V2 Firmware Controller Logical
954 Device Information Reading IOCTL Command and waits for completion. It
955 returns true on success and false on failure.
957 Data is returned in the controller's V2.NewLogicalDeviceInformation
960 static bool DAC960_V2_NewLogicalDeviceInfo(DAC960_Controller_T *Controller,
961 unsigned short LogicalDeviceNumber)
963 DAC960_Command_T *Command = DAC960_AllocateCommand(Controller);
964 DAC960_V2_CommandMailbox_T *CommandMailbox = &Command->V2.CommandMailbox;
965 DAC960_V2_CommandStatus_T CommandStatus;
967 DAC960_V2_ClearCommand(Command);
968 Command->CommandType = DAC960_ImmediateCommand;
969 CommandMailbox->LogicalDeviceInfo.CommandOpcode =
970 DAC960_V2_IOCTL;
971 CommandMailbox->LogicalDeviceInfo.CommandControlBits
972 .DataTransferControllerToHost = true;
973 CommandMailbox->LogicalDeviceInfo.CommandControlBits
974 .NoAutoRequestSense = true;
975 CommandMailbox->LogicalDeviceInfo.DataTransferSize =
976 sizeof(DAC960_V2_LogicalDeviceInfo_T);
977 CommandMailbox->LogicalDeviceInfo.LogicalDevice.LogicalDeviceNumber =
978 LogicalDeviceNumber;
979 CommandMailbox->LogicalDeviceInfo.IOCTL_Opcode = DAC960_V2_GetLogicalDeviceInfoValid;
980 CommandMailbox->LogicalDeviceInfo.DataTransferMemoryAddress
981 .ScatterGatherSegments[0]
982 .SegmentDataPointer =
983 Controller->V2.NewLogicalDeviceInformationDMA;
984 CommandMailbox->LogicalDeviceInfo.DataTransferMemoryAddress
985 .ScatterGatherSegments[0]
986 .SegmentByteCount =
987 CommandMailbox->LogicalDeviceInfo.DataTransferSize;
988 DAC960_ExecuteCommand(Command);
989 CommandStatus = Command->V2.CommandStatus;
990 DAC960_DeallocateCommand(Command);
991 return (CommandStatus == DAC960_V2_NormalCompletion);
996 DAC960_V2_PhysicalDeviceInfo executes a DAC960 V2 Firmware Controller "Read
997 Physical Device Information" IOCTL Command and waits for completion. It
998 returns true on success and false on failure.
1000 The Channel, TargetID, LogicalUnit arguments should be 0 the first time
1001 this function is called for a given controller. This will return data
1002 for the "first" device on that controller. The returned data includes a
1003 Channel, TargetID, LogicalUnit that can be passed in to this routine to
1004 get data for the NEXT device on that controller.
1006 Data is stored in the controller's V2.NewPhysicalDeviceInfo dma-able
1007 memory buffer.
1011 static bool DAC960_V2_NewPhysicalDeviceInfo(DAC960_Controller_T *Controller,
1012 unsigned char Channel,
1013 unsigned char TargetID,
1014 unsigned char LogicalUnit)
1016 DAC960_Command_T *Command = DAC960_AllocateCommand(Controller);
1017 DAC960_V2_CommandMailbox_T *CommandMailbox = &Command->V2.CommandMailbox;
1018 DAC960_V2_CommandStatus_T CommandStatus;
1020 DAC960_V2_ClearCommand(Command);
1021 Command->CommandType = DAC960_ImmediateCommand;
1022 CommandMailbox->PhysicalDeviceInfo.CommandOpcode = DAC960_V2_IOCTL;
1023 CommandMailbox->PhysicalDeviceInfo.CommandControlBits
1024 .DataTransferControllerToHost = true;
1025 CommandMailbox->PhysicalDeviceInfo.CommandControlBits
1026 .NoAutoRequestSense = true;
1027 CommandMailbox->PhysicalDeviceInfo.DataTransferSize =
1028 sizeof(DAC960_V2_PhysicalDeviceInfo_T);
1029 CommandMailbox->PhysicalDeviceInfo.PhysicalDevice.LogicalUnit = LogicalUnit;
1030 CommandMailbox->PhysicalDeviceInfo.PhysicalDevice.TargetID = TargetID;
1031 CommandMailbox->PhysicalDeviceInfo.PhysicalDevice.Channel = Channel;
1032 CommandMailbox->PhysicalDeviceInfo.IOCTL_Opcode =
1033 DAC960_V2_GetPhysicalDeviceInfoValid;
1034 CommandMailbox->PhysicalDeviceInfo.DataTransferMemoryAddress
1035 .ScatterGatherSegments[0]
1036 .SegmentDataPointer =
1037 Controller->V2.NewPhysicalDeviceInformationDMA;
1038 CommandMailbox->PhysicalDeviceInfo.DataTransferMemoryAddress
1039 .ScatterGatherSegments[0]
1040 .SegmentByteCount =
1041 CommandMailbox->PhysicalDeviceInfo.DataTransferSize;
1042 DAC960_ExecuteCommand(Command);
1043 CommandStatus = Command->V2.CommandStatus;
1044 DAC960_DeallocateCommand(Command);
1045 return (CommandStatus == DAC960_V2_NormalCompletion);
1049 static void DAC960_V2_ConstructNewUnitSerialNumber(
1050 DAC960_Controller_T *Controller,
1051 DAC960_V2_CommandMailbox_T *CommandMailbox, int Channel, int TargetID,
1052 int LogicalUnit)
1054 CommandMailbox->SCSI_10.CommandOpcode = DAC960_V2_SCSI_10_Passthru;
1055 CommandMailbox->SCSI_10.CommandControlBits
1056 .DataTransferControllerToHost = true;
1057 CommandMailbox->SCSI_10.CommandControlBits
1058 .NoAutoRequestSense = true;
1059 CommandMailbox->SCSI_10.DataTransferSize =
1060 sizeof(DAC960_SCSI_Inquiry_UnitSerialNumber_T);
1061 CommandMailbox->SCSI_10.PhysicalDevice.LogicalUnit = LogicalUnit;
1062 CommandMailbox->SCSI_10.PhysicalDevice.TargetID = TargetID;
1063 CommandMailbox->SCSI_10.PhysicalDevice.Channel = Channel;
1064 CommandMailbox->SCSI_10.CDBLength = 6;
1065 CommandMailbox->SCSI_10.SCSI_CDB[0] = 0x12; /* INQUIRY */
1066 CommandMailbox->SCSI_10.SCSI_CDB[1] = 1; /* EVPD = 1 */
1067 CommandMailbox->SCSI_10.SCSI_CDB[2] = 0x80; /* Page Code */
1068 CommandMailbox->SCSI_10.SCSI_CDB[3] = 0; /* Reserved */
1069 CommandMailbox->SCSI_10.SCSI_CDB[4] =
1070 sizeof(DAC960_SCSI_Inquiry_UnitSerialNumber_T);
1071 CommandMailbox->SCSI_10.SCSI_CDB[5] = 0; /* Control */
1072 CommandMailbox->SCSI_10.DataTransferMemoryAddress
1073 .ScatterGatherSegments[0]
1074 .SegmentDataPointer =
1075 Controller->V2.NewInquiryUnitSerialNumberDMA;
1076 CommandMailbox->SCSI_10.DataTransferMemoryAddress
1077 .ScatterGatherSegments[0]
1078 .SegmentByteCount =
1079 CommandMailbox->SCSI_10.DataTransferSize;
1084 DAC960_V2_NewUnitSerialNumber executes an SCSI pass-through
1085 Inquiry command to a SCSI device identified by Channel number,
1086 Target id, Logical Unit Number. This function Waits for completion
1087 of the command.
1089 The return data includes Unit Serial Number information for the
1090 specified device.
1092 Data is stored in the controller's V2.NewPhysicalDeviceInfo dma-able
1093 memory buffer.
1096 static bool DAC960_V2_NewInquiryUnitSerialNumber(DAC960_Controller_T *Controller,
1097 int Channel, int TargetID, int LogicalUnit)
1099 DAC960_Command_T *Command;
1100 DAC960_V2_CommandMailbox_T *CommandMailbox;
1101 DAC960_V2_CommandStatus_T CommandStatus;
1103 Command = DAC960_AllocateCommand(Controller);
1104 CommandMailbox = &Command->V2.CommandMailbox;
1105 DAC960_V2_ClearCommand(Command);
1106 Command->CommandType = DAC960_ImmediateCommand;
1108 DAC960_V2_ConstructNewUnitSerialNumber(Controller, CommandMailbox,
1109 Channel, TargetID, LogicalUnit);
1111 DAC960_ExecuteCommand(Command);
1112 CommandStatus = Command->V2.CommandStatus;
1113 DAC960_DeallocateCommand(Command);
1114 return (CommandStatus == DAC960_V2_NormalCompletion);
1119 DAC960_V2_DeviceOperation executes a DAC960 V2 Firmware Controller Device
1120 Operation IOCTL Command and waits for completion. It returns true on
1121 success and false on failure.
1124 static bool DAC960_V2_DeviceOperation(DAC960_Controller_T *Controller,
1125 DAC960_V2_IOCTL_Opcode_T IOCTL_Opcode,
1126 DAC960_V2_OperationDevice_T
1127 OperationDevice)
1129 DAC960_Command_T *Command = DAC960_AllocateCommand(Controller);
1130 DAC960_V2_CommandMailbox_T *CommandMailbox = &Command->V2.CommandMailbox;
1131 DAC960_V2_CommandStatus_T CommandStatus;
1132 DAC960_V2_ClearCommand(Command);
1133 Command->CommandType = DAC960_ImmediateCommand;
1134 CommandMailbox->DeviceOperation.CommandOpcode = DAC960_V2_IOCTL;
1135 CommandMailbox->DeviceOperation.CommandControlBits
1136 .DataTransferControllerToHost = true;
1137 CommandMailbox->DeviceOperation.CommandControlBits
1138 .NoAutoRequestSense = true;
1139 CommandMailbox->DeviceOperation.IOCTL_Opcode = IOCTL_Opcode;
1140 CommandMailbox->DeviceOperation.OperationDevice = OperationDevice;
1141 DAC960_ExecuteCommand(Command);
1142 CommandStatus = Command->V2.CommandStatus;
1143 DAC960_DeallocateCommand(Command);
1144 return (CommandStatus == DAC960_V2_NormalCompletion);
1149 DAC960_V1_EnableMemoryMailboxInterface enables the Memory Mailbox Interface
1150 for DAC960 V1 Firmware Controllers.
1152 PD and P controller types have no memory mailbox, but still need the
1153 other dma mapped memory.
1156 static bool DAC960_V1_EnableMemoryMailboxInterface(DAC960_Controller_T
1157 *Controller)
1159 void __iomem *ControllerBaseAddress = Controller->BaseAddress;
1160 DAC960_HardwareType_T hw_type = Controller->HardwareType;
1161 struct pci_dev *PCI_Device = Controller->PCIDevice;
1162 struct dma_loaf *DmaPages = &Controller->DmaPages;
1163 size_t DmaPagesSize;
1164 size_t CommandMailboxesSize;
1165 size_t StatusMailboxesSize;
1167 DAC960_V1_CommandMailbox_T *CommandMailboxesMemory;
1168 dma_addr_t CommandMailboxesMemoryDMA;
1170 DAC960_V1_StatusMailbox_T *StatusMailboxesMemory;
1171 dma_addr_t StatusMailboxesMemoryDMA;
1173 DAC960_V1_CommandMailbox_T CommandMailbox;
1174 DAC960_V1_CommandStatus_T CommandStatus;
1175 int TimeoutCounter;
1176 int i;
1178 memset(&CommandMailbox, 0, sizeof(DAC960_V1_CommandMailbox_T));
1180 if (pci_set_dma_mask(Controller->PCIDevice, DMA_BIT_MASK(32)))
1181 return DAC960_Failure(Controller, "DMA mask out of range");
1182 Controller->BounceBufferLimit = DMA_BIT_MASK(32);
1184 if ((hw_type == DAC960_PD_Controller) || (hw_type == DAC960_P_Controller)) {
1185 CommandMailboxesSize = 0;
1186 StatusMailboxesSize = 0;
1187 } else {
1188 CommandMailboxesSize = DAC960_V1_CommandMailboxCount * sizeof(DAC960_V1_CommandMailbox_T);
1189 StatusMailboxesSize = DAC960_V1_StatusMailboxCount * sizeof(DAC960_V1_StatusMailbox_T);
1191 DmaPagesSize = CommandMailboxesSize + StatusMailboxesSize +
1192 sizeof(DAC960_V1_DCDB_T) + sizeof(DAC960_V1_Enquiry_T) +
1193 sizeof(DAC960_V1_ErrorTable_T) + sizeof(DAC960_V1_EventLogEntry_T) +
1194 sizeof(DAC960_V1_RebuildProgress_T) +
1195 sizeof(DAC960_V1_LogicalDriveInformationArray_T) +
1196 sizeof(DAC960_V1_BackgroundInitializationStatus_T) +
1197 sizeof(DAC960_V1_DeviceState_T) + sizeof(DAC960_SCSI_Inquiry_T) +
1198 sizeof(DAC960_SCSI_Inquiry_UnitSerialNumber_T);
1200 if (!init_dma_loaf(PCI_Device, DmaPages, DmaPagesSize))
1201 return false;
1204 if ((hw_type == DAC960_PD_Controller) || (hw_type == DAC960_P_Controller))
1205 goto skip_mailboxes;
1207 CommandMailboxesMemory = slice_dma_loaf(DmaPages,
1208 CommandMailboxesSize, &CommandMailboxesMemoryDMA);
1210 /* These are the base addresses for the command memory mailbox array */
1211 Controller->V1.FirstCommandMailbox = CommandMailboxesMemory;
1212 Controller->V1.FirstCommandMailboxDMA = CommandMailboxesMemoryDMA;
1214 CommandMailboxesMemory += DAC960_V1_CommandMailboxCount - 1;
1215 Controller->V1.LastCommandMailbox = CommandMailboxesMemory;
1216 Controller->V1.NextCommandMailbox = Controller->V1.FirstCommandMailbox;
1217 Controller->V1.PreviousCommandMailbox1 = Controller->V1.LastCommandMailbox;
1218 Controller->V1.PreviousCommandMailbox2 =
1219 Controller->V1.LastCommandMailbox - 1;
1221 /* These are the base addresses for the status memory mailbox array */
1222 StatusMailboxesMemory = slice_dma_loaf(DmaPages,
1223 StatusMailboxesSize, &StatusMailboxesMemoryDMA);
1225 Controller->V1.FirstStatusMailbox = StatusMailboxesMemory;
1226 Controller->V1.FirstStatusMailboxDMA = StatusMailboxesMemoryDMA;
1227 StatusMailboxesMemory += DAC960_V1_StatusMailboxCount - 1;
1228 Controller->V1.LastStatusMailbox = StatusMailboxesMemory;
1229 Controller->V1.NextStatusMailbox = Controller->V1.FirstStatusMailbox;
1231 skip_mailboxes:
1232 Controller->V1.MonitoringDCDB = slice_dma_loaf(DmaPages,
1233 sizeof(DAC960_V1_DCDB_T),
1234 &Controller->V1.MonitoringDCDB_DMA);
1236 Controller->V1.NewEnquiry = slice_dma_loaf(DmaPages,
1237 sizeof(DAC960_V1_Enquiry_T),
1238 &Controller->V1.NewEnquiryDMA);
1240 Controller->V1.NewErrorTable = slice_dma_loaf(DmaPages,
1241 sizeof(DAC960_V1_ErrorTable_T),
1242 &Controller->V1.NewErrorTableDMA);
1244 Controller->V1.EventLogEntry = slice_dma_loaf(DmaPages,
1245 sizeof(DAC960_V1_EventLogEntry_T),
1246 &Controller->V1.EventLogEntryDMA);
1248 Controller->V1.RebuildProgress = slice_dma_loaf(DmaPages,
1249 sizeof(DAC960_V1_RebuildProgress_T),
1250 &Controller->V1.RebuildProgressDMA);
1252 Controller->V1.NewLogicalDriveInformation = slice_dma_loaf(DmaPages,
1253 sizeof(DAC960_V1_LogicalDriveInformationArray_T),
1254 &Controller->V1.NewLogicalDriveInformationDMA);
1256 Controller->V1.BackgroundInitializationStatus = slice_dma_loaf(DmaPages,
1257 sizeof(DAC960_V1_BackgroundInitializationStatus_T),
1258 &Controller->V1.BackgroundInitializationStatusDMA);
1260 Controller->V1.NewDeviceState = slice_dma_loaf(DmaPages,
1261 sizeof(DAC960_V1_DeviceState_T),
1262 &Controller->V1.NewDeviceStateDMA);
1264 Controller->V1.NewInquiryStandardData = slice_dma_loaf(DmaPages,
1265 sizeof(DAC960_SCSI_Inquiry_T),
1266 &Controller->V1.NewInquiryStandardDataDMA);
1268 Controller->V1.NewInquiryUnitSerialNumber = slice_dma_loaf(DmaPages,
1269 sizeof(DAC960_SCSI_Inquiry_UnitSerialNumber_T),
1270 &Controller->V1.NewInquiryUnitSerialNumberDMA);
1272 if ((hw_type == DAC960_PD_Controller) || (hw_type == DAC960_P_Controller))
1273 return true;
1275 /* Enable the Memory Mailbox Interface. */
1276 Controller->V1.DualModeMemoryMailboxInterface = true;
1277 CommandMailbox.TypeX.CommandOpcode = 0x2B;
1278 CommandMailbox.TypeX.CommandIdentifier = 0;
1279 CommandMailbox.TypeX.CommandOpcode2 = 0x14;
1280 CommandMailbox.TypeX.CommandMailboxesBusAddress =
1281 Controller->V1.FirstCommandMailboxDMA;
1282 CommandMailbox.TypeX.StatusMailboxesBusAddress =
1283 Controller->V1.FirstStatusMailboxDMA;
1284 #define TIMEOUT_COUNT 1000000
1286 for (i = 0; i < 2; i++)
1287 switch (Controller->HardwareType)
1289 case DAC960_LA_Controller:
1290 TimeoutCounter = TIMEOUT_COUNT;
1291 while (--TimeoutCounter >= 0)
1293 if (!DAC960_LA_HardwareMailboxFullP(ControllerBaseAddress))
1294 break;
1295 udelay(10);
1297 if (TimeoutCounter < 0) return false;
1298 DAC960_LA_WriteHardwareMailbox(ControllerBaseAddress, &CommandMailbox);
1299 DAC960_LA_HardwareMailboxNewCommand(ControllerBaseAddress);
1300 TimeoutCounter = TIMEOUT_COUNT;
1301 while (--TimeoutCounter >= 0)
1303 if (DAC960_LA_HardwareMailboxStatusAvailableP(
1304 ControllerBaseAddress))
1305 break;
1306 udelay(10);
1308 if (TimeoutCounter < 0) return false;
1309 CommandStatus = DAC960_LA_ReadStatusRegister(ControllerBaseAddress);
1310 DAC960_LA_AcknowledgeHardwareMailboxInterrupt(ControllerBaseAddress);
1311 DAC960_LA_AcknowledgeHardwareMailboxStatus(ControllerBaseAddress);
1312 if (CommandStatus == DAC960_V1_NormalCompletion) return true;
1313 Controller->V1.DualModeMemoryMailboxInterface = false;
1314 CommandMailbox.TypeX.CommandOpcode2 = 0x10;
1315 break;
1316 case DAC960_PG_Controller:
1317 TimeoutCounter = TIMEOUT_COUNT;
1318 while (--TimeoutCounter >= 0)
1320 if (!DAC960_PG_HardwareMailboxFullP(ControllerBaseAddress))
1321 break;
1322 udelay(10);
1324 if (TimeoutCounter < 0) return false;
1325 DAC960_PG_WriteHardwareMailbox(ControllerBaseAddress, &CommandMailbox);
1326 DAC960_PG_HardwareMailboxNewCommand(ControllerBaseAddress);
1328 TimeoutCounter = TIMEOUT_COUNT;
1329 while (--TimeoutCounter >= 0)
1331 if (DAC960_PG_HardwareMailboxStatusAvailableP(
1332 ControllerBaseAddress))
1333 break;
1334 udelay(10);
1336 if (TimeoutCounter < 0) return false;
1337 CommandStatus = DAC960_PG_ReadStatusRegister(ControllerBaseAddress);
1338 DAC960_PG_AcknowledgeHardwareMailboxInterrupt(ControllerBaseAddress);
1339 DAC960_PG_AcknowledgeHardwareMailboxStatus(ControllerBaseAddress);
1340 if (CommandStatus == DAC960_V1_NormalCompletion) return true;
1341 Controller->V1.DualModeMemoryMailboxInterface = false;
1342 CommandMailbox.TypeX.CommandOpcode2 = 0x10;
1343 break;
1344 default:
1345 DAC960_Failure(Controller, "Unknown Controller Type\n");
1346 break;
1348 return false;
1353 DAC960_V2_EnableMemoryMailboxInterface enables the Memory Mailbox Interface
1354 for DAC960 V2 Firmware Controllers.
1356 Aggregate the space needed for the controller's memory mailbox and
1357 the other data structures that will be targets of dma transfers with
1358 the controller. Allocate a dma-mapped region of memory to hold these
1359 structures. Then, save CPU pointers and dma_addr_t values to reference
1360 the structures that are contained in that region.
1363 static bool DAC960_V2_EnableMemoryMailboxInterface(DAC960_Controller_T
1364 *Controller)
1366 void __iomem *ControllerBaseAddress = Controller->BaseAddress;
1367 struct pci_dev *PCI_Device = Controller->PCIDevice;
1368 struct dma_loaf *DmaPages = &Controller->DmaPages;
1369 size_t DmaPagesSize;
1370 size_t CommandMailboxesSize;
1371 size_t StatusMailboxesSize;
1373 DAC960_V2_CommandMailbox_T *CommandMailboxesMemory;
1374 dma_addr_t CommandMailboxesMemoryDMA;
1376 DAC960_V2_StatusMailbox_T *StatusMailboxesMemory;
1377 dma_addr_t StatusMailboxesMemoryDMA;
1379 DAC960_V2_CommandMailbox_T *CommandMailbox;
1380 dma_addr_t CommandMailboxDMA;
1381 DAC960_V2_CommandStatus_T CommandStatus;
1383 if (!pci_set_dma_mask(Controller->PCIDevice, DMA_BIT_MASK(64)))
1384 Controller->BounceBufferLimit = DMA_BIT_MASK(64);
1385 else if (!pci_set_dma_mask(Controller->PCIDevice, DMA_BIT_MASK(32)))
1386 Controller->BounceBufferLimit = DMA_BIT_MASK(32);
1387 else
1388 return DAC960_Failure(Controller, "DMA mask out of range");
1390 /* This is a temporary dma mapping, used only in the scope of this function */
1391 CommandMailbox = pci_alloc_consistent(PCI_Device,
1392 sizeof(DAC960_V2_CommandMailbox_T), &CommandMailboxDMA);
1393 if (CommandMailbox == NULL)
1394 return false;
1396 CommandMailboxesSize = DAC960_V2_CommandMailboxCount * sizeof(DAC960_V2_CommandMailbox_T);
1397 StatusMailboxesSize = DAC960_V2_StatusMailboxCount * sizeof(DAC960_V2_StatusMailbox_T);
1398 DmaPagesSize =
1399 CommandMailboxesSize + StatusMailboxesSize +
1400 sizeof(DAC960_V2_HealthStatusBuffer_T) +
1401 sizeof(DAC960_V2_ControllerInfo_T) +
1402 sizeof(DAC960_V2_LogicalDeviceInfo_T) +
1403 sizeof(DAC960_V2_PhysicalDeviceInfo_T) +
1404 sizeof(DAC960_SCSI_Inquiry_UnitSerialNumber_T) +
1405 sizeof(DAC960_V2_Event_T) +
1406 sizeof(DAC960_V2_PhysicalToLogicalDevice_T);
1408 if (!init_dma_loaf(PCI_Device, DmaPages, DmaPagesSize)) {
1409 pci_free_consistent(PCI_Device, sizeof(DAC960_V2_CommandMailbox_T),
1410 CommandMailbox, CommandMailboxDMA);
1411 return false;
1414 CommandMailboxesMemory = slice_dma_loaf(DmaPages,
1415 CommandMailboxesSize, &CommandMailboxesMemoryDMA);
1417 /* These are the base addresses for the command memory mailbox array */
1418 Controller->V2.FirstCommandMailbox = CommandMailboxesMemory;
1419 Controller->V2.FirstCommandMailboxDMA = CommandMailboxesMemoryDMA;
1421 CommandMailboxesMemory += DAC960_V2_CommandMailboxCount - 1;
1422 Controller->V2.LastCommandMailbox = CommandMailboxesMemory;
1423 Controller->V2.NextCommandMailbox = Controller->V2.FirstCommandMailbox;
1424 Controller->V2.PreviousCommandMailbox1 = Controller->V2.LastCommandMailbox;
1425 Controller->V2.PreviousCommandMailbox2 =
1426 Controller->V2.LastCommandMailbox - 1;
1428 /* These are the base addresses for the status memory mailbox array */
1429 StatusMailboxesMemory = slice_dma_loaf(DmaPages,
1430 StatusMailboxesSize, &StatusMailboxesMemoryDMA);
1432 Controller->V2.FirstStatusMailbox = StatusMailboxesMemory;
1433 Controller->V2.FirstStatusMailboxDMA = StatusMailboxesMemoryDMA;
1434 StatusMailboxesMemory += DAC960_V2_StatusMailboxCount - 1;
1435 Controller->V2.LastStatusMailbox = StatusMailboxesMemory;
1436 Controller->V2.NextStatusMailbox = Controller->V2.FirstStatusMailbox;
1438 Controller->V2.HealthStatusBuffer = slice_dma_loaf(DmaPages,
1439 sizeof(DAC960_V2_HealthStatusBuffer_T),
1440 &Controller->V2.HealthStatusBufferDMA);
1442 Controller->V2.NewControllerInformation = slice_dma_loaf(DmaPages,
1443 sizeof(DAC960_V2_ControllerInfo_T),
1444 &Controller->V2.NewControllerInformationDMA);
1446 Controller->V2.NewLogicalDeviceInformation = slice_dma_loaf(DmaPages,
1447 sizeof(DAC960_V2_LogicalDeviceInfo_T),
1448 &Controller->V2.NewLogicalDeviceInformationDMA);
1450 Controller->V2.NewPhysicalDeviceInformation = slice_dma_loaf(DmaPages,
1451 sizeof(DAC960_V2_PhysicalDeviceInfo_T),
1452 &Controller->V2.NewPhysicalDeviceInformationDMA);
1454 Controller->V2.NewInquiryUnitSerialNumber = slice_dma_loaf(DmaPages,
1455 sizeof(DAC960_SCSI_Inquiry_UnitSerialNumber_T),
1456 &Controller->V2.NewInquiryUnitSerialNumberDMA);
1458 Controller->V2.Event = slice_dma_loaf(DmaPages,
1459 sizeof(DAC960_V2_Event_T),
1460 &Controller->V2.EventDMA);
1462 Controller->V2.PhysicalToLogicalDevice = slice_dma_loaf(DmaPages,
1463 sizeof(DAC960_V2_PhysicalToLogicalDevice_T),
1464 &Controller->V2.PhysicalToLogicalDeviceDMA);
1467 Enable the Memory Mailbox Interface.
1469 I don't know why we can't just use one of the memory mailboxes
1470 we just allocated to do this, instead of using this temporary one.
1471 Try this change later.
1473 memset(CommandMailbox, 0, sizeof(DAC960_V2_CommandMailbox_T));
1474 CommandMailbox->SetMemoryMailbox.CommandIdentifier = 1;
1475 CommandMailbox->SetMemoryMailbox.CommandOpcode = DAC960_V2_IOCTL;
1476 CommandMailbox->SetMemoryMailbox.CommandControlBits.NoAutoRequestSense = true;
1477 CommandMailbox->SetMemoryMailbox.FirstCommandMailboxSizeKB =
1478 (DAC960_V2_CommandMailboxCount * sizeof(DAC960_V2_CommandMailbox_T)) >> 10;
1479 CommandMailbox->SetMemoryMailbox.FirstStatusMailboxSizeKB =
1480 (DAC960_V2_StatusMailboxCount * sizeof(DAC960_V2_StatusMailbox_T)) >> 10;
1481 CommandMailbox->SetMemoryMailbox.SecondCommandMailboxSizeKB = 0;
1482 CommandMailbox->SetMemoryMailbox.SecondStatusMailboxSizeKB = 0;
1483 CommandMailbox->SetMemoryMailbox.RequestSenseSize = 0;
1484 CommandMailbox->SetMemoryMailbox.IOCTL_Opcode = DAC960_V2_SetMemoryMailbox;
1485 CommandMailbox->SetMemoryMailbox.HealthStatusBufferSizeKB = 1;
1486 CommandMailbox->SetMemoryMailbox.HealthStatusBufferBusAddress =
1487 Controller->V2.HealthStatusBufferDMA;
1488 CommandMailbox->SetMemoryMailbox.FirstCommandMailboxBusAddress =
1489 Controller->V2.FirstCommandMailboxDMA;
1490 CommandMailbox->SetMemoryMailbox.FirstStatusMailboxBusAddress =
1491 Controller->V2.FirstStatusMailboxDMA;
1492 switch (Controller->HardwareType)
1494 case DAC960_GEM_Controller:
1495 while (DAC960_GEM_HardwareMailboxFullP(ControllerBaseAddress))
1496 udelay(1);
1497 DAC960_GEM_WriteHardwareMailbox(ControllerBaseAddress, CommandMailboxDMA);
1498 DAC960_GEM_HardwareMailboxNewCommand(ControllerBaseAddress);
1499 while (!DAC960_GEM_HardwareMailboxStatusAvailableP(ControllerBaseAddress))
1500 udelay(1);
1501 CommandStatus = DAC960_GEM_ReadCommandStatus(ControllerBaseAddress);
1502 DAC960_GEM_AcknowledgeHardwareMailboxInterrupt(ControllerBaseAddress);
1503 DAC960_GEM_AcknowledgeHardwareMailboxStatus(ControllerBaseAddress);
1504 break;
1505 case DAC960_BA_Controller:
1506 while (DAC960_BA_HardwareMailboxFullP(ControllerBaseAddress))
1507 udelay(1);
1508 DAC960_BA_WriteHardwareMailbox(ControllerBaseAddress, CommandMailboxDMA);
1509 DAC960_BA_HardwareMailboxNewCommand(ControllerBaseAddress);
1510 while (!DAC960_BA_HardwareMailboxStatusAvailableP(ControllerBaseAddress))
1511 udelay(1);
1512 CommandStatus = DAC960_BA_ReadCommandStatus(ControllerBaseAddress);
1513 DAC960_BA_AcknowledgeHardwareMailboxInterrupt(ControllerBaseAddress);
1514 DAC960_BA_AcknowledgeHardwareMailboxStatus(ControllerBaseAddress);
1515 break;
1516 case DAC960_LP_Controller:
1517 while (DAC960_LP_HardwareMailboxFullP(ControllerBaseAddress))
1518 udelay(1);
1519 DAC960_LP_WriteHardwareMailbox(ControllerBaseAddress, CommandMailboxDMA);
1520 DAC960_LP_HardwareMailboxNewCommand(ControllerBaseAddress);
1521 while (!DAC960_LP_HardwareMailboxStatusAvailableP(ControllerBaseAddress))
1522 udelay(1);
1523 CommandStatus = DAC960_LP_ReadCommandStatus(ControllerBaseAddress);
1524 DAC960_LP_AcknowledgeHardwareMailboxInterrupt(ControllerBaseAddress);
1525 DAC960_LP_AcknowledgeHardwareMailboxStatus(ControllerBaseAddress);
1526 break;
1527 default:
1528 DAC960_Failure(Controller, "Unknown Controller Type\n");
1529 CommandStatus = DAC960_V2_AbormalCompletion;
1530 break;
1532 pci_free_consistent(PCI_Device, sizeof(DAC960_V2_CommandMailbox_T),
1533 CommandMailbox, CommandMailboxDMA);
1534 return (CommandStatus == DAC960_V2_NormalCompletion);
1539 DAC960_V1_ReadControllerConfiguration reads the Configuration Information
1540 from DAC960 V1 Firmware Controllers and initializes the Controller structure.
1543 static bool DAC960_V1_ReadControllerConfiguration(DAC960_Controller_T
1544 *Controller)
1546 DAC960_V1_Enquiry2_T *Enquiry2;
1547 dma_addr_t Enquiry2DMA;
1548 DAC960_V1_Config2_T *Config2;
1549 dma_addr_t Config2DMA;
1550 int LogicalDriveNumber, Channel, TargetID;
1551 struct dma_loaf local_dma;
1553 if (!init_dma_loaf(Controller->PCIDevice, &local_dma,
1554 sizeof(DAC960_V1_Enquiry2_T) + sizeof(DAC960_V1_Config2_T)))
1555 return DAC960_Failure(Controller, "LOGICAL DEVICE ALLOCATION");
1557 Enquiry2 = slice_dma_loaf(&local_dma, sizeof(DAC960_V1_Enquiry2_T), &Enquiry2DMA);
1558 Config2 = slice_dma_loaf(&local_dma, sizeof(DAC960_V1_Config2_T), &Config2DMA);
1560 if (!DAC960_V1_ExecuteType3(Controller, DAC960_V1_Enquiry,
1561 Controller->V1.NewEnquiryDMA)) {
1562 free_dma_loaf(Controller->PCIDevice, &local_dma);
1563 return DAC960_Failure(Controller, "ENQUIRY");
1565 memcpy(&Controller->V1.Enquiry, Controller->V1.NewEnquiry,
1566 sizeof(DAC960_V1_Enquiry_T));
1568 if (!DAC960_V1_ExecuteType3(Controller, DAC960_V1_Enquiry2, Enquiry2DMA)) {
1569 free_dma_loaf(Controller->PCIDevice, &local_dma);
1570 return DAC960_Failure(Controller, "ENQUIRY2");
1573 if (!DAC960_V1_ExecuteType3(Controller, DAC960_V1_ReadConfig2, Config2DMA)) {
1574 free_dma_loaf(Controller->PCIDevice, &local_dma);
1575 return DAC960_Failure(Controller, "READ CONFIG2");
1578 if (!DAC960_V1_ExecuteType3(Controller, DAC960_V1_GetLogicalDriveInformation,
1579 Controller->V1.NewLogicalDriveInformationDMA)) {
1580 free_dma_loaf(Controller->PCIDevice, &local_dma);
1581 return DAC960_Failure(Controller, "GET LOGICAL DRIVE INFORMATION");
1583 memcpy(&Controller->V1.LogicalDriveInformation,
1584 Controller->V1.NewLogicalDriveInformation,
1585 sizeof(DAC960_V1_LogicalDriveInformationArray_T));
1587 for (Channel = 0; Channel < Enquiry2->ActualChannels; Channel++)
1588 for (TargetID = 0; TargetID < Enquiry2->MaxTargets; TargetID++) {
1589 if (!DAC960_V1_ExecuteType3D(Controller, DAC960_V1_GetDeviceState,
1590 Channel, TargetID,
1591 Controller->V1.NewDeviceStateDMA)) {
1592 free_dma_loaf(Controller->PCIDevice, &local_dma);
1593 return DAC960_Failure(Controller, "GET DEVICE STATE");
1595 memcpy(&Controller->V1.DeviceState[Channel][TargetID],
1596 Controller->V1.NewDeviceState, sizeof(DAC960_V1_DeviceState_T));
1599 Initialize the Controller Model Name and Full Model Name fields.
1601 switch (Enquiry2->HardwareID.SubModel)
1603 case DAC960_V1_P_PD_PU:
1604 if (Enquiry2->SCSICapability.BusSpeed == DAC960_V1_Ultra)
1605 strcpy(Controller->ModelName, "DAC960PU");
1606 else strcpy(Controller->ModelName, "DAC960PD");
1607 break;
1608 case DAC960_V1_PL:
1609 strcpy(Controller->ModelName, "DAC960PL");
1610 break;
1611 case DAC960_V1_PG:
1612 strcpy(Controller->ModelName, "DAC960PG");
1613 break;
1614 case DAC960_V1_PJ:
1615 strcpy(Controller->ModelName, "DAC960PJ");
1616 break;
1617 case DAC960_V1_PR:
1618 strcpy(Controller->ModelName, "DAC960PR");
1619 break;
1620 case DAC960_V1_PT:
1621 strcpy(Controller->ModelName, "DAC960PT");
1622 break;
1623 case DAC960_V1_PTL0:
1624 strcpy(Controller->ModelName, "DAC960PTL0");
1625 break;
1626 case DAC960_V1_PRL:
1627 strcpy(Controller->ModelName, "DAC960PRL");
1628 break;
1629 case DAC960_V1_PTL1:
1630 strcpy(Controller->ModelName, "DAC960PTL1");
1631 break;
1632 case DAC960_V1_1164P:
1633 strcpy(Controller->ModelName, "DAC1164P");
1634 break;
1635 default:
1636 free_dma_loaf(Controller->PCIDevice, &local_dma);
1637 return DAC960_Failure(Controller, "MODEL VERIFICATION");
1639 strcpy(Controller->FullModelName, "Mylex ");
1640 strcat(Controller->FullModelName, Controller->ModelName);
1642 Initialize the Controller Firmware Version field and verify that it
1643 is a supported firmware version. The supported firmware versions are:
1645 DAC1164P 5.06 and above
1646 DAC960PTL/PRL/PJ/PG 4.06 and above
1647 DAC960PU/PD/PL 3.51 and above
1648 DAC960PU/PD/PL/P 2.73 and above
1650 #if defined(CONFIG_ALPHA)
1652 DEC Alpha machines were often equipped with DAC960 cards that were
1653 OEMed from Mylex, and had their own custom firmware. Version 2.70,
1654 the last custom FW revision to be released by DEC for these older
1655 controllers, appears to work quite well with this driver.
1657 Cards tested successfully were several versions each of the PD and
1658 PU, called by DEC the KZPSC and KZPAC, respectively, and having
1659 the Manufacturer Numbers (from Mylex), usually on a sticker on the
1660 back of the board, of:
1662 KZPSC: D040347 (1-channel) or D040348 (2-channel) or D040349 (3-channel)
1663 KZPAC: D040395 (1-channel) or D040396 (2-channel) or D040397 (3-channel)
1665 # define FIRMWARE_27X "2.70"
1666 #else
1667 # define FIRMWARE_27X "2.73"
1668 #endif
1670 if (Enquiry2->FirmwareID.MajorVersion == 0)
1672 Enquiry2->FirmwareID.MajorVersion =
1673 Controller->V1.Enquiry.MajorFirmwareVersion;
1674 Enquiry2->FirmwareID.MinorVersion =
1675 Controller->V1.Enquiry.MinorFirmwareVersion;
1676 Enquiry2->FirmwareID.FirmwareType = '0';
1677 Enquiry2->FirmwareID.TurnID = 0;
1679 snprintf(Controller->FirmwareVersion, sizeof(Controller->FirmwareVersion),
1680 "%d.%02d-%c-%02d",
1681 Enquiry2->FirmwareID.MajorVersion,
1682 Enquiry2->FirmwareID.MinorVersion,
1683 Enquiry2->FirmwareID.FirmwareType,
1684 Enquiry2->FirmwareID.TurnID);
1685 if (!((Controller->FirmwareVersion[0] == '5' &&
1686 strcmp(Controller->FirmwareVersion, "5.06") >= 0) ||
1687 (Controller->FirmwareVersion[0] == '4' &&
1688 strcmp(Controller->FirmwareVersion, "4.06") >= 0) ||
1689 (Controller->FirmwareVersion[0] == '3' &&
1690 strcmp(Controller->FirmwareVersion, "3.51") >= 0) ||
1691 (Controller->FirmwareVersion[0] == '2' &&
1692 strcmp(Controller->FirmwareVersion, FIRMWARE_27X) >= 0)))
1694 DAC960_Failure(Controller, "FIRMWARE VERSION VERIFICATION");
1695 DAC960_Error("Firmware Version = '%s'\n", Controller,
1696 Controller->FirmwareVersion);
1697 free_dma_loaf(Controller->PCIDevice, &local_dma);
1698 return false;
1701 Initialize the Controller Channels, Targets, Memory Size, and SAF-TE
1702 Enclosure Management Enabled fields.
1704 Controller->Channels = Enquiry2->ActualChannels;
1705 Controller->Targets = Enquiry2->MaxTargets;
1706 Controller->MemorySize = Enquiry2->MemorySize >> 20;
1707 Controller->V1.SAFTE_EnclosureManagementEnabled =
1708 (Enquiry2->FaultManagementType == DAC960_V1_SAFTE);
1710 Initialize the Controller Queue Depth, Driver Queue Depth, Logical Drive
1711 Count, Maximum Blocks per Command, Controller Scatter/Gather Limit, and
1712 Driver Scatter/Gather Limit. The Driver Queue Depth must be at most one
1713 less than the Controller Queue Depth to allow for an automatic drive
1714 rebuild operation.
1716 Controller->ControllerQueueDepth = Controller->V1.Enquiry.MaxCommands;
1717 Controller->DriverQueueDepth = Controller->ControllerQueueDepth - 1;
1718 if (Controller->DriverQueueDepth > DAC960_MaxDriverQueueDepth)
1719 Controller->DriverQueueDepth = DAC960_MaxDriverQueueDepth;
1720 Controller->LogicalDriveCount =
1721 Controller->V1.Enquiry.NumberOfLogicalDrives;
1722 Controller->MaxBlocksPerCommand = Enquiry2->MaxBlocksPerCommand;
1723 Controller->ControllerScatterGatherLimit = Enquiry2->MaxScatterGatherEntries;
1724 Controller->DriverScatterGatherLimit =
1725 Controller->ControllerScatterGatherLimit;
1726 if (Controller->DriverScatterGatherLimit > DAC960_V1_ScatterGatherLimit)
1727 Controller->DriverScatterGatherLimit = DAC960_V1_ScatterGatherLimit;
1729 Initialize the Stripe Size, Segment Size, and Geometry Translation.
1731 Controller->V1.StripeSize = Config2->BlocksPerStripe * Config2->BlockFactor
1732 >> (10 - DAC960_BlockSizeBits);
1733 Controller->V1.SegmentSize = Config2->BlocksPerCacheLine * Config2->BlockFactor
1734 >> (10 - DAC960_BlockSizeBits);
1735 switch (Config2->DriveGeometry)
1737 case DAC960_V1_Geometry_128_32:
1738 Controller->V1.GeometryTranslationHeads = 128;
1739 Controller->V1.GeometryTranslationSectors = 32;
1740 break;
1741 case DAC960_V1_Geometry_255_63:
1742 Controller->V1.GeometryTranslationHeads = 255;
1743 Controller->V1.GeometryTranslationSectors = 63;
1744 break;
1745 default:
1746 free_dma_loaf(Controller->PCIDevice, &local_dma);
1747 return DAC960_Failure(Controller, "CONFIG2 DRIVE GEOMETRY");
1750 Initialize the Background Initialization Status.
1752 if ((Controller->FirmwareVersion[0] == '4' &&
1753 strcmp(Controller->FirmwareVersion, "4.08") >= 0) ||
1754 (Controller->FirmwareVersion[0] == '5' &&
1755 strcmp(Controller->FirmwareVersion, "5.08") >= 0))
1757 Controller->V1.BackgroundInitializationStatusSupported = true;
1758 DAC960_V1_ExecuteType3B(Controller,
1759 DAC960_V1_BackgroundInitializationControl, 0x20,
1760 Controller->
1761 V1.BackgroundInitializationStatusDMA);
1762 memcpy(&Controller->V1.LastBackgroundInitializationStatus,
1763 Controller->V1.BackgroundInitializationStatus,
1764 sizeof(DAC960_V1_BackgroundInitializationStatus_T));
1767 Initialize the Logical Drive Initially Accessible flag.
1769 for (LogicalDriveNumber = 0;
1770 LogicalDriveNumber < Controller->LogicalDriveCount;
1771 LogicalDriveNumber++)
1772 if (Controller->V1.LogicalDriveInformation
1773 [LogicalDriveNumber].LogicalDriveState !=
1774 DAC960_V1_LogicalDrive_Offline)
1775 Controller->LogicalDriveInitiallyAccessible[LogicalDriveNumber] = true;
1776 Controller->V1.LastRebuildStatus = DAC960_V1_NoRebuildOrCheckInProgress;
1777 free_dma_loaf(Controller->PCIDevice, &local_dma);
1778 return true;
1783 DAC960_V2_ReadControllerConfiguration reads the Configuration Information
1784 from DAC960 V2 Firmware Controllers and initializes the Controller structure.
1787 static bool DAC960_V2_ReadControllerConfiguration(DAC960_Controller_T
1788 *Controller)
1790 DAC960_V2_ControllerInfo_T *ControllerInfo =
1791 &Controller->V2.ControllerInformation;
1792 unsigned short LogicalDeviceNumber = 0;
1793 int ModelNameLength;
1795 /* Get data into dma-able area, then copy into permanent location */
1796 if (!DAC960_V2_NewControllerInfo(Controller))
1797 return DAC960_Failure(Controller, "GET CONTROLLER INFO");
1798 memcpy(ControllerInfo, Controller->V2.NewControllerInformation,
1799 sizeof(DAC960_V2_ControllerInfo_T));
1802 if (!DAC960_V2_GeneralInfo(Controller))
1803 return DAC960_Failure(Controller, "GET HEALTH STATUS");
1806 Initialize the Controller Model Name and Full Model Name fields.
1808 ModelNameLength = sizeof(ControllerInfo->ControllerName);
1809 if (ModelNameLength > sizeof(Controller->ModelName)-1)
1810 ModelNameLength = sizeof(Controller->ModelName)-1;
1811 memcpy(Controller->ModelName, ControllerInfo->ControllerName,
1812 ModelNameLength);
1813 ModelNameLength--;
1814 while (Controller->ModelName[ModelNameLength] == ' ' ||
1815 Controller->ModelName[ModelNameLength] == '\0')
1816 ModelNameLength--;
1817 Controller->ModelName[++ModelNameLength] = '\0';
1818 strcpy(Controller->FullModelName, "Mylex ");
1819 strcat(Controller->FullModelName, Controller->ModelName);
1821 Initialize the Controller Firmware Version field.
1823 sprintf(Controller->FirmwareVersion, "%d.%02d-%02d",
1824 ControllerInfo->FirmwareMajorVersion,
1825 ControllerInfo->FirmwareMinorVersion,
1826 ControllerInfo->FirmwareTurnNumber);
1827 if (ControllerInfo->FirmwareMajorVersion == 6 &&
1828 ControllerInfo->FirmwareMinorVersion == 0 &&
1829 ControllerInfo->FirmwareTurnNumber < 1)
1831 DAC960_Info("FIRMWARE VERSION %s DOES NOT PROVIDE THE CONTROLLER\n",
1832 Controller, Controller->FirmwareVersion);
1833 DAC960_Info("STATUS MONITORING FUNCTIONALITY NEEDED BY THIS DRIVER.\n",
1834 Controller);
1835 DAC960_Info("PLEASE UPGRADE TO VERSION 6.00-01 OR ABOVE.\n",
1836 Controller);
1839 Initialize the Controller Channels, Targets, and Memory Size.
1841 Controller->Channels = ControllerInfo->NumberOfPhysicalChannelsPresent;
1842 Controller->Targets =
1843 ControllerInfo->MaximumTargetsPerChannel
1844 [ControllerInfo->NumberOfPhysicalChannelsPresent-1];
1845 Controller->MemorySize = ControllerInfo->MemorySizeMB;
1847 Initialize the Controller Queue Depth, Driver Queue Depth, Logical Drive
1848 Count, Maximum Blocks per Command, Controller Scatter/Gather Limit, and
1849 Driver Scatter/Gather Limit. The Driver Queue Depth must be at most one
1850 less than the Controller Queue Depth to allow for an automatic drive
1851 rebuild operation.
1853 Controller->ControllerQueueDepth = ControllerInfo->MaximumParallelCommands;
1854 Controller->DriverQueueDepth = Controller->ControllerQueueDepth - 1;
1855 if (Controller->DriverQueueDepth > DAC960_MaxDriverQueueDepth)
1856 Controller->DriverQueueDepth = DAC960_MaxDriverQueueDepth;
1857 Controller->LogicalDriveCount = ControllerInfo->LogicalDevicesPresent;
1858 Controller->MaxBlocksPerCommand =
1859 ControllerInfo->MaximumDataTransferSizeInBlocks;
1860 Controller->ControllerScatterGatherLimit =
1861 ControllerInfo->MaximumScatterGatherEntries;
1862 Controller->DriverScatterGatherLimit =
1863 Controller->ControllerScatterGatherLimit;
1864 if (Controller->DriverScatterGatherLimit > DAC960_V2_ScatterGatherLimit)
1865 Controller->DriverScatterGatherLimit = DAC960_V2_ScatterGatherLimit;
1867 Initialize the Logical Device Information.
1869 while (true)
1871 DAC960_V2_LogicalDeviceInfo_T *NewLogicalDeviceInfo =
1872 Controller->V2.NewLogicalDeviceInformation;
1873 DAC960_V2_LogicalDeviceInfo_T *LogicalDeviceInfo;
1874 DAC960_V2_PhysicalDevice_T PhysicalDevice;
1876 if (!DAC960_V2_NewLogicalDeviceInfo(Controller, LogicalDeviceNumber))
1877 break;
1878 LogicalDeviceNumber = NewLogicalDeviceInfo->LogicalDeviceNumber;
1879 if (LogicalDeviceNumber >= DAC960_MaxLogicalDrives) {
1880 DAC960_Error("DAC960: Logical Drive Number %d not supported\n",
1881 Controller, LogicalDeviceNumber);
1882 break;
1884 if (NewLogicalDeviceInfo->DeviceBlockSizeInBytes != DAC960_BlockSize) {
1885 DAC960_Error("DAC960: Logical Drive Block Size %d not supported\n",
1886 Controller, NewLogicalDeviceInfo->DeviceBlockSizeInBytes);
1887 LogicalDeviceNumber++;
1888 continue;
1890 PhysicalDevice.Controller = 0;
1891 PhysicalDevice.Channel = NewLogicalDeviceInfo->Channel;
1892 PhysicalDevice.TargetID = NewLogicalDeviceInfo->TargetID;
1893 PhysicalDevice.LogicalUnit = NewLogicalDeviceInfo->LogicalUnit;
1894 Controller->V2.LogicalDriveToVirtualDevice[LogicalDeviceNumber] =
1895 PhysicalDevice;
1896 if (NewLogicalDeviceInfo->LogicalDeviceState !=
1897 DAC960_V2_LogicalDevice_Offline)
1898 Controller->LogicalDriveInitiallyAccessible[LogicalDeviceNumber] = true;
1899 LogicalDeviceInfo = kmalloc(sizeof(DAC960_V2_LogicalDeviceInfo_T),
1900 GFP_ATOMIC);
1901 if (LogicalDeviceInfo == NULL)
1902 return DAC960_Failure(Controller, "LOGICAL DEVICE ALLOCATION");
1903 Controller->V2.LogicalDeviceInformation[LogicalDeviceNumber] =
1904 LogicalDeviceInfo;
1905 memcpy(LogicalDeviceInfo, NewLogicalDeviceInfo,
1906 sizeof(DAC960_V2_LogicalDeviceInfo_T));
1907 LogicalDeviceNumber++;
1909 return true;
1914 DAC960_ReportControllerConfiguration reports the Configuration Information
1915 for Controller.
1918 static bool DAC960_ReportControllerConfiguration(DAC960_Controller_T
1919 *Controller)
1921 DAC960_Info("Configuring Mylex %s PCI RAID Controller\n",
1922 Controller, Controller->ModelName);
1923 DAC960_Info(" Firmware Version: %s, Channels: %d, Memory Size: %dMB\n",
1924 Controller, Controller->FirmwareVersion,
1925 Controller->Channels, Controller->MemorySize);
1926 DAC960_Info(" PCI Bus: %d, Device: %d, Function: %d, I/O Address: ",
1927 Controller, Controller->Bus,
1928 Controller->Device, Controller->Function);
1929 if (Controller->IO_Address == 0)
1930 DAC960_Info("Unassigned\n", Controller);
1931 else DAC960_Info("0x%X\n", Controller, Controller->IO_Address);
1932 DAC960_Info(" PCI Address: 0x%X mapped at 0x%lX, IRQ Channel: %d\n",
1933 Controller, Controller->PCI_Address,
1934 (unsigned long) Controller->BaseAddress,
1935 Controller->IRQ_Channel);
1936 DAC960_Info(" Controller Queue Depth: %d, "
1937 "Maximum Blocks per Command: %d\n",
1938 Controller, Controller->ControllerQueueDepth,
1939 Controller->MaxBlocksPerCommand);
1940 DAC960_Info(" Driver Queue Depth: %d, "
1941 "Scatter/Gather Limit: %d of %d Segments\n",
1942 Controller, Controller->DriverQueueDepth,
1943 Controller->DriverScatterGatherLimit,
1944 Controller->ControllerScatterGatherLimit);
1945 if (Controller->FirmwareType == DAC960_V1_Controller)
1947 DAC960_Info(" Stripe Size: %dKB, Segment Size: %dKB, "
1948 "BIOS Geometry: %d/%d\n", Controller,
1949 Controller->V1.StripeSize,
1950 Controller->V1.SegmentSize,
1951 Controller->V1.GeometryTranslationHeads,
1952 Controller->V1.GeometryTranslationSectors);
1953 if (Controller->V1.SAFTE_EnclosureManagementEnabled)
1954 DAC960_Info(" SAF-TE Enclosure Management Enabled\n", Controller);
1956 return true;
1961 DAC960_V1_ReadDeviceConfiguration reads the Device Configuration Information
1962 for DAC960 V1 Firmware Controllers by requesting the SCSI Inquiry and SCSI
1963 Inquiry Unit Serial Number information for each device connected to
1964 Controller.
1967 static bool DAC960_V1_ReadDeviceConfiguration(DAC960_Controller_T
1968 *Controller)
1970 struct dma_loaf local_dma;
1972 dma_addr_t DCDBs_dma[DAC960_V1_MaxChannels];
1973 DAC960_V1_DCDB_T *DCDBs_cpu[DAC960_V1_MaxChannels];
1975 dma_addr_t SCSI_Inquiry_dma[DAC960_V1_MaxChannels];
1976 DAC960_SCSI_Inquiry_T *SCSI_Inquiry_cpu[DAC960_V1_MaxChannels];
1978 dma_addr_t SCSI_NewInquiryUnitSerialNumberDMA[DAC960_V1_MaxChannels];
1979 DAC960_SCSI_Inquiry_UnitSerialNumber_T *SCSI_NewInquiryUnitSerialNumberCPU[DAC960_V1_MaxChannels];
1981 struct completion Completions[DAC960_V1_MaxChannels];
1982 unsigned long flags;
1983 int Channel, TargetID;
1985 if (!init_dma_loaf(Controller->PCIDevice, &local_dma,
1986 DAC960_V1_MaxChannels*(sizeof(DAC960_V1_DCDB_T) +
1987 sizeof(DAC960_SCSI_Inquiry_T) +
1988 sizeof(DAC960_SCSI_Inquiry_UnitSerialNumber_T))))
1989 return DAC960_Failure(Controller,
1990 "DMA ALLOCATION FAILED IN ReadDeviceConfiguration");
1992 for (Channel = 0; Channel < Controller->Channels; Channel++) {
1993 DCDBs_cpu[Channel] = slice_dma_loaf(&local_dma,
1994 sizeof(DAC960_V1_DCDB_T), DCDBs_dma + Channel);
1995 SCSI_Inquiry_cpu[Channel] = slice_dma_loaf(&local_dma,
1996 sizeof(DAC960_SCSI_Inquiry_T),
1997 SCSI_Inquiry_dma + Channel);
1998 SCSI_NewInquiryUnitSerialNumberCPU[Channel] = slice_dma_loaf(&local_dma,
1999 sizeof(DAC960_SCSI_Inquiry_UnitSerialNumber_T),
2000 SCSI_NewInquiryUnitSerialNumberDMA + Channel);
2003 for (TargetID = 0; TargetID < Controller->Targets; TargetID++)
2006 * For each channel, submit a probe for a device on that channel.
2007 * The timeout interval for a device that is present is 10 seconds.
2008 * With this approach, the timeout periods can elapse in parallel
2009 * on each channel.
2011 for (Channel = 0; Channel < Controller->Channels; Channel++)
2013 dma_addr_t NewInquiryStandardDataDMA = SCSI_Inquiry_dma[Channel];
2014 DAC960_V1_DCDB_T *DCDB = DCDBs_cpu[Channel];
2015 dma_addr_t DCDB_dma = DCDBs_dma[Channel];
2016 DAC960_Command_T *Command = Controller->Commands[Channel];
2017 struct completion *Completion = &Completions[Channel];
2019 init_completion(Completion);
2020 DAC960_V1_ClearCommand(Command);
2021 Command->CommandType = DAC960_ImmediateCommand;
2022 Command->Completion = Completion;
2023 Command->V1.CommandMailbox.Type3.CommandOpcode = DAC960_V1_DCDB;
2024 Command->V1.CommandMailbox.Type3.BusAddress = DCDB_dma;
2025 DCDB->Channel = Channel;
2026 DCDB->TargetID = TargetID;
2027 DCDB->Direction = DAC960_V1_DCDB_DataTransferDeviceToSystem;
2028 DCDB->EarlyStatus = false;
2029 DCDB->Timeout = DAC960_V1_DCDB_Timeout_10_seconds;
2030 DCDB->NoAutomaticRequestSense = false;
2031 DCDB->DisconnectPermitted = true;
2032 DCDB->TransferLength = sizeof(DAC960_SCSI_Inquiry_T);
2033 DCDB->BusAddress = NewInquiryStandardDataDMA;
2034 DCDB->CDBLength = 6;
2035 DCDB->TransferLengthHigh4 = 0;
2036 DCDB->SenseLength = sizeof(DCDB->SenseData);
2037 DCDB->CDB[0] = 0x12; /* INQUIRY */
2038 DCDB->CDB[1] = 0; /* EVPD = 0 */
2039 DCDB->CDB[2] = 0; /* Page Code */
2040 DCDB->CDB[3] = 0; /* Reserved */
2041 DCDB->CDB[4] = sizeof(DAC960_SCSI_Inquiry_T);
2042 DCDB->CDB[5] = 0; /* Control */
2044 spin_lock_irqsave(&Controller->queue_lock, flags);
2045 DAC960_QueueCommand(Command);
2046 spin_unlock_irqrestore(&Controller->queue_lock, flags);
2049 * Wait for the problems submitted in the previous loop
2050 * to complete. On the probes that are successful,
2051 * get the serial number of the device that was found.
2053 for (Channel = 0; Channel < Controller->Channels; Channel++)
2055 DAC960_SCSI_Inquiry_T *InquiryStandardData =
2056 &Controller->V1.InquiryStandardData[Channel][TargetID];
2057 DAC960_SCSI_Inquiry_T *NewInquiryStandardData = SCSI_Inquiry_cpu[Channel];
2058 dma_addr_t NewInquiryUnitSerialNumberDMA =
2059 SCSI_NewInquiryUnitSerialNumberDMA[Channel];
2060 DAC960_SCSI_Inquiry_UnitSerialNumber_T *NewInquiryUnitSerialNumber =
2061 SCSI_NewInquiryUnitSerialNumberCPU[Channel];
2062 DAC960_SCSI_Inquiry_UnitSerialNumber_T *InquiryUnitSerialNumber =
2063 &Controller->V1.InquiryUnitSerialNumber[Channel][TargetID];
2064 DAC960_Command_T *Command = Controller->Commands[Channel];
2065 DAC960_V1_DCDB_T *DCDB = DCDBs_cpu[Channel];
2066 struct completion *Completion = &Completions[Channel];
2068 wait_for_completion(Completion);
2070 if (Command->V1.CommandStatus != DAC960_V1_NormalCompletion) {
2071 memset(InquiryStandardData, 0, sizeof(DAC960_SCSI_Inquiry_T));
2072 InquiryStandardData->PeripheralDeviceType = 0x1F;
2073 continue;
2074 } else
2075 memcpy(InquiryStandardData, NewInquiryStandardData, sizeof(DAC960_SCSI_Inquiry_T));
2077 /* Preserve Channel and TargetID values from the previous loop */
2078 Command->Completion = Completion;
2079 DCDB->TransferLength = sizeof(DAC960_SCSI_Inquiry_UnitSerialNumber_T);
2080 DCDB->BusAddress = NewInquiryUnitSerialNumberDMA;
2081 DCDB->SenseLength = sizeof(DCDB->SenseData);
2082 DCDB->CDB[0] = 0x12; /* INQUIRY */
2083 DCDB->CDB[1] = 1; /* EVPD = 1 */
2084 DCDB->CDB[2] = 0x80; /* Page Code */
2085 DCDB->CDB[3] = 0; /* Reserved */
2086 DCDB->CDB[4] = sizeof(DAC960_SCSI_Inquiry_UnitSerialNumber_T);
2087 DCDB->CDB[5] = 0; /* Control */
2089 spin_lock_irqsave(&Controller->queue_lock, flags);
2090 DAC960_QueueCommand(Command);
2091 spin_unlock_irqrestore(&Controller->queue_lock, flags);
2092 wait_for_completion(Completion);
2094 if (Command->V1.CommandStatus != DAC960_V1_NormalCompletion) {
2095 memset(InquiryUnitSerialNumber, 0,
2096 sizeof(DAC960_SCSI_Inquiry_UnitSerialNumber_T));
2097 InquiryUnitSerialNumber->PeripheralDeviceType = 0x1F;
2098 } else
2099 memcpy(InquiryUnitSerialNumber, NewInquiryUnitSerialNumber,
2100 sizeof(DAC960_SCSI_Inquiry_UnitSerialNumber_T));
2103 free_dma_loaf(Controller->PCIDevice, &local_dma);
2104 return true;
2109 DAC960_V2_ReadDeviceConfiguration reads the Device Configuration Information
2110 for DAC960 V2 Firmware Controllers by requesting the Physical Device
2111 Information and SCSI Inquiry Unit Serial Number information for each
2112 device connected to Controller.
2115 static bool DAC960_V2_ReadDeviceConfiguration(DAC960_Controller_T
2116 *Controller)
2118 unsigned char Channel = 0, TargetID = 0, LogicalUnit = 0;
2119 unsigned short PhysicalDeviceIndex = 0;
2121 while (true)
2123 DAC960_V2_PhysicalDeviceInfo_T *NewPhysicalDeviceInfo =
2124 Controller->V2.NewPhysicalDeviceInformation;
2125 DAC960_V2_PhysicalDeviceInfo_T *PhysicalDeviceInfo;
2126 DAC960_SCSI_Inquiry_UnitSerialNumber_T *NewInquiryUnitSerialNumber =
2127 Controller->V2.NewInquiryUnitSerialNumber;
2128 DAC960_SCSI_Inquiry_UnitSerialNumber_T *InquiryUnitSerialNumber;
2130 if (!DAC960_V2_NewPhysicalDeviceInfo(Controller, Channel, TargetID, LogicalUnit))
2131 break;
2133 PhysicalDeviceInfo = kmalloc(sizeof(DAC960_V2_PhysicalDeviceInfo_T),
2134 GFP_ATOMIC);
2135 if (PhysicalDeviceInfo == NULL)
2136 return DAC960_Failure(Controller, "PHYSICAL DEVICE ALLOCATION");
2137 Controller->V2.PhysicalDeviceInformation[PhysicalDeviceIndex] =
2138 PhysicalDeviceInfo;
2139 memcpy(PhysicalDeviceInfo, NewPhysicalDeviceInfo,
2140 sizeof(DAC960_V2_PhysicalDeviceInfo_T));
2142 InquiryUnitSerialNumber = kmalloc(
2143 sizeof(DAC960_SCSI_Inquiry_UnitSerialNumber_T), GFP_ATOMIC);
2144 if (InquiryUnitSerialNumber == NULL) {
2145 kfree(PhysicalDeviceInfo);
2146 return DAC960_Failure(Controller, "SERIAL NUMBER ALLOCATION");
2148 Controller->V2.InquiryUnitSerialNumber[PhysicalDeviceIndex] =
2149 InquiryUnitSerialNumber;
2151 Channel = NewPhysicalDeviceInfo->Channel;
2152 TargetID = NewPhysicalDeviceInfo->TargetID;
2153 LogicalUnit = NewPhysicalDeviceInfo->LogicalUnit;
2156 Some devices do NOT have Unit Serial Numbers.
2157 This command fails for them. But, we still want to
2158 remember those devices are there. Construct a
2159 UnitSerialNumber structure for the failure case.
2161 if (!DAC960_V2_NewInquiryUnitSerialNumber(Controller, Channel, TargetID, LogicalUnit)) {
2162 memset(InquiryUnitSerialNumber, 0,
2163 sizeof(DAC960_SCSI_Inquiry_UnitSerialNumber_T));
2164 InquiryUnitSerialNumber->PeripheralDeviceType = 0x1F;
2165 } else
2166 memcpy(InquiryUnitSerialNumber, NewInquiryUnitSerialNumber,
2167 sizeof(DAC960_SCSI_Inquiry_UnitSerialNumber_T));
2169 PhysicalDeviceIndex++;
2170 LogicalUnit++;
2172 return true;
2177 DAC960_SanitizeInquiryData sanitizes the Vendor, Model, Revision, and
2178 Product Serial Number fields of the Inquiry Standard Data and Inquiry
2179 Unit Serial Number structures.
2182 static void DAC960_SanitizeInquiryData(DAC960_SCSI_Inquiry_T
2183 *InquiryStandardData,
2184 DAC960_SCSI_Inquiry_UnitSerialNumber_T
2185 *InquiryUnitSerialNumber,
2186 unsigned char *Vendor,
2187 unsigned char *Model,
2188 unsigned char *Revision,
2189 unsigned char *SerialNumber)
2191 int SerialNumberLength, i;
2192 if (InquiryStandardData->PeripheralDeviceType == 0x1F) return;
2193 for (i = 0; i < sizeof(InquiryStandardData->VendorIdentification); i++)
2195 unsigned char VendorCharacter =
2196 InquiryStandardData->VendorIdentification[i];
2197 Vendor[i] = (VendorCharacter >= ' ' && VendorCharacter <= '~'
2198 ? VendorCharacter : ' ');
2200 Vendor[sizeof(InquiryStandardData->VendorIdentification)] = '\0';
2201 for (i = 0; i < sizeof(InquiryStandardData->ProductIdentification); i++)
2203 unsigned char ModelCharacter =
2204 InquiryStandardData->ProductIdentification[i];
2205 Model[i] = (ModelCharacter >= ' ' && ModelCharacter <= '~'
2206 ? ModelCharacter : ' ');
2208 Model[sizeof(InquiryStandardData->ProductIdentification)] = '\0';
2209 for (i = 0; i < sizeof(InquiryStandardData->ProductRevisionLevel); i++)
2211 unsigned char RevisionCharacter =
2212 InquiryStandardData->ProductRevisionLevel[i];
2213 Revision[i] = (RevisionCharacter >= ' ' && RevisionCharacter <= '~'
2214 ? RevisionCharacter : ' ');
2216 Revision[sizeof(InquiryStandardData->ProductRevisionLevel)] = '\0';
2217 if (InquiryUnitSerialNumber->PeripheralDeviceType == 0x1F) return;
2218 SerialNumberLength = InquiryUnitSerialNumber->PageLength;
2219 if (SerialNumberLength >
2220 sizeof(InquiryUnitSerialNumber->ProductSerialNumber))
2221 SerialNumberLength = sizeof(InquiryUnitSerialNumber->ProductSerialNumber);
2222 for (i = 0; i < SerialNumberLength; i++)
2224 unsigned char SerialNumberCharacter =
2225 InquiryUnitSerialNumber->ProductSerialNumber[i];
2226 SerialNumber[i] =
2227 (SerialNumberCharacter >= ' ' && SerialNumberCharacter <= '~'
2228 ? SerialNumberCharacter : ' ');
2230 SerialNumber[SerialNumberLength] = '\0';
2235 DAC960_V1_ReportDeviceConfiguration reports the Device Configuration
2236 Information for DAC960 V1 Firmware Controllers.
2239 static bool DAC960_V1_ReportDeviceConfiguration(DAC960_Controller_T
2240 *Controller)
2242 int LogicalDriveNumber, Channel, TargetID;
2243 DAC960_Info(" Physical Devices:\n", Controller);
2244 for (Channel = 0; Channel < Controller->Channels; Channel++)
2245 for (TargetID = 0; TargetID < Controller->Targets; TargetID++)
2247 DAC960_SCSI_Inquiry_T *InquiryStandardData =
2248 &Controller->V1.InquiryStandardData[Channel][TargetID];
2249 DAC960_SCSI_Inquiry_UnitSerialNumber_T *InquiryUnitSerialNumber =
2250 &Controller->V1.InquiryUnitSerialNumber[Channel][TargetID];
2251 DAC960_V1_DeviceState_T *DeviceState =
2252 &Controller->V1.DeviceState[Channel][TargetID];
2253 DAC960_V1_ErrorTableEntry_T *ErrorEntry =
2254 &Controller->V1.ErrorTable.ErrorTableEntries[Channel][TargetID];
2255 char Vendor[1+sizeof(InquiryStandardData->VendorIdentification)];
2256 char Model[1+sizeof(InquiryStandardData->ProductIdentification)];
2257 char Revision[1+sizeof(InquiryStandardData->ProductRevisionLevel)];
2258 char SerialNumber[1+sizeof(InquiryUnitSerialNumber
2259 ->ProductSerialNumber)];
2260 if (InquiryStandardData->PeripheralDeviceType == 0x1F) continue;
2261 DAC960_SanitizeInquiryData(InquiryStandardData, InquiryUnitSerialNumber,
2262 Vendor, Model, Revision, SerialNumber);
2263 DAC960_Info(" %d:%d%s Vendor: %s Model: %s Revision: %s\n",
2264 Controller, Channel, TargetID, (TargetID < 10 ? " " : ""),
2265 Vendor, Model, Revision);
2266 if (InquiryUnitSerialNumber->PeripheralDeviceType != 0x1F)
2267 DAC960_Info(" Serial Number: %s\n", Controller, SerialNumber);
2268 if (DeviceState->Present &&
2269 DeviceState->DeviceType == DAC960_V1_DiskType)
2271 if (Controller->V1.DeviceResetCount[Channel][TargetID] > 0)
2272 DAC960_Info(" Disk Status: %s, %u blocks, %d resets\n",
2273 Controller,
2274 (DeviceState->DeviceState == DAC960_V1_Device_Dead
2275 ? "Dead"
2276 : DeviceState->DeviceState
2277 == DAC960_V1_Device_WriteOnly
2278 ? "Write-Only"
2279 : DeviceState->DeviceState
2280 == DAC960_V1_Device_Online
2281 ? "Online" : "Standby"),
2282 DeviceState->DiskSize,
2283 Controller->V1.DeviceResetCount[Channel][TargetID]);
2284 else
2285 DAC960_Info(" Disk Status: %s, %u blocks\n", Controller,
2286 (DeviceState->DeviceState == DAC960_V1_Device_Dead
2287 ? "Dead"
2288 : DeviceState->DeviceState
2289 == DAC960_V1_Device_WriteOnly
2290 ? "Write-Only"
2291 : DeviceState->DeviceState
2292 == DAC960_V1_Device_Online
2293 ? "Online" : "Standby"),
2294 DeviceState->DiskSize);
2296 if (ErrorEntry->ParityErrorCount > 0 ||
2297 ErrorEntry->SoftErrorCount > 0 ||
2298 ErrorEntry->HardErrorCount > 0 ||
2299 ErrorEntry->MiscErrorCount > 0)
2300 DAC960_Info(" Errors - Parity: %d, Soft: %d, "
2301 "Hard: %d, Misc: %d\n", Controller,
2302 ErrorEntry->ParityErrorCount,
2303 ErrorEntry->SoftErrorCount,
2304 ErrorEntry->HardErrorCount,
2305 ErrorEntry->MiscErrorCount);
2307 DAC960_Info(" Logical Drives:\n", Controller);
2308 for (LogicalDriveNumber = 0;
2309 LogicalDriveNumber < Controller->LogicalDriveCount;
2310 LogicalDriveNumber++)
2312 DAC960_V1_LogicalDriveInformation_T *LogicalDriveInformation =
2313 &Controller->V1.LogicalDriveInformation[LogicalDriveNumber];
2314 DAC960_Info(" /dev/rd/c%dd%d: RAID-%d, %s, %u blocks, %s\n",
2315 Controller, Controller->ControllerNumber, LogicalDriveNumber,
2316 LogicalDriveInformation->RAIDLevel,
2317 (LogicalDriveInformation->LogicalDriveState
2318 == DAC960_V1_LogicalDrive_Online
2319 ? "Online"
2320 : LogicalDriveInformation->LogicalDriveState
2321 == DAC960_V1_LogicalDrive_Critical
2322 ? "Critical" : "Offline"),
2323 LogicalDriveInformation->LogicalDriveSize,
2324 (LogicalDriveInformation->WriteBack
2325 ? "Write Back" : "Write Thru"));
2327 return true;
2332 DAC960_V2_ReportDeviceConfiguration reports the Device Configuration
2333 Information for DAC960 V2 Firmware Controllers.
2336 static bool DAC960_V2_ReportDeviceConfiguration(DAC960_Controller_T
2337 *Controller)
2339 int PhysicalDeviceIndex, LogicalDriveNumber;
2340 DAC960_Info(" Physical Devices:\n", Controller);
2341 for (PhysicalDeviceIndex = 0;
2342 PhysicalDeviceIndex < DAC960_V2_MaxPhysicalDevices;
2343 PhysicalDeviceIndex++)
2345 DAC960_V2_PhysicalDeviceInfo_T *PhysicalDeviceInfo =
2346 Controller->V2.PhysicalDeviceInformation[PhysicalDeviceIndex];
2347 DAC960_SCSI_Inquiry_T *InquiryStandardData =
2348 (DAC960_SCSI_Inquiry_T *) &PhysicalDeviceInfo->SCSI_InquiryData;
2349 DAC960_SCSI_Inquiry_UnitSerialNumber_T *InquiryUnitSerialNumber =
2350 Controller->V2.InquiryUnitSerialNumber[PhysicalDeviceIndex];
2351 char Vendor[1+sizeof(InquiryStandardData->VendorIdentification)];
2352 char Model[1+sizeof(InquiryStandardData->ProductIdentification)];
2353 char Revision[1+sizeof(InquiryStandardData->ProductRevisionLevel)];
2354 char SerialNumber[1+sizeof(InquiryUnitSerialNumber->ProductSerialNumber)];
2355 if (PhysicalDeviceInfo == NULL) break;
2356 DAC960_SanitizeInquiryData(InquiryStandardData, InquiryUnitSerialNumber,
2357 Vendor, Model, Revision, SerialNumber);
2358 DAC960_Info(" %d:%d%s Vendor: %s Model: %s Revision: %s\n",
2359 Controller,
2360 PhysicalDeviceInfo->Channel,
2361 PhysicalDeviceInfo->TargetID,
2362 (PhysicalDeviceInfo->TargetID < 10 ? " " : ""),
2363 Vendor, Model, Revision);
2364 if (PhysicalDeviceInfo->NegotiatedSynchronousMegaTransfers == 0)
2365 DAC960_Info(" %sAsynchronous\n", Controller,
2366 (PhysicalDeviceInfo->NegotiatedDataWidthBits == 16
2367 ? "Wide " :""));
2368 else
2369 DAC960_Info(" %sSynchronous at %d MB/sec\n", Controller,
2370 (PhysicalDeviceInfo->NegotiatedDataWidthBits == 16
2371 ? "Wide " :""),
2372 (PhysicalDeviceInfo->NegotiatedSynchronousMegaTransfers
2373 * PhysicalDeviceInfo->NegotiatedDataWidthBits/8));
2374 if (InquiryUnitSerialNumber->PeripheralDeviceType != 0x1F)
2375 DAC960_Info(" Serial Number: %s\n", Controller, SerialNumber);
2376 if (PhysicalDeviceInfo->PhysicalDeviceState ==
2377 DAC960_V2_Device_Unconfigured)
2378 continue;
2379 DAC960_Info(" Disk Status: %s, %u blocks\n", Controller,
2380 (PhysicalDeviceInfo->PhysicalDeviceState
2381 == DAC960_V2_Device_Online
2382 ? "Online"
2383 : PhysicalDeviceInfo->PhysicalDeviceState
2384 == DAC960_V2_Device_Rebuild
2385 ? "Rebuild"
2386 : PhysicalDeviceInfo->PhysicalDeviceState
2387 == DAC960_V2_Device_Missing
2388 ? "Missing"
2389 : PhysicalDeviceInfo->PhysicalDeviceState
2390 == DAC960_V2_Device_Critical
2391 ? "Critical"
2392 : PhysicalDeviceInfo->PhysicalDeviceState
2393 == DAC960_V2_Device_Dead
2394 ? "Dead"
2395 : PhysicalDeviceInfo->PhysicalDeviceState
2396 == DAC960_V2_Device_SuspectedDead
2397 ? "Suspected-Dead"
2398 : PhysicalDeviceInfo->PhysicalDeviceState
2399 == DAC960_V2_Device_CommandedOffline
2400 ? "Commanded-Offline"
2401 : PhysicalDeviceInfo->PhysicalDeviceState
2402 == DAC960_V2_Device_Standby
2403 ? "Standby" : "Unknown"),
2404 PhysicalDeviceInfo->ConfigurableDeviceSize);
2405 if (PhysicalDeviceInfo->ParityErrors == 0 &&
2406 PhysicalDeviceInfo->SoftErrors == 0 &&
2407 PhysicalDeviceInfo->HardErrors == 0 &&
2408 PhysicalDeviceInfo->MiscellaneousErrors == 0 &&
2409 PhysicalDeviceInfo->CommandTimeouts == 0 &&
2410 PhysicalDeviceInfo->Retries == 0 &&
2411 PhysicalDeviceInfo->Aborts == 0 &&
2412 PhysicalDeviceInfo->PredictedFailuresDetected == 0)
2413 continue;
2414 DAC960_Info(" Errors - Parity: %d, Soft: %d, "
2415 "Hard: %d, Misc: %d\n", Controller,
2416 PhysicalDeviceInfo->ParityErrors,
2417 PhysicalDeviceInfo->SoftErrors,
2418 PhysicalDeviceInfo->HardErrors,
2419 PhysicalDeviceInfo->MiscellaneousErrors);
2420 DAC960_Info(" Timeouts: %d, Retries: %d, "
2421 "Aborts: %d, Predicted: %d\n", Controller,
2422 PhysicalDeviceInfo->CommandTimeouts,
2423 PhysicalDeviceInfo->Retries,
2424 PhysicalDeviceInfo->Aborts,
2425 PhysicalDeviceInfo->PredictedFailuresDetected);
2427 DAC960_Info(" Logical Drives:\n", Controller);
2428 for (LogicalDriveNumber = 0;
2429 LogicalDriveNumber < DAC960_MaxLogicalDrives;
2430 LogicalDriveNumber++)
2432 DAC960_V2_LogicalDeviceInfo_T *LogicalDeviceInfo =
2433 Controller->V2.LogicalDeviceInformation[LogicalDriveNumber];
2434 unsigned char *ReadCacheStatus[] = { "Read Cache Disabled",
2435 "Read Cache Enabled",
2436 "Read Ahead Enabled",
2437 "Intelligent Read Ahead Enabled",
2438 "-", "-", "-", "-" };
2439 unsigned char *WriteCacheStatus[] = { "Write Cache Disabled",
2440 "Logical Device Read Only",
2441 "Write Cache Enabled",
2442 "Intelligent Write Cache Enabled",
2443 "-", "-", "-", "-" };
2444 unsigned char *GeometryTranslation;
2445 if (LogicalDeviceInfo == NULL) continue;
2446 switch (LogicalDeviceInfo->DriveGeometry)
2448 case DAC960_V2_Geometry_128_32:
2449 GeometryTranslation = "128/32";
2450 break;
2451 case DAC960_V2_Geometry_255_63:
2452 GeometryTranslation = "255/63";
2453 break;
2454 default:
2455 GeometryTranslation = "Invalid";
2456 DAC960_Error("Illegal Logical Device Geometry %d\n",
2457 Controller, LogicalDeviceInfo->DriveGeometry);
2458 break;
2460 DAC960_Info(" /dev/rd/c%dd%d: RAID-%d, %s, %u blocks\n",
2461 Controller, Controller->ControllerNumber, LogicalDriveNumber,
2462 LogicalDeviceInfo->RAIDLevel,
2463 (LogicalDeviceInfo->LogicalDeviceState
2464 == DAC960_V2_LogicalDevice_Online
2465 ? "Online"
2466 : LogicalDeviceInfo->LogicalDeviceState
2467 == DAC960_V2_LogicalDevice_Critical
2468 ? "Critical" : "Offline"),
2469 LogicalDeviceInfo->ConfigurableDeviceSize);
2470 DAC960_Info(" Logical Device %s, BIOS Geometry: %s\n",
2471 Controller,
2472 (LogicalDeviceInfo->LogicalDeviceControl
2473 .LogicalDeviceInitialized
2474 ? "Initialized" : "Uninitialized"),
2475 GeometryTranslation);
2476 if (LogicalDeviceInfo->StripeSize == 0)
2478 if (LogicalDeviceInfo->CacheLineSize == 0)
2479 DAC960_Info(" Stripe Size: N/A, "
2480 "Segment Size: N/A\n", Controller);
2481 else
2482 DAC960_Info(" Stripe Size: N/A, "
2483 "Segment Size: %dKB\n", Controller,
2484 1 << (LogicalDeviceInfo->CacheLineSize - 2));
2486 else
2488 if (LogicalDeviceInfo->CacheLineSize == 0)
2489 DAC960_Info(" Stripe Size: %dKB, "
2490 "Segment Size: N/A\n", Controller,
2491 1 << (LogicalDeviceInfo->StripeSize - 2));
2492 else
2493 DAC960_Info(" Stripe Size: %dKB, "
2494 "Segment Size: %dKB\n", Controller,
2495 1 << (LogicalDeviceInfo->StripeSize - 2),
2496 1 << (LogicalDeviceInfo->CacheLineSize - 2));
2498 DAC960_Info(" %s, %s\n", Controller,
2499 ReadCacheStatus[
2500 LogicalDeviceInfo->LogicalDeviceControl.ReadCache],
2501 WriteCacheStatus[
2502 LogicalDeviceInfo->LogicalDeviceControl.WriteCache]);
2503 if (LogicalDeviceInfo->SoftErrors > 0 ||
2504 LogicalDeviceInfo->CommandsFailed > 0 ||
2505 LogicalDeviceInfo->DeferredWriteErrors)
2506 DAC960_Info(" Errors - Soft: %d, Failed: %d, "
2507 "Deferred Write: %d\n", Controller,
2508 LogicalDeviceInfo->SoftErrors,
2509 LogicalDeviceInfo->CommandsFailed,
2510 LogicalDeviceInfo->DeferredWriteErrors);
2513 return true;
2517 DAC960_RegisterBlockDevice registers the Block Device structures
2518 associated with Controller.
2521 static bool DAC960_RegisterBlockDevice(DAC960_Controller_T *Controller)
2523 int MajorNumber = DAC960_MAJOR + Controller->ControllerNumber;
2524 int n;
2527 Register the Block Device Major Number for this DAC960 Controller.
2529 if (register_blkdev(MajorNumber, "dac960") < 0)
2530 return false;
2532 for (n = 0; n < DAC960_MaxLogicalDrives; n++) {
2533 struct gendisk *disk = Controller->disks[n];
2534 struct request_queue *RequestQueue;
2536 /* for now, let all request queues share controller's lock */
2537 RequestQueue = blk_init_queue(DAC960_RequestFunction,&Controller->queue_lock);
2538 if (!RequestQueue) {
2539 printk("DAC960: failure to allocate request queue\n");
2540 continue;
2542 Controller->RequestQueue[n] = RequestQueue;
2543 blk_queue_bounce_limit(RequestQueue, Controller->BounceBufferLimit);
2544 RequestQueue->queuedata = Controller;
2545 blk_queue_max_segments(RequestQueue, Controller->DriverScatterGatherLimit);
2546 blk_queue_max_hw_sectors(RequestQueue, Controller->MaxBlocksPerCommand);
2547 disk->queue = RequestQueue;
2548 sprintf(disk->disk_name, "rd/c%dd%d", Controller->ControllerNumber, n);
2549 disk->major = MajorNumber;
2550 disk->first_minor = n << DAC960_MaxPartitionsBits;
2551 disk->fops = &DAC960_BlockDeviceOperations;
2554 Indicate the Block Device Registration completed successfully,
2556 return true;
2561 DAC960_UnregisterBlockDevice unregisters the Block Device structures
2562 associated with Controller.
2565 static void DAC960_UnregisterBlockDevice(DAC960_Controller_T *Controller)
2567 int MajorNumber = DAC960_MAJOR + Controller->ControllerNumber;
2568 int disk;
2570 /* does order matter when deleting gendisk and cleanup in request queue? */
2571 for (disk = 0; disk < DAC960_MaxLogicalDrives; disk++) {
2572 del_gendisk(Controller->disks[disk]);
2573 blk_cleanup_queue(Controller->RequestQueue[disk]);
2574 Controller->RequestQueue[disk] = NULL;
2578 Unregister the Block Device Major Number for this DAC960 Controller.
2580 unregister_blkdev(MajorNumber, "dac960");
2584 DAC960_ComputeGenericDiskInfo computes the values for the Generic Disk
2585 Information Partition Sector Counts and Block Sizes.
2588 static void DAC960_ComputeGenericDiskInfo(DAC960_Controller_T *Controller)
2590 int disk;
2591 for (disk = 0; disk < DAC960_MaxLogicalDrives; disk++)
2592 set_capacity(Controller->disks[disk], disk_size(Controller, disk));
2596 DAC960_ReportErrorStatus reports Controller BIOS Messages passed through
2597 the Error Status Register when the driver performs the BIOS handshaking.
2598 It returns true for fatal errors and false otherwise.
2601 static bool DAC960_ReportErrorStatus(DAC960_Controller_T *Controller,
2602 unsigned char ErrorStatus,
2603 unsigned char Parameter0,
2604 unsigned char Parameter1)
2606 switch (ErrorStatus)
2608 case 0x00:
2609 DAC960_Notice("Physical Device %d:%d Not Responding\n",
2610 Controller, Parameter1, Parameter0);
2611 break;
2612 case 0x08:
2613 if (Controller->DriveSpinUpMessageDisplayed) break;
2614 DAC960_Notice("Spinning Up Drives\n", Controller);
2615 Controller->DriveSpinUpMessageDisplayed = true;
2616 break;
2617 case 0x30:
2618 DAC960_Notice("Configuration Checksum Error\n", Controller);
2619 break;
2620 case 0x60:
2621 DAC960_Notice("Mirror Race Recovery Failed\n", Controller);
2622 break;
2623 case 0x70:
2624 DAC960_Notice("Mirror Race Recovery In Progress\n", Controller);
2625 break;
2626 case 0x90:
2627 DAC960_Notice("Physical Device %d:%d COD Mismatch\n",
2628 Controller, Parameter1, Parameter0);
2629 break;
2630 case 0xA0:
2631 DAC960_Notice("Logical Drive Installation Aborted\n", Controller);
2632 break;
2633 case 0xB0:
2634 DAC960_Notice("Mirror Race On A Critical Logical Drive\n", Controller);
2635 break;
2636 case 0xD0:
2637 DAC960_Notice("New Controller Configuration Found\n", Controller);
2638 break;
2639 case 0xF0:
2640 DAC960_Error("Fatal Memory Parity Error for Controller at\n", Controller);
2641 return true;
2642 default:
2643 DAC960_Error("Unknown Initialization Error %02X for Controller at\n",
2644 Controller, ErrorStatus);
2645 return true;
2647 return false;
2652 * DAC960_DetectCleanup releases the resources that were allocated
2653 * during DAC960_DetectController(). DAC960_DetectController can
2654 * has several internal failure points, so not ALL resources may
2655 * have been allocated. It's important to free only
2656 * resources that HAVE been allocated. The code below always
2657 * tests that the resource has been allocated before attempting to
2658 * free it.
2660 static void DAC960_DetectCleanup(DAC960_Controller_T *Controller)
2662 int i;
2664 /* Free the memory mailbox, status, and related structures */
2665 free_dma_loaf(Controller->PCIDevice, &Controller->DmaPages);
2666 if (Controller->MemoryMappedAddress) {
2667 switch(Controller->HardwareType)
2669 case DAC960_GEM_Controller:
2670 DAC960_GEM_DisableInterrupts(Controller->BaseAddress);
2671 break;
2672 case DAC960_BA_Controller:
2673 DAC960_BA_DisableInterrupts(Controller->BaseAddress);
2674 break;
2675 case DAC960_LP_Controller:
2676 DAC960_LP_DisableInterrupts(Controller->BaseAddress);
2677 break;
2678 case DAC960_LA_Controller:
2679 DAC960_LA_DisableInterrupts(Controller->BaseAddress);
2680 break;
2681 case DAC960_PG_Controller:
2682 DAC960_PG_DisableInterrupts(Controller->BaseAddress);
2683 break;
2684 case DAC960_PD_Controller:
2685 DAC960_PD_DisableInterrupts(Controller->BaseAddress);
2686 break;
2687 case DAC960_P_Controller:
2688 DAC960_PD_DisableInterrupts(Controller->BaseAddress);
2689 break;
2691 iounmap(Controller->MemoryMappedAddress);
2693 if (Controller->IRQ_Channel)
2694 free_irq(Controller->IRQ_Channel, Controller);
2695 if (Controller->IO_Address)
2696 release_region(Controller->IO_Address, 0x80);
2697 pci_disable_device(Controller->PCIDevice);
2698 for (i = 0; (i < DAC960_MaxLogicalDrives) && Controller->disks[i]; i++)
2699 put_disk(Controller->disks[i]);
2700 DAC960_Controllers[Controller->ControllerNumber] = NULL;
2701 kfree(Controller);
2706 DAC960_DetectController detects Mylex DAC960/AcceleRAID/eXtremeRAID
2707 PCI RAID Controllers by interrogating the PCI Configuration Space for
2708 Controller Type.
2711 static DAC960_Controller_T *
2712 DAC960_DetectController(struct pci_dev *PCI_Device,
2713 const struct pci_device_id *entry)
2715 struct DAC960_privdata *privdata =
2716 (struct DAC960_privdata *)entry->driver_data;
2717 irq_handler_t InterruptHandler = privdata->InterruptHandler;
2718 unsigned int MemoryWindowSize = privdata->MemoryWindowSize;
2719 DAC960_Controller_T *Controller = NULL;
2720 unsigned char DeviceFunction = PCI_Device->devfn;
2721 unsigned char ErrorStatus, Parameter0, Parameter1;
2722 unsigned int IRQ_Channel;
2723 void __iomem *BaseAddress;
2724 int i;
2726 Controller = kzalloc(sizeof(DAC960_Controller_T), GFP_ATOMIC);
2727 if (Controller == NULL) {
2728 DAC960_Error("Unable to allocate Controller structure for "
2729 "Controller at\n", NULL);
2730 return NULL;
2732 Controller->ControllerNumber = DAC960_ControllerCount;
2733 DAC960_Controllers[DAC960_ControllerCount++] = Controller;
2734 Controller->Bus = PCI_Device->bus->number;
2735 Controller->FirmwareType = privdata->FirmwareType;
2736 Controller->HardwareType = privdata->HardwareType;
2737 Controller->Device = DeviceFunction >> 3;
2738 Controller->Function = DeviceFunction & 0x7;
2739 Controller->PCIDevice = PCI_Device;
2740 strcpy(Controller->FullModelName, "DAC960");
2742 if (pci_enable_device(PCI_Device))
2743 goto Failure;
2745 switch (Controller->HardwareType)
2747 case DAC960_GEM_Controller:
2748 Controller->PCI_Address = pci_resource_start(PCI_Device, 0);
2749 break;
2750 case DAC960_BA_Controller:
2751 Controller->PCI_Address = pci_resource_start(PCI_Device, 0);
2752 break;
2753 case DAC960_LP_Controller:
2754 Controller->PCI_Address = pci_resource_start(PCI_Device, 0);
2755 break;
2756 case DAC960_LA_Controller:
2757 Controller->PCI_Address = pci_resource_start(PCI_Device, 0);
2758 break;
2759 case DAC960_PG_Controller:
2760 Controller->PCI_Address = pci_resource_start(PCI_Device, 0);
2761 break;
2762 case DAC960_PD_Controller:
2763 Controller->IO_Address = pci_resource_start(PCI_Device, 0);
2764 Controller->PCI_Address = pci_resource_start(PCI_Device, 1);
2765 break;
2766 case DAC960_P_Controller:
2767 Controller->IO_Address = pci_resource_start(PCI_Device, 0);
2768 Controller->PCI_Address = pci_resource_start(PCI_Device, 1);
2769 break;
2772 pci_set_drvdata(PCI_Device, (void *)((long)Controller->ControllerNumber));
2773 for (i = 0; i < DAC960_MaxLogicalDrives; i++) {
2774 Controller->disks[i] = alloc_disk(1<<DAC960_MaxPartitionsBits);
2775 if (!Controller->disks[i])
2776 goto Failure;
2777 Controller->disks[i]->private_data = (void *)((long)i);
2779 init_waitqueue_head(&Controller->CommandWaitQueue);
2780 init_waitqueue_head(&Controller->HealthStatusWaitQueue);
2781 spin_lock_init(&Controller->queue_lock);
2782 DAC960_AnnounceDriver(Controller);
2784 Map the Controller Register Window.
2786 if (MemoryWindowSize < PAGE_SIZE)
2787 MemoryWindowSize = PAGE_SIZE;
2788 Controller->MemoryMappedAddress =
2789 ioremap_nocache(Controller->PCI_Address & PAGE_MASK, MemoryWindowSize);
2790 Controller->BaseAddress =
2791 Controller->MemoryMappedAddress + (Controller->PCI_Address & ~PAGE_MASK);
2792 if (Controller->MemoryMappedAddress == NULL)
2794 DAC960_Error("Unable to map Controller Register Window for "
2795 "Controller at\n", Controller);
2796 goto Failure;
2798 BaseAddress = Controller->BaseAddress;
2799 switch (Controller->HardwareType)
2801 case DAC960_GEM_Controller:
2802 DAC960_GEM_DisableInterrupts(BaseAddress);
2803 DAC960_GEM_AcknowledgeHardwareMailboxStatus(BaseAddress);
2804 udelay(1000);
2805 while (DAC960_GEM_InitializationInProgressP(BaseAddress))
2807 if (DAC960_GEM_ReadErrorStatus(BaseAddress, &ErrorStatus,
2808 &Parameter0, &Parameter1) &&
2809 DAC960_ReportErrorStatus(Controller, ErrorStatus,
2810 Parameter0, Parameter1))
2811 goto Failure;
2812 udelay(10);
2814 if (!DAC960_V2_EnableMemoryMailboxInterface(Controller))
2816 DAC960_Error("Unable to Enable Memory Mailbox Interface "
2817 "for Controller at\n", Controller);
2818 goto Failure;
2820 DAC960_GEM_EnableInterrupts(BaseAddress);
2821 Controller->QueueCommand = DAC960_GEM_QueueCommand;
2822 Controller->ReadControllerConfiguration =
2823 DAC960_V2_ReadControllerConfiguration;
2824 Controller->ReadDeviceConfiguration =
2825 DAC960_V2_ReadDeviceConfiguration;
2826 Controller->ReportDeviceConfiguration =
2827 DAC960_V2_ReportDeviceConfiguration;
2828 Controller->QueueReadWriteCommand =
2829 DAC960_V2_QueueReadWriteCommand;
2830 break;
2831 case DAC960_BA_Controller:
2832 DAC960_BA_DisableInterrupts(BaseAddress);
2833 DAC960_BA_AcknowledgeHardwareMailboxStatus(BaseAddress);
2834 udelay(1000);
2835 while (DAC960_BA_InitializationInProgressP(BaseAddress))
2837 if (DAC960_BA_ReadErrorStatus(BaseAddress, &ErrorStatus,
2838 &Parameter0, &Parameter1) &&
2839 DAC960_ReportErrorStatus(Controller, ErrorStatus,
2840 Parameter0, Parameter1))
2841 goto Failure;
2842 udelay(10);
2844 if (!DAC960_V2_EnableMemoryMailboxInterface(Controller))
2846 DAC960_Error("Unable to Enable Memory Mailbox Interface "
2847 "for Controller at\n", Controller);
2848 goto Failure;
2850 DAC960_BA_EnableInterrupts(BaseAddress);
2851 Controller->QueueCommand = DAC960_BA_QueueCommand;
2852 Controller->ReadControllerConfiguration =
2853 DAC960_V2_ReadControllerConfiguration;
2854 Controller->ReadDeviceConfiguration =
2855 DAC960_V2_ReadDeviceConfiguration;
2856 Controller->ReportDeviceConfiguration =
2857 DAC960_V2_ReportDeviceConfiguration;
2858 Controller->QueueReadWriteCommand =
2859 DAC960_V2_QueueReadWriteCommand;
2860 break;
2861 case DAC960_LP_Controller:
2862 DAC960_LP_DisableInterrupts(BaseAddress);
2863 DAC960_LP_AcknowledgeHardwareMailboxStatus(BaseAddress);
2864 udelay(1000);
2865 while (DAC960_LP_InitializationInProgressP(BaseAddress))
2867 if (DAC960_LP_ReadErrorStatus(BaseAddress, &ErrorStatus,
2868 &Parameter0, &Parameter1) &&
2869 DAC960_ReportErrorStatus(Controller, ErrorStatus,
2870 Parameter0, Parameter1))
2871 goto Failure;
2872 udelay(10);
2874 if (!DAC960_V2_EnableMemoryMailboxInterface(Controller))
2876 DAC960_Error("Unable to Enable Memory Mailbox Interface "
2877 "for Controller at\n", Controller);
2878 goto Failure;
2880 DAC960_LP_EnableInterrupts(BaseAddress);
2881 Controller->QueueCommand = DAC960_LP_QueueCommand;
2882 Controller->ReadControllerConfiguration =
2883 DAC960_V2_ReadControllerConfiguration;
2884 Controller->ReadDeviceConfiguration =
2885 DAC960_V2_ReadDeviceConfiguration;
2886 Controller->ReportDeviceConfiguration =
2887 DAC960_V2_ReportDeviceConfiguration;
2888 Controller->QueueReadWriteCommand =
2889 DAC960_V2_QueueReadWriteCommand;
2890 break;
2891 case DAC960_LA_Controller:
2892 DAC960_LA_DisableInterrupts(BaseAddress);
2893 DAC960_LA_AcknowledgeHardwareMailboxStatus(BaseAddress);
2894 udelay(1000);
2895 while (DAC960_LA_InitializationInProgressP(BaseAddress))
2897 if (DAC960_LA_ReadErrorStatus(BaseAddress, &ErrorStatus,
2898 &Parameter0, &Parameter1) &&
2899 DAC960_ReportErrorStatus(Controller, ErrorStatus,
2900 Parameter0, Parameter1))
2901 goto Failure;
2902 udelay(10);
2904 if (!DAC960_V1_EnableMemoryMailboxInterface(Controller))
2906 DAC960_Error("Unable to Enable Memory Mailbox Interface "
2907 "for Controller at\n", Controller);
2908 goto Failure;
2910 DAC960_LA_EnableInterrupts(BaseAddress);
2911 if (Controller->V1.DualModeMemoryMailboxInterface)
2912 Controller->QueueCommand = DAC960_LA_QueueCommandDualMode;
2913 else Controller->QueueCommand = DAC960_LA_QueueCommandSingleMode;
2914 Controller->ReadControllerConfiguration =
2915 DAC960_V1_ReadControllerConfiguration;
2916 Controller->ReadDeviceConfiguration =
2917 DAC960_V1_ReadDeviceConfiguration;
2918 Controller->ReportDeviceConfiguration =
2919 DAC960_V1_ReportDeviceConfiguration;
2920 Controller->QueueReadWriteCommand =
2921 DAC960_V1_QueueReadWriteCommand;
2922 break;
2923 case DAC960_PG_Controller:
2924 DAC960_PG_DisableInterrupts(BaseAddress);
2925 DAC960_PG_AcknowledgeHardwareMailboxStatus(BaseAddress);
2926 udelay(1000);
2927 while (DAC960_PG_InitializationInProgressP(BaseAddress))
2929 if (DAC960_PG_ReadErrorStatus(BaseAddress, &ErrorStatus,
2930 &Parameter0, &Parameter1) &&
2931 DAC960_ReportErrorStatus(Controller, ErrorStatus,
2932 Parameter0, Parameter1))
2933 goto Failure;
2934 udelay(10);
2936 if (!DAC960_V1_EnableMemoryMailboxInterface(Controller))
2938 DAC960_Error("Unable to Enable Memory Mailbox Interface "
2939 "for Controller at\n", Controller);
2940 goto Failure;
2942 DAC960_PG_EnableInterrupts(BaseAddress);
2943 if (Controller->V1.DualModeMemoryMailboxInterface)
2944 Controller->QueueCommand = DAC960_PG_QueueCommandDualMode;
2945 else Controller->QueueCommand = DAC960_PG_QueueCommandSingleMode;
2946 Controller->ReadControllerConfiguration =
2947 DAC960_V1_ReadControllerConfiguration;
2948 Controller->ReadDeviceConfiguration =
2949 DAC960_V1_ReadDeviceConfiguration;
2950 Controller->ReportDeviceConfiguration =
2951 DAC960_V1_ReportDeviceConfiguration;
2952 Controller->QueueReadWriteCommand =
2953 DAC960_V1_QueueReadWriteCommand;
2954 break;
2955 case DAC960_PD_Controller:
2956 if (!request_region(Controller->IO_Address, 0x80,
2957 Controller->FullModelName)) {
2958 DAC960_Error("IO port 0x%lx busy for Controller at\n",
2959 Controller, Controller->IO_Address);
2960 goto Failure;
2962 DAC960_PD_DisableInterrupts(BaseAddress);
2963 DAC960_PD_AcknowledgeStatus(BaseAddress);
2964 udelay(1000);
2965 while (DAC960_PD_InitializationInProgressP(BaseAddress))
2967 if (DAC960_PD_ReadErrorStatus(BaseAddress, &ErrorStatus,
2968 &Parameter0, &Parameter1) &&
2969 DAC960_ReportErrorStatus(Controller, ErrorStatus,
2970 Parameter0, Parameter1))
2971 goto Failure;
2972 udelay(10);
2974 if (!DAC960_V1_EnableMemoryMailboxInterface(Controller))
2976 DAC960_Error("Unable to allocate DMA mapped memory "
2977 "for Controller at\n", Controller);
2978 goto Failure;
2980 DAC960_PD_EnableInterrupts(BaseAddress);
2981 Controller->QueueCommand = DAC960_PD_QueueCommand;
2982 Controller->ReadControllerConfiguration =
2983 DAC960_V1_ReadControllerConfiguration;
2984 Controller->ReadDeviceConfiguration =
2985 DAC960_V1_ReadDeviceConfiguration;
2986 Controller->ReportDeviceConfiguration =
2987 DAC960_V1_ReportDeviceConfiguration;
2988 Controller->QueueReadWriteCommand =
2989 DAC960_V1_QueueReadWriteCommand;
2990 break;
2991 case DAC960_P_Controller:
2992 if (!request_region(Controller->IO_Address, 0x80,
2993 Controller->FullModelName)){
2994 DAC960_Error("IO port 0x%lx busy for Controller at\n",
2995 Controller, Controller->IO_Address);
2996 goto Failure;
2998 DAC960_PD_DisableInterrupts(BaseAddress);
2999 DAC960_PD_AcknowledgeStatus(BaseAddress);
3000 udelay(1000);
3001 while (DAC960_PD_InitializationInProgressP(BaseAddress))
3003 if (DAC960_PD_ReadErrorStatus(BaseAddress, &ErrorStatus,
3004 &Parameter0, &Parameter1) &&
3005 DAC960_ReportErrorStatus(Controller, ErrorStatus,
3006 Parameter0, Parameter1))
3007 goto Failure;
3008 udelay(10);
3010 if (!DAC960_V1_EnableMemoryMailboxInterface(Controller))
3012 DAC960_Error("Unable to allocate DMA mapped memory"
3013 "for Controller at\n", Controller);
3014 goto Failure;
3016 DAC960_PD_EnableInterrupts(BaseAddress);
3017 Controller->QueueCommand = DAC960_P_QueueCommand;
3018 Controller->ReadControllerConfiguration =
3019 DAC960_V1_ReadControllerConfiguration;
3020 Controller->ReadDeviceConfiguration =
3021 DAC960_V1_ReadDeviceConfiguration;
3022 Controller->ReportDeviceConfiguration =
3023 DAC960_V1_ReportDeviceConfiguration;
3024 Controller->QueueReadWriteCommand =
3025 DAC960_V1_QueueReadWriteCommand;
3026 break;
3029 Acquire shared access to the IRQ Channel.
3031 IRQ_Channel = PCI_Device->irq;
3032 if (request_irq(IRQ_Channel, InterruptHandler, IRQF_SHARED,
3033 Controller->FullModelName, Controller) < 0)
3035 DAC960_Error("Unable to acquire IRQ Channel %d for Controller at\n",
3036 Controller, Controller->IRQ_Channel);
3037 goto Failure;
3039 Controller->IRQ_Channel = IRQ_Channel;
3040 Controller->InitialCommand.CommandIdentifier = 1;
3041 Controller->InitialCommand.Controller = Controller;
3042 Controller->Commands[0] = &Controller->InitialCommand;
3043 Controller->FreeCommands = &Controller->InitialCommand;
3044 return Controller;
3046 Failure:
3047 if (Controller->IO_Address == 0)
3048 DAC960_Error("PCI Bus %d Device %d Function %d I/O Address N/A "
3049 "PCI Address 0x%X\n", Controller,
3050 Controller->Bus, Controller->Device,
3051 Controller->Function, Controller->PCI_Address);
3052 else
3053 DAC960_Error("PCI Bus %d Device %d Function %d I/O Address "
3054 "0x%X PCI Address 0x%X\n", Controller,
3055 Controller->Bus, Controller->Device,
3056 Controller->Function, Controller->IO_Address,
3057 Controller->PCI_Address);
3058 DAC960_DetectCleanup(Controller);
3059 DAC960_ControllerCount--;
3060 return NULL;
3064 DAC960_InitializeController initializes Controller.
3067 static bool
3068 DAC960_InitializeController(DAC960_Controller_T *Controller)
3070 if (DAC960_ReadControllerConfiguration(Controller) &&
3071 DAC960_ReportControllerConfiguration(Controller) &&
3072 DAC960_CreateAuxiliaryStructures(Controller) &&
3073 DAC960_ReadDeviceConfiguration(Controller) &&
3074 DAC960_ReportDeviceConfiguration(Controller) &&
3075 DAC960_RegisterBlockDevice(Controller))
3078 Initialize the Monitoring Timer.
3080 timer_setup(&Controller->MonitoringTimer,
3081 DAC960_MonitoringTimerFunction, 0);
3082 Controller->MonitoringTimer.expires =
3083 jiffies + DAC960_MonitoringTimerInterval;
3084 add_timer(&Controller->MonitoringTimer);
3085 Controller->ControllerInitialized = true;
3086 return true;
3088 return false;
3093 DAC960_FinalizeController finalizes Controller.
3096 static void DAC960_FinalizeController(DAC960_Controller_T *Controller)
3098 if (Controller->ControllerInitialized)
3100 unsigned long flags;
3103 * Acquiring and releasing lock here eliminates
3104 * a very low probability race.
3106 * The code below allocates controller command structures
3107 * from the free list without holding the controller lock.
3108 * This is safe assuming there is no other activity on
3109 * the controller at the time.
3111 * But, there might be a monitoring command still
3112 * in progress. Setting the Shutdown flag while holding
3113 * the lock ensures that there is no monitoring command
3114 * in the interrupt handler currently, and any monitoring
3115 * commands that complete from this time on will NOT return
3116 * their command structure to the free list.
3119 spin_lock_irqsave(&Controller->queue_lock, flags);
3120 Controller->ShutdownMonitoringTimer = 1;
3121 spin_unlock_irqrestore(&Controller->queue_lock, flags);
3123 del_timer_sync(&Controller->MonitoringTimer);
3124 if (Controller->FirmwareType == DAC960_V1_Controller)
3126 DAC960_Notice("Flushing Cache...", Controller);
3127 DAC960_V1_ExecuteType3(Controller, DAC960_V1_Flush, 0);
3128 DAC960_Notice("done\n", Controller);
3130 if (Controller->HardwareType == DAC960_PD_Controller)
3131 release_region(Controller->IO_Address, 0x80);
3133 else
3135 DAC960_Notice("Flushing Cache...", Controller);
3136 DAC960_V2_DeviceOperation(Controller, DAC960_V2_PauseDevice,
3137 DAC960_V2_RAID_Controller);
3138 DAC960_Notice("done\n", Controller);
3141 DAC960_UnregisterBlockDevice(Controller);
3142 DAC960_DestroyAuxiliaryStructures(Controller);
3143 DAC960_DestroyProcEntries(Controller);
3144 DAC960_DetectCleanup(Controller);
3149 DAC960_Probe verifies controller's existence and
3150 initializes the DAC960 Driver for that controller.
3153 static int
3154 DAC960_Probe(struct pci_dev *dev, const struct pci_device_id *entry)
3156 int disk;
3157 DAC960_Controller_T *Controller;
3159 if (DAC960_ControllerCount == DAC960_MaxControllers)
3161 DAC960_Error("More than %d DAC960 Controllers detected - "
3162 "ignoring from Controller at\n",
3163 NULL, DAC960_MaxControllers);
3164 return -ENODEV;
3167 Controller = DAC960_DetectController(dev, entry);
3168 if (!Controller)
3169 return -ENODEV;
3171 if (!DAC960_InitializeController(Controller)) {
3172 DAC960_FinalizeController(Controller);
3173 return -ENODEV;
3176 for (disk = 0; disk < DAC960_MaxLogicalDrives; disk++) {
3177 set_capacity(Controller->disks[disk], disk_size(Controller, disk));
3178 add_disk(Controller->disks[disk]);
3180 DAC960_CreateProcEntries(Controller);
3181 return 0;
3186 DAC960_Finalize finalizes the DAC960 Driver.
3189 static void DAC960_Remove(struct pci_dev *PCI_Device)
3191 int Controller_Number = (long)pci_get_drvdata(PCI_Device);
3192 DAC960_Controller_T *Controller = DAC960_Controllers[Controller_Number];
3193 if (Controller != NULL)
3194 DAC960_FinalizeController(Controller);
3199 DAC960_V1_QueueReadWriteCommand prepares and queues a Read/Write Command for
3200 DAC960 V1 Firmware Controllers.
3203 static void DAC960_V1_QueueReadWriteCommand(DAC960_Command_T *Command)
3205 DAC960_Controller_T *Controller = Command->Controller;
3206 DAC960_V1_CommandMailbox_T *CommandMailbox = &Command->V1.CommandMailbox;
3207 DAC960_V1_ScatterGatherSegment_T *ScatterGatherList =
3208 Command->V1.ScatterGatherList;
3209 struct scatterlist *ScatterList = Command->V1.ScatterList;
3211 DAC960_V1_ClearCommand(Command);
3213 if (Command->SegmentCount == 1)
3215 if (Command->DmaDirection == PCI_DMA_FROMDEVICE)
3216 CommandMailbox->Type5.CommandOpcode = DAC960_V1_Read;
3217 else
3218 CommandMailbox->Type5.CommandOpcode = DAC960_V1_Write;
3220 CommandMailbox->Type5.LD.TransferLength = Command->BlockCount;
3221 CommandMailbox->Type5.LD.LogicalDriveNumber = Command->LogicalDriveNumber;
3222 CommandMailbox->Type5.LogicalBlockAddress = Command->BlockNumber;
3223 CommandMailbox->Type5.BusAddress =
3224 (DAC960_BusAddress32_T)sg_dma_address(ScatterList);
3226 else
3228 int i;
3230 if (Command->DmaDirection == PCI_DMA_FROMDEVICE)
3231 CommandMailbox->Type5.CommandOpcode = DAC960_V1_ReadWithScatterGather;
3232 else
3233 CommandMailbox->Type5.CommandOpcode = DAC960_V1_WriteWithScatterGather;
3235 CommandMailbox->Type5.LD.TransferLength = Command->BlockCount;
3236 CommandMailbox->Type5.LD.LogicalDriveNumber = Command->LogicalDriveNumber;
3237 CommandMailbox->Type5.LogicalBlockAddress = Command->BlockNumber;
3238 CommandMailbox->Type5.BusAddress = Command->V1.ScatterGatherListDMA;
3240 CommandMailbox->Type5.ScatterGatherCount = Command->SegmentCount;
3242 for (i = 0; i < Command->SegmentCount; i++, ScatterList++, ScatterGatherList++) {
3243 ScatterGatherList->SegmentDataPointer =
3244 (DAC960_BusAddress32_T)sg_dma_address(ScatterList);
3245 ScatterGatherList->SegmentByteCount =
3246 (DAC960_ByteCount32_T)sg_dma_len(ScatterList);
3249 DAC960_QueueCommand(Command);
3254 DAC960_V2_QueueReadWriteCommand prepares and queues a Read/Write Command for
3255 DAC960 V2 Firmware Controllers.
3258 static void DAC960_V2_QueueReadWriteCommand(DAC960_Command_T *Command)
3260 DAC960_Controller_T *Controller = Command->Controller;
3261 DAC960_V2_CommandMailbox_T *CommandMailbox = &Command->V2.CommandMailbox;
3262 struct scatterlist *ScatterList = Command->V2.ScatterList;
3264 DAC960_V2_ClearCommand(Command);
3266 CommandMailbox->SCSI_10.CommandOpcode = DAC960_V2_SCSI_10;
3267 CommandMailbox->SCSI_10.CommandControlBits.DataTransferControllerToHost =
3268 (Command->DmaDirection == PCI_DMA_FROMDEVICE);
3269 CommandMailbox->SCSI_10.DataTransferSize =
3270 Command->BlockCount << DAC960_BlockSizeBits;
3271 CommandMailbox->SCSI_10.RequestSenseBusAddress = Command->V2.RequestSenseDMA;
3272 CommandMailbox->SCSI_10.PhysicalDevice =
3273 Controller->V2.LogicalDriveToVirtualDevice[Command->LogicalDriveNumber];
3274 CommandMailbox->SCSI_10.RequestSenseSize = sizeof(DAC960_SCSI_RequestSense_T);
3275 CommandMailbox->SCSI_10.CDBLength = 10;
3276 CommandMailbox->SCSI_10.SCSI_CDB[0] =
3277 (Command->DmaDirection == PCI_DMA_FROMDEVICE ? 0x28 : 0x2A);
3278 CommandMailbox->SCSI_10.SCSI_CDB[2] = Command->BlockNumber >> 24;
3279 CommandMailbox->SCSI_10.SCSI_CDB[3] = Command->BlockNumber >> 16;
3280 CommandMailbox->SCSI_10.SCSI_CDB[4] = Command->BlockNumber >> 8;
3281 CommandMailbox->SCSI_10.SCSI_CDB[5] = Command->BlockNumber;
3282 CommandMailbox->SCSI_10.SCSI_CDB[7] = Command->BlockCount >> 8;
3283 CommandMailbox->SCSI_10.SCSI_CDB[8] = Command->BlockCount;
3285 if (Command->SegmentCount == 1)
3287 CommandMailbox->SCSI_10.DataTransferMemoryAddress
3288 .ScatterGatherSegments[0]
3289 .SegmentDataPointer =
3290 (DAC960_BusAddress64_T)sg_dma_address(ScatterList);
3291 CommandMailbox->SCSI_10.DataTransferMemoryAddress
3292 .ScatterGatherSegments[0]
3293 .SegmentByteCount =
3294 CommandMailbox->SCSI_10.DataTransferSize;
3296 else
3298 DAC960_V2_ScatterGatherSegment_T *ScatterGatherList;
3299 int i;
3301 if (Command->SegmentCount > 2)
3303 ScatterGatherList = Command->V2.ScatterGatherList;
3304 CommandMailbox->SCSI_10.CommandControlBits
3305 .AdditionalScatterGatherListMemory = true;
3306 CommandMailbox->SCSI_10.DataTransferMemoryAddress
3307 .ExtendedScatterGather.ScatterGatherList0Length = Command->SegmentCount;
3308 CommandMailbox->SCSI_10.DataTransferMemoryAddress
3309 .ExtendedScatterGather.ScatterGatherList0Address =
3310 Command->V2.ScatterGatherListDMA;
3312 else
3313 ScatterGatherList = CommandMailbox->SCSI_10.DataTransferMemoryAddress
3314 .ScatterGatherSegments;
3316 for (i = 0; i < Command->SegmentCount; i++, ScatterList++, ScatterGatherList++) {
3317 ScatterGatherList->SegmentDataPointer =
3318 (DAC960_BusAddress64_T)sg_dma_address(ScatterList);
3319 ScatterGatherList->SegmentByteCount =
3320 (DAC960_ByteCount64_T)sg_dma_len(ScatterList);
3323 DAC960_QueueCommand(Command);
3327 static int DAC960_process_queue(DAC960_Controller_T *Controller, struct request_queue *req_q)
3329 struct request *Request;
3330 DAC960_Command_T *Command;
3332 while(1) {
3333 Request = blk_peek_request(req_q);
3334 if (!Request)
3335 return 1;
3337 Command = DAC960_AllocateCommand(Controller);
3338 if (Command == NULL)
3339 return 0;
3341 if (rq_data_dir(Request) == READ) {
3342 Command->DmaDirection = PCI_DMA_FROMDEVICE;
3343 Command->CommandType = DAC960_ReadCommand;
3344 } else {
3345 Command->DmaDirection = PCI_DMA_TODEVICE;
3346 Command->CommandType = DAC960_WriteCommand;
3348 Command->Completion = Request->end_io_data;
3349 Command->LogicalDriveNumber = (long)Request->rq_disk->private_data;
3350 Command->BlockNumber = blk_rq_pos(Request);
3351 Command->BlockCount = blk_rq_sectors(Request);
3352 Command->Request = Request;
3353 blk_start_request(Request);
3354 Command->SegmentCount = blk_rq_map_sg(req_q,
3355 Command->Request, Command->cmd_sglist);
3356 /* pci_map_sg MAY change the value of SegCount */
3357 Command->SegmentCount = pci_map_sg(Controller->PCIDevice, Command->cmd_sglist,
3358 Command->SegmentCount, Command->DmaDirection);
3360 DAC960_QueueReadWriteCommand(Command);
3365 DAC960_ProcessRequest attempts to remove one I/O Request from Controller's
3366 I/O Request Queue and queues it to the Controller. WaitForCommand is true if
3367 this function should wait for a Command to become available if necessary.
3368 This function returns true if an I/O Request was queued and false otherwise.
3370 static void DAC960_ProcessRequest(DAC960_Controller_T *controller)
3372 int i;
3374 if (!controller->ControllerInitialized)
3375 return;
3377 /* Do this better later! */
3378 for (i = controller->req_q_index; i < DAC960_MaxLogicalDrives; i++) {
3379 struct request_queue *req_q = controller->RequestQueue[i];
3381 if (req_q == NULL)
3382 continue;
3384 if (!DAC960_process_queue(controller, req_q)) {
3385 controller->req_q_index = i;
3386 return;
3390 if (controller->req_q_index == 0)
3391 return;
3393 for (i = 0; i < controller->req_q_index; i++) {
3394 struct request_queue *req_q = controller->RequestQueue[i];
3396 if (req_q == NULL)
3397 continue;
3399 if (!DAC960_process_queue(controller, req_q)) {
3400 controller->req_q_index = i;
3401 return;
3408 DAC960_queue_partial_rw extracts one bio from the request already
3409 associated with argument command, and construct a new command block to retry I/O
3410 only on that bio. Queue that command to the controller.
3412 This function re-uses a previously-allocated Command,
3413 there is no failure mode from trying to allocate a command.
3416 static void DAC960_queue_partial_rw(DAC960_Command_T *Command)
3418 DAC960_Controller_T *Controller = Command->Controller;
3419 struct request *Request = Command->Request;
3420 struct request_queue *req_q = Controller->RequestQueue[Command->LogicalDriveNumber];
3422 if (Command->DmaDirection == PCI_DMA_FROMDEVICE)
3423 Command->CommandType = DAC960_ReadRetryCommand;
3424 else
3425 Command->CommandType = DAC960_WriteRetryCommand;
3428 * We could be more efficient with these mapping requests
3429 * and map only the portions that we need. But since this
3430 * code should almost never be called, just go with a
3431 * simple coding.
3433 (void)blk_rq_map_sg(req_q, Command->Request, Command->cmd_sglist);
3435 (void)pci_map_sg(Controller->PCIDevice, Command->cmd_sglist, 1, Command->DmaDirection);
3437 * Resubmitting the request sector at a time is really tedious.
3438 * But, this should almost never happen. So, we're willing to pay
3439 * this price so that in the end, as much of the transfer is completed
3440 * successfully as possible.
3442 Command->SegmentCount = 1;
3443 Command->BlockNumber = blk_rq_pos(Request);
3444 Command->BlockCount = 1;
3445 DAC960_QueueReadWriteCommand(Command);
3446 return;
3450 DAC960_RequestFunction is the I/O Request Function for DAC960 Controllers.
3453 static void DAC960_RequestFunction(struct request_queue *RequestQueue)
3455 DAC960_ProcessRequest(RequestQueue->queuedata);
3459 DAC960_ProcessCompletedBuffer performs completion processing for an
3460 individual Buffer.
3463 static inline bool DAC960_ProcessCompletedRequest(DAC960_Command_T *Command,
3464 bool SuccessfulIO)
3466 struct request *Request = Command->Request;
3467 blk_status_t Error = SuccessfulIO ? BLK_STS_OK : BLK_STS_IOERR;
3469 pci_unmap_sg(Command->Controller->PCIDevice, Command->cmd_sglist,
3470 Command->SegmentCount, Command->DmaDirection);
3472 if (!__blk_end_request(Request, Error, Command->BlockCount << 9)) {
3473 if (Command->Completion) {
3474 complete(Command->Completion);
3475 Command->Completion = NULL;
3477 return true;
3479 return false;
3483 DAC960_V1_ReadWriteError prints an appropriate error message for Command
3484 when an error occurs on a Read or Write operation.
3487 static void DAC960_V1_ReadWriteError(DAC960_Command_T *Command)
3489 DAC960_Controller_T *Controller = Command->Controller;
3490 unsigned char *CommandName = "UNKNOWN";
3491 switch (Command->CommandType)
3493 case DAC960_ReadCommand:
3494 case DAC960_ReadRetryCommand:
3495 CommandName = "READ";
3496 break;
3497 case DAC960_WriteCommand:
3498 case DAC960_WriteRetryCommand:
3499 CommandName = "WRITE";
3500 break;
3501 case DAC960_MonitoringCommand:
3502 case DAC960_ImmediateCommand:
3503 case DAC960_QueuedCommand:
3504 break;
3506 switch (Command->V1.CommandStatus)
3508 case DAC960_V1_IrrecoverableDataError:
3509 DAC960_Error("Irrecoverable Data Error on %s:\n",
3510 Controller, CommandName);
3511 break;
3512 case DAC960_V1_LogicalDriveNonexistentOrOffline:
3513 DAC960_Error("Logical Drive Nonexistent or Offline on %s:\n",
3514 Controller, CommandName);
3515 break;
3516 case DAC960_V1_AccessBeyondEndOfLogicalDrive:
3517 DAC960_Error("Attempt to Access Beyond End of Logical Drive "
3518 "on %s:\n", Controller, CommandName);
3519 break;
3520 case DAC960_V1_BadDataEncountered:
3521 DAC960_Error("Bad Data Encountered on %s:\n", Controller, CommandName);
3522 break;
3523 default:
3524 DAC960_Error("Unexpected Error Status %04X on %s:\n",
3525 Controller, Command->V1.CommandStatus, CommandName);
3526 break;
3528 DAC960_Error(" /dev/rd/c%dd%d: absolute blocks %u..%u\n",
3529 Controller, Controller->ControllerNumber,
3530 Command->LogicalDriveNumber, Command->BlockNumber,
3531 Command->BlockNumber + Command->BlockCount - 1);
3536 DAC960_V1_ProcessCompletedCommand performs completion processing for Command
3537 for DAC960 V1 Firmware Controllers.
3540 static void DAC960_V1_ProcessCompletedCommand(DAC960_Command_T *Command)
3542 DAC960_Controller_T *Controller = Command->Controller;
3543 DAC960_CommandType_T CommandType = Command->CommandType;
3544 DAC960_V1_CommandOpcode_T CommandOpcode =
3545 Command->V1.CommandMailbox.Common.CommandOpcode;
3546 DAC960_V1_CommandStatus_T CommandStatus = Command->V1.CommandStatus;
3548 if (CommandType == DAC960_ReadCommand ||
3549 CommandType == DAC960_WriteCommand)
3552 #ifdef FORCE_RETRY_DEBUG
3553 CommandStatus = DAC960_V1_IrrecoverableDataError;
3554 #endif
3556 if (CommandStatus == DAC960_V1_NormalCompletion) {
3558 if (!DAC960_ProcessCompletedRequest(Command, true))
3559 BUG();
3561 } else if (CommandStatus == DAC960_V1_IrrecoverableDataError ||
3562 CommandStatus == DAC960_V1_BadDataEncountered)
3565 * break the command down into pieces and resubmit each
3566 * piece, hoping that some of them will succeed.
3568 DAC960_queue_partial_rw(Command);
3569 return;
3571 else
3573 if (CommandStatus != DAC960_V1_LogicalDriveNonexistentOrOffline)
3574 DAC960_V1_ReadWriteError(Command);
3576 if (!DAC960_ProcessCompletedRequest(Command, false))
3577 BUG();
3580 else if (CommandType == DAC960_ReadRetryCommand ||
3581 CommandType == DAC960_WriteRetryCommand)
3583 bool normal_completion;
3584 #ifdef FORCE_RETRY_FAILURE_DEBUG
3585 static int retry_count = 1;
3586 #endif
3588 Perform completion processing for the portion that was
3589 retried, and submit the next portion, if any.
3591 normal_completion = true;
3592 if (CommandStatus != DAC960_V1_NormalCompletion) {
3593 normal_completion = false;
3594 if (CommandStatus != DAC960_V1_LogicalDriveNonexistentOrOffline)
3595 DAC960_V1_ReadWriteError(Command);
3598 #ifdef FORCE_RETRY_FAILURE_DEBUG
3599 if (!(++retry_count % 10000)) {
3600 printk("V1 error retry failure test\n");
3601 normal_completion = false;
3602 DAC960_V1_ReadWriteError(Command);
3604 #endif
3606 if (!DAC960_ProcessCompletedRequest(Command, normal_completion)) {
3607 DAC960_queue_partial_rw(Command);
3608 return;
3612 else if (CommandType == DAC960_MonitoringCommand)
3614 if (Controller->ShutdownMonitoringTimer)
3615 return;
3616 if (CommandOpcode == DAC960_V1_Enquiry)
3618 DAC960_V1_Enquiry_T *OldEnquiry = &Controller->V1.Enquiry;
3619 DAC960_V1_Enquiry_T *NewEnquiry = Controller->V1.NewEnquiry;
3620 unsigned int OldCriticalLogicalDriveCount =
3621 OldEnquiry->CriticalLogicalDriveCount;
3622 unsigned int NewCriticalLogicalDriveCount =
3623 NewEnquiry->CriticalLogicalDriveCount;
3624 if (NewEnquiry->NumberOfLogicalDrives > Controller->LogicalDriveCount)
3626 int LogicalDriveNumber = Controller->LogicalDriveCount - 1;
3627 while (++LogicalDriveNumber < NewEnquiry->NumberOfLogicalDrives)
3628 DAC960_Critical("Logical Drive %d (/dev/rd/c%dd%d) "
3629 "Now Exists\n", Controller,
3630 LogicalDriveNumber,
3631 Controller->ControllerNumber,
3632 LogicalDriveNumber);
3633 Controller->LogicalDriveCount = NewEnquiry->NumberOfLogicalDrives;
3634 DAC960_ComputeGenericDiskInfo(Controller);
3636 if (NewEnquiry->NumberOfLogicalDrives < Controller->LogicalDriveCount)
3638 int LogicalDriveNumber = NewEnquiry->NumberOfLogicalDrives - 1;
3639 while (++LogicalDriveNumber < Controller->LogicalDriveCount)
3640 DAC960_Critical("Logical Drive %d (/dev/rd/c%dd%d) "
3641 "No Longer Exists\n", Controller,
3642 LogicalDriveNumber,
3643 Controller->ControllerNumber,
3644 LogicalDriveNumber);
3645 Controller->LogicalDriveCount = NewEnquiry->NumberOfLogicalDrives;
3646 DAC960_ComputeGenericDiskInfo(Controller);
3648 if (NewEnquiry->StatusFlags.DeferredWriteError !=
3649 OldEnquiry->StatusFlags.DeferredWriteError)
3650 DAC960_Critical("Deferred Write Error Flag is now %s\n", Controller,
3651 (NewEnquiry->StatusFlags.DeferredWriteError
3652 ? "TRUE" : "FALSE"));
3653 if ((NewCriticalLogicalDriveCount > 0 ||
3654 NewCriticalLogicalDriveCount != OldCriticalLogicalDriveCount) ||
3655 (NewEnquiry->OfflineLogicalDriveCount > 0 ||
3656 NewEnquiry->OfflineLogicalDriveCount !=
3657 OldEnquiry->OfflineLogicalDriveCount) ||
3658 (NewEnquiry->DeadDriveCount > 0 ||
3659 NewEnquiry->DeadDriveCount !=
3660 OldEnquiry->DeadDriveCount) ||
3661 (NewEnquiry->EventLogSequenceNumber !=
3662 OldEnquiry->EventLogSequenceNumber) ||
3663 Controller->MonitoringTimerCount == 0 ||
3664 time_after_eq(jiffies, Controller->SecondaryMonitoringTime
3665 + DAC960_SecondaryMonitoringInterval))
3667 Controller->V1.NeedLogicalDriveInformation = true;
3668 Controller->V1.NewEventLogSequenceNumber =
3669 NewEnquiry->EventLogSequenceNumber;
3670 Controller->V1.NeedErrorTableInformation = true;
3671 Controller->V1.NeedDeviceStateInformation = true;
3672 Controller->V1.StartDeviceStateScan = true;
3673 Controller->V1.NeedBackgroundInitializationStatus =
3674 Controller->V1.BackgroundInitializationStatusSupported;
3675 Controller->SecondaryMonitoringTime = jiffies;
3677 if (NewEnquiry->RebuildFlag == DAC960_V1_StandbyRebuildInProgress ||
3678 NewEnquiry->RebuildFlag
3679 == DAC960_V1_BackgroundRebuildInProgress ||
3680 OldEnquiry->RebuildFlag == DAC960_V1_StandbyRebuildInProgress ||
3681 OldEnquiry->RebuildFlag == DAC960_V1_BackgroundRebuildInProgress)
3683 Controller->V1.NeedRebuildProgress = true;
3684 Controller->V1.RebuildProgressFirst =
3685 (NewEnquiry->CriticalLogicalDriveCount <
3686 OldEnquiry->CriticalLogicalDriveCount);
3688 if (OldEnquiry->RebuildFlag == DAC960_V1_BackgroundCheckInProgress)
3689 switch (NewEnquiry->RebuildFlag)
3691 case DAC960_V1_NoStandbyRebuildOrCheckInProgress:
3692 DAC960_Progress("Consistency Check Completed Successfully\n",
3693 Controller);
3694 break;
3695 case DAC960_V1_StandbyRebuildInProgress:
3696 case DAC960_V1_BackgroundRebuildInProgress:
3697 break;
3698 case DAC960_V1_BackgroundCheckInProgress:
3699 Controller->V1.NeedConsistencyCheckProgress = true;
3700 break;
3701 case DAC960_V1_StandbyRebuildCompletedWithError:
3702 DAC960_Progress("Consistency Check Completed with Error\n",
3703 Controller);
3704 break;
3705 case DAC960_V1_BackgroundRebuildOrCheckFailed_DriveFailed:
3706 DAC960_Progress("Consistency Check Failed - "
3707 "Physical Device Failed\n", Controller);
3708 break;
3709 case DAC960_V1_BackgroundRebuildOrCheckFailed_LogicalDriveFailed:
3710 DAC960_Progress("Consistency Check Failed - "
3711 "Logical Drive Failed\n", Controller);
3712 break;
3713 case DAC960_V1_BackgroundRebuildOrCheckFailed_OtherCauses:
3714 DAC960_Progress("Consistency Check Failed - Other Causes\n",
3715 Controller);
3716 break;
3717 case DAC960_V1_BackgroundRebuildOrCheckSuccessfullyTerminated:
3718 DAC960_Progress("Consistency Check Successfully Terminated\n",
3719 Controller);
3720 break;
3722 else if (NewEnquiry->RebuildFlag
3723 == DAC960_V1_BackgroundCheckInProgress)
3724 Controller->V1.NeedConsistencyCheckProgress = true;
3725 Controller->MonitoringAlertMode =
3726 (NewEnquiry->CriticalLogicalDriveCount > 0 ||
3727 NewEnquiry->OfflineLogicalDriveCount > 0 ||
3728 NewEnquiry->DeadDriveCount > 0);
3729 if (NewEnquiry->RebuildFlag > DAC960_V1_BackgroundCheckInProgress)
3731 Controller->V1.PendingRebuildFlag = NewEnquiry->RebuildFlag;
3732 Controller->V1.RebuildFlagPending = true;
3734 memcpy(&Controller->V1.Enquiry, &Controller->V1.NewEnquiry,
3735 sizeof(DAC960_V1_Enquiry_T));
3737 else if (CommandOpcode == DAC960_V1_PerformEventLogOperation)
3739 static char
3740 *DAC960_EventMessages[] =
3741 { "killed because write recovery failed",
3742 "killed because of SCSI bus reset failure",
3743 "killed because of double check condition",
3744 "killed because it was removed",
3745 "killed because of gross error on SCSI chip",
3746 "killed because of bad tag returned from drive",
3747 "killed because of timeout on SCSI command",
3748 "killed because of reset SCSI command issued from system",
3749 "killed because busy or parity error count exceeded limit",
3750 "killed because of 'kill drive' command from system",
3751 "killed because of selection timeout",
3752 "killed due to SCSI phase sequence error",
3753 "killed due to unknown status" };
3754 DAC960_V1_EventLogEntry_T *EventLogEntry =
3755 Controller->V1.EventLogEntry;
3756 if (EventLogEntry->SequenceNumber ==
3757 Controller->V1.OldEventLogSequenceNumber)
3759 unsigned char SenseKey = EventLogEntry->SenseKey;
3760 unsigned char AdditionalSenseCode =
3761 EventLogEntry->AdditionalSenseCode;
3762 unsigned char AdditionalSenseCodeQualifier =
3763 EventLogEntry->AdditionalSenseCodeQualifier;
3764 if (SenseKey == DAC960_SenseKey_VendorSpecific &&
3765 AdditionalSenseCode == 0x80 &&
3766 AdditionalSenseCodeQualifier <
3767 ARRAY_SIZE(DAC960_EventMessages))
3768 DAC960_Critical("Physical Device %d:%d %s\n", Controller,
3769 EventLogEntry->Channel,
3770 EventLogEntry->TargetID,
3771 DAC960_EventMessages[
3772 AdditionalSenseCodeQualifier]);
3773 else if (SenseKey == DAC960_SenseKey_UnitAttention &&
3774 AdditionalSenseCode == 0x29)
3776 if (Controller->MonitoringTimerCount > 0)
3777 Controller->V1.DeviceResetCount[EventLogEntry->Channel]
3778 [EventLogEntry->TargetID]++;
3780 else if (!(SenseKey == DAC960_SenseKey_NoSense ||
3781 (SenseKey == DAC960_SenseKey_NotReady &&
3782 AdditionalSenseCode == 0x04 &&
3783 (AdditionalSenseCodeQualifier == 0x01 ||
3784 AdditionalSenseCodeQualifier == 0x02))))
3786 DAC960_Critical("Physical Device %d:%d Error Log: "
3787 "Sense Key = %X, ASC = %02X, ASCQ = %02X\n",
3788 Controller,
3789 EventLogEntry->Channel,
3790 EventLogEntry->TargetID,
3791 SenseKey,
3792 AdditionalSenseCode,
3793 AdditionalSenseCodeQualifier);
3794 DAC960_Critical("Physical Device %d:%d Error Log: "
3795 "Information = %02X%02X%02X%02X "
3796 "%02X%02X%02X%02X\n",
3797 Controller,
3798 EventLogEntry->Channel,
3799 EventLogEntry->TargetID,
3800 EventLogEntry->Information[0],
3801 EventLogEntry->Information[1],
3802 EventLogEntry->Information[2],
3803 EventLogEntry->Information[3],
3804 EventLogEntry->CommandSpecificInformation[0],
3805 EventLogEntry->CommandSpecificInformation[1],
3806 EventLogEntry->CommandSpecificInformation[2],
3807 EventLogEntry->CommandSpecificInformation[3]);
3810 Controller->V1.OldEventLogSequenceNumber++;
3812 else if (CommandOpcode == DAC960_V1_GetErrorTable)
3814 DAC960_V1_ErrorTable_T *OldErrorTable = &Controller->V1.ErrorTable;
3815 DAC960_V1_ErrorTable_T *NewErrorTable = Controller->V1.NewErrorTable;
3816 int Channel, TargetID;
3817 for (Channel = 0; Channel < Controller->Channels; Channel++)
3818 for (TargetID = 0; TargetID < Controller->Targets; TargetID++)
3820 DAC960_V1_ErrorTableEntry_T *NewErrorEntry =
3821 &NewErrorTable->ErrorTableEntries[Channel][TargetID];
3822 DAC960_V1_ErrorTableEntry_T *OldErrorEntry =
3823 &OldErrorTable->ErrorTableEntries[Channel][TargetID];
3824 if ((NewErrorEntry->ParityErrorCount !=
3825 OldErrorEntry->ParityErrorCount) ||
3826 (NewErrorEntry->SoftErrorCount !=
3827 OldErrorEntry->SoftErrorCount) ||
3828 (NewErrorEntry->HardErrorCount !=
3829 OldErrorEntry->HardErrorCount) ||
3830 (NewErrorEntry->MiscErrorCount !=
3831 OldErrorEntry->MiscErrorCount))
3832 DAC960_Critical("Physical Device %d:%d Errors: "
3833 "Parity = %d, Soft = %d, "
3834 "Hard = %d, Misc = %d\n",
3835 Controller, Channel, TargetID,
3836 NewErrorEntry->ParityErrorCount,
3837 NewErrorEntry->SoftErrorCount,
3838 NewErrorEntry->HardErrorCount,
3839 NewErrorEntry->MiscErrorCount);
3841 memcpy(&Controller->V1.ErrorTable, Controller->V1.NewErrorTable,
3842 sizeof(DAC960_V1_ErrorTable_T));
3844 else if (CommandOpcode == DAC960_V1_GetDeviceState)
3846 DAC960_V1_DeviceState_T *OldDeviceState =
3847 &Controller->V1.DeviceState[Controller->V1.DeviceStateChannel]
3848 [Controller->V1.DeviceStateTargetID];
3849 DAC960_V1_DeviceState_T *NewDeviceState =
3850 Controller->V1.NewDeviceState;
3851 if (NewDeviceState->DeviceState != OldDeviceState->DeviceState)
3852 DAC960_Critical("Physical Device %d:%d is now %s\n", Controller,
3853 Controller->V1.DeviceStateChannel,
3854 Controller->V1.DeviceStateTargetID,
3855 (NewDeviceState->DeviceState
3856 == DAC960_V1_Device_Dead
3857 ? "DEAD"
3858 : NewDeviceState->DeviceState
3859 == DAC960_V1_Device_WriteOnly
3860 ? "WRITE-ONLY"
3861 : NewDeviceState->DeviceState
3862 == DAC960_V1_Device_Online
3863 ? "ONLINE" : "STANDBY"));
3864 if (OldDeviceState->DeviceState == DAC960_V1_Device_Dead &&
3865 NewDeviceState->DeviceState != DAC960_V1_Device_Dead)
3867 Controller->V1.NeedDeviceInquiryInformation = true;
3868 Controller->V1.NeedDeviceSerialNumberInformation = true;
3869 Controller->V1.DeviceResetCount
3870 [Controller->V1.DeviceStateChannel]
3871 [Controller->V1.DeviceStateTargetID] = 0;
3873 memcpy(OldDeviceState, NewDeviceState,
3874 sizeof(DAC960_V1_DeviceState_T));
3876 else if (CommandOpcode == DAC960_V1_GetLogicalDriveInformation)
3878 int LogicalDriveNumber;
3879 for (LogicalDriveNumber = 0;
3880 LogicalDriveNumber < Controller->LogicalDriveCount;
3881 LogicalDriveNumber++)
3883 DAC960_V1_LogicalDriveInformation_T *OldLogicalDriveInformation =
3884 &Controller->V1.LogicalDriveInformation[LogicalDriveNumber];
3885 DAC960_V1_LogicalDriveInformation_T *NewLogicalDriveInformation =
3886 &(*Controller->V1.NewLogicalDriveInformation)[LogicalDriveNumber];
3887 if (NewLogicalDriveInformation->LogicalDriveState !=
3888 OldLogicalDriveInformation->LogicalDriveState)
3889 DAC960_Critical("Logical Drive %d (/dev/rd/c%dd%d) "
3890 "is now %s\n", Controller,
3891 LogicalDriveNumber,
3892 Controller->ControllerNumber,
3893 LogicalDriveNumber,
3894 (NewLogicalDriveInformation->LogicalDriveState
3895 == DAC960_V1_LogicalDrive_Online
3896 ? "ONLINE"
3897 : NewLogicalDriveInformation->LogicalDriveState
3898 == DAC960_V1_LogicalDrive_Critical
3899 ? "CRITICAL" : "OFFLINE"));
3900 if (NewLogicalDriveInformation->WriteBack !=
3901 OldLogicalDriveInformation->WriteBack)
3902 DAC960_Critical("Logical Drive %d (/dev/rd/c%dd%d) "
3903 "is now %s\n", Controller,
3904 LogicalDriveNumber,
3905 Controller->ControllerNumber,
3906 LogicalDriveNumber,
3907 (NewLogicalDriveInformation->WriteBack
3908 ? "WRITE BACK" : "WRITE THRU"));
3910 memcpy(&Controller->V1.LogicalDriveInformation,
3911 Controller->V1.NewLogicalDriveInformation,
3912 sizeof(DAC960_V1_LogicalDriveInformationArray_T));
3914 else if (CommandOpcode == DAC960_V1_GetRebuildProgress)
3916 unsigned int LogicalDriveNumber =
3917 Controller->V1.RebuildProgress->LogicalDriveNumber;
3918 unsigned int LogicalDriveSize =
3919 Controller->V1.RebuildProgress->LogicalDriveSize;
3920 unsigned int BlocksCompleted =
3921 LogicalDriveSize - Controller->V1.RebuildProgress->RemainingBlocks;
3922 if (CommandStatus == DAC960_V1_NoRebuildOrCheckInProgress &&
3923 Controller->V1.LastRebuildStatus == DAC960_V1_NormalCompletion)
3924 CommandStatus = DAC960_V1_RebuildSuccessful;
3925 switch (CommandStatus)
3927 case DAC960_V1_NormalCompletion:
3928 Controller->EphemeralProgressMessage = true;
3929 DAC960_Progress("Rebuild in Progress: "
3930 "Logical Drive %d (/dev/rd/c%dd%d) "
3931 "%d%% completed\n",
3932 Controller, LogicalDriveNumber,
3933 Controller->ControllerNumber,
3934 LogicalDriveNumber,
3935 (100 * (BlocksCompleted >> 7))
3936 / (LogicalDriveSize >> 7));
3937 Controller->EphemeralProgressMessage = false;
3938 break;
3939 case DAC960_V1_RebuildFailed_LogicalDriveFailure:
3940 DAC960_Progress("Rebuild Failed due to "
3941 "Logical Drive Failure\n", Controller);
3942 break;
3943 case DAC960_V1_RebuildFailed_BadBlocksOnOther:
3944 DAC960_Progress("Rebuild Failed due to "
3945 "Bad Blocks on Other Drives\n", Controller);
3946 break;
3947 case DAC960_V1_RebuildFailed_NewDriveFailed:
3948 DAC960_Progress("Rebuild Failed due to "
3949 "Failure of Drive Being Rebuilt\n", Controller);
3950 break;
3951 case DAC960_V1_NoRebuildOrCheckInProgress:
3952 break;
3953 case DAC960_V1_RebuildSuccessful:
3954 DAC960_Progress("Rebuild Completed Successfully\n", Controller);
3955 break;
3956 case DAC960_V1_RebuildSuccessfullyTerminated:
3957 DAC960_Progress("Rebuild Successfully Terminated\n", Controller);
3958 break;
3960 Controller->V1.LastRebuildStatus = CommandStatus;
3961 if (CommandType != DAC960_MonitoringCommand &&
3962 Controller->V1.RebuildStatusPending)
3964 Command->V1.CommandStatus = Controller->V1.PendingRebuildStatus;
3965 Controller->V1.RebuildStatusPending = false;
3967 else if (CommandType == DAC960_MonitoringCommand &&
3968 CommandStatus != DAC960_V1_NormalCompletion &&
3969 CommandStatus != DAC960_V1_NoRebuildOrCheckInProgress)
3971 Controller->V1.PendingRebuildStatus = CommandStatus;
3972 Controller->V1.RebuildStatusPending = true;
3975 else if (CommandOpcode == DAC960_V1_RebuildStat)
3977 unsigned int LogicalDriveNumber =
3978 Controller->V1.RebuildProgress->LogicalDriveNumber;
3979 unsigned int LogicalDriveSize =
3980 Controller->V1.RebuildProgress->LogicalDriveSize;
3981 unsigned int BlocksCompleted =
3982 LogicalDriveSize - Controller->V1.RebuildProgress->RemainingBlocks;
3983 if (CommandStatus == DAC960_V1_NormalCompletion)
3985 Controller->EphemeralProgressMessage = true;
3986 DAC960_Progress("Consistency Check in Progress: "
3987 "Logical Drive %d (/dev/rd/c%dd%d) "
3988 "%d%% completed\n",
3989 Controller, LogicalDriveNumber,
3990 Controller->ControllerNumber,
3991 LogicalDriveNumber,
3992 (100 * (BlocksCompleted >> 7))
3993 / (LogicalDriveSize >> 7));
3994 Controller->EphemeralProgressMessage = false;
3997 else if (CommandOpcode == DAC960_V1_BackgroundInitializationControl)
3999 unsigned int LogicalDriveNumber =
4000 Controller->V1.BackgroundInitializationStatus->LogicalDriveNumber;
4001 unsigned int LogicalDriveSize =
4002 Controller->V1.BackgroundInitializationStatus->LogicalDriveSize;
4003 unsigned int BlocksCompleted =
4004 Controller->V1.BackgroundInitializationStatus->BlocksCompleted;
4005 switch (CommandStatus)
4007 case DAC960_V1_NormalCompletion:
4008 switch (Controller->V1.BackgroundInitializationStatus->Status)
4010 case DAC960_V1_BackgroundInitializationInvalid:
4011 break;
4012 case DAC960_V1_BackgroundInitializationStarted:
4013 DAC960_Progress("Background Initialization Started\n",
4014 Controller);
4015 break;
4016 case DAC960_V1_BackgroundInitializationInProgress:
4017 if (BlocksCompleted ==
4018 Controller->V1.LastBackgroundInitializationStatus.
4019 BlocksCompleted &&
4020 LogicalDriveNumber ==
4021 Controller->V1.LastBackgroundInitializationStatus.
4022 LogicalDriveNumber)
4023 break;
4024 Controller->EphemeralProgressMessage = true;
4025 DAC960_Progress("Background Initialization in Progress: "
4026 "Logical Drive %d (/dev/rd/c%dd%d) "
4027 "%d%% completed\n",
4028 Controller, LogicalDriveNumber,
4029 Controller->ControllerNumber,
4030 LogicalDriveNumber,
4031 (100 * (BlocksCompleted >> 7))
4032 / (LogicalDriveSize >> 7));
4033 Controller->EphemeralProgressMessage = false;
4034 break;
4035 case DAC960_V1_BackgroundInitializationSuspended:
4036 DAC960_Progress("Background Initialization Suspended\n",
4037 Controller);
4038 break;
4039 case DAC960_V1_BackgroundInitializationCancelled:
4040 DAC960_Progress("Background Initialization Cancelled\n",
4041 Controller);
4042 break;
4044 memcpy(&Controller->V1.LastBackgroundInitializationStatus,
4045 Controller->V1.BackgroundInitializationStatus,
4046 sizeof(DAC960_V1_BackgroundInitializationStatus_T));
4047 break;
4048 case DAC960_V1_BackgroundInitSuccessful:
4049 if (Controller->V1.BackgroundInitializationStatus->Status ==
4050 DAC960_V1_BackgroundInitializationInProgress)
4051 DAC960_Progress("Background Initialization "
4052 "Completed Successfully\n", Controller);
4053 Controller->V1.BackgroundInitializationStatus->Status =
4054 DAC960_V1_BackgroundInitializationInvalid;
4055 break;
4056 case DAC960_V1_BackgroundInitAborted:
4057 if (Controller->V1.BackgroundInitializationStatus->Status ==
4058 DAC960_V1_BackgroundInitializationInProgress)
4059 DAC960_Progress("Background Initialization Aborted\n",
4060 Controller);
4061 Controller->V1.BackgroundInitializationStatus->Status =
4062 DAC960_V1_BackgroundInitializationInvalid;
4063 break;
4064 case DAC960_V1_NoBackgroundInitInProgress:
4065 break;
4068 else if (CommandOpcode == DAC960_V1_DCDB)
4071 This is a bit ugly.
4073 The InquiryStandardData and
4074 the InquiryUntitSerialNumber information
4075 retrieval operations BOTH use the DAC960_V1_DCDB
4076 commands. the test above can't distinguish between
4077 these two cases.
4079 Instead, we rely on the order of code later in this
4080 function to ensure that DeviceInquiryInformation commands
4081 are submitted before DeviceSerialNumber commands.
4083 if (Controller->V1.NeedDeviceInquiryInformation)
4085 DAC960_SCSI_Inquiry_T *InquiryStandardData =
4086 &Controller->V1.InquiryStandardData
4087 [Controller->V1.DeviceStateChannel]
4088 [Controller->V1.DeviceStateTargetID];
4089 if (CommandStatus != DAC960_V1_NormalCompletion)
4091 memset(InquiryStandardData, 0,
4092 sizeof(DAC960_SCSI_Inquiry_T));
4093 InquiryStandardData->PeripheralDeviceType = 0x1F;
4095 else
4096 memcpy(InquiryStandardData,
4097 Controller->V1.NewInquiryStandardData,
4098 sizeof(DAC960_SCSI_Inquiry_T));
4099 Controller->V1.NeedDeviceInquiryInformation = false;
4101 else if (Controller->V1.NeedDeviceSerialNumberInformation)
4103 DAC960_SCSI_Inquiry_UnitSerialNumber_T *InquiryUnitSerialNumber =
4104 &Controller->V1.InquiryUnitSerialNumber
4105 [Controller->V1.DeviceStateChannel]
4106 [Controller->V1.DeviceStateTargetID];
4107 if (CommandStatus != DAC960_V1_NormalCompletion)
4109 memset(InquiryUnitSerialNumber, 0,
4110 sizeof(DAC960_SCSI_Inquiry_UnitSerialNumber_T));
4111 InquiryUnitSerialNumber->PeripheralDeviceType = 0x1F;
4113 else
4114 memcpy(InquiryUnitSerialNumber,
4115 Controller->V1.NewInquiryUnitSerialNumber,
4116 sizeof(DAC960_SCSI_Inquiry_UnitSerialNumber_T));
4117 Controller->V1.NeedDeviceSerialNumberInformation = false;
4121 Begin submitting new monitoring commands.
4123 if (Controller->V1.NewEventLogSequenceNumber
4124 - Controller->V1.OldEventLogSequenceNumber > 0)
4126 Command->V1.CommandMailbox.Type3E.CommandOpcode =
4127 DAC960_V1_PerformEventLogOperation;
4128 Command->V1.CommandMailbox.Type3E.OperationType =
4129 DAC960_V1_GetEventLogEntry;
4130 Command->V1.CommandMailbox.Type3E.OperationQualifier = 1;
4131 Command->V1.CommandMailbox.Type3E.SequenceNumber =
4132 Controller->V1.OldEventLogSequenceNumber;
4133 Command->V1.CommandMailbox.Type3E.BusAddress =
4134 Controller->V1.EventLogEntryDMA;
4135 DAC960_QueueCommand(Command);
4136 return;
4138 if (Controller->V1.NeedErrorTableInformation)
4140 Controller->V1.NeedErrorTableInformation = false;
4141 Command->V1.CommandMailbox.Type3.CommandOpcode =
4142 DAC960_V1_GetErrorTable;
4143 Command->V1.CommandMailbox.Type3.BusAddress =
4144 Controller->V1.NewErrorTableDMA;
4145 DAC960_QueueCommand(Command);
4146 return;
4148 if (Controller->V1.NeedRebuildProgress &&
4149 Controller->V1.RebuildProgressFirst)
4151 Controller->V1.NeedRebuildProgress = false;
4152 Command->V1.CommandMailbox.Type3.CommandOpcode =
4153 DAC960_V1_GetRebuildProgress;
4154 Command->V1.CommandMailbox.Type3.BusAddress =
4155 Controller->V1.RebuildProgressDMA;
4156 DAC960_QueueCommand(Command);
4157 return;
4159 if (Controller->V1.NeedDeviceStateInformation)
4161 if (Controller->V1.NeedDeviceInquiryInformation)
4163 DAC960_V1_DCDB_T *DCDB = Controller->V1.MonitoringDCDB;
4164 dma_addr_t DCDB_DMA = Controller->V1.MonitoringDCDB_DMA;
4166 dma_addr_t NewInquiryStandardDataDMA =
4167 Controller->V1.NewInquiryStandardDataDMA;
4169 Command->V1.CommandMailbox.Type3.CommandOpcode = DAC960_V1_DCDB;
4170 Command->V1.CommandMailbox.Type3.BusAddress = DCDB_DMA;
4171 DCDB->Channel = Controller->V1.DeviceStateChannel;
4172 DCDB->TargetID = Controller->V1.DeviceStateTargetID;
4173 DCDB->Direction = DAC960_V1_DCDB_DataTransferDeviceToSystem;
4174 DCDB->EarlyStatus = false;
4175 DCDB->Timeout = DAC960_V1_DCDB_Timeout_10_seconds;
4176 DCDB->NoAutomaticRequestSense = false;
4177 DCDB->DisconnectPermitted = true;
4178 DCDB->TransferLength = sizeof(DAC960_SCSI_Inquiry_T);
4179 DCDB->BusAddress = NewInquiryStandardDataDMA;
4180 DCDB->CDBLength = 6;
4181 DCDB->TransferLengthHigh4 = 0;
4182 DCDB->SenseLength = sizeof(DCDB->SenseData);
4183 DCDB->CDB[0] = 0x12; /* INQUIRY */
4184 DCDB->CDB[1] = 0; /* EVPD = 0 */
4185 DCDB->CDB[2] = 0; /* Page Code */
4186 DCDB->CDB[3] = 0; /* Reserved */
4187 DCDB->CDB[4] = sizeof(DAC960_SCSI_Inquiry_T);
4188 DCDB->CDB[5] = 0; /* Control */
4189 DAC960_QueueCommand(Command);
4190 return;
4192 if (Controller->V1.NeedDeviceSerialNumberInformation)
4194 DAC960_V1_DCDB_T *DCDB = Controller->V1.MonitoringDCDB;
4195 dma_addr_t DCDB_DMA = Controller->V1.MonitoringDCDB_DMA;
4196 dma_addr_t NewInquiryUnitSerialNumberDMA =
4197 Controller->V1.NewInquiryUnitSerialNumberDMA;
4199 Command->V1.CommandMailbox.Type3.CommandOpcode = DAC960_V1_DCDB;
4200 Command->V1.CommandMailbox.Type3.BusAddress = DCDB_DMA;
4201 DCDB->Channel = Controller->V1.DeviceStateChannel;
4202 DCDB->TargetID = Controller->V1.DeviceStateTargetID;
4203 DCDB->Direction = DAC960_V1_DCDB_DataTransferDeviceToSystem;
4204 DCDB->EarlyStatus = false;
4205 DCDB->Timeout = DAC960_V1_DCDB_Timeout_10_seconds;
4206 DCDB->NoAutomaticRequestSense = false;
4207 DCDB->DisconnectPermitted = true;
4208 DCDB->TransferLength =
4209 sizeof(DAC960_SCSI_Inquiry_UnitSerialNumber_T);
4210 DCDB->BusAddress = NewInquiryUnitSerialNumberDMA;
4211 DCDB->CDBLength = 6;
4212 DCDB->TransferLengthHigh4 = 0;
4213 DCDB->SenseLength = sizeof(DCDB->SenseData);
4214 DCDB->CDB[0] = 0x12; /* INQUIRY */
4215 DCDB->CDB[1] = 1; /* EVPD = 1 */
4216 DCDB->CDB[2] = 0x80; /* Page Code */
4217 DCDB->CDB[3] = 0; /* Reserved */
4218 DCDB->CDB[4] = sizeof(DAC960_SCSI_Inquiry_UnitSerialNumber_T);
4219 DCDB->CDB[5] = 0; /* Control */
4220 DAC960_QueueCommand(Command);
4221 return;
4223 if (Controller->V1.StartDeviceStateScan)
4225 Controller->V1.DeviceStateChannel = 0;
4226 Controller->V1.DeviceStateTargetID = 0;
4227 Controller->V1.StartDeviceStateScan = false;
4229 else if (++Controller->V1.DeviceStateTargetID == Controller->Targets)
4231 Controller->V1.DeviceStateChannel++;
4232 Controller->V1.DeviceStateTargetID = 0;
4234 if (Controller->V1.DeviceStateChannel < Controller->Channels)
4236 Controller->V1.NewDeviceState->DeviceState =
4237 DAC960_V1_Device_Dead;
4238 Command->V1.CommandMailbox.Type3D.CommandOpcode =
4239 DAC960_V1_GetDeviceState;
4240 Command->V1.CommandMailbox.Type3D.Channel =
4241 Controller->V1.DeviceStateChannel;
4242 Command->V1.CommandMailbox.Type3D.TargetID =
4243 Controller->V1.DeviceStateTargetID;
4244 Command->V1.CommandMailbox.Type3D.BusAddress =
4245 Controller->V1.NewDeviceStateDMA;
4246 DAC960_QueueCommand(Command);
4247 return;
4249 Controller->V1.NeedDeviceStateInformation = false;
4251 if (Controller->V1.NeedLogicalDriveInformation)
4253 Controller->V1.NeedLogicalDriveInformation = false;
4254 Command->V1.CommandMailbox.Type3.CommandOpcode =
4255 DAC960_V1_GetLogicalDriveInformation;
4256 Command->V1.CommandMailbox.Type3.BusAddress =
4257 Controller->V1.NewLogicalDriveInformationDMA;
4258 DAC960_QueueCommand(Command);
4259 return;
4261 if (Controller->V1.NeedRebuildProgress)
4263 Controller->V1.NeedRebuildProgress = false;
4264 Command->V1.CommandMailbox.Type3.CommandOpcode =
4265 DAC960_V1_GetRebuildProgress;
4266 Command->V1.CommandMailbox.Type3.BusAddress =
4267 Controller->V1.RebuildProgressDMA;
4268 DAC960_QueueCommand(Command);
4269 return;
4271 if (Controller->V1.NeedConsistencyCheckProgress)
4273 Controller->V1.NeedConsistencyCheckProgress = false;
4274 Command->V1.CommandMailbox.Type3.CommandOpcode =
4275 DAC960_V1_RebuildStat;
4276 Command->V1.CommandMailbox.Type3.BusAddress =
4277 Controller->V1.RebuildProgressDMA;
4278 DAC960_QueueCommand(Command);
4279 return;
4281 if (Controller->V1.NeedBackgroundInitializationStatus)
4283 Controller->V1.NeedBackgroundInitializationStatus = false;
4284 Command->V1.CommandMailbox.Type3B.CommandOpcode =
4285 DAC960_V1_BackgroundInitializationControl;
4286 Command->V1.CommandMailbox.Type3B.CommandOpcode2 = 0x20;
4287 Command->V1.CommandMailbox.Type3B.BusAddress =
4288 Controller->V1.BackgroundInitializationStatusDMA;
4289 DAC960_QueueCommand(Command);
4290 return;
4292 Controller->MonitoringTimerCount++;
4293 Controller->MonitoringTimer.expires =
4294 jiffies + DAC960_MonitoringTimerInterval;
4295 add_timer(&Controller->MonitoringTimer);
4297 if (CommandType == DAC960_ImmediateCommand)
4299 complete(Command->Completion);
4300 Command->Completion = NULL;
4301 return;
4303 if (CommandType == DAC960_QueuedCommand)
4305 DAC960_V1_KernelCommand_T *KernelCommand = Command->V1.KernelCommand;
4306 KernelCommand->CommandStatus = Command->V1.CommandStatus;
4307 Command->V1.KernelCommand = NULL;
4308 if (CommandOpcode == DAC960_V1_DCDB)
4309 Controller->V1.DirectCommandActive[KernelCommand->DCDB->Channel]
4310 [KernelCommand->DCDB->TargetID] =
4311 false;
4312 DAC960_DeallocateCommand(Command);
4313 KernelCommand->CompletionFunction(KernelCommand);
4314 return;
4317 Queue a Status Monitoring Command to the Controller using the just
4318 completed Command if one was deferred previously due to lack of a
4319 free Command when the Monitoring Timer Function was called.
4321 if (Controller->MonitoringCommandDeferred)
4323 Controller->MonitoringCommandDeferred = false;
4324 DAC960_V1_QueueMonitoringCommand(Command);
4325 return;
4328 Deallocate the Command.
4330 DAC960_DeallocateCommand(Command);
4332 Wake up any processes waiting on a free Command.
4334 wake_up(&Controller->CommandWaitQueue);
4339 DAC960_V2_ReadWriteError prints an appropriate error message for Command
4340 when an error occurs on a Read or Write operation.
4343 static void DAC960_V2_ReadWriteError(DAC960_Command_T *Command)
4345 DAC960_Controller_T *Controller = Command->Controller;
4346 unsigned char *SenseErrors[] = { "NO SENSE", "RECOVERED ERROR",
4347 "NOT READY", "MEDIUM ERROR",
4348 "HARDWARE ERROR", "ILLEGAL REQUEST",
4349 "UNIT ATTENTION", "DATA PROTECT",
4350 "BLANK CHECK", "VENDOR-SPECIFIC",
4351 "COPY ABORTED", "ABORTED COMMAND",
4352 "EQUAL", "VOLUME OVERFLOW",
4353 "MISCOMPARE", "RESERVED" };
4354 unsigned char *CommandName = "UNKNOWN";
4355 switch (Command->CommandType)
4357 case DAC960_ReadCommand:
4358 case DAC960_ReadRetryCommand:
4359 CommandName = "READ";
4360 break;
4361 case DAC960_WriteCommand:
4362 case DAC960_WriteRetryCommand:
4363 CommandName = "WRITE";
4364 break;
4365 case DAC960_MonitoringCommand:
4366 case DAC960_ImmediateCommand:
4367 case DAC960_QueuedCommand:
4368 break;
4370 DAC960_Error("Error Condition %s on %s:\n", Controller,
4371 SenseErrors[Command->V2.RequestSense->SenseKey], CommandName);
4372 DAC960_Error(" /dev/rd/c%dd%d: absolute blocks %u..%u\n",
4373 Controller, Controller->ControllerNumber,
4374 Command->LogicalDriveNumber, Command->BlockNumber,
4375 Command->BlockNumber + Command->BlockCount - 1);
4380 DAC960_V2_ReportEvent prints an appropriate message when a Controller Event
4381 occurs.
4384 static void DAC960_V2_ReportEvent(DAC960_Controller_T *Controller,
4385 DAC960_V2_Event_T *Event)
4387 DAC960_SCSI_RequestSense_T *RequestSense =
4388 (DAC960_SCSI_RequestSense_T *) &Event->RequestSenseData;
4389 unsigned char MessageBuffer[DAC960_LineBufferSize];
4390 static struct { int EventCode; unsigned char *EventMessage; } EventList[] =
4391 { /* Physical Device Events (0x0000 - 0x007F) */
4392 { 0x0001, "P Online" },
4393 { 0x0002, "P Standby" },
4394 { 0x0005, "P Automatic Rebuild Started" },
4395 { 0x0006, "P Manual Rebuild Started" },
4396 { 0x0007, "P Rebuild Completed" },
4397 { 0x0008, "P Rebuild Cancelled" },
4398 { 0x0009, "P Rebuild Failed for Unknown Reasons" },
4399 { 0x000A, "P Rebuild Failed due to New Physical Device" },
4400 { 0x000B, "P Rebuild Failed due to Logical Drive Failure" },
4401 { 0x000C, "S Offline" },
4402 { 0x000D, "P Found" },
4403 { 0x000E, "P Removed" },
4404 { 0x000F, "P Unconfigured" },
4405 { 0x0010, "P Expand Capacity Started" },
4406 { 0x0011, "P Expand Capacity Completed" },
4407 { 0x0012, "P Expand Capacity Failed" },
4408 { 0x0013, "P Command Timed Out" },
4409 { 0x0014, "P Command Aborted" },
4410 { 0x0015, "P Command Retried" },
4411 { 0x0016, "P Parity Error" },
4412 { 0x0017, "P Soft Error" },
4413 { 0x0018, "P Miscellaneous Error" },
4414 { 0x0019, "P Reset" },
4415 { 0x001A, "P Active Spare Found" },
4416 { 0x001B, "P Warm Spare Found" },
4417 { 0x001C, "S Sense Data Received" },
4418 { 0x001D, "P Initialization Started" },
4419 { 0x001E, "P Initialization Completed" },
4420 { 0x001F, "P Initialization Failed" },
4421 { 0x0020, "P Initialization Cancelled" },
4422 { 0x0021, "P Failed because Write Recovery Failed" },
4423 { 0x0022, "P Failed because SCSI Bus Reset Failed" },
4424 { 0x0023, "P Failed because of Double Check Condition" },
4425 { 0x0024, "P Failed because Device Cannot Be Accessed" },
4426 { 0x0025, "P Failed because of Gross Error on SCSI Processor" },
4427 { 0x0026, "P Failed because of Bad Tag from Device" },
4428 { 0x0027, "P Failed because of Command Timeout" },
4429 { 0x0028, "P Failed because of System Reset" },
4430 { 0x0029, "P Failed because of Busy Status or Parity Error" },
4431 { 0x002A, "P Failed because Host Set Device to Failed State" },
4432 { 0x002B, "P Failed because of Selection Timeout" },
4433 { 0x002C, "P Failed because of SCSI Bus Phase Error" },
4434 { 0x002D, "P Failed because Device Returned Unknown Status" },
4435 { 0x002E, "P Failed because Device Not Ready" },
4436 { 0x002F, "P Failed because Device Not Found at Startup" },
4437 { 0x0030, "P Failed because COD Write Operation Failed" },
4438 { 0x0031, "P Failed because BDT Write Operation Failed" },
4439 { 0x0039, "P Missing at Startup" },
4440 { 0x003A, "P Start Rebuild Failed due to Physical Drive Too Small" },
4441 { 0x003C, "P Temporarily Offline Device Automatically Made Online" },
4442 { 0x003D, "P Standby Rebuild Started" },
4443 /* Logical Device Events (0x0080 - 0x00FF) */
4444 { 0x0080, "M Consistency Check Started" },
4445 { 0x0081, "M Consistency Check Completed" },
4446 { 0x0082, "M Consistency Check Cancelled" },
4447 { 0x0083, "M Consistency Check Completed With Errors" },
4448 { 0x0084, "M Consistency Check Failed due to Logical Drive Failure" },
4449 { 0x0085, "M Consistency Check Failed due to Physical Device Failure" },
4450 { 0x0086, "L Offline" },
4451 { 0x0087, "L Critical" },
4452 { 0x0088, "L Online" },
4453 { 0x0089, "M Automatic Rebuild Started" },
4454 { 0x008A, "M Manual Rebuild Started" },
4455 { 0x008B, "M Rebuild Completed" },
4456 { 0x008C, "M Rebuild Cancelled" },
4457 { 0x008D, "M Rebuild Failed for Unknown Reasons" },
4458 { 0x008E, "M Rebuild Failed due to New Physical Device" },
4459 { 0x008F, "M Rebuild Failed due to Logical Drive Failure" },
4460 { 0x0090, "M Initialization Started" },
4461 { 0x0091, "M Initialization Completed" },
4462 { 0x0092, "M Initialization Cancelled" },
4463 { 0x0093, "M Initialization Failed" },
4464 { 0x0094, "L Found" },
4465 { 0x0095, "L Deleted" },
4466 { 0x0096, "M Expand Capacity Started" },
4467 { 0x0097, "M Expand Capacity Completed" },
4468 { 0x0098, "M Expand Capacity Failed" },
4469 { 0x0099, "L Bad Block Found" },
4470 { 0x009A, "L Size Changed" },
4471 { 0x009B, "L Type Changed" },
4472 { 0x009C, "L Bad Data Block Found" },
4473 { 0x009E, "L Read of Data Block in BDT" },
4474 { 0x009F, "L Write Back Data for Disk Block Lost" },
4475 { 0x00A0, "L Temporarily Offline RAID-5/3 Drive Made Online" },
4476 { 0x00A1, "L Temporarily Offline RAID-6/1/0/7 Drive Made Online" },
4477 { 0x00A2, "L Standby Rebuild Started" },
4478 /* Fault Management Events (0x0100 - 0x017F) */
4479 { 0x0140, "E Fan %d Failed" },
4480 { 0x0141, "E Fan %d OK" },
4481 { 0x0142, "E Fan %d Not Present" },
4482 { 0x0143, "E Power Supply %d Failed" },
4483 { 0x0144, "E Power Supply %d OK" },
4484 { 0x0145, "E Power Supply %d Not Present" },
4485 { 0x0146, "E Temperature Sensor %d Temperature Exceeds Safe Limit" },
4486 { 0x0147, "E Temperature Sensor %d Temperature Exceeds Working Limit" },
4487 { 0x0148, "E Temperature Sensor %d Temperature Normal" },
4488 { 0x0149, "E Temperature Sensor %d Not Present" },
4489 { 0x014A, "E Enclosure Management Unit %d Access Critical" },
4490 { 0x014B, "E Enclosure Management Unit %d Access OK" },
4491 { 0x014C, "E Enclosure Management Unit %d Access Offline" },
4492 /* Controller Events (0x0180 - 0x01FF) */
4493 { 0x0181, "C Cache Write Back Error" },
4494 { 0x0188, "C Battery Backup Unit Found" },
4495 { 0x0189, "C Battery Backup Unit Charge Level Low" },
4496 { 0x018A, "C Battery Backup Unit Charge Level OK" },
4497 { 0x0193, "C Installation Aborted" },
4498 { 0x0195, "C Battery Backup Unit Physically Removed" },
4499 { 0x0196, "C Memory Error During Warm Boot" },
4500 { 0x019E, "C Memory Soft ECC Error Corrected" },
4501 { 0x019F, "C Memory Hard ECC Error Corrected" },
4502 { 0x01A2, "C Battery Backup Unit Failed" },
4503 { 0x01AB, "C Mirror Race Recovery Failed" },
4504 { 0x01AC, "C Mirror Race on Critical Drive" },
4505 /* Controller Internal Processor Events */
4506 { 0x0380, "C Internal Controller Hung" },
4507 { 0x0381, "C Internal Controller Firmware Breakpoint" },
4508 { 0x0390, "C Internal Controller i960 Processor Specific Error" },
4509 { 0x03A0, "C Internal Controller StrongARM Processor Specific Error" },
4510 { 0, "" } };
4511 int EventListIndex = 0, EventCode;
4512 unsigned char EventType, *EventMessage;
4513 if (Event->EventCode == 0x1C &&
4514 RequestSense->SenseKey == DAC960_SenseKey_VendorSpecific &&
4515 (RequestSense->AdditionalSenseCode == 0x80 ||
4516 RequestSense->AdditionalSenseCode == 0x81))
4517 Event->EventCode = ((RequestSense->AdditionalSenseCode - 0x80) << 8) |
4518 RequestSense->AdditionalSenseCodeQualifier;
4519 while (true)
4521 EventCode = EventList[EventListIndex].EventCode;
4522 if (EventCode == Event->EventCode || EventCode == 0) break;
4523 EventListIndex++;
4525 EventType = EventList[EventListIndex].EventMessage[0];
4526 EventMessage = &EventList[EventListIndex].EventMessage[2];
4527 if (EventCode == 0)
4529 DAC960_Critical("Unknown Controller Event Code %04X\n",
4530 Controller, Event->EventCode);
4531 return;
4533 switch (EventType)
4535 case 'P':
4536 DAC960_Critical("Physical Device %d:%d %s\n", Controller,
4537 Event->Channel, Event->TargetID, EventMessage);
4538 break;
4539 case 'L':
4540 DAC960_Critical("Logical Drive %d (/dev/rd/c%dd%d) %s\n", Controller,
4541 Event->LogicalUnit, Controller->ControllerNumber,
4542 Event->LogicalUnit, EventMessage);
4543 break;
4544 case 'M':
4545 DAC960_Progress("Logical Drive %d (/dev/rd/c%dd%d) %s\n", Controller,
4546 Event->LogicalUnit, Controller->ControllerNumber,
4547 Event->LogicalUnit, EventMessage);
4548 break;
4549 case 'S':
4550 if (RequestSense->SenseKey == DAC960_SenseKey_NoSense ||
4551 (RequestSense->SenseKey == DAC960_SenseKey_NotReady &&
4552 RequestSense->AdditionalSenseCode == 0x04 &&
4553 (RequestSense->AdditionalSenseCodeQualifier == 0x01 ||
4554 RequestSense->AdditionalSenseCodeQualifier == 0x02)))
4555 break;
4556 DAC960_Critical("Physical Device %d:%d %s\n", Controller,
4557 Event->Channel, Event->TargetID, EventMessage);
4558 DAC960_Critical("Physical Device %d:%d Request Sense: "
4559 "Sense Key = %X, ASC = %02X, ASCQ = %02X\n",
4560 Controller,
4561 Event->Channel,
4562 Event->TargetID,
4563 RequestSense->SenseKey,
4564 RequestSense->AdditionalSenseCode,
4565 RequestSense->AdditionalSenseCodeQualifier);
4566 DAC960_Critical("Physical Device %d:%d Request Sense: "
4567 "Information = %02X%02X%02X%02X "
4568 "%02X%02X%02X%02X\n",
4569 Controller,
4570 Event->Channel,
4571 Event->TargetID,
4572 RequestSense->Information[0],
4573 RequestSense->Information[1],
4574 RequestSense->Information[2],
4575 RequestSense->Information[3],
4576 RequestSense->CommandSpecificInformation[0],
4577 RequestSense->CommandSpecificInformation[1],
4578 RequestSense->CommandSpecificInformation[2],
4579 RequestSense->CommandSpecificInformation[3]);
4580 break;
4581 case 'E':
4582 if (Controller->SuppressEnclosureMessages) break;
4583 sprintf(MessageBuffer, EventMessage, Event->LogicalUnit);
4584 DAC960_Critical("Enclosure %d %s\n", Controller,
4585 Event->TargetID, MessageBuffer);
4586 break;
4587 case 'C':
4588 DAC960_Critical("Controller %s\n", Controller, EventMessage);
4589 break;
4590 default:
4591 DAC960_Critical("Unknown Controller Event Code %04X\n",
4592 Controller, Event->EventCode);
4593 break;
4599 DAC960_V2_ReportProgress prints an appropriate progress message for
4600 Logical Device Long Operations.
4603 static void DAC960_V2_ReportProgress(DAC960_Controller_T *Controller,
4604 unsigned char *MessageString,
4605 unsigned int LogicalDeviceNumber,
4606 unsigned long BlocksCompleted,
4607 unsigned long LogicalDeviceSize)
4609 Controller->EphemeralProgressMessage = true;
4610 DAC960_Progress("%s in Progress: Logical Drive %d (/dev/rd/c%dd%d) "
4611 "%d%% completed\n", Controller,
4612 MessageString,
4613 LogicalDeviceNumber,
4614 Controller->ControllerNumber,
4615 LogicalDeviceNumber,
4616 (100 * (BlocksCompleted >> 7)) / (LogicalDeviceSize >> 7));
4617 Controller->EphemeralProgressMessage = false;
4622 DAC960_V2_ProcessCompletedCommand performs completion processing for Command
4623 for DAC960 V2 Firmware Controllers.
4626 static void DAC960_V2_ProcessCompletedCommand(DAC960_Command_T *Command)
4628 DAC960_Controller_T *Controller = Command->Controller;
4629 DAC960_CommandType_T CommandType = Command->CommandType;
4630 DAC960_V2_CommandMailbox_T *CommandMailbox = &Command->V2.CommandMailbox;
4631 DAC960_V2_IOCTL_Opcode_T IOCTLOpcode = CommandMailbox->Common.IOCTL_Opcode;
4632 DAC960_V2_CommandOpcode_T CommandOpcode = CommandMailbox->SCSI_10.CommandOpcode;
4633 DAC960_V2_CommandStatus_T CommandStatus = Command->V2.CommandStatus;
4635 if (CommandType == DAC960_ReadCommand ||
4636 CommandType == DAC960_WriteCommand)
4639 #ifdef FORCE_RETRY_DEBUG
4640 CommandStatus = DAC960_V2_AbormalCompletion;
4641 #endif
4642 Command->V2.RequestSense->SenseKey = DAC960_SenseKey_MediumError;
4644 if (CommandStatus == DAC960_V2_NormalCompletion) {
4646 if (!DAC960_ProcessCompletedRequest(Command, true))
4647 BUG();
4649 } else if (Command->V2.RequestSense->SenseKey == DAC960_SenseKey_MediumError)
4652 * break the command down into pieces and resubmit each
4653 * piece, hoping that some of them will succeed.
4655 DAC960_queue_partial_rw(Command);
4656 return;
4658 else
4660 if (Command->V2.RequestSense->SenseKey != DAC960_SenseKey_NotReady)
4661 DAC960_V2_ReadWriteError(Command);
4663 Perform completion processing for all buffers in this I/O Request.
4665 (void)DAC960_ProcessCompletedRequest(Command, false);
4668 else if (CommandType == DAC960_ReadRetryCommand ||
4669 CommandType == DAC960_WriteRetryCommand)
4671 bool normal_completion;
4673 #ifdef FORCE_RETRY_FAILURE_DEBUG
4674 static int retry_count = 1;
4675 #endif
4677 Perform completion processing for the portion that was
4678 retried, and submit the next portion, if any.
4680 normal_completion = true;
4681 if (CommandStatus != DAC960_V2_NormalCompletion) {
4682 normal_completion = false;
4683 if (Command->V2.RequestSense->SenseKey != DAC960_SenseKey_NotReady)
4684 DAC960_V2_ReadWriteError(Command);
4687 #ifdef FORCE_RETRY_FAILURE_DEBUG
4688 if (!(++retry_count % 10000)) {
4689 printk("V2 error retry failure test\n");
4690 normal_completion = false;
4691 DAC960_V2_ReadWriteError(Command);
4693 #endif
4695 if (!DAC960_ProcessCompletedRequest(Command, normal_completion)) {
4696 DAC960_queue_partial_rw(Command);
4697 return;
4700 else if (CommandType == DAC960_MonitoringCommand)
4702 if (Controller->ShutdownMonitoringTimer)
4703 return;
4704 if (IOCTLOpcode == DAC960_V2_GetControllerInfo)
4706 DAC960_V2_ControllerInfo_T *NewControllerInfo =
4707 Controller->V2.NewControllerInformation;
4708 DAC960_V2_ControllerInfo_T *ControllerInfo =
4709 &Controller->V2.ControllerInformation;
4710 Controller->LogicalDriveCount =
4711 NewControllerInfo->LogicalDevicesPresent;
4712 Controller->V2.NeedLogicalDeviceInformation = true;
4713 Controller->V2.NeedPhysicalDeviceInformation = true;
4714 Controller->V2.StartLogicalDeviceInformationScan = true;
4715 Controller->V2.StartPhysicalDeviceInformationScan = true;
4716 Controller->MonitoringAlertMode =
4717 (NewControllerInfo->LogicalDevicesCritical > 0 ||
4718 NewControllerInfo->LogicalDevicesOffline > 0 ||
4719 NewControllerInfo->PhysicalDisksCritical > 0 ||
4720 NewControllerInfo->PhysicalDisksOffline > 0);
4721 memcpy(ControllerInfo, NewControllerInfo,
4722 sizeof(DAC960_V2_ControllerInfo_T));
4724 else if (IOCTLOpcode == DAC960_V2_GetEvent)
4726 if (CommandStatus == DAC960_V2_NormalCompletion) {
4727 DAC960_V2_ReportEvent(Controller, Controller->V2.Event);
4729 Controller->V2.NextEventSequenceNumber++;
4731 else if (IOCTLOpcode == DAC960_V2_GetPhysicalDeviceInfoValid &&
4732 CommandStatus == DAC960_V2_NormalCompletion)
4734 DAC960_V2_PhysicalDeviceInfo_T *NewPhysicalDeviceInfo =
4735 Controller->V2.NewPhysicalDeviceInformation;
4736 unsigned int PhysicalDeviceIndex = Controller->V2.PhysicalDeviceIndex;
4737 DAC960_V2_PhysicalDeviceInfo_T *PhysicalDeviceInfo =
4738 Controller->V2.PhysicalDeviceInformation[PhysicalDeviceIndex];
4739 DAC960_SCSI_Inquiry_UnitSerialNumber_T *InquiryUnitSerialNumber =
4740 Controller->V2.InquiryUnitSerialNumber[PhysicalDeviceIndex];
4741 unsigned int DeviceIndex;
4742 while (PhysicalDeviceInfo != NULL &&
4743 (NewPhysicalDeviceInfo->Channel >
4744 PhysicalDeviceInfo->Channel ||
4745 (NewPhysicalDeviceInfo->Channel ==
4746 PhysicalDeviceInfo->Channel &&
4747 (NewPhysicalDeviceInfo->TargetID >
4748 PhysicalDeviceInfo->TargetID ||
4749 (NewPhysicalDeviceInfo->TargetID ==
4750 PhysicalDeviceInfo->TargetID &&
4751 NewPhysicalDeviceInfo->LogicalUnit >
4752 PhysicalDeviceInfo->LogicalUnit)))))
4754 DAC960_Critical("Physical Device %d:%d No Longer Exists\n",
4755 Controller,
4756 PhysicalDeviceInfo->Channel,
4757 PhysicalDeviceInfo->TargetID);
4758 Controller->V2.PhysicalDeviceInformation
4759 [PhysicalDeviceIndex] = NULL;
4760 Controller->V2.InquiryUnitSerialNumber
4761 [PhysicalDeviceIndex] = NULL;
4762 kfree(PhysicalDeviceInfo);
4763 kfree(InquiryUnitSerialNumber);
4764 for (DeviceIndex = PhysicalDeviceIndex;
4765 DeviceIndex < DAC960_V2_MaxPhysicalDevices - 1;
4766 DeviceIndex++)
4768 Controller->V2.PhysicalDeviceInformation[DeviceIndex] =
4769 Controller->V2.PhysicalDeviceInformation[DeviceIndex+1];
4770 Controller->V2.InquiryUnitSerialNumber[DeviceIndex] =
4771 Controller->V2.InquiryUnitSerialNumber[DeviceIndex+1];
4773 Controller->V2.PhysicalDeviceInformation
4774 [DAC960_V2_MaxPhysicalDevices-1] = NULL;
4775 Controller->V2.InquiryUnitSerialNumber
4776 [DAC960_V2_MaxPhysicalDevices-1] = NULL;
4777 PhysicalDeviceInfo =
4778 Controller->V2.PhysicalDeviceInformation[PhysicalDeviceIndex];
4779 InquiryUnitSerialNumber =
4780 Controller->V2.InquiryUnitSerialNumber[PhysicalDeviceIndex];
4782 if (PhysicalDeviceInfo == NULL ||
4783 (NewPhysicalDeviceInfo->Channel !=
4784 PhysicalDeviceInfo->Channel) ||
4785 (NewPhysicalDeviceInfo->TargetID !=
4786 PhysicalDeviceInfo->TargetID) ||
4787 (NewPhysicalDeviceInfo->LogicalUnit !=
4788 PhysicalDeviceInfo->LogicalUnit))
4790 PhysicalDeviceInfo =
4791 kmalloc(sizeof(DAC960_V2_PhysicalDeviceInfo_T), GFP_ATOMIC);
4792 InquiryUnitSerialNumber =
4793 kmalloc(sizeof(DAC960_SCSI_Inquiry_UnitSerialNumber_T),
4794 GFP_ATOMIC);
4795 if (InquiryUnitSerialNumber == NULL ||
4796 PhysicalDeviceInfo == NULL)
4798 kfree(InquiryUnitSerialNumber);
4799 InquiryUnitSerialNumber = NULL;
4800 kfree(PhysicalDeviceInfo);
4801 PhysicalDeviceInfo = NULL;
4803 DAC960_Critical("Physical Device %d:%d Now Exists%s\n",
4804 Controller,
4805 NewPhysicalDeviceInfo->Channel,
4806 NewPhysicalDeviceInfo->TargetID,
4807 (PhysicalDeviceInfo != NULL
4808 ? "" : " - Allocation Failed"));
4809 if (PhysicalDeviceInfo != NULL)
4811 memset(PhysicalDeviceInfo, 0,
4812 sizeof(DAC960_V2_PhysicalDeviceInfo_T));
4813 PhysicalDeviceInfo->PhysicalDeviceState =
4814 DAC960_V2_Device_InvalidState;
4815 memset(InquiryUnitSerialNumber, 0,
4816 sizeof(DAC960_SCSI_Inquiry_UnitSerialNumber_T));
4817 InquiryUnitSerialNumber->PeripheralDeviceType = 0x1F;
4818 for (DeviceIndex = DAC960_V2_MaxPhysicalDevices - 1;
4819 DeviceIndex > PhysicalDeviceIndex;
4820 DeviceIndex--)
4822 Controller->V2.PhysicalDeviceInformation[DeviceIndex] =
4823 Controller->V2.PhysicalDeviceInformation[DeviceIndex-1];
4824 Controller->V2.InquiryUnitSerialNumber[DeviceIndex] =
4825 Controller->V2.InquiryUnitSerialNumber[DeviceIndex-1];
4827 Controller->V2.PhysicalDeviceInformation
4828 [PhysicalDeviceIndex] =
4829 PhysicalDeviceInfo;
4830 Controller->V2.InquiryUnitSerialNumber
4831 [PhysicalDeviceIndex] =
4832 InquiryUnitSerialNumber;
4833 Controller->V2.NeedDeviceSerialNumberInformation = true;
4836 if (PhysicalDeviceInfo != NULL)
4838 if (NewPhysicalDeviceInfo->PhysicalDeviceState !=
4839 PhysicalDeviceInfo->PhysicalDeviceState)
4840 DAC960_Critical(
4841 "Physical Device %d:%d is now %s\n", Controller,
4842 NewPhysicalDeviceInfo->Channel,
4843 NewPhysicalDeviceInfo->TargetID,
4844 (NewPhysicalDeviceInfo->PhysicalDeviceState
4845 == DAC960_V2_Device_Online
4846 ? "ONLINE"
4847 : NewPhysicalDeviceInfo->PhysicalDeviceState
4848 == DAC960_V2_Device_Rebuild
4849 ? "REBUILD"
4850 : NewPhysicalDeviceInfo->PhysicalDeviceState
4851 == DAC960_V2_Device_Missing
4852 ? "MISSING"
4853 : NewPhysicalDeviceInfo->PhysicalDeviceState
4854 == DAC960_V2_Device_Critical
4855 ? "CRITICAL"
4856 : NewPhysicalDeviceInfo->PhysicalDeviceState
4857 == DAC960_V2_Device_Dead
4858 ? "DEAD"
4859 : NewPhysicalDeviceInfo->PhysicalDeviceState
4860 == DAC960_V2_Device_SuspectedDead
4861 ? "SUSPECTED-DEAD"
4862 : NewPhysicalDeviceInfo->PhysicalDeviceState
4863 == DAC960_V2_Device_CommandedOffline
4864 ? "COMMANDED-OFFLINE"
4865 : NewPhysicalDeviceInfo->PhysicalDeviceState
4866 == DAC960_V2_Device_Standby
4867 ? "STANDBY" : "UNKNOWN"));
4868 if ((NewPhysicalDeviceInfo->ParityErrors !=
4869 PhysicalDeviceInfo->ParityErrors) ||
4870 (NewPhysicalDeviceInfo->SoftErrors !=
4871 PhysicalDeviceInfo->SoftErrors) ||
4872 (NewPhysicalDeviceInfo->HardErrors !=
4873 PhysicalDeviceInfo->HardErrors) ||
4874 (NewPhysicalDeviceInfo->MiscellaneousErrors !=
4875 PhysicalDeviceInfo->MiscellaneousErrors) ||
4876 (NewPhysicalDeviceInfo->CommandTimeouts !=
4877 PhysicalDeviceInfo->CommandTimeouts) ||
4878 (NewPhysicalDeviceInfo->Retries !=
4879 PhysicalDeviceInfo->Retries) ||
4880 (NewPhysicalDeviceInfo->Aborts !=
4881 PhysicalDeviceInfo->Aborts) ||
4882 (NewPhysicalDeviceInfo->PredictedFailuresDetected !=
4883 PhysicalDeviceInfo->PredictedFailuresDetected))
4885 DAC960_Critical("Physical Device %d:%d Errors: "
4886 "Parity = %d, Soft = %d, "
4887 "Hard = %d, Misc = %d\n",
4888 Controller,
4889 NewPhysicalDeviceInfo->Channel,
4890 NewPhysicalDeviceInfo->TargetID,
4891 NewPhysicalDeviceInfo->ParityErrors,
4892 NewPhysicalDeviceInfo->SoftErrors,
4893 NewPhysicalDeviceInfo->HardErrors,
4894 NewPhysicalDeviceInfo->MiscellaneousErrors);
4895 DAC960_Critical("Physical Device %d:%d Errors: "
4896 "Timeouts = %d, Retries = %d, "
4897 "Aborts = %d, Predicted = %d\n",
4898 Controller,
4899 NewPhysicalDeviceInfo->Channel,
4900 NewPhysicalDeviceInfo->TargetID,
4901 NewPhysicalDeviceInfo->CommandTimeouts,
4902 NewPhysicalDeviceInfo->Retries,
4903 NewPhysicalDeviceInfo->Aborts,
4904 NewPhysicalDeviceInfo
4905 ->PredictedFailuresDetected);
4907 if ((PhysicalDeviceInfo->PhysicalDeviceState
4908 == DAC960_V2_Device_Dead ||
4909 PhysicalDeviceInfo->PhysicalDeviceState
4910 == DAC960_V2_Device_InvalidState) &&
4911 NewPhysicalDeviceInfo->PhysicalDeviceState
4912 != DAC960_V2_Device_Dead)
4913 Controller->V2.NeedDeviceSerialNumberInformation = true;
4914 memcpy(PhysicalDeviceInfo, NewPhysicalDeviceInfo,
4915 sizeof(DAC960_V2_PhysicalDeviceInfo_T));
4917 NewPhysicalDeviceInfo->LogicalUnit++;
4918 Controller->V2.PhysicalDeviceIndex++;
4920 else if (IOCTLOpcode == DAC960_V2_GetPhysicalDeviceInfoValid)
4922 unsigned int DeviceIndex;
4923 for (DeviceIndex = Controller->V2.PhysicalDeviceIndex;
4924 DeviceIndex < DAC960_V2_MaxPhysicalDevices;
4925 DeviceIndex++)
4927 DAC960_V2_PhysicalDeviceInfo_T *PhysicalDeviceInfo =
4928 Controller->V2.PhysicalDeviceInformation[DeviceIndex];
4929 DAC960_SCSI_Inquiry_UnitSerialNumber_T *InquiryUnitSerialNumber =
4930 Controller->V2.InquiryUnitSerialNumber[DeviceIndex];
4931 if (PhysicalDeviceInfo == NULL) break;
4932 DAC960_Critical("Physical Device %d:%d No Longer Exists\n",
4933 Controller,
4934 PhysicalDeviceInfo->Channel,
4935 PhysicalDeviceInfo->TargetID);
4936 Controller->V2.PhysicalDeviceInformation[DeviceIndex] = NULL;
4937 Controller->V2.InquiryUnitSerialNumber[DeviceIndex] = NULL;
4938 kfree(PhysicalDeviceInfo);
4939 kfree(InquiryUnitSerialNumber);
4941 Controller->V2.NeedPhysicalDeviceInformation = false;
4943 else if (IOCTLOpcode == DAC960_V2_GetLogicalDeviceInfoValid &&
4944 CommandStatus == DAC960_V2_NormalCompletion)
4946 DAC960_V2_LogicalDeviceInfo_T *NewLogicalDeviceInfo =
4947 Controller->V2.NewLogicalDeviceInformation;
4948 unsigned short LogicalDeviceNumber =
4949 NewLogicalDeviceInfo->LogicalDeviceNumber;
4950 DAC960_V2_LogicalDeviceInfo_T *LogicalDeviceInfo =
4951 Controller->V2.LogicalDeviceInformation[LogicalDeviceNumber];
4952 if (LogicalDeviceInfo == NULL)
4954 DAC960_V2_PhysicalDevice_T PhysicalDevice;
4955 PhysicalDevice.Controller = 0;
4956 PhysicalDevice.Channel = NewLogicalDeviceInfo->Channel;
4957 PhysicalDevice.TargetID = NewLogicalDeviceInfo->TargetID;
4958 PhysicalDevice.LogicalUnit = NewLogicalDeviceInfo->LogicalUnit;
4959 Controller->V2.LogicalDriveToVirtualDevice[LogicalDeviceNumber] =
4960 PhysicalDevice;
4961 LogicalDeviceInfo = kmalloc(sizeof(DAC960_V2_LogicalDeviceInfo_T),
4962 GFP_ATOMIC);
4963 Controller->V2.LogicalDeviceInformation[LogicalDeviceNumber] =
4964 LogicalDeviceInfo;
4965 DAC960_Critical("Logical Drive %d (/dev/rd/c%dd%d) "
4966 "Now Exists%s\n", Controller,
4967 LogicalDeviceNumber,
4968 Controller->ControllerNumber,
4969 LogicalDeviceNumber,
4970 (LogicalDeviceInfo != NULL
4971 ? "" : " - Allocation Failed"));
4972 if (LogicalDeviceInfo != NULL)
4974 memset(LogicalDeviceInfo, 0,
4975 sizeof(DAC960_V2_LogicalDeviceInfo_T));
4976 DAC960_ComputeGenericDiskInfo(Controller);
4979 if (LogicalDeviceInfo != NULL)
4981 unsigned long LogicalDeviceSize =
4982 NewLogicalDeviceInfo->ConfigurableDeviceSize;
4983 if (NewLogicalDeviceInfo->LogicalDeviceState !=
4984 LogicalDeviceInfo->LogicalDeviceState)
4985 DAC960_Critical("Logical Drive %d (/dev/rd/c%dd%d) "
4986 "is now %s\n", Controller,
4987 LogicalDeviceNumber,
4988 Controller->ControllerNumber,
4989 LogicalDeviceNumber,
4990 (NewLogicalDeviceInfo->LogicalDeviceState
4991 == DAC960_V2_LogicalDevice_Online
4992 ? "ONLINE"
4993 : NewLogicalDeviceInfo->LogicalDeviceState
4994 == DAC960_V2_LogicalDevice_Critical
4995 ? "CRITICAL" : "OFFLINE"));
4996 if ((NewLogicalDeviceInfo->SoftErrors !=
4997 LogicalDeviceInfo->SoftErrors) ||
4998 (NewLogicalDeviceInfo->CommandsFailed !=
4999 LogicalDeviceInfo->CommandsFailed) ||
5000 (NewLogicalDeviceInfo->DeferredWriteErrors !=
5001 LogicalDeviceInfo->DeferredWriteErrors))
5002 DAC960_Critical("Logical Drive %d (/dev/rd/c%dd%d) Errors: "
5003 "Soft = %d, Failed = %d, Deferred Write = %d\n",
5004 Controller, LogicalDeviceNumber,
5005 Controller->ControllerNumber,
5006 LogicalDeviceNumber,
5007 NewLogicalDeviceInfo->SoftErrors,
5008 NewLogicalDeviceInfo->CommandsFailed,
5009 NewLogicalDeviceInfo->DeferredWriteErrors);
5010 if (NewLogicalDeviceInfo->ConsistencyCheckInProgress)
5011 DAC960_V2_ReportProgress(Controller,
5012 "Consistency Check",
5013 LogicalDeviceNumber,
5014 NewLogicalDeviceInfo
5015 ->ConsistencyCheckBlockNumber,
5016 LogicalDeviceSize);
5017 else if (NewLogicalDeviceInfo->RebuildInProgress)
5018 DAC960_V2_ReportProgress(Controller,
5019 "Rebuild",
5020 LogicalDeviceNumber,
5021 NewLogicalDeviceInfo
5022 ->RebuildBlockNumber,
5023 LogicalDeviceSize);
5024 else if (NewLogicalDeviceInfo->BackgroundInitializationInProgress)
5025 DAC960_V2_ReportProgress(Controller,
5026 "Background Initialization",
5027 LogicalDeviceNumber,
5028 NewLogicalDeviceInfo
5029 ->BackgroundInitializationBlockNumber,
5030 LogicalDeviceSize);
5031 else if (NewLogicalDeviceInfo->ForegroundInitializationInProgress)
5032 DAC960_V2_ReportProgress(Controller,
5033 "Foreground Initialization",
5034 LogicalDeviceNumber,
5035 NewLogicalDeviceInfo
5036 ->ForegroundInitializationBlockNumber,
5037 LogicalDeviceSize);
5038 else if (NewLogicalDeviceInfo->DataMigrationInProgress)
5039 DAC960_V2_ReportProgress(Controller,
5040 "Data Migration",
5041 LogicalDeviceNumber,
5042 NewLogicalDeviceInfo
5043 ->DataMigrationBlockNumber,
5044 LogicalDeviceSize);
5045 else if (NewLogicalDeviceInfo->PatrolOperationInProgress)
5046 DAC960_V2_ReportProgress(Controller,
5047 "Patrol Operation",
5048 LogicalDeviceNumber,
5049 NewLogicalDeviceInfo
5050 ->PatrolOperationBlockNumber,
5051 LogicalDeviceSize);
5052 if (LogicalDeviceInfo->BackgroundInitializationInProgress &&
5053 !NewLogicalDeviceInfo->BackgroundInitializationInProgress)
5054 DAC960_Progress("Logical Drive %d (/dev/rd/c%dd%d) "
5055 "Background Initialization %s\n",
5056 Controller,
5057 LogicalDeviceNumber,
5058 Controller->ControllerNumber,
5059 LogicalDeviceNumber,
5060 (NewLogicalDeviceInfo->LogicalDeviceControl
5061 .LogicalDeviceInitialized
5062 ? "Completed" : "Failed"));
5063 memcpy(LogicalDeviceInfo, NewLogicalDeviceInfo,
5064 sizeof(DAC960_V2_LogicalDeviceInfo_T));
5066 Controller->V2.LogicalDriveFoundDuringScan
5067 [LogicalDeviceNumber] = true;
5068 NewLogicalDeviceInfo->LogicalDeviceNumber++;
5070 else if (IOCTLOpcode == DAC960_V2_GetLogicalDeviceInfoValid)
5072 int LogicalDriveNumber;
5073 for (LogicalDriveNumber = 0;
5074 LogicalDriveNumber < DAC960_MaxLogicalDrives;
5075 LogicalDriveNumber++)
5077 DAC960_V2_LogicalDeviceInfo_T *LogicalDeviceInfo =
5078 Controller->V2.LogicalDeviceInformation[LogicalDriveNumber];
5079 if (LogicalDeviceInfo == NULL ||
5080 Controller->V2.LogicalDriveFoundDuringScan
5081 [LogicalDriveNumber])
5082 continue;
5083 DAC960_Critical("Logical Drive %d (/dev/rd/c%dd%d) "
5084 "No Longer Exists\n", Controller,
5085 LogicalDriveNumber,
5086 Controller->ControllerNumber,
5087 LogicalDriveNumber);
5088 Controller->V2.LogicalDeviceInformation
5089 [LogicalDriveNumber] = NULL;
5090 kfree(LogicalDeviceInfo);
5091 Controller->LogicalDriveInitiallyAccessible
5092 [LogicalDriveNumber] = false;
5093 DAC960_ComputeGenericDiskInfo(Controller);
5095 Controller->V2.NeedLogicalDeviceInformation = false;
5097 else if (CommandOpcode == DAC960_V2_SCSI_10_Passthru)
5099 DAC960_SCSI_Inquiry_UnitSerialNumber_T *InquiryUnitSerialNumber =
5100 Controller->V2.InquiryUnitSerialNumber[Controller->V2.PhysicalDeviceIndex - 1];
5102 if (CommandStatus != DAC960_V2_NormalCompletion) {
5103 memset(InquiryUnitSerialNumber,
5104 0, sizeof(DAC960_SCSI_Inquiry_UnitSerialNumber_T));
5105 InquiryUnitSerialNumber->PeripheralDeviceType = 0x1F;
5106 } else
5107 memcpy(InquiryUnitSerialNumber,
5108 Controller->V2.NewInquiryUnitSerialNumber,
5109 sizeof(DAC960_SCSI_Inquiry_UnitSerialNumber_T));
5111 Controller->V2.NeedDeviceSerialNumberInformation = false;
5114 if (Controller->V2.HealthStatusBuffer->NextEventSequenceNumber
5115 - Controller->V2.NextEventSequenceNumber > 0)
5117 CommandMailbox->GetEvent.CommandOpcode = DAC960_V2_IOCTL;
5118 CommandMailbox->GetEvent.DataTransferSize = sizeof(DAC960_V2_Event_T);
5119 CommandMailbox->GetEvent.EventSequenceNumberHigh16 =
5120 Controller->V2.NextEventSequenceNumber >> 16;
5121 CommandMailbox->GetEvent.ControllerNumber = 0;
5122 CommandMailbox->GetEvent.IOCTL_Opcode =
5123 DAC960_V2_GetEvent;
5124 CommandMailbox->GetEvent.EventSequenceNumberLow16 =
5125 Controller->V2.NextEventSequenceNumber & 0xFFFF;
5126 CommandMailbox->GetEvent.DataTransferMemoryAddress
5127 .ScatterGatherSegments[0]
5128 .SegmentDataPointer =
5129 Controller->V2.EventDMA;
5130 CommandMailbox->GetEvent.DataTransferMemoryAddress
5131 .ScatterGatherSegments[0]
5132 .SegmentByteCount =
5133 CommandMailbox->GetEvent.DataTransferSize;
5134 DAC960_QueueCommand(Command);
5135 return;
5137 if (Controller->V2.NeedPhysicalDeviceInformation)
5139 if (Controller->V2.NeedDeviceSerialNumberInformation)
5141 DAC960_SCSI_Inquiry_UnitSerialNumber_T *InquiryUnitSerialNumber =
5142 Controller->V2.NewInquiryUnitSerialNumber;
5143 InquiryUnitSerialNumber->PeripheralDeviceType = 0x1F;
5145 DAC960_V2_ConstructNewUnitSerialNumber(Controller, CommandMailbox,
5146 Controller->V2.NewPhysicalDeviceInformation->Channel,
5147 Controller->V2.NewPhysicalDeviceInformation->TargetID,
5148 Controller->V2.NewPhysicalDeviceInformation->LogicalUnit - 1);
5151 DAC960_QueueCommand(Command);
5152 return;
5154 if (Controller->V2.StartPhysicalDeviceInformationScan)
5156 Controller->V2.PhysicalDeviceIndex = 0;
5157 Controller->V2.NewPhysicalDeviceInformation->Channel = 0;
5158 Controller->V2.NewPhysicalDeviceInformation->TargetID = 0;
5159 Controller->V2.NewPhysicalDeviceInformation->LogicalUnit = 0;
5160 Controller->V2.StartPhysicalDeviceInformationScan = false;
5162 CommandMailbox->PhysicalDeviceInfo.CommandOpcode = DAC960_V2_IOCTL;
5163 CommandMailbox->PhysicalDeviceInfo.DataTransferSize =
5164 sizeof(DAC960_V2_PhysicalDeviceInfo_T);
5165 CommandMailbox->PhysicalDeviceInfo.PhysicalDevice.LogicalUnit =
5166 Controller->V2.NewPhysicalDeviceInformation->LogicalUnit;
5167 CommandMailbox->PhysicalDeviceInfo.PhysicalDevice.TargetID =
5168 Controller->V2.NewPhysicalDeviceInformation->TargetID;
5169 CommandMailbox->PhysicalDeviceInfo.PhysicalDevice.Channel =
5170 Controller->V2.NewPhysicalDeviceInformation->Channel;
5171 CommandMailbox->PhysicalDeviceInfo.IOCTL_Opcode =
5172 DAC960_V2_GetPhysicalDeviceInfoValid;
5173 CommandMailbox->PhysicalDeviceInfo.DataTransferMemoryAddress
5174 .ScatterGatherSegments[0]
5175 .SegmentDataPointer =
5176 Controller->V2.NewPhysicalDeviceInformationDMA;
5177 CommandMailbox->PhysicalDeviceInfo.DataTransferMemoryAddress
5178 .ScatterGatherSegments[0]
5179 .SegmentByteCount =
5180 CommandMailbox->PhysicalDeviceInfo.DataTransferSize;
5181 DAC960_QueueCommand(Command);
5182 return;
5184 if (Controller->V2.NeedLogicalDeviceInformation)
5186 if (Controller->V2.StartLogicalDeviceInformationScan)
5188 int LogicalDriveNumber;
5189 for (LogicalDriveNumber = 0;
5190 LogicalDriveNumber < DAC960_MaxLogicalDrives;
5191 LogicalDriveNumber++)
5192 Controller->V2.LogicalDriveFoundDuringScan
5193 [LogicalDriveNumber] = false;
5194 Controller->V2.NewLogicalDeviceInformation->LogicalDeviceNumber = 0;
5195 Controller->V2.StartLogicalDeviceInformationScan = false;
5197 CommandMailbox->LogicalDeviceInfo.CommandOpcode = DAC960_V2_IOCTL;
5198 CommandMailbox->LogicalDeviceInfo.DataTransferSize =
5199 sizeof(DAC960_V2_LogicalDeviceInfo_T);
5200 CommandMailbox->LogicalDeviceInfo.LogicalDevice.LogicalDeviceNumber =
5201 Controller->V2.NewLogicalDeviceInformation->LogicalDeviceNumber;
5202 CommandMailbox->LogicalDeviceInfo.IOCTL_Opcode =
5203 DAC960_V2_GetLogicalDeviceInfoValid;
5204 CommandMailbox->LogicalDeviceInfo.DataTransferMemoryAddress
5205 .ScatterGatherSegments[0]
5206 .SegmentDataPointer =
5207 Controller->V2.NewLogicalDeviceInformationDMA;
5208 CommandMailbox->LogicalDeviceInfo.DataTransferMemoryAddress
5209 .ScatterGatherSegments[0]
5210 .SegmentByteCount =
5211 CommandMailbox->LogicalDeviceInfo.DataTransferSize;
5212 DAC960_QueueCommand(Command);
5213 return;
5215 Controller->MonitoringTimerCount++;
5216 Controller->MonitoringTimer.expires =
5217 jiffies + DAC960_HealthStatusMonitoringInterval;
5218 add_timer(&Controller->MonitoringTimer);
5220 if (CommandType == DAC960_ImmediateCommand)
5222 complete(Command->Completion);
5223 Command->Completion = NULL;
5224 return;
5226 if (CommandType == DAC960_QueuedCommand)
5228 DAC960_V2_KernelCommand_T *KernelCommand = Command->V2.KernelCommand;
5229 KernelCommand->CommandStatus = CommandStatus;
5230 KernelCommand->RequestSenseLength = Command->V2.RequestSenseLength;
5231 KernelCommand->DataTransferLength = Command->V2.DataTransferResidue;
5232 Command->V2.KernelCommand = NULL;
5233 DAC960_DeallocateCommand(Command);
5234 KernelCommand->CompletionFunction(KernelCommand);
5235 return;
5238 Queue a Status Monitoring Command to the Controller using the just
5239 completed Command if one was deferred previously due to lack of a
5240 free Command when the Monitoring Timer Function was called.
5242 if (Controller->MonitoringCommandDeferred)
5244 Controller->MonitoringCommandDeferred = false;
5245 DAC960_V2_QueueMonitoringCommand(Command);
5246 return;
5249 Deallocate the Command.
5251 DAC960_DeallocateCommand(Command);
5253 Wake up any processes waiting on a free Command.
5255 wake_up(&Controller->CommandWaitQueue);
5259 DAC960_GEM_InterruptHandler handles hardware interrupts from DAC960 GEM Series
5260 Controllers.
5263 static irqreturn_t DAC960_GEM_InterruptHandler(int IRQ_Channel,
5264 void *DeviceIdentifier)
5266 DAC960_Controller_T *Controller = DeviceIdentifier;
5267 void __iomem *ControllerBaseAddress = Controller->BaseAddress;
5268 DAC960_V2_StatusMailbox_T *NextStatusMailbox;
5269 unsigned long flags;
5271 spin_lock_irqsave(&Controller->queue_lock, flags);
5272 DAC960_GEM_AcknowledgeInterrupt(ControllerBaseAddress);
5273 NextStatusMailbox = Controller->V2.NextStatusMailbox;
5274 while (NextStatusMailbox->Fields.CommandIdentifier > 0)
5276 DAC960_V2_CommandIdentifier_T CommandIdentifier =
5277 NextStatusMailbox->Fields.CommandIdentifier;
5278 DAC960_Command_T *Command = Controller->Commands[CommandIdentifier-1];
5279 Command->V2.CommandStatus = NextStatusMailbox->Fields.CommandStatus;
5280 Command->V2.RequestSenseLength =
5281 NextStatusMailbox->Fields.RequestSenseLength;
5282 Command->V2.DataTransferResidue =
5283 NextStatusMailbox->Fields.DataTransferResidue;
5284 NextStatusMailbox->Words[0] = 0;
5285 if (++NextStatusMailbox > Controller->V2.LastStatusMailbox)
5286 NextStatusMailbox = Controller->V2.FirstStatusMailbox;
5287 DAC960_V2_ProcessCompletedCommand(Command);
5289 Controller->V2.NextStatusMailbox = NextStatusMailbox;
5291 Attempt to remove additional I/O Requests from the Controller's
5292 I/O Request Queue and queue them to the Controller.
5294 DAC960_ProcessRequest(Controller);
5295 spin_unlock_irqrestore(&Controller->queue_lock, flags);
5296 return IRQ_HANDLED;
5300 DAC960_BA_InterruptHandler handles hardware interrupts from DAC960 BA Series
5301 Controllers.
5304 static irqreturn_t DAC960_BA_InterruptHandler(int IRQ_Channel,
5305 void *DeviceIdentifier)
5307 DAC960_Controller_T *Controller = DeviceIdentifier;
5308 void __iomem *ControllerBaseAddress = Controller->BaseAddress;
5309 DAC960_V2_StatusMailbox_T *NextStatusMailbox;
5310 unsigned long flags;
5312 spin_lock_irqsave(&Controller->queue_lock, flags);
5313 DAC960_BA_AcknowledgeInterrupt(ControllerBaseAddress);
5314 NextStatusMailbox = Controller->V2.NextStatusMailbox;
5315 while (NextStatusMailbox->Fields.CommandIdentifier > 0)
5317 DAC960_V2_CommandIdentifier_T CommandIdentifier =
5318 NextStatusMailbox->Fields.CommandIdentifier;
5319 DAC960_Command_T *Command = Controller->Commands[CommandIdentifier-1];
5320 Command->V2.CommandStatus = NextStatusMailbox->Fields.CommandStatus;
5321 Command->V2.RequestSenseLength =
5322 NextStatusMailbox->Fields.RequestSenseLength;
5323 Command->V2.DataTransferResidue =
5324 NextStatusMailbox->Fields.DataTransferResidue;
5325 NextStatusMailbox->Words[0] = 0;
5326 if (++NextStatusMailbox > Controller->V2.LastStatusMailbox)
5327 NextStatusMailbox = Controller->V2.FirstStatusMailbox;
5328 DAC960_V2_ProcessCompletedCommand(Command);
5330 Controller->V2.NextStatusMailbox = NextStatusMailbox;
5332 Attempt to remove additional I/O Requests from the Controller's
5333 I/O Request Queue and queue them to the Controller.
5335 DAC960_ProcessRequest(Controller);
5336 spin_unlock_irqrestore(&Controller->queue_lock, flags);
5337 return IRQ_HANDLED;
5342 DAC960_LP_InterruptHandler handles hardware interrupts from DAC960 LP Series
5343 Controllers.
5346 static irqreturn_t DAC960_LP_InterruptHandler(int IRQ_Channel,
5347 void *DeviceIdentifier)
5349 DAC960_Controller_T *Controller = DeviceIdentifier;
5350 void __iomem *ControllerBaseAddress = Controller->BaseAddress;
5351 DAC960_V2_StatusMailbox_T *NextStatusMailbox;
5352 unsigned long flags;
5354 spin_lock_irqsave(&Controller->queue_lock, flags);
5355 DAC960_LP_AcknowledgeInterrupt(ControllerBaseAddress);
5356 NextStatusMailbox = Controller->V2.NextStatusMailbox;
5357 while (NextStatusMailbox->Fields.CommandIdentifier > 0)
5359 DAC960_V2_CommandIdentifier_T CommandIdentifier =
5360 NextStatusMailbox->Fields.CommandIdentifier;
5361 DAC960_Command_T *Command = Controller->Commands[CommandIdentifier-1];
5362 Command->V2.CommandStatus = NextStatusMailbox->Fields.CommandStatus;
5363 Command->V2.RequestSenseLength =
5364 NextStatusMailbox->Fields.RequestSenseLength;
5365 Command->V2.DataTransferResidue =
5366 NextStatusMailbox->Fields.DataTransferResidue;
5367 NextStatusMailbox->Words[0] = 0;
5368 if (++NextStatusMailbox > Controller->V2.LastStatusMailbox)
5369 NextStatusMailbox = Controller->V2.FirstStatusMailbox;
5370 DAC960_V2_ProcessCompletedCommand(Command);
5372 Controller->V2.NextStatusMailbox = NextStatusMailbox;
5374 Attempt to remove additional I/O Requests from the Controller's
5375 I/O Request Queue and queue them to the Controller.
5377 DAC960_ProcessRequest(Controller);
5378 spin_unlock_irqrestore(&Controller->queue_lock, flags);
5379 return IRQ_HANDLED;
5384 DAC960_LA_InterruptHandler handles hardware interrupts from DAC960 LA Series
5385 Controllers.
5388 static irqreturn_t DAC960_LA_InterruptHandler(int IRQ_Channel,
5389 void *DeviceIdentifier)
5391 DAC960_Controller_T *Controller = DeviceIdentifier;
5392 void __iomem *ControllerBaseAddress = Controller->BaseAddress;
5393 DAC960_V1_StatusMailbox_T *NextStatusMailbox;
5394 unsigned long flags;
5396 spin_lock_irqsave(&Controller->queue_lock, flags);
5397 DAC960_LA_AcknowledgeInterrupt(ControllerBaseAddress);
5398 NextStatusMailbox = Controller->V1.NextStatusMailbox;
5399 while (NextStatusMailbox->Fields.Valid)
5401 DAC960_V1_CommandIdentifier_T CommandIdentifier =
5402 NextStatusMailbox->Fields.CommandIdentifier;
5403 DAC960_Command_T *Command = Controller->Commands[CommandIdentifier-1];
5404 Command->V1.CommandStatus = NextStatusMailbox->Fields.CommandStatus;
5405 NextStatusMailbox->Word = 0;
5406 if (++NextStatusMailbox > Controller->V1.LastStatusMailbox)
5407 NextStatusMailbox = Controller->V1.FirstStatusMailbox;
5408 DAC960_V1_ProcessCompletedCommand(Command);
5410 Controller->V1.NextStatusMailbox = NextStatusMailbox;
5412 Attempt to remove additional I/O Requests from the Controller's
5413 I/O Request Queue and queue them to the Controller.
5415 DAC960_ProcessRequest(Controller);
5416 spin_unlock_irqrestore(&Controller->queue_lock, flags);
5417 return IRQ_HANDLED;
5422 DAC960_PG_InterruptHandler handles hardware interrupts from DAC960 PG Series
5423 Controllers.
5426 static irqreturn_t DAC960_PG_InterruptHandler(int IRQ_Channel,
5427 void *DeviceIdentifier)
5429 DAC960_Controller_T *Controller = DeviceIdentifier;
5430 void __iomem *ControllerBaseAddress = Controller->BaseAddress;
5431 DAC960_V1_StatusMailbox_T *NextStatusMailbox;
5432 unsigned long flags;
5434 spin_lock_irqsave(&Controller->queue_lock, flags);
5435 DAC960_PG_AcknowledgeInterrupt(ControllerBaseAddress);
5436 NextStatusMailbox = Controller->V1.NextStatusMailbox;
5437 while (NextStatusMailbox->Fields.Valid)
5439 DAC960_V1_CommandIdentifier_T CommandIdentifier =
5440 NextStatusMailbox->Fields.CommandIdentifier;
5441 DAC960_Command_T *Command = Controller->Commands[CommandIdentifier-1];
5442 Command->V1.CommandStatus = NextStatusMailbox->Fields.CommandStatus;
5443 NextStatusMailbox->Word = 0;
5444 if (++NextStatusMailbox > Controller->V1.LastStatusMailbox)
5445 NextStatusMailbox = Controller->V1.FirstStatusMailbox;
5446 DAC960_V1_ProcessCompletedCommand(Command);
5448 Controller->V1.NextStatusMailbox = NextStatusMailbox;
5450 Attempt to remove additional I/O Requests from the Controller's
5451 I/O Request Queue and queue them to the Controller.
5453 DAC960_ProcessRequest(Controller);
5454 spin_unlock_irqrestore(&Controller->queue_lock, flags);
5455 return IRQ_HANDLED;
5460 DAC960_PD_InterruptHandler handles hardware interrupts from DAC960 PD Series
5461 Controllers.
5464 static irqreturn_t DAC960_PD_InterruptHandler(int IRQ_Channel,
5465 void *DeviceIdentifier)
5467 DAC960_Controller_T *Controller = DeviceIdentifier;
5468 void __iomem *ControllerBaseAddress = Controller->BaseAddress;
5469 unsigned long flags;
5471 spin_lock_irqsave(&Controller->queue_lock, flags);
5472 while (DAC960_PD_StatusAvailableP(ControllerBaseAddress))
5474 DAC960_V1_CommandIdentifier_T CommandIdentifier =
5475 DAC960_PD_ReadStatusCommandIdentifier(ControllerBaseAddress);
5476 DAC960_Command_T *Command = Controller->Commands[CommandIdentifier-1];
5477 Command->V1.CommandStatus =
5478 DAC960_PD_ReadStatusRegister(ControllerBaseAddress);
5479 DAC960_PD_AcknowledgeInterrupt(ControllerBaseAddress);
5480 DAC960_PD_AcknowledgeStatus(ControllerBaseAddress);
5481 DAC960_V1_ProcessCompletedCommand(Command);
5484 Attempt to remove additional I/O Requests from the Controller's
5485 I/O Request Queue and queue them to the Controller.
5487 DAC960_ProcessRequest(Controller);
5488 spin_unlock_irqrestore(&Controller->queue_lock, flags);
5489 return IRQ_HANDLED;
5494 DAC960_P_InterruptHandler handles hardware interrupts from DAC960 P Series
5495 Controllers.
5497 Translations of DAC960_V1_Enquiry and DAC960_V1_GetDeviceState rely
5498 on the data having been placed into DAC960_Controller_T, rather than
5499 an arbitrary buffer.
5502 static irqreturn_t DAC960_P_InterruptHandler(int IRQ_Channel,
5503 void *DeviceIdentifier)
5505 DAC960_Controller_T *Controller = DeviceIdentifier;
5506 void __iomem *ControllerBaseAddress = Controller->BaseAddress;
5507 unsigned long flags;
5509 spin_lock_irqsave(&Controller->queue_lock, flags);
5510 while (DAC960_PD_StatusAvailableP(ControllerBaseAddress))
5512 DAC960_V1_CommandIdentifier_T CommandIdentifier =
5513 DAC960_PD_ReadStatusCommandIdentifier(ControllerBaseAddress);
5514 DAC960_Command_T *Command = Controller->Commands[CommandIdentifier-1];
5515 DAC960_V1_CommandMailbox_T *CommandMailbox = &Command->V1.CommandMailbox;
5516 DAC960_V1_CommandOpcode_T CommandOpcode =
5517 CommandMailbox->Common.CommandOpcode;
5518 Command->V1.CommandStatus =
5519 DAC960_PD_ReadStatusRegister(ControllerBaseAddress);
5520 DAC960_PD_AcknowledgeInterrupt(ControllerBaseAddress);
5521 DAC960_PD_AcknowledgeStatus(ControllerBaseAddress);
5522 switch (CommandOpcode)
5524 case DAC960_V1_Enquiry_Old:
5525 Command->V1.CommandMailbox.Common.CommandOpcode = DAC960_V1_Enquiry;
5526 DAC960_P_To_PD_TranslateEnquiry(Controller->V1.NewEnquiry);
5527 break;
5528 case DAC960_V1_GetDeviceState_Old:
5529 Command->V1.CommandMailbox.Common.CommandOpcode =
5530 DAC960_V1_GetDeviceState;
5531 DAC960_P_To_PD_TranslateDeviceState(Controller->V1.NewDeviceState);
5532 break;
5533 case DAC960_V1_Read_Old:
5534 Command->V1.CommandMailbox.Common.CommandOpcode = DAC960_V1_Read;
5535 DAC960_P_To_PD_TranslateReadWriteCommand(CommandMailbox);
5536 break;
5537 case DAC960_V1_Write_Old:
5538 Command->V1.CommandMailbox.Common.CommandOpcode = DAC960_V1_Write;
5539 DAC960_P_To_PD_TranslateReadWriteCommand(CommandMailbox);
5540 break;
5541 case DAC960_V1_ReadWithScatterGather_Old:
5542 Command->V1.CommandMailbox.Common.CommandOpcode =
5543 DAC960_V1_ReadWithScatterGather;
5544 DAC960_P_To_PD_TranslateReadWriteCommand(CommandMailbox);
5545 break;
5546 case DAC960_V1_WriteWithScatterGather_Old:
5547 Command->V1.CommandMailbox.Common.CommandOpcode =
5548 DAC960_V1_WriteWithScatterGather;
5549 DAC960_P_To_PD_TranslateReadWriteCommand(CommandMailbox);
5550 break;
5551 default:
5552 break;
5554 DAC960_V1_ProcessCompletedCommand(Command);
5557 Attempt to remove additional I/O Requests from the Controller's
5558 I/O Request Queue and queue them to the Controller.
5560 DAC960_ProcessRequest(Controller);
5561 spin_unlock_irqrestore(&Controller->queue_lock, flags);
5562 return IRQ_HANDLED;
5567 DAC960_V1_QueueMonitoringCommand queues a Monitoring Command to DAC960 V1
5568 Firmware Controllers.
5571 static void DAC960_V1_QueueMonitoringCommand(DAC960_Command_T *Command)
5573 DAC960_Controller_T *Controller = Command->Controller;
5574 DAC960_V1_CommandMailbox_T *CommandMailbox = &Command->V1.CommandMailbox;
5575 DAC960_V1_ClearCommand(Command);
5576 Command->CommandType = DAC960_MonitoringCommand;
5577 CommandMailbox->Type3.CommandOpcode = DAC960_V1_Enquiry;
5578 CommandMailbox->Type3.BusAddress = Controller->V1.NewEnquiryDMA;
5579 DAC960_QueueCommand(Command);
5584 DAC960_V2_QueueMonitoringCommand queues a Monitoring Command to DAC960 V2
5585 Firmware Controllers.
5588 static void DAC960_V2_QueueMonitoringCommand(DAC960_Command_T *Command)
5590 DAC960_Controller_T *Controller = Command->Controller;
5591 DAC960_V2_CommandMailbox_T *CommandMailbox = &Command->V2.CommandMailbox;
5592 DAC960_V2_ClearCommand(Command);
5593 Command->CommandType = DAC960_MonitoringCommand;
5594 CommandMailbox->ControllerInfo.CommandOpcode = DAC960_V2_IOCTL;
5595 CommandMailbox->ControllerInfo.CommandControlBits
5596 .DataTransferControllerToHost = true;
5597 CommandMailbox->ControllerInfo.CommandControlBits
5598 .NoAutoRequestSense = true;
5599 CommandMailbox->ControllerInfo.DataTransferSize =
5600 sizeof(DAC960_V2_ControllerInfo_T);
5601 CommandMailbox->ControllerInfo.ControllerNumber = 0;
5602 CommandMailbox->ControllerInfo.IOCTL_Opcode = DAC960_V2_GetControllerInfo;
5603 CommandMailbox->ControllerInfo.DataTransferMemoryAddress
5604 .ScatterGatherSegments[0]
5605 .SegmentDataPointer =
5606 Controller->V2.NewControllerInformationDMA;
5607 CommandMailbox->ControllerInfo.DataTransferMemoryAddress
5608 .ScatterGatherSegments[0]
5609 .SegmentByteCount =
5610 CommandMailbox->ControllerInfo.DataTransferSize;
5611 DAC960_QueueCommand(Command);
5616 DAC960_MonitoringTimerFunction is the timer function for monitoring
5617 the status of DAC960 Controllers.
5620 static void DAC960_MonitoringTimerFunction(struct timer_list *t)
5622 DAC960_Controller_T *Controller = from_timer(Controller, t, MonitoringTimer);
5623 DAC960_Command_T *Command;
5624 unsigned long flags;
5626 if (Controller->FirmwareType == DAC960_V1_Controller)
5628 spin_lock_irqsave(&Controller->queue_lock, flags);
5630 Queue a Status Monitoring Command to Controller.
5632 Command = DAC960_AllocateCommand(Controller);
5633 if (Command != NULL)
5634 DAC960_V1_QueueMonitoringCommand(Command);
5635 else Controller->MonitoringCommandDeferred = true;
5636 spin_unlock_irqrestore(&Controller->queue_lock, flags);
5638 else
5640 DAC960_V2_ControllerInfo_T *ControllerInfo =
5641 &Controller->V2.ControllerInformation;
5642 unsigned int StatusChangeCounter =
5643 Controller->V2.HealthStatusBuffer->StatusChangeCounter;
5644 bool ForceMonitoringCommand = false;
5645 if (time_after(jiffies, Controller->SecondaryMonitoringTime
5646 + DAC960_SecondaryMonitoringInterval))
5648 int LogicalDriveNumber;
5649 for (LogicalDriveNumber = 0;
5650 LogicalDriveNumber < DAC960_MaxLogicalDrives;
5651 LogicalDriveNumber++)
5653 DAC960_V2_LogicalDeviceInfo_T *LogicalDeviceInfo =
5654 Controller->V2.LogicalDeviceInformation[LogicalDriveNumber];
5655 if (LogicalDeviceInfo == NULL) continue;
5656 if (!LogicalDeviceInfo->LogicalDeviceControl
5657 .LogicalDeviceInitialized)
5659 ForceMonitoringCommand = true;
5660 break;
5663 Controller->SecondaryMonitoringTime = jiffies;
5665 if (StatusChangeCounter == Controller->V2.StatusChangeCounter &&
5666 Controller->V2.HealthStatusBuffer->NextEventSequenceNumber
5667 == Controller->V2.NextEventSequenceNumber &&
5668 (ControllerInfo->BackgroundInitializationsActive +
5669 ControllerInfo->LogicalDeviceInitializationsActive +
5670 ControllerInfo->PhysicalDeviceInitializationsActive +
5671 ControllerInfo->ConsistencyChecksActive +
5672 ControllerInfo->RebuildsActive +
5673 ControllerInfo->OnlineExpansionsActive == 0 ||
5674 time_before(jiffies, Controller->PrimaryMonitoringTime
5675 + DAC960_MonitoringTimerInterval)) &&
5676 !ForceMonitoringCommand)
5678 Controller->MonitoringTimer.expires =
5679 jiffies + DAC960_HealthStatusMonitoringInterval;
5680 add_timer(&Controller->MonitoringTimer);
5681 return;
5683 Controller->V2.StatusChangeCounter = StatusChangeCounter;
5684 Controller->PrimaryMonitoringTime = jiffies;
5686 spin_lock_irqsave(&Controller->queue_lock, flags);
5688 Queue a Status Monitoring Command to Controller.
5690 Command = DAC960_AllocateCommand(Controller);
5691 if (Command != NULL)
5692 DAC960_V2_QueueMonitoringCommand(Command);
5693 else Controller->MonitoringCommandDeferred = true;
5694 spin_unlock_irqrestore(&Controller->queue_lock, flags);
5696 Wake up any processes waiting on a Health Status Buffer change.
5698 wake_up(&Controller->HealthStatusWaitQueue);
5703 DAC960_CheckStatusBuffer verifies that there is room to hold ByteCount
5704 additional bytes in the Combined Status Buffer and grows the buffer if
5705 necessary. It returns true if there is enough room and false otherwise.
5708 static bool DAC960_CheckStatusBuffer(DAC960_Controller_T *Controller,
5709 unsigned int ByteCount)
5711 unsigned char *NewStatusBuffer;
5712 if (Controller->InitialStatusLength + 1 +
5713 Controller->CurrentStatusLength + ByteCount + 1 <=
5714 Controller->CombinedStatusBufferLength)
5715 return true;
5716 if (Controller->CombinedStatusBufferLength == 0)
5718 unsigned int NewStatusBufferLength = DAC960_InitialStatusBufferSize;
5719 while (NewStatusBufferLength < ByteCount)
5720 NewStatusBufferLength *= 2;
5721 Controller->CombinedStatusBuffer = kmalloc(NewStatusBufferLength,
5722 GFP_ATOMIC);
5723 if (Controller->CombinedStatusBuffer == NULL) return false;
5724 Controller->CombinedStatusBufferLength = NewStatusBufferLength;
5725 return true;
5727 NewStatusBuffer = kmalloc(2 * Controller->CombinedStatusBufferLength,
5728 GFP_ATOMIC);
5729 if (NewStatusBuffer == NULL)
5731 DAC960_Warning("Unable to expand Combined Status Buffer - Truncating\n",
5732 Controller);
5733 return false;
5735 memcpy(NewStatusBuffer, Controller->CombinedStatusBuffer,
5736 Controller->CombinedStatusBufferLength);
5737 kfree(Controller->CombinedStatusBuffer);
5738 Controller->CombinedStatusBuffer = NewStatusBuffer;
5739 Controller->CombinedStatusBufferLength *= 2;
5740 Controller->CurrentStatusBuffer =
5741 &NewStatusBuffer[Controller->InitialStatusLength + 1];
5742 return true;
5747 DAC960_Message prints Driver Messages.
5750 static void DAC960_Message(DAC960_MessageLevel_T MessageLevel,
5751 unsigned char *Format,
5752 DAC960_Controller_T *Controller,
5753 ...)
5755 static unsigned char Buffer[DAC960_LineBufferSize];
5756 static bool BeginningOfLine = true;
5757 va_list Arguments;
5758 int Length = 0;
5759 va_start(Arguments, Controller);
5760 Length = vsprintf(Buffer, Format, Arguments);
5761 va_end(Arguments);
5762 if (Controller == NULL)
5763 printk("%sDAC960#%d: %s", DAC960_MessageLevelMap[MessageLevel],
5764 DAC960_ControllerCount, Buffer);
5765 else if (MessageLevel == DAC960_AnnounceLevel ||
5766 MessageLevel == DAC960_InfoLevel)
5768 if (!Controller->ControllerInitialized)
5770 if (DAC960_CheckStatusBuffer(Controller, Length))
5772 strcpy(&Controller->CombinedStatusBuffer
5773 [Controller->InitialStatusLength],
5774 Buffer);
5775 Controller->InitialStatusLength += Length;
5776 Controller->CurrentStatusBuffer =
5777 &Controller->CombinedStatusBuffer
5778 [Controller->InitialStatusLength + 1];
5780 if (MessageLevel == DAC960_AnnounceLevel)
5782 static int AnnouncementLines = 0;
5783 if (++AnnouncementLines <= 2)
5784 printk("%sDAC960: %s", DAC960_MessageLevelMap[MessageLevel],
5785 Buffer);
5787 else
5789 if (BeginningOfLine)
5791 if (Buffer[0] != '\n' || Length > 1)
5792 printk("%sDAC960#%d: %s",
5793 DAC960_MessageLevelMap[MessageLevel],
5794 Controller->ControllerNumber, Buffer);
5796 else printk("%s", Buffer);
5799 else if (DAC960_CheckStatusBuffer(Controller, Length))
5801 strcpy(&Controller->CurrentStatusBuffer[
5802 Controller->CurrentStatusLength], Buffer);
5803 Controller->CurrentStatusLength += Length;
5806 else if (MessageLevel == DAC960_ProgressLevel)
5808 strcpy(Controller->ProgressBuffer, Buffer);
5809 Controller->ProgressBufferLength = Length;
5810 if (Controller->EphemeralProgressMessage)
5812 if (time_after_eq(jiffies, Controller->LastProgressReportTime
5813 + DAC960_ProgressReportingInterval))
5815 printk("%sDAC960#%d: %s", DAC960_MessageLevelMap[MessageLevel],
5816 Controller->ControllerNumber, Buffer);
5817 Controller->LastProgressReportTime = jiffies;
5820 else printk("%sDAC960#%d: %s", DAC960_MessageLevelMap[MessageLevel],
5821 Controller->ControllerNumber, Buffer);
5823 else if (MessageLevel == DAC960_UserCriticalLevel)
5825 strcpy(&Controller->UserStatusBuffer[Controller->UserStatusLength],
5826 Buffer);
5827 Controller->UserStatusLength += Length;
5828 if (Buffer[0] != '\n' || Length > 1)
5829 printk("%sDAC960#%d: %s", DAC960_MessageLevelMap[MessageLevel],
5830 Controller->ControllerNumber, Buffer);
5832 else
5834 if (BeginningOfLine)
5835 printk("%sDAC960#%d: %s", DAC960_MessageLevelMap[MessageLevel],
5836 Controller->ControllerNumber, Buffer);
5837 else printk("%s", Buffer);
5839 BeginningOfLine = (Buffer[Length-1] == '\n');
5844 DAC960_ParsePhysicalDevice parses spaces followed by a Physical Device
5845 Channel:TargetID specification from a User Command string. It updates
5846 Channel and TargetID and returns true on success and false on failure.
5849 static bool DAC960_ParsePhysicalDevice(DAC960_Controller_T *Controller,
5850 char *UserCommandString,
5851 unsigned char *Channel,
5852 unsigned char *TargetID)
5854 char *NewUserCommandString = UserCommandString;
5855 unsigned long XChannel, XTargetID;
5856 while (*UserCommandString == ' ') UserCommandString++;
5857 if (UserCommandString == NewUserCommandString)
5858 return false;
5859 XChannel = simple_strtoul(UserCommandString, &NewUserCommandString, 10);
5860 if (NewUserCommandString == UserCommandString ||
5861 *NewUserCommandString != ':' ||
5862 XChannel >= Controller->Channels)
5863 return false;
5864 UserCommandString = ++NewUserCommandString;
5865 XTargetID = simple_strtoul(UserCommandString, &NewUserCommandString, 10);
5866 if (NewUserCommandString == UserCommandString ||
5867 *NewUserCommandString != '\0' ||
5868 XTargetID >= Controller->Targets)
5869 return false;
5870 *Channel = XChannel;
5871 *TargetID = XTargetID;
5872 return true;
5877 DAC960_ParseLogicalDrive parses spaces followed by a Logical Drive Number
5878 specification from a User Command string. It updates LogicalDriveNumber and
5879 returns true on success and false on failure.
5882 static bool DAC960_ParseLogicalDrive(DAC960_Controller_T *Controller,
5883 char *UserCommandString,
5884 unsigned char *LogicalDriveNumber)
5886 char *NewUserCommandString = UserCommandString;
5887 unsigned long XLogicalDriveNumber;
5888 while (*UserCommandString == ' ') UserCommandString++;
5889 if (UserCommandString == NewUserCommandString)
5890 return false;
5891 XLogicalDriveNumber =
5892 simple_strtoul(UserCommandString, &NewUserCommandString, 10);
5893 if (NewUserCommandString == UserCommandString ||
5894 *NewUserCommandString != '\0' ||
5895 XLogicalDriveNumber > DAC960_MaxLogicalDrives - 1)
5896 return false;
5897 *LogicalDriveNumber = XLogicalDriveNumber;
5898 return true;
5903 DAC960_V1_SetDeviceState sets the Device State for a Physical Device for
5904 DAC960 V1 Firmware Controllers.
5907 static void DAC960_V1_SetDeviceState(DAC960_Controller_T *Controller,
5908 DAC960_Command_T *Command,
5909 unsigned char Channel,
5910 unsigned char TargetID,
5911 DAC960_V1_PhysicalDeviceState_T
5912 DeviceState,
5913 const unsigned char *DeviceStateString)
5915 DAC960_V1_CommandMailbox_T *CommandMailbox = &Command->V1.CommandMailbox;
5916 CommandMailbox->Type3D.CommandOpcode = DAC960_V1_StartDevice;
5917 CommandMailbox->Type3D.Channel = Channel;
5918 CommandMailbox->Type3D.TargetID = TargetID;
5919 CommandMailbox->Type3D.DeviceState = DeviceState;
5920 CommandMailbox->Type3D.Modifier = 0;
5921 DAC960_ExecuteCommand(Command);
5922 switch (Command->V1.CommandStatus)
5924 case DAC960_V1_NormalCompletion:
5925 DAC960_UserCritical("%s of Physical Device %d:%d Succeeded\n", Controller,
5926 DeviceStateString, Channel, TargetID);
5927 break;
5928 case DAC960_V1_UnableToStartDevice:
5929 DAC960_UserCritical("%s of Physical Device %d:%d Failed - "
5930 "Unable to Start Device\n", Controller,
5931 DeviceStateString, Channel, TargetID);
5932 break;
5933 case DAC960_V1_NoDeviceAtAddress:
5934 DAC960_UserCritical("%s of Physical Device %d:%d Failed - "
5935 "No Device at Address\n", Controller,
5936 DeviceStateString, Channel, TargetID);
5937 break;
5938 case DAC960_V1_InvalidChannelOrTargetOrModifier:
5939 DAC960_UserCritical("%s of Physical Device %d:%d Failed - "
5940 "Invalid Channel or Target or Modifier\n",
5941 Controller, DeviceStateString, Channel, TargetID);
5942 break;
5943 case DAC960_V1_ChannelBusy:
5944 DAC960_UserCritical("%s of Physical Device %d:%d Failed - "
5945 "Channel Busy\n", Controller,
5946 DeviceStateString, Channel, TargetID);
5947 break;
5948 default:
5949 DAC960_UserCritical("%s of Physical Device %d:%d Failed - "
5950 "Unexpected Status %04X\n", Controller,
5951 DeviceStateString, Channel, TargetID,
5952 Command->V1.CommandStatus);
5953 break;
5959 DAC960_V1_ExecuteUserCommand executes a User Command for DAC960 V1 Firmware
5960 Controllers.
5963 static bool DAC960_V1_ExecuteUserCommand(DAC960_Controller_T *Controller,
5964 unsigned char *UserCommand)
5966 DAC960_Command_T *Command;
5967 DAC960_V1_CommandMailbox_T *CommandMailbox;
5968 unsigned long flags;
5969 unsigned char Channel, TargetID, LogicalDriveNumber;
5971 spin_lock_irqsave(&Controller->queue_lock, flags);
5972 while ((Command = DAC960_AllocateCommand(Controller)) == NULL)
5973 DAC960_WaitForCommand(Controller);
5974 spin_unlock_irqrestore(&Controller->queue_lock, flags);
5975 Controller->UserStatusLength = 0;
5976 DAC960_V1_ClearCommand(Command);
5977 Command->CommandType = DAC960_ImmediateCommand;
5978 CommandMailbox = &Command->V1.CommandMailbox;
5979 if (strcmp(UserCommand, "flush-cache") == 0)
5981 CommandMailbox->Type3.CommandOpcode = DAC960_V1_Flush;
5982 DAC960_ExecuteCommand(Command);
5983 DAC960_UserCritical("Cache Flush Completed\n", Controller);
5985 else if (strncmp(UserCommand, "kill", 4) == 0 &&
5986 DAC960_ParsePhysicalDevice(Controller, &UserCommand[4],
5987 &Channel, &TargetID))
5989 DAC960_V1_DeviceState_T *DeviceState =
5990 &Controller->V1.DeviceState[Channel][TargetID];
5991 if (DeviceState->Present &&
5992 DeviceState->DeviceType == DAC960_V1_DiskType &&
5993 DeviceState->DeviceState != DAC960_V1_Device_Dead)
5994 DAC960_V1_SetDeviceState(Controller, Command, Channel, TargetID,
5995 DAC960_V1_Device_Dead, "Kill");
5996 else DAC960_UserCritical("Kill of Physical Device %d:%d Illegal\n",
5997 Controller, Channel, TargetID);
5999 else if (strncmp(UserCommand, "make-online", 11) == 0 &&
6000 DAC960_ParsePhysicalDevice(Controller, &UserCommand[11],
6001 &Channel, &TargetID))
6003 DAC960_V1_DeviceState_T *DeviceState =
6004 &Controller->V1.DeviceState[Channel][TargetID];
6005 if (DeviceState->Present &&
6006 DeviceState->DeviceType == DAC960_V1_DiskType &&
6007 DeviceState->DeviceState == DAC960_V1_Device_Dead)
6008 DAC960_V1_SetDeviceState(Controller, Command, Channel, TargetID,
6009 DAC960_V1_Device_Online, "Make Online");
6010 else DAC960_UserCritical("Make Online of Physical Device %d:%d Illegal\n",
6011 Controller, Channel, TargetID);
6014 else if (strncmp(UserCommand, "make-standby", 12) == 0 &&
6015 DAC960_ParsePhysicalDevice(Controller, &UserCommand[12],
6016 &Channel, &TargetID))
6018 DAC960_V1_DeviceState_T *DeviceState =
6019 &Controller->V1.DeviceState[Channel][TargetID];
6020 if (DeviceState->Present &&
6021 DeviceState->DeviceType == DAC960_V1_DiskType &&
6022 DeviceState->DeviceState == DAC960_V1_Device_Dead)
6023 DAC960_V1_SetDeviceState(Controller, Command, Channel, TargetID,
6024 DAC960_V1_Device_Standby, "Make Standby");
6025 else DAC960_UserCritical("Make Standby of Physical "
6026 "Device %d:%d Illegal\n",
6027 Controller, Channel, TargetID);
6029 else if (strncmp(UserCommand, "rebuild", 7) == 0 &&
6030 DAC960_ParsePhysicalDevice(Controller, &UserCommand[7],
6031 &Channel, &TargetID))
6033 CommandMailbox->Type3D.CommandOpcode = DAC960_V1_RebuildAsync;
6034 CommandMailbox->Type3D.Channel = Channel;
6035 CommandMailbox->Type3D.TargetID = TargetID;
6036 DAC960_ExecuteCommand(Command);
6037 switch (Command->V1.CommandStatus)
6039 case DAC960_V1_NormalCompletion:
6040 DAC960_UserCritical("Rebuild of Physical Device %d:%d Initiated\n",
6041 Controller, Channel, TargetID);
6042 break;
6043 case DAC960_V1_AttemptToRebuildOnlineDrive:
6044 DAC960_UserCritical("Rebuild of Physical Device %d:%d Failed - "
6045 "Attempt to Rebuild Online or "
6046 "Unresponsive Drive\n",
6047 Controller, Channel, TargetID);
6048 break;
6049 case DAC960_V1_NewDiskFailedDuringRebuild:
6050 DAC960_UserCritical("Rebuild of Physical Device %d:%d Failed - "
6051 "New Disk Failed During Rebuild\n",
6052 Controller, Channel, TargetID);
6053 break;
6054 case DAC960_V1_InvalidDeviceAddress:
6055 DAC960_UserCritical("Rebuild of Physical Device %d:%d Failed - "
6056 "Invalid Device Address\n",
6057 Controller, Channel, TargetID);
6058 break;
6059 case DAC960_V1_RebuildOrCheckAlreadyInProgress:
6060 DAC960_UserCritical("Rebuild of Physical Device %d:%d Failed - "
6061 "Rebuild or Consistency Check Already "
6062 "in Progress\n", Controller, Channel, TargetID);
6063 break;
6064 default:
6065 DAC960_UserCritical("Rebuild of Physical Device %d:%d Failed - "
6066 "Unexpected Status %04X\n", Controller,
6067 Channel, TargetID, Command->V1.CommandStatus);
6068 break;
6071 else if (strncmp(UserCommand, "check-consistency", 17) == 0 &&
6072 DAC960_ParseLogicalDrive(Controller, &UserCommand[17],
6073 &LogicalDriveNumber))
6075 CommandMailbox->Type3C.CommandOpcode = DAC960_V1_CheckConsistencyAsync;
6076 CommandMailbox->Type3C.LogicalDriveNumber = LogicalDriveNumber;
6077 CommandMailbox->Type3C.AutoRestore = true;
6078 DAC960_ExecuteCommand(Command);
6079 switch (Command->V1.CommandStatus)
6081 case DAC960_V1_NormalCompletion:
6082 DAC960_UserCritical("Consistency Check of Logical Drive %d "
6083 "(/dev/rd/c%dd%d) Initiated\n",
6084 Controller, LogicalDriveNumber,
6085 Controller->ControllerNumber,
6086 LogicalDriveNumber);
6087 break;
6088 case DAC960_V1_DependentDiskIsDead:
6089 DAC960_UserCritical("Consistency Check of Logical Drive %d "
6090 "(/dev/rd/c%dd%d) Failed - "
6091 "Dependent Physical Device is DEAD\n",
6092 Controller, LogicalDriveNumber,
6093 Controller->ControllerNumber,
6094 LogicalDriveNumber);
6095 break;
6096 case DAC960_V1_InvalidOrNonredundantLogicalDrive:
6097 DAC960_UserCritical("Consistency Check of Logical Drive %d "
6098 "(/dev/rd/c%dd%d) Failed - "
6099 "Invalid or Nonredundant Logical Drive\n",
6100 Controller, LogicalDriveNumber,
6101 Controller->ControllerNumber,
6102 LogicalDriveNumber);
6103 break;
6104 case DAC960_V1_RebuildOrCheckAlreadyInProgress:
6105 DAC960_UserCritical("Consistency Check of Logical Drive %d "
6106 "(/dev/rd/c%dd%d) Failed - Rebuild or "
6107 "Consistency Check Already in Progress\n",
6108 Controller, LogicalDriveNumber,
6109 Controller->ControllerNumber,
6110 LogicalDriveNumber);
6111 break;
6112 default:
6113 DAC960_UserCritical("Consistency Check of Logical Drive %d "
6114 "(/dev/rd/c%dd%d) Failed - "
6115 "Unexpected Status %04X\n",
6116 Controller, LogicalDriveNumber,
6117 Controller->ControllerNumber,
6118 LogicalDriveNumber, Command->V1.CommandStatus);
6119 break;
6122 else if (strcmp(UserCommand, "cancel-rebuild") == 0 ||
6123 strcmp(UserCommand, "cancel-consistency-check") == 0)
6126 the OldRebuildRateConstant is never actually used
6127 once its value is retrieved from the controller.
6129 unsigned char *OldRebuildRateConstant;
6130 dma_addr_t OldRebuildRateConstantDMA;
6132 OldRebuildRateConstant = pci_alloc_consistent( Controller->PCIDevice,
6133 sizeof(char), &OldRebuildRateConstantDMA);
6134 if (OldRebuildRateConstant == NULL) {
6135 DAC960_UserCritical("Cancellation of Rebuild or "
6136 "Consistency Check Failed - "
6137 "Out of Memory",
6138 Controller);
6139 goto failure;
6141 CommandMailbox->Type3R.CommandOpcode = DAC960_V1_RebuildControl;
6142 CommandMailbox->Type3R.RebuildRateConstant = 0xFF;
6143 CommandMailbox->Type3R.BusAddress = OldRebuildRateConstantDMA;
6144 DAC960_ExecuteCommand(Command);
6145 switch (Command->V1.CommandStatus)
6147 case DAC960_V1_NormalCompletion:
6148 DAC960_UserCritical("Rebuild or Consistency Check Cancelled\n",
6149 Controller);
6150 break;
6151 default:
6152 DAC960_UserCritical("Cancellation of Rebuild or "
6153 "Consistency Check Failed - "
6154 "Unexpected Status %04X\n",
6155 Controller, Command->V1.CommandStatus);
6156 break;
6158 failure:
6159 pci_free_consistent(Controller->PCIDevice, sizeof(char),
6160 OldRebuildRateConstant, OldRebuildRateConstantDMA);
6162 else DAC960_UserCritical("Illegal User Command: '%s'\n",
6163 Controller, UserCommand);
6165 spin_lock_irqsave(&Controller->queue_lock, flags);
6166 DAC960_DeallocateCommand(Command);
6167 spin_unlock_irqrestore(&Controller->queue_lock, flags);
6168 return true;
6173 DAC960_V2_TranslatePhysicalDevice translates a Physical Device Channel and
6174 TargetID into a Logical Device. It returns true on success and false
6175 on failure.
6178 static bool DAC960_V2_TranslatePhysicalDevice(DAC960_Command_T *Command,
6179 unsigned char Channel,
6180 unsigned char TargetID,
6181 unsigned short
6182 *LogicalDeviceNumber)
6184 DAC960_V2_CommandMailbox_T SavedCommandMailbox, *CommandMailbox;
6185 DAC960_Controller_T *Controller = Command->Controller;
6187 CommandMailbox = &Command->V2.CommandMailbox;
6188 memcpy(&SavedCommandMailbox, CommandMailbox,
6189 sizeof(DAC960_V2_CommandMailbox_T));
6191 CommandMailbox->PhysicalDeviceInfo.CommandOpcode = DAC960_V2_IOCTL;
6192 CommandMailbox->PhysicalDeviceInfo.CommandControlBits
6193 .DataTransferControllerToHost = true;
6194 CommandMailbox->PhysicalDeviceInfo.CommandControlBits
6195 .NoAutoRequestSense = true;
6196 CommandMailbox->PhysicalDeviceInfo.DataTransferSize =
6197 sizeof(DAC960_V2_PhysicalToLogicalDevice_T);
6198 CommandMailbox->PhysicalDeviceInfo.PhysicalDevice.TargetID = TargetID;
6199 CommandMailbox->PhysicalDeviceInfo.PhysicalDevice.Channel = Channel;
6200 CommandMailbox->PhysicalDeviceInfo.IOCTL_Opcode =
6201 DAC960_V2_TranslatePhysicalToLogicalDevice;
6202 CommandMailbox->Common.DataTransferMemoryAddress
6203 .ScatterGatherSegments[0]
6204 .SegmentDataPointer =
6205 Controller->V2.PhysicalToLogicalDeviceDMA;
6206 CommandMailbox->Common.DataTransferMemoryAddress
6207 .ScatterGatherSegments[0]
6208 .SegmentByteCount =
6209 CommandMailbox->Common.DataTransferSize;
6211 DAC960_ExecuteCommand(Command);
6212 *LogicalDeviceNumber = Controller->V2.PhysicalToLogicalDevice->LogicalDeviceNumber;
6214 memcpy(CommandMailbox, &SavedCommandMailbox,
6215 sizeof(DAC960_V2_CommandMailbox_T));
6216 return (Command->V2.CommandStatus == DAC960_V2_NormalCompletion);
6221 DAC960_V2_ExecuteUserCommand executes a User Command for DAC960 V2 Firmware
6222 Controllers.
6225 static bool DAC960_V2_ExecuteUserCommand(DAC960_Controller_T *Controller,
6226 unsigned char *UserCommand)
6228 DAC960_Command_T *Command;
6229 DAC960_V2_CommandMailbox_T *CommandMailbox;
6230 unsigned long flags;
6231 unsigned char Channel, TargetID, LogicalDriveNumber;
6232 unsigned short LogicalDeviceNumber;
6234 spin_lock_irqsave(&Controller->queue_lock, flags);
6235 while ((Command = DAC960_AllocateCommand(Controller)) == NULL)
6236 DAC960_WaitForCommand(Controller);
6237 spin_unlock_irqrestore(&Controller->queue_lock, flags);
6238 Controller->UserStatusLength = 0;
6239 DAC960_V2_ClearCommand(Command);
6240 Command->CommandType = DAC960_ImmediateCommand;
6241 CommandMailbox = &Command->V2.CommandMailbox;
6242 CommandMailbox->Common.CommandOpcode = DAC960_V2_IOCTL;
6243 CommandMailbox->Common.CommandControlBits.DataTransferControllerToHost = true;
6244 CommandMailbox->Common.CommandControlBits.NoAutoRequestSense = true;
6245 if (strcmp(UserCommand, "flush-cache") == 0)
6247 CommandMailbox->DeviceOperation.IOCTL_Opcode = DAC960_V2_PauseDevice;
6248 CommandMailbox->DeviceOperation.OperationDevice =
6249 DAC960_V2_RAID_Controller;
6250 DAC960_ExecuteCommand(Command);
6251 DAC960_UserCritical("Cache Flush Completed\n", Controller);
6253 else if (strncmp(UserCommand, "kill", 4) == 0 &&
6254 DAC960_ParsePhysicalDevice(Controller, &UserCommand[4],
6255 &Channel, &TargetID) &&
6256 DAC960_V2_TranslatePhysicalDevice(Command, Channel, TargetID,
6257 &LogicalDeviceNumber))
6259 CommandMailbox->SetDeviceState.LogicalDevice.LogicalDeviceNumber =
6260 LogicalDeviceNumber;
6261 CommandMailbox->SetDeviceState.IOCTL_Opcode =
6262 DAC960_V2_SetDeviceState;
6263 CommandMailbox->SetDeviceState.DeviceState.PhysicalDeviceState =
6264 DAC960_V2_Device_Dead;
6265 DAC960_ExecuteCommand(Command);
6266 DAC960_UserCritical("Kill of Physical Device %d:%d %s\n",
6267 Controller, Channel, TargetID,
6268 (Command->V2.CommandStatus
6269 == DAC960_V2_NormalCompletion
6270 ? "Succeeded" : "Failed"));
6272 else if (strncmp(UserCommand, "make-online", 11) == 0 &&
6273 DAC960_ParsePhysicalDevice(Controller, &UserCommand[11],
6274 &Channel, &TargetID) &&
6275 DAC960_V2_TranslatePhysicalDevice(Command, Channel, TargetID,
6276 &LogicalDeviceNumber))
6278 CommandMailbox->SetDeviceState.LogicalDevice.LogicalDeviceNumber =
6279 LogicalDeviceNumber;
6280 CommandMailbox->SetDeviceState.IOCTL_Opcode =
6281 DAC960_V2_SetDeviceState;
6282 CommandMailbox->SetDeviceState.DeviceState.PhysicalDeviceState =
6283 DAC960_V2_Device_Online;
6284 DAC960_ExecuteCommand(Command);
6285 DAC960_UserCritical("Make Online of Physical Device %d:%d %s\n",
6286 Controller, Channel, TargetID,
6287 (Command->V2.CommandStatus
6288 == DAC960_V2_NormalCompletion
6289 ? "Succeeded" : "Failed"));
6291 else if (strncmp(UserCommand, "make-standby", 12) == 0 &&
6292 DAC960_ParsePhysicalDevice(Controller, &UserCommand[12],
6293 &Channel, &TargetID) &&
6294 DAC960_V2_TranslatePhysicalDevice(Command, Channel, TargetID,
6295 &LogicalDeviceNumber))
6297 CommandMailbox->SetDeviceState.LogicalDevice.LogicalDeviceNumber =
6298 LogicalDeviceNumber;
6299 CommandMailbox->SetDeviceState.IOCTL_Opcode =
6300 DAC960_V2_SetDeviceState;
6301 CommandMailbox->SetDeviceState.DeviceState.PhysicalDeviceState =
6302 DAC960_V2_Device_Standby;
6303 DAC960_ExecuteCommand(Command);
6304 DAC960_UserCritical("Make Standby of Physical Device %d:%d %s\n",
6305 Controller, Channel, TargetID,
6306 (Command->V2.CommandStatus
6307 == DAC960_V2_NormalCompletion
6308 ? "Succeeded" : "Failed"));
6310 else if (strncmp(UserCommand, "rebuild", 7) == 0 &&
6311 DAC960_ParsePhysicalDevice(Controller, &UserCommand[7],
6312 &Channel, &TargetID) &&
6313 DAC960_V2_TranslatePhysicalDevice(Command, Channel, TargetID,
6314 &LogicalDeviceNumber))
6316 CommandMailbox->LogicalDeviceInfo.LogicalDevice.LogicalDeviceNumber =
6317 LogicalDeviceNumber;
6318 CommandMailbox->LogicalDeviceInfo.IOCTL_Opcode =
6319 DAC960_V2_RebuildDeviceStart;
6320 DAC960_ExecuteCommand(Command);
6321 DAC960_UserCritical("Rebuild of Physical Device %d:%d %s\n",
6322 Controller, Channel, TargetID,
6323 (Command->V2.CommandStatus
6324 == DAC960_V2_NormalCompletion
6325 ? "Initiated" : "Not Initiated"));
6327 else if (strncmp(UserCommand, "cancel-rebuild", 14) == 0 &&
6328 DAC960_ParsePhysicalDevice(Controller, &UserCommand[14],
6329 &Channel, &TargetID) &&
6330 DAC960_V2_TranslatePhysicalDevice(Command, Channel, TargetID,
6331 &LogicalDeviceNumber))
6333 CommandMailbox->LogicalDeviceInfo.LogicalDevice.LogicalDeviceNumber =
6334 LogicalDeviceNumber;
6335 CommandMailbox->LogicalDeviceInfo.IOCTL_Opcode =
6336 DAC960_V2_RebuildDeviceStop;
6337 DAC960_ExecuteCommand(Command);
6338 DAC960_UserCritical("Rebuild of Physical Device %d:%d %s\n",
6339 Controller, Channel, TargetID,
6340 (Command->V2.CommandStatus
6341 == DAC960_V2_NormalCompletion
6342 ? "Cancelled" : "Not Cancelled"));
6344 else if (strncmp(UserCommand, "check-consistency", 17) == 0 &&
6345 DAC960_ParseLogicalDrive(Controller, &UserCommand[17],
6346 &LogicalDriveNumber))
6348 CommandMailbox->ConsistencyCheck.LogicalDevice.LogicalDeviceNumber =
6349 LogicalDriveNumber;
6350 CommandMailbox->ConsistencyCheck.IOCTL_Opcode =
6351 DAC960_V2_ConsistencyCheckStart;
6352 CommandMailbox->ConsistencyCheck.RestoreConsistency = true;
6353 CommandMailbox->ConsistencyCheck.InitializedAreaOnly = false;
6354 DAC960_ExecuteCommand(Command);
6355 DAC960_UserCritical("Consistency Check of Logical Drive %d "
6356 "(/dev/rd/c%dd%d) %s\n",
6357 Controller, LogicalDriveNumber,
6358 Controller->ControllerNumber,
6359 LogicalDriveNumber,
6360 (Command->V2.CommandStatus
6361 == DAC960_V2_NormalCompletion
6362 ? "Initiated" : "Not Initiated"));
6364 else if (strncmp(UserCommand, "cancel-consistency-check", 24) == 0 &&
6365 DAC960_ParseLogicalDrive(Controller, &UserCommand[24],
6366 &LogicalDriveNumber))
6368 CommandMailbox->ConsistencyCheck.LogicalDevice.LogicalDeviceNumber =
6369 LogicalDriveNumber;
6370 CommandMailbox->ConsistencyCheck.IOCTL_Opcode =
6371 DAC960_V2_ConsistencyCheckStop;
6372 DAC960_ExecuteCommand(Command);
6373 DAC960_UserCritical("Consistency Check of Logical Drive %d "
6374 "(/dev/rd/c%dd%d) %s\n",
6375 Controller, LogicalDriveNumber,
6376 Controller->ControllerNumber,
6377 LogicalDriveNumber,
6378 (Command->V2.CommandStatus
6379 == DAC960_V2_NormalCompletion
6380 ? "Cancelled" : "Not Cancelled"));
6382 else if (strcmp(UserCommand, "perform-discovery") == 0)
6384 CommandMailbox->Common.IOCTL_Opcode = DAC960_V2_StartDiscovery;
6385 DAC960_ExecuteCommand(Command);
6386 DAC960_UserCritical("Discovery %s\n", Controller,
6387 (Command->V2.CommandStatus
6388 == DAC960_V2_NormalCompletion
6389 ? "Initiated" : "Not Initiated"));
6390 if (Command->V2.CommandStatus == DAC960_V2_NormalCompletion)
6392 CommandMailbox->ControllerInfo.CommandOpcode = DAC960_V2_IOCTL;
6393 CommandMailbox->ControllerInfo.CommandControlBits
6394 .DataTransferControllerToHost = true;
6395 CommandMailbox->ControllerInfo.CommandControlBits
6396 .NoAutoRequestSense = true;
6397 CommandMailbox->ControllerInfo.DataTransferSize =
6398 sizeof(DAC960_V2_ControllerInfo_T);
6399 CommandMailbox->ControllerInfo.ControllerNumber = 0;
6400 CommandMailbox->ControllerInfo.IOCTL_Opcode =
6401 DAC960_V2_GetControllerInfo;
6403 * How does this NOT race with the queued Monitoring
6404 * usage of this structure?
6406 CommandMailbox->ControllerInfo.DataTransferMemoryAddress
6407 .ScatterGatherSegments[0]
6408 .SegmentDataPointer =
6409 Controller->V2.NewControllerInformationDMA;
6410 CommandMailbox->ControllerInfo.DataTransferMemoryAddress
6411 .ScatterGatherSegments[0]
6412 .SegmentByteCount =
6413 CommandMailbox->ControllerInfo.DataTransferSize;
6414 while (1) {
6415 DAC960_ExecuteCommand(Command);
6416 if (!Controller->V2.NewControllerInformation->PhysicalScanActive)
6417 break;
6418 msleep(1000);
6420 DAC960_UserCritical("Discovery Completed\n", Controller);
6423 else if (strcmp(UserCommand, "suppress-enclosure-messages") == 0)
6424 Controller->SuppressEnclosureMessages = true;
6425 else DAC960_UserCritical("Illegal User Command: '%s'\n",
6426 Controller, UserCommand);
6428 spin_lock_irqsave(&Controller->queue_lock, flags);
6429 DAC960_DeallocateCommand(Command);
6430 spin_unlock_irqrestore(&Controller->queue_lock, flags);
6431 return true;
6434 static int dac960_proc_show(struct seq_file *m, void *v)
6436 unsigned char *StatusMessage = "OK\n";
6437 int ControllerNumber;
6438 for (ControllerNumber = 0;
6439 ControllerNumber < DAC960_ControllerCount;
6440 ControllerNumber++)
6442 DAC960_Controller_T *Controller = DAC960_Controllers[ControllerNumber];
6443 if (Controller == NULL) continue;
6444 if (Controller->MonitoringAlertMode)
6446 StatusMessage = "ALERT\n";
6447 break;
6450 seq_puts(m, StatusMessage);
6451 return 0;
6454 static int dac960_proc_open(struct inode *inode, struct file *file)
6456 return single_open(file, dac960_proc_show, NULL);
6459 static const struct file_operations dac960_proc_fops = {
6460 .owner = THIS_MODULE,
6461 .open = dac960_proc_open,
6462 .read = seq_read,
6463 .llseek = seq_lseek,
6464 .release = single_release,
6467 static int dac960_initial_status_proc_show(struct seq_file *m, void *v)
6469 DAC960_Controller_T *Controller = (DAC960_Controller_T *)m->private;
6470 seq_printf(m, "%.*s", Controller->InitialStatusLength, Controller->CombinedStatusBuffer);
6471 return 0;
6474 static int dac960_initial_status_proc_open(struct inode *inode, struct file *file)
6476 return single_open(file, dac960_initial_status_proc_show, PDE_DATA(inode));
6479 static const struct file_operations dac960_initial_status_proc_fops = {
6480 .owner = THIS_MODULE,
6481 .open = dac960_initial_status_proc_open,
6482 .read = seq_read,
6483 .llseek = seq_lseek,
6484 .release = single_release,
6487 static int dac960_current_status_proc_show(struct seq_file *m, void *v)
6489 DAC960_Controller_T *Controller = (DAC960_Controller_T *) m->private;
6490 unsigned char *StatusMessage =
6491 "No Rebuild or Consistency Check in Progress\n";
6492 int ProgressMessageLength = strlen(StatusMessage);
6493 if (jiffies != Controller->LastCurrentStatusTime)
6495 Controller->CurrentStatusLength = 0;
6496 DAC960_AnnounceDriver(Controller);
6497 DAC960_ReportControllerConfiguration(Controller);
6498 DAC960_ReportDeviceConfiguration(Controller);
6499 if (Controller->ProgressBufferLength > 0)
6500 ProgressMessageLength = Controller->ProgressBufferLength;
6501 if (DAC960_CheckStatusBuffer(Controller, 2 + ProgressMessageLength))
6503 unsigned char *CurrentStatusBuffer = Controller->CurrentStatusBuffer;
6504 CurrentStatusBuffer[Controller->CurrentStatusLength++] = ' ';
6505 CurrentStatusBuffer[Controller->CurrentStatusLength++] = ' ';
6506 if (Controller->ProgressBufferLength > 0)
6507 strcpy(&CurrentStatusBuffer[Controller->CurrentStatusLength],
6508 Controller->ProgressBuffer);
6509 else
6510 strcpy(&CurrentStatusBuffer[Controller->CurrentStatusLength],
6511 StatusMessage);
6512 Controller->CurrentStatusLength += ProgressMessageLength;
6514 Controller->LastCurrentStatusTime = jiffies;
6516 seq_printf(m, "%.*s", Controller->CurrentStatusLength, Controller->CurrentStatusBuffer);
6517 return 0;
6520 static int dac960_current_status_proc_open(struct inode *inode, struct file *file)
6522 return single_open(file, dac960_current_status_proc_show, PDE_DATA(inode));
6525 static const struct file_operations dac960_current_status_proc_fops = {
6526 .owner = THIS_MODULE,
6527 .open = dac960_current_status_proc_open,
6528 .read = seq_read,
6529 .llseek = seq_lseek,
6530 .release = single_release,
6533 static int dac960_user_command_proc_show(struct seq_file *m, void *v)
6535 DAC960_Controller_T *Controller = (DAC960_Controller_T *)m->private;
6537 seq_printf(m, "%.*s", Controller->UserStatusLength, Controller->UserStatusBuffer);
6538 return 0;
6541 static int dac960_user_command_proc_open(struct inode *inode, struct file *file)
6543 return single_open(file, dac960_user_command_proc_show, PDE_DATA(inode));
6546 static ssize_t dac960_user_command_proc_write(struct file *file,
6547 const char __user *Buffer,
6548 size_t Count, loff_t *pos)
6550 DAC960_Controller_T *Controller = PDE_DATA(file_inode(file));
6551 unsigned char CommandBuffer[80];
6552 int Length;
6553 if (Count > sizeof(CommandBuffer)-1) return -EINVAL;
6554 if (copy_from_user(CommandBuffer, Buffer, Count)) return -EFAULT;
6555 CommandBuffer[Count] = '\0';
6556 Length = strlen(CommandBuffer);
6557 if (Length > 0 && CommandBuffer[Length-1] == '\n')
6558 CommandBuffer[--Length] = '\0';
6559 if (Controller->FirmwareType == DAC960_V1_Controller)
6560 return (DAC960_V1_ExecuteUserCommand(Controller, CommandBuffer)
6561 ? Count : -EBUSY);
6562 else
6563 return (DAC960_V2_ExecuteUserCommand(Controller, CommandBuffer)
6564 ? Count : -EBUSY);
6567 static const struct file_operations dac960_user_command_proc_fops = {
6568 .owner = THIS_MODULE,
6569 .open = dac960_user_command_proc_open,
6570 .read = seq_read,
6571 .llseek = seq_lseek,
6572 .release = single_release,
6573 .write = dac960_user_command_proc_write,
6577 DAC960_CreateProcEntries creates the /proc/rd/... entries for the
6578 DAC960 Driver.
6581 static void DAC960_CreateProcEntries(DAC960_Controller_T *Controller)
6583 struct proc_dir_entry *ControllerProcEntry;
6585 if (DAC960_ProcDirectoryEntry == NULL) {
6586 DAC960_ProcDirectoryEntry = proc_mkdir("rd", NULL);
6587 proc_create("status", 0, DAC960_ProcDirectoryEntry,
6588 &dac960_proc_fops);
6591 snprintf(Controller->ControllerName, sizeof(Controller->ControllerName),
6592 "c%d", Controller->ControllerNumber);
6593 ControllerProcEntry = proc_mkdir(Controller->ControllerName,
6594 DAC960_ProcDirectoryEntry);
6595 proc_create_data("initial_status", 0, ControllerProcEntry, &dac960_initial_status_proc_fops, Controller);
6596 proc_create_data("current_status", 0, ControllerProcEntry, &dac960_current_status_proc_fops, Controller);
6597 proc_create_data("user_command", S_IWUSR | S_IRUSR, ControllerProcEntry, &dac960_user_command_proc_fops, Controller);
6598 Controller->ControllerProcEntry = ControllerProcEntry;
6603 DAC960_DestroyProcEntries destroys the /proc/rd/... entries for the
6604 DAC960 Driver.
6607 static void DAC960_DestroyProcEntries(DAC960_Controller_T *Controller)
6609 if (Controller->ControllerProcEntry == NULL)
6610 return;
6611 remove_proc_entry("initial_status", Controller->ControllerProcEntry);
6612 remove_proc_entry("current_status", Controller->ControllerProcEntry);
6613 remove_proc_entry("user_command", Controller->ControllerProcEntry);
6614 remove_proc_entry(Controller->ControllerName, DAC960_ProcDirectoryEntry);
6615 Controller->ControllerProcEntry = NULL;
6618 #ifdef DAC960_GAM_MINOR
6620 static long DAC960_gam_get_controller_info(DAC960_ControllerInfo_T __user *UserSpaceControllerInfo)
6622 DAC960_ControllerInfo_T ControllerInfo;
6623 DAC960_Controller_T *Controller;
6624 int ControllerNumber;
6625 long ErrorCode;
6627 if (UserSpaceControllerInfo == NULL)
6628 ErrorCode = -EINVAL;
6629 else ErrorCode = get_user(ControllerNumber,
6630 &UserSpaceControllerInfo->ControllerNumber);
6631 if (ErrorCode != 0)
6632 goto out;
6633 ErrorCode = -ENXIO;
6634 if (ControllerNumber < 0 ||
6635 ControllerNumber > DAC960_ControllerCount - 1) {
6636 goto out;
6638 Controller = DAC960_Controllers[ControllerNumber];
6639 if (Controller == NULL)
6640 goto out;
6641 memset(&ControllerInfo, 0, sizeof(DAC960_ControllerInfo_T));
6642 ControllerInfo.ControllerNumber = ControllerNumber;
6643 ControllerInfo.FirmwareType = Controller->FirmwareType;
6644 ControllerInfo.Channels = Controller->Channels;
6645 ControllerInfo.Targets = Controller->Targets;
6646 ControllerInfo.PCI_Bus = Controller->Bus;
6647 ControllerInfo.PCI_Device = Controller->Device;
6648 ControllerInfo.PCI_Function = Controller->Function;
6649 ControllerInfo.IRQ_Channel = Controller->IRQ_Channel;
6650 ControllerInfo.PCI_Address = Controller->PCI_Address;
6651 strcpy(ControllerInfo.ModelName, Controller->ModelName);
6652 strcpy(ControllerInfo.FirmwareVersion, Controller->FirmwareVersion);
6653 ErrorCode = (copy_to_user(UserSpaceControllerInfo, &ControllerInfo,
6654 sizeof(DAC960_ControllerInfo_T)) ? -EFAULT : 0);
6655 out:
6656 return ErrorCode;
6659 static long DAC960_gam_v1_execute_command(DAC960_V1_UserCommand_T __user *UserSpaceUserCommand)
6661 DAC960_V1_UserCommand_T UserCommand;
6662 DAC960_Controller_T *Controller;
6663 DAC960_Command_T *Command = NULL;
6664 DAC960_V1_CommandOpcode_T CommandOpcode;
6665 DAC960_V1_CommandStatus_T CommandStatus;
6666 DAC960_V1_DCDB_T DCDB;
6667 DAC960_V1_DCDB_T *DCDB_IOBUF = NULL;
6668 dma_addr_t DCDB_IOBUFDMA;
6669 unsigned long flags;
6670 int ControllerNumber, DataTransferLength;
6671 unsigned char *DataTransferBuffer = NULL;
6672 dma_addr_t DataTransferBufferDMA;
6673 long ErrorCode;
6675 if (UserSpaceUserCommand == NULL) {
6676 ErrorCode = -EINVAL;
6677 goto out;
6679 if (copy_from_user(&UserCommand, UserSpaceUserCommand,
6680 sizeof(DAC960_V1_UserCommand_T))) {
6681 ErrorCode = -EFAULT;
6682 goto out;
6684 ControllerNumber = UserCommand.ControllerNumber;
6685 ErrorCode = -ENXIO;
6686 if (ControllerNumber < 0 ||
6687 ControllerNumber > DAC960_ControllerCount - 1)
6688 goto out;
6689 Controller = DAC960_Controllers[ControllerNumber];
6690 if (Controller == NULL)
6691 goto out;
6692 ErrorCode = -EINVAL;
6693 if (Controller->FirmwareType != DAC960_V1_Controller)
6694 goto out;
6695 CommandOpcode = UserCommand.CommandMailbox.Common.CommandOpcode;
6696 DataTransferLength = UserCommand.DataTransferLength;
6697 if (CommandOpcode & 0x80)
6698 goto out;
6699 if (CommandOpcode == DAC960_V1_DCDB)
6701 if (copy_from_user(&DCDB, UserCommand.DCDB,
6702 sizeof(DAC960_V1_DCDB_T))) {
6703 ErrorCode = -EFAULT;
6704 goto out;
6706 if (DCDB.Channel >= DAC960_V1_MaxChannels)
6707 goto out;
6708 if (!((DataTransferLength == 0 &&
6709 DCDB.Direction
6710 == DAC960_V1_DCDB_NoDataTransfer) ||
6711 (DataTransferLength > 0 &&
6712 DCDB.Direction
6713 == DAC960_V1_DCDB_DataTransferDeviceToSystem) ||
6714 (DataTransferLength < 0 &&
6715 DCDB.Direction
6716 == DAC960_V1_DCDB_DataTransferSystemToDevice)))
6717 goto out;
6718 if (((DCDB.TransferLengthHigh4 << 16) | DCDB.TransferLength)
6719 != abs(DataTransferLength))
6720 goto out;
6721 DCDB_IOBUF = pci_alloc_consistent(Controller->PCIDevice,
6722 sizeof(DAC960_V1_DCDB_T), &DCDB_IOBUFDMA);
6723 if (DCDB_IOBUF == NULL) {
6724 ErrorCode = -ENOMEM;
6725 goto out;
6728 ErrorCode = -ENOMEM;
6729 if (DataTransferLength > 0)
6731 DataTransferBuffer = pci_zalloc_consistent(Controller->PCIDevice,
6732 DataTransferLength,
6733 &DataTransferBufferDMA);
6734 if (DataTransferBuffer == NULL)
6735 goto out;
6737 else if (DataTransferLength < 0)
6739 DataTransferBuffer = pci_alloc_consistent(Controller->PCIDevice,
6740 -DataTransferLength, &DataTransferBufferDMA);
6741 if (DataTransferBuffer == NULL)
6742 goto out;
6743 if (copy_from_user(DataTransferBuffer,
6744 UserCommand.DataTransferBuffer,
6745 -DataTransferLength)) {
6746 ErrorCode = -EFAULT;
6747 goto out;
6750 if (CommandOpcode == DAC960_V1_DCDB)
6752 spin_lock_irqsave(&Controller->queue_lock, flags);
6753 while ((Command = DAC960_AllocateCommand(Controller)) == NULL)
6754 DAC960_WaitForCommand(Controller);
6755 while (Controller->V1.DirectCommandActive[DCDB.Channel]
6756 [DCDB.TargetID])
6758 spin_unlock_irq(&Controller->queue_lock);
6759 __wait_event(Controller->CommandWaitQueue,
6760 !Controller->V1.DirectCommandActive
6761 [DCDB.Channel][DCDB.TargetID]);
6762 spin_lock_irq(&Controller->queue_lock);
6764 Controller->V1.DirectCommandActive[DCDB.Channel]
6765 [DCDB.TargetID] = true;
6766 spin_unlock_irqrestore(&Controller->queue_lock, flags);
6767 DAC960_V1_ClearCommand(Command);
6768 Command->CommandType = DAC960_ImmediateCommand;
6769 memcpy(&Command->V1.CommandMailbox, &UserCommand.CommandMailbox,
6770 sizeof(DAC960_V1_CommandMailbox_T));
6771 Command->V1.CommandMailbox.Type3.BusAddress = DCDB_IOBUFDMA;
6772 DCDB.BusAddress = DataTransferBufferDMA;
6773 memcpy(DCDB_IOBUF, &DCDB, sizeof(DAC960_V1_DCDB_T));
6775 else
6777 spin_lock_irqsave(&Controller->queue_lock, flags);
6778 while ((Command = DAC960_AllocateCommand(Controller)) == NULL)
6779 DAC960_WaitForCommand(Controller);
6780 spin_unlock_irqrestore(&Controller->queue_lock, flags);
6781 DAC960_V1_ClearCommand(Command);
6782 Command->CommandType = DAC960_ImmediateCommand;
6783 memcpy(&Command->V1.CommandMailbox, &UserCommand.CommandMailbox,
6784 sizeof(DAC960_V1_CommandMailbox_T));
6785 if (DataTransferBuffer != NULL)
6786 Command->V1.CommandMailbox.Type3.BusAddress =
6787 DataTransferBufferDMA;
6789 DAC960_ExecuteCommand(Command);
6790 CommandStatus = Command->V1.CommandStatus;
6791 spin_lock_irqsave(&Controller->queue_lock, flags);
6792 DAC960_DeallocateCommand(Command);
6793 spin_unlock_irqrestore(&Controller->queue_lock, flags);
6794 if (DataTransferLength > 0)
6796 if (copy_to_user(UserCommand.DataTransferBuffer,
6797 DataTransferBuffer, DataTransferLength)) {
6798 ErrorCode = -EFAULT;
6799 goto Failure1;
6802 if (CommandOpcode == DAC960_V1_DCDB)
6805 I don't believe Target or Channel in the DCDB_IOBUF
6806 should be any different from the contents of DCDB.
6808 Controller->V1.DirectCommandActive[DCDB.Channel]
6809 [DCDB.TargetID] = false;
6810 if (copy_to_user(UserCommand.DCDB, DCDB_IOBUF,
6811 sizeof(DAC960_V1_DCDB_T))) {
6812 ErrorCode = -EFAULT;
6813 goto Failure1;
6816 ErrorCode = CommandStatus;
6817 Failure1:
6818 if (DataTransferBuffer != NULL)
6819 pci_free_consistent(Controller->PCIDevice, abs(DataTransferLength),
6820 DataTransferBuffer, DataTransferBufferDMA);
6821 if (DCDB_IOBUF != NULL)
6822 pci_free_consistent(Controller->PCIDevice, sizeof(DAC960_V1_DCDB_T),
6823 DCDB_IOBUF, DCDB_IOBUFDMA);
6824 out:
6825 return ErrorCode;
6828 static long DAC960_gam_v2_execute_command(DAC960_V2_UserCommand_T __user *UserSpaceUserCommand)
6830 DAC960_V2_UserCommand_T UserCommand;
6831 DAC960_Controller_T *Controller;
6832 DAC960_Command_T *Command = NULL;
6833 DAC960_V2_CommandMailbox_T *CommandMailbox;
6834 DAC960_V2_CommandStatus_T CommandStatus;
6835 unsigned long flags;
6836 int ControllerNumber, DataTransferLength;
6837 int DataTransferResidue, RequestSenseLength;
6838 unsigned char *DataTransferBuffer = NULL;
6839 dma_addr_t DataTransferBufferDMA;
6840 unsigned char *RequestSenseBuffer = NULL;
6841 dma_addr_t RequestSenseBufferDMA;
6842 long ErrorCode = -EINVAL;
6844 if (UserSpaceUserCommand == NULL)
6845 goto out;
6846 if (copy_from_user(&UserCommand, UserSpaceUserCommand,
6847 sizeof(DAC960_V2_UserCommand_T))) {
6848 ErrorCode = -EFAULT;
6849 goto out;
6851 ErrorCode = -ENXIO;
6852 ControllerNumber = UserCommand.ControllerNumber;
6853 if (ControllerNumber < 0 ||
6854 ControllerNumber > DAC960_ControllerCount - 1)
6855 goto out;
6856 Controller = DAC960_Controllers[ControllerNumber];
6857 if (Controller == NULL)
6858 goto out;
6859 if (Controller->FirmwareType != DAC960_V2_Controller){
6860 ErrorCode = -EINVAL;
6861 goto out;
6863 DataTransferLength = UserCommand.DataTransferLength;
6864 ErrorCode = -ENOMEM;
6865 if (DataTransferLength > 0)
6867 DataTransferBuffer = pci_zalloc_consistent(Controller->PCIDevice,
6868 DataTransferLength,
6869 &DataTransferBufferDMA);
6870 if (DataTransferBuffer == NULL)
6871 goto out;
6873 else if (DataTransferLength < 0)
6875 DataTransferBuffer = pci_alloc_consistent(Controller->PCIDevice,
6876 -DataTransferLength, &DataTransferBufferDMA);
6877 if (DataTransferBuffer == NULL)
6878 goto out;
6879 if (copy_from_user(DataTransferBuffer,
6880 UserCommand.DataTransferBuffer,
6881 -DataTransferLength)) {
6882 ErrorCode = -EFAULT;
6883 goto Failure2;
6886 RequestSenseLength = UserCommand.RequestSenseLength;
6887 if (RequestSenseLength > 0)
6889 RequestSenseBuffer = pci_zalloc_consistent(Controller->PCIDevice,
6890 RequestSenseLength,
6891 &RequestSenseBufferDMA);
6892 if (RequestSenseBuffer == NULL)
6894 ErrorCode = -ENOMEM;
6895 goto Failure2;
6898 spin_lock_irqsave(&Controller->queue_lock, flags);
6899 while ((Command = DAC960_AllocateCommand(Controller)) == NULL)
6900 DAC960_WaitForCommand(Controller);
6901 spin_unlock_irqrestore(&Controller->queue_lock, flags);
6902 DAC960_V2_ClearCommand(Command);
6903 Command->CommandType = DAC960_ImmediateCommand;
6904 CommandMailbox = &Command->V2.CommandMailbox;
6905 memcpy(CommandMailbox, &UserCommand.CommandMailbox,
6906 sizeof(DAC960_V2_CommandMailbox_T));
6907 CommandMailbox->Common.CommandControlBits
6908 .AdditionalScatterGatherListMemory = false;
6909 CommandMailbox->Common.CommandControlBits
6910 .NoAutoRequestSense = true;
6911 CommandMailbox->Common.DataTransferSize = 0;
6912 CommandMailbox->Common.DataTransferPageNumber = 0;
6913 memset(&CommandMailbox->Common.DataTransferMemoryAddress, 0,
6914 sizeof(DAC960_V2_DataTransferMemoryAddress_T));
6915 if (DataTransferLength != 0)
6917 if (DataTransferLength > 0)
6919 CommandMailbox->Common.CommandControlBits
6920 .DataTransferControllerToHost = true;
6921 CommandMailbox->Common.DataTransferSize = DataTransferLength;
6923 else
6925 CommandMailbox->Common.CommandControlBits
6926 .DataTransferControllerToHost = false;
6927 CommandMailbox->Common.DataTransferSize = -DataTransferLength;
6929 CommandMailbox->Common.DataTransferMemoryAddress
6930 .ScatterGatherSegments[0]
6931 .SegmentDataPointer = DataTransferBufferDMA;
6932 CommandMailbox->Common.DataTransferMemoryAddress
6933 .ScatterGatherSegments[0]
6934 .SegmentByteCount =
6935 CommandMailbox->Common.DataTransferSize;
6937 if (RequestSenseLength > 0)
6939 CommandMailbox->Common.CommandControlBits
6940 .NoAutoRequestSense = false;
6941 CommandMailbox->Common.RequestSenseSize = RequestSenseLength;
6942 CommandMailbox->Common.RequestSenseBusAddress =
6943 RequestSenseBufferDMA;
6945 DAC960_ExecuteCommand(Command);
6946 CommandStatus = Command->V2.CommandStatus;
6947 RequestSenseLength = Command->V2.RequestSenseLength;
6948 DataTransferResidue = Command->V2.DataTransferResidue;
6949 spin_lock_irqsave(&Controller->queue_lock, flags);
6950 DAC960_DeallocateCommand(Command);
6951 spin_unlock_irqrestore(&Controller->queue_lock, flags);
6952 if (RequestSenseLength > UserCommand.RequestSenseLength)
6953 RequestSenseLength = UserCommand.RequestSenseLength;
6954 if (copy_to_user(&UserSpaceUserCommand->DataTransferLength,
6955 &DataTransferResidue,
6956 sizeof(DataTransferResidue))) {
6957 ErrorCode = -EFAULT;
6958 goto Failure2;
6960 if (copy_to_user(&UserSpaceUserCommand->RequestSenseLength,
6961 &RequestSenseLength, sizeof(RequestSenseLength))) {
6962 ErrorCode = -EFAULT;
6963 goto Failure2;
6965 if (DataTransferLength > 0)
6967 if (copy_to_user(UserCommand.DataTransferBuffer,
6968 DataTransferBuffer, DataTransferLength)) {
6969 ErrorCode = -EFAULT;
6970 goto Failure2;
6973 if (RequestSenseLength > 0)
6975 if (copy_to_user(UserCommand.RequestSenseBuffer,
6976 RequestSenseBuffer, RequestSenseLength)) {
6977 ErrorCode = -EFAULT;
6978 goto Failure2;
6981 ErrorCode = CommandStatus;
6982 Failure2:
6983 pci_free_consistent(Controller->PCIDevice, abs(DataTransferLength),
6984 DataTransferBuffer, DataTransferBufferDMA);
6985 if (RequestSenseBuffer != NULL)
6986 pci_free_consistent(Controller->PCIDevice, RequestSenseLength,
6987 RequestSenseBuffer, RequestSenseBufferDMA);
6988 out:
6989 return ErrorCode;
6992 static long DAC960_gam_v2_get_health_status(DAC960_V2_GetHealthStatus_T __user *UserSpaceGetHealthStatus)
6994 DAC960_V2_GetHealthStatus_T GetHealthStatus;
6995 DAC960_V2_HealthStatusBuffer_T HealthStatusBuffer;
6996 DAC960_Controller_T *Controller;
6997 int ControllerNumber;
6998 long ErrorCode;
7000 if (UserSpaceGetHealthStatus == NULL) {
7001 ErrorCode = -EINVAL;
7002 goto out;
7004 if (copy_from_user(&GetHealthStatus, UserSpaceGetHealthStatus,
7005 sizeof(DAC960_V2_GetHealthStatus_T))) {
7006 ErrorCode = -EFAULT;
7007 goto out;
7009 ErrorCode = -ENXIO;
7010 ControllerNumber = GetHealthStatus.ControllerNumber;
7011 if (ControllerNumber < 0 ||
7012 ControllerNumber > DAC960_ControllerCount - 1)
7013 goto out;
7014 Controller = DAC960_Controllers[ControllerNumber];
7015 if (Controller == NULL)
7016 goto out;
7017 if (Controller->FirmwareType != DAC960_V2_Controller) {
7018 ErrorCode = -EINVAL;
7019 goto out;
7021 if (copy_from_user(&HealthStatusBuffer,
7022 GetHealthStatus.HealthStatusBuffer,
7023 sizeof(DAC960_V2_HealthStatusBuffer_T))) {
7024 ErrorCode = -EFAULT;
7025 goto out;
7027 ErrorCode = wait_event_interruptible_timeout(Controller->HealthStatusWaitQueue,
7028 !(Controller->V2.HealthStatusBuffer->StatusChangeCounter
7029 == HealthStatusBuffer.StatusChangeCounter &&
7030 Controller->V2.HealthStatusBuffer->NextEventSequenceNumber
7031 == HealthStatusBuffer.NextEventSequenceNumber),
7032 DAC960_MonitoringTimerInterval);
7033 if (ErrorCode == -ERESTARTSYS) {
7034 ErrorCode = -EINTR;
7035 goto out;
7037 if (copy_to_user(GetHealthStatus.HealthStatusBuffer,
7038 Controller->V2.HealthStatusBuffer,
7039 sizeof(DAC960_V2_HealthStatusBuffer_T)))
7040 ErrorCode = -EFAULT;
7041 else
7042 ErrorCode = 0;
7044 out:
7045 return ErrorCode;
7049 * DAC960_gam_ioctl is the ioctl function for performing RAID operations.
7052 static long DAC960_gam_ioctl(struct file *file, unsigned int Request,
7053 unsigned long Argument)
7055 long ErrorCode = 0;
7056 void __user *argp = (void __user *)Argument;
7057 if (!capable(CAP_SYS_ADMIN)) return -EACCES;
7059 mutex_lock(&DAC960_mutex);
7060 switch (Request)
7062 case DAC960_IOCTL_GET_CONTROLLER_COUNT:
7063 ErrorCode = DAC960_ControllerCount;
7064 break;
7065 case DAC960_IOCTL_GET_CONTROLLER_INFO:
7066 ErrorCode = DAC960_gam_get_controller_info(argp);
7067 break;
7068 case DAC960_IOCTL_V1_EXECUTE_COMMAND:
7069 ErrorCode = DAC960_gam_v1_execute_command(argp);
7070 break;
7071 case DAC960_IOCTL_V2_EXECUTE_COMMAND:
7072 ErrorCode = DAC960_gam_v2_execute_command(argp);
7073 break;
7074 case DAC960_IOCTL_V2_GET_HEALTH_STATUS:
7075 ErrorCode = DAC960_gam_v2_get_health_status(argp);
7076 break;
7077 default:
7078 ErrorCode = -ENOTTY;
7080 mutex_unlock(&DAC960_mutex);
7081 return ErrorCode;
7084 static const struct file_operations DAC960_gam_fops = {
7085 .owner = THIS_MODULE,
7086 .unlocked_ioctl = DAC960_gam_ioctl,
7087 .llseek = noop_llseek,
7090 static struct miscdevice DAC960_gam_dev = {
7091 DAC960_GAM_MINOR,
7092 "dac960_gam",
7093 &DAC960_gam_fops
7096 static int DAC960_gam_init(void)
7098 int ret;
7100 ret = misc_register(&DAC960_gam_dev);
7101 if (ret)
7102 printk(KERN_ERR "DAC960_gam: can't misc_register on minor %d\n", DAC960_GAM_MINOR);
7103 return ret;
7106 static void DAC960_gam_cleanup(void)
7108 misc_deregister(&DAC960_gam_dev);
7111 #endif /* DAC960_GAM_MINOR */
7113 static struct DAC960_privdata DAC960_GEM_privdata = {
7114 .HardwareType = DAC960_GEM_Controller,
7115 .FirmwareType = DAC960_V2_Controller,
7116 .InterruptHandler = DAC960_GEM_InterruptHandler,
7117 .MemoryWindowSize = DAC960_GEM_RegisterWindowSize,
7121 static struct DAC960_privdata DAC960_BA_privdata = {
7122 .HardwareType = DAC960_BA_Controller,
7123 .FirmwareType = DAC960_V2_Controller,
7124 .InterruptHandler = DAC960_BA_InterruptHandler,
7125 .MemoryWindowSize = DAC960_BA_RegisterWindowSize,
7128 static struct DAC960_privdata DAC960_LP_privdata = {
7129 .HardwareType = DAC960_LP_Controller,
7130 .FirmwareType = DAC960_V2_Controller,
7131 .InterruptHandler = DAC960_LP_InterruptHandler,
7132 .MemoryWindowSize = DAC960_LP_RegisterWindowSize,
7135 static struct DAC960_privdata DAC960_LA_privdata = {
7136 .HardwareType = DAC960_LA_Controller,
7137 .FirmwareType = DAC960_V1_Controller,
7138 .InterruptHandler = DAC960_LA_InterruptHandler,
7139 .MemoryWindowSize = DAC960_LA_RegisterWindowSize,
7142 static struct DAC960_privdata DAC960_PG_privdata = {
7143 .HardwareType = DAC960_PG_Controller,
7144 .FirmwareType = DAC960_V1_Controller,
7145 .InterruptHandler = DAC960_PG_InterruptHandler,
7146 .MemoryWindowSize = DAC960_PG_RegisterWindowSize,
7149 static struct DAC960_privdata DAC960_PD_privdata = {
7150 .HardwareType = DAC960_PD_Controller,
7151 .FirmwareType = DAC960_V1_Controller,
7152 .InterruptHandler = DAC960_PD_InterruptHandler,
7153 .MemoryWindowSize = DAC960_PD_RegisterWindowSize,
7156 static struct DAC960_privdata DAC960_P_privdata = {
7157 .HardwareType = DAC960_P_Controller,
7158 .FirmwareType = DAC960_V1_Controller,
7159 .InterruptHandler = DAC960_P_InterruptHandler,
7160 .MemoryWindowSize = DAC960_PD_RegisterWindowSize,
7163 static const struct pci_device_id DAC960_id_table[] = {
7165 .vendor = PCI_VENDOR_ID_MYLEX,
7166 .device = PCI_DEVICE_ID_MYLEX_DAC960_GEM,
7167 .subvendor = PCI_VENDOR_ID_MYLEX,
7168 .subdevice = PCI_ANY_ID,
7169 .driver_data = (unsigned long) &DAC960_GEM_privdata,
7172 .vendor = PCI_VENDOR_ID_MYLEX,
7173 .device = PCI_DEVICE_ID_MYLEX_DAC960_BA,
7174 .subvendor = PCI_ANY_ID,
7175 .subdevice = PCI_ANY_ID,
7176 .driver_data = (unsigned long) &DAC960_BA_privdata,
7179 .vendor = PCI_VENDOR_ID_MYLEX,
7180 .device = PCI_DEVICE_ID_MYLEX_DAC960_LP,
7181 .subvendor = PCI_ANY_ID,
7182 .subdevice = PCI_ANY_ID,
7183 .driver_data = (unsigned long) &DAC960_LP_privdata,
7186 .vendor = PCI_VENDOR_ID_DEC,
7187 .device = PCI_DEVICE_ID_DEC_21285,
7188 .subvendor = PCI_VENDOR_ID_MYLEX,
7189 .subdevice = PCI_DEVICE_ID_MYLEX_DAC960_LA,
7190 .driver_data = (unsigned long) &DAC960_LA_privdata,
7193 .vendor = PCI_VENDOR_ID_MYLEX,
7194 .device = PCI_DEVICE_ID_MYLEX_DAC960_PG,
7195 .subvendor = PCI_ANY_ID,
7196 .subdevice = PCI_ANY_ID,
7197 .driver_data = (unsigned long) &DAC960_PG_privdata,
7200 .vendor = PCI_VENDOR_ID_MYLEX,
7201 .device = PCI_DEVICE_ID_MYLEX_DAC960_PD,
7202 .subvendor = PCI_ANY_ID,
7203 .subdevice = PCI_ANY_ID,
7204 .driver_data = (unsigned long) &DAC960_PD_privdata,
7207 .vendor = PCI_VENDOR_ID_MYLEX,
7208 .device = PCI_DEVICE_ID_MYLEX_DAC960_P,
7209 .subvendor = PCI_ANY_ID,
7210 .subdevice = PCI_ANY_ID,
7211 .driver_data = (unsigned long) &DAC960_P_privdata,
7213 {0, },
7216 MODULE_DEVICE_TABLE(pci, DAC960_id_table);
7218 static struct pci_driver DAC960_pci_driver = {
7219 .name = "DAC960",
7220 .id_table = DAC960_id_table,
7221 .probe = DAC960_Probe,
7222 .remove = DAC960_Remove,
7225 static int __init DAC960_init_module(void)
7227 int ret;
7229 ret = pci_register_driver(&DAC960_pci_driver);
7230 #ifdef DAC960_GAM_MINOR
7231 if (!ret)
7232 DAC960_gam_init();
7233 #endif
7234 return ret;
7237 static void __exit DAC960_cleanup_module(void)
7239 int i;
7241 #ifdef DAC960_GAM_MINOR
7242 DAC960_gam_cleanup();
7243 #endif
7245 for (i = 0; i < DAC960_ControllerCount; i++) {
7246 DAC960_Controller_T *Controller = DAC960_Controllers[i];
7247 if (Controller == NULL)
7248 continue;
7249 DAC960_FinalizeController(Controller);
7251 if (DAC960_ProcDirectoryEntry != NULL) {
7252 remove_proc_entry("rd/status", NULL);
7253 remove_proc_entry("rd", NULL);
7255 DAC960_ControllerCount = 0;
7256 pci_unregister_driver(&DAC960_pci_driver);
7259 module_init(DAC960_init_module);
7260 module_exit(DAC960_cleanup_module);
7262 MODULE_LICENSE("GPL");