2 * Adaptec AAC series RAID controller driver
3 * (c) Copyright 2001 Red Hat Inc.
5 * based on the old aacraid driver that is..
6 * Adaptec aacraid device driver for Linux.
8 * Copyright (c) 2000-2007 Adaptec, Inc. (aacraid@adaptec.com)
10 * This program is free software; you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License as published by
12 * the Free Software Foundation; either version 2, or (at your option)
15 * This program is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 * GNU General Public License for more details.
20 * You should have received a copy of the GNU General Public License
21 * along with this program; see the file COPYING. If not, write to
22 * the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
27 * Abstract: This supports the initialization of the host adapter commuication interface.
28 * This is a platform dependent module for the pci cyclone board.
32 #include <linux/kernel.h>
33 #include <linux/init.h>
34 #include <linux/types.h>
35 #include <linux/pci.h>
36 #include <linux/spinlock.h>
37 #include <linux/slab.h>
38 #include <linux/blkdev.h>
39 #include <linux/completion.h>
41 #include <scsi/scsi_host.h>
45 struct aac_common aac_config
= {
49 static int aac_alloc_comm(struct aac_dev
*dev
, void **commaddr
, unsigned long commsize
, unsigned long commalign
)
52 unsigned long size
, align
;
53 const unsigned long fibsize
= 4096;
54 const unsigned long printfbufsiz
= 256;
55 struct aac_init
*init
;
57 unsigned long aac_max_hostphysmempages
;
59 size
= fibsize
+ sizeof(struct aac_init
) + commsize
+ commalign
+ printfbufsiz
;
62 base
= pci_alloc_consistent(dev
->pdev
, size
, &phys
);
66 printk(KERN_ERR
"aacraid: unable to create mapping.\n");
69 dev
->comm_addr
= (void *)base
;
70 dev
->comm_phys
= phys
;
71 dev
->comm_size
= size
;
73 dev
->init
= (struct aac_init
*)(base
+ fibsize
);
74 dev
->init_pa
= phys
+ fibsize
;
78 init
->InitStructRevision
= cpu_to_le32(ADAPTER_INIT_STRUCT_REVISION
);
79 if (dev
->max_fib_size
!= sizeof(struct hw_fib
))
80 init
->InitStructRevision
= cpu_to_le32(ADAPTER_INIT_STRUCT_REVISION_4
);
81 init
->MiniPortRevision
= cpu_to_le32(Sa_MINIPORT_REVISION
);
82 init
->fsrev
= cpu_to_le32(dev
->fsrev
);
85 * Adapter Fibs are the first thing allocated so that they
88 dev
->aif_base_va
= (struct hw_fib
*)base
;
90 init
->AdapterFibsVirtualAddress
= 0;
91 init
->AdapterFibsPhysicalAddress
= cpu_to_le32((u32
)phys
);
92 init
->AdapterFibsSize
= cpu_to_le32(fibsize
);
93 init
->AdapterFibAlign
= cpu_to_le32(sizeof(struct hw_fib
));
95 * number of 4k pages of host physical memory. The aacraid fw needs
96 * this number to be less than 4gb worth of pages. New firmware doesn't
97 * have any issues with the mapping system, but older Firmware did, and
98 * had *troubles* dealing with the math overloading past 32 bits, thus
99 * we must limit this field.
101 aac_max_hostphysmempages
= dma_get_required_mask(&dev
->pdev
->dev
) >> 12;
102 if (aac_max_hostphysmempages
< AAC_MAX_HOSTPHYSMEMPAGES
)
103 init
->HostPhysMemPages
= cpu_to_le32(aac_max_hostphysmempages
);
105 init
->HostPhysMemPages
= cpu_to_le32(AAC_MAX_HOSTPHYSMEMPAGES
);
108 if (dev
->comm_interface
== AAC_COMM_MESSAGE
) {
109 init
->InitFlags
= cpu_to_le32(INITFLAGS_NEW_COMM_SUPPORTED
);
110 dprintk((KERN_WARNING
"aacraid: New Comm Interface enabled\n"));
112 init
->InitFlags
|= cpu_to_le32(INITFLAGS_DRIVER_USES_UTC_TIME
|
113 INITFLAGS_DRIVER_SUPPORTS_PM
);
114 init
->MaxIoCommands
= cpu_to_le32(dev
->scsi_host_ptr
->can_queue
+ AAC_NUM_MGT_FIB
);
115 init
->MaxIoSize
= cpu_to_le32(dev
->scsi_host_ptr
->max_sectors
<< 9);
116 init
->MaxFibSize
= cpu_to_le32(dev
->max_fib_size
);
119 * Increment the base address by the amount already used
121 base
= base
+ fibsize
+ sizeof(struct aac_init
);
122 phys
= (dma_addr_t
)((ulong
)phys
+ fibsize
+ sizeof(struct aac_init
));
124 * Align the beginning of Headers to commalign
126 align
= (commalign
- ((uintptr_t)(base
) & (commalign
- 1)));
130 * Fill in addresses of the Comm Area Headers and Queues
133 init
->CommHeaderAddress
= cpu_to_le32((u32
)phys
);
135 * Increment the base address by the size of the CommArea
137 base
= base
+ commsize
;
138 phys
= phys
+ commsize
;
140 * Place the Printf buffer area after the Fast I/O comm area.
142 dev
->printfbuf
= (void *)base
;
143 init
->printfbuf
= cpu_to_le32(phys
);
144 init
->printfbufsiz
= cpu_to_le32(printfbufsiz
);
145 memset(base
, 0, printfbufsiz
);
149 static void aac_queue_init(struct aac_dev
* dev
, struct aac_queue
* q
, u32
*mem
, int qsize
)
153 init_waitqueue_head(&q
->cmdready
);
154 INIT_LIST_HEAD(&q
->cmdq
);
155 init_waitqueue_head(&q
->qfull
);
156 spin_lock_init(&q
->lockdata
);
157 q
->lock
= &q
->lockdata
;
158 q
->headers
.producer
= (__le32
*)mem
;
159 q
->headers
.consumer
= (__le32
*)(mem
+1);
160 *(q
->headers
.producer
) = cpu_to_le32(qsize
);
161 *(q
->headers
.consumer
) = cpu_to_le32(qsize
);
166 * aac_send_shutdown - shutdown an adapter
167 * @dev: Adapter to shutdown
169 * This routine will send a VM_CloseAll (shutdown) request to the adapter.
172 int aac_send_shutdown(struct aac_dev
* dev
)
175 struct aac_close
*cmd
;
178 fibctx
= aac_fib_alloc(dev
);
181 aac_fib_init(fibctx
);
183 cmd
= (struct aac_close
*) fib_data(fibctx
);
185 cmd
->command
= cpu_to_le32(VM_CloseAll
);
186 cmd
->cid
= cpu_to_le32(0xffffffff);
188 status
= aac_fib_send(ContainerCommand
,
190 sizeof(struct aac_close
),
192 -2 /* Timeout silently */, 1,
196 aac_fib_complete(fibctx
);
197 /* FIB should be freed only after getting the response from the F/W */
198 if (status
!= -ERESTARTSYS
)
199 aac_fib_free(fibctx
);
204 * aac_comm_init - Initialise FSA data structures
205 * @dev: Adapter to initialise
207 * Initializes the data structures that are required for the FSA commuication
208 * interface to operate.
210 * 1 - if we were able to init the commuication interface.
211 * 0 - If there were errors initing. This is a fatal error.
214 static int aac_comm_init(struct aac_dev
* dev
)
216 unsigned long hdrsize
= (sizeof(u32
) * NUMBER_OF_COMM_QUEUES
) * 2;
217 unsigned long queuesize
= sizeof(struct aac_entry
) * TOTAL_QUEUE_ENTRIES
;
219 struct aac_entry
* queues
;
221 struct aac_queue_block
* comm
= dev
->queues
;
223 * Now allocate and initialize the zone structures used as our
224 * pool of FIB context records. The size of the zone is based
225 * on the system memory size. We also initialize the mutex used
226 * to protect the zone.
228 spin_lock_init(&dev
->fib_lock
);
231 * Allocate the physically contiguous space for the commuication
235 size
= hdrsize
+ queuesize
;
237 if (!aac_alloc_comm(dev
, (void * *)&headers
, size
, QUEUE_ALIGNMENT
))
240 queues
= (struct aac_entry
*)(((ulong
)headers
) + hdrsize
);
242 /* Adapter to Host normal priority Command queue */
243 comm
->queue
[HostNormCmdQueue
].base
= queues
;
244 aac_queue_init(dev
, &comm
->queue
[HostNormCmdQueue
], headers
, HOST_NORM_CMD_ENTRIES
);
245 queues
+= HOST_NORM_CMD_ENTRIES
;
248 /* Adapter to Host high priority command queue */
249 comm
->queue
[HostHighCmdQueue
].base
= queues
;
250 aac_queue_init(dev
, &comm
->queue
[HostHighCmdQueue
], headers
, HOST_HIGH_CMD_ENTRIES
);
252 queues
+= HOST_HIGH_CMD_ENTRIES
;
255 /* Host to adapter normal priority command queue */
256 comm
->queue
[AdapNormCmdQueue
].base
= queues
;
257 aac_queue_init(dev
, &comm
->queue
[AdapNormCmdQueue
], headers
, ADAP_NORM_CMD_ENTRIES
);
259 queues
+= ADAP_NORM_CMD_ENTRIES
;
262 /* host to adapter high priority command queue */
263 comm
->queue
[AdapHighCmdQueue
].base
= queues
;
264 aac_queue_init(dev
, &comm
->queue
[AdapHighCmdQueue
], headers
, ADAP_HIGH_CMD_ENTRIES
);
266 queues
+= ADAP_HIGH_CMD_ENTRIES
;
269 /* adapter to host normal priority response queue */
270 comm
->queue
[HostNormRespQueue
].base
= queues
;
271 aac_queue_init(dev
, &comm
->queue
[HostNormRespQueue
], headers
, HOST_NORM_RESP_ENTRIES
);
272 queues
+= HOST_NORM_RESP_ENTRIES
;
275 /* adapter to host high priority response queue */
276 comm
->queue
[HostHighRespQueue
].base
= queues
;
277 aac_queue_init(dev
, &comm
->queue
[HostHighRespQueue
], headers
, HOST_HIGH_RESP_ENTRIES
);
279 queues
+= HOST_HIGH_RESP_ENTRIES
;
282 /* host to adapter normal priority response queue */
283 comm
->queue
[AdapNormRespQueue
].base
= queues
;
284 aac_queue_init(dev
, &comm
->queue
[AdapNormRespQueue
], headers
, ADAP_NORM_RESP_ENTRIES
);
286 queues
+= ADAP_NORM_RESP_ENTRIES
;
289 /* host to adapter high priority response queue */
290 comm
->queue
[AdapHighRespQueue
].base
= queues
;
291 aac_queue_init(dev
, &comm
->queue
[AdapHighRespQueue
], headers
, ADAP_HIGH_RESP_ENTRIES
);
293 comm
->queue
[AdapNormCmdQueue
].lock
= comm
->queue
[HostNormRespQueue
].lock
;
294 comm
->queue
[AdapHighCmdQueue
].lock
= comm
->queue
[HostHighRespQueue
].lock
;
295 comm
->queue
[AdapNormRespQueue
].lock
= comm
->queue
[HostNormCmdQueue
].lock
;
296 comm
->queue
[AdapHighRespQueue
].lock
= comm
->queue
[HostHighCmdQueue
].lock
;
301 struct aac_dev
*aac_init_adapter(struct aac_dev
*dev
)
304 struct Scsi_Host
* host
= dev
->scsi_host_ptr
;
307 * Check the preferred comm settings, defaults from template.
309 dev
->management_fib_count
= 0;
310 spin_lock_init(&dev
->manage_lock
);
311 dev
->max_fib_size
= sizeof(struct hw_fib
);
312 dev
->sg_tablesize
= host
->sg_tablesize
= (dev
->max_fib_size
313 - sizeof(struct aac_fibhdr
)
314 - sizeof(struct aac_write
) + sizeof(struct sgentry
))
315 / sizeof(struct sgentry
);
316 dev
->comm_interface
= AAC_COMM_PRODUCER
;
318 if ((!aac_adapter_sync_cmd(dev
, GET_ADAPTER_PROPERTIES
,
319 0, 0, 0, 0, 0, 0, status
+0, status
+1, status
+2, NULL
, NULL
)) &&
320 (status
[0] == 0x00000001)) {
321 if (status
[1] & le32_to_cpu(AAC_OPT_NEW_COMM_64
))
323 if (dev
->a_ops
.adapter_comm
&&
324 (status
[1] & le32_to_cpu(AAC_OPT_NEW_COMM
)))
325 dev
->comm_interface
= AAC_COMM_MESSAGE
;
326 if ((dev
->comm_interface
== AAC_COMM_MESSAGE
) &&
327 (status
[2] > dev
->base_size
)) {
328 aac_adapter_ioremap(dev
, 0);
329 dev
->base_size
= status
[2];
330 if (aac_adapter_ioremap(dev
, status
[2])) {
331 /* remap failed, go back ... */
332 dev
->comm_interface
= AAC_COMM_PRODUCER
;
333 if (aac_adapter_ioremap(dev
, AAC_MIN_FOOTPRINT_SIZE
)) {
335 "aacraid: unable to map adapter.\n");
341 if ((!aac_adapter_sync_cmd(dev
, GET_COMM_PREFERRED_SETTINGS
,
343 status
+0, status
+1, status
+2, status
+3, status
+4))
344 && (status
[0] == 0x00000001)) {
346 * status[1] >> 16 maximum command size in KB
347 * status[1] & 0xFFFF maximum FIB size
348 * status[2] >> 16 maximum SG elements to driver
349 * status[2] & 0xFFFF maximum SG elements from driver
350 * status[3] & 0xFFFF maximum number FIBs outstanding
352 host
->max_sectors
= (status
[1] >> 16) << 1;
353 dev
->max_fib_size
= status
[1] & 0xFFFF;
354 host
->sg_tablesize
= status
[2] >> 16;
355 dev
->sg_tablesize
= status
[2] & 0xFFFF;
356 host
->can_queue
= (status
[3] & 0xFFFF) - AAC_NUM_MGT_FIB
;
359 * All these overrides are based on a fixed internal
360 * knowledge and understanding of existing adapters,
361 * acbsize should be set with caution.
363 if (acbsize
== 512) {
364 host
->max_sectors
= AAC_MAX_32BIT_SGBCOUNT
;
365 dev
->max_fib_size
= 512;
366 dev
->sg_tablesize
= host
->sg_tablesize
367 = (512 - sizeof(struct aac_fibhdr
)
368 - sizeof(struct aac_write
) + sizeof(struct sgentry
))
369 / sizeof(struct sgentry
);
370 host
->can_queue
= AAC_NUM_IO_FIB
;
371 } else if (acbsize
== 2048) {
372 host
->max_sectors
= 512;
373 dev
->max_fib_size
= 2048;
374 host
->sg_tablesize
= 65;
375 dev
->sg_tablesize
= 81;
376 host
->can_queue
= 512 - AAC_NUM_MGT_FIB
;
377 } else if (acbsize
== 4096) {
378 host
->max_sectors
= 1024;
379 dev
->max_fib_size
= 4096;
380 host
->sg_tablesize
= 129;
381 dev
->sg_tablesize
= 166;
382 host
->can_queue
= 256 - AAC_NUM_MGT_FIB
;
383 } else if (acbsize
== 8192) {
384 host
->max_sectors
= 2048;
385 dev
->max_fib_size
= 8192;
386 host
->sg_tablesize
= 257;
387 dev
->sg_tablesize
= 337;
388 host
->can_queue
= 128 - AAC_NUM_MGT_FIB
;
389 } else if (acbsize
> 0) {
390 printk("Illegal acbsize=%d ignored\n", acbsize
);
396 if (numacb
< host
->can_queue
)
397 host
->can_queue
= numacb
;
399 printk("numacb=%d ignored\n", numacb
);
404 * Ok now init the communication subsystem
407 dev
->queues
= kzalloc(sizeof(struct aac_queue_block
), GFP_KERNEL
);
408 if (dev
->queues
== NULL
) {
409 printk(KERN_ERR
"Error could not allocate comm region.\n");
413 if (aac_comm_init(dev
)<0){
418 * Initialize the list of fibs
420 if (aac_fib_setup(dev
) < 0) {
425 INIT_LIST_HEAD(&dev
->fib_list
);