2 * linux/drivers/message/fusion/mptsas.c
3 * For use with LSI PCI chip/adapter(s)
4 * running LSI Fusion MPT (Message Passing Technology) firmware.
6 * Copyright (c) 1999-2007 LSI Corporation
7 * (mailto:DL-MPTFusionLinux@lsi.com)
9 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
11 This program is free software; you can redistribute it and/or modify
12 it under the terms of the GNU General Public License as published by
13 the Free Software Foundation; version 2 of the License.
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.
21 THE PROGRAM IS PROVIDED ON AN "AS IS" BASIS, WITHOUT WARRANTIES OR
22 CONDITIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED INCLUDING, WITHOUT
23 LIMITATION, ANY WARRANTIES OR CONDITIONS OF TITLE, NON-INFRINGEMENT,
24 MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE. Each Recipient is
25 solely responsible for determining the appropriateness of using and
26 distributing the Program and assumes all risks associated with its
27 exercise of rights under this Agreement, including but not limited to
28 the risks and costs of program errors, damage to or loss of data,
29 programs or equipment, and unavailability or interruption of operations.
31 DISCLAIMER OF LIABILITY
32 NEITHER RECIPIENT NOR ANY CONTRIBUTORS SHALL HAVE ANY LIABILITY FOR ANY
33 DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
34 DAMAGES (INCLUDING WITHOUT LIMITATION LOST PROFITS), HOWEVER CAUSED AND
35 ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR
36 TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE
37 USE OR DISTRIBUTION OF THE PROGRAM OR THE EXERCISE OF ANY RIGHTS GRANTED
38 HEREUNDER, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGES
40 You should have received a copy of the GNU General Public License
41 along with this program; if not, write to the Free Software
42 Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
44 /*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
46 #include <linux/module.h>
47 #include <linux/kernel.h>
48 #include <linux/init.h>
49 #include <linux/errno.h>
50 #include <linux/jiffies.h>
51 #include <linux/workqueue.h>
52 #include <linux/delay.h> /* for mdelay */
54 #include <scsi/scsi.h>
55 #include <scsi/scsi_cmnd.h>
56 #include <scsi/scsi_device.h>
57 #include <scsi/scsi_host.h>
58 #include <scsi/scsi_transport_sas.h>
59 #include <scsi/scsi_dbg.h>
66 #define my_NAME "Fusion MPT SAS Host driver"
67 #define my_VERSION MPT_LINUX_VERSION_COMMON
68 #define MYNAM "mptsas"
71 * Reserved channel for integrated raid
73 #define MPTSAS_RAID_CHANNEL 1
75 MODULE_AUTHOR(MODULEAUTHOR
);
76 MODULE_DESCRIPTION(my_NAME
);
77 MODULE_LICENSE("GPL");
78 MODULE_VERSION(my_VERSION
);
80 static int mpt_pt_clear
;
81 module_param(mpt_pt_clear
, int, 0);
82 MODULE_PARM_DESC(mpt_pt_clear
,
83 " Clear persistency table: enable=1 "
84 "(default=MPTSCSIH_PT_CLEAR=0)");
86 /* scsi-mid layer global parmeter is max_report_luns, which is 511 */
87 #define MPTSAS_MAX_LUN (16895)
88 static int max_lun
= MPTSAS_MAX_LUN
;
89 module_param(max_lun
, int, 0);
90 MODULE_PARM_DESC(max_lun
, " max lun, default=16895 ");
92 static u8 mptsasDoneCtx
= MPT_MAX_PROTOCOL_DRIVERS
;
93 static u8 mptsasTaskCtx
= MPT_MAX_PROTOCOL_DRIVERS
;
94 static u8 mptsasInternalCtx
= MPT_MAX_PROTOCOL_DRIVERS
; /* Used only for internal commands */
95 static u8 mptsasMgmtCtx
= MPT_MAX_PROTOCOL_DRIVERS
;
97 static void mptsas_hotplug_work(struct work_struct
*work
);
99 static void mptsas_print_phy_data(MPT_ADAPTER
*ioc
,
100 MPI_SAS_IO_UNIT0_PHY_DATA
*phy_data
)
102 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
103 "---- IO UNIT PAGE 0 ------------\n", ioc
->name
));
104 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Handle=0x%X\n",
105 ioc
->name
, le16_to_cpu(phy_data
->AttachedDeviceHandle
)));
106 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Controller Handle=0x%X\n",
107 ioc
->name
, le16_to_cpu(phy_data
->ControllerDevHandle
)));
108 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Port=0x%X\n",
109 ioc
->name
, phy_data
->Port
));
110 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Port Flags=0x%X\n",
111 ioc
->name
, phy_data
->PortFlags
));
112 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"PHY Flags=0x%X\n",
113 ioc
->name
, phy_data
->PhyFlags
));
114 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Negotiated Link Rate=0x%X\n",
115 ioc
->name
, phy_data
->NegotiatedLinkRate
));
116 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
117 "Controller PHY Device Info=0x%X\n", ioc
->name
,
118 le32_to_cpu(phy_data
->ControllerPhyDeviceInfo
)));
119 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"DiscoveryStatus=0x%X\n\n",
120 ioc
->name
, le32_to_cpu(phy_data
->DiscoveryStatus
)));
123 static void mptsas_print_phy_pg0(MPT_ADAPTER
*ioc
, SasPhyPage0_t
*pg0
)
127 memcpy(&sas_address
, &pg0
->SASAddress
, sizeof(__le64
));
129 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
130 "---- SAS PHY PAGE 0 ------------\n", ioc
->name
));
131 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
132 "Attached Device Handle=0x%X\n", ioc
->name
,
133 le16_to_cpu(pg0
->AttachedDevHandle
)));
134 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"SAS Address=0x%llX\n",
135 ioc
->name
, (unsigned long long)le64_to_cpu(sas_address
)));
136 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
137 "Attached PHY Identifier=0x%X\n", ioc
->name
,
138 pg0
->AttachedPhyIdentifier
));
139 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Attached Device Info=0x%X\n",
140 ioc
->name
, le32_to_cpu(pg0
->AttachedDeviceInfo
)));
141 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Programmed Link Rate=0x%X\n",
142 ioc
->name
, pg0
->ProgrammedLinkRate
));
143 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Change Count=0x%X\n",
144 ioc
->name
, pg0
->ChangeCount
));
145 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"PHY Info=0x%X\n\n",
146 ioc
->name
, le32_to_cpu(pg0
->PhyInfo
)));
149 static void mptsas_print_phy_pg1(MPT_ADAPTER
*ioc
, SasPhyPage1_t
*pg1
)
151 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
152 "---- SAS PHY PAGE 1 ------------\n", ioc
->name
));
153 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Invalid Dword Count=0x%x\n",
154 ioc
->name
, pg1
->InvalidDwordCount
));
155 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
156 "Running Disparity Error Count=0x%x\n", ioc
->name
,
157 pg1
->RunningDisparityErrorCount
));
158 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
159 "Loss Dword Synch Count=0x%x\n", ioc
->name
,
160 pg1
->LossDwordSynchCount
));
161 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
162 "PHY Reset Problem Count=0x%x\n\n", ioc
->name
,
163 pg1
->PhyResetProblemCount
));
166 static void mptsas_print_device_pg0(MPT_ADAPTER
*ioc
, SasDevicePage0_t
*pg0
)
170 memcpy(&sas_address
, &pg0
->SASAddress
, sizeof(__le64
));
172 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
173 "---- SAS DEVICE PAGE 0 ---------\n", ioc
->name
));
174 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Handle=0x%X\n",
175 ioc
->name
, le16_to_cpu(pg0
->DevHandle
)));
176 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Parent Handle=0x%X\n",
177 ioc
->name
, le16_to_cpu(pg0
->ParentDevHandle
)));
178 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Enclosure Handle=0x%X\n",
179 ioc
->name
, le16_to_cpu(pg0
->EnclosureHandle
)));
180 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Slot=0x%X\n",
181 ioc
->name
, le16_to_cpu(pg0
->Slot
)));
182 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"SAS Address=0x%llX\n",
183 ioc
->name
, (unsigned long long)le64_to_cpu(sas_address
)));
184 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Target ID=0x%X\n",
185 ioc
->name
, pg0
->TargetID
));
186 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Bus=0x%X\n",
187 ioc
->name
, pg0
->Bus
));
188 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Parent Phy Num=0x%X\n",
189 ioc
->name
, pg0
->PhyNum
));
190 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Access Status=0x%X\n",
191 ioc
->name
, le16_to_cpu(pg0
->AccessStatus
)));
192 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Device Info=0x%X\n",
193 ioc
->name
, le32_to_cpu(pg0
->DeviceInfo
)));
194 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Flags=0x%X\n",
195 ioc
->name
, le16_to_cpu(pg0
->Flags
)));
196 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Physical Port=0x%X\n\n",
197 ioc
->name
, pg0
->PhysicalPort
));
200 static void mptsas_print_expander_pg1(MPT_ADAPTER
*ioc
, SasExpanderPage1_t
*pg1
)
202 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
203 "---- SAS EXPANDER PAGE 1 ------------\n", ioc
->name
));
204 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Physical Port=0x%X\n",
205 ioc
->name
, pg1
->PhysicalPort
));
206 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"PHY Identifier=0x%X\n",
207 ioc
->name
, pg1
->PhyIdentifier
));
208 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Negotiated Link Rate=0x%X\n",
209 ioc
->name
, pg1
->NegotiatedLinkRate
));
210 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Programmed Link Rate=0x%X\n",
211 ioc
->name
, pg1
->ProgrammedLinkRate
));
212 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Hardware Link Rate=0x%X\n",
213 ioc
->name
, pg1
->HwLinkRate
));
214 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"Owner Device Handle=0x%X\n",
215 ioc
->name
, le16_to_cpu(pg1
->OwnerDevHandle
)));
216 dsasprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
217 "Attached Device Handle=0x%X\n\n", ioc
->name
,
218 le16_to_cpu(pg1
->AttachedDevHandle
)));
221 static inline MPT_ADAPTER
*phy_to_ioc(struct sas_phy
*phy
)
223 struct Scsi_Host
*shost
= dev_to_shost(phy
->dev
.parent
);
224 return ((MPT_SCSI_HOST
*)shost
->hostdata
)->ioc
;
227 static inline MPT_ADAPTER
*rphy_to_ioc(struct sas_rphy
*rphy
)
229 struct Scsi_Host
*shost
= dev_to_shost(rphy
->dev
.parent
->parent
);
230 return ((MPT_SCSI_HOST
*)shost
->hostdata
)->ioc
;
234 * mptsas_find_portinfo_by_handle
236 * This function should be called with the sas_topology_mutex already held
238 static struct mptsas_portinfo
*
239 mptsas_find_portinfo_by_handle(MPT_ADAPTER
*ioc
, u16 handle
)
241 struct mptsas_portinfo
*port_info
, *rc
=NULL
;
244 list_for_each_entry(port_info
, &ioc
->sas_topology
, list
)
245 for (i
= 0; i
< port_info
->num_phys
; i
++)
246 if (port_info
->phy_info
[i
].identify
.handle
== handle
) {
255 * Returns true if there is a scsi end device
258 mptsas_is_end_device(struct mptsas_devinfo
* attached
)
260 if ((attached
->sas_address
) &&
261 (attached
->device_info
&
262 MPI_SAS_DEVICE_INFO_END_DEVICE
) &&
263 ((attached
->device_info
&
264 MPI_SAS_DEVICE_INFO_SSP_TARGET
) |
265 (attached
->device_info
&
266 MPI_SAS_DEVICE_INFO_STP_TARGET
) |
267 (attached
->device_info
&
268 MPI_SAS_DEVICE_INFO_SATA_DEVICE
)))
276 mptsas_port_delete(MPT_ADAPTER
*ioc
, struct mptsas_portinfo_details
* port_details
)
278 struct mptsas_portinfo
*port_info
;
279 struct mptsas_phyinfo
*phy_info
;
285 port_info
= port_details
->port_info
;
286 phy_info
= port_info
->phy_info
;
288 dsaswideprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"%s: [%p]: num_phys=%02d "
289 "bitmask=0x%016llX\n", ioc
->name
, __FUNCTION__
, port_details
,
290 port_details
->num_phys
, (unsigned long long)
291 port_details
->phy_bitmask
));
293 for (i
= 0; i
< port_info
->num_phys
; i
++, phy_info
++) {
294 if(phy_info
->port_details
!= port_details
)
296 memset(&phy_info
->attached
, 0, sizeof(struct mptsas_devinfo
));
297 phy_info
->port_details
= NULL
;
302 static inline struct sas_rphy
*
303 mptsas_get_rphy(struct mptsas_phyinfo
*phy_info
)
305 if (phy_info
->port_details
)
306 return phy_info
->port_details
->rphy
;
312 mptsas_set_rphy(MPT_ADAPTER
*ioc
, struct mptsas_phyinfo
*phy_info
, struct sas_rphy
*rphy
)
314 if (phy_info
->port_details
) {
315 phy_info
->port_details
->rphy
= rphy
;
316 dsaswideprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"sas_rphy_add: rphy=%p\n",
321 dsaswideprintk(ioc
, dev_printk(KERN_DEBUG
,
322 &rphy
->dev
, MYIOC_s_FMT
"add:", ioc
->name
));
323 dsaswideprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"rphy=%p release=%p\n",
324 ioc
->name
, rphy
, rphy
->dev
.release
));
328 static inline struct sas_port
*
329 mptsas_get_port(struct mptsas_phyinfo
*phy_info
)
331 if (phy_info
->port_details
)
332 return phy_info
->port_details
->port
;
338 mptsas_set_port(MPT_ADAPTER
*ioc
, struct mptsas_phyinfo
*phy_info
, struct sas_port
*port
)
340 if (phy_info
->port_details
)
341 phy_info
->port_details
->port
= port
;
344 dsaswideprintk(ioc
, dev_printk(KERN_DEBUG
,
345 &port
->dev
, MYIOC_s_FMT
"add:", ioc
->name
));
346 dsaswideprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"port=%p release=%p\n",
347 ioc
->name
, port
, port
->dev
.release
));
351 static inline struct scsi_target
*
352 mptsas_get_starget(struct mptsas_phyinfo
*phy_info
)
354 if (phy_info
->port_details
)
355 return phy_info
->port_details
->starget
;
361 mptsas_set_starget(struct mptsas_phyinfo
*phy_info
, struct scsi_target
*
364 if (phy_info
->port_details
)
365 phy_info
->port_details
->starget
= starget
;
370 * mptsas_setup_wide_ports
372 * Updates for new and existing narrow/wide port configuration
373 * in the sas_topology
376 mptsas_setup_wide_ports(MPT_ADAPTER
*ioc
, struct mptsas_portinfo
*port_info
)
378 struct mptsas_portinfo_details
* port_details
;
379 struct mptsas_phyinfo
*phy_info
, *phy_info_cmp
;
383 mutex_lock(&ioc
->sas_topology_mutex
);
385 phy_info
= port_info
->phy_info
;
386 for (i
= 0 ; i
< port_info
->num_phys
; i
++, phy_info
++) {
387 if (phy_info
->attached
.handle
)
389 port_details
= phy_info
->port_details
;
392 if (port_details
->num_phys
< 2)
395 * Removing a phy from a port, letting the last
396 * phy be removed by firmware events.
398 dsaswideprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
399 "%s: [%p]: deleting phy = %d\n",
400 ioc
->name
, __FUNCTION__
, port_details
, i
));
401 port_details
->num_phys
--;
402 port_details
->phy_bitmask
&= ~ (1 << phy_info
->phy_id
);
403 memset(&phy_info
->attached
, 0, sizeof(struct mptsas_devinfo
));
404 sas_port_delete_phy(port_details
->port
, phy_info
->phy
);
405 phy_info
->port_details
= NULL
;
409 * Populate and refresh the tree
411 phy_info
= port_info
->phy_info
;
412 for (i
= 0 ; i
< port_info
->num_phys
; i
++, phy_info
++) {
413 sas_address
= phy_info
->attached
.sas_address
;
414 dsaswideprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"phy_id=%d sas_address=0x%018llX\n",
415 ioc
->name
, i
, (unsigned long long)sas_address
));
418 port_details
= phy_info
->port_details
;
423 port_details
= kzalloc(sizeof(*port_details
),
427 port_details
->num_phys
= 1;
428 port_details
->port_info
= port_info
;
429 if (phy_info
->phy_id
< 64 )
430 port_details
->phy_bitmask
|=
431 (1 << phy_info
->phy_id
);
432 phy_info
->sas_port_add_phy
=1;
433 dsaswideprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"\t\tForming port\n\t\t"
434 "phy_id=%d sas_address=0x%018llX\n",
435 ioc
->name
, i
, (unsigned long long)sas_address
));
436 phy_info
->port_details
= port_details
;
439 if (i
== port_info
->num_phys
- 1)
441 phy_info_cmp
= &port_info
->phy_info
[i
+ 1];
442 for (j
= i
+ 1 ; j
< port_info
->num_phys
; j
++,
444 if (!phy_info_cmp
->attached
.sas_address
)
446 if (sas_address
!= phy_info_cmp
->attached
.sas_address
)
448 if (phy_info_cmp
->port_details
== port_details
)
450 dsaswideprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
451 "\t\tphy_id=%d sas_address=0x%018llX\n",
452 ioc
->name
, j
, (unsigned long long)
453 phy_info_cmp
->attached
.sas_address
));
454 if (phy_info_cmp
->port_details
) {
456 mptsas_get_rphy(phy_info_cmp
);
458 mptsas_get_port(phy_info_cmp
);
459 port_details
->starget
=
460 mptsas_get_starget(phy_info_cmp
);
461 port_details
->num_phys
=
462 phy_info_cmp
->port_details
->num_phys
;
463 if (!phy_info_cmp
->port_details
->num_phys
)
464 kfree(phy_info_cmp
->port_details
);
466 phy_info_cmp
->sas_port_add_phy
=1;
468 * Adding a phy to a port
470 phy_info_cmp
->port_details
= port_details
;
471 if (phy_info_cmp
->phy_id
< 64 )
472 port_details
->phy_bitmask
|=
473 (1 << phy_info_cmp
->phy_id
);
474 port_details
->num_phys
++;
480 for (i
= 0; i
< port_info
->num_phys
; i
++) {
481 port_details
= port_info
->phy_info
[i
].port_details
;
484 dsaswideprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
485 "%s: [%p]: phy_id=%02d num_phys=%02d "
486 "bitmask=0x%016llX\n", ioc
->name
, __FUNCTION__
,
487 port_details
, i
, port_details
->num_phys
,
488 (unsigned long long)port_details
->phy_bitmask
));
489 dsaswideprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"\t\tport = %p rphy=%p\n",
490 ioc
->name
, port_details
->port
, port_details
->rphy
));
492 dsaswideprintk(ioc
, printk("\n"));
493 mutex_unlock(&ioc
->sas_topology_mutex
);
497 * csmisas_find_vtarget
505 mptsas_find_vtarget(MPT_ADAPTER
*ioc
, u8 channel
, u8 id
)
507 struct scsi_device
*sdev
;
509 VirtTarget
*vtarget
= NULL
;
511 shost_for_each_device(sdev
, ioc
->sh
) {
512 if ((vdevice
= sdev
->hostdata
) == NULL
)
514 if (vdevice
->vtarget
->id
== id
&&
515 vdevice
->vtarget
->channel
== channel
)
516 vtarget
= vdevice
->vtarget
;
522 * mptsas_target_reset
524 * Issues TARGET_RESET to end device using handshaking method
530 * Returns (1) success
535 mptsas_target_reset(MPT_ADAPTER
*ioc
, u8 channel
, u8 id
)
538 SCSITaskMgmt_t
*pScsiTm
;
540 if ((mf
= mpt_get_msg_frame(ioc
->TaskCtx
, ioc
)) == NULL
) {
541 dfailprintk(ioc
, printk(MYIOC_s_WARN_FMT
"%s, no msg frames @%d!!\n",
542 ioc
->name
,__FUNCTION__
, __LINE__
));
546 /* Format the Request
548 pScsiTm
= (SCSITaskMgmt_t
*) mf
;
549 memset (pScsiTm
, 0, sizeof(SCSITaskMgmt_t
));
550 pScsiTm
->TargetID
= id
;
551 pScsiTm
->Bus
= channel
;
552 pScsiTm
->Function
= MPI_FUNCTION_SCSI_TASK_MGMT
;
553 pScsiTm
->TaskType
= MPI_SCSITASKMGMT_TASKTYPE_TARGET_RESET
;
554 pScsiTm
->MsgFlags
= MPI_SCSITASKMGMT_MSGFLAGS_LIPRESET_RESET_OPTION
;
556 DBG_DUMP_TM_REQUEST_FRAME(ioc
, (u32
*)mf
);
558 mpt_put_msg_frame_hi_pri(ioc
->TaskCtx
, ioc
, mf
);
564 * mptsas_target_reset_queue
566 * Receive request for TARGET_RESET after recieving an firmware
567 * event NOT_RESPONDING_EVENT, then put command in link list
568 * and queue if task_queue already in use.
575 mptsas_target_reset_queue(MPT_ADAPTER
*ioc
,
576 EVENT_DATA_SAS_DEVICE_STATUS_CHANGE
*sas_event_data
)
578 MPT_SCSI_HOST
*hd
= shost_priv(ioc
->sh
);
579 VirtTarget
*vtarget
= NULL
;
580 struct mptsas_target_reset_event
*target_reset_list
;
583 id
= sas_event_data
->TargetID
;
584 channel
= sas_event_data
->Bus
;
586 if (!(vtarget
= mptsas_find_vtarget(ioc
, channel
, id
)))
589 vtarget
->deleted
= 1; /* block IO */
591 target_reset_list
= kzalloc(sizeof(*target_reset_list
),
593 if (!target_reset_list
) {
594 dfailprintk(ioc
, printk(MYIOC_s_WARN_FMT
"%s, failed to allocate mem @%d..!!\n",
595 ioc
->name
,__FUNCTION__
, __LINE__
));
599 memcpy(&target_reset_list
->sas_event_data
, sas_event_data
,
600 sizeof(*sas_event_data
));
601 list_add_tail(&target_reset_list
->list
, &hd
->target_reset_list
);
603 if (hd
->resetPending
)
606 if (mptsas_target_reset(ioc
, channel
, id
)) {
607 target_reset_list
->target_reset_issued
= 1;
608 hd
->resetPending
= 1;
613 * mptsas_dev_reset_complete
615 * Completion for TARGET_RESET after NOT_RESPONDING_EVENT,
616 * enable work queue to finish off removing device from upper layers.
617 * then send next TARGET_RESET in the queue.
623 mptsas_dev_reset_complete(MPT_ADAPTER
*ioc
)
625 MPT_SCSI_HOST
*hd
= shost_priv(ioc
->sh
);
626 struct list_head
*head
= &hd
->target_reset_list
;
627 struct mptsas_target_reset_event
*target_reset_list
;
628 struct mptsas_hotplug_event
*ev
;
629 EVENT_DATA_SAS_DEVICE_STATUS_CHANGE
*sas_event_data
;
633 if (list_empty(head
))
636 target_reset_list
= list_entry(head
->next
, struct mptsas_target_reset_event
, list
);
638 sas_event_data
= &target_reset_list
->sas_event_data
;
639 id
= sas_event_data
->TargetID
;
640 channel
= sas_event_data
->Bus
;
641 hd
->resetPending
= 0;
646 if (!target_reset_list
->target_reset_issued
) {
647 if (mptsas_target_reset(ioc
, channel
, id
)) {
648 target_reset_list
->target_reset_issued
= 1;
649 hd
->resetPending
= 1;
655 * enable work queue to remove device from upper layers
657 list_del(&target_reset_list
->list
);
659 ev
= kzalloc(sizeof(*ev
), GFP_ATOMIC
);
661 dfailprintk(ioc
, printk(MYIOC_s_WARN_FMT
"%s, failed to allocate mem @%d..!!\n",
662 ioc
->name
,__FUNCTION__
, __LINE__
));
666 INIT_WORK(&ev
->work
, mptsas_hotplug_work
);
668 ev
->handle
= le16_to_cpu(sas_event_data
->DevHandle
);
670 le16_to_cpu(sas_event_data
->ParentDevHandle
);
671 ev
->channel
= channel
;
673 ev
->phy_id
= sas_event_data
->PhyNum
;
674 memcpy(&sas_address
, &sas_event_data
->SASAddress
,
676 ev
->sas_address
= le64_to_cpu(sas_address
);
677 ev
->device_info
= le32_to_cpu(sas_event_data
->DeviceInfo
);
678 ev
->event_type
= MPTSAS_DEL_DEVICE
;
679 schedule_work(&ev
->work
);
680 kfree(target_reset_list
);
683 * issue target reset to next device in the queue
686 head
= &hd
->target_reset_list
;
687 if (list_empty(head
))
690 target_reset_list
= list_entry(head
->next
, struct mptsas_target_reset_event
,
693 sas_event_data
= &target_reset_list
->sas_event_data
;
694 id
= sas_event_data
->TargetID
;
695 channel
= sas_event_data
->Bus
;
697 if (mptsas_target_reset(ioc
, channel
, id
)) {
698 target_reset_list
->target_reset_issued
= 1;
699 hd
->resetPending
= 1;
704 * mptsas_taskmgmt_complete
712 mptsas_taskmgmt_complete(MPT_ADAPTER
*ioc
, MPT_FRAME_HDR
*mf
, MPT_FRAME_HDR
*mr
)
714 mptsas_dev_reset_complete(ioc
);
715 return mptscsih_taskmgmt_complete(ioc
, mf
, mr
);
726 mptsas_ioc_reset(MPT_ADAPTER
*ioc
, int reset_phase
)
729 struct mptsas_target_reset_event
*target_reset_list
, *n
;
732 rc
= mptscsih_ioc_reset(ioc
, reset_phase
);
734 if (ioc
->bus_type
!= SAS
)
737 if (reset_phase
!= MPT_IOC_POST_RESET
)
740 if (!ioc
->sh
|| !ioc
->sh
->hostdata
)
742 hd
= shost_priv(ioc
->sh
);
746 if (list_empty(&hd
->target_reset_list
))
749 /* flush the target_reset_list */
750 list_for_each_entry_safe(target_reset_list
, n
,
751 &hd
->target_reset_list
, list
) {
752 list_del(&target_reset_list
->list
);
753 kfree(target_reset_list
);
761 mptsas_sas_enclosure_pg0(MPT_ADAPTER
*ioc
, struct mptsas_enclosure
*enclosure
,
762 u32 form
, u32 form_specific
)
764 ConfigExtendedPageHeader_t hdr
;
766 SasEnclosurePage0_t
*buffer
;
767 dma_addr_t dma_handle
;
769 __le64 le_identifier
;
771 memset(&hdr
, 0, sizeof(hdr
));
772 hdr
.PageVersion
= MPI_SASENCLOSURE0_PAGEVERSION
;
774 hdr
.PageType
= MPI_CONFIG_PAGETYPE_EXTENDED
;
775 hdr
.ExtPageType
= MPI_CONFIG_EXTPAGETYPE_ENCLOSURE
;
777 cfg
.cfghdr
.ehdr
= &hdr
;
779 cfg
.pageAddr
= form
+ form_specific
;
780 cfg
.action
= MPI_CONFIG_ACTION_PAGE_HEADER
;
781 cfg
.dir
= 0; /* read */
784 error
= mpt_config(ioc
, &cfg
);
787 if (!hdr
.ExtPageLength
) {
792 buffer
= pci_alloc_consistent(ioc
->pcidev
, hdr
.ExtPageLength
* 4,
799 cfg
.physAddr
= dma_handle
;
800 cfg
.action
= MPI_CONFIG_ACTION_PAGE_READ_CURRENT
;
802 error
= mpt_config(ioc
, &cfg
);
804 goto out_free_consistent
;
806 /* save config data */
807 memcpy(&le_identifier
, &buffer
->EnclosureLogicalID
, sizeof(__le64
));
808 enclosure
->enclosure_logical_id
= le64_to_cpu(le_identifier
);
809 enclosure
->enclosure_handle
= le16_to_cpu(buffer
->EnclosureHandle
);
810 enclosure
->flags
= le16_to_cpu(buffer
->Flags
);
811 enclosure
->num_slot
= le16_to_cpu(buffer
->NumSlots
);
812 enclosure
->start_slot
= le16_to_cpu(buffer
->StartSlot
);
813 enclosure
->start_id
= buffer
->StartTargetID
;
814 enclosure
->start_channel
= buffer
->StartBus
;
815 enclosure
->sep_id
= buffer
->SEPTargetID
;
816 enclosure
->sep_channel
= buffer
->SEPBus
;
819 pci_free_consistent(ioc
->pcidev
, hdr
.ExtPageLength
* 4,
826 mptsas_slave_configure(struct scsi_device
*sdev
)
829 if (sdev
->channel
== MPTSAS_RAID_CHANNEL
)
832 sas_read_port_mode_page(sdev
);
835 return mptscsih_slave_configure(sdev
);
839 mptsas_target_alloc(struct scsi_target
*starget
)
841 struct Scsi_Host
*host
= dev_to_shost(&starget
->dev
);
842 MPT_SCSI_HOST
*hd
= shost_priv(host
);
845 struct sas_rphy
*rphy
;
846 struct mptsas_portinfo
*p
;
848 MPT_ADAPTER
*ioc
= hd
->ioc
;
850 vtarget
= kzalloc(sizeof(VirtTarget
), GFP_KERNEL
);
854 vtarget
->starget
= starget
;
855 vtarget
->ioc_id
= ioc
->id
;
856 vtarget
->tflags
= MPT_TARGET_FLAGS_Q_YES
;
861 * RAID volumes placed beyond the last expected port.
863 if (starget
->channel
== MPTSAS_RAID_CHANNEL
) {
864 for (i
=0; i
< ioc
->raid_data
.pIocPg2
->NumActiveVolumes
; i
++)
865 if (id
== ioc
->raid_data
.pIocPg2
->RaidVolume
[i
].VolumeID
)
866 channel
= ioc
->raid_data
.pIocPg2
->RaidVolume
[i
].VolumeBus
;
870 rphy
= dev_to_rphy(starget
->dev
.parent
);
871 mutex_lock(&ioc
->sas_topology_mutex
);
872 list_for_each_entry(p
, &ioc
->sas_topology
, list
) {
873 for (i
= 0; i
< p
->num_phys
; i
++) {
874 if (p
->phy_info
[i
].attached
.sas_address
!=
875 rphy
->identify
.sas_address
)
877 id
= p
->phy_info
[i
].attached
.id
;
878 channel
= p
->phy_info
[i
].attached
.channel
;
879 mptsas_set_starget(&p
->phy_info
[i
], starget
);
882 * Exposing hidden raid components
884 if (mptscsih_is_phys_disk(ioc
, channel
, id
)) {
885 id
= mptscsih_raid_id_to_num(ioc
,
888 MPT_TARGET_FLAGS_RAID_COMPONENT
;
889 p
->phy_info
[i
].attached
.phys_disk_num
= id
;
891 mutex_unlock(&ioc
->sas_topology_mutex
);
895 mutex_unlock(&ioc
->sas_topology_mutex
);
902 vtarget
->channel
= channel
;
903 starget
->hostdata
= vtarget
;
908 mptsas_target_destroy(struct scsi_target
*starget
)
910 struct Scsi_Host
*host
= dev_to_shost(&starget
->dev
);
911 MPT_SCSI_HOST
*hd
= shost_priv(host
);
912 struct sas_rphy
*rphy
;
913 struct mptsas_portinfo
*p
;
915 MPT_ADAPTER
*ioc
= hd
->ioc
;
917 if (!starget
->hostdata
)
920 if (starget
->channel
== MPTSAS_RAID_CHANNEL
)
923 rphy
= dev_to_rphy(starget
->dev
.parent
);
924 list_for_each_entry(p
, &ioc
->sas_topology
, list
) {
925 for (i
= 0; i
< p
->num_phys
; i
++) {
926 if (p
->phy_info
[i
].attached
.sas_address
!=
927 rphy
->identify
.sas_address
)
929 mptsas_set_starget(&p
->phy_info
[i
], NULL
);
935 kfree(starget
->hostdata
);
936 starget
->hostdata
= NULL
;
941 mptsas_slave_alloc(struct scsi_device
*sdev
)
943 struct Scsi_Host
*host
= sdev
->host
;
944 MPT_SCSI_HOST
*hd
= shost_priv(host
);
945 struct sas_rphy
*rphy
;
946 struct mptsas_portinfo
*p
;
948 struct scsi_target
*starget
;
950 MPT_ADAPTER
*ioc
= hd
->ioc
;
952 vdevice
= kzalloc(sizeof(VirtDevice
), GFP_KERNEL
);
954 printk(MYIOC_s_ERR_FMT
"slave_alloc kzalloc(%zd) FAILED!\n",
955 ioc
->name
, sizeof(VirtDevice
));
958 starget
= scsi_target(sdev
);
959 vdevice
->vtarget
= starget
->hostdata
;
961 if (sdev
->channel
== MPTSAS_RAID_CHANNEL
)
964 rphy
= dev_to_rphy(sdev
->sdev_target
->dev
.parent
);
965 mutex_lock(&ioc
->sas_topology_mutex
);
966 list_for_each_entry(p
, &ioc
->sas_topology
, list
) {
967 for (i
= 0; i
< p
->num_phys
; i
++) {
968 if (p
->phy_info
[i
].attached
.sas_address
!=
969 rphy
->identify
.sas_address
)
971 vdevice
->lun
= sdev
->lun
;
973 * Exposing hidden raid components
975 if (mptscsih_is_phys_disk(ioc
,
976 p
->phy_info
[i
].attached
.channel
,
977 p
->phy_info
[i
].attached
.id
))
978 sdev
->no_uld_attach
= 1;
979 mutex_unlock(&ioc
->sas_topology_mutex
);
983 mutex_unlock(&ioc
->sas_topology_mutex
);
989 vdevice
->vtarget
->num_luns
++;
990 sdev
->hostdata
= vdevice
;
995 mptsas_qcmd(struct scsi_cmnd
*SCpnt
, void (*done
)(struct scsi_cmnd
*))
997 VirtDevice
*vdevice
= SCpnt
->device
->hostdata
;
999 if (!vdevice
|| !vdevice
->vtarget
|| vdevice
->vtarget
->deleted
) {
1000 SCpnt
->result
= DID_NO_CONNECT
<< 16;
1005 // scsi_print_command(SCpnt);
1007 return mptscsih_qcmd(SCpnt
,done
);
1011 static struct scsi_host_template mptsas_driver_template
= {
1012 .module
= THIS_MODULE
,
1013 .proc_name
= "mptsas",
1014 .proc_info
= mptscsih_proc_info
,
1015 .name
= "MPT SPI Host",
1016 .info
= mptscsih_info
,
1017 .queuecommand
= mptsas_qcmd
,
1018 .target_alloc
= mptsas_target_alloc
,
1019 .slave_alloc
= mptsas_slave_alloc
,
1020 .slave_configure
= mptsas_slave_configure
,
1021 .target_destroy
= mptsas_target_destroy
,
1022 .slave_destroy
= mptscsih_slave_destroy
,
1023 .change_queue_depth
= mptscsih_change_queue_depth
,
1024 .eh_abort_handler
= mptscsih_abort
,
1025 .eh_device_reset_handler
= mptscsih_dev_reset
,
1026 .eh_bus_reset_handler
= mptscsih_bus_reset
,
1027 .eh_host_reset_handler
= mptscsih_host_reset
,
1028 .bios_param
= mptscsih_bios_param
,
1029 .can_queue
= MPT_FC_CAN_QUEUE
,
1031 .sg_tablesize
= MPT_SCSI_SG_DEPTH
,
1032 .max_sectors
= 8192,
1034 .use_clustering
= ENABLE_CLUSTERING
,
1035 .shost_attrs
= mptscsih_host_attrs
,
1038 static int mptsas_get_linkerrors(struct sas_phy
*phy
)
1040 MPT_ADAPTER
*ioc
= phy_to_ioc(phy
);
1041 ConfigExtendedPageHeader_t hdr
;
1043 SasPhyPage1_t
*buffer
;
1044 dma_addr_t dma_handle
;
1047 /* FIXME: only have link errors on local phys */
1048 if (!scsi_is_sas_phy_local(phy
))
1051 hdr
.PageVersion
= MPI_SASPHY1_PAGEVERSION
;
1052 hdr
.ExtPageLength
= 0;
1053 hdr
.PageNumber
= 1 /* page number 1*/;
1056 hdr
.PageType
= MPI_CONFIG_PAGETYPE_EXTENDED
;
1057 hdr
.ExtPageType
= MPI_CONFIG_EXTPAGETYPE_SAS_PHY
;
1059 cfg
.cfghdr
.ehdr
= &hdr
;
1061 cfg
.pageAddr
= phy
->identify
.phy_identifier
;
1062 cfg
.action
= MPI_CONFIG_ACTION_PAGE_HEADER
;
1063 cfg
.dir
= 0; /* read */
1066 error
= mpt_config(ioc
, &cfg
);
1069 if (!hdr
.ExtPageLength
)
1072 buffer
= pci_alloc_consistent(ioc
->pcidev
, hdr
.ExtPageLength
* 4,
1077 cfg
.physAddr
= dma_handle
;
1078 cfg
.action
= MPI_CONFIG_ACTION_PAGE_READ_CURRENT
;
1080 error
= mpt_config(ioc
, &cfg
);
1082 goto out_free_consistent
;
1084 mptsas_print_phy_pg1(ioc
, buffer
);
1086 phy
->invalid_dword_count
= le32_to_cpu(buffer
->InvalidDwordCount
);
1087 phy
->running_disparity_error_count
=
1088 le32_to_cpu(buffer
->RunningDisparityErrorCount
);
1089 phy
->loss_of_dword_sync_count
=
1090 le32_to_cpu(buffer
->LossDwordSynchCount
);
1091 phy
->phy_reset_problem_count
=
1092 le32_to_cpu(buffer
->PhyResetProblemCount
);
1094 out_free_consistent
:
1095 pci_free_consistent(ioc
->pcidev
, hdr
.ExtPageLength
* 4,
1096 buffer
, dma_handle
);
1100 static int mptsas_mgmt_done(MPT_ADAPTER
*ioc
, MPT_FRAME_HDR
*req
,
1101 MPT_FRAME_HDR
*reply
)
1103 ioc
->sas_mgmt
.status
|= MPT_SAS_MGMT_STATUS_COMMAND_GOOD
;
1104 if (reply
!= NULL
) {
1105 ioc
->sas_mgmt
.status
|= MPT_SAS_MGMT_STATUS_RF_VALID
;
1106 memcpy(ioc
->sas_mgmt
.reply
, reply
,
1107 min(ioc
->reply_sz
, 4 * reply
->u
.reply
.MsgLength
));
1109 complete(&ioc
->sas_mgmt
.done
);
1113 static int mptsas_phy_reset(struct sas_phy
*phy
, int hard_reset
)
1115 MPT_ADAPTER
*ioc
= phy_to_ioc(phy
);
1116 SasIoUnitControlRequest_t
*req
;
1117 SasIoUnitControlReply_t
*reply
;
1120 unsigned long timeleft
;
1121 int error
= -ERESTARTSYS
;
1123 /* FIXME: fusion doesn't allow non-local phy reset */
1124 if (!scsi_is_sas_phy_local(phy
))
1127 /* not implemented for expanders */
1128 if (phy
->identify
.target_port_protocols
& SAS_PROTOCOL_SMP
)
1131 if (mutex_lock_interruptible(&ioc
->sas_mgmt
.mutex
))
1134 mf
= mpt_get_msg_frame(mptsasMgmtCtx
, ioc
);
1140 hdr
= (MPIHeader_t
*) mf
;
1141 req
= (SasIoUnitControlRequest_t
*)mf
;
1142 memset(req
, 0, sizeof(SasIoUnitControlRequest_t
));
1143 req
->Function
= MPI_FUNCTION_SAS_IO_UNIT_CONTROL
;
1144 req
->MsgContext
= hdr
->MsgContext
;
1145 req
->Operation
= hard_reset
?
1146 MPI_SAS_OP_PHY_HARD_RESET
: MPI_SAS_OP_PHY_LINK_RESET
;
1147 req
->PhyNum
= phy
->identify
.phy_identifier
;
1149 mpt_put_msg_frame(mptsasMgmtCtx
, ioc
, mf
);
1151 timeleft
= wait_for_completion_timeout(&ioc
->sas_mgmt
.done
,
1154 /* On timeout reset the board */
1155 mpt_free_msg_frame(ioc
, mf
);
1156 mpt_HardResetHandler(ioc
, CAN_SLEEP
);
1161 /* a reply frame is expected */
1162 if ((ioc
->sas_mgmt
.status
&
1163 MPT_IOCTL_STATUS_RF_VALID
) == 0) {
1168 /* process the completed Reply Message Frame */
1169 reply
= (SasIoUnitControlReply_t
*)ioc
->sas_mgmt
.reply
;
1170 if (reply
->IOCStatus
!= MPI_IOCSTATUS_SUCCESS
) {
1171 printk(MYIOC_s_INFO_FMT
"%s: IOCStatus=0x%X IOCLogInfo=0x%X\n",
1172 ioc
->name
, __FUNCTION__
, reply
->IOCStatus
, reply
->IOCLogInfo
);
1180 mutex_unlock(&ioc
->sas_mgmt
.mutex
);
1186 mptsas_get_enclosure_identifier(struct sas_rphy
*rphy
, u64
*identifier
)
1188 MPT_ADAPTER
*ioc
= rphy_to_ioc(rphy
);
1190 struct mptsas_portinfo
*p
;
1191 struct mptsas_enclosure enclosure_info
;
1192 u64 enclosure_handle
;
1194 mutex_lock(&ioc
->sas_topology_mutex
);
1195 list_for_each_entry(p
, &ioc
->sas_topology
, list
) {
1196 for (i
= 0; i
< p
->num_phys
; i
++) {
1197 if (p
->phy_info
[i
].attached
.sas_address
==
1198 rphy
->identify
.sas_address
) {
1199 enclosure_handle
= p
->phy_info
[i
].
1200 attached
.handle_enclosure
;
1205 mutex_unlock(&ioc
->sas_topology_mutex
);
1209 mutex_unlock(&ioc
->sas_topology_mutex
);
1210 memset(&enclosure_info
, 0, sizeof(struct mptsas_enclosure
));
1211 error
= mptsas_sas_enclosure_pg0(ioc
, &enclosure_info
,
1212 (MPI_SAS_ENCLOS_PGAD_FORM_HANDLE
<<
1213 MPI_SAS_ENCLOS_PGAD_FORM_SHIFT
), enclosure_handle
);
1215 *identifier
= enclosure_info
.enclosure_logical_id
;
1220 mptsas_get_bay_identifier(struct sas_rphy
*rphy
)
1222 MPT_ADAPTER
*ioc
= rphy_to_ioc(rphy
);
1223 struct mptsas_portinfo
*p
;
1226 mutex_lock(&ioc
->sas_topology_mutex
);
1227 list_for_each_entry(p
, &ioc
->sas_topology
, list
) {
1228 for (i
= 0; i
< p
->num_phys
; i
++) {
1229 if (p
->phy_info
[i
].attached
.sas_address
==
1230 rphy
->identify
.sas_address
) {
1231 rc
= p
->phy_info
[i
].attached
.slot
;
1238 mutex_unlock(&ioc
->sas_topology_mutex
);
1242 static int mptsas_smp_handler(struct Scsi_Host
*shost
, struct sas_rphy
*rphy
,
1243 struct request
*req
)
1245 MPT_ADAPTER
*ioc
= ((MPT_SCSI_HOST
*) shost
->hostdata
)->ioc
;
1247 SmpPassthroughRequest_t
*smpreq
;
1248 struct request
*rsp
= req
->next_rq
;
1251 unsigned long timeleft
;
1253 dma_addr_t dma_addr_in
= 0;
1254 dma_addr_t dma_addr_out
= 0;
1255 u64 sas_address
= 0;
1258 printk(MYIOC_s_ERR_FMT
"%s: the smp response space is missing\n",
1259 ioc
->name
, __FUNCTION__
);
1263 /* do we need to support multiple segments? */
1264 if (req
->bio
->bi_vcnt
> 1 || rsp
->bio
->bi_vcnt
> 1) {
1265 printk(MYIOC_s_ERR_FMT
"%s: multiple segments req %u %u, rsp %u %u\n",
1266 ioc
->name
, __FUNCTION__
, req
->bio
->bi_vcnt
, req
->data_len
,
1267 rsp
->bio
->bi_vcnt
, rsp
->data_len
);
1271 ret
= mutex_lock_interruptible(&ioc
->sas_mgmt
.mutex
);
1275 mf
= mpt_get_msg_frame(mptsasMgmtCtx
, ioc
);
1281 smpreq
= (SmpPassthroughRequest_t
*)mf
;
1282 memset(smpreq
, 0, sizeof(*smpreq
));
1284 smpreq
->RequestDataLength
= cpu_to_le16(req
->data_len
- 4);
1285 smpreq
->Function
= MPI_FUNCTION_SMP_PASSTHROUGH
;
1288 sas_address
= rphy
->identify
.sas_address
;
1290 struct mptsas_portinfo
*port_info
;
1292 mutex_lock(&ioc
->sas_topology_mutex
);
1293 port_info
= mptsas_find_portinfo_by_handle(ioc
, ioc
->handle
);
1294 if (port_info
&& port_info
->phy_info
)
1296 port_info
->phy_info
[0].phy
->identify
.sas_address
;
1297 mutex_unlock(&ioc
->sas_topology_mutex
);
1300 *((u64
*)&smpreq
->SASAddress
) = cpu_to_le64(sas_address
);
1303 (((int *) mf
) + (offsetof(SmpPassthroughRequest_t
, SGL
) / 4));
1306 flagsLength
= (MPI_SGE_FLAGS_SIMPLE_ELEMENT
|
1307 MPI_SGE_FLAGS_END_OF_BUFFER
|
1308 MPI_SGE_FLAGS_DIRECTION
|
1309 mpt_addr_size()) << MPI_SGE_FLAGS_SHIFT
;
1310 flagsLength
|= (req
->data_len
- 4);
1312 dma_addr_out
= pci_map_single(ioc
->pcidev
, bio_data(req
->bio
),
1313 req
->data_len
, PCI_DMA_BIDIRECTIONAL
);
1316 mpt_add_sge(psge
, flagsLength
, dma_addr_out
);
1317 psge
+= (sizeof(u32
) + sizeof(dma_addr_t
));
1320 flagsLength
= MPT_SGE_FLAGS_SSIMPLE_READ
;
1321 flagsLength
|= rsp
->data_len
+ 4;
1322 dma_addr_in
= pci_map_single(ioc
->pcidev
, bio_data(rsp
->bio
),
1323 rsp
->data_len
, PCI_DMA_BIDIRECTIONAL
);
1326 mpt_add_sge(psge
, flagsLength
, dma_addr_in
);
1328 mpt_put_msg_frame(mptsasMgmtCtx
, ioc
, mf
);
1330 timeleft
= wait_for_completion_timeout(&ioc
->sas_mgmt
.done
, 10 * HZ
);
1332 printk(MYIOC_s_ERR_FMT
"%s: smp timeout!\n", ioc
->name
, __FUNCTION__
);
1333 /* On timeout reset the board */
1334 mpt_HardResetHandler(ioc
, CAN_SLEEP
);
1340 if (ioc
->sas_mgmt
.status
& MPT_IOCTL_STATUS_RF_VALID
) {
1341 SmpPassthroughReply_t
*smprep
;
1343 smprep
= (SmpPassthroughReply_t
*)ioc
->sas_mgmt
.reply
;
1344 memcpy(req
->sense
, smprep
, sizeof(*smprep
));
1345 req
->sense_len
= sizeof(*smprep
);
1347 rsp
->data_len
-= smprep
->ResponseDataLength
;
1349 printk(MYIOC_s_ERR_FMT
"%s: smp passthru reply failed to be returned\n",
1350 ioc
->name
, __FUNCTION__
);
1355 pci_unmap_single(ioc
->pcidev
, dma_addr_out
, req
->data_len
,
1356 PCI_DMA_BIDIRECTIONAL
);
1358 pci_unmap_single(ioc
->pcidev
, dma_addr_in
, rsp
->data_len
,
1359 PCI_DMA_BIDIRECTIONAL
);
1362 mpt_free_msg_frame(ioc
, mf
);
1364 mutex_unlock(&ioc
->sas_mgmt
.mutex
);
1369 static struct sas_function_template mptsas_transport_functions
= {
1370 .get_linkerrors
= mptsas_get_linkerrors
,
1371 .get_enclosure_identifier
= mptsas_get_enclosure_identifier
,
1372 .get_bay_identifier
= mptsas_get_bay_identifier
,
1373 .phy_reset
= mptsas_phy_reset
,
1374 .smp_handler
= mptsas_smp_handler
,
1377 static struct scsi_transport_template
*mptsas_transport_template
;
1380 mptsas_sas_io_unit_pg0(MPT_ADAPTER
*ioc
, struct mptsas_portinfo
*port_info
)
1382 ConfigExtendedPageHeader_t hdr
;
1384 SasIOUnitPage0_t
*buffer
;
1385 dma_addr_t dma_handle
;
1388 hdr
.PageVersion
= MPI_SASIOUNITPAGE0_PAGEVERSION
;
1389 hdr
.ExtPageLength
= 0;
1393 hdr
.PageType
= MPI_CONFIG_PAGETYPE_EXTENDED
;
1394 hdr
.ExtPageType
= MPI_CONFIG_EXTPAGETYPE_SAS_IO_UNIT
;
1396 cfg
.cfghdr
.ehdr
= &hdr
;
1399 cfg
.action
= MPI_CONFIG_ACTION_PAGE_HEADER
;
1400 cfg
.dir
= 0; /* read */
1403 error
= mpt_config(ioc
, &cfg
);
1406 if (!hdr
.ExtPageLength
) {
1411 buffer
= pci_alloc_consistent(ioc
->pcidev
, hdr
.ExtPageLength
* 4,
1418 cfg
.physAddr
= dma_handle
;
1419 cfg
.action
= MPI_CONFIG_ACTION_PAGE_READ_CURRENT
;
1421 error
= mpt_config(ioc
, &cfg
);
1423 goto out_free_consistent
;
1425 port_info
->num_phys
= buffer
->NumPhys
;
1426 port_info
->phy_info
= kcalloc(port_info
->num_phys
,
1427 sizeof(*port_info
->phy_info
),GFP_KERNEL
);
1428 if (!port_info
->phy_info
) {
1430 goto out_free_consistent
;
1433 ioc
->nvdata_version_persistent
=
1434 le16_to_cpu(buffer
->NvdataVersionPersistent
);
1435 ioc
->nvdata_version_default
=
1436 le16_to_cpu(buffer
->NvdataVersionDefault
);
1438 for (i
= 0; i
< port_info
->num_phys
; i
++) {
1439 mptsas_print_phy_data(ioc
, &buffer
->PhyData
[i
]);
1440 port_info
->phy_info
[i
].phy_id
= i
;
1441 port_info
->phy_info
[i
].port_id
=
1442 buffer
->PhyData
[i
].Port
;
1443 port_info
->phy_info
[i
].negotiated_link_rate
=
1444 buffer
->PhyData
[i
].NegotiatedLinkRate
;
1445 port_info
->phy_info
[i
].portinfo
= port_info
;
1446 port_info
->phy_info
[i
].handle
=
1447 le16_to_cpu(buffer
->PhyData
[i
].ControllerDevHandle
);
1450 out_free_consistent
:
1451 pci_free_consistent(ioc
->pcidev
, hdr
.ExtPageLength
* 4,
1452 buffer
, dma_handle
);
1458 mptsas_sas_io_unit_pg1(MPT_ADAPTER
*ioc
)
1460 ConfigExtendedPageHeader_t hdr
;
1462 SasIOUnitPage1_t
*buffer
;
1463 dma_addr_t dma_handle
;
1465 u16 device_missing_delay
;
1467 memset(&hdr
, 0, sizeof(ConfigExtendedPageHeader_t
));
1468 memset(&cfg
, 0, sizeof(CONFIGPARMS
));
1470 cfg
.cfghdr
.ehdr
= &hdr
;
1471 cfg
.action
= MPI_CONFIG_ACTION_PAGE_HEADER
;
1473 cfg
.cfghdr
.ehdr
->PageType
= MPI_CONFIG_PAGETYPE_EXTENDED
;
1474 cfg
.cfghdr
.ehdr
->ExtPageType
= MPI_CONFIG_EXTPAGETYPE_SAS_IO_UNIT
;
1475 cfg
.cfghdr
.ehdr
->PageVersion
= MPI_SASIOUNITPAGE1_PAGEVERSION
;
1476 cfg
.cfghdr
.ehdr
->PageNumber
= 1;
1478 error
= mpt_config(ioc
, &cfg
);
1481 if (!hdr
.ExtPageLength
) {
1486 buffer
= pci_alloc_consistent(ioc
->pcidev
, hdr
.ExtPageLength
* 4,
1493 cfg
.physAddr
= dma_handle
;
1494 cfg
.action
= MPI_CONFIG_ACTION_PAGE_READ_CURRENT
;
1496 error
= mpt_config(ioc
, &cfg
);
1498 goto out_free_consistent
;
1500 ioc
->io_missing_delay
=
1501 le16_to_cpu(buffer
->IODeviceMissingDelay
);
1502 device_missing_delay
= le16_to_cpu(buffer
->ReportDeviceMissingDelay
);
1503 ioc
->device_missing_delay
= (device_missing_delay
& MPI_SAS_IOUNIT1_REPORT_MISSING_UNIT_16
) ?
1504 (device_missing_delay
& MPI_SAS_IOUNIT1_REPORT_MISSING_TIMEOUT_MASK
) * 16 :
1505 device_missing_delay
& MPI_SAS_IOUNIT1_REPORT_MISSING_TIMEOUT_MASK
;
1507 out_free_consistent
:
1508 pci_free_consistent(ioc
->pcidev
, hdr
.ExtPageLength
* 4,
1509 buffer
, dma_handle
);
1515 mptsas_sas_phy_pg0(MPT_ADAPTER
*ioc
, struct mptsas_phyinfo
*phy_info
,
1516 u32 form
, u32 form_specific
)
1518 ConfigExtendedPageHeader_t hdr
;
1520 SasPhyPage0_t
*buffer
;
1521 dma_addr_t dma_handle
;
1524 hdr
.PageVersion
= MPI_SASPHY0_PAGEVERSION
;
1525 hdr
.ExtPageLength
= 0;
1529 hdr
.PageType
= MPI_CONFIG_PAGETYPE_EXTENDED
;
1530 hdr
.ExtPageType
= MPI_CONFIG_EXTPAGETYPE_SAS_PHY
;
1532 cfg
.cfghdr
.ehdr
= &hdr
;
1533 cfg
.dir
= 0; /* read */
1536 /* Get Phy Pg 0 for each Phy. */
1538 cfg
.pageAddr
= form
+ form_specific
;
1539 cfg
.action
= MPI_CONFIG_ACTION_PAGE_HEADER
;
1541 error
= mpt_config(ioc
, &cfg
);
1545 if (!hdr
.ExtPageLength
) {
1550 buffer
= pci_alloc_consistent(ioc
->pcidev
, hdr
.ExtPageLength
* 4,
1557 cfg
.physAddr
= dma_handle
;
1558 cfg
.action
= MPI_CONFIG_ACTION_PAGE_READ_CURRENT
;
1560 error
= mpt_config(ioc
, &cfg
);
1562 goto out_free_consistent
;
1564 mptsas_print_phy_pg0(ioc
, buffer
);
1566 phy_info
->hw_link_rate
= buffer
->HwLinkRate
;
1567 phy_info
->programmed_link_rate
= buffer
->ProgrammedLinkRate
;
1568 phy_info
->identify
.handle
= le16_to_cpu(buffer
->OwnerDevHandle
);
1569 phy_info
->attached
.handle
= le16_to_cpu(buffer
->AttachedDevHandle
);
1571 out_free_consistent
:
1572 pci_free_consistent(ioc
->pcidev
, hdr
.ExtPageLength
* 4,
1573 buffer
, dma_handle
);
1579 mptsas_sas_device_pg0(MPT_ADAPTER
*ioc
, struct mptsas_devinfo
*device_info
,
1580 u32 form
, u32 form_specific
)
1582 ConfigExtendedPageHeader_t hdr
;
1584 SasDevicePage0_t
*buffer
;
1585 dma_addr_t dma_handle
;
1589 if (ioc
->sas_discovery_runtime
&&
1590 mptsas_is_end_device(device_info
))
1593 hdr
.PageVersion
= MPI_SASDEVICE0_PAGEVERSION
;
1594 hdr
.ExtPageLength
= 0;
1598 hdr
.PageType
= MPI_CONFIG_PAGETYPE_EXTENDED
;
1599 hdr
.ExtPageType
= MPI_CONFIG_EXTPAGETYPE_SAS_DEVICE
;
1601 cfg
.cfghdr
.ehdr
= &hdr
;
1602 cfg
.pageAddr
= form
+ form_specific
;
1604 cfg
.action
= MPI_CONFIG_ACTION_PAGE_HEADER
;
1605 cfg
.dir
= 0; /* read */
1608 memset(device_info
, 0, sizeof(struct mptsas_devinfo
));
1609 error
= mpt_config(ioc
, &cfg
);
1612 if (!hdr
.ExtPageLength
) {
1617 buffer
= pci_alloc_consistent(ioc
->pcidev
, hdr
.ExtPageLength
* 4,
1624 cfg
.physAddr
= dma_handle
;
1625 cfg
.action
= MPI_CONFIG_ACTION_PAGE_READ_CURRENT
;
1627 error
= mpt_config(ioc
, &cfg
);
1629 goto out_free_consistent
;
1631 mptsas_print_device_pg0(ioc
, buffer
);
1633 device_info
->handle
= le16_to_cpu(buffer
->DevHandle
);
1634 device_info
->handle_parent
= le16_to_cpu(buffer
->ParentDevHandle
);
1635 device_info
->handle_enclosure
=
1636 le16_to_cpu(buffer
->EnclosureHandle
);
1637 device_info
->slot
= le16_to_cpu(buffer
->Slot
);
1638 device_info
->phy_id
= buffer
->PhyNum
;
1639 device_info
->port_id
= buffer
->PhysicalPort
;
1640 device_info
->id
= buffer
->TargetID
;
1641 device_info
->phys_disk_num
= ~0;
1642 device_info
->channel
= buffer
->Bus
;
1643 memcpy(&sas_address
, &buffer
->SASAddress
, sizeof(__le64
));
1644 device_info
->sas_address
= le64_to_cpu(sas_address
);
1645 device_info
->device_info
=
1646 le32_to_cpu(buffer
->DeviceInfo
);
1648 out_free_consistent
:
1649 pci_free_consistent(ioc
->pcidev
, hdr
.ExtPageLength
* 4,
1650 buffer
, dma_handle
);
1656 mptsas_sas_expander_pg0(MPT_ADAPTER
*ioc
, struct mptsas_portinfo
*port_info
,
1657 u32 form
, u32 form_specific
)
1659 ConfigExtendedPageHeader_t hdr
;
1661 SasExpanderPage0_t
*buffer
;
1662 dma_addr_t dma_handle
;
1665 hdr
.PageVersion
= MPI_SASEXPANDER0_PAGEVERSION
;
1666 hdr
.ExtPageLength
= 0;
1670 hdr
.PageType
= MPI_CONFIG_PAGETYPE_EXTENDED
;
1671 hdr
.ExtPageType
= MPI_CONFIG_EXTPAGETYPE_SAS_EXPANDER
;
1673 cfg
.cfghdr
.ehdr
= &hdr
;
1675 cfg
.pageAddr
= form
+ form_specific
;
1676 cfg
.action
= MPI_CONFIG_ACTION_PAGE_HEADER
;
1677 cfg
.dir
= 0; /* read */
1680 memset(port_info
, 0, sizeof(struct mptsas_portinfo
));
1681 error
= mpt_config(ioc
, &cfg
);
1685 if (!hdr
.ExtPageLength
) {
1690 buffer
= pci_alloc_consistent(ioc
->pcidev
, hdr
.ExtPageLength
* 4,
1697 cfg
.physAddr
= dma_handle
;
1698 cfg
.action
= MPI_CONFIG_ACTION_PAGE_READ_CURRENT
;
1700 error
= mpt_config(ioc
, &cfg
);
1702 goto out_free_consistent
;
1704 if (!buffer
->NumPhys
) {
1706 goto out_free_consistent
;
1709 /* save config data */
1710 port_info
->num_phys
= buffer
->NumPhys
;
1711 port_info
->phy_info
= kcalloc(port_info
->num_phys
,
1712 sizeof(*port_info
->phy_info
),GFP_KERNEL
);
1713 if (!port_info
->phy_info
) {
1715 goto out_free_consistent
;
1718 for (i
= 0; i
< port_info
->num_phys
; i
++) {
1719 port_info
->phy_info
[i
].portinfo
= port_info
;
1720 port_info
->phy_info
[i
].handle
=
1721 le16_to_cpu(buffer
->DevHandle
);
1724 out_free_consistent
:
1725 pci_free_consistent(ioc
->pcidev
, hdr
.ExtPageLength
* 4,
1726 buffer
, dma_handle
);
1732 mptsas_sas_expander_pg1(MPT_ADAPTER
*ioc
, struct mptsas_phyinfo
*phy_info
,
1733 u32 form
, u32 form_specific
)
1735 ConfigExtendedPageHeader_t hdr
;
1737 SasExpanderPage1_t
*buffer
;
1738 dma_addr_t dma_handle
;
1741 if (ioc
->sas_discovery_runtime
&&
1742 mptsas_is_end_device(&phy_info
->attached
))
1745 hdr
.PageVersion
= MPI_SASEXPANDER0_PAGEVERSION
;
1746 hdr
.ExtPageLength
= 0;
1750 hdr
.PageType
= MPI_CONFIG_PAGETYPE_EXTENDED
;
1751 hdr
.ExtPageType
= MPI_CONFIG_EXTPAGETYPE_SAS_EXPANDER
;
1753 cfg
.cfghdr
.ehdr
= &hdr
;
1755 cfg
.pageAddr
= form
+ form_specific
;
1756 cfg
.action
= MPI_CONFIG_ACTION_PAGE_HEADER
;
1757 cfg
.dir
= 0; /* read */
1760 error
= mpt_config(ioc
, &cfg
);
1764 if (!hdr
.ExtPageLength
) {
1769 buffer
= pci_alloc_consistent(ioc
->pcidev
, hdr
.ExtPageLength
* 4,
1776 cfg
.physAddr
= dma_handle
;
1777 cfg
.action
= MPI_CONFIG_ACTION_PAGE_READ_CURRENT
;
1779 error
= mpt_config(ioc
, &cfg
);
1781 goto out_free_consistent
;
1784 mptsas_print_expander_pg1(ioc
, buffer
);
1786 /* save config data */
1787 phy_info
->phy_id
= buffer
->PhyIdentifier
;
1788 phy_info
->port_id
= buffer
->PhysicalPort
;
1789 phy_info
->negotiated_link_rate
= buffer
->NegotiatedLinkRate
;
1790 phy_info
->programmed_link_rate
= buffer
->ProgrammedLinkRate
;
1791 phy_info
->hw_link_rate
= buffer
->HwLinkRate
;
1792 phy_info
->identify
.handle
= le16_to_cpu(buffer
->OwnerDevHandle
);
1793 phy_info
->attached
.handle
= le16_to_cpu(buffer
->AttachedDevHandle
);
1795 out_free_consistent
:
1796 pci_free_consistent(ioc
->pcidev
, hdr
.ExtPageLength
* 4,
1797 buffer
, dma_handle
);
1803 mptsas_parse_device_info(struct sas_identify
*identify
,
1804 struct mptsas_devinfo
*device_info
)
1808 identify
->sas_address
= device_info
->sas_address
;
1809 identify
->phy_identifier
= device_info
->phy_id
;
1812 * Fill in Phy Initiator Port Protocol.
1813 * Bits 6:3, more than one bit can be set, fall through cases.
1815 protocols
= device_info
->device_info
& 0x78;
1816 identify
->initiator_port_protocols
= 0;
1817 if (protocols
& MPI_SAS_DEVICE_INFO_SSP_INITIATOR
)
1818 identify
->initiator_port_protocols
|= SAS_PROTOCOL_SSP
;
1819 if (protocols
& MPI_SAS_DEVICE_INFO_STP_INITIATOR
)
1820 identify
->initiator_port_protocols
|= SAS_PROTOCOL_STP
;
1821 if (protocols
& MPI_SAS_DEVICE_INFO_SMP_INITIATOR
)
1822 identify
->initiator_port_protocols
|= SAS_PROTOCOL_SMP
;
1823 if (protocols
& MPI_SAS_DEVICE_INFO_SATA_HOST
)
1824 identify
->initiator_port_protocols
|= SAS_PROTOCOL_SATA
;
1827 * Fill in Phy Target Port Protocol.
1828 * Bits 10:7, more than one bit can be set, fall through cases.
1830 protocols
= device_info
->device_info
& 0x780;
1831 identify
->target_port_protocols
= 0;
1832 if (protocols
& MPI_SAS_DEVICE_INFO_SSP_TARGET
)
1833 identify
->target_port_protocols
|= SAS_PROTOCOL_SSP
;
1834 if (protocols
& MPI_SAS_DEVICE_INFO_STP_TARGET
)
1835 identify
->target_port_protocols
|= SAS_PROTOCOL_STP
;
1836 if (protocols
& MPI_SAS_DEVICE_INFO_SMP_TARGET
)
1837 identify
->target_port_protocols
|= SAS_PROTOCOL_SMP
;
1838 if (protocols
& MPI_SAS_DEVICE_INFO_SATA_DEVICE
)
1839 identify
->target_port_protocols
|= SAS_PROTOCOL_SATA
;
1842 * Fill in Attached device type.
1844 switch (device_info
->device_info
&
1845 MPI_SAS_DEVICE_INFO_MASK_DEVICE_TYPE
) {
1846 case MPI_SAS_DEVICE_INFO_NO_DEVICE
:
1847 identify
->device_type
= SAS_PHY_UNUSED
;
1849 case MPI_SAS_DEVICE_INFO_END_DEVICE
:
1850 identify
->device_type
= SAS_END_DEVICE
;
1852 case MPI_SAS_DEVICE_INFO_EDGE_EXPANDER
:
1853 identify
->device_type
= SAS_EDGE_EXPANDER_DEVICE
;
1855 case MPI_SAS_DEVICE_INFO_FANOUT_EXPANDER
:
1856 identify
->device_type
= SAS_FANOUT_EXPANDER_DEVICE
;
1861 static int mptsas_probe_one_phy(struct device
*dev
,
1862 struct mptsas_phyinfo
*phy_info
, int index
, int local
)
1865 struct sas_phy
*phy
;
1866 struct sas_port
*port
;
1874 if (!phy_info
->phy
) {
1875 phy
= sas_phy_alloc(dev
, index
);
1881 phy
= phy_info
->phy
;
1883 mptsas_parse_device_info(&phy
->identify
, &phy_info
->identify
);
1886 * Set Negotiated link rate.
1888 switch (phy_info
->negotiated_link_rate
) {
1889 case MPI_SAS_IOUNIT0_RATE_PHY_DISABLED
:
1890 phy
->negotiated_linkrate
= SAS_PHY_DISABLED
;
1892 case MPI_SAS_IOUNIT0_RATE_FAILED_SPEED_NEGOTIATION
:
1893 phy
->negotiated_linkrate
= SAS_LINK_RATE_FAILED
;
1895 case MPI_SAS_IOUNIT0_RATE_1_5
:
1896 phy
->negotiated_linkrate
= SAS_LINK_RATE_1_5_GBPS
;
1898 case MPI_SAS_IOUNIT0_RATE_3_0
:
1899 phy
->negotiated_linkrate
= SAS_LINK_RATE_3_0_GBPS
;
1901 case MPI_SAS_IOUNIT0_RATE_SATA_OOB_COMPLETE
:
1902 case MPI_SAS_IOUNIT0_RATE_UNKNOWN
:
1904 phy
->negotiated_linkrate
= SAS_LINK_RATE_UNKNOWN
;
1909 * Set Max hardware link rate.
1911 switch (phy_info
->hw_link_rate
& MPI_SAS_PHY0_PRATE_MAX_RATE_MASK
) {
1912 case MPI_SAS_PHY0_HWRATE_MAX_RATE_1_5
:
1913 phy
->maximum_linkrate_hw
= SAS_LINK_RATE_1_5_GBPS
;
1915 case MPI_SAS_PHY0_PRATE_MAX_RATE_3_0
:
1916 phy
->maximum_linkrate_hw
= SAS_LINK_RATE_3_0_GBPS
;
1923 * Set Max programmed link rate.
1925 switch (phy_info
->programmed_link_rate
&
1926 MPI_SAS_PHY0_PRATE_MAX_RATE_MASK
) {
1927 case MPI_SAS_PHY0_PRATE_MAX_RATE_1_5
:
1928 phy
->maximum_linkrate
= SAS_LINK_RATE_1_5_GBPS
;
1930 case MPI_SAS_PHY0_PRATE_MAX_RATE_3_0
:
1931 phy
->maximum_linkrate
= SAS_LINK_RATE_3_0_GBPS
;
1938 * Set Min hardware link rate.
1940 switch (phy_info
->hw_link_rate
& MPI_SAS_PHY0_HWRATE_MIN_RATE_MASK
) {
1941 case MPI_SAS_PHY0_HWRATE_MIN_RATE_1_5
:
1942 phy
->minimum_linkrate_hw
= SAS_LINK_RATE_1_5_GBPS
;
1944 case MPI_SAS_PHY0_PRATE_MIN_RATE_3_0
:
1945 phy
->minimum_linkrate_hw
= SAS_LINK_RATE_3_0_GBPS
;
1952 * Set Min programmed link rate.
1954 switch (phy_info
->programmed_link_rate
&
1955 MPI_SAS_PHY0_PRATE_MIN_RATE_MASK
) {
1956 case MPI_SAS_PHY0_PRATE_MIN_RATE_1_5
:
1957 phy
->minimum_linkrate
= SAS_LINK_RATE_1_5_GBPS
;
1959 case MPI_SAS_PHY0_PRATE_MIN_RATE_3_0
:
1960 phy
->minimum_linkrate
= SAS_LINK_RATE_3_0_GBPS
;
1966 if (!phy_info
->phy
) {
1968 error
= sas_phy_add(phy
);
1973 phy_info
->phy
= phy
;
1976 if (!phy_info
->attached
.handle
||
1977 !phy_info
->port_details
)
1980 port
= mptsas_get_port(phy_info
);
1981 ioc
= phy_to_ioc(phy_info
->phy
);
1983 if (phy_info
->sas_port_add_phy
) {
1986 port
= sas_port_alloc_num(dev
);
1991 error
= sas_port_add(port
);
1993 dfailprintk(ioc
, printk(MYIOC_s_ERR_FMT
1994 "%s: exit at line=%d\n", ioc
->name
,
1995 __FUNCTION__
, __LINE__
));
1998 mptsas_set_port(ioc
, phy_info
, port
);
1999 dsaswideprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
2000 "sas_port_alloc: port=%p dev=%p port_id=%d\n",
2001 ioc
->name
, port
, dev
, port
->port_identifier
));
2003 dsaswideprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"sas_port_add_phy: phy_id=%d\n",
2004 ioc
->name
, phy_info
->phy_id
));
2005 sas_port_add_phy(port
, phy_info
->phy
);
2006 phy_info
->sas_port_add_phy
= 0;
2009 if (!mptsas_get_rphy(phy_info
) && port
&& !port
->rphy
) {
2011 struct sas_rphy
*rphy
;
2012 struct device
*parent
;
2013 struct sas_identify identify
;
2015 parent
= dev
->parent
->parent
;
2017 * Let the hotplug_work thread handle processing
2018 * the adding/removing of devices that occur
2019 * after start of day.
2021 if (ioc
->sas_discovery_runtime
&&
2022 mptsas_is_end_device(&phy_info
->attached
))
2025 mptsas_parse_device_info(&identify
, &phy_info
->attached
);
2026 if (scsi_is_host_device(parent
)) {
2027 struct mptsas_portinfo
*port_info
;
2030 mutex_lock(&ioc
->sas_topology_mutex
);
2031 port_info
= mptsas_find_portinfo_by_handle(ioc
,
2033 mutex_unlock(&ioc
->sas_topology_mutex
);
2035 for (i
= 0; i
< port_info
->num_phys
; i
++)
2036 if (port_info
->phy_info
[i
].identify
.sas_address
==
2037 identify
.sas_address
) {
2038 sas_port_mark_backlink(port
);
2042 } else if (scsi_is_sas_rphy(parent
)) {
2043 struct sas_rphy
*parent_rphy
= dev_to_rphy(parent
);
2044 if (identify
.sas_address
==
2045 parent_rphy
->identify
.sas_address
) {
2046 sas_port_mark_backlink(port
);
2051 switch (identify
.device_type
) {
2052 case SAS_END_DEVICE
:
2053 rphy
= sas_end_device_alloc(port
);
2055 case SAS_EDGE_EXPANDER_DEVICE
:
2056 case SAS_FANOUT_EXPANDER_DEVICE
:
2057 rphy
= sas_expander_alloc(port
, identify
.device_type
);
2064 dfailprintk(ioc
, printk(MYIOC_s_ERR_FMT
2065 "%s: exit at line=%d\n", ioc
->name
,
2066 __FUNCTION__
, __LINE__
));
2070 rphy
->identify
= identify
;
2071 error
= sas_rphy_add(rphy
);
2073 dfailprintk(ioc
, printk(MYIOC_s_ERR_FMT
2074 "%s: exit at line=%d\n", ioc
->name
,
2075 __FUNCTION__
, __LINE__
));
2076 sas_rphy_free(rphy
);
2079 mptsas_set_rphy(ioc
, phy_info
, rphy
);
2087 mptsas_probe_hba_phys(MPT_ADAPTER
*ioc
)
2089 struct mptsas_portinfo
*port_info
, *hba
;
2090 int error
= -ENOMEM
, i
;
2092 hba
= kzalloc(sizeof(*port_info
), GFP_KERNEL
);
2096 error
= mptsas_sas_io_unit_pg0(ioc
, hba
);
2098 goto out_free_port_info
;
2100 mptsas_sas_io_unit_pg1(ioc
);
2101 mutex_lock(&ioc
->sas_topology_mutex
);
2102 ioc
->handle
= hba
->phy_info
[0].handle
;
2103 port_info
= mptsas_find_portinfo_by_handle(ioc
, ioc
->handle
);
2106 list_add_tail(&port_info
->list
, &ioc
->sas_topology
);
2108 for (i
= 0; i
< hba
->num_phys
; i
++) {
2109 port_info
->phy_info
[i
].negotiated_link_rate
=
2110 hba
->phy_info
[i
].negotiated_link_rate
;
2111 port_info
->phy_info
[i
].handle
=
2112 hba
->phy_info
[i
].handle
;
2113 port_info
->phy_info
[i
].port_id
=
2114 hba
->phy_info
[i
].port_id
;
2116 kfree(hba
->phy_info
);
2120 mutex_unlock(&ioc
->sas_topology_mutex
);
2121 for (i
= 0; i
< port_info
->num_phys
; i
++) {
2122 mptsas_sas_phy_pg0(ioc
, &port_info
->phy_info
[i
],
2123 (MPI_SAS_PHY_PGAD_FORM_PHY_NUMBER
<<
2124 MPI_SAS_PHY_PGAD_FORM_SHIFT
), i
);
2126 mptsas_sas_device_pg0(ioc
, &port_info
->phy_info
[i
].identify
,
2127 (MPI_SAS_DEVICE_PGAD_FORM_HANDLE
<<
2128 MPI_SAS_DEVICE_PGAD_FORM_SHIFT
),
2129 port_info
->phy_info
[i
].handle
);
2130 port_info
->phy_info
[i
].identify
.phy_id
=
2131 port_info
->phy_info
[i
].phy_id
= i
;
2132 if (port_info
->phy_info
[i
].attached
.handle
)
2133 mptsas_sas_device_pg0(ioc
,
2134 &port_info
->phy_info
[i
].attached
,
2135 (MPI_SAS_DEVICE_PGAD_FORM_HANDLE
<<
2136 MPI_SAS_DEVICE_PGAD_FORM_SHIFT
),
2137 port_info
->phy_info
[i
].attached
.handle
);
2140 mptsas_setup_wide_ports(ioc
, port_info
);
2142 for (i
= 0; i
< port_info
->num_phys
; i
++, ioc
->sas_index
++)
2143 mptsas_probe_one_phy(&ioc
->sh
->shost_gendev
,
2144 &port_info
->phy_info
[i
], ioc
->sas_index
, 1);
2155 mptsas_probe_expander_phys(MPT_ADAPTER
*ioc
, u32
*handle
)
2157 struct mptsas_portinfo
*port_info
, *p
, *ex
;
2158 struct device
*parent
;
2159 struct sas_rphy
*rphy
;
2160 int error
= -ENOMEM
, i
, j
;
2162 ex
= kzalloc(sizeof(*port_info
), GFP_KERNEL
);
2166 error
= mptsas_sas_expander_pg0(ioc
, ex
,
2167 (MPI_SAS_EXPAND_PGAD_FORM_GET_NEXT_HANDLE
<<
2168 MPI_SAS_EXPAND_PGAD_FORM_SHIFT
), *handle
);
2170 goto out_free_port_info
;
2172 *handle
= ex
->phy_info
[0].handle
;
2174 mutex_lock(&ioc
->sas_topology_mutex
);
2175 port_info
= mptsas_find_portinfo_by_handle(ioc
, *handle
);
2178 list_add_tail(&port_info
->list
, &ioc
->sas_topology
);
2180 for (i
= 0; i
< ex
->num_phys
; i
++) {
2181 port_info
->phy_info
[i
].handle
=
2182 ex
->phy_info
[i
].handle
;
2183 port_info
->phy_info
[i
].port_id
=
2184 ex
->phy_info
[i
].port_id
;
2186 kfree(ex
->phy_info
);
2190 mutex_unlock(&ioc
->sas_topology_mutex
);
2192 for (i
= 0; i
< port_info
->num_phys
; i
++) {
2193 mptsas_sas_expander_pg1(ioc
, &port_info
->phy_info
[i
],
2194 (MPI_SAS_EXPAND_PGAD_FORM_HANDLE_PHY_NUM
<<
2195 MPI_SAS_EXPAND_PGAD_FORM_SHIFT
), (i
<< 16) + *handle
);
2197 if (port_info
->phy_info
[i
].identify
.handle
) {
2198 mptsas_sas_device_pg0(ioc
,
2199 &port_info
->phy_info
[i
].identify
,
2200 (MPI_SAS_DEVICE_PGAD_FORM_HANDLE
<<
2201 MPI_SAS_DEVICE_PGAD_FORM_SHIFT
),
2202 port_info
->phy_info
[i
].identify
.handle
);
2203 port_info
->phy_info
[i
].identify
.phy_id
=
2204 port_info
->phy_info
[i
].phy_id
;
2207 if (port_info
->phy_info
[i
].attached
.handle
) {
2208 mptsas_sas_device_pg0(ioc
,
2209 &port_info
->phy_info
[i
].attached
,
2210 (MPI_SAS_DEVICE_PGAD_FORM_HANDLE
<<
2211 MPI_SAS_DEVICE_PGAD_FORM_SHIFT
),
2212 port_info
->phy_info
[i
].attached
.handle
);
2213 port_info
->phy_info
[i
].attached
.phy_id
=
2214 port_info
->phy_info
[i
].phy_id
;
2218 parent
= &ioc
->sh
->shost_gendev
;
2219 for (i
= 0; i
< port_info
->num_phys
; i
++) {
2220 mutex_lock(&ioc
->sas_topology_mutex
);
2221 list_for_each_entry(p
, &ioc
->sas_topology
, list
) {
2222 for (j
= 0; j
< p
->num_phys
; j
++) {
2223 if (port_info
->phy_info
[i
].identify
.handle
!=
2224 p
->phy_info
[j
].attached
.handle
)
2226 rphy
= mptsas_get_rphy(&p
->phy_info
[j
]);
2227 parent
= &rphy
->dev
;
2230 mutex_unlock(&ioc
->sas_topology_mutex
);
2233 mptsas_setup_wide_ports(ioc
, port_info
);
2235 for (i
= 0; i
< port_info
->num_phys
; i
++, ioc
->sas_index
++)
2236 mptsas_probe_one_phy(parent
, &port_info
->phy_info
[i
],
2243 kfree(ex
->phy_info
);
2251 * mptsas_delete_expander_phys
2254 * This will traverse topology, and remove expanders
2255 * that are no longer present
2258 mptsas_delete_expander_phys(MPT_ADAPTER
*ioc
)
2260 struct mptsas_portinfo buffer
;
2261 struct mptsas_portinfo
*port_info
, *n
, *parent
;
2262 struct mptsas_phyinfo
*phy_info
;
2263 struct sas_port
* port
;
2265 u64 expander_sas_address
;
2267 mutex_lock(&ioc
->sas_topology_mutex
);
2268 list_for_each_entry_safe(port_info
, n
, &ioc
->sas_topology
, list
) {
2270 if (port_info
->phy_info
&&
2271 (!(port_info
->phy_info
[0].identify
.device_info
&
2272 MPI_SAS_DEVICE_INFO_SMP_TARGET
)))
2275 if (mptsas_sas_expander_pg0(ioc
, &buffer
,
2276 (MPI_SAS_EXPAND_PGAD_FORM_HANDLE
<<
2277 MPI_SAS_EXPAND_PGAD_FORM_SHIFT
),
2278 port_info
->phy_info
[0].handle
)) {
2281 * Obtain the port_info instance to the parent port
2283 parent
= mptsas_find_portinfo_by_handle(ioc
,
2284 port_info
->phy_info
[0].identify
.handle_parent
);
2289 expander_sas_address
=
2290 port_info
->phy_info
[0].identify
.sas_address
;
2293 * Delete rphys in the parent that point
2294 * to this expander. The transport layer will
2295 * cleanup all the children.
2297 phy_info
= parent
->phy_info
;
2298 for (i
= 0; i
< parent
->num_phys
; i
++, phy_info
++) {
2299 port
= mptsas_get_port(phy_info
);
2302 if (phy_info
->attached
.sas_address
!=
2303 expander_sas_address
)
2306 dev_printk(KERN_DEBUG
, &port
->dev
,
2307 MYIOC_s_FMT
"delete port (%d)\n", ioc
->name
,
2308 port
->port_identifier
));
2309 sas_port_delete(port
);
2310 mptsas_port_delete(ioc
, phy_info
->port_details
);
2314 phy_info
= port_info
->phy_info
;
2315 for (i
= 0; i
< port_info
->num_phys
; i
++, phy_info
++)
2316 mptsas_port_delete(ioc
, phy_info
->port_details
);
2318 list_del(&port_info
->list
);
2319 kfree(port_info
->phy_info
);
2323 * Free this memory allocated from inside
2324 * mptsas_sas_expander_pg0
2326 kfree(buffer
.phy_info
);
2328 mutex_unlock(&ioc
->sas_topology_mutex
);
2332 * Start of day discovery
2335 mptsas_scan_sas_topology(MPT_ADAPTER
*ioc
)
2337 u32 handle
= 0xFFFF;
2340 mutex_lock(&ioc
->sas_discovery_mutex
);
2341 mptsas_probe_hba_phys(ioc
);
2342 while (!mptsas_probe_expander_phys(ioc
, &handle
))
2345 Reporting RAID volumes.
2347 if (!ioc
->ir_firmware
)
2349 if (!ioc
->raid_data
.pIocPg2
)
2351 if (!ioc
->raid_data
.pIocPg2
->NumActiveVolumes
)
2353 for (i
= 0; i
< ioc
->raid_data
.pIocPg2
->NumActiveVolumes
; i
++) {
2354 scsi_add_device(ioc
->sh
, MPTSAS_RAID_CHANNEL
,
2355 ioc
->raid_data
.pIocPg2
->RaidVolume
[i
].VolumeID
, 0);
2358 mutex_unlock(&ioc
->sas_discovery_mutex
);
2362 * Work queue thread to handle Runtime discovery
2363 * Mere purpose is the hot add/delete of expanders
2367 __mptsas_discovery_work(MPT_ADAPTER
*ioc
)
2369 u32 handle
= 0xFFFF;
2371 ioc
->sas_discovery_runtime
=1;
2372 mptsas_delete_expander_phys(ioc
);
2373 mptsas_probe_hba_phys(ioc
);
2374 while (!mptsas_probe_expander_phys(ioc
, &handle
))
2376 ioc
->sas_discovery_runtime
=0;
2380 * Work queue thread to handle Runtime discovery
2381 * Mere purpose is the hot add/delete of expanders
2385 mptsas_discovery_work(struct work_struct
*work
)
2387 struct mptsas_discovery_event
*ev
=
2388 container_of(work
, struct mptsas_discovery_event
, work
);
2389 MPT_ADAPTER
*ioc
= ev
->ioc
;
2391 mutex_lock(&ioc
->sas_discovery_mutex
);
2392 __mptsas_discovery_work(ioc
);
2393 mutex_unlock(&ioc
->sas_discovery_mutex
);
2397 static struct mptsas_phyinfo
*
2398 mptsas_find_phyinfo_by_sas_address(MPT_ADAPTER
*ioc
, u64 sas_address
)
2400 struct mptsas_portinfo
*port_info
;
2401 struct mptsas_phyinfo
*phy_info
= NULL
;
2404 mutex_lock(&ioc
->sas_topology_mutex
);
2405 list_for_each_entry(port_info
, &ioc
->sas_topology
, list
) {
2406 for (i
= 0; i
< port_info
->num_phys
; i
++) {
2407 if (!mptsas_is_end_device(
2408 &port_info
->phy_info
[i
].attached
))
2410 if (port_info
->phy_info
[i
].attached
.sas_address
2413 phy_info
= &port_info
->phy_info
[i
];
2417 mutex_unlock(&ioc
->sas_topology_mutex
);
2421 static struct mptsas_phyinfo
*
2422 mptsas_find_phyinfo_by_target(MPT_ADAPTER
*ioc
, u8 channel
, u8 id
)
2424 struct mptsas_portinfo
*port_info
;
2425 struct mptsas_phyinfo
*phy_info
= NULL
;
2428 mutex_lock(&ioc
->sas_topology_mutex
);
2429 list_for_each_entry(port_info
, &ioc
->sas_topology
, list
) {
2430 for (i
= 0; i
< port_info
->num_phys
; i
++) {
2431 if (!mptsas_is_end_device(
2432 &port_info
->phy_info
[i
].attached
))
2434 if (port_info
->phy_info
[i
].attached
.id
!= id
)
2436 if (port_info
->phy_info
[i
].attached
.channel
!= channel
)
2438 phy_info
= &port_info
->phy_info
[i
];
2442 mutex_unlock(&ioc
->sas_topology_mutex
);
2446 static struct mptsas_phyinfo
*
2447 mptsas_find_phyinfo_by_phys_disk_num(MPT_ADAPTER
*ioc
, u8 channel
, u8 id
)
2449 struct mptsas_portinfo
*port_info
;
2450 struct mptsas_phyinfo
*phy_info
= NULL
;
2453 mutex_lock(&ioc
->sas_topology_mutex
);
2454 list_for_each_entry(port_info
, &ioc
->sas_topology
, list
) {
2455 for (i
= 0; i
< port_info
->num_phys
; i
++) {
2456 if (!mptsas_is_end_device(
2457 &port_info
->phy_info
[i
].attached
))
2459 if (port_info
->phy_info
[i
].attached
.phys_disk_num
== ~0)
2461 if (port_info
->phy_info
[i
].attached
.phys_disk_num
!= id
)
2463 if (port_info
->phy_info
[i
].attached
.channel
!= channel
)
2465 phy_info
= &port_info
->phy_info
[i
];
2469 mutex_unlock(&ioc
->sas_topology_mutex
);
2474 * Work queue thread to clear the persitency table
2477 mptsas_persist_clear_table(struct work_struct
*work
)
2479 MPT_ADAPTER
*ioc
= container_of(work
, MPT_ADAPTER
, sas_persist_task
);
2481 mptbase_sas_persist_operation(ioc
, MPI_SAS_OP_CLEAR_NOT_PRESENT
);
2485 mptsas_reprobe_lun(struct scsi_device
*sdev
, void *data
)
2489 sdev
->no_uld_attach
= data
? 1 : 0;
2490 rc
= scsi_device_reprobe(sdev
);
2494 mptsas_reprobe_target(struct scsi_target
*starget
, int uld_attach
)
2496 starget_for_each_device(starget
, uld_attach
? (void *)1 : NULL
,
2497 mptsas_reprobe_lun
);
2501 mptsas_adding_inactive_raid_components(MPT_ADAPTER
*ioc
, u8 channel
, u8 id
)
2504 ConfigPageHeader_t hdr
;
2505 dma_addr_t dma_handle
;
2506 pRaidVolumePage0_t buffer
= NULL
;
2507 RaidPhysDiskPage0_t phys_disk
;
2509 struct mptsas_hotplug_event
*ev
;
2511 memset(&cfg
, 0 , sizeof(CONFIGPARMS
));
2512 memset(&hdr
, 0 , sizeof(ConfigPageHeader_t
));
2513 hdr
.PageType
= MPI_CONFIG_PAGETYPE_RAID_VOLUME
;
2514 cfg
.pageAddr
= (channel
<< 8) + id
;
2515 cfg
.cfghdr
.hdr
= &hdr
;
2516 cfg
.action
= MPI_CONFIG_ACTION_PAGE_HEADER
;
2518 if (mpt_config(ioc
, &cfg
) != 0)
2521 if (!hdr
.PageLength
)
2524 buffer
= pci_alloc_consistent(ioc
->pcidev
, hdr
.PageLength
* 4,
2530 cfg
.physAddr
= dma_handle
;
2531 cfg
.action
= MPI_CONFIG_ACTION_PAGE_READ_CURRENT
;
2533 if (mpt_config(ioc
, &cfg
) != 0)
2536 if (!(buffer
->VolumeStatus
.Flags
&
2537 MPI_RAIDVOL0_STATUS_FLAG_VOLUME_INACTIVE
))
2540 if (!buffer
->NumPhysDisks
)
2543 for (i
= 0; i
< buffer
->NumPhysDisks
; i
++) {
2545 if (mpt_raid_phys_disk_pg0(ioc
,
2546 buffer
->PhysDisk
[i
].PhysDiskNum
, &phys_disk
) != 0)
2549 ev
= kzalloc(sizeof(*ev
), GFP_ATOMIC
);
2551 printk(MYIOC_s_WARN_FMT
"mptsas: lost hotplug event\n", ioc
->name
);
2555 INIT_WORK(&ev
->work
, mptsas_hotplug_work
);
2557 ev
->id
= phys_disk
.PhysDiskID
;
2558 ev
->channel
= phys_disk
.PhysDiskBus
;
2559 ev
->phys_disk_num_valid
= 1;
2560 ev
->phys_disk_num
= phys_disk
.PhysDiskNum
;
2561 ev
->event_type
= MPTSAS_ADD_DEVICE
;
2562 schedule_work(&ev
->work
);
2567 pci_free_consistent(ioc
->pcidev
, hdr
.PageLength
* 4, buffer
,
2571 * Work queue thread to handle SAS hotplug events
2574 mptsas_hotplug_work(struct work_struct
*work
)
2576 struct mptsas_hotplug_event
*ev
=
2577 container_of(work
, struct mptsas_hotplug_event
, work
);
2579 MPT_ADAPTER
*ioc
= ev
->ioc
;
2580 struct mptsas_phyinfo
*phy_info
;
2581 struct sas_rphy
*rphy
;
2582 struct sas_port
*port
;
2583 struct scsi_device
*sdev
;
2584 struct scsi_target
* starget
;
2585 struct sas_identify identify
;
2587 struct mptsas_devinfo sas_device
;
2588 VirtTarget
*vtarget
;
2589 VirtDevice
*vdevice
;
2591 mutex_lock(&ioc
->sas_discovery_mutex
);
2592 switch (ev
->event_type
) {
2593 case MPTSAS_DEL_DEVICE
:
2596 if (ev
->phys_disk_num_valid
) {
2597 if (ev
->hidden_raid_component
){
2598 if (mptsas_sas_device_pg0(ioc
, &sas_device
,
2599 (MPI_SAS_DEVICE_PGAD_FORM_BUS_TARGET_ID
<<
2600 MPI_SAS_DEVICE_PGAD_FORM_SHIFT
),
2601 (ev
->channel
<< 8) + ev
->id
)) {
2602 dfailprintk(ioc
, printk(MYIOC_s_ERR_FMT
2603 "%s: exit at line=%d\n", ioc
->name
,
2604 __FUNCTION__
, __LINE__
));
2607 phy_info
= mptsas_find_phyinfo_by_sas_address(
2608 ioc
, sas_device
.sas_address
);
2610 phy_info
= mptsas_find_phyinfo_by_phys_disk_num(
2611 ioc
, ev
->channel
, ev
->phys_disk_num
);
2615 phy_info
= mptsas_find_phyinfo_by_target(ioc
,
2616 ev
->channel
, ev
->id
);
2619 * Sanity checks, for non-existing phys and remote rphys.
2622 dfailprintk(ioc
, printk(MYIOC_s_ERR_FMT
2623 "%s: exit at line=%d\n", ioc
->name
,
2624 __FUNCTION__
, __LINE__
));
2627 if (!phy_info
->port_details
) {
2628 dfailprintk(ioc
, printk(MYIOC_s_ERR_FMT
2629 "%s: exit at line=%d\n", ioc
->name
,
2630 __FUNCTION__
, __LINE__
));
2633 rphy
= mptsas_get_rphy(phy_info
);
2635 dfailprintk(ioc
, printk(MYIOC_s_ERR_FMT
2636 "%s: exit at line=%d\n", ioc
->name
,
2637 __FUNCTION__
, __LINE__
));
2641 port
= mptsas_get_port(phy_info
);
2643 dfailprintk(ioc
, printk(MYIOC_s_ERR_FMT
2644 "%s: exit at line=%d\n", ioc
->name
,
2645 __FUNCTION__
, __LINE__
));
2649 starget
= mptsas_get_starget(phy_info
);
2651 vtarget
= starget
->hostdata
;
2654 dfailprintk(ioc
, printk(MYIOC_s_ERR_FMT
2655 "%s: exit at line=%d\n", ioc
->name
,
2656 __FUNCTION__
, __LINE__
));
2661 * Handling RAID components
2663 if (ev
->phys_disk_num_valid
&&
2664 ev
->hidden_raid_component
) {
2665 printk(MYIOC_s_INFO_FMT
2666 "RAID Hidding: channel=%d, id=%d, "
2667 "physdsk %d \n", ioc
->name
, ev
->channel
,
2668 ev
->id
, ev
->phys_disk_num
);
2669 vtarget
->id
= ev
->phys_disk_num
;
2671 MPT_TARGET_FLAGS_RAID_COMPONENT
;
2672 mptsas_reprobe_target(starget
, 1);
2673 phy_info
->attached
.phys_disk_num
=
2679 if (phy_info
->attached
.device_info
&
2680 MPI_SAS_DEVICE_INFO_SSP_TARGET
)
2682 if (phy_info
->attached
.device_info
&
2683 MPI_SAS_DEVICE_INFO_STP_TARGET
)
2685 if (phy_info
->attached
.device_info
&
2686 MPI_SAS_DEVICE_INFO_SATA_DEVICE
)
2689 printk(MYIOC_s_INFO_FMT
2690 "removing %s device, channel %d, id %d, phy %d\n",
2691 ioc
->name
, ds
, ev
->channel
, ev
->id
, phy_info
->phy_id
);
2692 dev_printk(KERN_DEBUG
, &port
->dev
, MYIOC_s_FMT
2693 "delete port (%d)\n", ioc
->name
, port
->port_identifier
);
2694 sas_port_delete(port
);
2695 mptsas_port_delete(ioc
, phy_info
->port_details
);
2697 case MPTSAS_ADD_DEVICE
:
2699 if (ev
->phys_disk_num_valid
)
2700 mpt_findImVolumes(ioc
);
2703 * Refresh sas device pg0 data
2705 if (mptsas_sas_device_pg0(ioc
, &sas_device
,
2706 (MPI_SAS_DEVICE_PGAD_FORM_BUS_TARGET_ID
<<
2707 MPI_SAS_DEVICE_PGAD_FORM_SHIFT
),
2708 (ev
->channel
<< 8) + ev
->id
)) {
2709 dfailprintk(ioc
, printk(MYIOC_s_ERR_FMT
2710 "%s: exit at line=%d\n", ioc
->name
,
2711 __FUNCTION__
, __LINE__
));
2715 __mptsas_discovery_work(ioc
);
2717 phy_info
= mptsas_find_phyinfo_by_sas_address(ioc
,
2718 sas_device
.sas_address
);
2720 if (!phy_info
|| !phy_info
->port_details
) {
2721 dfailprintk(ioc
, printk(MYIOC_s_ERR_FMT
2722 "%s: exit at line=%d\n", ioc
->name
,
2723 __FUNCTION__
, __LINE__
));
2727 starget
= mptsas_get_starget(phy_info
);
2728 if (starget
&& (!ev
->hidden_raid_component
)){
2730 vtarget
= starget
->hostdata
;
2733 dfailprintk(ioc
, printk(MYIOC_s_ERR_FMT
2734 "%s: exit at line=%d\n", ioc
->name
,
2735 __FUNCTION__
, __LINE__
));
2739 * Handling RAID components
2741 if (vtarget
->tflags
& MPT_TARGET_FLAGS_RAID_COMPONENT
) {
2742 printk(MYIOC_s_INFO_FMT
2743 "RAID Exposing: channel=%d, id=%d, "
2744 "physdsk %d \n", ioc
->name
, ev
->channel
,
2745 ev
->id
, ev
->phys_disk_num
);
2747 ~MPT_TARGET_FLAGS_RAID_COMPONENT
;
2748 vtarget
->id
= ev
->id
;
2749 mptsas_reprobe_target(starget
, 0);
2750 phy_info
->attached
.phys_disk_num
= ~0;
2755 if (mptsas_get_rphy(phy_info
)) {
2756 dfailprintk(ioc
, printk(MYIOC_s_ERR_FMT
2757 "%s: exit at line=%d\n", ioc
->name
,
2758 __FUNCTION__
, __LINE__
));
2759 if (ev
->channel
) printk("%d\n", __LINE__
);
2763 port
= mptsas_get_port(phy_info
);
2765 dfailprintk(ioc
, printk(MYIOC_s_ERR_FMT
2766 "%s: exit at line=%d\n", ioc
->name
,
2767 __FUNCTION__
, __LINE__
));
2770 memcpy(&phy_info
->attached
, &sas_device
,
2771 sizeof(struct mptsas_devinfo
));
2773 if (phy_info
->attached
.device_info
&
2774 MPI_SAS_DEVICE_INFO_SSP_TARGET
)
2776 if (phy_info
->attached
.device_info
&
2777 MPI_SAS_DEVICE_INFO_STP_TARGET
)
2779 if (phy_info
->attached
.device_info
&
2780 MPI_SAS_DEVICE_INFO_SATA_DEVICE
)
2783 printk(MYIOC_s_INFO_FMT
2784 "attaching %s device, channel %d, id %d, phy %d\n",
2785 ioc
->name
, ds
, ev
->channel
, ev
->id
, ev
->phy_id
);
2787 mptsas_parse_device_info(&identify
, &phy_info
->attached
);
2788 rphy
= sas_end_device_alloc(port
);
2790 dfailprintk(ioc
, printk(MYIOC_s_ERR_FMT
2791 "%s: exit at line=%d\n", ioc
->name
,
2792 __FUNCTION__
, __LINE__
));
2793 break; /* non-fatal: an rphy can be added later */
2796 rphy
->identify
= identify
;
2797 if (sas_rphy_add(rphy
)) {
2798 dfailprintk(ioc
, printk(MYIOC_s_ERR_FMT
2799 "%s: exit at line=%d\n", ioc
->name
,
2800 __FUNCTION__
, __LINE__
));
2801 sas_rphy_free(rphy
);
2804 mptsas_set_rphy(ioc
, phy_info
, rphy
);
2806 case MPTSAS_ADD_RAID
:
2807 sdev
= scsi_device_lookup(ioc
->sh
, MPTSAS_RAID_CHANNEL
,
2810 scsi_device_put(sdev
);
2813 printk(MYIOC_s_INFO_FMT
2814 "attaching raid volume, channel %d, id %d\n",
2815 ioc
->name
, MPTSAS_RAID_CHANNEL
, ev
->id
);
2816 scsi_add_device(ioc
->sh
, MPTSAS_RAID_CHANNEL
, ev
->id
, 0);
2817 mpt_findImVolumes(ioc
);
2819 case MPTSAS_DEL_RAID
:
2820 sdev
= scsi_device_lookup(ioc
->sh
, MPTSAS_RAID_CHANNEL
,
2824 printk(MYIOC_s_INFO_FMT
2825 "removing raid volume, channel %d, id %d\n",
2826 ioc
->name
, MPTSAS_RAID_CHANNEL
, ev
->id
);
2827 vdevice
= sdev
->hostdata
;
2828 scsi_remove_device(sdev
);
2829 scsi_device_put(sdev
);
2830 mpt_findImVolumes(ioc
);
2832 case MPTSAS_ADD_INACTIVE_VOLUME
:
2833 mptsas_adding_inactive_raid_components(ioc
,
2834 ev
->channel
, ev
->id
);
2836 case MPTSAS_IGNORE_EVENT
:
2841 mutex_unlock(&ioc
->sas_discovery_mutex
);
2846 mptsas_send_sas_event(MPT_ADAPTER
*ioc
,
2847 EVENT_DATA_SAS_DEVICE_STATUS_CHANGE
*sas_event_data
)
2849 struct mptsas_hotplug_event
*ev
;
2850 u32 device_info
= le32_to_cpu(sas_event_data
->DeviceInfo
);
2854 (MPI_SAS_DEVICE_INFO_SSP_TARGET
|
2855 MPI_SAS_DEVICE_INFO_STP_TARGET
|
2856 MPI_SAS_DEVICE_INFO_SATA_DEVICE
)) == 0)
2859 switch (sas_event_data
->ReasonCode
) {
2860 case MPI_EVENT_SAS_DEV_STAT_RC_NOT_RESPONDING
:
2862 mptsas_target_reset_queue(ioc
, sas_event_data
);
2865 case MPI_EVENT_SAS_DEV_STAT_RC_ADDED
:
2866 ev
= kzalloc(sizeof(*ev
), GFP_ATOMIC
);
2868 printk(MYIOC_s_WARN_FMT
"lost hotplug event\n", ioc
->name
);
2872 INIT_WORK(&ev
->work
, mptsas_hotplug_work
);
2874 ev
->handle
= le16_to_cpu(sas_event_data
->DevHandle
);
2876 le16_to_cpu(sas_event_data
->ParentDevHandle
);
2877 ev
->channel
= sas_event_data
->Bus
;
2878 ev
->id
= sas_event_data
->TargetID
;
2879 ev
->phy_id
= sas_event_data
->PhyNum
;
2880 memcpy(&sas_address
, &sas_event_data
->SASAddress
,
2882 ev
->sas_address
= le64_to_cpu(sas_address
);
2883 ev
->device_info
= device_info
;
2885 if (sas_event_data
->ReasonCode
&
2886 MPI_EVENT_SAS_DEV_STAT_RC_ADDED
)
2887 ev
->event_type
= MPTSAS_ADD_DEVICE
;
2889 ev
->event_type
= MPTSAS_DEL_DEVICE
;
2890 schedule_work(&ev
->work
);
2892 case MPI_EVENT_SAS_DEV_STAT_RC_NO_PERSIST_ADDED
:
2894 * Persistent table is full.
2896 INIT_WORK(&ioc
->sas_persist_task
,
2897 mptsas_persist_clear_table
);
2898 schedule_work(&ioc
->sas_persist_task
);
2901 * TODO, handle other events
2903 case MPI_EVENT_SAS_DEV_STAT_RC_SMART_DATA
:
2904 case MPI_EVENT_SAS_DEV_STAT_RC_UNSUPPORTED
:
2905 case MPI_EVENT_SAS_DEV_STAT_RC_INTERNAL_DEVICE_RESET
:
2906 case MPI_EVENT_SAS_DEV_STAT_RC_TASK_ABORT_INTERNAL
:
2907 case MPI_EVENT_SAS_DEV_STAT_RC_ABORT_TASK_SET_INTERNAL
:
2908 case MPI_EVENT_SAS_DEV_STAT_RC_CLEAR_TASK_SET_INTERNAL
:
2909 case MPI_EVENT_SAS_DEV_STAT_RC_QUERY_TASK_INTERNAL
:
2915 mptsas_send_raid_event(MPT_ADAPTER
*ioc
,
2916 EVENT_DATA_RAID
*raid_event_data
)
2918 struct mptsas_hotplug_event
*ev
;
2919 int status
= le32_to_cpu(raid_event_data
->SettingsStatus
);
2920 int state
= (status
>> 8) & 0xff;
2922 if (ioc
->bus_type
!= SAS
)
2925 ev
= kzalloc(sizeof(*ev
), GFP_ATOMIC
);
2927 printk(MYIOC_s_WARN_FMT
"lost hotplug event\n", ioc
->name
);
2931 INIT_WORK(&ev
->work
, mptsas_hotplug_work
);
2933 ev
->id
= raid_event_data
->VolumeID
;
2934 ev
->channel
= raid_event_data
->VolumeBus
;
2935 ev
->event_type
= MPTSAS_IGNORE_EVENT
;
2937 switch (raid_event_data
->ReasonCode
) {
2938 case MPI_EVENT_RAID_RC_PHYSDISK_DELETED
:
2939 ev
->phys_disk_num_valid
= 1;
2940 ev
->phys_disk_num
= raid_event_data
->PhysDiskNum
;
2941 ev
->event_type
= MPTSAS_ADD_DEVICE
;
2943 case MPI_EVENT_RAID_RC_PHYSDISK_CREATED
:
2944 ev
->phys_disk_num_valid
= 1;
2945 ev
->phys_disk_num
= raid_event_data
->PhysDiskNum
;
2946 ev
->hidden_raid_component
= 1;
2947 ev
->event_type
= MPTSAS_DEL_DEVICE
;
2949 case MPI_EVENT_RAID_RC_PHYSDISK_STATUS_CHANGED
:
2951 case MPI_PD_STATE_ONLINE
:
2952 case MPI_PD_STATE_NOT_COMPATIBLE
:
2953 ev
->phys_disk_num_valid
= 1;
2954 ev
->phys_disk_num
= raid_event_data
->PhysDiskNum
;
2955 ev
->hidden_raid_component
= 1;
2956 ev
->event_type
= MPTSAS_ADD_DEVICE
;
2958 case MPI_PD_STATE_MISSING
:
2959 case MPI_PD_STATE_OFFLINE_AT_HOST_REQUEST
:
2960 case MPI_PD_STATE_FAILED_AT_HOST_REQUEST
:
2961 case MPI_PD_STATE_OFFLINE_FOR_ANOTHER_REASON
:
2962 ev
->phys_disk_num_valid
= 1;
2963 ev
->phys_disk_num
= raid_event_data
->PhysDiskNum
;
2964 ev
->event_type
= MPTSAS_DEL_DEVICE
;
2970 case MPI_EVENT_RAID_RC_VOLUME_DELETED
:
2971 ev
->event_type
= MPTSAS_DEL_RAID
;
2973 case MPI_EVENT_RAID_RC_VOLUME_CREATED
:
2974 ev
->event_type
= MPTSAS_ADD_RAID
;
2976 case MPI_EVENT_RAID_RC_VOLUME_STATUS_CHANGED
:
2978 case MPI_RAIDVOL0_STATUS_STATE_FAILED
:
2979 case MPI_RAIDVOL0_STATUS_STATE_MISSING
:
2980 ev
->event_type
= MPTSAS_DEL_RAID
;
2982 case MPI_RAIDVOL0_STATUS_STATE_OPTIMAL
:
2983 case MPI_RAIDVOL0_STATUS_STATE_DEGRADED
:
2984 ev
->event_type
= MPTSAS_ADD_RAID
;
2993 schedule_work(&ev
->work
);
2997 mptsas_send_discovery_event(MPT_ADAPTER
*ioc
,
2998 EVENT_DATA_SAS_DISCOVERY
*discovery_data
)
3000 struct mptsas_discovery_event
*ev
;
3005 * This flag will be non-zero when firmware
3006 * kicks off discovery, and return to zero
3007 * once its completed.
3009 if (discovery_data
->DiscoveryStatus
)
3012 ev
= kzalloc(sizeof(*ev
), GFP_ATOMIC
);
3015 INIT_WORK(&ev
->work
, mptsas_discovery_work
);
3017 schedule_work(&ev
->work
);
3021 * mptsas_send_ir2_event - handle exposing hidden disk when
3022 * an inactive raid volume is added
3024 * @ioc: Pointer to MPT_ADAPTER structure
3029 mptsas_send_ir2_event(MPT_ADAPTER
*ioc
, PTR_MPI_EVENT_DATA_IR2 ir2_data
)
3031 struct mptsas_hotplug_event
*ev
;
3033 if (ir2_data
->ReasonCode
!=
3034 MPI_EVENT_IR2_RC_FOREIGN_CFG_DETECTED
)
3037 ev
= kzalloc(sizeof(*ev
), GFP_ATOMIC
);
3041 INIT_WORK(&ev
->work
, mptsas_hotplug_work
);
3043 ev
->id
= ir2_data
->TargetID
;
3044 ev
->channel
= ir2_data
->Bus
;
3045 ev
->event_type
= MPTSAS_ADD_INACTIVE_VOLUME
;
3047 schedule_work(&ev
->work
);
3051 mptsas_event_process(MPT_ADAPTER
*ioc
, EventNotificationReply_t
*reply
)
3054 u8 event
= le32_to_cpu(reply
->Event
) & 0xFF;
3060 * sas_discovery_ignore_events
3062 * This flag is to prevent anymore processing of
3063 * sas events once mptsas_remove function is called.
3065 if (ioc
->sas_discovery_ignore_events
) {
3066 rc
= mptscsih_event_process(ioc
, reply
);
3071 case MPI_EVENT_SAS_DEVICE_STATUS_CHANGE
:
3072 mptsas_send_sas_event(ioc
,
3073 (EVENT_DATA_SAS_DEVICE_STATUS_CHANGE
*)reply
->Data
);
3075 case MPI_EVENT_INTEGRATED_RAID
:
3076 mptsas_send_raid_event(ioc
,
3077 (EVENT_DATA_RAID
*)reply
->Data
);
3079 case MPI_EVENT_PERSISTENT_TABLE_FULL
:
3080 INIT_WORK(&ioc
->sas_persist_task
,
3081 mptsas_persist_clear_table
);
3082 schedule_work(&ioc
->sas_persist_task
);
3084 case MPI_EVENT_SAS_DISCOVERY
:
3085 mptsas_send_discovery_event(ioc
,
3086 (EVENT_DATA_SAS_DISCOVERY
*)reply
->Data
);
3089 mptsas_send_ir2_event(ioc
,
3090 (PTR_MPI_EVENT_DATA_IR2
)reply
->Data
);
3093 rc
= mptscsih_event_process(ioc
, reply
);
3102 mptsas_probe(struct pci_dev
*pdev
, const struct pci_device_id
*id
)
3104 struct Scsi_Host
*sh
;
3107 unsigned long flags
;
3115 r
= mpt_attach(pdev
,id
);
3119 ioc
= pci_get_drvdata(pdev
);
3120 ioc
->DoneCtx
= mptsasDoneCtx
;
3121 ioc
->TaskCtx
= mptsasTaskCtx
;
3122 ioc
->InternalCtx
= mptsasInternalCtx
;
3124 /* Added sanity check on readiness of the MPT adapter.
3126 if (ioc
->last_state
!= MPI_IOC_STATE_OPERATIONAL
) {
3127 printk(MYIOC_s_WARN_FMT
3128 "Skipping because it's not operational!\n",
3131 goto out_mptsas_probe
;
3135 printk(MYIOC_s_WARN_FMT
"Skipping because it's disabled!\n",
3138 goto out_mptsas_probe
;
3141 /* Sanity check - ensure at least 1 port is INITIATOR capable
3144 for (ii
= 0; ii
< ioc
->facts
.NumberOfPorts
; ii
++) {
3145 if (ioc
->pfacts
[ii
].ProtocolFlags
&
3146 MPI_PORTFACTS_PROTOCOL_INITIATOR
)
3151 printk(MYIOC_s_WARN_FMT
3152 "Skipping ioc=%p because SCSI Initiator mode "
3153 "is NOT enabled!\n", ioc
->name
, ioc
);
3157 sh
= scsi_host_alloc(&mptsas_driver_template
, sizeof(MPT_SCSI_HOST
));
3159 printk(MYIOC_s_WARN_FMT
3160 "Unable to register controller with SCSI subsystem\n",
3163 goto out_mptsas_probe
;
3166 spin_lock_irqsave(&ioc
->FreeQlock
, flags
);
3168 /* Attach the SCSI Host to the IOC structure
3176 /* set 16 byte cdb's */
3177 sh
->max_cmd_len
= 16;
3179 sh
->max_id
= ioc
->pfacts
[0].PortSCSIID
;
3180 sh
->max_lun
= max_lun
;
3182 sh
->transportt
= mptsas_transport_template
;
3184 sh
->this_id
= ioc
->pfacts
[0].PortSCSIID
;
3188 sh
->unique_id
= ioc
->id
;
3190 INIT_LIST_HEAD(&ioc
->sas_topology
);
3191 mutex_init(&ioc
->sas_topology_mutex
);
3192 mutex_init(&ioc
->sas_discovery_mutex
);
3193 mutex_init(&ioc
->sas_mgmt
.mutex
);
3194 init_completion(&ioc
->sas_mgmt
.done
);
3196 /* Verify that we won't exceed the maximum
3197 * number of chain buffers
3198 * We can optimize: ZZ = req_sz/sizeof(SGE)
3200 * numSGE = 1 + (ZZ-1)*(maxChain -1) + ZZ
3201 * + (req_sz - 64)/sizeof(SGE)
3202 * A slightly different algorithm is required for
3205 scale
= ioc
->req_sz
/(sizeof(dma_addr_t
) + sizeof(u32
));
3206 if (sizeof(dma_addr_t
) == sizeof(u64
)) {
3207 numSGE
= (scale
- 1) *
3208 (ioc
->facts
.MaxChainDepth
-1) + scale
+
3209 (ioc
->req_sz
- 60) / (sizeof(dma_addr_t
) +
3212 numSGE
= 1 + (scale
- 1) *
3213 (ioc
->facts
.MaxChainDepth
-1) + scale
+
3214 (ioc
->req_sz
- 64) / (sizeof(dma_addr_t
) +
3218 if (numSGE
< sh
->sg_tablesize
) {
3219 /* Reset this value */
3220 dprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
3221 "Resetting sg_tablesize to %d from %d\n",
3222 ioc
->name
, numSGE
, sh
->sg_tablesize
));
3223 sh
->sg_tablesize
= numSGE
;
3226 hd
= shost_priv(sh
);
3229 /* SCSI needs scsi_cmnd lookup table!
3230 * (with size equal to req_depth*PtrSz!)
3232 ioc
->ScsiLookup
= kcalloc(ioc
->req_depth
, sizeof(void *), GFP_ATOMIC
);
3233 if (!ioc
->ScsiLookup
) {
3235 spin_unlock_irqrestore(&ioc
->FreeQlock
, flags
);
3236 goto out_mptsas_probe
;
3238 spin_lock_init(&ioc
->scsi_lookup_lock
);
3240 dprintk(ioc
, printk(MYIOC_s_DEBUG_FMT
"ScsiLookup @ %p\n",
3241 ioc
->name
, ioc
->ScsiLookup
));
3243 /* Clear the TM flags
3246 hd
->tmState
= TM_STATE_NONE
;
3247 hd
->resetPending
= 0;
3248 hd
->abortSCpnt
= NULL
;
3250 /* Clear the pointer used to store
3251 * single-threaded commands, i.e., those
3252 * issued during a bus scan, dv and
3253 * configuration pages.
3257 /* Initialize this SCSI Hosts' timers
3258 * To use, set the timer expires field
3261 init_timer(&hd
->timer
);
3262 hd
->timer
.data
= (unsigned long) hd
;
3263 hd
->timer
.function
= mptscsih_timer_expired
;
3265 ioc
->sas_data
.ptClear
= mpt_pt_clear
;
3267 init_waitqueue_head(&hd
->scandv_waitq
);
3268 hd
->scandv_wait_done
= 0;
3269 hd
->last_queue_full
= 0;
3270 INIT_LIST_HEAD(&hd
->target_reset_list
);
3271 spin_unlock_irqrestore(&ioc
->FreeQlock
, flags
);
3273 if (ioc
->sas_data
.ptClear
==1) {
3274 mptbase_sas_persist_operation(
3275 ioc
, MPI_SAS_OP_CLEAR_ALL_PERSISTENT
);
3278 error
= scsi_add_host(sh
, &ioc
->pcidev
->dev
);
3280 dprintk(ioc
, printk(MYIOC_s_ERR_FMT
3281 "scsi_add_host failed\n", ioc
->name
));
3282 goto out_mptsas_probe
;
3285 mptsas_scan_sas_topology(ioc
);
3291 mptscsih_remove(pdev
);
3295 static void __devexit
mptsas_remove(struct pci_dev
*pdev
)
3297 MPT_ADAPTER
*ioc
= pci_get_drvdata(pdev
);
3298 struct mptsas_portinfo
*p
, *n
;
3301 ioc
->sas_discovery_ignore_events
= 1;
3302 sas_remove_host(ioc
->sh
);
3304 mutex_lock(&ioc
->sas_topology_mutex
);
3305 list_for_each_entry_safe(p
, n
, &ioc
->sas_topology
, list
) {
3307 for (i
= 0 ; i
< p
->num_phys
; i
++)
3308 mptsas_port_delete(ioc
, p
->phy_info
[i
].port_details
);
3312 mutex_unlock(&ioc
->sas_topology_mutex
);
3314 mptscsih_remove(pdev
);
3317 static struct pci_device_id mptsas_pci_table
[] = {
3318 { PCI_VENDOR_ID_LSI_LOGIC
, MPI_MANUFACTPAGE_DEVID_SAS1064
,
3319 PCI_ANY_ID
, PCI_ANY_ID
},
3320 { PCI_VENDOR_ID_LSI_LOGIC
, MPI_MANUFACTPAGE_DEVID_SAS1068
,
3321 PCI_ANY_ID
, PCI_ANY_ID
},
3322 { PCI_VENDOR_ID_LSI_LOGIC
, MPI_MANUFACTPAGE_DEVID_SAS1064E
,
3323 PCI_ANY_ID
, PCI_ANY_ID
},
3324 { PCI_VENDOR_ID_LSI_LOGIC
, MPI_MANUFACTPAGE_DEVID_SAS1068E
,
3325 PCI_ANY_ID
, PCI_ANY_ID
},
3326 { PCI_VENDOR_ID_LSI_LOGIC
, MPI_MANUFACTPAGE_DEVID_SAS1078
,
3327 PCI_ANY_ID
, PCI_ANY_ID
},
3328 {0} /* Terminating entry */
3330 MODULE_DEVICE_TABLE(pci
, mptsas_pci_table
);
3333 static struct pci_driver mptsas_driver
= {
3335 .id_table
= mptsas_pci_table
,
3336 .probe
= mptsas_probe
,
3337 .remove
= __devexit_p(mptsas_remove
),
3338 .shutdown
= mptscsih_shutdown
,
3340 .suspend
= mptscsih_suspend
,
3341 .resume
= mptscsih_resume
,
3350 show_mptmod_ver(my_NAME
, my_VERSION
);
3352 mptsas_transport_template
=
3353 sas_attach_transport(&mptsas_transport_functions
);
3354 if (!mptsas_transport_template
)
3357 mptsasDoneCtx
= mpt_register(mptscsih_io_done
, MPTSAS_DRIVER
);
3358 mptsasTaskCtx
= mpt_register(mptsas_taskmgmt_complete
, MPTSAS_DRIVER
);
3360 mpt_register(mptscsih_scandv_complete
, MPTSAS_DRIVER
);
3361 mptsasMgmtCtx
= mpt_register(mptsas_mgmt_done
, MPTSAS_DRIVER
);
3363 mpt_event_register(mptsasDoneCtx
, mptsas_event_process
);
3364 mpt_reset_register(mptsasDoneCtx
, mptsas_ioc_reset
);
3366 error
= pci_register_driver(&mptsas_driver
);
3368 sas_release_transport(mptsas_transport_template
);
3376 pci_unregister_driver(&mptsas_driver
);
3377 sas_release_transport(mptsas_transport_template
);
3379 mpt_reset_deregister(mptsasDoneCtx
);
3380 mpt_event_deregister(mptsasDoneCtx
);
3382 mpt_deregister(mptsasMgmtCtx
);
3383 mpt_deregister(mptsasInternalCtx
);
3384 mpt_deregister(mptsasTaskCtx
);
3385 mpt_deregister(mptsasDoneCtx
);
3388 module_init(mptsas_init
);
3389 module_exit(mptsas_exit
);