2 * Copyright (c) 2009, Microsoft Corporation.
4 * This program is free software; you can redistribute it and/or modify it
5 * under the terms and conditions of the GNU General Public License,
6 * version 2, as published by the Free Software Foundation.
8 * This program is distributed in the hope it will be useful, but WITHOUT
9 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
10 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
13 * You should have received a copy of the GNU General Public License along with
14 * this program; if not, write to the Free Software Foundation, Inc., 59 Temple
15 * Place - Suite 330, Boston, MA 02111-1307 USA.
18 * Haiyang Zhang <haiyangz@microsoft.com>
19 * Hank Janssen <hjanssen@microsoft.com>
20 * K. Y. Srinivasan <kys@microsoft.com>
23 #include <linux/kernel.h>
24 #include <linux/wait.h>
25 #include <linux/sched.h>
26 #include <linux/completion.h>
27 #include <linux/string.h>
29 #include <linux/delay.h>
30 #include <linux/init.h>
31 #include <linux/slab.h>
32 #include <linux/module.h>
33 #include <linux/device.h>
34 #include <linux/hyperv.h>
35 #include <linux/mempool.h>
36 #include <linux/blkdev.h>
37 #include <scsi/scsi.h>
38 #include <scsi/scsi_cmnd.h>
39 #include <scsi/scsi_host.h>
40 #include <scsi/scsi_device.h>
41 #include <scsi/scsi_tcq.h>
42 #include <scsi/scsi_eh.h>
43 #include <scsi/scsi_devinfo.h>
44 #include <scsi/scsi_dbg.h>
47 * All wire protocol details (storage protocol between the guest and the host)
48 * are consolidated here.
50 * Begin protocol definitions.
56 * V1 RC < 2008/1/31: 1.0
57 * V1 RC > 2008/1/31: 2.0
63 #define VMSTOR_WIN7_MAJOR 4
64 #define VMSTOR_WIN7_MINOR 2
66 #define VMSTOR_WIN8_MAJOR 5
67 #define VMSTOR_WIN8_MINOR 1
70 /* Packet structure describing virtual storage requests. */
71 enum vstor_packet_operation
{
72 VSTOR_OPERATION_COMPLETE_IO
= 1,
73 VSTOR_OPERATION_REMOVE_DEVICE
= 2,
74 VSTOR_OPERATION_EXECUTE_SRB
= 3,
75 VSTOR_OPERATION_RESET_LUN
= 4,
76 VSTOR_OPERATION_RESET_ADAPTER
= 5,
77 VSTOR_OPERATION_RESET_BUS
= 6,
78 VSTOR_OPERATION_BEGIN_INITIALIZATION
= 7,
79 VSTOR_OPERATION_END_INITIALIZATION
= 8,
80 VSTOR_OPERATION_QUERY_PROTOCOL_VERSION
= 9,
81 VSTOR_OPERATION_QUERY_PROPERTIES
= 10,
82 VSTOR_OPERATION_ENUMERATE_BUS
= 11,
83 VSTOR_OPERATION_FCHBA_DATA
= 12,
84 VSTOR_OPERATION_CREATE_SUB_CHANNELS
= 13,
85 VSTOR_OPERATION_MAXIMUM
= 13
89 * WWN packet for Fibre Channel HBA
92 struct hv_fc_wwn_packet
{
96 u8 primary_port_wwn
[8];
97 u8 primary_node_wwn
[8];
98 u8 secondary_port_wwn
[8];
99 u8 secondary_node_wwn
[8];
108 #define SRB_FLAGS_QUEUE_ACTION_ENABLE 0x00000002
109 #define SRB_FLAGS_DISABLE_DISCONNECT 0x00000004
110 #define SRB_FLAGS_DISABLE_SYNCH_TRANSFER 0x00000008
111 #define SRB_FLAGS_BYPASS_FROZEN_QUEUE 0x00000010
112 #define SRB_FLAGS_DISABLE_AUTOSENSE 0x00000020
113 #define SRB_FLAGS_DATA_IN 0x00000040
114 #define SRB_FLAGS_DATA_OUT 0x00000080
115 #define SRB_FLAGS_NO_DATA_TRANSFER 0x00000000
116 #define SRB_FLAGS_UNSPECIFIED_DIRECTION (SRB_FLAGS_DATA_IN | SRB_FLAGS_DATA_OUT)
117 #define SRB_FLAGS_NO_QUEUE_FREEZE 0x00000100
118 #define SRB_FLAGS_ADAPTER_CACHE_ENABLE 0x00000200
119 #define SRB_FLAGS_FREE_SENSE_BUFFER 0x00000400
122 * This flag indicates the request is part of the workflow for processing a D3.
124 #define SRB_FLAGS_D3_PROCESSING 0x00000800
125 #define SRB_FLAGS_IS_ACTIVE 0x00010000
126 #define SRB_FLAGS_ALLOCATED_FROM_ZONE 0x00020000
127 #define SRB_FLAGS_SGLIST_FROM_POOL 0x00040000
128 #define SRB_FLAGS_BYPASS_LOCKED_QUEUE 0x00080000
129 #define SRB_FLAGS_NO_KEEP_AWAKE 0x00100000
130 #define SRB_FLAGS_PORT_DRIVER_ALLOCSENSE 0x00200000
131 #define SRB_FLAGS_PORT_DRIVER_SENSEHASPORT 0x00400000
132 #define SRB_FLAGS_DONT_START_NEXT_PACKET 0x00800000
133 #define SRB_FLAGS_PORT_DRIVER_RESERVED 0x0F000000
134 #define SRB_FLAGS_CLASS_DRIVER_RESERVED 0xF0000000
138 * Platform neutral description of a scsi request -
139 * this remains the same across the write regardless of 32/64 bit
140 * note: it's patterned off the SCSI_PASS_THROUGH structure
142 #define STORVSC_MAX_CMD_LEN 0x10
144 #define POST_WIN7_STORVSC_SENSE_BUFFER_SIZE 0x14
145 #define PRE_WIN8_STORVSC_SENSE_BUFFER_SIZE 0x12
147 #define STORVSC_SENSE_BUFFER_SIZE 0x14
148 #define STORVSC_MAX_BUF_LEN_WITH_PADDING 0x14
151 * Sense buffer size changed in win8; have a run-time
152 * variable to track the size we should use.
154 static int sense_buffer_size
;
157 * The size of the vmscsi_request has changed in win8. The
158 * additional size is because of new elements added to the
159 * structure. These elements are valid only when we are talking
161 * Track the correction to size we need to apply.
164 static int vmscsi_size_delta
;
165 static int vmstor_current_major
;
166 static int vmstor_current_minor
;
168 struct vmscsi_win8_extension
{
170 * The following were added in Windows 8
180 struct vmscsi_request
{
191 u8 sense_info_length
;
195 u32 data_transfer_length
;
198 u8 cdb
[STORVSC_MAX_CMD_LEN
];
199 u8 sense_data
[STORVSC_SENSE_BUFFER_SIZE
];
200 u8 reserved_array
[STORVSC_MAX_BUF_LEN_WITH_PADDING
];
203 * The following was added in win8.
205 struct vmscsi_win8_extension win8_extension
;
207 } __attribute((packed
));
211 * This structure is sent during the intialization phase to get the different
212 * properties of the channel.
215 #define STORAGE_CHANNEL_SUPPORTS_MULTI_CHANNEL 0x1
217 struct vmstorage_channel_properties
{
223 u32 max_transfer_bytes
;
228 /* This structure is sent during the storage protocol negotiations. */
229 struct vmstorage_protocol_version
{
230 /* Major (MSW) and minor (LSW) version numbers. */
234 * Revision number is auto-incremented whenever this file is changed
235 * (See FILL_VMSTOR_REVISION macro above). Mismatch does not
236 * definitely indicate incompatibility--but it does indicate mismatched
238 * This is only used on the windows side. Just set it to 0.
243 /* Channel Property Flags */
244 #define STORAGE_CHANNEL_REMOVABLE_FLAG 0x1
245 #define STORAGE_CHANNEL_EMULATED_IDE_FLAG 0x2
247 struct vstor_packet
{
248 /* Requested operation type */
249 enum vstor_packet_operation operation
;
251 /* Flags - see below for values */
254 /* Status of the request returned from the server side. */
257 /* Data payload area */
260 * Structure used to forward SCSI commands from the
261 * client to the server.
263 struct vmscsi_request vm_srb
;
265 /* Structure used to query channel properties. */
266 struct vmstorage_channel_properties storage_channel_properties
;
268 /* Used during version negotiations. */
269 struct vmstorage_protocol_version version
;
271 /* Fibre channel address packet */
272 struct hv_fc_wwn_packet wwn_packet
;
274 /* Number of sub-channels to create */
275 u16 sub_channel_count
;
277 /* This will be the maximum of the union members */
285 * This flag indicates that the server should send back a completion for this
289 #define REQUEST_COMPLETION_FLAG 0x1
291 /* Matches Windows-end */
292 enum storvsc_request_type
{
299 * SRB status codes and masks; a subset of the codes used here.
302 #define SRB_STATUS_AUTOSENSE_VALID 0x80
303 #define SRB_STATUS_INVALID_LUN 0x20
304 #define SRB_STATUS_SUCCESS 0x01
305 #define SRB_STATUS_ABORTED 0x02
306 #define SRB_STATUS_ERROR 0x04
309 * This is the end of Protocol specific defines.
314 * We setup a mempool to allocate request structures for this driver
315 * on a per-lun basis. The following define specifies the number of
316 * elements in the pool.
319 #define STORVSC_MIN_BUF_NR 64
320 static int storvsc_ringbuffer_size
= (20 * PAGE_SIZE
);
322 module_param(storvsc_ringbuffer_size
, int, S_IRUGO
);
323 MODULE_PARM_DESC(storvsc_ringbuffer_size
, "Ring buffer size (bytes)");
326 * Timeout in seconds for all devices managed by this driver.
328 static int storvsc_timeout
= 180;
330 #define STORVSC_MAX_IO_REQUESTS 200
332 static void storvsc_on_channel_callback(void *context
);
334 #define STORVSC_MAX_LUNS_PER_TARGET 255
335 #define STORVSC_MAX_TARGETS 2
336 #define STORVSC_MAX_CHANNELS 8
338 #define STORVSC_FC_MAX_LUNS_PER_TARGET 255
339 #define STORVSC_FC_MAX_TARGETS 128
340 #define STORVSC_FC_MAX_CHANNELS 8
342 #define STORVSC_IDE_MAX_LUNS_PER_TARGET 64
343 #define STORVSC_IDE_MAX_TARGETS 1
344 #define STORVSC_IDE_MAX_CHANNELS 1
346 struct storvsc_cmd_request
{
347 struct list_head entry
;
348 struct scsi_cmnd
*cmd
;
350 unsigned int bounce_sgl_count
;
351 struct scatterlist
*bounce_sgl
;
353 struct hv_device
*device
;
355 /* Synchronize the request/response if needed */
356 struct completion wait_event
;
358 unsigned char *sense_buffer
;
359 struct hv_multipage_buffer data_buffer
;
360 struct vstor_packet vstor_packet
;
364 /* A storvsc device is a device object that contains a vmbus channel */
365 struct storvsc_device
{
366 struct hv_device
*device
;
370 bool open_sub_channel
;
371 atomic_t num_outstanding_req
;
372 struct Scsi_Host
*host
;
374 wait_queue_head_t waiting_to_drain
;
377 * Each unique Port/Path/Target represents 1 channel ie scsi
378 * controller. In reality, the pathid, targetid is always 0
379 * and the port is set by us
381 unsigned int port_number
;
382 unsigned char path_id
;
383 unsigned char target_id
;
385 /* Used for vsc/vsp channel reset process */
386 struct storvsc_cmd_request init_request
;
387 struct storvsc_cmd_request reset_request
;
390 struct stor_mem_pools
{
391 struct kmem_cache
*request_pool
;
392 mempool_t
*request_mempool
;
395 struct hv_host_device
{
396 struct hv_device
*dev
;
399 unsigned char target
;
402 struct storvsc_scan_work
{
403 struct work_struct work
;
404 struct Scsi_Host
*host
;
408 static void storvsc_device_scan(struct work_struct
*work
)
410 struct storvsc_scan_work
*wrk
;
412 struct scsi_device
*sdev
;
414 wrk
= container_of(work
, struct storvsc_scan_work
, work
);
417 sdev
= scsi_device_lookup(wrk
->host
, 0, 0, lun
);
420 scsi_rescan_device(&sdev
->sdev_gendev
);
421 scsi_device_put(sdev
);
427 static void storvsc_bus_scan(struct work_struct
*work
)
429 struct storvsc_scan_work
*wrk
;
432 wrk
= container_of(work
, struct storvsc_scan_work
, work
);
433 for (id
= 0; id
< wrk
->host
->max_id
; ++id
) {
434 if (wrk
->host
->reverse_ordering
)
435 order_id
= wrk
->host
->max_id
- id
- 1;
439 scsi_scan_target(&wrk
->host
->shost_gendev
, 0,
440 order_id
, SCAN_WILD_CARD
, 1);
445 static void storvsc_remove_lun(struct work_struct
*work
)
447 struct storvsc_scan_work
*wrk
;
448 struct scsi_device
*sdev
;
450 wrk
= container_of(work
, struct storvsc_scan_work
, work
);
451 if (!scsi_host_get(wrk
->host
))
454 sdev
= scsi_device_lookup(wrk
->host
, 0, 0, wrk
->lun
);
457 scsi_remove_device(sdev
);
458 scsi_device_put(sdev
);
460 scsi_host_put(wrk
->host
);
467 * Major/minor macros. Minor version is in LSB, meaning that earlier flat
468 * version numbers will be interpreted as "0.x" (i.e., 1 becomes 0.1).
471 static inline u16
storvsc_get_version(u8 major
, u8 minor
)
475 version
= ((major
<< 8) | minor
);
480 * We can get incoming messages from the host that are not in response to
481 * messages that we have sent out. An example of this would be messages
482 * received by the guest to notify dynamic addition/removal of LUNs. To
483 * deal with potential race conditions where the driver may be in the
484 * midst of being unloaded when we might receive an unsolicited message
485 * from the host, we have implemented a mechanism to gurantee sequential
488 * 1) Once the device is marked as being destroyed, we will fail all
490 * 2) We permit incoming messages when the device is being destroyed,
491 * only to properly account for messages already sent out.
494 static inline struct storvsc_device
*get_out_stor_device(
495 struct hv_device
*device
)
497 struct storvsc_device
*stor_device
;
499 stor_device
= hv_get_drvdata(device
);
501 if (stor_device
&& stor_device
->destroy
)
508 static inline void storvsc_wait_to_drain(struct storvsc_device
*dev
)
510 dev
->drain_notify
= true;
511 wait_event(dev
->waiting_to_drain
,
512 atomic_read(&dev
->num_outstanding_req
) == 0);
513 dev
->drain_notify
= false;
516 static inline struct storvsc_device
*get_in_stor_device(
517 struct hv_device
*device
)
519 struct storvsc_device
*stor_device
;
521 stor_device
= hv_get_drvdata(device
);
527 * If the device is being destroyed; allow incoming
528 * traffic only to cleanup outstanding requests.
531 if (stor_device
->destroy
&&
532 (atomic_read(&stor_device
->num_outstanding_req
) == 0))
540 static void destroy_bounce_buffer(struct scatterlist
*sgl
,
541 unsigned int sg_count
)
544 struct page
*page_buf
;
546 for (i
= 0; i
< sg_count
; i
++) {
547 page_buf
= sg_page((&sgl
[i
]));
548 if (page_buf
!= NULL
)
549 __free_page(page_buf
);
555 static int do_bounce_buffer(struct scatterlist
*sgl
, unsigned int sg_count
)
559 /* No need to check */
563 /* We have at least 2 sg entries */
564 for (i
= 0; i
< sg_count
; i
++) {
566 /* make sure 1st one does not have hole */
567 if (sgl
[i
].offset
+ sgl
[i
].length
!= PAGE_SIZE
)
569 } else if (i
== sg_count
- 1) {
570 /* make sure last one does not have hole */
571 if (sgl
[i
].offset
!= 0)
574 /* make sure no hole in the middle */
575 if (sgl
[i
].length
!= PAGE_SIZE
|| sgl
[i
].offset
!= 0)
582 static struct scatterlist
*create_bounce_buffer(struct scatterlist
*sgl
,
583 unsigned int sg_count
,
589 struct scatterlist
*bounce_sgl
;
590 struct page
*page_buf
;
591 unsigned int buf_len
= ((write
== WRITE_TYPE
) ? 0 : PAGE_SIZE
);
593 num_pages
= ALIGN(len
, PAGE_SIZE
) >> PAGE_SHIFT
;
595 bounce_sgl
= kcalloc(num_pages
, sizeof(struct scatterlist
), GFP_ATOMIC
);
599 sg_init_table(bounce_sgl
, num_pages
);
600 for (i
= 0; i
< num_pages
; i
++) {
601 page_buf
= alloc_page(GFP_ATOMIC
);
604 sg_set_page(&bounce_sgl
[i
], page_buf
, buf_len
, 0);
610 destroy_bounce_buffer(bounce_sgl
, num_pages
);
614 /* Disgusting wrapper functions */
615 static inline unsigned long sg_kmap_atomic(struct scatterlist
*sgl
, int idx
)
617 void *addr
= kmap_atomic(sg_page(sgl
+ idx
));
618 return (unsigned long)addr
;
621 static inline void sg_kunmap_atomic(unsigned long addr
)
623 kunmap_atomic((void *)addr
);
627 /* Assume the original sgl has enough room */
628 static unsigned int copy_from_bounce_buffer(struct scatterlist
*orig_sgl
,
629 struct scatterlist
*bounce_sgl
,
630 unsigned int orig_sgl_count
,
631 unsigned int bounce_sgl_count
)
635 unsigned long src
, dest
;
636 unsigned int srclen
, destlen
, copylen
;
637 unsigned int total_copied
= 0;
638 unsigned long bounce_addr
= 0;
639 unsigned long dest_addr
= 0;
642 local_irq_save(flags
);
644 for (i
= 0; i
< orig_sgl_count
; i
++) {
645 dest_addr
= sg_kmap_atomic(orig_sgl
,i
) + orig_sgl
[i
].offset
;
647 destlen
= orig_sgl
[i
].length
;
649 if (bounce_addr
== 0)
650 bounce_addr
= sg_kmap_atomic(bounce_sgl
,j
);
653 src
= bounce_addr
+ bounce_sgl
[j
].offset
;
654 srclen
= bounce_sgl
[j
].length
- bounce_sgl
[j
].offset
;
656 copylen
= min(srclen
, destlen
);
657 memcpy((void *)dest
, (void *)src
, copylen
);
659 total_copied
+= copylen
;
660 bounce_sgl
[j
].offset
+= copylen
;
664 if (bounce_sgl
[j
].offset
== bounce_sgl
[j
].length
) {
666 sg_kunmap_atomic(bounce_addr
);
670 * It is possible that the number of elements
671 * in the bounce buffer may not be equal to
672 * the number of elements in the original
673 * scatter list. Handle this correctly.
676 if (j
== bounce_sgl_count
) {
678 * We are done; cleanup and return.
680 sg_kunmap_atomic(dest_addr
- orig_sgl
[i
].offset
);
681 local_irq_restore(flags
);
685 /* if we need to use another bounce buffer */
686 if (destlen
|| i
!= orig_sgl_count
- 1)
687 bounce_addr
= sg_kmap_atomic(bounce_sgl
,j
);
688 } else if (destlen
== 0 && i
== orig_sgl_count
- 1) {
689 /* unmap the last bounce that is < PAGE_SIZE */
690 sg_kunmap_atomic(bounce_addr
);
694 sg_kunmap_atomic(dest_addr
- orig_sgl
[i
].offset
);
697 local_irq_restore(flags
);
702 /* Assume the bounce_sgl has enough room ie using the create_bounce_buffer() */
703 static unsigned int copy_to_bounce_buffer(struct scatterlist
*orig_sgl
,
704 struct scatterlist
*bounce_sgl
,
705 unsigned int orig_sgl_count
)
709 unsigned long src
, dest
;
710 unsigned int srclen
, destlen
, copylen
;
711 unsigned int total_copied
= 0;
712 unsigned long bounce_addr
= 0;
713 unsigned long src_addr
= 0;
716 local_irq_save(flags
);
718 for (i
= 0; i
< orig_sgl_count
; i
++) {
719 src_addr
= sg_kmap_atomic(orig_sgl
,i
) + orig_sgl
[i
].offset
;
721 srclen
= orig_sgl
[i
].length
;
723 if (bounce_addr
== 0)
724 bounce_addr
= sg_kmap_atomic(bounce_sgl
,j
);
727 /* assume bounce offset always == 0 */
728 dest
= bounce_addr
+ bounce_sgl
[j
].length
;
729 destlen
= PAGE_SIZE
- bounce_sgl
[j
].length
;
731 copylen
= min(srclen
, destlen
);
732 memcpy((void *)dest
, (void *)src
, copylen
);
734 total_copied
+= copylen
;
735 bounce_sgl
[j
].length
+= copylen
;
739 if (bounce_sgl
[j
].length
== PAGE_SIZE
) {
740 /* full..move to next entry */
741 sg_kunmap_atomic(bounce_addr
);
746 /* if we need to use another bounce buffer */
747 if (srclen
&& bounce_addr
== 0)
748 bounce_addr
= sg_kmap_atomic(bounce_sgl
, j
);
752 sg_kunmap_atomic(src_addr
- orig_sgl
[i
].offset
);
756 sg_kunmap_atomic(bounce_addr
);
758 local_irq_restore(flags
);
763 static void handle_sc_creation(struct vmbus_channel
*new_sc
)
765 struct hv_device
*device
= new_sc
->primary_channel
->device_obj
;
766 struct storvsc_device
*stor_device
;
767 struct vmstorage_channel_properties props
;
769 stor_device
= get_out_stor_device(device
);
773 if (stor_device
->open_sub_channel
== false)
776 memset(&props
, 0, sizeof(struct vmstorage_channel_properties
));
779 storvsc_ringbuffer_size
,
780 storvsc_ringbuffer_size
,
782 sizeof(struct vmstorage_channel_properties
),
783 storvsc_on_channel_callback
, new_sc
);
786 static void handle_multichannel_storage(struct hv_device
*device
, int max_chns
)
788 struct storvsc_device
*stor_device
;
789 int num_cpus
= num_online_cpus();
791 struct storvsc_cmd_request
*request
;
792 struct vstor_packet
*vstor_packet
;
795 num_sc
= ((max_chns
> num_cpus
) ? num_cpus
: max_chns
);
796 stor_device
= get_out_stor_device(device
);
800 request
= &stor_device
->init_request
;
801 vstor_packet
= &request
->vstor_packet
;
803 stor_device
->open_sub_channel
= true;
805 * Establish a handler for dealing with subchannels.
807 vmbus_set_sc_create_callback(device
->channel
, handle_sc_creation
);
810 * Check to see if sub-channels have already been created. This
811 * can happen when this driver is re-loaded after unloading.
814 if (vmbus_are_subchannels_present(device
->channel
))
817 stor_device
->open_sub_channel
= false;
819 * Request the host to create sub-channels.
821 memset(request
, 0, sizeof(struct storvsc_cmd_request
));
822 init_completion(&request
->wait_event
);
823 vstor_packet
->operation
= VSTOR_OPERATION_CREATE_SUB_CHANNELS
;
824 vstor_packet
->flags
= REQUEST_COMPLETION_FLAG
;
825 vstor_packet
->sub_channel_count
= num_sc
;
827 ret
= vmbus_sendpacket(device
->channel
, vstor_packet
,
828 (sizeof(struct vstor_packet
) -
830 (unsigned long)request
,
832 VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED
);
837 t
= wait_for_completion_timeout(&request
->wait_event
, 10*HZ
);
841 if (vstor_packet
->operation
!= VSTOR_OPERATION_COMPLETE_IO
||
842 vstor_packet
->status
!= 0)
846 * Now that we created the sub-channels, invoke the check; this
847 * may trigger the callback.
849 stor_device
->open_sub_channel
= true;
850 vmbus_are_subchannels_present(device
->channel
);
853 static int storvsc_channel_init(struct hv_device
*device
)
855 struct storvsc_device
*stor_device
;
856 struct storvsc_cmd_request
*request
;
857 struct vstor_packet
*vstor_packet
;
860 bool process_sub_channels
= false;
862 stor_device
= get_out_stor_device(device
);
866 request
= &stor_device
->init_request
;
867 vstor_packet
= &request
->vstor_packet
;
870 * Now, initiate the vsc/vsp initialization protocol on the open
873 memset(request
, 0, sizeof(struct storvsc_cmd_request
));
874 init_completion(&request
->wait_event
);
875 vstor_packet
->operation
= VSTOR_OPERATION_BEGIN_INITIALIZATION
;
876 vstor_packet
->flags
= REQUEST_COMPLETION_FLAG
;
878 ret
= vmbus_sendpacket(device
->channel
, vstor_packet
,
879 (sizeof(struct vstor_packet
) -
881 (unsigned long)request
,
883 VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED
);
887 t
= wait_for_completion_timeout(&request
->wait_event
, 5*HZ
);
893 if (vstor_packet
->operation
!= VSTOR_OPERATION_COMPLETE_IO
||
894 vstor_packet
->status
!= 0)
898 /* reuse the packet for version range supported */
899 memset(vstor_packet
, 0, sizeof(struct vstor_packet
));
900 vstor_packet
->operation
= VSTOR_OPERATION_QUERY_PROTOCOL_VERSION
;
901 vstor_packet
->flags
= REQUEST_COMPLETION_FLAG
;
903 vstor_packet
->version
.major_minor
=
904 storvsc_get_version(vmstor_current_major
, vmstor_current_minor
);
907 * The revision number is only used in Windows; set it to 0.
909 vstor_packet
->version
.revision
= 0;
911 ret
= vmbus_sendpacket(device
->channel
, vstor_packet
,
912 (sizeof(struct vstor_packet
) -
914 (unsigned long)request
,
916 VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED
);
920 t
= wait_for_completion_timeout(&request
->wait_event
, 5*HZ
);
926 if (vstor_packet
->operation
!= VSTOR_OPERATION_COMPLETE_IO
||
927 vstor_packet
->status
!= 0)
931 memset(vstor_packet
, 0, sizeof(struct vstor_packet
));
932 vstor_packet
->operation
= VSTOR_OPERATION_QUERY_PROPERTIES
;
933 vstor_packet
->flags
= REQUEST_COMPLETION_FLAG
;
935 ret
= vmbus_sendpacket(device
->channel
, vstor_packet
,
936 (sizeof(struct vstor_packet
) -
938 (unsigned long)request
,
940 VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED
);
945 t
= wait_for_completion_timeout(&request
->wait_event
, 5*HZ
);
951 if (vstor_packet
->operation
!= VSTOR_OPERATION_COMPLETE_IO
||
952 vstor_packet
->status
!= 0)
956 * Check to see if multi-channel support is there.
957 * Hosts that implement protocol version of 5.1 and above
958 * support multi-channel.
960 max_chns
= vstor_packet
->storage_channel_properties
.max_channel_cnt
;
961 if ((vmbus_proto_version
!= VERSION_WIN7
) &&
962 (vmbus_proto_version
!= VERSION_WS2008
)) {
963 if (vstor_packet
->storage_channel_properties
.flags
&
964 STORAGE_CHANNEL_SUPPORTS_MULTI_CHANNEL
)
965 process_sub_channels
= true;
968 memset(vstor_packet
, 0, sizeof(struct vstor_packet
));
969 vstor_packet
->operation
= VSTOR_OPERATION_END_INITIALIZATION
;
970 vstor_packet
->flags
= REQUEST_COMPLETION_FLAG
;
972 ret
= vmbus_sendpacket(device
->channel
, vstor_packet
,
973 (sizeof(struct vstor_packet
) -
975 (unsigned long)request
,
977 VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED
);
982 t
= wait_for_completion_timeout(&request
->wait_event
, 5*HZ
);
988 if (vstor_packet
->operation
!= VSTOR_OPERATION_COMPLETE_IO
||
989 vstor_packet
->status
!= 0)
992 if (process_sub_channels
)
993 handle_multichannel_storage(device
, max_chns
);
1000 static void storvsc_handle_error(struct vmscsi_request
*vm_srb
,
1001 struct scsi_cmnd
*scmnd
,
1002 struct Scsi_Host
*host
,
1005 struct storvsc_scan_work
*wrk
;
1006 void (*process_err_fn
)(struct work_struct
*work
);
1007 bool do_work
= false;
1009 switch (vm_srb
->srb_status
) {
1010 case SRB_STATUS_ERROR
:
1012 * If there is an error; offline the device since all
1013 * error recovery strategies would have already been
1014 * deployed on the host side. However, if the command
1015 * were a pass-through command deal with it appropriately.
1017 switch (scmnd
->cmnd
[0]) {
1020 set_host_byte(scmnd
, DID_PASSTHROUGH
);
1023 * On Some Windows hosts TEST_UNIT_READY command can return
1024 * SRB_STATUS_ERROR, let the upper level code deal with it
1025 * based on the sense information.
1027 case TEST_UNIT_READY
:
1030 set_host_byte(scmnd
, DID_TARGET_FAILURE
);
1033 case SRB_STATUS_INVALID_LUN
:
1035 process_err_fn
= storvsc_remove_lun
;
1037 case (SRB_STATUS_ABORTED
| SRB_STATUS_AUTOSENSE_VALID
):
1038 if ((asc
== 0x2a) && (ascq
== 0x9)) {
1040 process_err_fn
= storvsc_device_scan
;
1042 * Retry the I/O that trigerred this.
1044 set_host_byte(scmnd
, DID_REQUEUE
);
1053 * We need to schedule work to process this error; schedule it.
1055 wrk
= kmalloc(sizeof(struct storvsc_scan_work
), GFP_ATOMIC
);
1057 set_host_byte(scmnd
, DID_TARGET_FAILURE
);
1062 wrk
->lun
= vm_srb
->lun
;
1063 INIT_WORK(&wrk
->work
, process_err_fn
);
1064 schedule_work(&wrk
->work
);
1068 static void storvsc_command_completion(struct storvsc_cmd_request
*cmd_request
)
1070 struct scsi_cmnd
*scmnd
= cmd_request
->cmd
;
1071 struct hv_host_device
*host_dev
= shost_priv(scmnd
->device
->host
);
1072 void (*scsi_done_fn
)(struct scsi_cmnd
*);
1073 struct scsi_sense_hdr sense_hdr
;
1074 struct vmscsi_request
*vm_srb
;
1075 struct stor_mem_pools
*memp
= scmnd
->device
->hostdata
;
1076 struct Scsi_Host
*host
;
1077 struct storvsc_device
*stor_dev
;
1078 struct hv_device
*dev
= host_dev
->dev
;
1080 stor_dev
= get_in_stor_device(dev
);
1081 host
= stor_dev
->host
;
1083 vm_srb
= &cmd_request
->vstor_packet
.vm_srb
;
1084 if (cmd_request
->bounce_sgl_count
) {
1085 if (vm_srb
->data_in
== READ_TYPE
)
1086 copy_from_bounce_buffer(scsi_sglist(scmnd
),
1087 cmd_request
->bounce_sgl
,
1088 scsi_sg_count(scmnd
),
1089 cmd_request
->bounce_sgl_count
);
1090 destroy_bounce_buffer(cmd_request
->bounce_sgl
,
1091 cmd_request
->bounce_sgl_count
);
1094 scmnd
->result
= vm_srb
->scsi_status
;
1096 if (scmnd
->result
) {
1097 if (scsi_normalize_sense(scmnd
->sense_buffer
,
1098 SCSI_SENSE_BUFFERSIZE
, &sense_hdr
))
1099 scsi_print_sense_hdr("storvsc", &sense_hdr
);
1102 if (vm_srb
->srb_status
!= SRB_STATUS_SUCCESS
)
1103 storvsc_handle_error(vm_srb
, scmnd
, host
, sense_hdr
.asc
,
1106 scsi_set_resid(scmnd
,
1107 cmd_request
->data_buffer
.len
-
1108 vm_srb
->data_transfer_length
);
1110 scsi_done_fn
= scmnd
->scsi_done
;
1112 scmnd
->host_scribble
= NULL
;
1113 scmnd
->scsi_done
= NULL
;
1115 scsi_done_fn(scmnd
);
1117 mempool_free(cmd_request
, memp
->request_mempool
);
1120 static void storvsc_on_io_completion(struct hv_device
*device
,
1121 struct vstor_packet
*vstor_packet
,
1122 struct storvsc_cmd_request
*request
)
1124 struct storvsc_device
*stor_device
;
1125 struct vstor_packet
*stor_pkt
;
1127 stor_device
= hv_get_drvdata(device
);
1128 stor_pkt
= &request
->vstor_packet
;
1131 * The current SCSI handling on the host side does
1132 * not correctly handle:
1133 * INQUIRY command with page code parameter set to 0x80
1134 * MODE_SENSE command with cmd[2] == 0x1c
1136 * Setup srb and scsi status so this won't be fatal.
1137 * We do this so we can distinguish truly fatal failues
1138 * (srb status == 0x4) and off-line the device in that case.
1141 if ((stor_pkt
->vm_srb
.cdb
[0] == INQUIRY
) ||
1142 (stor_pkt
->vm_srb
.cdb
[0] == MODE_SENSE
)) {
1143 vstor_packet
->vm_srb
.scsi_status
= 0;
1144 vstor_packet
->vm_srb
.srb_status
= SRB_STATUS_SUCCESS
;
1148 /* Copy over the status...etc */
1149 stor_pkt
->vm_srb
.scsi_status
= vstor_packet
->vm_srb
.scsi_status
;
1150 stor_pkt
->vm_srb
.srb_status
= vstor_packet
->vm_srb
.srb_status
;
1151 stor_pkt
->vm_srb
.sense_info_length
=
1152 vstor_packet
->vm_srb
.sense_info_length
;
1154 if (vstor_packet
->vm_srb
.scsi_status
!= 0 ||
1155 vstor_packet
->vm_srb
.srb_status
!= SRB_STATUS_SUCCESS
){
1156 dev_warn(&device
->device
,
1157 "cmd 0x%x scsi status 0x%x srb status 0x%x\n",
1158 stor_pkt
->vm_srb
.cdb
[0],
1159 vstor_packet
->vm_srb
.scsi_status
,
1160 vstor_packet
->vm_srb
.srb_status
);
1163 if ((vstor_packet
->vm_srb
.scsi_status
& 0xFF) == 0x02) {
1164 /* CHECK_CONDITION */
1165 if (vstor_packet
->vm_srb
.srb_status
&
1166 SRB_STATUS_AUTOSENSE_VALID
) {
1167 /* autosense data available */
1168 dev_warn(&device
->device
,
1169 "stor pkt %p autosense data valid - len %d\n",
1171 vstor_packet
->vm_srb
.sense_info_length
);
1173 memcpy(request
->sense_buffer
,
1174 vstor_packet
->vm_srb
.sense_data
,
1175 vstor_packet
->vm_srb
.sense_info_length
);
1180 stor_pkt
->vm_srb
.data_transfer_length
=
1181 vstor_packet
->vm_srb
.data_transfer_length
;
1183 storvsc_command_completion(request
);
1185 if (atomic_dec_and_test(&stor_device
->num_outstanding_req
) &&
1186 stor_device
->drain_notify
)
1187 wake_up(&stor_device
->waiting_to_drain
);
1192 static void storvsc_on_receive(struct hv_device
*device
,
1193 struct vstor_packet
*vstor_packet
,
1194 struct storvsc_cmd_request
*request
)
1196 struct storvsc_scan_work
*work
;
1197 struct storvsc_device
*stor_device
;
1199 switch (vstor_packet
->operation
) {
1200 case VSTOR_OPERATION_COMPLETE_IO
:
1201 storvsc_on_io_completion(device
, vstor_packet
, request
);
1204 case VSTOR_OPERATION_REMOVE_DEVICE
:
1205 case VSTOR_OPERATION_ENUMERATE_BUS
:
1206 stor_device
= get_in_stor_device(device
);
1207 work
= kmalloc(sizeof(struct storvsc_scan_work
), GFP_ATOMIC
);
1211 INIT_WORK(&work
->work
, storvsc_bus_scan
);
1212 work
->host
= stor_device
->host
;
1213 schedule_work(&work
->work
);
1221 static void storvsc_on_channel_callback(void *context
)
1223 struct vmbus_channel
*channel
= (struct vmbus_channel
*)context
;
1224 struct hv_device
*device
;
1225 struct storvsc_device
*stor_device
;
1228 unsigned char packet
[ALIGN(sizeof(struct vstor_packet
), 8)];
1229 struct storvsc_cmd_request
*request
;
1232 if (channel
->primary_channel
!= NULL
)
1233 device
= channel
->primary_channel
->device_obj
;
1235 device
= channel
->device_obj
;
1237 stor_device
= get_in_stor_device(device
);
1242 ret
= vmbus_recvpacket(channel
, packet
,
1243 ALIGN((sizeof(struct vstor_packet
) -
1244 vmscsi_size_delta
), 8),
1245 &bytes_recvd
, &request_id
);
1246 if (ret
== 0 && bytes_recvd
> 0) {
1248 request
= (struct storvsc_cmd_request
*)
1249 (unsigned long)request_id
;
1251 if ((request
== &stor_device
->init_request
) ||
1252 (request
== &stor_device
->reset_request
)) {
1254 memcpy(&request
->vstor_packet
, packet
,
1255 (sizeof(struct vstor_packet
) -
1256 vmscsi_size_delta
));
1257 complete(&request
->wait_event
);
1259 storvsc_on_receive(device
,
1260 (struct vstor_packet
*)packet
,
1271 static int storvsc_connect_to_vsp(struct hv_device
*device
, u32 ring_size
)
1273 struct vmstorage_channel_properties props
;
1276 memset(&props
, 0, sizeof(struct vmstorage_channel_properties
));
1278 ret
= vmbus_open(device
->channel
,
1282 sizeof(struct vmstorage_channel_properties
),
1283 storvsc_on_channel_callback
, device
->channel
);
1288 ret
= storvsc_channel_init(device
);
1293 static int storvsc_dev_remove(struct hv_device
*device
)
1295 struct storvsc_device
*stor_device
;
1296 unsigned long flags
;
1298 stor_device
= hv_get_drvdata(device
);
1300 spin_lock_irqsave(&device
->channel
->inbound_lock
, flags
);
1301 stor_device
->destroy
= true;
1302 spin_unlock_irqrestore(&device
->channel
->inbound_lock
, flags
);
1305 * At this point, all outbound traffic should be disable. We
1306 * only allow inbound traffic (responses) to proceed so that
1307 * outstanding requests can be completed.
1310 storvsc_wait_to_drain(stor_device
);
1313 * Since we have already drained, we don't need to busy wait
1314 * as was done in final_release_stor_device()
1315 * Note that we cannot set the ext pointer to NULL until
1316 * we have drained - to drain the outgoing packets, we need to
1317 * allow incoming packets.
1319 spin_lock_irqsave(&device
->channel
->inbound_lock
, flags
);
1320 hv_set_drvdata(device
, NULL
);
1321 spin_unlock_irqrestore(&device
->channel
->inbound_lock
, flags
);
1323 /* Close the channel */
1324 vmbus_close(device
->channel
);
1330 static int storvsc_do_io(struct hv_device
*device
,
1331 struct storvsc_cmd_request
*request
)
1333 struct storvsc_device
*stor_device
;
1334 struct vstor_packet
*vstor_packet
;
1335 struct vmbus_channel
*outgoing_channel
;
1338 vstor_packet
= &request
->vstor_packet
;
1339 stor_device
= get_out_stor_device(device
);
1345 request
->device
= device
;
1347 * Select an an appropriate channel to send the request out.
1350 outgoing_channel
= vmbus_get_outgoing_channel(device
->channel
);
1353 vstor_packet
->flags
|= REQUEST_COMPLETION_FLAG
;
1355 vstor_packet
->vm_srb
.length
= (sizeof(struct vmscsi_request
) -
1359 vstor_packet
->vm_srb
.sense_info_length
= sense_buffer_size
;
1362 vstor_packet
->vm_srb
.data_transfer_length
=
1363 request
->data_buffer
.len
;
1365 vstor_packet
->operation
= VSTOR_OPERATION_EXECUTE_SRB
;
1367 if (request
->data_buffer
.len
) {
1368 ret
= vmbus_sendpacket_multipagebuffer(outgoing_channel
,
1369 &request
->data_buffer
,
1371 (sizeof(struct vstor_packet
) -
1373 (unsigned long)request
);
1375 ret
= vmbus_sendpacket(device
->channel
, vstor_packet
,
1376 (sizeof(struct vstor_packet
) -
1378 (unsigned long)request
,
1380 VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED
);
1386 atomic_inc(&stor_device
->num_outstanding_req
);
1391 static int storvsc_device_alloc(struct scsi_device
*sdevice
)
1393 struct stor_mem_pools
*memp
;
1394 int number
= STORVSC_MIN_BUF_NR
;
1396 memp
= kzalloc(sizeof(struct stor_mem_pools
), GFP_KERNEL
);
1400 memp
->request_pool
=
1401 kmem_cache_create(dev_name(&sdevice
->sdev_dev
),
1402 sizeof(struct storvsc_cmd_request
), 0,
1403 SLAB_HWCACHE_ALIGN
, NULL
);
1405 if (!memp
->request_pool
)
1408 memp
->request_mempool
= mempool_create(number
, mempool_alloc_slab
,
1410 memp
->request_pool
);
1412 if (!memp
->request_mempool
)
1415 sdevice
->hostdata
= memp
;
1420 kmem_cache_destroy(memp
->request_pool
);
1427 static void storvsc_device_destroy(struct scsi_device
*sdevice
)
1429 struct stor_mem_pools
*memp
= sdevice
->hostdata
;
1434 mempool_destroy(memp
->request_mempool
);
1435 kmem_cache_destroy(memp
->request_pool
);
1437 sdevice
->hostdata
= NULL
;
1440 static int storvsc_device_configure(struct scsi_device
*sdevice
)
1442 scsi_adjust_queue_depth(sdevice
, MSG_SIMPLE_TAG
,
1443 STORVSC_MAX_IO_REQUESTS
);
1445 blk_queue_max_segment_size(sdevice
->request_queue
, PAGE_SIZE
);
1447 blk_queue_bounce_limit(sdevice
->request_queue
, BLK_BOUNCE_ANY
);
1449 blk_queue_rq_timeout(sdevice
->request_queue
, (storvsc_timeout
* HZ
));
1451 sdevice
->no_write_same
= 1;
1456 static int storvsc_get_chs(struct scsi_device
*sdev
, struct block_device
* bdev
,
1457 sector_t capacity
, int *info
)
1459 sector_t nsect
= capacity
;
1460 sector_t cylinders
= nsect
;
1461 int heads
, sectors_pt
;
1464 * We are making up these values; let us keep it simple.
1467 sectors_pt
= 0x3f; /* Sectors per track */
1468 sector_div(cylinders
, heads
* sectors_pt
);
1469 if ((sector_t
)(cylinders
+ 1) * heads
* sectors_pt
< nsect
)
1473 info
[1] = sectors_pt
;
1474 info
[2] = (int)cylinders
;
1479 static int storvsc_host_reset_handler(struct scsi_cmnd
*scmnd
)
1481 struct hv_host_device
*host_dev
= shost_priv(scmnd
->device
->host
);
1482 struct hv_device
*device
= host_dev
->dev
;
1484 struct storvsc_device
*stor_device
;
1485 struct storvsc_cmd_request
*request
;
1486 struct vstor_packet
*vstor_packet
;
1490 stor_device
= get_out_stor_device(device
);
1494 request
= &stor_device
->reset_request
;
1495 vstor_packet
= &request
->vstor_packet
;
1497 init_completion(&request
->wait_event
);
1499 vstor_packet
->operation
= VSTOR_OPERATION_RESET_BUS
;
1500 vstor_packet
->flags
= REQUEST_COMPLETION_FLAG
;
1501 vstor_packet
->vm_srb
.path_id
= stor_device
->path_id
;
1503 ret
= vmbus_sendpacket(device
->channel
, vstor_packet
,
1504 (sizeof(struct vstor_packet
) -
1506 (unsigned long)&stor_device
->reset_request
,
1508 VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED
);
1512 t
= wait_for_completion_timeout(&request
->wait_event
, 5*HZ
);
1514 return TIMEOUT_ERROR
;
1518 * At this point, all outstanding requests in the adapter
1519 * should have been flushed out and return to us
1520 * There is a potential race here where the host may be in
1521 * the process of responding when we return from here.
1522 * Just wait for all in-transit packets to be accounted for
1523 * before we return from here.
1525 storvsc_wait_to_drain(stor_device
);
1531 * The host guarantees to respond to each command, although I/O latencies might
1532 * be unbounded on Azure. Reset the timer unconditionally to give the host a
1533 * chance to perform EH.
1535 static enum blk_eh_timer_return
storvsc_eh_timed_out(struct scsi_cmnd
*scmnd
)
1537 return BLK_EH_RESET_TIMER
;
1540 static bool storvsc_scsi_cmd_ok(struct scsi_cmnd
*scmnd
)
1542 bool allowed
= true;
1543 u8 scsi_op
= scmnd
->cmnd
[0];
1546 /* the host does not handle WRITE_SAME, log accident usage */
1549 * smartd sends this command and the host does not handle
1550 * this. So, don't send it.
1553 scmnd
->result
= ILLEGAL_REQUEST
<< 16;
1562 static int storvsc_queuecommand(struct Scsi_Host
*host
, struct scsi_cmnd
*scmnd
)
1565 struct hv_host_device
*host_dev
= shost_priv(host
);
1566 struct hv_device
*dev
= host_dev
->dev
;
1567 struct storvsc_cmd_request
*cmd_request
;
1568 unsigned int request_size
= 0;
1570 struct scatterlist
*sgl
;
1571 unsigned int sg_count
= 0;
1572 struct vmscsi_request
*vm_srb
;
1573 struct stor_mem_pools
*memp
= scmnd
->device
->hostdata
;
1575 if (vmstor_current_major
<= VMSTOR_WIN8_MAJOR
) {
1577 * On legacy hosts filter unimplemented commands.
1578 * Future hosts are expected to correctly handle
1579 * unsupported commands. Furthermore, it is
1580 * possible that some of the currently
1581 * unsupported commands maybe supported in
1582 * future versions of the host.
1584 if (!storvsc_scsi_cmd_ok(scmnd
)) {
1585 scmnd
->scsi_done(scmnd
);
1590 request_size
= sizeof(struct storvsc_cmd_request
);
1592 cmd_request
= mempool_alloc(memp
->request_mempool
,
1596 * We might be invoked in an interrupt context; hence
1597 * mempool_alloc() can fail.
1600 return SCSI_MLQUEUE_DEVICE_BUSY
;
1602 memset(cmd_request
, 0, sizeof(struct storvsc_cmd_request
));
1604 /* Setup the cmd request */
1605 cmd_request
->cmd
= scmnd
;
1607 scmnd
->host_scribble
= (unsigned char *)cmd_request
;
1609 vm_srb
= &cmd_request
->vstor_packet
.vm_srb
;
1610 vm_srb
->win8_extension
.time_out_value
= 60;
1612 vm_srb
->win8_extension
.srb_flags
|=
1613 SRB_FLAGS_DISABLE_SYNCH_TRANSFER
;
1616 switch (scmnd
->sc_data_direction
) {
1618 vm_srb
->data_in
= WRITE_TYPE
;
1619 vm_srb
->win8_extension
.srb_flags
|= SRB_FLAGS_DATA_OUT
;
1621 case DMA_FROM_DEVICE
:
1622 vm_srb
->data_in
= READ_TYPE
;
1623 vm_srb
->win8_extension
.srb_flags
|= SRB_FLAGS_DATA_IN
;
1626 vm_srb
->data_in
= UNKNOWN_TYPE
;
1627 vm_srb
->win8_extension
.srb_flags
|= SRB_FLAGS_NO_DATA_TRANSFER
;
1632 vm_srb
->port_number
= host_dev
->port
;
1633 vm_srb
->path_id
= scmnd
->device
->channel
;
1634 vm_srb
->target_id
= scmnd
->device
->id
;
1635 vm_srb
->lun
= scmnd
->device
->lun
;
1637 vm_srb
->cdb_length
= scmnd
->cmd_len
;
1639 memcpy(vm_srb
->cdb
, scmnd
->cmnd
, vm_srb
->cdb_length
);
1641 cmd_request
->sense_buffer
= scmnd
->sense_buffer
;
1644 cmd_request
->data_buffer
.len
= scsi_bufflen(scmnd
);
1645 if (scsi_sg_count(scmnd
)) {
1646 sgl
= (struct scatterlist
*)scsi_sglist(scmnd
);
1647 sg_count
= scsi_sg_count(scmnd
);
1649 /* check if we need to bounce the sgl */
1650 if (do_bounce_buffer(sgl
, scsi_sg_count(scmnd
)) != -1) {
1651 cmd_request
->bounce_sgl
=
1652 create_bounce_buffer(sgl
, scsi_sg_count(scmnd
),
1653 scsi_bufflen(scmnd
),
1655 if (!cmd_request
->bounce_sgl
) {
1656 ret
= SCSI_MLQUEUE_HOST_BUSY
;
1660 cmd_request
->bounce_sgl_count
=
1661 ALIGN(scsi_bufflen(scmnd
), PAGE_SIZE
) >>
1664 if (vm_srb
->data_in
== WRITE_TYPE
)
1665 copy_to_bounce_buffer(sgl
,
1666 cmd_request
->bounce_sgl
,
1667 scsi_sg_count(scmnd
));
1669 sgl
= cmd_request
->bounce_sgl
;
1670 sg_count
= cmd_request
->bounce_sgl_count
;
1673 cmd_request
->data_buffer
.offset
= sgl
[0].offset
;
1675 for (i
= 0; i
< sg_count
; i
++)
1676 cmd_request
->data_buffer
.pfn_array
[i
] =
1677 page_to_pfn(sg_page((&sgl
[i
])));
1679 } else if (scsi_sglist(scmnd
)) {
1680 cmd_request
->data_buffer
.offset
=
1681 virt_to_phys(scsi_sglist(scmnd
)) & (PAGE_SIZE
-1);
1682 cmd_request
->data_buffer
.pfn_array
[0] =
1683 virt_to_phys(scsi_sglist(scmnd
)) >> PAGE_SHIFT
;
1686 /* Invokes the vsc to start an IO */
1687 ret
= storvsc_do_io(dev
, cmd_request
);
1689 if (ret
== -EAGAIN
) {
1692 if (cmd_request
->bounce_sgl_count
)
1693 destroy_bounce_buffer(cmd_request
->bounce_sgl
,
1694 cmd_request
->bounce_sgl_count
);
1696 ret
= SCSI_MLQUEUE_DEVICE_BUSY
;
1703 mempool_free(cmd_request
, memp
->request_mempool
);
1704 scmnd
->host_scribble
= NULL
;
1708 static struct scsi_host_template scsi_driver
= {
1709 .module
= THIS_MODULE
,
1710 .name
= "storvsc_host_t",
1711 .bios_param
= storvsc_get_chs
,
1712 .queuecommand
= storvsc_queuecommand
,
1713 .eh_host_reset_handler
= storvsc_host_reset_handler
,
1714 .eh_timed_out
= storvsc_eh_timed_out
,
1715 .slave_alloc
= storvsc_device_alloc
,
1716 .slave_destroy
= storvsc_device_destroy
,
1717 .slave_configure
= storvsc_device_configure
,
1719 .can_queue
= STORVSC_MAX_IO_REQUESTS
*STORVSC_MAX_TARGETS
,
1721 /* no use setting to 0 since ll_blk_rw reset it to 1 */
1723 .sg_tablesize
= MAX_MULTIPAGE_BUFFER_COUNT
,
1724 .use_clustering
= DISABLE_CLUSTERING
,
1725 /* Make sure we dont get a sg segment crosses a page boundary */
1726 .dma_boundary
= PAGE_SIZE
-1,
1736 static const struct hv_vmbus_device_id id_table
[] = {
1739 .driver_data
= SCSI_GUID
1743 .driver_data
= IDE_GUID
1745 /* Fibre Channel GUID */
1748 .driver_data
= SFC_GUID
1753 MODULE_DEVICE_TABLE(vmbus
, id_table
);
1755 static int storvsc_probe(struct hv_device
*device
,
1756 const struct hv_vmbus_device_id
*dev_id
)
1759 struct Scsi_Host
*host
;
1760 struct hv_host_device
*host_dev
;
1761 bool dev_is_ide
= ((dev_id
->driver_data
== IDE_GUID
) ? true : false);
1763 struct storvsc_device
*stor_device
;
1766 * Based on the windows host we are running on,
1767 * set state to properly communicate with the host.
1770 switch (vmbus_proto_version
) {
1771 case VERSION_WS2008
:
1773 sense_buffer_size
= PRE_WIN8_STORVSC_SENSE_BUFFER_SIZE
;
1774 vmscsi_size_delta
= sizeof(struct vmscsi_win8_extension
);
1775 vmstor_current_major
= VMSTOR_WIN7_MAJOR
;
1776 vmstor_current_minor
= VMSTOR_WIN7_MINOR
;
1779 sense_buffer_size
= POST_WIN7_STORVSC_SENSE_BUFFER_SIZE
;
1780 vmscsi_size_delta
= 0;
1781 vmstor_current_major
= VMSTOR_WIN8_MAJOR
;
1782 vmstor_current_minor
= VMSTOR_WIN8_MINOR
;
1786 if (dev_id
->driver_data
== SFC_GUID
)
1787 scsi_driver
.can_queue
= (STORVSC_MAX_IO_REQUESTS
*
1788 STORVSC_FC_MAX_TARGETS
);
1789 host
= scsi_host_alloc(&scsi_driver
,
1790 sizeof(struct hv_host_device
));
1794 host_dev
= shost_priv(host
);
1795 memset(host_dev
, 0, sizeof(struct hv_host_device
));
1797 host_dev
->port
= host
->host_no
;
1798 host_dev
->dev
= device
;
1801 stor_device
= kzalloc(sizeof(struct storvsc_device
), GFP_KERNEL
);
1807 stor_device
->destroy
= false;
1808 stor_device
->open_sub_channel
= false;
1809 init_waitqueue_head(&stor_device
->waiting_to_drain
);
1810 stor_device
->device
= device
;
1811 stor_device
->host
= host
;
1812 hv_set_drvdata(device
, stor_device
);
1814 stor_device
->port_number
= host
->host_no
;
1815 ret
= storvsc_connect_to_vsp(device
, storvsc_ringbuffer_size
);
1819 host_dev
->path
= stor_device
->path_id
;
1820 host_dev
->target
= stor_device
->target_id
;
1822 switch (dev_id
->driver_data
) {
1824 host
->max_lun
= STORVSC_FC_MAX_LUNS_PER_TARGET
;
1825 host
->max_id
= STORVSC_FC_MAX_TARGETS
;
1826 host
->max_channel
= STORVSC_FC_MAX_CHANNELS
- 1;
1830 host
->max_lun
= STORVSC_MAX_LUNS_PER_TARGET
;
1831 host
->max_id
= STORVSC_MAX_TARGETS
;
1832 host
->max_channel
= STORVSC_MAX_CHANNELS
- 1;
1836 host
->max_lun
= STORVSC_IDE_MAX_LUNS_PER_TARGET
;
1837 host
->max_id
= STORVSC_IDE_MAX_TARGETS
;
1838 host
->max_channel
= STORVSC_IDE_MAX_CHANNELS
- 1;
1841 /* max cmd length */
1842 host
->max_cmd_len
= STORVSC_MAX_CMD_LEN
;
1844 /* Register the HBA and start the scsi bus scan */
1845 ret
= scsi_add_host(host
, &device
->device
);
1850 scsi_scan_host(host
);
1852 target
= (device
->dev_instance
.b
[5] << 8 |
1853 device
->dev_instance
.b
[4]);
1854 ret
= scsi_add_device(host
, 0, target
, 0);
1856 scsi_remove_host(host
);
1864 * Once we have connected with the host, we would need to
1865 * to invoke storvsc_dev_remove() to rollback this state and
1866 * this call also frees up the stor_device; hence the jump around
1869 storvsc_dev_remove(device
);
1876 scsi_host_put(host
);
1880 static int storvsc_remove(struct hv_device
*dev
)
1882 struct storvsc_device
*stor_device
= hv_get_drvdata(dev
);
1883 struct Scsi_Host
*host
= stor_device
->host
;
1885 scsi_remove_host(host
);
1886 storvsc_dev_remove(dev
);
1887 scsi_host_put(host
);
1892 static struct hv_driver storvsc_drv
= {
1893 .name
= KBUILD_MODNAME
,
1894 .id_table
= id_table
,
1895 .probe
= storvsc_probe
,
1896 .remove
= storvsc_remove
,
1899 static int __init
storvsc_drv_init(void)
1901 u32 max_outstanding_req_per_channel
;
1904 * Divide the ring buffer data size (which is 1 page less
1905 * than the ring buffer size since that page is reserved for
1906 * the ring buffer indices) by the max request size (which is
1907 * vmbus_channel_packet_multipage_buffer + struct vstor_packet + u64)
1909 max_outstanding_req_per_channel
=
1910 ((storvsc_ringbuffer_size
- PAGE_SIZE
) /
1911 ALIGN(MAX_MULTIPAGE_BUFFER_PACKET
+
1912 sizeof(struct vstor_packet
) + sizeof(u64
) -
1916 if (max_outstanding_req_per_channel
<
1917 STORVSC_MAX_IO_REQUESTS
)
1920 return vmbus_driver_register(&storvsc_drv
);
1923 static void __exit
storvsc_drv_exit(void)
1925 vmbus_driver_unregister(&storvsc_drv
);
1928 MODULE_LICENSE("GPL");
1929 MODULE_DESCRIPTION("Microsoft Hyper-V virtual storage driver");
1930 module_init(storvsc_drv_init
);
1931 module_exit(storvsc_drv_exit
);