]> git.proxmox.com Git - mirror_ubuntu-artful-kernel.git/blame - drivers/scsi/storvsc_drv.c
storvsc: Rather than look for sets of specific protocol versions, make decisions...
[mirror_ubuntu-artful-kernel.git] / drivers / scsi / storvsc_drv.c
CommitLineData
bef4a34a 1/*
bef4a34a
HJ
2 * Copyright (c) 2009, Microsoft Corporation.
3 *
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.
7 *
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
11 * more details.
12 *
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.
16 *
17 * Authors:
18 * Haiyang Zhang <haiyangz@microsoft.com>
19 * Hank Janssen <hjanssen@microsoft.com>
972621c9 20 * K. Y. Srinivasan <kys@microsoft.com>
bef4a34a 21 */
a1be1706
S
22
23#include <linux/kernel.h>
f0d79fe9 24#include <linux/wait.h>
a1be1706
S
25#include <linux/sched.h>
26#include <linux/completion.h>
27#include <linux/string.h>
28#include <linux/mm.h>
29#include <linux/delay.h>
bef4a34a 30#include <linux/init.h>
5a0e3ad6 31#include <linux/slab.h>
bef4a34a
HJ
32#include <linux/module.h>
33#include <linux/device.h>
46a97191 34#include <linux/hyperv.h>
56b26e69 35#include <linux/blkdev.h>
bef4a34a
HJ
36#include <scsi/scsi.h>
37#include <scsi/scsi_cmnd.h>
38#include <scsi/scsi_host.h>
39#include <scsi/scsi_device.h>
40#include <scsi/scsi_tcq.h>
41#include <scsi/scsi_eh.h>
42#include <scsi/scsi_devinfo.h>
bef4a34a 43#include <scsi/scsi_dbg.h>
3f335ea2 44
09f0355f 45/*
af9584b8
S
46 * All wire protocol details (storage protocol between the guest and the host)
47 * are consolidated here.
48 *
49 * Begin protocol definitions.
09f0355f
S
50 */
51
09f0355f
S
52/*
53 * Version history:
54 * V1 Beta: 0.1
55 * V1 RC < 2008/1/31: 1.0
56 * V1 RC > 2008/1/31: 2.0
57 * Win7: 4.2
8b612fa2 58 * Win8: 5.1
09f0355f
S
59 */
60
8b612fa2
S
61
62#define VMSTOR_WIN7_MAJOR 4
63#define VMSTOR_WIN7_MINOR 2
64
65#define VMSTOR_WIN8_MAJOR 5
66#define VMSTOR_WIN8_MINOR 1
f0d79fe9
S
67
68
f0d79fe9
S
69/* Packet structure describing virtual storage requests. */
70enum vstor_packet_operation {
71 VSTOR_OPERATION_COMPLETE_IO = 1,
72 VSTOR_OPERATION_REMOVE_DEVICE = 2,
73 VSTOR_OPERATION_EXECUTE_SRB = 3,
74 VSTOR_OPERATION_RESET_LUN = 4,
75 VSTOR_OPERATION_RESET_ADAPTER = 5,
76 VSTOR_OPERATION_RESET_BUS = 6,
77 VSTOR_OPERATION_BEGIN_INITIALIZATION = 7,
78 VSTOR_OPERATION_END_INITIALIZATION = 8,
79 VSTOR_OPERATION_QUERY_PROTOCOL_VERSION = 9,
80 VSTOR_OPERATION_QUERY_PROPERTIES = 10,
2b9525f5 81 VSTOR_OPERATION_ENUMERATE_BUS = 11,
8b612fa2
S
82 VSTOR_OPERATION_FCHBA_DATA = 12,
83 VSTOR_OPERATION_CREATE_SUB_CHANNELS = 13,
84 VSTOR_OPERATION_MAXIMUM = 13
85};
86
87/*
88 * WWN packet for Fibre Channel HBA
89 */
90
91struct hv_fc_wwn_packet {
92 bool primary_active;
93 u8 reserved1;
94 u8 reserved2;
95 u8 primary_port_wwn[8];
96 u8 primary_node_wwn[8];
97 u8 secondary_port_wwn[8];
98 u8 secondary_node_wwn[8];
f0d79fe9
S
99};
100
8b612fa2
S
101
102
103/*
104 * SRB Flag Bits
105 */
106
107#define SRB_FLAGS_QUEUE_ACTION_ENABLE 0x00000002
108#define SRB_FLAGS_DISABLE_DISCONNECT 0x00000004
109#define SRB_FLAGS_DISABLE_SYNCH_TRANSFER 0x00000008
110#define SRB_FLAGS_BYPASS_FROZEN_QUEUE 0x00000010
111#define SRB_FLAGS_DISABLE_AUTOSENSE 0x00000020
112#define SRB_FLAGS_DATA_IN 0x00000040
113#define SRB_FLAGS_DATA_OUT 0x00000080
114#define SRB_FLAGS_NO_DATA_TRANSFER 0x00000000
115#define SRB_FLAGS_UNSPECIFIED_DIRECTION (SRB_FLAGS_DATA_IN | SRB_FLAGS_DATA_OUT)
116#define SRB_FLAGS_NO_QUEUE_FREEZE 0x00000100
117#define SRB_FLAGS_ADAPTER_CACHE_ENABLE 0x00000200
118#define SRB_FLAGS_FREE_SENSE_BUFFER 0x00000400
119
120/*
121 * This flag indicates the request is part of the workflow for processing a D3.
122 */
123#define SRB_FLAGS_D3_PROCESSING 0x00000800
124#define SRB_FLAGS_IS_ACTIVE 0x00010000
125#define SRB_FLAGS_ALLOCATED_FROM_ZONE 0x00020000
126#define SRB_FLAGS_SGLIST_FROM_POOL 0x00040000
127#define SRB_FLAGS_BYPASS_LOCKED_QUEUE 0x00080000
128#define SRB_FLAGS_NO_KEEP_AWAKE 0x00100000
129#define SRB_FLAGS_PORT_DRIVER_ALLOCSENSE 0x00200000
130#define SRB_FLAGS_PORT_DRIVER_SENSEHASPORT 0x00400000
131#define SRB_FLAGS_DONT_START_NEXT_PACKET 0x00800000
132#define SRB_FLAGS_PORT_DRIVER_RESERVED 0x0F000000
133#define SRB_FLAGS_CLASS_DRIVER_RESERVED 0xF0000000
134
135
f0d79fe9
S
136/*
137 * Platform neutral description of a scsi request -
138 * this remains the same across the write regardless of 32/64 bit
139 * note: it's patterned off the SCSI_PASS_THROUGH structure
140 */
6b2f9495 141#define STORVSC_MAX_CMD_LEN 0x10
8b612fa2
S
142
143#define POST_WIN7_STORVSC_SENSE_BUFFER_SIZE 0x14
144#define PRE_WIN8_STORVSC_SENSE_BUFFER_SIZE 0x12
145
146#define STORVSC_SENSE_BUFFER_SIZE 0x14
6b2f9495 147#define STORVSC_MAX_BUF_LEN_WITH_PADDING 0x14
f0d79fe9 148
8b612fa2
S
149/*
150 * Sense buffer size changed in win8; have a run-time
151 * variable to track the size we should use.
152 */
153static int sense_buffer_size;
154
155/*
156 * The size of the vmscsi_request has changed in win8. The
157 * additional size is because of new elements added to the
158 * structure. These elements are valid only when we are talking
159 * to a win8 host.
160 * Track the correction to size we need to apply.
161 */
162
163static int vmscsi_size_delta;
164static int vmstor_current_major;
165static int vmstor_current_minor;
166
167struct vmscsi_win8_extension {
168 /*
169 * The following were added in Windows 8
170 */
171 u16 reserve;
172 u8 queue_tag;
173 u8 queue_action;
174 u32 srb_flags;
175 u32 time_out_value;
176 u32 queue_sort_ey;
177} __packed;
178
f0d79fe9 179struct vmscsi_request {
c649114a
S
180 u16 length;
181 u8 srb_status;
182 u8 scsi_status;
f0d79fe9 183
c649114a
S
184 u8 port_number;
185 u8 path_id;
186 u8 target_id;
187 u8 lun;
f0d79fe9 188
c649114a
S
189 u8 cdb_length;
190 u8 sense_info_length;
191 u8 data_in;
192 u8 reserved;
f0d79fe9 193
c649114a 194 u32 data_transfer_length;
f0d79fe9
S
195
196 union {
6b2f9495
S
197 u8 cdb[STORVSC_MAX_CMD_LEN];
198 u8 sense_data[STORVSC_SENSE_BUFFER_SIZE];
199 u8 reserved_array[STORVSC_MAX_BUF_LEN_WITH_PADDING];
f0d79fe9 200 };
8b612fa2
S
201 /*
202 * The following was added in win8.
203 */
204 struct vmscsi_win8_extension win8_extension;
205
f0d79fe9
S
206} __attribute((packed));
207
208
209/*
210 * This structure is sent during the intialization phase to get the different
211 * properties of the channel.
212 */
8b612fa2
S
213
214#define STORAGE_CHANNEL_SUPPORTS_MULTI_CHANNEL 0x1
215
f0d79fe9 216struct vmstorage_channel_properties {
8b612fa2
S
217 u32 reserved;
218 u16 max_channel_cnt;
219 u16 reserved1;
f0d79fe9 220
8b612fa2 221 u32 flags;
c649114a 222 u32 max_transfer_bytes;
f0d79fe9 223
8b612fa2 224 u64 reserved2;
f0d79fe9
S
225} __packed;
226
227/* This structure is sent during the storage protocol negotiations. */
228struct vmstorage_protocol_version {
229 /* Major (MSW) and minor (LSW) version numbers. */
85904a5e 230 u16 major_minor;
f0d79fe9
S
231
232 /*
233 * Revision number is auto-incremented whenever this file is changed
234 * (See FILL_VMSTOR_REVISION macro above). Mismatch does not
235 * definitely indicate incompatibility--but it does indicate mismatched
236 * builds.
c649114a 237 * This is only used on the windows side. Just set it to 0.
f0d79fe9 238 */
85904a5e 239 u16 revision;
f0d79fe9
S
240} __packed;
241
242/* Channel Property Flags */
243#define STORAGE_CHANNEL_REMOVABLE_FLAG 0x1
244#define STORAGE_CHANNEL_EMULATED_IDE_FLAG 0x2
245
246struct vstor_packet {
247 /* Requested operation type */
248 enum vstor_packet_operation operation;
249
250 /* Flags - see below for values */
c649114a 251 u32 flags;
f0d79fe9
S
252
253 /* Status of the request returned from the server side. */
c649114a 254 u32 status;
f0d79fe9
S
255
256 /* Data payload area */
257 union {
258 /*
259 * Structure used to forward SCSI commands from the
260 * client to the server.
261 */
262 struct vmscsi_request vm_srb;
263
264 /* Structure used to query channel properties. */
265 struct vmstorage_channel_properties storage_channel_properties;
266
267 /* Used during version negotiations. */
268 struct vmstorage_protocol_version version;
8b612fa2
S
269
270 /* Fibre channel address packet */
271 struct hv_fc_wwn_packet wwn_packet;
272
273 /* Number of sub-channels to create */
274 u16 sub_channel_count;
275
276 /* This will be the maximum of the union members */
277 u8 buffer[0x34];
f0d79fe9
S
278 };
279} __packed;
280
f0d79fe9 281/*
09f0355f
S
282 * Packet Flags:
283 *
f0d79fe9
S
284 * This flag indicates that the server should send back a completion for this
285 * packet.
286 */
09f0355f 287
f0d79fe9
S
288#define REQUEST_COMPLETION_FLAG 0x1
289
f0d79fe9
S
290/* Matches Windows-end */
291enum storvsc_request_type {
c649114a 292 WRITE_TYPE = 0,
f0d79fe9
S
293 READ_TYPE,
294 UNKNOWN_TYPE,
295};
296
16046320
S
297/*
298 * SRB status codes and masks; a subset of the codes used here.
299 */
300
301#define SRB_STATUS_AUTOSENSE_VALID 0x80
302#define SRB_STATUS_INVALID_LUN 0x20
303#define SRB_STATUS_SUCCESS 0x01
6781209e 304#define SRB_STATUS_ABORTED 0x02
16046320
S
305#define SRB_STATUS_ERROR 0x04
306
af9584b8
S
307/*
308 * This is the end of Protocol specific defines.
309 */
310
b9ec3a55 311static int storvsc_ringbuffer_size = (256 * PAGE_SIZE);
f458aada
S
312static u32 max_outstanding_req_per_channel;
313
314static int storvsc_vcpus_per_sub_channel = 4;
af9584b8
S
315
316module_param(storvsc_ringbuffer_size, int, S_IRUGO);
317MODULE_PARM_DESC(storvsc_ringbuffer_size, "Ring buffer size (bytes)");
318
f458aada
S
319module_param(storvsc_vcpus_per_sub_channel, int, S_IRUGO);
320MODULE_PARM_DESC(vcpus_per_sub_channel, "Ratio of VCPUs to subchannels");
893def38
S
321/*
322 * Timeout in seconds for all devices managed by this driver.
323 */
324static int storvsc_timeout = 180;
325
f3cfabce
S
326static int msft_blist_flags = BLIST_TRY_VPD_PAGES;
327
af9584b8 328
6f94d5de
S
329static void storvsc_on_channel_callback(void *context);
330
4cd83ecd
S
331#define STORVSC_MAX_LUNS_PER_TARGET 255
332#define STORVSC_MAX_TARGETS 2
333#define STORVSC_MAX_CHANNELS 8
af9584b8 334
4cd83ecd
S
335#define STORVSC_FC_MAX_LUNS_PER_TARGET 255
336#define STORVSC_FC_MAX_TARGETS 128
337#define STORVSC_FC_MAX_CHANNELS 8
af9584b8 338
4cd83ecd
S
339#define STORVSC_IDE_MAX_LUNS_PER_TARGET 64
340#define STORVSC_IDE_MAX_TARGETS 1
341#define STORVSC_IDE_MAX_CHANNELS 1
16046320 342
61eaffc9 343struct storvsc_cmd_request {
61eaffc9
S
344 struct scsi_cmnd *cmd;
345
346 unsigned int bounce_sgl_count;
347 struct scatterlist *bounce_sgl;
f0d79fe9 348
f0d79fe9
S
349 struct hv_device *device;
350
351 /* Synchronize the request/response if needed */
352 struct completion wait_event;
353
be0cf6ca
S
354 struct vmbus_channel_packet_multipage_buffer mpb;
355 struct vmbus_packet_mpb_array *payload;
356 u32 payload_sz;
357
f0d79fe9
S
358 struct vstor_packet vstor_packet;
359};
360
361
f0d79fe9
S
362/* A storvsc device is a device object that contains a vmbus channel */
363struct storvsc_device {
364 struct hv_device *device;
365
366 bool destroy;
367 bool drain_notify;
6f94d5de 368 bool open_sub_channel;
f0d79fe9 369 atomic_t num_outstanding_req;
cd654ea1 370 struct Scsi_Host *host;
f0d79fe9
S
371
372 wait_queue_head_t waiting_to_drain;
373
374 /*
375 * Each unique Port/Path/Target represents 1 channel ie scsi
376 * controller. In reality, the pathid, targetid is always 0
377 * and the port is set by us
378 */
379 unsigned int port_number;
380 unsigned char path_id;
381 unsigned char target_id;
382
5117b936
S
383 /*
384 * Max I/O, the device can support.
385 */
386 u32 max_transfer_bytes;
f0d79fe9 387 /* Used for vsc/vsp channel reset process */
61eaffc9
S
388 struct storvsc_cmd_request init_request;
389 struct storvsc_cmd_request reset_request;
f0d79fe9
S
390};
391
ce3e301c
S
392struct hv_host_device {
393 struct hv_device *dev;
c1b3d067
S
394 unsigned int port;
395 unsigned char path;
396 unsigned char target;
397};
398
12675799
S
399struct storvsc_scan_work {
400 struct work_struct work;
401 struct Scsi_Host *host;
402 uint lun;
403};
404
6781209e
S
405static void storvsc_device_scan(struct work_struct *work)
406{
407 struct storvsc_scan_work *wrk;
408 uint lun;
409 struct scsi_device *sdev;
410
411 wrk = container_of(work, struct storvsc_scan_work, work);
412 lun = wrk->lun;
413
414 sdev = scsi_device_lookup(wrk->host, 0, 0, lun);
415 if (!sdev)
416 goto done;
417 scsi_rescan_device(&sdev->sdev_gendev);
418 scsi_device_put(sdev);
419
420done:
421 kfree(wrk);
422}
423
2a09ed3d 424static void storvsc_host_scan(struct work_struct *work)
12675799
S
425{
426 struct storvsc_scan_work *wrk;
2a09ed3d 427 struct Scsi_Host *host;
34a716bc 428 struct scsi_device *sdev;
12675799
S
429
430 wrk = container_of(work, struct storvsc_scan_work, work);
2a09ed3d
S
431 host = wrk->host;
432
34a716bc
S
433 /*
434 * Before scanning the host, first check to see if any of the
435 * currrently known devices have been hot removed. We issue a
436 * "unit ready" command against all currently known devices.
437 * This I/O will result in an error for devices that have been
438 * removed. As part of handling the I/O error, we remove the device.
439 *
440 * When a LUN is added or removed, the host sends us a signal to
441 * scan the host. Thus we are forced to discover the LUNs that
442 * may have been removed this way.
443 */
444 mutex_lock(&host->scan_mutex);
8d6a9f56 445 shost_for_each_device(sdev, host)
34a716bc 446 scsi_test_unit_ready(sdev, 1, 1, NULL);
34a716bc
S
447 mutex_unlock(&host->scan_mutex);
448 /*
449 * Now scan the host to discover LUNs that may have been added.
450 */
2a09ed3d
S
451 scsi_scan_host(host);
452
12675799
S
453 kfree(wrk);
454}
455
b4017319
S
456static void storvsc_remove_lun(struct work_struct *work)
457{
458 struct storvsc_scan_work *wrk;
459 struct scsi_device *sdev;
460
461 wrk = container_of(work, struct storvsc_scan_work, work);
462 if (!scsi_host_get(wrk->host))
463 goto done;
464
465 sdev = scsi_device_lookup(wrk->host, 0, 0, wrk->lun);
466
467 if (sdev) {
468 scsi_remove_device(sdev);
469 scsi_device_put(sdev);
470 }
471 scsi_host_put(wrk->host);
472
473done:
474 kfree(wrk);
475}
476
af9584b8
S
477/*
478 * Major/minor macros. Minor version is in LSB, meaning that earlier flat
479 * version numbers will be interpreted as "0.x" (i.e., 1 becomes 0.1).
480 */
481
482static inline u16 storvsc_get_version(u8 major, u8 minor)
483{
484 u16 version;
485
486 version = ((major << 8) | minor);
487 return version;
488}
489
a8c18c57
S
490/*
491 * We can get incoming messages from the host that are not in response to
492 * messages that we have sent out. An example of this would be messages
493 * received by the guest to notify dynamic addition/removal of LUNs. To
494 * deal with potential race conditions where the driver may be in the
495 * midst of being unloaded when we might receive an unsolicited message
496 * from the host, we have implemented a mechanism to gurantee sequential
497 * consistency:
498 *
499 * 1) Once the device is marked as being destroyed, we will fail all
500 * outgoing messages.
501 * 2) We permit incoming messages when the device is being destroyed,
502 * only to properly account for messages already sent out.
503 */
504
f0d79fe9
S
505static inline struct storvsc_device *get_out_stor_device(
506 struct hv_device *device)
507{
508 struct storvsc_device *stor_device;
509
cd654ea1 510 stor_device = hv_get_drvdata(device);
f0d79fe9
S
511
512 if (stor_device && stor_device->destroy)
513 stor_device = NULL;
514
515 return stor_device;
516}
517
518
519static inline void storvsc_wait_to_drain(struct storvsc_device *dev)
520{
521 dev->drain_notify = true;
522 wait_event(dev->waiting_to_drain,
523 atomic_read(&dev->num_outstanding_req) == 0);
524 dev->drain_notify = false;
525}
bef4a34a 526
8dcf37d4
S
527static inline struct storvsc_device *get_in_stor_device(
528 struct hv_device *device)
529{
530 struct storvsc_device *stor_device;
8dcf37d4 531
cd654ea1 532 stor_device = hv_get_drvdata(device);
8dcf37d4
S
533
534 if (!stor_device)
535 goto get_in_err;
536
537 /*
538 * If the device is being destroyed; allow incoming
539 * traffic only to cleanup outstanding requests.
540 */
541
542 if (stor_device->destroy &&
543 (atomic_read(&stor_device->num_outstanding_req) == 0))
544 stor_device = NULL;
545
546get_in_err:
8dcf37d4
S
547 return stor_device;
548
549}
550
2707388c
S
551static void destroy_bounce_buffer(struct scatterlist *sgl,
552 unsigned int sg_count)
553{
554 int i;
555 struct page *page_buf;
556
557 for (i = 0; i < sg_count; i++) {
558 page_buf = sg_page((&sgl[i]));
559 if (page_buf != NULL)
560 __free_page(page_buf);
561 }
562
563 kfree(sgl);
564}
565
566static int do_bounce_buffer(struct scatterlist *sgl, unsigned int sg_count)
567{
568 int i;
569
570 /* No need to check */
571 if (sg_count < 2)
572 return -1;
573
574 /* We have at least 2 sg entries */
575 for (i = 0; i < sg_count; i++) {
576 if (i == 0) {
577 /* make sure 1st one does not have hole */
578 if (sgl[i].offset + sgl[i].length != PAGE_SIZE)
579 return i;
580 } else if (i == sg_count - 1) {
581 /* make sure last one does not have hole */
582 if (sgl[i].offset != 0)
583 return i;
584 } else {
585 /* make sure no hole in the middle */
586 if (sgl[i].length != PAGE_SIZE || sgl[i].offset != 0)
587 return i;
588 }
589 }
590 return -1;
591}
592
593static struct scatterlist *create_bounce_buffer(struct scatterlist *sgl,
594 unsigned int sg_count,
595 unsigned int len,
596 int write)
597{
598 int i;
599 int num_pages;
600 struct scatterlist *bounce_sgl;
601 struct page *page_buf;
602 unsigned int buf_len = ((write == WRITE_TYPE) ? 0 : PAGE_SIZE);
603
604 num_pages = ALIGN(len, PAGE_SIZE) >> PAGE_SHIFT;
605
606 bounce_sgl = kcalloc(num_pages, sizeof(struct scatterlist), GFP_ATOMIC);
607 if (!bounce_sgl)
608 return NULL;
609
9d2696e6 610 sg_init_table(bounce_sgl, num_pages);
2707388c
S
611 for (i = 0; i < num_pages; i++) {
612 page_buf = alloc_page(GFP_ATOMIC);
613 if (!page_buf)
614 goto cleanup;
615 sg_set_page(&bounce_sgl[i], page_buf, buf_len, 0);
616 }
617
618 return bounce_sgl;
619
620cleanup:
621 destroy_bounce_buffer(bounce_sgl, num_pages);
622 return NULL;
623}
624
625/* Assume the original sgl has enough room */
626static unsigned int copy_from_bounce_buffer(struct scatterlist *orig_sgl,
627 struct scatterlist *bounce_sgl,
628 unsigned int orig_sgl_count,
629 unsigned int bounce_sgl_count)
630{
631 int i;
632 int j = 0;
633 unsigned long src, dest;
634 unsigned int srclen, destlen, copylen;
635 unsigned int total_copied = 0;
636 unsigned long bounce_addr = 0;
637 unsigned long dest_addr = 0;
638 unsigned long flags;
aaced993
S
639 struct scatterlist *cur_dest_sgl;
640 struct scatterlist *cur_src_sgl;
2707388c
S
641
642 local_irq_save(flags);
aaced993
S
643 cur_dest_sgl = orig_sgl;
644 cur_src_sgl = bounce_sgl;
2707388c 645 for (i = 0; i < orig_sgl_count; i++) {
aaced993
S
646 dest_addr = (unsigned long)
647 kmap_atomic(sg_page(cur_dest_sgl)) +
648 cur_dest_sgl->offset;
2707388c 649 dest = dest_addr;
aaced993 650 destlen = cur_dest_sgl->length;
2707388c
S
651
652 if (bounce_addr == 0)
aaced993
S
653 bounce_addr = (unsigned long)kmap_atomic(
654 sg_page(cur_src_sgl));
2707388c
S
655
656 while (destlen) {
aaced993
S
657 src = bounce_addr + cur_src_sgl->offset;
658 srclen = cur_src_sgl->length - cur_src_sgl->offset;
2707388c
S
659
660 copylen = min(srclen, destlen);
661 memcpy((void *)dest, (void *)src, copylen);
662
663 total_copied += copylen;
aaced993 664 cur_src_sgl->offset += copylen;
2707388c
S
665 destlen -= copylen;
666 dest += copylen;
667
aaced993 668 if (cur_src_sgl->offset == cur_src_sgl->length) {
2707388c 669 /* full */
aaced993 670 kunmap_atomic((void *)bounce_addr);
2707388c
S
671 j++;
672
673 /*
674 * It is possible that the number of elements
675 * in the bounce buffer may not be equal to
676 * the number of elements in the original
677 * scatter list. Handle this correctly.
678 */
679
680 if (j == bounce_sgl_count) {
681 /*
682 * We are done; cleanup and return.
683 */
aaced993
S
684 kunmap_atomic((void *)(dest_addr -
685 cur_dest_sgl->offset));
2707388c
S
686 local_irq_restore(flags);
687 return total_copied;
688 }
689
690 /* if we need to use another bounce buffer */
aaced993
S
691 if (destlen || i != orig_sgl_count - 1) {
692 cur_src_sgl = sg_next(cur_src_sgl);
693 bounce_addr = (unsigned long)
694 kmap_atomic(
695 sg_page(cur_src_sgl));
696 }
2707388c
S
697 } else if (destlen == 0 && i == orig_sgl_count - 1) {
698 /* unmap the last bounce that is < PAGE_SIZE */
aaced993 699 kunmap_atomic((void *)bounce_addr);
2707388c
S
700 }
701 }
702
aaced993
S
703 kunmap_atomic((void *)(dest_addr - cur_dest_sgl->offset));
704 cur_dest_sgl = sg_next(cur_dest_sgl);
2707388c
S
705 }
706
707 local_irq_restore(flags);
708
709 return total_copied;
710}
711
712/* Assume the bounce_sgl has enough room ie using the create_bounce_buffer() */
713static unsigned int copy_to_bounce_buffer(struct scatterlist *orig_sgl,
714 struct scatterlist *bounce_sgl,
715 unsigned int orig_sgl_count)
716{
717 int i;
718 int j = 0;
719 unsigned long src, dest;
720 unsigned int srclen, destlen, copylen;
721 unsigned int total_copied = 0;
722 unsigned long bounce_addr = 0;
723 unsigned long src_addr = 0;
724 unsigned long flags;
aaced993
S
725 struct scatterlist *cur_src_sgl;
726 struct scatterlist *cur_dest_sgl;
2707388c
S
727
728 local_irq_save(flags);
729
aaced993
S
730 cur_src_sgl = orig_sgl;
731 cur_dest_sgl = bounce_sgl;
732
2707388c 733 for (i = 0; i < orig_sgl_count; i++) {
aaced993
S
734 src_addr = (unsigned long)
735 kmap_atomic(sg_page(cur_src_sgl)) +
736 cur_src_sgl->offset;
2707388c 737 src = src_addr;
aaced993 738 srclen = cur_src_sgl->length;
2707388c
S
739
740 if (bounce_addr == 0)
aaced993
S
741 bounce_addr = (unsigned long)
742 kmap_atomic(sg_page(cur_dest_sgl));
2707388c
S
743
744 while (srclen) {
745 /* assume bounce offset always == 0 */
aaced993
S
746 dest = bounce_addr + cur_dest_sgl->length;
747 destlen = PAGE_SIZE - cur_dest_sgl->length;
2707388c
S
748
749 copylen = min(srclen, destlen);
750 memcpy((void *)dest, (void *)src, copylen);
751
752 total_copied += copylen;
aaced993 753 cur_dest_sgl->length += copylen;
2707388c
S
754 srclen -= copylen;
755 src += copylen;
756
aaced993 757 if (cur_dest_sgl->length == PAGE_SIZE) {
2707388c 758 /* full..move to next entry */
aaced993 759 kunmap_atomic((void *)bounce_addr);
8de58074 760 bounce_addr = 0;
2707388c 761 j++;
8de58074 762 }
2707388c 763
8de58074 764 /* if we need to use another bounce buffer */
aaced993
S
765 if (srclen && bounce_addr == 0) {
766 cur_dest_sgl = sg_next(cur_dest_sgl);
767 bounce_addr = (unsigned long)
768 kmap_atomic(
769 sg_page(cur_dest_sgl));
770 }
2707388c 771
2707388c
S
772 }
773
aaced993
S
774 kunmap_atomic((void *)(src_addr - cur_src_sgl->offset));
775 cur_src_sgl = sg_next(cur_src_sgl);
2707388c
S
776 }
777
8de58074 778 if (bounce_addr)
aaced993 779 kunmap_atomic((void *)bounce_addr);
8de58074 780
2707388c
S
781 local_irq_restore(flags);
782
783 return total_copied;
784}
785
6f94d5de
S
786static void handle_sc_creation(struct vmbus_channel *new_sc)
787{
788 struct hv_device *device = new_sc->primary_channel->device_obj;
789 struct storvsc_device *stor_device;
790 struct vmstorage_channel_properties props;
791
792 stor_device = get_out_stor_device(device);
793 if (!stor_device)
794 return;
795
796 if (stor_device->open_sub_channel == false)
797 return;
798
799 memset(&props, 0, sizeof(struct vmstorage_channel_properties));
800
801 vmbus_open(new_sc,
802 storvsc_ringbuffer_size,
803 storvsc_ringbuffer_size,
804 (void *)&props,
805 sizeof(struct vmstorage_channel_properties),
806 storvsc_on_channel_callback, new_sc);
807}
808
809static void handle_multichannel_storage(struct hv_device *device, int max_chns)
810{
811 struct storvsc_device *stor_device;
812 int num_cpus = num_online_cpus();
813 int num_sc;
814 struct storvsc_cmd_request *request;
815 struct vstor_packet *vstor_packet;
816 int ret, t;
817
818 num_sc = ((max_chns > num_cpus) ? num_cpus : max_chns);
819 stor_device = get_out_stor_device(device);
820 if (!stor_device)
821 return;
822
823 request = &stor_device->init_request;
824 vstor_packet = &request->vstor_packet;
825
826 stor_device->open_sub_channel = true;
827 /*
828 * Establish a handler for dealing with subchannels.
829 */
830 vmbus_set_sc_create_callback(device->channel, handle_sc_creation);
831
832 /*
833 * Check to see if sub-channels have already been created. This
834 * can happen when this driver is re-loaded after unloading.
835 */
836
837 if (vmbus_are_subchannels_present(device->channel))
838 return;
839
840 stor_device->open_sub_channel = false;
841 /*
842 * Request the host to create sub-channels.
843 */
844 memset(request, 0, sizeof(struct storvsc_cmd_request));
845 init_completion(&request->wait_event);
846 vstor_packet->operation = VSTOR_OPERATION_CREATE_SUB_CHANNELS;
847 vstor_packet->flags = REQUEST_COMPLETION_FLAG;
848 vstor_packet->sub_channel_count = num_sc;
849
850 ret = vmbus_sendpacket(device->channel, vstor_packet,
851 (sizeof(struct vstor_packet) -
852 vmscsi_size_delta),
853 (unsigned long)request,
854 VM_PKT_DATA_INBAND,
855 VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED);
856
857 if (ret != 0)
858 return;
859
860 t = wait_for_completion_timeout(&request->wait_event, 10*HZ);
861 if (t == 0)
862 return;
863
864 if (vstor_packet->operation != VSTOR_OPERATION_COMPLETE_IO ||
865 vstor_packet->status != 0)
866 return;
867
868 /*
869 * Now that we created the sub-channels, invoke the check; this
870 * may trigger the callback.
871 */
872 stor_device->open_sub_channel = true;
873 vmbus_are_subchannels_present(device->channel);
874}
875
8dcf37d4
S
876static int storvsc_channel_init(struct hv_device *device)
877{
878 struct storvsc_device *stor_device;
61eaffc9 879 struct storvsc_cmd_request *request;
8dcf37d4
S
880 struct vstor_packet *vstor_packet;
881 int ret, t;
6f94d5de
S
882 int max_chns;
883 bool process_sub_channels = false;
8dcf37d4
S
884
885 stor_device = get_out_stor_device(device);
886 if (!stor_device)
887 return -ENODEV;
888
889 request = &stor_device->init_request;
890 vstor_packet = &request->vstor_packet;
891
892 /*
893 * Now, initiate the vsc/vsp initialization protocol on the open
894 * channel
895 */
61eaffc9 896 memset(request, 0, sizeof(struct storvsc_cmd_request));
8dcf37d4
S
897 init_completion(&request->wait_event);
898 vstor_packet->operation = VSTOR_OPERATION_BEGIN_INITIALIZATION;
899 vstor_packet->flags = REQUEST_COMPLETION_FLAG;
900
901 ret = vmbus_sendpacket(device->channel, vstor_packet,
8b612fa2
S
902 (sizeof(struct vstor_packet) -
903 vmscsi_size_delta),
8dcf37d4
S
904 (unsigned long)request,
905 VM_PKT_DATA_INBAND,
906 VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED);
907 if (ret != 0)
908 goto cleanup;
909
910 t = wait_for_completion_timeout(&request->wait_event, 5*HZ);
911 if (t == 0) {
912 ret = -ETIMEDOUT;
913 goto cleanup;
914 }
915
916 if (vstor_packet->operation != VSTOR_OPERATION_COMPLETE_IO ||
917 vstor_packet->status != 0)
918 goto cleanup;
919
920
921 /* reuse the packet for version range supported */
922 memset(vstor_packet, 0, sizeof(struct vstor_packet));
923 vstor_packet->operation = VSTOR_OPERATION_QUERY_PROTOCOL_VERSION;
924 vstor_packet->flags = REQUEST_COMPLETION_FLAG;
925
85904a5e 926 vstor_packet->version.major_minor =
8b612fa2 927 storvsc_get_version(vmstor_current_major, vmstor_current_minor);
85904a5e
S
928
929 /*
930 * The revision number is only used in Windows; set it to 0.
931 */
c649114a 932 vstor_packet->version.revision = 0;
8dcf37d4
S
933
934 ret = vmbus_sendpacket(device->channel, vstor_packet,
8b612fa2
S
935 (sizeof(struct vstor_packet) -
936 vmscsi_size_delta),
8dcf37d4
S
937 (unsigned long)request,
938 VM_PKT_DATA_INBAND,
939 VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED);
940 if (ret != 0)
941 goto cleanup;
942
943 t = wait_for_completion_timeout(&request->wait_event, 5*HZ);
944 if (t == 0) {
945 ret = -ETIMEDOUT;
946 goto cleanup;
947 }
948
949 if (vstor_packet->operation != VSTOR_OPERATION_COMPLETE_IO ||
950 vstor_packet->status != 0)
951 goto cleanup;
952
953
954 memset(vstor_packet, 0, sizeof(struct vstor_packet));
955 vstor_packet->operation = VSTOR_OPERATION_QUERY_PROPERTIES;
956 vstor_packet->flags = REQUEST_COMPLETION_FLAG;
8dcf37d4
S
957
958 ret = vmbus_sendpacket(device->channel, vstor_packet,
8b612fa2
S
959 (sizeof(struct vstor_packet) -
960 vmscsi_size_delta),
8dcf37d4
S
961 (unsigned long)request,
962 VM_PKT_DATA_INBAND,
963 VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED);
964
965 if (ret != 0)
966 goto cleanup;
967
968 t = wait_for_completion_timeout(&request->wait_event, 5*HZ);
969 if (t == 0) {
970 ret = -ETIMEDOUT;
971 goto cleanup;
972 }
973
974 if (vstor_packet->operation != VSTOR_OPERATION_COMPLETE_IO ||
975 vstor_packet->status != 0)
976 goto cleanup;
977
6f94d5de
S
978 /*
979 * Check to see if multi-channel support is there.
980 * Hosts that implement protocol version of 5.1 and above
981 * support multi-channel.
982 */
983 max_chns = vstor_packet->storage_channel_properties.max_channel_cnt;
6ee5c615 984 if (vmbus_proto_version >= VERSION_WIN8) {
6f94d5de
S
985 if (vstor_packet->storage_channel_properties.flags &
986 STORAGE_CHANNEL_SUPPORTS_MULTI_CHANNEL)
987 process_sub_channels = true;
988 }
5117b936
S
989 stor_device->max_transfer_bytes =
990 vstor_packet->storage_channel_properties.max_transfer_bytes;
6f94d5de 991
8dcf37d4
S
992 memset(vstor_packet, 0, sizeof(struct vstor_packet));
993 vstor_packet->operation = VSTOR_OPERATION_END_INITIALIZATION;
994 vstor_packet->flags = REQUEST_COMPLETION_FLAG;
995
996 ret = vmbus_sendpacket(device->channel, vstor_packet,
8b612fa2
S
997 (sizeof(struct vstor_packet) -
998 vmscsi_size_delta),
8dcf37d4
S
999 (unsigned long)request,
1000 VM_PKT_DATA_INBAND,
1001 VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED);
1002
1003 if (ret != 0)
1004 goto cleanup;
1005
1006 t = wait_for_completion_timeout(&request->wait_event, 5*HZ);
1007 if (t == 0) {
1008 ret = -ETIMEDOUT;
1009 goto cleanup;
1010 }
1011
1012 if (vstor_packet->operation != VSTOR_OPERATION_COMPLETE_IO ||
1013 vstor_packet->status != 0)
1014 goto cleanup;
1015
6f94d5de
S
1016 if (process_sub_channels)
1017 handle_multichannel_storage(device, max_chns);
1018
8dcf37d4
S
1019
1020cleanup:
1021 return ret;
1022}
1023
c50bd448
S
1024static void storvsc_handle_error(struct vmscsi_request *vm_srb,
1025 struct scsi_cmnd *scmnd,
1026 struct Scsi_Host *host,
1027 u8 asc, u8 ascq)
1028{
1029 struct storvsc_scan_work *wrk;
1030 void (*process_err_fn)(struct work_struct *work);
1031 bool do_work = false;
1032
1033 switch (vm_srb->srb_status) {
1034 case SRB_STATUS_ERROR:
1035 /*
1036 * If there is an error; offline the device since all
1037 * error recovery strategies would have already been
1038 * deployed on the host side. However, if the command
1039 * were a pass-through command deal with it appropriately.
1040 */
1041 switch (scmnd->cmnd[0]) {
1042 case ATA_16:
1043 case ATA_12:
1044 set_host_byte(scmnd, DID_PASSTHROUGH);
1045 break;
3533f860
S
1046 /*
1047 * On Some Windows hosts TEST_UNIT_READY command can return
1048 * SRB_STATUS_ERROR, let the upper level code deal with it
1049 * based on the sense information.
1050 */
1051 case TEST_UNIT_READY:
1052 break;
c50bd448
S
1053 default:
1054 set_host_byte(scmnd, DID_TARGET_FAILURE);
1055 }
1056 break;
1057 case SRB_STATUS_INVALID_LUN:
1058 do_work = true;
1059 process_err_fn = storvsc_remove_lun;
1060 break;
6781209e
S
1061 case (SRB_STATUS_ABORTED | SRB_STATUS_AUTOSENSE_VALID):
1062 if ((asc == 0x2a) && (ascq == 0x9)) {
1063 do_work = true;
1064 process_err_fn = storvsc_device_scan;
1065 /*
1066 * Retry the I/O that trigerred this.
1067 */
1068 set_host_byte(scmnd, DID_REQUEUE);
1069 }
1070 break;
c50bd448 1071 }
6781209e 1072
c50bd448
S
1073 if (!do_work)
1074 return;
1075
1076 /*
1077 * We need to schedule work to process this error; schedule it.
1078 */
1079 wrk = kmalloc(sizeof(struct storvsc_scan_work), GFP_ATOMIC);
1080 if (!wrk) {
1081 set_host_byte(scmnd, DID_TARGET_FAILURE);
1082 return;
1083 }
1084
1085 wrk->host = host;
1086 wrk->lun = vm_srb->lun;
1087 INIT_WORK(&wrk->work, process_err_fn);
1088 schedule_work(&wrk->work);
1089}
1090
2707388c 1091
61eaffc9 1092static void storvsc_command_completion(struct storvsc_cmd_request *cmd_request)
8dcf37d4 1093{
2707388c
S
1094 struct scsi_cmnd *scmnd = cmd_request->cmd;
1095 struct hv_host_device *host_dev = shost_priv(scmnd->device->host);
2707388c
S
1096 struct scsi_sense_hdr sense_hdr;
1097 struct vmscsi_request *vm_srb;
c50bd448
S
1098 struct Scsi_Host *host;
1099 struct storvsc_device *stor_dev;
1100 struct hv_device *dev = host_dev->dev;
be0cf6ca
S
1101 u32 payload_sz = cmd_request->payload_sz;
1102 void *payload = cmd_request->payload;
c50bd448
S
1103
1104 stor_dev = get_in_stor_device(dev);
1105 host = stor_dev->host;
8dcf37d4 1106
61eaffc9 1107 vm_srb = &cmd_request->vstor_packet.vm_srb;
2707388c
S
1108 if (cmd_request->bounce_sgl_count) {
1109 if (vm_srb->data_in == READ_TYPE)
1110 copy_from_bounce_buffer(scsi_sglist(scmnd),
1111 cmd_request->bounce_sgl,
1112 scsi_sg_count(scmnd),
1113 cmd_request->bounce_sgl_count);
1114 destroy_bounce_buffer(cmd_request->bounce_sgl,
1115 cmd_request->bounce_sgl_count);
1116 }
8dcf37d4 1117
42e22cac
S
1118 scmnd->result = vm_srb->scsi_status;
1119
2707388c
S
1120 if (scmnd->result) {
1121 if (scsi_normalize_sense(scmnd->sense_buffer,
1122 SCSI_SENSE_BUFFERSIZE, &sense_hdr))
d811b848
HR
1123 scsi_print_sense_hdr(scmnd->device, "storvsc",
1124 &sense_hdr);
2707388c
S
1125 }
1126
c50bd448
S
1127 if (vm_srb->srb_status != SRB_STATUS_SUCCESS)
1128 storvsc_handle_error(vm_srb, scmnd, host, sense_hdr.asc,
1129 sense_hdr.ascq);
1130
2707388c 1131 scsi_set_resid(scmnd,
be0cf6ca 1132 cmd_request->payload->range.len -
2707388c
S
1133 vm_srb->data_transfer_length);
1134
ead3700d 1135 scmnd->scsi_done(scmnd);
be0cf6ca
S
1136
1137 if (payload_sz >
1138 sizeof(struct vmbus_channel_packet_multipage_buffer))
1139 kfree(payload);
2707388c
S
1140}
1141
1142static void storvsc_on_io_completion(struct hv_device *device,
1143 struct vstor_packet *vstor_packet,
61eaffc9 1144 struct storvsc_cmd_request *request)
2707388c
S
1145{
1146 struct storvsc_device *stor_device;
1147 struct vstor_packet *stor_pkt;
1148
1149 stor_device = hv_get_drvdata(device);
1150 stor_pkt = &request->vstor_packet;
1151
1152 /*
1153 * The current SCSI handling on the host side does
1154 * not correctly handle:
1155 * INQUIRY command with page code parameter set to 0x80
1156 * MODE_SENSE command with cmd[2] == 0x1c
1157 *
1158 * Setup srb and scsi status so this won't be fatal.
1159 * We do this so we can distinguish truly fatal failues
4ed51a21
S
1160 * (srb status == 0x4) and off-line the device in that case.
1161 */
1162
1163 if ((stor_pkt->vm_srb.cdb[0] == INQUIRY) ||
a8c18c57 1164 (stor_pkt->vm_srb.cdb[0] == MODE_SENSE)) {
4ed51a21 1165 vstor_packet->vm_srb.scsi_status = 0;
16046320 1166 vstor_packet->vm_srb.srb_status = SRB_STATUS_SUCCESS;
4ed51a21
S
1167 }
1168
8dcf37d4
S
1169
1170 /* Copy over the status...etc */
1171 stor_pkt->vm_srb.scsi_status = vstor_packet->vm_srb.scsi_status;
1172 stor_pkt->vm_srb.srb_status = vstor_packet->vm_srb.srb_status;
1173 stor_pkt->vm_srb.sense_info_length =
1174 vstor_packet->vm_srb.sense_info_length;
1175
8dcf37d4
S
1176
1177 if ((vstor_packet->vm_srb.scsi_status & 0xFF) == 0x02) {
1178 /* CHECK_CONDITION */
16046320
S
1179 if (vstor_packet->vm_srb.srb_status &
1180 SRB_STATUS_AUTOSENSE_VALID) {
8dcf37d4 1181 /* autosense data available */
8dcf37d4 1182
ead3700d 1183 memcpy(request->cmd->sense_buffer,
8dcf37d4
S
1184 vstor_packet->vm_srb.sense_data,
1185 vstor_packet->vm_srb.sense_info_length);
1186
1187 }
1188 }
1189
1190 stor_pkt->vm_srb.data_transfer_length =
1191 vstor_packet->vm_srb.data_transfer_length;
1192
2707388c 1193 storvsc_command_completion(request);
8dcf37d4
S
1194
1195 if (atomic_dec_and_test(&stor_device->num_outstanding_req) &&
1196 stor_device->drain_notify)
1197 wake_up(&stor_device->waiting_to_drain);
1198
1199
1200}
1201
1202static void storvsc_on_receive(struct hv_device *device,
1203 struct vstor_packet *vstor_packet,
61eaffc9 1204 struct storvsc_cmd_request *request)
8dcf37d4 1205{
12675799
S
1206 struct storvsc_scan_work *work;
1207 struct storvsc_device *stor_device;
1208
8dcf37d4
S
1209 switch (vstor_packet->operation) {
1210 case VSTOR_OPERATION_COMPLETE_IO:
1211 storvsc_on_io_completion(device, vstor_packet, request);
1212 break;
12675799 1213
8dcf37d4 1214 case VSTOR_OPERATION_REMOVE_DEVICE:
12675799
S
1215 case VSTOR_OPERATION_ENUMERATE_BUS:
1216 stor_device = get_in_stor_device(device);
1217 work = kmalloc(sizeof(struct storvsc_scan_work), GFP_ATOMIC);
1218 if (!work)
1219 return;
1220
2a09ed3d 1221 INIT_WORK(&work->work, storvsc_host_scan);
12675799
S
1222 work->host = stor_device->host;
1223 schedule_work(&work->work);
1224 break;
8dcf37d4
S
1225
1226 default:
1227 break;
1228 }
1229}
1230
1231static void storvsc_on_channel_callback(void *context)
1232{
6f94d5de
S
1233 struct vmbus_channel *channel = (struct vmbus_channel *)context;
1234 struct hv_device *device;
8dcf37d4
S
1235 struct storvsc_device *stor_device;
1236 u32 bytes_recvd;
1237 u64 request_id;
1238 unsigned char packet[ALIGN(sizeof(struct vstor_packet), 8)];
61eaffc9 1239 struct storvsc_cmd_request *request;
8dcf37d4
S
1240 int ret;
1241
6f94d5de
S
1242 if (channel->primary_channel != NULL)
1243 device = channel->primary_channel->device_obj;
1244 else
1245 device = channel->device_obj;
8dcf37d4
S
1246
1247 stor_device = get_in_stor_device(device);
1248 if (!stor_device)
1249 return;
1250
1251 do {
6f94d5de 1252 ret = vmbus_recvpacket(channel, packet,
8b612fa2
S
1253 ALIGN((sizeof(struct vstor_packet) -
1254 vmscsi_size_delta), 8),
8dcf37d4
S
1255 &bytes_recvd, &request_id);
1256 if (ret == 0 && bytes_recvd > 0) {
1257
61eaffc9 1258 request = (struct storvsc_cmd_request *)
8dcf37d4
S
1259 (unsigned long)request_id;
1260
1261 if ((request == &stor_device->init_request) ||
1262 (request == &stor_device->reset_request)) {
1263
1264 memcpy(&request->vstor_packet, packet,
8b612fa2
S
1265 (sizeof(struct vstor_packet) -
1266 vmscsi_size_delta));
8dcf37d4
S
1267 complete(&request->wait_event);
1268 } else {
1269 storvsc_on_receive(device,
1270 (struct vstor_packet *)packet,
1271 request);
1272 }
1273 } else {
1274 break;
1275 }
1276 } while (1);
1277
1278 return;
1279}
1280
1281static int storvsc_connect_to_vsp(struct hv_device *device, u32 ring_size)
1282{
1283 struct vmstorage_channel_properties props;
1284 int ret;
1285
1286 memset(&props, 0, sizeof(struct vmstorage_channel_properties));
1287
8dcf37d4
S
1288 ret = vmbus_open(device->channel,
1289 ring_size,
1290 ring_size,
1291 (void *)&props,
1292 sizeof(struct vmstorage_channel_properties),
6f94d5de 1293 storvsc_on_channel_callback, device->channel);
8dcf37d4
S
1294
1295 if (ret != 0)
1296 return ret;
1297
1298 ret = storvsc_channel_init(device);
1299
1300 return ret;
1301}
1302
c1b3d067 1303static int storvsc_dev_remove(struct hv_device *device)
8dcf37d4
S
1304{
1305 struct storvsc_device *stor_device;
1306 unsigned long flags;
1307
cd654ea1 1308 stor_device = hv_get_drvdata(device);
8dcf37d4
S
1309
1310 spin_lock_irqsave(&device->channel->inbound_lock, flags);
1311 stor_device->destroy = true;
1312 spin_unlock_irqrestore(&device->channel->inbound_lock, flags);
1313
1314 /*
1315 * At this point, all outbound traffic should be disable. We
1316 * only allow inbound traffic (responses) to proceed so that
1317 * outstanding requests can be completed.
1318 */
1319
1320 storvsc_wait_to_drain(stor_device);
1321
1322 /*
1323 * Since we have already drained, we don't need to busy wait
1324 * as was done in final_release_stor_device()
1325 * Note that we cannot set the ext pointer to NULL until
1326 * we have drained - to drain the outgoing packets, we need to
1327 * allow incoming packets.
1328 */
1329 spin_lock_irqsave(&device->channel->inbound_lock, flags);
cd654ea1 1330 hv_set_drvdata(device, NULL);
8dcf37d4
S
1331 spin_unlock_irqrestore(&device->channel->inbound_lock, flags);
1332
1333 /* Close the channel */
1334 vmbus_close(device->channel);
1335
1336 kfree(stor_device);
1337 return 0;
1338}
1339
c1b3d067 1340static int storvsc_do_io(struct hv_device *device,
be0cf6ca 1341 struct storvsc_cmd_request *request)
8dcf37d4
S
1342{
1343 struct storvsc_device *stor_device;
1344 struct vstor_packet *vstor_packet;
6f94d5de 1345 struct vmbus_channel *outgoing_channel;
8dcf37d4
S
1346 int ret = 0;
1347
1348 vstor_packet = &request->vstor_packet;
1349 stor_device = get_out_stor_device(device);
1350
1351 if (!stor_device)
1352 return -ENODEV;
1353
1354
1355 request->device = device;
6f94d5de
S
1356 /*
1357 * Select an an appropriate channel to send the request out.
1358 */
1359
1360 outgoing_channel = vmbus_get_outgoing_channel(device->channel);
8dcf37d4
S
1361
1362
1363 vstor_packet->flags |= REQUEST_COMPLETION_FLAG;
1364
8b612fa2
S
1365 vstor_packet->vm_srb.length = (sizeof(struct vmscsi_request) -
1366 vmscsi_size_delta);
8dcf37d4
S
1367
1368
8b612fa2 1369 vstor_packet->vm_srb.sense_info_length = sense_buffer_size;
8dcf37d4
S
1370
1371
1372 vstor_packet->vm_srb.data_transfer_length =
be0cf6ca 1373 request->payload->range.len;
8dcf37d4
S
1374
1375 vstor_packet->operation = VSTOR_OPERATION_EXECUTE_SRB;
1376
be0cf6ca
S
1377 if (request->payload->range.len) {
1378
1379 ret = vmbus_sendpacket_mpb_desc(outgoing_channel,
1380 request->payload, request->payload_sz,
8dcf37d4 1381 vstor_packet,
8b612fa2
S
1382 (sizeof(struct vstor_packet) -
1383 vmscsi_size_delta),
8dcf37d4
S
1384 (unsigned long)request);
1385 } else {
0147dabc 1386 ret = vmbus_sendpacket(outgoing_channel, vstor_packet,
8b612fa2
S
1387 (sizeof(struct vstor_packet) -
1388 vmscsi_size_delta),
8dcf37d4
S
1389 (unsigned long)request,
1390 VM_PKT_DATA_INBAND,
1391 VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED);
1392 }
1393
1394 if (ret != 0)
1395 return ret;
1396
1397 atomic_inc(&stor_device->num_outstanding_req);
1398
1399 return ret;
1400}
1401
419f2d03
S
1402static int storvsc_device_configure(struct scsi_device *sdevice)
1403{
419f2d03 1404
419f2d03
S
1405 blk_queue_max_segment_size(sdevice->request_queue, PAGE_SIZE);
1406
419f2d03 1407 blk_queue_bounce_limit(sdevice->request_queue, BLK_BOUNCE_ANY);
419f2d03 1408
893def38
S
1409 blk_queue_rq_timeout(sdevice->request_queue, (storvsc_timeout * HZ));
1410
3e8f4f40
OH
1411 sdevice->no_write_same = 1;
1412
f3cfabce
S
1413 /*
1414 * Add blist flags to permit the reading of the VPD pages even when
1415 * the target may claim SPC-2 compliance. MSFT targets currently
1416 * claim SPC-2 compliance while they implement post SPC-2 features.
1417 * With this patch we can correctly handle WRITE_SAME_16 issues.
1418 */
1419 sdevice->sdev_bflags |= msft_blist_flags;
1420
b0a93d96
S
1421 /*
1422 * If the host is WIN8 or WIN8 R2, claim conformance to SPC-3
1423 * if the device is a MSFT virtual device.
1424 */
1425 if (!strncmp(sdevice->vendor, "Msft", 4)) {
1426 switch (vmbus_proto_version) {
1427 case VERSION_WIN8:
1428 case VERSION_WIN8_1:
1429 sdevice->scsi_level = SCSI_SPC_3;
1430 break;
1431 }
1432 }
1433
419f2d03
S
1434 return 0;
1435}
1436
62838ce2
S
1437static int storvsc_get_chs(struct scsi_device *sdev, struct block_device * bdev,
1438 sector_t capacity, int *info)
1439{
5326fd5c
S
1440 sector_t nsect = capacity;
1441 sector_t cylinders = nsect;
1442 int heads, sectors_pt;
62838ce2 1443
5326fd5c
S
1444 /*
1445 * We are making up these values; let us keep it simple.
1446 */
1447 heads = 0xff;
1448 sectors_pt = 0x3f; /* Sectors per track */
1449 sector_div(cylinders, heads * sectors_pt);
1450 if ((sector_t)(cylinders + 1) * heads * sectors_pt < nsect)
1451 cylinders = 0xffff;
62838ce2
S
1452
1453 info[0] = heads;
5326fd5c
S
1454 info[1] = sectors_pt;
1455 info[2] = (int)cylinders;
62838ce2 1456
62838ce2
S
1457 return 0;
1458}
aa3d789e 1459
4b270c8b 1460static int storvsc_host_reset_handler(struct scsi_cmnd *scmnd)
aa3d789e 1461{
4b270c8b
S
1462 struct hv_host_device *host_dev = shost_priv(scmnd->device->host);
1463 struct hv_device *device = host_dev->dev;
1464
aa3d789e 1465 struct storvsc_device *stor_device;
61eaffc9 1466 struct storvsc_cmd_request *request;
aa3d789e
S
1467 struct vstor_packet *vstor_packet;
1468 int ret, t;
1469
aa3d789e 1470
1eaaddf9 1471 stor_device = get_out_stor_device(device);
aa3d789e 1472 if (!stor_device)
a00e8224 1473 return FAILED;
aa3d789e
S
1474
1475 request = &stor_device->reset_request;
1476 vstor_packet = &request->vstor_packet;
1477
1478 init_completion(&request->wait_event);
1479
1480 vstor_packet->operation = VSTOR_OPERATION_RESET_BUS;
1481 vstor_packet->flags = REQUEST_COMPLETION_FLAG;
1482 vstor_packet->vm_srb.path_id = stor_device->path_id;
1483
1484 ret = vmbus_sendpacket(device->channel, vstor_packet,
8b612fa2
S
1485 (sizeof(struct vstor_packet) -
1486 vmscsi_size_delta),
aa3d789e
S
1487 (unsigned long)&stor_device->reset_request,
1488 VM_PKT_DATA_INBAND,
1489 VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED);
1490 if (ret != 0)
a00e8224 1491 return FAILED;
aa3d789e 1492
46d2eb6d 1493 t = wait_for_completion_timeout(&request->wait_event, 5*HZ);
a00e8224
S
1494 if (t == 0)
1495 return TIMEOUT_ERROR;
aa3d789e 1496
aa3d789e
S
1497
1498 /*
1499 * At this point, all outstanding requests in the adapter
1500 * should have been flushed out and return to us
5c1b10ab
S
1501 * There is a potential race here where the host may be in
1502 * the process of responding when we return from here.
1503 * Just wait for all in-transit packets to be accounted for
1504 * before we return from here.
aa3d789e 1505 */
5c1b10ab 1506 storvsc_wait_to_drain(stor_device);
aa3d789e 1507
a00e8224 1508 return SUCCESS;
aa3d789e
S
1509}
1510
56b26e69
S
1511/*
1512 * The host guarantees to respond to each command, although I/O latencies might
1513 * be unbounded on Azure. Reset the timer unconditionally to give the host a
1514 * chance to perform EH.
1515 */
1516static enum blk_eh_timer_return storvsc_eh_timed_out(struct scsi_cmnd *scmnd)
1517{
1518 return BLK_EH_RESET_TIMER;
1519}
1520
c77b63b6 1521static bool storvsc_scsi_cmd_ok(struct scsi_cmnd *scmnd)
92ae4ebd
OH
1522{
1523 bool allowed = true;
1524 u8 scsi_op = scmnd->cmnd[0];
1525
1526 switch (scsi_op) {
3e8f4f40
OH
1527 /* the host does not handle WRITE_SAME, log accident usage */
1528 case WRITE_SAME:
c77b63b6
S
1529 /*
1530 * smartd sends this command and the host does not handle
1531 * this. So, don't send it.
1532 */
41098f8f 1533 case SET_WINDOW:
59e00e74 1534 scmnd->result = ILLEGAL_REQUEST << 16;
41098f8f
S
1535 allowed = false;
1536 break;
1537 default:
1538 break;
92ae4ebd
OH
1539 }
1540 return allowed;
1541}
c5b463ae 1542
bab445e1 1543static int storvsc_queuecommand(struct Scsi_Host *host, struct scsi_cmnd *scmnd)
c5b463ae
S
1544{
1545 int ret;
bab445e1 1546 struct hv_host_device *host_dev = shost_priv(host);
c5b463ae 1547 struct hv_device *dev = host_dev->dev;
ead3700d 1548 struct storvsc_cmd_request *cmd_request = scsi_cmd_priv(scmnd);
c5b463ae
S
1549 int i;
1550 struct scatterlist *sgl;
1551 unsigned int sg_count = 0;
1552 struct vmscsi_request *vm_srb;
aaced993 1553 struct scatterlist *cur_sgl;
be0cf6ca
S
1554 struct vmbus_packet_mpb_array *payload;
1555 u32 payload_sz;
1556 u32 length;
c5b463ae 1557
8caf92d8
S
1558 if (vmstor_current_major <= VMSTOR_WIN8_MAJOR) {
1559 /*
1560 * On legacy hosts filter unimplemented commands.
1561 * Future hosts are expected to correctly handle
1562 * unsupported commands. Furthermore, it is
1563 * possible that some of the currently
1564 * unsupported commands maybe supported in
1565 * future versions of the host.
1566 */
1567 if (!storvsc_scsi_cmd_ok(scmnd)) {
1568 scmnd->scsi_done(scmnd);
1569 return 0;
1570 }
92ae4ebd 1571 }
c5b463ae 1572
c5b463ae 1573 /* Setup the cmd request */
c5b463ae
S
1574 cmd_request->cmd = scmnd;
1575
61eaffc9 1576 vm_srb = &cmd_request->vstor_packet.vm_srb;
8b612fa2 1577 vm_srb->win8_extension.time_out_value = 60;
c5b463ae 1578
f885fb73
S
1579 vm_srb->win8_extension.srb_flags |=
1580 (SRB_FLAGS_QUEUE_ACTION_ENABLE |
1581 SRB_FLAGS_DISABLE_SYNCH_TRANSFER);
c5b463ae
S
1582
1583 /* Build the SRB */
1584 switch (scmnd->sc_data_direction) {
1585 case DMA_TO_DEVICE:
1586 vm_srb->data_in = WRITE_TYPE;
8b612fa2 1587 vm_srb->win8_extension.srb_flags |= SRB_FLAGS_DATA_OUT;
c5b463ae
S
1588 break;
1589 case DMA_FROM_DEVICE:
1590 vm_srb->data_in = READ_TYPE;
8b612fa2 1591 vm_srb->win8_extension.srb_flags |= SRB_FLAGS_DATA_IN;
c5b463ae 1592 break;
cb1cf080 1593 case DMA_NONE:
c5b463ae 1594 vm_srb->data_in = UNKNOWN_TYPE;
dc45708c 1595 vm_srb->win8_extension.srb_flags |= SRB_FLAGS_NO_DATA_TRANSFER;
c5b463ae 1596 break;
cb1cf080
VK
1597 default:
1598 /*
1599 * This is DMA_BIDIRECTIONAL or something else we are never
1600 * supposed to see here.
1601 */
1602 WARN(1, "Unexpected data direction: %d\n",
1603 scmnd->sc_data_direction);
1604 return -EINVAL;
c5b463ae
S
1605 }
1606
c5b463ae 1607
c5b463ae
S
1608 vm_srb->port_number = host_dev->port;
1609 vm_srb->path_id = scmnd->device->channel;
1610 vm_srb->target_id = scmnd->device->id;
1611 vm_srb->lun = scmnd->device->lun;
1612
c5b463ae
S
1613 vm_srb->cdb_length = scmnd->cmd_len;
1614
1615 memcpy(vm_srb->cdb, scmnd->cmnd, vm_srb->cdb_length);
1616
be0cf6ca
S
1617 sgl = (struct scatterlist *)scsi_sglist(scmnd);
1618 sg_count = scsi_sg_count(scmnd);
c5b463ae 1619
be0cf6ca
S
1620 length = scsi_bufflen(scmnd);
1621 payload = (struct vmbus_packet_mpb_array *)&cmd_request->mpb;
1622 payload_sz = sizeof(cmd_request->mpb);
1623
1624 if (sg_count) {
c5b463ae
S
1625 /* check if we need to bounce the sgl */
1626 if (do_bounce_buffer(sgl, scsi_sg_count(scmnd)) != -1) {
1627 cmd_request->bounce_sgl =
be0cf6ca
S
1628 create_bounce_buffer(sgl, sg_count,
1629 length,
6e8087a4 1630 vm_srb->data_in);
ead3700d
CH
1631 if (!cmd_request->bounce_sgl)
1632 return SCSI_MLQUEUE_HOST_BUSY;
c5b463ae
S
1633
1634 cmd_request->bounce_sgl_count =
be0cf6ca 1635 ALIGN(length, PAGE_SIZE) >> PAGE_SHIFT;
c5b463ae 1636
fa23b8c7
S
1637 if (vm_srb->data_in == WRITE_TYPE)
1638 copy_to_bounce_buffer(sgl,
be0cf6ca 1639 cmd_request->bounce_sgl, sg_count);
c5b463ae
S
1640
1641 sgl = cmd_request->bounce_sgl;
1642 sg_count = cmd_request->bounce_sgl_count;
1643 }
1644
be0cf6ca
S
1645
1646 if (sg_count > MAX_PAGE_BUFFER_COUNT) {
1647
1648 payload_sz = (sg_count * sizeof(void *) +
1649 sizeof(struct vmbus_packet_mpb_array));
1650 payload = kmalloc(payload_sz, GFP_ATOMIC);
1651 if (!payload) {
1652 if (cmd_request->bounce_sgl_count)
1653 destroy_bounce_buffer(
1654 cmd_request->bounce_sgl,
1655 cmd_request->bounce_sgl_count);
1656
1657 return SCSI_MLQUEUE_DEVICE_BUSY;
1658 }
1659 }
1660
1661 payload->range.len = length;
1662 payload->range.offset = sgl[0].offset;
1663
aaced993
S
1664 cur_sgl = sgl;
1665 for (i = 0; i < sg_count; i++) {
be0cf6ca 1666 payload->range.pfn_array[i] =
aaced993
S
1667 page_to_pfn(sg_page((cur_sgl)));
1668 cur_sgl = sg_next(cur_sgl);
1669 }
c5b463ae
S
1670
1671 } else if (scsi_sglist(scmnd)) {
be0cf6ca
S
1672 payload->range.len = length;
1673 payload->range.offset =
c5b463ae 1674 virt_to_phys(scsi_sglist(scmnd)) & (PAGE_SIZE-1);
be0cf6ca 1675 payload->range.pfn_array[0] =
c5b463ae
S
1676 virt_to_phys(scsi_sglist(scmnd)) >> PAGE_SHIFT;
1677 }
1678
be0cf6ca
S
1679 cmd_request->payload = payload;
1680 cmd_request->payload_sz = payload_sz;
1681
c5b463ae 1682 /* Invokes the vsc to start an IO */
61eaffc9 1683 ret = storvsc_do_io(dev, cmd_request);
636f0fd1 1684
d2598f01 1685 if (ret == -EAGAIN) {
c5b463ae
S
1686 /* no more space */
1687
e86fb5e8 1688 if (cmd_request->bounce_sgl_count)
c5b463ae 1689 destroy_bounce_buffer(cmd_request->bounce_sgl,
70691ec6 1690 cmd_request->bounce_sgl_count);
c5b463ae 1691
ead3700d 1692 return SCSI_MLQUEUE_DEVICE_BUSY;
c5b463ae
S
1693 }
1694
c77b63b6 1695 return 0;
c5b463ae
S
1696}
1697
bef4a34a 1698static struct scsi_host_template scsi_driver = {
ff568d3a
GKH
1699 .module = THIS_MODULE,
1700 .name = "storvsc_host_t",
ead3700d 1701 .cmd_size = sizeof(struct storvsc_cmd_request),
ff568d3a
GKH
1702 .bios_param = storvsc_get_chs,
1703 .queuecommand = storvsc_queuecommand,
1704 .eh_host_reset_handler = storvsc_host_reset_handler,
ead3700d 1705 .proc_name = "storvsc_host",
56b26e69 1706 .eh_timed_out = storvsc_eh_timed_out,
ff568d3a 1707 .slave_configure = storvsc_device_configure,
52f9614d 1708 .cmd_per_lun = 255,
ff568d3a 1709 .this_id = -1,
be0cf6ca 1710 .use_clustering = ENABLE_CLUSTERING,
454f18a9 1711 /* Make sure we dont get a sg segment crosses a page boundary */
ff568d3a 1712 .dma_boundary = PAGE_SIZE-1,
54b2b50c 1713 .no_write_same = 1,
bef4a34a
HJ
1714};
1715
ef52a81b
S
1716enum {
1717 SCSI_GUID,
1718 IDE_GUID,
bde6d0f9 1719 SFC_GUID,
ef52a81b
S
1720};
1721
d847b5fe 1722static const struct hv_vmbus_device_id id_table[] = {
c45cf2d4 1723 /* SCSI guid */
35c3bc20
S
1724 { HV_SCSI_GUID,
1725 .driver_data = SCSI_GUID
1726 },
21e37742 1727 /* IDE guid */
35c3bc20
S
1728 { HV_IDE_GUID,
1729 .driver_data = IDE_GUID
1730 },
bde6d0f9
S
1731 /* Fibre Channel GUID */
1732 {
1733 HV_SYNTHFC_GUID,
1734 .driver_data = SFC_GUID
1735 },
c45cf2d4 1736 { },
d847b5fe 1737};
bef4a34a 1738
d847b5fe 1739MODULE_DEVICE_TABLE(vmbus, id_table);
bd1f5d6a 1740
84946899
S
1741static int storvsc_probe(struct hv_device *device,
1742 const struct hv_vmbus_device_id *dev_id)
bef4a34a 1743{
ff568d3a 1744 int ret;
f458aada 1745 int num_cpus = num_online_cpus();
bef4a34a 1746 struct Scsi_Host *host;
795b613d 1747 struct hv_host_device *host_dev;
ef52a81b 1748 bool dev_is_ide = ((dev_id->driver_data == IDE_GUID) ? true : false);
bd1f5d6a 1749 int target = 0;
6e4198ce 1750 struct storvsc_device *stor_device;
0fb8db29
S
1751 int max_luns_per_target;
1752 int max_targets;
1753 int max_channels;
f458aada 1754 int max_sub_channels = 0;
bd1f5d6a 1755
8b612fa2
S
1756 /*
1757 * Based on the windows host we are running on,
1758 * set state to properly communicate with the host.
1759 */
1760
6ee5c615 1761 if (vmbus_proto_version < VERSION_WIN8) {
8b612fa2
S
1762 sense_buffer_size = PRE_WIN8_STORVSC_SENSE_BUFFER_SIZE;
1763 vmscsi_size_delta = sizeof(struct vmscsi_win8_extension);
1764 vmstor_current_major = VMSTOR_WIN7_MAJOR;
1765 vmstor_current_minor = VMSTOR_WIN7_MINOR;
0fb8db29
S
1766 max_luns_per_target = STORVSC_IDE_MAX_LUNS_PER_TARGET;
1767 max_targets = STORVSC_IDE_MAX_TARGETS;
1768 max_channels = STORVSC_IDE_MAX_CHANNELS;
6ee5c615 1769 } else {
adb6f9e1
S
1770 sense_buffer_size = POST_WIN7_STORVSC_SENSE_BUFFER_SIZE;
1771 vmscsi_size_delta = 0;
1772 vmstor_current_major = VMSTOR_WIN8_MAJOR;
1773 vmstor_current_minor = VMSTOR_WIN8_MINOR;
0fb8db29
S
1774 max_luns_per_target = STORVSC_MAX_LUNS_PER_TARGET;
1775 max_targets = STORVSC_MAX_TARGETS;
1776 max_channels = STORVSC_MAX_CHANNELS;
f458aada
S
1777 /*
1778 * On Windows8 and above, we support sub-channels for storage.
1779 * The number of sub-channels offerred is based on the number of
1780 * VCPUs in the guest.
1781 */
1782 max_sub_channels = (num_cpus / storvsc_vcpus_per_sub_channel);
8b612fa2
S
1783 }
1784
f458aada
S
1785 scsi_driver.can_queue = (max_outstanding_req_per_channel *
1786 (max_sub_channels + 1));
1787
ff568d3a 1788 host = scsi_host_alloc(&scsi_driver,
972621c9 1789 sizeof(struct hv_host_device));
f8feed06 1790 if (!host)
bef4a34a 1791 return -ENOMEM;
bef4a34a 1792
7f33f30a 1793 host_dev = shost_priv(host);
795b613d 1794 memset(host_dev, 0, sizeof(struct hv_host_device));
bef4a34a 1795
795b613d 1796 host_dev->port = host->host_no;
97c15296 1797 host_dev->dev = device;
bef4a34a 1798
4e03e697 1799
a13d35ab 1800 stor_device = kzalloc(sizeof(struct storvsc_device), GFP_KERNEL);
6e4198ce 1801 if (!stor_device) {
225ce6ea 1802 ret = -ENOMEM;
ce3e301c 1803 goto err_out0;
6e4198ce 1804 }
9efd21e1 1805
a13d35ab 1806 stor_device->destroy = false;
6f94d5de 1807 stor_device->open_sub_channel = false;
a13d35ab
S
1808 init_waitqueue_head(&stor_device->waiting_to_drain);
1809 stor_device->device = device;
cd654ea1
S
1810 stor_device->host = host;
1811 hv_set_drvdata(device, stor_device);
a13d35ab 1812
6e4198ce
S
1813 stor_device->port_number = host->host_no;
1814 ret = storvsc_connect_to_vsp(device, storvsc_ringbuffer_size);
225ce6ea 1815 if (ret)
ce3e301c 1816 goto err_out1;
bef4a34a 1817
6e4198ce
S
1818 host_dev->path = stor_device->path_id;
1819 host_dev->target = stor_device->target_id;
bef4a34a 1820
4cd83ecd
S
1821 switch (dev_id->driver_data) {
1822 case SFC_GUID:
1823 host->max_lun = STORVSC_FC_MAX_LUNS_PER_TARGET;
1824 host->max_id = STORVSC_FC_MAX_TARGETS;
1825 host->max_channel = STORVSC_FC_MAX_CHANNELS - 1;
1826 break;
1827
1828 case SCSI_GUID:
0fb8db29
S
1829 host->max_lun = max_luns_per_target;
1830 host->max_id = max_targets;
1831 host->max_channel = max_channels - 1;
4cd83ecd
S
1832 break;
1833
1834 default:
1835 host->max_lun = STORVSC_IDE_MAX_LUNS_PER_TARGET;
1836 host->max_id = STORVSC_IDE_MAX_TARGETS;
1837 host->max_channel = STORVSC_IDE_MAX_CHANNELS - 1;
1838 break;
1839 }
cf55f4a8
MS
1840 /* max cmd length */
1841 host->max_cmd_len = STORVSC_MAX_CMD_LEN;
bef4a34a 1842
be0cf6ca
S
1843 /*
1844 * set the table size based on the info we got
1845 * from the host.
1846 */
1847 host->sg_tablesize = (stor_device->max_transfer_bytes >> PAGE_SHIFT);
1848
454f18a9 1849 /* Register the HBA and start the scsi bus scan */
9efd21e1 1850 ret = scsi_add_host(host, &device->device);
bd1f5d6a 1851 if (ret != 0)
ce3e301c 1852 goto err_out2;
bef4a34a 1853
bd1f5d6a
S
1854 if (!dev_is_ide) {
1855 scsi_scan_host(host);
59d22950
S
1856 } else {
1857 target = (device->dev_instance.b[5] << 8 |
1858 device->dev_instance.b[4]);
1859 ret = scsi_add_device(host, 0, target, 0);
1860 if (ret) {
1861 scsi_remove_host(host);
1862 goto err_out2;
1863 }
bef4a34a 1864 }
bd1f5d6a 1865 return 0;
bef4a34a 1866
ce3e301c 1867err_out2:
225ce6ea
S
1868 /*
1869 * Once we have connected with the host, we would need to
1870 * to invoke storvsc_dev_remove() to rollback this state and
1871 * this call also frees up the stor_device; hence the jump around
ce3e301c 1872 * err_out1 label.
225ce6ea 1873 */
bd1f5d6a 1874 storvsc_dev_remove(device);
ce3e301c 1875 goto err_out0;
225ce6ea
S
1876
1877err_out1:
ce3e301c 1878 kfree(stor_device);
225ce6ea
S
1879
1880err_out0:
bd1f5d6a 1881 scsi_host_put(host);
225ce6ea 1882 return ret;
bef4a34a
HJ
1883}
1884
ddcbf65e
S
1885static int storvsc_remove(struct hv_device *dev)
1886{
1887 struct storvsc_device *stor_device = hv_get_drvdata(dev);
1888 struct Scsi_Host *host = stor_device->host;
1889
1890 scsi_remove_host(host);
1891 storvsc_dev_remove(dev);
1892 scsi_host_put(host);
1893
1894 return 0;
1895}
1896
40bf63ed 1897static struct hv_driver storvsc_drv = {
fafb0efc 1898 .name = KBUILD_MODNAME,
d847b5fe 1899 .id_table = id_table,
40bf63ed
S
1900 .probe = storvsc_probe,
1901 .remove = storvsc_remove,
39ae6fae 1902};
7bd05b91 1903
d9bbae83 1904static int __init storvsc_drv_init(void)
f5c78872 1905{
01415ab3
S
1906
1907 /*
1908 * Divide the ring buffer data size (which is 1 page less
1909 * than the ring buffer size since that page is reserved for
1910 * the ring buffer indices) by the max request size (which is
1911 * vmbus_channel_packet_multipage_buffer + struct vstor_packet + u64)
1912 */
01415ab3 1913 max_outstanding_req_per_channel =
768fa219
GKH
1914 ((storvsc_ringbuffer_size - PAGE_SIZE) /
1915 ALIGN(MAX_MULTIPAGE_BUFFER_PACKET +
8b612fa2
S
1916 sizeof(struct vstor_packet) + sizeof(u64) -
1917 vmscsi_size_delta,
768fa219 1918 sizeof(u64)));
f5c78872 1919
768fa219 1920 return vmbus_driver_register(&storvsc_drv);
f5c78872
S
1921}
1922
c63ba9e1 1923static void __exit storvsc_drv_exit(void)
f5c78872 1924{
768fa219 1925 vmbus_driver_unregister(&storvsc_drv);
f5c78872
S
1926}
1927
ff568d3a 1928MODULE_LICENSE("GPL");
3afc7cc3 1929MODULE_DESCRIPTION("Microsoft Hyper-V virtual storage driver");
d9bbae83 1930module_init(storvsc_drv_init);
c63ba9e1 1931module_exit(storvsc_drv_exit);