Staging: hv: mousevsc: Use the KBUILD_MODNAME macro
[GitHub/mt8127/android_kernel_alcatel_ttab.git] / drivers / staging / hv / 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
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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>
bef4a34a
HJ
35#include <scsi/scsi.h>
36#include <scsi/scsi_cmnd.h>
37#include <scsi/scsi_host.h>
38#include <scsi/scsi_device.h>
39#include <scsi/scsi_tcq.h>
40#include <scsi/scsi_eh.h>
41#include <scsi/scsi_devinfo.h>
bef4a34a 42#include <scsi/scsi_dbg.h>
3f335ea2 43
f0d79fe9 44
c1b3d067
S
45#define STORVSC_RING_BUFFER_SIZE (20*PAGE_SIZE)
46static int storvsc_ringbuffer_size = STORVSC_RING_BUFFER_SIZE;
47
48module_param(storvsc_ringbuffer_size, int, S_IRUGO);
49MODULE_PARM_DESC(storvsc_ringbuffer_size, "Ring buffer size (bytes)");
50
f0d79fe9
S
51/* to alert the user that structure sizes may be mismatched even though the */
52/* protocol versions match. */
53
54
55#define REVISION_STRING(REVISION_) #REVISION_
56#define FILL_VMSTOR_REVISION(RESULT_LVALUE_) \
57 do { \
58 char *revision_string \
59 = REVISION_STRING($Rev : 6 $) + 6; \
60 RESULT_LVALUE_ = 0; \
61 while (*revision_string >= '0' \
62 && *revision_string <= '9') { \
63 RESULT_LVALUE_ *= 10; \
64 RESULT_LVALUE_ += *revision_string - '0'; \
65 revision_string++; \
66 } \
67 } while (0)
68
69/* Major/minor macros. Minor version is in LSB, meaning that earlier flat */
70/* version numbers will be interpreted as "0.x" (i.e., 1 becomes 0.1). */
71#define VMSTOR_PROTOCOL_MAJOR(VERSION_) (((VERSION_) >> 8) & 0xff)
72#define VMSTOR_PROTOCOL_MINOR(VERSION_) (((VERSION_)) & 0xff)
73#define VMSTOR_PROTOCOL_VERSION(MAJOR_, MINOR_) ((((MAJOR_) & 0xff) << 8) | \
74 (((MINOR_) & 0xff)))
75#define VMSTOR_INVALID_PROTOCOL_VERSION (-1)
76
77/* Version history: */
78/* V1 Beta 0.1 */
79/* V1 RC < 2008/1/31 1.0 */
80/* V1 RC > 2008/1/31 2.0 */
81#define VMSTOR_PROTOCOL_VERSION_CURRENT VMSTOR_PROTOCOL_VERSION(2, 0)
82
83
84
85
86/* This will get replaced with the max transfer length that is possible on */
87/* the host adapter. */
88/* The max transfer length will be published when we offer a vmbus channel. */
89#define MAX_TRANSFER_LENGTH 0x40000
90#define DEFAULT_PACKET_SIZE (sizeof(struct vmdata_gpa_direct) + \
91 sizeof(struct vstor_packet) + \
92 sizesizeof(u64) * (MAX_TRANSFER_LENGTH / PAGE_SIZE)))
93
94
95/* Packet structure describing virtual storage requests. */
96enum vstor_packet_operation {
97 VSTOR_OPERATION_COMPLETE_IO = 1,
98 VSTOR_OPERATION_REMOVE_DEVICE = 2,
99 VSTOR_OPERATION_EXECUTE_SRB = 3,
100 VSTOR_OPERATION_RESET_LUN = 4,
101 VSTOR_OPERATION_RESET_ADAPTER = 5,
102 VSTOR_OPERATION_RESET_BUS = 6,
103 VSTOR_OPERATION_BEGIN_INITIALIZATION = 7,
104 VSTOR_OPERATION_END_INITIALIZATION = 8,
105 VSTOR_OPERATION_QUERY_PROTOCOL_VERSION = 9,
106 VSTOR_OPERATION_QUERY_PROPERTIES = 10,
107 VSTOR_OPERATION_MAXIMUM = 10
108};
109
110/*
111 * Platform neutral description of a scsi request -
112 * this remains the same across the write regardless of 32/64 bit
113 * note: it's patterned off the SCSI_PASS_THROUGH structure
114 */
115#define CDB16GENERIC_LENGTH 0x10
116
117#ifndef SENSE_BUFFER_SIZE
118#define SENSE_BUFFER_SIZE 0x12
119#endif
120
121#define MAX_DATA_BUF_LEN_WITH_PADDING 0x14
122
123struct vmscsi_request {
124 unsigned short length;
125 unsigned char srb_status;
126 unsigned char scsi_status;
127
128 unsigned char port_number;
129 unsigned char path_id;
130 unsigned char target_id;
131 unsigned char lun;
132
133 unsigned char cdb_length;
134 unsigned char sense_info_length;
135 unsigned char data_in;
136 unsigned char reserved;
137
138 unsigned int data_transfer_length;
139
140 union {
141 unsigned char cdb[CDB16GENERIC_LENGTH];
142 unsigned char sense_data[SENSE_BUFFER_SIZE];
143 unsigned char reserved_array[MAX_DATA_BUF_LEN_WITH_PADDING];
144 };
145} __attribute((packed));
146
147
148/*
149 * This structure is sent during the intialization phase to get the different
150 * properties of the channel.
151 */
152struct vmstorage_channel_properties {
153 unsigned short protocol_version;
154 unsigned char path_id;
155 unsigned char target_id;
156
157 /* Note: port number is only really known on the client side */
158 unsigned int port_number;
159 unsigned int flags;
160 unsigned int max_transfer_bytes;
161
162 /* This id is unique for each channel and will correspond with */
163 /* vendor specific data in the inquirydata */
164 unsigned long long unique_id;
165} __packed;
166
167/* This structure is sent during the storage protocol negotiations. */
168struct vmstorage_protocol_version {
169 /* Major (MSW) and minor (LSW) version numbers. */
170 unsigned short major_minor;
171
172 /*
173 * Revision number is auto-incremented whenever this file is changed
174 * (See FILL_VMSTOR_REVISION macro above). Mismatch does not
175 * definitely indicate incompatibility--but it does indicate mismatched
176 * builds.
177 */
178 unsigned short revision;
179} __packed;
180
181/* Channel Property Flags */
182#define STORAGE_CHANNEL_REMOVABLE_FLAG 0x1
183#define STORAGE_CHANNEL_EMULATED_IDE_FLAG 0x2
184
185struct vstor_packet {
186 /* Requested operation type */
187 enum vstor_packet_operation operation;
188
189 /* Flags - see below for values */
190 unsigned int flags;
191
192 /* Status of the request returned from the server side. */
193 unsigned int status;
194
195 /* Data payload area */
196 union {
197 /*
198 * Structure used to forward SCSI commands from the
199 * client to the server.
200 */
201 struct vmscsi_request vm_srb;
202
203 /* Structure used to query channel properties. */
204 struct vmstorage_channel_properties storage_channel_properties;
205
206 /* Used during version negotiations. */
207 struct vmstorage_protocol_version version;
208 };
209} __packed;
210
211/* Packet flags */
212/*
213 * This flag indicates that the server should send back a completion for this
214 * packet.
215 */
216#define REQUEST_COMPLETION_FLAG 0x1
217
218/* This is the set of flags that the vsc can set in any packets it sends */
219#define VSC_LEGAL_FLAGS (REQUEST_COMPLETION_FLAG)
220
221
222/* Defines */
f0d79fe9
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223
224#define STORVSC_MAX_IO_REQUESTS 128
225
226/*
227 * In Hyper-V, each port/path/target maps to 1 scsi host adapter. In
228 * reality, the path/target is not used (ie always set to 0) so our
229 * scsi host adapter essentially has 1 bus with 1 target that contains
230 * up to 256 luns.
231 */
232#define STORVSC_MAX_LUNS_PER_TARGET 64
233#define STORVSC_MAX_TARGETS 1
234#define STORVSC_MAX_CHANNELS 1
cf55f4a8 235#define STORVSC_MAX_CMD_LEN 16
f0d79fe9
S
236
237struct hv_storvsc_request;
238
239/* Matches Windows-end */
240enum storvsc_request_type {
241 WRITE_TYPE,
242 READ_TYPE,
243 UNKNOWN_TYPE,
244};
245
246
247struct hv_storvsc_request {
f0d79fe9
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248 struct hv_device *device;
249
250 /* Synchronize the request/response if needed */
251 struct completion wait_event;
252
253 unsigned char *sense_buffer;
254 void *context;
255 void (*on_io_completion)(struct hv_storvsc_request *request);
256 struct hv_multipage_buffer data_buffer;
257
258 struct vstor_packet vstor_packet;
259};
260
261
f0d79fe9
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262/* A storvsc device is a device object that contains a vmbus channel */
263struct storvsc_device {
264 struct hv_device *device;
265
266 bool destroy;
267 bool drain_notify;
268 atomic_t num_outstanding_req;
cd654ea1 269 struct Scsi_Host *host;
f0d79fe9
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270
271 wait_queue_head_t waiting_to_drain;
272
273 /*
274 * Each unique Port/Path/Target represents 1 channel ie scsi
275 * controller. In reality, the pathid, targetid is always 0
276 * and the port is set by us
277 */
278 unsigned int port_number;
279 unsigned char path_id;
280 unsigned char target_id;
281
282 /* Used for vsc/vsp channel reset process */
283 struct hv_storvsc_request init_request;
284 struct hv_storvsc_request reset_request;
285};
286
c1b3d067
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287struct hv_host_device {
288 struct hv_device *dev;
289 struct kmem_cache *request_pool;
290 unsigned int port;
291 unsigned char path;
292 unsigned char target;
293};
294
295struct storvsc_cmd_request {
296 struct list_head entry;
297 struct scsi_cmnd *cmd;
298
299 unsigned int bounce_sgl_count;
300 struct scatterlist *bounce_sgl;
301
302 struct hv_storvsc_request request;
303};
f0d79fe9
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304
305static inline struct storvsc_device *get_out_stor_device(
306 struct hv_device *device)
307{
308 struct storvsc_device *stor_device;
309
cd654ea1 310 stor_device = hv_get_drvdata(device);
f0d79fe9
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311
312 if (stor_device && stor_device->destroy)
313 stor_device = NULL;
314
315 return stor_device;
316}
317
318
319static inline void storvsc_wait_to_drain(struct storvsc_device *dev)
320{
321 dev->drain_notify = true;
322 wait_event(dev->waiting_to_drain,
323 atomic_read(&dev->num_outstanding_req) == 0);
324 dev->drain_notify = false;
325}
bef4a34a 326
8dcf37d4
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327static inline struct storvsc_device *get_in_stor_device(
328 struct hv_device *device)
329{
330 struct storvsc_device *stor_device;
8dcf37d4 331
cd654ea1 332 stor_device = hv_get_drvdata(device);
8dcf37d4
S
333
334 if (!stor_device)
335 goto get_in_err;
336
337 /*
338 * If the device is being destroyed; allow incoming
339 * traffic only to cleanup outstanding requests.
340 */
341
342 if (stor_device->destroy &&
343 (atomic_read(&stor_device->num_outstanding_req) == 0))
344 stor_device = NULL;
345
346get_in_err:
8dcf37d4
S
347 return stor_device;
348
349}
350
351static int storvsc_channel_init(struct hv_device *device)
352{
353 struct storvsc_device *stor_device;
354 struct hv_storvsc_request *request;
355 struct vstor_packet *vstor_packet;
356 int ret, t;
357
358 stor_device = get_out_stor_device(device);
359 if (!stor_device)
360 return -ENODEV;
361
362 request = &stor_device->init_request;
363 vstor_packet = &request->vstor_packet;
364
365 /*
366 * Now, initiate the vsc/vsp initialization protocol on the open
367 * channel
368 */
369 memset(request, 0, sizeof(struct hv_storvsc_request));
370 init_completion(&request->wait_event);
371 vstor_packet->operation = VSTOR_OPERATION_BEGIN_INITIALIZATION;
372 vstor_packet->flags = REQUEST_COMPLETION_FLAG;
373
374 ret = vmbus_sendpacket(device->channel, vstor_packet,
375 sizeof(struct vstor_packet),
376 (unsigned long)request,
377 VM_PKT_DATA_INBAND,
378 VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED);
379 if (ret != 0)
380 goto cleanup;
381
382 t = wait_for_completion_timeout(&request->wait_event, 5*HZ);
383 if (t == 0) {
384 ret = -ETIMEDOUT;
385 goto cleanup;
386 }
387
388 if (vstor_packet->operation != VSTOR_OPERATION_COMPLETE_IO ||
389 vstor_packet->status != 0)
390 goto cleanup;
391
392
393 /* reuse the packet for version range supported */
394 memset(vstor_packet, 0, sizeof(struct vstor_packet));
395 vstor_packet->operation = VSTOR_OPERATION_QUERY_PROTOCOL_VERSION;
396 vstor_packet->flags = REQUEST_COMPLETION_FLAG;
397
398 vstor_packet->version.major_minor = VMSTOR_PROTOCOL_VERSION_CURRENT;
399 FILL_VMSTOR_REVISION(vstor_packet->version.revision);
400
401 ret = vmbus_sendpacket(device->channel, vstor_packet,
402 sizeof(struct vstor_packet),
403 (unsigned long)request,
404 VM_PKT_DATA_INBAND,
405 VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED);
406 if (ret != 0)
407 goto cleanup;
408
409 t = wait_for_completion_timeout(&request->wait_event, 5*HZ);
410 if (t == 0) {
411 ret = -ETIMEDOUT;
412 goto cleanup;
413 }
414
415 if (vstor_packet->operation != VSTOR_OPERATION_COMPLETE_IO ||
416 vstor_packet->status != 0)
417 goto cleanup;
418
419
420 memset(vstor_packet, 0, sizeof(struct vstor_packet));
421 vstor_packet->operation = VSTOR_OPERATION_QUERY_PROPERTIES;
422 vstor_packet->flags = REQUEST_COMPLETION_FLAG;
423 vstor_packet->storage_channel_properties.port_number =
424 stor_device->port_number;
425
426 ret = vmbus_sendpacket(device->channel, vstor_packet,
427 sizeof(struct vstor_packet),
428 (unsigned long)request,
429 VM_PKT_DATA_INBAND,
430 VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED);
431
432 if (ret != 0)
433 goto cleanup;
434
435 t = wait_for_completion_timeout(&request->wait_event, 5*HZ);
436 if (t == 0) {
437 ret = -ETIMEDOUT;
438 goto cleanup;
439 }
440
441 if (vstor_packet->operation != VSTOR_OPERATION_COMPLETE_IO ||
442 vstor_packet->status != 0)
443 goto cleanup;
444
445 stor_device->path_id = vstor_packet->storage_channel_properties.path_id;
446 stor_device->target_id
447 = vstor_packet->storage_channel_properties.target_id;
448
449 memset(vstor_packet, 0, sizeof(struct vstor_packet));
450 vstor_packet->operation = VSTOR_OPERATION_END_INITIALIZATION;
451 vstor_packet->flags = REQUEST_COMPLETION_FLAG;
452
453 ret = vmbus_sendpacket(device->channel, vstor_packet,
454 sizeof(struct vstor_packet),
455 (unsigned long)request,
456 VM_PKT_DATA_INBAND,
457 VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED);
458
459 if (ret != 0)
460 goto cleanup;
461
462 t = wait_for_completion_timeout(&request->wait_event, 5*HZ);
463 if (t == 0) {
464 ret = -ETIMEDOUT;
465 goto cleanup;
466 }
467
468 if (vstor_packet->operation != VSTOR_OPERATION_COMPLETE_IO ||
469 vstor_packet->status != 0)
470 goto cleanup;
471
472
473cleanup:
474 return ret;
475}
476
477static void storvsc_on_io_completion(struct hv_device *device,
478 struct vstor_packet *vstor_packet,
479 struct hv_storvsc_request *request)
480{
481 struct storvsc_device *stor_device;
482 struct vstor_packet *stor_pkt;
483
cd654ea1 484 stor_device = hv_get_drvdata(device);
8dcf37d4
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485 stor_pkt = &request->vstor_packet;
486
4ed51a21
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487 /*
488 * The current SCSI handling on the host side does
489 * not correctly handle:
490 * INQUIRY command with page code parameter set to 0x80
491 * MODE_SENSE command with cmd[2] == 0x1c
492 *
493 * Setup srb and scsi status so this won't be fatal.
494 * We do this so we can distinguish truly fatal failues
495 * (srb status == 0x4) and off-line the device in that case.
496 */
497
498 if ((stor_pkt->vm_srb.cdb[0] == INQUIRY) ||
499 (stor_pkt->vm_srb.cdb[0] == MODE_SENSE)) {
500 vstor_packet->vm_srb.scsi_status = 0;
501 vstor_packet->vm_srb.srb_status = 0x1;
502 }
503
8dcf37d4
S
504
505 /* Copy over the status...etc */
506 stor_pkt->vm_srb.scsi_status = vstor_packet->vm_srb.scsi_status;
507 stor_pkt->vm_srb.srb_status = vstor_packet->vm_srb.srb_status;
508 stor_pkt->vm_srb.sense_info_length =
509 vstor_packet->vm_srb.sense_info_length;
510
511 if (vstor_packet->vm_srb.scsi_status != 0 ||
512 vstor_packet->vm_srb.srb_status != 1){
d181daa0
GKH
513 dev_warn(&device->device,
514 "cmd 0x%x scsi status 0x%x srb status 0x%x\n",
515 stor_pkt->vm_srb.cdb[0],
516 vstor_packet->vm_srb.scsi_status,
517 vstor_packet->vm_srb.srb_status);
8dcf37d4
S
518 }
519
520 if ((vstor_packet->vm_srb.scsi_status & 0xFF) == 0x02) {
521 /* CHECK_CONDITION */
522 if (vstor_packet->vm_srb.srb_status & 0x80) {
523 /* autosense data available */
d181daa0 524 dev_warn(&device->device,
41098f8f
S
525 "stor pkt %p autosense data valid - len %d\n",
526 request,
527 vstor_packet->vm_srb.sense_info_length);
8dcf37d4
S
528
529 memcpy(request->sense_buffer,
530 vstor_packet->vm_srb.sense_data,
531 vstor_packet->vm_srb.sense_info_length);
532
533 }
534 }
535
536 stor_pkt->vm_srb.data_transfer_length =
537 vstor_packet->vm_srb.data_transfer_length;
538
539 request->on_io_completion(request);
540
541 if (atomic_dec_and_test(&stor_device->num_outstanding_req) &&
542 stor_device->drain_notify)
543 wake_up(&stor_device->waiting_to_drain);
544
545
546}
547
548static void storvsc_on_receive(struct hv_device *device,
549 struct vstor_packet *vstor_packet,
550 struct hv_storvsc_request *request)
551{
552 switch (vstor_packet->operation) {
553 case VSTOR_OPERATION_COMPLETE_IO:
554 storvsc_on_io_completion(device, vstor_packet, request);
555 break;
556 case VSTOR_OPERATION_REMOVE_DEVICE:
557
558 default:
559 break;
560 }
561}
562
563static void storvsc_on_channel_callback(void *context)
564{
565 struct hv_device *device = (struct hv_device *)context;
566 struct storvsc_device *stor_device;
567 u32 bytes_recvd;
568 u64 request_id;
569 unsigned char packet[ALIGN(sizeof(struct vstor_packet), 8)];
570 struct hv_storvsc_request *request;
571 int ret;
572
573
574 stor_device = get_in_stor_device(device);
575 if (!stor_device)
576 return;
577
578 do {
579 ret = vmbus_recvpacket(device->channel, packet,
580 ALIGN(sizeof(struct vstor_packet), 8),
581 &bytes_recvd, &request_id);
582 if (ret == 0 && bytes_recvd > 0) {
583
584 request = (struct hv_storvsc_request *)
585 (unsigned long)request_id;
586
587 if ((request == &stor_device->init_request) ||
588 (request == &stor_device->reset_request)) {
589
590 memcpy(&request->vstor_packet, packet,
591 sizeof(struct vstor_packet));
592 complete(&request->wait_event);
593 } else {
594 storvsc_on_receive(device,
595 (struct vstor_packet *)packet,
596 request);
597 }
598 } else {
599 break;
600 }
601 } while (1);
602
603 return;
604}
605
606static int storvsc_connect_to_vsp(struct hv_device *device, u32 ring_size)
607{
608 struct vmstorage_channel_properties props;
609 int ret;
610
611 memset(&props, 0, sizeof(struct vmstorage_channel_properties));
612
613 /* Open the channel */
614 ret = vmbus_open(device->channel,
615 ring_size,
616 ring_size,
617 (void *)&props,
618 sizeof(struct vmstorage_channel_properties),
619 storvsc_on_channel_callback, device);
620
621 if (ret != 0)
622 return ret;
623
624 ret = storvsc_channel_init(device);
625
626 return ret;
627}
628
c1b3d067 629static int storvsc_dev_remove(struct hv_device *device)
8dcf37d4
S
630{
631 struct storvsc_device *stor_device;
632 unsigned long flags;
633
cd654ea1 634 stor_device = hv_get_drvdata(device);
8dcf37d4
S
635
636 spin_lock_irqsave(&device->channel->inbound_lock, flags);
637 stor_device->destroy = true;
638 spin_unlock_irqrestore(&device->channel->inbound_lock, flags);
639
640 /*
641 * At this point, all outbound traffic should be disable. We
642 * only allow inbound traffic (responses) to proceed so that
643 * outstanding requests can be completed.
644 */
645
646 storvsc_wait_to_drain(stor_device);
647
648 /*
649 * Since we have already drained, we don't need to busy wait
650 * as was done in final_release_stor_device()
651 * Note that we cannot set the ext pointer to NULL until
652 * we have drained - to drain the outgoing packets, we need to
653 * allow incoming packets.
654 */
655 spin_lock_irqsave(&device->channel->inbound_lock, flags);
cd654ea1 656 hv_set_drvdata(device, NULL);
8dcf37d4
S
657 spin_unlock_irqrestore(&device->channel->inbound_lock, flags);
658
659 /* Close the channel */
660 vmbus_close(device->channel);
661
662 kfree(stor_device);
663 return 0;
664}
665
c1b3d067 666static int storvsc_do_io(struct hv_device *device,
8dcf37d4
S
667 struct hv_storvsc_request *request)
668{
669 struct storvsc_device *stor_device;
670 struct vstor_packet *vstor_packet;
671 int ret = 0;
672
673 vstor_packet = &request->vstor_packet;
674 stor_device = get_out_stor_device(device);
675
676 if (!stor_device)
677 return -ENODEV;
678
679
680 request->device = device;
681
682
683 vstor_packet->flags |= REQUEST_COMPLETION_FLAG;
684
685 vstor_packet->vm_srb.length = sizeof(struct vmscsi_request);
686
687
688 vstor_packet->vm_srb.sense_info_length = SENSE_BUFFER_SIZE;
689
690
691 vstor_packet->vm_srb.data_transfer_length =
692 request->data_buffer.len;
693
694 vstor_packet->operation = VSTOR_OPERATION_EXECUTE_SRB;
695
696 if (request->data_buffer.len) {
697 ret = vmbus_sendpacket_multipagebuffer(device->channel,
698 &request->data_buffer,
699 vstor_packet,
700 sizeof(struct vstor_packet),
701 (unsigned long)request);
702 } else {
703 ret = vmbus_sendpacket(device->channel, vstor_packet,
704 sizeof(struct vstor_packet),
705 (unsigned long)request,
706 VM_PKT_DATA_INBAND,
707 VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED);
708 }
709
710 if (ret != 0)
711 return ret;
712
713 atomic_inc(&stor_device->num_outstanding_req);
714
715 return ret;
716}
717
bd1f5d6a
S
718static void storvsc_get_ide_info(struct hv_device *dev, int *target, int *path)
719{
720 *target =
721 dev->dev_instance.b[5] << 8 | dev->dev_instance.b[4];
722
723 *path =
724 dev->dev_instance.b[3] << 24 |
725 dev->dev_instance.b[2] << 16 |
726 dev->dev_instance.b[1] << 8 | dev->dev_instance.b[0];
727}
728
bef4a34a 729
5b60acee
S
730static int storvsc_device_alloc(struct scsi_device *sdevice)
731{
732 /*
733 * This enables luns to be located sparsely. Otherwise, we may not
734 * discovered them.
735 */
736 sdevice->sdev_bflags |= BLIST_SPARSELUN | BLIST_LARGELUN;
737 return 0;
738}
739
a1ebfeae
S
740static int storvsc_merge_bvec(struct request_queue *q,
741 struct bvec_merge_data *bmd, struct bio_vec *bvec)
742{
743 /* checking done by caller. */
744 return bvec->bv_len;
745}
746
419f2d03
S
747static int storvsc_device_configure(struct scsi_device *sdevice)
748{
749 scsi_adjust_queue_depth(sdevice, MSG_SIMPLE_TAG,
750 STORVSC_MAX_IO_REQUESTS);
751
419f2d03
S
752 blk_queue_max_segment_size(sdevice->request_queue, PAGE_SIZE);
753
419f2d03
S
754 blk_queue_merge_bvec(sdevice->request_queue, storvsc_merge_bvec);
755
756 blk_queue_bounce_limit(sdevice->request_queue, BLK_BOUNCE_ANY);
419f2d03
S
757
758 return 0;
759}
760
49a3c7a9
S
761static void destroy_bounce_buffer(struct scatterlist *sgl,
762 unsigned int sg_count)
763{
764 int i;
765 struct page *page_buf;
766
767 for (i = 0; i < sg_count; i++) {
768 page_buf = sg_page((&sgl[i]));
769 if (page_buf != NULL)
770 __free_page(page_buf);
771 }
772
773 kfree(sgl);
774}
775
3862ef3e
S
776static int do_bounce_buffer(struct scatterlist *sgl, unsigned int sg_count)
777{
778 int i;
779
780 /* No need to check */
781 if (sg_count < 2)
782 return -1;
783
784 /* We have at least 2 sg entries */
785 for (i = 0; i < sg_count; i++) {
786 if (i == 0) {
787 /* make sure 1st one does not have hole */
788 if (sgl[i].offset + sgl[i].length != PAGE_SIZE)
789 return i;
790 } else if (i == sg_count - 1) {
791 /* make sure last one does not have hole */
792 if (sgl[i].offset != 0)
793 return i;
794 } else {
795 /* make sure no hole in the middle */
796 if (sgl[i].length != PAGE_SIZE || sgl[i].offset != 0)
797 return i;
798 }
799 }
800 return -1;
801}
802
a9753cbd
S
803static struct scatterlist *create_bounce_buffer(struct scatterlist *sgl,
804 unsigned int sg_count,
805 unsigned int len)
806{
807 int i;
808 int num_pages;
809 struct scatterlist *bounce_sgl;
810 struct page *page_buf;
811
812 num_pages = ALIGN(len, PAGE_SIZE) >> PAGE_SHIFT;
813
814 bounce_sgl = kcalloc(num_pages, sizeof(struct scatterlist), GFP_ATOMIC);
815 if (!bounce_sgl)
816 return NULL;
817
818 for (i = 0; i < num_pages; i++) {
819 page_buf = alloc_page(GFP_ATOMIC);
820 if (!page_buf)
821 goto cleanup;
822 sg_set_page(&bounce_sgl[i], page_buf, 0, 0);
823 }
824
825 return bounce_sgl;
826
827cleanup:
828 destroy_bounce_buffer(bounce_sgl, num_pages);
829 return NULL;
830}
831
29fe2c9b
S
832
833/* Assume the original sgl has enough room */
834static unsigned int copy_from_bounce_buffer(struct scatterlist *orig_sgl,
835 struct scatterlist *bounce_sgl,
836 unsigned int orig_sgl_count)
837{
838 int i;
839 int j = 0;
840 unsigned long src, dest;
841 unsigned int srclen, destlen, copylen;
842 unsigned int total_copied = 0;
843 unsigned long bounce_addr = 0;
844 unsigned long dest_addr = 0;
845 unsigned long flags;
846
847 local_irq_save(flags);
848
849 for (i = 0; i < orig_sgl_count; i++) {
850 dest_addr = (unsigned long)kmap_atomic(sg_page((&orig_sgl[i])),
851 KM_IRQ0) + orig_sgl[i].offset;
852 dest = dest_addr;
853 destlen = orig_sgl[i].length;
854
855 if (bounce_addr == 0)
856 bounce_addr =
857 (unsigned long)kmap_atomic(sg_page((&bounce_sgl[j])),
858 KM_IRQ0);
859
860 while (destlen) {
861 src = bounce_addr + bounce_sgl[j].offset;
862 srclen = bounce_sgl[j].length - bounce_sgl[j].offset;
863
864 copylen = min(srclen, destlen);
865 memcpy((void *)dest, (void *)src, copylen);
866
867 total_copied += copylen;
868 bounce_sgl[j].offset += copylen;
869 destlen -= copylen;
870 dest += copylen;
871
872 if (bounce_sgl[j].offset == bounce_sgl[j].length) {
873 /* full */
874 kunmap_atomic((void *)bounce_addr, KM_IRQ0);
875 j++;
876
877 /* if we need to use another bounce buffer */
878 if (destlen || i != orig_sgl_count - 1)
879 bounce_addr =
880 (unsigned long)kmap_atomic(
881 sg_page((&bounce_sgl[j])), KM_IRQ0);
882 } else if (destlen == 0 && i == orig_sgl_count - 1) {
883 /* unmap the last bounce that is < PAGE_SIZE */
884 kunmap_atomic((void *)bounce_addr, KM_IRQ0);
885 }
886 }
887
888 kunmap_atomic((void *)(dest_addr - orig_sgl[i].offset),
889 KM_IRQ0);
890 }
891
892 local_irq_restore(flags);
893
894 return total_copied;
895}
896
6a8ff44b
S
897
898/* Assume the bounce_sgl has enough room ie using the create_bounce_buffer() */
899static unsigned int copy_to_bounce_buffer(struct scatterlist *orig_sgl,
900 struct scatterlist *bounce_sgl,
901 unsigned int orig_sgl_count)
902{
903 int i;
904 int j = 0;
905 unsigned long src, dest;
906 unsigned int srclen, destlen, copylen;
907 unsigned int total_copied = 0;
908 unsigned long bounce_addr = 0;
909 unsigned long src_addr = 0;
910 unsigned long flags;
911
912 local_irq_save(flags);
913
914 for (i = 0; i < orig_sgl_count; i++) {
915 src_addr = (unsigned long)kmap_atomic(sg_page((&orig_sgl[i])),
916 KM_IRQ0) + orig_sgl[i].offset;
917 src = src_addr;
918 srclen = orig_sgl[i].length;
919
920 if (bounce_addr == 0)
921 bounce_addr =
922 (unsigned long)kmap_atomic(sg_page((&bounce_sgl[j])),
923 KM_IRQ0);
924
925 while (srclen) {
926 /* assume bounce offset always == 0 */
927 dest = bounce_addr + bounce_sgl[j].length;
928 destlen = PAGE_SIZE - bounce_sgl[j].length;
929
930 copylen = min(srclen, destlen);
931 memcpy((void *)dest, (void *)src, copylen);
932
933 total_copied += copylen;
934 bounce_sgl[j].length += copylen;
935 srclen -= copylen;
936 src += copylen;
937
938 if (bounce_sgl[j].length == PAGE_SIZE) {
939 /* full..move to next entry */
940 kunmap_atomic((void *)bounce_addr, KM_IRQ0);
941 j++;
942
943 /* if we need to use another bounce buffer */
944 if (srclen || i != orig_sgl_count - 1)
945 bounce_addr =
946 (unsigned long)kmap_atomic(
947 sg_page((&bounce_sgl[j])), KM_IRQ0);
948
949 } else if (srclen == 0 && i == orig_sgl_count - 1) {
950 /* unmap the last bounce that is < PAGE_SIZE */
951 kunmap_atomic((void *)bounce_addr, KM_IRQ0);
952 }
953 }
954
955 kunmap_atomic((void *)(src_addr - orig_sgl[i].offset), KM_IRQ0);
956 }
957
958 local_irq_restore(flags);
959
960 return total_copied;
961}
962
5c5c0234 963
5c5c0234
S
964static int storvsc_remove(struct hv_device *dev)
965{
cd654ea1
S
966 struct storvsc_device *stor_device = hv_get_drvdata(dev);
967 struct Scsi_Host *host = stor_device->host;
5c5c0234
S
968 struct hv_host_device *host_dev =
969 (struct hv_host_device *)host->hostdata;
970
2935a407
S
971 scsi_remove_host(host);
972
2935a407 973 scsi_host_put(host);
d36b0a03 974
6cdc57c0 975 storvsc_dev_remove(dev);
5c5c0234
S
976 if (host_dev->request_pool) {
977 kmem_cache_destroy(host_dev->request_pool);
978 host_dev->request_pool = NULL;
979 }
5c5c0234
S
980 return 0;
981}
982
62838ce2
S
983
984static int storvsc_get_chs(struct scsi_device *sdev, struct block_device * bdev,
985 sector_t capacity, int *info)
986{
5326fd5c
S
987 sector_t nsect = capacity;
988 sector_t cylinders = nsect;
989 int heads, sectors_pt;
62838ce2 990
5326fd5c
S
991 /*
992 * We are making up these values; let us keep it simple.
993 */
994 heads = 0xff;
995 sectors_pt = 0x3f; /* Sectors per track */
996 sector_div(cylinders, heads * sectors_pt);
997 if ((sector_t)(cylinders + 1) * heads * sectors_pt < nsect)
998 cylinders = 0xffff;
62838ce2
S
999
1000 info[0] = heads;
5326fd5c
S
1001 info[1] = sectors_pt;
1002 info[2] = (int)cylinders;
62838ce2 1003
62838ce2
S
1004 return 0;
1005}
aa3d789e
S
1006
1007static int storvsc_host_reset(struct hv_device *device)
1008{
1009 struct storvsc_device *stor_device;
1010 struct hv_storvsc_request *request;
1011 struct vstor_packet *vstor_packet;
1012 int ret, t;
1013
aa3d789e 1014
1eaaddf9 1015 stor_device = get_out_stor_device(device);
aa3d789e 1016 if (!stor_device)
f3b74165 1017 return -ENODEV;
aa3d789e
S
1018
1019 request = &stor_device->reset_request;
1020 vstor_packet = &request->vstor_packet;
1021
1022 init_completion(&request->wait_event);
1023
1024 vstor_packet->operation = VSTOR_OPERATION_RESET_BUS;
1025 vstor_packet->flags = REQUEST_COMPLETION_FLAG;
1026 vstor_packet->vm_srb.path_id = stor_device->path_id;
1027
1028 ret = vmbus_sendpacket(device->channel, vstor_packet,
1029 sizeof(struct vstor_packet),
1030 (unsigned long)&stor_device->reset_request,
1031 VM_PKT_DATA_INBAND,
1032 VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED);
1033 if (ret != 0)
1034 goto cleanup;
1035
46d2eb6d 1036 t = wait_for_completion_timeout(&request->wait_event, 5*HZ);
aa3d789e
S
1037 if (t == 0) {
1038 ret = -ETIMEDOUT;
1039 goto cleanup;
1040 }
1041
aa3d789e
S
1042
1043 /*
1044 * At this point, all outstanding requests in the adapter
1045 * should have been flushed out and return to us
1046 */
1047
1048cleanup:
aa3d789e
S
1049 return ret;
1050}
1051
1052
96e690be
S
1053/*
1054 * storvsc_host_reset_handler - Reset the scsi HBA
1055 */
1056static int storvsc_host_reset_handler(struct scsi_cmnd *scmnd)
1057{
1058 int ret;
1059 struct hv_host_device *host_dev =
1060 (struct hv_host_device *)scmnd->device->host->hostdata;
1061 struct hv_device *dev = host_dev->dev;
1062
96e690be
S
1063 ret = storvsc_host_reset(dev);
1064 if (ret != 0)
1065 return ret;
1066
96e690be
S
1067 return ret;
1068}
1069
8a411bad
S
1070
1071/*
b8de73df 1072 * storvsc_command_completion - Command completion processing
8a411bad 1073 */
b8de73df 1074static void storvsc_command_completion(struct hv_storvsc_request *request)
8a411bad
S
1075{
1076 struct storvsc_cmd_request *cmd_request =
1077 (struct storvsc_cmd_request *)request->context;
1078 struct scsi_cmnd *scmnd = cmd_request->cmd;
1079 struct hv_host_device *host_dev =
1080 (struct hv_host_device *)scmnd->device->host->hostdata;
1081 void (*scsi_done_fn)(struct scsi_cmnd *);
1082 struct scsi_sense_hdr sense_hdr;
1083 struct vmscsi_request *vm_srb;
1084
3612ef99 1085 vm_srb = &request->vstor_packet.vm_srb;
8a411bad 1086 if (cmd_request->bounce_sgl_count) {
3612ef99
S
1087 if (vm_srb->data_in == READ_TYPE) {
1088 copy_from_bounce_buffer(scsi_sglist(scmnd),
8a411bad
S
1089 cmd_request->bounce_sgl,
1090 scsi_sg_count(scmnd));
3612ef99
S
1091 destroy_bounce_buffer(cmd_request->bounce_sgl,
1092 cmd_request->bounce_sgl_count);
1093 }
8a411bad
S
1094 }
1095
2544b794
S
1096 /*
1097 * If there is an error; offline the device since all
1098 * error recovery strategies would have already been
1099 * deployed on the host side.
1100 */
1101 if (vm_srb->srb_status == 0x4)
1102 scmnd->result = DID_TARGET_FAILURE << 16;
1103 else
1104 scmnd->result = vm_srb->scsi_status;
8a411bad
S
1105
1106 if (scmnd->result) {
1107 if (scsi_normalize_sense(scmnd->sense_buffer,
1108 SCSI_SENSE_BUFFERSIZE, &sense_hdr))
1109 scsi_print_sense_hdr("storvsc", &sense_hdr);
1110 }
1111
8a411bad
S
1112 scsi_set_resid(scmnd,
1113 request->data_buffer.len -
1114 vm_srb->data_transfer_length);
1115
1116 scsi_done_fn = scmnd->scsi_done;
1117
1118 scmnd->host_scribble = NULL;
1119 scmnd->scsi_done = NULL;
1120
8a411bad
S
1121 scsi_done_fn(scmnd);
1122
1123 kmem_cache_free(host_dev->request_pool, cmd_request);
1124}
1125
92ae4ebd
OH
1126static bool storvsc_check_scsi_cmd(struct scsi_cmnd *scmnd)
1127{
1128 bool allowed = true;
1129 u8 scsi_op = scmnd->cmnd[0];
1130
1131 switch (scsi_op) {
41098f8f
S
1132 /* smartd sends this command, which will offline the device */
1133 case SET_WINDOW:
1134 scmnd->result = DID_ERROR << 16;
1135 allowed = false;
1136 break;
1137 default:
1138 break;
92ae4ebd
OH
1139 }
1140 return allowed;
1141}
c5b463ae
S
1142
1143/*
1144 * storvsc_queuecommand - Initiate command processing
1145 */
1146static int storvsc_queuecommand_lck(struct scsi_cmnd *scmnd,
1147 void (*done)(struct scsi_cmnd *))
1148{
1149 int ret;
1150 struct hv_host_device *host_dev =
1151 (struct hv_host_device *)scmnd->device->host->hostdata;
1152 struct hv_device *dev = host_dev->dev;
c5b463ae
S
1153 struct hv_storvsc_request *request;
1154 struct storvsc_cmd_request *cmd_request;
1155 unsigned int request_size = 0;
1156 int i;
1157 struct scatterlist *sgl;
1158 unsigned int sg_count = 0;
1159 struct vmscsi_request *vm_srb;
1160
92ae4ebd
OH
1161 if (storvsc_check_scsi_cmd(scmnd) == false) {
1162 done(scmnd);
1163 return 0;
1164 }
c5b463ae
S
1165
1166 /* If retrying, no need to prep the cmd */
1167 if (scmnd->host_scribble) {
c5b463ae
S
1168
1169 cmd_request =
1170 (struct storvsc_cmd_request *)scmnd->host_scribble;
c5b463ae
S
1171
1172 goto retry_request;
1173 }
1174
c5b463ae
S
1175 scmnd->scsi_done = done;
1176
1177 request_size = sizeof(struct storvsc_cmd_request);
1178
1179 cmd_request = kmem_cache_zalloc(host_dev->request_pool,
1180 GFP_ATOMIC);
1181 if (!cmd_request) {
1182 scmnd->scsi_done = NULL;
1183 return SCSI_MLQUEUE_DEVICE_BUSY;
1184 }
1185
1186 /* Setup the cmd request */
1187 cmd_request->bounce_sgl_count = 0;
1188 cmd_request->bounce_sgl = NULL;
1189 cmd_request->cmd = scmnd;
1190
1191 scmnd->host_scribble = (unsigned char *)cmd_request;
1192
1193 request = &cmd_request->request;
1194 vm_srb = &request->vstor_packet.vm_srb;
1195
1196
1197 /* Build the SRB */
1198 switch (scmnd->sc_data_direction) {
1199 case DMA_TO_DEVICE:
1200 vm_srb->data_in = WRITE_TYPE;
1201 break;
1202 case DMA_FROM_DEVICE:
1203 vm_srb->data_in = READ_TYPE;
1204 break;
1205 default:
1206 vm_srb->data_in = UNKNOWN_TYPE;
1207 break;
1208 }
1209
b8de73df 1210 request->on_io_completion = storvsc_command_completion;
c5b463ae
S
1211 request->context = cmd_request;/* scmnd; */
1212
c5b463ae
S
1213 vm_srb->port_number = host_dev->port;
1214 vm_srb->path_id = scmnd->device->channel;
1215 vm_srb->target_id = scmnd->device->id;
1216 vm_srb->lun = scmnd->device->lun;
1217
c5b463ae
S
1218 vm_srb->cdb_length = scmnd->cmd_len;
1219
1220 memcpy(vm_srb->cdb, scmnd->cmnd, vm_srb->cdb_length);
1221
1222 request->sense_buffer = scmnd->sense_buffer;
1223
1224
1225 request->data_buffer.len = scsi_bufflen(scmnd);
1226 if (scsi_sg_count(scmnd)) {
1227 sgl = (struct scatterlist *)scsi_sglist(scmnd);
1228 sg_count = scsi_sg_count(scmnd);
1229
1230 /* check if we need to bounce the sgl */
1231 if (do_bounce_buffer(sgl, scsi_sg_count(scmnd)) != -1) {
1232 cmd_request->bounce_sgl =
1233 create_bounce_buffer(sgl, scsi_sg_count(scmnd),
1234 scsi_bufflen(scmnd));
1235 if (!cmd_request->bounce_sgl) {
1236 scmnd->scsi_done = NULL;
1237 scmnd->host_scribble = NULL;
1238 kmem_cache_free(host_dev->request_pool,
1239 cmd_request);
1240
1241 return SCSI_MLQUEUE_HOST_BUSY;
1242 }
1243
1244 cmd_request->bounce_sgl_count =
1245 ALIGN(scsi_bufflen(scmnd), PAGE_SIZE) >>
1246 PAGE_SHIFT;
1247
fa23b8c7
S
1248 if (vm_srb->data_in == WRITE_TYPE)
1249 copy_to_bounce_buffer(sgl,
1250 cmd_request->bounce_sgl,
1251 scsi_sg_count(scmnd));
c5b463ae
S
1252
1253 sgl = cmd_request->bounce_sgl;
1254 sg_count = cmd_request->bounce_sgl_count;
1255 }
1256
1257 request->data_buffer.offset = sgl[0].offset;
1258
1259 for (i = 0; i < sg_count; i++)
1260 request->data_buffer.pfn_array[i] =
1261 page_to_pfn(sg_page((&sgl[i])));
1262
1263 } else if (scsi_sglist(scmnd)) {
c5b463ae
S
1264 request->data_buffer.offset =
1265 virt_to_phys(scsi_sglist(scmnd)) & (PAGE_SIZE-1);
1266 request->data_buffer.pfn_array[0] =
1267 virt_to_phys(scsi_sglist(scmnd)) >> PAGE_SHIFT;
1268 }
1269
1270retry_request:
1271 /* Invokes the vsc to start an IO */
636f0fd1
S
1272 ret = storvsc_do_io(dev, &cmd_request->request);
1273
d2598f01 1274 if (ret == -EAGAIN) {
c5b463ae
S
1275 /* no more space */
1276
70691ec6 1277 if (cmd_request->bounce_sgl_count)
c5b463ae 1278 destroy_bounce_buffer(cmd_request->bounce_sgl,
70691ec6 1279 cmd_request->bounce_sgl_count);
c5b463ae
S
1280
1281 kmem_cache_free(host_dev->request_pool, cmd_request);
1282
1283 scmnd->scsi_done = NULL;
1284 scmnd->host_scribble = NULL;
1285
1286 ret = SCSI_MLQUEUE_DEVICE_BUSY;
1287 }
1288
1289 return ret;
1290}
1291
1292static DEF_SCSI_QCMD(storvsc_queuecommand)
1293
bef4a34a 1294
454f18a9 1295/* Scsi driver */
bef4a34a 1296static struct scsi_host_template scsi_driver = {
ff568d3a
GKH
1297 .module = THIS_MODULE,
1298 .name = "storvsc_host_t",
1299 .bios_param = storvsc_get_chs,
1300 .queuecommand = storvsc_queuecommand,
1301 .eh_host_reset_handler = storvsc_host_reset_handler,
1302 .slave_alloc = storvsc_device_alloc,
1303 .slave_configure = storvsc_device_configure,
1304 .cmd_per_lun = 1,
1305 /* 64 max_queue * 1 target */
0686e4f4 1306 .can_queue = STORVSC_MAX_IO_REQUESTS*STORVSC_MAX_TARGETS,
ff568d3a 1307 .this_id = -1,
454f18a9 1308 /* no use setting to 0 since ll_blk_rw reset it to 1 */
ff568d3a
GKH
1309 /* currently 32 */
1310 .sg_tablesize = MAX_MULTIPAGE_BUFFER_COUNT,
1311 /*
1312 * ENABLE_CLUSTERING allows mutiple physically contig bio_vecs to merge
1313 * into 1 sg element. If set, we must limit the max_segment_size to
1314 * PAGE_SIZE, otherwise we may get 1 sg element that represents
1315 * multiple
1316 */
454f18a9 1317 /* physically contig pfns (ie sg[x].length > PAGE_SIZE). */
ff568d3a 1318 .use_clustering = ENABLE_CLUSTERING,
454f18a9 1319 /* Make sure we dont get a sg segment crosses a page boundary */
ff568d3a 1320 .dma_boundary = PAGE_SIZE-1,
bef4a34a
HJ
1321};
1322
ef52a81b
S
1323enum {
1324 SCSI_GUID,
1325 IDE_GUID,
1326};
1327
d847b5fe 1328static const struct hv_vmbus_device_id id_table[] = {
c45cf2d4
GKH
1329 /* SCSI guid */
1330 { VMBUS_DEVICE(0xd9, 0x63, 0x61, 0xba, 0xa1, 0x04, 0x29, 0x4d,
ef52a81b
S
1331 0xb6, 0x05, 0x72, 0xe2, 0xff, 0xb1, 0xdc, 0x7f)
1332 .driver_data = SCSI_GUID },
21e37742
S
1333 /* IDE guid */
1334 { VMBUS_DEVICE(0x32, 0x26, 0x41, 0x32, 0xcb, 0x86, 0xa2, 0x44,
ef52a81b
S
1335 0x9b, 0x5c, 0x50, 0xd1, 0x41, 0x73, 0x54, 0xf5)
1336 .driver_data = IDE_GUID },
c45cf2d4 1337 { },
d847b5fe 1338};
bef4a34a 1339
d847b5fe 1340MODULE_DEVICE_TABLE(vmbus, id_table);
bd1f5d6a 1341
bd1f5d6a 1342
3e189519 1343/*
ff568d3a
GKH
1344 * storvsc_probe - Add a new device for this driver
1345 */
f5c78872 1346
84946899
S
1347static int storvsc_probe(struct hv_device *device,
1348 const struct hv_vmbus_device_id *dev_id)
bef4a34a 1349{
ff568d3a 1350 int ret;
bef4a34a 1351 struct Scsi_Host *host;
795b613d 1352 struct hv_host_device *host_dev;
ef52a81b 1353 bool dev_is_ide = ((dev_id->driver_data == IDE_GUID) ? true : false);
bd1f5d6a
S
1354 int path = 0;
1355 int target = 0;
6e4198ce 1356 struct storvsc_device *stor_device;
bd1f5d6a 1357
ff568d3a 1358 host = scsi_host_alloc(&scsi_driver,
972621c9 1359 sizeof(struct hv_host_device));
f8feed06 1360 if (!host)
bef4a34a 1361 return -ENOMEM;
bef4a34a 1362
795b613d
S
1363 host_dev = (struct hv_host_device *)host->hostdata;
1364 memset(host_dev, 0, sizeof(struct hv_host_device));
bef4a34a 1365
795b613d 1366 host_dev->port = host->host_no;
97c15296 1367 host_dev->dev = device;
bef4a34a 1368
795b613d 1369 host_dev->request_pool =
9efd21e1 1370 kmem_cache_create(dev_name(&device->device),
1e05d88e 1371 sizeof(struct storvsc_cmd_request), 0,
ff568d3a
GKH
1372 SLAB_HWCACHE_ALIGN, NULL);
1373
795b613d 1374 if (!host_dev->request_pool) {
bef4a34a 1375 scsi_host_put(host);
bef4a34a
HJ
1376 return -ENOMEM;
1377 }
1378
a13d35ab 1379 stor_device = kzalloc(sizeof(struct storvsc_device), GFP_KERNEL);
6e4198ce
S
1380 if (!stor_device) {
1381 kmem_cache_destroy(host_dev->request_pool);
1382 scsi_host_put(host);
1383 return -ENOMEM;
1384 }
9efd21e1 1385
a13d35ab
S
1386 stor_device->destroy = false;
1387 init_waitqueue_head(&stor_device->waiting_to_drain);
1388 stor_device->device = device;
cd654ea1
S
1389 stor_device->host = host;
1390 hv_set_drvdata(device, stor_device);
a13d35ab 1391
6e4198ce
S
1392 stor_device->port_number = host->host_no;
1393 ret = storvsc_connect_to_vsp(device, storvsc_ringbuffer_size);
1394 if (ret) {
795b613d 1395 kmem_cache_destroy(host_dev->request_pool);
bef4a34a 1396 scsi_host_put(host);
6e4198ce
S
1397 kfree(stor_device);
1398 return ret;
bef4a34a
HJ
1399 }
1400
bd1f5d6a
S
1401 if (dev_is_ide)
1402 storvsc_get_ide_info(device, &target, &path);
1403
6e4198ce
S
1404 host_dev->path = stor_device->path_id;
1405 host_dev->target = stor_device->target_id;
bef4a34a 1406
ff568d3a
GKH
1407 /* max # of devices per target */
1408 host->max_lun = STORVSC_MAX_LUNS_PER_TARGET;
1409 /* max # of targets per channel */
1410 host->max_id = STORVSC_MAX_TARGETS;
1411 /* max # of channels */
1412 host->max_channel = STORVSC_MAX_CHANNELS - 1;
cf55f4a8
MS
1413 /* max cmd length */
1414 host->max_cmd_len = STORVSC_MAX_CMD_LEN;
bef4a34a 1415
454f18a9 1416 /* Register the HBA and start the scsi bus scan */
9efd21e1 1417 ret = scsi_add_host(host, &device->device);
bd1f5d6a
S
1418 if (ret != 0)
1419 goto err_out;
bef4a34a 1420
bd1f5d6a
S
1421 if (!dev_is_ide) {
1422 scsi_scan_host(host);
1423 return 0;
1424 }
1425 ret = scsi_add_device(host, 0, target, 0);
1426 if (ret) {
1427 scsi_remove_host(host);
1428 goto err_out;
bef4a34a 1429 }
bd1f5d6a 1430 return 0;
bef4a34a 1431
bd1f5d6a
S
1432err_out:
1433 storvsc_dev_remove(device);
1434 kmem_cache_destroy(host_dev->request_pool);
1435 scsi_host_put(host);
1436 return -ENODEV;
bef4a34a
HJ
1437}
1438
7bd05b91
S
1439/* The one and only one */
1440
40bf63ed 1441static struct hv_driver storvsc_drv = {
768fa219 1442 .name = "storvsc",
d847b5fe 1443 .id_table = id_table,
40bf63ed
S
1444 .probe = storvsc_probe,
1445 .remove = storvsc_remove,
39ae6fae 1446};
7bd05b91 1447
d9bbae83 1448static int __init storvsc_drv_init(void)
f5c78872 1449{
01415ab3
S
1450 u32 max_outstanding_req_per_channel;
1451
1452 /*
1453 * Divide the ring buffer data size (which is 1 page less
1454 * than the ring buffer size since that page is reserved for
1455 * the ring buffer indices) by the max request size (which is
1456 * vmbus_channel_packet_multipage_buffer + struct vstor_packet + u64)
1457 */
01415ab3 1458 max_outstanding_req_per_channel =
768fa219
GKH
1459 ((storvsc_ringbuffer_size - PAGE_SIZE) /
1460 ALIGN(MAX_MULTIPAGE_BUFFER_PACKET +
1461 sizeof(struct vstor_packet) + sizeof(u64),
1462 sizeof(u64)));
f5c78872 1463
01415ab3 1464 if (max_outstanding_req_per_channel <
f5c78872 1465 STORVSC_MAX_IO_REQUESTS)
b06efc19 1466 return -EINVAL;
f5c78872 1467
768fa219 1468 return vmbus_driver_register(&storvsc_drv);
f5c78872
S
1469}
1470
c63ba9e1 1471static void __exit storvsc_drv_exit(void)
f5c78872 1472{
768fa219 1473 vmbus_driver_unregister(&storvsc_drv);
f5c78872
S
1474}
1475
ff568d3a 1476MODULE_LICENSE("GPL");
26c14cc1 1477MODULE_VERSION(HV_DRV_VERSION);
3afc7cc3 1478MODULE_DESCRIPTION("Microsoft Hyper-V virtual storage driver");
d9bbae83 1479module_init(storvsc_drv_init);
c63ba9e1 1480module_exit(storvsc_drv_exit);