blob: 2330f08062c7fbccc7367c119890c117e2b589b0 [file] [log] [blame]
K. Y. Srinivasan5c473402011-05-12 19:34:14 -07001/*
2 *
3 * Copyright (c) 2011, Microsoft Corporation.
4 *
5 * This program is free software; you can redistribute it and/or modify it
6 * under the terms and conditions of the GNU General Public License,
7 * version 2, as published by the Free Software Foundation.
8 *
9 * This program is distributed in the hope it will be useful, but WITHOUT
10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
12 * more details.
13 *
14 * You should have received a copy of the GNU General Public License along with
15 * this program; if not, write to the Free Software Foundation, Inc., 59 Temple
16 * Place - Suite 330, Boston, MA 02111-1307 USA.
17 *
18 * Authors:
19 * Haiyang Zhang <haiyangz@microsoft.com>
20 * Hank Janssen <hjanssen@microsoft.com>
21 * K. Y. Srinivasan <kys@microsoft.com>
22 *
23 */
K. Y. Srinivasan3f335ea2011-05-12 19:34:15 -070024
25#ifndef _HYPERV_H
26#define _HYPERV_H
27
Bjarke Istrup Pedersen5267cf02014-01-22 09:16:58 +000028#include <uapi/linux/hyperv.h>
29
K. Y. Srinivasan29394372012-01-27 15:55:58 -080030#include <linux/types.h>
K. Y. Srinivasan8ff3e6f2011-05-12 19:34:27 -070031#include <linux/scatterlist.h>
32#include <linux/list.h>
33#include <linux/timer.h>
K. Y. Srinivasan8ff3e6f2011-05-12 19:34:27 -070034#include <linux/completion.h>
35#include <linux/device.h>
K. Y. Srinivasan2e2c1d12011-08-25 09:48:31 -070036#include <linux/mod_devicetable.h>
Stephen Hemminger631e63a2017-02-11 23:02:20 -070037#include <linux/interrupt.h>
Long Li63273cb2018-03-27 17:48:38 -070038#include <linux/reciprocal_div.h>
K. Y. Srinivasan8ff3e6f2011-05-12 19:34:27 -070039
K. Y. Srinivasan7e5ec362014-03-07 00:10:34 -080040#define MAX_PAGE_BUFFER_COUNT 32
K. Y. Srinivasana363bf72011-05-12 19:34:16 -070041#define MAX_MULTIPAGE_BUFFER_COUNT 32 /* 128K */
42
43#pragma pack(push, 1)
44
45/* Single-page buffer */
46struct hv_page_buffer {
47 u32 len;
48 u32 offset;
49 u64 pfn;
50};
51
52/* Multiple-page buffer */
53struct hv_multipage_buffer {
54 /* Length and Offset determines the # of pfns in the array */
55 u32 len;
56 u32 offset;
57 u64 pfn_array[MAX_MULTIPAGE_BUFFER_COUNT];
58};
59
K. Y. Srinivasand61031e2015-01-09 23:54:34 -080060/*
61 * Multiple-page buffer array; the pfn array is variable size:
62 * The number of entries in the PFN array is determined by
63 * "len" and "offset".
64 */
65struct hv_mpb_array {
66 /* Length and Offset determines the # of pfns in the array */
67 u32 len;
68 u32 offset;
69 u64 pfn_array[];
70};
71
K. Y. Srinivasana363bf72011-05-12 19:34:16 -070072/* 0x18 includes the proprietary packet header */
73#define MAX_PAGE_BUFFER_PACKET (0x18 + \
74 (sizeof(struct hv_page_buffer) * \
75 MAX_PAGE_BUFFER_COUNT))
76#define MAX_MULTIPAGE_BUFFER_PACKET (0x18 + \
77 sizeof(struct hv_multipage_buffer))
78
79
80#pragma pack(pop)
81
K. Y. Srinivasan7effffb2011-05-12 19:34:17 -070082struct hv_ring_buffer {
83 /* Offset in bytes from the start of ring data below */
84 u32 write_index;
85
86 /* Offset in bytes from the start of ring data below */
87 u32 read_index;
88
89 u32 interrupt_mask;
90
K. Y. Srinivasan24166032012-12-01 06:46:39 -080091 /*
Michael Kelley71b38242018-06-05 13:37:51 -070092 * WS2012/Win8 and later versions of Hyper-V implement interrupt
93 * driven flow management. The feature bit feat_pending_send_sz
94 * is set by the host on the host->guest ring buffer, and by the
95 * guest on the guest->host ring buffer.
K. Y. Srinivasan24166032012-12-01 06:46:39 -080096 *
Michael Kelley71b38242018-06-05 13:37:51 -070097 * The meaning of the feature bit is a bit complex in that it has
98 * semantics that apply to both ring buffers. If the guest sets
99 * the feature bit in the guest->host ring buffer, the guest is
100 * telling the host that:
101 * 1) It will set the pending_send_sz field in the guest->host ring
102 * buffer when it is waiting for space to become available, and
103 * 2) It will read the pending_send_sz field in the host->guest
104 * ring buffer and interrupt the host when it frees enough space
105 *
106 * Similarly, if the host sets the feature bit in the host->guest
107 * ring buffer, the host is telling the guest that:
108 * 1) It will set the pending_send_sz field in the host->guest ring
109 * buffer when it is waiting for space to become available, and
110 * 2) It will read the pending_send_sz field in the guest->host
111 * ring buffer and interrupt the guest when it frees enough space
112 *
113 * If either the guest or host does not set the feature bit that it
114 * owns, that guest or host must do polling if it encounters a full
115 * ring buffer, and not signal the other end with an interrupt.
K. Y. Srinivasan7effffb2011-05-12 19:34:17 -0700116 */
K. Y. Srinivasan24166032012-12-01 06:46:39 -0800117 u32 pending_send_sz;
K. Y. Srinivasan24166032012-12-01 06:46:39 -0800118 u32 reserved1[12];
K. Y. Srinivasan24166032012-12-01 06:46:39 -0800119 union {
120 struct {
121 u32 feat_pending_send_sz:1;
122 };
123 u32 value;
124 } feature_bits;
125
126 /* Pad it to PAGE_SIZE so that data starts on page boundary */
127 u8 reserved2[4028];
K. Y. Srinivasan7effffb2011-05-12 19:34:17 -0700128
129 /*
130 * Ring data starts here + RingDataStartOffset
131 * !!! DO NOT place any fields below this !!!
132 */
133 u8 buffer[0];
134} __packed;
135
136struct hv_ring_buffer_info {
137 struct hv_ring_buffer *ring_buffer;
138 u32 ring_size; /* Include the shared header */
Long Li63273cb2018-03-27 17:48:38 -0700139 struct reciprocal_value ring_size_div10_reciprocal;
K. Y. Srinivasan7effffb2011-05-12 19:34:17 -0700140 spinlock_t ring_lock;
141
142 u32 ring_datasize; /* < ring_size */
K. Y. Srinivasanab028db2016-04-02 17:59:51 -0700143 u32 priv_read_index;
K. Y. Srinivasan7effffb2011-05-12 19:34:17 -0700144};
145
Haiyang Zhang33be96e2012-03-27 13:20:45 +0000146
Stephen Hemmingere4165a02017-02-11 23:02:24 -0700147static inline u32 hv_get_bytes_to_read(const struct hv_ring_buffer_info *rbi)
K. Y. Srinivasana6341f02016-04-02 17:59:46 -0700148{
149 u32 read_loc, write_loc, dsize, read;
150
151 dsize = rbi->ring_datasize;
152 read_loc = rbi->ring_buffer->read_index;
153 write_loc = READ_ONCE(rbi->ring_buffer->write_index);
154
155 read = write_loc >= read_loc ? (write_loc - read_loc) :
156 (dsize - read_loc) + write_loc;
157
158 return read;
159}
160
Stephen Hemmingere4165a02017-02-11 23:02:24 -0700161static inline u32 hv_get_bytes_to_write(const struct hv_ring_buffer_info *rbi)
K. Y. Srinivasana6341f02016-04-02 17:59:46 -0700162{
163 u32 read_loc, write_loc, dsize, write;
164
165 dsize = rbi->ring_datasize;
166 read_loc = READ_ONCE(rbi->ring_buffer->read_index);
167 write_loc = rbi->ring_buffer->write_index;
168
169 write = write_loc >= read_loc ? dsize - (write_loc - read_loc) :
170 read_loc - write_loc;
171 return write;
172}
173
Long Li63273cb2018-03-27 17:48:38 -0700174static inline u32 hv_get_avail_to_write_percent(
175 const struct hv_ring_buffer_info *rbi)
176{
177 u32 avail_write = hv_get_bytes_to_write(rbi);
178
179 return reciprocal_divide(
180 (avail_write << 3) + (avail_write << 1),
181 rbi->ring_size_div10_reciprocal);
182}
183
K. Y. Srinivasaneafa7072012-12-01 06:46:44 -0800184/*
185 * VMBUS version is 32 bit entity broken up into
186 * two 16 bit quantities: major_number. minor_number.
187 *
188 * 0 . 13 (Windows Server 2008)
189 * 1 . 1 (Windows 7)
190 * 2 . 4 (Windows 8)
K. Y. Srinivasan03367ef2014-04-03 18:02:45 -0700191 * 3 . 0 (Windows 8 R2)
Keith Mange6c4e5f92015-05-26 14:23:01 -0700192 * 4 . 0 (Windows 10)
Dexuan Cuiae20b252018-05-12 02:30:33 -0700193 * 5 . 0 (Newer Windows 10)
K. Y. Srinivasaneafa7072012-12-01 06:46:44 -0800194 */
195
196#define VERSION_WS2008 ((0 << 16) | (13))
197#define VERSION_WIN7 ((1 << 16) | (1))
198#define VERSION_WIN8 ((2 << 16) | (4))
K. Y. Srinivasan03367ef2014-04-03 18:02:45 -0700199#define VERSION_WIN8_1 ((3 << 16) | (0))
Keith Mange6c4e5f92015-05-26 14:23:01 -0700200#define VERSION_WIN10 ((4 << 16) | (0))
Dexuan Cuiae20b252018-05-12 02:30:33 -0700201#define VERSION_WIN10_V5 ((5 << 16) | (0))
K. Y. Srinivasaneafa7072012-12-01 06:46:44 -0800202
203#define VERSION_INVAL -1
204
Dexuan Cuiae20b252018-05-12 02:30:33 -0700205#define VERSION_CURRENT VERSION_WIN10_V5
K. Y. Srinivasanf7c6dfd2011-05-12 19:34:18 -0700206
K. Y. Srinivasan517d8dc2011-05-12 19:34:19 -0700207/* Make maximum size of pipe payload of 16K */
208#define MAX_PIPE_DATA_PAYLOAD (sizeof(u8) * 16384)
209
210/* Define PipeMode values. */
211#define VMBUS_PIPE_TYPE_BYTE 0x00000000
212#define VMBUS_PIPE_TYPE_MESSAGE 0x00000004
213
214/* The size of the user defined data buffer for non-pipe offers. */
215#define MAX_USER_DEFINED_BYTES 120
216
217/* The size of the user defined data buffer for pipe offers. */
218#define MAX_PIPE_USER_DEFINED_BYTES 116
219
220/*
221 * At the center of the Channel Management library is the Channel Offer. This
222 * struct contains the fundamental information about an offer.
223 */
224struct vmbus_channel_offer {
K. Y. Srinivasan358d2ee2011-08-25 09:48:28 -0700225 uuid_le if_type;
226 uuid_le if_instance;
K. Y. Srinivasan29423b72012-12-01 06:46:40 -0800227
228 /*
229 * These two fields are not currently used.
230 */
231 u64 reserved1;
232 u64 reserved2;
233
K. Y. Srinivasan517d8dc2011-05-12 19:34:19 -0700234 u16 chn_flags;
235 u16 mmio_megabytes; /* in bytes * 1024 * 1024 */
236
237 union {
238 /* Non-pipes: The user has MAX_USER_DEFINED_BYTES bytes. */
239 struct {
240 unsigned char user_def[MAX_USER_DEFINED_BYTES];
241 } std;
242
243 /*
244 * Pipes:
245 * The following sructure is an integrated pipe protocol, which
246 * is implemented on top of standard user-defined data. Pipe
247 * clients have MAX_PIPE_USER_DEFINED_BYTES left for their own
248 * use.
249 */
250 struct {
251 u32 pipe_mode;
252 unsigned char user_def[MAX_PIPE_USER_DEFINED_BYTES];
253 } pipe;
254 } u;
K. Y. Srinivasan29423b72012-12-01 06:46:40 -0800255 /*
256 * The sub_channel_index is defined in win8.
257 */
258 u16 sub_channel_index;
259 u16 reserved3;
K. Y. Srinivasan517d8dc2011-05-12 19:34:19 -0700260} __packed;
261
262/* Server Flags */
263#define VMBUS_CHANNEL_ENUMERATE_DEVICE_INTERFACE 1
264#define VMBUS_CHANNEL_SERVER_SUPPORTS_TRANSFER_PAGES 2
265#define VMBUS_CHANNEL_SERVER_SUPPORTS_GPADLS 4
266#define VMBUS_CHANNEL_NAMED_PIPE_MODE 0x10
267#define VMBUS_CHANNEL_LOOPBACK_OFFER 0x100
268#define VMBUS_CHANNEL_PARENT_OFFER 0x200
269#define VMBUS_CHANNEL_REQUEST_MONITORED_NOTIFICATION 0x400
Dexuan Cuie8d6ca02016-01-27 22:29:38 -0800270#define VMBUS_CHANNEL_TLNPI_PROVIDER_OFFER 0x2000
K. Y. Srinivasan517d8dc2011-05-12 19:34:19 -0700271
K. Y. Srinivasan50ed40e2011-05-12 19:34:20 -0700272struct vmpacket_descriptor {
273 u16 type;
274 u16 offset8;
275 u16 len8;
276 u16 flags;
277 u64 trans_id;
278} __packed;
279
280struct vmpacket_header {
281 u32 prev_pkt_start_offset;
282 struct vmpacket_descriptor descriptor;
283} __packed;
284
285struct vmtransfer_page_range {
286 u32 byte_count;
287 u32 byte_offset;
288} __packed;
289
290struct vmtransfer_page_packet_header {
291 struct vmpacket_descriptor d;
292 u16 xfer_pageset_id;
K. Y. Srinivasan1508d812012-08-16 08:23:20 -0700293 u8 sender_owns_set;
K. Y. Srinivasan50ed40e2011-05-12 19:34:20 -0700294 u8 reserved;
295 u32 range_cnt;
296 struct vmtransfer_page_range ranges[1];
297} __packed;
298
299struct vmgpadl_packet_header {
300 struct vmpacket_descriptor d;
301 u32 gpadl;
302 u32 reserved;
303} __packed;
304
305struct vmadd_remove_transfer_page_set {
306 struct vmpacket_descriptor d;
307 u32 gpadl;
308 u16 xfer_pageset_id;
309 u16 reserved;
310} __packed;
311
312/*
313 * This structure defines a range in guest physical space that can be made to
314 * look virtually contiguous.
315 */
316struct gpa_range {
317 u32 byte_count;
318 u32 byte_offset;
319 u64 pfn_array[0];
320};
321
322/*
323 * This is the format for an Establish Gpadl packet, which contains a handle by
324 * which this GPADL will be known and a set of GPA ranges associated with it.
325 * This can be converted to a MDL by the guest OS. If there are multiple GPA
326 * ranges, then the resulting MDL will be "chained," representing multiple VA
327 * ranges.
328 */
329struct vmestablish_gpadl {
330 struct vmpacket_descriptor d;
331 u32 gpadl;
332 u32 range_cnt;
333 struct gpa_range range[1];
334} __packed;
335
336/*
337 * This is the format for a Teardown Gpadl packet, which indicates that the
338 * GPADL handle in the Establish Gpadl packet will never be referenced again.
339 */
340struct vmteardown_gpadl {
341 struct vmpacket_descriptor d;
342 u32 gpadl;
343 u32 reserved; /* for alignment to a 8-byte boundary */
344} __packed;
345
346/*
347 * This is the format for a GPA-Direct packet, which contains a set of GPA
348 * ranges, in addition to commands and/or data.
349 */
350struct vmdata_gpa_direct {
351 struct vmpacket_descriptor d;
352 u32 reserved;
353 u32 range_cnt;
354 struct gpa_range range[1];
355} __packed;
356
357/* This is the format for a Additional Data Packet. */
358struct vmadditional_data {
359 struct vmpacket_descriptor d;
360 u64 total_bytes;
361 u32 offset;
362 u32 byte_cnt;
363 unsigned char data[1];
364} __packed;
365
366union vmpacket_largest_possible_header {
367 struct vmpacket_descriptor simple_hdr;
368 struct vmtransfer_page_packet_header xfer_page_hdr;
369 struct vmgpadl_packet_header gpadl_hdr;
370 struct vmadd_remove_transfer_page_set add_rm_xfer_page_hdr;
371 struct vmestablish_gpadl establish_gpadl_hdr;
372 struct vmteardown_gpadl teardown_gpadl_hdr;
373 struct vmdata_gpa_direct data_gpa_direct_hdr;
374};
375
376#define VMPACKET_DATA_START_ADDRESS(__packet) \
377 (void *)(((unsigned char *)__packet) + \
378 ((struct vmpacket_descriptor)__packet)->offset8 * 8)
379
380#define VMPACKET_DATA_LENGTH(__packet) \
381 ((((struct vmpacket_descriptor)__packet)->len8 - \
382 ((struct vmpacket_descriptor)__packet)->offset8) * 8)
383
384#define VMPACKET_TRANSFER_MODE(__packet) \
385 (((struct IMPACT)__packet)->type)
386
387enum vmbus_packet_type {
388 VM_PKT_INVALID = 0x0,
389 VM_PKT_SYNCH = 0x1,
390 VM_PKT_ADD_XFER_PAGESET = 0x2,
391 VM_PKT_RM_XFER_PAGESET = 0x3,
392 VM_PKT_ESTABLISH_GPADL = 0x4,
393 VM_PKT_TEARDOWN_GPADL = 0x5,
394 VM_PKT_DATA_INBAND = 0x6,
395 VM_PKT_DATA_USING_XFER_PAGES = 0x7,
396 VM_PKT_DATA_USING_GPADL = 0x8,
397 VM_PKT_DATA_USING_GPA_DIRECT = 0x9,
398 VM_PKT_CANCEL_REQUEST = 0xa,
399 VM_PKT_COMP = 0xb,
400 VM_PKT_DATA_USING_ADDITIONAL_PKT = 0xc,
401 VM_PKT_ADDITIONAL_DATA = 0xd
402};
403
404#define VMBUS_DATA_PACKET_FLAG_COMPLETION_REQUESTED 1
K. Y. Srinivasan517d8dc2011-05-12 19:34:19 -0700405
K. Y. Srinivasanb56dda02011-05-12 19:34:21 -0700406
K. Y. Srinivasanb56dda02011-05-12 19:34:21 -0700407/* Version 1 messages */
408enum vmbus_channel_message_type {
409 CHANNELMSG_INVALID = 0,
410 CHANNELMSG_OFFERCHANNEL = 1,
411 CHANNELMSG_RESCIND_CHANNELOFFER = 2,
412 CHANNELMSG_REQUESTOFFERS = 3,
413 CHANNELMSG_ALLOFFERS_DELIVERED = 4,
414 CHANNELMSG_OPENCHANNEL = 5,
415 CHANNELMSG_OPENCHANNEL_RESULT = 6,
416 CHANNELMSG_CLOSECHANNEL = 7,
417 CHANNELMSG_GPADL_HEADER = 8,
418 CHANNELMSG_GPADL_BODY = 9,
419 CHANNELMSG_GPADL_CREATED = 10,
420 CHANNELMSG_GPADL_TEARDOWN = 11,
421 CHANNELMSG_GPADL_TORNDOWN = 12,
422 CHANNELMSG_RELID_RELEASED = 13,
423 CHANNELMSG_INITIATE_CONTACT = 14,
424 CHANNELMSG_VERSION_RESPONSE = 15,
425 CHANNELMSG_UNLOAD = 16,
K. Y. Srinivasan2db84ef2015-04-22 21:31:32 -0700426 CHANNELMSG_UNLOAD_RESPONSE = 17,
Dexuan Cui5c23a1a2016-01-27 22:29:40 -0800427 CHANNELMSG_18 = 18,
428 CHANNELMSG_19 = 19,
429 CHANNELMSG_20 = 20,
430 CHANNELMSG_TL_CONNECT_REQUEST = 21,
K. Y. Srinivasanb56dda02011-05-12 19:34:21 -0700431 CHANNELMSG_COUNT
432};
433
434struct vmbus_channel_message_header {
435 enum vmbus_channel_message_type msgtype;
436 u32 padding;
437} __packed;
438
439/* Query VMBus Version parameters */
440struct vmbus_channel_query_vmbus_version {
441 struct vmbus_channel_message_header header;
442 u32 version;
443} __packed;
444
445/* VMBus Version Supported parameters */
446struct vmbus_channel_version_supported {
447 struct vmbus_channel_message_header header;
K. Y. Srinivasan1508d812012-08-16 08:23:20 -0700448 u8 version_supported;
K. Y. Srinivasanb56dda02011-05-12 19:34:21 -0700449} __packed;
450
451/* Offer Channel parameters */
452struct vmbus_channel_offer_channel {
453 struct vmbus_channel_message_header header;
454 struct vmbus_channel_offer offer;
455 u32 child_relid;
456 u8 monitorid;
K. Y. Srinivasan29423b72012-12-01 06:46:40 -0800457 /*
458 * win7 and beyond splits this field into a bit field.
459 */
460 u8 monitor_allocated:1;
461 u8 reserved:7;
462 /*
463 * These are new fields added in win7 and later.
464 * Do not access these fields without checking the
465 * negotiated protocol.
466 *
467 * If "is_dedicated_interrupt" is set, we must not set the
468 * associated bit in the channel bitmap while sending the
469 * interrupt to the host.
470 *
471 * connection_id is to be used in signaling the host.
472 */
473 u16 is_dedicated_interrupt:1;
474 u16 reserved1:15;
475 u32 connection_id;
K. Y. Srinivasanb56dda02011-05-12 19:34:21 -0700476} __packed;
477
478/* Rescind Offer parameters */
479struct vmbus_channel_rescind_offer {
480 struct vmbus_channel_message_header header;
481 u32 child_relid;
482} __packed;
483
Stephen Hemminger4827ee12017-03-04 18:27:18 -0700484static inline u32
485hv_ringbuffer_pending_size(const struct hv_ring_buffer_info *rbi)
486{
487 return rbi->ring_buffer->pending_send_sz;
488}
489
K. Y. Srinivasanb56dda02011-05-12 19:34:21 -0700490/*
491 * Request Offer -- no parameters, SynIC message contains the partition ID
492 * Set Snoop -- no parameters, SynIC message contains the partition ID
493 * Clear Snoop -- no parameters, SynIC message contains the partition ID
494 * All Offers Delivered -- no parameters, SynIC message contains the partition
495 * ID
496 * Flush Client -- no parameters, SynIC message contains the partition ID
497 */
498
499/* Open Channel parameters */
500struct vmbus_channel_open_channel {
501 struct vmbus_channel_message_header header;
502
503 /* Identifies the specific VMBus channel that is being opened. */
504 u32 child_relid;
505
506 /* ID making a particular open request at a channel offer unique. */
507 u32 openid;
508
509 /* GPADL for the channel's ring buffer. */
510 u32 ringbuffer_gpadlhandle;
511
K. Y. Srinivasanabbf3b22012-12-01 06:46:48 -0800512 /*
513 * Starting with win8, this field will be used to specify
514 * the target virtual processor on which to deliver the interrupt for
515 * the host to guest communication.
516 * Prior to win8, incoming channel interrupts would only
517 * be delivered on cpu 0. Setting this value to 0 would
518 * preserve the earlier behavior.
519 */
520 u32 target_vp;
K. Y. Srinivasanb56dda02011-05-12 19:34:21 -0700521
522 /*
Stephen Hemminger2a9d7de2017-03-04 18:27:17 -0700523 * The upstream ring buffer begins at offset zero in the memory
524 * described by RingBufferGpadlHandle. The downstream ring buffer
525 * follows it at this offset (in pages).
526 */
K. Y. Srinivasanb56dda02011-05-12 19:34:21 -0700527 u32 downstream_ringbuffer_pageoffset;
528
529 /* User-specific data to be passed along to the server endpoint. */
530 unsigned char userdata[MAX_USER_DEFINED_BYTES];
531} __packed;
532
533/* Open Channel Result parameters */
534struct vmbus_channel_open_result {
535 struct vmbus_channel_message_header header;
536 u32 child_relid;
537 u32 openid;
538 u32 status;
539} __packed;
540
541/* Close channel parameters; */
542struct vmbus_channel_close_channel {
543 struct vmbus_channel_message_header header;
544 u32 child_relid;
545} __packed;
546
547/* Channel Message GPADL */
548#define GPADL_TYPE_RING_BUFFER 1
549#define GPADL_TYPE_SERVER_SAVE_AREA 2
550#define GPADL_TYPE_TRANSACTION 8
551
552/*
553 * The number of PFNs in a GPADL message is defined by the number of
554 * pages that would be spanned by ByteCount and ByteOffset. If the
555 * implied number of PFNs won't fit in this packet, there will be a
556 * follow-up packet that contains more.
557 */
558struct vmbus_channel_gpadl_header {
559 struct vmbus_channel_message_header header;
560 u32 child_relid;
561 u32 gpadl;
562 u16 range_buflen;
563 u16 rangecount;
564 struct gpa_range range[0];
565} __packed;
566
567/* This is the followup packet that contains more PFNs. */
568struct vmbus_channel_gpadl_body {
569 struct vmbus_channel_message_header header;
570 u32 msgnumber;
571 u32 gpadl;
572 u64 pfn[0];
573} __packed;
574
575struct vmbus_channel_gpadl_created {
576 struct vmbus_channel_message_header header;
577 u32 child_relid;
578 u32 gpadl;
579 u32 creation_status;
580} __packed;
581
582struct vmbus_channel_gpadl_teardown {
583 struct vmbus_channel_message_header header;
584 u32 child_relid;
585 u32 gpadl;
586} __packed;
587
588struct vmbus_channel_gpadl_torndown {
589 struct vmbus_channel_message_header header;
590 u32 gpadl;
591} __packed;
592
K. Y. Srinivasanb56dda02011-05-12 19:34:21 -0700593struct vmbus_channel_relid_released {
594 struct vmbus_channel_message_header header;
595 u32 child_relid;
596} __packed;
597
598struct vmbus_channel_initiate_contact {
599 struct vmbus_channel_message_header header;
600 u32 vmbus_version_requested;
K. Y. Srinivasane28bab42014-01-15 17:12:58 -0800601 u32 target_vcpu; /* The VCPU the host should respond to */
Dexuan Cuiae20b252018-05-12 02:30:33 -0700602 union {
603 u64 interrupt_page;
604 struct {
605 u8 msg_sint;
606 u8 padding1[3];
607 u32 padding2;
608 };
609 };
K. Y. Srinivasanb56dda02011-05-12 19:34:21 -0700610 u64 monitor_page1;
611 u64 monitor_page2;
612} __packed;
613
Dexuan Cui5c23a1a2016-01-27 22:29:40 -0800614/* Hyper-V socket: guest's connect()-ing to host */
615struct vmbus_channel_tl_connect_request {
616 struct vmbus_channel_message_header header;
617 uuid_le guest_endpoint_id;
618 uuid_le host_service_id;
619} __packed;
620
K. Y. Srinivasanb56dda02011-05-12 19:34:21 -0700621struct vmbus_channel_version_response {
622 struct vmbus_channel_message_header header;
K. Y. Srinivasan1508d812012-08-16 08:23:20 -0700623 u8 version_supported;
Dexuan Cuiae20b252018-05-12 02:30:33 -0700624
625 u8 connection_state;
626 u16 padding;
627
628 /*
629 * On new hosts that support VMBus protocol 5.0, we must use
630 * VMBUS_MESSAGE_CONNECTION_ID_4 for the Initiate Contact Message,
631 * and for subsequent messages, we must use the Message Connection ID
632 * field in the host-returned Version Response Message.
633 *
634 * On old hosts, we should always use VMBUS_MESSAGE_CONNECTION_ID (1).
635 */
636 u32 msg_conn_id;
K. Y. Srinivasanb56dda02011-05-12 19:34:21 -0700637} __packed;
638
639enum vmbus_channel_state {
640 CHANNEL_OFFER_STATE,
641 CHANNEL_OPENING_STATE,
642 CHANNEL_OPEN_STATE,
K. Y. Srinivasane68d2972013-05-23 12:02:32 -0700643 CHANNEL_OPENED_STATE,
K. Y. Srinivasanb56dda02011-05-12 19:34:21 -0700644};
645
K. Y. Srinivasanb56dda02011-05-12 19:34:21 -0700646/*
647 * Represents each channel msg on the vmbus connection This is a
648 * variable-size data structure depending on the msg type itself
649 */
650struct vmbus_channel_msginfo {
651 /* Bookkeeping stuff */
652 struct list_head msglistentry;
653
654 /* So far, this is only used to handle gpadl body message */
655 struct list_head submsglist;
656
657 /* Synchronize the request/response if needed */
658 struct completion waitevent;
K. Y. Srinivasanccb61f82016-12-22 16:54:00 -0800659 struct vmbus_channel *waiting_channel;
K. Y. Srinivasanb56dda02011-05-12 19:34:21 -0700660 union {
661 struct vmbus_channel_version_supported version_supported;
662 struct vmbus_channel_open_result open_result;
663 struct vmbus_channel_gpadl_torndown gpadl_torndown;
664 struct vmbus_channel_gpadl_created gpadl_created;
665 struct vmbus_channel_version_response version_response;
666 } response;
667
668 u32 msgsize;
669 /*
670 * The channel message that goes out on the "wire".
671 * It will contain at minimum the VMBUS_CHANNEL_MESSAGE_HEADER header
672 */
673 unsigned char msg[0];
674};
675
K. Y. Srinivasanf9f1db82011-06-06 15:49:58 -0700676struct vmbus_close_msg {
677 struct vmbus_channel_msginfo info;
678 struct vmbus_channel_close_channel msg;
679};
680
K. Y. Srinivasanb3bf60c2012-12-01 06:46:45 -0800681/* Define connection identifier type. */
682union hv_connection_id {
683 u32 asu32;
684 struct {
685 u32 id:24;
686 u32 reserved:8;
687 } u;
688};
689
K. Y. Srinivasan509879b2016-09-02 05:58:23 -0700690enum hv_numa_policy {
691 HV_BALANCED = 0,
692 HV_LOCALIZED,
693};
694
K. Y. Srinivasan7047f172015-12-25 20:00:30 -0800695enum vmbus_device_type {
696 HV_IDE = 0,
697 HV_SCSI,
698 HV_FC,
699 HV_NIC,
700 HV_ND,
701 HV_PCIE,
702 HV_FB,
703 HV_KBD,
704 HV_MOUSE,
705 HV_KVP,
706 HV_TS,
707 HV_HB,
708 HV_SHUTDOWN,
709 HV_FCOPY,
710 HV_BACKUP,
711 HV_DM,
Haiyang Zhangf45be722016-12-03 12:34:29 -0800712 HV_UNKNOWN,
K. Y. Srinivasan7047f172015-12-25 20:00:30 -0800713};
714
715struct vmbus_device {
716 u16 dev_type;
717 uuid_le guid;
718 bool perf_device;
719};
720
K. Y. Srinivasan7d7c75c2011-06-06 15:49:57 -0700721struct vmbus_channel {
722 struct list_head listentry;
723
724 struct hv_device *device_obj;
725
K. Y. Srinivasan7d7c75c2011-06-06 15:49:57 -0700726 enum vmbus_channel_state state;
K. Y. Srinivasan7d7c75c2011-06-06 15:49:57 -0700727
728 struct vmbus_channel_offer_channel offermsg;
729 /*
730 * These are based on the OfferMsg.MonitorId.
731 * Save it here for easy access.
732 */
733 u8 monitor_grp;
734 u8 monitor_bit;
735
Haiyang Zhangc3582a22014-12-01 13:28:39 -0800736 bool rescind; /* got rescind msg */
K. Y. Srinivasan7fa32e52017-11-14 06:53:33 -0700737 struct completion rescind_event;
Haiyang Zhangc3582a22014-12-01 13:28:39 -0800738
K. Y. Srinivasan7d7c75c2011-06-06 15:49:57 -0700739 u32 ringbuffer_gpadlhandle;
740
741 /* Allocated memory for ring buffer */
742 void *ringbuffer_pages;
743 u32 ringbuffer_pagecount;
744 struct hv_ring_buffer_info outbound; /* send to parent */
745 struct hv_ring_buffer_info inbound; /* receive from parent */
K. Y. Srinivasan7d7c75c2011-06-06 15:49:57 -0700746
K. Y. Srinivasanf9f1db82011-06-06 15:49:58 -0700747 struct vmbus_close_msg close_msg;
748
Stephen Hemminger6981fbf2017-10-29 11:33:40 -0700749 /* Statistics */
750 u64 interrupts; /* Host to Guest interrupts */
751 u64 sig_events; /* Guest to Host events */
752
Stephen Hemminger51c6ce22017-02-11 23:02:18 -0700753 /* Channel callback's invoked in softirq context */
Stephen Hemminger631e63a2017-02-11 23:02:20 -0700754 struct tasklet_struct callback_event;
K. Y. Srinivasan7d7c75c2011-06-06 15:49:57 -0700755 void (*onchannel_callback)(void *context);
756 void *channel_callback_context;
K. Y. Srinivasan132368b2012-12-01 06:46:33 -0800757
758 /*
Stephen Hemmingerb71e3282017-02-11 23:02:21 -0700759 * A channel can be marked for one of three modes of reading:
760 * BATCHED - callback called from taslket and should read
761 * channel until empty. Interrupts from the host
762 * are masked while read is in process (default).
763 * DIRECT - callback called from tasklet (softirq).
764 * ISR - callback called in interrupt context and must
765 * invoke its own deferred processing.
766 * Host interrupts are disabled and must be re-enabled
767 * when ring is empty.
K. Y. Srinivasan132368b2012-12-01 06:46:33 -0800768 */
Stephen Hemmingerb71e3282017-02-11 23:02:21 -0700769 enum hv_callback_mode {
770 HV_CALL_BATCHED,
771 HV_CALL_DIRECT,
772 HV_CALL_ISR
773 } callback_mode;
K. Y. Srinivasanb3bf60c2012-12-01 06:46:45 -0800774
775 bool is_dedicated_interrupt;
Vitaly Kuznetsov05784172017-08-02 18:09:16 +0200776 u64 sig_event;
K. Y. Srinivasanabbf3b22012-12-01 06:46:48 -0800777
778 /*
779 * Starting with win8, this field will be used to specify
780 * the target virtual processor on which to deliver the interrupt for
781 * the host to guest communication.
782 * Prior to win8, incoming channel interrupts would only
783 * be delivered on cpu 0. Setting this value to 0 would
784 * preserve the earlier behavior.
785 */
786 u32 target_vp;
K. Y. Srinivasand3ba7202014-04-08 18:45:53 -0700787 /* The corresponding CPUID in the guest */
788 u32 target_cpu;
K. Y. Srinivasane68d2972013-05-23 12:02:32 -0700789 /*
K. Y. Srinivasan1f656ff2015-05-30 23:37:48 -0700790 * State to manage the CPU affiliation of channels.
791 */
Dexuan Cui3b711072015-08-05 00:52:39 -0700792 struct cpumask alloced_cpus_in_node;
K. Y. Srinivasan1f656ff2015-05-30 23:37:48 -0700793 int numa_node;
794 /*
K. Y. Srinivasane68d2972013-05-23 12:02:32 -0700795 * Support for sub-channels. For high performance devices,
796 * it will be useful to have multiple sub-channels to support
797 * a scalable communication infrastructure with the host.
798 * The support for sub-channels is implemented as an extention
799 * to the current infrastructure.
800 * The initial offer is considered the primary channel and this
801 * offer message will indicate if the host supports sub-channels.
802 * The guest is free to ask for sub-channels to be offerred and can
803 * open these sub-channels as a normal "primary" channel. However,
804 * all sub-channels will have the same type and instance guids as the
805 * primary channel. Requests sent on a given channel will result in a
806 * response on the same channel.
807 */
808
809 /*
810 * Sub-channel creation callback. This callback will be called in
811 * process context when a sub-channel offer is received from the host.
812 * The guest can open the sub-channel in the context of this callback.
813 */
814 void (*sc_creation_callback)(struct vmbus_channel *new_sc);
815
Vitaly Kuznetsov67fae052015-01-20 16:45:05 +0100816 /*
Dexuan Cui499e8402016-01-27 22:29:42 -0800817 * Channel rescind callback. Some channels (the hvsock ones), need to
818 * register a callback which is invoked in vmbus_onoffer_rescind().
819 */
820 void (*chn_rescind_callback)(struct vmbus_channel *channel);
821
822 /*
Vitaly Kuznetsov67fae052015-01-20 16:45:05 +0100823 * The spinlock to protect the structure. It is being used to protect
824 * test-and-set access to various attributes of the structure as well
825 * as all sc_list operations.
826 */
827 spinlock_t lock;
K. Y. Srinivasane68d2972013-05-23 12:02:32 -0700828 /*
829 * All Sub-channels of a primary channel are linked here.
830 */
831 struct list_head sc_list;
832 /*
Vitaly Kuznetsovfea844a2015-05-06 17:47:43 -0700833 * Current number of sub-channels.
834 */
835 int num_sc;
836 /*
837 * Number of a sub-channel (position within sc_list) which is supposed
838 * to be used as the next outgoing channel.
839 */
840 int next_oc;
841 /*
K. Y. Srinivasane68d2972013-05-23 12:02:32 -0700842 * The primary channel this sub-channel belongs to.
843 * This will be NULL for the primary channel.
844 */
845 struct vmbus_channel *primary_channel;
K. Y. Srinivasan8a7206a2014-02-03 12:42:45 -0800846 /*
847 * Support per-channel state for use by vmbus drivers.
848 */
849 void *per_channel_state;
K. Y. Srinivasan3a28fa32014-04-08 18:45:54 -0700850 /*
851 * To support per-cpu lookup mapping of relid to channel,
852 * link up channels based on their CPU affinity.
853 */
854 struct list_head percpu_list;
Stephen Hemminger8200f202017-03-04 18:13:57 -0700855
856 /*
857 * Defer freeing channel until after all cpu's have
858 * gone through grace period.
859 */
860 struct rcu_head rcu;
861
K. Y. Srinivasan85998462015-12-14 16:01:54 -0800862 /*
Stephen Hemmingerc2e5df62017-09-21 20:58:49 -0700863 * For sysfs per-channel properties.
864 */
865 struct kobject kobj;
866
867 /*
K. Y. Srinivasan37242872016-07-01 16:26:37 -0700868 * For performance critical channels (storage, networking
869 * etc,), Hyper-V has a mechanism to enhance the throughput
870 * at the expense of latency:
871 * When the host is to be signaled, we just set a bit in a shared page
872 * and this bit will be inspected by the hypervisor within a certain
873 * window and if the bit is set, the host will be signaled. The window
874 * of time is the monitor latency - currently around 100 usecs. This
875 * mechanism improves throughput by:
876 *
877 * A) Making the host more efficient - each time it wakes up,
878 * potentially it will process morev number of packets. The
879 * monitor latency allows a batch to build up.
880 * B) By deferring the hypercall to signal, we will also minimize
881 * the interrupts.
882 *
883 * Clearly, these optimizations improve throughput at the expense of
884 * latency. Furthermore, since the channel is shared for both
885 * control and data messages, control messages currently suffer
886 * unnecessary latency adversley impacting performance and boot
887 * time. To fix this issue, permit tagging the channel as being
888 * in "low latency" mode. In this mode, we will bypass the monitor
889 * mechanism.
890 */
891 bool low_latency;
K. Y. Srinivasanfe760e42016-01-27 22:29:45 -0800892
K. Y. Srinivasan509879b2016-09-02 05:58:23 -0700893 /*
894 * NUMA distribution policy:
Haiyang Zhangce767042018-03-04 22:17:17 -0700895 * We support two policies:
K. Y. Srinivasan509879b2016-09-02 05:58:23 -0700896 * 1) Balanced: Here all performance critical channels are
897 * distributed evenly amongst all the NUMA nodes.
898 * This policy will be the default policy.
899 * 2) Localized: All channels of a given instance of a
900 * performance critical service will be assigned CPUs
901 * within a selected NUMA node.
902 */
903 enum hv_numa_policy affinity_policy;
904
K. Y. Srinivasan6f3d7912017-08-11 10:03:59 -0700905 bool probe_done;
906
K. Y. Srinivasan7d7c75c2011-06-06 15:49:57 -0700907};
K. Y. Srinivasanb56dda02011-05-12 19:34:21 -0700908
Dexuan Cuie8d6ca02016-01-27 22:29:38 -0800909static inline bool is_hvsock_channel(const struct vmbus_channel *c)
910{
911 return !!(c->offermsg.offer.chn_flags &
912 VMBUS_CHANNEL_TLNPI_PROVIDER_OFFER);
913}
914
K. Y. Srinivasan509879b2016-09-02 05:58:23 -0700915static inline void set_channel_affinity_state(struct vmbus_channel *c,
916 enum hv_numa_policy policy)
917{
918 c->affinity_policy = policy;
919}
920
Stephen Hemmingerb71e3282017-02-11 23:02:21 -0700921static inline void set_channel_read_mode(struct vmbus_channel *c,
922 enum hv_callback_mode mode)
K. Y. Srinivasan132368b2012-12-01 06:46:33 -0800923{
Stephen Hemmingerb71e3282017-02-11 23:02:21 -0700924 c->callback_mode = mode;
K. Y. Srinivasan132368b2012-12-01 06:46:33 -0800925}
926
K. Y. Srinivasan8a7206a2014-02-03 12:42:45 -0800927static inline void set_per_channel_state(struct vmbus_channel *c, void *s)
928{
929 c->per_channel_state = s;
930}
931
932static inline void *get_per_channel_state(struct vmbus_channel *c)
933{
934 return c->per_channel_state;
935}
936
Dexuan Cui3c753542016-01-27 22:29:37 -0800937static inline void set_channel_pending_send_size(struct vmbus_channel *c,
938 u32 size)
939{
940 c->outbound.ring_buffer->pending_send_sz = size;
941}
942
K. Y. Srinivasan37242872016-07-01 16:26:37 -0700943static inline void set_low_latency_mode(struct vmbus_channel *c)
944{
945 c->low_latency = true;
946}
947
948static inline void clear_low_latency_mode(struct vmbus_channel *c)
949{
950 c->low_latency = false;
951}
952
K. Y. Srinivasanb56dda02011-05-12 19:34:21 -0700953void vmbus_onmessage(void *context);
954
955int vmbus_request_offers(void);
956
K. Y. Srinivasane68d2972013-05-23 12:02:32 -0700957/*
958 * APIs for managing sub-channels.
959 */
960
961void vmbus_set_sc_create_callback(struct vmbus_channel *primary_channel,
962 void (*sc_cr_cb)(struct vmbus_channel *new_sc));
963
Dexuan Cui499e8402016-01-27 22:29:42 -0800964void vmbus_set_chn_rescind_callback(struct vmbus_channel *channel,
965 void (*chn_rescind_cb)(struct vmbus_channel *));
966
K. Y. Srinivasane68d2972013-05-23 12:02:32 -0700967/*
968 * Retrieve the (sub) channel on which to send an outgoing request.
969 * When a primary channel has multiple sub-channels, we choose a
970 * channel whose VCPU binding is closest to the VCPU on which
971 * this call is being made.
972 */
973struct vmbus_channel *vmbus_get_outgoing_channel(struct vmbus_channel *primary);
974
975/*
976 * Check if sub-channels have already been offerred. This API will be useful
977 * when the driver is unloaded after establishing sub-channels. In this case,
978 * when the driver is re-loaded, the driver would have to check if the
979 * subchannels have already been established before attempting to request
980 * the creation of sub-channels.
981 * This function returns TRUE to indicate that subchannels have already been
982 * created.
983 * This function should be invoked after setting the callback function for
984 * sub-channel creation.
985 */
986bool vmbus_are_subchannels_present(struct vmbus_channel *primary);
987
K. Y. Srinivasanc35470b2011-05-12 19:34:22 -0700988/* The format must be the same as struct vmdata_gpa_direct */
989struct vmbus_channel_packet_page_buffer {
990 u16 type;
991 u16 dataoffset8;
992 u16 length8;
993 u16 flags;
994 u64 transactionid;
995 u32 reserved;
996 u32 rangecount;
997 struct hv_page_buffer range[MAX_PAGE_BUFFER_COUNT];
998} __packed;
999
1000/* The format must be the same as struct vmdata_gpa_direct */
1001struct vmbus_channel_packet_multipage_buffer {
1002 u16 type;
1003 u16 dataoffset8;
1004 u16 length8;
1005 u16 flags;
1006 u64 transactionid;
1007 u32 reserved;
1008 u32 rangecount; /* Always 1 in this case */
1009 struct hv_multipage_buffer range;
1010} __packed;
1011
K. Y. Srinivasand61031e2015-01-09 23:54:34 -08001012/* The format must be the same as struct vmdata_gpa_direct */
1013struct vmbus_packet_mpb_array {
1014 u16 type;
1015 u16 dataoffset8;
1016 u16 length8;
1017 u16 flags;
1018 u64 transactionid;
1019 u32 reserved;
1020 u32 rangecount; /* Always 1 in this case */
1021 struct hv_mpb_array range;
1022} __packed;
1023
K. Y. Srinivasanc35470b2011-05-12 19:34:22 -07001024
1025extern int vmbus_open(struct vmbus_channel *channel,
1026 u32 send_ringbuffersize,
1027 u32 recv_ringbuffersize,
1028 void *userdata,
1029 u32 userdatalen,
Stephen Hemminger2a9d7de2017-03-04 18:27:17 -07001030 void (*onchannel_callback)(void *context),
K. Y. Srinivasanc35470b2011-05-12 19:34:22 -07001031 void *context);
1032
1033extern void vmbus_close(struct vmbus_channel *channel);
1034
1035extern int vmbus_sendpacket(struct vmbus_channel *channel,
K. Y. Srinivasan011a7c32014-02-01 19:02:20 -08001036 void *buffer,
K. Y. Srinivasanc35470b2011-05-12 19:34:22 -07001037 u32 bufferLen,
1038 u64 requestid,
1039 enum vmbus_packet_type type,
1040 u32 flags);
1041
1042extern int vmbus_sendpacket_pagebuffer(struct vmbus_channel *channel,
1043 struct hv_page_buffer pagebuffers[],
1044 u32 pagecount,
1045 void *buffer,
1046 u32 bufferlen,
1047 u64 requestid);
1048
K. Y. Srinivasand61031e2015-01-09 23:54:34 -08001049extern int vmbus_sendpacket_mpb_desc(struct vmbus_channel *channel,
1050 struct vmbus_packet_mpb_array *mpb,
1051 u32 desc_size,
1052 void *buffer,
1053 u32 bufferlen,
1054 u64 requestid);
1055
K. Y. Srinivasanc35470b2011-05-12 19:34:22 -07001056extern int vmbus_establish_gpadl(struct vmbus_channel *channel,
1057 void *kbuffer,
1058 u32 size,
1059 u32 *gpadl_handle);
1060
1061extern int vmbus_teardown_gpadl(struct vmbus_channel *channel,
1062 u32 gpadl_handle);
1063
1064extern int vmbus_recvpacket(struct vmbus_channel *channel,
1065 void *buffer,
1066 u32 bufferlen,
1067 u32 *buffer_actual_len,
1068 u64 *requestid);
1069
1070extern int vmbus_recvpacket_raw(struct vmbus_channel *channel,
1071 void *buffer,
1072 u32 bufferlen,
1073 u32 *buffer_actual_len,
1074 u64 *requestid);
1075
K. Y. Srinivasanc35470b2011-05-12 19:34:22 -07001076
K. Y. Srinivasanc35470b2011-05-12 19:34:22 -07001077extern void vmbus_ontimer(unsigned long data);
1078
K. Y. Srinivasan35ea09c2011-05-12 19:34:24 -07001079/* Base driver object */
1080struct hv_driver {
1081 const char *name;
1082
Dexuan Cui8981da32016-01-27 22:29:41 -08001083 /*
1084 * A hvsock offer, which has a VMBUS_CHANNEL_TLNPI_PROVIDER_OFFER
1085 * channel flag, actually doesn't mean a synthetic device because the
1086 * offer's if_type/if_instance can change for every new hvsock
1087 * connection.
1088 *
1089 * However, to facilitate the notification of new-offer/rescind-offer
1090 * from vmbus driver to hvsock driver, we can handle hvsock offer as
1091 * a special vmbus device, and hence we need the below flag to
1092 * indicate if the driver is the hvsock driver or not: we need to
1093 * specially treat the hvosck offer & driver in vmbus_match().
1094 */
1095 bool hvsock;
1096
K. Y. Srinivasan35ea09c2011-05-12 19:34:24 -07001097 /* the device type supported by this driver */
K. Y. Srinivasan358d2ee2011-08-25 09:48:28 -07001098 uuid_le dev_type;
K. Y. Srinivasan2e2c1d12011-08-25 09:48:31 -07001099 const struct hv_vmbus_device_id *id_table;
K. Y. Srinivasan35ea09c2011-05-12 19:34:24 -07001100
1101 struct device_driver driver;
1102
Stephen Hemmingerfc769362016-12-03 12:34:39 -08001103 /* dynamic device GUID's */
1104 struct {
1105 spinlock_t lock;
1106 struct list_head list;
1107 } dynids;
1108
K. Y. Srinivasan84946892011-09-13 10:59:38 -07001109 int (*probe)(struct hv_device *, const struct hv_vmbus_device_id *);
K. Y. Srinivasan35ea09c2011-05-12 19:34:24 -07001110 int (*remove)(struct hv_device *);
1111 void (*shutdown)(struct hv_device *);
1112
1113};
1114
1115/* Base device object */
1116struct hv_device {
1117 /* the device type id of this device */
K. Y. Srinivasan358d2ee2011-08-25 09:48:28 -07001118 uuid_le dev_type;
K. Y. Srinivasan35ea09c2011-05-12 19:34:24 -07001119
1120 /* the device instance id of this device */
K. Y. Srinivasan358d2ee2011-08-25 09:48:28 -07001121 uuid_le dev_instance;
K. Y. Srinivasan7047f172015-12-25 20:00:30 -08001122 u16 vendor_id;
1123 u16 device_id;
K. Y. Srinivasan35ea09c2011-05-12 19:34:24 -07001124
1125 struct device device;
1126
1127 struct vmbus_channel *channel;
Stephen Hemmingerc2e5df62017-09-21 20:58:49 -07001128 struct kset *channels_kset;
K. Y. Srinivasan35ea09c2011-05-12 19:34:24 -07001129};
1130
K. Y. Srinivasan27b5b3c2011-05-12 19:34:25 -07001131
1132static inline struct hv_device *device_to_hv_device(struct device *d)
1133{
1134 return container_of(d, struct hv_device, device);
1135}
1136
1137static inline struct hv_driver *drv_to_hv_drv(struct device_driver *d)
1138{
1139 return container_of(d, struct hv_driver, driver);
1140}
1141
K. Y. Srinivasanab101e82011-09-13 10:59:40 -07001142static inline void hv_set_drvdata(struct hv_device *dev, void *data)
1143{
1144 dev_set_drvdata(&dev->device, data);
1145}
1146
1147static inline void *hv_get_drvdata(struct hv_device *dev)
1148{
1149 return dev_get_drvdata(&dev->device);
1150}
K. Y. Srinivasan27b5b3c2011-05-12 19:34:25 -07001151
Stephen Hemminger4827ee12017-03-04 18:27:18 -07001152struct hv_ring_buffer_debug_info {
1153 u32 current_interrupt_mask;
1154 u32 current_read_index;
1155 u32 current_write_index;
1156 u32 bytes_avail_toread;
1157 u32 bytes_avail_towrite;
1158};
1159
1160void hv_ringbuffer_get_debuginfo(const struct hv_ring_buffer_info *ring_info,
1161 struct hv_ring_buffer_debug_info *debug_info);
1162
K. Y. Srinivasan27b5b3c2011-05-12 19:34:25 -07001163/* Vmbus interface */
Greg Kroah-Hartman768fa212011-08-25 15:07:32 -07001164#define vmbus_driver_register(driver) \
1165 __vmbus_driver_register(driver, THIS_MODULE, KBUILD_MODNAME)
1166int __must_check __vmbus_driver_register(struct hv_driver *hv_driver,
1167 struct module *owner,
1168 const char *mod_name);
1169void vmbus_driver_unregister(struct hv_driver *hv_driver);
K. Y. Srinivasan27b5b3c2011-05-12 19:34:25 -07001170
Dexuan Cui85d9aa72016-01-27 22:29:43 -08001171void vmbus_hvsock_device_unregister(struct vmbus_channel *channel);
1172
Jake Oshins35464482015-08-05 00:52:37 -07001173int vmbus_allocate_mmio(struct resource **new, struct hv_device *device_obj,
1174 resource_size_t min, resource_size_t max,
1175 resource_size_t size, resource_size_t align,
1176 bool fb_overlap_ok);
Jake Oshins97fb77dc2016-04-05 10:22:51 -07001177void vmbus_free_mmio(resource_size_t start, resource_size_t size);
Jake Oshins619848b2015-12-14 16:01:39 -08001178
K. Y. Srinivasanb1897022011-05-12 19:34:26 -07001179/*
K. Y. Srinivasan7fb96562013-01-23 17:42:40 -08001180 * GUID definitions of various offer types - services offered to the guest.
1181 */
1182
1183/*
1184 * Network GUID
1185 * {f8615163-df3e-46c5-913f-f2d2f965ed0e}
1186 */
1187#define HV_NIC_GUID \
K. Y. Srinivasanaf3ff642015-12-14 16:01:43 -08001188 .guid = UUID_LE(0xf8615163, 0xdf3e, 0x46c5, 0x91, 0x3f, \
1189 0xf2, 0xd2, 0xf9, 0x65, 0xed, 0x0e)
K. Y. Srinivasan7fb96562013-01-23 17:42:40 -08001190
1191/*
1192 * IDE GUID
1193 * {32412632-86cb-44a2-9b5c-50d1417354f5}
1194 */
1195#define HV_IDE_GUID \
K. Y. Srinivasanaf3ff642015-12-14 16:01:43 -08001196 .guid = UUID_LE(0x32412632, 0x86cb, 0x44a2, 0x9b, 0x5c, \
1197 0x50, 0xd1, 0x41, 0x73, 0x54, 0xf5)
K. Y. Srinivasan7fb96562013-01-23 17:42:40 -08001198
1199/*
1200 * SCSI GUID
1201 * {ba6163d9-04a1-4d29-b605-72e2ffb1dc7f}
1202 */
1203#define HV_SCSI_GUID \
K. Y. Srinivasanaf3ff642015-12-14 16:01:43 -08001204 .guid = UUID_LE(0xba6163d9, 0x04a1, 0x4d29, 0xb6, 0x05, \
1205 0x72, 0xe2, 0xff, 0xb1, 0xdc, 0x7f)
K. Y. Srinivasan7fb96562013-01-23 17:42:40 -08001206
1207/*
1208 * Shutdown GUID
1209 * {0e0b6031-5213-4934-818b-38d90ced39db}
1210 */
1211#define HV_SHUTDOWN_GUID \
K. Y. Srinivasanaf3ff642015-12-14 16:01:43 -08001212 .guid = UUID_LE(0x0e0b6031, 0x5213, 0x4934, 0x81, 0x8b, \
1213 0x38, 0xd9, 0x0c, 0xed, 0x39, 0xdb)
K. Y. Srinivasan7fb96562013-01-23 17:42:40 -08001214
1215/*
1216 * Time Synch GUID
1217 * {9527E630-D0AE-497b-ADCE-E80AB0175CAF}
1218 */
1219#define HV_TS_GUID \
K. Y. Srinivasanaf3ff642015-12-14 16:01:43 -08001220 .guid = UUID_LE(0x9527e630, 0xd0ae, 0x497b, 0xad, 0xce, \
1221 0xe8, 0x0a, 0xb0, 0x17, 0x5c, 0xaf)
K. Y. Srinivasan7fb96562013-01-23 17:42:40 -08001222
1223/*
1224 * Heartbeat GUID
1225 * {57164f39-9115-4e78-ab55-382f3bd5422d}
1226 */
1227#define HV_HEART_BEAT_GUID \
K. Y. Srinivasanaf3ff642015-12-14 16:01:43 -08001228 .guid = UUID_LE(0x57164f39, 0x9115, 0x4e78, 0xab, 0x55, \
1229 0x38, 0x2f, 0x3b, 0xd5, 0x42, 0x2d)
K. Y. Srinivasan7fb96562013-01-23 17:42:40 -08001230
1231/*
1232 * KVP GUID
1233 * {a9a0f4e7-5a45-4d96-b827-8a841e8c03e6}
1234 */
1235#define HV_KVP_GUID \
K. Y. Srinivasanaf3ff642015-12-14 16:01:43 -08001236 .guid = UUID_LE(0xa9a0f4e7, 0x5a45, 0x4d96, 0xb8, 0x27, \
1237 0x8a, 0x84, 0x1e, 0x8c, 0x03, 0xe6)
K. Y. Srinivasan7fb96562013-01-23 17:42:40 -08001238
1239/*
1240 * Dynamic memory GUID
1241 * {525074dc-8985-46e2-8057-a307dc18a502}
1242 */
1243#define HV_DM_GUID \
K. Y. Srinivasanaf3ff642015-12-14 16:01:43 -08001244 .guid = UUID_LE(0x525074dc, 0x8985, 0x46e2, 0x80, 0x57, \
1245 0xa3, 0x07, 0xdc, 0x18, 0xa5, 0x02)
K. Y. Srinivasan7fb96562013-01-23 17:42:40 -08001246
1247/*
1248 * Mouse GUID
1249 * {cfa8b69e-5b4a-4cc0-b98b-8ba1a1f3f95a}
1250 */
1251#define HV_MOUSE_GUID \
K. Y. Srinivasanaf3ff642015-12-14 16:01:43 -08001252 .guid = UUID_LE(0xcfa8b69e, 0x5b4a, 0x4cc0, 0xb9, 0x8b, \
1253 0x8b, 0xa1, 0xa1, 0xf3, 0xf9, 0x5a)
K. Y. Srinivasan7fb96562013-01-23 17:42:40 -08001254
1255/*
Dexuan Cui20481572015-12-21 12:21:22 -08001256 * Keyboard GUID
1257 * {f912ad6d-2b17-48ea-bd65-f927a61c7684}
1258 */
1259#define HV_KBD_GUID \
1260 .guid = UUID_LE(0xf912ad6d, 0x2b17, 0x48ea, 0xbd, 0x65, \
1261 0xf9, 0x27, 0xa6, 0x1c, 0x76, 0x84)
1262
1263/*
K. Y. Srinivasan96dd86f2013-03-15 12:30:06 -07001264 * VSS (Backup/Restore) GUID
1265 */
1266#define HV_VSS_GUID \
K. Y. Srinivasanaf3ff642015-12-14 16:01:43 -08001267 .guid = UUID_LE(0x35fa2e29, 0xea23, 0x4236, 0x96, 0xae, \
1268 0x3a, 0x6e, 0xba, 0xcb, 0xa4, 0x40)
K. Y. Srinivasan96dd86f2013-03-15 12:30:06 -07001269/*
Haiyang Zhang68a2d20b2013-04-29 15:05:42 -07001270 * Synthetic Video GUID
1271 * {DA0A7802-E377-4aac-8E77-0558EB1073F8}
1272 */
1273#define HV_SYNTHVID_GUID \
K. Y. Srinivasanaf3ff642015-12-14 16:01:43 -08001274 .guid = UUID_LE(0xda0a7802, 0xe377, 0x4aac, 0x8e, 0x77, \
1275 0x05, 0x58, 0xeb, 0x10, 0x73, 0xf8)
Haiyang Zhang68a2d20b2013-04-29 15:05:42 -07001276
Haiyang Zhang68a2d20b2013-04-29 15:05:42 -07001277/*
K. Y. Srinivasan98b80d82013-05-23 12:02:33 -07001278 * Synthetic FC GUID
1279 * {2f9bcc4a-0069-4af3-b76b-6fd0be528cda}
1280 */
1281#define HV_SYNTHFC_GUID \
K. Y. Srinivasanaf3ff642015-12-14 16:01:43 -08001282 .guid = UUID_LE(0x2f9bcc4a, 0x0069, 0x4af3, 0xb7, 0x6b, \
1283 0x6f, 0xd0, 0xbe, 0x52, 0x8c, 0xda)
K. Y. Srinivasan98b80d82013-05-23 12:02:33 -07001284
1285/*
K. Y. Srinivasan013254762014-02-16 11:34:30 -08001286 * Guest File Copy Service
1287 * {34D14BE3-DEE4-41c8-9AE7-6B174977C192}
1288 */
1289
1290#define HV_FCOPY_GUID \
K. Y. Srinivasanaf3ff642015-12-14 16:01:43 -08001291 .guid = UUID_LE(0x34d14be3, 0xdee4, 0x41c8, 0x9a, 0xe7, \
1292 0x6b, 0x17, 0x49, 0x77, 0xc1, 0x92)
K. Y. Srinivasan013254762014-02-16 11:34:30 -08001293
1294/*
K. Y. Srinivasan04653a02015-02-27 11:26:05 -08001295 * NetworkDirect. This is the guest RDMA service.
1296 * {8c2eaf3d-32a7-4b09-ab99-bd1f1c86b501}
1297 */
1298#define HV_ND_GUID \
K. Y. Srinivasanaf3ff642015-12-14 16:01:43 -08001299 .guid = UUID_LE(0x8c2eaf3d, 0x32a7, 0x4b09, 0xab, 0x99, \
1300 0xbd, 0x1f, 0x1c, 0x86, 0xb5, 0x01)
K. Y. Srinivasan04653a02015-02-27 11:26:05 -08001301
1302/*
Jake Oshins3053c762015-12-14 16:01:41 -08001303 * PCI Express Pass Through
1304 * {44C4F61D-4444-4400-9D52-802E27EDE19F}
1305 */
1306
1307#define HV_PCIE_GUID \
K. Y. Srinivasanaf3ff642015-12-14 16:01:43 -08001308 .guid = UUID_LE(0x44c4f61d, 0x4444, 0x4400, 0x9d, 0x52, \
1309 0x80, 0x2e, 0x27, 0xed, 0xe1, 0x9f)
Jake Oshins3053c762015-12-14 16:01:41 -08001310
1311/*
Dexuan Cui0f988292016-09-07 05:39:34 -07001312 * Linux doesn't support the 3 devices: the first two are for
1313 * Automatic Virtual Machine Activation, and the third is for
1314 * Remote Desktop Virtualization.
1315 * {f8e65716-3cb3-4a06-9a60-1889c5cccab5}
1316 * {3375baf4-9e15-4b30-b765-67acb10d607b}
1317 * {276aacf4-ac15-426c-98dd-7521ad3f01fe}
1318 */
1319
1320#define HV_AVMA1_GUID \
1321 .guid = UUID_LE(0xf8e65716, 0x3cb3, 0x4a06, 0x9a, 0x60, \
1322 0x18, 0x89, 0xc5, 0xcc, 0xca, 0xb5)
1323
1324#define HV_AVMA2_GUID \
1325 .guid = UUID_LE(0x3375baf4, 0x9e15, 0x4b30, 0xb7, 0x65, \
1326 0x67, 0xac, 0xb1, 0x0d, 0x60, 0x7b)
1327
1328#define HV_RDV_GUID \
1329 .guid = UUID_LE(0x276aacf4, 0xac15, 0x426c, 0x98, 0xdd, \
1330 0x75, 0x21, 0xad, 0x3f, 0x01, 0xfe)
1331
1332/*
K. Y. Srinivasanb1897022011-05-12 19:34:26 -07001333 * Common header for Hyper-V ICs
1334 */
1335
1336#define ICMSGTYPE_NEGOTIATE 0
1337#define ICMSGTYPE_HEARTBEAT 1
1338#define ICMSGTYPE_KVPEXCHANGE 2
1339#define ICMSGTYPE_SHUTDOWN 3
1340#define ICMSGTYPE_TIMESYNC 4
1341#define ICMSGTYPE_VSS 5
1342
1343#define ICMSGHDRFLAG_TRANSACTION 1
1344#define ICMSGHDRFLAG_REQUEST 2
1345#define ICMSGHDRFLAG_RESPONSE 4
1346
K. Y. Srinivasanb1897022011-05-12 19:34:26 -07001347
K. Y. Srinivasana29b6432011-09-18 10:31:33 -07001348/*
1349 * While we want to handle util services as regular devices,
1350 * there is only one instance of each of these services; so
1351 * we statically allocate the service specific state.
1352 */
1353
1354struct hv_util_service {
1355 u8 *recv_buffer;
K. Y. Srinivasanb9830d12016-02-26 15:13:19 -08001356 void *channel;
K. Y. Srinivasana29b6432011-09-18 10:31:33 -07001357 void (*util_cb)(void *);
1358 int (*util_init)(struct hv_util_service *);
1359 void (*util_deinit)(void);
1360};
1361
K. Y. Srinivasanb1897022011-05-12 19:34:26 -07001362struct vmbuspipe_hdr {
1363 u32 flags;
1364 u32 msgsize;
1365} __packed;
1366
1367struct ic_version {
1368 u16 major;
1369 u16 minor;
1370} __packed;
1371
1372struct icmsg_hdr {
1373 struct ic_version icverframe;
1374 u16 icmsgtype;
1375 struct ic_version icvermsg;
1376 u16 icmsgsize;
1377 u32 status;
1378 u8 ictransaction_id;
1379 u8 icflags;
1380 u8 reserved[2];
1381} __packed;
1382
1383struct icmsg_negotiate {
1384 u16 icframe_vercnt;
1385 u16 icmsg_vercnt;
1386 u32 reserved;
1387 struct ic_version icversion_data[1]; /* any size array */
1388} __packed;
1389
1390struct shutdown_msg_data {
1391 u32 reason_code;
1392 u32 timeout_seconds;
1393 u32 flags;
1394 u8 display_message[2048];
1395} __packed;
1396
1397struct heartbeat_msg_data {
1398 u64 seq_num;
1399 u32 reserved[8];
1400} __packed;
1401
1402/* Time Sync IC defs */
1403#define ICTIMESYNCFLAG_PROBE 0
1404#define ICTIMESYNCFLAG_SYNC 1
1405#define ICTIMESYNCFLAG_SAMPLE 2
1406
1407#ifdef __x86_64__
1408#define WLTIMEDELTA 116444736000000000L /* in 100ns unit */
1409#else
1410#define WLTIMEDELTA 116444736000000000LL
1411#endif
1412
1413struct ictimesync_data {
1414 u64 parenttime;
1415 u64 childtime;
1416 u64 roundtriptime;
1417 u8 flags;
1418} __packed;
1419
Alex Ng8e1d2602016-09-08 05:24:14 -07001420struct ictimesync_ref_data {
1421 u64 parenttime;
1422 u64 vmreferencetime;
1423 u8 flags;
1424 char leapflags;
1425 char stratum;
1426 u8 reserved[3];
1427} __packed;
1428
K. Y. Srinivasanb1897022011-05-12 19:34:26 -07001429struct hyperv_service_callback {
1430 u8 msg_type;
1431 char *log_msg;
K. Y. Srinivasan358d2ee2011-08-25 09:48:28 -07001432 uuid_le data;
K. Y. Srinivasanb1897022011-05-12 19:34:26 -07001433 struct vmbus_channel *channel;
Stephen Hemminger2a9d7de2017-03-04 18:27:17 -07001434 void (*callback)(void *context);
K. Y. Srinivasanb1897022011-05-12 19:34:26 -07001435};
1436
K. Y. Srinivasanc836d0a2012-05-12 13:44:58 -07001437#define MAX_SRV_VER 0x7ffffff
Alex Nga1656452017-01-28 12:37:17 -07001438extern bool vmbus_prep_negotiate_resp(struct icmsg_hdr *icmsghdrp, u8 *buf,
1439 const int *fw_version, int fw_vercnt,
1440 const int *srv_version, int srv_vercnt,
1441 int *nego_fw_version, int *nego_srv_version);
K. Y. Srinivasanb1897022011-05-12 19:34:26 -07001442
K. Y. Srinivasan192b2d72017-09-29 21:09:36 -07001443void hv_process_channel_removal(u32 relid);
K. Y. Srinivasan96dd86f2013-03-15 12:30:06 -07001444
K. Y. Srinivasan1f6ee4e2016-11-06 13:14:17 -08001445void vmbus_setevent(struct vmbus_channel *channel);
K. Y. Srinivasan37f72782012-12-01 06:46:41 -08001446/*
1447 * Negotiated version with the Host.
1448 */
1449
1450extern __u32 vmbus_proto_version;
1451
Dexuan Cui5c23a1a2016-01-27 22:29:40 -08001452int vmbus_send_tl_connect_request(const uuid_le *shv_guest_servie_id,
1453 const uuid_le *shv_host_servie_id);
K. Y. Srinivasan5cc47242016-04-02 17:59:49 -07001454void vmbus_set_event(struct vmbus_channel *channel);
K. Y. Srinivasan687f32e2016-04-02 17:59:50 -07001455
1456/* Get the start of the ring buffer. */
1457static inline void *
Stephen Hemmingere4165a02017-02-11 23:02:24 -07001458hv_get_ring_buffer(const struct hv_ring_buffer_info *ring_info)
K. Y. Srinivasan687f32e2016-04-02 17:59:50 -07001459{
Stephen Hemmingere4165a02017-02-11 23:02:24 -07001460 return ring_info->ring_buffer->buffer;
K. Y. Srinivasan687f32e2016-04-02 17:59:50 -07001461}
1462
1463/*
Stephen Hemminger6e47dd32017-02-11 23:02:23 -07001464 * Mask off host interrupt callback notifications
1465 */
1466static inline void hv_begin_read(struct hv_ring_buffer_info *rbi)
1467{
1468 rbi->ring_buffer->interrupt_mask = 1;
1469
1470 /* make sure mask update is not reordered */
1471 virt_mb();
1472}
1473
1474/*
1475 * Re-enable host callback and return number of outstanding bytes
1476 */
1477static inline u32 hv_end_read(struct hv_ring_buffer_info *rbi)
1478{
1479
1480 rbi->ring_buffer->interrupt_mask = 0;
1481
1482 /* make sure mask update is not reordered */
1483 virt_mb();
1484
1485 /*
1486 * Now check to see if the ring buffer is still empty.
1487 * If it is not, we raced and we need to process new
1488 * incoming messages.
1489 */
1490 return hv_get_bytes_to_read(rbi);
1491}
1492
1493/*
K. Y. Srinivasanab028db2016-04-02 17:59:51 -07001494 * An API to support in-place processing of incoming VMBUS packets.
1495 */
K. Y. Srinivasanab028db2016-04-02 17:59:51 -07001496
stephen hemmingerf3dd3f42017-02-27 10:26:48 -08001497/* Get data payload associated with descriptor */
1498static inline void *hv_pkt_data(const struct vmpacket_descriptor *desc)
1499{
1500 return (void *)((unsigned long)desc + (desc->offset8 << 3));
1501}
1502
1503/* Get data size associated with descriptor */
1504static inline u32 hv_pkt_datalen(const struct vmpacket_descriptor *desc)
1505{
1506 return (desc->len8 << 3) - (desc->offset8 << 3);
1507}
1508
1509
1510struct vmpacket_descriptor *
1511hv_pkt_iter_first(struct vmbus_channel *channel);
1512
1513struct vmpacket_descriptor *
1514__hv_pkt_iter_next(struct vmbus_channel *channel,
1515 const struct vmpacket_descriptor *pkt);
1516
1517void hv_pkt_iter_close(struct vmbus_channel *channel);
1518
1519/*
1520 * Get next packet descriptor from iterator
1521 * If at end of list, return NULL and update host.
1522 */
K. Y. Srinivasanab028db2016-04-02 17:59:51 -07001523static inline struct vmpacket_descriptor *
stephen hemmingerf3dd3f42017-02-27 10:26:48 -08001524hv_pkt_iter_next(struct vmbus_channel *channel,
1525 const struct vmpacket_descriptor *pkt)
K. Y. Srinivasanab028db2016-04-02 17:59:51 -07001526{
stephen hemmingerf3dd3f42017-02-27 10:26:48 -08001527 struct vmpacket_descriptor *nxt;
K. Y. Srinivasanab028db2016-04-02 17:59:51 -07001528
stephen hemmingerf3dd3f42017-02-27 10:26:48 -08001529 nxt = __hv_pkt_iter_next(channel, pkt);
1530 if (!nxt)
1531 hv_pkt_iter_close(channel);
K. Y. Srinivasanab028db2016-04-02 17:59:51 -07001532
stephen hemmingerf3dd3f42017-02-27 10:26:48 -08001533 return nxt;
K. Y. Srinivasanab028db2016-04-02 17:59:51 -07001534}
1535
stephen hemmingerf3dd3f42017-02-27 10:26:48 -08001536#define foreach_vmbus_pkt(pkt, channel) \
1537 for (pkt = hv_pkt_iter_first(channel); pkt; \
1538 pkt = hv_pkt_iter_next(channel, pkt))
K. Y. Srinivasanab028db2016-04-02 17:59:51 -07001539
K. Y. Srinivasan3f335ea2011-05-12 19:34:15 -07001540#endif /* _HYPERV_H */