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[mirror_ubuntu-artful-kernel.git] / drivers / hv / ring_buffer.c
CommitLineData
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1/*
2 *
3 * Copyright (c) 2009, 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>
b2a5a585 21 * K. Y. Srinivasan <kys@microsoft.com>
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22 *
23 */
0a46618d 24#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
3e7ee490 25
a0086dc5
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26#include <linux/kernel.h>
27#include <linux/mm.h>
46a97191 28#include <linux/hyperv.h>
011a7c3c 29#include <linux/uio.h>
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30#include <linux/vmalloc.h>
31#include <linux/slab.h>
3f335ea2 32
0f2a6619 33#include "hyperv_vmbus.h"
3e7ee490 34
f3dd3f47 35#define VMBUS_PKT_TRAILER 8
36
98fa8cf4
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37/*
38 * When we write to the ring buffer, check if the host needs to
39 * be signaled. Here is the details of this protocol:
40 *
41 * 1. The host guarantees that while it is draining the
42 * ring buffer, it will set the interrupt_mask to
43 * indicate it does not need to be interrupted when
44 * new data is placed.
45 *
46 * 2. The host guarantees that it will completely drain
47 * the ring buffer before exiting the read loop. Further,
48 * once the ring buffer is empty, it will clear the
49 * interrupt_mask and re-check to see if new data has
50 * arrived.
1f6ee4e7
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51 *
52 * KYS: Oct. 30, 2016:
53 * It looks like Windows hosts have logic to deal with DOS attacks that
54 * can be triggered if it receives interrupts when it is not expecting
55 * the interrupt. The host expects interrupts only when the ring
56 * transitions from empty to non-empty (or full to non full on the guest
57 * to host ring).
58 * So, base the signaling decision solely on the ring state until the
59 * host logic is fixed.
98fa8cf4
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60 */
61
b103a56f 62static void hv_signal_on_write(u32 old_write, struct vmbus_channel *channel)
98fa8cf4 63{
1f6ee4e7
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64 struct hv_ring_buffer_info *rbi = &channel->outbound;
65
dcd0eeca 66 virt_mb();
d45faaee 67 if (READ_ONCE(rbi->ring_buffer->interrupt_mask))
1f6ee4e7 68 return;
98fa8cf4 69
e91e84fa 70 /* check interrupt_mask before read_index */
dcd0eeca 71 virt_rmb();
98fa8cf4
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72 /*
73 * This is the only case we need to signal when the
74 * ring transitions from being empty to non-empty.
75 */
d45faaee 76 if (old_write == READ_ONCE(rbi->ring_buffer->read_index))
1f6ee4e7 77 vmbus_setevent(channel);
98fa8cf4
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78}
79
822f18d4 80/* Get the next write location for the specified ring buffer. */
4d643114 81static inline u32
2b8a912e 82hv_get_next_write_location(struct hv_ring_buffer_info *ring_info)
3e7ee490 83{
fc8c72eb 84 u32 next = ring_info->ring_buffer->write_index;
3e7ee490 85
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86 return next;
87}
88
822f18d4 89/* Set the next write location for the specified ring buffer. */
3e7ee490 90static inline void
2b8a912e 91hv_set_next_write_location(struct hv_ring_buffer_info *ring_info,
fc8c72eb 92 u32 next_write_location)
3e7ee490 93{
fc8c72eb 94 ring_info->ring_buffer->write_index = next_write_location;
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95}
96
822f18d4 97/* Get the next read location for the specified ring buffer. */
4d643114 98static inline u32
e4165a0f 99hv_get_next_read_location(const struct hv_ring_buffer_info *ring_info)
3e7ee490 100{
e4165a0f 101 return ring_info->ring_buffer->read_index;
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102}
103
b2a5a585 104/*
b2a5a585 105 * Get the next read location + offset for the specified ring buffer.
822f18d4 106 * This allows the caller to skip.
b2a5a585 107 */
4d643114 108static inline u32
e4165a0f
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109hv_get_next_readlocation_withoffset(const struct hv_ring_buffer_info *ring_info,
110 u32 offset)
3e7ee490 111{
fc8c72eb 112 u32 next = ring_info->ring_buffer->read_index;
3e7ee490 113
fc8c72eb 114 next += offset;
8d12f882
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115 if (next >= ring_info->ring_datasize)
116 next -= ring_info->ring_datasize;
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117
118 return next;
119}
120
822f18d4 121/* Set the next read location for the specified ring buffer. */
3e7ee490 122static inline void
2b8a912e 123hv_set_next_read_location(struct hv_ring_buffer_info *ring_info,
fc8c72eb 124 u32 next_read_location)
3e7ee490 125{
fc8c72eb 126 ring_info->ring_buffer->read_index = next_read_location;
ab028db4 127 ring_info->priv_read_index = next_read_location;
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128}
129
822f18d4 130/* Get the size of the ring buffer. */
4d643114 131static inline u32
e4165a0f 132hv_get_ring_buffersize(const struct hv_ring_buffer_info *ring_info)
3e7ee490 133{
fc8c72eb 134 return ring_info->ring_datasize;
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135}
136
822f18d4 137/* Get the read and write indices as u64 of the specified ring buffer. */
59471438 138static inline u64
2b8a912e 139hv_get_ring_bufferindices(struct hv_ring_buffer_info *ring_info)
3e7ee490 140{
fc8c72eb 141 return (u64)ring_info->ring_buffer->write_index << 32;
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142}
143
8f1136ae 144/*
8f1136ae
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145 * Helper routine to copy to source from ring buffer.
146 * Assume there is enough room. Handles wrap-around in src case only!!
8f1136ae
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147 */
148static u32 hv_copyfrom_ringbuffer(
e4165a0f 149 const struct hv_ring_buffer_info *ring_info,
8f1136ae
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150 void *dest,
151 u32 destlen,
152 u32 start_read_offset)
153{
154 void *ring_buffer = hv_get_ring_buffer(ring_info);
155 u32 ring_buffer_size = hv_get_ring_buffersize(ring_info);
156
f24f0b49 157 memcpy(dest, ring_buffer + start_read_offset, destlen);
8f1136ae
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158
159 start_read_offset += destlen;
8d12f882
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160 if (start_read_offset >= ring_buffer_size)
161 start_read_offset -= ring_buffer_size;
8f1136ae
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162
163 return start_read_offset;
164}
165
166
7581578d 167/*
7581578d
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168 * Helper routine to copy from source to ring buffer.
169 * Assume there is enough room. Handles wrap-around in dest case only!!
7581578d
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170 */
171static u32 hv_copyto_ringbuffer(
fc8c72eb
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172 struct hv_ring_buffer_info *ring_info,
173 u32 start_write_offset,
e4165a0f 174 const void *src,
7581578d
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175 u32 srclen)
176{
177 void *ring_buffer = hv_get_ring_buffer(ring_info);
178 u32 ring_buffer_size = hv_get_ring_buffersize(ring_info);
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179
180 memcpy(ring_buffer + start_write_offset, src, srclen);
3e7ee490 181
7581578d 182 start_write_offset += srclen;
8d12f882
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183 if (start_write_offset >= ring_buffer_size)
184 start_write_offset -= ring_buffer_size;
7581578d
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185
186 return start_write_offset;
187}
3e7ee490 188
822f18d4 189/* Get various debug metrics for the specified ring buffer. */
e4165a0f
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190void hv_ringbuffer_get_debuginfo(const struct hv_ring_buffer_info *ring_info,
191 struct hv_ring_buffer_debug_info *debug_info)
3e7ee490 192{
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193 u32 bytes_avail_towrite;
194 u32 bytes_avail_toread;
3e7ee490 195
fc8c72eb 196 if (ring_info->ring_buffer) {
2b8a912e 197 hv_get_ringbuffer_availbytes(ring_info,
fc8c72eb
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198 &bytes_avail_toread,
199 &bytes_avail_towrite);
3e7ee490 200
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201 debug_info->bytes_avail_toread = bytes_avail_toread;
202 debug_info->bytes_avail_towrite = bytes_avail_towrite;
82f8bd40 203 debug_info->current_read_index =
fc8c72eb 204 ring_info->ring_buffer->read_index;
82f8bd40 205 debug_info->current_write_index =
fc8c72eb 206 ring_info->ring_buffer->write_index;
82f8bd40 207 debug_info->current_interrupt_mask =
fc8c72eb 208 ring_info->ring_buffer->interrupt_mask;
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209 }
210}
4827ee1d 211EXPORT_SYMBOL_GPL(hv_ringbuffer_get_debuginfo);
3e7ee490 212
822f18d4 213/* Initialize the ring buffer. */
72a95cbc 214int hv_ringbuffer_init(struct hv_ring_buffer_info *ring_info,
9988ce68 215 struct page *pages, u32 page_cnt)
3e7ee490 216{
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217 int i;
218 struct page **pages_wraparound;
219
220 BUILD_BUG_ON((sizeof(struct hv_ring_buffer) != PAGE_SIZE));
3e7ee490 221
fc8c72eb 222 memset(ring_info, 0, sizeof(struct hv_ring_buffer_info));
3e7ee490 223
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224 /*
225 * First page holds struct hv_ring_buffer, do wraparound mapping for
226 * the rest.
227 */
228 pages_wraparound = kzalloc(sizeof(struct page *) * (page_cnt * 2 - 1),
229 GFP_KERNEL);
230 if (!pages_wraparound)
231 return -ENOMEM;
232
233 pages_wraparound[0] = pages;
234 for (i = 0; i < 2 * (page_cnt - 1); i++)
235 pages_wraparound[i + 1] = &pages[i % (page_cnt - 1) + 1];
236
237 ring_info->ring_buffer = (struct hv_ring_buffer *)
238 vmap(pages_wraparound, page_cnt * 2 - 1, VM_MAP, PAGE_KERNEL);
239
240 kfree(pages_wraparound);
241
242
243 if (!ring_info->ring_buffer)
244 return -ENOMEM;
245
fc8c72eb
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246 ring_info->ring_buffer->read_index =
247 ring_info->ring_buffer->write_index = 0;
3e7ee490 248
822f18d4 249 /* Set the feature bit for enabling flow control. */
046c7911
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250 ring_info->ring_buffer->feature_bits.value = 1;
251
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252 ring_info->ring_size = page_cnt << PAGE_SHIFT;
253 ring_info->ring_datasize = ring_info->ring_size -
254 sizeof(struct hv_ring_buffer);
3e7ee490 255
fc8c72eb 256 spin_lock_init(&ring_info->ring_lock);
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257
258 return 0;
259}
260
822f18d4 261/* Cleanup the ring buffer. */
2dba688b 262void hv_ringbuffer_cleanup(struct hv_ring_buffer_info *ring_info)
3e7ee490 263{
9988ce68 264 vunmap(ring_info->ring_buffer);
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265}
266
822f18d4 267/* Write to the ring buffer. */
1f6ee4e7 268int hv_ringbuffer_write(struct vmbus_channel *channel,
e4165a0f 269 const struct kvec *kv_list, u32 kv_count)
3e7ee490 270{
2c616a8b 271 int i;
fc8c72eb 272 u32 bytes_avail_towrite;
2c616a8b 273 u32 totalbytes_towrite = sizeof(u64);
66a60543 274 u32 next_write_location;
98fa8cf4 275 u32 old_write;
2c616a8b
SH
276 u64 prev_indices;
277 unsigned long flags;
1f6ee4e7 278 struct hv_ring_buffer_info *outring_info = &channel->outbound;
3e7ee490 279
e7e97dd8
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280 if (channel->rescind)
281 return -ENODEV;
282
011a7c3c
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283 for (i = 0; i < kv_count; i++)
284 totalbytes_towrite += kv_list[i].iov_len;
3e7ee490 285
5529eaf6 286 spin_lock_irqsave(&outring_info->ring_lock, flags);
3e7ee490 287
a6341f00 288 bytes_avail_towrite = hv_get_bytes_to_write(outring_info);
3e7ee490 289
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290 /*
291 * If there is only room for the packet, assume it is full.
292 * Otherwise, the next time around, we think the ring buffer
293 * is empty since the read index == write index.
294 */
fc8c72eb 295 if (bytes_avail_towrite <= totalbytes_towrite) {
5529eaf6 296 spin_unlock_irqrestore(&outring_info->ring_lock, flags);
d2598f01 297 return -EAGAIN;
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298 }
299
454f18a9 300 /* Write to the ring buffer */
2b8a912e 301 next_write_location = hv_get_next_write_location(outring_info);
3e7ee490 302
98fa8cf4
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303 old_write = next_write_location;
304
011a7c3c 305 for (i = 0; i < kv_count; i++) {
2b8a912e 306 next_write_location = hv_copyto_ringbuffer(outring_info,
fc8c72eb 307 next_write_location,
011a7c3c
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308 kv_list[i].iov_base,
309 kv_list[i].iov_len);
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310 }
311
454f18a9 312 /* Set previous packet start */
2b8a912e 313 prev_indices = hv_get_ring_bufferindices(outring_info);
3e7ee490 314
2b8a912e 315 next_write_location = hv_copyto_ringbuffer(outring_info,
fc8c72eb
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316 next_write_location,
317 &prev_indices,
b219b3f7 318 sizeof(u64));
3e7ee490 319
98fa8cf4 320 /* Issue a full memory barrier before updating the write index */
dcd0eeca 321 virt_mb();
3e7ee490 322
454f18a9 323 /* Now, update the write location */
2b8a912e 324 hv_set_next_write_location(outring_info, next_write_location);
3e7ee490 325
3e7ee490 326
5529eaf6 327 spin_unlock_irqrestore(&outring_info->ring_lock, flags);
98fa8cf4 328
b103a56f 329 hv_signal_on_write(old_write, channel);
e7e97dd8
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330
331 if (channel->rescind)
332 return -ENODEV;
333
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334 return 0;
335}
336
f3dd3f47 337static inline void
338init_cached_read_index(struct hv_ring_buffer_info *rbi)
339{
340 rbi->cached_read_index = rbi->ring_buffer->read_index;
341}
342
3372592a 343int hv_ringbuffer_read(struct vmbus_channel *channel,
940b68e2 344 void *buffer, u32 buflen, u32 *buffer_actual_len,
3372592a 345 u64 *requestid, bool raw)
3e7ee490 346{
fc8c72eb 347 u32 bytes_avail_toread;
2c616a8b 348 u32 next_read_location;
fc8c72eb 349 u64 prev_indices = 0;
940b68e2
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350 struct vmpacket_descriptor desc;
351 u32 offset;
352 u32 packetlen;
3372592a 353 struct hv_ring_buffer_info *inring_info = &channel->inbound;
3e7ee490 354
fc8c72eb 355 if (buflen <= 0)
a16e1485 356 return -EINVAL;
3e7ee490 357
940b68e2
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358 *buffer_actual_len = 0;
359 *requestid = 0;
360
a6341f00 361 bytes_avail_toread = hv_get_bytes_to_read(inring_info);
454f18a9 362 /* Make sure there is something to read */
940b68e2
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363 if (bytes_avail_toread < sizeof(desc)) {
364 /*
365 * No error is set when there is even no header, drivers are
366 * supposed to analyze buffer_actual_len.
367 */
42dd2715 368 return 0;
940b68e2 369 }
3e7ee490 370
f3dd3f47 371 init_cached_read_index(inring_info);
372
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373 next_read_location = hv_get_next_read_location(inring_info);
374 next_read_location = hv_copyfrom_ringbuffer(inring_info, &desc,
375 sizeof(desc),
376 next_read_location);
377
378 offset = raw ? 0 : (desc.offset8 << 3);
379 packetlen = (desc.len8 << 3) - offset;
380 *buffer_actual_len = packetlen;
381 *requestid = desc.trans_id;
382
3eba9a77
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383 if (bytes_avail_toread < packetlen + offset)
384 return -EAGAIN;
940b68e2 385
3eba9a77
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386 if (packetlen > buflen)
387 return -ENOBUFS;
3e7ee490 388
1ac58644 389 next_read_location =
2b8a912e 390 hv_get_next_readlocation_withoffset(inring_info, offset);
3e7ee490 391
2b8a912e 392 next_read_location = hv_copyfrom_ringbuffer(inring_info,
fc8c72eb 393 buffer,
940b68e2 394 packetlen,
fc8c72eb 395 next_read_location);
3e7ee490 396
2b8a912e 397 next_read_location = hv_copyfrom_ringbuffer(inring_info,
fc8c72eb 398 &prev_indices,
4408f531 399 sizeof(u64),
fc8c72eb 400 next_read_location);
3e7ee490 401
822f18d4
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402 /*
403 * Make sure all reads are done before we update the read index since
404 * the writer may start writing to the read area once the read index
405 * is updated.
406 */
dcd0eeca 407 virt_mb();
3e7ee490 408
454f18a9 409 /* Update the read index */
2b8a912e 410 hv_set_next_read_location(inring_info, next_read_location);
3e7ee490 411
3372592a 412 hv_signal_on_read(channel);
c2b8e520 413
42dd2715 414 return 0;
b5f53dde 415}
f3dd3f47 416
417/*
418 * Determine number of bytes available in ring buffer after
419 * the current iterator (priv_read_index) location.
420 *
421 * This is similar to hv_get_bytes_to_read but with private
422 * read index instead.
423 */
424static u32 hv_pkt_iter_avail(const struct hv_ring_buffer_info *rbi)
425{
426 u32 priv_read_loc = rbi->priv_read_index;
427 u32 write_loc = READ_ONCE(rbi->ring_buffer->write_index);
428
429 if (write_loc >= priv_read_loc)
430 return write_loc - priv_read_loc;
431 else
432 return (rbi->ring_datasize - priv_read_loc) + write_loc;
433}
434
435/*
436 * Get first vmbus packet from ring buffer after read_index
437 *
438 * If ring buffer is empty, returns NULL and no other action needed.
439 */
440struct vmpacket_descriptor *hv_pkt_iter_first(struct vmbus_channel *channel)
441{
442 struct hv_ring_buffer_info *rbi = &channel->inbound;
443
444 /* set state for later hv_signal_on_read() */
445 init_cached_read_index(rbi);
446
447 if (hv_pkt_iter_avail(rbi) < sizeof(struct vmpacket_descriptor))
448 return NULL;
449
450 return hv_get_ring_buffer(rbi) + rbi->priv_read_index;
451}
452EXPORT_SYMBOL_GPL(hv_pkt_iter_first);
453
454/*
455 * Get next vmbus packet from ring buffer.
456 *
457 * Advances the current location (priv_read_index) and checks for more
458 * data. If the end of the ring buffer is reached, then return NULL.
459 */
460struct vmpacket_descriptor *
461__hv_pkt_iter_next(struct vmbus_channel *channel,
462 const struct vmpacket_descriptor *desc)
463{
464 struct hv_ring_buffer_info *rbi = &channel->inbound;
465 u32 packetlen = desc->len8 << 3;
466 u32 dsize = rbi->ring_datasize;
467
468 /* bump offset to next potential packet */
469 rbi->priv_read_index += packetlen + VMBUS_PKT_TRAILER;
470 if (rbi->priv_read_index >= dsize)
471 rbi->priv_read_index -= dsize;
472
473 /* more data? */
474 if (hv_pkt_iter_avail(rbi) < sizeof(struct vmpacket_descriptor))
475 return NULL;
476 else
477 return hv_get_ring_buffer(rbi) + rbi->priv_read_index;
478}
479EXPORT_SYMBOL_GPL(__hv_pkt_iter_next);
480
481/*
482 * Update host ring buffer after iterating over packets.
483 */
484void hv_pkt_iter_close(struct vmbus_channel *channel)
485{
486 struct hv_ring_buffer_info *rbi = &channel->inbound;
487
488 /*
489 * Make sure all reads are done before we update the read index since
490 * the writer may start writing to the read area once the read index
491 * is updated.
492 */
493 virt_rmb();
494 rbi->ring_buffer->read_index = rbi->priv_read_index;
495
496 hv_signal_on_read(channel);
497}
498EXPORT_SYMBOL_GPL(hv_pkt_iter_close);