3 * Copyright (c) 2009, Microsoft Corporation.
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.
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
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.
19 * Haiyang Zhang <haiyangz@microsoft.com>
20 * Hank Janssen <hjanssen@microsoft.com>
21 * K. Y. Srinivasan <kys@microsoft.com>
24 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
26 #include <linux/kernel.h>
28 #include <linux/hyperv.h>
30 #include "hyperv_vmbus.h"
34 * hv_get_next_write_location()
36 * Get the next write location for the specified ring buffer
40 hv_get_next_write_location(struct hv_ring_buffer_info
*ring_info
)
42 u32 next
= ring_info
->ring_buffer
->write_index
;
48 * hv_set_next_write_location()
50 * Set the next write location for the specified ring buffer
54 hv_set_next_write_location(struct hv_ring_buffer_info
*ring_info
,
55 u32 next_write_location
)
57 ring_info
->ring_buffer
->write_index
= next_write_location
;
61 * hv_get_next_read_location()
63 * Get the next read location for the specified ring buffer
66 hv_get_next_read_location(struct hv_ring_buffer_info
*ring_info
)
68 u32 next
= ring_info
->ring_buffer
->read_index
;
74 * hv_get_next_readlocation_withoffset()
76 * Get the next read location + offset for the specified ring buffer.
77 * This allows the caller to skip
80 hv_get_next_readlocation_withoffset(struct hv_ring_buffer_info
*ring_info
,
83 u32 next
= ring_info
->ring_buffer
->read_index
;
86 next
%= ring_info
->ring_datasize
;
93 * hv_set_next_read_location()
95 * Set the next read location for the specified ring buffer
99 hv_set_next_read_location(struct hv_ring_buffer_info
*ring_info
,
100 u32 next_read_location
)
102 ring_info
->ring_buffer
->read_index
= next_read_location
;
108 * hv_get_ring_buffer()
110 * Get the start of the ring buffer
113 hv_get_ring_buffer(struct hv_ring_buffer_info
*ring_info
)
115 return (void *)ring_info
->ring_buffer
->buffer
;
121 * hv_get_ring_buffersize()
123 * Get the size of the ring buffer
126 hv_get_ring_buffersize(struct hv_ring_buffer_info
*ring_info
)
128 return ring_info
->ring_datasize
;
133 * hv_get_ring_bufferindices()
135 * Get the read and write indices as u64 of the specified ring buffer
139 hv_get_ring_bufferindices(struct hv_ring_buffer_info
*ring_info
)
141 return (u64
)ring_info
->ring_buffer
->write_index
<< 32;
146 * hv_copyfrom_ringbuffer()
148 * Helper routine to copy to source from ring buffer.
149 * Assume there is enough room. Handles wrap-around in src case only!!
152 static u32
hv_copyfrom_ringbuffer(
153 struct hv_ring_buffer_info
*ring_info
,
156 u32 start_read_offset
)
158 void *ring_buffer
= hv_get_ring_buffer(ring_info
);
159 u32 ring_buffer_size
= hv_get_ring_buffersize(ring_info
);
163 /* wrap-around detected at the src */
164 if (destlen
> ring_buffer_size
- start_read_offset
) {
165 frag_len
= ring_buffer_size
- start_read_offset
;
167 memcpy(dest
, ring_buffer
+ start_read_offset
, frag_len
);
168 memcpy(dest
+ frag_len
, ring_buffer
, destlen
- frag_len
);
171 memcpy(dest
, ring_buffer
+ start_read_offset
, destlen
);
174 start_read_offset
+= destlen
;
175 start_read_offset
%= ring_buffer_size
;
177 return start_read_offset
;
183 * hv_copyto_ringbuffer()
185 * Helper routine to copy from source to ring buffer.
186 * Assume there is enough room. Handles wrap-around in dest case only!!
189 static u32
hv_copyto_ringbuffer(
190 struct hv_ring_buffer_info
*ring_info
,
191 u32 start_write_offset
,
195 void *ring_buffer
= hv_get_ring_buffer(ring_info
);
196 u32 ring_buffer_size
= hv_get_ring_buffersize(ring_info
);
199 /* wrap-around detected! */
200 if (srclen
> ring_buffer_size
- start_write_offset
) {
201 frag_len
= ring_buffer_size
- start_write_offset
;
202 memcpy(ring_buffer
+ start_write_offset
, src
, frag_len
);
203 memcpy(ring_buffer
, src
+ frag_len
, srclen
- frag_len
);
205 memcpy(ring_buffer
+ start_write_offset
, src
, srclen
);
207 start_write_offset
+= srclen
;
208 start_write_offset
%= ring_buffer_size
;
210 return start_write_offset
;
215 * hv_ringbuffer_get_debuginfo()
217 * Get various debug metrics for the specified ring buffer
220 void hv_ringbuffer_get_debuginfo(struct hv_ring_buffer_info
*ring_info
,
221 struct hv_ring_buffer_debug_info
*debug_info
)
223 u32 bytes_avail_towrite
;
224 u32 bytes_avail_toread
;
226 if (ring_info
->ring_buffer
) {
227 hv_get_ringbuffer_availbytes(ring_info
,
229 &bytes_avail_towrite
);
231 debug_info
->bytes_avail_toread
= bytes_avail_toread
;
232 debug_info
->bytes_avail_towrite
= bytes_avail_towrite
;
233 debug_info
->current_read_index
=
234 ring_info
->ring_buffer
->read_index
;
235 debug_info
->current_write_index
=
236 ring_info
->ring_buffer
->write_index
;
237 debug_info
->current_interrupt_mask
=
238 ring_info
->ring_buffer
->interrupt_mask
;
245 * hv_get_ringbuffer_interrupt_mask()
247 * Get the interrupt mask for the specified ring buffer
250 u32
hv_get_ringbuffer_interrupt_mask(struct hv_ring_buffer_info
*rbi
)
252 return rbi
->ring_buffer
->interrupt_mask
;
257 * hv_ringbuffer_init()
259 *Initialize the ring buffer
262 int hv_ringbuffer_init(struct hv_ring_buffer_info
*ring_info
,
263 void *buffer
, u32 buflen
)
265 if (sizeof(struct hv_ring_buffer
) != PAGE_SIZE
)
268 memset(ring_info
, 0, sizeof(struct hv_ring_buffer_info
));
270 ring_info
->ring_buffer
= (struct hv_ring_buffer
*)buffer
;
271 ring_info
->ring_buffer
->read_index
=
272 ring_info
->ring_buffer
->write_index
= 0;
274 ring_info
->ring_size
= buflen
;
275 ring_info
->ring_datasize
= buflen
- sizeof(struct hv_ring_buffer
);
277 spin_lock_init(&ring_info
->ring_lock
);
284 * hv_ringbuffer_cleanup()
286 * Cleanup the ring buffer
289 void hv_ringbuffer_cleanup(struct hv_ring_buffer_info
*ring_info
)
295 * hv_ringbuffer_write()
297 * Write to the ring buffer
300 int hv_ringbuffer_write(struct hv_ring_buffer_info
*outring_info
,
301 struct scatterlist
*sglist
, u32 sgcount
)
304 u32 bytes_avail_towrite
;
305 u32 bytes_avail_toread
;
306 u32 totalbytes_towrite
= 0;
308 struct scatterlist
*sg
;
309 u32 next_write_location
;
310 u64 prev_indices
= 0;
313 for_each_sg(sglist
, sg
, sgcount
, i
)
315 totalbytes_towrite
+= sg
->length
;
318 totalbytes_towrite
+= sizeof(u64
);
320 spin_lock_irqsave(&outring_info
->ring_lock
, flags
);
322 hv_get_ringbuffer_availbytes(outring_info
,
324 &bytes_avail_towrite
);
327 /* If there is only room for the packet, assume it is full. */
328 /* Otherwise, the next time around, we think the ring buffer */
329 /* is empty since the read index == write index */
330 if (bytes_avail_towrite
<= totalbytes_towrite
) {
331 spin_unlock_irqrestore(&outring_info
->ring_lock
, flags
);
335 /* Write to the ring buffer */
336 next_write_location
= hv_get_next_write_location(outring_info
);
338 for_each_sg(sglist
, sg
, sgcount
, i
)
340 next_write_location
= hv_copyto_ringbuffer(outring_info
,
346 /* Set previous packet start */
347 prev_indices
= hv_get_ring_bufferindices(outring_info
);
349 next_write_location
= hv_copyto_ringbuffer(outring_info
,
354 /* Make sure we flush all writes before updating the writeIndex */
357 /* Now, update the write location */
358 hv_set_next_write_location(outring_info
, next_write_location
);
361 spin_unlock_irqrestore(&outring_info
->ring_lock
, flags
);
368 * hv_ringbuffer_peek()
370 * Read without advancing the read index
373 int hv_ringbuffer_peek(struct hv_ring_buffer_info
*Inring_info
,
374 void *Buffer
, u32 buflen
)
376 u32 bytes_avail_towrite
;
377 u32 bytes_avail_toread
;
378 u32 next_read_location
= 0;
381 spin_lock_irqsave(&Inring_info
->ring_lock
, flags
);
383 hv_get_ringbuffer_availbytes(Inring_info
,
385 &bytes_avail_towrite
);
387 /* Make sure there is something to read */
388 if (bytes_avail_toread
< buflen
) {
390 spin_unlock_irqrestore(&Inring_info
->ring_lock
, flags
);
395 /* Convert to byte offset */
396 next_read_location
= hv_get_next_read_location(Inring_info
);
398 next_read_location
= hv_copyfrom_ringbuffer(Inring_info
,
403 spin_unlock_irqrestore(&Inring_info
->ring_lock
, flags
);
411 * hv_ringbuffer_read()
413 * Read and advance the read index
416 int hv_ringbuffer_read(struct hv_ring_buffer_info
*inring_info
, void *buffer
,
417 u32 buflen
, u32 offset
)
419 u32 bytes_avail_towrite
;
420 u32 bytes_avail_toread
;
421 u32 next_read_location
= 0;
422 u64 prev_indices
= 0;
428 spin_lock_irqsave(&inring_info
->ring_lock
, flags
);
430 hv_get_ringbuffer_availbytes(inring_info
,
432 &bytes_avail_towrite
);
434 /* Make sure there is something to read */
435 if (bytes_avail_toread
< buflen
) {
436 spin_unlock_irqrestore(&inring_info
->ring_lock
, flags
);
442 hv_get_next_readlocation_withoffset(inring_info
, offset
);
444 next_read_location
= hv_copyfrom_ringbuffer(inring_info
,
449 next_read_location
= hv_copyfrom_ringbuffer(inring_info
,
454 /* Make sure all reads are done before we update the read index since */
455 /* the writer may start writing to the read area once the read index */
459 /* Update the read index */
460 hv_set_next_read_location(inring_info
, next_read_location
);
462 spin_unlock_irqrestore(&inring_info
->ring_lock
, flags
);