2 * videobuf2-v4l2.c - V4L2 driver helper framework
4 * Copyright (C) 2010 Samsung Electronics
6 * Author: Pawel Osciak <pawel@osciak.com>
7 * Marek Szyprowski <m.szyprowski@samsung.com>
9 * The vb2_thread implementation was based on code from videobuf-dvb.c:
10 * (c) 2004 Gerd Knorr <kraxel@bytesex.org> [SUSE Labs]
12 * This program is free software; you can redistribute it and/or modify
13 * it under the terms of the GNU General Public License as published by
14 * the Free Software Foundation.
17 #include <linux/err.h>
18 #include <linux/kernel.h>
19 #include <linux/module.h>
21 #include <linux/poll.h>
22 #include <linux/slab.h>
23 #include <linux/sched.h>
24 #include <linux/freezer.h>
25 #include <linux/kthread.h>
27 #include <media/v4l2-dev.h>
28 #include <media/v4l2-fh.h>
29 #include <media/v4l2-event.h>
30 #include <media/v4l2-common.h>
32 #include <media/videobuf2-v4l2.h>
35 module_param(debug
, int, 0644);
37 #define dprintk(level, fmt, arg...) \
40 pr_info("vb2-v4l2: %s: " fmt, __func__, ## arg); \
43 /* Flags that are set by the vb2 core */
44 #define V4L2_BUFFER_MASK_FLAGS (V4L2_BUF_FLAG_MAPPED | V4L2_BUF_FLAG_QUEUED | \
45 V4L2_BUF_FLAG_DONE | V4L2_BUF_FLAG_ERROR | \
46 V4L2_BUF_FLAG_PREPARED | \
47 V4L2_BUF_FLAG_TIMESTAMP_MASK)
48 /* Output buffer flags that should be passed on to the driver */
49 #define V4L2_BUFFER_OUT_FLAGS (V4L2_BUF_FLAG_PFRAME | V4L2_BUF_FLAG_BFRAME | \
50 V4L2_BUF_FLAG_KEYFRAME | V4L2_BUF_FLAG_TIMECODE)
53 * __verify_planes_array() - verify that the planes array passed in struct
54 * v4l2_buffer from userspace can be safely used
56 static int __verify_planes_array(struct vb2_buffer
*vb
, const struct v4l2_buffer
*b
)
58 if (!V4L2_TYPE_IS_MULTIPLANAR(b
->type
))
61 /* Is memory for copying plane information present? */
62 if (b
->m
.planes
== NULL
) {
63 dprintk(1, "multi-planar buffer passed but "
64 "planes array not provided\n");
68 if (b
->length
< vb
->num_planes
|| b
->length
> VB2_MAX_PLANES
) {
69 dprintk(1, "incorrect planes array length, "
70 "expected %d, got %d\n", vb
->num_planes
, b
->length
);
77 static int __verify_planes_array_core(struct vb2_buffer
*vb
, const void *pb
)
79 return __verify_planes_array(vb
, pb
);
83 * __verify_length() - Verify that the bytesused value for each plane fits in
84 * the plane length and that the data offset doesn't exceed the bytesused value.
86 static int __verify_length(struct vb2_buffer
*vb
, const struct v4l2_buffer
*b
)
89 unsigned int bytesused
;
92 if (!V4L2_TYPE_IS_OUTPUT(b
->type
))
95 if (V4L2_TYPE_IS_MULTIPLANAR(b
->type
)) {
96 for (plane
= 0; plane
< vb
->num_planes
; ++plane
) {
97 length
= (b
->memory
== VB2_MEMORY_USERPTR
||
98 b
->memory
== VB2_MEMORY_DMABUF
)
99 ? b
->m
.planes
[plane
].length
100 : vb
->planes
[plane
].length
;
101 bytesused
= b
->m
.planes
[plane
].bytesused
102 ? b
->m
.planes
[plane
].bytesused
: length
;
104 if (b
->m
.planes
[plane
].bytesused
> length
)
107 if (b
->m
.planes
[plane
].data_offset
> 0 &&
108 b
->m
.planes
[plane
].data_offset
>= bytesused
)
112 length
= (b
->memory
== VB2_MEMORY_USERPTR
)
113 ? b
->length
: vb
->planes
[0].length
;
115 if (b
->bytesused
> length
)
122 static void __copy_timestamp(struct vb2_buffer
*vb
, const void *pb
)
124 const struct v4l2_buffer
*b
= pb
;
125 struct vb2_v4l2_buffer
*vbuf
= to_vb2_v4l2_buffer(vb
);
126 struct vb2_queue
*q
= vb
->vb2_queue
;
130 * For output buffers copy the timestamp if needed,
131 * and the timecode field and flag if needed.
133 if (q
->copy_timestamp
)
134 vb
->timestamp
= timeval_to_ns(&b
->timestamp
);
135 vbuf
->flags
|= b
->flags
& V4L2_BUF_FLAG_TIMECODE
;
136 if (b
->flags
& V4L2_BUF_FLAG_TIMECODE
)
137 vbuf
->timecode
= b
->timecode
;
141 static void vb2_warn_zero_bytesused(struct vb2_buffer
*vb
)
143 static bool check_once
;
150 pr_warn("use of bytesused == 0 is deprecated and will be removed in the future,\n");
151 if (vb
->vb2_queue
->allow_zero_bytesused
)
152 pr_warn("use VIDIOC_DECODER_CMD(V4L2_DEC_CMD_STOP) instead.\n");
154 pr_warn("use the actual size instead.\n");
157 static int vb2_queue_or_prepare_buf(struct vb2_queue
*q
, struct v4l2_buffer
*b
,
160 if (b
->type
!= q
->type
) {
161 dprintk(1, "%s: invalid buffer type\n", opname
);
165 if (b
->index
>= q
->num_buffers
) {
166 dprintk(1, "%s: buffer index out of range\n", opname
);
170 if (q
->bufs
[b
->index
] == NULL
) {
171 /* Should never happen */
172 dprintk(1, "%s: buffer is NULL\n", opname
);
176 if (b
->memory
!= q
->memory
) {
177 dprintk(1, "%s: invalid memory type\n", opname
);
181 return __verify_planes_array(q
->bufs
[b
->index
], b
);
185 * __fill_v4l2_buffer() - fill in a struct v4l2_buffer with information to be
186 * returned to userspace
188 static void __fill_v4l2_buffer(struct vb2_buffer
*vb
, void *pb
)
190 struct v4l2_buffer
*b
= pb
;
191 struct vb2_v4l2_buffer
*vbuf
= to_vb2_v4l2_buffer(vb
);
192 struct vb2_queue
*q
= vb
->vb2_queue
;
195 /* Copy back data such as timestamp, flags, etc. */
196 b
->index
= vb
->index
;
198 b
->memory
= vb
->memory
;
201 b
->flags
= vbuf
->flags
;
202 b
->field
= vbuf
->field
;
203 b
->timestamp
= ns_to_timeval(vb
->timestamp
);
204 b
->timecode
= vbuf
->timecode
;
205 b
->sequence
= vbuf
->sequence
;
209 if (q
->is_multiplanar
) {
211 * Fill in plane-related data if userspace provided an array
212 * for it. The caller has already verified memory and size.
214 b
->length
= vb
->num_planes
;
215 for (plane
= 0; plane
< vb
->num_planes
; ++plane
) {
216 struct v4l2_plane
*pdst
= &b
->m
.planes
[plane
];
217 struct vb2_plane
*psrc
= &vb
->planes
[plane
];
219 pdst
->bytesused
= psrc
->bytesused
;
220 pdst
->length
= psrc
->length
;
221 if (q
->memory
== VB2_MEMORY_MMAP
)
222 pdst
->m
.mem_offset
= psrc
->m
.offset
;
223 else if (q
->memory
== VB2_MEMORY_USERPTR
)
224 pdst
->m
.userptr
= psrc
->m
.userptr
;
225 else if (q
->memory
== VB2_MEMORY_DMABUF
)
226 pdst
->m
.fd
= psrc
->m
.fd
;
227 pdst
->data_offset
= psrc
->data_offset
;
228 memset(pdst
->reserved
, 0, sizeof(pdst
->reserved
));
232 * We use length and offset in v4l2_planes array even for
233 * single-planar buffers, but userspace does not.
235 b
->length
= vb
->planes
[0].length
;
236 b
->bytesused
= vb
->planes
[0].bytesused
;
237 if (q
->memory
== VB2_MEMORY_MMAP
)
238 b
->m
.offset
= vb
->planes
[0].m
.offset
;
239 else if (q
->memory
== VB2_MEMORY_USERPTR
)
240 b
->m
.userptr
= vb
->planes
[0].m
.userptr
;
241 else if (q
->memory
== VB2_MEMORY_DMABUF
)
242 b
->m
.fd
= vb
->planes
[0].m
.fd
;
246 * Clear any buffer state related flags.
248 b
->flags
&= ~V4L2_BUFFER_MASK_FLAGS
;
249 b
->flags
|= q
->timestamp_flags
& V4L2_BUF_FLAG_TIMESTAMP_MASK
;
250 if (!q
->copy_timestamp
) {
252 * For non-COPY timestamps, drop timestamp source bits
253 * and obtain the timestamp source from the queue.
255 b
->flags
&= ~V4L2_BUF_FLAG_TSTAMP_SRC_MASK
;
256 b
->flags
|= q
->timestamp_flags
& V4L2_BUF_FLAG_TSTAMP_SRC_MASK
;
260 case VB2_BUF_STATE_QUEUED
:
261 case VB2_BUF_STATE_ACTIVE
:
262 b
->flags
|= V4L2_BUF_FLAG_QUEUED
;
264 case VB2_BUF_STATE_ERROR
:
265 b
->flags
|= V4L2_BUF_FLAG_ERROR
;
267 case VB2_BUF_STATE_DONE
:
268 b
->flags
|= V4L2_BUF_FLAG_DONE
;
270 case VB2_BUF_STATE_PREPARED
:
271 b
->flags
|= V4L2_BUF_FLAG_PREPARED
;
273 case VB2_BUF_STATE_PREPARING
:
274 case VB2_BUF_STATE_DEQUEUED
:
275 case VB2_BUF_STATE_REQUEUEING
:
280 if (vb2_buffer_in_use(q
, vb
))
281 b
->flags
|= V4L2_BUF_FLAG_MAPPED
;
284 b
->flags
& V4L2_BUF_FLAG_DONE
&&
285 b
->flags
& V4L2_BUF_FLAG_LAST
)
286 q
->last_buffer_dequeued
= true;
290 * __fill_vb2_buffer() - fill a vb2_buffer with information provided in a
291 * v4l2_buffer by the userspace. It also verifies that struct
292 * v4l2_buffer has a valid number of planes.
294 static int __fill_vb2_buffer(struct vb2_buffer
*vb
,
295 const void *pb
, struct vb2_plane
*planes
)
297 struct vb2_queue
*q
= vb
->vb2_queue
;
298 const struct v4l2_buffer
*b
= pb
;
299 struct vb2_v4l2_buffer
*vbuf
= to_vb2_v4l2_buffer(vb
);
303 ret
= __verify_length(vb
, b
);
305 dprintk(1, "plane parameters verification failed: %d\n", ret
);
308 if (b
->field
== V4L2_FIELD_ALTERNATE
&& q
->is_output
) {
310 * If the format's field is ALTERNATE, then the buffer's field
311 * should be either TOP or BOTTOM, not ALTERNATE since that
312 * makes no sense. The driver has to know whether the
313 * buffer represents a top or a bottom field in order to
314 * program any DMA correctly. Using ALTERNATE is wrong, since
315 * that just says that it is either a top or a bottom field,
316 * but not which of the two it is.
318 dprintk(1, "the field is incorrectly set to ALTERNATE "
319 "for an output buffer\n");
325 if (V4L2_TYPE_IS_MULTIPLANAR(b
->type
)) {
326 if (b
->memory
== VB2_MEMORY_USERPTR
) {
327 for (plane
= 0; plane
< vb
->num_planes
; ++plane
) {
328 planes
[plane
].m
.userptr
=
329 b
->m
.planes
[plane
].m
.userptr
;
330 planes
[plane
].length
=
331 b
->m
.planes
[plane
].length
;
334 if (b
->memory
== VB2_MEMORY_DMABUF
) {
335 for (plane
= 0; plane
< vb
->num_planes
; ++plane
) {
337 b
->m
.planes
[plane
].m
.fd
;
338 planes
[plane
].length
=
339 b
->m
.planes
[plane
].length
;
343 /* Fill in driver-provided information for OUTPUT types */
344 if (V4L2_TYPE_IS_OUTPUT(b
->type
)) {
346 * Will have to go up to b->length when API starts
347 * accepting variable number of planes.
349 * If bytesused == 0 for the output buffer, then fall
350 * back to the full buffer size. In that case
351 * userspace clearly never bothered to set it and
352 * it's a safe assumption that they really meant to
353 * use the full plane sizes.
355 * Some drivers, e.g. old codec drivers, use bytesused == 0
356 * as a way to indicate that streaming is finished.
357 * In that case, the driver should use the
358 * allow_zero_bytesused flag to keep old userspace
359 * applications working.
361 for (plane
= 0; plane
< vb
->num_planes
; ++plane
) {
362 struct vb2_plane
*pdst
= &planes
[plane
];
363 struct v4l2_plane
*psrc
= &b
->m
.planes
[plane
];
365 if (psrc
->bytesused
== 0)
366 vb2_warn_zero_bytesused(vb
);
368 if (vb
->vb2_queue
->allow_zero_bytesused
)
369 pdst
->bytesused
= psrc
->bytesused
;
371 pdst
->bytesused
= psrc
->bytesused
?
372 psrc
->bytesused
: pdst
->length
;
373 pdst
->data_offset
= psrc
->data_offset
;
378 * Single-planar buffers do not use planes array,
379 * so fill in relevant v4l2_buffer struct fields instead.
380 * In videobuf we use our internal V4l2_planes struct for
381 * single-planar buffers as well, for simplicity.
383 * If bytesused == 0 for the output buffer, then fall back
384 * to the full buffer size as that's a sensible default.
386 * Some drivers, e.g. old codec drivers, use bytesused == 0 as
387 * a way to indicate that streaming is finished. In that case,
388 * the driver should use the allow_zero_bytesused flag to keep
389 * old userspace applications working.
391 if (b
->memory
== VB2_MEMORY_USERPTR
) {
392 planes
[0].m
.userptr
= b
->m
.userptr
;
393 planes
[0].length
= b
->length
;
396 if (b
->memory
== VB2_MEMORY_DMABUF
) {
397 planes
[0].m
.fd
= b
->m
.fd
;
398 planes
[0].length
= b
->length
;
401 if (V4L2_TYPE_IS_OUTPUT(b
->type
)) {
402 if (b
->bytesused
== 0)
403 vb2_warn_zero_bytesused(vb
);
405 if (vb
->vb2_queue
->allow_zero_bytesused
)
406 planes
[0].bytesused
= b
->bytesused
;
408 planes
[0].bytesused
= b
->bytesused
?
409 b
->bytesused
: planes
[0].length
;
411 planes
[0].bytesused
= 0;
415 /* Zero flags that the vb2 core handles */
416 vbuf
->flags
= b
->flags
& ~V4L2_BUFFER_MASK_FLAGS
;
417 if (!vb
->vb2_queue
->copy_timestamp
|| !V4L2_TYPE_IS_OUTPUT(b
->type
)) {
419 * Non-COPY timestamps and non-OUTPUT queues will get
420 * their timestamp and timestamp source flags from the
423 vbuf
->flags
&= ~V4L2_BUF_FLAG_TSTAMP_SRC_MASK
;
426 if (V4L2_TYPE_IS_OUTPUT(b
->type
)) {
428 * For output buffers mask out the timecode flag:
429 * this will be handled later in vb2_qbuf().
430 * The 'field' is valid metadata for this output buffer
431 * and so that needs to be copied here.
433 vbuf
->flags
&= ~V4L2_BUF_FLAG_TIMECODE
;
434 vbuf
->field
= b
->field
;
436 /* Zero any output buffer flags as this is a capture buffer */
437 vbuf
->flags
&= ~V4L2_BUFFER_OUT_FLAGS
;
443 static const struct vb2_buf_ops v4l2_buf_ops
= {
444 .verify_planes_array
= __verify_planes_array_core
,
445 .fill_user_buffer
= __fill_v4l2_buffer
,
446 .fill_vb2_buffer
= __fill_vb2_buffer
,
447 .copy_timestamp
= __copy_timestamp
,
451 * vb2_querybuf() - query video buffer information
453 * @b: buffer struct passed from userspace to vidioc_querybuf handler
456 * Should be called from vidioc_querybuf ioctl handler in driver.
457 * This function will verify the passed v4l2_buffer structure and fill the
458 * relevant information for the userspace.
460 * The return values from this function are intended to be directly returned
461 * from vidioc_querybuf handler in driver.
463 int vb2_querybuf(struct vb2_queue
*q
, struct v4l2_buffer
*b
)
465 struct vb2_buffer
*vb
;
468 if (b
->type
!= q
->type
) {
469 dprintk(1, "wrong buffer type\n");
473 if (b
->index
>= q
->num_buffers
) {
474 dprintk(1, "buffer index out of range\n");
477 vb
= q
->bufs
[b
->index
];
478 ret
= __verify_planes_array(vb
, b
);
480 vb2_core_querybuf(q
, b
->index
, b
);
483 EXPORT_SYMBOL(vb2_querybuf
);
485 int vb2_reqbufs(struct vb2_queue
*q
, struct v4l2_requestbuffers
*req
)
487 int ret
= vb2_verify_memory_type(q
, req
->memory
, req
->type
);
489 return ret
? ret
: vb2_core_reqbufs(q
, req
->memory
, &req
->count
);
491 EXPORT_SYMBOL_GPL(vb2_reqbufs
);
493 int vb2_prepare_buf(struct vb2_queue
*q
, struct v4l2_buffer
*b
)
497 if (vb2_fileio_is_active(q
)) {
498 dprintk(1, "file io in progress\n");
502 ret
= vb2_queue_or_prepare_buf(q
, b
, "prepare_buf");
504 return ret
? ret
: vb2_core_prepare_buf(q
, b
->index
, b
);
506 EXPORT_SYMBOL_GPL(vb2_prepare_buf
);
508 int vb2_create_bufs(struct vb2_queue
*q
, struct v4l2_create_buffers
*create
)
510 unsigned requested_planes
= 1;
511 unsigned requested_sizes
[VIDEO_MAX_PLANES
];
512 struct v4l2_format
*f
= &create
->format
;
513 int ret
= vb2_verify_memory_type(q
, create
->memory
, f
->type
);
516 create
->index
= q
->num_buffers
;
517 if (create
->count
== 0)
518 return ret
!= -EBUSY
? ret
: 0;
521 case V4L2_BUF_TYPE_VIDEO_CAPTURE_MPLANE
:
522 case V4L2_BUF_TYPE_VIDEO_OUTPUT_MPLANE
:
523 requested_planes
= f
->fmt
.pix_mp
.num_planes
;
524 if (requested_planes
== 0 ||
525 requested_planes
> VIDEO_MAX_PLANES
)
527 for (i
= 0; i
< requested_planes
; i
++)
529 f
->fmt
.pix_mp
.plane_fmt
[i
].sizeimage
;
531 case V4L2_BUF_TYPE_VIDEO_CAPTURE
:
532 case V4L2_BUF_TYPE_VIDEO_OUTPUT
:
533 requested_sizes
[0] = f
->fmt
.pix
.sizeimage
;
535 case V4L2_BUF_TYPE_VBI_CAPTURE
:
536 case V4L2_BUF_TYPE_VBI_OUTPUT
:
537 requested_sizes
[0] = f
->fmt
.vbi
.samples_per_line
*
538 (f
->fmt
.vbi
.count
[0] + f
->fmt
.vbi
.count
[1]);
540 case V4L2_BUF_TYPE_SLICED_VBI_CAPTURE
:
541 case V4L2_BUF_TYPE_SLICED_VBI_OUTPUT
:
542 requested_sizes
[0] = f
->fmt
.sliced
.io_size
;
544 case V4L2_BUF_TYPE_SDR_CAPTURE
:
545 case V4L2_BUF_TYPE_SDR_OUTPUT
:
546 requested_sizes
[0] = f
->fmt
.sdr
.buffersize
;
551 for (i
= 0; i
< requested_planes
; i
++)
552 if (requested_sizes
[i
] == 0)
554 return ret
? ret
: vb2_core_create_bufs(q
, create
->memory
,
555 &create
->count
, requested_planes
, requested_sizes
);
557 EXPORT_SYMBOL_GPL(vb2_create_bufs
);
559 int vb2_qbuf(struct vb2_queue
*q
, struct v4l2_buffer
*b
)
563 if (vb2_fileio_is_active(q
)) {
564 dprintk(1, "file io in progress\n");
568 ret
= vb2_queue_or_prepare_buf(q
, b
, "qbuf");
569 return ret
? ret
: vb2_core_qbuf(q
, b
->index
, b
);
571 EXPORT_SYMBOL_GPL(vb2_qbuf
);
573 int vb2_dqbuf(struct vb2_queue
*q
, struct v4l2_buffer
*b
, bool nonblocking
)
577 if (vb2_fileio_is_active(q
)) {
578 dprintk(1, "file io in progress\n");
582 if (b
->type
!= q
->type
) {
583 dprintk(1, "invalid buffer type\n");
587 ret
= vb2_core_dqbuf(q
, NULL
, b
, nonblocking
);
590 * After calling the VIDIOC_DQBUF V4L2_BUF_FLAG_DONE must be
593 b
->flags
&= ~V4L2_BUF_FLAG_DONE
;
597 EXPORT_SYMBOL_GPL(vb2_dqbuf
);
599 int vb2_streamon(struct vb2_queue
*q
, enum v4l2_buf_type type
)
601 if (vb2_fileio_is_active(q
)) {
602 dprintk(1, "file io in progress\n");
605 return vb2_core_streamon(q
, type
);
607 EXPORT_SYMBOL_GPL(vb2_streamon
);
609 int vb2_streamoff(struct vb2_queue
*q
, enum v4l2_buf_type type
)
611 if (vb2_fileio_is_active(q
)) {
612 dprintk(1, "file io in progress\n");
615 return vb2_core_streamoff(q
, type
);
617 EXPORT_SYMBOL_GPL(vb2_streamoff
);
619 int vb2_expbuf(struct vb2_queue
*q
, struct v4l2_exportbuffer
*eb
)
621 return vb2_core_expbuf(q
, &eb
->fd
, eb
->type
, eb
->index
,
622 eb
->plane
, eb
->flags
);
624 EXPORT_SYMBOL_GPL(vb2_expbuf
);
626 int vb2_queue_init(struct vb2_queue
*q
)
632 WARN_ON(q
->timestamp_flags
&
633 ~(V4L2_BUF_FLAG_TIMESTAMP_MASK
|
634 V4L2_BUF_FLAG_TSTAMP_SRC_MASK
)))
637 /* Warn that the driver should choose an appropriate timestamp type */
638 WARN_ON((q
->timestamp_flags
& V4L2_BUF_FLAG_TIMESTAMP_MASK
) ==
639 V4L2_BUF_FLAG_TIMESTAMP_UNKNOWN
);
641 /* Warn that vb2_memory should match with v4l2_memory */
642 if (WARN_ON(VB2_MEMORY_MMAP
!= (int)V4L2_MEMORY_MMAP
)
643 || WARN_ON(VB2_MEMORY_USERPTR
!= (int)V4L2_MEMORY_USERPTR
)
644 || WARN_ON(VB2_MEMORY_DMABUF
!= (int)V4L2_MEMORY_DMABUF
))
647 if (q
->buf_struct_size
== 0)
648 q
->buf_struct_size
= sizeof(struct vb2_v4l2_buffer
);
650 q
->buf_ops
= &v4l2_buf_ops
;
651 q
->is_multiplanar
= V4L2_TYPE_IS_MULTIPLANAR(q
->type
);
652 q
->is_output
= V4L2_TYPE_IS_OUTPUT(q
->type
);
653 q
->copy_timestamp
= (q
->timestamp_flags
& V4L2_BUF_FLAG_TIMESTAMP_MASK
)
654 == V4L2_BUF_FLAG_TIMESTAMP_COPY
;
656 * For compatibility with vb1: if QBUF hasn't been called yet, then
657 * return POLLERR as well. This only affects capture queues, output
658 * queues will always initialize waiting_for_buffers to false.
660 q
->quirk_poll_must_check_waiting_for_buffers
= true;
662 return vb2_core_queue_init(q
);
664 EXPORT_SYMBOL_GPL(vb2_queue_init
);
666 void vb2_queue_release(struct vb2_queue
*q
)
668 vb2_core_queue_release(q
);
670 EXPORT_SYMBOL_GPL(vb2_queue_release
);
672 unsigned int vb2_poll(struct vb2_queue
*q
, struct file
*file
, poll_table
*wait
)
674 struct video_device
*vfd
= video_devdata(file
);
675 unsigned long req_events
= poll_requested_events(wait
);
676 unsigned int res
= 0;
678 if (test_bit(V4L2_FL_USES_V4L2_FH
, &vfd
->flags
)) {
679 struct v4l2_fh
*fh
= file
->private_data
;
681 if (v4l2_event_pending(fh
))
683 else if (req_events
& POLLPRI
)
684 poll_wait(file
, &fh
->wait
, wait
);
687 return res
| vb2_core_poll(q
, file
, wait
);
689 EXPORT_SYMBOL_GPL(vb2_poll
);
692 * The following functions are not part of the vb2 core API, but are helper
693 * functions that plug into struct v4l2_ioctl_ops, struct v4l2_file_operations
694 * and struct vb2_ops.
695 * They contain boilerplate code that most if not all drivers have to do
696 * and so they simplify the driver code.
699 /* The queue is busy if there is a owner and you are not that owner. */
700 static inline bool vb2_queue_is_busy(struct video_device
*vdev
, struct file
*file
)
702 return vdev
->queue
->owner
&& vdev
->queue
->owner
!= file
->private_data
;
705 /* vb2 ioctl helpers */
707 int vb2_ioctl_reqbufs(struct file
*file
, void *priv
,
708 struct v4l2_requestbuffers
*p
)
710 struct video_device
*vdev
= video_devdata(file
);
711 int res
= vb2_verify_memory_type(vdev
->queue
, p
->memory
, p
->type
);
715 if (vb2_queue_is_busy(vdev
, file
))
717 res
= vb2_core_reqbufs(vdev
->queue
, p
->memory
, &p
->count
);
718 /* If count == 0, then the owner has released all buffers and he
719 is no longer owner of the queue. Otherwise we have a new owner. */
721 vdev
->queue
->owner
= p
->count
? file
->private_data
: NULL
;
724 EXPORT_SYMBOL_GPL(vb2_ioctl_reqbufs
);
726 int vb2_ioctl_create_bufs(struct file
*file
, void *priv
,
727 struct v4l2_create_buffers
*p
)
729 struct video_device
*vdev
= video_devdata(file
);
730 int res
= vb2_verify_memory_type(vdev
->queue
, p
->memory
,
733 p
->index
= vdev
->queue
->num_buffers
;
735 * If count == 0, then just check if memory and type are valid.
736 * Any -EBUSY result from vb2_verify_memory_type can be mapped to 0.
739 return res
!= -EBUSY
? res
: 0;
742 if (vb2_queue_is_busy(vdev
, file
))
745 res
= vb2_create_bufs(vdev
->queue
, p
);
747 vdev
->queue
->owner
= file
->private_data
;
750 EXPORT_SYMBOL_GPL(vb2_ioctl_create_bufs
);
752 int vb2_ioctl_prepare_buf(struct file
*file
, void *priv
,
753 struct v4l2_buffer
*p
)
755 struct video_device
*vdev
= video_devdata(file
);
757 if (vb2_queue_is_busy(vdev
, file
))
759 return vb2_prepare_buf(vdev
->queue
, p
);
761 EXPORT_SYMBOL_GPL(vb2_ioctl_prepare_buf
);
763 int vb2_ioctl_querybuf(struct file
*file
, void *priv
, struct v4l2_buffer
*p
)
765 struct video_device
*vdev
= video_devdata(file
);
767 /* No need to call vb2_queue_is_busy(), anyone can query buffers. */
768 return vb2_querybuf(vdev
->queue
, p
);
770 EXPORT_SYMBOL_GPL(vb2_ioctl_querybuf
);
772 int vb2_ioctl_qbuf(struct file
*file
, void *priv
, struct v4l2_buffer
*p
)
774 struct video_device
*vdev
= video_devdata(file
);
776 if (vb2_queue_is_busy(vdev
, file
))
778 return vb2_qbuf(vdev
->queue
, p
);
780 EXPORT_SYMBOL_GPL(vb2_ioctl_qbuf
);
782 int vb2_ioctl_dqbuf(struct file
*file
, void *priv
, struct v4l2_buffer
*p
)
784 struct video_device
*vdev
= video_devdata(file
);
786 if (vb2_queue_is_busy(vdev
, file
))
788 return vb2_dqbuf(vdev
->queue
, p
, file
->f_flags
& O_NONBLOCK
);
790 EXPORT_SYMBOL_GPL(vb2_ioctl_dqbuf
);
792 int vb2_ioctl_streamon(struct file
*file
, void *priv
, enum v4l2_buf_type i
)
794 struct video_device
*vdev
= video_devdata(file
);
796 if (vb2_queue_is_busy(vdev
, file
))
798 return vb2_streamon(vdev
->queue
, i
);
800 EXPORT_SYMBOL_GPL(vb2_ioctl_streamon
);
802 int vb2_ioctl_streamoff(struct file
*file
, void *priv
, enum v4l2_buf_type i
)
804 struct video_device
*vdev
= video_devdata(file
);
806 if (vb2_queue_is_busy(vdev
, file
))
808 return vb2_streamoff(vdev
->queue
, i
);
810 EXPORT_SYMBOL_GPL(vb2_ioctl_streamoff
);
812 int vb2_ioctl_expbuf(struct file
*file
, void *priv
, struct v4l2_exportbuffer
*p
)
814 struct video_device
*vdev
= video_devdata(file
);
816 if (vb2_queue_is_busy(vdev
, file
))
818 return vb2_expbuf(vdev
->queue
, p
);
820 EXPORT_SYMBOL_GPL(vb2_ioctl_expbuf
);
822 /* v4l2_file_operations helpers */
824 int vb2_fop_mmap(struct file
*file
, struct vm_area_struct
*vma
)
826 struct video_device
*vdev
= video_devdata(file
);
828 return vb2_mmap(vdev
->queue
, vma
);
830 EXPORT_SYMBOL_GPL(vb2_fop_mmap
);
832 int _vb2_fop_release(struct file
*file
, struct mutex
*lock
)
834 struct video_device
*vdev
= video_devdata(file
);
838 if (file
->private_data
== vdev
->queue
->owner
) {
839 vb2_queue_release(vdev
->queue
);
840 vdev
->queue
->owner
= NULL
;
844 return v4l2_fh_release(file
);
846 EXPORT_SYMBOL_GPL(_vb2_fop_release
);
848 int vb2_fop_release(struct file
*file
)
850 struct video_device
*vdev
= video_devdata(file
);
851 struct mutex
*lock
= vdev
->queue
->lock
? vdev
->queue
->lock
: vdev
->lock
;
853 return _vb2_fop_release(file
, lock
);
855 EXPORT_SYMBOL_GPL(vb2_fop_release
);
857 ssize_t
vb2_fop_write(struct file
*file
, const char __user
*buf
,
858 size_t count
, loff_t
*ppos
)
860 struct video_device
*vdev
= video_devdata(file
);
861 struct mutex
*lock
= vdev
->queue
->lock
? vdev
->queue
->lock
: vdev
->lock
;
864 if (!(vdev
->queue
->io_modes
& VB2_WRITE
))
866 if (lock
&& mutex_lock_interruptible(lock
))
868 if (vb2_queue_is_busy(vdev
, file
))
870 err
= vb2_write(vdev
->queue
, buf
, count
, ppos
,
871 file
->f_flags
& O_NONBLOCK
);
872 if (vdev
->queue
->fileio
)
873 vdev
->queue
->owner
= file
->private_data
;
879 EXPORT_SYMBOL_GPL(vb2_fop_write
);
881 ssize_t
vb2_fop_read(struct file
*file
, char __user
*buf
,
882 size_t count
, loff_t
*ppos
)
884 struct video_device
*vdev
= video_devdata(file
);
885 struct mutex
*lock
= vdev
->queue
->lock
? vdev
->queue
->lock
: vdev
->lock
;
888 if (!(vdev
->queue
->io_modes
& VB2_READ
))
890 if (lock
&& mutex_lock_interruptible(lock
))
892 if (vb2_queue_is_busy(vdev
, file
))
894 err
= vb2_read(vdev
->queue
, buf
, count
, ppos
,
895 file
->f_flags
& O_NONBLOCK
);
896 if (vdev
->queue
->fileio
)
897 vdev
->queue
->owner
= file
->private_data
;
903 EXPORT_SYMBOL_GPL(vb2_fop_read
);
905 unsigned int vb2_fop_poll(struct file
*file
, poll_table
*wait
)
907 struct video_device
*vdev
= video_devdata(file
);
908 struct vb2_queue
*q
= vdev
->queue
;
909 struct mutex
*lock
= q
->lock
? q
->lock
: vdev
->lock
;
914 * If this helper doesn't know how to lock, then you shouldn't be using
915 * it but you should write your own.
919 if (lock
&& mutex_lock_interruptible(lock
))
924 res
= vb2_poll(vdev
->queue
, file
, wait
);
926 /* If fileio was started, then we have a new queue owner. */
927 if (!fileio
&& q
->fileio
)
928 q
->owner
= file
->private_data
;
933 EXPORT_SYMBOL_GPL(vb2_fop_poll
);
936 unsigned long vb2_fop_get_unmapped_area(struct file
*file
, unsigned long addr
,
937 unsigned long len
, unsigned long pgoff
, unsigned long flags
)
939 struct video_device
*vdev
= video_devdata(file
);
941 return vb2_get_unmapped_area(vdev
->queue
, addr
, len
, pgoff
, flags
);
943 EXPORT_SYMBOL_GPL(vb2_fop_get_unmapped_area
);
946 /* vb2_ops helpers. Only use if vq->lock is non-NULL. */
948 void vb2_ops_wait_prepare(struct vb2_queue
*vq
)
950 mutex_unlock(vq
->lock
);
952 EXPORT_SYMBOL_GPL(vb2_ops_wait_prepare
);
954 void vb2_ops_wait_finish(struct vb2_queue
*vq
)
956 mutex_lock(vq
->lock
);
958 EXPORT_SYMBOL_GPL(vb2_ops_wait_finish
);
960 MODULE_DESCRIPTION("Driver helper framework for Video for Linux 2");
961 MODULE_AUTHOR("Pawel Osciak <pawel@osciak.com>, Marek Szyprowski");
962 MODULE_LICENSE("GPL");