mirror of https://gitee.com/openkylin/linux.git
163 lines
5.9 KiB
ReStructuredText
163 lines
5.9 KiB
ReStructuredText
.. -*- coding: utf-8; mode: rst -*-
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.. _dmabuf:
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************************************
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Streaming I/O (DMA buffer importing)
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************************************
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The DMABUF framework provides a generic method for sharing buffers
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between multiple devices. Device drivers that support DMABUF can export
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a DMA buffer to userspace as a file descriptor (known as the exporter
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role), import a DMA buffer from userspace using a file descriptor
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previously exported for a different or the same device (known as the
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importer role), or both. This section describes the DMABUF importer role
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API in V4L2.
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Refer to :ref:`DMABUF exporting <VIDIOC_EXPBUF>` for details about
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exporting V4L2 buffers as DMABUF file descriptors.
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Input and output devices support the streaming I/O method when the
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``V4L2_CAP_STREAMING`` flag in the ``capabilities`` field of struct
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:ref:`v4l2_capability <v4l2-capability>` returned by the
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:ref:`VIDIOC_QUERYCAP <VIDIOC_QUERYCAP>` ioctl is set. Whether
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importing DMA buffers through DMABUF file descriptors is supported is
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determined by calling the :ref:`VIDIOC_REQBUFS <VIDIOC_REQBUFS>`
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ioctl with the memory type set to ``V4L2_MEMORY_DMABUF``.
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This I/O method is dedicated to sharing DMA buffers between different
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devices, which may be V4L devices or other video-related devices (e.g.
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DRM). Buffers (planes) are allocated by a driver on behalf of an
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application. Next, these buffers are exported to the application as file
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descriptors using an API which is specific for an allocator driver. Only
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such file descriptor are exchanged. The descriptors and meta-information
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are passed in struct :ref:`v4l2_buffer <v4l2-buffer>` (or in struct
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:ref:`v4l2_plane <v4l2-plane>` in the multi-planar API case). The
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driver must be switched into DMABUF I/O mode by calling the
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:ref:`VIDIOC_REQBUFS <VIDIOC_REQBUFS>` with the desired buffer type.
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Example: Initiating streaming I/O with DMABUF file descriptors
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==============================================================
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.. code-block:: c
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struct v4l2_requestbuffers reqbuf;
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memset(&reqbuf, 0, sizeof (reqbuf));
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reqbuf.type = V4L2_BUF_TYPE_VIDEO_CAPTURE;
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reqbuf.memory = V4L2_MEMORY_DMABUF;
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reqbuf.count = 1;
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if (ioctl(fd, VIDIOC_REQBUFS, &reqbuf) == -1) {
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if (errno == EINVAL)
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printf("Video capturing or DMABUF streaming is not supported\\n");
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else
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perror("VIDIOC_REQBUFS");
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exit(EXIT_FAILURE);
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}
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The buffer (plane) file descriptor is passed on the fly with the
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:ref:`VIDIOC_QBUF <VIDIOC_QBUF>` ioctl. In case of multiplanar
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buffers, every plane can be associated with a different DMABUF
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descriptor. Although buffers are commonly cycled, applications can pass
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a different DMABUF descriptor at each :ref:`VIDIOC_QBUF <VIDIOC_QBUF>` call.
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Example: Queueing DMABUF using single plane API
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===============================================
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.. code-block:: c
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int buffer_queue(int v4lfd, int index, int dmafd)
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{
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struct v4l2_buffer buf;
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memset(&buf, 0, sizeof buf);
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buf.type = V4L2_BUF_TYPE_VIDEO_CAPTURE;
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buf.memory = V4L2_MEMORY_DMABUF;
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buf.index = index;
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buf.m.fd = dmafd;
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if (ioctl(v4lfd, VIDIOC_QBUF, &buf) == -1) {
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perror("VIDIOC_QBUF");
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return -1;
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}
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return 0;
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}
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Example 3.6. Queueing DMABUF using multi plane API
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==================================================
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.. code-block:: c
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int buffer_queue_mp(int v4lfd, int index, int dmafd[], int n_planes)
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{
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struct v4l2_buffer buf;
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struct v4l2_plane planes[VIDEO_MAX_PLANES];
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int i;
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memset(&buf, 0, sizeof buf);
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buf.type = V4L2_BUF_TYPE_VIDEO_CAPTURE_MPLANE;
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buf.memory = V4L2_MEMORY_DMABUF;
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buf.index = index;
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buf.m.planes = planes;
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buf.length = n_planes;
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memset(&planes, 0, sizeof planes);
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for (i = 0; i < n_planes; ++i)
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buf.m.planes[i].m.fd = dmafd[i];
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if (ioctl(v4lfd, VIDIOC_QBUF, &buf) == -1) {
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perror("VIDIOC_QBUF");
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return -1;
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}
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return 0;
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}
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Captured or displayed buffers are dequeued with the
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:ref:`VIDIOC_DQBUF <VIDIOC_QBUF>` ioctl. The driver can unlock the
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buffer at any time between the completion of the DMA and this ioctl. The
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memory is also unlocked when
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:ref:`VIDIOC_STREAMOFF <VIDIOC_STREAMON>` is called,
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:ref:`VIDIOC_REQBUFS <VIDIOC_REQBUFS>`, or when the device is closed.
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For capturing applications it is customary to enqueue a number of empty
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buffers, to start capturing and enter the read loop. Here the
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application waits until a filled buffer can be dequeued, and re-enqueues
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the buffer when the data is no longer needed. Output applications fill
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and enqueue buffers, when enough buffers are stacked up output is
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started. In the write loop, when the application runs out of free
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buffers it must wait until an empty buffer can be dequeued and reused.
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Two methods exist to suspend execution of the application until one or
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more buffers can be dequeued. By default :ref:`VIDIOC_DQBUF
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<VIDIOC_QBUF>` blocks when no buffer is in the outgoing queue. When the
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``O_NONBLOCK`` flag was given to the :ref:`open() <func-open>` function,
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:ref:`VIDIOC_DQBUF <VIDIOC_QBUF>` returns immediately with an ``EAGAIN``
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error code when no buffer is available. The
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:ref:`select() <func-select>` and :ref:`poll() <func-poll>`
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functions are always available.
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To start and stop capturing or displaying applications call the
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:ref:`VIDIOC_STREAMON <VIDIOC_STREAMON>` and
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:ref:`VIDIOC_STREAMOFF <VIDIOC_STREAMON>` ioctls.
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.. note::
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:ref:`VIDIOC_STREAMOFF <VIDIOC_STREAMON>` removes all buffers from
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both queues and unlocks all buffers as a side effect. Since there is no
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notion of doing anything "now" on a multitasking system, if an
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application needs to synchronize with another event it should examine
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the struct :ref:`v4l2_buffer <v4l2-buffer>` ``timestamp`` of captured or
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outputted buffers.
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Drivers implementing DMABUF importing I/O must support the
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:ref:`VIDIOC_REQBUFS <VIDIOC_REQBUFS>`, :ref:`VIDIOC_QBUF <VIDIOC_QBUF>`,
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:ref:`VIDIOC_DQBUF <VIDIOC_QBUF>`, :ref:`VIDIOC_STREAMON
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<VIDIOC_STREAMON>` and :ref:`VIDIOC_STREAMOFF <VIDIOC_STREAMON>` ioctls,
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and the :ref:`select() <func-select>` and :ref:`poll() <func-poll>`
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functions.
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