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authorJacopo Mondi <jacopo@jmondi.org>2021-01-20 12:28:10 +0100
committerJacopo Mondi <jacopo@jmondi.org>2021-03-09 08:54:54 +0100
commit02a1186536e5e266c5719afa5ef864bd1acbe861 (patch)
tree15f6008614d0b3bbba560d23c0d46c787367284e /src
parentcbd4617a098afe251e9c3386ed3fa0aedb0e89ec (diff)
libcamera: ipu3: Register FrameDurations control
Register the FrameDurations control in the IPU3 pipeline handler computed using the vertical blanking limits and the sensor pixel rate as parameters. The FrameDurations control limits should be updated everytime a new configuration is applied to the sensor. Reviewed-by: Laurent Pinchart <laurent.pinchart@ideasonboard.com> Signed-off-by: Jacopo Mondi <jacopo@jmondi.org>
Diffstat (limited to 'src')
-rw-r--r--src/libcamera/pipeline/ipu3/ipu3.cpp29
1 files changed, 28 insertions, 1 deletions
diff --git a/src/libcamera/pipeline/ipu3/ipu3.cpp b/src/libcamera/pipeline/ipu3/ipu3.cpp
index a7be2c54..00da2bb2 100644
--- a/src/libcamera/pipeline/ipu3/ipu3.cpp
+++ b/src/libcamera/pipeline/ipu3/ipu3.cpp
@@ -889,6 +889,7 @@ int PipelineHandlerIPU3::initControls(IPU3CameraData *data)
return ret;
ControlInfoMap::Map controls = IPU3Controls;
+ const ControlInfoMap &sensorControls = sensor->controls();
/*
* Compute exposure time limits.
@@ -900,7 +901,6 @@ int PipelineHandlerIPU3::initControls(IPU3CameraData *data)
*/
double lineDuration = sensorInfo.lineLength
/ (sensorInfo.pixelRate / 1e6);
- const ControlInfoMap &sensorControls = sensor->controls();
const ControlInfo &v4l2Exposure = sensorControls.find(V4L2_CID_EXPOSURE)->second;
int32_t minExposure = v4l2Exposure.min().get<int32_t>() * lineDuration;
int32_t maxExposure = v4l2Exposure.max().get<int32_t>() * lineDuration;
@@ -916,6 +916,33 @@ int PipelineHandlerIPU3::initControls(IPU3CameraData *data)
defExposure);
/*
+ * Compute the frame duration limits.
+ *
+ * The frame length is computed assuming a fixed line length combined
+ * with the vertical frame sizes.
+ */
+ const ControlInfo &v4l2HBlank = sensorControls.find(V4L2_CID_HBLANK)->second;
+ uint32_t hblank = v4l2HBlank.def().get<int32_t>();
+ uint32_t lineLength = sensorInfo.outputSize.width + hblank;
+
+ const ControlInfo &v4l2VBlank = sensorControls.find(V4L2_CID_VBLANK)->second;
+ std::array<uint32_t, 3> frameHeights{
+ v4l2VBlank.min().get<int32_t>() + sensorInfo.outputSize.height,
+ v4l2VBlank.max().get<int32_t>() + sensorInfo.outputSize.height,
+ v4l2VBlank.def().get<int32_t>() + sensorInfo.outputSize.height,
+ };
+
+ std::array<int64_t, 3> frameDurations;
+ for (unsigned int i = 0; i < frameHeights.size(); ++i) {
+ uint64_t frameSize = lineLength * frameHeights[i];
+ frameDurations[i] = frameSize / (sensorInfo.pixelRate / 1000000U);
+ }
+
+ controls[&controls::FrameDurations] = ControlInfo(frameDurations[0],
+ frameDurations[1],
+ frameDurations[2]);
+
+ /*
* Compute the scaler crop limits.
*
* Initialize the control use the 'Viewfinder' configuration (1280x720)