Instead of using constants for the analogue gains limits, use the minimum and maximum from the configured sensor. Signed-off-by: Jean-Michel Hautbois <jeanmichel.hautbois@ideasonboard.com> Reviewed-by: Laurent Pinchart <laurent.pinchart@ideasonboard.com> Reviewed-by: Kieran Bingham <kieran.bingham@ideasonboard.com>
201 lines
6.1 KiB
C++
201 lines
6.1 KiB
C++
/* SPDX-License-Identifier: LGPL-2.1-or-later */
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/*
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* Copyright (C) 2021, Ideas On Board
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*
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* ipu3_agc.cpp - AGC/AEC control algorithm
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*/
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#include "agc.h"
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#include <algorithm>
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#include <chrono>
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#include <cmath>
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#include <libcamera/base/log.h>
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#include <libcamera/ipa/core_ipa_interface.h>
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#include "libipa/histogram.h"
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namespace libcamera {
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using namespace std::literals::chrono_literals;
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namespace ipa::ipu3::algorithms {
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LOG_DEFINE_CATEGORY(IPU3Agc)
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/* Number of frames to wait before calculating stats on minimum exposure */
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static constexpr uint32_t kInitialFrameMinAECount = 4;
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/* Number of frames to wait between new gain/exposure estimations */
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static constexpr uint32_t kFrameSkipCount = 6;
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/* Limits for analogue gain values */
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static constexpr double kMinAnalogueGain = 1.0;
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static constexpr double kMaxAnalogueGain = 8.0;
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/* Histogram constants */
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static constexpr uint32_t knumHistogramBins = 256;
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static constexpr double kEvGainTarget = 0.5;
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Agc::Agc()
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: frameCount_(0), lastFrame_(0), iqMean_(0.0), lineDuration_(0s),
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minExposureLines_(0), maxExposureLines_(0), filteredExposure_(0s),
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currentExposure_(0s), prevExposureValue_(0s)
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{
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}
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int Agc::configure(IPAContext &context, const IPAConfigInfo &configInfo)
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{
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stride_ = context.configuration.grid.stride;
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lineDuration_ = configInfo.sensorInfo.lineLength * 1.0s
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/ configInfo.sensorInfo.pixelRate;
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/* \todo replace the exposure in lines storage with time based ones. */
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minExposureLines_ = context.configuration.agc.minShutterSpeed / lineDuration_;
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maxExposureLines_ = context.configuration.agc.maxShutterSpeed / lineDuration_;
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minAnalogueGain_ = std::max(context.configuration.agc.minAnalogueGain, kMinAnalogueGain);
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maxAnalogueGain_ = std::min(context.configuration.agc.maxAnalogueGain, kMaxAnalogueGain);
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/* Configure the default exposure and gain. */
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context.frameContext.agc.gain = minAnalogueGain_;
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context.frameContext.agc.exposure = minExposureLines_;
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prevExposureValue_ = context.frameContext.agc.gain
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* context.frameContext.agc.exposure
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* lineDuration_;
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return 0;
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}
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void Agc::processBrightness(const ipu3_uapi_stats_3a *stats,
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const ipu3_uapi_grid_config &grid)
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{
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uint32_t hist[knumHistogramBins] = { 0 };
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for (unsigned int cellY = 0; cellY < grid.height; cellY++) {
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for (unsigned int cellX = 0; cellX < grid.width; cellX++) {
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uint32_t cellPosition = cellY * stride_ + cellX;
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const ipu3_uapi_awb_set_item *cell =
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reinterpret_cast<const ipu3_uapi_awb_set_item *>(
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&stats->awb_raw_buffer.meta_data[cellPosition]
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);
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if (cell->sat_ratio == 0) {
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uint8_t gr = cell->Gr_avg;
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uint8_t gb = cell->Gb_avg;
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hist[(gr + gb) / 2]++;
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}
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}
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}
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/* Estimate the quantile mean of the top 2% of the histogram */
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iqMean_ = Histogram(Span<uint32_t>(hist)).interQuantileMean(0.98, 1.0);
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}
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void Agc::filterExposure()
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{
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double speed = 0.2;
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if (filteredExposure_ == 0s) {
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/* DG stands for digital gain.*/
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filteredExposure_ = currentExposure_;
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} else {
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/*
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* If we are close to the desired result, go faster to avoid making
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* multiple micro-adjustments.
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* \ todo: Make this customisable?
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*/
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if (filteredExposure_ < 1.2 * currentExposure_ &&
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filteredExposure_ > 0.8 * currentExposure_)
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speed = sqrt(speed);
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filteredExposure_ = speed * currentExposure_ +
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filteredExposure_ * (1.0 - speed);
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}
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LOG(IPU3Agc, Debug) << "After filtering, total_exposure " << filteredExposure_;
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}
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void Agc::lockExposureGain(uint32_t &exposure, double &analogueGain)
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{
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/* Algorithm initialization should wait for first valid frames */
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/* \todo - have a number of frames given by DelayedControls ?
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* - implement a function for IIR */
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if ((frameCount_ < kInitialFrameMinAECount) || (frameCount_ - lastFrame_ < kFrameSkipCount))
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return;
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lastFrame_ = frameCount_;
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/* Are we correctly exposed ? */
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if (std::abs(iqMean_ - kEvGainTarget * knumHistogramBins) <= 1) {
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LOG(IPU3Agc, Debug) << "We are well exposed (iqMean = "
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<< iqMean_ << ")";
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return;
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}
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double evGain = kEvGainTarget * knumHistogramBins / iqMean_;
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/* extracted from Rpi::Agc::computeTargetExposure */
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utils::Duration currentShutter = exposure * lineDuration_;
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LOG(IPU3Agc, Debug) << "Actual total exposure " << currentShutter * analogueGain
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<< " Shutter speed " << currentShutter
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<< " Gain " << analogueGain
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<< " Needed ev gain " << evGain;
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currentExposure_ = prevExposureValue_ * evGain;
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utils::Duration minShutterSpeed = minExposureLines_ * lineDuration_;
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utils::Duration maxShutterSpeed = maxExposureLines_ * lineDuration_;
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utils::Duration maxTotalExposure = maxShutterSpeed * maxAnalogueGain_;
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currentExposure_ = std::min(currentExposure_, maxTotalExposure);
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LOG(IPU3Agc, Debug) << "Target total exposure " << currentExposure_
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<< ", maximum is " << maxTotalExposure;
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/* \todo: estimate if we need to desaturate */
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filterExposure();
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utils::Duration exposureValue = filteredExposure_;
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utils::Duration shutterTime = minShutterSpeed;
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/*
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* Push the shutter time up to the maximum first, and only then
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* increase the gain.
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*/
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shutterTime = std::clamp<utils::Duration>(exposureValue / minAnalogueGain_,
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minShutterSpeed, maxShutterSpeed);
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double stepGain = std::clamp(exposureValue / shutterTime,
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minAnalogueGain_, maxAnalogueGain_);
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LOG(IPU3Agc, Debug) << "Divided up shutter and gain are "
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<< shutterTime << " and "
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<< stepGain;
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exposure = shutterTime / lineDuration_;
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analogueGain = stepGain;
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/*
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* Update the exposure value for the next process call.
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*
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* \todo Obtain the values of the exposure time and analog gain
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* that were actually used by the sensor, either from embedded
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* data when available, or from the delayed controls
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* infrastructure in case a slow down caused a mismatch.
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*/
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prevExposureValue_ = shutterTime * analogueGain;
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}
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void Agc::process(IPAContext &context, const ipu3_uapi_stats_3a *stats)
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{
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uint32_t &exposure = context.frameContext.agc.exposure;
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double &analogueGain = context.frameContext.agc.gain;
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processBrightness(stats, context.configuration.grid.bdsGrid);
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lockExposureGain(exposure, analogueGain);
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frameCount_++;
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}
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} /* namespace ipa::ipu3::algorithms */
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} /* namespace libcamera */
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