The CameraSensorHelper specifies two gain models, linear and exponential. They are modelled after the MIPI CCS specification. Only the linear model has been implemented, the exponential model was left for later. We now need to support sensors that configure their gain in a hardware register with a value expressed in dB. This has similarities with the MIPI CCS exponential gain model, but is only has an exponential factor, while CCS also allows sensors to support a configurable linear factor. The full CCS exponential model needs two values (for the linear and exponential factors) to express a gain, while IPAs use a single linear gain value internally. However, the exponential gain model example in the CCS specification has a fixed linear factor, which may indicate that it could be common for sensors that implement the exponential gain model to only use the exponential factor. For this reason, implement the exponential gain model with a fixed linear factor, but with a sensor-specific coefficient for the exponential factor that allows expressing the gain in dB (or other logarithmical units) instead of limiting it to powers of 2 as in the MIPI CCS specification. Signed-off-by: Laurent Pinchart <laurent.pinchart@ideasonboard.com> Reviewed-by: Jacopo Mondi <jacopo@jmondi.org> Reviewed-by: Umang Jain <umang.jain@ideasonboard.com> Reviewed-by: Paul Elder <paul.elder@ideasonboard.com>
417 lines
12 KiB
C++
417 lines
12 KiB
C++
/* SPDX-License-Identifier: LGPL-2.1-or-later */
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/*
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* Copyright (C) 2021, Google Inc.
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*
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* camera_sensor_helper.cpp - Helper class that performs sensor-specific
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* parameter computations
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*/
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#include "camera_sensor_helper.h"
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#include <cmath>
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#include <libcamera/base/log.h>
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/**
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* \file camera_sensor_helper.h
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* \brief Helper class that performs sensor-specific parameter computations
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*
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* Computation of sensor configuration parameters is a sensor specific
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* operation. Each CameraHelper derived class computes the value of
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* configuration parameters, for example the analogue gain value, using
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* sensor-specific functions and constants.
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*
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* Every subclass of CameraSensorHelper shall be registered with libipa using
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* the REGISTER_CAMERA_SENSOR_HELPER() macro.
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*/
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namespace libcamera {
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LOG_DEFINE_CATEGORY(CameraSensorHelper)
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namespace ipa {
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/**
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* \class CameraSensorHelper
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* \brief Base class for computing sensor tuning parameters using
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* sensor-specific constants
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*
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* Instances derived from CameraSensorHelper class are sensor-specific.
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* Each supported sensor will have an associated base class defined.
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*/
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/**
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* \brief Construct a CameraSensorHelper instance
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*
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* CameraSensorHelper derived class instances shall never be constructed
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* manually but always through the CameraSensorHelperFactory::create() function.
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*/
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/**
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* \brief Compute gain code from the analogue gain absolute value
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* \param[in] gain The real gain to pass
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*
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* This function aims to abstract the calculation of the gain letting the IPA
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* use the real gain for its estimations.
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*
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* \return The gain code to pass to V4L2
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*/
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uint32_t CameraSensorHelper::gainCode(double gain) const
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{
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const AnalogueGainConstants &k = gainConstants_;
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switch (gainType_) {
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case AnalogueGainLinear:
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ASSERT(k.linear.m0 == 0 || k.linear.m1 == 0);
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return (k.linear.c0 - k.linear.c1 * gain) /
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(k.linear.m1 * gain - k.linear.m0);
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case AnalogueGainExponential:
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ASSERT(k.exp.a != 0 && k.exp.m != 0);
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return std::log2(gain / k.exp.a) / k.exp.m;
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default:
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ASSERT(false);
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return 0;
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}
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}
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/**
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* \brief Compute the real gain from the V4L2 subdev control gain code
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* \param[in] gainCode The V4L2 subdev control gain
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*
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* This function aims to abstract the calculation of the gain letting the IPA
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* use the real gain for its estimations. It is the counterpart of the function
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* CameraSensorHelper::gainCode.
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*
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* \return The real gain
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*/
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double CameraSensorHelper::gain(uint32_t gainCode) const
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{
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const AnalogueGainConstants &k = gainConstants_;
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double gain = static_cast<double>(gainCode);
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switch (gainType_) {
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case AnalogueGainLinear:
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ASSERT(k.linear.m0 == 0 || k.linear.m1 == 0);
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return (k.linear.m0 * gain + k.linear.c0) /
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(k.linear.m1 * gain + k.linear.c1);
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case AnalogueGainExponential:
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ASSERT(k.exp.a != 0 && k.exp.m != 0);
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return k.exp.a * std::exp2(k.exp.m * gain);
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default:
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ASSERT(false);
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return 0.0;
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}
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}
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/**
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* \enum CameraSensorHelper::AnalogueGainType
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* \brief The gain calculation modes as defined by the MIPI CCS
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*
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* Describes the image sensor analogue gain capabilities.
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* Two modes are possible, depending on the sensor: Linear and Exponential.
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*/
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/**
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* \var CameraSensorHelper::AnalogueGainLinear
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* \brief Gain is computed using linear gain estimation
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*
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* The relationship between the integer gain parameter and the resulting gain
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* multiplier is given by the following equation:
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*
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* \f$gain=\frac{m0x+c0}{m1x+c1}\f$
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*
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* Where 'x' is the gain control parameter, and m0, m1, c0 and c1 are
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* image-sensor-specific constants of the sensor.
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* These constants are static parameters, and for any given image sensor either
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* m0 or m1 shall be zero.
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*
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* The full Gain equation therefore reduces to either:
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*
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* \f$gain=\frac{c0}{m1x+c1}\f$ or \f$\frac{m0x+c0}{c1}\f$
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*/
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/**
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* \var CameraSensorHelper::AnalogueGainExponential
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* \brief Gain is expressed using an exponential model
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*
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* The relationship between the integer gain parameter and the resulting gain
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* multiplier is given by the following equation:
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*
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* \f$gain = a \cdot 2^{m \cdot x}\f$
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*
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* Where 'x' is the gain control parameter, and 'a' and 'm' are image
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* sensor-specific constants.
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*
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* This is a subset of the MIPI CCS exponential gain model with the linear
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* factor 'a' being a constant, but with the exponent being configurable
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* through the 'm' coefficient.
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*
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* When the gain is expressed in dB, 'a' is equal to 1 and 'm' to
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* \f$log_{2}{10^{frac{1}{20}}}\f$.
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*/
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/**
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* \struct CameraSensorHelper::AnalogueGainLinearConstants
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* \brief Analogue gain constants for the linear gain model
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*
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* \var CameraSensorHelper::AnalogueGainLinearConstants::m0
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* \brief Constant used in the linear gain coding/decoding
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*
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* \note Either m0 or m1 shall be zero.
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*
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* \var CameraSensorHelper::AnalogueGainLinearConstants::c0
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* \brief Constant used in the linear gain coding/decoding
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*
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* \var CameraSensorHelper::AnalogueGainLinearConstants::m1
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* \brief Constant used in the linear gain coding/decoding
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*
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* \note Either m0 or m1 shall be zero.
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*
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* \var CameraSensorHelper::AnalogueGainLinearConstants::c1
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* \brief Constant used in the linear gain coding/decoding
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*/
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/**
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* \struct CameraSensorHelper::AnalogueGainExpConstants
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* \brief Analogue gain constants for the exponential gain model
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*
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* \var CameraSensorHelper::AnalogueGainExpConstants::a
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* \brief Constant used in the exponential gain coding/decoding
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*
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* \var CameraSensorHelper::AnalogueGainExpConstants::m
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* \brief Constant used in the exponential gain coding/decoding
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*/
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/**
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* \struct CameraSensorHelper::AnalogueGainConstants
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* \brief Analogue gain model constants
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*
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* This union stores the constants used to calculate the analogue gain. The
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* CameraSensorHelper::gainType_ variable selects which union member is valid.
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*
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* \var CameraSensorHelper::AnalogueGainConstants::linear
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* \brief Constants for the linear gain model
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*
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* \var CameraSensorHelper::AnalogueGainConstants::exp
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* \brief Constants for the exponential gain model
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*/
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/**
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* \var CameraSensorHelper::gainType_
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* \brief The analogue gain model type
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*/
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/**
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* \var CameraSensorHelper::gainConstants_
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* \brief The analogue gain parameters used for calculation
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*
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* The analogue gain is calculated through a formula, and its parameters are
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* sensor specific. Use this variable to store the values at init time.
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*/
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/**
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* \class CameraSensorHelperFactory
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* \brief Registration of CameraSensorHelperFactory classes and creation of instances
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*
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* To facilitate discovery and instantiation of CameraSensorHelper classes, the
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* CameraSensorHelperFactory class maintains a registry of camera sensor helper
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* sub-classes. Each CameraSensorHelper subclass shall register itself using the
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* REGISTER_CAMERA_SENSOR_HELPER() macro, which will create a corresponding
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* instance of a CameraSensorHelperFactory subclass and register it with the
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* static list of factories.
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*/
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/**
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* \brief Construct a camera sensor helper factory
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* \param[in] name Name of the camera sensor helper class
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*
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* Creating an instance of the factory registers it with the global list of
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* factories, accessible through the factories() function.
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*
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* The factory \a name is used for debug purpose and shall be unique.
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*/
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CameraSensorHelperFactory::CameraSensorHelperFactory(const std::string name)
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: name_(name)
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{
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registerType(this);
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}
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/**
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* \brief Create an instance of the CameraSensorHelper corresponding to
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* a named factory
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* \param[in] name Name of the factory
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*
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* \return A unique pointer to a new instance of the CameraSensorHelper subclass
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* corresponding to the named factory or a null pointer if no such factory
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* exists
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*/
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std::unique_ptr<CameraSensorHelper> CameraSensorHelperFactory::create(const std::string &name)
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{
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std::vector<CameraSensorHelperFactory *> &factories =
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CameraSensorHelperFactory::factories();
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for (CameraSensorHelperFactory *factory : factories) {
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if (name != factory->name_)
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continue;
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CameraSensorHelper *helper = factory->createInstance();
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return std::unique_ptr<CameraSensorHelper>(helper);
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}
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return nullptr;
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}
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/**
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* \brief Add a camera sensor helper class to the registry
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* \param[in] factory Factory to use to construct the camera sensor helper
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*
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* The caller is responsible to guarantee the uniqueness of the camera sensor
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* helper name.
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*/
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void CameraSensorHelperFactory::registerType(CameraSensorHelperFactory *factory)
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{
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std::vector<CameraSensorHelperFactory *> &factories =
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CameraSensorHelperFactory::factories();
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factories.push_back(factory);
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}
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/**
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* \brief Retrieve the list of all camera sensor helper factories
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* \return The list of camera sensor helper factories
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*/
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std::vector<CameraSensorHelperFactory *> &CameraSensorHelperFactory::factories()
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{
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/*
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* The static factories map is defined inside the function to ensure
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* it gets initialized on first use, without any dependency on link
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* order.
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*/
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static std::vector<CameraSensorHelperFactory *> factories;
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return factories;
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}
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/**
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* \fn CameraSensorHelperFactory::createInstance()
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* \brief Create an instance of the CameraSensorHelper corresponding to the
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* factory
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*
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* This virtual function is implemented by the REGISTER_CAMERA_SENSOR_HELPER()
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* macro. It creates a camera sensor helper instance associated with the camera
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* sensor model.
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*
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* \return A pointer to a newly constructed instance of the CameraSensorHelper
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* subclass corresponding to the factory
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*/
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/**
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* \var CameraSensorHelperFactory::name_
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* \brief The name of the factory
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*/
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/**
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* \def REGISTER_CAMERA_SENSOR_HELPER
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* \brief Register a camera sensor helper with the camera sensor helper factory
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* \param[in] name Sensor model name used to register the class
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* \param[in] helper Class name of CameraSensorHelper derived class to register
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*
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* Register a CameraSensorHelper subclass with the factory and make it available
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* to try and match sensors.
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*/
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/* -----------------------------------------------------------------------------
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* Sensor-specific subclasses
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*/
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#ifndef __DOXYGEN__
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class CameraSensorHelperImx219 : public CameraSensorHelper
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{
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public:
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CameraSensorHelperImx219()
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{
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gainType_ = AnalogueGainLinear;
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gainConstants_.linear = { 0, 256, -1, 256 };
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}
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};
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REGISTER_CAMERA_SENSOR_HELPER("imx219", CameraSensorHelperImx219)
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class CameraSensorHelperImx258 : public CameraSensorHelper
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{
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public:
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CameraSensorHelperImx258()
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{
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gainType_ = AnalogueGainLinear;
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gainConstants_.linear = { 0, 512, -1, 512 };
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}
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};
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REGISTER_CAMERA_SENSOR_HELPER("imx258", CameraSensorHelperImx258)
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class CameraSensorHelperOv2740 : public CameraSensorHelper
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{
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public:
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CameraSensorHelperOv2740()
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{
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gainType_ = AnalogueGainLinear;
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gainConstants_.linear = { 1, 0, 0, 128 };
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}
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};
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REGISTER_CAMERA_SENSOR_HELPER("ov2740", CameraSensorHelperOv2740)
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class CameraSensorHelperOv5670 : public CameraSensorHelper
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{
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public:
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CameraSensorHelperOv5670()
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{
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gainType_ = AnalogueGainLinear;
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gainConstants_.linear = { 1, 0, 0, 128 };
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}
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};
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REGISTER_CAMERA_SENSOR_HELPER("ov5670", CameraSensorHelperOv5670)
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class CameraSensorHelperOv5693 : public CameraSensorHelper
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{
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public:
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CameraSensorHelperOv5693()
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{
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gainType_ = AnalogueGainLinear;
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gainConstants_.linear = { 1, 0, 0, 16 };
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}
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};
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REGISTER_CAMERA_SENSOR_HELPER("ov5693", CameraSensorHelperOv5693)
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class CameraSensorHelperOv8865 : public CameraSensorHelper
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{
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public:
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CameraSensorHelperOv8865()
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{
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gainType_ = AnalogueGainLinear;
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gainConstants_.linear = { 1, 0, 0, 128 };
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}
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};
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REGISTER_CAMERA_SENSOR_HELPER("ov8865", CameraSensorHelperOv8865)
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class CameraSensorHelperOv13858 : public CameraSensorHelper
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{
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public:
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CameraSensorHelperOv13858()
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{
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gainType_ = AnalogueGainLinear;
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gainConstants_.linear = { 1, 0, 0, 128 };
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}
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};
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REGISTER_CAMERA_SENSOR_HELPER("ov13858", CameraSensorHelperOv13858)
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#endif /* __DOXYGEN__ */
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} /* namespace ipa */
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} /* namespace libcamera */
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