ipa: raspberrypi: Add hardware configuration to the controller

Add a new Controller::HardwareConfig structure that captures the
hardware statistics grid/histogram sizes and pipeline widths. This
ensures there is a single centralised places for these parameters.

Add a getHardwareConfig() helper function to retrieve these values for a
given hardware target.

Update the statistics populating routine in the IPA to use the values
from this structure instead of the hardcoded numbers.

Signed-off-by: Naushir Patuck <naush@raspberrypi.com>
Reviewed-by: David Plowman <david.plowman@raspberrypi.com>
Reviewed-by: Kieran Bingham <kieran.bingham@ideasonboard.com>
Signed-off-by: Kieran Bingham <kieran.bingham@ideasonboard.com>
This commit is contained in:
Naushir Patuck 2023-03-27 13:20:22 +01:00 committed by Kieran Bingham
parent cf6df17958
commit f6cc78b446
4 changed files with 54 additions and 13 deletions

View file

@ -1394,20 +1394,19 @@ RPiController::StatisticsPtr IPARPi::fillStatistics(bcm2835_isp_stats *stats) co
{
using namespace RPiController;
const Controller::HardwareConfig &hw = controller_.getHardwareConfig();
unsigned int i;
StatisticsPtr statistics =
std::make_unique<Statistics>(Statistics::AgcStatsPos::PreWb, Statistics::ColourStatsPos::PostLsc);
/* RGB histograms are not used, so do not populate them. */
statistics->yHist = RPiController::Histogram(stats->hist[0].g_hist, NUM_HISTOGRAM_BINS);
statistics->yHist = RPiController::Histogram(stats->hist[0].g_hist,
hw.numHistogramBins);
/*
* All region sums are based on a 13-bit pipeline bit-depth. Normalise
* this to 16-bits for the AGC/AWB/ALSC algorithms.
*/
constexpr unsigned int scale = Statistics::NormalisationFactorPow2 - 13;
/* All region sums are based on a 16-bit normalised pipeline bit-depth. */
unsigned int scale = Statistics::NormalisationFactorPow2 - hw.pipelineWidth;
statistics->awbRegions.init({ DEFAULT_AWB_REGIONS_X, DEFAULT_AWB_REGIONS_Y });
statistics->awbRegions.init(hw.awbRegions);
for (i = 0; i < statistics->awbRegions.numRegions(); i++)
statistics->awbRegions.set(i, { { stats->awb_stats[i].r_sum << scale,
stats->awb_stats[i].g_sum << scale,
@ -1415,11 +1414,7 @@ RPiController::StatisticsPtr IPARPi::fillStatistics(bcm2835_isp_stats *stats) co
stats->awb_stats[i].counted,
stats->awb_stats[i].notcounted });
/*
* There are only ever 15 regions computed by the firmware due to zoning,
* but the HW defines AGC_REGIONS == 16!
*/
statistics->agcRegions.init(15);
statistics->agcRegions.init(hw.agcRegions);
for (i = 0; i < statistics->agcRegions.numRegions(); i++)
statistics->agcRegions.set(i, { { stats->agc_stats[i].r_sum << scale,
stats->agc_stats[i].g_sum << scale,
@ -1427,7 +1422,7 @@ RPiController::StatisticsPtr IPARPi::fillStatistics(bcm2835_isp_stats *stats) co
stats->agc_stats[i].counted,
stats->awb_stats[i].notcounted });
statistics->focusRegions.init({ 4, 3 });
statistics->focusRegions.init(hw.focusRegions);
for (i = 0; i < statistics->focusRegions.numRegions(); i++)
statistics->focusRegions.set(i, { stats->focus_stats[i].contrast_val[1][1] / 1000,
stats->focus_stats[i].contrast_val_num[1][1],