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Add support for 8, 10 and 12 bpp unpacked bayer input for all 4 standard bayer orders. Tested-by: Bryan O'Donoghue <bryan.odonoghue@linaro.org> # sc8280xp Lenovo x13s Tested-by: Pavel Machek <pavel@ucw.cz> Reviewed-by: Pavel Machek <pavel@ucw.cz> Reviewed-by: Milan Zamazal <mzamazal@redhat.com> Signed-off-by: Kieran Bingham <kieran.bingham@ideasonboard.com> Signed-off-by: Hans de Goede <hdegoede@redhat.com> Signed-off-by: Kieran Bingham <kieran.bingham@ideasonboard.com>
768 lines
22 KiB
C++
768 lines
22 KiB
C++
/* SPDX-License-Identifier: LGPL-2.1-or-later */
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/*
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* Copyright (C) 2023, Linaro Ltd
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* Copyright (C) 2023, Red Hat Inc.
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*
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* Authors:
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* Hans de Goede <hdegoede@redhat.com>
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*
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* debayer_cpu.cpp - CPU based debayering class
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*/
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#include "debayer_cpu.h"
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#include <math.h>
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#include <stdlib.h>
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#include <time.h>
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#include <libcamera/formats.h>
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#include "libcamera/internal/bayer_format.h"
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#include "libcamera/internal/framebuffer.h"
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#include "libcamera/internal/mapped_framebuffer.h"
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namespace libcamera {
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/**
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* \class DebayerCpu
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* \brief Class for debayering on the CPU
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*
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* Implementation for CPU based debayering
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*/
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/**
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* \brief Constructs a DebayerCpu object
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* \param[in] stats Pointer to the stats object to use
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*/
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DebayerCpu::DebayerCpu(std::unique_ptr<SwStatsCpu> stats)
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: stats_(std::move(stats)), gammaCorrection_(1.0)
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{
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/*
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* Reading from uncached buffers may be very slow.
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* In such a case, it's better to copy input buffer data to normal memory.
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* But in case of cached buffers, copying the data is unnecessary overhead.
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* enable_input_memcpy_ makes this behavior configurable. At the moment, we
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* always set it to true as the safer choice but this should be changed in
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* future.
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*/
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enableInputMemcpy_ = true;
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/* Initialize gamma to 1.0 curve */
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for (unsigned int i = 0; i < kGammaLookupSize; i++)
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gamma_[i] = i / (kGammaLookupSize / kRGBLookupSize);
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for (unsigned int i = 0; i < kMaxLineBuffers; i++)
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lineBuffers_[i] = nullptr;
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}
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DebayerCpu::~DebayerCpu()
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{
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for (unsigned int i = 0; i < kMaxLineBuffers; i++)
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free(lineBuffers_[i]);
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}
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#define DECLARE_SRC_POINTERS(pixel_t) \
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const pixel_t *prev = (const pixel_t *)src[0] + xShift_; \
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const pixel_t *curr = (const pixel_t *)src[1] + xShift_; \
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const pixel_t *next = (const pixel_t *)src[2] + xShift_;
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/*
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* RGR
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* GBG
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* RGR
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*/
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#define BGGR_BGR888(p, n, div) \
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*dst++ = blue_[curr[x] / (div)]; \
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*dst++ = green_[(prev[x] + curr[x - p] + curr[x + n] + next[x]) / (4 * (div))]; \
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*dst++ = red_[(prev[x - p] + prev[x + n] + next[x - p] + next[x + n]) / (4 * (div))]; \
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x++;
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/*
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* GBG
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* RGR
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* GBG
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*/
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#define GRBG_BGR888(p, n, div) \
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*dst++ = blue_[(prev[x] + next[x]) / (2 * (div))]; \
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*dst++ = green_[curr[x] / (div)]; \
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*dst++ = red_[(curr[x - p] + curr[x + n]) / (2 * (div))]; \
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x++;
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/*
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* GRG
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* BGB
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* GRG
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*/
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#define GBRG_BGR888(p, n, div) \
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*dst++ = blue_[(curr[x - p] + curr[x + n]) / (2 * (div))]; \
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*dst++ = green_[curr[x] / (div)]; \
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*dst++ = red_[(prev[x] + next[x]) / (2 * (div))]; \
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x++;
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/*
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* BGB
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* GRG
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* BGB
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*/
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#define RGGB_BGR888(p, n, div) \
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*dst++ = blue_[(prev[x - p] + prev[x + n] + next[x - p] + next[x + n]) / (4 * (div))]; \
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*dst++ = green_[(prev[x] + curr[x - p] + curr[x + n] + next[x]) / (4 * (div))]; \
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*dst++ = red_[curr[x] / (div)]; \
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x++;
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void DebayerCpu::debayer8_BGBG_BGR888(uint8_t *dst, const uint8_t *src[])
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{
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DECLARE_SRC_POINTERS(uint8_t)
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for (int x = 0; x < (int)window_.width;) {
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BGGR_BGR888(1, 1, 1)
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GBRG_BGR888(1, 1, 1)
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}
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}
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void DebayerCpu::debayer8_GRGR_BGR888(uint8_t *dst, const uint8_t *src[])
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{
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DECLARE_SRC_POINTERS(uint8_t)
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for (int x = 0; x < (int)window_.width;) {
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GRBG_BGR888(1, 1, 1)
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RGGB_BGR888(1, 1, 1)
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}
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}
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void DebayerCpu::debayer10_BGBG_BGR888(uint8_t *dst, const uint8_t *src[])
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{
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DECLARE_SRC_POINTERS(uint16_t)
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for (int x = 0; x < (int)window_.width;) {
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/* divide values by 4 for 10 -> 8 bpp value */
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BGGR_BGR888(1, 1, 4)
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GBRG_BGR888(1, 1, 4)
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}
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}
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void DebayerCpu::debayer10_GRGR_BGR888(uint8_t *dst, const uint8_t *src[])
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{
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DECLARE_SRC_POINTERS(uint16_t)
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for (int x = 0; x < (int)window_.width;) {
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/* divide values by 4 for 10 -> 8 bpp value */
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GRBG_BGR888(1, 1, 4)
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RGGB_BGR888(1, 1, 4)
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}
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}
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void DebayerCpu::debayer12_BGBG_BGR888(uint8_t *dst, const uint8_t *src[])
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{
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DECLARE_SRC_POINTERS(uint16_t)
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for (int x = 0; x < (int)window_.width;) {
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/* divide values by 16 for 12 -> 8 bpp value */
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BGGR_BGR888(1, 1, 16)
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GBRG_BGR888(1, 1, 16)
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}
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}
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void DebayerCpu::debayer12_GRGR_BGR888(uint8_t *dst, const uint8_t *src[])
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{
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DECLARE_SRC_POINTERS(uint16_t)
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for (int x = 0; x < (int)window_.width;) {
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/* divide values by 16 for 12 -> 8 bpp value */
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GRBG_BGR888(1, 1, 16)
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RGGB_BGR888(1, 1, 16)
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}
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}
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void DebayerCpu::debayer10P_BGBG_BGR888(uint8_t *dst, const uint8_t *src[])
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{
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const int widthInBytes = window_.width * 5 / 4;
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const uint8_t *prev = src[0];
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const uint8_t *curr = src[1];
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const uint8_t *next = src[2];
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/*
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* For the first pixel getting a pixel from the previous column uses
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* x - 2 to skip the 5th byte with least-significant bits for 4 pixels.
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* Same for last pixel (uses x + 2) and looking at the next column.
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*/
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for (int x = 0; x < widthInBytes;) {
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/* First pixel */
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BGGR_BGR888(2, 1, 1)
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/* Second pixel BGGR -> GBRG */
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GBRG_BGR888(1, 1, 1)
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/* Same thing for third and fourth pixels */
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BGGR_BGR888(1, 1, 1)
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GBRG_BGR888(1, 2, 1)
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/* Skip 5th src byte with 4 x 2 least-significant-bits */
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x++;
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}
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}
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void DebayerCpu::debayer10P_GRGR_BGR888(uint8_t *dst, const uint8_t *src[])
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{
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const int widthInBytes = window_.width * 5 / 4;
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const uint8_t *prev = src[0];
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const uint8_t *curr = src[1];
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const uint8_t *next = src[2];
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for (int x = 0; x < widthInBytes;) {
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/* First pixel */
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GRBG_BGR888(2, 1, 1)
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/* Second pixel GRBG -> RGGB */
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RGGB_BGR888(1, 1, 1)
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/* Same thing for third and fourth pixels */
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GRBG_BGR888(1, 1, 1)
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RGGB_BGR888(1, 2, 1)
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/* Skip 5th src byte with 4 x 2 least-significant-bits */
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x++;
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}
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}
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void DebayerCpu::debayer10P_GBGB_BGR888(uint8_t *dst, const uint8_t *src[])
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{
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const int widthInBytes = window_.width * 5 / 4;
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const uint8_t *prev = src[0];
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const uint8_t *curr = src[1];
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const uint8_t *next = src[2];
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for (int x = 0; x < widthInBytes;) {
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/* Even pixel */
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GBRG_BGR888(2, 1, 1)
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/* Odd pixel GBGR -> BGGR */
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BGGR_BGR888(1, 1, 1)
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/* Same thing for next 2 pixels */
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GBRG_BGR888(1, 1, 1)
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BGGR_BGR888(1, 2, 1)
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/* Skip 5th src byte with 4 x 2 least-significant-bits */
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x++;
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}
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}
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void DebayerCpu::debayer10P_RGRG_BGR888(uint8_t *dst, const uint8_t *src[])
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{
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const int widthInBytes = window_.width * 5 / 4;
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const uint8_t *prev = src[0];
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const uint8_t *curr = src[1];
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const uint8_t *next = src[2];
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for (int x = 0; x < widthInBytes;) {
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/* Even pixel */
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RGGB_BGR888(2, 1, 1)
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/* Odd pixel RGGB -> GRBG */
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GRBG_BGR888(1, 1, 1)
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/* Same thing for next 2 pixels */
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RGGB_BGR888(1, 1, 1)
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GRBG_BGR888(1, 2, 1)
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/* Skip 5th src byte with 4 x 2 least-significant-bits */
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x++;
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}
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}
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static bool isStandardBayerOrder(BayerFormat::Order order)
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{
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return order == BayerFormat::BGGR || order == BayerFormat::GBRG ||
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order == BayerFormat::GRBG || order == BayerFormat::RGGB;
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}
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/*
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* Setup the Debayer object according to the passed in parameters.
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* Return 0 on success, a negative errno value on failure
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* (unsupported parameters).
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*/
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int DebayerCpu::getInputConfig(PixelFormat inputFormat, DebayerInputConfig &config)
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{
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BayerFormat bayerFormat =
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BayerFormat::fromPixelFormat(inputFormat);
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if ((bayerFormat.bitDepth == 8 || bayerFormat.bitDepth == 10 || bayerFormat.bitDepth == 12) &&
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bayerFormat.packing == BayerFormat::Packing::None &&
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isStandardBayerOrder(bayerFormat.order)) {
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config.bpp = (bayerFormat.bitDepth + 7) & ~7;
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config.patternSize.width = 2;
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config.patternSize.height = 2;
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config.outputFormats = std::vector<PixelFormat>({ formats::RGB888 });
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return 0;
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}
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if (bayerFormat.bitDepth == 10 &&
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bayerFormat.packing == BayerFormat::Packing::CSI2 &&
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isStandardBayerOrder(bayerFormat.order)) {
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config.bpp = 10;
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config.patternSize.width = 4; /* 5 bytes per *4* pixels */
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config.patternSize.height = 2;
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config.outputFormats = std::vector<PixelFormat>({ formats::RGB888 });
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return 0;
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}
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LOG(Debayer, Info)
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<< "Unsupported input format " << inputFormat.toString();
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return -EINVAL;
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}
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int DebayerCpu::getOutputConfig(PixelFormat outputFormat, DebayerOutputConfig &config)
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{
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if (outputFormat == formats::RGB888) {
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config.bpp = 24;
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return 0;
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}
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LOG(Debayer, Info)
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<< "Unsupported output format " << outputFormat.toString();
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return -EINVAL;
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}
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/*
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* Check for standard Bayer orders and set xShift_ and swap debayer0/1, so that
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* a single pair of BGGR debayer functions can be used for all 4 standard orders.
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*/
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int DebayerCpu::setupStandardBayerOrder(BayerFormat::Order order)
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{
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switch (order) {
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case BayerFormat::BGGR:
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break;
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case BayerFormat::GBRG:
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xShift_ = 1; /* BGGR -> GBRG */
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break;
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case BayerFormat::GRBG:
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std::swap(debayer0_, debayer1_); /* BGGR -> GRBG */
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break;
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case BayerFormat::RGGB:
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xShift_ = 1; /* BGGR -> GBRG */
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std::swap(debayer0_, debayer1_); /* GBRG -> RGGB */
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break;
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default:
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return -EINVAL;
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}
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return 0;
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}
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/* \todo This ignores outputFormat since there is only 1 supported outputFormat
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for now */
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int DebayerCpu::setDebayerFunctions(PixelFormat inputFormat, [[maybe_unused]] PixelFormat outputFormat)
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{
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BayerFormat bayerFormat =
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BayerFormat::fromPixelFormat(inputFormat);
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xShift_ = 0;
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if ((bayerFormat.bitDepth == 8 || bayerFormat.bitDepth == 10 || bayerFormat.bitDepth == 12) &&
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bayerFormat.packing == BayerFormat::Packing::None &&
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isStandardBayerOrder(bayerFormat.order)) {
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switch (bayerFormat.bitDepth) {
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case 8:
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debayer0_ = &DebayerCpu::debayer8_BGBG_BGR888;
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debayer1_ = &DebayerCpu::debayer8_GRGR_BGR888;
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break;
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case 10:
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debayer0_ = &DebayerCpu::debayer10_BGBG_BGR888;
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debayer1_ = &DebayerCpu::debayer10_GRGR_BGR888;
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break;
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case 12:
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debayer0_ = &DebayerCpu::debayer12_BGBG_BGR888;
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debayer1_ = &DebayerCpu::debayer12_GRGR_BGR888;
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break;
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}
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setupStandardBayerOrder(bayerFormat.order);
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return 0;
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}
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if (bayerFormat.bitDepth == 10 &&
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bayerFormat.packing == BayerFormat::Packing::CSI2) {
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switch (bayerFormat.order) {
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case BayerFormat::BGGR:
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debayer0_ = &DebayerCpu::debayer10P_BGBG_BGR888;
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debayer1_ = &DebayerCpu::debayer10P_GRGR_BGR888;
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return 0;
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case BayerFormat::GBRG:
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debayer0_ = &DebayerCpu::debayer10P_GBGB_BGR888;
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debayer1_ = &DebayerCpu::debayer10P_RGRG_BGR888;
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return 0;
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case BayerFormat::GRBG:
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debayer0_ = &DebayerCpu::debayer10P_GRGR_BGR888;
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debayer1_ = &DebayerCpu::debayer10P_BGBG_BGR888;
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return 0;
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case BayerFormat::RGGB:
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debayer0_ = &DebayerCpu::debayer10P_RGRG_BGR888;
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debayer1_ = &DebayerCpu::debayer10P_GBGB_BGR888;
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return 0;
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default:
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break;
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}
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}
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LOG(Debayer, Error) << "Unsupported input output format combination";
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return -EINVAL;
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}
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int DebayerCpu::configure(const StreamConfiguration &inputCfg,
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const std::vector<std::reference_wrapper<StreamConfiguration>> &outputCfgs)
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{
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if (getInputConfig(inputCfg.pixelFormat, inputConfig_) != 0)
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return -EINVAL;
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if (stats_->configure(inputCfg) != 0)
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return -EINVAL;
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const Size &statsPatternSize = stats_->patternSize();
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if (inputConfig_.patternSize.width != statsPatternSize.width ||
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inputConfig_.patternSize.height != statsPatternSize.height) {
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LOG(Debayer, Error)
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<< "mismatching stats and debayer pattern sizes for "
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<< inputCfg.pixelFormat.toString();
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return -EINVAL;
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}
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inputConfig_.stride = inputCfg.stride;
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if (outputCfgs.size() != 1) {
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LOG(Debayer, Error)
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<< "Unsupported number of output streams: "
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<< outputCfgs.size();
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return -EINVAL;
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}
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const StreamConfiguration &outputCfg = outputCfgs[0];
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SizeRange outSizeRange = sizes(inputCfg.pixelFormat, inputCfg.size);
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std::tie(outputConfig_.stride, outputConfig_.frameSize) =
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strideAndFrameSize(outputCfg.pixelFormat, outputCfg.size);
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if (!outSizeRange.contains(outputCfg.size) || outputConfig_.stride != outputCfg.stride) {
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LOG(Debayer, Error)
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<< "Invalid output size/stride: "
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<< "\n " << outputCfg.size << " (" << outSizeRange << ")"
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<< "\n " << outputCfg.stride << " (" << outputConfig_.stride << ")";
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return -EINVAL;
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}
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if (setDebayerFunctions(inputCfg.pixelFormat, outputCfg.pixelFormat) != 0)
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return -EINVAL;
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window_.x = ((inputCfg.size.width - outputCfg.size.width) / 2) &
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~(inputConfig_.patternSize.width - 1);
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window_.y = ((inputCfg.size.height - outputCfg.size.height) / 2) &
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~(inputConfig_.patternSize.height - 1);
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window_.width = outputCfg.size.width;
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window_.height = outputCfg.size.height;
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/* Don't pass x,y since process() already adjusts src before passing it */
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stats_->setWindow(Rectangle(window_.size()));
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/* pad with patternSize.Width on both left and right side */
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lineBufferPadding_ = inputConfig_.patternSize.width * inputConfig_.bpp / 8;
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lineBufferLength_ = window_.width * inputConfig_.bpp / 8 +
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2 * lineBufferPadding_;
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for (unsigned int i = 0;
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i < (inputConfig_.patternSize.height + 1) && enableInputMemcpy_;
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i++) {
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free(lineBuffers_[i]);
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lineBuffers_[i] = (uint8_t *)malloc(lineBufferLength_);
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if (!lineBuffers_[i])
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return -ENOMEM;
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}
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measuredFrames_ = 0;
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frameProcessTime_ = 0;
|
|
|
|
return 0;
|
|
}
|
|
|
|
/*
|
|
* Get width and height at which the bayer-pattern repeats.
|
|
* Return pattern-size or an empty Size for an unsupported inputFormat.
|
|
*/
|
|
Size DebayerCpu::patternSize(PixelFormat inputFormat)
|
|
{
|
|
DebayerCpu::DebayerInputConfig config;
|
|
|
|
if (getInputConfig(inputFormat, config) != 0)
|
|
return {};
|
|
|
|
return config.patternSize;
|
|
}
|
|
|
|
std::vector<PixelFormat> DebayerCpu::formats(PixelFormat inputFormat)
|
|
{
|
|
DebayerCpu::DebayerInputConfig config;
|
|
|
|
if (getInputConfig(inputFormat, config) != 0)
|
|
return std::vector<PixelFormat>();
|
|
|
|
return config.outputFormats;
|
|
}
|
|
|
|
std::tuple<unsigned int, unsigned int>
|
|
DebayerCpu::strideAndFrameSize(const PixelFormat &outputFormat, const Size &size)
|
|
{
|
|
DebayerCpu::DebayerOutputConfig config;
|
|
|
|
if (getOutputConfig(outputFormat, config) != 0)
|
|
return std::make_tuple(0, 0);
|
|
|
|
/* round up to multiple of 8 for 64 bits alignment */
|
|
unsigned int stride = (size.width * config.bpp / 8 + 7) & ~7;
|
|
|
|
return std::make_tuple(stride, stride * size.height);
|
|
}
|
|
|
|
void DebayerCpu::setupInputMemcpy(const uint8_t *linePointers[])
|
|
{
|
|
const unsigned int patternHeight = inputConfig_.patternSize.height;
|
|
|
|
if (!enableInputMemcpy_)
|
|
return;
|
|
|
|
for (unsigned int i = 0; i < patternHeight; i++) {
|
|
memcpy(lineBuffers_[i], linePointers[i + 1] - lineBufferPadding_,
|
|
lineBufferLength_);
|
|
linePointers[i + 1] = lineBuffers_[i] + lineBufferPadding_;
|
|
}
|
|
|
|
/* Point lineBufferIndex_ to first unused lineBuffer */
|
|
lineBufferIndex_ = patternHeight;
|
|
}
|
|
|
|
void DebayerCpu::shiftLinePointers(const uint8_t *linePointers[], const uint8_t *src)
|
|
{
|
|
const unsigned int patternHeight = inputConfig_.patternSize.height;
|
|
|
|
for (unsigned int i = 0; i < patternHeight; i++)
|
|
linePointers[i] = linePointers[i + 1];
|
|
|
|
linePointers[patternHeight] = src +
|
|
(patternHeight / 2) * (int)inputConfig_.stride;
|
|
}
|
|
|
|
void DebayerCpu::memcpyNextLine(const uint8_t *linePointers[])
|
|
{
|
|
const unsigned int patternHeight = inputConfig_.patternSize.height;
|
|
|
|
if (!enableInputMemcpy_)
|
|
return;
|
|
|
|
memcpy(lineBuffers_[lineBufferIndex_], linePointers[patternHeight] - lineBufferPadding_,
|
|
lineBufferLength_);
|
|
linePointers[patternHeight] = lineBuffers_[lineBufferIndex_] + lineBufferPadding_;
|
|
|
|
lineBufferIndex_ = (lineBufferIndex_ + 1) % (patternHeight + 1);
|
|
}
|
|
|
|
void DebayerCpu::process2(const uint8_t *src, uint8_t *dst)
|
|
{
|
|
unsigned int yEnd = window_.y + window_.height;
|
|
/* Holds [0] previous- [1] current- [2] next-line */
|
|
const uint8_t *linePointers[3];
|
|
|
|
/* Adjust src to top left corner of the window */
|
|
src += window_.y * inputConfig_.stride + window_.x * inputConfig_.bpp / 8;
|
|
|
|
/* [x] becomes [x - 1] after initial shiftLinePointers() call */
|
|
if (window_.y) {
|
|
linePointers[1] = src - inputConfig_.stride; /* previous-line */
|
|
linePointers[2] = src;
|
|
} else {
|
|
/* window_.y == 0, use the next line as prev line */
|
|
linePointers[1] = src + inputConfig_.stride;
|
|
linePointers[2] = src;
|
|
/* Last 2 lines also need special handling */
|
|
yEnd -= 2;
|
|
}
|
|
|
|
setupInputMemcpy(linePointers);
|
|
|
|
for (unsigned int y = window_.y; y < yEnd; y += 2) {
|
|
shiftLinePointers(linePointers, src);
|
|
memcpyNextLine(linePointers);
|
|
stats_->processLine0(y, linePointers);
|
|
(this->*debayer0_)(dst, linePointers);
|
|
src += inputConfig_.stride;
|
|
dst += outputConfig_.stride;
|
|
|
|
shiftLinePointers(linePointers, src);
|
|
memcpyNextLine(linePointers);
|
|
(this->*debayer1_)(dst, linePointers);
|
|
src += inputConfig_.stride;
|
|
dst += outputConfig_.stride;
|
|
}
|
|
|
|
if (window_.y == 0) {
|
|
shiftLinePointers(linePointers, src);
|
|
memcpyNextLine(linePointers);
|
|
stats_->processLine0(yEnd, linePointers);
|
|
(this->*debayer0_)(dst, linePointers);
|
|
src += inputConfig_.stride;
|
|
dst += outputConfig_.stride;
|
|
|
|
shiftLinePointers(linePointers, src);
|
|
/* next line may point outside of src, use prev. */
|
|
linePointers[2] = linePointers[0];
|
|
(this->*debayer1_)(dst, linePointers);
|
|
src += inputConfig_.stride;
|
|
dst += outputConfig_.stride;
|
|
}
|
|
}
|
|
|
|
void DebayerCpu::process4(const uint8_t *src, uint8_t *dst)
|
|
{
|
|
const unsigned int yEnd = window_.y + window_.height;
|
|
/*
|
|
* This holds pointers to [0] 2-lines-up [1] 1-line-up [2] current-line
|
|
* [3] 1-line-down [4] 2-lines-down.
|
|
*/
|
|
const uint8_t *linePointers[5];
|
|
|
|
/* Adjust src to top left corner of the window */
|
|
src += window_.y * inputConfig_.stride + window_.x * inputConfig_.bpp / 8;
|
|
|
|
/* [x] becomes [x - 1] after initial shiftLinePointers() call */
|
|
linePointers[1] = src - 2 * inputConfig_.stride;
|
|
linePointers[2] = src - inputConfig_.stride;
|
|
linePointers[3] = src;
|
|
linePointers[4] = src + inputConfig_.stride;
|
|
|
|
setupInputMemcpy(linePointers);
|
|
|
|
for (unsigned int y = window_.y; y < yEnd; y += 4) {
|
|
shiftLinePointers(linePointers, src);
|
|
memcpyNextLine(linePointers);
|
|
stats_->processLine0(y, linePointers);
|
|
(this->*debayer0_)(dst, linePointers);
|
|
src += inputConfig_.stride;
|
|
dst += outputConfig_.stride;
|
|
|
|
shiftLinePointers(linePointers, src);
|
|
memcpyNextLine(linePointers);
|
|
(this->*debayer1_)(dst, linePointers);
|
|
src += inputConfig_.stride;
|
|
dst += outputConfig_.stride;
|
|
|
|
shiftLinePointers(linePointers, src);
|
|
memcpyNextLine(linePointers);
|
|
stats_->processLine2(y, linePointers);
|
|
(this->*debayer2_)(dst, linePointers);
|
|
src += inputConfig_.stride;
|
|
dst += outputConfig_.stride;
|
|
|
|
shiftLinePointers(linePointers, src);
|
|
memcpyNextLine(linePointers);
|
|
(this->*debayer3_)(dst, linePointers);
|
|
src += inputConfig_.stride;
|
|
dst += outputConfig_.stride;
|
|
}
|
|
}
|
|
|
|
static inline int64_t timeDiff(timespec &after, timespec &before)
|
|
{
|
|
return (after.tv_sec - before.tv_sec) * 1000000000LL +
|
|
(int64_t)after.tv_nsec - (int64_t)before.tv_nsec;
|
|
}
|
|
|
|
void DebayerCpu::process(FrameBuffer *input, FrameBuffer *output, DebayerParams params)
|
|
{
|
|
timespec frameStartTime;
|
|
|
|
if (measuredFrames_ < DebayerCpu::kLastFrameToMeasure) {
|
|
frameStartTime = {};
|
|
clock_gettime(CLOCK_MONOTONIC_RAW, &frameStartTime);
|
|
}
|
|
|
|
/* Apply DebayerParams */
|
|
if (params.gamma != gammaCorrection_) {
|
|
for (unsigned int i = 0; i < kGammaLookupSize; i++)
|
|
gamma_[i] = UINT8_MAX * powf(i / (kGammaLookupSize - 1.0), params.gamma);
|
|
|
|
gammaCorrection_ = params.gamma;
|
|
}
|
|
|
|
for (unsigned int i = 0; i < kRGBLookupSize; i++) {
|
|
constexpr unsigned int div =
|
|
kRGBLookupSize * DebayerParams::kGain10 / kGammaLookupSize;
|
|
unsigned int idx;
|
|
|
|
/* Apply gamma after gain! */
|
|
idx = std::min({ i * params.gainR / div, (kGammaLookupSize - 1) });
|
|
red_[i] = gamma_[idx];
|
|
|
|
idx = std::min({ i * params.gainG / div, (kGammaLookupSize - 1) });
|
|
green_[i] = gamma_[idx];
|
|
|
|
idx = std::min({ i * params.gainB / div, (kGammaLookupSize - 1) });
|
|
blue_[i] = gamma_[idx];
|
|
}
|
|
|
|
/* Copy metadata from the input buffer */
|
|
FrameMetadata &metadata = output->_d()->metadata();
|
|
metadata.status = input->metadata().status;
|
|
metadata.sequence = input->metadata().sequence;
|
|
metadata.timestamp = input->metadata().timestamp;
|
|
|
|
MappedFrameBuffer in(input, MappedFrameBuffer::MapFlag::Read);
|
|
MappedFrameBuffer out(output, MappedFrameBuffer::MapFlag::Write);
|
|
if (!in.isValid() || !out.isValid()) {
|
|
LOG(Debayer, Error) << "mmap-ing buffer(s) failed";
|
|
metadata.status = FrameMetadata::FrameError;
|
|
return;
|
|
}
|
|
|
|
stats_->startFrame();
|
|
|
|
if (inputConfig_.patternSize.height == 2)
|
|
process2(in.planes()[0].data(), out.planes()[0].data());
|
|
else
|
|
process4(in.planes()[0].data(), out.planes()[0].data());
|
|
|
|
metadata.planes()[0].bytesused = out.planes()[0].size();
|
|
|
|
/* Measure before emitting signals */
|
|
if (measuredFrames_ < DebayerCpu::kLastFrameToMeasure &&
|
|
++measuredFrames_ > DebayerCpu::kFramesToSkip) {
|
|
timespec frameEndTime = {};
|
|
clock_gettime(CLOCK_MONOTONIC_RAW, &frameEndTime);
|
|
frameProcessTime_ += timeDiff(frameEndTime, frameStartTime);
|
|
if (measuredFrames_ == DebayerCpu::kLastFrameToMeasure) {
|
|
const unsigned int measuredFrames = DebayerCpu::kLastFrameToMeasure -
|
|
DebayerCpu::kFramesToSkip;
|
|
LOG(Debayer, Info)
|
|
<< "Processed " << measuredFrames
|
|
<< " frames in " << frameProcessTime_ / 1000 << "us, "
|
|
<< frameProcessTime_ / (1000 * measuredFrames)
|
|
<< " us/frame";
|
|
}
|
|
}
|
|
|
|
stats_->finishFrame();
|
|
outputBufferReady.emit(output);
|
|
inputBufferReady.emit(input);
|
|
}
|
|
|
|
SizeRange DebayerCpu::sizes(PixelFormat inputFormat, const Size &inputSize)
|
|
{
|
|
Size patternSize = this->patternSize(inputFormat);
|
|
unsigned int borderHeight = patternSize.height;
|
|
|
|
if (patternSize.isNull())
|
|
return {};
|
|
|
|
/* No need for top/bottom border with a pattern height of 2 */
|
|
if (patternSize.height == 2)
|
|
borderHeight = 0;
|
|
|
|
/*
|
|
* For debayer interpolation a border is kept around the entire image
|
|
* and the minimum output size is pattern-height x pattern-width.
|
|
*/
|
|
if (inputSize.width < (3 * patternSize.width) ||
|
|
inputSize.height < (2 * borderHeight + patternSize.height)) {
|
|
LOG(Debayer, Warning)
|
|
<< "Input format size too small: " << inputSize.toString();
|
|
return {};
|
|
}
|
|
|
|
return SizeRange(Size(patternSize.width, patternSize.height),
|
|
Size((inputSize.width - 2 * patternSize.width) & ~(patternSize.width - 1),
|
|
(inputSize.height - 2 * borderHeight) & ~(patternSize.height - 1)),
|
|
patternSize.width, patternSize.height);
|
|
}
|
|
|
|
} /* namespace libcamera */
|