445 lines
16 KiB
C
445 lines
16 KiB
C
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/*
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* Copyright (c) 2011 Stefano Sabatini
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* This file is part of FFmpeg.
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*
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* FFmpeg is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* FFmpeg is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with FFmpeg; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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/**
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* @file
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* filter for showing textual video frame information
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*/
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#include <inttypes.h>
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#include "libavutil/bswap.h"
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#include "libavutil/adler32.h"
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#include "libavutil/display.h"
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#include "libavutil/imgutils.h"
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#include "libavutil/internal.h"
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#include "libavutil/opt.h"
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#include "libavutil/pixdesc.h"
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#include "libavutil/spherical.h"
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#include "libavutil/stereo3d.h"
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#include "libavutil/timestamp.h"
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#include "libavutil/timecode.h"
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#include "libavutil/mastering_display_metadata.h"
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#include "libavutil/video_enc_params.h"
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#include "avfilter.h"
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#include "internal.h"
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#include "video.h"
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typedef struct ShowInfoContext {
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const AVClass *class;
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int calculate_checksums;
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} ShowInfoContext;
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#define OFFSET(x) offsetof(ShowInfoContext, x)
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#define VF AV_OPT_FLAG_VIDEO_PARAM|AV_OPT_FLAG_FILTERING_PARAM
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static const AVOption showinfo_options[] = {
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{ "checksum", "calculate checksums", OFFSET(calculate_checksums), AV_OPT_TYPE_BOOL, {.i64=1}, 0, 1, VF },
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{ NULL }
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};
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AVFILTER_DEFINE_CLASS(showinfo);
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static void dump_spherical(AVFilterContext *ctx, AVFrame *frame, AVFrameSideData *sd)
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{
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AVSphericalMapping *spherical = (AVSphericalMapping *)sd->data;
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double yaw, pitch, roll;
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av_log(ctx, AV_LOG_INFO, "spherical information: ");
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if (sd->size < sizeof(*spherical)) {
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av_log(ctx, AV_LOG_ERROR, "invalid data");
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return;
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}
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if (spherical->projection == AV_SPHERICAL_EQUIRECTANGULAR)
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av_log(ctx, AV_LOG_INFO, "equirectangular ");
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else if (spherical->projection == AV_SPHERICAL_CUBEMAP)
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av_log(ctx, AV_LOG_INFO, "cubemap ");
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else if (spherical->projection == AV_SPHERICAL_EQUIRECTANGULAR_TILE)
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av_log(ctx, AV_LOG_INFO, "tiled equirectangular ");
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else {
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av_log(ctx, AV_LOG_WARNING, "unknown");
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return;
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}
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yaw = ((double)spherical->yaw) / (1 << 16);
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pitch = ((double)spherical->pitch) / (1 << 16);
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roll = ((double)spherical->roll) / (1 << 16);
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av_log(ctx, AV_LOG_INFO, "(%f/%f/%f) ", yaw, pitch, roll);
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if (spherical->projection == AV_SPHERICAL_EQUIRECTANGULAR_TILE) {
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size_t l, t, r, b;
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av_spherical_tile_bounds(spherical, frame->width, frame->height,
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&l, &t, &r, &b);
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av_log(ctx, AV_LOG_INFO,
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"[%"SIZE_SPECIFIER", %"SIZE_SPECIFIER", %"SIZE_SPECIFIER", %"SIZE_SPECIFIER"] ",
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l, t, r, b);
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} else if (spherical->projection == AV_SPHERICAL_CUBEMAP) {
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av_log(ctx, AV_LOG_INFO, "[pad %"PRIu32"] ", spherical->padding);
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}
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}
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static void dump_stereo3d(AVFilterContext *ctx, AVFrameSideData *sd)
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{
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AVStereo3D *stereo;
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av_log(ctx, AV_LOG_INFO, "stereoscopic information: ");
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if (sd->size < sizeof(*stereo)) {
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av_log(ctx, AV_LOG_ERROR, "invalid data");
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return;
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}
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stereo = (AVStereo3D *)sd->data;
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av_log(ctx, AV_LOG_INFO, "type - %s", av_stereo3d_type_name(stereo->type));
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if (stereo->flags & AV_STEREO3D_FLAG_INVERT)
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av_log(ctx, AV_LOG_INFO, " (inverted)");
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}
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static void dump_roi(AVFilterContext *ctx, AVFrameSideData *sd)
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{
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int nb_rois;
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const AVRegionOfInterest *roi;
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uint32_t roi_size;
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roi = (const AVRegionOfInterest *)sd->data;
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roi_size = roi->self_size;
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if (!roi_size || sd->size % roi_size != 0) {
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av_log(ctx, AV_LOG_ERROR, "Invalid AVRegionOfInterest.self_size.");
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return;
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}
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nb_rois = sd->size / roi_size;
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av_log(ctx, AV_LOG_INFO, "Regions Of Interest(RoI) information: ");
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for (int i = 0; i < nb_rois; i++) {
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roi = (const AVRegionOfInterest *)(sd->data + roi_size * i);
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av_log(ctx, AV_LOG_INFO, "index: %d, region: (%d, %d)/(%d, %d), qp offset: %d/%d.\n",
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i, roi->left, roi->top, roi->right, roi->bottom, roi->qoffset.num, roi->qoffset.den);
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}
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}
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static void dump_mastering_display(AVFilterContext *ctx, AVFrameSideData *sd)
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{
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AVMasteringDisplayMetadata *mastering_display;
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av_log(ctx, AV_LOG_INFO, "mastering display: ");
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if (sd->size < sizeof(*mastering_display)) {
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av_log(ctx, AV_LOG_ERROR, "invalid data");
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return;
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}
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mastering_display = (AVMasteringDisplayMetadata *)sd->data;
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av_log(ctx, AV_LOG_INFO, "has_primaries:%d has_luminance:%d "
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"r(%5.4f,%5.4f) g(%5.4f,%5.4f) b(%5.4f %5.4f) wp(%5.4f, %5.4f) "
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"min_luminance=%f, max_luminance=%f",
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mastering_display->has_primaries, mastering_display->has_luminance,
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av_q2d(mastering_display->display_primaries[0][0]),
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av_q2d(mastering_display->display_primaries[0][1]),
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av_q2d(mastering_display->display_primaries[1][0]),
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av_q2d(mastering_display->display_primaries[1][1]),
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av_q2d(mastering_display->display_primaries[2][0]),
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av_q2d(mastering_display->display_primaries[2][1]),
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av_q2d(mastering_display->white_point[0]), av_q2d(mastering_display->white_point[1]),
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av_q2d(mastering_display->min_luminance), av_q2d(mastering_display->max_luminance));
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}
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static void dump_content_light_metadata(AVFilterContext *ctx, AVFrameSideData *sd)
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{
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AVContentLightMetadata* metadata = (AVContentLightMetadata*)sd->data;
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av_log(ctx, AV_LOG_INFO, "Content Light Level information: "
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"MaxCLL=%d, MaxFALL=%d",
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metadata->MaxCLL, metadata->MaxFALL);
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}
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static void dump_video_enc_params(AVFilterContext *ctx, AVFrameSideData *sd)
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{
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AVVideoEncParams *par = (AVVideoEncParams*)sd->data;
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int plane, acdc;
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av_log(ctx, AV_LOG_INFO, "video encoding parameters: type %d; ", par->type);
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if (par->qp)
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av_log(ctx, AV_LOG_INFO, "qp=%d; ", par->qp);
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for (plane = 0; plane < FF_ARRAY_ELEMS(par->delta_qp); plane++)
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for (acdc = 0; acdc < FF_ARRAY_ELEMS(par->delta_qp[plane]); acdc++) {
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int delta_qp = par->delta_qp[plane][acdc];
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if (delta_qp)
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av_log(ctx, AV_LOG_INFO, "delta_qp[%d][%d]=%d; ",
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plane, acdc, delta_qp);
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}
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if (par->nb_blocks)
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av_log(ctx, AV_LOG_INFO, "%u blocks; ", par->nb_blocks);
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}
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static void dump_color_property(AVFilterContext *ctx, AVFrame *frame)
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{
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const char *color_range_str = av_color_range_name(frame->color_range);
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const char *colorspace_str = av_color_space_name(frame->colorspace);
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const char *color_primaries_str = av_color_primaries_name(frame->color_primaries);
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const char *color_trc_str = av_color_transfer_name(frame->color_trc);
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if (!color_range_str || frame->color_range == AVCOL_RANGE_UNSPECIFIED) {
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av_log(ctx, AV_LOG_INFO, "color_range:unknown");
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} else {
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av_log(ctx, AV_LOG_INFO, "color_range:%s", color_range_str);
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}
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if (!colorspace_str || frame->colorspace == AVCOL_SPC_UNSPECIFIED) {
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av_log(ctx, AV_LOG_INFO, " color_space:unknown");
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} else {
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av_log(ctx, AV_LOG_INFO, " color_space:%s", colorspace_str);
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}
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if (!color_primaries_str || frame->color_primaries == AVCOL_PRI_UNSPECIFIED) {
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av_log(ctx, AV_LOG_INFO, " color_primaries:unknown");
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} else {
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av_log(ctx, AV_LOG_INFO, " color_primaries:%s", color_primaries_str);
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}
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if (!color_trc_str || frame->color_trc == AVCOL_TRC_UNSPECIFIED) {
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av_log(ctx, AV_LOG_INFO, " color_trc:unknown");
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} else {
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av_log(ctx, AV_LOG_INFO, " color_trc:%s", color_trc_str);
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}
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av_log(ctx, AV_LOG_INFO, "\n");
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}
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static void update_sample_stats_8(const uint8_t *src, int len, int64_t *sum, int64_t *sum2)
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{
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int i;
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for (i = 0; i < len; i++) {
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*sum += src[i];
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*sum2 += src[i] * src[i];
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}
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}
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static void update_sample_stats_16(int be, const uint8_t *src, int len, int64_t *sum, int64_t *sum2)
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{
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const uint16_t *src1 = (const uint16_t *)src;
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int i;
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for (i = 0; i < len / 2; i++) {
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if ((HAVE_BIGENDIAN && !be) || (!HAVE_BIGENDIAN && be)) {
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*sum += av_bswap16(src1[i]);
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*sum2 += (uint32_t)av_bswap16(src1[i]) * (uint32_t)av_bswap16(src1[i]);
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} else {
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*sum += src1[i];
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*sum2 += (uint32_t)src1[i] * (uint32_t)src1[i];
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}
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}
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}
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static void update_sample_stats(int depth, int be, const uint8_t *src, int len, int64_t *sum, int64_t *sum2)
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{
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if (depth <= 8)
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update_sample_stats_8(src, len, sum, sum2);
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else
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update_sample_stats_16(be, src, len, sum, sum2);
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}
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static int filter_frame(AVFilterLink *inlink, AVFrame *frame)
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{
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AVFilterContext *ctx = inlink->dst;
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ShowInfoContext *s = ctx->priv;
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const AVPixFmtDescriptor *desc = av_pix_fmt_desc_get(inlink->format);
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uint32_t plane_checksum[4] = {0}, checksum = 0;
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int64_t sum[4] = {0}, sum2[4] = {0};
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int32_t pixelcount[4] = {0};
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int bitdepth = desc->comp[0].depth;
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int be = desc->flags & AV_PIX_FMT_FLAG_BE;
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int i, plane, vsub = desc->log2_chroma_h;
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for (plane = 0; plane < 4 && s->calculate_checksums && frame->data[plane] && frame->linesize[plane]; plane++) {
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uint8_t *data = frame->data[plane];
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int h = plane == 1 || plane == 2 ? AV_CEIL_RSHIFT(inlink->h, vsub) : inlink->h;
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int linesize = av_image_get_linesize(frame->format, frame->width, plane);
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int width = linesize >> (bitdepth > 8);
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if (linesize < 0)
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return linesize;
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for (i = 0; i < h; i++) {
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plane_checksum[plane] = av_adler32_update(plane_checksum[plane], data, linesize);
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checksum = av_adler32_update(checksum, data, linesize);
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update_sample_stats(bitdepth, be, data, linesize, sum+plane, sum2+plane);
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pixelcount[plane] += width;
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data += frame->linesize[plane];
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}
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}
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av_log(ctx, AV_LOG_INFO,
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"n:%4"PRId64" pts:%7s pts_time:%-7s pos:%9"PRId64" "
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"fmt:%s sar:%d/%d s:%dx%d i:%c iskey:%d type:%c ",
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inlink->frame_count_out,
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av_ts2str(frame->pts), av_ts2timestr(frame->pts, &inlink->time_base), frame->pkt_pos,
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desc->name,
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frame->sample_aspect_ratio.num, frame->sample_aspect_ratio.den,
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frame->width, frame->height,
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!frame->interlaced_frame ? 'P' : /* Progressive */
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frame->top_field_first ? 'T' : 'B', /* Top / Bottom */
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frame->key_frame,
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av_get_picture_type_char(frame->pict_type));
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if (s->calculate_checksums) {
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av_log(ctx, AV_LOG_INFO,
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"checksum:%08"PRIX32" plane_checksum:[%08"PRIX32,
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checksum, plane_checksum[0]);
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for (plane = 1; plane < 4 && frame->data[plane] && frame->linesize[plane]; plane++)
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av_log(ctx, AV_LOG_INFO, " %08"PRIX32, plane_checksum[plane]);
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av_log(ctx, AV_LOG_INFO, "] mean:[");
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for (plane = 0; plane < 4 && frame->data[plane] && frame->linesize[plane]; plane++)
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av_log(ctx, AV_LOG_INFO, "%s%"PRId64,
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plane ? " ":"",
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(sum[plane] + pixelcount[plane]/2) / pixelcount[plane]);
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av_log(ctx, AV_LOG_INFO, "] stdev:[");
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for (plane = 0; plane < 4 && frame->data[plane] && frame->linesize[plane]; plane++)
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av_log(ctx, AV_LOG_INFO, "%s%3.1f",
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plane ? " ":"",
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sqrt((sum2[plane] - sum[plane]*(double)sum[plane]/pixelcount[plane])/pixelcount[plane]));
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av_log(ctx, AV_LOG_INFO, "]");
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}
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av_log(ctx, AV_LOG_INFO, "\n");
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for (i = 0; i < frame->nb_side_data; i++) {
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AVFrameSideData *sd = frame->side_data[i];
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av_log(ctx, AV_LOG_INFO, " side data - ");
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switch (sd->type) {
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case AV_FRAME_DATA_PANSCAN:
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av_log(ctx, AV_LOG_INFO, "pan/scan");
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break;
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case AV_FRAME_DATA_A53_CC:
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av_log(ctx, AV_LOG_INFO, "A/53 closed captions (%d bytes)", sd->size);
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break;
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case AV_FRAME_DATA_SPHERICAL:
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dump_spherical(ctx, frame, sd);
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break;
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case AV_FRAME_DATA_STEREO3D:
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dump_stereo3d(ctx, sd);
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break;
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case AV_FRAME_DATA_S12M_TIMECODE: {
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uint32_t *tc = (uint32_t*)sd->data;
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int m = FFMIN(tc[0],3);
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if (sd->size != 16) {
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av_log(ctx, AV_LOG_ERROR, "invalid data");
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break;
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}
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for (int j = 1; j <= m; j++) {
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char tcbuf[AV_TIMECODE_STR_SIZE];
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av_timecode_make_smpte_tc_string(tcbuf, tc[j], 0);
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av_log(ctx, AV_LOG_INFO, "timecode - %s%s", tcbuf, j != m ? ", " : "");
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}
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break;
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}
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case AV_FRAME_DATA_DISPLAYMATRIX:
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av_log(ctx, AV_LOG_INFO, "displaymatrix: rotation of %.2f degrees",
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av_display_rotation_get((int32_t *)sd->data));
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break;
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||
|
case AV_FRAME_DATA_AFD:
|
||
|
av_log(ctx, AV_LOG_INFO, "afd: value of %"PRIu8, sd->data[0]);
|
||
|
break;
|
||
|
case AV_FRAME_DATA_REGIONS_OF_INTEREST:
|
||
|
dump_roi(ctx, sd);
|
||
|
break;
|
||
|
case AV_FRAME_DATA_MASTERING_DISPLAY_METADATA:
|
||
|
dump_mastering_display(ctx, sd);
|
||
|
break;
|
||
|
case AV_FRAME_DATA_CONTENT_LIGHT_LEVEL:
|
||
|
dump_content_light_metadata(ctx, sd);
|
||
|
break;
|
||
|
case AV_FRAME_DATA_GOP_TIMECODE: {
|
||
|
char tcbuf[AV_TIMECODE_STR_SIZE];
|
||
|
av_timecode_make_mpeg_tc_string(tcbuf, *(int64_t *)(sd->data));
|
||
|
av_log(ctx, AV_LOG_INFO, "GOP timecode - %s", tcbuf);
|
||
|
break;
|
||
|
}
|
||
|
case AV_FRAME_DATA_VIDEO_ENC_PARAMS:
|
||
|
dump_video_enc_params(ctx, sd);
|
||
|
break;
|
||
|
default:
|
||
|
av_log(ctx, AV_LOG_WARNING, "unknown side data type %d (%d bytes)",
|
||
|
sd->type, sd->size);
|
||
|
break;
|
||
|
}
|
||
|
|
||
|
av_log(ctx, AV_LOG_INFO, "\n");
|
||
|
}
|
||
|
|
||
|
dump_color_property(ctx, frame);
|
||
|
|
||
|
return ff_filter_frame(inlink->dst->outputs[0], frame);
|
||
|
}
|
||
|
|
||
|
static int config_props(AVFilterContext *ctx, AVFilterLink *link, int is_out)
|
||
|
{
|
||
|
|
||
|
av_log(ctx, AV_LOG_INFO, "config %s time_base: %d/%d, frame_rate: %d/%d\n",
|
||
|
is_out ? "out" : "in",
|
||
|
link->time_base.num, link->time_base.den,
|
||
|
link->frame_rate.num, link->frame_rate.den);
|
||
|
|
||
|
return 0;
|
||
|
}
|
||
|
|
||
|
static int config_props_in(AVFilterLink *link)
|
||
|
{
|
||
|
AVFilterContext *ctx = link->dst;
|
||
|
return config_props(ctx, link, 0);
|
||
|
}
|
||
|
|
||
|
static int config_props_out(AVFilterLink *link)
|
||
|
{
|
||
|
AVFilterContext *ctx = link->src;
|
||
|
return config_props(ctx, link, 1);
|
||
|
}
|
||
|
|
||
|
static const AVFilterPad avfilter_vf_showinfo_inputs[] = {
|
||
|
{
|
||
|
.name = "default",
|
||
|
.type = AVMEDIA_TYPE_VIDEO,
|
||
|
.filter_frame = filter_frame,
|
||
|
.config_props = config_props_in,
|
||
|
},
|
||
|
{ NULL }
|
||
|
};
|
||
|
|
||
|
static const AVFilterPad avfilter_vf_showinfo_outputs[] = {
|
||
|
{
|
||
|
.name = "default",
|
||
|
.type = AVMEDIA_TYPE_VIDEO,
|
||
|
.config_props = config_props_out,
|
||
|
},
|
||
|
{ NULL }
|
||
|
};
|
||
|
|
||
|
AVFilter ff_vf_showinfo = {
|
||
|
.name = "showinfo",
|
||
|
.description = NULL_IF_CONFIG_SMALL("Show textual information for each video frame."),
|
||
|
.inputs = avfilter_vf_showinfo_inputs,
|
||
|
.outputs = avfilter_vf_showinfo_outputs,
|
||
|
.priv_size = sizeof(ShowInfoContext),
|
||
|
.priv_class = &showinfo_class,
|
||
|
};
|