зеркало из https://github.com/mozilla/gecko-dev.git
189 строки
6.4 KiB
C
189 строки
6.4 KiB
C
/*
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* Copyright (c) 2017, Alliance for Open Media. All rights reserved
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*
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* This source code is subject to the terms of the BSD 2 Clause License and
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* the Alliance for Open Media Patent License 1.0. If the BSD 2 Clause License
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* was not distributed with this source code in the LICENSE file, you can
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* obtain it at www.aomedia.org/license/software. If the Alliance for Open
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* Media Patent License 1.0 was not distributed with this source code in the
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* PATENTS file, you can obtain it at www.aomedia.org/license/patent.
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*/
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// Lightfield Decoder
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// ==================
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//
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// This is an example of a simple lightfield decoder. It builds upon the
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// simple_decoder.c example. It takes an input file containing the compressed
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// data (in webm format), treating it as a lightfield instead of a video and
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// will decode a single lightfield tile. The lf_width and lf_height arguments
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// are the number of lightfield images in each dimension. The tile to decode
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// is specified by the tile_u, tile_v, tile_s, tile_t arguments. The tile_u,
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// tile_v specify the image and tile_s, tile_t specify the tile in the image.
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// After running the lightfield encoder, run lightfield decoder to decode a
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// single tile:
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// examples/lightfield_decoder vase10x10.webm vase_tile.yuv 10 10 3 4 5 10 5
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include "aom/aom_decoder.h"
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#include "aom/aomdx.h"
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#include "../tools_common.h"
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#include "../video_reader.h"
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#include "./aom_config.h"
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static const char *exec_name;
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void usage_exit(void) {
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fprintf(stderr,
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"Usage: %s <infile> <outfile> <lf_width> <lf_height> <tlie_u>"
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" <tile_v> <tile_s> <tile_t> <lf_blocksize>\n",
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exec_name);
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exit(EXIT_FAILURE);
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}
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aom_image_t *aom_img_copy(aom_image_t *src, aom_image_t *dst) {
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dst = aom_img_alloc(dst, src->fmt, src->d_w, src->d_h, 16);
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int plane;
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for (plane = 0; plane < 3; ++plane) {
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uint8_t *src_buf = src->planes[plane];
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const int src_stride = src->stride[plane];
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const int src_w = plane == 0 ? src->d_w : src->d_w >> 1;
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const int src_h = plane == 0 ? src->d_h : src->d_h >> 1;
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uint8_t *dst_buf = dst->planes[plane];
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const int dst_stride = dst->stride[plane];
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int y;
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for (y = 0; y < src_h; ++y) {
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memcpy(dst_buf, src_buf, src_w);
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src_buf += src_stride;
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dst_buf += dst_stride;
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}
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}
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return dst;
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}
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int main(int argc, char **argv) {
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int frame_cnt = 0;
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FILE *outfile = NULL;
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aom_codec_ctx_t codec;
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AvxVideoReader *reader = NULL;
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const AvxInterface *decoder = NULL;
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const AvxVideoInfo *info = NULL;
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const char *lf_width_arg;
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const char *lf_height_arg;
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const char *tile_u_arg;
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const char *tile_v_arg;
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const char *tile_s_arg;
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const char *tile_t_arg;
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const char *lf_blocksize_arg;
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int lf_width, lf_height;
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int tile_u, tile_v, tile_s, tile_t;
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int lf_blocksize;
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int u_blocks;
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int v_blocks;
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exec_name = argv[0];
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if (argc != 10) die("Invalid number of arguments.");
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reader = aom_video_reader_open(argv[1]);
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if (!reader) die("Failed to open %s for reading.", argv[1]);
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if (!(outfile = fopen(argv[2], "wb")))
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die("Failed to open %s for writing.", argv[2]);
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lf_width_arg = argv[3];
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lf_height_arg = argv[4];
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tile_u_arg = argv[5];
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tile_v_arg = argv[6];
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tile_s_arg = argv[7];
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tile_t_arg = argv[8];
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lf_blocksize_arg = argv[9];
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lf_width = (int)strtol(lf_width_arg, NULL, 0);
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lf_height = (int)strtol(lf_height_arg, NULL, 0);
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tile_u = (int)strtol(tile_u_arg, NULL, 0);
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tile_v = (int)strtol(tile_v_arg, NULL, 0);
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tile_s = (int)strtol(tile_s_arg, NULL, 0);
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tile_t = (int)strtol(tile_t_arg, NULL, 0);
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lf_blocksize = (int)strtol(lf_blocksize_arg, NULL, 0);
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info = aom_video_reader_get_info(reader);
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decoder = get_aom_decoder_by_fourcc(info->codec_fourcc);
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if (!decoder) die("Unknown input codec.");
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printf("Using %s\n", aom_codec_iface_name(decoder->codec_interface()));
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if (aom_codec_dec_init(&codec, decoder->codec_interface(), NULL, 0))
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die_codec(&codec, "Failed to initialize decoder.");
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// How many reference images we need to encode.
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u_blocks = (lf_width + lf_blocksize - 1) / lf_blocksize;
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v_blocks = (lf_height + lf_blocksize - 1) / lf_blocksize;
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aom_image_t *reference_images =
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(aom_image_t *)malloc(u_blocks * v_blocks * sizeof(aom_image_t));
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for (int bv = 0; bv < v_blocks; ++bv) {
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for (int bu = 0; bu < u_blocks; ++bu) {
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aom_video_reader_read_frame(reader);
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aom_codec_iter_t iter = NULL;
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aom_image_t *img = NULL;
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size_t frame_size = 0;
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const unsigned char *frame =
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aom_video_reader_get_frame(reader, &frame_size);
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if (aom_codec_decode(&codec, frame, (unsigned int)frame_size, NULL, 0))
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die_codec(&codec, "Failed to decode frame.");
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while ((img = aom_codec_get_frame(&codec, &iter)) != NULL) {
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aom_img_copy(img, &reference_images[bu + bv * u_blocks]);
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char name[1024];
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snprintf(name, sizeof(name), "ref_%d_%d.yuv", bu, bv);
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printf("writing ref image to %s, %d, %d\n", name, img->d_w, img->d_h);
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FILE *ref_file = fopen(name, "wb");
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aom_img_write(img, ref_file);
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fclose(ref_file);
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++frame_cnt;
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}
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}
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}
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int decode_frame_index = tile_v * lf_width + tile_u;
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do {
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aom_video_reader_read_frame(reader);
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} while (frame_cnt++ != decode_frame_index);
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size_t frame_size = 0;
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const unsigned char *frame = aom_video_reader_get_frame(reader, &frame_size);
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int ref_bu = tile_u / lf_blocksize;
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int ref_bv = tile_v / lf_blocksize;
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int ref_bi = ref_bu + ref_bv * u_blocks;
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av1_ref_frame_t ref;
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ref.idx = 0;
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ref.img = reference_images[ref_bi];
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// This is too slow for real lightfield rendering. This copies the
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// reference image bytes. We need a way to just set a pointer
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// in order to make this fast enough.
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if (aom_codec_control(&codec, AV1_SET_REFERENCE, &ref)) {
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die_codec(&codec, "Failed to set reference image.");
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}
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aom_codec_control_(&codec, AV1_SET_DECODE_TILE_ROW, tile_t);
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aom_codec_control_(&codec, AV1_SET_DECODE_TILE_COL, tile_s);
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aom_codec_err_t aom_status =
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aom_codec_decode(&codec, frame, frame_size, NULL, 0);
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if (aom_status) die_codec(&codec, "Failed to decode tile.");
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aom_codec_iter_t iter = NULL;
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aom_image_t *img = aom_codec_get_frame(&codec, &iter);
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aom_img_write(img, outfile);
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if (aom_codec_destroy(&codec)) die_codec(&codec, "Failed to destroy codec");
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aom_video_reader_close(reader);
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fclose(outfile);
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return EXIT_SUCCESS;
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}
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