xref: /aosp_15_r20/external/libaom/examples/lightfield_tile_list_decoder.c (revision 77c1e3ccc04c968bd2bc212e87364f250e820521)
1 /*
2  * Copyright (c) 2018, Alliance for Open Media. All rights reserved.
3  *
4  * This source code is subject to the terms of the BSD 2 Clause License and
5  * the Alliance for Open Media Patent License 1.0. If the BSD 2 Clause License
6  * was not distributed with this source code in the LICENSE file, you can
7  * obtain it at www.aomedia.org/license/software. If the Alliance for Open
8  * Media Patent License 1.0 was not distributed with this source code in the
9  * PATENTS file, you can obtain it at www.aomedia.org/license/patent.
10  */
11 
12 // Lightfield Tile List Decoder
13 // ============================
14 //
15 // This is a lightfield tile list decoder example. It takes an input file that
16 // contains the anchor frames that are references of the coded tiles, the camera
17 // frame header, and tile list OBUs that include the tile information and the
18 // compressed tile data. This input file is reconstructed from the encoded
19 // lightfield ivf file, and is decodable by AV1 decoder. num_references is
20 // the number of anchor frames coded at the beginning of the light field file.
21 // num_tile_lists is the number of tile lists need to be decoded. There is an
22 // optional parameter allowing to choose the output format, and the supported
23 // formats are YUV1D(default), YUV, and NV12.
24 // Run lightfield tile list decoder to decode an AV1 tile list file:
25 // examples/lightfield_tile_list_decoder vase_tile_list.ivf vase_tile_list.yuv
26 // 4 2 0(optional)
27 
28 #include <stdio.h>
29 #include <stdlib.h>
30 #include <string.h>
31 #include <assert.h>
32 
33 #include "aom/aom_decoder.h"
34 #include "aom/aomdx.h"
35 #include "aom_scale/yv12config.h"
36 #include "av1/common/enums.h"
37 #include "common/tools_common.h"
38 #include "common/video_reader.h"
39 
40 enum {
41   YUV1D,  // 1D tile output for conformance test.
42   YUV,    // Tile output in YUV format.
43   NV12,   // Tile output in NV12 format.
44 } UENUM1BYTE(OUTPUT_FORMAT);
45 
46 static const char *exec_name;
47 
usage_exit(void)48 void usage_exit(void) {
49   fprintf(stderr,
50           "Usage: %s <infile> <outfile> <num_references> <num_tile_lists> "
51           "<output format(optional)>\n",
52           exec_name);
53   exit(EXIT_FAILURE);
54 }
55 
write_tile_yuv1d(aom_codec_ctx_t * codec,const aom_image_t * img,FILE * file)56 static void write_tile_yuv1d(aom_codec_ctx_t *codec, const aom_image_t *img,
57                              FILE *file) {
58   // read out the tile size.
59   unsigned int tile_size = 0;
60   if (AOM_CODEC_CONTROL_TYPECHECKED(codec, AV1D_GET_TILE_SIZE, &tile_size))
61     die_codec(codec, "Failed to get the tile size");
62   const unsigned int tile_width = tile_size >> 16;
63   const unsigned int tile_height = tile_size & 65535;
64   const uint32_t output_frame_width_in_tiles = img->d_w / tile_width;
65 
66   unsigned int tile_count = 0;
67   if (AOM_CODEC_CONTROL_TYPECHECKED(codec, AV1D_GET_TILE_COUNT, &tile_count))
68     die_codec(codec, "Failed to get the tile size");
69 
70   // Write tile to file.
71   const int shift = (img->fmt & AOM_IMG_FMT_HIGHBITDEPTH) ? 1 : 0;
72   unsigned int tile_idx;
73 
74   for (tile_idx = 0; tile_idx < tile_count; ++tile_idx) {
75     const int row_offset =
76         (tile_idx / output_frame_width_in_tiles) * tile_height;
77     const int col_offset =
78         (tile_idx % output_frame_width_in_tiles) * tile_width;
79     int plane;
80 
81     for (plane = 0; plane < 3; ++plane) {
82       const unsigned char *buf = img->planes[plane];
83       const int stride = img->stride[plane];
84       const int roffset =
85           (plane > 0) ? row_offset >> img->y_chroma_shift : row_offset;
86       const int coffset =
87           (plane > 0) ? col_offset >> img->x_chroma_shift : col_offset;
88       const int w = (plane > 0) ? ((tile_width >> img->x_chroma_shift) << shift)
89                                 : (tile_width << shift);
90       const int h =
91           (plane > 0) ? (tile_height >> img->y_chroma_shift) : tile_height;
92       int y;
93 
94       // col offset needs to be adjusted for HBD.
95       buf += roffset * stride + (coffset << shift);
96 
97       for (y = 0; y < h; ++y) {
98         fwrite(buf, 1, w, file);
99         buf += stride;
100       }
101     }
102   }
103 }
104 
main(int argc,char ** argv)105 int main(int argc, char **argv) {
106   FILE *outfile = NULL;
107   AvxVideoReader *reader = NULL;
108   const AvxVideoInfo *info = NULL;
109   int num_references;
110   int num_tile_lists;
111   aom_image_t reference_images[MAX_EXTERNAL_REFERENCES];
112   size_t frame_size = 0;
113   const unsigned char *frame = NULL;
114   int output_format = YUV1D;
115   int i, j, n;
116 
117   exec_name = argv[0];
118 
119   if (argc < 5) die("Invalid number of arguments.");
120 
121   reader = aom_video_reader_open(argv[1]);
122   if (!reader) die("Failed to open %s for reading.", argv[1]);
123 
124   if (!(outfile = fopen(argv[2], "wb")))
125     die("Failed to open %s for writing.", argv[2]);
126 
127   num_references = (int)strtol(argv[3], NULL, 0);
128   num_tile_lists = (int)strtol(argv[4], NULL, 0);
129 
130   if (argc > 5) output_format = (int)strtol(argv[5], NULL, 0);
131   if (output_format < YUV1D || output_format > NV12)
132     die("Output format out of range [0, 2]");
133 
134   info = aom_video_reader_get_info(reader);
135 
136   aom_codec_iface_t *decoder = get_aom_decoder_by_fourcc(info->codec_fourcc);
137   if (!decoder) die("Unknown input codec.");
138   printf("Using %s\n", aom_codec_iface_name(decoder));
139 
140   aom_codec_ctx_t codec;
141   if (aom_codec_dec_init(&codec, decoder, NULL, 0))
142     die("Failed to initialize decoder.");
143 
144   if (AOM_CODEC_CONTROL_TYPECHECKED(&codec, AV1D_SET_IS_ANNEXB,
145                                     info->is_annexb)) {
146     die_codec(&codec, "Failed to set annex b status");
147   }
148 
149   // Decode anchor frames.
150   AOM_CODEC_CONTROL_TYPECHECKED(&codec, AV1_SET_TILE_MODE, 0);
151   for (i = 0; i < num_references; ++i) {
152     aom_video_reader_read_frame(reader);
153     frame = aom_video_reader_get_frame(reader, &frame_size);
154     if (aom_codec_decode(&codec, frame, frame_size, NULL))
155       die_codec(&codec, "Failed to decode frame.");
156 
157     if (i == 0) {
158       aom_img_fmt_t ref_fmt = 0;
159       if (AOM_CODEC_CONTROL_TYPECHECKED(&codec, AV1D_GET_IMG_FORMAT, &ref_fmt))
160         die_codec(&codec, "Failed to get the image format");
161 
162       int frame_res[2];
163       if (AOM_CODEC_CONTROL_TYPECHECKED(&codec, AV1D_GET_FRAME_SIZE, frame_res))
164         die_codec(&codec, "Failed to get the image frame size");
165 
166       // Allocate memory to store decoded references. Allocate memory with the
167       // border so that it can be used as a reference.
168       for (j = 0; j < num_references; j++) {
169         unsigned int border = AOM_DEC_BORDER_IN_PIXELS;
170         if (!aom_img_alloc_with_border(&reference_images[j], ref_fmt,
171                                        frame_res[0], frame_res[1], 32, 8,
172                                        border)) {
173           fatal("Failed to allocate references.");
174         }
175       }
176     }
177 
178     if (AOM_CODEC_CONTROL_TYPECHECKED(&codec, AV1_COPY_NEW_FRAME_IMAGE,
179                                       &reference_images[i]))
180       die_codec(&codec, "Failed to copy decoded reference frame");
181 
182     aom_codec_iter_t iter = NULL;
183     aom_image_t *img = NULL;
184     while ((img = aom_codec_get_frame(&codec, &iter)) != NULL) {
185       char name[1024];
186       snprintf(name, sizeof(name), "ref_%d.yuv", i);
187       printf("writing ref image to %s, %u, %u\n", name, img->d_w, img->d_h);
188       FILE *ref_file = fopen(name, "wb");
189       aom_img_write(img, ref_file);
190       fclose(ref_file);
191     }
192   }
193 
194   // Decode the lightfield.
195   AOM_CODEC_CONTROL_TYPECHECKED(&codec, AV1_SET_TILE_MODE, 1);
196 
197   // Set external references.
198   av1_ext_ref_frame_t set_ext_ref = { &reference_images[0], num_references };
199   AOM_CODEC_CONTROL_TYPECHECKED(&codec, AV1D_SET_EXT_REF_PTR, &set_ext_ref);
200   // Must decode the camera frame header first.
201   aom_video_reader_read_frame(reader);
202   frame = aom_video_reader_get_frame(reader, &frame_size);
203   if (aom_codec_decode(&codec, frame, frame_size, NULL))
204     die_codec(&codec, "Failed to decode the frame.");
205   // Decode tile lists one by one.
206   for (n = 0; n < num_tile_lists; n++) {
207     aom_video_reader_read_frame(reader);
208     frame = aom_video_reader_get_frame(reader, &frame_size);
209 
210     if (aom_codec_decode(&codec, frame, frame_size, NULL))
211       die_codec(&codec, "Failed to decode the tile list.");
212     aom_codec_iter_t iter = NULL;
213     aom_image_t *img = aom_codec_get_frame(&codec, &iter);
214     if (!img) die_codec(&codec, "Failed to get frame.");
215 
216     if (output_format == YUV1D)
217       // write the tile to the output file in 1D format.
218       write_tile_yuv1d(&codec, img, outfile);
219     else if (output_format == YUV)
220       aom_img_write(img, outfile);
221     else
222       // NV12 output format
223       aom_img_write_nv12(img, outfile);
224   }
225 
226   for (i = 0; i < num_references; i++) aom_img_free(&reference_images[i]);
227   if (aom_codec_destroy(&codec)) die_codec(&codec, "Failed to destroy codec");
228   aom_video_reader_close(reader);
229   fclose(outfile);
230 
231   return EXIT_SUCCESS;
232 }
233