xref: /aosp_15_r20/external/libaom/examples/lightfield_bitstream_parsing.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 Bitstream Parsing
13 // ============================
14 //
15 // This is a lightfield bitstream parsing example. It takes an input file
16 // containing the whole compressed lightfield bitstream(ivf file) and a text
17 // file containing a stream of tiles to decode and then constructs and outputs
18 // a new bitstream that can be decoded by an AV1 decoder. The output bitstream
19 // contains reference frames(i.e. anchor frames), camera frame header, and
20 // tile list OBUs. num_references is the number of anchor frames coded at the
21 // beginning of the light field file.  After running the lightfield encoder,
22 // run lightfield bitstream parsing:
23 // examples/lightfield_bitstream_parsing vase10x10.ivf vase_tile_list.ivf 4
24 //   tile_list.txt
25 //
26 // The tile_list.txt is expected to be of the form:
27 // Frame <frame_index0>
28 // <image_index0> <anchor_index0> <tile_col0> <tile_row0>
29 // <image_index1> <anchor_index1> <tile_col1> <tile_row1>
30 // ...
31 // Frame <frame_index1)
32 // ...
33 //
34 // The "Frame" markers indicate a new render frame and thus a new tile list
35 // will be started and the old one flushed.  The image_indexN, anchor_indexN,
36 // tile_colN, and tile_rowN identify an individual tile to be decoded and
37 // to use anchor_indexN anchor image for MCP.
38 
39 #include <stdio.h>
40 #include <stdlib.h>
41 #include <string.h>
42 
43 #include "aom/aom_codec.h"
44 #include "aom/aom_decoder.h"
45 #include "aom/aom_encoder.h"
46 #include "aom/aom_integer.h"
47 #include "aom/aomdx.h"
48 #include "common/tools_common.h"
49 #include "common/video_reader.h"
50 #include "common/video_writer.h"
51 
52 #define MAX_TILES 512
53 
54 static const char *exec_name;
55 
usage_exit(void)56 void usage_exit(void) {
57   fprintf(stderr, "Usage: %s <infile> <outfile> <num_references> <tile_list>\n",
58           exec_name);
59   exit(EXIT_FAILURE);
60 }
61 
62 #define ALIGN_POWER_OF_TWO(value, n) \
63   (((value) + ((1 << (n)) - 1)) & ~((1 << (n)) - 1))
64 
65 const int output_frame_width = 512;
66 const int output_frame_height = 512;
67 
68 // Spec:
69 // typedef struct {
70 //   uint8_t anchor_frame_idx;
71 //   uint8_t tile_row;
72 //   uint8_t tile_col;
73 //   uint16_t coded_tile_data_size_minus_1;
74 //   uint8_t *coded_tile_data;
75 // } TILE_LIST_ENTRY;
76 
77 // Tile list entry provided by the application
78 typedef struct {
79   int image_idx;
80   int reference_idx;
81   int tile_col;
82   int tile_row;
83 } TILE_LIST_INFO;
84 
get_image_bps(aom_img_fmt_t fmt)85 static int get_image_bps(aom_img_fmt_t fmt) {
86   switch (fmt) {
87     case AOM_IMG_FMT_I420: return 12;
88     case AOM_IMG_FMT_I422: return 16;
89     case AOM_IMG_FMT_I444: return 24;
90     case AOM_IMG_FMT_I42016: return 24;
91     case AOM_IMG_FMT_I42216: return 32;
92     case AOM_IMG_FMT_I44416: return 48;
93     default: die("Invalid image format");
94   }
95 }
96 
process_tile_list(const TILE_LIST_INFO * tiles,int num_tiles,aom_codec_pts_t tl_pts,unsigned char ** frames,const size_t * frame_sizes,aom_codec_ctx_t * codec,unsigned char * tl_buf,AvxVideoWriter * writer,uint8_t output_frame_width_in_tiles_minus_1,uint8_t output_frame_height_in_tiles_minus_1)97 static void process_tile_list(const TILE_LIST_INFO *tiles, int num_tiles,
98                               aom_codec_pts_t tl_pts, unsigned char **frames,
99                               const size_t *frame_sizes, aom_codec_ctx_t *codec,
100                               unsigned char *tl_buf, AvxVideoWriter *writer,
101                               uint8_t output_frame_width_in_tiles_minus_1,
102                               uint8_t output_frame_height_in_tiles_minus_1) {
103   unsigned char *tl = tl_buf;
104   unsigned char *saved_obu_size_loc = NULL;
105   uint32_t tile_list_obu_header_size = 0;
106   uint32_t tile_list_obu_size = 0;
107   int num_tiles_minus_1 = num_tiles - 1;
108   int i;
109 
110   // Write the tile list OBU header that is 1 byte long.
111   int obu_type = OBU_TILE_LIST;
112   int obu_has_size_field = 1;
113   *tl++ = (obu_type << 3) | (obu_has_size_field << 1);
114   tile_list_obu_header_size++;
115 
116   // Write the OBU size using a fixed length_field_size of 4 bytes.
117   saved_obu_size_loc = tl;
118   for (i = 0; i < 4; i++) {
119     *tl++ = 0;
120   }
121   tile_list_obu_header_size += 4;
122 
123   // write_tile_list_obu()
124   *tl++ = output_frame_width_in_tiles_minus_1;
125   *tl++ = output_frame_height_in_tiles_minus_1;
126   *tl++ = (num_tiles_minus_1 >> 8) & 0xff;
127   *tl++ = num_tiles_minus_1 & 0xff;
128   tile_list_obu_size += 4;
129 
130   // Write each tile's data
131   for (i = 0; i <= num_tiles_minus_1; i++) {
132     aom_tile_data tile_data = { 0, NULL, 0 };
133 
134     int image_idx = tiles[i].image_idx;
135     int ref_idx = tiles[i].reference_idx;
136     int tc = tiles[i].tile_col;
137     int tr = tiles[i].tile_row;
138 
139     size_t frame_size = frame_sizes[image_idx];
140     const unsigned char *frame = frames[image_idx];
141 
142     AOM_CODEC_CONTROL_TYPECHECKED(codec, AV1_SET_DECODE_TILE_ROW, tr);
143     AOM_CODEC_CONTROL_TYPECHECKED(codec, AV1_SET_DECODE_TILE_COL, tc);
144 
145     aom_codec_err_t aom_status =
146         aom_codec_decode(codec, frame, frame_size, NULL);
147     if (aom_status) die_codec(codec, "Failed to decode tile.");
148 
149     AOM_CODEC_CONTROL_TYPECHECKED(codec, AV1D_GET_TILE_DATA, &tile_data);
150 
151     // Copy over tile info.
152     //  uint8_t anchor_frame_idx;
153     //  uint8_t tile_row;
154     //  uint8_t tile_col;
155     //  uint16_t coded_tile_data_size_minus_1;
156     //  uint8_t *coded_tile_data;
157     uint32_t tile_info_bytes = 5;
158     *tl++ = ref_idx;
159     *tl++ = tr;
160     *tl++ = tc;
161     int coded_tile_data_size_minus_1 = (int)tile_data.coded_tile_data_size - 1;
162     *tl++ = (coded_tile_data_size_minus_1 >> 8) & 0xff;
163     *tl++ = coded_tile_data_size_minus_1 & 0xff;
164 
165     memcpy(tl, (uint8_t *)tile_data.coded_tile_data,
166            tile_data.coded_tile_data_size);
167     tl += tile_data.coded_tile_data_size;
168 
169     tile_list_obu_size +=
170         tile_info_bytes + (uint32_t)tile_data.coded_tile_data_size;
171   }
172 
173   // Write tile list OBU size.
174   size_t bytes_written = 0;
175   if (aom_uleb_encode_fixed_size(tile_list_obu_size, 4, 4, saved_obu_size_loc,
176                                  &bytes_written))
177     die_codec(codec, "Failed to encode the tile list obu size.");
178 
179   // Copy the tile list.
180   if (!aom_video_writer_write_frame(
181           writer, tl_buf, tile_list_obu_header_size + tile_list_obu_size,
182           tl_pts))
183     die_codec(codec, "Failed to copy compressed tile list.");
184 }
185 
main(int argc,char ** argv)186 int main(int argc, char **argv) {
187   AvxVideoReader *reader = NULL;
188   AvxVideoWriter *writer = NULL;
189   const AvxVideoInfo *info = NULL;
190   int num_references;
191   int i;
192   aom_codec_pts_t pts;
193   const char *tile_list_file = NULL;
194 
195   exec_name = argv[0];
196   if (argc != 5) die("Invalid number of arguments.");
197 
198   reader = aom_video_reader_open(argv[1]);
199   if (!reader) die("Failed to open %s for reading.", argv[1]);
200 
201   num_references = (int)strtol(argv[3], NULL, 0);
202   info = aom_video_reader_get_info(reader);
203 
204   aom_video_reader_set_fourcc(reader, AV1_FOURCC);
205 
206   // The writer to write out ivf file in tile list OBU, which can be decoded by
207   // AV1 decoder.
208   writer = aom_video_writer_open(argv[2], kContainerIVF, info);
209   if (!writer) die("Failed to open %s for writing", argv[2]);
210 
211   tile_list_file = argv[4];
212 
213   aom_codec_iface_t *decoder = get_aom_decoder_by_fourcc(info->codec_fourcc);
214   if (!decoder) die("Unknown input codec.");
215   printf("Using %s\n", aom_codec_iface_name(decoder));
216 
217   aom_codec_ctx_t codec;
218   if (aom_codec_dec_init(&codec, decoder, NULL, 0))
219     die("Failed to initialize decoder.");
220 
221   // Decode anchor frames.
222   AOM_CODEC_CONTROL_TYPECHECKED(&codec, AV1_SET_TILE_MODE, 0);
223 
224   printf("Reading %d reference images.\n", num_references);
225   for (i = 0; i < num_references; ++i) {
226     aom_video_reader_read_frame(reader);
227 
228     size_t frame_size = 0;
229     const unsigned char *frame =
230         aom_video_reader_get_frame(reader, &frame_size);
231     pts = (aom_codec_pts_t)aom_video_reader_get_frame_pts(reader);
232 
233     // Copy references bitstream directly.
234     if (!aom_video_writer_write_frame(writer, frame, frame_size, pts))
235       die_codec(&codec, "Failed to copy compressed anchor frame.");
236 
237     if (aom_codec_decode(&codec, frame, frame_size, NULL))
238       die_codec(&codec, "Failed to decode frame.");
239   }
240 
241   // Decode camera frames.
242   AOM_CODEC_CONTROL_TYPECHECKED(&codec, AV1_SET_TILE_MODE, 1);
243   AOM_CODEC_CONTROL_TYPECHECKED(&codec, AV1D_EXT_TILE_DEBUG, 1);
244 
245   FILE *infile = aom_video_reader_get_file(reader);
246   // Record the offset of the first camera image.
247   const FileOffset camera_frame_pos = ftello(infile);
248 
249   printf("Loading compressed frames into memory.\n");
250 
251   // Count the frames in the lightfield.
252   int num_frames = 0;
253   while (aom_video_reader_read_frame(reader)) {
254     ++num_frames;
255   }
256   if (num_frames < 1) die("Input light field has no frames.");
257 
258   // Read all of the lightfield frames into memory.
259   unsigned char **frames =
260       (unsigned char **)malloc(num_frames * sizeof(unsigned char *));
261   size_t *frame_sizes = (size_t *)malloc(num_frames * sizeof(size_t));
262   if (!(frames && frame_sizes)) die("Failed to allocate frame data.");
263 
264   // Seek to the first camera image.
265   fseeko(infile, camera_frame_pos, SEEK_SET);
266   for (int f = 0; f < num_frames; ++f) {
267     aom_video_reader_read_frame(reader);
268     size_t frame_size = 0;
269     const unsigned char *frame =
270         aom_video_reader_get_frame(reader, &frame_size);
271     frames[f] = (unsigned char *)malloc(frame_size * sizeof(unsigned char));
272     if (!frames[f]) die("Failed to allocate frame data.");
273     memcpy(frames[f], frame, frame_size);
274     frame_sizes[f] = frame_size;
275   }
276   printf("Read %d frames.\n", num_frames);
277 
278   // Copy first camera frame for getting camera frame header. This is done
279   // only once.
280   {
281     size_t frame_size = frame_sizes[0];
282     const unsigned char *frame = frames[0];
283     pts = num_references;
284     aom_tile_data frame_header_info = { 0, NULL, 0 };
285 
286     // Need to decode frame header to get camera frame header info. So, here
287     // decoding 1 tile is enough.
288     AOM_CODEC_CONTROL_TYPECHECKED(&codec, AV1_SET_DECODE_TILE_ROW, 0);
289     AOM_CODEC_CONTROL_TYPECHECKED(&codec, AV1_SET_DECODE_TILE_COL, 0);
290 
291     aom_codec_err_t aom_status =
292         aom_codec_decode(&codec, frame, frame_size, NULL);
293     if (aom_status) die_codec(&codec, "Failed to decode tile.");
294 
295     AOM_CODEC_CONTROL_TYPECHECKED(&codec, AV1D_GET_FRAME_HEADER_INFO,
296                                   &frame_header_info);
297 
298     size_t obu_size_offset =
299         (uint8_t *)frame_header_info.coded_tile_data - frame;
300     size_t length_field_size = frame_header_info.coded_tile_data_size;
301     // Remove ext-tile tile info.
302     uint32_t frame_header_size = (uint32_t)frame_header_info.extra_size - 1;
303     size_t bytes_to_copy =
304         obu_size_offset + length_field_size + frame_header_size;
305 
306     unsigned char *frame_hdr_buf = (unsigned char *)malloc(bytes_to_copy);
307     if (frame_hdr_buf == NULL)
308       die_codec(&codec, "Failed to allocate frame header buffer.");
309 
310     memcpy(frame_hdr_buf, frame, bytes_to_copy);
311 
312     // Update frame header OBU size.
313     size_t bytes_written = 0;
314     if (aom_uleb_encode_fixed_size(
315             frame_header_size, length_field_size, length_field_size,
316             frame_hdr_buf + obu_size_offset, &bytes_written))
317       die_codec(&codec, "Failed to encode the tile list obu size.");
318 
319     // Copy camera frame header bitstream.
320     if (!aom_video_writer_write_frame(writer, frame_hdr_buf, bytes_to_copy,
321                                       pts))
322       die_codec(&codec, "Failed to copy compressed camera frame header.");
323     free(frame_hdr_buf);
324   }
325 
326   // Read out the image format.
327   aom_img_fmt_t ref_fmt = 0;
328   if (AOM_CODEC_CONTROL_TYPECHECKED(&codec, AV1D_GET_IMG_FORMAT, &ref_fmt))
329     die_codec(&codec, "Failed to get the image format");
330   const int bps = get_image_bps(ref_fmt);
331   if (!bps) die_codec(&codec, "Invalid image format.");
332   // read out the tile size.
333   unsigned int tile_size = 0;
334   if (AOM_CODEC_CONTROL_TYPECHECKED(&codec, AV1D_GET_TILE_SIZE, &tile_size))
335     die_codec(&codec, "Failed to get the tile size");
336   const unsigned int tile_width = tile_size >> 16;
337   const unsigned int tile_height = tile_size & 65535;
338   // Allocate a buffer to store tile list bitstream.
339   const size_t data_sz = MAX_TILES * ALIGN_POWER_OF_TWO(tile_width, 5) *
340                          ALIGN_POWER_OF_TWO(tile_height, 5) * bps / 8;
341 
342   unsigned char *tl_buf = (unsigned char *)malloc(data_sz);
343   if (tl_buf == NULL) die_codec(&codec, "Failed to allocate tile list buffer.");
344 
345   aom_codec_pts_t tl_pts = num_references;
346   const uint8_t output_frame_width_in_tiles_minus_1 =
347       output_frame_width / tile_width - 1;
348   const uint8_t output_frame_height_in_tiles_minus_1 =
349       output_frame_height / tile_height - 1;
350 
351   printf("Reading tile list from file.\n");
352   char line[1024];
353   FILE *tile_list_fptr = fopen(tile_list_file, "r");
354   if (!tile_list_fptr) die_codec(&codec, "Failed to open tile list file.");
355   int num_tiles = 0;
356   TILE_LIST_INFO tiles[MAX_TILES];
357   while ((fgets(line, 1024, tile_list_fptr)) != NULL) {
358     if (line[0] == 'F' || num_tiles >= MAX_TILES) {
359       // Flush existing tile list and start another, either because we hit a
360       // new render frame or because we've hit our max number of tiles per list.
361       if (num_tiles > 0) {
362         process_tile_list(tiles, num_tiles, tl_pts, frames, frame_sizes, &codec,
363                           tl_buf, writer, output_frame_width_in_tiles_minus_1,
364                           output_frame_height_in_tiles_minus_1);
365         ++tl_pts;
366       }
367       num_tiles = 0;
368     }
369     if (line[0] == 'F') {
370       continue;
371     }
372     if (sscanf(line, "%d %d %d %d", &tiles[num_tiles].image_idx,
373                &tiles[num_tiles].reference_idx, &tiles[num_tiles].tile_col,
374                &tiles[num_tiles].tile_row) == 4) {
375       if (tiles[num_tiles].image_idx >= num_frames) {
376         die("Tile list image_idx out of bounds: %d >= %d.",
377             tiles[num_tiles].image_idx, num_frames);
378       }
379       if (tiles[num_tiles].reference_idx >= num_references) {
380         die("Tile list reference_idx out of bounds: %d >= %d.",
381             tiles[num_tiles].reference_idx, num_references);
382       }
383       ++num_tiles;
384     }
385   }
386   if (num_tiles > 0) {
387     // Flush out the last tile list.
388     process_tile_list(tiles, num_tiles, tl_pts, frames, frame_sizes, &codec,
389                       tl_buf, writer, output_frame_width_in_tiles_minus_1,
390                       output_frame_height_in_tiles_minus_1);
391     ++tl_pts;
392   }
393 
394   const int num_tile_lists = (int)(tl_pts - pts);
395   printf("Finished processing tile lists.  Num tile lists: %d.\n",
396          num_tile_lists);
397   free(tl_buf);
398   for (int f = 0; f < num_frames; ++f) {
399     free(frames[f]);
400   }
401   free(frame_sizes);
402   free(frames);
403   if (aom_codec_destroy(&codec)) die_codec(&codec, "Failed to destroy codec");
404   aom_video_writer_close(writer);
405   aom_video_reader_close(reader);
406 
407   return EXIT_SUCCESS;
408 }
409