aomenc.c (104707B)
1 /* 2 * Copyright (c) 2016, 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 #include "apps/aomenc.h" 13 14 #include "config/aom_config.h" 15 16 #include <assert.h> 17 #include <limits.h> 18 #include <math.h> 19 #include <stdarg.h> 20 #include <stdio.h> 21 #include <stdlib.h> 22 #include <string.h> 23 24 #if CONFIG_AV1_DECODER 25 #include "aom/aom_decoder.h" 26 #include "aom/aomdx.h" 27 #endif 28 29 #include "aom/aom_encoder.h" 30 #include "aom/aom_integer.h" 31 #include "aom/aomcx.h" 32 #include "aom_dsp/aom_dsp_common.h" 33 #include "aom_ports/aom_timer.h" 34 #include "aom_ports/mem_ops.h" 35 #include "common/args.h" 36 #include "common/ivfenc.h" 37 #include "common/tools_common.h" 38 #include "common/warnings.h" 39 40 #if CONFIG_WEBM_IO 41 #include "common/webmenc.h" 42 #endif 43 44 #include "common/y4minput.h" 45 #include "examples/encoder_util.h" 46 #include "stats/aomstats.h" 47 #include "stats/rate_hist.h" 48 49 #if CONFIG_LIBYUV 50 #include "third_party/libyuv/include/libyuv/scale.h" 51 #endif 52 53 /* Swallow warnings about unused results of fread/fwrite */ 54 static size_t wrap_fread(void *ptr, size_t size, size_t nmemb, FILE *stream) { 55 return fread(ptr, size, nmemb, stream); 56 } 57 #define fread wrap_fread 58 59 static size_t wrap_fwrite(const void *ptr, size_t size, size_t nmemb, 60 FILE *stream) { 61 return fwrite(ptr, size, nmemb, stream); 62 } 63 #define fwrite wrap_fwrite 64 65 static const char *exec_name; 66 67 static AOM_TOOLS_FORMAT_PRINTF(3, 0) void warn_or_exit_on_errorv( 68 aom_codec_ctx_t *ctx, int fatal, const char *s, va_list ap) { 69 if (ctx->err) { 70 const char *detail = aom_codec_error_detail(ctx); 71 72 vfprintf(stderr, s, ap); 73 fprintf(stderr, ": %s\n", aom_codec_error(ctx)); 74 75 if (detail) fprintf(stderr, " %s\n", detail); 76 77 if (fatal) { 78 aom_codec_destroy(ctx); 79 exit(EXIT_FAILURE); 80 } 81 } 82 } 83 84 static AOM_TOOLS_FORMAT_PRINTF(2, 85 3) void ctx_exit_on_error(aom_codec_ctx_t *ctx, 86 const char *s, ...) { 87 va_list ap; 88 89 va_start(ap, s); 90 warn_or_exit_on_errorv(ctx, 1, s, ap); 91 va_end(ap); 92 } 93 94 static AOM_TOOLS_FORMAT_PRINTF(3, 4) void warn_or_exit_on_error( 95 aom_codec_ctx_t *ctx, int fatal, const char *s, ...) { 96 va_list ap; 97 98 va_start(ap, s); 99 warn_or_exit_on_errorv(ctx, fatal, s, ap); 100 va_end(ap); 101 } 102 103 static int read_frame(struct AvxInputContext *input_ctx, aom_image_t *img) { 104 FILE *f = input_ctx->file; 105 y4m_input *y4m = &input_ctx->y4m; 106 int shortread = 0; 107 108 if (input_ctx->file_type == FILE_TYPE_Y4M) { 109 if (y4m_input_fetch_frame(y4m, f, img) < 1) return 0; 110 } else { 111 shortread = read_yuv_frame(input_ctx, img); 112 } 113 114 return !shortread; 115 } 116 117 static int file_is_y4m(const char detect[4]) { 118 if (memcmp(detect, "YUV4", 4) == 0) { 119 return 1; 120 } 121 return 0; 122 } 123 124 static int fourcc_is_ivf(const char detect[4]) { 125 if (memcmp(detect, "DKIF", 4) == 0) { 126 return 1; 127 } 128 return 0; 129 } 130 131 static const int av1_arg_ctrl_map[] = { AOME_SET_CPUUSED, 132 AOME_SET_ENABLEAUTOALTREF, 133 AOME_SET_STATIC_THRESHOLD, 134 AV1E_SET_ROW_MT, 135 AV1E_SET_FP_MT, 136 AV1E_SET_TILE_COLUMNS, 137 AV1E_SET_TILE_ROWS, 138 AV1E_SET_ENABLE_TPL_MODEL, 139 AV1E_SET_ENABLE_KEYFRAME_FILTERING, 140 AOME_SET_ARNR_MAXFRAMES, 141 AOME_SET_ARNR_STRENGTH, 142 AOME_SET_TUNING, 143 AOME_SET_CQ_LEVEL, 144 AOME_SET_MAX_INTRA_BITRATE_PCT, 145 AV1E_SET_MAX_INTER_BITRATE_PCT, 146 AV1E_SET_GF_CBR_BOOST_PCT, 147 AV1E_SET_LOSSLESS, 148 AV1E_SET_ENABLE_CDEF, 149 AV1E_SET_ENABLE_RESTORATION, 150 AV1E_SET_ENABLE_RECT_PARTITIONS, 151 AV1E_SET_ENABLE_AB_PARTITIONS, 152 AV1E_SET_ENABLE_1TO4_PARTITIONS, 153 AV1E_SET_MIN_PARTITION_SIZE, 154 AV1E_SET_MAX_PARTITION_SIZE, 155 AV1E_SET_ENABLE_DUAL_FILTER, 156 AV1E_SET_ENABLE_CHROMA_DELTAQ, 157 AV1E_SET_ENABLE_INTRA_EDGE_FILTER, 158 AV1E_SET_ENABLE_ORDER_HINT, 159 AV1E_SET_ENABLE_TX64, 160 AV1E_SET_ENABLE_FLIP_IDTX, 161 AV1E_SET_ENABLE_RECT_TX, 162 AV1E_SET_ENABLE_DIST_WTD_COMP, 163 AV1E_SET_ENABLE_MASKED_COMP, 164 AV1E_SET_ENABLE_ONESIDED_COMP, 165 AV1E_SET_ENABLE_INTERINTRA_COMP, 166 AV1E_SET_ENABLE_SMOOTH_INTERINTRA, 167 AV1E_SET_ENABLE_DIFF_WTD_COMP, 168 AV1E_SET_ENABLE_INTERINTER_WEDGE, 169 AV1E_SET_ENABLE_INTERINTRA_WEDGE, 170 AV1E_SET_ENABLE_GLOBAL_MOTION, 171 AV1E_SET_ENABLE_WARPED_MOTION, 172 AV1E_SET_ENABLE_FILTER_INTRA, 173 AV1E_SET_ENABLE_SMOOTH_INTRA, 174 AV1E_SET_ENABLE_PAETH_INTRA, 175 AV1E_SET_ENABLE_CFL_INTRA, 176 AV1E_SET_ENABLE_DIAGONAL_INTRA, 177 AV1E_SET_FORCE_VIDEO_MODE, 178 AV1E_SET_ENABLE_OBMC, 179 AV1E_SET_ENABLE_OVERLAY, 180 AV1E_SET_ENABLE_PALETTE, 181 AV1E_SET_ENABLE_INTRABC, 182 AV1E_SET_ENABLE_ANGLE_DELTA, 183 AV1E_SET_DISABLE_TRELLIS_QUANT, 184 AV1E_SET_ENABLE_QM, 185 AV1E_SET_QM_MIN, 186 AV1E_SET_QM_MAX, 187 AV1E_SET_REDUCED_TX_TYPE_SET, 188 AV1E_SET_INTRA_DCT_ONLY, 189 AV1E_SET_INTER_DCT_ONLY, 190 AV1E_SET_INTRA_DEFAULT_TX_ONLY, 191 AV1E_SET_QUANT_B_ADAPT, 192 AV1E_SET_COEFF_COST_UPD_FREQ, 193 AV1E_SET_MODE_COST_UPD_FREQ, 194 AV1E_SET_MV_COST_UPD_FREQ, 195 AV1E_SET_FRAME_PARALLEL_DECODING, 196 AV1E_SET_ERROR_RESILIENT_MODE, 197 AV1E_SET_AQ_MODE, 198 AV1E_SET_DELTAQ_MODE, 199 AV1E_SET_DELTAQ_STRENGTH, 200 AV1E_SET_DELTALF_MODE, 201 AV1E_SET_FRAME_PERIODIC_BOOST, 202 AV1E_SET_NOISE_SENSITIVITY, 203 AV1E_SET_TUNE_CONTENT, 204 AV1E_SET_CDF_UPDATE_MODE, 205 AV1E_SET_COLOR_PRIMARIES, 206 AV1E_SET_TRANSFER_CHARACTERISTICS, 207 AV1E_SET_MATRIX_COEFFICIENTS, 208 AV1E_SET_CHROMA_SAMPLE_POSITION, 209 AV1E_SET_MIN_GF_INTERVAL, 210 AV1E_SET_MAX_GF_INTERVAL, 211 AV1E_SET_GF_MIN_PYRAMID_HEIGHT, 212 AV1E_SET_GF_MAX_PYRAMID_HEIGHT, 213 AV1E_SET_SUPERBLOCK_SIZE, 214 AV1E_SET_NUM_TG, 215 AV1E_SET_MTU, 216 AV1E_SET_TIMING_INFO_TYPE, 217 AV1E_SET_FILM_GRAIN_TEST_VECTOR, 218 AV1E_SET_FILM_GRAIN_TABLE, 219 #if CONFIG_DENOISE 220 AV1E_SET_DENOISE_NOISE_LEVEL, 221 AV1E_SET_DENOISE_BLOCK_SIZE, 222 AV1E_SET_ENABLE_DNL_DENOISING, 223 #endif // CONFIG_DENOISE 224 AV1E_SET_MAX_REFERENCE_FRAMES, 225 AV1E_SET_REDUCED_REFERENCE_SET, 226 AV1E_SET_ENABLE_REF_FRAME_MVS, 227 AV1E_SET_TARGET_SEQ_LEVEL_IDX, 228 AV1E_SET_TIER_MASK, 229 AV1E_SET_MIN_CR, 230 AV1E_SET_VBR_CORPUS_COMPLEXITY_LAP, 231 AV1E_SET_CHROMA_SUBSAMPLING_X, 232 AV1E_SET_CHROMA_SUBSAMPLING_Y, 233 #if CONFIG_TUNE_VMAF 234 AV1E_SET_VMAF_MODEL_PATH, 235 #endif 236 AV1E_SET_DV_COST_UPD_FREQ, 237 AV1E_SET_PARTITION_INFO_PATH, 238 AV1E_SET_ENABLE_DIRECTIONAL_INTRA, 239 AV1E_SET_ENABLE_TX_SIZE_SEARCH, 240 AV1E_SET_LOOPFILTER_CONTROL, 241 AV1E_SET_AUTO_INTRA_TOOLS_OFF, 242 AV1E_ENABLE_RATE_GUIDE_DELTAQ, 243 AV1E_SET_RATE_DISTRIBUTION_INFO, 244 AV1E_SET_ENABLE_LOW_COMPLEXITY_DECODE, 245 0 }; 246 247 static const arg_def_t *const main_args[] = { 248 &g_av1_codec_arg_defs.help, 249 &g_av1_codec_arg_defs.use_cfg, 250 &g_av1_codec_arg_defs.debugmode, 251 &g_av1_codec_arg_defs.outputfile, 252 &g_av1_codec_arg_defs.codecarg, 253 &g_av1_codec_arg_defs.passes, 254 &g_av1_codec_arg_defs.pass_arg, 255 &g_av1_codec_arg_defs.fpf_name, 256 &g_av1_codec_arg_defs.limit, 257 &g_av1_codec_arg_defs.skip, 258 &g_av1_codec_arg_defs.good_dl, 259 &g_av1_codec_arg_defs.rt_dl, 260 &g_av1_codec_arg_defs.ai_dl, 261 &g_av1_codec_arg_defs.quietarg, 262 &g_av1_codec_arg_defs.verbosearg, 263 &g_av1_codec_arg_defs.psnrarg, 264 &g_av1_codec_arg_defs.use_webm, 265 &g_av1_codec_arg_defs.use_ivf, 266 &g_av1_codec_arg_defs.use_obu, 267 &g_av1_codec_arg_defs.q_hist_n, 268 &g_av1_codec_arg_defs.rate_hist_n, 269 &g_av1_codec_arg_defs.disable_warnings, 270 &g_av1_codec_arg_defs.disable_warning_prompt, 271 &g_av1_codec_arg_defs.recontest, 272 NULL 273 }; 274 275 static const arg_def_t *const global_args[] = { 276 &g_av1_codec_arg_defs.use_nv12, 277 &g_av1_codec_arg_defs.use_yv12, 278 &g_av1_codec_arg_defs.use_i420, 279 &g_av1_codec_arg_defs.use_i422, 280 &g_av1_codec_arg_defs.use_i444, 281 &g_av1_codec_arg_defs.usage, 282 &g_av1_codec_arg_defs.threads, 283 &g_av1_codec_arg_defs.profile, 284 &g_av1_codec_arg_defs.width, 285 &g_av1_codec_arg_defs.height, 286 &g_av1_codec_arg_defs.forced_max_frame_width, 287 &g_av1_codec_arg_defs.forced_max_frame_height, 288 #if CONFIG_WEBM_IO 289 &g_av1_codec_arg_defs.stereo_mode, 290 #endif 291 &g_av1_codec_arg_defs.timebase, 292 &g_av1_codec_arg_defs.framerate, 293 &g_av1_codec_arg_defs.global_error_resilient, 294 &g_av1_codec_arg_defs.bitdeptharg, 295 &g_av1_codec_arg_defs.inbitdeptharg, 296 &g_av1_codec_arg_defs.lag_in_frames, 297 &g_av1_codec_arg_defs.large_scale_tile, 298 &g_av1_codec_arg_defs.monochrome, 299 &g_av1_codec_arg_defs.full_still_picture_hdr, 300 &g_av1_codec_arg_defs.use_16bit_internal, 301 &g_av1_codec_arg_defs.save_as_annexb, 302 NULL 303 }; 304 305 static const arg_def_t *const rc_args[] = { 306 &g_av1_codec_arg_defs.dropframe_thresh, 307 &g_av1_codec_arg_defs.resize_mode, 308 &g_av1_codec_arg_defs.resize_denominator, 309 &g_av1_codec_arg_defs.resize_kf_denominator, 310 &g_av1_codec_arg_defs.superres_mode, 311 &g_av1_codec_arg_defs.superres_denominator, 312 &g_av1_codec_arg_defs.superres_kf_denominator, 313 &g_av1_codec_arg_defs.superres_qthresh, 314 &g_av1_codec_arg_defs.superres_kf_qthresh, 315 &g_av1_codec_arg_defs.end_usage, 316 &g_av1_codec_arg_defs.target_bitrate, 317 &g_av1_codec_arg_defs.min_quantizer, 318 &g_av1_codec_arg_defs.max_quantizer, 319 &g_av1_codec_arg_defs.undershoot_pct, 320 &g_av1_codec_arg_defs.overshoot_pct, 321 &g_av1_codec_arg_defs.buf_sz, 322 &g_av1_codec_arg_defs.buf_initial_sz, 323 &g_av1_codec_arg_defs.buf_optimal_sz, 324 &g_av1_codec_arg_defs.bias_pct, 325 &g_av1_codec_arg_defs.minsection_pct, 326 &g_av1_codec_arg_defs.maxsection_pct, 327 NULL 328 }; 329 330 static const arg_def_t *const kf_args[] = { 331 &g_av1_codec_arg_defs.fwd_kf_enabled, 332 &g_av1_codec_arg_defs.kf_min_dist, 333 &g_av1_codec_arg_defs.kf_max_dist, 334 &g_av1_codec_arg_defs.kf_disabled, 335 &g_av1_codec_arg_defs.sframe_dist, 336 &g_av1_codec_arg_defs.sframe_mode, 337 NULL 338 }; 339 340 // TODO(bohanli): Currently all options are supported by the key & value API. 341 // Consider removing the control ID usages? 342 static const arg_def_t *const av1_ctrl_args[] = { 343 &g_av1_codec_arg_defs.cpu_used_av1, 344 &g_av1_codec_arg_defs.auto_altref, 345 &g_av1_codec_arg_defs.static_thresh, 346 &g_av1_codec_arg_defs.rowmtarg, 347 &g_av1_codec_arg_defs.fpmtarg, 348 &g_av1_codec_arg_defs.tile_cols, 349 &g_av1_codec_arg_defs.tile_rows, 350 &g_av1_codec_arg_defs.enable_tpl_model, 351 &g_av1_codec_arg_defs.enable_keyframe_filtering, 352 &g_av1_codec_arg_defs.arnr_maxframes, 353 &g_av1_codec_arg_defs.arnr_strength, 354 &g_av1_codec_arg_defs.tune_metric, 355 &g_av1_codec_arg_defs.cq_level, 356 &g_av1_codec_arg_defs.max_intra_rate_pct, 357 &g_av1_codec_arg_defs.max_inter_rate_pct, 358 &g_av1_codec_arg_defs.gf_cbr_boost_pct, 359 &g_av1_codec_arg_defs.lossless, 360 &g_av1_codec_arg_defs.enable_cdef, 361 &g_av1_codec_arg_defs.enable_restoration, 362 &g_av1_codec_arg_defs.enable_rect_partitions, 363 &g_av1_codec_arg_defs.enable_ab_partitions, 364 &g_av1_codec_arg_defs.enable_1to4_partitions, 365 &g_av1_codec_arg_defs.min_partition_size, 366 &g_av1_codec_arg_defs.max_partition_size, 367 &g_av1_codec_arg_defs.enable_dual_filter, 368 &g_av1_codec_arg_defs.enable_chroma_deltaq, 369 &g_av1_codec_arg_defs.enable_intra_edge_filter, 370 &g_av1_codec_arg_defs.enable_order_hint, 371 &g_av1_codec_arg_defs.enable_tx64, 372 &g_av1_codec_arg_defs.enable_flip_idtx, 373 &g_av1_codec_arg_defs.enable_rect_tx, 374 &g_av1_codec_arg_defs.enable_dist_wtd_comp, 375 &g_av1_codec_arg_defs.enable_masked_comp, 376 &g_av1_codec_arg_defs.enable_onesided_comp, 377 &g_av1_codec_arg_defs.enable_interintra_comp, 378 &g_av1_codec_arg_defs.enable_smooth_interintra, 379 &g_av1_codec_arg_defs.enable_diff_wtd_comp, 380 &g_av1_codec_arg_defs.enable_interinter_wedge, 381 &g_av1_codec_arg_defs.enable_interintra_wedge, 382 &g_av1_codec_arg_defs.enable_global_motion, 383 &g_av1_codec_arg_defs.enable_warped_motion, 384 &g_av1_codec_arg_defs.enable_filter_intra, 385 &g_av1_codec_arg_defs.enable_smooth_intra, 386 &g_av1_codec_arg_defs.enable_paeth_intra, 387 &g_av1_codec_arg_defs.enable_cfl_intra, 388 &g_av1_codec_arg_defs.enable_diagonal_intra, 389 &g_av1_codec_arg_defs.force_video_mode, 390 &g_av1_codec_arg_defs.enable_obmc, 391 &g_av1_codec_arg_defs.enable_overlay, 392 &g_av1_codec_arg_defs.enable_palette, 393 &g_av1_codec_arg_defs.enable_intrabc, 394 &g_av1_codec_arg_defs.enable_angle_delta, 395 &g_av1_codec_arg_defs.disable_trellis_quant, 396 &g_av1_codec_arg_defs.enable_qm, 397 &g_av1_codec_arg_defs.qm_min, 398 &g_av1_codec_arg_defs.qm_max, 399 &g_av1_codec_arg_defs.reduced_tx_type_set, 400 &g_av1_codec_arg_defs.use_intra_dct_only, 401 &g_av1_codec_arg_defs.use_inter_dct_only, 402 &g_av1_codec_arg_defs.use_intra_default_tx_only, 403 &g_av1_codec_arg_defs.quant_b_adapt, 404 &g_av1_codec_arg_defs.coeff_cost_upd_freq, 405 &g_av1_codec_arg_defs.mode_cost_upd_freq, 406 &g_av1_codec_arg_defs.mv_cost_upd_freq, 407 &g_av1_codec_arg_defs.frame_parallel_decoding, 408 &g_av1_codec_arg_defs.error_resilient_mode, 409 &g_av1_codec_arg_defs.aq_mode, 410 &g_av1_codec_arg_defs.deltaq_mode, 411 &g_av1_codec_arg_defs.deltaq_strength, 412 &g_av1_codec_arg_defs.deltalf_mode, 413 &g_av1_codec_arg_defs.frame_periodic_boost, 414 &g_av1_codec_arg_defs.noise_sens, 415 &g_av1_codec_arg_defs.tune_content, 416 &g_av1_codec_arg_defs.cdf_update_mode, 417 &g_av1_codec_arg_defs.input_color_primaries, 418 &g_av1_codec_arg_defs.input_transfer_characteristics, 419 &g_av1_codec_arg_defs.input_matrix_coefficients, 420 &g_av1_codec_arg_defs.input_chroma_sample_position, 421 &g_av1_codec_arg_defs.min_gf_interval, 422 &g_av1_codec_arg_defs.max_gf_interval, 423 &g_av1_codec_arg_defs.gf_min_pyr_height, 424 &g_av1_codec_arg_defs.gf_max_pyr_height, 425 &g_av1_codec_arg_defs.superblock_size, 426 &g_av1_codec_arg_defs.num_tg, 427 &g_av1_codec_arg_defs.mtu_size, 428 &g_av1_codec_arg_defs.timing_info, 429 &g_av1_codec_arg_defs.film_grain_test, 430 &g_av1_codec_arg_defs.film_grain_table, 431 #if CONFIG_DENOISE 432 &g_av1_codec_arg_defs.denoise_noise_level, 433 &g_av1_codec_arg_defs.denoise_block_size, 434 &g_av1_codec_arg_defs.enable_dnl_denoising, 435 #endif // CONFIG_DENOISE 436 &g_av1_codec_arg_defs.max_reference_frames, 437 &g_av1_codec_arg_defs.reduced_reference_set, 438 &g_av1_codec_arg_defs.enable_ref_frame_mvs, 439 &g_av1_codec_arg_defs.target_seq_level_idx, 440 &g_av1_codec_arg_defs.set_tier_mask, 441 &g_av1_codec_arg_defs.set_min_cr, 442 &g_av1_codec_arg_defs.vbr_corpus_complexity_lap, 443 &g_av1_codec_arg_defs.input_chroma_subsampling_x, 444 &g_av1_codec_arg_defs.input_chroma_subsampling_y, 445 #if CONFIG_TUNE_VMAF 446 &g_av1_codec_arg_defs.vmaf_model_path, 447 #endif 448 &g_av1_codec_arg_defs.dv_cost_upd_freq, 449 &g_av1_codec_arg_defs.partition_info_path, 450 &g_av1_codec_arg_defs.enable_directional_intra, 451 &g_av1_codec_arg_defs.enable_tx_size_search, 452 &g_av1_codec_arg_defs.loopfilter_control, 453 &g_av1_codec_arg_defs.auto_intra_tools_off, 454 &g_av1_codec_arg_defs.enable_rate_guide_deltaq, 455 &g_av1_codec_arg_defs.rate_distribution_info, 456 &g_av1_codec_arg_defs.enable_low_complexity_decode, 457 NULL, 458 }; 459 460 static const arg_def_t *const av1_key_val_args[] = { 461 &g_av1_codec_arg_defs.passes, 462 &g_av1_codec_arg_defs.two_pass_output, 463 &g_av1_codec_arg_defs.second_pass_log, 464 &g_av1_codec_arg_defs.fwd_kf_dist, 465 &g_av1_codec_arg_defs.strict_level_conformance, 466 &g_av1_codec_arg_defs.sb_qp_sweep, 467 &g_av1_codec_arg_defs.dist_metric, 468 &g_av1_codec_arg_defs.kf_max_pyr_height, 469 &g_av1_codec_arg_defs.auto_tiles, 470 &g_av1_codec_arg_defs.screen_detection_mode, 471 &g_av1_codec_arg_defs.sharpness, 472 &g_av1_codec_arg_defs.enable_adaptive_sharpness, 473 NULL, 474 }; 475 476 static const arg_def_t *const no_args[] = { NULL }; 477 478 static void show_help(FILE *fout, int shorthelp) { 479 fprintf(fout, "Usage: %s <options> -o dst_filename src_filename\n", 480 exec_name); 481 482 if (shorthelp) { 483 fprintf(fout, "Use --help to see the full list of options.\n"); 484 return; 485 } 486 487 fprintf(fout, "\nOptions:\n"); 488 arg_show_usage(fout, main_args); 489 fprintf(fout, "\nEncoder Global Options:\n"); 490 arg_show_usage(fout, global_args); 491 fprintf(fout, "\nRate Control Options:\n"); 492 arg_show_usage(fout, rc_args); 493 fprintf(fout, "\nKeyframe Placement Options:\n"); 494 arg_show_usage(fout, kf_args); 495 #if CONFIG_AV1_ENCODER 496 fprintf(fout, "\nAV1 Specific Options:\n"); 497 arg_show_usage(fout, av1_ctrl_args); 498 arg_show_usage(fout, av1_key_val_args); 499 #endif 500 fprintf(fout, 501 "\nStream timebase (--timebase):\n" 502 " The desired precision of timestamps in the output, expressed\n" 503 " in fractional seconds. Default is 1/1000.\n"); 504 fprintf(fout, "\nIncluded encoders:\n\n"); 505 506 const int num_encoder = get_aom_encoder_count(); 507 for (int i = 0; i < num_encoder; ++i) { 508 aom_codec_iface_t *encoder = get_aom_encoder_by_index(i); 509 const char *defstr = (i == (num_encoder - 1)) ? "(default)" : ""; 510 fprintf(fout, " %-6s - %s %s\n", get_short_name_by_aom_encoder(encoder), 511 aom_codec_iface_name(encoder), defstr); 512 } 513 fprintf(fout, "\n "); 514 fprintf(fout, "Use --codec to switch to a non-default encoder.\n\n"); 515 } 516 517 void usage_exit(void) { 518 show_help(stderr, 1); 519 exit(EXIT_FAILURE); 520 } 521 522 #if CONFIG_AV1_ENCODER 523 #define ARG_CTRL_CNT_MAX NELEMENTS(av1_arg_ctrl_map) 524 #define ARG_KEY_VAL_CNT_MAX NELEMENTS(av1_key_val_args) 525 #endif 526 527 #if !CONFIG_WEBM_IO 528 typedef int stereo_format_t; 529 struct WebmOutputContext { 530 int debug; 531 }; 532 #endif 533 534 /* Per-stream configuration */ 535 struct stream_config { 536 struct aom_codec_enc_cfg cfg; 537 const char *out_fn; 538 const char *stats_fn; 539 stereo_format_t stereo_fmt; 540 int arg_ctrls[ARG_CTRL_CNT_MAX][2]; 541 int arg_ctrl_cnt; 542 const char *arg_key_vals[ARG_KEY_VAL_CNT_MAX][2]; 543 int arg_key_val_cnt; 544 int write_webm; 545 const char *film_grain_filename; 546 int write_ivf; 547 // whether to use 16bit internal buffers 548 int use_16bit_internal; 549 #if CONFIG_TUNE_VMAF 550 const char *vmaf_model_path; 551 #endif 552 const char *partition_info_path; 553 unsigned int enable_rate_guide_deltaq; 554 const char *rate_distribution_info; 555 aom_color_range_t color_range; 556 const char *two_pass_input; 557 const char *two_pass_output; 558 int two_pass_width; 559 int two_pass_height; 560 unsigned int enable_low_complexity_decode; 561 }; 562 563 struct stream_state { 564 int index; 565 struct stream_state *next; 566 struct stream_config config; 567 FILE *file; 568 struct rate_hist *rate_hist; 569 struct WebmOutputContext webm_ctx; 570 uint64_t psnr_sse_total[2]; 571 uint64_t psnr_samples_total[2]; 572 double psnr_totals[2][4]; 573 int psnr_count[2]; 574 int counts[64]; 575 aom_codec_ctx_t encoder; 576 unsigned int frames_out; 577 uint64_t cx_time; 578 size_t nbytes; 579 stats_io_t stats; 580 struct aom_image *img; 581 aom_codec_ctx_t decoder; 582 int mismatch_seen; 583 unsigned int chroma_subsampling_x; 584 unsigned int chroma_subsampling_y; 585 const char *orig_out_fn; 586 unsigned int orig_width; 587 unsigned int orig_height; 588 int orig_write_webm; 589 int orig_write_ivf; 590 char tmp_out_fn[1000]; 591 }; 592 593 static void validate_positive_rational(const char *msg, 594 struct aom_rational *rat) { 595 if (rat->den < 0) { 596 rat->num *= -1; 597 rat->den *= -1; 598 } 599 600 if (rat->num < 0) die("Error: %s must be positive\n", msg); 601 602 if (!rat->den) die("Error: %s has zero denominator\n", msg); 603 } 604 605 static void init_config(cfg_options_t *config) { 606 memset(config, 0, sizeof(cfg_options_t)); 607 config->super_block_size = 0; // Dynamic 608 config->max_partition_size = 128; 609 config->min_partition_size = 4; 610 config->disable_trellis_quant = 3; 611 } 612 613 /* Parses global config arguments into the AvxEncoderConfig. Note that 614 * argv is modified and overwrites all parsed arguments. 615 */ 616 static void parse_global_config(struct AvxEncoderConfig *global, char ***argv) { 617 char **argi, **argj; 618 struct arg arg; 619 const int num_encoder = get_aom_encoder_count(); 620 char **argv_local = (char **)*argv; 621 if (num_encoder < 1) die("Error: no valid encoder available\n"); 622 623 /* Initialize default parameters */ 624 memset(global, 0, sizeof(*global)); 625 global->codec = get_aom_encoder_by_index(num_encoder - 1); 626 global->passes = 0; 627 global->color_type = I420; 628 global->csp = AOM_CSP_UNKNOWN; 629 global->show_psnr = 0; 630 631 int cfg_included = 0; 632 init_config(&global->encoder_config); 633 634 for (argi = argj = argv_local; (*argj = *argi); argi += arg.argv_step) { 635 arg.argv_step = 1; 636 637 if (arg_match(&arg, &g_av1_codec_arg_defs.use_cfg, argi)) { 638 if (!cfg_included) { 639 parse_cfg(arg.val, &global->encoder_config); 640 cfg_included = 1; 641 } 642 } else if (arg_match(&arg, &g_av1_codec_arg_defs.help, argi)) { 643 show_help(stdout, 0); 644 exit(EXIT_SUCCESS); 645 } else if (arg_match(&arg, &g_av1_codec_arg_defs.codecarg, argi)) { 646 global->codec = get_aom_encoder_by_short_name(arg.val); 647 if (!global->codec) 648 die("Error: Unrecognized argument (%s) to --codec\n", arg.val); 649 } else if (arg_match(&arg, &g_av1_codec_arg_defs.passes, argi)) { 650 global->passes = arg_parse_uint(&arg); 651 652 if (global->passes < 1 || global->passes > 3) 653 die("Error: Invalid number of passes (%d)\n", global->passes); 654 } else if (arg_match(&arg, &g_av1_codec_arg_defs.pass_arg, argi)) { 655 global->pass = arg_parse_uint(&arg); 656 657 if (global->pass < 1 || global->pass > 3) 658 die("Error: Invalid pass selected (%d)\n", global->pass); 659 } else if (arg_match(&arg, 660 &g_av1_codec_arg_defs.input_chroma_sample_position, 661 argi)) { 662 global->csp = arg_parse_enum(&arg); 663 /* Flag is used by later code as well, preserve it. */ 664 argj++; 665 } else if (arg_match(&arg, &g_av1_codec_arg_defs.usage, argi)) { 666 global->usage = arg_parse_uint(&arg); 667 } else if (arg_match(&arg, &g_av1_codec_arg_defs.good_dl, argi)) { 668 global->usage = AOM_USAGE_GOOD_QUALITY; // Good quality usage 669 } else if (arg_match(&arg, &g_av1_codec_arg_defs.rt_dl, argi)) { 670 global->usage = AOM_USAGE_REALTIME; // Real-time usage 671 } else if (arg_match(&arg, &g_av1_codec_arg_defs.ai_dl, argi)) { 672 global->usage = AOM_USAGE_ALL_INTRA; // All intra usage 673 } else if (arg_match(&arg, &g_av1_codec_arg_defs.use_nv12, argi)) { 674 global->color_type = NV12; 675 } else if (arg_match(&arg, &g_av1_codec_arg_defs.use_yv12, argi)) { 676 global->color_type = YV12; 677 } else if (arg_match(&arg, &g_av1_codec_arg_defs.use_i420, argi)) { 678 global->color_type = I420; 679 } else if (arg_match(&arg, &g_av1_codec_arg_defs.use_i422, argi)) { 680 global->color_type = I422; 681 } else if (arg_match(&arg, &g_av1_codec_arg_defs.use_i444, argi)) { 682 global->color_type = I444; 683 } else if (arg_match(&arg, &g_av1_codec_arg_defs.quietarg, argi)) { 684 global->quiet = 1; 685 } else if (arg_match(&arg, &g_av1_codec_arg_defs.verbosearg, argi)) { 686 global->verbose = 1; 687 } else if (arg_match(&arg, &g_av1_codec_arg_defs.limit, argi)) { 688 global->limit = arg_parse_uint(&arg); 689 } else if (arg_match(&arg, &g_av1_codec_arg_defs.skip, argi)) { 690 global->skip_frames = arg_parse_uint(&arg); 691 } else if (arg_match(&arg, &g_av1_codec_arg_defs.psnrarg, argi)) { 692 if (arg.val) 693 global->show_psnr = arg_parse_int(&arg); 694 else 695 global->show_psnr = 1; 696 } else if (arg_match(&arg, &g_av1_codec_arg_defs.recontest, argi)) { 697 global->test_decode = arg_parse_enum_or_int(&arg); 698 } else if (arg_match(&arg, &g_av1_codec_arg_defs.framerate, argi)) { 699 global->framerate = arg_parse_rational(&arg); 700 validate_positive_rational(arg.name, &global->framerate); 701 global->have_framerate = 1; 702 } else if (arg_match(&arg, &g_av1_codec_arg_defs.debugmode, argi)) { 703 global->debug = 1; 704 } else if (arg_match(&arg, &g_av1_codec_arg_defs.q_hist_n, argi)) { 705 global->show_q_hist_buckets = arg_parse_uint(&arg); 706 } else if (arg_match(&arg, &g_av1_codec_arg_defs.rate_hist_n, argi)) { 707 global->show_rate_hist_buckets = arg_parse_uint(&arg); 708 } else if (arg_match(&arg, &g_av1_codec_arg_defs.disable_warnings, argi)) { 709 global->disable_warnings = 1; 710 } else if (arg_match(&arg, &g_av1_codec_arg_defs.disable_warning_prompt, 711 argi)) { 712 global->disable_warning_prompt = 1; 713 } else { 714 argj++; 715 } 716 } 717 718 if (global->pass) { 719 /* DWIM: Assume the user meant passes=2 if pass=2 is specified */ 720 if (global->pass > global->passes) { 721 aom_tools_warn("Assuming --pass=%d implies --passes=%d\n", global->pass, 722 global->pass); 723 global->passes = global->pass; 724 } 725 } 726 /* Validate global config */ 727 if (global->passes == 0) { 728 #if CONFIG_AV1_ENCODER 729 // Make default AV1 passes = 2 until there is a better quality 1-pass 730 // encoder 731 if (global->codec != NULL) 732 global->passes = 733 (strcmp(get_short_name_by_aom_encoder(global->codec), "av1") == 0 && 734 global->usage != AOM_USAGE_REALTIME) 735 ? 2 736 : 1; 737 #else 738 global->passes = 1; 739 #endif 740 } 741 742 if (global->usage == AOM_USAGE_REALTIME && global->passes > 1) { 743 aom_tools_warn("Enforcing one-pass encoding in realtime mode\n"); 744 if (global->pass > 1) 745 die("Error: Invalid --pass=%d for one-pass encoding\n", global->pass); 746 global->passes = 1; 747 } 748 749 if (global->usage == AOM_USAGE_ALL_INTRA && global->passes > 1) { 750 aom_tools_warn("Enforcing one-pass encoding in all intra mode\n"); 751 global->passes = 1; 752 } 753 } 754 755 static void open_input_file(struct AvxInputContext *input, 756 aom_chroma_sample_position_t csp) { 757 /* Parse certain options from the input file, if possible */ 758 input->file = strcmp(input->filename, "-") ? fopen(input->filename, "rb") 759 : set_binary_mode(stdin); 760 761 if (!input->file) fatal("Failed to open input file"); 762 763 if (!fseeko(input->file, 0, SEEK_END)) { 764 /* Input file is seekable. Figure out how long it is, so we can get 765 * progress info. 766 */ 767 input->length = ftello(input->file); 768 rewind(input->file); 769 } 770 771 /* Default to 1:1 pixel aspect ratio. */ 772 input->pixel_aspect_ratio.numerator = 1; 773 input->pixel_aspect_ratio.denominator = 1; 774 775 /* For RAW input sources, these bytes will applied on the first frame 776 * in read_frame(). 777 */ 778 input->detect.buf_read = fread(input->detect.buf, 1, 4, input->file); 779 input->detect.position = 0; 780 781 if (input->detect.buf_read == 4 && file_is_y4m(input->detect.buf)) { 782 if (y4m_input_open(&input->y4m, input->file, input->detect.buf, 4, csp, 783 input->only_i420) >= 0) { 784 input->file_type = FILE_TYPE_Y4M; 785 input->width = input->y4m.pic_w; 786 input->height = input->y4m.pic_h; 787 input->pixel_aspect_ratio.numerator = input->y4m.par_n; 788 input->pixel_aspect_ratio.denominator = input->y4m.par_d; 789 input->framerate.numerator = input->y4m.fps_n; 790 input->framerate.denominator = input->y4m.fps_d; 791 input->fmt = input->y4m.aom_fmt; 792 input->bit_depth = input->y4m.bit_depth; 793 input->color_range = input->y4m.color_range; 794 } else 795 fatal("Unsupported Y4M stream."); 796 } else if (input->detect.buf_read == 4 && fourcc_is_ivf(input->detect.buf)) { 797 fatal("IVF is not supported as input."); 798 } else { 799 input->file_type = FILE_TYPE_RAW; 800 } 801 } 802 803 static void close_input_file(struct AvxInputContext *input) { 804 fclose(input->file); 805 if (input->file_type == FILE_TYPE_Y4M) y4m_input_close(&input->y4m); 806 } 807 808 static struct stream_state *new_stream(struct AvxEncoderConfig *global, 809 struct stream_state *prev) { 810 struct stream_state *stream; 811 812 stream = calloc(1, sizeof(*stream)); 813 if (stream == NULL) { 814 fatal("Failed to allocate new stream."); 815 } 816 817 if (prev) { 818 *stream = *prev; 819 stream->index++; 820 prev->next = stream; 821 } else { 822 aom_codec_err_t res; 823 824 /* Populate encoder configuration */ 825 res = aom_codec_enc_config_default(global->codec, &stream->config.cfg, 826 global->usage); 827 if (res) fatal("Failed to get config: %s\n", aom_codec_err_to_string(res)); 828 829 /* Change the default timebase to a high enough value so that the 830 * encoder will always create strictly increasing timestamps. 831 */ 832 stream->config.cfg.g_timebase.den = 1000; 833 834 /* Never use the library's default resolution, require it be parsed 835 * from the file or set on the command line. 836 */ 837 stream->config.cfg.g_w = 0; 838 stream->config.cfg.g_h = 0; 839 840 /* Initialize remaining stream parameters */ 841 stream->config.write_webm = 1; 842 stream->config.write_ivf = 0; 843 844 #if CONFIG_WEBM_IO 845 stream->config.stereo_fmt = STEREO_FORMAT_MONO; 846 stream->webm_ctx.last_pts_ns = -1; 847 stream->webm_ctx.writer = NULL; 848 stream->webm_ctx.segment = NULL; 849 #endif 850 851 /* Allows removal of the application version from the EBML tags */ 852 stream->webm_ctx.debug = global->debug; 853 stream->config.cfg.encoder_cfg = global->encoder_config; 854 } 855 856 /* Output files must be specified for each stream */ 857 stream->config.out_fn = NULL; 858 stream->config.two_pass_input = NULL; 859 stream->config.two_pass_output = NULL; 860 stream->config.two_pass_width = 0; 861 stream->config.two_pass_height = 0; 862 863 stream->next = NULL; 864 return stream; 865 } 866 867 static void set_config_arg_ctrls(struct stream_config *config, int key, 868 const struct arg *arg) { 869 int j; 870 if (key == AV1E_SET_FILM_GRAIN_TABLE) { 871 config->film_grain_filename = arg->val; 872 return; 873 } 874 875 // For target level, the settings should accumulate rather than overwrite, 876 // so we simply append it. 877 if (key == AV1E_SET_TARGET_SEQ_LEVEL_IDX) { 878 j = config->arg_ctrl_cnt; 879 assert(j < ARG_CTRL_CNT_MAX); 880 config->arg_ctrls[j][0] = key; 881 config->arg_ctrls[j][1] = arg_parse_enum_or_int(arg); 882 ++config->arg_ctrl_cnt; 883 return; 884 } 885 886 /* Point either to the next free element or the first instance of this 887 * control. 888 */ 889 for (j = 0; j < config->arg_ctrl_cnt; j++) 890 if (config->arg_ctrls[j][0] == key) break; 891 892 /* Update/insert */ 893 assert(j < ARG_CTRL_CNT_MAX); 894 config->arg_ctrls[j][0] = key; 895 config->arg_ctrls[j][1] = arg_parse_enum_or_int(arg); 896 897 if (key == AOME_SET_ENABLEAUTOALTREF && config->arg_ctrls[j][1] > 1) { 898 aom_tools_warn( 899 "auto-alt-ref > 1 is deprecated... setting auto-alt-ref=1\n"); 900 config->arg_ctrls[j][1] = 1; 901 } 902 903 if (j == config->arg_ctrl_cnt) config->arg_ctrl_cnt++; 904 } 905 906 static void set_config_arg_key_vals(struct stream_config *config, 907 const char *name, const struct arg *arg) { 908 int j; 909 const char *val = arg->val; 910 // For target level, the settings should accumulate rather than overwrite, 911 // so we simply append it. 912 if (strcmp(name, "target-seq-level-idx") == 0) { 913 j = config->arg_key_val_cnt; 914 assert(j < ARG_KEY_VAL_CNT_MAX); 915 config->arg_key_vals[j][0] = name; 916 config->arg_key_vals[j][1] = val; 917 ++config->arg_key_val_cnt; 918 return; 919 } 920 921 /* Point either to the next free element or the first instance of this 922 * option. 923 */ 924 for (j = 0; j < config->arg_key_val_cnt; j++) 925 if (strcmp(name, config->arg_key_vals[j][0]) == 0) break; 926 927 /* Update/insert */ 928 assert(j < ARG_KEY_VAL_CNT_MAX); 929 config->arg_key_vals[j][0] = name; 930 config->arg_key_vals[j][1] = val; 931 932 if (strcmp(name, g_av1_codec_arg_defs.auto_altref.long_name) == 0) { 933 int auto_altref = arg_parse_int(arg); 934 if (auto_altref > 1) { 935 aom_tools_warn( 936 "auto-alt-ref > 1 is deprecated... setting auto-alt-ref=1\n"); 937 config->arg_key_vals[j][1] = "1"; 938 } 939 } 940 941 if (j == config->arg_key_val_cnt) config->arg_key_val_cnt++; 942 } 943 944 static int parse_stream_params(struct AvxEncoderConfig *global, 945 struct stream_state *stream, char **argv) { 946 char **argi, **argj; 947 struct arg arg; 948 const arg_def_t *const *ctrl_args = no_args; 949 const arg_def_t *const *key_val_args = no_args; 950 const int *ctrl_args_map = NULL; 951 struct stream_config *config = &stream->config; 952 int eos_mark_found = 0; 953 int webm_forced = 0; 954 955 // Handle codec specific options 956 if (0) { 957 #if CONFIG_AV1_ENCODER 958 } else if (strcmp(get_short_name_by_aom_encoder(global->codec), "av1") == 0) { 959 // TODO(jingning): Reuse AV1 specific encoder configuration parameters. 960 // Consider to expand this set for AV1 encoder control. 961 #if __STDC_VERSION__ >= 201112L 962 _Static_assert(NELEMENTS(av1_ctrl_args) == NELEMENTS(av1_arg_ctrl_map), 963 "The av1_ctrl_args and av1_arg_ctrl_map arrays must be of " 964 "the same size."); 965 #else 966 assert(NELEMENTS(av1_ctrl_args) == NELEMENTS(av1_arg_ctrl_map)); 967 #endif 968 ctrl_args = av1_ctrl_args; 969 ctrl_args_map = av1_arg_ctrl_map; 970 key_val_args = av1_key_val_args; 971 #endif 972 } 973 974 for (argi = argj = argv; (*argj = *argi); argi += arg.argv_step) { 975 arg.argv_step = 1; 976 977 /* Once we've found an end-of-stream marker (--) we want to continue 978 * shifting arguments but not consuming them. 979 */ 980 if (eos_mark_found) { 981 argj++; 982 continue; 983 } else if (!strcmp(*argj, "--")) { 984 eos_mark_found = 1; 985 continue; 986 } 987 988 if (arg_match(&arg, &g_av1_codec_arg_defs.outputfile, argi)) { 989 config->out_fn = arg.val; 990 if (!webm_forced) { 991 const size_t out_fn_len = strlen(config->out_fn); 992 if (out_fn_len >= 4 && 993 !strcmp(config->out_fn + out_fn_len - 4, ".ivf")) { 994 config->write_webm = 0; 995 config->write_ivf = 1; 996 } else if (out_fn_len >= 4 && 997 !strcmp(config->out_fn + out_fn_len - 4, ".obu")) { 998 config->write_webm = 0; 999 config->write_ivf = 0; 1000 } 1001 } 1002 } else if (arg_match(&arg, &g_av1_codec_arg_defs.fpf_name, argi)) { 1003 config->stats_fn = arg.val; 1004 } else if (arg_match(&arg, &g_av1_codec_arg_defs.use_webm, argi)) { 1005 #if CONFIG_WEBM_IO 1006 config->write_webm = 1; 1007 webm_forced = 1; 1008 #else 1009 die("Error: --webm specified but webm is disabled."); 1010 #endif 1011 } else if (arg_match(&arg, &g_av1_codec_arg_defs.use_ivf, argi)) { 1012 config->write_webm = 0; 1013 config->write_ivf = 1; 1014 } else if (arg_match(&arg, &g_av1_codec_arg_defs.use_obu, argi)) { 1015 config->write_webm = 0; 1016 config->write_ivf = 0; 1017 } else if (arg_match(&arg, &g_av1_codec_arg_defs.threads, argi)) { 1018 config->cfg.g_threads = arg_parse_uint(&arg); 1019 } else if (arg_match(&arg, &g_av1_codec_arg_defs.profile, argi)) { 1020 config->cfg.g_profile = arg_parse_uint(&arg); 1021 } else if (arg_match(&arg, &g_av1_codec_arg_defs.width, argi)) { 1022 config->cfg.g_w = arg_parse_uint(&arg); 1023 } else if (arg_match(&arg, &g_av1_codec_arg_defs.height, argi)) { 1024 config->cfg.g_h = arg_parse_uint(&arg); 1025 } else if (arg_match(&arg, &g_av1_codec_arg_defs.forced_max_frame_width, 1026 argi)) { 1027 config->cfg.g_forced_max_frame_width = arg_parse_uint(&arg); 1028 } else if (arg_match(&arg, &g_av1_codec_arg_defs.forced_max_frame_height, 1029 argi)) { 1030 config->cfg.g_forced_max_frame_height = arg_parse_uint(&arg); 1031 } else if (arg_match(&arg, &g_av1_codec_arg_defs.bitdeptharg, argi)) { 1032 config->cfg.g_bit_depth = arg_parse_enum_or_int(&arg); 1033 } else if (arg_match(&arg, &g_av1_codec_arg_defs.inbitdeptharg, argi)) { 1034 config->cfg.g_input_bit_depth = arg_parse_uint(&arg); 1035 } else if (arg_match(&arg, &g_av1_codec_arg_defs.input_chroma_subsampling_x, 1036 argi)) { 1037 stream->chroma_subsampling_x = arg_parse_uint(&arg); 1038 } else if (arg_match(&arg, &g_av1_codec_arg_defs.input_chroma_subsampling_y, 1039 argi)) { 1040 stream->chroma_subsampling_y = arg_parse_uint(&arg); 1041 #if CONFIG_WEBM_IO 1042 } else if (arg_match(&arg, &g_av1_codec_arg_defs.stereo_mode, argi)) { 1043 config->stereo_fmt = arg_parse_enum_or_int(&arg); 1044 #endif 1045 } else if (arg_match(&arg, &g_av1_codec_arg_defs.timebase, argi)) { 1046 config->cfg.g_timebase = arg_parse_rational(&arg); 1047 validate_positive_rational(arg.name, &config->cfg.g_timebase); 1048 } else if (arg_match(&arg, &g_av1_codec_arg_defs.global_error_resilient, 1049 argi)) { 1050 config->cfg.g_error_resilient = arg_parse_uint(&arg); 1051 } else if (arg_match(&arg, &g_av1_codec_arg_defs.lag_in_frames, argi)) { 1052 config->cfg.g_lag_in_frames = arg_parse_uint(&arg); 1053 } else if (arg_match(&arg, &g_av1_codec_arg_defs.large_scale_tile, argi)) { 1054 config->cfg.large_scale_tile = arg_parse_uint(&arg); 1055 if (config->cfg.large_scale_tile) { 1056 global->codec = get_aom_encoder_by_short_name("av1"); 1057 } 1058 } else if (arg_match(&arg, &g_av1_codec_arg_defs.monochrome, argi)) { 1059 config->cfg.monochrome = 1; 1060 } else if (arg_match(&arg, &g_av1_codec_arg_defs.full_still_picture_hdr, 1061 argi)) { 1062 config->cfg.full_still_picture_hdr = 1; 1063 } else if (arg_match(&arg, &g_av1_codec_arg_defs.use_16bit_internal, 1064 argi)) { 1065 config->use_16bit_internal = CONFIG_AV1_HIGHBITDEPTH; 1066 if (!config->use_16bit_internal) { 1067 aom_tools_warn("%s option ignored with CONFIG_AV1_HIGHBITDEPTH=0.\n", 1068 arg.name); 1069 } 1070 } else if (arg_match(&arg, &g_av1_codec_arg_defs.dropframe_thresh, argi)) { 1071 config->cfg.rc_dropframe_thresh = arg_parse_uint(&arg); 1072 } else if (arg_match(&arg, &g_av1_codec_arg_defs.resize_mode, argi)) { 1073 config->cfg.rc_resize_mode = arg_parse_uint(&arg); 1074 } else if (arg_match(&arg, &g_av1_codec_arg_defs.resize_denominator, 1075 argi)) { 1076 config->cfg.rc_resize_denominator = arg_parse_uint(&arg); 1077 } else if (arg_match(&arg, &g_av1_codec_arg_defs.resize_kf_denominator, 1078 argi)) { 1079 config->cfg.rc_resize_kf_denominator = arg_parse_uint(&arg); 1080 } else if (arg_match(&arg, &g_av1_codec_arg_defs.superres_mode, argi)) { 1081 config->cfg.rc_superres_mode = arg_parse_uint(&arg); 1082 } else if (arg_match(&arg, &g_av1_codec_arg_defs.superres_denominator, 1083 argi)) { 1084 config->cfg.rc_superres_denominator = arg_parse_uint(&arg); 1085 } else if (arg_match(&arg, &g_av1_codec_arg_defs.superres_kf_denominator, 1086 argi)) { 1087 config->cfg.rc_superres_kf_denominator = arg_parse_uint(&arg); 1088 } else if (arg_match(&arg, &g_av1_codec_arg_defs.superres_qthresh, argi)) { 1089 config->cfg.rc_superres_qthresh = arg_parse_uint(&arg); 1090 } else if (arg_match(&arg, &g_av1_codec_arg_defs.superres_kf_qthresh, 1091 argi)) { 1092 config->cfg.rc_superres_kf_qthresh = arg_parse_uint(&arg); 1093 } else if (arg_match(&arg, &g_av1_codec_arg_defs.end_usage, argi)) { 1094 config->cfg.rc_end_usage = arg_parse_enum_or_int(&arg); 1095 } else if (arg_match(&arg, &g_av1_codec_arg_defs.target_bitrate, argi)) { 1096 config->cfg.rc_target_bitrate = arg_parse_uint(&arg); 1097 } else if (arg_match(&arg, &g_av1_codec_arg_defs.min_quantizer, argi)) { 1098 config->cfg.rc_min_quantizer = arg_parse_uint(&arg); 1099 } else if (arg_match(&arg, &g_av1_codec_arg_defs.max_quantizer, argi)) { 1100 config->cfg.rc_max_quantizer = arg_parse_uint(&arg); 1101 } else if (arg_match(&arg, &g_av1_codec_arg_defs.undershoot_pct, argi)) { 1102 config->cfg.rc_undershoot_pct = arg_parse_uint(&arg); 1103 } else if (arg_match(&arg, &g_av1_codec_arg_defs.overshoot_pct, argi)) { 1104 config->cfg.rc_overshoot_pct = arg_parse_uint(&arg); 1105 } else if (arg_match(&arg, &g_av1_codec_arg_defs.buf_sz, argi)) { 1106 config->cfg.rc_buf_sz = arg_parse_uint(&arg); 1107 } else if (arg_match(&arg, &g_av1_codec_arg_defs.buf_initial_sz, argi)) { 1108 config->cfg.rc_buf_initial_sz = arg_parse_uint(&arg); 1109 } else if (arg_match(&arg, &g_av1_codec_arg_defs.buf_optimal_sz, argi)) { 1110 config->cfg.rc_buf_optimal_sz = arg_parse_uint(&arg); 1111 } else if (arg_match(&arg, &g_av1_codec_arg_defs.bias_pct, argi)) { 1112 config->cfg.rc_2pass_vbr_bias_pct = arg_parse_uint(&arg); 1113 if (global->passes < 2) 1114 aom_tools_warn("option %s ignored in one-pass mode.\n", arg.name); 1115 } else if (arg_match(&arg, &g_av1_codec_arg_defs.minsection_pct, argi)) { 1116 config->cfg.rc_2pass_vbr_minsection_pct = arg_parse_uint(&arg); 1117 1118 if (global->passes < 2) 1119 aom_tools_warn("option %s ignored in one-pass mode.\n", arg.name); 1120 } else if (arg_match(&arg, &g_av1_codec_arg_defs.maxsection_pct, argi)) { 1121 config->cfg.rc_2pass_vbr_maxsection_pct = arg_parse_uint(&arg); 1122 1123 if (global->passes < 2) 1124 aom_tools_warn("option %s ignored in one-pass mode.\n", arg.name); 1125 } else if (arg_match(&arg, &g_av1_codec_arg_defs.fwd_kf_enabled, argi)) { 1126 config->cfg.fwd_kf_enabled = arg_parse_uint(&arg); 1127 } else if (arg_match(&arg, &g_av1_codec_arg_defs.kf_min_dist, argi)) { 1128 config->cfg.kf_min_dist = arg_parse_uint(&arg); 1129 } else if (arg_match(&arg, &g_av1_codec_arg_defs.kf_max_dist, argi)) { 1130 config->cfg.kf_max_dist = arg_parse_uint(&arg); 1131 } else if (arg_match(&arg, &g_av1_codec_arg_defs.kf_disabled, argi)) { 1132 config->cfg.kf_mode = AOM_KF_DISABLED; 1133 } else if (arg_match(&arg, &g_av1_codec_arg_defs.sframe_dist, argi)) { 1134 config->cfg.sframe_dist = arg_parse_uint(&arg); 1135 } else if (arg_match(&arg, &g_av1_codec_arg_defs.sframe_mode, argi)) { 1136 config->cfg.sframe_mode = arg_parse_uint(&arg); 1137 } else if (arg_match(&arg, &g_av1_codec_arg_defs.save_as_annexb, argi)) { 1138 config->cfg.save_as_annexb = arg_parse_uint(&arg); 1139 } else if (arg_match(&arg, &g_av1_codec_arg_defs.tile_width, argi)) { 1140 config->cfg.tile_width_count = 1141 arg_parse_list(&arg, config->cfg.tile_widths, MAX_TILE_WIDTHS); 1142 } else if (arg_match(&arg, &g_av1_codec_arg_defs.tile_height, argi)) { 1143 config->cfg.tile_height_count = 1144 arg_parse_list(&arg, config->cfg.tile_heights, MAX_TILE_HEIGHTS); 1145 #if CONFIG_TUNE_VMAF 1146 } else if (arg_match(&arg, &g_av1_codec_arg_defs.vmaf_model_path, argi)) { 1147 config->vmaf_model_path = arg.val; 1148 #endif 1149 } else if (arg_match(&arg, &g_av1_codec_arg_defs.partition_info_path, 1150 argi)) { 1151 config->partition_info_path = arg.val; 1152 } else if (arg_match(&arg, &g_av1_codec_arg_defs.enable_rate_guide_deltaq, 1153 argi)) { 1154 config->enable_rate_guide_deltaq = arg_parse_uint(&arg); 1155 } else if (arg_match(&arg, &g_av1_codec_arg_defs.rate_distribution_info, 1156 argi)) { 1157 config->rate_distribution_info = arg.val; 1158 } else if (arg_match(&arg, 1159 &g_av1_codec_arg_defs.enable_low_complexity_decode, 1160 argi)) { 1161 config->enable_low_complexity_decode = arg_parse_uint(&arg); 1162 } else if (arg_match(&arg, &g_av1_codec_arg_defs.use_fixed_qp_offsets, 1163 argi)) { 1164 config->cfg.use_fixed_qp_offsets = arg_parse_uint(&arg); 1165 } else if (arg_match(&arg, &g_av1_codec_arg_defs.fixed_qp_offsets, argi)) { 1166 config->cfg.use_fixed_qp_offsets = 1; 1167 } else if (global->usage == AOM_USAGE_REALTIME && 1168 arg_match(&arg, &g_av1_codec_arg_defs.enable_restoration, 1169 argi)) { 1170 if (arg_parse_uint(&arg) == 1) { 1171 aom_tools_warn("non-zero %s option ignored in realtime mode.\n", 1172 arg.name); 1173 } 1174 } else if (arg_match(&arg, &g_av1_codec_arg_defs.two_pass_input, argi)) { 1175 config->two_pass_input = arg.val; 1176 } else if (arg_match(&arg, &g_av1_codec_arg_defs.two_pass_output, argi)) { 1177 config->two_pass_output = arg.val; 1178 } else if (arg_match(&arg, &g_av1_codec_arg_defs.two_pass_width, argi)) { 1179 config->two_pass_width = arg_parse_int(&arg); 1180 } else if (arg_match(&arg, &g_av1_codec_arg_defs.two_pass_height, argi)) { 1181 config->two_pass_height = arg_parse_int(&arg); 1182 } else { 1183 int i, match = 0; 1184 // check if the control ID API supports this arg 1185 if (ctrl_args_map) { 1186 for (i = 0; ctrl_args[i]; i++) { 1187 if (arg_match(&arg, ctrl_args[i], argi)) { 1188 match = 1; 1189 set_config_arg_ctrls(config, ctrl_args_map[i], &arg); 1190 break; 1191 } 1192 } 1193 } 1194 if (!match) { 1195 // check if the key & value API supports this arg 1196 for (i = 0; key_val_args[i]; i++) { 1197 if (arg_match(&arg, key_val_args[i], argi)) { 1198 match = 1; 1199 set_config_arg_key_vals(config, key_val_args[i]->long_name, &arg); 1200 break; 1201 } 1202 } 1203 } 1204 if (!match) argj++; 1205 } 1206 } 1207 config->use_16bit_internal |= config->cfg.g_bit_depth > AOM_BITS_8; 1208 1209 if (global->usage == AOM_USAGE_REALTIME && config->cfg.g_lag_in_frames != 0) { 1210 aom_tools_warn("non-zero lag-in-frames option ignored in realtime mode.\n"); 1211 config->cfg.g_lag_in_frames = 0; 1212 } 1213 1214 if (global->usage == AOM_USAGE_ALL_INTRA) { 1215 if (config->cfg.g_lag_in_frames != 0) { 1216 aom_tools_warn( 1217 "non-zero lag-in-frames option ignored in all intra mode.\n"); 1218 config->cfg.g_lag_in_frames = 0; 1219 } 1220 if (config->cfg.kf_max_dist != 0) { 1221 aom_tools_warn( 1222 "non-zero max key frame distance option ignored in all intra " 1223 "mode.\n"); 1224 config->cfg.kf_max_dist = 0; 1225 } 1226 } 1227 1228 // set the passes field using key & val API 1229 if (config->arg_key_val_cnt >= ARG_KEY_VAL_CNT_MAX) { 1230 die("Not enough buffer for the key & value API."); 1231 } 1232 config->arg_key_vals[config->arg_key_val_cnt][0] = "passes"; 1233 switch (global->passes) { 1234 case 0: config->arg_key_vals[config->arg_key_val_cnt][1] = "0"; break; 1235 case 1: config->arg_key_vals[config->arg_key_val_cnt][1] = "1"; break; 1236 case 2: config->arg_key_vals[config->arg_key_val_cnt][1] = "2"; break; 1237 case 3: config->arg_key_vals[config->arg_key_val_cnt][1] = "3"; break; 1238 default: die("Invalid value of --passes."); 1239 } 1240 config->arg_key_val_cnt++; 1241 1242 // set the two_pass_output field 1243 if (!config->two_pass_output && global->passes == 3) { 1244 // If not specified, set the name of two_pass_output file here. 1245 snprintf(stream->tmp_out_fn, sizeof(stream->tmp_out_fn), 1246 "%.980s_pass2_%d.ivf", stream->config.out_fn, stream->index); 1247 stream->config.two_pass_output = stream->tmp_out_fn; 1248 } 1249 if (config->two_pass_output) { 1250 config->arg_key_vals[config->arg_key_val_cnt][0] = "two-pass-output"; 1251 config->arg_key_vals[config->arg_key_val_cnt][1] = config->two_pass_output; 1252 config->arg_key_val_cnt++; 1253 } 1254 1255 return eos_mark_found; 1256 } 1257 1258 #define FOREACH_STREAM(iterator, list) \ 1259 for (struct stream_state *iterator = list; iterator; \ 1260 iterator = iterator->next) 1261 1262 static void validate_stream_config(const struct stream_state *stream, 1263 const struct AvxEncoderConfig *global) { 1264 const struct stream_state *streami; 1265 (void)global; 1266 1267 if (!stream->config.cfg.g_w || !stream->config.cfg.g_h) 1268 fatal( 1269 "Stream %d: Specify stream dimensions with --width (-w) " 1270 " and --height (-h)", 1271 stream->index); 1272 1273 /* Even if bit depth is set on the command line flag to be lower, 1274 * it is upgraded to at least match the input bit depth. 1275 */ 1276 assert(stream->config.cfg.g_input_bit_depth <= 1277 (unsigned int)stream->config.cfg.g_bit_depth); 1278 1279 for (streami = stream; streami; streami = streami->next) { 1280 /* All streams require output files */ 1281 if (!streami->config.out_fn) 1282 fatal("Stream %d: Output file is required (specify with -o)", 1283 streami->index); 1284 1285 /* Check for two streams outputting to the same file */ 1286 if (streami != stream) { 1287 const char *a = stream->config.out_fn; 1288 const char *b = streami->config.out_fn; 1289 if (!strcmp(a, b) && strcmp(a, "/dev/null") && strcmp(a, ":nul")) 1290 fatal("Stream %d: duplicate output file (from stream %d)", 1291 streami->index, stream->index); 1292 } 1293 1294 /* Check for two streams sharing a stats file. */ 1295 if (streami != stream) { 1296 const char *a = stream->config.stats_fn; 1297 const char *b = streami->config.stats_fn; 1298 if (a && b && !strcmp(a, b)) 1299 fatal("Stream %d: duplicate stats file (from stream %d)", 1300 streami->index, stream->index); 1301 } 1302 } 1303 } 1304 1305 static void set_stream_dimensions(struct stream_state *stream, unsigned int w, 1306 unsigned int h) { 1307 if (!stream->config.cfg.g_w) { 1308 if (!stream->config.cfg.g_h) 1309 stream->config.cfg.g_w = w; 1310 else 1311 stream->config.cfg.g_w = w * stream->config.cfg.g_h / h; 1312 } 1313 if (!stream->config.cfg.g_h) { 1314 stream->config.cfg.g_h = h * stream->config.cfg.g_w / w; 1315 } 1316 } 1317 1318 static const char *file_type_to_string(enum VideoFileType t) { 1319 switch (t) { 1320 case FILE_TYPE_RAW: return "RAW"; 1321 case FILE_TYPE_Y4M: return "Y4M"; 1322 default: return "Other"; 1323 } 1324 } 1325 1326 static void show_stream_config(struct stream_state *stream, 1327 struct AvxEncoderConfig *global, 1328 struct AvxInputContext *input) { 1329 #define SHOW(field) \ 1330 fprintf(stderr, " %-28s = %d\n", #field, stream->config.cfg.field) 1331 1332 if (stream->index == 0) { 1333 fprintf(stderr, "Codec: %s\n", aom_codec_iface_name(global->codec)); 1334 fprintf(stderr, "Source file: %s File Type: %s Format: %s\n", 1335 input->filename, file_type_to_string(input->file_type), 1336 image_format_to_string(input->fmt)); 1337 } 1338 if (stream->next || stream->index) 1339 fprintf(stderr, "\nStream Index: %d\n", stream->index); 1340 fprintf(stderr, "Destination file: %s\n", stream->config.out_fn); 1341 fprintf(stderr, "Coding path: %s\n", 1342 stream->config.use_16bit_internal ? "HBD" : "LBD"); 1343 fprintf(stderr, "Encoder parameters:\n"); 1344 1345 SHOW(g_usage); 1346 SHOW(g_threads); 1347 SHOW(g_profile); 1348 SHOW(g_w); 1349 SHOW(g_h); 1350 SHOW(g_bit_depth); 1351 SHOW(g_input_bit_depth); 1352 SHOW(g_timebase.num); 1353 SHOW(g_timebase.den); 1354 SHOW(g_error_resilient); 1355 SHOW(g_pass); 1356 SHOW(g_lag_in_frames); 1357 SHOW(large_scale_tile); 1358 SHOW(rc_dropframe_thresh); 1359 SHOW(rc_resize_mode); 1360 SHOW(rc_resize_denominator); 1361 SHOW(rc_resize_kf_denominator); 1362 SHOW(rc_superres_mode); 1363 SHOW(rc_superres_denominator); 1364 SHOW(rc_superres_kf_denominator); 1365 SHOW(rc_superres_qthresh); 1366 SHOW(rc_superres_kf_qthresh); 1367 SHOW(rc_end_usage); 1368 SHOW(rc_target_bitrate); 1369 SHOW(rc_min_quantizer); 1370 SHOW(rc_max_quantizer); 1371 SHOW(rc_undershoot_pct); 1372 SHOW(rc_overshoot_pct); 1373 SHOW(rc_buf_sz); 1374 SHOW(rc_buf_initial_sz); 1375 SHOW(rc_buf_optimal_sz); 1376 SHOW(rc_2pass_vbr_bias_pct); 1377 SHOW(rc_2pass_vbr_minsection_pct); 1378 SHOW(rc_2pass_vbr_maxsection_pct); 1379 SHOW(fwd_kf_enabled); 1380 SHOW(kf_mode); 1381 SHOW(kf_min_dist); 1382 SHOW(kf_max_dist); 1383 1384 #define SHOW_PARAMS(field) \ 1385 fprintf(stderr, " %-28s = %d\n", #field, \ 1386 stream->config.cfg.encoder_cfg.field) 1387 if (global->encoder_config.init_by_cfg_file) { 1388 SHOW_PARAMS(super_block_size); 1389 SHOW_PARAMS(max_partition_size); 1390 SHOW_PARAMS(min_partition_size); 1391 SHOW_PARAMS(disable_ab_partition_type); 1392 SHOW_PARAMS(disable_rect_partition_type); 1393 SHOW_PARAMS(disable_1to4_partition_type); 1394 SHOW_PARAMS(disable_flip_idtx); 1395 SHOW_PARAMS(disable_cdef); 1396 SHOW_PARAMS(disable_lr); 1397 SHOW_PARAMS(disable_obmc); 1398 SHOW_PARAMS(disable_warp_motion); 1399 SHOW_PARAMS(disable_global_motion); 1400 SHOW_PARAMS(disable_dist_wtd_comp); 1401 SHOW_PARAMS(disable_diff_wtd_comp); 1402 SHOW_PARAMS(disable_inter_intra_comp); 1403 SHOW_PARAMS(disable_masked_comp); 1404 SHOW_PARAMS(disable_one_sided_comp); 1405 SHOW_PARAMS(disable_palette); 1406 SHOW_PARAMS(disable_intrabc); 1407 SHOW_PARAMS(disable_cfl); 1408 SHOW_PARAMS(disable_smooth_intra); 1409 SHOW_PARAMS(disable_filter_intra); 1410 SHOW_PARAMS(disable_dual_filter); 1411 SHOW_PARAMS(disable_intra_angle_delta); 1412 SHOW_PARAMS(disable_intra_edge_filter); 1413 SHOW_PARAMS(disable_tx_64x64); 1414 SHOW_PARAMS(disable_smooth_inter_intra); 1415 SHOW_PARAMS(disable_inter_inter_wedge); 1416 SHOW_PARAMS(disable_inter_intra_wedge); 1417 SHOW_PARAMS(disable_paeth_intra); 1418 SHOW_PARAMS(disable_trellis_quant); 1419 SHOW_PARAMS(disable_ref_frame_mv); 1420 SHOW_PARAMS(reduced_reference_set); 1421 SHOW_PARAMS(reduced_tx_type_set); 1422 } 1423 } 1424 1425 static void open_output_file(struct stream_state *stream, 1426 struct AvxEncoderConfig *global, 1427 const struct AvxRational *pixel_aspect_ratio, 1428 const char *encoder_settings) { 1429 const char *fn = stream->config.out_fn; 1430 const struct aom_codec_enc_cfg *const cfg = &stream->config.cfg; 1431 1432 if (cfg->g_pass == AOM_RC_FIRST_PASS) return; 1433 1434 stream->file = strcmp(fn, "-") ? fopen(fn, "wb") : set_binary_mode(stdout); 1435 1436 if (!stream->file) fatal("Failed to open output file"); 1437 1438 if (stream->config.write_webm && fseek(stream->file, 0, SEEK_CUR)) 1439 fatal("WebM output to pipes not supported."); 1440 1441 #if CONFIG_WEBM_IO 1442 if (stream->config.write_webm) { 1443 stream->webm_ctx.stream = stream->file; 1444 if (write_webm_file_header(&stream->webm_ctx, &stream->encoder, cfg, 1445 stream->config.stereo_fmt, 1446 get_fourcc_by_aom_encoder(global->codec), 1447 pixel_aspect_ratio, encoder_settings) != 0) { 1448 fatal("WebM writer initialization failed."); 1449 } 1450 } 1451 #else 1452 (void)pixel_aspect_ratio; 1453 (void)encoder_settings; 1454 #endif 1455 1456 if (!stream->config.write_webm && stream->config.write_ivf) { 1457 ivf_write_file_header(stream->file, cfg, 1458 get_fourcc_by_aom_encoder(global->codec), 0); 1459 } 1460 } 1461 1462 static void close_output_file(struct stream_state *stream, 1463 unsigned int fourcc) { 1464 const struct aom_codec_enc_cfg *const cfg = &stream->config.cfg; 1465 1466 if (cfg->g_pass == AOM_RC_FIRST_PASS) return; 1467 1468 #if CONFIG_WEBM_IO 1469 if (stream->config.write_webm) { 1470 if (write_webm_file_footer(&stream->webm_ctx) != 0) { 1471 fatal("WebM writer finalization failed."); 1472 } 1473 } 1474 #endif 1475 1476 if (!stream->config.write_webm && stream->config.write_ivf) { 1477 if (!fseek(stream->file, 0, SEEK_SET)) 1478 ivf_write_file_header(stream->file, &stream->config.cfg, fourcc, 1479 stream->frames_out); 1480 } 1481 1482 fclose(stream->file); 1483 } 1484 1485 static void setup_pass(struct stream_state *stream, 1486 struct AvxEncoderConfig *global, int pass) { 1487 if (stream->config.stats_fn) { 1488 if (!stats_open_file(&stream->stats, stream->config.stats_fn, pass)) 1489 fatal("Failed to open statistics store"); 1490 } else { 1491 if (!stats_open_mem(&stream->stats, pass)) 1492 fatal("Failed to open statistics store"); 1493 } 1494 1495 if (global->passes == 1) { 1496 stream->config.cfg.g_pass = AOM_RC_ONE_PASS; 1497 } else { 1498 switch (pass) { 1499 case 0: stream->config.cfg.g_pass = AOM_RC_FIRST_PASS; break; 1500 case 1: stream->config.cfg.g_pass = AOM_RC_SECOND_PASS; break; 1501 case 2: stream->config.cfg.g_pass = AOM_RC_THIRD_PASS; break; 1502 default: fatal("Failed to set pass"); 1503 } 1504 } 1505 1506 if (pass) { 1507 stream->config.cfg.rc_twopass_stats_in = stats_get(&stream->stats); 1508 } 1509 1510 stream->cx_time = 0; 1511 stream->nbytes = 0; 1512 stream->frames_out = 0; 1513 } 1514 1515 static void initialize_encoder(struct stream_state *stream, 1516 struct AvxEncoderConfig *global) { 1517 int i; 1518 int flags = 0; 1519 1520 flags |= (global->show_psnr >= 1) ? AOM_CODEC_USE_PSNR : 0; 1521 flags |= stream->config.use_16bit_internal ? AOM_CODEC_USE_HIGHBITDEPTH : 0; 1522 1523 /* Construct Encoder Context */ 1524 aom_codec_enc_init(&stream->encoder, global->codec, &stream->config.cfg, 1525 flags); 1526 ctx_exit_on_error(&stream->encoder, "Failed to initialize encoder"); 1527 1528 for (i = 0; i < stream->config.arg_ctrl_cnt; i++) { 1529 int ctrl = stream->config.arg_ctrls[i][0]; 1530 int value = stream->config.arg_ctrls[i][1]; 1531 if (aom_codec_control(&stream->encoder, ctrl, value)) 1532 fprintf(stderr, "Error: Tried to set control %d = %d\n", ctrl, value); 1533 1534 ctx_exit_on_error(&stream->encoder, "Failed to control codec"); 1535 } 1536 1537 for (i = 0; i < stream->config.arg_key_val_cnt; i++) { 1538 const char *name = stream->config.arg_key_vals[i][0]; 1539 const char *val = stream->config.arg_key_vals[i][1]; 1540 if (aom_codec_set_option(&stream->encoder, name, val)) 1541 fprintf(stderr, "Error: Tried to set option %s = %s\n", name, val); 1542 1543 ctx_exit_on_error(&stream->encoder, "Failed to set codec option"); 1544 } 1545 1546 #if CONFIG_TUNE_VMAF 1547 if (stream->config.vmaf_model_path) { 1548 AOM_CODEC_CONTROL_TYPECHECKED(&stream->encoder, AV1E_SET_VMAF_MODEL_PATH, 1549 stream->config.vmaf_model_path); 1550 ctx_exit_on_error(&stream->encoder, "Failed to set vmaf model path"); 1551 } 1552 #endif 1553 if (stream->config.partition_info_path) { 1554 AOM_CODEC_CONTROL_TYPECHECKED(&stream->encoder, 1555 AV1E_SET_PARTITION_INFO_PATH, 1556 stream->config.partition_info_path); 1557 ctx_exit_on_error(&stream->encoder, "Failed to set partition info path"); 1558 } 1559 if (stream->config.enable_rate_guide_deltaq) { 1560 AOM_CODEC_CONTROL_TYPECHECKED(&stream->encoder, 1561 AV1E_ENABLE_RATE_GUIDE_DELTAQ, 1562 stream->config.enable_rate_guide_deltaq); 1563 ctx_exit_on_error(&stream->encoder, "Failed to enable rate guide deltaq"); 1564 } 1565 if (stream->config.rate_distribution_info) { 1566 AOM_CODEC_CONTROL_TYPECHECKED(&stream->encoder, 1567 AV1E_SET_RATE_DISTRIBUTION_INFO, 1568 stream->config.rate_distribution_info); 1569 ctx_exit_on_error(&stream->encoder, "Failed to set rate distribution info"); 1570 } 1571 1572 if (stream->config.enable_low_complexity_decode) { 1573 AOM_CODEC_CONTROL_TYPECHECKED(&stream->encoder, 1574 AV1E_SET_ENABLE_LOW_COMPLEXITY_DECODE, 1575 stream->config.enable_low_complexity_decode); 1576 ctx_exit_on_error(&stream->encoder, 1577 "Failed to enable low complexity decode"); 1578 } 1579 1580 if (stream->config.film_grain_filename) { 1581 AOM_CODEC_CONTROL_TYPECHECKED(&stream->encoder, AV1E_SET_FILM_GRAIN_TABLE, 1582 stream->config.film_grain_filename); 1583 ctx_exit_on_error(&stream->encoder, "Failed to set film grain table"); 1584 } 1585 AOM_CODEC_CONTROL_TYPECHECKED(&stream->encoder, AV1E_SET_COLOR_RANGE, 1586 stream->config.color_range); 1587 ctx_exit_on_error(&stream->encoder, "Failed to set color range"); 1588 1589 #if CONFIG_AV1_DECODER 1590 if (global->test_decode != TEST_DECODE_OFF) { 1591 aom_codec_iface_t *decoder = get_aom_decoder_by_short_name( 1592 get_short_name_by_aom_encoder(global->codec)); 1593 aom_codec_dec_cfg_t cfg = { 0, 0, 0, !stream->config.use_16bit_internal }; 1594 aom_codec_dec_init(&stream->decoder, decoder, &cfg, 0); 1595 1596 if (strcmp(get_short_name_by_aom_encoder(global->codec), "av1") == 0) { 1597 AOM_CODEC_CONTROL_TYPECHECKED(&stream->decoder, AV1_SET_TILE_MODE, 1598 stream->config.cfg.large_scale_tile); 1599 ctx_exit_on_error(&stream->decoder, "Failed to set decode_tile_mode"); 1600 1601 AOM_CODEC_CONTROL_TYPECHECKED(&stream->decoder, AV1D_SET_IS_ANNEXB, 1602 stream->config.cfg.save_as_annexb); 1603 ctx_exit_on_error(&stream->decoder, "Failed to set is_annexb"); 1604 1605 AOM_CODEC_CONTROL_TYPECHECKED(&stream->decoder, AV1_SET_DECODE_TILE_ROW, 1606 -1); 1607 ctx_exit_on_error(&stream->decoder, "Failed to set decode_tile_row"); 1608 1609 AOM_CODEC_CONTROL_TYPECHECKED(&stream->decoder, AV1_SET_DECODE_TILE_COL, 1610 -1); 1611 ctx_exit_on_error(&stream->decoder, "Failed to set decode_tile_col"); 1612 } 1613 } 1614 #endif 1615 } 1616 1617 // Convert the input image 'img' to a monochrome image. The Y plane of the 1618 // output image is a shallow copy of the Y plane of the input image, therefore 1619 // the input image must remain valid for the lifetime of the output image. The U 1620 // and V planes of the output image are set to null pointers. The output image 1621 // format is AOM_IMG_FMT_I420 because libaom does not have AOM_IMG_FMT_I400. 1622 static void convert_image_to_monochrome(const struct aom_image *img, 1623 struct aom_image *monochrome_img) { 1624 *monochrome_img = *img; 1625 monochrome_img->fmt = AOM_IMG_FMT_I420; 1626 if (img->fmt & AOM_IMG_FMT_HIGHBITDEPTH) { 1627 monochrome_img->fmt |= AOM_IMG_FMT_HIGHBITDEPTH; 1628 } 1629 monochrome_img->monochrome = 1; 1630 monochrome_img->csp = AOM_CSP_UNKNOWN; 1631 monochrome_img->x_chroma_shift = 1; 1632 monochrome_img->y_chroma_shift = 1; 1633 monochrome_img->planes[AOM_PLANE_U] = NULL; 1634 monochrome_img->planes[AOM_PLANE_V] = NULL; 1635 monochrome_img->stride[AOM_PLANE_U] = 0; 1636 monochrome_img->stride[AOM_PLANE_V] = 0; 1637 monochrome_img->sz = 0; 1638 monochrome_img->bps = (img->fmt & AOM_IMG_FMT_HIGHBITDEPTH) ? 16 : 8; 1639 monochrome_img->img_data = NULL; 1640 monochrome_img->img_data_owner = 0; 1641 monochrome_img->self_allocd = 0; 1642 } 1643 1644 static void encode_frame(struct stream_state *stream, 1645 struct AvxEncoderConfig *global, struct aom_image *img, 1646 unsigned int frames_in) { 1647 aom_codec_pts_t frame_start, next_frame_start; 1648 struct aom_codec_enc_cfg *cfg = &stream->config.cfg; 1649 struct aom_usec_timer timer; 1650 1651 frame_start = 1652 (cfg->g_timebase.den * (int64_t)(frames_in - 1) * global->framerate.den) / 1653 cfg->g_timebase.num / global->framerate.num; 1654 next_frame_start = 1655 (cfg->g_timebase.den * (int64_t)(frames_in)*global->framerate.den) / 1656 cfg->g_timebase.num / global->framerate.num; 1657 1658 /* Scale if necessary */ 1659 if (img) { 1660 if ((img->fmt & AOM_IMG_FMT_HIGHBITDEPTH) && 1661 (img->d_w != cfg->g_w || img->d_h != cfg->g_h)) { 1662 if (img->fmt != AOM_IMG_FMT_I42016) { 1663 fprintf(stderr, "%s can only scale 4:2:0 inputs\n", exec_name); 1664 exit(EXIT_FAILURE); 1665 } 1666 #if CONFIG_LIBYUV 1667 if (!stream->img) { 1668 stream->img = 1669 aom_img_alloc(NULL, AOM_IMG_FMT_I42016, cfg->g_w, cfg->g_h, 16); 1670 } 1671 I420Scale_16( 1672 (uint16_t *)img->planes[AOM_PLANE_Y], img->stride[AOM_PLANE_Y] / 2, 1673 (uint16_t *)img->planes[AOM_PLANE_U], img->stride[AOM_PLANE_U] / 2, 1674 (uint16_t *)img->planes[AOM_PLANE_V], img->stride[AOM_PLANE_V] / 2, 1675 img->d_w, img->d_h, (uint16_t *)stream->img->planes[AOM_PLANE_Y], 1676 stream->img->stride[AOM_PLANE_Y] / 2, 1677 (uint16_t *)stream->img->planes[AOM_PLANE_U], 1678 stream->img->stride[AOM_PLANE_U] / 2, 1679 (uint16_t *)stream->img->planes[AOM_PLANE_V], 1680 stream->img->stride[AOM_PLANE_V] / 2, stream->img->d_w, 1681 stream->img->d_h, kFilterBox); 1682 img = stream->img; 1683 #else 1684 stream->encoder.err = 1; 1685 ctx_exit_on_error(&stream->encoder, 1686 "Stream %d: Failed to encode frame.\n" 1687 "libyuv is required for scaling but is currently " 1688 "disabled.\n" 1689 "Be sure to specify -DCONFIG_LIBYUV=1 when running " 1690 "cmake.\n", 1691 stream->index); 1692 #endif 1693 } 1694 } 1695 if (img && (img->d_w != cfg->g_w || img->d_h != cfg->g_h)) { 1696 if (img->fmt != AOM_IMG_FMT_I420 && img->fmt != AOM_IMG_FMT_YV12) { 1697 fprintf(stderr, "%s can only scale 4:2:0 8bpp inputs\n", exec_name); 1698 exit(EXIT_FAILURE); 1699 } 1700 #if CONFIG_LIBYUV 1701 if (!stream->img) 1702 stream->img = 1703 aom_img_alloc(NULL, AOM_IMG_FMT_I420, cfg->g_w, cfg->g_h, 16); 1704 I420Scale( 1705 img->planes[AOM_PLANE_Y], img->stride[AOM_PLANE_Y], 1706 img->planes[AOM_PLANE_U], img->stride[AOM_PLANE_U], 1707 img->planes[AOM_PLANE_V], img->stride[AOM_PLANE_V], img->d_w, img->d_h, 1708 stream->img->planes[AOM_PLANE_Y], stream->img->stride[AOM_PLANE_Y], 1709 stream->img->planes[AOM_PLANE_U], stream->img->stride[AOM_PLANE_U], 1710 stream->img->planes[AOM_PLANE_V], stream->img->stride[AOM_PLANE_V], 1711 stream->img->d_w, stream->img->d_h, kFilterBox); 1712 img = stream->img; 1713 #else 1714 stream->encoder.err = 1; 1715 ctx_exit_on_error(&stream->encoder, 1716 "Stream %d: Failed to encode frame.\n" 1717 "Scaling disabled in this configuration. \n" 1718 "To enable, configure with --enable-libyuv\n", 1719 stream->index); 1720 #endif 1721 } 1722 1723 struct aom_image monochrome_img; 1724 if (img && cfg->monochrome) { 1725 convert_image_to_monochrome(img, &monochrome_img); 1726 img = &monochrome_img; 1727 } 1728 1729 aom_usec_timer_start(&timer); 1730 aom_codec_encode(&stream->encoder, img, frame_start, 1731 (uint32_t)(next_frame_start - frame_start), 0); 1732 aom_usec_timer_mark(&timer); 1733 stream->cx_time += aom_usec_timer_elapsed(&timer); 1734 ctx_exit_on_error(&stream->encoder, "Stream %d: Failed to encode frame", 1735 stream->index); 1736 } 1737 1738 static void update_quantizer_histogram(struct stream_state *stream) { 1739 if (stream->config.cfg.g_pass != AOM_RC_FIRST_PASS) { 1740 int q; 1741 1742 AOM_CODEC_CONTROL_TYPECHECKED(&stream->encoder, AOME_GET_LAST_QUANTIZER_64, 1743 &q); 1744 ctx_exit_on_error(&stream->encoder, "Failed to read quantizer"); 1745 stream->counts[q]++; 1746 } 1747 } 1748 1749 static void get_cx_data(struct stream_state *stream, 1750 struct AvxEncoderConfig *global, int *got_data) { 1751 const aom_codec_cx_pkt_t *pkt; 1752 const struct aom_codec_enc_cfg *cfg = &stream->config.cfg; 1753 aom_codec_iter_t iter = NULL; 1754 1755 *got_data = 0; 1756 while ((pkt = aom_codec_get_cx_data(&stream->encoder, &iter))) { 1757 static size_t fsize = 0; 1758 static FileOffset ivf_header_pos = 0; 1759 1760 switch (pkt->kind) { 1761 case AOM_CODEC_CX_FRAME_PKT: 1762 ++stream->frames_out; 1763 if (!global->quiet) 1764 fprintf(stderr, " %6luF", (unsigned long)pkt->data.frame.sz); 1765 1766 update_rate_histogram(stream->rate_hist, cfg, pkt); 1767 #if CONFIG_WEBM_IO 1768 if (stream->config.write_webm) { 1769 if (write_webm_block(&stream->webm_ctx, cfg, pkt) != 0) { 1770 fatal("WebM writer failed."); 1771 } 1772 } 1773 #endif 1774 if (!stream->config.write_webm) { 1775 if (stream->config.write_ivf) { 1776 if (pkt->data.frame.partition_id <= 0) { 1777 ivf_header_pos = ftello(stream->file); 1778 fsize = pkt->data.frame.sz; 1779 1780 ivf_write_frame_header(stream->file, pkt->data.frame.pts, fsize); 1781 } else { 1782 fsize += pkt->data.frame.sz; 1783 1784 const FileOffset currpos = ftello(stream->file); 1785 fseeko(stream->file, ivf_header_pos, SEEK_SET); 1786 ivf_write_frame_size(stream->file, fsize); 1787 fseeko(stream->file, currpos, SEEK_SET); 1788 } 1789 } 1790 1791 (void)fwrite(pkt->data.frame.buf, 1, pkt->data.frame.sz, 1792 stream->file); 1793 } 1794 stream->nbytes += pkt->data.raw.sz; 1795 1796 *got_data = 1; 1797 #if CONFIG_AV1_DECODER 1798 if (global->test_decode != TEST_DECODE_OFF && !stream->mismatch_seen) { 1799 aom_codec_decode(&stream->decoder, pkt->data.frame.buf, 1800 pkt->data.frame.sz, NULL); 1801 if (stream->decoder.err) { 1802 warn_or_exit_on_error(&stream->decoder, 1803 global->test_decode == TEST_DECODE_FATAL, 1804 "Failed to decode frame %d in stream %d", 1805 stream->frames_out + 1, stream->index); 1806 stream->mismatch_seen = stream->frames_out + 1; 1807 } 1808 } 1809 #endif 1810 break; 1811 case AOM_CODEC_STATS_PKT: 1812 stream->frames_out++; 1813 stats_write(&stream->stats, pkt->data.twopass_stats.buf, 1814 pkt->data.twopass_stats.sz); 1815 stream->nbytes += pkt->data.raw.sz; 1816 break; 1817 case AOM_CODEC_PSNR_PKT: 1818 1819 if (global->show_psnr >= 1) { 1820 int i; 1821 1822 stream->psnr_sse_total[0] += pkt->data.psnr.sse[0]; 1823 stream->psnr_samples_total[0] += pkt->data.psnr.samples[0]; 1824 for (i = 0; i < 4; i++) { 1825 if (!global->quiet) 1826 fprintf(stderr, "%.3f ", pkt->data.psnr.psnr[i]); 1827 stream->psnr_totals[0][i] += pkt->data.psnr.psnr[i]; 1828 } 1829 stream->psnr_count[0]++; 1830 1831 #if CONFIG_AV1_HIGHBITDEPTH 1832 if (stream->config.cfg.g_input_bit_depth < 1833 (unsigned int)stream->config.cfg.g_bit_depth) { 1834 stream->psnr_sse_total[1] += pkt->data.psnr.sse_hbd[0]; 1835 stream->psnr_samples_total[1] += pkt->data.psnr.samples_hbd[0]; 1836 for (i = 0; i < 4; i++) { 1837 if (!global->quiet) 1838 fprintf(stderr, "%.3f ", pkt->data.psnr.psnr_hbd[i]); 1839 stream->psnr_totals[1][i] += pkt->data.psnr.psnr_hbd[i]; 1840 } 1841 stream->psnr_count[1]++; 1842 } 1843 #endif 1844 } 1845 1846 break; 1847 default: break; 1848 } 1849 } 1850 } 1851 1852 static void show_psnr(struct stream_state *stream, double peak, int64_t bps) { 1853 int i; 1854 double ovpsnr; 1855 1856 if (!stream->psnr_count[0]) return; 1857 1858 fprintf(stderr, "Stream %d PSNR (Overall/Avg/Y/U/V)", stream->index); 1859 ovpsnr = sse_to_psnr((double)stream->psnr_samples_total[0], peak, 1860 (double)stream->psnr_sse_total[0]); 1861 fprintf(stderr, " %.3f", ovpsnr); 1862 1863 for (i = 0; i < 4; i++) { 1864 fprintf(stderr, " %.3f", stream->psnr_totals[0][i] / stream->psnr_count[0]); 1865 } 1866 if (bps > 0) { 1867 fprintf(stderr, " %7" PRId64 " bps", bps); 1868 } 1869 fprintf(stderr, " %7" PRId64 " ms", stream->cx_time / 1000); 1870 fprintf(stderr, "\n"); 1871 } 1872 1873 #if CONFIG_AV1_HIGHBITDEPTH 1874 static void show_psnr_hbd(struct stream_state *stream, double peak, 1875 int64_t bps) { 1876 int i; 1877 double ovpsnr; 1878 // Compute PSNR based on stream bit depth 1879 if (!stream->psnr_count[1]) return; 1880 1881 fprintf(stderr, "Stream %d PSNR (Overall/Avg/Y/U/V)", stream->index); 1882 ovpsnr = sse_to_psnr((double)stream->psnr_samples_total[1], peak, 1883 (double)stream->psnr_sse_total[1]); 1884 fprintf(stderr, " %.3f", ovpsnr); 1885 1886 for (i = 0; i < 4; i++) { 1887 fprintf(stderr, " %.3f", stream->psnr_totals[1][i] / stream->psnr_count[1]); 1888 } 1889 if (bps > 0) { 1890 fprintf(stderr, " %7" PRId64 " bps", bps); 1891 } 1892 fprintf(stderr, " %7" PRId64 " ms", stream->cx_time / 1000); 1893 fprintf(stderr, "\n"); 1894 } 1895 #endif 1896 1897 static float usec_to_fps(uint64_t usec, unsigned int frames) { 1898 return (float)(usec > 0 ? frames * 1000000.0 / (float)usec : 0); 1899 } 1900 1901 static void test_decode(struct stream_state *stream, 1902 enum TestDecodeFatality fatal) { 1903 aom_image_t enc_img, dec_img; 1904 1905 if (stream->mismatch_seen) return; 1906 1907 /* Get the internal reference frame */ 1908 AOM_CODEC_CONTROL_TYPECHECKED(&stream->encoder, AV1_GET_NEW_FRAME_IMAGE, 1909 &enc_img); 1910 AOM_CODEC_CONTROL_TYPECHECKED(&stream->decoder, AV1_GET_NEW_FRAME_IMAGE, 1911 &dec_img); 1912 1913 if ((enc_img.fmt & AOM_IMG_FMT_HIGHBITDEPTH) != 1914 (dec_img.fmt & AOM_IMG_FMT_HIGHBITDEPTH)) { 1915 if (enc_img.fmt & AOM_IMG_FMT_HIGHBITDEPTH) { 1916 aom_image_t enc_hbd_img; 1917 aom_img_alloc(&enc_hbd_img, enc_img.fmt - AOM_IMG_FMT_HIGHBITDEPTH, 1918 enc_img.d_w, enc_img.d_h, 16); 1919 aom_img_truncate_16_to_8(&enc_hbd_img, &enc_img); 1920 enc_img = enc_hbd_img; 1921 } 1922 if (dec_img.fmt & AOM_IMG_FMT_HIGHBITDEPTH) { 1923 aom_image_t dec_hbd_img; 1924 aom_img_alloc(&dec_hbd_img, dec_img.fmt - AOM_IMG_FMT_HIGHBITDEPTH, 1925 dec_img.d_w, dec_img.d_h, 16); 1926 aom_img_truncate_16_to_8(&dec_hbd_img, &dec_img); 1927 dec_img = dec_hbd_img; 1928 } 1929 } 1930 1931 ctx_exit_on_error(&stream->encoder, "Failed to get encoder reference frame"); 1932 ctx_exit_on_error(&stream->decoder, "Failed to get decoder reference frame"); 1933 1934 if (!aom_compare_img(&enc_img, &dec_img)) { 1935 int y[4], u[4], v[4]; 1936 if (enc_img.fmt & AOM_IMG_FMT_HIGHBITDEPTH) { 1937 aom_find_mismatch_high(&enc_img, &dec_img, y, u, v); 1938 } else { 1939 aom_find_mismatch(&enc_img, &dec_img, y, u, v); 1940 } 1941 stream->decoder.err = 1; 1942 warn_or_exit_on_error(&stream->decoder, fatal == TEST_DECODE_FATAL, 1943 "Stream %d: Encode/decode mismatch on frame %d at" 1944 " Y[%d, %d] {%d/%d}," 1945 " U[%d, %d] {%d/%d}," 1946 " V[%d, %d] {%d/%d}", 1947 stream->index, stream->frames_out, y[0], y[1], y[2], 1948 y[3], u[0], u[1], u[2], u[3], v[0], v[1], v[2], v[3]); 1949 stream->mismatch_seen = stream->frames_out; 1950 } 1951 1952 aom_img_free(&enc_img); 1953 aom_img_free(&dec_img); 1954 } 1955 1956 static void print_time(const char *label, int64_t etl) { 1957 int64_t hours; 1958 int64_t mins; 1959 int64_t secs; 1960 1961 if (etl >= 0) { 1962 hours = etl / 3600; 1963 etl -= hours * 3600; 1964 mins = etl / 60; 1965 etl -= mins * 60; 1966 secs = etl; 1967 1968 fprintf(stderr, "[%3s %2" PRId64 ":%02" PRId64 ":%02" PRId64 "] ", label, 1969 hours, mins, secs); 1970 } else { 1971 fprintf(stderr, "[%3s unknown] ", label); 1972 } 1973 } 1974 1975 static void clear_stream_count_state(struct stream_state *stream) { 1976 // PSNR counters 1977 for (int k = 0; k < 2; k++) { 1978 stream->psnr_sse_total[k] = 0; 1979 stream->psnr_samples_total[k] = 0; 1980 for (int i = 0; i < 4; i++) { 1981 stream->psnr_totals[k][i] = 0; 1982 } 1983 stream->psnr_count[k] = 0; 1984 } 1985 // q hist 1986 memset(stream->counts, 0, sizeof(stream->counts)); 1987 } 1988 1989 // aomenc will downscale the second pass if: 1990 // 1. the specific pass is not given by commandline (aomenc will perform all 1991 // passes) 1992 // 2. there are more than 2 passes in total 1993 // 3. current pass is the second pass (the parameter pass starts with 0 so 1994 // pass == 1) 1995 static int pass_need_downscale(int global_pass, int global_passes, int pass) { 1996 return !global_pass && global_passes > 2 && pass == 1; 1997 } 1998 1999 int main(int argc, const char **argv_) { 2000 int pass; 2001 aom_image_t raw; 2002 aom_image_t raw_shift; 2003 int allocated_raw_shift = 0; 2004 int do_16bit_internal = 0; 2005 int input_shift = 0; 2006 int frame_avail, got_data; 2007 2008 struct AvxInputContext input; 2009 struct AvxEncoderConfig global; 2010 struct stream_state *streams = NULL; 2011 char **argv, **argi; 2012 uint64_t cx_time = 0; 2013 int stream_cnt = 0; 2014 int res = 0; 2015 int profile_updated = 0; 2016 2017 memset(&input, 0, sizeof(input)); 2018 memset(&raw, 0, sizeof(raw)); 2019 exec_name = argv_[0]; 2020 2021 /* Setup default input stream settings */ 2022 input.framerate.numerator = 30; 2023 input.framerate.denominator = 1; 2024 input.only_i420 = 1; 2025 input.bit_depth = 0; 2026 2027 /* First parse the global configuration values, because we want to apply 2028 * other parameters on top of the default configuration provided by the 2029 * codec. 2030 */ 2031 argv = argv_dup(argc - 1, argv_ + 1); 2032 if (!argv) { 2033 fprintf(stderr, "Error allocating argument list\n"); 2034 return EXIT_FAILURE; 2035 } 2036 parse_global_config(&global, &argv); 2037 2038 if (argc < 2) usage_exit(); 2039 2040 switch (global.color_type) { 2041 case I420: input.fmt = AOM_IMG_FMT_I420; break; 2042 case I422: input.fmt = AOM_IMG_FMT_I422; break; 2043 case I444: input.fmt = AOM_IMG_FMT_I444; break; 2044 case YV12: input.fmt = AOM_IMG_FMT_YV12; break; 2045 case NV12: input.fmt = AOM_IMG_FMT_NV12; break; 2046 } 2047 2048 { 2049 /* Now parse each stream's parameters. Using a local scope here 2050 * due to the use of 'stream' as loop variable in FOREACH_STREAM 2051 * loops 2052 */ 2053 struct stream_state *stream = NULL; 2054 2055 do { 2056 stream = new_stream(&global, stream); 2057 stream_cnt++; 2058 if (!streams) streams = stream; 2059 } while (parse_stream_params(&global, stream, argv)); 2060 } 2061 2062 /* Check for unrecognized options */ 2063 for (argi = argv; *argi; argi++) 2064 if (argi[0][0] == '-' && argi[0][1]) 2065 die("Error: Unrecognized option %s\n", *argi); 2066 2067 FOREACH_STREAM(stream, streams) { 2068 check_encoder_config(global.disable_warning_prompt, &global, 2069 &stream->config.cfg); 2070 2071 // If large_scale_tile = 1, only support to output to ivf format. 2072 if (stream->config.cfg.large_scale_tile && !stream->config.write_ivf) 2073 die("only support ivf output format while large-scale-tile=1\n"); 2074 } 2075 2076 /* Handle non-option arguments */ 2077 input.filename = argv[0]; 2078 const char *orig_input_filename = input.filename; 2079 FOREACH_STREAM(stream, streams) { 2080 stream->orig_out_fn = stream->config.out_fn; 2081 stream->orig_width = stream->config.cfg.g_w; 2082 stream->orig_height = stream->config.cfg.g_h; 2083 stream->orig_write_ivf = stream->config.write_ivf; 2084 stream->orig_write_webm = stream->config.write_webm; 2085 } 2086 2087 if (!input.filename) { 2088 fprintf(stderr, "No input file specified!\n"); 2089 usage_exit(); 2090 } 2091 2092 /* Decide if other chroma subsamplings than 4:2:0 are supported */ 2093 if (get_fourcc_by_aom_encoder(global.codec) == AV1_FOURCC) 2094 input.only_i420 = 0; 2095 2096 for (pass = global.pass ? global.pass - 1 : 0; pass < global.passes; pass++) { 2097 if (pass > 1) { 2098 FOREACH_STREAM(stream, streams) { clear_stream_count_state(stream); } 2099 } 2100 2101 int frames_in = 0, seen_frames = 0; 2102 int64_t estimated_time_left = -1; 2103 int64_t average_rate = -1; 2104 int64_t lagged_count = 0; 2105 const int need_downscale = 2106 pass_need_downscale(global.pass, global.passes, pass); 2107 2108 // Set the output to the specified two-pass output file, and 2109 // restore the width and height to the original values. 2110 FOREACH_STREAM(stream, streams) { 2111 if (need_downscale) { 2112 stream->config.out_fn = stream->config.two_pass_output; 2113 // Libaom currently only supports the ivf format for the third pass. 2114 stream->config.write_ivf = 1; 2115 stream->config.write_webm = 0; 2116 } else { 2117 stream->config.out_fn = stream->orig_out_fn; 2118 stream->config.write_ivf = stream->orig_write_ivf; 2119 stream->config.write_webm = stream->orig_write_webm; 2120 } 2121 stream->config.cfg.g_w = stream->orig_width; 2122 stream->config.cfg.g_h = stream->orig_height; 2123 } 2124 2125 // For second pass in three-pass encoding, set the input to 2126 // the given two-pass-input file if available. If the scaled input is not 2127 // given, we will attempt to re-scale the original input. 2128 input.filename = orig_input_filename; 2129 const char *two_pass_input = NULL; 2130 if (need_downscale) { 2131 FOREACH_STREAM(stream, streams) { 2132 if (stream->config.two_pass_input) { 2133 two_pass_input = stream->config.two_pass_input; 2134 input.filename = two_pass_input; 2135 break; 2136 } 2137 } 2138 } 2139 2140 open_input_file(&input, global.csp); 2141 2142 /* If the input file doesn't specify its w/h (raw files), try to get 2143 * the data from the first stream's configuration. 2144 */ 2145 if (!input.width || !input.height) { 2146 if (two_pass_input) { 2147 FOREACH_STREAM(stream, streams) { 2148 if (stream->config.two_pass_width && stream->config.two_pass_height) { 2149 input.width = stream->config.two_pass_width; 2150 input.height = stream->config.two_pass_height; 2151 break; 2152 } 2153 } 2154 } else { 2155 FOREACH_STREAM(stream, streams) { 2156 if (stream->config.cfg.g_w && stream->config.cfg.g_h) { 2157 input.width = stream->config.cfg.g_w; 2158 input.height = stream->config.cfg.g_h; 2159 break; 2160 } 2161 } 2162 } 2163 } 2164 2165 /* Update stream configurations from the input file's parameters */ 2166 if (!input.width || !input.height) { 2167 if (two_pass_input) { 2168 fatal( 2169 "Specify downscaled stream dimensions with --two-pass-width " 2170 " and --two-pass-height"); 2171 } else { 2172 fatal( 2173 "Specify stream dimensions with --width (-w) " 2174 " and --height (-h)"); 2175 } 2176 } 2177 2178 if (need_downscale) { 2179 FOREACH_STREAM(stream, streams) { 2180 if (stream->config.two_pass_width && stream->config.two_pass_height) { 2181 stream->config.cfg.g_w = stream->config.two_pass_width; 2182 stream->config.cfg.g_h = stream->config.two_pass_height; 2183 } else if (two_pass_input) { 2184 stream->config.cfg.g_w = input.width; 2185 stream->config.cfg.g_h = input.height; 2186 } else if (stream->orig_width && stream->orig_height) { 2187 #if CONFIG_BITRATE_ACCURACY || CONFIG_BITRATE_ACCURACY_BL 2188 stream->config.cfg.g_w = stream->orig_width; 2189 stream->config.cfg.g_h = stream->orig_height; 2190 #else // CONFIG_BITRATE_ACCURACY || CONFIG_BITRATE_ACCURACY_BL 2191 stream->config.cfg.g_w = (stream->orig_width + 1) / 2; 2192 stream->config.cfg.g_h = (stream->orig_height + 1) / 2; 2193 #endif // CONFIG_BITRATE_ACCURACY || CONFIG_BITRATE_ACCURACY_BL 2194 } else { 2195 #if CONFIG_BITRATE_ACCURACY || CONFIG_BITRATE_ACCURACY_BL 2196 stream->config.cfg.g_w = input.width; 2197 stream->config.cfg.g_h = input.height; 2198 #else // CONFIG_BITRATE_ACCURACY || CONFIG_BITRATE_ACCURACY_BL 2199 stream->config.cfg.g_w = (input.width + 1) / 2; 2200 stream->config.cfg.g_h = (input.height + 1) / 2; 2201 #endif // CONFIG_BITRATE_ACCURACY || CONFIG_BITRATE_ACCURACY_BL 2202 } 2203 } 2204 } 2205 2206 /* If input file does not specify bit-depth but input-bit-depth parameter 2207 * exists, assume that to be the input bit-depth. However, if the 2208 * input-bit-depth paramter does not exist, assume the input bit-depth 2209 * to be the same as the codec bit-depth. 2210 */ 2211 if (!input.bit_depth) { 2212 FOREACH_STREAM(stream, streams) { 2213 if (stream->config.cfg.g_input_bit_depth) 2214 input.bit_depth = stream->config.cfg.g_input_bit_depth; 2215 else 2216 input.bit_depth = stream->config.cfg.g_input_bit_depth = 2217 (int)stream->config.cfg.g_bit_depth; 2218 } 2219 if (input.bit_depth > 8) input.fmt |= AOM_IMG_FMT_HIGHBITDEPTH; 2220 } else { 2221 FOREACH_STREAM(stream, streams) { 2222 stream->config.cfg.g_input_bit_depth = input.bit_depth; 2223 } 2224 } 2225 2226 FOREACH_STREAM(stream, streams) { 2227 if (input.fmt != AOM_IMG_FMT_I420 && input.fmt != AOM_IMG_FMT_I42016 && 2228 input.fmt != AOM_IMG_FMT_NV12) { 2229 /* Automatically upgrade if input is non-4:2:0 but a 4:2:0 profile 2230 was selected. */ 2231 switch (stream->config.cfg.g_profile) { 2232 case 0: 2233 if (input.bit_depth < 12 && (input.fmt == AOM_IMG_FMT_I444 || 2234 input.fmt == AOM_IMG_FMT_I44416)) { 2235 if (!stream->config.cfg.monochrome) { 2236 stream->config.cfg.g_profile = 1; 2237 profile_updated = 1; 2238 } 2239 } else if (input.bit_depth == 12 || 2240 ((input.fmt == AOM_IMG_FMT_I422 || 2241 input.fmt == AOM_IMG_FMT_I42216) && 2242 !stream->config.cfg.monochrome)) { 2243 stream->config.cfg.g_profile = 2; 2244 profile_updated = 1; 2245 } 2246 break; 2247 case 1: 2248 if (input.bit_depth == 12 || input.fmt == AOM_IMG_FMT_I422 || 2249 input.fmt == AOM_IMG_FMT_I42216) { 2250 stream->config.cfg.g_profile = 2; 2251 profile_updated = 1; 2252 } else if (input.bit_depth < 12 && 2253 (input.fmt == AOM_IMG_FMT_I420 || 2254 input.fmt == AOM_IMG_FMT_I42016)) { 2255 stream->config.cfg.g_profile = 0; 2256 profile_updated = 1; 2257 } 2258 break; 2259 case 2: 2260 if (input.bit_depth < 12 && (input.fmt == AOM_IMG_FMT_I444 || 2261 input.fmt == AOM_IMG_FMT_I44416)) { 2262 stream->config.cfg.g_profile = 1; 2263 profile_updated = 1; 2264 } else if (input.bit_depth < 12 && 2265 (input.fmt == AOM_IMG_FMT_I420 || 2266 input.fmt == AOM_IMG_FMT_I42016)) { 2267 stream->config.cfg.g_profile = 0; 2268 profile_updated = 1; 2269 } else if (input.bit_depth == 12 && 2270 input.file_type == FILE_TYPE_Y4M) { 2271 // Note that here the input file values for chroma subsampling 2272 // are used instead of those from the command line. 2273 AOM_CODEC_CONTROL_TYPECHECKED(&stream->encoder, 2274 AV1E_SET_CHROMA_SUBSAMPLING_X, 2275 input.y4m.dst_c_dec_h >> 1); 2276 ctx_exit_on_error(&stream->encoder, 2277 "Failed to set chroma subsampling x"); 2278 AOM_CODEC_CONTROL_TYPECHECKED(&stream->encoder, 2279 AV1E_SET_CHROMA_SUBSAMPLING_Y, 2280 input.y4m.dst_c_dec_v >> 1); 2281 ctx_exit_on_error(&stream->encoder, 2282 "Failed to set chroma subsampling y"); 2283 } else if (input.bit_depth == 12 && 2284 input.file_type == FILE_TYPE_RAW) { 2285 AOM_CODEC_CONTROL_TYPECHECKED(&stream->encoder, 2286 AV1E_SET_CHROMA_SUBSAMPLING_X, 2287 stream->chroma_subsampling_x); 2288 ctx_exit_on_error(&stream->encoder, 2289 "Failed to set chroma subsampling x"); 2290 AOM_CODEC_CONTROL_TYPECHECKED(&stream->encoder, 2291 AV1E_SET_CHROMA_SUBSAMPLING_Y, 2292 stream->chroma_subsampling_y); 2293 ctx_exit_on_error(&stream->encoder, 2294 "Failed to set chroma subsampling y"); 2295 } 2296 break; 2297 default: break; 2298 } 2299 } 2300 /* Automatically set the codec bit depth to match the input bit depth. 2301 * Upgrade the profile if required. */ 2302 if (stream->config.cfg.g_input_bit_depth > 2303 (unsigned int)stream->config.cfg.g_bit_depth) { 2304 stream->config.cfg.g_bit_depth = stream->config.cfg.g_input_bit_depth; 2305 if (!global.quiet) { 2306 fprintf(stderr, 2307 "Warning: automatically updating bit depth to %d to " 2308 "match input format.\n", 2309 stream->config.cfg.g_input_bit_depth); 2310 } 2311 } 2312 #if !CONFIG_AV1_HIGHBITDEPTH 2313 if (stream->config.cfg.g_bit_depth > 8) { 2314 fatal("Unsupported bit-depth with CONFIG_AV1_HIGHBITDEPTH=0\n"); 2315 } 2316 #endif // CONFIG_AV1_HIGHBITDEPTH 2317 if (stream->config.cfg.g_bit_depth > 10) { 2318 switch (stream->config.cfg.g_profile) { 2319 case 0: 2320 case 1: 2321 stream->config.cfg.g_profile = 2; 2322 profile_updated = 1; 2323 break; 2324 default: break; 2325 } 2326 } 2327 if (stream->config.cfg.g_bit_depth > 8) { 2328 stream->config.use_16bit_internal = 1; 2329 } 2330 if (profile_updated && !global.quiet) { 2331 fprintf(stderr, 2332 "Warning: automatically updating to profile %d to " 2333 "match input format.\n", 2334 stream->config.cfg.g_profile); 2335 } 2336 if (global.show_psnr == 2 && 2337 stream->config.cfg.g_input_bit_depth == 2338 (unsigned int)stream->config.cfg.g_bit_depth) { 2339 fprintf(stderr, 2340 "Warning: --psnr==2 and --psnr==1 will provide same " 2341 "results when input bit-depth == stream bit-depth, " 2342 "falling back to default psnr value\n"); 2343 global.show_psnr = 1; 2344 } 2345 if (global.show_psnr < 0 || global.show_psnr > 2) { 2346 fprintf(stderr, 2347 "Warning: --psnr can take only 0,1,2 as values," 2348 "falling back to default psnr value\n"); 2349 global.show_psnr = 1; 2350 } 2351 /* Set limit */ 2352 stream->config.cfg.g_limit = global.limit; 2353 } 2354 2355 FOREACH_STREAM(stream, streams) { 2356 set_stream_dimensions(stream, input.width, input.height); 2357 stream->config.color_range = input.color_range; 2358 } 2359 FOREACH_STREAM(stream, streams) { validate_stream_config(stream, &global); } 2360 2361 /* Ensure that --passes and --pass are consistent. If --pass is set and 2362 * --passes >= 2, ensure --fpf was set. 2363 */ 2364 if (global.pass > 0 && global.pass <= 3 && global.passes >= 2) { 2365 FOREACH_STREAM(stream, streams) { 2366 if (!stream->config.stats_fn) 2367 die("Stream %d: Must specify --fpf when --pass=%d" 2368 " and --passes=%d\n", 2369 stream->index, global.pass, global.passes); 2370 } 2371 } 2372 2373 #if !CONFIG_WEBM_IO 2374 FOREACH_STREAM(stream, streams) { 2375 if (stream->config.write_webm) { 2376 stream->config.write_webm = 0; 2377 stream->config.write_ivf = 0; 2378 aom_tools_warn("aomenc compiled w/o WebM support. Writing OBU stream."); 2379 } 2380 } 2381 #endif 2382 2383 /* Use the frame rate from the file only if none was specified 2384 * on the command-line. 2385 */ 2386 if (!global.have_framerate) { 2387 global.framerate.num = input.framerate.numerator; 2388 global.framerate.den = input.framerate.denominator; 2389 } 2390 FOREACH_STREAM(stream, streams) { 2391 stream->config.cfg.g_timebase.den = global.framerate.num; 2392 stream->config.cfg.g_timebase.num = global.framerate.den; 2393 } 2394 /* Show configuration */ 2395 if (global.verbose && pass == 0) { 2396 FOREACH_STREAM(stream, streams) { 2397 show_stream_config(stream, &global, &input); 2398 } 2399 } 2400 2401 if (pass == (global.pass ? global.pass - 1 : 0)) { 2402 // The Y4M reader does its own allocation. 2403 if (input.file_type != FILE_TYPE_Y4M) { 2404 aom_img_alloc(&raw, input.fmt, input.width, input.height, 32); 2405 } 2406 FOREACH_STREAM(stream, streams) { 2407 stream->rate_hist = 2408 init_rate_histogram(&stream->config.cfg, &global.framerate); 2409 } 2410 } 2411 2412 FOREACH_STREAM(stream, streams) { setup_pass(stream, &global, pass); } 2413 FOREACH_STREAM(stream, streams) { initialize_encoder(stream, &global); } 2414 FOREACH_STREAM(stream, streams) { 2415 char *encoder_settings = NULL; 2416 #if CONFIG_WEBM_IO 2417 // Test frameworks may compare outputs from different versions, but only 2418 // wish to check for bitstream changes. The encoder-settings tag, however, 2419 // can vary if the version is updated, even if no encoder algorithm 2420 // changes were made. To work around this issue, do not output 2421 // the encoder-settings tag when --debug is enabled (which is the flag 2422 // that test frameworks should use, when they want deterministic output 2423 // from the container format). 2424 if (stream->config.write_webm && !stream->webm_ctx.debug) { 2425 encoder_settings = extract_encoder_settings( 2426 aom_codec_version_str(), argv_, argc, input.filename); 2427 if (encoder_settings == NULL) { 2428 fprintf( 2429 stderr, 2430 "Warning: unable to extract encoder settings. Continuing...\n"); 2431 } 2432 } 2433 #endif 2434 open_output_file(stream, &global, &input.pixel_aspect_ratio, 2435 encoder_settings); 2436 free(encoder_settings); 2437 } 2438 2439 if (strcmp(get_short_name_by_aom_encoder(global.codec), "av1") == 0) { 2440 // Check to see if at least one stream uses 16 bit internal. 2441 // Currently assume that the bit_depths for all streams using 2442 // highbitdepth are the same. 2443 FOREACH_STREAM(stream, streams) { 2444 if (stream->config.use_16bit_internal) { 2445 do_16bit_internal = 1; 2446 } 2447 input_shift = (int)stream->config.cfg.g_bit_depth - 2448 stream->config.cfg.g_input_bit_depth; 2449 } 2450 } 2451 2452 frame_avail = 1; 2453 got_data = 0; 2454 2455 while (frame_avail || got_data) { 2456 struct aom_usec_timer timer; 2457 2458 if (!global.limit || frames_in < global.limit) { 2459 frame_avail = read_frame(&input, &raw); 2460 2461 if (frame_avail) frames_in++; 2462 seen_frames = 2463 frames_in > global.skip_frames ? frames_in - global.skip_frames : 0; 2464 2465 if (!global.quiet) { 2466 float fps = usec_to_fps(cx_time, seen_frames); 2467 fprintf(stderr, "\rPass %d/%d ", pass + 1, global.passes); 2468 2469 if (stream_cnt == 1) 2470 fprintf(stderr, "frame %4d/%-4d %7" PRId64 "B ", frames_in, 2471 streams->frames_out, (int64_t)streams->nbytes); 2472 else 2473 fprintf(stderr, "frame %4d ", frames_in); 2474 2475 fprintf(stderr, "%7" PRId64 " %s %.2f %s ", 2476 cx_time > 9999999 ? cx_time / 1000 : cx_time, 2477 cx_time > 9999999 ? "ms" : "us", fps >= 1.0 ? fps : fps * 60, 2478 fps >= 1.0 ? "fps" : "fpm"); 2479 print_time("ETA", estimated_time_left); 2480 // mingw-w64 gcc does not match msvc for stderr buffering behavior 2481 // and uses line buffering, thus the progress output is not 2482 // real-time. The fflush() is here to make sure the progress output 2483 // is sent out while the clip is being processed. 2484 fflush(stderr); 2485 } 2486 2487 } else { 2488 frame_avail = 0; 2489 } 2490 2491 if (frames_in > global.skip_frames) { 2492 aom_image_t *frame_to_encode; 2493 if (input_shift || (do_16bit_internal && input.bit_depth == 8)) { 2494 assert(do_16bit_internal); 2495 // Input bit depth and stream bit depth do not match, so up 2496 // shift frame to stream bit depth 2497 if (!allocated_raw_shift) { 2498 aom_img_alloc(&raw_shift, raw.fmt | AOM_IMG_FMT_HIGHBITDEPTH, 2499 input.width, input.height, 32); 2500 allocated_raw_shift = 1; 2501 } 2502 aom_img_upshift(&raw_shift, &raw, input_shift); 2503 frame_to_encode = &raw_shift; 2504 } else { 2505 frame_to_encode = &raw; 2506 } 2507 aom_usec_timer_start(&timer); 2508 if (do_16bit_internal) { 2509 assert(frame_to_encode->fmt & AOM_IMG_FMT_HIGHBITDEPTH); 2510 FOREACH_STREAM(stream, streams) { 2511 if (stream->config.use_16bit_internal) 2512 encode_frame(stream, &global, 2513 frame_avail ? frame_to_encode : NULL, frames_in); 2514 else 2515 assert(0); 2516 } 2517 } else { 2518 assert((frame_to_encode->fmt & AOM_IMG_FMT_HIGHBITDEPTH) == 0); 2519 FOREACH_STREAM(stream, streams) { 2520 encode_frame(stream, &global, frame_avail ? frame_to_encode : NULL, 2521 frames_in); 2522 } 2523 } 2524 aom_usec_timer_mark(&timer); 2525 cx_time += aom_usec_timer_elapsed(&timer); 2526 2527 FOREACH_STREAM(stream, streams) { update_quantizer_histogram(stream); } 2528 2529 got_data = 0; 2530 FOREACH_STREAM(stream, streams) { 2531 get_cx_data(stream, &global, &got_data); 2532 } 2533 2534 if (!got_data && input.length && streams != NULL && 2535 !streams->frames_out) { 2536 lagged_count = global.limit ? seen_frames : ftello(input.file); 2537 } else if (input.length) { 2538 int64_t remaining; 2539 int64_t rate; 2540 2541 if (global.limit) { 2542 const int64_t frame_in_lagged = (seen_frames - lagged_count) * 1000; 2543 2544 rate = cx_time ? frame_in_lagged * (int64_t)1000000 / cx_time : 0; 2545 remaining = 1000 * (global.limit - global.skip_frames - 2546 seen_frames + lagged_count); 2547 } else { 2548 const int64_t input_pos = ftello(input.file); 2549 const int64_t input_pos_lagged = input_pos - lagged_count; 2550 const int64_t input_limit = input.length; 2551 2552 rate = cx_time ? input_pos_lagged * (int64_t)1000000 / cx_time : 0; 2553 remaining = input_limit - input_pos + lagged_count; 2554 } 2555 2556 average_rate = 2557 (average_rate <= 0) ? rate : (average_rate * 7 + rate) / 8; 2558 estimated_time_left = average_rate ? remaining / average_rate : -1; 2559 } 2560 2561 if (got_data && global.test_decode != TEST_DECODE_OFF) { 2562 FOREACH_STREAM(stream, streams) { 2563 test_decode(stream, global.test_decode); 2564 } 2565 } 2566 } 2567 2568 fflush(stdout); 2569 if (!global.quiet) fprintf(stderr, "\033[K"); 2570 } 2571 2572 if (stream_cnt > 1) fprintf(stderr, "\n"); 2573 2574 if (!global.quiet) { 2575 FOREACH_STREAM(stream, streams) { 2576 const int64_t bpf = 2577 seen_frames ? (int64_t)(stream->nbytes * 8 / seen_frames) : 0; 2578 const int64_t bps = bpf * global.framerate.num / global.framerate.den; 2579 fprintf(stderr, 2580 "\rPass %d/%d frame %4d/%-4d %7" PRId64 "B %7" PRId64 2581 "b/f %7" PRId64 2582 "b/s" 2583 " %7" PRId64 " %s (%.2f fps)\033[K\n", 2584 pass + 1, global.passes, frames_in, stream->frames_out, 2585 (int64_t)stream->nbytes, bpf, bps, 2586 stream->cx_time > 9999999 ? stream->cx_time / 1000 2587 : stream->cx_time, 2588 stream->cx_time > 9999999 ? "ms" : "us", 2589 usec_to_fps(stream->cx_time, seen_frames)); 2590 // This instance of cr does not need fflush as it is followed by a 2591 // newline in the same string. 2592 } 2593 } 2594 2595 if (global.show_psnr >= 1) { 2596 if (get_fourcc_by_aom_encoder(global.codec) == AV1_FOURCC) { 2597 FOREACH_STREAM(stream, streams) { 2598 int64_t bps = 0; 2599 if (global.show_psnr == 1) { 2600 if (stream->psnr_count[0] && seen_frames && global.framerate.den) { 2601 bps = (int64_t)stream->nbytes * 8 * 2602 (int64_t)global.framerate.num / global.framerate.den / 2603 seen_frames; 2604 } 2605 show_psnr(stream, (1 << stream->config.cfg.g_input_bit_depth) - 1, 2606 bps); 2607 } 2608 if (global.show_psnr == 2) { 2609 #if CONFIG_AV1_HIGHBITDEPTH 2610 if (stream->config.cfg.g_input_bit_depth < 2611 (unsigned int)stream->config.cfg.g_bit_depth) 2612 show_psnr_hbd(stream, (1 << stream->config.cfg.g_bit_depth) - 1, 2613 bps); 2614 #endif 2615 } 2616 } 2617 } else { 2618 FOREACH_STREAM(stream, streams) { show_psnr(stream, 255.0, 0); } 2619 } 2620 } 2621 2622 if (pass == global.passes - 1) { 2623 FOREACH_STREAM(stream, streams) { 2624 int num_operating_points; 2625 int levels[32]; 2626 int target_levels[32]; 2627 aom_codec_control(&stream->encoder, AV1E_GET_NUM_OPERATING_POINTS, 2628 &num_operating_points); 2629 aom_codec_control(&stream->encoder, AV1E_GET_SEQ_LEVEL_IDX, levels); 2630 aom_codec_control(&stream->encoder, AV1E_GET_TARGET_SEQ_LEVEL_IDX, 2631 target_levels); 2632 2633 for (int i = 0; i < num_operating_points; i++) { 2634 if (levels[i] > target_levels[i]) { 2635 if (levels[i] == 31) { 2636 aom_tools_warn( 2637 "Failed to encode to target level %d.%d for operating point " 2638 "%d. The output level is SEQ_LEVEL_MAX", 2639 2 + (target_levels[i] >> 2), target_levels[i] & 3, i); 2640 } else { 2641 aom_tools_warn( 2642 "Failed to encode to target level %d.%d for operating point " 2643 "%d. The output level is %d.%d", 2644 2 + (target_levels[i] >> 2), target_levels[i] & 3, i, 2645 2 + (levels[i] >> 2), levels[i] & 3); 2646 } 2647 } 2648 } 2649 } 2650 } 2651 2652 FOREACH_STREAM(stream, streams) { aom_codec_destroy(&stream->encoder); } 2653 2654 if (global.test_decode != TEST_DECODE_OFF) { 2655 FOREACH_STREAM(stream, streams) { aom_codec_destroy(&stream->decoder); } 2656 } 2657 2658 close_input_file(&input); 2659 2660 if (global.test_decode == TEST_DECODE_FATAL) { 2661 FOREACH_STREAM(stream, streams) { res |= stream->mismatch_seen; } 2662 } 2663 FOREACH_STREAM(stream, streams) { 2664 close_output_file(stream, get_fourcc_by_aom_encoder(global.codec)); 2665 } 2666 2667 FOREACH_STREAM(stream, streams) { 2668 stats_close(&stream->stats, global.passes - 1); 2669 } 2670 2671 if (global.pass) break; 2672 } 2673 2674 if (global.show_q_hist_buckets) { 2675 FOREACH_STREAM(stream, streams) { 2676 show_q_histogram(stream->counts, global.show_q_hist_buckets); 2677 } 2678 } 2679 2680 if (global.show_rate_hist_buckets) { 2681 FOREACH_STREAM(stream, streams) { 2682 show_rate_histogram(stream->rate_hist, &stream->config.cfg, 2683 global.show_rate_hist_buckets); 2684 } 2685 } 2686 FOREACH_STREAM(stream, streams) { destroy_rate_histogram(stream->rate_hist); } 2687 2688 #if CONFIG_INTERNAL_STATS 2689 /* TODO(jkoleszar): This doesn't belong in this executable. Do it for now, 2690 * to match some existing utilities. 2691 */ 2692 if (!(global.pass == 1 && global.passes == 2)) { 2693 FOREACH_STREAM(stream, streams) { 2694 FILE *f = fopen("opsnr.stt", "a"); 2695 if (stream->mismatch_seen) { 2696 fprintf(f, "First mismatch occurred in frame %d\n", 2697 stream->mismatch_seen); 2698 } else { 2699 fprintf(f, "No mismatch detected in recon buffers\n"); 2700 } 2701 fclose(f); 2702 } 2703 } 2704 #endif 2705 2706 if (allocated_raw_shift) aom_img_free(&raw_shift); 2707 aom_img_free(&raw); 2708 free(argv); 2709 free(streams); 2710 return res ? EXIT_FAILURE : EXIT_SUCCESS; 2711 }