tor-browser

The Tor Browser
git clone https://git.dasho.dev/tor-browser.git
Log | Files | Refs | README | LICENSE

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 }