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@ -177,7 +177,7 @@ static const int8_t ac3_coupling_start_tab[6][3][19] = { |
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* Adjust the frame size to make the average bit rate match the target bit rate. |
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* This is only needed for 11025, 22050, and 44100 sample rates or any E-AC-3. |
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*/ |
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static void adjust_frame_size(AC3EncodeContext *s) |
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void ff_ac3_adjust_frame_size(AC3EncodeContext *s) |
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{ |
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while (s->bits_written >= s->bit_rate && s->samples_written >= s->sample_rate) { |
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s->bits_written -= s->bit_rate; |
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@ -190,7 +190,7 @@ static void adjust_frame_size(AC3EncodeContext *s) |
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} |
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static void compute_coupling_strategy(AC3EncodeContext *s) |
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void ff_ac3_compute_coupling_strategy(AC3EncodeContext *s) |
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{ |
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int blk, ch; |
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int got_cpl_snr; |
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@ -254,7 +254,7 @@ static void compute_coupling_strategy(AC3EncodeContext *s) |
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/**
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* Apply stereo rematrixing to coefficients based on rematrixing flags. |
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*/ |
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static void apply_rematrixing(AC3EncodeContext *s) |
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void ff_ac3_apply_rematrixing(AC3EncodeContext *s) |
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{ |
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int nb_coefs; |
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int blk, bnd, i; |
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@ -570,7 +570,7 @@ static void group_exponents(AC3EncodeContext *s) |
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* Extract exponents from MDCT coefficients, calculate exponent strategies, |
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* and encode final exponents. |
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*/ |
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static void process_exponents(AC3EncodeContext *s) |
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void ff_ac3_process_exponents(AC3EncodeContext *s) |
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{ |
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extract_exponents(s); |
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@ -1028,7 +1028,7 @@ static int cbr_bit_allocation(AC3EncodeContext *s) |
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* frame size. Output is the SNR offset and a set of bit allocation pointers |
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* used to quantize the mantissas. |
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*/ |
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static int compute_bit_allocation(AC3EncodeContext *s) |
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int ff_ac3_compute_bit_allocation(AC3EncodeContext *s) |
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{ |
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count_frame_bits(s); |
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@ -1163,7 +1163,7 @@ static void quantize_mantissas_blk_ch(AC3Mant *s, int32_t *fixed_coef, |
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/**
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* Quantize mantissas using coefficients, exponents, and bit allocation pointers. |
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*/ |
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static void quantize_mantissas(AC3EncodeContext *s) |
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void ff_ac3_quantize_mantissas(AC3EncodeContext *s) |
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{ |
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int blk, ch, ch0=0, got_cpl; |
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@ -1522,7 +1522,7 @@ static void output_frame_end(AC3EncodeContext *s) |
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/**
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* Write the frame to the output bitstream. |
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*/ |
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static void output_frame(AC3EncodeContext *s, unsigned char *frame) |
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void ff_ac3_output_frame(AC3EncodeContext *s, unsigned char *frame) |
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{ |
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int blk; |
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@ -1691,7 +1691,7 @@ static void validate_mix_level(void *log_ctx, const char *opt_name, |
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* Validate metadata options as set by AVOption system. |
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* These values can optionally be changed per-frame. |
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*/ |
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static int validate_metadata(AVCodecContext *avctx) |
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int ff_ac3_validate_metadata(AVCodecContext *avctx) |
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{ |
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AC3EncodeContext *s = avctx->priv_data; |
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AC3EncOptions *opt = &s->options; |
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@ -1800,57 +1800,6 @@ static int validate_metadata(AVCodecContext *avctx) |
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} |
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/**
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* Encode a single AC-3 frame. |
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*/ |
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int ff_ac3_encode_frame(AVCodecContext *avctx, unsigned char *frame, |
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int buf_size, void *data) |
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{ |
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AC3EncodeContext *s = avctx->priv_data; |
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const SampleType *samples = data; |
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int ret; |
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if (!s->eac3 && s->options.allow_per_frame_metadata) { |
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ret = validate_metadata(avctx); |
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if (ret) |
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return ret; |
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} |
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if (s->bit_alloc.sr_code == 1 || s->eac3) |
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adjust_frame_size(s); |
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s->deinterleave_input_samples(s, samples); |
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s->apply_mdct(s); |
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s->scale_coefficients(s); |
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s->cpl_on = s->cpl_enabled; |
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compute_coupling_strategy(s); |
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if (s->cpl_on) |
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s->apply_channel_coupling(s); |
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s->compute_rematrixing_strategy(s); |
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apply_rematrixing(s); |
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process_exponents(s); |
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ret = compute_bit_allocation(s); |
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if (ret) { |
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av_log(avctx, AV_LOG_ERROR, "Bit allocation failed. Try increasing the bitrate.\n"); |
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return ret; |
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} |
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quantize_mantissas(s); |
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output_frame(s, frame); |
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return s->frame_size; |
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} |
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/**
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* Finalize encoding and free any memory allocated by the encoder. |
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*/ |
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@ -2047,7 +1996,7 @@ static av_cold int validate_options(AVCodecContext *avctx, AC3EncodeContext *s) |
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} |
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if (!s->eac3) { |
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ret = validate_metadata(avctx); |
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ret = ff_ac3_validate_metadata(avctx); |
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if (ret) |
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return ret; |
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} |
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@ -2273,24 +2222,11 @@ av_cold int ff_ac3_encode_init(AVCodecContext *avctx) |
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if (CONFIG_AC3_FIXED_ENCODER && s->fixed_point) { |
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s->mdct_end = ff_ac3_fixed_mdct_end; |
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s->mdct_init = ff_ac3_fixed_mdct_init; |
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s->apply_window = ff_ac3_fixed_apply_window; |
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s->normalize_samples = ff_ac3_fixed_normalize_samples; |
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s->scale_coefficients = ff_ac3_fixed_scale_coefficients; |
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s->allocate_sample_buffers = ff_ac3_fixed_allocate_sample_buffers; |
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s->deinterleave_input_samples = ff_ac3_fixed_deinterleave_input_samples; |
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s->apply_mdct = ff_ac3_fixed_apply_mdct; |
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s->apply_channel_coupling = ff_ac3_fixed_apply_channel_coupling; |
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s->compute_rematrixing_strategy = ff_ac3_fixed_compute_rematrixing_strategy; |
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} else if (CONFIG_AC3_ENCODER || CONFIG_EAC3_ENCODER) { |
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s->mdct_end = ff_ac3_float_mdct_end; |
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s->mdct_init = ff_ac3_float_mdct_init; |
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s->apply_window = ff_ac3_float_apply_window; |
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s->scale_coefficients = ff_ac3_float_scale_coefficients; |
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s->allocate_sample_buffers = ff_ac3_float_allocate_sample_buffers; |
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s->deinterleave_input_samples = ff_ac3_float_deinterleave_input_samples; |
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s->apply_mdct = ff_ac3_float_apply_mdct; |
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s->apply_channel_coupling = ff_ac3_float_apply_channel_coupling; |
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s->compute_rematrixing_strategy = ff_ac3_float_compute_rematrixing_strategy; |
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} |
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if (CONFIG_EAC3_ENCODER && s->eac3) |
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s->output_frame_header = ff_eac3_output_frame_header; |
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