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aacenc: Request normalized float samples instead of converting s16 samples to float.
Signed-off-by: Alex Converse <alex.converse@gmail.com>
This commit is contained in:
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6381f913d1
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@ -167,7 +167,7 @@ static void put_audio_specific_config(AVCodecContext *avctx)
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}
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static void apply_window_and_mdct(AVCodecContext *avctx, AACEncContext *s,
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SingleChannelElement *sce, short *audio)
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SingleChannelElement *sce, float *audio)
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{
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int i, k;
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const int chans = avctx->channels;
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@ -434,7 +434,7 @@ static int aac_encode_frame(AVCodecContext *avctx,
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uint8_t *frame, int buf_size, void *data)
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{
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AACEncContext *s = avctx->priv_data;
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int16_t *samples = s->samples, *samples2, *la;
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float *samples = s->samples, *samples2, *la;
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ChannelElement *cpe;
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int i, ch, w, g, chans, tag, start_ch;
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int chan_el_counter[4];
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@ -452,7 +452,7 @@ static int aac_encode_frame(AVCodecContext *avctx,
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for (i = 0; i < s->chan_map[0]; i++) {
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tag = s->chan_map[i+1];
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chans = tag == TYPE_CPE ? 2 : 1;
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ff_psy_preprocess(s->psypp, (uint16_t*)data + start_ch,
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ff_psy_preprocess(s->psypp, (float*)data + start_ch,
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samples2 + start_ch, start_ch, chans);
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start_ch += chans;
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}
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@ -621,9 +621,9 @@ static av_cold int dsp_init(AVCodecContext *avctx, AACEncContext *s)
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ff_init_ff_sine_windows(10);
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ff_init_ff_sine_windows(7);
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if (ret = ff_mdct_init(&s->mdct1024, 11, 0, 1.0))
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if (ret = ff_mdct_init(&s->mdct1024, 11, 0, 32768.0))
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return ret;
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if (ret = ff_mdct_init(&s->mdct128, 8, 0, 1.0))
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if (ret = ff_mdct_init(&s->mdct128, 8, 0, 32768.0))
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return ret;
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return 0;
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@ -722,7 +722,7 @@ AVCodec ff_aac_encoder = {
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.encode = aac_encode_frame,
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.close = aac_encode_end,
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.capabilities = CODEC_CAP_SMALL_LAST_FRAME | CODEC_CAP_DELAY | CODEC_CAP_EXPERIMENTAL,
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.sample_fmts = (const enum AVSampleFormat[]){AV_SAMPLE_FMT_S16,AV_SAMPLE_FMT_NONE},
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.sample_fmts = (const enum AVSampleFormat[]){AV_SAMPLE_FMT_FLT,AV_SAMPLE_FMT_NONE},
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.long_name = NULL_IF_CONFIG_SMALL("Advanced Audio Coding"),
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.priv_class = &aacenc_class,
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};
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@ -58,7 +58,7 @@ typedef struct AACEncContext {
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FFTContext mdct1024; ///< long (1024 samples) frame transform context
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FFTContext mdct128; ///< short (128 samples) frame transform context
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DSPContext dsp;
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int16_t *samples; ///< saved preprocessed input
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float *samples; ///< saved preprocessed input
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int samplerate_index; ///< MPEG-4 samplerate index
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const uint8_t *chan_map; ///< channel configuration map
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@ -776,9 +776,8 @@ static void lame_apply_block_type(AacPsyChannel *ctx, FFPsyWindowInfo *wi, int u
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ctx->next_window_seq = blocktype;
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}
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static FFPsyWindowInfo psy_lame_window(FFPsyContext *ctx,
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const int16_t *audio, const int16_t *la,
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int channel, int prev_type)
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static FFPsyWindowInfo psy_lame_window(FFPsyContext *ctx, const float *audio,
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const float *la, int channel, int prev_type)
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{
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AacPsyContext *pctx = (AacPsyContext*) ctx->model_priv_data;
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AacPsyChannel *pch = &pctx->ch[channel];
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@ -796,7 +795,7 @@ static FFPsyWindowInfo psy_lame_window(FFPsyContext *ctx,
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float energy_subshort[(AAC_NUM_BLOCKS_SHORT + 1) * PSY_LAME_NUM_SUBBLOCKS];
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float energy_short[AAC_NUM_BLOCKS_SHORT + 1] = { 0 };
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int chans = ctx->avctx->channels;
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const int16_t *firbuf = la + (AAC_BLOCK_SIZE_SHORT/4 - PSY_LAME_FIR_LEN) * chans;
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const float *firbuf = la + (AAC_BLOCK_SIZE_SHORT/4 - PSY_LAME_FIR_LEN) * chans;
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int j, att_sum = 0;
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/* LAME comment: apply high pass filter of fs/4 */
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@ -808,7 +807,8 @@ static FFPsyWindowInfo psy_lame_window(FFPsyContext *ctx,
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sum1 += psy_fir_coeffs[j] * (firbuf[(i + j) * chans] + firbuf[(i + PSY_LAME_FIR_LEN - j) * chans]);
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sum2 += psy_fir_coeffs[j + 1] * (firbuf[(i + j + 1) * chans] + firbuf[(i + PSY_LAME_FIR_LEN - j - 1) * chans]);
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}
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hpfsmpl[i] = sum1 + sum2;
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/* NOTE: The LAME psymodel expects it's input in the range -32768 to 32768. Tuning this for normalized floats would be difficult. */
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hpfsmpl[i] = (sum1 + sum2) * 32768.0f;
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}
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/* Calculate the energies of each sub-shortblock */
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@ -112,14 +112,13 @@ av_cold struct FFPsyPreprocessContext* ff_psy_preprocess_init(AVCodecContext *av
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return ctx;
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}
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void ff_psy_preprocess(struct FFPsyPreprocessContext *ctx,
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const int16_t *audio, int16_t *dest,
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int tag, int channels)
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void ff_psy_preprocess(struct FFPsyPreprocessContext *ctx, const float *audio,
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float *dest, int tag, int channels)
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{
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int ch, i;
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if (ctx->fstate) {
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for (ch = 0; ch < channels; ch++)
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ff_iir_filter(ctx->fcoeffs, ctx->fstate[tag+ch], ctx->avctx->frame_size,
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ff_iir_filter_flt(ctx->fcoeffs, ctx->fstate[tag+ch], ctx->avctx->frame_size,
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audio + ch, ctx->avctx->channels,
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dest + ch, ctx->avctx->channels);
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} else {
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@ -109,7 +109,7 @@ typedef struct FFPsyModel {
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*
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* @return suggested window information in a structure
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*/
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FFPsyWindowInfo (*window)(FFPsyContext *ctx, const int16_t *audio, const int16_t *la, int channel, int prev_type);
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FFPsyWindowInfo (*window)(FFPsyContext *ctx, const float *audio, const float *la, int channel, int prev_type);
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/**
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* Perform psychoacoustic analysis and set band info (threshold, energy) for a group of channels.
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@ -179,9 +179,8 @@ av_cold struct FFPsyPreprocessContext* ff_psy_preprocess_init(AVCodecContext *av
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* @param tag channel number
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* @param channels number of channel to preprocess (some additional work may be done on stereo pair)
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*/
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void ff_psy_preprocess(struct FFPsyPreprocessContext *ctx,
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const int16_t *audio, int16_t *dest,
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int tag, int channels);
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void ff_psy_preprocess(struct FFPsyPreprocessContext *ctx, const float *audio,
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float *dest, int tag, int channels);
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/**
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* Cleanup audio preprocessing module.
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