optimize ac3_downmix.
1.3x faster 5.1->stereo, 1.9x faster 5.1->mono. Originally committed as revision 14719 to svn://svn.ffmpeg.org/ffmpeg/trunk
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@ -321,6 +321,7 @@ static void set_downmix_coeffs(AC3DecodeContext *s)
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int i;
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float cmix = gain_levels[center_levels[s->center_mix_level]];
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float smix = gain_levels[surround_levels[s->surround_mix_level]];
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float norm0, norm1;
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for(i=0; i<s->fbw_channels; i++) {
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s->downmix_coeffs[i][0] = gain_levels[ac3_default_coeffs[s->channel_mode][i][0]];
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@ -338,14 +339,23 @@ static void set_downmix_coeffs(AC3DecodeContext *s)
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s->downmix_coeffs[nf][0] = s->downmix_coeffs[nf+1][1] = smix;
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}
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/* calculate adjustment needed for each channel to avoid clipping */
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s->downmix_coeff_adjust[0] = s->downmix_coeff_adjust[1] = 0.0f;
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/* renormalize */
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norm0 = norm1 = 0.0;
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for(i=0; i<s->fbw_channels; i++) {
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s->downmix_coeff_adjust[0] += s->downmix_coeffs[i][0];
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s->downmix_coeff_adjust[1] += s->downmix_coeffs[i][1];
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norm0 += s->downmix_coeffs[i][0];
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norm1 += s->downmix_coeffs[i][1];
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}
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norm0 = 1.0f / norm0;
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norm1 = 1.0f / norm1;
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for(i=0; i<s->fbw_channels; i++) {
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s->downmix_coeffs[i][0] *= norm0;
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s->downmix_coeffs[i][1] *= norm1;
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}
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if(s->output_mode == AC3_CHMODE_MONO) {
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for(i=0; i<s->fbw_channels; i++)
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s->downmix_coeffs[i][0] = (s->downmix_coeffs[i][0] + s->downmix_coeffs[i][1]) * LEVEL_MINUS_3DB;
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}
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s->downmix_coeff_adjust[0] = 1.0f / s->downmix_coeff_adjust[0];
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s->downmix_coeff_adjust[1] = 1.0f / s->downmix_coeff_adjust[1];
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}
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/**
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@ -619,25 +629,28 @@ static inline void do_imdct(AC3DecodeContext *s, int channels)
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/**
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* Downmix the output to mono or stereo.
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*/
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static void ac3_downmix(AC3DecodeContext *s,
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float samples[AC3_MAX_CHANNELS][256], int ch_offset)
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static av_noinline void ac3_downmix(AC3DecodeContext *s,
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float samples[AC3_MAX_CHANNELS][256])
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{
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int i, j;
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float v0, v1;
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for(i=0; i<256; i++) {
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v0 = v1 = 0.0f;
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for(j=0; j<s->fbw_channels; j++) {
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v0 += samples[j+ch_offset][i] * s->downmix_coeffs[j][0];
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v1 += samples[j+ch_offset][i] * s->downmix_coeffs[j][1];
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if(s->output_mode == AC3_CHMODE_STEREO) {
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for(i=0; i<256; i++) {
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v0 = v1 = 0.0f;
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for(j=0; j<s->fbw_channels; j++) {
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v0 += samples[j][i] * s->downmix_coeffs[j][0];
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v1 += samples[j][i] * s->downmix_coeffs[j][1];
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}
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samples[0][i] = v0;
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samples[1][i] = v1;
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}
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v0 *= s->downmix_coeff_adjust[0];
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v1 *= s->downmix_coeff_adjust[1];
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if(s->output_mode == AC3_CHMODE_MONO) {
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samples[ch_offset][i] = (v0 + v1) * LEVEL_MINUS_3DB;
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} else if(s->output_mode == AC3_CHMODE_STEREO) {
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samples[ ch_offset][i] = v0;
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samples[1+ch_offset][i] = v1;
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} else if(s->output_mode == AC3_CHMODE_MONO) {
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for(i=0; i<256; i++) {
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v0 = 0.0f;
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for(j=0; j<s->fbw_channels; j++)
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v0 += samples[j][i] * s->downmix_coeffs[j][0];
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samples[0][i] = v0;
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}
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}
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}
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@ -1002,17 +1015,17 @@ static int decode_audio_block(AC3DecodeContext *s, int blk)
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do_imdct(s, s->channels);
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if(downmix_output) {
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ac3_downmix(s, s->output, 0);
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ac3_downmix(s, s->output);
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}
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} else {
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if(downmix_output) {
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ac3_downmix(s, s->transform_coeffs, 1);
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ac3_downmix(s, s->transform_coeffs+1);
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}
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if(!s->downmixed) {
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s->downmixed = 1;
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// FIXME delay[] is half the size of the other downmixes
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ac3_downmix(s, s->delay, 0);
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ac3_downmix(s, s->delay);
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}
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do_imdct(s, s->out_channels);
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@ -99,7 +99,6 @@ typedef struct {
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int channels; ///< number of total channels
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int lfe_ch; ///< index of LFE channel
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float downmix_coeffs[AC3_MAX_CHANNELS][2]; ///< stereo downmix coefficients
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float downmix_coeff_adjust[2]; ///< adjustment needed for each output channel when downmixing
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int downmixed; ///< indicates if coeffs are currently downmixed
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int output_mode; ///< output channel configuration
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int out_channels; ///< number of output channels
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