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ac3enc: split mantissa bit counting into a separate function.
No speed difference. This is to allow for more flexible bit counting.
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@ -1491,22 +1491,12 @@ static void reset_block_bap(AC3EncodeContext *s)
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}
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/**
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* Run the bit allocation with a given SNR offset.
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* This calculates the bit allocation pointers that will be used to determine
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* the quantization of each mantissa.
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* @return the number of bits needed for mantissas if the given SNR offset is
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* is used.
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*/
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static int bit_alloc(AC3EncodeContext *s, int snr_offset)
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static int count_mantissa_bits(AC3EncodeContext *s)
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{
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int blk, ch;
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int mantissa_bits;
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int mant_cnt[5];
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snr_offset = (snr_offset - 240) << 2;
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reset_block_bap(s);
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mantissa_bits = 0;
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for (blk = 0; blk < AC3_MAX_BLOCKS; blk++) {
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AC3Block *block = &s->blocks[blk];
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@ -1524,7 +1514,36 @@ static int bit_alloc(AC3EncodeContext *s, int snr_offset)
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ch = CPL_CH;
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got_cpl = 1;
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}
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mantissa_bits += s->ac3dsp.compute_mantissa_size(mant_cnt,
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s->ref_bap[ch][blk]+s->start_freq[ch],
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block->end_freq[ch]-s->start_freq[ch]);
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if (ch == CPL_CH)
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ch = ch0;
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}
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mantissa_bits += compute_mantissa_size_final(mant_cnt);
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}
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return mantissa_bits;
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}
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/**
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* Run the bit allocation with a given SNR offset.
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* This calculates the bit allocation pointers that will be used to determine
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* the quantization of each mantissa.
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* @return the number of bits needed for mantissas if the given SNR offset is
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* is used.
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*/
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static int bit_alloc(AC3EncodeContext *s, int snr_offset)
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{
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int blk, ch;
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snr_offset = (snr_offset - 240) << 2;
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reset_block_bap(s);
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for (blk = 0; blk < AC3_MAX_BLOCKS; blk++) {
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AC3Block *block = &s->blocks[blk];
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for (ch = !block->cpl_in_use; ch <= s->channels; ch++) {
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/* Currently the only bit allocation parameters which vary across
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blocks within a frame are the exponent values. We can take
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advantage of that by reusing the bit allocation pointers
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@ -1535,15 +1554,9 @@ static int bit_alloc(AC3EncodeContext *s, int snr_offset)
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snr_offset, s->bit_alloc.floor,
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ff_ac3_bap_tab, s->ref_bap[ch][blk]);
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}
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mantissa_bits += s->ac3dsp.compute_mantissa_size(mant_cnt,
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s->ref_bap[ch][blk]+s->start_freq[ch],
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block->end_freq[ch]-s->start_freq[ch]);
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if (ch == CPL_CH)
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ch = ch0;
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}
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mantissa_bits += compute_mantissa_size_final(mant_cnt);
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}
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return mantissa_bits;
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return count_mantissa_bits(s);
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}
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