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@ -119,33 +119,33 @@ static int at1_imdct_block(AT1SUCtx* su, AT1Ctx *q) |
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num_blocks = 1 << log2_block_count; |
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if (num_blocks == 1) { |
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/* mdct block size in samples: 128 (long mode, low & mid bands), */ |
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/* 256 (long mode, high band) and 32 (short mode, all bands) */ |
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block_size = band_samples >> log2_block_count; |
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/* mdct block size in samples: 128 (long mode, low & mid bands), */ |
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/* 256 (long mode, high band) and 32 (short mode, all bands) */ |
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block_size = band_samples >> log2_block_count; |
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/* calc transform size in bits according to the block_size_mode */ |
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nbits = mdct_long_nbits[band_num] - log2_block_count; |
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/* calc transform size in bits according to the block_size_mode */ |
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nbits = mdct_long_nbits[band_num] - log2_block_count; |
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if (nbits != 5 && nbits != 7 && nbits != 8) |
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return -1; |
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if (nbits != 5 && nbits != 7 && nbits != 8) |
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return -1; |
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} else { |
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block_size = 32; |
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nbits = 5; |
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} |
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start_pos = 0; |
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prev_buf = &su->spectrum[1][ref_pos + band_samples - 16]; |
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for (j=0; j < num_blocks; j++) { |
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at1_imdct(q, &q->spec[pos], &su->spectrum[0][ref_pos + start_pos], nbits, band_num); |
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start_pos = 0; |
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prev_buf = &su->spectrum[1][ref_pos + band_samples - 16]; |
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for (j=0; j < num_blocks; j++) { |
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at1_imdct(q, &q->spec[pos], &su->spectrum[0][ref_pos + start_pos], nbits, band_num); |
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/* overlap and window */ |
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q->dsp.vector_fmul_window(&q->bands[band_num][start_pos], prev_buf, |
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&su->spectrum[0][ref_pos + start_pos], ff_sine_32, 0, 16); |
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/* overlap and window */ |
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q->dsp.vector_fmul_window(&q->bands[band_num][start_pos], prev_buf, |
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&su->spectrum[0][ref_pos + start_pos], ff_sine_32, 0, 16); |
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prev_buf = &su->spectrum[0][ref_pos+start_pos + 16]; |
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start_pos += block_size; |
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pos += block_size; |
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} |
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prev_buf = &su->spectrum[0][ref_pos+start_pos + 16]; |
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start_pos += block_size; |
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pos += block_size; |
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} |
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if (num_blocks == 1) |
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memcpy(q->bands[band_num] + 32, &su->spectrum[0][ref_pos + 16], 240 * sizeof(float)); |
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