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@@ -31,7 +31,7 @@
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/**
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* Starting frequency coefficient bin for each critical band.
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*/
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-static const uint8_t band_start_tab[AC3_CRITICAL_BANDS+1] = {
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+const uint8_t ff_ac3_band_start_tab[AC3_CRITICAL_BANDS+1] = {
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0, 1, 2, 3, 4, 5, 6, 7, 8, 9,
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10, 11, 12, 13, 14, 15, 16, 17, 18, 19,
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20, 21, 22, 23, 24, 25, 26, 27, 28, 31,
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@@ -44,7 +44,7 @@ static const uint8_t band_start_tab[AC3_CRITICAL_BANDS+1] = {
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/**
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* Map each frequency coefficient bin to the critical band that contains it.
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*/
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-static const uint8_t bin_to_band_tab[253] = {
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+const uint8_t ff_ac3_bin_to_band_tab[253] = {
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0,
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1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12,
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13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24,
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@@ -70,7 +70,7 @@ static const uint8_t bin_to_band_tab[253] = {
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};
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#else /* CONFIG_HARDCODED_TABLES */
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-static uint8_t bin_to_band_tab[253];
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+uint8_t ff_ac3_bin_to_band_tab[253];
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#endif
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static inline int calc_lowcomp1(int a, int b0, int b1, int c)
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@@ -106,10 +106,10 @@ void ff_ac3_bit_alloc_calc_psd(int8_t *exp, int start, int end, int16_t *psd,
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/* PSD integration */
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bin = start;
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- band = bin_to_band_tab[start];
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+ band = ff_ac3_bin_to_band_tab[start];
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do {
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int v = psd[bin++];
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- int band_end = FFMIN(band_start_tab[band+1], end);
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+ int band_end = FFMIN(ff_ac3_band_start_tab[band+1], end);
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for (; bin < band_end; bin++) {
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int max = FFMAX(v, psd[bin]);
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/* logadd */
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@@ -117,7 +117,7 @@ void ff_ac3_bit_alloc_calc_psd(int8_t *exp, int start, int end, int16_t *psd,
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v = max + ff_ac3_log_add_tab[adr];
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}
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band_psd[band++] = v;
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- } while (end > band_start_tab[band]);
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+ } while (end > ff_ac3_band_start_tab[band]);
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}
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int ff_ac3_bit_alloc_calc_mask(AC3BitAllocParameters *s, int16_t *band_psd,
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@@ -132,8 +132,8 @@ int ff_ac3_bit_alloc_calc_mask(AC3BitAllocParameters *s, int16_t *band_psd,
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int lowcomp, fastleak, slowleak;
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/* excitation function */
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- band_start = bin_to_band_tab[start];
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- band_end = bin_to_band_tab[end-1] + 1;
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+ band_start = ff_ac3_bin_to_band_tab[start];
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+ band_end = ff_ac3_bin_to_band_tab[end-1] + 1;
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if (band_start == 0) {
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lowcomp = 0;
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@@ -212,30 +212,6 @@ int ff_ac3_bit_alloc_calc_mask(AC3BitAllocParameters *s, int16_t *band_psd,
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return 0;
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}
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-void ff_ac3_bit_alloc_calc_bap(int16_t *mask, int16_t *psd, int start, int end,
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- int snr_offset, int floor,
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- const uint8_t *bap_tab, uint8_t *bap)
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-{
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- int bin, band;
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-
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- /* special case, if snr offset is -960, set all bap's to zero */
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- if (snr_offset == -960) {
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- memset(bap, 0, AC3_MAX_COEFS);
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- return;
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- }
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-
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- bin = start;
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- band = bin_to_band_tab[start];
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- do {
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- int m = (FFMAX(mask[band] - snr_offset - floor, 0) & 0x1FE0) + floor;
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- int band_end = FFMIN(band_start_tab[band+1], end);
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- for (; bin < band_end; bin++) {
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- int address = av_clip((psd[bin] - m) >> 5, 0, 63);
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- bap[bin] = bap_tab[address];
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- }
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- } while (end > band_start_tab[band++]);
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-}
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-
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/**
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* Initialize some tables.
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* note: This function must remain thread safe because it is called by the
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@@ -244,12 +220,12 @@ void ff_ac3_bit_alloc_calc_bap(int16_t *mask, int16_t *psd, int start, int end,
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av_cold void ff_ac3_common_init(void)
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{
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#if !CONFIG_HARDCODED_TABLES
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- /* compute bin_to_band_tab from band_start_tab */
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+ /* compute ff_ac3_bin_to_band_tab from ff_ac3_band_start_tab */
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int bin = 0, band;
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for (band = 0; band < AC3_CRITICAL_BANDS; band++) {
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- int band_end = band_start_tab[band+1];
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+ int band_end = ff_ac3_band_start_tab[band+1];
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while (bin < band_end)
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- bin_to_band_tab[bin++] = band;
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+ ff_ac3_bin_to_band_tab[bin++] = band;
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}
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#endif /* !CONFIG_HARDCODED_TABLES */
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}
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