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@@ -169,6 +169,10 @@ static void sbr_dequant(SpectralBandReplication *sbr, int id_aac) |
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else |
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temp1.mant = 0x20000000; |
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temp1.exp = (temp1.exp >> 1) + 1; |
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if (temp1.exp > 66) { // temp1 > 1E20 |
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av_log(NULL, AV_LOG_ERROR, "envelope scalefactor overflow in dequant\n"); |
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temp1 = FLOAT_1; |
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} |
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temp2.exp = (pan_offset - sbr->data[1].env_facs[e][k].mant) * alpha; |
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if (temp2.exp & 1) |
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@@ -188,6 +192,10 @@ static void sbr_dequant(SpectralBandReplication *sbr, int id_aac) |
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temp1.exp = NOISE_FLOOR_OFFSET - \ |
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sbr->data[0].noise_facs[e][k].mant + 2; |
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temp1.mant = 0x20000000; |
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if (temp1.exp > 66) { // temp1 > 1E20 |
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av_log(NULL, AV_LOG_ERROR, "envelope scalefactor overflow in dequant\n"); |
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temp1 = FLOAT_1; |
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} |
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temp2.exp = 12 - sbr->data[1].noise_facs[e][k].mant + 1; |
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temp2.mant = 0x20000000; |
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fac = av_div_sf(temp1, av_add_sf(FLOAT_1, temp2)); |
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@@ -208,7 +216,10 @@ static void sbr_dequant(SpectralBandReplication *sbr, int id_aac) |
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else |
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temp1.mant = 0x20000000; |
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temp1.exp = (temp1.exp >> 1) + 1; |
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if (temp1.exp > 66) { // temp1 > 1E20 |
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av_log(NULL, AV_LOG_ERROR, "envelope scalefactor overflow in dequant\n"); |
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temp1 = FLOAT_1; |
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} |
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sbr->data[ch].env_facs[e][k] = temp1; |
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} |
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for (e = 1; e <= sbr->data[ch].bs_num_noise; e++) |
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