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authorDiego Biurrun <diego@biurrun.de>2011-12-19 14:54:58 +0100
committerDiego Biurrun <diego@biurrun.de>2011-12-19 16:22:11 +0100
commit2fd291846b3382bce2a54a48cab2741f313faf0f (patch)
treeb9155969449ca0e6436d175e62eb7454aa97211d /libavcodec/qcelpdec.c
parent30bbd5cbc00f935df5293ab39261a19e50a38c38 (diff)
downloadffmpeg-2fd291846b3382bce2a54a48cab2741f313faf0f.tar.gz
qcelpdec: cosmetics: drop some pointless parentheses
Diffstat (limited to 'libavcodec/qcelpdec.c')
-rw-r--r--libavcodec/qcelpdec.c16
1 files changed, 8 insertions, 8 deletions
diff --git a/libavcodec/qcelpdec.c b/libavcodec/qcelpdec.c
index 20a0484b42..cd14ebc151 100644
--- a/libavcodec/qcelpdec.c
+++ b/libavcodec/qcelpdec.c
@@ -122,9 +122,9 @@ static int decode_lspf(QCELPContext *q, float *lspf)
const float *predictors;
if (q->bitrate == RATE_OCTAVE || q->bitrate == I_F_Q) {
- predictors = (q->prev_bitrate != RATE_OCTAVE &&
- q->prev_bitrate != I_F_Q ?
- q->prev_lspf : q->predictor_lspf);
+ predictors = q->prev_bitrate != RATE_OCTAVE &&
+ q->prev_bitrate != I_F_Q ? q->prev_lspf
+ : q->predictor_lspf;
if (q->bitrate == RATE_OCTAVE) {
q->octave_count++;
@@ -136,14 +136,14 @@ static int decode_lspf(QCELPContext *q, float *lspf)
+ predictors[i] * QCELP_LSP_OCTAVE_PREDICTOR
+ (i + 1) * ((1 - QCELP_LSP_OCTAVE_PREDICTOR)/11);
}
- smooth = (q->octave_count < 10 ? .875 : 0.1);
+ smooth = q->octave_count < 10 ? .875 : 0.1;
} else {
erasure_coeff = QCELP_LSP_OCTAVE_PREDICTOR;
assert(q->bitrate == I_F_Q);
if(q->erasure_count > 1)
- erasure_coeff *= (q->erasure_count < 4 ? 0.9 : 0.7);
+ erasure_coeff *= q->erasure_count < 4 ? 0.9 : 0.7;
for(i = 0; i < 10; i++) {
q->predictor_lspf[i] =
@@ -156,11 +156,11 @@ static int decode_lspf(QCELPContext *q, float *lspf)
// Check the stability of the LSP frequencies.
lspf[0] = FFMAX(lspf[0], QCELP_LSP_SPREAD_FACTOR);
for(i=1; i<10; i++)
- lspf[i] = FFMAX(lspf[i], (lspf[i-1] + QCELP_LSP_SPREAD_FACTOR));
+ lspf[i] = FFMAX(lspf[i], lspf[i - 1] + QCELP_LSP_SPREAD_FACTOR);
- lspf[9] = FFMIN(lspf[9], (1.0 - QCELP_LSP_SPREAD_FACTOR));
+ lspf[9] = FFMIN(lspf[9], 1.0 - QCELP_LSP_SPREAD_FACTOR);
for(i=9; i>0; i--)
- lspf[i-1] = FFMIN(lspf[i-1], (lspf[i] - QCELP_LSP_SPREAD_FACTOR));
+ lspf[i - 1] = FFMIN(lspf[i - 1], lspf[i] - QCELP_LSP_SPREAD_FACTOR);
// Low-pass filter the LSP frequencies.
ff_weighted_vector_sumf(lspf, lspf, q->prev_lspf, smooth, 1.0-smooth, 10);