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-rw-r--r--sbc/sbc.c55
1 files changed, 23 insertions, 32 deletions
diff --git a/sbc/sbc.c b/sbc/sbc.c
index dcff5382..a5cbf803 100644
--- a/sbc/sbc.c
+++ b/sbc/sbc.c
@@ -700,12 +700,7 @@ static inline void _sbc_analyze_four(const int32_t *in, int32_t *out)
sbc_extended_t res;
sbc_extended_t t[8];
-
-#if 0
- /* temporary results */
- sbc_extended_t s[2], p[6], d[4];
-#endif
- out[0] = out[1] = out[2] = out[3] = 0;
+ sbc_extended_t s[4];
MUL(res, _sbc_proto_4[0], (in[8] - in[32])); // Q18
MULA(res, _sbc_proto_4[1], (in[16] - in[24]));
@@ -744,14 +739,15 @@ static inline void _sbc_analyze_four(const int32_t *in, int32_t *out)
MULA(res, _sbc_proto_4[13], in[29]);
MULA(res, _sbc_proto_4[12], in[37]);
t[5] = SCALE4_STAGE1(res);
-
+#if 0
+ /* don't compute... this term always multiplies with cos(pi) = 0*/
MUL(res, _sbc_proto_4[11], in[6]);
MULA(res, _sbc_proto_4[10], in[14]);
MULA(res, _sbc_proto_4[9], in[22]);
MULA(res, _sbc_proto_4[8], in[30]);
MULA(res, _sbc_proto_4[7], in[38]);
t[6] = SCALE4_STAGE1(res);
-
+#endif
MUL(res, _sbc_proto_4[6], in[7]);
MULA(res, _sbc_proto_4[5], in[15]);
MULA(res, _sbc_proto_4[4], in[23]);
@@ -759,7 +755,7 @@ static inline void _sbc_analyze_four(const int32_t *in, int32_t *out)
MULA(res, _sbc_proto_4[2], in[39]);
t[7] = SCALE4_STAGE1(res);
-#if 1
+#if 0
MUL(res, _anamatrix4[0], t[0]);
MULA(res, _anamatrix4[1], t[1]);
MULA(res, _anamatrix4[2], t[2]);
@@ -796,24 +792,24 @@ static inline void _sbc_analyze_four(const int32_t *in, int32_t *out)
MULA(res, -_anamatrix4[3], t[5]);
MULA(res, _anamatrix4[3], t[7]);
out[3] = SCALE4_STAGE2(res);
-#endif
-#if 0
- s[0] = t[1] + t[3];
- s[1] = t[5] - t[6];
- MUL(p[0], _anamatrix4[0], t[0] + t[4]);
- MUL(p[1], _anamatrix4[1], s[0]);
- MUL(p[2], _anamatrix4[2], t[2]);
- MUL(p[3], _anamatrix4[3], s[0]);
- MUL(p[4], _anamatrix4[3], s[1]);
- MUL(p[5], _anamatrix4[1], s[1]);
- d[0] = p[0] + p[2];
- d[1] = p[2] - p[0];
- d[2] = p[1] + p[4];
- d[3] = p[3] - p[5];
- out[0] = SCALE4_STAGE2(d[0] + d[2]);
- out[1] = SCALE4_STAGE2(d[1] + d[3]);
- out[2] = SCALE4_STAGE2(d[1] - d[3]);
- out[3] = SCALE4_STAGE2(d[0] - d[2]);
+#else
+ /* some of these multiplies could be factored more but something overflows */
+ /* eg replace the first two lines with MUL(s[0], _anamatrix4[0], t[0] + t[4]) */
+ MUL(s[0], _anamatrix4[0], t[0]);
+ MULA(s[0], _anamatrix4[0], t[4]);
+ MUL(s[1], _anamatrix4[2], t[2]);
+ MUL(s[2], _anamatrix4[1], t[1]);
+ MULA(s[2], _anamatrix4[1], t[3]);
+ MULA(s[2], _anamatrix4[3], t[5]);
+ MULA(s[2], -_anamatrix4[3], t[7]);
+ MUL(s[3], _anamatrix4[3], t[1]);
+ MULA(s[3], _anamatrix4[3], t[3]);
+ MULA(s[3], -_anamatrix4[1], t[5]);
+ MULA(s[3], _anamatrix4[1], t[7]);
+ out[0] = SCALE4_STAGE2( s[0] + s[1] + s[2]);
+ out[1] = SCALE4_STAGE2(-s[0] + s[1] + s[3]);
+ out[2] = SCALE4_STAGE2(-s[0] + s[1] - s[3]);
+ out[3] = SCALE4_STAGE2( s[0] + s[1] - s[2]);
#endif
}
static inline void sbc_analyze_four(struct sbc_encoder_state *state,
@@ -832,12 +828,7 @@ static inline void _sbc_analyze_eight(const int32_t *in, int32_t *out)
{
sbc_extended_t res;
sbc_extended_t t[8];
-
-#if 1
- /* temporary results */
sbc_extended_t s[8];
-#endif
- out[0] = out[1] = out[2] = out[3] = out[4] = out[5] = out[6] = out[7] = 0;
MUL(res, _sbc_proto_8[0], (in[16] - in[64])); // Q18 = Q18 * Q0
MULA(res, _sbc_proto_8[1], (in[32] - in[48]));