30 static void imdct36_blocks_ ## CPU(float *out, float *buf, float *in, int count, int switch_point, int block_type);\
31 void ff_imdct36_float_ ## CPU(float *out, float *buf, float *in, float *win);
48 #define MACS(rt, ra, rb) rt+=(ra)*(rb)
49 #define MLSS(rt, ra, rb) rt-=(ra)*(rb)
51 #define SUM8(op, sum, w, p) \
53 op(sum, (w)[0 * 64], (p)[0 * 64]); \
54 op(sum, (w)[1 * 64], (p)[1 * 64]); \
55 op(sum, (w)[2 * 64], (p)[2 * 64]); \
56 op(sum, (w)[3 * 64], (p)[3 * 64]); \
57 op(sum, (w)[4 * 64], (p)[4 * 64]); \
58 op(sum, (w)[5 * 64], (p)[5 * 64]); \
59 op(sum, (w)[6 * 64], (p)[6 * 64]); \
60 op(sum, (w)[7 * 64], (p)[7 * 64]); \
63 static void apply_window(
const float *buf,
const float *win1,
64 const float *win2,
float *sum1,
float *sum2,
int len)
67 const float *win1a = win1+
len;
68 const float *win2a = win2+
len;
69 const float *bufa = buf+
len;
70 float *sum1a = sum1+
len;
71 float *sum2a = sum2+
len;
75 "movaps " #a "(%1,%0), %%xmm1 \n\t" \
76 "movaps " #a "(%3,%0), %%xmm2 \n\t" \
77 "mulps %%xmm2, %%xmm1 \n\t" \
78 "subps %%xmm1, %%xmm0 \n\t" \
79 "mulps " #b "(%2,%0), %%xmm2 \n\t" \
80 "subps %%xmm2, %%xmm4 \n\t" \
84 "xorps %%xmm0, %%xmm0 \n\t"
85 "xorps %%xmm4, %%xmm4 \n\t"
96 "movaps %%xmm0, (%4,%0) \n\t"
97 "movaps %%xmm4, (%5,%0) \n\t"
101 :
"r"(win1a),
"r"(win2a),
"r"(bufa),
"r"(sum1a),
"r"(sum2a)
107 static void apply_window_mp3(
float *in,
float *win,
int *unused,
float *out,
119 "movaps 0(%0), %%xmm0 \n\t" \
120 "movaps 16(%0), %%xmm1 \n\t" \
121 "movaps 32(%0), %%xmm2 \n\t" \
122 "movaps 48(%0), %%xmm3 \n\t" \
123 "movaps %%xmm0, 0(%1) \n\t" \
124 "movaps %%xmm1, 16(%1) \n\t" \
125 "movaps %%xmm2, 32(%1) \n\t" \
126 "movaps %%xmm3, 48(%1) \n\t" \
127 "movaps 64(%0), %%xmm0 \n\t" \
128 "movaps 80(%0), %%xmm1 \n\t" \
129 "movaps 96(%0), %%xmm2 \n\t" \
130 "movaps 112(%0), %%xmm3 \n\t" \
131 "movaps %%xmm0, 64(%1) \n\t" \
132 "movaps %%xmm1, 80(%1) \n\t" \
133 "movaps %%xmm2, 96(%1) \n\t" \
134 "movaps %%xmm3, 112(%1) \n\t"
135 ::
"r"(
in),
"r"(in+512)
140 apply_window(in + 32, win + 48, win + 640, sumb, sumd, 16);
142 SUM8(
MACS, suma[0], win + 32, in + 48);
148 #define SUMS(suma, sumb, sumc, sumd, out1, out2) \
149 "movups " #sumd "(%4), %%xmm0 \n\t" \
150 "shufps $0x1b, %%xmm0, %%xmm0 \n\t" \
151 "subps " #suma "(%1), %%xmm0 \n\t" \
152 "movaps %%xmm0," #out1 "(%0) \n\t" \
154 "movups " #sumc "(%3), %%xmm0 \n\t" \
155 "shufps $0x1b, %%xmm0, %%xmm0 \n\t" \
156 "addps " #sumb "(%2), %%xmm0 \n\t" \
157 "movaps %%xmm0," #out2 "(%0) \n\t"
161 SUMS( 0, 48, 4, 52, 0, 112)
162 SUMS(16, 32, 20, 36, 16, 96)
163 SUMS(32, 16, 36, 20, 32, 80)
164 SUMS(48, 0, 52, 4, 48, 64)
167 :"
r"(&suma[0]), "
r"(&sumb[0]), "
r"(&sumc[0]), "
r"(&sumd[0])
173 float *out2 = out + 32 * incr;
178 *out = -suma[ j] + sumd[16-j];
179 *out2 = sumb[16-j] + sumc[ j];
186 SUM8(
MLSS, sum, win + 16 + 32, in + 32);
193 #define DECL_IMDCT_BLOCKS(CPU1, CPU2) \
194 static void imdct36_blocks_ ## CPU1(float *out, float *buf, float *in, \
195 int count, int switch_point, int block_type) \
197 int align_end = count - (count & 3); \
199 for (j = 0; j < align_end; j+= 4) { \
200 LOCAL_ALIGNED_16(float, tmpbuf, [1024]); \
201 float *win = mdct_win_sse[switch_point && j < 4][block_type]; \
205 ff_four_imdct36_float_ ## CPU2(out, buf, in, win, tmpbuf); \
210 for (; j < count; j++) { \
214 int win_idx = (switch_point && j < 2) ? 0 : block_type; \
215 float *win = ff_mdct_win_float[win_idx + (4 & -(j & 1))]; \
217 ff_imdct36_float_ ## CPU1(out, buf, in, win); \
226 DECL_IMDCT_BLOCKS(
sse,
sse)
227 DECL_IMDCT_BLOCKS(sse2,
sse)
228 DECL_IMDCT_BLOCKS(sse3,
sse)
229 DECL_IMDCT_BLOCKS(ssse3,
sse)
231 #if HAVE_AVX_EXTERNAL
232 DECL_IMDCT_BLOCKS(avx,avx)
241 for (j = 0; j < 4; j++) {
242 for (i = 0; i < 40; i ++) {