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00028 #include "dsputil.h"
00029 #include "faandct.h"
00030
00031 #define FLOAT float
00032
00033
00034
00035
00036
00037
00038
00039 #define B0 1.00000000000000000000
00040 #define B1 0.72095982200694791383 // (cos(pi*1/16)sqrt(2))^-1
00041 #define B2 0.76536686473017954350 // (cos(pi*2/16)sqrt(2))^-1
00042 #define B3 0.85043009476725644878 // (cos(pi*3/16)sqrt(2))^-1
00043 #define B4 1.00000000000000000000 // (cos(pi*4/16)sqrt(2))^-1
00044 #define B5 1.27275858057283393842 // (cos(pi*5/16)sqrt(2))^-1
00045 #define B6 1.84775906502257351242 // (cos(pi*6/16)sqrt(2))^-1
00046 #define B7 3.62450978541155137218 // (cos(pi*7/16)sqrt(2))^-1
00047
00048
00049 #define A1 0.70710678118654752438 // cos(pi*4/16)
00050 #define A2 0.54119610014619698435 // cos(pi*6/16)sqrt(2)
00051 #define A5 0.38268343236508977170 // cos(pi*6/16)
00052 #define A4 1.30656296487637652774 // cos(pi*2/16)sqrt(2)
00053
00054 static const FLOAT postscale[64]={
00055 B0*B0, B0*B1, B0*B2, B0*B3, B0*B4, B0*B5, B0*B6, B0*B7,
00056 B1*B0, B1*B1, B1*B2, B1*B3, B1*B4, B1*B5, B1*B6, B1*B7,
00057 B2*B0, B2*B1, B2*B2, B2*B3, B2*B4, B2*B5, B2*B6, B2*B7,
00058 B3*B0, B3*B1, B3*B2, B3*B3, B3*B4, B3*B5, B3*B6, B3*B7,
00059 B4*B0, B4*B1, B4*B2, B4*B3, B4*B4, B4*B5, B4*B6, B4*B7,
00060 B5*B0, B5*B1, B5*B2, B5*B3, B5*B4, B5*B5, B5*B6, B5*B7,
00061 B6*B0, B6*B1, B6*B2, B6*B3, B6*B4, B6*B5, B6*B6, B6*B7,
00062 B7*B0, B7*B1, B7*B2, B7*B3, B7*B4, B7*B5, B7*B6, B7*B7,
00063 };
00064
00065 static av_always_inline void row_fdct(FLOAT temp[64], DCTELEM * data)
00066 {
00067 FLOAT tmp0, tmp1, tmp2, tmp3, tmp4, tmp5, tmp6, tmp7;
00068 FLOAT tmp10, tmp11, tmp12, tmp13;
00069 FLOAT z2, z4, z11, z13;
00070 FLOAT av_unused z5;
00071 int i;
00072
00073 for (i=0; i<8*8; i+=8) {
00074 tmp0= data[0 + i] + data[7 + i];
00075 tmp7= data[0 + i] - data[7 + i];
00076 tmp1= data[1 + i] + data[6 + i];
00077 tmp6= data[1 + i] - data[6 + i];
00078 tmp2= data[2 + i] + data[5 + i];
00079 tmp5= data[2 + i] - data[5 + i];
00080 tmp3= data[3 + i] + data[4 + i];
00081 tmp4= data[3 + i] - data[4 + i];
00082
00083 tmp10= tmp0 + tmp3;
00084 tmp13= tmp0 - tmp3;
00085 tmp11= tmp1 + tmp2;
00086 tmp12= tmp1 - tmp2;
00087
00088 temp[0 + i]= tmp10 + tmp11;
00089 temp[4 + i]= tmp10 - tmp11;
00090
00091 tmp12 += tmp13;
00092 tmp12 *= A1;
00093 temp[2 + i]= tmp13 + tmp12;
00094 temp[6 + i]= tmp13 - tmp12;
00095
00096 tmp4 += tmp5;
00097 tmp5 += tmp6;
00098 tmp6 += tmp7;
00099
00100 #if 0
00101 z5= (tmp4 - tmp6) * A5;
00102 z2= tmp4*A2 + z5;
00103 z4= tmp6*A4 + z5;
00104 #else
00105 z2= tmp4*(A2+A5) - tmp6*A5;
00106 z4= tmp6*(A4-A5) + tmp4*A5;
00107 #endif
00108 tmp5*=A1;
00109
00110 z11= tmp7 + tmp5;
00111 z13= tmp7 - tmp5;
00112
00113 temp[5 + i]= z13 + z2;
00114 temp[3 + i]= z13 - z2;
00115 temp[1 + i]= z11 + z4;
00116 temp[7 + i]= z11 - z4;
00117 }
00118 }
00119
00120 void ff_faandct(DCTELEM * data)
00121 {
00122 FLOAT tmp0, tmp1, tmp2, tmp3, tmp4, tmp5, tmp6, tmp7;
00123 FLOAT tmp10, tmp11, tmp12, tmp13;
00124 FLOAT z2, z4, z11, z13;
00125 FLOAT av_unused z5;
00126 FLOAT temp[64];
00127 int i;
00128
00129 emms_c();
00130
00131 row_fdct(temp, data);
00132
00133 for (i=0; i<8; i++) {
00134 tmp0= temp[8*0 + i] + temp[8*7 + i];
00135 tmp7= temp[8*0 + i] - temp[8*7 + i];
00136 tmp1= temp[8*1 + i] + temp[8*6 + i];
00137 tmp6= temp[8*1 + i] - temp[8*6 + i];
00138 tmp2= temp[8*2 + i] + temp[8*5 + i];
00139 tmp5= temp[8*2 + i] - temp[8*5 + i];
00140 tmp3= temp[8*3 + i] + temp[8*4 + i];
00141 tmp4= temp[8*3 + i] - temp[8*4 + i];
00142
00143 tmp10= tmp0 + tmp3;
00144 tmp13= tmp0 - tmp3;
00145 tmp11= tmp1 + tmp2;
00146 tmp12= tmp1 - tmp2;
00147
00148 data[8*0 + i]= lrintf(postscale[8*0 + i] * (tmp10 + tmp11));
00149 data[8*4 + i]= lrintf(postscale[8*4 + i] * (tmp10 - tmp11));
00150
00151 tmp12 += tmp13;
00152 tmp12 *= A1;
00153 data[8*2 + i]= lrintf(postscale[8*2 + i] * (tmp13 + tmp12));
00154 data[8*6 + i]= lrintf(postscale[8*6 + i] * (tmp13 - tmp12));
00155
00156 tmp4 += tmp5;
00157 tmp5 += tmp6;
00158 tmp6 += tmp7;
00159
00160 #if 0
00161 z5= (tmp4 - tmp6) * A5;
00162 z2= tmp4*A2 + z5;
00163 z4= tmp6*A4 + z5;
00164 #else
00165 z2= tmp4*(A2+A5) - tmp6*A5;
00166 z4= tmp6*(A4-A5) + tmp4*A5;
00167 #endif
00168 tmp5*=A1;
00169
00170 z11= tmp7 + tmp5;
00171 z13= tmp7 - tmp5;
00172
00173 data[8*5 + i]= lrintf(postscale[8*5 + i] * (z13 + z2));
00174 data[8*3 + i]= lrintf(postscale[8*3 + i] * (z13 - z2));
00175 data[8*1 + i]= lrintf(postscale[8*1 + i] * (z11 + z4));
00176 data[8*7 + i]= lrintf(postscale[8*7 + i] * (z11 - z4));
00177 }
00178 }
00179
00180 void ff_faandct248(DCTELEM * data)
00181 {
00182 FLOAT tmp0, tmp1, tmp2, tmp3, tmp4, tmp5, tmp6, tmp7;
00183 FLOAT tmp10, tmp11, tmp12, tmp13;
00184 FLOAT temp[64];
00185 int i;
00186
00187 emms_c();
00188
00189 row_fdct(temp, data);
00190
00191 for (i=0; i<8; i++) {
00192 tmp0 = temp[8*0 + i] + temp[8*1 + i];
00193 tmp1 = temp[8*2 + i] + temp[8*3 + i];
00194 tmp2 = temp[8*4 + i] + temp[8*5 + i];
00195 tmp3 = temp[8*6 + i] + temp[8*7 + i];
00196 tmp4 = temp[8*0 + i] - temp[8*1 + i];
00197 tmp5 = temp[8*2 + i] - temp[8*3 + i];
00198 tmp6 = temp[8*4 + i] - temp[8*5 + i];
00199 tmp7 = temp[8*6 + i] - temp[8*7 + i];
00200
00201 tmp10 = tmp0 + tmp3;
00202 tmp11 = tmp1 + tmp2;
00203 tmp12 = tmp1 - tmp2;
00204 tmp13 = tmp0 - tmp3;
00205
00206 data[8*0 + i] = lrintf(postscale[8*0 + i] * (tmp10 + tmp11));
00207 data[8*4 + i] = lrintf(postscale[8*4 + i] * (tmp10 - tmp11));
00208
00209 tmp12 += tmp13;
00210 tmp12 *= A1;
00211 data[8*2 + i] = lrintf(postscale[8*2 + i] * (tmp13 + tmp12));
00212 data[8*6 + i] = lrintf(postscale[8*6 + i] * (tmp13 - tmp12));
00213
00214 tmp10 = tmp4 + tmp7;
00215 tmp11 = tmp5 + tmp6;
00216 tmp12 = tmp5 - tmp6;
00217 tmp13 = tmp4 - tmp7;
00218
00219 data[8*1 + i] = lrintf(postscale[8*0 + i] * (tmp10 + tmp11));
00220 data[8*5 + i] = lrintf(postscale[8*4 + i] * (tmp10 - tmp11));
00221
00222 tmp12 += tmp13;
00223 tmp12 *= A1;
00224 data[8*3 + i] = lrintf(postscale[8*2 + i] * (tmp13 + tmp12));
00225 data[8*7 + i] = lrintf(postscale[8*6 + i] * (tmp13 - tmp12));
00226 }
00227 }