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00022 #include <stdlib.h>
00023 #include <stdio.h>
00024 #include "../dsputil.h"
00025 #include "../mpegvideo.h"
00026
00027 #include "gcc_fixes.h"
00028
00029 #include "dsputil_altivec.h"
00030
00031
00032 #define SWAP(a,b) \
00033 do { \
00034 __typeof__(a) swap_temp=a; \
00035 a=b; \
00036 b=swap_temp; \
00037 } while (0)
00038
00039
00040 #define TRANSPOSE4(a,b,c,d) \
00041 do { \
00042 __typeof__(a) _trans_ach = vec_mergeh(a, c); \
00043 __typeof__(a) _trans_acl = vec_mergel(a, c); \
00044 __typeof__(a) _trans_bdh = vec_mergeh(b, d); \
00045 __typeof__(a) _trans_bdl = vec_mergel(b, d); \
00046 \
00047 a = vec_mergeh(_trans_ach, _trans_bdh); \
00048 b = vec_mergel(_trans_ach, _trans_bdh); \
00049 c = vec_mergeh(_trans_acl, _trans_bdl); \
00050 d = vec_mergel(_trans_acl, _trans_bdl); \
00051 } while (0)
00052
00053 #define TRANSPOSE8(a,b,c,d,e,f,g,h) \
00054 do { \
00055 __typeof__(a) _A1, _B1, _C1, _D1, _E1, _F1, _G1, _H1; \
00056 __typeof__(a) _A2, _B2, _C2, _D2, _E2, _F2, _G2, _H2; \
00057 \
00058 _A1 = vec_mergeh (a, e); \
00059 _B1 = vec_mergel (a, e); \
00060 _C1 = vec_mergeh (b, f); \
00061 _D1 = vec_mergel (b, f); \
00062 _E1 = vec_mergeh (c, g); \
00063 _F1 = vec_mergel (c, g); \
00064 _G1 = vec_mergeh (d, h); \
00065 _H1 = vec_mergel (d, h); \
00066 \
00067 _A2 = vec_mergeh (_A1, _E1); \
00068 _B2 = vec_mergel (_A1, _E1); \
00069 _C2 = vec_mergeh (_B1, _F1); \
00070 _D2 = vec_mergel (_B1, _F1); \
00071 _E2 = vec_mergeh (_C1, _G1); \
00072 _F2 = vec_mergel (_C1, _G1); \
00073 _G2 = vec_mergeh (_D1, _H1); \
00074 _H2 = vec_mergel (_D1, _H1); \
00075 \
00076 a = vec_mergeh (_A2, _E2); \
00077 b = vec_mergel (_A2, _E2); \
00078 c = vec_mergeh (_B2, _F2); \
00079 d = vec_mergel (_B2, _F2); \
00080 e = vec_mergeh (_C2, _G2); \
00081 f = vec_mergel (_C2, _G2); \
00082 g = vec_mergeh (_D2, _H2); \
00083 h = vec_mergel (_D2, _H2); \
00084 } while (0)
00085
00086
00087
00088
00089
00090 #define LOAD4(vec, address) \
00091 { \
00092 __typeof__(vec)* _load_addr = (__typeof__(vec)*)(address); \
00093 vector unsigned char _perm_vec = vec_lvsl(0,(address)); \
00094 vec = vec_ld(0, _load_addr); \
00095 vec = vec_perm(vec, vec, _perm_vec); \
00096 vec = vec_splat(vec, 0); \
00097 }
00098
00099
00100 #ifdef CONFIG_DARWIN
00101 #define FOUROF(a) (a)
00102 #else
00103
00104 #define FOUROF(a) {a,a,a,a}
00105 #endif
00106 int dct_quantize_altivec(MpegEncContext* s,
00107 DCTELEM* data, int n,
00108 int qscale, int* overflow)
00109 {
00110 int lastNonZero;
00111 vector float row0, row1, row2, row3, row4, row5, row6, row7;
00112 vector float alt0, alt1, alt2, alt3, alt4, alt5, alt6, alt7;
00113 const_vector float zero = (const_vector float)FOUROF(0.);
00114
00115 int oldBaseValue = 0;
00116
00117
00118 {
00119 vector signed short data0, data1, data2, data3, data4, data5, data6, data7;
00120
00121 data0 = vec_ld(0, data);
00122 data1 = vec_ld(16, data);
00123 data2 = vec_ld(32, data);
00124 data3 = vec_ld(48, data);
00125 data4 = vec_ld(64, data);
00126 data5 = vec_ld(80, data);
00127 data6 = vec_ld(96, data);
00128 data7 = vec_ld(112, data);
00129
00130
00131 TRANSPOSE8(data0, data1, data2, data3, data4, data5, data6, data7);
00132
00133
00134
00135
00136 row0 = vec_ctf(vec_unpackh(data0), 0);
00137 alt0 = vec_ctf(vec_unpackl(data0), 0);
00138 row1 = vec_ctf(vec_unpackh(data1), 0);
00139 alt1 = vec_ctf(vec_unpackl(data1), 0);
00140 row2 = vec_ctf(vec_unpackh(data2), 0);
00141 alt2 = vec_ctf(vec_unpackl(data2), 0);
00142 row3 = vec_ctf(vec_unpackh(data3), 0);
00143 alt3 = vec_ctf(vec_unpackl(data3), 0);
00144 row4 = vec_ctf(vec_unpackh(data4), 0);
00145 alt4 = vec_ctf(vec_unpackl(data4), 0);
00146 row5 = vec_ctf(vec_unpackh(data5), 0);
00147 alt5 = vec_ctf(vec_unpackl(data5), 0);
00148 row6 = vec_ctf(vec_unpackh(data6), 0);
00149 alt6 = vec_ctf(vec_unpackl(data6), 0);
00150 row7 = vec_ctf(vec_unpackh(data7), 0);
00151 alt7 = vec_ctf(vec_unpackl(data7), 0);
00152 }
00153
00154
00155
00156
00157
00158 {
00159 const vector float vec_0_298631336 = (vector float)FOUROF(0.298631336f);
00160 const vector float vec_0_390180644 = (vector float)FOUROF(-0.390180644f);
00161 const vector float vec_0_541196100 = (vector float)FOUROF(0.541196100f);
00162 const vector float vec_0_765366865 = (vector float)FOUROF(0.765366865f);
00163 const vector float vec_0_899976223 = (vector float)FOUROF(-0.899976223f);
00164 const vector float vec_1_175875602 = (vector float)FOUROF(1.175875602f);
00165 const vector float vec_1_501321110 = (vector float)FOUROF(1.501321110f);
00166 const vector float vec_1_847759065 = (vector float)FOUROF(-1.847759065f);
00167 const vector float vec_1_961570560 = (vector float)FOUROF(-1.961570560f);
00168 const vector float vec_2_053119869 = (vector float)FOUROF(2.053119869f);
00169 const vector float vec_2_562915447 = (vector float)FOUROF(-2.562915447f);
00170 const vector float vec_3_072711026 = (vector float)FOUROF(3.072711026f);
00171
00172
00173 int whichPass, whichHalf;
00174
00175 for(whichPass = 1; whichPass<=2; whichPass++)
00176 {
00177 for(whichHalf = 1; whichHalf<=2; whichHalf++)
00178 {
00179 vector float tmp0, tmp1, tmp2, tmp3, tmp4, tmp5, tmp6, tmp7;
00180 vector float tmp10, tmp11, tmp12, tmp13;
00181 vector float z1, z2, z3, z4, z5;
00182
00183 tmp0 = vec_add(row0, row7);
00184 tmp7 = vec_sub(row0, row7);
00185 tmp3 = vec_add(row3, row4);
00186 tmp4 = vec_sub(row3, row4);
00187 tmp1 = vec_add(row1, row6);
00188 tmp6 = vec_sub(row1, row6);
00189 tmp2 = vec_add(row2, row5);
00190 tmp5 = vec_sub(row2, row5);
00191
00192 tmp10 = vec_add(tmp0, tmp3);
00193 tmp13 = vec_sub(tmp0, tmp3);
00194 tmp11 = vec_add(tmp1, tmp2);
00195 tmp12 = vec_sub(tmp1, tmp2);
00196
00197
00198
00199 row0 = vec_add(tmp10, tmp11);
00200
00201
00202 row4 = vec_sub(tmp10, tmp11);
00203
00204
00205
00206 z1 = vec_madd(vec_add(tmp12, tmp13), vec_0_541196100, (vector float)zero);
00207
00208
00209
00210 row2 = vec_madd(tmp13, vec_0_765366865, z1);
00211
00212
00213
00214 row6 = vec_madd(tmp12, vec_1_847759065, z1);
00215
00216 z1 = vec_add(tmp4, tmp7);
00217 z2 = vec_add(tmp5, tmp6);
00218 z3 = vec_add(tmp4, tmp6);
00219 z4 = vec_add(tmp5, tmp7);
00220
00221
00222 z5 = vec_madd(vec_add(z3, z4), vec_1_175875602, (vector float)zero);
00223
00224
00225 z3 = vec_madd(z3, vec_1_961570560, z5);
00226
00227
00228 z4 = vec_madd(z4, vec_0_390180644, z5);
00229
00230
00231
00232
00233
00234
00235
00236
00237
00238
00239
00240
00241
00242
00243
00244
00245 row7 = vec_madd(tmp4, vec_0_298631336, vec_madd(z1, vec_0_899976223, z3));
00246
00247
00248
00249 row5 = vec_madd(tmp5, vec_2_053119869, vec_madd(z2, vec_2_562915447, z4));
00250
00251
00252
00253 row3 = vec_madd(tmp6, vec_3_072711026, vec_madd(z2, vec_2_562915447, z3));
00254
00255
00256
00257 row1 = vec_madd(z1, vec_0_899976223, vec_madd(tmp7, vec_1_501321110, z4));
00258
00259
00260
00261
00262
00263 SWAP(row0, alt0);
00264 SWAP(row1, alt1);
00265 SWAP(row2, alt2);
00266 SWAP(row3, alt3);
00267 SWAP(row4, alt4);
00268 SWAP(row5, alt5);
00269 SWAP(row6, alt6);
00270 SWAP(row7, alt7);
00271 }
00272
00273 if (whichPass == 1)
00274 {
00275
00276
00277
00278 SWAP(row4, alt0);
00279 SWAP(row5, alt1);
00280 SWAP(row6, alt2);
00281 SWAP(row7, alt3);
00282
00283
00284 TRANSPOSE4(row0, row1, row2, row3);
00285 TRANSPOSE4(row4, row5, row6, row7);
00286 TRANSPOSE4(alt0, alt1, alt2, alt3);
00287 TRANSPOSE4(alt4, alt5, alt6, alt7);
00288 }
00289 }
00290 }
00291
00292
00293
00294 {
00295 const int* biasAddr;
00296 const vector signed int* qmat;
00297 vector float bias, negBias;
00298
00299 if (s->mb_intra)
00300 {
00301 vector signed int baseVector;
00302
00303
00304
00305 baseVector = vec_cts(vec_splat(row0, 0), 0);
00306 vec_ste(baseVector, 0, &oldBaseValue);
00307
00308 qmat = (vector signed int*)s->q_intra_matrix[qscale];
00309 biasAddr = &(s->intra_quant_bias);
00310 }
00311 else
00312 {
00313 qmat = (vector signed int*)s->q_inter_matrix[qscale];
00314 biasAddr = &(s->inter_quant_bias);
00315 }
00316
00317
00318
00319 {
00320 vector signed int biasInt;
00321 const vector float negOneFloat = (vector float)FOUROF(-1.0f);
00322 LOAD4(biasInt, biasAddr);
00323 bias = vec_ctf(biasInt, QUANT_BIAS_SHIFT);
00324 negBias = vec_madd(bias, negOneFloat, zero);
00325 }
00326
00327 {
00328 vector float q0, q1, q2, q3, q4, q5, q6, q7;
00329
00330 q0 = vec_ctf(qmat[0], QMAT_SHIFT);
00331 q1 = vec_ctf(qmat[2], QMAT_SHIFT);
00332 q2 = vec_ctf(qmat[4], QMAT_SHIFT);
00333 q3 = vec_ctf(qmat[6], QMAT_SHIFT);
00334 q4 = vec_ctf(qmat[8], QMAT_SHIFT);
00335 q5 = vec_ctf(qmat[10], QMAT_SHIFT);
00336 q6 = vec_ctf(qmat[12], QMAT_SHIFT);
00337 q7 = vec_ctf(qmat[14], QMAT_SHIFT);
00338
00339 row0 = vec_sel(vec_madd(row0, q0, negBias), vec_madd(row0, q0, bias),
00340 vec_cmpgt(row0, zero));
00341 row1 = vec_sel(vec_madd(row1, q1, negBias), vec_madd(row1, q1, bias),
00342 vec_cmpgt(row1, zero));
00343 row2 = vec_sel(vec_madd(row2, q2, negBias), vec_madd(row2, q2, bias),
00344 vec_cmpgt(row2, zero));
00345 row3 = vec_sel(vec_madd(row3, q3, negBias), vec_madd(row3, q3, bias),
00346 vec_cmpgt(row3, zero));
00347 row4 = vec_sel(vec_madd(row4, q4, negBias), vec_madd(row4, q4, bias),
00348 vec_cmpgt(row4, zero));
00349 row5 = vec_sel(vec_madd(row5, q5, negBias), vec_madd(row5, q5, bias),
00350 vec_cmpgt(row5, zero));
00351 row6 = vec_sel(vec_madd(row6, q6, negBias), vec_madd(row6, q6, bias),
00352 vec_cmpgt(row6, zero));
00353 row7 = vec_sel(vec_madd(row7, q7, negBias), vec_madd(row7, q7, bias),
00354 vec_cmpgt(row7, zero));
00355
00356 q0 = vec_ctf(qmat[1], QMAT_SHIFT);
00357 q1 = vec_ctf(qmat[3], QMAT_SHIFT);
00358 q2 = vec_ctf(qmat[5], QMAT_SHIFT);
00359 q3 = vec_ctf(qmat[7], QMAT_SHIFT);
00360 q4 = vec_ctf(qmat[9], QMAT_SHIFT);
00361 q5 = vec_ctf(qmat[11], QMAT_SHIFT);
00362 q6 = vec_ctf(qmat[13], QMAT_SHIFT);
00363 q7 = vec_ctf(qmat[15], QMAT_SHIFT);
00364
00365 alt0 = vec_sel(vec_madd(alt0, q0, negBias), vec_madd(alt0, q0, bias),
00366 vec_cmpgt(alt0, zero));
00367 alt1 = vec_sel(vec_madd(alt1, q1, negBias), vec_madd(alt1, q1, bias),
00368 vec_cmpgt(alt1, zero));
00369 alt2 = vec_sel(vec_madd(alt2, q2, negBias), vec_madd(alt2, q2, bias),
00370 vec_cmpgt(alt2, zero));
00371 alt3 = vec_sel(vec_madd(alt3, q3, negBias), vec_madd(alt3, q3, bias),
00372 vec_cmpgt(alt3, zero));
00373 alt4 = vec_sel(vec_madd(alt4, q4, negBias), vec_madd(alt4, q4, bias),
00374 vec_cmpgt(alt4, zero));
00375 alt5 = vec_sel(vec_madd(alt5, q5, negBias), vec_madd(alt5, q5, bias),
00376 vec_cmpgt(alt5, zero));
00377 alt6 = vec_sel(vec_madd(alt6, q6, negBias), vec_madd(alt6, q6, bias),
00378 vec_cmpgt(alt6, zero));
00379 alt7 = vec_sel(vec_madd(alt7, q7, negBias), vec_madd(alt7, q7, bias),
00380 vec_cmpgt(alt7, zero));
00381 }
00382
00383
00384 }
00385
00386
00387 {
00388 vector signed short data0, data1, data2, data3, data4, data5, data6, data7;
00389
00390 data0 = vec_pack(vec_cts(row0, 0), vec_cts(alt0, 0));
00391 data1 = vec_pack(vec_cts(row1, 0), vec_cts(alt1, 0));
00392 data2 = vec_pack(vec_cts(row2, 0), vec_cts(alt2, 0));
00393 data3 = vec_pack(vec_cts(row3, 0), vec_cts(alt3, 0));
00394 data4 = vec_pack(vec_cts(row4, 0), vec_cts(alt4, 0));
00395 data5 = vec_pack(vec_cts(row5, 0), vec_cts(alt5, 0));
00396 data6 = vec_pack(vec_cts(row6, 0), vec_cts(alt6, 0));
00397 data7 = vec_pack(vec_cts(row7, 0), vec_cts(alt7, 0));
00398
00399 {
00400
00401 vector signed int max_q_int, min_q_int;
00402 vector signed short max_q, min_q;
00403
00404 LOAD4(max_q_int, &(s->max_qcoeff));
00405 LOAD4(min_q_int, &(s->min_qcoeff));
00406
00407 max_q = vec_pack(max_q_int, max_q_int);
00408 min_q = vec_pack(min_q_int, min_q_int);
00409
00410 data0 = vec_max(vec_min(data0, max_q), min_q);
00411 data1 = vec_max(vec_min(data1, max_q), min_q);
00412 data2 = vec_max(vec_min(data2, max_q), min_q);
00413 data4 = vec_max(vec_min(data4, max_q), min_q);
00414 data5 = vec_max(vec_min(data5, max_q), min_q);
00415 data6 = vec_max(vec_min(data6, max_q), min_q);
00416 data7 = vec_max(vec_min(data7, max_q), min_q);
00417 }
00418
00419 {
00420 vector bool char zero_01, zero_23, zero_45, zero_67;
00421 vector signed char scanIndices_01, scanIndices_23, scanIndices_45, scanIndices_67;
00422 vector signed char negOne = vec_splat_s8(-1);
00423 vector signed char* scanPtr =
00424 (vector signed char*)(s->intra_scantable.inverse);
00425 signed char lastNonZeroChar;
00426
00427
00428 zero_01 = vec_pack(vec_cmpeq(data0, (vector signed short)zero),
00429 vec_cmpeq(data1, (vector signed short)zero));
00430 zero_23 = vec_pack(vec_cmpeq(data2, (vector signed short)zero),
00431 vec_cmpeq(data3, (vector signed short)zero));
00432 zero_45 = vec_pack(vec_cmpeq(data4, (vector signed short)zero),
00433 vec_cmpeq(data5, (vector signed short)zero));
00434 zero_67 = vec_pack(vec_cmpeq(data6, (vector signed short)zero),
00435 vec_cmpeq(data7, (vector signed short)zero));
00436
00437
00438 scanIndices_01 = vec_sel(scanPtr[0], negOne, zero_01);
00439 scanIndices_23 = vec_sel(scanPtr[1], negOne, zero_23);
00440 scanIndices_45 = vec_sel(scanPtr[2], negOne, zero_45);
00441 scanIndices_67 = vec_sel(scanPtr[3], negOne, zero_67);
00442
00443
00444 scanIndices_01 = vec_max(scanIndices_01, scanIndices_23);
00445 scanIndices_45 = vec_max(scanIndices_45, scanIndices_67);
00446
00447
00448 scanIndices_01 = vec_max(scanIndices_01, scanIndices_45);
00449
00450
00451 scanIndices_01 = vec_max(vec_mergeh(scanIndices_01, negOne),
00452 vec_mergel(scanIndices_01, negOne));
00453
00454
00455 scanIndices_01 = vec_max(vec_mergeh(scanIndices_01, negOne),
00456 vec_mergel(scanIndices_01, negOne));
00457
00458
00459 scanIndices_01 = vec_max(vec_mergeh(scanIndices_01, negOne),
00460 vec_mergel(scanIndices_01, negOne));
00461
00462
00463 scanIndices_01 = vec_max(vec_mergeh(scanIndices_01, negOne),
00464 vec_mergel(scanIndices_01, negOne));
00465
00466 scanIndices_01 = vec_splat(scanIndices_01, 0);
00467
00468
00469 vec_ste(scanIndices_01, 0, &lastNonZeroChar);
00470
00471 lastNonZero = lastNonZeroChar;
00472
00473
00474
00475
00476
00477 if ((lastNonZero > 0) && (s->dsp.idct_permutation_type == FF_TRANSPOSE_IDCT_PERM))
00478 {
00479 TRANSPOSE8(data0, data1, data2, data3, data4, data5, data6, data7);
00480 }
00481
00482 vec_st(data0, 0, data);
00483 vec_st(data1, 16, data);
00484 vec_st(data2, 32, data);
00485 vec_st(data3, 48, data);
00486 vec_st(data4, 64, data);
00487 vec_st(data5, 80, data);
00488 vec_st(data6, 96, data);
00489 vec_st(data7, 112, data);
00490 }
00491 }
00492
00493
00494 if (s->mb_intra)
00495 {
00496 if (!s->h263_aic)
00497 {
00498 if (n < 4)
00499 oldBaseValue /= s->y_dc_scale;
00500 else
00501 oldBaseValue /= s->c_dc_scale;
00502 }
00503
00504
00505 data[0] = (oldBaseValue + 4) >> 3;
00506 }
00507
00508
00509
00510 if ((lastNonZero > 0) &&
00511 (s->dsp.idct_permutation_type != FF_TRANSPOSE_IDCT_PERM) &&
00512 (s->dsp.idct_permutation_type != FF_NO_IDCT_PERM))
00513 {
00514 ff_block_permute(data, s->dsp.idct_permutation,
00515 s->intra_scantable.scantable, lastNonZero);
00516 }
00517
00518 return lastNonZero;
00519 }
00520 #undef FOUROF
00521
00522
00523
00524
00525
00526 void dct_unquantize_h263_altivec(MpegEncContext *s,
00527 DCTELEM *block, int n, int qscale)
00528 {
00529 POWERPC_PERF_DECLARE(altivec_dct_unquantize_h263_num, 1);
00530 int i, level, qmul, qadd;
00531 int nCoeffs;
00532
00533 assert(s->block_last_index[n]>=0);
00534
00535 POWERPC_PERF_START_COUNT(altivec_dct_unquantize_h263_num, 1);
00536
00537 qadd = (qscale - 1) | 1;
00538 qmul = qscale << 1;
00539
00540 if (s->mb_intra) {
00541 if (!s->h263_aic) {
00542 if (n < 4)
00543 block[0] = block[0] * s->y_dc_scale;
00544 else
00545 block[0] = block[0] * s->c_dc_scale;
00546 }else
00547 qadd = 0;
00548 i = 1;
00549 nCoeffs= 63;
00550 } else {
00551 i = 0;
00552 nCoeffs= s->intra_scantable.raster_end[ s->block_last_index[n] ];
00553 }
00554
00555 #ifdef ALTIVEC_USE_REFERENCE_C_CODE
00556 for(;i<=nCoeffs;i++) {
00557 level = block[i];
00558 if (level) {
00559 if (level < 0) {
00560 level = level * qmul - qadd;
00561 } else {
00562 level = level * qmul + qadd;
00563 }
00564 block[i] = level;
00565 }
00566 }
00567 #else
00568 {
00569 register const_vector signed short vczero = (const_vector signed short)vec_splat_s16(0);
00570 short __attribute__ ((aligned(16))) qmul8[] =
00571 {
00572 qmul, qmul, qmul, qmul,
00573 qmul, qmul, qmul, qmul
00574 };
00575 short __attribute__ ((aligned(16))) qadd8[] =
00576 {
00577 qadd, qadd, qadd, qadd,
00578 qadd, qadd, qadd, qadd
00579 };
00580 short __attribute__ ((aligned(16))) nqadd8[] =
00581 {
00582 -qadd, -qadd, -qadd, -qadd,
00583 -qadd, -qadd, -qadd, -qadd
00584 };
00585 register vector signed short blockv, qmulv, qaddv, nqaddv, temp1;
00586 register vector bool short blockv_null, blockv_neg;
00587 register short backup_0 = block[0];
00588 register int j = 0;
00589
00590 qmulv = vec_ld(0, qmul8);
00591 qaddv = vec_ld(0, qadd8);
00592 nqaddv = vec_ld(0, nqadd8);
00593
00594 #if 0 // block *is* 16 bytes-aligned, it seems.
00595
00596 for(j = 0; (j <= nCoeffs) && ((((unsigned long)block) + (j << 1)) & 0x0000000F) ; j++) {
00597 level = block[j];
00598 if (level) {
00599 if (level < 0) {
00600 level = level * qmul - qadd;
00601 } else {
00602 level = level * qmul + qadd;
00603 }
00604 block[j] = level;
00605 }
00606 }
00607 #endif
00608
00609
00610
00611 for(; (j + 7) <= nCoeffs ; j+=8)
00612 {
00613 blockv = vec_ld(j << 1, block);
00614 blockv_neg = vec_cmplt(blockv, vczero);
00615 blockv_null = vec_cmpeq(blockv, vczero);
00616
00617 temp1 = vec_sel(qaddv, nqaddv, blockv_neg);
00618
00619 temp1 = vec_mladd(blockv, qmulv, temp1);
00620
00621 blockv = vec_sel(temp1, blockv, blockv_null);
00622 vec_st(blockv, j << 1, block);
00623 }
00624
00625
00626
00627
00628
00629 for(; j <= nCoeffs ; j++) {
00630 level = block[j];
00631 if (level) {
00632 if (level < 0) {
00633 level = level * qmul - qadd;
00634 } else {
00635 level = level * qmul + qadd;
00636 }
00637 block[j] = level;
00638 }
00639 }
00640
00641 if (i == 1)
00642 {
00643 block[0] = backup_0;
00644 }
00645 }
00646 #endif
00647
00648 POWERPC_PERF_STOP_COUNT(altivec_dct_unquantize_h263_num, nCoeffs == 63);
00649 }