1be1d678aSKris Buschelman #define PETSCMAT_DLL 2be1d678aSKris Buschelman 34224c193SBarry Smith /* 48a36c062SBarry Smith Inverts 4 by 4 matrix using partial pivoting. 571c5468dSBarry Smith 671c5468dSBarry Smith Used by the sparse factorization routines in 7dd882469SBarry Smith src/mat/impls/baij/seq 871c5468dSBarry Smith 971c5468dSBarry Smith This is a combination of the Linpack routines 1071c5468dSBarry Smith dgefa() and dgedi() specialized for a size of 4. 1171c5468dSBarry Smith 124224c193SBarry Smith */ 13d382aafbSBarry Smith #include "petscsys.h" 144224c193SBarry Smith 154a2ae208SSatish Balay #undef __FUNCT__ 164a2ae208SSatish Balay #define __FUNCT__ "Kernel_A_gets_inverse_A_4" 1762bba022SBarry Smith PetscErrorCode Kernel_A_gets_inverse_A_4(MatScalar *a,PetscReal shift) 184224c193SBarry Smith { 19690b6cddSBarry Smith PetscInt i__2,i__3,kp1,j,k,l,ll,i,ipvt[4],kb,k3; 20690b6cddSBarry Smith PetscInt k4,j3; 21b48ee343SBarry Smith MatScalar *aa,*ax,*ay,work[16],stmp; 22329f5518SBarry Smith MatReal tmp,max; 234224c193SBarry Smith 244224c193SBarry Smith /* gaussian elimination with partial pivoting */ 254224c193SBarry Smith 263a40ed3dSBarry Smith PetscFunctionBegin; 271bfe5b3dSBarry Smith shift = .25*shift*(PetscAbsScalar(a[0]) + PetscAbsScalar(a[5]) + PetscAbsScalar(a[10]) + PetscAbsScalar(a[15])); 284224c193SBarry Smith /* Parameter adjustments */ 298a36c062SBarry Smith a -= 5; 304224c193SBarry Smith 318a36c062SBarry Smith for (k = 1; k <= 3; ++k) { 324224c193SBarry Smith kp1 = k + 1; 338a36c062SBarry Smith k3 = 4*k; 344224c193SBarry Smith k4 = k3 + k; 354224c193SBarry Smith /* find l = pivot index */ 364224c193SBarry Smith 37ed33f8a5SSatish Balay i__2 = 5 - k; 384224c193SBarry Smith aa = &a[k4]; 394224c193SBarry Smith max = PetscAbsScalar(aa[0]); 404224c193SBarry Smith l = 1; 414224c193SBarry Smith for (ll=1; ll<i__2; ll++) { 424224c193SBarry Smith tmp = PetscAbsScalar(aa[ll]); 434224c193SBarry Smith if (tmp > max) { max = tmp; l = ll+1;} 444224c193SBarry Smith } 454224c193SBarry Smith l += k - 1; 46da10e913SBarry Smith ipvt[k-1] = l; 474224c193SBarry Smith 485b8514ebSBarry Smith if (a[l + k3] == 0.0) { 491bfe5b3dSBarry Smith if (shift == 0.0) { 50e32f2f54SBarry Smith SETERRQ1(PETSC_COMM_SELF,PETSC_ERR_MAT_LU_ZRPVT,"Zero pivot, row %D",k-1); 511bfe5b3dSBarry Smith } else { 521bfe5b3dSBarry Smith /* SHIFT is applied to SINGLE diagonal entry; does this make any sense? */ 531bfe5b3dSBarry Smith a[l + k3] = shift; 541bfe5b3dSBarry Smith } 554224c193SBarry Smith } 564224c193SBarry Smith 574224c193SBarry Smith /* interchange if necessary */ 584224c193SBarry Smith 594224c193SBarry Smith if (l != k) { 604224c193SBarry Smith stmp = a[l + k3]; 614224c193SBarry Smith a[l + k3] = a[k4]; 624224c193SBarry Smith a[k4] = stmp; 634224c193SBarry Smith } 644224c193SBarry Smith 654224c193SBarry Smith /* compute multipliers */ 664224c193SBarry Smith 674224c193SBarry Smith stmp = -1. / a[k4]; 688a36c062SBarry Smith i__2 = 4 - k; 694224c193SBarry Smith aa = &a[1 + k4]; 704224c193SBarry Smith for (ll=0; ll<i__2; ll++) { 714224c193SBarry Smith aa[ll] *= stmp; 724224c193SBarry Smith } 734224c193SBarry Smith 744224c193SBarry Smith /* row elimination with column indexing */ 754224c193SBarry Smith 764224c193SBarry Smith ax = &a[k4+1]; 778a36c062SBarry Smith for (j = kp1; j <= 4; ++j) { 788a36c062SBarry Smith j3 = 4*j; 794224c193SBarry Smith stmp = a[l + j3]; 804224c193SBarry Smith if (l != k) { 814224c193SBarry Smith a[l + j3] = a[k + j3]; 824224c193SBarry Smith a[k + j3] = stmp; 834224c193SBarry Smith } 844224c193SBarry Smith 858a36c062SBarry Smith i__3 = 4 - k; 864224c193SBarry Smith ay = &a[1+k+j3]; 874224c193SBarry Smith for (ll=0; ll<i__3; ll++) { 884224c193SBarry Smith ay[ll] += stmp*ax[ll]; 894224c193SBarry Smith } 904224c193SBarry Smith } 914224c193SBarry Smith } 92da10e913SBarry Smith ipvt[3] = 4; 93*65e19b50SBarry Smith if (a[20] == 0.0) SETERRQ1(PETSC_COMM_SELF,PETSC_ERR_MAT_LU_ZRPVT,"Zero pivot, row %D",3); 944224c193SBarry Smith 954224c193SBarry Smith /* 964224c193SBarry Smith Now form the inverse 974224c193SBarry Smith */ 984224c193SBarry Smith 994224c193SBarry Smith /* compute inverse(u) */ 1004224c193SBarry Smith 1018a36c062SBarry Smith for (k = 1; k <= 4; ++k) { 1028a36c062SBarry Smith k3 = 4*k; 1034224c193SBarry Smith k4 = k3 + k; 1044224c193SBarry Smith a[k4] = 1.0 / a[k4]; 1054224c193SBarry Smith stmp = -a[k4]; 1064224c193SBarry Smith i__2 = k - 1; 1074224c193SBarry Smith aa = &a[k3 + 1]; 1084224c193SBarry Smith for (ll=0; ll<i__2; ll++) aa[ll] *= stmp; 1094224c193SBarry Smith kp1 = k + 1; 1108a36c062SBarry Smith if (4 < kp1) continue; 1114224c193SBarry Smith ax = aa; 1128a36c062SBarry Smith for (j = kp1; j <= 4; ++j) { 1138a36c062SBarry Smith j3 = 4*j; 1144224c193SBarry Smith stmp = a[k + j3]; 1154224c193SBarry Smith a[k + j3] = 0.0; 1164224c193SBarry Smith ay = &a[j3 + 1]; 1174224c193SBarry Smith for (ll=0; ll<k; ll++) { 1184224c193SBarry Smith ay[ll] += stmp*ax[ll]; 1194224c193SBarry Smith } 1204224c193SBarry Smith } 1214224c193SBarry Smith } 1224224c193SBarry Smith 1234224c193SBarry Smith /* form inverse(u)*inverse(l) */ 1244224c193SBarry Smith 1258a36c062SBarry Smith for (kb = 1; kb <= 3; ++kb) { 1268a36c062SBarry Smith k = 4 - kb; 1278a36c062SBarry Smith k3 = 4*k; 1284224c193SBarry Smith kp1 = k + 1; 1294224c193SBarry Smith aa = a + k3; 1308a36c062SBarry Smith for (i = kp1; i <= 4; ++i) { 131b48ee343SBarry Smith work[i-1] = aa[i]; 1324224c193SBarry Smith aa[i] = 0.0; 1334224c193SBarry Smith } 1348a36c062SBarry Smith for (j = kp1; j <= 4; ++j) { 135b48ee343SBarry Smith stmp = work[j-1]; 1368a36c062SBarry Smith ax = &a[4*j + 1]; 1374224c193SBarry Smith ay = &a[k3 + 1]; 1384224c193SBarry Smith ay[0] += stmp*ax[0]; 1394224c193SBarry Smith ay[1] += stmp*ax[1]; 1404224c193SBarry Smith ay[2] += stmp*ax[2]; 1418a36c062SBarry Smith ay[3] += stmp*ax[3]; 1424224c193SBarry Smith } 143da10e913SBarry Smith l = ipvt[k-1]; 1444224c193SBarry Smith if (l != k) { 1454224c193SBarry Smith ax = &a[k3 + 1]; 1468a36c062SBarry Smith ay = &a[4*l + 1]; 1474224c193SBarry Smith stmp = ax[0]; ax[0] = ay[0]; ay[0] = stmp; 1484224c193SBarry Smith stmp = ax[1]; ax[1] = ay[1]; ay[1] = stmp; 1494224c193SBarry Smith stmp = ax[2]; ax[2] = ay[2]; ay[2] = stmp; 1508a36c062SBarry Smith stmp = ax[3]; ax[3] = ay[3]; ay[3] = stmp; 1514224c193SBarry Smith } 1524224c193SBarry Smith } 1533a40ed3dSBarry Smith PetscFunctionReturn(0); 1544224c193SBarry Smith } 1554224c193SBarry Smith 1569b445006SKris Buschelman #if defined(PETSC_HAVE_SSE) 1579b445006SKris Buschelman #include PETSC_HAVE_SSE 15899148eceSKris Buschelman 15999148eceSKris Buschelman #undef __FUNCT__ 1607059b3dcSKris Buschelman #define __FUNCT__ "Kernel_A_gets_inverse_A_4_SSE" 161dfbe8321SBarry Smith PetscErrorCode Kernel_A_gets_inverse_A_4_SSE(float *a) 16299148eceSKris Buschelman { 16399148eceSKris Buschelman /* 1649b445006SKris Buschelman This routine is converted from Intel's Small Matrix Library. 16599148eceSKris Buschelman See: Streaming SIMD Extensions -- Inverse of 4x4 Matrix 16699148eceSKris Buschelman Order Number: 245043-001 16799148eceSKris Buschelman March 1999 16899148eceSKris Buschelman http://www.intel.com 16999148eceSKris Buschelman 17099148eceSKris Buschelman Inverse of a 4x4 matrix via Kramer's Rule: 17199148eceSKris Buschelman bool Invert4x4(SMLXMatrix &); 17299148eceSKris Buschelman */ 17399148eceSKris Buschelman PetscFunctionBegin; 1749b445006SKris Buschelman 1759b445006SKris Buschelman SSE_SCOPE_BEGIN; 1769b445006SKris Buschelman SSE_INLINE_BEGIN_1(a) 1779b445006SKris Buschelman 17899148eceSKris Buschelman /* ----------------------------------------------- */ 1799b445006SKris Buschelman 1809b445006SKris Buschelman SSE_LOADL_PS(SSE_ARG_1,FLOAT_0,XMM0) 1819b445006SKris Buschelman SSE_LOADH_PS(SSE_ARG_1,FLOAT_4,XMM0) 1829b445006SKris Buschelman 1839b445006SKris Buschelman SSE_LOADL_PS(SSE_ARG_1,FLOAT_8,XMM5) 1849b445006SKris Buschelman SSE_LOADH_PS(SSE_ARG_1,FLOAT_12,XMM5) 1859b445006SKris Buschelman 1869b445006SKris Buschelman SSE_COPY_PS(XMM3,XMM0) 1879b445006SKris Buschelman SSE_SHUFFLE(XMM3,XMM5,0x88) 1889b445006SKris Buschelman 1899b445006SKris Buschelman SSE_SHUFFLE(XMM5,XMM0,0xDD) 1909b445006SKris Buschelman 1919b445006SKris Buschelman SSE_LOADL_PS(SSE_ARG_1,FLOAT_2,XMM0) 1929b445006SKris Buschelman SSE_LOADH_PS(SSE_ARG_1,FLOAT_6,XMM0) 1939b445006SKris Buschelman 1949b445006SKris Buschelman SSE_LOADL_PS(SSE_ARG_1,FLOAT_10,XMM6) 1959b445006SKris Buschelman SSE_LOADH_PS(SSE_ARG_1,FLOAT_14,XMM6) 1969b445006SKris Buschelman 1979b445006SKris Buschelman SSE_COPY_PS(XMM4,XMM0) 1989b445006SKris Buschelman SSE_SHUFFLE(XMM4,XMM6,0x88) 1999b445006SKris Buschelman 2009b445006SKris Buschelman SSE_SHUFFLE(XMM6,XMM0,0xDD) 2019b445006SKris Buschelman 20299148eceSKris Buschelman /* ----------------------------------------------- */ 2039b445006SKris Buschelman 2049b445006SKris Buschelman SSE_COPY_PS(XMM7,XMM4) 2059b445006SKris Buschelman SSE_MULT_PS(XMM7,XMM6) 2069b445006SKris Buschelman 2079b445006SKris Buschelman SSE_SHUFFLE(XMM7,XMM7,0xB1) 2089b445006SKris Buschelman 2099b445006SKris Buschelman SSE_COPY_PS(XMM0,XMM5) 2109b445006SKris Buschelman SSE_MULT_PS(XMM0,XMM7) 2119b445006SKris Buschelman 2129b445006SKris Buschelman SSE_COPY_PS(XMM2,XMM3) 2139b445006SKris Buschelman SSE_MULT_PS(XMM2,XMM7) 2149b445006SKris Buschelman 2159b445006SKris Buschelman SSE_SHUFFLE(XMM7,XMM7,0x4E) 2169b445006SKris Buschelman 2179b445006SKris Buschelman SSE_COPY_PS(XMM1,XMM5) 2189b445006SKris Buschelman SSE_MULT_PS(XMM1,XMM7) 2199b445006SKris Buschelman SSE_SUB_PS(XMM1,XMM0) 2209b445006SKris Buschelman 2219b445006SKris Buschelman SSE_MULT_PS(XMM7,XMM3) 2229b445006SKris Buschelman SSE_SUB_PS(XMM7,XMM2) 2239b445006SKris Buschelman 2249b445006SKris Buschelman SSE_SHUFFLE(XMM7,XMM7,0x4E) 2259b445006SKris Buschelman SSE_STORE_PS(SSE_ARG_1,FLOAT_4,XMM7) 2269b445006SKris Buschelman 22799148eceSKris Buschelman /* ----------------------------------------------- */ 2289b445006SKris Buschelman 2299b445006SKris Buschelman SSE_COPY_PS(XMM0,XMM5) 2309b445006SKris Buschelman SSE_MULT_PS(XMM0,XMM4) 2319b445006SKris Buschelman 2329b445006SKris Buschelman SSE_SHUFFLE(XMM0,XMM0,0xB1) 2339b445006SKris Buschelman 2349b445006SKris Buschelman SSE_COPY_PS(XMM2,XMM6) 2359b445006SKris Buschelman SSE_MULT_PS(XMM2,XMM0) 2369b445006SKris Buschelman SSE_ADD_PS(XMM2,XMM1) 2379b445006SKris Buschelman 2389b445006SKris Buschelman SSE_COPY_PS(XMM7,XMM3) 2399b445006SKris Buschelman SSE_MULT_PS(XMM7,XMM0) 2409b445006SKris Buschelman 2419b445006SKris Buschelman SSE_SHUFFLE(XMM0,XMM0,0x4E) 2429b445006SKris Buschelman 2439b445006SKris Buschelman SSE_COPY_PS(XMM1,XMM6) 2449b445006SKris Buschelman SSE_MULT_PS(XMM1,XMM0) 2459b445006SKris Buschelman SSE_SUB_PS(XMM2,XMM1) 2469b445006SKris Buschelman 2479b445006SKris Buschelman SSE_MULT_PS(XMM0,XMM3) 2489b445006SKris Buschelman SSE_SUB_PS(XMM0,XMM7) 2499b445006SKris Buschelman 2509b445006SKris Buschelman SSE_SHUFFLE(XMM0,XMM0,0x4E) 2519b445006SKris Buschelman SSE_STORE_PS(SSE_ARG_1,FLOAT_12,XMM0) 2529b445006SKris Buschelman 25399148eceSKris Buschelman /* ----------------------------------------------- */ 2549b445006SKris Buschelman 2559b445006SKris Buschelman SSE_COPY_PS(XMM7,XMM5) 2569b445006SKris Buschelman SSE_SHUFFLE(XMM7,XMM5,0x4E) 2579b445006SKris Buschelman SSE_MULT_PS(XMM7,XMM6) 2589b445006SKris Buschelman 2599b445006SKris Buschelman SSE_SHUFFLE(XMM7,XMM7,0xB1) 2609b445006SKris Buschelman 2619b445006SKris Buschelman SSE_SHUFFLE(XMM4,XMM4,0x4E) 2629b445006SKris Buschelman 2639b445006SKris Buschelman SSE_COPY_PS(XMM0,XMM4) 2649b445006SKris Buschelman SSE_MULT_PS(XMM0,XMM7) 2659b445006SKris Buschelman SSE_ADD_PS(XMM0,XMM2) 2669b445006SKris Buschelman 2679b445006SKris Buschelman SSE_COPY_PS(XMM2,XMM3) 2689b445006SKris Buschelman SSE_MULT_PS(XMM2,XMM7) 2699b445006SKris Buschelman 2709b445006SKris Buschelman SSE_SHUFFLE(XMM7,XMM7,0x4E) 2719b445006SKris Buschelman 2729b445006SKris Buschelman SSE_COPY_PS(XMM1,XMM4) 2739b445006SKris Buschelman SSE_MULT_PS(XMM1,XMM7) 2749b445006SKris Buschelman SSE_SUB_PS(XMM0,XMM1) 2759b445006SKris Buschelman SSE_STORE_PS(SSE_ARG_1,FLOAT_0,XMM0) 2769b445006SKris Buschelman 2779b445006SKris Buschelman SSE_MULT_PS(XMM7,XMM3) 2789b445006SKris Buschelman SSE_SUB_PS(XMM7,XMM2) 2799b445006SKris Buschelman 2809b445006SKris Buschelman SSE_SHUFFLE(XMM7,XMM7,0x4E) 2819b445006SKris Buschelman 28299148eceSKris Buschelman /* ----------------------------------------------- */ 2839b445006SKris Buschelman 2849b445006SKris Buschelman SSE_COPY_PS(XMM1,XMM3) 2859b445006SKris Buschelman SSE_MULT_PS(XMM1,XMM5) 2869b445006SKris Buschelman 2879b445006SKris Buschelman SSE_SHUFFLE(XMM1,XMM1,0xB1) 2889b445006SKris Buschelman 2899b445006SKris Buschelman SSE_COPY_PS(XMM0,XMM6) 2909b445006SKris Buschelman SSE_MULT_PS(XMM0,XMM1) 2919b445006SKris Buschelman SSE_ADD_PS(XMM0,XMM7) 2929b445006SKris Buschelman 2939b445006SKris Buschelman SSE_COPY_PS(XMM2,XMM4) 2949b445006SKris Buschelman SSE_MULT_PS(XMM2,XMM1) 2959b445006SKris Buschelman SSE_SUB_PS_M(XMM2,SSE_ARG_1,FLOAT_12) 2969b445006SKris Buschelman 2979b445006SKris Buschelman SSE_SHUFFLE(XMM1,XMM1,0x4E) 2989b445006SKris Buschelman 2999b445006SKris Buschelman SSE_COPY_PS(XMM7,XMM6) 3009b445006SKris Buschelman SSE_MULT_PS(XMM7,XMM1) 3019b445006SKris Buschelman SSE_SUB_PS(XMM7,XMM0) 3029b445006SKris Buschelman 3039b445006SKris Buschelman SSE_MULT_PS(XMM1,XMM4) 3049b445006SKris Buschelman SSE_SUB_PS(XMM2,XMM1) 3059b445006SKris Buschelman SSE_STORE_PS(SSE_ARG_1,FLOAT_12,XMM2) 3069b445006SKris Buschelman 30799148eceSKris Buschelman /* ----------------------------------------------- */ 3089b445006SKris Buschelman 3099b445006SKris Buschelman SSE_COPY_PS(XMM1,XMM3) 3109b445006SKris Buschelman SSE_MULT_PS(XMM1,XMM6) 3119b445006SKris Buschelman 3129b445006SKris Buschelman SSE_SHUFFLE(XMM1,XMM1,0xB1) 3139b445006SKris Buschelman 3149b445006SKris Buschelman SSE_COPY_PS(XMM2,XMM4) 3159b445006SKris Buschelman SSE_MULT_PS(XMM2,XMM1) 3169b445006SKris Buschelman SSE_LOAD_PS(SSE_ARG_1,FLOAT_4,XMM0) 3179b445006SKris Buschelman SSE_SUB_PS(XMM0,XMM2) 3189b445006SKris Buschelman 3199b445006SKris Buschelman SSE_COPY_PS(XMM2,XMM5) 3209b445006SKris Buschelman SSE_MULT_PS(XMM2,XMM1) 3219b445006SKris Buschelman SSE_ADD_PS(XMM2,XMM7) 3229b445006SKris Buschelman 3239b445006SKris Buschelman SSE_SHUFFLE(XMM1,XMM1,0x4E) 3249b445006SKris Buschelman 3259b445006SKris Buschelman SSE_COPY_PS(XMM7,XMM4) 3269b445006SKris Buschelman SSE_MULT_PS(XMM7,XMM1) 3279b445006SKris Buschelman SSE_ADD_PS(XMM7,XMM0) 3289b445006SKris Buschelman 3299b445006SKris Buschelman SSE_MULT_PS(XMM1,XMM5) 3309b445006SKris Buschelman SSE_SUB_PS(XMM2,XMM1) 3319b445006SKris Buschelman 33299148eceSKris Buschelman /* ----------------------------------------------- */ 3339b445006SKris Buschelman 3349b445006SKris Buschelman SSE_MULT_PS(XMM4,XMM3) 3359b445006SKris Buschelman 3369b445006SKris Buschelman SSE_SHUFFLE(XMM4,XMM4,0xB1) 3379b445006SKris Buschelman 3389b445006SKris Buschelman SSE_COPY_PS(XMM1,XMM6) 3399b445006SKris Buschelman SSE_MULT_PS(XMM1,XMM4) 3409b445006SKris Buschelman SSE_ADD_PS(XMM1,XMM7) 3419b445006SKris Buschelman 3429b445006SKris Buschelman SSE_COPY_PS(XMM0,XMM5) 3439b445006SKris Buschelman SSE_MULT_PS(XMM0,XMM4) 3449b445006SKris Buschelman SSE_LOAD_PS(SSE_ARG_1,FLOAT_12,XMM7) 3459b445006SKris Buschelman SSE_SUB_PS(XMM7,XMM0) 3469b445006SKris Buschelman 3479b445006SKris Buschelman SSE_SHUFFLE(XMM4,XMM4,0x4E) 3489b445006SKris Buschelman 3499b445006SKris Buschelman SSE_MULT_PS(XMM6,XMM4) 3509b445006SKris Buschelman SSE_SUB_PS(XMM1,XMM6) 3519b445006SKris Buschelman 3529b445006SKris Buschelman SSE_MULT_PS(XMM5,XMM4) 3539b445006SKris Buschelman SSE_ADD_PS(XMM5,XMM7) 3549b445006SKris Buschelman 3559b445006SKris Buschelman /* ----------------------------------------------- */ 3569b445006SKris Buschelman 3579b445006SKris Buschelman SSE_LOAD_PS(SSE_ARG_1,FLOAT_0,XMM0) 3589b445006SKris Buschelman SSE_MULT_PS(XMM3,XMM0) 3599b445006SKris Buschelman 3609b445006SKris Buschelman SSE_COPY_PS(XMM4,XMM3) 3619b445006SKris Buschelman SSE_SHUFFLE(XMM4,XMM3,0x4E) 3629b445006SKris Buschelman SSE_ADD_PS(XMM4,XMM3) 3639b445006SKris Buschelman 3649b445006SKris Buschelman SSE_COPY_PS(XMM6,XMM4) 3659b445006SKris Buschelman SSE_SHUFFLE(XMM6,XMM4,0xB1) 3669b445006SKris Buschelman SSE_ADD_SS(XMM6,XMM4) 3679b445006SKris Buschelman 3689b445006SKris Buschelman SSE_COPY_PS(XMM3,XMM6) 3699b445006SKris Buschelman SSE_RECIP_SS(XMM3,XMM6) 3709b445006SKris Buschelman SSE_COPY_SS(XMM4,XMM3) 3719b445006SKris Buschelman SSE_ADD_SS(XMM4,XMM3) 3729b445006SKris Buschelman SSE_MULT_SS(XMM3,XMM3) 3739b445006SKris Buschelman SSE_MULT_SS(XMM6,XMM3) 3749b445006SKris Buschelman SSE_SUB_SS(XMM4,XMM6) 3759b445006SKris Buschelman 3769b445006SKris Buschelman SSE_SHUFFLE(XMM4,XMM4,0x00) 3779b445006SKris Buschelman 3789b445006SKris Buschelman SSE_MULT_PS(XMM0,XMM4) 3799b445006SKris Buschelman SSE_STOREL_PS(SSE_ARG_1,FLOAT_0,XMM0) 3809b445006SKris Buschelman SSE_STOREH_PS(SSE_ARG_1,FLOAT_2,XMM0) 3819b445006SKris Buschelman 3829b445006SKris Buschelman SSE_MULT_PS(XMM1,XMM4) 3839b445006SKris Buschelman SSE_STOREL_PS(SSE_ARG_1,FLOAT_4,XMM1) 3849b445006SKris Buschelman SSE_STOREH_PS(SSE_ARG_1,FLOAT_6,XMM1) 3859b445006SKris Buschelman 3869b445006SKris Buschelman SSE_MULT_PS(XMM2,XMM4) 3879b445006SKris Buschelman SSE_STOREL_PS(SSE_ARG_1,FLOAT_8,XMM2) 3889b445006SKris Buschelman SSE_STOREH_PS(SSE_ARG_1,FLOAT_10,XMM2) 3899b445006SKris Buschelman 3909b445006SKris Buschelman SSE_MULT_PS(XMM4,XMM5) 3919b445006SKris Buschelman SSE_STOREL_PS(SSE_ARG_1,FLOAT_12,XMM4) 3929b445006SKris Buschelman SSE_STOREH_PS(SSE_ARG_1,FLOAT_14,XMM4) 3939b445006SKris Buschelman 3949b445006SKris Buschelman /* ----------------------------------------------- */ 3959b445006SKris Buschelman 3969b445006SKris Buschelman SSE_INLINE_END_1; 3979b445006SKris Buschelman SSE_SCOPE_END; 3989b445006SKris Buschelman 39999148eceSKris Buschelman PetscFunctionReturn(0); 40099148eceSKris Buschelman } 40199148eceSKris Buschelman 40299148eceSKris Buschelman #endif 40399148eceSKris Buschelman 40499148eceSKris Buschelman 405