1 #ifdef PETSC_RCS_HEADER 2 static char vcid[] = "$Id: baijfact2.c,v 1.18 1998/12/17 22:10:39 bsmith Exp balay $"; 3 #endif 4 /* 5 Factorization code for BAIJ format. 6 */ 7 8 #include "src/mat/impls/baij/seq/baij.h" 9 #include "src/vec/vecimpl.h" 10 #include "src/inline/ilu.h" 11 #include "src/inline/dot.h" 12 13 /* ----------------------------------------------------------- */ 14 #undef __FUNC__ 15 #define __FUNC__ "MatSolve_SeqBAIJ_N" 16 int MatSolve_SeqBAIJ_N(Mat A,Vec bb,Vec xx) 17 { 18 Mat_SeqBAIJ *a=(Mat_SeqBAIJ *)A->data; 19 IS iscol=a->col,isrow=a->row; 20 int *r,*c,ierr,i,n=a->mbs,*vi,*ai=a->i,*aj=a->j; 21 int nz,bs=a->bs,bs2=a->bs2,*rout,*cout; 22 MatScalar *aa=a->a,*v; 23 Scalar *x,*b,*sum,*tmp,*lsum; 24 25 PetscFunctionBegin; 26 ierr = VecGetArray(bb,&b);CHKERRQ(ierr); 27 ierr = VecGetArray(xx,&x); CHKERRQ(ierr); 28 tmp = a->solve_work; 29 30 ierr = ISGetIndices(isrow,&rout);CHKERRQ(ierr); r = rout; 31 ierr = ISGetIndices(iscol,&cout);CHKERRQ(ierr); c = cout + (n-1); 32 33 /* forward solve the lower triangular */ 34 PetscMemcpy(tmp,b + bs*(*r++), bs*sizeof(Scalar)); 35 for ( i=1; i<n; i++ ) { 36 v = aa + bs2*ai[i]; 37 vi = aj + ai[i]; 38 nz = a->diag[i] - ai[i]; 39 sum = tmp + bs*i; 40 PetscMemcpy(sum,b+bs*(*r++),bs*sizeof(Scalar)); 41 while (nz--) { 42 Kernel_v_gets_v_minus_A_times_w(bs,sum,v,tmp+bs*(*vi++)); 43 v += bs2; 44 } 45 } 46 /* backward solve the upper triangular */ 47 lsum = a->solve_work + a->n; 48 for ( i=n-1; i>=0; i-- ){ 49 v = aa + bs2*(a->diag[i] + 1); 50 vi = aj + a->diag[i] + 1; 51 nz = ai[i+1] - a->diag[i] - 1; 52 PetscMemcpy(lsum,tmp+i*bs,bs*sizeof(Scalar)); 53 while (nz--) { 54 Kernel_v_gets_v_minus_A_times_w(bs,lsum,v,tmp+bs*(*vi++)); 55 v += bs2; 56 } 57 Kernel_w_gets_A_times_v(bs,lsum,aa+bs2*a->diag[i],tmp+i*bs); 58 PetscMemcpy(x + bs*(*c--),tmp+i*bs,bs*sizeof(Scalar)); 59 } 60 61 ierr = ISRestoreIndices(isrow,&rout); CHKERRQ(ierr); 62 ierr = ISRestoreIndices(iscol,&cout); CHKERRQ(ierr); 63 ierr = VecRestoreArray(bb,&b); CHKERRQ(ierr); 64 ierr = VecRestoreArray(xx,&x); CHKERRQ(ierr); 65 PLogFlops(2*(a->bs2)*(a->nz) - a->bs*a->n); 66 PetscFunctionReturn(0); 67 } 68 69 #undef __FUNC__ 70 #define __FUNC__ "MatSolve_SeqBAIJ_7" 71 int MatSolve_SeqBAIJ_7(Mat A,Vec bb,Vec xx) 72 { 73 Mat_SeqBAIJ *a=(Mat_SeqBAIJ *)A->data; 74 IS iscol=a->col,isrow=a->row; 75 int *r,*c,ierr,i,n=a->mbs,*vi,*ai=a->i,*aj=a->j,nz,idx,idt,idc,*rout,*cout; 76 int *diag = a->diag; 77 MatScalar *aa=a->a,*v; 78 Scalar sum1,sum2,sum3,sum4,sum5,sum6,sum7,x1,x2,x3,x4,x5,x6,x7; 79 Scalar *x,*b,*tmp; 80 81 PetscFunctionBegin; 82 ierr = VecGetArray(bb,&b); CHKERRQ(ierr); 83 ierr = VecGetArray(xx,&x); CHKERRQ(ierr); 84 tmp = a->solve_work; 85 86 ierr = ISGetIndices(isrow,&rout);CHKERRQ(ierr); r = rout; 87 ierr = ISGetIndices(iscol,&cout);CHKERRQ(ierr); c = cout + (n-1); 88 89 /* forward solve the lower triangular */ 90 idx = 7*(*r++); 91 tmp[0] = b[idx]; tmp[1] = b[1+idx]; 92 tmp[2] = b[2+idx]; tmp[3] = b[3+idx]; tmp[4] = b[4+idx]; 93 tmp[5] = b[5+idx]; tmp[6] = b[6+idx]; 94 95 for ( i=1; i<n; i++ ) { 96 v = aa + 49*ai[i]; 97 vi = aj + ai[i]; 98 nz = diag[i] - ai[i]; 99 idx = 7*(*r++); 100 sum1 = b[idx];sum2 = b[1+idx];sum3 = b[2+idx];sum4 = b[3+idx]; 101 sum5 = b[4+idx];sum6 = b[5+idx];sum7 = b[6+idx]; 102 while (nz--) { 103 idx = 7*(*vi++); 104 x1 = tmp[idx]; x2 = tmp[1+idx];x3 = tmp[2+idx]; 105 x4 = tmp[3+idx];x5 = tmp[4+idx]; 106 x6 = tmp[5+idx];x7 = tmp[6+idx]; 107 sum1 -= v[0]*x1 + v[7]*x2 + v[14]*x3 + v[21]*x4 + v[28]*x5 + v[35]*x6 + v[42]*x7; 108 sum2 -= v[1]*x1 + v[8]*x2 + v[15]*x3 + v[22]*x4 + v[29]*x5 + v[36]*x6 + v[43]*x7; 109 sum3 -= v[2]*x1 + v[9]*x2 + v[16]*x3 + v[23]*x4 + v[30]*x5 + v[37]*x6 + v[44]*x7; 110 sum4 -= v[3]*x1 + v[10]*x2 + v[17]*x3 + v[24]*x4 + v[31]*x5 + v[38]*x6 + v[45]*x7; 111 sum5 -= v[4]*x1 + v[11]*x2 + v[18]*x3 + v[25]*x4 + v[32]*x5 + v[39]*x6 + v[46]*x7; 112 sum6 -= v[5]*x1 + v[12]*x2 + v[19]*x3 + v[26]*x4 + v[33]*x5 + v[40]*x6 + v[47]*x7; 113 sum7 -= v[6]*x1 + v[13]*x2 + v[20]*x3 + v[27]*x4 + v[34]*x5 + v[41]*x6 + v[48]*x7; 114 v += 49; 115 } 116 idx = 7*i; 117 tmp[idx] = sum1;tmp[1+idx] = sum2; 118 tmp[2+idx] = sum3;tmp[3+idx] = sum4; tmp[4+idx] = sum5; 119 tmp[5+idx] = sum6;tmp[6+idx] = sum7; 120 } 121 /* backward solve the upper triangular */ 122 for ( i=n-1; i>=0; i-- ){ 123 v = aa + 49*diag[i] + 49; 124 vi = aj + diag[i] + 1; 125 nz = ai[i+1] - diag[i] - 1; 126 idt = 7*i; 127 sum1 = tmp[idt]; sum2 = tmp[1+idt]; 128 sum3 = tmp[2+idt];sum4 = tmp[3+idt]; sum5 = tmp[4+idt]; 129 sum6 = tmp[5+idt];sum7 = tmp[6+idt]; 130 while (nz--) { 131 idx = 7*(*vi++); 132 x1 = tmp[idx]; x2 = tmp[1+idx]; 133 x3 = tmp[2+idx]; x4 = tmp[3+idx]; x5 = tmp[4+idx]; 134 x6 = tmp[5+idx]; x7 = tmp[6+idx]; 135 sum1 -= v[0]*x1 + v[7]*x2 + v[14]*x3 + v[21]*x4 + v[28]*x5 + v[35]*x6 + v[42]*x7; 136 sum2 -= v[1]*x1 + v[8]*x2 + v[15]*x3 + v[22]*x4 + v[29]*x5 + v[36]*x6 + v[43]*x7; 137 sum3 -= v[2]*x1 + v[9]*x2 + v[16]*x3 + v[23]*x4 + v[30]*x5 + v[37]*x6 + v[44]*x7; 138 sum4 -= v[3]*x1 + v[10]*x2 + v[17]*x3 + v[24]*x4 + v[31]*x5 + v[38]*x6 + v[45]*x7; 139 sum5 -= v[4]*x1 + v[11]*x2 + v[18]*x3 + v[25]*x4 + v[32]*x5 + v[39]*x6 + v[46]*x7; 140 sum6 -= v[5]*x1 + v[12]*x2 + v[19]*x3 + v[26]*x4 + v[33]*x5 + v[40]*x6 + v[47]*x7; 141 sum7 -= v[6]*x1 + v[13]*x2 + v[20]*x3 + v[27]*x4 + v[34]*x5 + v[41]*x6 + v[48]*x7; 142 v += 49; 143 } 144 idc = 7*(*c--); 145 v = aa + 49*diag[i]; 146 x[idc] = tmp[idt] = v[0]*sum1+v[7]*sum2+v[14]*sum3+ 147 v[21]*sum4+v[28]*sum5+v[35]*sum6+v[42]*sum7; 148 x[1+idc] = tmp[1+idt] = v[1]*sum1+v[8]*sum2+v[15]*sum3+ 149 v[22]*sum4+v[29]*sum5+v[36]*sum6+v[43]*sum7; 150 x[2+idc] = tmp[2+idt] = v[2]*sum1+v[9]*sum2+v[16]*sum3+ 151 v[23]*sum4+v[30]*sum5+v[37]*sum6+v[44]*sum7; 152 x[3+idc] = tmp[3+idt] = v[3]*sum1+v[10]*sum2+v[17]*sum3+ 153 v[24]*sum4+v[31]*sum5+v[38]*sum6+v[45]*sum7; 154 x[4+idc] = tmp[4+idt] = v[4]*sum1+v[11]*sum2+v[18]*sum3+ 155 v[25]*sum4+v[32]*sum5+v[39]*sum6+v[46]*sum7; 156 x[5+idc] = tmp[5+idt] = v[5]*sum1+v[12]*sum2+v[19]*sum3+ 157 v[26]*sum4+v[33]*sum5+v[40]*sum6+v[47]*sum7; 158 x[6+idc] = tmp[6+idt] = v[6]*sum1+v[13]*sum2+v[20]*sum3+ 159 v[27]*sum4+v[34]*sum5+v[41]*sum6+v[48]*sum7; 160 } 161 162 ierr = ISRestoreIndices(isrow,&rout); CHKERRQ(ierr); 163 ierr = ISRestoreIndices(iscol,&cout); CHKERRQ(ierr); 164 ierr = VecRestoreArray(bb,&b); CHKERRQ(ierr); 165 ierr = VecRestoreArray(xx,&x); CHKERRQ(ierr); 166 PLogFlops(2*49*(a->nz) - 7*a->n); 167 PetscFunctionReturn(0); 168 } 169 170 #undef __FUNC__ 171 #define __FUNC__ "MatSolve_SeqBAIJ_5" 172 int MatSolve_SeqBAIJ_5(Mat A,Vec bb,Vec xx) 173 { 174 Mat_SeqBAIJ *a=(Mat_SeqBAIJ *)A->data; 175 IS iscol=a->col,isrow=a->row; 176 int *r,*c,ierr,i,n=a->mbs,*vi,*ai=a->i,*aj=a->j,nz,idx,idt,idc,*rout,*cout; 177 int *diag = a->diag; 178 MatScalar *aa=a->a,*v; 179 Scalar *x,*b,sum1,sum2,sum3,sum4,sum5,x1,x2,x3,x4,x5,*tmp; 180 181 PetscFunctionBegin; 182 ierr = VecGetArray(bb,&b); CHKERRQ(ierr); 183 ierr = VecGetArray(xx,&x); CHKERRQ(ierr); 184 tmp = a->solve_work; 185 186 ierr = ISGetIndices(isrow,&rout);CHKERRQ(ierr); r = rout; 187 ierr = ISGetIndices(iscol,&cout);CHKERRQ(ierr); c = cout + (n-1); 188 189 /* forward solve the lower triangular */ 190 idx = 5*(*r++); 191 tmp[0] = b[idx]; tmp[1] = b[1+idx]; 192 tmp[2] = b[2+idx]; tmp[3] = b[3+idx]; tmp[4] = b[4+idx]; 193 for ( i=1; i<n; i++ ) { 194 v = aa + 25*ai[i]; 195 vi = aj + ai[i]; 196 nz = diag[i] - ai[i]; 197 idx = 5*(*r++); 198 sum1 = b[idx];sum2 = b[1+idx];sum3 = b[2+idx];sum4 = b[3+idx]; 199 sum5 = b[4+idx]; 200 while (nz--) { 201 idx = 5*(*vi++); 202 x1 = tmp[idx]; x2 = tmp[1+idx];x3 = tmp[2+idx]; 203 x4 = tmp[3+idx];x5 = tmp[4+idx]; 204 sum1 -= v[0]*x1 + v[5]*x2 + v[10]*x3 + v[15]*x4 + v[20]*x5; 205 sum2 -= v[1]*x1 + v[6]*x2 + v[11]*x3 + v[16]*x4 + v[21]*x5; 206 sum3 -= v[2]*x1 + v[7]*x2 + v[12]*x3 + v[17]*x4 + v[22]*x5; 207 sum4 -= v[3]*x1 + v[8]*x2 + v[13]*x3 + v[18]*x4 + v[23]*x5; 208 sum5 -= v[4]*x1 + v[9]*x2 + v[14]*x3 + v[19]*x4 + v[24]*x5; 209 v += 25; 210 } 211 idx = 5*i; 212 tmp[idx] = sum1;tmp[1+idx] = sum2; 213 tmp[2+idx] = sum3;tmp[3+idx] = sum4; tmp[4+idx] = sum5; 214 } 215 /* backward solve the upper triangular */ 216 for ( i=n-1; i>=0; i-- ){ 217 v = aa + 25*diag[i] + 25; 218 vi = aj + diag[i] + 1; 219 nz = ai[i+1] - diag[i] - 1; 220 idt = 5*i; 221 sum1 = tmp[idt]; sum2 = tmp[1+idt]; 222 sum3 = tmp[2+idt];sum4 = tmp[3+idt]; sum5 = tmp[4+idt]; 223 while (nz--) { 224 idx = 5*(*vi++); 225 x1 = tmp[idx]; x2 = tmp[1+idx]; 226 x3 = tmp[2+idx]; x4 = tmp[3+idx]; x5 = tmp[4+idx]; 227 sum1 -= v[0]*x1 + v[5]*x2 + v[10]*x3 + v[15]*x4 + v[20]*x5; 228 sum2 -= v[1]*x1 + v[6]*x2 + v[11]*x3 + v[16]*x4 + v[21]*x5; 229 sum3 -= v[2]*x1 + v[7]*x2 + v[12]*x3 + v[17]*x4 + v[22]*x5; 230 sum4 -= v[3]*x1 + v[8]*x2 + v[13]*x3 + v[18]*x4 + v[23]*x5; 231 sum5 -= v[4]*x1 + v[9]*x2 + v[14]*x3 + v[19]*x4 + v[24]*x5; 232 v += 25; 233 } 234 idc = 5*(*c--); 235 v = aa + 25*diag[i]; 236 x[idc] = tmp[idt] = v[0]*sum1+v[5]*sum2+v[10]*sum3+ 237 v[15]*sum4+v[20]*sum5; 238 x[1+idc] = tmp[1+idt] = v[1]*sum1+v[6]*sum2+v[11]*sum3+ 239 v[16]*sum4+v[21]*sum5; 240 x[2+idc] = tmp[2+idt] = v[2]*sum1+v[7]*sum2+v[12]*sum3+ 241 v[17]*sum4+v[22]*sum5; 242 x[3+idc] = tmp[3+idt] = v[3]*sum1+v[8]*sum2+v[13]*sum3+ 243 v[18]*sum4+v[23]*sum5; 244 x[4+idc] = tmp[4+idt] = v[4]*sum1+v[9]*sum2+v[14]*sum3+ 245 v[19]*sum4+v[24]*sum5; 246 } 247 248 ierr = ISRestoreIndices(isrow,&rout); CHKERRQ(ierr); 249 ierr = ISRestoreIndices(iscol,&cout); CHKERRQ(ierr); 250 ierr = VecRestoreArray(bb,&b); CHKERRQ(ierr); 251 ierr = VecRestoreArray(xx,&x); CHKERRQ(ierr); 252 PLogFlops(2*25*(a->nz) - 5*a->n); 253 PetscFunctionReturn(0); 254 } 255 256 #undef __FUNC__ 257 #define __FUNC__ "MatSolve_SeqBAIJ_4" 258 int MatSolve_SeqBAIJ_4(Mat A,Vec bb,Vec xx) 259 { 260 Mat_SeqBAIJ *a = (Mat_SeqBAIJ *)A->data; 261 IS iscol=a->col,isrow=a->row; 262 int *r,*c,ierr,i,n=a->mbs,*vi,*ai=a->i,*aj=a->j,nz,idx,idt,idc,*rout,*cout; 263 int *diag = a->diag; 264 MatScalar *aa=a->a,*v; 265 Scalar *x,*b,sum1,sum2,sum3,sum4,x1,x2,x3,x4,*tmp; 266 267 PetscFunctionBegin; 268 ierr = VecGetArray(bb,&b); CHKERRQ(ierr); 269 ierr = VecGetArray(xx,&x); CHKERRQ(ierr); 270 tmp = a->solve_work; 271 272 ierr = ISGetIndices(isrow,&rout);CHKERRQ(ierr); r = rout; 273 ierr = ISGetIndices(iscol,&cout);CHKERRQ(ierr); c = cout + (n-1); 274 275 /* forward solve the lower triangular */ 276 idx = 4*(*r++); 277 tmp[0] = b[idx]; tmp[1] = b[1+idx]; 278 tmp[2] = b[2+idx]; tmp[3] = b[3+idx]; 279 for ( i=1; i<n; i++ ) { 280 v = aa + 16*ai[i]; 281 vi = aj + ai[i]; 282 nz = diag[i] - ai[i]; 283 idx = 4*(*r++); 284 sum1 = b[idx];sum2 = b[1+idx];sum3 = b[2+idx];sum4 = b[3+idx]; 285 while (nz--) { 286 idx = 4*(*vi++); 287 x1 = tmp[idx];x2 = tmp[1+idx];x3 = tmp[2+idx];x4 = tmp[3+idx]; 288 sum1 -= v[0]*x1 + v[4]*x2 + v[8]*x3 + v[12]*x4; 289 sum2 -= v[1]*x1 + v[5]*x2 + v[9]*x3 + v[13]*x4; 290 sum3 -= v[2]*x1 + v[6]*x2 + v[10]*x3 + v[14]*x4; 291 sum4 -= v[3]*x1 + v[7]*x2 + v[11]*x3 + v[15]*x4; 292 v += 16; 293 } 294 idx = 4*i; 295 tmp[idx] = sum1;tmp[1+idx] = sum2; 296 tmp[2+idx] = sum3;tmp[3+idx] = sum4; 297 } 298 /* backward solve the upper triangular */ 299 for ( i=n-1; i>=0; i-- ){ 300 v = aa + 16*diag[i] + 16; 301 vi = aj + diag[i] + 1; 302 nz = ai[i+1] - diag[i] - 1; 303 idt = 4*i; 304 sum1 = tmp[idt]; sum2 = tmp[1+idt]; 305 sum3 = tmp[2+idt];sum4 = tmp[3+idt]; 306 while (nz--) { 307 idx = 4*(*vi++); 308 x1 = tmp[idx]; x2 = tmp[1+idx]; 309 x3 = tmp[2+idx]; x4 = tmp[3+idx]; 310 sum1 -= v[0]*x1 + v[4]*x2 + v[8]*x3 + v[12]*x4; 311 sum2 -= v[1]*x1 + v[5]*x2 + v[9]*x3 + v[13]*x4; 312 sum3 -= v[2]*x1 + v[6]*x2 + v[10]*x3 + v[14]*x4; 313 sum4 -= v[3]*x1 + v[7]*x2 + v[11]*x3 + v[15]*x4; 314 v += 16; 315 } 316 idc = 4*(*c--); 317 v = aa + 16*diag[i]; 318 x[idc] = tmp[idt] = v[0]*sum1+v[4]*sum2+v[8]*sum3+v[12]*sum4; 319 x[1+idc] = tmp[1+idt] = v[1]*sum1+v[5]*sum2+v[9]*sum3+v[13]*sum4; 320 x[2+idc] = tmp[2+idt] = v[2]*sum1+v[6]*sum2+v[10]*sum3+v[14]*sum4; 321 x[3+idc] = tmp[3+idt] = v[3]*sum1+v[7]*sum2+v[11]*sum3+v[15]*sum4; 322 } 323 324 ierr = ISRestoreIndices(isrow,&rout); CHKERRQ(ierr); 325 ierr = ISRestoreIndices(iscol,&cout); CHKERRQ(ierr); 326 ierr = VecRestoreArray(bb,&b); CHKERRQ(ierr); 327 ierr = VecRestoreArray(xx,&x); CHKERRQ(ierr); 328 PLogFlops(2*16*(a->nz) - 4*a->n); 329 PetscFunctionReturn(0); 330 } 331 /* 332 Special case where the matrix was ILU(0) factored in the natural 333 ordering. This eliminates the need for the column and row permutation. 334 */ 335 #undef __FUNC__ 336 #define __FUNC__ "MatSolve_SeqBAIJ_4_NaturalOrdering" 337 int MatSolve_SeqBAIJ_4_NaturalOrdering(Mat A,Vec bb,Vec xx) 338 { 339 Mat_SeqBAIJ *a = (Mat_SeqBAIJ *)A->data; 340 int n=a->mbs,*ai=a->i,*aj=a->j; 341 int ierr,*diag = a->diag; 342 MatScalar *aa=a->a; 343 Scalar *x,*b; 344 345 PetscFunctionBegin; 346 ierr = VecGetArray(bb,&b);CHKERRQ(ierr); 347 ierr = VecGetArray(xx,&x);CHKERRQ(ierr); 348 349 #if defined(USE_FORTRAN_KERNEL_SOLVEBAIJBLAS) 350 { 351 static Scalar w[2000]; /* very BAD need to fix */ 352 fortransolvebaij4blas_(&n,x,ai,aj,diag,aa,b,w); 353 } 354 #elif defined(USE_FORTRAN_KERNEL_SOLVEBAIJ) 355 { 356 static Scalar w[2000]; /* very BAD need to fix */ 357 fortransolvebaij4_(&n,x,ai,aj,diag,aa,b,w); 358 } 359 #elif defined(USE_FORTRAN_KERNEL_SOLVEBAIJUNROLL) 360 fortransolvebaij4unroll_(&n,x,ai,aj,diag,aa,b); 361 #else 362 { 363 Scalar sum1,sum2,sum3,sum4,x1,x2,x3,x4; 364 MatScalar *v; 365 int jdx,idt,idx,nz,*vi,i; 366 367 /* forward solve the lower triangular */ 368 idx = 0; 369 x[0] = b[0]; x[1] = b[1]; x[2] = b[2]; x[3] = b[3]; 370 for ( i=1; i<n; i++ ) { 371 v = aa + 16*ai[i]; 372 vi = aj + ai[i]; 373 nz = diag[i] - ai[i]; 374 idx += 4; 375 sum1 = b[idx];sum2 = b[1+idx];sum3 = b[2+idx];sum4 = b[3+idx]; 376 while (nz--) { 377 jdx = 4*(*vi++); 378 x1 = x[jdx];x2 = x[1+jdx];x3 = x[2+jdx];x4 = x[3+jdx]; 379 sum1 -= v[0]*x1 + v[4]*x2 + v[8]*x3 + v[12]*x4; 380 sum2 -= v[1]*x1 + v[5]*x2 + v[9]*x3 + v[13]*x4; 381 sum3 -= v[2]*x1 + v[6]*x2 + v[10]*x3 + v[14]*x4; 382 sum4 -= v[3]*x1 + v[7]*x2 + v[11]*x3 + v[15]*x4; 383 v += 16; 384 } 385 x[idx] = sum1; 386 x[1+idx] = sum2; 387 x[2+idx] = sum3; 388 x[3+idx] = sum4; 389 } 390 /* backward solve the upper triangular */ 391 for ( i=n-1; i>=0; i-- ){ 392 v = aa + 16*diag[i] + 16; 393 vi = aj + diag[i] + 1; 394 nz = ai[i+1] - diag[i] - 1; 395 idt = 4*i; 396 sum1 = x[idt]; sum2 = x[1+idt]; 397 sum3 = x[2+idt];sum4 = x[3+idt]; 398 while (nz--) { 399 idx = 4*(*vi++); 400 x1 = x[idx]; x2 = x[1+idx];x3 = x[2+idx]; x4 = x[3+idx]; 401 sum1 -= v[0]*x1 + v[4]*x2 + v[8]*x3 + v[12]*x4; 402 sum2 -= v[1]*x1 + v[5]*x2 + v[9]*x3 + v[13]*x4; 403 sum3 -= v[2]*x1 + v[6]*x2 + v[10]*x3 + v[14]*x4; 404 sum4 -= v[3]*x1 + v[7]*x2 + v[11]*x3 + v[15]*x4; 405 v += 16; 406 } 407 v = aa + 16*diag[i]; 408 x[idt] = v[0]*sum1 + v[4]*sum2 + v[8]*sum3 + v[12]*sum4; 409 x[1+idt] = v[1]*sum1 + v[5]*sum2 + v[9]*sum3 + v[13]*sum4; 410 x[2+idt] = v[2]*sum1 + v[6]*sum2 + v[10]*sum3 + v[14]*sum4; 411 x[3+idt] = v[3]*sum1 + v[7]*sum2 + v[11]*sum3 + v[15]*sum4; 412 } 413 } 414 #endif 415 416 ierr = VecRestoreArray(bb,&b);CHKERRQ(ierr); 417 ierr = VecRestoreArray(xx,&x);CHKERRQ(ierr); 418 PLogFlops(2*16*(a->nz) - 4*a->n); 419 PetscFunctionReturn(0); 420 } 421 422 #undef __FUNC__ 423 #define __FUNC__ "MatSolve_SeqBAIJ_5_NaturalOrdering" 424 int MatSolve_SeqBAIJ_5_NaturalOrdering(Mat A,Vec bb,Vec xx) 425 { 426 Mat_SeqBAIJ *a = (Mat_SeqBAIJ *)A->data; 427 int i,n=a->mbs,*vi,*ai=a->i,*aj=a->j,nz,idx,idt; 428 int ierr,*diag = a->diag,jdx; 429 MatScalar *aa=a->a,*v; 430 Scalar *x,*b,sum1,sum2,sum3,sum4,sum5,x1,x2,x3,x4,x5;; 431 432 PetscFunctionBegin; 433 ierr = VecGetArray(bb,&b);CHKERRQ(ierr); 434 ierr = VecGetArray(xx,&x);CHKERRQ(ierr); 435 /* forward solve the lower triangular */ 436 idx = 0; 437 x[0] = b[idx]; x[1] = b[1+idx]; x[2] = b[2+idx]; x[3] = b[3+idx];x[4] = b[4+idx]; 438 for ( i=1; i<n; i++ ) { 439 v = aa + 25*ai[i]; 440 vi = aj + ai[i]; 441 nz = diag[i] - ai[i]; 442 idx = 5*i; 443 sum1 = b[idx];sum2 = b[1+idx];sum3 = b[2+idx];sum4 = b[3+idx];sum5 = b[4+idx]; 444 while (nz--) { 445 jdx = 5*(*vi++); 446 x1 = x[jdx];x2 = x[1+jdx];x3 = x[2+jdx];x4 = x[3+jdx];x5 = x[4+jdx]; 447 sum1 -= v[0]*x1 + v[5]*x2 + v[10]*x3 + v[15]*x4 + v[20]*x5; 448 sum2 -= v[1]*x1 + v[6]*x2 + v[11]*x3 + v[16]*x4 + v[21]*x5; 449 sum3 -= v[2]*x1 + v[7]*x2 + v[12]*x3 + v[17]*x4 + v[22]*x5; 450 sum4 -= v[3]*x1 + v[8]*x2 + v[13]*x3 + v[18]*x4 + v[23]*x5; 451 sum5 -= v[4]*x1 + v[9]*x2 + v[14]*x3 + v[19]*x4 + v[24]*x5; 452 v += 25; 453 } 454 x[idx] = sum1; 455 x[1+idx] = sum2; 456 x[2+idx] = sum3; 457 x[3+idx] = sum4; 458 x[4+idx] = sum5; 459 } 460 /* backward solve the upper triangular */ 461 for ( i=n-1; i>=0; i-- ){ 462 v = aa + 25*diag[i] + 25; 463 vi = aj + diag[i] + 1; 464 nz = ai[i+1] - diag[i] - 1; 465 idt = 5*i; 466 sum1 = x[idt]; sum2 = x[1+idt]; 467 sum3 = x[2+idt];sum4 = x[3+idt]; sum5 = x[4+idt]; 468 while (nz--) { 469 idx = 5*(*vi++); 470 x1 = x[idx]; x2 = x[1+idx];x3 = x[2+idx]; x4 = x[3+idx]; x5 = x[4+idx]; 471 sum1 -= v[0]*x1 + v[5]*x2 + v[10]*x3 + v[15]*x4 + v[20]*x5; 472 sum2 -= v[1]*x1 + v[6]*x2 + v[11]*x3 + v[16]*x4 + v[21]*x5; 473 sum3 -= v[2]*x1 + v[7]*x2 + v[12]*x3 + v[17]*x4 + v[22]*x5; 474 sum4 -= v[3]*x1 + v[8]*x2 + v[13]*x3 + v[18]*x4 + v[23]*x5; 475 sum5 -= v[4]*x1 + v[9]*x2 + v[14]*x3 + v[19]*x4 + v[24]*x5; 476 v += 25; 477 } 478 v = aa + 25*diag[i]; 479 x[idt] = v[0]*sum1 + v[5]*sum2 + v[10]*sum3 + v[15]*sum4 + v[20]*sum5; 480 x[1+idt] = v[1]*sum1 + v[6]*sum2 + v[11]*sum3 + v[16]*sum4 + v[21]*sum5; 481 x[2+idt] = v[2]*sum1 + v[7]*sum2 + v[12]*sum3 + v[17]*sum4 + v[22]*sum5; 482 x[3+idt] = v[3]*sum1 + v[8]*sum2 + v[13]*sum3 + v[18]*sum4 + v[23]*sum5; 483 x[4+idt] = v[4]*sum1 + v[9]*sum2 + v[14]*sum3 + v[19]*sum4 + v[24]*sum5; 484 } 485 486 ierr = VecRestoreArray(bb,&b);CHKERRQ(ierr); 487 ierr = VecRestoreArray(xx,&x);CHKERRQ(ierr); 488 PLogFlops(2*25*(a->nz) - 5*a->n); 489 PetscFunctionReturn(0); 490 } 491 492 493 #undef __FUNC__ 494 #define __FUNC__ "MatSolve_SeqBAIJ_3" 495 int MatSolve_SeqBAIJ_3(Mat A,Vec bb,Vec xx) 496 { 497 Mat_SeqBAIJ *a=(Mat_SeqBAIJ *)A->data; 498 IS iscol=a->col,isrow=a->row; 499 int *r,*c,ierr,i,n=a->mbs,*vi,*ai=a->i,*aj=a->j,nz,idx,idt,idc,*rout,*cout; 500 int *diag = a->diag; 501 MatScalar *aa=a->a,*v; 502 Scalar *x,*b,sum1,sum2,sum3,x1,x2,x3,*tmp; 503 504 PetscFunctionBegin; 505 ierr = VecGetArray(bb,&b); CHKERRQ(ierr); 506 ierr = VecGetArray(xx,&x); CHKERRQ(ierr); 507 tmp = a->solve_work; 508 509 ierr = ISGetIndices(isrow,&rout);CHKERRQ(ierr); r = rout; 510 ierr = ISGetIndices(iscol,&cout);CHKERRQ(ierr); c = cout + (n-1); 511 512 /* forward solve the lower triangular */ 513 idx = 3*(*r++); 514 tmp[0] = b[idx]; tmp[1] = b[1+idx]; tmp[2] = b[2+idx]; 515 for ( i=1; i<n; i++ ) { 516 v = aa + 9*ai[i]; 517 vi = aj + ai[i]; 518 nz = diag[i] - ai[i]; 519 idx = 3*(*r++); 520 sum1 = b[idx]; sum2 = b[1+idx]; sum3 = b[2+idx]; 521 while (nz--) { 522 idx = 3*(*vi++); 523 x1 = tmp[idx]; x2 = tmp[1+idx]; x3 = tmp[2+idx]; 524 sum1 -= v[0]*x1 + v[3]*x2 + v[6]*x3; 525 sum2 -= v[1]*x1 + v[4]*x2 + v[7]*x3; 526 sum3 -= v[2]*x1 + v[5]*x2 + v[8]*x3; 527 v += 9; 528 } 529 idx = 3*i; 530 tmp[idx] = sum1; tmp[1+idx] = sum2; tmp[2+idx] = sum3; 531 } 532 /* backward solve the upper triangular */ 533 for ( i=n-1; i>=0; i-- ){ 534 v = aa + 9*diag[i] + 9; 535 vi = aj + diag[i] + 1; 536 nz = ai[i+1] - diag[i] - 1; 537 idt = 3*i; 538 sum1 = tmp[idt]; sum2 = tmp[1+idt]; sum3 = tmp[2+idt]; 539 while (nz--) { 540 idx = 3*(*vi++); 541 x1 = tmp[idx]; x2 = tmp[1+idx]; x3 = tmp[2+idx]; 542 sum1 -= v[0]*x1 + v[3]*x2 + v[6]*x3; 543 sum2 -= v[1]*x1 + v[4]*x2 + v[7]*x3; 544 sum3 -= v[2]*x1 + v[5]*x2 + v[8]*x3; 545 v += 9; 546 } 547 idc = 3*(*c--); 548 v = aa + 9*diag[i]; 549 x[idc] = tmp[idt] = v[0]*sum1 + v[3]*sum2 + v[6]*sum3; 550 x[1+idc] = tmp[1+idt] = v[1]*sum1 + v[4]*sum2 + v[7]*sum3; 551 x[2+idc] = tmp[2+idt] = v[2]*sum1 + v[5]*sum2 + v[8]*sum3; 552 } 553 ierr = ISRestoreIndices(isrow,&rout); CHKERRQ(ierr); 554 ierr = ISRestoreIndices(iscol,&cout); CHKERRQ(ierr); 555 ierr = VecRestoreArray(bb,&b);CHKERRQ(ierr); 556 ierr = VecRestoreArray(xx,&x);CHKERRQ(ierr); 557 PLogFlops(2*9*(a->nz) - 3*a->n); 558 PetscFunctionReturn(0); 559 } 560 561 #undef __FUNC__ 562 #define __FUNC__ "MatSolve_SeqBAIJ_2" 563 int MatSolve_SeqBAIJ_2(Mat A,Vec bb,Vec xx) 564 { 565 Mat_SeqBAIJ *a=(Mat_SeqBAIJ *)A->data; 566 IS iscol=a->col,isrow=a->row; 567 int *r,*c,ierr,i,n=a->mbs,*vi,*ai=a->i,*aj=a->j,nz,idx,idt,idc,*rout,*cout; 568 int *diag = a->diag; 569 MatScalar *aa=a->a,*v; 570 Scalar *x,*b,sum1,sum2,x1,x2,*tmp; 571 572 PetscFunctionBegin; 573 ierr = VecGetArray(bb,&b); CHKERRQ(ierr); 574 ierr = VecGetArray(xx,&x); CHKERRQ(ierr); 575 tmp = a->solve_work; 576 577 ierr = ISGetIndices(isrow,&rout);CHKERRQ(ierr); r = rout; 578 ierr = ISGetIndices(iscol,&cout);CHKERRQ(ierr); c = cout + (n-1); 579 580 /* forward solve the lower triangular */ 581 idx = 2*(*r++); 582 tmp[0] = b[idx]; tmp[1] = b[1+idx]; 583 for ( i=1; i<n; i++ ) { 584 v = aa + 4*ai[i]; 585 vi = aj + ai[i]; 586 nz = diag[i] - ai[i]; 587 idx = 2*(*r++); 588 sum1 = b[idx]; sum2 = b[1+idx]; 589 while (nz--) { 590 idx = 2*(*vi++); 591 x1 = tmp[idx]; x2 = tmp[1+idx]; 592 sum1 -= v[0]*x1 + v[2]*x2; 593 sum2 -= v[1]*x1 + v[3]*x2; 594 v += 4; 595 } 596 idx = 2*i; 597 tmp[idx] = sum1; tmp[1+idx] = sum2; 598 } 599 /* backward solve the upper triangular */ 600 for ( i=n-1; i>=0; i-- ){ 601 v = aa + 4*diag[i] + 4; 602 vi = aj + diag[i] + 1; 603 nz = ai[i+1] - diag[i] - 1; 604 idt = 2*i; 605 sum1 = tmp[idt]; sum2 = tmp[1+idt]; 606 while (nz--) { 607 idx = 2*(*vi++); 608 x1 = tmp[idx]; x2 = tmp[1+idx]; 609 sum1 -= v[0]*x1 + v[2]*x2; 610 sum2 -= v[1]*x1 + v[3]*x2; 611 v += 4; 612 } 613 idc = 2*(*c--); 614 v = aa + 4*diag[i]; 615 x[idc] = tmp[idt] = v[0]*sum1 + v[2]*sum2; 616 x[1+idc] = tmp[1+idt] = v[1]*sum1 + v[3]*sum2; 617 } 618 ierr = ISRestoreIndices(isrow,&rout); CHKERRQ(ierr); 619 ierr = ISRestoreIndices(iscol,&cout); CHKERRQ(ierr); 620 ierr = VecRestoreArray(bb,&b); CHKERRQ(ierr); 621 ierr = VecRestoreArray(xx,&x);CHKERRQ(ierr); 622 PLogFlops(2*4*(a->nz) - 2*a->n); 623 PetscFunctionReturn(0); 624 } 625 626 #undef __FUNC__ 627 #define __FUNC__ "MatSolve_SeqBAIJ_1" 628 int MatSolve_SeqBAIJ_1(Mat A,Vec bb,Vec xx) 629 { 630 Mat_SeqBAIJ *a=(Mat_SeqBAIJ *)A->data; 631 IS iscol=a->col,isrow=a->row; 632 int *r,*c,ierr,i,n=a->mbs,*vi,*ai=a->i,*aj=a->j,nz,*rout,*cout; 633 int *diag = a->diag; 634 MatScalar *aa=a->a,*v; 635 Scalar *x,*b,sum1,*tmp; 636 637 PetscFunctionBegin; 638 if (!n) PetscFunctionReturn(0); 639 640 ierr = VecGetArray(bb,&b); CHKERRQ(ierr); 641 ierr = VecGetArray(xx,&x); CHKERRQ(ierr); 642 tmp = a->solve_work; 643 644 ierr = ISGetIndices(isrow,&rout);CHKERRQ(ierr); r = rout; 645 ierr = ISGetIndices(iscol,&cout);CHKERRQ(ierr); c = cout + (n-1); 646 647 /* forward solve the lower triangular */ 648 tmp[0] = b[*r++]; 649 for ( i=1; i<n; i++ ) { 650 v = aa + ai[i]; 651 vi = aj + ai[i]; 652 nz = diag[i] - ai[i]; 653 sum1 = b[*r++]; 654 while (nz--) { 655 sum1 -= (*v++)*tmp[*vi++]; 656 } 657 tmp[i] = sum1; 658 } 659 /* backward solve the upper triangular */ 660 for ( i=n-1; i>=0; i-- ){ 661 v = aa + diag[i] + 1; 662 vi = aj + diag[i] + 1; 663 nz = ai[i+1] - diag[i] - 1; 664 sum1 = tmp[i]; 665 while (nz--) { 666 sum1 -= (*v++)*tmp[*vi++]; 667 } 668 x[*c--] = tmp[i] = aa[diag[i]]*sum1; 669 } 670 671 ierr = ISRestoreIndices(isrow,&rout); CHKERRQ(ierr); 672 ierr = ISRestoreIndices(iscol,&cout); CHKERRQ(ierr); 673 ierr = VecRestoreArray(bb,&b); CHKERRQ(ierr); 674 ierr = VecRestoreArray(xx,&x); CHKERRQ(ierr); 675 PLogFlops(2*1*(a->nz) - a->n); 676 PetscFunctionReturn(0); 677 } 678 679 /* ----------------------------------------------------------------*/ 680 /* 681 This code is virtually identical to MatILUFactorSymbolic_SeqAIJ 682 except that the data structure of Mat_SeqAIJ is slightly different. 683 Not a good example of code reuse. 684 */ 685 #undef __FUNC__ 686 #define __FUNC__ "MatILUFactorSymbolic_SeqBAIJ" 687 int MatILUFactorSymbolic_SeqBAIJ(Mat A,IS isrow,IS iscol,double f,int levels,Mat *fact) 688 { 689 Mat_SeqBAIJ *a = (Mat_SeqBAIJ *) A->data, *b; 690 IS isicol; 691 int *r,*ic, ierr, prow, n = a->mbs, *ai = a->i, *aj = a->j; 692 int *ainew,*ajnew, jmax,*fill, *xi, nz, *im,*ajfill,*flev; 693 int *dloc, idx, row,m,fm, nzf, nzi,len, realloc = 0; 694 int incrlev,nnz,i,bs = a->bs,bs2 = a->bs2; 695 PetscTruth col_identity, row_identity; 696 697 PetscFunctionBegin; 698 ierr = ISInvertPermutation(iscol,&isicol); CHKERRQ(ierr); 699 700 /* special case that simply copies fill pattern */ 701 PetscValidHeaderSpecific(isrow,IS_COOKIE); 702 PetscValidHeaderSpecific(iscol,IS_COOKIE); 703 ierr = ISIdentity(isrow,&row_identity); CHKERRQ(ierr); 704 ierr = ISIdentity(iscol,&col_identity); CHKERRQ(ierr); 705 if (levels == 0 && row_identity && col_identity) { 706 ierr = MatDuplicate_SeqBAIJ(A,MAT_DO_NOT_COPY_VALUES,fact); CHKERRQ(ierr); 707 (*fact)->factor = FACTOR_LU; 708 b = (Mat_SeqBAIJ *) (*fact)->data; 709 if (!b->diag) { 710 ierr = MatMarkDiag_SeqBAIJ(*fact); CHKERRQ(ierr); 711 } 712 b->row = isrow; 713 b->col = iscol; 714 b->icol = isicol; 715 b->solve_work = (Scalar *) PetscMalloc((b->m+1+b->bs)*sizeof(Scalar));CHKPTRQ(b->solve_work); 716 /* 717 Blocksize 4 and 5 a special faster solver for ILU(0) factorization 718 with natural ordering 719 */ 720 if (b->bs == 4) { 721 (*fact)->ops->lufactornumeric = MatLUFactorNumeric_SeqBAIJ_4_NaturalOrdering; 722 (*fact)->ops->solve = MatSolve_SeqBAIJ_4_NaturalOrdering; 723 PLogInfo(A,"Using special natural ordering factor and solve BS=4\n"); 724 } else if (b->bs == 5) { 725 (*fact)->ops->lufactornumeric = MatLUFactorNumeric_SeqBAIJ_5_NaturalOrdering; 726 (*fact)->ops->solve = MatSolve_SeqBAIJ_5_NaturalOrdering; 727 PLogInfo( A,"Using special natural ordering factor and solve BS=5\n"); 728 } 729 PetscFunctionReturn(0); 730 } 731 732 ierr = ISGetIndices(isrow,&r); CHKERRQ(ierr); 733 ierr = ISGetIndices(isicol,&ic); CHKERRQ(ierr); 734 735 /* get new row pointers */ 736 ainew = (int *) PetscMalloc( (n+1)*sizeof(int) ); CHKPTRQ(ainew); 737 ainew[0] = 0; 738 /* don't know how many column pointers are needed so estimate */ 739 jmax = (int) (f*ai[n] + 1); 740 ajnew = (int *) PetscMalloc( (jmax)*sizeof(int) ); CHKPTRQ(ajnew); 741 /* ajfill is level of fill for each fill entry */ 742 ajfill = (int *) PetscMalloc( (jmax)*sizeof(int) ); CHKPTRQ(ajfill); 743 /* fill is a linked list of nonzeros in active row */ 744 fill = (int *) PetscMalloc( (n+1)*sizeof(int)); CHKPTRQ(fill); 745 /* im is level for each filled value */ 746 im = (int *) PetscMalloc( (n+1)*sizeof(int)); CHKPTRQ(im); 747 /* dloc is location of diagonal in factor */ 748 dloc = (int *) PetscMalloc( (n+1)*sizeof(int)); CHKPTRQ(dloc); 749 dloc[0] = 0; 750 for ( prow=0; prow<n; prow++ ) { 751 /* first copy previous fill into linked list */ 752 nzf = nz = ai[r[prow]+1] - ai[r[prow]]; 753 if (!nz) SETERRQ(PETSC_ERR_MAT_LU_ZRPVT,1,"Empty row in matrix"); 754 xi = aj + ai[r[prow]]; 755 fill[n] = n; 756 while (nz--) { 757 fm = n; 758 idx = ic[*xi++]; 759 do { 760 m = fm; 761 fm = fill[m]; 762 } while (fm < idx); 763 fill[m] = idx; 764 fill[idx] = fm; 765 im[idx] = 0; 766 } 767 nzi = 0; 768 row = fill[n]; 769 while ( row < prow ) { 770 incrlev = im[row] + 1; 771 nz = dloc[row]; 772 xi = ajnew + ainew[row] + nz; 773 flev = ajfill + ainew[row] + nz + 1; 774 nnz = ainew[row+1] - ainew[row] - nz - 1; 775 if (*xi++ != row) { 776 SETERRQ(PETSC_ERR_MAT_LU_ZRPVT,0,"Zero pivot: try running with -pc_ilu_nonzeros_along_diagonal"); 777 } 778 fm = row; 779 while (nnz-- > 0) { 780 idx = *xi++; 781 if (*flev + incrlev > levels) { 782 flev++; 783 continue; 784 } 785 do { 786 m = fm; 787 fm = fill[m]; 788 } while (fm < idx); 789 if (fm != idx) { 790 im[idx] = *flev + incrlev; 791 fill[m] = idx; 792 fill[idx] = fm; 793 fm = idx; 794 nzf++; 795 } else { 796 if (im[idx] > *flev + incrlev) im[idx] = *flev+incrlev; 797 } 798 flev++; 799 } 800 row = fill[row]; 801 nzi++; 802 } 803 /* copy new filled row into permanent storage */ 804 ainew[prow+1] = ainew[prow] + nzf; 805 if (ainew[prow+1] > jmax) { 806 807 /* estimate how much additional space we will need */ 808 /* use the strategy suggested by David Hysom <hysom@perch-t.icase.edu> */ 809 /* just double the memory each time */ 810 int maxadd = jmax; 811 /* maxadd = (int) (((f*ai[n]+1)*(n-prow+5))/n); */ 812 if (maxadd < nzf) maxadd = (n-prow)*(nzf+1); 813 jmax += maxadd; 814 815 /* allocate a longer ajnew and ajfill */ 816 xi = (int *) PetscMalloc( jmax*sizeof(int) );CHKPTRQ(xi); 817 PetscMemcpy(xi,ajnew,ainew[prow]*sizeof(int)); 818 PetscFree(ajnew); 819 ajnew = xi; 820 xi = (int *) PetscMalloc( jmax*sizeof(int) );CHKPTRQ(xi); 821 PetscMemcpy(xi,ajfill,ainew[prow]*sizeof(int)); 822 PetscFree(ajfill); 823 ajfill = xi; 824 realloc++; /* count how many reallocations are needed */ 825 } 826 xi = ajnew + ainew[prow]; 827 flev = ajfill + ainew[prow]; 828 dloc[prow] = nzi; 829 fm = fill[n]; 830 while (nzf--) { 831 *xi++ = fm; 832 *flev++ = im[fm]; 833 fm = fill[fm]; 834 } 835 } 836 PetscFree(ajfill); 837 ierr = ISRestoreIndices(isrow,&r); CHKERRQ(ierr); 838 ierr = ISRestoreIndices(isicol,&ic); CHKERRQ(ierr); 839 PetscFree(fill); PetscFree(im); 840 841 { 842 double af = ((double)ainew[n])/((double)ai[n]); 843 PLogInfo(A,"MatILUFactorSymbolic_SeqBAIJ:Reallocs %d Fill ratio:given %g needed %g\n", 844 realloc,f,af); 845 PLogInfo(A,"MatILUFactorSymbolic_SeqBAIJ:Run with -pc_ilu_fill %g or use \n",af); 846 PLogInfo(A,"MatILUFactorSymbolic_SeqBAIJ:PCILUSetFill(pc,%g);\n",af); 847 PLogInfo(A,"MatILUFactorSymbolic_SeqBAIJ:for best performance.\n"); 848 } 849 850 /* put together the new matrix */ 851 ierr = MatCreateSeqBAIJ(A->comm,bs,bs*n,bs*n,0,PETSC_NULL,fact);CHKERRQ(ierr); 852 PLogObjectParent(*fact,isicol); 853 b = (Mat_SeqBAIJ *) (*fact)->data; 854 PetscFree(b->imax); 855 b->singlemalloc = 0; 856 len = bs2*ainew[n]*sizeof(MatScalar); 857 /* the next line frees the default space generated by the Create() */ 858 PetscFree(b->a); PetscFree(b->ilen); 859 b->a = (MatScalar *) PetscMalloc( len ); CHKPTRQ(b->a); 860 b->j = ajnew; 861 b->i = ainew; 862 for ( i=0; i<n; i++ ) dloc[i] += ainew[i]; 863 b->diag = dloc; 864 b->ilen = 0; 865 b->imax = 0; 866 b->row = isrow; 867 b->col = iscol; 868 b->icol = isicol; 869 b->solve_work = (Scalar *) PetscMalloc( (bs*n+bs)*sizeof(Scalar));CHKPTRQ(b->solve_work); 870 /* In b structure: Free imax, ilen, old a, old j. 871 Allocate dloc, solve_work, new a, new j */ 872 PLogObjectMemory(*fact,(ainew[n]-n)*(sizeof(int))+bs2*ainew[n]*sizeof(Scalar)); 873 b->maxnz = b->nz = ainew[n]; 874 (*fact)->factor = FACTOR_LU; 875 876 (*fact)->info.factor_mallocs = realloc; 877 (*fact)->info.fill_ratio_given = f; 878 (*fact)->info.fill_ratio_needed = ((double)ainew[n])/((double)ai[prow]); 879 880 PetscFunctionReturn(0); 881 } 882 883 884 885 886