libflame revision_anchor
Functions
FLA_Eig_gest_nu_opt_var1.c File Reference

(r)

Functions

FLA_Error FLA_Eig_gest_nu_opt_var1 (FLA_Obj A, FLA_Obj Y, FLA_Obj B)
 
FLA_Error FLA_Eig_gest_nu_ops_var1 (int m_AB, float *buff_A, int rs_A, int cs_A, float *buff_y, int inc_y, float *buff_B, int rs_B, int cs_B)
 
FLA_Error FLA_Eig_gest_nu_opd_var1 (int m_AB, double *buff_A, int rs_A, int cs_A, double *buff_y, int inc_y, double *buff_B, int rs_B, int cs_B)
 
FLA_Error FLA_Eig_gest_nu_opc_var1 (int m_AB, scomplex *buff_A, int rs_A, int cs_A, scomplex *buff_y, int inc_y, scomplex *buff_B, int rs_B, int cs_B)
 
FLA_Error FLA_Eig_gest_nu_opz_var1 (int m_AB, dcomplex *buff_A, int rs_A, int cs_A, dcomplex *buff_y, int inc_y, dcomplex *buff_B, int rs_B, int cs_B)
 

Function Documentation

◆ FLA_Eig_gest_nu_opc_var1()

FLA_Error FLA_Eig_gest_nu_opc_var1 ( int  m_AB,
scomplex buff_A,
int  rs_A,
int  cs_A,
scomplex buff_y,
int  inc_y,
scomplex buff_B,
int  rs_B,
int  cs_B 
)
283{
287 int i;
288
289 for ( i = 0; i < m_AB; ++i )
290 {
291 scomplex* alpha11 = buff_A + (i )*cs_A + (i )*rs_A;
292 scomplex* a12t = buff_A + (i+1)*cs_A + (i )*rs_A;
293 scomplex* A22 = buff_A + (i+1)*cs_A + (i+1)*rs_A;
294
295 scomplex* y12t = buff_y + (i+1)*inc_y;
296
297 scomplex* beta11 = buff_B + (i )*cs_B + (i )*rs_B;
298 scomplex* b12t = buff_B + (i+1)*cs_B + (i )*rs_B;
299 scomplex* B22 = buff_B + (i+1)*cs_B + (i+1)*rs_B;
300
301 int m_ahead = m_AB - i - 1;
302
303 /*------------------------------------------------------------*/
304
305 // FLA_Hemvc_external( FLA_UPPER_TRIANGULAR, FLA_CONJUGATE,
306 // FLA_ONE, A22, b12t, FLA_ZERO, y12t_t );
309 m_ahead,
310 buff_1,
311 A22, rs_A, cs_A,
312 b12t, cs_B,
313 buff_0,
314 y12t, inc_y );
315
316 // FLA_Scal_external( beta11, a12t );
318 m_ahead,
319 beta11,
320 a12t, cs_A );
321
322 // FLA_Axpy_external( FLA_ONE_HALF, y12t_t, a12t );
324 m_ahead,
325 buff_1h,
326 y12t, inc_y,
327 a12t, cs_A );
328
329 // FLA_Scal_external( beta11, alpha11 );
330 // FLA_Scal_external( beta11, alpha11 );
333
334 // FLA_Dot2cs_external( FLA_CONJUGATE, FLA_ONE, a12t, b12t, FLA_ONE, alpha11 );
336 m_ahead,
337 buff_1,
338 a12t, cs_A,
339 b12t, cs_B,
340 buff_1,
341 alpha11 );
342
343 // FLA_Axpy_external( FLA_ONE_HALF, y12t_t, a12t );
345 m_ahead,
346 buff_1h,
347 y12t, inc_y,
348 a12t, cs_A );
349
350 // FLA_Trmv_external( FLA_UPPER_TRIANGULAR, FLA_CONJ_NO_TRANSPOSE, FLA_NONUNIT_DIAG,
351 // B22, a12t );
355 m_ahead,
356 B22, rs_B, cs_B,
357 a12t, cs_A );
358
359 /*------------------------------------------------------------*/
360
361 }
362
363 return FLA_SUCCESS;
364}
FLA_Obj FLA_ONE_HALF
Definition FLA_Init.c:19
FLA_Obj FLA_ZERO
Definition FLA_Init.c:20
FLA_Obj FLA_ONE
Definition FLA_Init.c:18
int i
Definition bl1_axmyv2.c:145
void bl1_caxpyv(conj1_t conj, int n, scomplex *alpha, scomplex *x, int incx, scomplex *y, int incy)
Definition bl1_axpyv.c:29
void bl1_cdot2s(conj1_t conj, int n, scomplex *alpha, scomplex *x, int incx, scomplex *y, int incy, scomplex *beta, scomplex *rho)
Definition bl1_dot2s.c:39
void bl1_chemv(uplo1_t uplo, conj1_t conj, int m, scomplex *alpha, scomplex *a, int a_rs, int a_cs, scomplex *x, int incx, scomplex *beta, scomplex *y, int incy)
Definition bl1_hemv.c:35
void bl1_cscalv(conj1_t conj, int n, scomplex *alpha, scomplex *x, int incx)
Definition bl1_scalv.c:46
void bl1_ctrmv(uplo1_t uplo, trans1_t trans, diag1_t diag, int m, scomplex *a, int a_rs, int a_cs, scomplex *x, int incx)
Definition bl1_trmv.c:99
@ BLIS1_UPPER_TRIANGULAR
Definition blis_type_defs.h:63
@ BLIS1_NONUNIT_DIAG
Definition blis_type_defs.h:74
@ BLIS1_CONJ_NO_TRANSPOSE
Definition blis_type_defs.h:56
@ BLIS1_CONJUGATE
Definition blis_type_defs.h:82
@ BLIS1_NO_CONJUGATE
Definition blis_type_defs.h:81
Definition blis_type_defs.h:133

References bl1_caxpyv(), bl1_cdot2s(), bl1_chemv(), bl1_cscalv(), bl1_ctrmv(), BLIS1_CONJ_NO_TRANSPOSE, BLIS1_CONJUGATE, BLIS1_NO_CONJUGATE, BLIS1_NONUNIT_DIAG, BLIS1_UPPER_TRIANGULAR, FLA_ONE, FLA_ONE_HALF, FLA_ZERO, and i.

Referenced by FLA_Eig_gest_nu_opt_var1().

◆ FLA_Eig_gest_nu_opd_var1()

FLA_Error FLA_Eig_gest_nu_opd_var1 ( int  m_AB,
double buff_A,
int  rs_A,
int  cs_A,
double buff_y,
int  inc_y,
double buff_B,
int  rs_B,
int  cs_B 
)
194{
195 double* buff_0 = FLA_DOUBLE_PTR( FLA_ZERO );
196 double* buff_1 = FLA_DOUBLE_PTR( FLA_ONE );
198 int i;
199
200 for ( i = 0; i < m_AB; ++i )
201 {
202 double* alpha11 = buff_A + (i )*cs_A + (i )*rs_A;
203 double* a12t = buff_A + (i+1)*cs_A + (i )*rs_A;
204 double* A22 = buff_A + (i+1)*cs_A + (i+1)*rs_A;
205
206 double* y12t = buff_y + (i+1)*inc_y;
207
208 double* beta11 = buff_B + (i )*cs_B + (i )*rs_B;
209 double* b12t = buff_B + (i+1)*cs_B + (i )*rs_B;
210 double* B22 = buff_B + (i+1)*cs_B + (i+1)*rs_B;
211
212 int m_ahead = m_AB - i - 1;
213
214 /*------------------------------------------------------------*/
215
216 // FLA_Hemvc_external( FLA_UPPER_TRIANGULAR, FLA_CONJUGATE,
217 // FLA_ONE, A22, b12t, FLA_ZERO, y12t_t );
220 m_ahead,
221 buff_1,
222 A22, rs_A, cs_A,
223 b12t, cs_B,
224 buff_0,
225 y12t, inc_y );
226
227 // FLA_Scal_external( beta11, a12t );
229 m_ahead,
230 beta11,
231 a12t, cs_A );
232
233 // FLA_Axpy_external( FLA_ONE_HALF, y12t_t, a12t );
235 m_ahead,
236 buff_1h,
237 y12t, inc_y,
238 a12t, cs_A );
239
240 // FLA_Scal_external( beta11, alpha11 );
241 // FLA_Scal_external( beta11, alpha11 );
244
245 // FLA_Dot2cs_external( FLA_CONJUGATE, FLA_ONE, a12t, b12t, FLA_ONE, alpha11 );
247 m_ahead,
248 buff_1,
249 a12t, cs_A,
250 b12t, cs_B,
251 buff_1,
252 alpha11 );
253
254 // FLA_Axpy_external( FLA_ONE_HALF, y12t_t, a12t );
256 m_ahead,
257 buff_1h,
258 y12t, inc_y,
259 a12t, cs_A );
260
261 // FLA_Trmv_external( FLA_UPPER_TRIANGULAR, FLA_CONJ_NO_TRANSPOSE, FLA_NONUNIT_DIAG,
262 // B22, a12t );
266 m_ahead,
267 B22, rs_B, cs_B,
268 a12t, cs_A );
269
270 /*------------------------------------------------------------*/
271
272 }
273
274 return FLA_SUCCESS;
275}
void bl1_daxpyv(conj1_t conj, int n, double *alpha, double *x, int incx, double *y, int incy)
Definition bl1_axpyv.c:21
void bl1_ddot2s(conj1_t conj, int n, double *alpha, double *x, int incx, double *y, int incy, double *beta, double *rho)
Definition bl1_dot2s.c:26
void bl1_dhemv(uplo1_t uplo, conj1_t conj, int m, double *alpha, double *a, int a_rs, int a_cs, double *x, int incx, double *beta, double *y, int incy)
Definition bl1_hemv.c:24
void bl1_dscalv(conj1_t conj, int n, double *alpha, double *x, int incx)
Definition bl1_scalv.c:24
void bl1_dtrmv(uplo1_t uplo, trans1_t trans, diag1_t diag, int m, double *a, int a_rs, int a_cs, double *x, int incx)
Definition bl1_trmv.c:56

References bl1_daxpyv(), bl1_ddot2s(), bl1_dhemv(), bl1_dscalv(), bl1_dtrmv(), BLIS1_CONJ_NO_TRANSPOSE, BLIS1_CONJUGATE, BLIS1_NO_CONJUGATE, BLIS1_NONUNIT_DIAG, BLIS1_UPPER_TRIANGULAR, FLA_ONE, FLA_ONE_HALF, FLA_ZERO, and i.

Referenced by FLA_Eig_gest_nu_opt_var1().

◆ FLA_Eig_gest_nu_ops_var1()

FLA_Error FLA_Eig_gest_nu_ops_var1 ( int  m_AB,
float buff_A,
int  rs_A,
int  cs_A,
float buff_y,
int  inc_y,
float buff_B,
int  rs_B,
int  cs_B 
)
105{
106 float* buff_0 = FLA_FLOAT_PTR( FLA_ZERO );
107 float* buff_1 = FLA_FLOAT_PTR( FLA_ONE );
109 int i;
110
111 for ( i = 0; i < m_AB; ++i )
112 {
113 float* alpha11 = buff_A + (i )*cs_A + (i )*rs_A;
114 float* a12t = buff_A + (i+1)*cs_A + (i )*rs_A;
115 float* A22 = buff_A + (i+1)*cs_A + (i+1)*rs_A;
116
117 float* y12t = buff_y + (i+1)*inc_y;
118
119 float* beta11 = buff_B + (i )*cs_B + (i )*rs_B;
120 float* b12t = buff_B + (i+1)*cs_B + (i )*rs_B;
121 float* B22 = buff_B + (i+1)*cs_B + (i+1)*rs_B;
122
123 int m_ahead = m_AB - i - 1;
124
125 /*------------------------------------------------------------*/
126
127 // FLA_Hemvc_external( FLA_UPPER_TRIANGULAR, FLA_CONJUGATE,
128 // FLA_ONE, A22, b12t, FLA_ZERO, y12t_t );
131 m_ahead,
132 buff_1,
133 A22, rs_A, cs_A,
134 b12t, cs_B,
135 buff_0,
136 y12t, inc_y );
137
138 // FLA_Scal_external( beta11, a12t );
140 m_ahead,
141 beta11,
142 a12t, cs_A );
143
144 // FLA_Axpy_external( FLA_ONE_HALF, y12t_t, a12t );
146 m_ahead,
147 buff_1h,
148 y12t, inc_y,
149 a12t, cs_A );
150
151 // FLA_Scal_external( beta11, alpha11 );
152 // FLA_Scal_external( beta11, alpha11 );
155
156 // FLA_Dot2cs_external( FLA_CONJUGATE, FLA_ONE, a12t, b12t, FLA_ONE, alpha11 );
158 m_ahead,
159 buff_1,
160 a12t, cs_A,
161 b12t, cs_B,
162 buff_1,
163 alpha11 );
164
165 // FLA_Axpy_external( FLA_ONE_HALF, y12t_t, a12t );
167 m_ahead,
168 buff_1h,
169 y12t, inc_y,
170 a12t, cs_A );
171
172 // FLA_Trmv_external( FLA_UPPER_TRIANGULAR, FLA_CONJ_NO_TRANSPOSE, FLA_NONUNIT_DIAG,
173 // B22, a12t );
177 m_ahead,
178 B22, rs_B, cs_B,
179 a12t, cs_A );
180
181 /*------------------------------------------------------------*/
182
183 }
184
185 return FLA_SUCCESS;
186}
void bl1_saxpyv(conj1_t conj, int n, float *alpha, float *x, int incx, float *y, int incy)
Definition bl1_axpyv.c:13
void bl1_sdot2s(conj1_t conj, int n, float *alpha, float *x, int incx, float *y, int incy, float *beta, float *rho)
Definition bl1_dot2s.c:13
void bl1_shemv(uplo1_t uplo, conj1_t conj, int m, float *alpha, float *a, int a_rs, int a_cs, float *x, int incx, float *beta, float *y, int incy)
Definition bl1_hemv.c:13
void bl1_sscalv(conj1_t conj, int n, float *alpha, float *x, int incx)
Definition bl1_scalv.c:13
void bl1_strmv(uplo1_t uplo, trans1_t trans, diag1_t diag, int m, float *a, int a_rs, int a_cs, float *x, int incx)
Definition bl1_trmv.c:13

References bl1_saxpyv(), bl1_sdot2s(), bl1_shemv(), bl1_sscalv(), bl1_strmv(), BLIS1_CONJ_NO_TRANSPOSE, BLIS1_CONJUGATE, BLIS1_NO_CONJUGATE, BLIS1_NONUNIT_DIAG, BLIS1_UPPER_TRIANGULAR, FLA_ONE, FLA_ONE_HALF, FLA_ZERO, and i.

Referenced by FLA_Eig_gest_nu_opt_var1().

◆ FLA_Eig_gest_nu_opt_var1()

FLA_Error FLA_Eig_gest_nu_opt_var1 ( FLA_Obj  A,
FLA_Obj  Y,
FLA_Obj  B 
)
14{
15 FLA_Datatype datatype;
16 int m_AB;
17 int rs_A, cs_A;
18 int rs_B, cs_B;
19 int inc_y;
20 FLA_Obj yT, yB;
21
22 datatype = FLA_Obj_datatype( A );
23
25
28
31
32 FLA_Part_2x1( Y, &yT,
33 &yB, 1, FLA_TOP );
34
36
37 switch ( datatype )
38 {
39 case FLA_FLOAT:
40 {
41 float* buff_A = FLA_FLOAT_PTR( A );
42 float* buff_y = FLA_FLOAT_PTR( yT );
43 float* buff_B = FLA_FLOAT_PTR( B );
44
48 buff_B, rs_B, cs_B );
49
50 break;
51 }
52
53 case FLA_DOUBLE:
54 {
55 double* buff_A = FLA_DOUBLE_PTR( A );
56 double* buff_y = FLA_DOUBLE_PTR( yT );
57 double* buff_B = FLA_DOUBLE_PTR( B );
58
62 buff_B, rs_B, cs_B );
63
64 break;
65 }
66
67 case FLA_COMPLEX:
68 {
72
76 buff_B, rs_B, cs_B );
77
78 break;
79 }
80
82 {
86
90 buff_B, rs_B, cs_B );
91
92 break;
93 }
94 }
95
96 return FLA_SUCCESS;
97}
FLA_Error FLA_Eig_gest_nu_opc_var1(int m_AB, scomplex *buff_A, int rs_A, int cs_A, scomplex *buff_y, int inc_y, scomplex *buff_B, int rs_B, int cs_B)
Definition FLA_Eig_gest_nu_opt_var1.c:279
FLA_Error FLA_Eig_gest_nu_opz_var1(int m_AB, dcomplex *buff_A, int rs_A, int cs_A, dcomplex *buff_y, int inc_y, dcomplex *buff_B, int rs_B, int cs_B)
Definition FLA_Eig_gest_nu_opt_var1.c:368
FLA_Error FLA_Eig_gest_nu_opd_var1(int m_AB, double *buff_A, int rs_A, int cs_A, double *buff_y, int inc_y, double *buff_B, int rs_B, int cs_B)
Definition FLA_Eig_gest_nu_opt_var1.c:190
FLA_Error FLA_Eig_gest_nu_ops_var1(int m_AB, float *buff_A, int rs_A, int cs_A, float *buff_y, int inc_y, float *buff_B, int rs_B, int cs_B)
Definition FLA_Eig_gest_nu_opt_var1.c:101
dim_t FLA_Obj_row_stride(FLA_Obj obj)
Definition FLA_Query.c:167
FLA_Error FLA_Part_2x1(FLA_Obj A, FLA_Obj *A1, FLA_Obj *A2, dim_t mb, FLA_Side side)
Definition FLA_View.c:76
dim_t FLA_Obj_length(FLA_Obj obj)
Definition FLA_Query.c:116
dim_t FLA_Obj_col_stride(FLA_Obj obj)
Definition FLA_Query.c:174
dim_t FLA_Obj_vector_inc(FLA_Obj obj)
Definition FLA_Query.c:145
FLA_Datatype FLA_Obj_datatype(FLA_Obj obj)
Definition FLA_Query.c:13
int FLA_Datatype
Definition FLA_type_defs.h:49
Definition FLA_type_defs.h:159
Definition blis_type_defs.h:138

References FLA_Eig_gest_nu_opc_var1(), FLA_Eig_gest_nu_opd_var1(), FLA_Eig_gest_nu_ops_var1(), FLA_Eig_gest_nu_opz_var1(), FLA_Obj_col_stride(), FLA_Obj_datatype(), FLA_Obj_length(), FLA_Obj_row_stride(), FLA_Obj_vector_inc(), FLA_Part_2x1(), and i.

Referenced by FLA_Eig_gest_nu().

◆ FLA_Eig_gest_nu_opz_var1()

FLA_Error FLA_Eig_gest_nu_opz_var1 ( int  m_AB,
dcomplex buff_A,
int  rs_A,
int  cs_A,
dcomplex buff_y,
int  inc_y,
dcomplex buff_B,
int  rs_B,
int  cs_B 
)
372{
376 int i;
377
378 for ( i = 0; i < m_AB; ++i )
379 {
380 dcomplex* alpha11 = buff_A + (i )*cs_A + (i )*rs_A;
381 dcomplex* a12t = buff_A + (i+1)*cs_A + (i )*rs_A;
382 dcomplex* A22 = buff_A + (i+1)*cs_A + (i+1)*rs_A;
383
384 dcomplex* y12t = buff_y + (i+1)*inc_y;
385
386 dcomplex* beta11 = buff_B + (i )*cs_B + (i )*rs_B;
387 dcomplex* b12t = buff_B + (i+1)*cs_B + (i )*rs_B;
388 dcomplex* B22 = buff_B + (i+1)*cs_B + (i+1)*rs_B;
389
390 int m_ahead = m_AB - i - 1;
391
392 /*------------------------------------------------------------*/
393
394 // FLA_Hemvc_external( FLA_UPPER_TRIANGULAR, FLA_CONJUGATE,
395 // FLA_ONE, A22, b12t, FLA_ZERO, y12t_t );
398 m_ahead,
399 buff_1,
400 A22, rs_A, cs_A,
401 b12t, cs_B,
402 buff_0,
403 y12t, inc_y );
404
405 // FLA_Scal_external( beta11, a12t );
407 m_ahead,
408 beta11,
409 a12t, cs_A );
410
411 // FLA_Axpy_external( FLA_ONE_HALF, y12t_t, a12t );
413 m_ahead,
414 buff_1h,
415 y12t, inc_y,
416 a12t, cs_A );
417
418 // FLA_Scal_external( beta11, alpha11 );
419 // FLA_Scal_external( beta11, alpha11 );
422
423 // FLA_Dot2cs_external( FLA_CONJUGATE, FLA_ONE, a12t, b12t, FLA_ONE, alpha11 );
425 m_ahead,
426 buff_1,
427 a12t, cs_A,
428 b12t, cs_B,
429 buff_1,
430 alpha11 );
431
432 // FLA_Axpy_external( FLA_ONE_HALF, y12t_t, a12t );
434 m_ahead,
435 buff_1h,
436 y12t, inc_y,
437 a12t, cs_A );
438
439 // FLA_Trmv_external( FLA_UPPER_TRIANGULAR, FLA_CONJ_NO_TRANSPOSE, FLA_NONUNIT_DIAG,
440 // B22, a12t );
444 m_ahead,
445 B22, rs_B, cs_B,
446 a12t, cs_A );
447
448 /*------------------------------------------------------------*/
449
450 }
451
452 return FLA_SUCCESS;
453}
void bl1_zaxpyv(conj1_t conj, int n, dcomplex *alpha, dcomplex *x, int incx, dcomplex *y, int incy)
Definition bl1_axpyv.c:60
void bl1_zdot2s(conj1_t conj, int n, dcomplex *alpha, dcomplex *x, int incx, dcomplex *y, int incy, dcomplex *beta, dcomplex *rho)
Definition bl1_dot2s.c:70
bl1_zscals(beta, rho_yz)
void bl1_zhemv(uplo1_t uplo, conj1_t conj, int m, dcomplex *alpha, dcomplex *a, int a_rs, int a_cs, dcomplex *x, int incx, dcomplex *beta, dcomplex *y, int incy)
Definition bl1_hemv.c:134
void bl1_zscalv(conj1_t conj, int n, dcomplex *alpha, dcomplex *x, int incx)
Definition bl1_scalv.c:72
void bl1_ztrmv(uplo1_t uplo, trans1_t trans, diag1_t diag, int m, dcomplex *a, int a_rs, int a_cs, dcomplex *x, int incx)
Definition bl1_trmv.c:177

References bl1_zaxpyv(), bl1_zdot2s(), bl1_zhemv(), bl1_zscals(), bl1_zscalv(), bl1_ztrmv(), BLIS1_CONJ_NO_TRANSPOSE, BLIS1_CONJUGATE, BLIS1_NO_CONJUGATE, BLIS1_NONUNIT_DIAG, BLIS1_UPPER_TRIANGULAR, FLA_ONE, FLA_ONE_HALF, FLA_ZERO, and i.

Referenced by FLA_Eig_gest_nu_opt_var1().