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asym_wilson_clover_dslash_dagger_gt200_core.h
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1 // *** CUDA DSLASH DAGGER ***
2 
3 #define DSLASH_SHARED_FLOATS_PER_THREAD 0
4 
5 
6 #if ((CUDA_VERSION >= 4010) && (__COMPUTE_CAPABILITY__ >= 200)) // NVVM compiler
7 #define VOLATILE
8 #else // Open64 compiler
9 #define VOLATILE volatile
10 #endif
11 // input spinor
12 #ifdef SPINOR_DOUBLE
13 #define spinorFloat double
14 #define i00_re I0.x
15 #define i00_im I0.y
16 #define i01_re I1.x
17 #define i01_im I1.y
18 #define i02_re I2.x
19 #define i02_im I2.y
20 #define i10_re I3.x
21 #define i10_im I3.y
22 #define i11_re I4.x
23 #define i11_im I4.y
24 #define i12_re I5.x
25 #define i12_im I5.y
26 #define i20_re I6.x
27 #define i20_im I6.y
28 #define i21_re I7.x
29 #define i21_im I7.y
30 #define i22_re I8.x
31 #define i22_im I8.y
32 #define i30_re I9.x
33 #define i30_im I9.y
34 #define i31_re I10.x
35 #define i31_im I10.y
36 #define i32_re I11.x
37 #define i32_im I11.y
38 #define acc00_re accum0.x
39 #define acc00_im accum0.y
40 #define acc01_re accum1.x
41 #define acc01_im accum1.y
42 #define acc02_re accum2.x
43 #define acc02_im accum2.y
44 #define acc10_re accum3.x
45 #define acc10_im accum3.y
46 #define acc11_re accum4.x
47 #define acc11_im accum4.y
48 #define acc12_re accum5.x
49 #define acc12_im accum5.y
50 #define acc20_re accum6.x
51 #define acc20_im accum6.y
52 #define acc21_re accum7.x
53 #define acc21_im accum7.y
54 #define acc22_re accum8.x
55 #define acc22_im accum8.y
56 #define acc30_re accum9.x
57 #define acc30_im accum9.y
58 #define acc31_re accum10.x
59 #define acc31_im accum10.y
60 #define acc32_re accum11.x
61 #define acc32_im accum11.y
62 #else
63 #define spinorFloat float
64 #define i00_re I0.x
65 #define i00_im I0.y
66 #define i01_re I0.z
67 #define i01_im I0.w
68 #define i02_re I1.x
69 #define i02_im I1.y
70 #define i10_re I1.z
71 #define i10_im I1.w
72 #define i11_re I2.x
73 #define i11_im I2.y
74 #define i12_re I2.z
75 #define i12_im I2.w
76 #define i20_re I3.x
77 #define i20_im I3.y
78 #define i21_re I3.z
79 #define i21_im I3.w
80 #define i22_re I4.x
81 #define i22_im I4.y
82 #define i30_re I4.z
83 #define i30_im I4.w
84 #define i31_re I5.x
85 #define i31_im I5.y
86 #define i32_re I5.z
87 #define i32_im I5.w
88 #define acc00_re accum0.x
89 #define acc00_im accum0.y
90 #define acc01_re accum0.z
91 #define acc01_im accum0.w
92 #define acc02_re accum1.x
93 #define acc02_im accum1.y
94 #define acc10_re accum1.z
95 #define acc10_im accum1.w
96 #define acc11_re accum2.x
97 #define acc11_im accum2.y
98 #define acc12_re accum2.z
99 #define acc12_im accum2.w
100 #define acc20_re accum3.x
101 #define acc20_im accum3.y
102 #define acc21_re accum3.z
103 #define acc21_im accum3.w
104 #define acc22_re accum4.x
105 #define acc22_im accum4.y
106 #define acc30_re accum4.z
107 #define acc30_im accum4.w
108 #define acc31_re accum5.x
109 #define acc31_im accum5.y
110 #define acc32_re accum5.z
111 #define acc32_im accum5.w
112 #endif // SPINOR_DOUBLE
113 
114 // gauge link
115 #ifdef GAUGE_FLOAT2
116 #define g00_re G0.x
117 #define g00_im G0.y
118 #define g01_re G1.x
119 #define g01_im G1.y
120 #define g02_re G2.x
121 #define g02_im G2.y
122 #define g10_re G3.x
123 #define g10_im G3.y
124 #define g11_re G4.x
125 #define g11_im G4.y
126 #define g12_re G5.x
127 #define g12_im G5.y
128 #define g20_re G6.x
129 #define g20_im G6.y
130 #define g21_re G7.x
131 #define g21_im G7.y
132 #define g22_re G8.x
133 #define g22_im G8.y
134 
135 #else
136 #define g00_re G0.x
137 #define g00_im G0.y
138 #define g01_re G0.z
139 #define g01_im G0.w
140 #define g02_re G1.x
141 #define g02_im G1.y
142 #define g10_re G1.z
143 #define g10_im G1.w
144 #define g11_re G2.x
145 #define g11_im G2.y
146 #define g12_re G2.z
147 #define g12_im G2.w
148 #define g20_re G3.x
149 #define g20_im G3.y
150 #define g21_re G3.z
151 #define g21_im G3.w
152 #define g22_re G4.x
153 #define g22_im G4.y
154 
155 #endif // GAUGE_DOUBLE
156 
157 // conjugated gauge link
158 #define gT00_re (+g00_re)
159 #define gT00_im (-g00_im)
160 #define gT01_re (+g10_re)
161 #define gT01_im (-g10_im)
162 #define gT02_re (+g20_re)
163 #define gT02_im (-g20_im)
164 #define gT10_re (+g01_re)
165 #define gT10_im (-g01_im)
166 #define gT11_re (+g11_re)
167 #define gT11_im (-g11_im)
168 #define gT12_re (+g21_re)
169 #define gT12_im (-g21_im)
170 #define gT20_re (+g02_re)
171 #define gT20_im (-g02_im)
172 #define gT21_re (+g12_re)
173 #define gT21_im (-g12_im)
174 #define gT22_re (+g22_re)
175 #define gT22_im (-g22_im)
176 
177 // first chiral block of inverted clover term
178 #ifdef CLOVER_DOUBLE
179 #define c00_00_re C0.x
180 #define c01_01_re C0.y
181 #define c02_02_re C1.x
182 #define c10_10_re C1.y
183 #define c11_11_re C2.x
184 #define c12_12_re C2.y
185 #define c01_00_re C3.x
186 #define c01_00_im C3.y
187 #define c02_00_re C4.x
188 #define c02_00_im C4.y
189 #define c10_00_re C5.x
190 #define c10_00_im C5.y
191 #define c11_00_re C6.x
192 #define c11_00_im C6.y
193 #define c12_00_re C7.x
194 #define c12_00_im C7.y
195 #define c02_01_re C8.x
196 #define c02_01_im C8.y
197 #define c10_01_re C9.x
198 #define c10_01_im C9.y
199 #define c11_01_re C10.x
200 #define c11_01_im C10.y
201 #define c12_01_re C11.x
202 #define c12_01_im C11.y
203 #define c10_02_re C12.x
204 #define c10_02_im C12.y
205 #define c11_02_re C13.x
206 #define c11_02_im C13.y
207 #define c12_02_re C14.x
208 #define c12_02_im C14.y
209 #define c11_10_re C15.x
210 #define c11_10_im C15.y
211 #define c12_10_re C16.x
212 #define c12_10_im C16.y
213 #define c12_11_re C17.x
214 #define c12_11_im C17.y
215 #else
216 #define c00_00_re C0.x
217 #define c01_01_re C0.y
218 #define c02_02_re C0.z
219 #define c10_10_re C0.w
220 #define c11_11_re C1.x
221 #define c12_12_re C1.y
222 #define c01_00_re C1.z
223 #define c01_00_im C1.w
224 #define c02_00_re C2.x
225 #define c02_00_im C2.y
226 #define c10_00_re C2.z
227 #define c10_00_im C2.w
228 #define c11_00_re C3.x
229 #define c11_00_im C3.y
230 #define c12_00_re C3.z
231 #define c12_00_im C3.w
232 #define c02_01_re C4.x
233 #define c02_01_im C4.y
234 #define c10_01_re C4.z
235 #define c10_01_im C4.w
236 #define c11_01_re C5.x
237 #define c11_01_im C5.y
238 #define c12_01_re C5.z
239 #define c12_01_im C5.w
240 #define c10_02_re C6.x
241 #define c10_02_im C6.y
242 #define c11_02_re C6.z
243 #define c11_02_im C6.w
244 #define c12_02_re C7.x
245 #define c12_02_im C7.y
246 #define c11_10_re C7.z
247 #define c11_10_im C7.w
248 #define c12_10_re C8.x
249 #define c12_10_im C8.y
250 #define c12_11_re C8.z
251 #define c12_11_im C8.w
252 #endif // CLOVER_DOUBLE
253 
254 #define c00_01_re (+c01_00_re)
255 #define c00_01_im (-c01_00_im)
256 #define c00_02_re (+c02_00_re)
257 #define c00_02_im (-c02_00_im)
258 #define c01_02_re (+c02_01_re)
259 #define c01_02_im (-c02_01_im)
260 #define c00_10_re (+c10_00_re)
261 #define c00_10_im (-c10_00_im)
262 #define c01_10_re (+c10_01_re)
263 #define c01_10_im (-c10_01_im)
264 #define c02_10_re (+c10_02_re)
265 #define c02_10_im (-c10_02_im)
266 #define c00_11_re (+c11_00_re)
267 #define c00_11_im (-c11_00_im)
268 #define c01_11_re (+c11_01_re)
269 #define c01_11_im (-c11_01_im)
270 #define c02_11_re (+c11_02_re)
271 #define c02_11_im (-c11_02_im)
272 #define c10_11_re (+c11_10_re)
273 #define c10_11_im (-c11_10_im)
274 #define c00_12_re (+c12_00_re)
275 #define c00_12_im (-c12_00_im)
276 #define c01_12_re (+c12_01_re)
277 #define c01_12_im (-c12_01_im)
278 #define c02_12_re (+c12_02_re)
279 #define c02_12_im (-c12_02_im)
280 #define c10_12_re (+c12_10_re)
281 #define c10_12_im (-c12_10_im)
282 #define c11_12_re (+c12_11_re)
283 #define c11_12_im (-c12_11_im)
284 
285 // second chiral block of inverted clover term (reuses C0,...,C9)
286 #define c20_20_re c00_00_re
287 #define c21_20_re c01_00_re
288 #define c21_20_im c01_00_im
289 #define c22_20_re c02_00_re
290 #define c22_20_im c02_00_im
291 #define c30_20_re c10_00_re
292 #define c30_20_im c10_00_im
293 #define c31_20_re c11_00_re
294 #define c31_20_im c11_00_im
295 #define c32_20_re c12_00_re
296 #define c32_20_im c12_00_im
297 #define c20_21_re c00_01_re
298 #define c20_21_im c00_01_im
299 #define c21_21_re c01_01_re
300 #define c22_21_re c02_01_re
301 #define c22_21_im c02_01_im
302 #define c30_21_re c10_01_re
303 #define c30_21_im c10_01_im
304 #define c31_21_re c11_01_re
305 #define c31_21_im c11_01_im
306 #define c32_21_re c12_01_re
307 #define c32_21_im c12_01_im
308 #define c20_22_re c00_02_re
309 #define c20_22_im c00_02_im
310 #define c21_22_re c01_02_re
311 #define c21_22_im c01_02_im
312 #define c22_22_re c02_02_re
313 #define c30_22_re c10_02_re
314 #define c30_22_im c10_02_im
315 #define c31_22_re c11_02_re
316 #define c31_22_im c11_02_im
317 #define c32_22_re c12_02_re
318 #define c32_22_im c12_02_im
319 #define c20_30_re c00_10_re
320 #define c20_30_im c00_10_im
321 #define c21_30_re c01_10_re
322 #define c21_30_im c01_10_im
323 #define c22_30_re c02_10_re
324 #define c22_30_im c02_10_im
325 #define c30_30_re c10_10_re
326 #define c31_30_re c11_10_re
327 #define c31_30_im c11_10_im
328 #define c32_30_re c12_10_re
329 #define c32_30_im c12_10_im
330 #define c20_31_re c00_11_re
331 #define c20_31_im c00_11_im
332 #define c21_31_re c01_11_re
333 #define c21_31_im c01_11_im
334 #define c22_31_re c02_11_re
335 #define c22_31_im c02_11_im
336 #define c30_31_re c10_11_re
337 #define c30_31_im c10_11_im
338 #define c31_31_re c11_11_re
339 #define c32_31_re c12_11_re
340 #define c32_31_im c12_11_im
341 #define c20_32_re c00_12_re
342 #define c20_32_im c00_12_im
343 #define c21_32_re c01_12_re
344 #define c21_32_im c01_12_im
345 #define c22_32_re c02_12_re
346 #define c22_32_im c02_12_im
347 #define c30_32_re c10_12_re
348 #define c30_32_im c10_12_im
349 #define c31_32_re c11_12_re
350 #define c31_32_im c11_12_im
351 #define c32_32_re c12_12_re
352 
353 // output spinor
378 
379 #include "read_gauge.h"
380 #include "read_clover.h"
381 #include "io_spinor.h"
382 
383 int x1, x2, x3, x4;
384 int X;
385 
386 #if (defined MULTI_GPU) && (DD_PREC==2) // half precision
387 int sp_norm_idx;
388 #endif // MULTI_GPU half precision
389 
390 int sid;
391 
392 #ifdef MULTI_GPU
393 int face_idx;
394 if (kernel_type == INTERIOR_KERNEL) {
395 #endif
396 
397  sid = blockIdx.x*blockDim.x + threadIdx.x;
398  if (sid >= param.threads) return;
399 
400  // Inline by hand for the moment and assume even dimensions
401  coordsFromIndex<EVEN_X>(X, x1, x2, x3, x4, sid, param.parity);
402 
403  o00_re = 0; o00_im = 0;
404  o01_re = 0; o01_im = 0;
405  o02_re = 0; o02_im = 0;
406  o10_re = 0; o10_im = 0;
407  o11_re = 0; o11_im = 0;
408  o12_re = 0; o12_im = 0;
409  o20_re = 0; o20_im = 0;
410  o21_re = 0; o21_im = 0;
411  o22_re = 0; o22_im = 0;
412  o30_re = 0; o30_im = 0;
413  o31_re = 0; o31_im = 0;
414  o32_re = 0; o32_im = 0;
415 #ifdef DSLASH_CLOVER_XPAY
416 
417  READ_ACCUM(ACCUMTEX, sp_stride)
418 
419 #ifdef DSLASH_CLOVER
420 
421  // change to chiral basis
422  {
429  spinorFloat a30_re = acc00_re - acc20_re;
430  spinorFloat a30_im = acc00_im - acc20_im;
431 
434  acc20_re = a20_re; acc20_im = a20_im;
435  acc30_re = a30_re; acc30_im = a30_im;
436  }
437 
438  {
445  spinorFloat a31_re = acc01_re - acc21_re;
446  spinorFloat a31_im = acc01_im - acc21_im;
447 
450  acc21_re = a21_re; acc21_im = a21_im;
451  acc31_re = a31_re; acc31_im = a31_im;
452  }
453 
454  {
461  spinorFloat a32_re = acc02_re - acc22_re;
462  spinorFloat a32_im = acc02_im - acc22_im;
463 
466  acc22_re = a22_re; acc22_im = a22_im;
467  acc32_re = a32_re; acc32_im = a32_im;
468  }
469 
470  // apply first chiral block
471  {
473 
480 
481  a00_re += c00_00_re * acc00_re;
482  a00_im += c00_00_re * acc00_im;
483  a00_re += c00_01_re * acc01_re;
484  a00_re -= c00_01_im * acc01_im;
485  a00_im += c00_01_re * acc01_im;
486  a00_im += c00_01_im * acc01_re;
487  a00_re += c00_02_re * acc02_re;
488  a00_re -= c00_02_im * acc02_im;
489  a00_im += c00_02_re * acc02_im;
490  a00_im += c00_02_im * acc02_re;
491  a00_re += c00_10_re * acc10_re;
492  a00_re -= c00_10_im * acc10_im;
493  a00_im += c00_10_re * acc10_im;
494  a00_im += c00_10_im * acc10_re;
495  a00_re += c00_11_re * acc11_re;
496  a00_re -= c00_11_im * acc11_im;
497  a00_im += c00_11_re * acc11_im;
498  a00_im += c00_11_im * acc11_re;
499  a00_re += c00_12_re * acc12_re;
500  a00_re -= c00_12_im * acc12_im;
501  a00_im += c00_12_re * acc12_im;
502  a00_im += c00_12_im * acc12_re;
503 
504  a01_re += c01_00_re * acc00_re;
505  a01_re -= c01_00_im * acc00_im;
506  a01_im += c01_00_re * acc00_im;
507  a01_im += c01_00_im * acc00_re;
508  a01_re += c01_01_re * acc01_re;
509  a01_im += c01_01_re * acc01_im;
510  a01_re += c01_02_re * acc02_re;
511  a01_re -= c01_02_im * acc02_im;
512  a01_im += c01_02_re * acc02_im;
513  a01_im += c01_02_im * acc02_re;
514  a01_re += c01_10_re * acc10_re;
515  a01_re -= c01_10_im * acc10_im;
516  a01_im += c01_10_re * acc10_im;
517  a01_im += c01_10_im * acc10_re;
518  a01_re += c01_11_re * acc11_re;
519  a01_re -= c01_11_im * acc11_im;
520  a01_im += c01_11_re * acc11_im;
521  a01_im += c01_11_im * acc11_re;
522  a01_re += c01_12_re * acc12_re;
523  a01_re -= c01_12_im * acc12_im;
524  a01_im += c01_12_re * acc12_im;
525  a01_im += c01_12_im * acc12_re;
526 
527  a02_re += c02_00_re * acc00_re;
528  a02_re -= c02_00_im * acc00_im;
529  a02_im += c02_00_re * acc00_im;
530  a02_im += c02_00_im * acc00_re;
531  a02_re += c02_01_re * acc01_re;
532  a02_re -= c02_01_im * acc01_im;
533  a02_im += c02_01_re * acc01_im;
534  a02_im += c02_01_im * acc01_re;
535  a02_re += c02_02_re * acc02_re;
536  a02_im += c02_02_re * acc02_im;
537  a02_re += c02_10_re * acc10_re;
538  a02_re -= c02_10_im * acc10_im;
539  a02_im += c02_10_re * acc10_im;
540  a02_im += c02_10_im * acc10_re;
541  a02_re += c02_11_re * acc11_re;
542  a02_re -= c02_11_im * acc11_im;
543  a02_im += c02_11_re * acc11_im;
544  a02_im += c02_11_im * acc11_re;
545  a02_re += c02_12_re * acc12_re;
546  a02_re -= c02_12_im * acc12_im;
547  a02_im += c02_12_re * acc12_im;
548  a02_im += c02_12_im * acc12_re;
549 
550  a10_re += c10_00_re * acc00_re;
551  a10_re -= c10_00_im * acc00_im;
552  a10_im += c10_00_re * acc00_im;
553  a10_im += c10_00_im * acc00_re;
554  a10_re += c10_01_re * acc01_re;
555  a10_re -= c10_01_im * acc01_im;
556  a10_im += c10_01_re * acc01_im;
557  a10_im += c10_01_im * acc01_re;
558  a10_re += c10_02_re * acc02_re;
559  a10_re -= c10_02_im * acc02_im;
560  a10_im += c10_02_re * acc02_im;
561  a10_im += c10_02_im * acc02_re;
562  a10_re += c10_10_re * acc10_re;
563  a10_im += c10_10_re * acc10_im;
564  a10_re += c10_11_re * acc11_re;
565  a10_re -= c10_11_im * acc11_im;
566  a10_im += c10_11_re * acc11_im;
567  a10_im += c10_11_im * acc11_re;
568  a10_re += c10_12_re * acc12_re;
569  a10_re -= c10_12_im * acc12_im;
570  a10_im += c10_12_re * acc12_im;
571  a10_im += c10_12_im * acc12_re;
572 
573  a11_re += c11_00_re * acc00_re;
574  a11_re -= c11_00_im * acc00_im;
575  a11_im += c11_00_re * acc00_im;
576  a11_im += c11_00_im * acc00_re;
577  a11_re += c11_01_re * acc01_re;
578  a11_re -= c11_01_im * acc01_im;
579  a11_im += c11_01_re * acc01_im;
580  a11_im += c11_01_im * acc01_re;
581  a11_re += c11_02_re * acc02_re;
582  a11_re -= c11_02_im * acc02_im;
583  a11_im += c11_02_re * acc02_im;
584  a11_im += c11_02_im * acc02_re;
585  a11_re += c11_10_re * acc10_re;
586  a11_re -= c11_10_im * acc10_im;
587  a11_im += c11_10_re * acc10_im;
588  a11_im += c11_10_im * acc10_re;
589  a11_re += c11_11_re * acc11_re;
590  a11_im += c11_11_re * acc11_im;
591  a11_re += c11_12_re * acc12_re;
592  a11_re -= c11_12_im * acc12_im;
593  a11_im += c11_12_re * acc12_im;
594  a11_im += c11_12_im * acc12_re;
595 
596  a12_re += c12_00_re * acc00_re;
597  a12_re -= c12_00_im * acc00_im;
598  a12_im += c12_00_re * acc00_im;
599  a12_im += c12_00_im * acc00_re;
600  a12_re += c12_01_re * acc01_re;
601  a12_re -= c12_01_im * acc01_im;
602  a12_im += c12_01_re * acc01_im;
603  a12_im += c12_01_im * acc01_re;
604  a12_re += c12_02_re * acc02_re;
605  a12_re -= c12_02_im * acc02_im;
606  a12_im += c12_02_re * acc02_im;
607  a12_im += c12_02_im * acc02_re;
608  a12_re += c12_10_re * acc10_re;
609  a12_re -= c12_10_im * acc10_im;
610  a12_im += c12_10_re * acc10_im;
611  a12_im += c12_10_im * acc10_re;
612  a12_re += c12_11_re * acc11_re;
613  a12_re -= c12_11_im * acc11_im;
614  a12_im += c12_11_re * acc11_im;
615  a12_im += c12_11_im * acc11_re;
616  a12_re += c12_12_re * acc12_re;
617  a12_im += c12_12_re * acc12_im;
618 
619  acc00_re = a00_re; acc00_im = a00_im;
620  acc01_re = a01_re; acc01_im = a01_im;
621  acc02_re = a02_re; acc02_im = a02_im;
622  acc10_re = a10_re; acc10_im = a10_im;
623  acc11_re = a11_re; acc11_im = a11_im;
624  acc12_re = a12_re; acc12_im = a12_im;
625 
626  }
627 
628  // apply second chiral block
629  {
631 
635  spinorFloat a30_re = 0; spinorFloat a30_im = 0;
636  spinorFloat a31_re = 0; spinorFloat a31_im = 0;
637  spinorFloat a32_re = 0; spinorFloat a32_im = 0;
638 
639  a20_re += c20_20_re * acc20_re;
640  a20_im += c20_20_re * acc20_im;
641  a20_re += c20_21_re * acc21_re;
642  a20_re -= c20_21_im * acc21_im;
643  a20_im += c20_21_re * acc21_im;
644  a20_im += c20_21_im * acc21_re;
645  a20_re += c20_22_re * acc22_re;
646  a20_re -= c20_22_im * acc22_im;
647  a20_im += c20_22_re * acc22_im;
648  a20_im += c20_22_im * acc22_re;
649  a20_re += c20_30_re * acc30_re;
650  a20_re -= c20_30_im * acc30_im;
651  a20_im += c20_30_re * acc30_im;
652  a20_im += c20_30_im * acc30_re;
653  a20_re += c20_31_re * acc31_re;
654  a20_re -= c20_31_im * acc31_im;
655  a20_im += c20_31_re * acc31_im;
656  a20_im += c20_31_im * acc31_re;
657  a20_re += c20_32_re * acc32_re;
658  a20_re -= c20_32_im * acc32_im;
659  a20_im += c20_32_re * acc32_im;
660  a20_im += c20_32_im * acc32_re;
661 
662  a21_re += c21_20_re * acc20_re;
663  a21_re -= c21_20_im * acc20_im;
664  a21_im += c21_20_re * acc20_im;
665  a21_im += c21_20_im * acc20_re;
666  a21_re += c21_21_re * acc21_re;
667  a21_im += c21_21_re * acc21_im;
668  a21_re += c21_22_re * acc22_re;
669  a21_re -= c21_22_im * acc22_im;
670  a21_im += c21_22_re * acc22_im;
671  a21_im += c21_22_im * acc22_re;
672  a21_re += c21_30_re * acc30_re;
673  a21_re -= c21_30_im * acc30_im;
674  a21_im += c21_30_re * acc30_im;
675  a21_im += c21_30_im * acc30_re;
676  a21_re += c21_31_re * acc31_re;
677  a21_re -= c21_31_im * acc31_im;
678  a21_im += c21_31_re * acc31_im;
679  a21_im += c21_31_im * acc31_re;
680  a21_re += c21_32_re * acc32_re;
681  a21_re -= c21_32_im * acc32_im;
682  a21_im += c21_32_re * acc32_im;
683  a21_im += c21_32_im * acc32_re;
684 
685  a22_re += c22_20_re * acc20_re;
686  a22_re -= c22_20_im * acc20_im;
687  a22_im += c22_20_re * acc20_im;
688  a22_im += c22_20_im * acc20_re;
689  a22_re += c22_21_re * acc21_re;
690  a22_re -= c22_21_im * acc21_im;
691  a22_im += c22_21_re * acc21_im;
692  a22_im += c22_21_im * acc21_re;
693  a22_re += c22_22_re * acc22_re;
694  a22_im += c22_22_re * acc22_im;
695  a22_re += c22_30_re * acc30_re;
696  a22_re -= c22_30_im * acc30_im;
697  a22_im += c22_30_re * acc30_im;
698  a22_im += c22_30_im * acc30_re;
699  a22_re += c22_31_re * acc31_re;
700  a22_re -= c22_31_im * acc31_im;
701  a22_im += c22_31_re * acc31_im;
702  a22_im += c22_31_im * acc31_re;
703  a22_re += c22_32_re * acc32_re;
704  a22_re -= c22_32_im * acc32_im;
705  a22_im += c22_32_re * acc32_im;
706  a22_im += c22_32_im * acc32_re;
707 
708  a30_re += c30_20_re * acc20_re;
709  a30_re -= c30_20_im * acc20_im;
710  a30_im += c30_20_re * acc20_im;
711  a30_im += c30_20_im * acc20_re;
712  a30_re += c30_21_re * acc21_re;
713  a30_re -= c30_21_im * acc21_im;
714  a30_im += c30_21_re * acc21_im;
715  a30_im += c30_21_im * acc21_re;
716  a30_re += c30_22_re * acc22_re;
717  a30_re -= c30_22_im * acc22_im;
718  a30_im += c30_22_re * acc22_im;
719  a30_im += c30_22_im * acc22_re;
720  a30_re += c30_30_re * acc30_re;
721  a30_im += c30_30_re * acc30_im;
722  a30_re += c30_31_re * acc31_re;
723  a30_re -= c30_31_im * acc31_im;
724  a30_im += c30_31_re * acc31_im;
725  a30_im += c30_31_im * acc31_re;
726  a30_re += c30_32_re * acc32_re;
727  a30_re -= c30_32_im * acc32_im;
728  a30_im += c30_32_re * acc32_im;
729  a30_im += c30_32_im * acc32_re;
730 
731  a31_re += c31_20_re * acc20_re;
732  a31_re -= c31_20_im * acc20_im;
733  a31_im += c31_20_re * acc20_im;
734  a31_im += c31_20_im * acc20_re;
735  a31_re += c31_21_re * acc21_re;
736  a31_re -= c31_21_im * acc21_im;
737  a31_im += c31_21_re * acc21_im;
738  a31_im += c31_21_im * acc21_re;
739  a31_re += c31_22_re * acc22_re;
740  a31_re -= c31_22_im * acc22_im;
741  a31_im += c31_22_re * acc22_im;
742  a31_im += c31_22_im * acc22_re;
743  a31_re += c31_30_re * acc30_re;
744  a31_re -= c31_30_im * acc30_im;
745  a31_im += c31_30_re * acc30_im;
746  a31_im += c31_30_im * acc30_re;
747  a31_re += c31_31_re * acc31_re;
748  a31_im += c31_31_re * acc31_im;
749  a31_re += c31_32_re * acc32_re;
750  a31_re -= c31_32_im * acc32_im;
751  a31_im += c31_32_re * acc32_im;
752  a31_im += c31_32_im * acc32_re;
753 
754  a32_re += c32_20_re * acc20_re;
755  a32_re -= c32_20_im * acc20_im;
756  a32_im += c32_20_re * acc20_im;
757  a32_im += c32_20_im * acc20_re;
758  a32_re += c32_21_re * acc21_re;
759  a32_re -= c32_21_im * acc21_im;
760  a32_im += c32_21_re * acc21_im;
761  a32_im += c32_21_im * acc21_re;
762  a32_re += c32_22_re * acc22_re;
763  a32_re -= c32_22_im * acc22_im;
764  a32_im += c32_22_re * acc22_im;
765  a32_im += c32_22_im * acc22_re;
766  a32_re += c32_30_re * acc30_re;
767  a32_re -= c32_30_im * acc30_im;
768  a32_im += c32_30_re * acc30_im;
769  a32_im += c32_30_im * acc30_re;
770  a32_re += c32_31_re * acc31_re;
771  a32_re -= c32_31_im * acc31_im;
772  a32_im += c32_31_re * acc31_im;
773  a32_im += c32_31_im * acc31_re;
774  a32_re += c32_32_re * acc32_re;
775  a32_im += c32_32_re * acc32_im;
776 
777  acc20_re = a20_re; acc20_im = a20_im;
778  acc21_re = a21_re; acc21_im = a21_im;
779  acc22_re = a22_re; acc22_im = a22_im;
780  acc30_re = a30_re; acc30_im = a30_im;
781  acc31_re = a31_re; acc31_im = a31_im;
782  acc32_re = a32_re; acc32_im = a32_im;
783 
784  }
785 
786  // change back from chiral basis
787  // (note: required factor of 1/2 is included in clover term normalization)
788  {
795  spinorFloat a30_re = -acc00_re + acc20_re;
796  spinorFloat a30_im = -acc00_im + acc20_im;
797 
800  acc20_re = a20_re; acc20_im = a20_im;
801  acc30_re = a30_re; acc30_im = a30_im;
802  }
803 
804  {
811  spinorFloat a31_re = -acc01_re + acc21_re;
812  spinorFloat a31_im = -acc01_im + acc21_im;
813 
816  acc21_re = a21_re; acc21_im = a21_im;
817  acc31_re = a31_re; acc31_im = a31_im;
818  }
819 
820  {
827  spinorFloat a32_re = -acc02_re + acc22_re;
828  spinorFloat a32_im = -acc02_im + acc22_im;
829 
832  acc22_re = a22_re; acc22_im = a22_im;
833  acc32_re = a32_re; acc32_im = a32_im;
834  }
835 
836 #endif // DSLASH_CLOVER
837 
838  o00_re = acc00_re;
839  o00_im = acc00_im;
840  o01_re = acc01_re;
841  o01_im = acc01_im;
842  o02_re = acc02_re;
843  o02_im = acc02_im;
844  o10_re = acc10_re;
845  o10_im = acc10_im;
846  o11_re = acc11_re;
847  o11_im = acc11_im;
848  o12_re = acc12_re;
849  o12_im = acc12_im;
850  o20_re = acc20_re;
851  o20_im = acc20_im;
852  o21_re = acc21_re;
853  o21_im = acc21_im;
854  o22_re = acc22_re;
855  o22_im = acc22_im;
856  o30_re = acc30_re;
857  o30_im = acc30_im;
858  o31_re = acc31_re;
859  o31_im = acc31_im;
860  o32_re = acc32_re;
861  o32_im = acc32_im;
862 #endif // DSLASH_CLOVER_XPAY
863 
864 #ifdef MULTI_GPU
865 } else { // exterior kernel
866 
867  sid = blockIdx.x*blockDim.x + threadIdx.x;
868  if (sid >= param.threads) return;
869 
870  const int dim = static_cast<int>(kernel_type);
871  const int face_volume = (param.threads >> 1); // volume of one face
872  const int face_num = (sid >= face_volume); // is this thread updating face 0 or 1
873  face_idx = sid - face_num*face_volume; // index into the respective face
874 
875  // ghostOffset is scaled to include body (includes stride) and number of FloatN arrays (SPINOR_HOP)
876  // face_idx not sid since faces are spin projected and share the same volume index (modulo UP/DOWN reading)
877  //sp_idx = face_idx + param.ghostOffset[dim];
878 
879 #if (DD_PREC==2) // half precision
880  sp_norm_idx = sid + param.ghostNormOffset[static_cast<int>(kernel_type)];
881 #endif
882 
883  coordsFromFaceIndex<1>(X, sid, x1, x2, x3, x4, face_idx, face_volume, dim, face_num, param.parity);
884 
886 
887  o00_re = i00_re; o00_im = i00_im;
888  o01_re = i01_re; o01_im = i01_im;
889  o02_re = i02_re; o02_im = i02_im;
890  o10_re = i10_re; o10_im = i10_im;
891  o11_re = i11_re; o11_im = i11_im;
892  o12_re = i12_re; o12_im = i12_im;
893  o20_re = i20_re; o20_im = i20_im;
894  o21_re = i21_re; o21_im = i21_im;
895  o22_re = i22_re; o22_im = i22_im;
896  o30_re = i30_re; o30_im = i30_im;
897  o31_re = i31_re; o31_im = i31_im;
898  o32_re = i32_re; o32_im = i32_im;
899 }
900 #endif // MULTI_GPU
901 
902 
903 #ifdef MULTI_GPU
904 if ( (kernel_type == INTERIOR_KERNEL && (!param.ghostDim[0] || x1<X1m1)) ||
905  (kernel_type == EXTERIOR_KERNEL_X && x1==X1m1) )
906 #endif
907 {
908  // Projector P0+
909  // 1 0 0 i
910  // 0 1 i 0
911  // 0 -i 1 0
912  // -i 0 0 1
913 
914 #ifdef MULTI_GPU
915  const int sp_idx = (kernel_type == INTERIOR_KERNEL) ? (x1==X1m1 ? X-X1m1 : X+1) >> 1 :
916  face_idx + param.ghostOffset[static_cast<int>(kernel_type)];
917 #else
918  const int sp_idx = (x1==X1m1 ? X-X1m1 : X+1) >> 1;
919 #endif
920 
921  const int ga_idx = sid;
922 
929 
930 #ifdef MULTI_GPU
931  if (kernel_type == INTERIOR_KERNEL) {
932 #endif
933 
934  // read spinor from device memory
935  READ_SPINOR(SPINORTEX, sp_stride, sp_idx, sp_idx);
936 
937  // project spinor into half spinors
938  a0_re = +i00_re-i30_im;
939  a0_im = +i00_im+i30_re;
940  a1_re = +i01_re-i31_im;
941  a1_im = +i01_im+i31_re;
942  a2_re = +i02_re-i32_im;
943  a2_im = +i02_im+i32_re;
944  b0_re = +i10_re-i20_im;
945  b0_im = +i10_im+i20_re;
946  b1_re = +i11_re-i21_im;
947  b1_im = +i11_im+i21_re;
948  b2_re = +i12_re-i22_im;
949  b2_im = +i12_im+i22_re;
950 
951 #ifdef MULTI_GPU
952  } else {
953 
954  const int sp_stride_pad = ghostFace[static_cast<int>(kernel_type)];
955 
956  // read half spinor from device memory
957  READ_HALF_SPINOR(SPINORTEX, sp_stride_pad, sp_idx + (SPINOR_HOP/2)*sp_stride_pad, sp_norm_idx);
958 
959  a0_re = i00_re; a0_im = i00_im;
960  a1_re = i01_re; a1_im = i01_im;
961  a2_re = i02_re; a2_im = i02_im;
962  b0_re = i10_re; b0_im = i10_im;
963  b1_re = i11_re; b1_im = i11_im;
964  b2_re = i12_re; b2_im = i12_im;
965 
966  }
967 #endif // MULTI_GPU
968 
969  // read gauge matrix from device memory
970  READ_GAUGE_MATRIX(G, GAUGE0TEX, 0, ga_idx, ga_stride);
971 
972  // reconstruct gauge matrix
974 
975  // multiply row 0
977  A0_re += g00_re * a0_re;
978  A0_re -= g00_im * a0_im;
979  A0_re += g01_re * a1_re;
980  A0_re -= g01_im * a1_im;
981  A0_re += g02_re * a2_re;
982  A0_re -= g02_im * a2_im;
984  A0_im += g00_re * a0_im;
985  A0_im += g00_im * a0_re;
986  A0_im += g01_re * a1_im;
987  A0_im += g01_im * a1_re;
988  A0_im += g02_re * a2_im;
989  A0_im += g02_im * a2_re;
991  B0_re += g00_re * b0_re;
992  B0_re -= g00_im * b0_im;
993  B0_re += g01_re * b1_re;
994  B0_re -= g01_im * b1_im;
995  B0_re += g02_re * b2_re;
996  B0_re -= g02_im * b2_im;
998  B0_im += g00_re * b0_im;
999  B0_im += g00_im * b0_re;
1000  B0_im += g01_re * b1_im;
1001  B0_im += g01_im * b1_re;
1002  B0_im += g02_re * b2_im;
1003  B0_im += g02_im * b2_re;
1004 
1005  // multiply row 1
1007  A1_re += g10_re * a0_re;
1008  A1_re -= g10_im * a0_im;
1009  A1_re += g11_re * a1_re;
1010  A1_re -= g11_im * a1_im;
1011  A1_re += g12_re * a2_re;
1012  A1_re -= g12_im * a2_im;
1014  A1_im += g10_re * a0_im;
1015  A1_im += g10_im * a0_re;
1016  A1_im += g11_re * a1_im;
1017  A1_im += g11_im * a1_re;
1018  A1_im += g12_re * a2_im;
1019  A1_im += g12_im * a2_re;
1021  B1_re += g10_re * b0_re;
1022  B1_re -= g10_im * b0_im;
1023  B1_re += g11_re * b1_re;
1024  B1_re -= g11_im * b1_im;
1025  B1_re += g12_re * b2_re;
1026  B1_re -= g12_im * b2_im;
1028  B1_im += g10_re * b0_im;
1029  B1_im += g10_im * b0_re;
1030  B1_im += g11_re * b1_im;
1031  B1_im += g11_im * b1_re;
1032  B1_im += g12_re * b2_im;
1033  B1_im += g12_im * b2_re;
1034 
1035  // multiply row 2
1037  A2_re += g20_re * a0_re;
1038  A2_re -= g20_im * a0_im;
1039  A2_re += g21_re * a1_re;
1040  A2_re -= g21_im * a1_im;
1041  A2_re += g22_re * a2_re;
1042  A2_re -= g22_im * a2_im;
1044  A2_im += g20_re * a0_im;
1045  A2_im += g20_im * a0_re;
1046  A2_im += g21_re * a1_im;
1047  A2_im += g21_im * a1_re;
1048  A2_im += g22_re * a2_im;
1049  A2_im += g22_im * a2_re;
1051  B2_re += g20_re * b0_re;
1052  B2_re -= g20_im * b0_im;
1053  B2_re += g21_re * b1_re;
1054  B2_re -= g21_im * b1_im;
1055  B2_re += g22_re * b2_re;
1056  B2_re -= g22_im * b2_im;
1058  B2_im += g20_re * b0_im;
1059  B2_im += g20_im * b0_re;
1060  B2_im += g21_re * b1_im;
1061  B2_im += g21_im * b1_re;
1062  B2_im += g22_re * b2_im;
1063  B2_im += g22_im * b2_re;
1064 
1065  o00_re += a*A0_re;
1066  o00_im += a*A0_im;
1067  o10_re += a*B0_re;
1068  o10_im += a*B0_im;
1069  o20_re += a*B0_im;
1070  o20_im -= a*B0_re;
1071  o30_re += a*A0_im;
1072  o30_im -= a*A0_re;
1073 
1074  o01_re += a*A1_re;
1075  o01_im += a*A1_im;
1076  o11_re += a*B1_re;
1077  o11_im += a*B1_im;
1078  o21_re += a*B1_im;
1079  o21_im -= a*B1_re;
1080  o31_re += a*A1_im;
1081  o31_im -= a*A1_re;
1082 
1083  o02_re += a*A2_re;
1084  o02_im += a*A2_im;
1085  o12_re += a*B2_re;
1086  o12_im += a*B2_im;
1087  o22_re += a*B2_im;
1088  o22_im -= a*B2_re;
1089  o32_re += a*A2_im;
1090  o32_im -= a*A2_re;
1091 
1092 }
1093 
1094 #ifdef MULTI_GPU
1095 if ( (kernel_type == INTERIOR_KERNEL && (!param.ghostDim[0] || x1>0)) ||
1096  (kernel_type == EXTERIOR_KERNEL_X && x1==0) )
1097 #endif
1098 {
1099  // Projector P0-
1100  // 1 0 0 -i
1101  // 0 1 -i 0
1102  // 0 i 1 0
1103  // i 0 0 1
1104 
1105 #ifdef MULTI_GPU
1106  const int sp_idx = (kernel_type == INTERIOR_KERNEL) ? (x1==0 ? X+X1m1 : X-1) >> 1 :
1107  face_idx + param.ghostOffset[static_cast<int>(kernel_type)];
1108 #else
1109  const int sp_idx = (x1==0 ? X+X1m1 : X-1) >> 1;
1110 #endif
1111 
1112 #ifdef MULTI_GPU
1113  const int ga_idx = ((kernel_type == INTERIOR_KERNEL) ? sp_idx : Vh+face_idx);
1114 #else
1115  const int ga_idx = sp_idx;
1116 #endif
1117 
1124 
1125 #ifdef MULTI_GPU
1126  if (kernel_type == INTERIOR_KERNEL) {
1127 #endif
1128 
1129  // read spinor from device memory
1130  READ_SPINOR(SPINORTEX, sp_stride, sp_idx, sp_idx);
1131 
1132  // project spinor into half spinors
1133  a0_re = +i00_re+i30_im;
1134  a0_im = +i00_im-i30_re;
1135  a1_re = +i01_re+i31_im;
1136  a1_im = +i01_im-i31_re;
1137  a2_re = +i02_re+i32_im;
1138  a2_im = +i02_im-i32_re;
1139  b0_re = +i10_re+i20_im;
1140  b0_im = +i10_im-i20_re;
1141  b1_re = +i11_re+i21_im;
1142  b1_im = +i11_im-i21_re;
1143  b2_re = +i12_re+i22_im;
1144  b2_im = +i12_im-i22_re;
1145 
1146 #ifdef MULTI_GPU
1147  } else {
1148 
1149  const int sp_stride_pad = ghostFace[static_cast<int>(kernel_type)];
1150 
1151  // read half spinor from device memory
1152  READ_HALF_SPINOR(SPINORTEX, sp_stride_pad, sp_idx, sp_norm_idx);
1153 
1154  a0_re = i00_re; a0_im = i00_im;
1155  a1_re = i01_re; a1_im = i01_im;
1156  a2_re = i02_re; a2_im = i02_im;
1157  b0_re = i10_re; b0_im = i10_im;
1158  b1_re = i11_re; b1_im = i11_im;
1159  b2_re = i12_re; b2_im = i12_im;
1160 
1161  }
1162 #endif // MULTI_GPU
1163 
1164  // read gauge matrix from device memory
1165  READ_GAUGE_MATRIX(G, GAUGE1TEX, 1, ga_idx, ga_stride);
1166 
1167  // reconstruct gauge matrix
1169 
1170  // multiply row 0
1171  spinorFloat A0_re = 0;
1172  A0_re += gT00_re * a0_re;
1173  A0_re -= gT00_im * a0_im;
1174  A0_re += gT01_re * a1_re;
1175  A0_re -= gT01_im * a1_im;
1176  A0_re += gT02_re * a2_re;
1177  A0_re -= gT02_im * a2_im;
1178  spinorFloat A0_im = 0;
1179  A0_im += gT00_re * a0_im;
1180  A0_im += gT00_im * a0_re;
1181  A0_im += gT01_re * a1_im;
1182  A0_im += gT01_im * a1_re;
1183  A0_im += gT02_re * a2_im;
1184  A0_im += gT02_im * a2_re;
1185  spinorFloat B0_re = 0;
1186  B0_re += gT00_re * b0_re;
1187  B0_re -= gT00_im * b0_im;
1188  B0_re += gT01_re * b1_re;
1189  B0_re -= gT01_im * b1_im;
1190  B0_re += gT02_re * b2_re;
1191  B0_re -= gT02_im * b2_im;
1192  spinorFloat B0_im = 0;
1193  B0_im += gT00_re * b0_im;
1194  B0_im += gT00_im * b0_re;
1195  B0_im += gT01_re * b1_im;
1196  B0_im += gT01_im * b1_re;
1197  B0_im += gT02_re * b2_im;
1198  B0_im += gT02_im * b2_re;
1199 
1200  // multiply row 1
1201  spinorFloat A1_re = 0;
1202  A1_re += gT10_re * a0_re;
1203  A1_re -= gT10_im * a0_im;
1204  A1_re += gT11_re * a1_re;
1205  A1_re -= gT11_im * a1_im;
1206  A1_re += gT12_re * a2_re;
1207  A1_re -= gT12_im * a2_im;
1208  spinorFloat A1_im = 0;
1209  A1_im += gT10_re * a0_im;
1210  A1_im += gT10_im * a0_re;
1211  A1_im += gT11_re * a1_im;
1212  A1_im += gT11_im * a1_re;
1213  A1_im += gT12_re * a2_im;
1214  A1_im += gT12_im * a2_re;
1215  spinorFloat B1_re = 0;
1216  B1_re += gT10_re * b0_re;
1217  B1_re -= gT10_im * b0_im;
1218  B1_re += gT11_re * b1_re;
1219  B1_re -= gT11_im * b1_im;
1220  B1_re += gT12_re * b2_re;
1221  B1_re -= gT12_im * b2_im;
1222  spinorFloat B1_im = 0;
1223  B1_im += gT10_re * b0_im;
1224  B1_im += gT10_im * b0_re;
1225  B1_im += gT11_re * b1_im;
1226  B1_im += gT11_im * b1_re;
1227  B1_im += gT12_re * b2_im;
1228  B1_im += gT12_im * b2_re;
1229 
1230  // multiply row 2
1231  spinorFloat A2_re = 0;
1232  A2_re += gT20_re * a0_re;
1233  A2_re -= gT20_im * a0_im;
1234  A2_re += gT21_re * a1_re;
1235  A2_re -= gT21_im * a1_im;
1236  A2_re += gT22_re * a2_re;
1237  A2_re -= gT22_im * a2_im;
1238  spinorFloat A2_im = 0;
1239  A2_im += gT20_re * a0_im;
1240  A2_im += gT20_im * a0_re;
1241  A2_im += gT21_re * a1_im;
1242  A2_im += gT21_im * a1_re;
1243  A2_im += gT22_re * a2_im;
1244  A2_im += gT22_im * a2_re;
1245  spinorFloat B2_re = 0;
1246  B2_re += gT20_re * b0_re;
1247  B2_re -= gT20_im * b0_im;
1248  B2_re += gT21_re * b1_re;
1249  B2_re -= gT21_im * b1_im;
1250  B2_re += gT22_re * b2_re;
1251  B2_re -= gT22_im * b2_im;
1252  spinorFloat B2_im = 0;
1253  B2_im += gT20_re * b0_im;
1254  B2_im += gT20_im * b0_re;
1255  B2_im += gT21_re * b1_im;
1256  B2_im += gT21_im * b1_re;
1257  B2_im += gT22_re * b2_im;
1258  B2_im += gT22_im * b2_re;
1259 
1260  o00_re += a*A0_re;
1261  o00_im += a*A0_im;
1262  o10_re += a*B0_re;
1263  o10_im += a*B0_im;
1264  o20_re -= a*B0_im;
1265  o20_im += a*B0_re;
1266  o30_re -= a*A0_im;
1267  o30_im += a*A0_re;
1268 
1269  o01_re += a*A1_re;
1270  o01_im += a*A1_im;
1271  o11_re += a*B1_re;
1272  o11_im += a*B1_im;
1273  o21_re -= a*B1_im;
1274  o21_im += a*B1_re;
1275  o31_re -= a*A1_im;
1276  o31_im += a*A1_re;
1277 
1278  o02_re += a*A2_re;
1279  o02_im += a*A2_im;
1280  o12_re += a*B2_re;
1281  o12_im += a*B2_im;
1282  o22_re -= a*B2_im;
1283  o22_im += a*B2_re;
1284  o32_re -= a*A2_im;
1285  o32_im += a*A2_re;
1286 
1287 }
1288 
1289 #ifdef MULTI_GPU
1290 if ( (kernel_type == INTERIOR_KERNEL && (!param.ghostDim[1] || x2<X2m1)) ||
1291  (kernel_type == EXTERIOR_KERNEL_Y && x2==X2m1) )
1292 #endif
1293 {
1294  // Projector P1+
1295  // 1 0 0 1
1296  // 0 1 -1 0
1297  // 0 -1 1 0
1298  // 1 0 0 1
1299 
1300 #ifdef MULTI_GPU
1301  const int sp_idx = (kernel_type == INTERIOR_KERNEL) ? (x2==X2m1 ? X-X2X1mX1 : X+X1) >> 1 :
1302  face_idx + param.ghostOffset[static_cast<int>(kernel_type)];
1303 #else
1304  const int sp_idx = (x2==X2m1 ? X-X2X1mX1 : X+X1) >> 1;
1305 #endif
1306 
1307  const int ga_idx = sid;
1308 
1315 
1316 #ifdef MULTI_GPU
1317  if (kernel_type == INTERIOR_KERNEL) {
1318 #endif
1319 
1320  // read spinor from device memory
1321  READ_SPINOR(SPINORTEX, sp_stride, sp_idx, sp_idx);
1322 
1323  // project spinor into half spinors
1324  a0_re = +i00_re+i30_re;
1325  a0_im = +i00_im+i30_im;
1326  a1_re = +i01_re+i31_re;
1327  a1_im = +i01_im+i31_im;
1328  a2_re = +i02_re+i32_re;
1329  a2_im = +i02_im+i32_im;
1330  b0_re = +i10_re-i20_re;
1331  b0_im = +i10_im-i20_im;
1332  b1_re = +i11_re-i21_re;
1333  b1_im = +i11_im-i21_im;
1334  b2_re = +i12_re-i22_re;
1335  b2_im = +i12_im-i22_im;
1336 
1337 #ifdef MULTI_GPU
1338  } else {
1339 
1340  const int sp_stride_pad = ghostFace[static_cast<int>(kernel_type)];
1341 
1342  // read half spinor from device memory
1343  READ_HALF_SPINOR(SPINORTEX, sp_stride_pad, sp_idx + (SPINOR_HOP/2)*sp_stride_pad, sp_norm_idx);
1344 
1345  a0_re = i00_re; a0_im = i00_im;
1346  a1_re = i01_re; a1_im = i01_im;
1347  a2_re = i02_re; a2_im = i02_im;
1348  b0_re = i10_re; b0_im = i10_im;
1349  b1_re = i11_re; b1_im = i11_im;
1350  b2_re = i12_re; b2_im = i12_im;
1351 
1352  }
1353 #endif // MULTI_GPU
1354 
1355  // read gauge matrix from device memory
1356  READ_GAUGE_MATRIX(G, GAUGE0TEX, 2, ga_idx, ga_stride);
1357 
1358  // reconstruct gauge matrix
1360 
1361  // multiply row 0
1362  spinorFloat A0_re = 0;
1363  A0_re += g00_re * a0_re;
1364  A0_re -= g00_im * a0_im;
1365  A0_re += g01_re * a1_re;
1366  A0_re -= g01_im * a1_im;
1367  A0_re += g02_re * a2_re;
1368  A0_re -= g02_im * a2_im;
1369  spinorFloat A0_im = 0;
1370  A0_im += g00_re * a0_im;
1371  A0_im += g00_im * a0_re;
1372  A0_im += g01_re * a1_im;
1373  A0_im += g01_im * a1_re;
1374  A0_im += g02_re * a2_im;
1375  A0_im += g02_im * a2_re;
1376  spinorFloat B0_re = 0;
1377  B0_re += g00_re * b0_re;
1378  B0_re -= g00_im * b0_im;
1379  B0_re += g01_re * b1_re;
1380  B0_re -= g01_im * b1_im;
1381  B0_re += g02_re * b2_re;
1382  B0_re -= g02_im * b2_im;
1383  spinorFloat B0_im = 0;
1384  B0_im += g00_re * b0_im;
1385  B0_im += g00_im * b0_re;
1386  B0_im += g01_re * b1_im;
1387  B0_im += g01_im * b1_re;
1388  B0_im += g02_re * b2_im;
1389  B0_im += g02_im * b2_re;
1390 
1391  // multiply row 1
1392  spinorFloat A1_re = 0;
1393  A1_re += g10_re * a0_re;
1394  A1_re -= g10_im * a0_im;
1395  A1_re += g11_re * a1_re;
1396  A1_re -= g11_im * a1_im;
1397  A1_re += g12_re * a2_re;
1398  A1_re -= g12_im * a2_im;
1399  spinorFloat A1_im = 0;
1400  A1_im += g10_re * a0_im;
1401  A1_im += g10_im * a0_re;
1402  A1_im += g11_re * a1_im;
1403  A1_im += g11_im * a1_re;
1404  A1_im += g12_re * a2_im;
1405  A1_im += g12_im * a2_re;
1406  spinorFloat B1_re = 0;
1407  B1_re += g10_re * b0_re;
1408  B1_re -= g10_im * b0_im;
1409  B1_re += g11_re * b1_re;
1410  B1_re -= g11_im * b1_im;
1411  B1_re += g12_re * b2_re;
1412  B1_re -= g12_im * b2_im;
1413  spinorFloat B1_im = 0;
1414  B1_im += g10_re * b0_im;
1415  B1_im += g10_im * b0_re;
1416  B1_im += g11_re * b1_im;
1417  B1_im += g11_im * b1_re;
1418  B1_im += g12_re * b2_im;
1419  B1_im += g12_im * b2_re;
1420 
1421  // multiply row 2
1422  spinorFloat A2_re = 0;
1423  A2_re += g20_re * a0_re;
1424  A2_re -= g20_im * a0_im;
1425  A2_re += g21_re * a1_re;
1426  A2_re -= g21_im * a1_im;
1427  A2_re += g22_re * a2_re;
1428  A2_re -= g22_im * a2_im;
1429  spinorFloat A2_im = 0;
1430  A2_im += g20_re * a0_im;
1431  A2_im += g20_im * a0_re;
1432  A2_im += g21_re * a1_im;
1433  A2_im += g21_im * a1_re;
1434  A2_im += g22_re * a2_im;
1435  A2_im += g22_im * a2_re;
1436  spinorFloat B2_re = 0;
1437  B2_re += g20_re * b0_re;
1438  B2_re -= g20_im * b0_im;
1439  B2_re += g21_re * b1_re;
1440  B2_re -= g21_im * b1_im;
1441  B2_re += g22_re * b2_re;
1442  B2_re -= g22_im * b2_im;
1443  spinorFloat B2_im = 0;
1444  B2_im += g20_re * b0_im;
1445  B2_im += g20_im * b0_re;
1446  B2_im += g21_re * b1_im;
1447  B2_im += g21_im * b1_re;
1448  B2_im += g22_re * b2_im;
1449  B2_im += g22_im * b2_re;
1450 
1451  o00_re += a*A0_re;
1452  o00_im += a*A0_im;
1453  o10_re += a*B0_re;
1454  o10_im += a*B0_im;
1455  o20_re -= a*B0_re;
1456  o20_im -= a*B0_im;
1457  o30_re += a*A0_re;
1458  o30_im += a*A0_im;
1459 
1460  o01_re += a*A1_re;
1461  o01_im += a*A1_im;
1462  o11_re += a*B1_re;
1463  o11_im += a*B1_im;
1464  o21_re -= a*B1_re;
1465  o21_im -= a*B1_im;
1466  o31_re += a*A1_re;
1467  o31_im += a*A1_im;
1468 
1469  o02_re += a*A2_re;
1470  o02_im += a*A2_im;
1471  o12_re += a*B2_re;
1472  o12_im += a*B2_im;
1473  o22_re -= a*B2_re;
1474  o22_im -= a*B2_im;
1475  o32_re += a*A2_re;
1476  o32_im += a*A2_im;
1477 
1478 }
1479 
1480 #ifdef MULTI_GPU
1481 if ( (kernel_type == INTERIOR_KERNEL && (!param.ghostDim[1] || x2>0)) ||
1482  (kernel_type == EXTERIOR_KERNEL_Y && x2==0) )
1483 #endif
1484 {
1485  // Projector P1-
1486  // 1 0 0 -1
1487  // 0 1 1 0
1488  // 0 1 1 0
1489  // -1 0 0 1
1490 
1491 #ifdef MULTI_GPU
1492  const int sp_idx = (kernel_type == INTERIOR_KERNEL) ? (x2==0 ? X+X2X1mX1 : X-X1) >> 1 :
1493  face_idx + param.ghostOffset[static_cast<int>(kernel_type)];
1494 #else
1495  const int sp_idx = (x2==0 ? X+X2X1mX1 : X-X1) >> 1;
1496 #endif
1497 
1498 #ifdef MULTI_GPU
1499  const int ga_idx = ((kernel_type == INTERIOR_KERNEL) ? sp_idx : Vh+face_idx);
1500 #else
1501  const int ga_idx = sp_idx;
1502 #endif
1503 
1510 
1511 #ifdef MULTI_GPU
1512  if (kernel_type == INTERIOR_KERNEL) {
1513 #endif
1514 
1515  // read spinor from device memory
1516  READ_SPINOR(SPINORTEX, sp_stride, sp_idx, sp_idx);
1517 
1518  // project spinor into half spinors
1519  a0_re = +i00_re-i30_re;
1520  a0_im = +i00_im-i30_im;
1521  a1_re = +i01_re-i31_re;
1522  a1_im = +i01_im-i31_im;
1523  a2_re = +i02_re-i32_re;
1524  a2_im = +i02_im-i32_im;
1525  b0_re = +i10_re+i20_re;
1526  b0_im = +i10_im+i20_im;
1527  b1_re = +i11_re+i21_re;
1528  b1_im = +i11_im+i21_im;
1529  b2_re = +i12_re+i22_re;
1530  b2_im = +i12_im+i22_im;
1531 
1532 #ifdef MULTI_GPU
1533  } else {
1534 
1535  const int sp_stride_pad = ghostFace[static_cast<int>(kernel_type)];
1536 
1537  // read half spinor from device memory
1538  READ_HALF_SPINOR(SPINORTEX, sp_stride_pad, sp_idx, sp_norm_idx);
1539 
1540  a0_re = i00_re; a0_im = i00_im;
1541  a1_re = i01_re; a1_im = i01_im;
1542  a2_re = i02_re; a2_im = i02_im;
1543  b0_re = i10_re; b0_im = i10_im;
1544  b1_re = i11_re; b1_im = i11_im;
1545  b2_re = i12_re; b2_im = i12_im;
1546 
1547  }
1548 #endif // MULTI_GPU
1549 
1550  // read gauge matrix from device memory
1551  READ_GAUGE_MATRIX(G, GAUGE1TEX, 3, ga_idx, ga_stride);
1552 
1553  // reconstruct gauge matrix
1555 
1556  // multiply row 0
1557  spinorFloat A0_re = 0;
1558  A0_re += gT00_re * a0_re;
1559  A0_re -= gT00_im * a0_im;
1560  A0_re += gT01_re * a1_re;
1561  A0_re -= gT01_im * a1_im;
1562  A0_re += gT02_re * a2_re;
1563  A0_re -= gT02_im * a2_im;
1564  spinorFloat A0_im = 0;
1565  A0_im += gT00_re * a0_im;
1566  A0_im += gT00_im * a0_re;
1567  A0_im += gT01_re * a1_im;
1568  A0_im += gT01_im * a1_re;
1569  A0_im += gT02_re * a2_im;
1570  A0_im += gT02_im * a2_re;
1571  spinorFloat B0_re = 0;
1572  B0_re += gT00_re * b0_re;
1573  B0_re -= gT00_im * b0_im;
1574  B0_re += gT01_re * b1_re;
1575  B0_re -= gT01_im * b1_im;
1576  B0_re += gT02_re * b2_re;
1577  B0_re -= gT02_im * b2_im;
1578  spinorFloat B0_im = 0;
1579  B0_im += gT00_re * b0_im;
1580  B0_im += gT00_im * b0_re;
1581  B0_im += gT01_re * b1_im;
1582  B0_im += gT01_im * b1_re;
1583  B0_im += gT02_re * b2_im;
1584  B0_im += gT02_im * b2_re;
1585 
1586  // multiply row 1
1587  spinorFloat A1_re = 0;
1588  A1_re += gT10_re * a0_re;
1589  A1_re -= gT10_im * a0_im;
1590  A1_re += gT11_re * a1_re;
1591  A1_re -= gT11_im * a1_im;
1592  A1_re += gT12_re * a2_re;
1593  A1_re -= gT12_im * a2_im;
1594  spinorFloat A1_im = 0;
1595  A1_im += gT10_re * a0_im;
1596  A1_im += gT10_im * a0_re;
1597  A1_im += gT11_re * a1_im;
1598  A1_im += gT11_im * a1_re;
1599  A1_im += gT12_re * a2_im;
1600  A1_im += gT12_im * a2_re;
1601  spinorFloat B1_re = 0;
1602  B1_re += gT10_re * b0_re;
1603  B1_re -= gT10_im * b0_im;
1604  B1_re += gT11_re * b1_re;
1605  B1_re -= gT11_im * b1_im;
1606  B1_re += gT12_re * b2_re;
1607  B1_re -= gT12_im * b2_im;
1608  spinorFloat B1_im = 0;
1609  B1_im += gT10_re * b0_im;
1610  B1_im += gT10_im * b0_re;
1611  B1_im += gT11_re * b1_im;
1612  B1_im += gT11_im * b1_re;
1613  B1_im += gT12_re * b2_im;
1614  B1_im += gT12_im * b2_re;
1615 
1616  // multiply row 2
1617  spinorFloat A2_re = 0;
1618  A2_re += gT20_re * a0_re;
1619  A2_re -= gT20_im * a0_im;
1620  A2_re += gT21_re * a1_re;
1621  A2_re -= gT21_im * a1_im;
1622  A2_re += gT22_re * a2_re;
1623  A2_re -= gT22_im * a2_im;
1624  spinorFloat A2_im = 0;
1625  A2_im += gT20_re * a0_im;
1626  A2_im += gT20_im * a0_re;
1627  A2_im += gT21_re * a1_im;
1628  A2_im += gT21_im * a1_re;
1629  A2_im += gT22_re * a2_im;
1630  A2_im += gT22_im * a2_re;
1631  spinorFloat B2_re = 0;
1632  B2_re += gT20_re * b0_re;
1633  B2_re -= gT20_im * b0_im;
1634  B2_re += gT21_re * b1_re;
1635  B2_re -= gT21_im * b1_im;
1636  B2_re += gT22_re * b2_re;
1637  B2_re -= gT22_im * b2_im;
1638  spinorFloat B2_im = 0;
1639  B2_im += gT20_re * b0_im;
1640  B2_im += gT20_im * b0_re;
1641  B2_im += gT21_re * b1_im;
1642  B2_im += gT21_im * b1_re;
1643  B2_im += gT22_re * b2_im;
1644  B2_im += gT22_im * b2_re;
1645 
1646  o00_re += a*A0_re;
1647  o00_im += a*A0_im;
1648  o10_re += a*B0_re;
1649  o10_im += a*B0_im;
1650  o20_re += a*B0_re;
1651  o20_im += a*B0_im;
1652  o30_re -= a*A0_re;
1653  o30_im -= a*A0_im;
1654 
1655  o01_re += a*A1_re;
1656  o01_im += a*A1_im;
1657  o11_re += a*B1_re;
1658  o11_im += a*B1_im;
1659  o21_re += a*B1_re;
1660  o21_im += a*B1_im;
1661  o31_re -= a*A1_re;
1662  o31_im -= a*A1_im;
1663 
1664  o02_re += a*A2_re;
1665  o02_im += a*A2_im;
1666  o12_re += a*B2_re;
1667  o12_im += a*B2_im;
1668  o22_re += a*B2_re;
1669  o22_im += a*B2_im;
1670  o32_re -= a*A2_re;
1671  o32_im -= a*A2_im;
1672 
1673 }
1674 
1675 #ifdef MULTI_GPU
1676 if ( (kernel_type == INTERIOR_KERNEL && (!param.ghostDim[2] || x3<X3m1)) ||
1677  (kernel_type == EXTERIOR_KERNEL_Z && x3==X3m1) )
1678 #endif
1679 {
1680  // Projector P2+
1681  // 1 0 i 0
1682  // 0 1 0 -i
1683  // -i 0 1 0
1684  // 0 i 0 1
1685 
1686 #ifdef MULTI_GPU
1687  const int sp_idx = (kernel_type == INTERIOR_KERNEL) ? (x3==X3m1 ? X-X3X2X1mX2X1 : X+X2X1) >> 1 :
1688  face_idx + param.ghostOffset[static_cast<int>(kernel_type)];
1689 #else
1690  const int sp_idx = (x3==X3m1 ? X-X3X2X1mX2X1 : X+X2X1) >> 1;
1691 #endif
1692 
1693  const int ga_idx = sid;
1694 
1701 
1702 #ifdef MULTI_GPU
1703  if (kernel_type == INTERIOR_KERNEL) {
1704 #endif
1705 
1706  // read spinor from device memory
1707  READ_SPINOR(SPINORTEX, sp_stride, sp_idx, sp_idx);
1708 
1709  // project spinor into half spinors
1710  a0_re = +i00_re-i20_im;
1711  a0_im = +i00_im+i20_re;
1712  a1_re = +i01_re-i21_im;
1713  a1_im = +i01_im+i21_re;
1714  a2_re = +i02_re-i22_im;
1715  a2_im = +i02_im+i22_re;
1716  b0_re = +i10_re+i30_im;
1717  b0_im = +i10_im-i30_re;
1718  b1_re = +i11_re+i31_im;
1719  b1_im = +i11_im-i31_re;
1720  b2_re = +i12_re+i32_im;
1721  b2_im = +i12_im-i32_re;
1722 
1723 #ifdef MULTI_GPU
1724  } else {
1725 
1726  const int sp_stride_pad = ghostFace[static_cast<int>(kernel_type)];
1727 
1728  // read half spinor from device memory
1729  READ_HALF_SPINOR(SPINORTEX, sp_stride_pad, sp_idx + (SPINOR_HOP/2)*sp_stride_pad, sp_norm_idx);
1730 
1731  a0_re = i00_re; a0_im = i00_im;
1732  a1_re = i01_re; a1_im = i01_im;
1733  a2_re = i02_re; a2_im = i02_im;
1734  b0_re = i10_re; b0_im = i10_im;
1735  b1_re = i11_re; b1_im = i11_im;
1736  b2_re = i12_re; b2_im = i12_im;
1737 
1738  }
1739 #endif // MULTI_GPU
1740 
1741  // read gauge matrix from device memory
1742  READ_GAUGE_MATRIX(G, GAUGE0TEX, 4, ga_idx, ga_stride);
1743 
1744  // reconstruct gauge matrix
1746 
1747  // multiply row 0
1748  spinorFloat A0_re = 0;
1749  A0_re += g00_re * a0_re;
1750  A0_re -= g00_im * a0_im;
1751  A0_re += g01_re * a1_re;
1752  A0_re -= g01_im * a1_im;
1753  A0_re += g02_re * a2_re;
1754  A0_re -= g02_im * a2_im;
1755  spinorFloat A0_im = 0;
1756  A0_im += g00_re * a0_im;
1757  A0_im += g00_im * a0_re;
1758  A0_im += g01_re * a1_im;
1759  A0_im += g01_im * a1_re;
1760  A0_im += g02_re * a2_im;
1761  A0_im += g02_im * a2_re;
1762  spinorFloat B0_re = 0;
1763  B0_re += g00_re * b0_re;
1764  B0_re -= g00_im * b0_im;
1765  B0_re += g01_re * b1_re;
1766  B0_re -= g01_im * b1_im;
1767  B0_re += g02_re * b2_re;
1768  B0_re -= g02_im * b2_im;
1769  spinorFloat B0_im = 0;
1770  B0_im += g00_re * b0_im;
1771  B0_im += g00_im * b0_re;
1772  B0_im += g01_re * b1_im;
1773  B0_im += g01_im * b1_re;
1774  B0_im += g02_re * b2_im;
1775  B0_im += g02_im * b2_re;
1776 
1777  // multiply row 1
1778  spinorFloat A1_re = 0;
1779  A1_re += g10_re * a0_re;
1780  A1_re -= g10_im * a0_im;
1781  A1_re += g11_re * a1_re;
1782  A1_re -= g11_im * a1_im;
1783  A1_re += g12_re * a2_re;
1784  A1_re -= g12_im * a2_im;
1785  spinorFloat A1_im = 0;
1786  A1_im += g10_re * a0_im;
1787  A1_im += g10_im * a0_re;
1788  A1_im += g11_re * a1_im;
1789  A1_im += g11_im * a1_re;
1790  A1_im += g12_re * a2_im;
1791  A1_im += g12_im * a2_re;
1792  spinorFloat B1_re = 0;
1793  B1_re += g10_re * b0_re;
1794  B1_re -= g10_im * b0_im;
1795  B1_re += g11_re * b1_re;
1796  B1_re -= g11_im * b1_im;
1797  B1_re += g12_re * b2_re;
1798  B1_re -= g12_im * b2_im;
1799  spinorFloat B1_im = 0;
1800  B1_im += g10_re * b0_im;
1801  B1_im += g10_im * b0_re;
1802  B1_im += g11_re * b1_im;
1803  B1_im += g11_im * b1_re;
1804  B1_im += g12_re * b2_im;
1805  B1_im += g12_im * b2_re;
1806 
1807  // multiply row 2
1808  spinorFloat A2_re = 0;
1809  A2_re += g20_re * a0_re;
1810  A2_re -= g20_im * a0_im;
1811  A2_re += g21_re * a1_re;
1812  A2_re -= g21_im * a1_im;
1813  A2_re += g22_re * a2_re;
1814  A2_re -= g22_im * a2_im;
1815  spinorFloat A2_im = 0;
1816  A2_im += g20_re * a0_im;
1817  A2_im += g20_im * a0_re;
1818  A2_im += g21_re * a1_im;
1819  A2_im += g21_im * a1_re;
1820  A2_im += g22_re * a2_im;
1821  A2_im += g22_im * a2_re;
1822  spinorFloat B2_re = 0;
1823  B2_re += g20_re * b0_re;
1824  B2_re -= g20_im * b0_im;
1825  B2_re += g21_re * b1_re;
1826  B2_re -= g21_im * b1_im;
1827  B2_re += g22_re * b2_re;
1828  B2_re -= g22_im * b2_im;
1829  spinorFloat B2_im = 0;
1830  B2_im += g20_re * b0_im;
1831  B2_im += g20_im * b0_re;
1832  B2_im += g21_re * b1_im;
1833  B2_im += g21_im * b1_re;
1834  B2_im += g22_re * b2_im;
1835  B2_im += g22_im * b2_re;
1836 
1837  o00_re += a*A0_re;
1838  o00_im += a*A0_im;
1839  o10_re += a*B0_re;
1840  o10_im += a*B0_im;
1841  o20_re += a*A0_im;
1842  o20_im -= a*A0_re;
1843  o30_re -= a*B0_im;
1844  o30_im += a*B0_re;
1845 
1846  o01_re += a*A1_re;
1847  o01_im += a*A1_im;
1848  o11_re += a*B1_re;
1849  o11_im += a*B1_im;
1850  o21_re += a*A1_im;
1851  o21_im -= a*A1_re;
1852  o31_re -= a*B1_im;
1853  o31_im += a*B1_re;
1854 
1855  o02_re += a*A2_re;
1856  o02_im += a*A2_im;
1857  o12_re += a*B2_re;
1858  o12_im += a*B2_im;
1859  o22_re += a*A2_im;
1860  o22_im -= a*A2_re;
1861  o32_re -= a*B2_im;
1862  o32_im += a*B2_re;
1863 
1864 }
1865 
1866 #ifdef MULTI_GPU
1867 if ( (kernel_type == INTERIOR_KERNEL && (!param.ghostDim[2] || x3>0)) ||
1868  (kernel_type == EXTERIOR_KERNEL_Z && x3==0) )
1869 #endif
1870 {
1871  // Projector P2-
1872  // 1 0 -i 0
1873  // 0 1 0 i
1874  // i 0 1 0
1875  // 0 -i 0 1
1876 
1877 #ifdef MULTI_GPU
1878  const int sp_idx = (kernel_type == INTERIOR_KERNEL) ? (x3==0 ? X+X3X2X1mX2X1 : X-X2X1) >> 1 :
1879  face_idx + param.ghostOffset[static_cast<int>(kernel_type)];
1880 #else
1881  const int sp_idx = (x3==0 ? X+X3X2X1mX2X1 : X-X2X1) >> 1;
1882 #endif
1883 
1884 #ifdef MULTI_GPU
1885  const int ga_idx = ((kernel_type == INTERIOR_KERNEL) ? sp_idx : Vh+face_idx);
1886 #else
1887  const int ga_idx = sp_idx;
1888 #endif
1889 
1896 
1897 #ifdef MULTI_GPU
1898  if (kernel_type == INTERIOR_KERNEL) {
1899 #endif
1900 
1901  // read spinor from device memory
1902  READ_SPINOR(SPINORTEX, sp_stride, sp_idx, sp_idx);
1903 
1904  // project spinor into half spinors
1905  a0_re = +i00_re+i20_im;
1906  a0_im = +i00_im-i20_re;
1907  a1_re = +i01_re+i21_im;
1908  a1_im = +i01_im-i21_re;
1909  a2_re = +i02_re+i22_im;
1910  a2_im = +i02_im-i22_re;
1911  b0_re = +i10_re-i30_im;
1912  b0_im = +i10_im+i30_re;
1913  b1_re = +i11_re-i31_im;
1914  b1_im = +i11_im+i31_re;
1915  b2_re = +i12_re-i32_im;
1916  b2_im = +i12_im+i32_re;
1917 
1918 #ifdef MULTI_GPU
1919  } else {
1920 
1921  const int sp_stride_pad = ghostFace[static_cast<int>(kernel_type)];
1922 
1923  // read half spinor from device memory
1924  READ_HALF_SPINOR(SPINORTEX, sp_stride_pad, sp_idx, sp_norm_idx);
1925 
1926  a0_re = i00_re; a0_im = i00_im;
1927  a1_re = i01_re; a1_im = i01_im;
1928  a2_re = i02_re; a2_im = i02_im;
1929  b0_re = i10_re; b0_im = i10_im;
1930  b1_re = i11_re; b1_im = i11_im;
1931  b2_re = i12_re; b2_im = i12_im;
1932 
1933  }
1934 #endif // MULTI_GPU
1935 
1936  // read gauge matrix from device memory
1937  READ_GAUGE_MATRIX(G, GAUGE1TEX, 5, ga_idx, ga_stride);
1938 
1939  // reconstruct gauge matrix
1941 
1942  // multiply row 0
1943  spinorFloat A0_re = 0;
1944  A0_re += gT00_re * a0_re;
1945  A0_re -= gT00_im * a0_im;
1946  A0_re += gT01_re * a1_re;
1947  A0_re -= gT01_im * a1_im;
1948  A0_re += gT02_re * a2_re;
1949  A0_re -= gT02_im * a2_im;
1950  spinorFloat A0_im = 0;
1951  A0_im += gT00_re * a0_im;
1952  A0_im += gT00_im * a0_re;
1953  A0_im += gT01_re * a1_im;
1954  A0_im += gT01_im * a1_re;
1955  A0_im += gT02_re * a2_im;
1956  A0_im += gT02_im * a2_re;
1957  spinorFloat B0_re = 0;
1958  B0_re += gT00_re * b0_re;
1959  B0_re -= gT00_im * b0_im;
1960  B0_re += gT01_re * b1_re;
1961  B0_re -= gT01_im * b1_im;
1962  B0_re += gT02_re * b2_re;
1963  B0_re -= gT02_im * b2_im;
1964  spinorFloat B0_im = 0;
1965  B0_im += gT00_re * b0_im;
1966  B0_im += gT00_im * b0_re;
1967  B0_im += gT01_re * b1_im;
1968  B0_im += gT01_im * b1_re;
1969  B0_im += gT02_re * b2_im;
1970  B0_im += gT02_im * b2_re;
1971 
1972  // multiply row 1
1973  spinorFloat A1_re = 0;
1974  A1_re += gT10_re * a0_re;
1975  A1_re -= gT10_im * a0_im;
1976  A1_re += gT11_re * a1_re;
1977  A1_re -= gT11_im * a1_im;
1978  A1_re += gT12_re * a2_re;
1979  A1_re -= gT12_im * a2_im;
1980  spinorFloat A1_im = 0;
1981  A1_im += gT10_re * a0_im;
1982  A1_im += gT10_im * a0_re;
1983  A1_im += gT11_re * a1_im;
1984  A1_im += gT11_im * a1_re;
1985  A1_im += gT12_re * a2_im;
1986  A1_im += gT12_im * a2_re;
1987  spinorFloat B1_re = 0;
1988  B1_re += gT10_re * b0_re;
1989  B1_re -= gT10_im * b0_im;
1990  B1_re += gT11_re * b1_re;
1991  B1_re -= gT11_im * b1_im;
1992  B1_re += gT12_re * b2_re;
1993  B1_re -= gT12_im * b2_im;
1994  spinorFloat B1_im = 0;
1995  B1_im += gT10_re * b0_im;
1996  B1_im += gT10_im * b0_re;
1997  B1_im += gT11_re * b1_im;
1998  B1_im += gT11_im * b1_re;
1999  B1_im += gT12_re * b2_im;
2000  B1_im += gT12_im * b2_re;
2001 
2002  // multiply row 2
2003  spinorFloat A2_re = 0;
2004  A2_re += gT20_re * a0_re;
2005  A2_re -= gT20_im * a0_im;
2006  A2_re += gT21_re * a1_re;
2007  A2_re -= gT21_im * a1_im;
2008  A2_re += gT22_re * a2_re;
2009  A2_re -= gT22_im * a2_im;
2010  spinorFloat A2_im = 0;
2011  A2_im += gT20_re * a0_im;
2012  A2_im += gT20_im * a0_re;
2013  A2_im += gT21_re * a1_im;
2014  A2_im += gT21_im * a1_re;
2015  A2_im += gT22_re * a2_im;
2016  A2_im += gT22_im * a2_re;
2017  spinorFloat B2_re = 0;
2018  B2_re += gT20_re * b0_re;
2019  B2_re -= gT20_im * b0_im;
2020  B2_re += gT21_re * b1_re;
2021  B2_re -= gT21_im * b1_im;
2022  B2_re += gT22_re * b2_re;
2023  B2_re -= gT22_im * b2_im;
2024  spinorFloat B2_im = 0;
2025  B2_im += gT20_re * b0_im;
2026  B2_im += gT20_im * b0_re;
2027  B2_im += gT21_re * b1_im;
2028  B2_im += gT21_im * b1_re;
2029  B2_im += gT22_re * b2_im;
2030  B2_im += gT22_im * b2_re;
2031 
2032  o00_re += a*A0_re;
2033  o00_im += a*A0_im;
2034  o10_re += a*B0_re;
2035  o10_im += a*B0_im;
2036  o20_re -= a*A0_im;
2037  o20_im += a*A0_re;
2038  o30_re += a*B0_im;
2039  o30_im -= a*B0_re;
2040 
2041  o01_re += a*A1_re;
2042  o01_im += a*A1_im;
2043  o11_re += a*B1_re;
2044  o11_im += a*B1_im;
2045  o21_re -= a*A1_im;
2046  o21_im += a*A1_re;
2047  o31_re += a*B1_im;
2048  o31_im -= a*B1_re;
2049 
2050  o02_re += a*A2_re;
2051  o02_im += a*A2_im;
2052  o12_re += a*B2_re;
2053  o12_im += a*B2_im;
2054  o22_re -= a*A2_im;
2055  o22_im += a*A2_re;
2056  o32_re += a*B2_im;
2057  o32_im -= a*B2_re;
2058 
2059 }
2060 
2061 #ifdef MULTI_GPU
2062 if ( (kernel_type == INTERIOR_KERNEL && (!param.ghostDim[3] || x4<X4m1)) ||
2063  (kernel_type == EXTERIOR_KERNEL_T && x4==X4m1) )
2064 #endif
2065 {
2066  // Projector P3+
2067  // 2 0 0 0
2068  // 0 2 0 0
2069  // 0 0 0 0
2070  // 0 0 0 0
2071 
2072 #ifdef MULTI_GPU
2073  const int sp_idx = (kernel_type == INTERIOR_KERNEL) ? (x4==X4m1 ? X-X4X3X2X1mX3X2X1 : X+X3X2X1) >> 1 :
2074  face_idx + param.ghostOffset[static_cast<int>(kernel_type)];
2075 #else
2076  const int sp_idx = (x4==X4m1 ? X-X4X3X2X1mX3X2X1 : X+X3X2X1) >> 1;
2077 #endif
2078 
2079  const int ga_idx = sid;
2080 
2082  {
2089 
2090 #ifdef MULTI_GPU
2091  if (kernel_type == INTERIOR_KERNEL) {
2092 #endif
2093 
2094  // read spinor from device memory
2095  READ_SPINOR_UP(SPINORTEX, sp_stride, sp_idx, sp_idx);
2096 
2097  // project spinor into half spinors
2098  a0_re = +2*i00_re;
2099  a0_im = +2*i00_im;
2100  a1_re = +2*i01_re;
2101  a1_im = +2*i01_im;
2102  a2_re = +2*i02_re;
2103  a2_im = +2*i02_im;
2104  b0_re = +2*i10_re;
2105  b0_im = +2*i10_im;
2106  b1_re = +2*i11_re;
2107  b1_im = +2*i11_im;
2108  b2_re = +2*i12_re;
2109  b2_im = +2*i12_im;
2110 
2111 #ifdef MULTI_GPU
2112  } else {
2113 
2114  const int sp_stride_pad = ghostFace[static_cast<int>(kernel_type)];
2115  const int t_proj_scale = TPROJSCALE;
2116 
2117  // read half spinor from device memory
2118  READ_HALF_SPINOR(SPINORTEX, sp_stride_pad, sp_idx + (SPINOR_HOP/2)*sp_stride_pad, sp_norm_idx);
2119 
2120  a0_re = t_proj_scale*i00_re; a0_im = t_proj_scale*i00_im;
2121  a1_re = t_proj_scale*i01_re; a1_im = t_proj_scale*i01_im;
2122  a2_re = t_proj_scale*i02_re; a2_im = t_proj_scale*i02_im;
2123  b0_re = t_proj_scale*i10_re; b0_im = t_proj_scale*i10_im;
2124  b1_re = t_proj_scale*i11_re; b1_im = t_proj_scale*i11_im;
2125  b2_re = t_proj_scale*i12_re; b2_im = t_proj_scale*i12_im;
2126 
2127  }
2128 #endif // MULTI_GPU
2129 
2130  // identity gauge matrix
2137 
2138  o00_re += a*A0_re;
2139  o00_im += a*A0_im;
2140  o10_re += a*B0_re;
2141  o10_im += a*B0_im;
2142 
2143  o01_re += a*A1_re;
2144  o01_im += a*A1_im;
2145  o11_re += a*B1_re;
2146  o11_im += a*B1_im;
2147 
2148  o02_re += a*A2_re;
2149  o02_im += a*A2_im;
2150  o12_re += a*B2_re;
2151  o12_im += a*B2_im;
2152 
2153  } else {
2160 
2161 #ifdef MULTI_GPU
2162  if (kernel_type == INTERIOR_KERNEL) {
2163 #endif
2164 
2165  // read spinor from device memory
2166  READ_SPINOR_UP(SPINORTEX, sp_stride, sp_idx, sp_idx);
2167 
2168  // project spinor into half spinors
2169  a0_re = +2*i00_re;
2170  a0_im = +2*i00_im;
2171  a1_re = +2*i01_re;
2172  a1_im = +2*i01_im;
2173  a2_re = +2*i02_re;
2174  a2_im = +2*i02_im;
2175  b0_re = +2*i10_re;
2176  b0_im = +2*i10_im;
2177  b1_re = +2*i11_re;
2178  b1_im = +2*i11_im;
2179  b2_re = +2*i12_re;
2180  b2_im = +2*i12_im;
2181 
2182 #ifdef MULTI_GPU
2183  } else {
2184 
2185  const int sp_stride_pad = ghostFace[static_cast<int>(kernel_type)];
2186  const int t_proj_scale = TPROJSCALE;
2187 
2188  // read half spinor from device memory
2189  READ_HALF_SPINOR(SPINORTEX, sp_stride_pad, sp_idx + (SPINOR_HOP/2)*sp_stride_pad, sp_norm_idx);
2190 
2191  a0_re = t_proj_scale*i00_re; a0_im = t_proj_scale*i00_im;
2192  a1_re = t_proj_scale*i01_re; a1_im = t_proj_scale*i01_im;
2193  a2_re = t_proj_scale*i02_re; a2_im = t_proj_scale*i02_im;
2194  b0_re = t_proj_scale*i10_re; b0_im = t_proj_scale*i10_im;
2195  b1_re = t_proj_scale*i11_re; b1_im = t_proj_scale*i11_im;
2196  b2_re = t_proj_scale*i12_re; b2_im = t_proj_scale*i12_im;
2197 
2198  }
2199 #endif // MULTI_GPU
2200 
2201  // read gauge matrix from device memory
2202  READ_GAUGE_MATRIX(G, GAUGE0TEX, 6, ga_idx, ga_stride);
2203 
2204  // reconstruct gauge matrix
2206 
2207  // multiply row 0
2208  spinorFloat A0_re = 0;
2209  A0_re += g00_re * a0_re;
2210  A0_re -= g00_im * a0_im;
2211  A0_re += g01_re * a1_re;
2212  A0_re -= g01_im * a1_im;
2213  A0_re += g02_re * a2_re;
2214  A0_re -= g02_im * a2_im;
2215  spinorFloat A0_im = 0;
2216  A0_im += g00_re * a0_im;
2217  A0_im += g00_im * a0_re;
2218  A0_im += g01_re * a1_im;
2219  A0_im += g01_im * a1_re;
2220  A0_im += g02_re * a2_im;
2221  A0_im += g02_im * a2_re;
2222  spinorFloat B0_re = 0;
2223  B0_re += g00_re * b0_re;
2224  B0_re -= g00_im * b0_im;
2225  B0_re += g01_re * b1_re;
2226  B0_re -= g01_im * b1_im;
2227  B0_re += g02_re * b2_re;
2228  B0_re -= g02_im * b2_im;
2229  spinorFloat B0_im = 0;
2230  B0_im += g00_re * b0_im;
2231  B0_im += g00_im * b0_re;
2232  B0_im += g01_re * b1_im;
2233  B0_im += g01_im * b1_re;
2234  B0_im += g02_re * b2_im;
2235  B0_im += g02_im * b2_re;
2236 
2237  // multiply row 1
2238  spinorFloat A1_re = 0;
2239  A1_re += g10_re * a0_re;
2240  A1_re -= g10_im * a0_im;
2241  A1_re += g11_re * a1_re;
2242  A1_re -= g11_im * a1_im;
2243  A1_re += g12_re * a2_re;
2244  A1_re -= g12_im * a2_im;
2245  spinorFloat A1_im = 0;
2246  A1_im += g10_re * a0_im;
2247  A1_im += g10_im * a0_re;
2248  A1_im += g11_re * a1_im;
2249  A1_im += g11_im * a1_re;
2250  A1_im += g12_re * a2_im;
2251  A1_im += g12_im * a2_re;
2252  spinorFloat B1_re = 0;
2253  B1_re += g10_re * b0_re;
2254  B1_re -= g10_im * b0_im;
2255  B1_re += g11_re * b1_re;
2256  B1_re -= g11_im * b1_im;
2257  B1_re += g12_re * b2_re;
2258  B1_re -= g12_im * b2_im;
2259  spinorFloat B1_im = 0;
2260  B1_im += g10_re * b0_im;
2261  B1_im += g10_im * b0_re;
2262  B1_im += g11_re * b1_im;
2263  B1_im += g11_im * b1_re;
2264  B1_im += g12_re * b2_im;
2265  B1_im += g12_im * b2_re;
2266 
2267  // multiply row 2
2268  spinorFloat A2_re = 0;
2269  A2_re += g20_re * a0_re;
2270  A2_re -= g20_im * a0_im;
2271  A2_re += g21_re * a1_re;
2272  A2_re -= g21_im * a1_im;
2273  A2_re += g22_re * a2_re;
2274  A2_re -= g22_im * a2_im;
2275  spinorFloat A2_im = 0;
2276  A2_im += g20_re * a0_im;
2277  A2_im += g20_im * a0_re;
2278  A2_im += g21_re * a1_im;
2279  A2_im += g21_im * a1_re;
2280  A2_im += g22_re * a2_im;
2281  A2_im += g22_im * a2_re;
2282  spinorFloat B2_re = 0;
2283  B2_re += g20_re * b0_re;
2284  B2_re -= g20_im * b0_im;
2285  B2_re += g21_re * b1_re;
2286  B2_re -= g21_im * b1_im;
2287  B2_re += g22_re * b2_re;
2288  B2_re -= g22_im * b2_im;
2289  spinorFloat B2_im = 0;
2290  B2_im += g20_re * b0_im;
2291  B2_im += g20_im * b0_re;
2292  B2_im += g21_re * b1_im;
2293  B2_im += g21_im * b1_re;
2294  B2_im += g22_re * b2_im;
2295  B2_im += g22_im * b2_re;
2296 
2297  o00_re += a*A0_re;
2298  o00_im += a*A0_im;
2299  o10_re += a*B0_re;
2300  o10_im += a*B0_im;
2301 
2302  o01_re += a*A1_re;
2303  o01_im += a*A1_im;
2304  o11_re += a*B1_re;
2305  o11_im += a*B1_im;
2306 
2307  o02_re += a*A2_re;
2308  o02_im += a*A2_im;
2309  o12_re += a*B2_re;
2310  o12_im += a*B2_im;
2311 
2312  }
2313 }
2314 
2315 #ifdef MULTI_GPU
2316 if ( (kernel_type == INTERIOR_KERNEL && (!param.ghostDim[3] || x4>0)) ||
2317  (kernel_type == EXTERIOR_KERNEL_T && x4==0) )
2318 #endif
2319 {
2320  // Projector P3-
2321  // 0 0 0 0
2322  // 0 0 0 0
2323  // 0 0 2 0
2324  // 0 0 0 2
2325 
2326 #ifdef MULTI_GPU
2327  const int sp_idx = (kernel_type == INTERIOR_KERNEL) ? (x4==0 ? X+X4X3X2X1mX3X2X1 : X-X3X2X1) >> 1 :
2328  face_idx + param.ghostOffset[static_cast<int>(kernel_type)];
2329 #else
2330  const int sp_idx = (x4==0 ? X+X4X3X2X1mX3X2X1 : X-X3X2X1) >> 1;
2331 #endif
2332 
2333 #ifdef MULTI_GPU
2334  const int ga_idx = ((kernel_type == INTERIOR_KERNEL) ? sp_idx : Vh+face_idx);
2335 #else
2336  const int ga_idx = sp_idx;
2337 #endif
2338 
2339  if (gauge_fixed && ga_idx < X4X3X2X1hmX3X2X1h)
2340  {
2347 
2348 #ifdef MULTI_GPU
2349  if (kernel_type == INTERIOR_KERNEL) {
2350 #endif
2351 
2352  // read spinor from device memory
2353  READ_SPINOR_DOWN(SPINORTEX, sp_stride, sp_idx, sp_idx);
2354 
2355  // project spinor into half spinors
2356  a0_re = +2*i20_re;
2357  a0_im = +2*i20_im;
2358  a1_re = +2*i21_re;
2359  a1_im = +2*i21_im;
2360  a2_re = +2*i22_re;
2361  a2_im = +2*i22_im;
2362  b0_re = +2*i30_re;
2363  b0_im = +2*i30_im;
2364  b1_re = +2*i31_re;
2365  b1_im = +2*i31_im;
2366  b2_re = +2*i32_re;
2367  b2_im = +2*i32_im;
2368 
2369 #ifdef MULTI_GPU
2370  } else {
2371 
2372  const int sp_stride_pad = ghostFace[static_cast<int>(kernel_type)];
2373  const int t_proj_scale = TPROJSCALE;
2374 
2375  // read half spinor from device memory
2376  READ_HALF_SPINOR(SPINORTEX, sp_stride_pad, sp_idx, sp_norm_idx);
2377 
2378  a0_re = t_proj_scale*i00_re; a0_im = t_proj_scale*i00_im;
2379  a1_re = t_proj_scale*i01_re; a1_im = t_proj_scale*i01_im;
2380  a2_re = t_proj_scale*i02_re; a2_im = t_proj_scale*i02_im;
2381  b0_re = t_proj_scale*i10_re; b0_im = t_proj_scale*i10_im;
2382  b1_re = t_proj_scale*i11_re; b1_im = t_proj_scale*i11_im;
2383  b2_re = t_proj_scale*i12_re; b2_im = t_proj_scale*i12_im;
2384 
2385  }
2386 #endif // MULTI_GPU
2387 
2388  // identity gauge matrix
2395 
2396  o20_re += a*A0_re;
2397  o20_im += a*A0_im;
2398  o30_re += a*B0_re;
2399  o30_im += a*B0_im;
2400 
2401  o21_re += a*A1_re;
2402  o21_im += a*A1_im;
2403  o31_re += a*B1_re;
2404  o31_im += a*B1_im;
2405 
2406  o22_re += a*A2_re;
2407  o22_im += a*A2_im;
2408  o32_re += a*B2_re;
2409  o32_im += a*B2_im;
2410 
2411  } else {
2418 
2419 #ifdef MULTI_GPU
2420  if (kernel_type == INTERIOR_KERNEL) {
2421 #endif
2422 
2423  // read spinor from device memory
2424  READ_SPINOR_DOWN(SPINORTEX, sp_stride, sp_idx, sp_idx);
2425 
2426  // project spinor into half spinors
2427  a0_re = +2*i20_re;
2428  a0_im = +2*i20_im;
2429  a1_re = +2*i21_re;
2430  a1_im = +2*i21_im;
2431  a2_re = +2*i22_re;
2432  a2_im = +2*i22_im;
2433  b0_re = +2*i30_re;
2434  b0_im = +2*i30_im;
2435  b1_re = +2*i31_re;
2436  b1_im = +2*i31_im;
2437  b2_re = +2*i32_re;
2438  b2_im = +2*i32_im;
2439 
2440 #ifdef MULTI_GPU
2441  } else {
2442 
2443  const int sp_stride_pad = ghostFace[static_cast<int>(kernel_type)];
2444  const int t_proj_scale = TPROJSCALE;
2445 
2446  // read half spinor from device memory
2447  READ_HALF_SPINOR(SPINORTEX, sp_stride_pad, sp_idx, sp_norm_idx);
2448 
2449  a0_re = t_proj_scale*i00_re; a0_im = t_proj_scale*i00_im;
2450  a1_re = t_proj_scale*i01_re; a1_im = t_proj_scale*i01_im;
2451  a2_re = t_proj_scale*i02_re; a2_im = t_proj_scale*i02_im;
2452  b0_re = t_proj_scale*i10_re; b0_im = t_proj_scale*i10_im;
2453  b1_re = t_proj_scale*i11_re; b1_im = t_proj_scale*i11_im;
2454  b2_re = t_proj_scale*i12_re; b2_im = t_proj_scale*i12_im;
2455 
2456  }
2457 #endif // MULTI_GPU
2458 
2459  // read gauge matrix from device memory
2460  READ_GAUGE_MATRIX(G, GAUGE1TEX, 7, ga_idx, ga_stride);
2461 
2462  // reconstruct gauge matrix
2464 
2465  // multiply row 0
2466  spinorFloat A0_re = 0;
2467  A0_re += gT00_re * a0_re;
2468  A0_re -= gT00_im * a0_im;
2469  A0_re += gT01_re * a1_re;
2470  A0_re -= gT01_im * a1_im;
2471  A0_re += gT02_re * a2_re;
2472  A0_re -= gT02_im * a2_im;
2473  spinorFloat A0_im = 0;
2474  A0_im += gT00_re * a0_im;
2475  A0_im += gT00_im * a0_re;
2476  A0_im += gT01_re * a1_im;
2477  A0_im += gT01_im * a1_re;
2478  A0_im += gT02_re * a2_im;
2479  A0_im += gT02_im * a2_re;
2480  spinorFloat B0_re = 0;
2481  B0_re += gT00_re * b0_re;
2482  B0_re -= gT00_im * b0_im;
2483  B0_re += gT01_re * b1_re;
2484  B0_re -= gT01_im * b1_im;
2485  B0_re += gT02_re * b2_re;
2486  B0_re -= gT02_im * b2_im;
2487  spinorFloat B0_im = 0;
2488  B0_im += gT00_re * b0_im;
2489  B0_im += gT00_im * b0_re;
2490  B0_im += gT01_re * b1_im;
2491  B0_im += gT01_im * b1_re;
2492  B0_im += gT02_re * b2_im;
2493  B0_im += gT02_im * b2_re;
2494 
2495  // multiply row 1
2496  spinorFloat A1_re = 0;
2497  A1_re += gT10_re * a0_re;
2498  A1_re -= gT10_im * a0_im;
2499  A1_re += gT11_re * a1_re;
2500  A1_re -= gT11_im * a1_im;
2501  A1_re += gT12_re * a2_re;
2502  A1_re -= gT12_im * a2_im;
2503  spinorFloat A1_im = 0;
2504  A1_im += gT10_re * a0_im;
2505  A1_im += gT10_im * a0_re;
2506  A1_im += gT11_re * a1_im;
2507  A1_im += gT11_im * a1_re;
2508  A1_im += gT12_re * a2_im;
2509  A1_im += gT12_im * a2_re;
2510  spinorFloat B1_re = 0;
2511  B1_re += gT10_re * b0_re;
2512  B1_re -= gT10_im * b0_im;
2513  B1_re += gT11_re * b1_re;
2514  B1_re -= gT11_im * b1_im;
2515  B1_re += gT12_re * b2_re;
2516  B1_re -= gT12_im * b2_im;
2517  spinorFloat B1_im = 0;
2518  B1_im += gT10_re * b0_im;
2519  B1_im += gT10_im * b0_re;
2520  B1_im += gT11_re * b1_im;
2521  B1_im += gT11_im * b1_re;
2522  B1_im += gT12_re * b2_im;
2523  B1_im += gT12_im * b2_re;
2524 
2525  // multiply row 2
2526  spinorFloat A2_re = 0;
2527  A2_re += gT20_re * a0_re;
2528  A2_re -= gT20_im * a0_im;
2529  A2_re += gT21_re * a1_re;
2530  A2_re -= gT21_im * a1_im;
2531  A2_re += gT22_re * a2_re;
2532  A2_re -= gT22_im * a2_im;
2533  spinorFloat A2_im = 0;
2534  A2_im += gT20_re * a0_im;
2535  A2_im += gT20_im * a0_re;
2536  A2_im += gT21_re * a1_im;
2537  A2_im += gT21_im * a1_re;
2538  A2_im += gT22_re * a2_im;
2539  A2_im += gT22_im * a2_re;
2540  spinorFloat B2_re = 0;
2541  B2_re += gT20_re * b0_re;
2542  B2_re -= gT20_im * b0_im;
2543  B2_re += gT21_re * b1_re;
2544  B2_re -= gT21_im * b1_im;
2545  B2_re += gT22_re * b2_re;
2546  B2_re -= gT22_im * b2_im;
2547  spinorFloat B2_im = 0;
2548  B2_im += gT20_re * b0_im;
2549  B2_im += gT20_im * b0_re;
2550  B2_im += gT21_re * b1_im;
2551  B2_im += gT21_im * b1_re;
2552  B2_im += gT22_re * b2_im;
2553  B2_im += gT22_im * b2_re;
2554 
2555  o20_re += a*A0_re;
2556  o20_im += a*A0_im;
2557  o30_re += a*B0_re;
2558  o30_im += a*B0_im;
2559 
2560  o21_re += a*A1_re;
2561  o21_im += a*A1_im;
2562  o31_re += a*B1_re;
2563  o31_im += a*B1_im;
2564 
2565  o22_re += a*A2_re;
2566  o22_im += a*A2_im;
2567  o32_re += a*B2_re;
2568  o32_im += a*B2_im;
2569 
2570  }
2571 }
2572 
2573 
2574 
2575 // write spinor field back to device memory
2577 
2578 // undefine to prevent warning when precision is changed
2579 #undef spinorFloat
2580 #undef g00_re
2581 #undef g00_im
2582 #undef g01_re
2583 #undef g01_im
2584 #undef g02_re
2585 #undef g02_im
2586 #undef g10_re
2587 #undef g10_im
2588 #undef g11_re
2589 #undef g11_im
2590 #undef g12_re
2591 #undef g12_im
2592 #undef g20_re
2593 #undef g20_im
2594 #undef g21_re
2595 #undef g21_im
2596 #undef g22_re
2597 #undef g22_im
2598 
2599 #undef i00_re
2600 #undef i00_im
2601 #undef i01_re
2602 #undef i01_im
2603 #undef i02_re
2604 #undef i02_im
2605 #undef i10_re
2606 #undef i10_im
2607 #undef i11_re
2608 #undef i11_im
2609 #undef i12_re
2610 #undef i12_im
2611 #undef i20_re
2612 #undef i20_im
2613 #undef i21_re
2614 #undef i21_im
2615 #undef i22_re
2616 #undef i22_im
2617 #undef i30_re
2618 #undef i30_im
2619 #undef i31_re
2620 #undef i31_im
2621 #undef i32_re
2622 #undef i32_im
2623 
2624 #undef acc00_re
2625 #undef acc00_im
2626 #undef acc01_re
2627 #undef acc01_im
2628 #undef acc02_re
2629 #undef acc02_im
2630 #undef acc10_re
2631 #undef acc10_im
2632 #undef acc11_re
2633 #undef acc11_im
2634 #undef acc12_re
2635 #undef acc12_im
2636 #undef acc20_re
2637 #undef acc20_im
2638 #undef acc21_re
2639 #undef acc21_im
2640 #undef acc22_re
2641 #undef acc22_im
2642 #undef acc30_re
2643 #undef acc30_im
2644 #undef acc31_re
2645 #undef acc31_im
2646 #undef acc32_re
2647 #undef acc32_im
2648 
2649 #undef c00_00_re
2650 #undef c01_01_re
2651 #undef c02_02_re
2652 #undef c10_10_re
2653 #undef c11_11_re
2654 #undef c12_12_re
2655 #undef c01_00_re
2656 #undef c01_00_im
2657 #undef c02_00_re
2658 #undef c02_00_im
2659 #undef c10_00_re
2660 #undef c10_00_im
2661 #undef c11_00_re
2662 #undef c11_00_im
2663 #undef c12_00_re
2664 #undef c12_00_im
2665 #undef c02_01_re
2666 #undef c02_01_im
2667 #undef c10_01_re
2668 #undef c10_01_im
2669 #undef c11_01_re
2670 #undef c11_01_im
2671 #undef c12_01_re
2672 #undef c12_01_im
2673 #undef c10_02_re
2674 #undef c10_02_im
2675 #undef c11_02_re
2676 #undef c11_02_im
2677 #undef c12_02_re
2678 #undef c12_02_im
2679 #undef c11_10_re
2680 #undef c11_10_im
2681 #undef c12_10_re
2682 #undef c12_10_im
2683 #undef c12_11_re
2684 #undef c12_11_im
2685 
2686 
2687 #undef VOLATILE