3 #define DSLASH_SHARED_FLOATS_PER_THREAD 24
6 #if ((CUDA_VERSION >= 4010) && (__COMPUTE_CAPABILITY__ >= 200)) // NVVM compiler
8 #else // Open64 compiler
9 #define VOLATILE volatile
13 #define spinorFloat double
14 #define WRITE_SPINOR_SHARED WRITE_SPINOR_SHARED_DOUBLE2
15 #define READ_SPINOR_SHARED READ_SPINOR_SHARED_DOUBLE2
40 #define acc00_re accum0.x
41 #define acc00_im accum0.y
42 #define acc01_re accum1.x
43 #define acc01_im accum1.y
44 #define acc02_re accum2.x
45 #define acc02_im accum2.y
46 #define acc10_re accum3.x
47 #define acc10_im accum3.y
48 #define acc11_re accum4.x
49 #define acc11_im accum4.y
50 #define acc12_re accum5.x
51 #define acc12_im accum5.y
52 #define acc20_re accum6.x
53 #define acc20_im accum6.y
54 #define acc21_re accum7.x
55 #define acc21_im accum7.y
56 #define acc22_re accum8.x
57 #define acc22_im accum8.y
58 #define acc30_re accum9.x
59 #define acc30_im accum9.y
60 #define acc31_re accum10.x
61 #define acc31_im accum10.y
62 #define acc32_re accum11.x
63 #define acc32_im accum11.y
65 #define spinorFloat float
66 #define WRITE_SPINOR_SHARED WRITE_SPINOR_SHARED_FLOAT4
67 #define READ_SPINOR_SHARED READ_SPINOR_SHARED_FLOAT4
92 #define acc00_re accum0.x
93 #define acc00_im accum0.y
94 #define acc01_re accum0.z
95 #define acc01_im accum0.w
96 #define acc02_re accum1.x
97 #define acc02_im accum1.y
98 #define acc10_re accum1.z
99 #define acc10_im accum1.w
100 #define acc11_re accum2.x
101 #define acc11_im accum2.y
102 #define acc12_re accum2.z
103 #define acc12_im accum2.w
104 #define acc20_re accum3.x
105 #define acc20_im accum3.y
106 #define acc21_re accum3.z
107 #define acc21_im accum3.w
108 #define acc22_re accum4.x
109 #define acc22_im accum4.y
110 #define acc30_re accum4.z
111 #define acc30_im accum4.w
112 #define acc31_re accum5.x
113 #define acc31_im accum5.y
114 #define acc32_re accum5.z
115 #define acc32_im accum5.w
116 #endif // SPINOR_DOUBLE
159 #endif // GAUGE_DOUBLE
162 #define gT00_re (+g00_re)
163 #define gT00_im (-g00_im)
164 #define gT01_re (+g10_re)
165 #define gT01_im (-g10_im)
166 #define gT02_re (+g20_re)
167 #define gT02_im (-g20_im)
168 #define gT10_re (+g01_re)
169 #define gT10_im (-g01_im)
170 #define gT11_re (+g11_re)
171 #define gT11_im (-g11_im)
172 #define gT12_re (+g21_re)
173 #define gT12_im (-g21_im)
174 #define gT20_re (+g02_re)
175 #define gT20_im (-g02_im)
176 #define gT21_re (+g12_re)
177 #define gT21_im (-g12_im)
178 #define gT22_re (+g22_re)
179 #define gT22_im (-g22_im)
208 #define SHARED_STRIDE 16 // to avoid bank conflicts on Fermi
210 #define SHARED_STRIDE 32 // to avoid bank conflicts on Fermi
219 #if (defined MULTI_GPU) && (DD_PREC==2) // half precision
221 #endif // MULTI_GPU half precision
235 if (x2 >=
X2)
return;
236 if (x3 >=
X3)
return;
254 sid = blockIdx.x*blockDim.x + threadIdx.x;
255 if (sid >=
param.threads)
return;
258 const int face_volume = (
param.threads >> 1);
259 const int face_num = (sid >= face_volume);
260 face_idx = sid - face_num*face_volume;
266 #if (DD_PREC==2) // half precision
270 const int dims[] = {
X1,
X2,
X3,
X4};
271 coordsFromFaceIndex<1>(
X,
sid,
x1,
x2,
x3,
x4,
face_idx, face_volume,
dim, face_num,
param.parity,
dims);
306 const int sp_idx = (x1==
X1m1 ? X-
X1m1 : X+1) >> 1;
324 #ifdef TWIST_INV_DSLASH
503 const int sp_idx = (x1==0 ? X+
X1m1 : X-1) >> 1;
509 const int ga_idx =
sp_idx;
524 int tx = (threadIdx.x > 0) ? threadIdx.x-1 : blockDim.x-1;
703 const int ga_idx =
sid;
716 if (threadIdx.y == blockDim.y-1 && blockDim.y <
X2 ) {
719 #ifdef TWIST_INV_DSLASH
738 int tx = (threadIdx.x + blockDim.x - ((x1+1)&1) ) % blockDim.x;
739 int ty = (threadIdx.y < blockDim.y - 1) ? threadIdx.y + 1 : 0;
915 const int sp_idx = (x2==0 ? X+
X2X1mX1 : X-
X1) >> 1;
921 const int ga_idx =
sp_idx;
935 if (threadIdx.y == 0 && blockDim.y <
X2) {
938 #ifdef TWIST_INV_DSLASH
957 int tx = (threadIdx.x + blockDim.x - ((x1+1)&1)) % blockDim.x;
958 int ty = (threadIdx.y > 0) ? threadIdx.y - 1 : blockDim.y - 1;
1137 const int ga_idx =
sid;
1150 if (threadIdx.z == blockDim.z-1 && blockDim.z <
X3) {
1153 #ifdef TWIST_INV_DSLASH
1172 int tx = (threadIdx.x + blockDim.x - ((x1+1)&1) ) % blockDim.x;
1173 int tz = (threadIdx.z < blockDim.z - 1) ? threadIdx.z + 1 : 0;
1355 const int ga_idx =
sp_idx;
1369 if (threadIdx.z == 0 && blockDim.z <
X3) {
1372 #ifdef TWIST_INV_DSLASH
1391 int tx = (threadIdx.x + blockDim.x - ((x1+1)&1)) % blockDim.x;
1392 int tz = (threadIdx.z > 0) ? threadIdx.z - 1 : blockDim.z - 1;
1571 const int ga_idx =
sid;
1587 #ifndef TWIST_INV_DSLASH
1617 #ifdef TWIST_INV_DSLASH
1672 #ifndef TWIST_INV_DSLASH
1702 #ifdef TWIST_INV_DSLASH
1856 const int ga_idx =
sp_idx;
1873 #ifndef TWIST_INV_DSLASH
1903 #ifdef TWIST_INV_DSLASH
1958 #ifndef TWIST_INV_DSLASH
1988 #ifdef TWIST_INV_DSLASH
2127 incomplete = incomplete || (
param.commDim[3] && (x4==0 || x4==
X4m1));
2129 incomplete = incomplete || (
param.commDim[2] && (x3==0 || x3==
X3m1));
2131 incomplete = incomplete || (
param.commDim[1] && (x2==0 || x2==
X2m1));
2133 incomplete = incomplete || (
param.commDim[0] && (x1==0 || x1==
X1m1));
2140 READ_ACCUM(ACCUMTEX,
param.sp_stride)
2143 #ifndef TWIST_INV_DSLASH
2201 #ifndef TWIST_INV_DSLASH
2212 #undef WRITE_SPINOR_SHARED
2213 #undef READ_SPINOR_SHARED
2214 #undef SHARED_STRIDE
VOLATILE spinorFloat o22_im
VOLATILE spinorFloat o30_re
READ_SPINOR_DOWN(SPINORTEX, param.sp_stride, sp_idx, sp_idx)
VOLATILE spinorFloat o30_im
VOLATILE spinorFloat o31_re
VOLATILE spinorFloat o21_im
#define APPLY_TWIST(a, reg)
#define READ_SPINOR_SHARED
#define APPLY_TWIST_INV(a, b, reg)
**************************only for deg tm:*******************************
__constant__ int X3X2X1mX2X1
#define READ_INTERMEDIATE_SPINOR
VOLATILE spinorFloat o00_re
VOLATILE spinorFloat o01_im
VOLATILE spinorFloat o32_re
VOLATILE spinorFloat o21_re
VOLATILE spinorFloat o01_re
VOLATILE spinorFloat o20_re
READ_GAUGE_MATRIX(G, GAUGE0TEX, 0, ga_idx, ga_stride)
__constant__ int ghostFace[QUDA_MAX_DIM+1]
VOLATILE spinorFloat o31_im
VOLATILE spinorFloat o10_im
VOLATILE spinorFloat o32_im
VOLATILE spinorFloat o20_im
__constant__ int gauge_fixed
VOLATILE spinorFloat o10_re
__constant__ int X4X3X2X1mX3X2X1
READ_SPINOR(SPINORTEX, param.sp_stride, sp_idx, sp_idx)
coordsFromIndex3D< EVEN_X >(X, x1, x2, x3, x4, sid, param.parity, dims)
VOLATILE spinorFloat o02_im
__constant__ int ga_stride
VOLATILE spinorFloat o11_im
#define WRITE_SPINOR_SHARED
VOLATILE spinorFloat o11_re
WRITE_SPINOR(param.sp_stride)
READ_SPINOR_UP(SPINORTEX, param.sp_stride, sp_idx, sp_idx)
VOLATILE spinorFloat o12_im
VOLATILE spinorFloat o12_re
RECONSTRUCT_GAUGE_MATRIX(0)
VOLATILE spinorFloat o02_re
VOLATILE spinorFloat o22_re
__constant__ int X4X3X2X1hmX3X2X1h
VOLATILE spinorFloat o00_im