include/ck/tensor_operation/gpu/grid/gridwise_gemm_xdlops_v3r2.hpp Source File

include/ck/tensor_operation/gpu/grid/gridwise_gemm_xdlops_v3r2.hpp Source File#

Composable Kernel: include/ck/tensor_operation/gpu/grid/gridwise_gemm_xdlops_v3r2.hpp Source File
gridwise_gemm_xdlops_v3r2.hpp
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1 // SPDX-License-Identifier: MIT
2 // Copyright (c) 2018-2023, Advanced Micro Devices, Inc. All rights reserved.
3 
4 #pragma once
5 
17 
18 namespace ck {
19 
20 template <typename GridwiseGemm,
21  typename FloatAB,
22  typename FloatC,
23  typename AGridDesc_K0_M_K1,
24  typename BGridDesc_K0_N_K1,
25  typename CGridDescriptor_MBlock_MXdlPerWave_MWaveMPerXdl_NBlock_NXdlPerWave_NWaveNPerXdl,
26  typename C0GridDescriptor_MBlock_MXdlPerWave_MWaveMPerXdl_NBlock_NXdlPerWave_NWaveNPerXdl,
27  typename AElementwiseOperation,
28  typename BElementwiseOperation,
29  typename CElementwiseOperation,
30  typename Block2CTileMap,
31  bool HasMainKBlockLoop>
32 __global__ void
33 #if CK_USE_LAUNCH_BOUNDS
35 #endif
37  const FloatAB* __restrict__ p_a_grid,
38  const FloatAB* __restrict__ p_b_grid,
39  FloatC* __restrict__ p_c_grid,
40  const FloatC* __restrict__ p_c0_grid,
41  const AGridDesc_K0_M_K1 a_grid_desc_k0_m_k1,
42  const BGridDesc_K0_N_K1 b_grid_desc_k0_n_k1,
43  const CGridDescriptor_MBlock_MXdlPerWave_MWaveMPerXdl_NBlock_NXdlPerWave_NWaveNPerXdl
44  c_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl,
45  const C0GridDescriptor_MBlock_MXdlPerWave_MWaveMPerXdl_NBlock_NXdlPerWave_NWaveNPerXdl
46  c0_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl,
47  const AElementwiseOperation a_element_op,
48  const BElementwiseOperation b_element_op,
49  const CElementwiseOperation c_element_op,
50  const Block2CTileMap block_2_ctile_map)
51 {
52 #if(!defined(__HIP_DEVICE_COMPILE__) || defined(__gfx908__) || defined(__gfx90a__) || \
53  defined(__gfx94__))
54  __shared__ char p_shared[GridwiseGemm::GetSharedMemoryNumberOfByte()];
55 
56  GridwiseGemm::template Run<HasMainKBlockLoop>(
57  p_a_grid,
58  p_b_grid,
59  p_c_grid,
60  p_c0_grid,
61  p_shared,
62  a_grid_desc_k0_m_k1,
63  b_grid_desc_k0_n_k1,
64  c_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl,
65  c0_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl,
66  a_element_op,
67  b_element_op,
68  c_element_op,
69  block_2_ctile_map);
70 #else
71  ignore = p_a_grid;
72  ignore = p_b_grid;
73  ignore = p_c_grid;
74  ignore = p_c0_grid;
75  ignore = a_grid_desc_k0_m_k1;
76  ignore = b_grid_desc_k0_n_k1;
77  ignore = c_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl;
78  ignore = c0_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl;
79  ignore = a_element_op;
80  ignore = b_element_op;
81  ignore = c_element_op;
82  ignore = block_2_ctile_map;
83 #endif // end of if (defined(__gfx908__) || defined(__gfx90a__))
84 }
85 
86 template <
87  index_t BlockSize,
88  typename FloatAB,
89  typename FloatAcc,
90  typename FloatC,
91  InMemoryDataOperationEnum CGlobalMemoryDataOperation,
92  typename AGridDesc_K0_M_K1,
93  typename BGridDesc_K0_N_K1,
94  typename CGridDesc_M_N,
95  typename C0GridDesc_M_N,
96  typename AElementwiseOperation,
97  typename BElementwiseOperation,
98  typename CElementwiseOperation,
99  index_t MPerBlock,
100  index_t NPerBlock,
101  index_t K0PerBlock,
102  index_t MPerXdl,
103  index_t NPerXdl,
104  index_t K1Value,
105  index_t MXdlPerWave,
106  index_t NXdlPerWave,
107  typename ABlockTransferThreadClusterLengths_K0_M_K1,
108  typename ABlockTransferThreadClusterArrangeOrder,
109  typename ABlockTransferSrcAccessOrder,
110  index_t ABlockTransferSrcVectorDim,
111  index_t ABlockTransferSrcScalarPerVector,
112  index_t ABlockTransferDstScalarPerVector_K1,
113  bool AThreadTransferSrcResetCoordinateAfterRun,
114  bool ABlockLdsExtraM,
115  typename BBlockTransferThreadClusterLengths_K0_N_K1,
116  typename BBlockTransferThreadClusterArrangeOrder,
117  typename BBlockTransferSrcAccessOrder,
118  index_t BBlockTransferSrcVectorDim,
119  index_t BBlockTransferSrcScalarPerVector,
120  index_t BBlockTransferDstScalarPerVector_K1,
121  bool BThreadTransferSrcResetCoordinateAfterRun,
122  bool BBlockLdsExtraN,
123  index_t CShuffleMXdlPerWavePerShuffle,
124  index_t CShuffleNXdlPerWavePerShuffle,
125  typename CBlockTransferClusterLengths_MBlock_MXdlPerWave_MWaveMPerXdl_NBlock_NXdlPerWave_NWaveNPerXdl,
126  index_t CBlockTransferScalarPerVector_NWaveNPerXdl,
127  index_t NumGemmKPrefetchStage = 1,
128  PipelineVersion PipelineVer = PipelineVersion::v1>
130 {
131  static constexpr auto I0 = Number<0>{};
132  static constexpr auto I1 = Number<1>{};
133  static constexpr auto I2 = Number<2>{};
134  static constexpr auto I3 = Number<3>{};
135  static constexpr auto I4 = Number<4>{};
136  static constexpr auto I5 = Number<5>{};
137  static constexpr auto I6 = Number<6>{};
138  static constexpr auto I7 = Number<7>{};
139 
140  // K1 should be Number<...>
141  static constexpr auto K1 = Number<K1Value>{};
142 
144 
146  decltype(GridwiseGemmPipeline_Selector<PipelineVer, NumGemmKPrefetchStage>())>;
147 
148  __host__ __device__ static constexpr auto GetABlockDescriptor_K0PerBlock_MPerBlock_K1()
149  {
150  constexpr auto max_lds_align = K1;
151 
152  // A matrix in LDS memory, dst of blockwise copy
153  constexpr auto a_block_desc_k0_m_k1 = [&]() {
154  if constexpr(ABlockLdsExtraM)
155  {
159  }
160  else
161  {
163  make_tuple(Number<K0PerBlock>{}, Number<MPerBlock>{}, K1), max_lds_align);
164  }
165  }();
166 
167  return a_block_desc_k0_m_k1;
168  }
169 
170  __host__ __device__ static constexpr auto GetBBlockDescriptor_K0PerBlock_NPerBlock_K1()
171  {
172  constexpr auto max_lds_align = K1;
173 
174  // B matrix in LDS memory, dst of blockwise copy
175  constexpr auto b_block_desc_k0_n_k1 = [&]() {
176  if constexpr(BBlockLdsExtraN)
177  {
181  }
182  else
183  {
185  make_tuple(Number<K0PerBlock>{}, Number<NPerBlock>{}, K1), max_lds_align);
186  }
187  }();
188 
189  return b_block_desc_k0_n_k1;
190  }
191 
192  __host__ __device__ static constexpr auto
194  {
195  constexpr index_t MWave = MPerBlock / (MXdlPerWave * MPerXdl);
196  constexpr index_t NWave = NPerBlock / (NXdlPerWave * NPerXdl);
197 
198  constexpr auto
199  c_block_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl =
201  make_tuple(I1,
204  I1,
207 
208  return c_block_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl;
209  }
210 
211  __host__ __device__ static constexpr index_t GetSharedMemoryNumberOfByte()
212  {
213  // LDS allocation for A and B: be careful of alignment
214  constexpr auto a_block_desc_k0_m_k1 = GetABlockDescriptor_K0PerBlock_MPerBlock_K1();
215 
216  constexpr auto b_block_desc_k0_n_k1 = GetBBlockDescriptor_K0PerBlock_NPerBlock_K1();
217 
218  constexpr auto max_lds_align = K1;
219 
220  constexpr auto a_block_space_size_aligned =
221  math::integer_least_multiple(a_block_desc_k0_m_k1.GetElementSpaceSize(), max_lds_align);
222 
223  constexpr auto b_block_space_size_aligned =
224  math::integer_least_multiple(b_block_desc_k0_n_k1.GetElementSpaceSize(), max_lds_align);
225 
226  // LDS allocation for C shuffle in LDS
227  constexpr auto c_block_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl =
229 
230  constexpr auto c_block_size =
231  c_block_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl
232  .GetElementSpaceSize();
233 
234  return math::max((a_block_space_size_aligned + b_block_space_size_aligned) *
235  sizeof(FloatAB),
236  c_block_size * sizeof(FloatC));
237  }
238 
239  // block_id to matrix tile idx (m0, n0) mapping are controlled by {M01, N01}
240  template <typename Block2CTileMap>
241  __host__ __device__ static constexpr bool
242  CheckValidity(const AGridDesc_K0_M_K1& a_grid_desc_k0_m_k1,
243  const BGridDesc_K0_N_K1& b_grid_desc_k0_n_k1,
244  const CGridDesc_M_N& c_grid_desc_m_n,
245  const Block2CTileMap& block_2_ctile_map)
246  {
247  static_assert(is_known_at_compile_time<remove_cv_t<decltype(K1)>>::value,
248  "wrong! K1 need to be known at compile-time");
249 
250  static_assert((MPerBlock % (MPerXdl * MXdlPerWave) == 0) &&
251  (NPerBlock % (NXdlPerWave * NPerXdl)) == 0,
252  "Invalid tuning param!");
253 
254  const auto M = a_grid_desc_k0_m_k1.GetLength(I1);
255  const auto N = b_grid_desc_k0_n_k1.GetLength(I1);
256  const auto K0 = a_grid_desc_k0_m_k1.GetLength(I0);
257 
258  if(!(M == c_grid_desc_m_n.GetLength(I0) && N == c_grid_desc_m_n.GetLength(I1) &&
259  K0 == b_grid_desc_k0_n_k1.GetLength(I0) && K1 == a_grid_desc_k0_m_k1.GetLength(I2) &&
260  K1 == b_grid_desc_k0_n_k1.GetLength(I2)))
261  return false;
262 
263  if(!(M % MPerBlock == 0 && N % NPerBlock == 0 && K0 % K0PerBlock == 0))
264  return false;
265 
266  // check gridwise gemm pipeline
267  const auto num_k_loop = K0 / K0PerBlock;
268 
269  if(!GridwiseGemmPipe::IsSupported(num_k_loop))
270  {
271  return false;
272  }
273 
274  if(!block_2_ctile_map.CheckValidity(c_grid_desc_m_n))
275  {
276  return false;
277  }
278 
279  // TODO: also check validity of all components (blockwise-copy, threadwise-copy, etc)
280  return true;
281  }
282 
283  __host__ __device__ static constexpr bool CalculateHasMainKBlockLoop(index_t K)
284  {
285  const index_t num_loop = K / (K0PerBlock * K1);
286 
287  return GridwiseGemmPipe::CalculateHasMainLoop(num_loop);
288  }
289 
290  template <typename CGridDesc_M_N_>
291  __host__ __device__ static constexpr auto
293  const CGridDesc_M_N_& c_grid_desc_m_n)
294  {
295  const auto M = c_grid_desc_m_n.GetLength(I0);
296  const auto N = c_grid_desc_m_n.GetLength(I1);
297 
298  const auto MBlock = M / MPerBlock;
299  const auto NBlock = N / NPerBlock;
300 
301  constexpr index_t MWave = MPerBlock / (MXdlPerWave * MPerXdl);
302  constexpr index_t NWave = NPerBlock / (NXdlPerWave * NPerXdl);
303 
304  const auto c_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl =
306  c_grid_desc_m_n,
313 
314  return c_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl;
315  }
316 
317  // return block_id to C matrix tile idx (m0, n0) mapping
318  __host__ __device__ static constexpr auto MakeDefaultBlock2CTileMap(
319  const CGridDesc_M_N& c_grid_desc_m_n, index_t /* M01 */, index_t /* N01 */)
320  {
322  c_grid_desc_m_n);
323  }
324 
328  CGridDesc_M_N{}))>;
329 
333  C0GridDesc_M_N{}))>;
334 
336  remove_cvref_t<decltype(MakeDefaultBlock2CTileMap(CGridDesc_M_N{}, 1, 1))>;
337 
338  template <bool HasMainKBlockLoop, typename Block2CTileMap = DefaultBlock2CTileMap>
339  __device__ static void
340  Run(const FloatAB* __restrict__ p_a_grid,
341  const FloatAB* __restrict__ p_b_grid,
342  FloatC* __restrict__ p_c_grid,
343  const FloatC* __restrict__ p_c0_grid,
344  void* __restrict__ p_shared,
345  const AGridDesc_K0_M_K1& a_grid_desc_k0_m_k1,
346  const BGridDesc_K0_N_K1& b_grid_desc_k0_n_k1,
348  c_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl,
350  c0_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl,
351  const AElementwiseOperation& a_element_op,
352  const BElementwiseOperation& b_element_op,
353  const CElementwiseOperation& c_element_op,
354  const Block2CTileMap& block_2_ctile_map)
355  {
356  const auto a_grid_buf = make_dynamic_buffer<AddressSpaceEnum::Global>(
357  p_a_grid, a_grid_desc_k0_m_k1.GetElementSpaceSize());
358  const auto b_grid_buf = make_dynamic_buffer<AddressSpaceEnum::Global>(
359  p_b_grid, b_grid_desc_k0_n_k1.GetElementSpaceSize());
360  auto c_grid_buf = make_dynamic_buffer<AddressSpaceEnum::Global>(
361  p_c_grid,
362  c_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl
363  .GetElementSpaceSize());
364  auto c0_grid_buf = make_dynamic_buffer<AddressSpaceEnum::Global>(
365  p_c0_grid,
366  c0_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl
367  .GetElementSpaceSize());
368 
369  const auto K0 = a_grid_desc_k0_m_k1.GetLength(I0);
370 
371  // divide block work by [M, N]
372  const auto block_work_idx =
373  block_2_ctile_map.CalculateBottomIndex(make_multi_index(get_block_1d_id()));
374 
375  if(!block_2_ctile_map.ValidCTileIndex(
376  block_work_idx,
377  make_tuple(
378  c_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl
379  .GetLength(I0),
380  c_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl
381  .GetLength(I3))))
382  {
383  return;
384  }
385 
386  // HACK: this force m/n_block_data_idx_on_grid into SGPR
387  const index_t m_block_data_idx_on_grid =
388  __builtin_amdgcn_readfirstlane(block_work_idx[I0] * MPerBlock);
389 
390  const index_t n_block_data_idx_on_grid =
391  __builtin_amdgcn_readfirstlane(block_work_idx[I1] * NPerBlock);
392 
393  // lds max alignment
394  constexpr auto max_lds_align = K1;
395 
396  // A matrix in LDS memory, dst of blockwise copy
397  constexpr auto a_block_desc_k0_m_k1 = GetABlockDescriptor_K0PerBlock_MPerBlock_K1();
398 
399  // B matrix in LDS memory, dst of blockwise copy
400  constexpr auto b_block_desc_k0_n_k1 = GetBBlockDescriptor_K0PerBlock_NPerBlock_K1();
401 
402  // A matrix blockwise copy
403  auto a_blockwise_copy =
405  AElementwiseOperation,
409  ABlockTransferThreadClusterLengths_K0_M_K1,
410  ABlockTransferThreadClusterArrangeOrder,
411  FloatAB,
412  FloatAB,
413  decltype(a_grid_desc_k0_m_k1),
414  decltype(a_block_desc_k0_m_k1),
415  ABlockTransferSrcAccessOrder,
417  ABlockTransferSrcVectorDim,
418  2,
419  ABlockTransferSrcScalarPerVector,
420  ABlockTransferDstScalarPerVector_K1,
421  1,
422  1,
423  AThreadTransferSrcResetCoordinateAfterRun,
424  true,
425  NumGemmKPrefetchStage>(
426  a_grid_desc_k0_m_k1,
427  make_multi_index(0, m_block_data_idx_on_grid, 0),
428  a_element_op,
429  a_block_desc_k0_m_k1,
430  make_multi_index(0, 0, 0),
432 
433  // B matrix blockwise copy
434  auto b_blockwise_copy =
436  BElementwiseOperation,
440  BBlockTransferThreadClusterLengths_K0_N_K1,
441  BBlockTransferThreadClusterArrangeOrder,
442  FloatAB,
443  FloatAB,
444  decltype(b_grid_desc_k0_n_k1),
445  decltype(b_block_desc_k0_n_k1),
446  BBlockTransferSrcAccessOrder,
448  BBlockTransferSrcVectorDim,
449  2,
450  BBlockTransferSrcScalarPerVector,
451  BBlockTransferDstScalarPerVector_K1,
452  1,
453  1,
454  BThreadTransferSrcResetCoordinateAfterRun,
455  true,
456  NumGemmKPrefetchStage>(
457  b_grid_desc_k0_n_k1,
458  make_multi_index(0, n_block_data_idx_on_grid, 0),
459  b_element_op,
460  b_block_desc_k0_n_k1,
461  make_multi_index(0, 0, 0),
463 
464  // GEMM definition
465  // c_mtx += transpose(a_mtx) * b_mtx
466  // a_mtx[K0PerBlock, MPerBlock] is in LDS
467  // b_mtx[K0PerBlock, NPerBlock] is in LDS
468  // c_mtx[MPerBlock, NPerBlock] is distributed among threads, and saved in
469  // register
470  // sanity check
471 
472  auto blockwise_gemm =
474  FloatAB,
475  FloatAB,
476  FloatAcc,
477  decltype(a_block_desc_k0_m_k1),
478  decltype(b_block_desc_k0_n_k1),
479  MPerXdl,
480  NPerXdl,
481  MXdlPerWave,
482  NXdlPerWave,
483  K1>{};
484 
485  auto c_thread_buf = blockwise_gemm.GetCThreadBuffer();
486 
487  // LDS allocation for A and B: be careful of alignment
488  constexpr auto a_block_space_size_aligned =
489  math::integer_least_multiple(a_block_desc_k0_m_k1.GetElementSpaceSize(), max_lds_align);
490 
491  auto a_block_buf = make_dynamic_buffer<AddressSpaceEnum::Lds>(
492  static_cast<FloatAB*>(p_shared), a_block_desc_k0_m_k1.GetElementSpaceSize());
493 
494  auto b_block_buf = make_dynamic_buffer<AddressSpaceEnum::Lds>(
495  static_cast<FloatAB*>(p_shared) + a_block_space_size_aligned,
496  b_block_desc_k0_n_k1.GetElementSpaceSize());
497 
498  constexpr auto a_block_slice_copy_step = make_multi_index(K0PerBlock, 0, 0);
499  constexpr auto b_block_slice_copy_step = make_multi_index(K0PerBlock, 0, 0);
500 
501  // gridwise GEMM pipeline
502  const index_t K0BlockMainLoop = __builtin_amdgcn_readfirstlane(K0 / K0PerBlock);
503 
504  GridwiseGemmPipe::template Run<HasMainKBlockLoop>(a_grid_desc_k0_m_k1,
505  a_block_desc_k0_m_k1,
506  a_blockwise_copy,
507  a_grid_buf,
508  a_block_buf,
509  a_block_slice_copy_step,
510  b_grid_desc_k0_n_k1,
511  b_block_desc_k0_n_k1,
512  b_blockwise_copy,
513  b_grid_buf,
514  b_block_buf,
515  b_block_slice_copy_step,
516  blockwise_gemm,
517  c_thread_buf,
518  K0BlockMainLoop);
519 
520  // shuffle C and write out
521  {
522  static_assert(MXdlPerWave % CShuffleMXdlPerWavePerShuffle == 0 &&
523  NXdlPerWave % CShuffleNXdlPerWavePerShuffle == 0,
524  "wrong!");
525 
526  constexpr index_t MWave = MPerBlock / (MXdlPerWave * MPerXdl);
527  constexpr index_t NWave = NPerBlock / (NXdlPerWave * NPerXdl);
528 
529  // TODO: hacky, fix it!
530  constexpr auto c_thread_desc_m0_n0_m1_n1_m2_m3_m4_n2 =
531  blockwise_gemm.GetCThreadDescriptor_M0_N0_M1_N1_M2_M3_M4_N2();
532 
533  // TODO: hacky, fix it!
534  // c_block_desc_m0_n0_m1_n1_m2_m3_m4_n2_tmp is only used to get lengths
535  constexpr auto c_block_desc_m0_n0_m1_n1_m2_m3_m4_n2_tmp =
536  blockwise_gemm.GetCBlockDescriptor_M0_N0_M1_N1_M2_M3_M4_N2();
537 
538  constexpr auto M0 = c_block_desc_m0_n0_m1_n1_m2_m3_m4_n2_tmp.GetLength(I0);
539  constexpr auto N0 = c_block_desc_m0_n0_m1_n1_m2_m3_m4_n2_tmp.GetLength(I1);
540  constexpr auto M1 = c_block_desc_m0_n0_m1_n1_m2_m3_m4_n2_tmp.GetLength(I2);
541  constexpr auto N1 = c_block_desc_m0_n0_m1_n1_m2_m3_m4_n2_tmp.GetLength(I3);
542  constexpr auto M2 = c_block_desc_m0_n0_m1_n1_m2_m3_m4_n2_tmp.GetLength(I4);
543  constexpr auto M3 = c_block_desc_m0_n0_m1_n1_m2_m3_m4_n2_tmp.GetLength(I5);
544  constexpr auto M4 = c_block_desc_m0_n0_m1_n1_m2_m3_m4_n2_tmp.GetLength(I6);
545  constexpr auto N2 = c_block_desc_m0_n0_m1_n1_m2_m3_m4_n2_tmp.GetLength(I7);
546 
547  constexpr auto c_block_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl =
549 
550  auto c_block_buf = make_dynamic_buffer<AddressSpaceEnum::Lds>(
551  static_cast<FloatC*>(p_shared),
552  c_block_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl
553  .GetElementSpaceSize());
554 
555  constexpr auto c_block_desc_m0_n0_m1_n1_m2_m3_m4_n2 = transform_tensor_descriptor(
556  c_block_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl,
557  make_tuple(
558  make_freeze_transform(I0), // freeze mblock
560  Number<CShuffleMXdlPerWavePerShuffle>{}), // M0 (MXdlPerWave) per shuffle
562  make_tuple(M1, M2, M3, M4)), // M1 = MWave, M2 * M3 * M4 = MPerXdl
563  make_freeze_transform(I0), // freeze nblock
565  Number<CShuffleNXdlPerWavePerShuffle>{}), // N0 (NXdlPerWave) per shuffle
567  make_tuple(N1, N2))), // M1 = MWave, M2 * M3 * M4 = MPerXdl
569  Sequence<1>{},
570  Sequence<2>{},
571  Sequence<3>{},
572  Sequence<4>{},
573  Sequence<5>{}),
575  Sequence<0>{},
577  Sequence<>{},
578  Sequence<1>{},
579  Sequence<3, 7>{})
580 
581  );
582 
583  // calculate origin of thread output tensor on global memory
584  // blockwise GEMM c matrix starting index
585  const auto c_thread_mtx_on_block =
586  blockwise_gemm.CalculateCThreadOriginDataIndex(I0, I0, I0, I0);
587 
588  const index_t m_thread_data_on_block = c_thread_mtx_on_block[I0];
589  const index_t n_thread_data_on_block = c_thread_mtx_on_block[I1];
590 
591  const auto m_thread_data_on_block_to_m0_m1_m2_m3_m4_adaptor =
593  make_tuple(make_merge_transform(make_tuple(M0, M1, M2, M3, M4))),
596 
597  const auto m_thread_data_on_block_idx =
598  m_thread_data_on_block_to_m0_m1_m2_m3_m4_adaptor.CalculateBottomIndex(
599  make_multi_index(m_thread_data_on_block));
600 
601  const auto n_thread_data_on_block_to_n0_n1_n2_adaptor =
606 
607  const auto n_thread_data_on_block_idx =
608  n_thread_data_on_block_to_n0_n1_n2_adaptor.CalculateBottomIndex(
609  make_multi_index(n_thread_data_on_block));
610 
611  // VGPR to LDS
612  auto c_thread_copy_vgpr_to_lds =
614  FloatC,
615  decltype(c_thread_desc_m0_n0_m1_n1_m2_m3_m4_n2),
616  decltype(c_block_desc_m0_n0_m1_n1_m2_m3_m4_n2),
618  Sequence<CShuffleMXdlPerWavePerShuffle,
619  CShuffleNXdlPerWavePerShuffle,
620  I1,
621  I1,
622  M2,
623  I1,
624  M4,
625  I1>,
627  7,
628  1,
630  1,
631  true>{
632  c_block_desc_m0_n0_m1_n1_m2_m3_m4_n2,
634  0,
635  m_thread_data_on_block_idx[I1],
636  n_thread_data_on_block_idx[I1],
637  m_thread_data_on_block_idx[I2],
638  m_thread_data_on_block_idx[I3],
639  m_thread_data_on_block_idx[I4],
640  n_thread_data_on_block_idx[I2]),
642 
643  auto c_block_copy_lds_to_global = ThreadGroupTensorSliceTransfer_v6r2<
644  ThisThreadBlock, // index_t BlockSize,
645  CElementwiseOperation, // ElementwiseOperation,
646  CGlobalMemoryDataOperation, // DstInMemOp,
647  Sequence<1,
648  CShuffleMXdlPerWavePerShuffle,
649  MWave * MPerXdl,
650  1,
651  CShuffleNXdlPerWavePerShuffle,
652  NWave * NPerXdl>, // BlockSliceLengths,
653  CBlockTransferClusterLengths_MBlock_MXdlPerWave_MWaveMPerXdl_NBlock_NXdlPerWave_NWaveNPerXdl,
654  Sequence<0, 1, 2, 3, 4, 5>, // typename ThreadClusterArrangeOrder,
655  FloatC, // typename Src0Data,
656  FloatC, // typename Src1Data,
657  FloatC, // typename DstData,
658  decltype(c_block_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl),
659  decltype(c0_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl),
660  decltype(c_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl),
661  Sequence<0, 1, 2, 3, 4, 5>, // typename DimAccessOrder,
662  5, // index_t VectorDim,
663  CBlockTransferScalarPerVector_NWaveNPerXdl, // index_t ScalarPerVector,
664  true, // bool ThreadTransferSrc0ResetCoordinateAfterRun,
665  false, // bool ThreadTransferSrc1ResetCoordinateAfterRun,
666  false> // bool ThreadTransferDstResetCoordinateAfterRun>
667  {c_block_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl,
668  make_multi_index(0, 0, 0, 0, 0, 0),
669  c0_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl,
670  make_multi_index(block_work_idx[I0], 0, 0, block_work_idx[I1], 0, 0),
671  c_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl,
672  make_multi_index(block_work_idx[I0], 0, 0, block_work_idx[I1], 0, 0),
673  c_element_op};
674 
675  constexpr auto mxdlperwave_forward_step =
676  make_multi_index(0, CShuffleMXdlPerWavePerShuffle, 0, 0, 0, 0);
677  constexpr auto nxdlperwave_forward_step =
678  make_multi_index(0, 0, 0, 0, CShuffleNXdlPerWavePerShuffle, 0);
679  constexpr auto nxdlperwave_backward_step =
680  make_multi_index(0, 0, 0, 0, -CShuffleNXdlPerWavePerShuffle, 0);
681 
682  static_for<0, MXdlPerWave, CShuffleMXdlPerWavePerShuffle>{}([&](auto mxdlperwave_iter) {
683  constexpr auto mxdlperwave = mxdlperwave_iter;
684 
685  static_for<0,
686  NXdlPerWave,
687  CShuffleNXdlPerWavePerShuffle>{}([&](auto nxdlperwave_iter) {
688  constexpr bool nxdlperwave_forward_sweep =
689  (mxdlperwave % (2 * CShuffleMXdlPerWavePerShuffle) == 0);
690 
691  constexpr index_t nxdlperwave_value =
692  nxdlperwave_forward_sweep
693  ? nxdlperwave_iter
694  : (NXdlPerWave - nxdlperwave_iter - CShuffleNXdlPerWavePerShuffle);
695 
696  constexpr auto nxdlperwave = Number<nxdlperwave_value>{};
697 
698  // make sure it's safe to do ds_write
699  block_sync_lds();
700 
701  // VGPR to LDS
702  c_thread_copy_vgpr_to_lds.Run(
703  c_thread_desc_m0_n0_m1_n1_m2_m3_m4_n2,
704  make_tuple(mxdlperwave, nxdlperwave, I0, I0, I0, I0, I0, I0),
705  c_thread_buf,
706  c_block_desc_m0_n0_m1_n1_m2_m3_m4_n2,
707  c_block_buf);
708 
709  // make sure it's safe to do ds_read
710  block_sync_lds();
711 
712  // LDS to global
713  c_block_copy_lds_to_global.Run(
714  c_block_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl,
715  c_block_buf,
716  c0_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl,
717  c0_grid_buf,
718  c_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl,
719  c_grid_buf);
720 
721  // move on nxdlperwave dimension
722  if constexpr(nxdlperwave_forward_sweep &&
723  (nxdlperwave < NXdlPerWave - CShuffleNXdlPerWavePerShuffle))
724  {
725  c_block_copy_lds_to_global.MoveSrc1SliceWindow(
726  c0_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl,
727  nxdlperwave_forward_step);
728 
729  c_block_copy_lds_to_global.MoveDstSliceWindow(
730  c_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl,
731  nxdlperwave_forward_step);
732  }
733  else if constexpr((!nxdlperwave_forward_sweep) && (nxdlperwave > 0))
734  {
735  c_block_copy_lds_to_global.MoveSrc1SliceWindow(
736  c0_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl,
737  nxdlperwave_backward_step);
738 
739  c_block_copy_lds_to_global.MoveDstSliceWindow(
740  c_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl,
741  nxdlperwave_backward_step);
742  }
743  });
744 
745  // move on mxdlperwave dimension
746  if constexpr(mxdlperwave < MXdlPerWave - CShuffleMXdlPerWavePerShuffle)
747  {
748  c_block_copy_lds_to_global.MoveSrc1SliceWindow(
749  c0_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl,
750  mxdlperwave_forward_step);
751 
752  c_block_copy_lds_to_global.MoveDstSliceWindow(
753  c_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl,
754  mxdlperwave_forward_step);
755  }
756  });
757  }
758  }
759 };
760 
761 } // namespace ck
#define CK_MIN_BLOCK_PER_CU
Definition: ck.hpp:34
#define CK_MAX_THREAD_PER_BLOCK
Definition: ck.hpp:33
__host__ constexpr __device__ auto integer_least_multiple(X x, Y y)
Definition: math.hpp:78
__host__ constexpr __device__ T max(T x)
Definition: math.hpp:84
Definition: ck.hpp:264
__host__ constexpr __device__ auto make_multi_index(Xs &&... xs)
Definition: array_multi_index.hpp:15
__host__ constexpr __device__ auto make_naive_tensor_descriptor(const Tuple< Lengths... > &lengths, const Tuple< Strides... > &strides)
Definition: tensor_descriptor_helper.hpp:49
InMemoryDataOperationEnum
Definition: ck.hpp:267
__host__ constexpr __device__ auto make_naive_tensor_descriptor_packed(const Tuple< Lengths... > &lengths)
Definition: tensor_descriptor_helper.hpp:101
__host__ constexpr __device__ auto make_merge_transform(const LowLengths &low_lengths)
Definition: multi_index_transform_helper.hpp:55
__host__ constexpr __device__ auto make_naive_tensor_descriptor_aligned(const Tuple< Lengths... > &lengths, Align align)
Definition: tensor_descriptor_helper.hpp:132
__host__ constexpr __device__ auto make_single_stage_tensor_adaptor(const Transforms &transforms, LowerDimensionOldTopIdss, UpperDimensionNewTopIdss)
Definition: tensor_adaptor.hpp:429
__host__ constexpr __device__ auto make_freeze_transform(const LowerIndex &low_idx)
Definition: multi_index_transform_helper.hpp:98
constexpr detail::ignore_t ignore
Definition: ignore.hpp:20
__device__ index_t get_block_1d_id()
Definition: get_id.hpp:22
__host__ constexpr __device__ auto make_pass_through_transform(const LowLength &low_length)
Definition: multi_index_transform_helper.hpp:12
__host__ constexpr __device__ auto make_tuple(Xs &&... xs)
Definition: tuple.hpp:211
remove_cv_t< remove_reference_t< T > > remove_cvref_t
Definition: type.hpp:300
__host__ constexpr __device__ auto make_unmerge_transform(const UpLengths &up_lengths, integral_constant< bool, Use24BitIntegerCalculation >=integral_constant< bool, false >{})
Definition: multi_index_transform_helper.hpp:90
int32_t index_t
Definition: ck.hpp:289
__global__ void kernel_gemm_xdlops_v3r2(const FloatAB *__restrict__ p_a_grid, const FloatAB *__restrict__ p_b_grid, FloatC *__restrict__ p_c_grid, const FloatC *__restrict__ p_c0_grid, const AGridDesc_K0_M_K1 a_grid_desc_k0_m_k1, const BGridDesc_K0_N_K1 b_grid_desc_k0_n_k1, const CGridDescriptor_MBlock_MXdlPerWave_MWaveMPerXdl_NBlock_NXdlPerWave_NWaveNPerXdl c_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl, const C0GridDescriptor_MBlock_MXdlPerWave_MWaveMPerXdl_NBlock_NXdlPerWave_NWaveNPerXdl c0_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl, const AElementwiseOperation a_element_op, const BElementwiseOperation b_element_op, const CElementwiseOperation c_element_op, const Block2CTileMap block_2_ctile_map)
Definition: gridwise_gemm_xdlops_v3r2.hpp:36
__host__ constexpr __device__ auto transform_tensor_descriptor(const OldTensorDescriptor &old_tensor_desc, const NewTransforms &new_transforms, NewLowerDimensionOldVisibleIdss, NewUpperDimensionNewVisibleIdss)
Definition: tensor_descriptor.hpp:319
__device__ void block_sync_lds()
Definition: synchronization.hpp:10
PipelineVersion
Definition: gridwise_gemm_pipeline_selector.hpp:17
typename remove_cv< T >::type remove_cv_t
Definition: type.hpp:298
Definition: block_to_ctile_map.hpp:260
Definition: blockwise_gemm_smfmac_xdlops.hpp:44
Definition: gridwise_gemm_xdlops_v3r2.hpp:130
static constexpr auto I1
Definition: gridwise_gemm_xdlops_v3r2.hpp:132
__host__ static constexpr __device__ bool CalculateHasMainKBlockLoop(index_t K)
Definition: gridwise_gemm_xdlops_v3r2.hpp:283
remove_cvref_t< decltype(MakeCGridDescriptor_MBlock_MXdlPerWave_MWaveMPerXdl_NBlock_NXdlPerWave_NWaveNPerXdl(C0GridDesc_M_N{}))> C0GridDescriptor_MBlock_MXdlPerWave_MWaveMPerXdl_NBlock_NXdlPerWave_NWaveNPerXdl
Definition: gridwise_gemm_xdlops_v3r2.hpp:333
static constexpr auto K1
Definition: gridwise_gemm_xdlops_v3r2.hpp:141
__host__ static constexpr __device__ index_t GetSharedMemoryNumberOfByte()
Definition: gridwise_gemm_xdlops_v3r2.hpp:211
__host__ static constexpr __device__ auto GetABlockDescriptor_K0PerBlock_MPerBlock_K1()
Definition: gridwise_gemm_xdlops_v3r2.hpp:148
__host__ static constexpr __device__ auto GetBBlockDescriptor_K0PerBlock_NPerBlock_K1()
Definition: gridwise_gemm_xdlops_v3r2.hpp:170
static constexpr auto I3
Definition: gridwise_gemm_xdlops_v3r2.hpp:134
static constexpr auto I4
Definition: gridwise_gemm_xdlops_v3r2.hpp:135
__host__ static constexpr __device__ auto MakeCGridDescriptor_MBlock_MXdlPerWave_MWaveMPerXdl_NBlock_NXdlPerWave_NWaveNPerXdl(const CGridDesc_M_N_ &c_grid_desc_m_n)
Definition: gridwise_gemm_xdlops_v3r2.hpp:292
__host__ static constexpr __device__ auto MakeDefaultBlock2CTileMap(const CGridDesc_M_N &c_grid_desc_m_n, index_t, index_t)
Definition: gridwise_gemm_xdlops_v3r2.hpp:318
static constexpr auto I0
Definition: gridwise_gemm_xdlops_v3r2.hpp:131
remove_cvref_t< decltype(GridwiseGemmPipeline_Selector< PipelineVer, NumGemmKPrefetchStage >())> GridwiseGemmPipe
Definition: gridwise_gemm_xdlops_v3r2.hpp:146
static __device__ void Run(const FloatAB *__restrict__ p_a_grid, const FloatAB *__restrict__ p_b_grid, FloatC *__restrict__ p_c_grid, const FloatC *__restrict__ p_c0_grid, void *__restrict__ p_shared, const AGridDesc_K0_M_K1 &a_grid_desc_k0_m_k1, const BGridDesc_K0_N_K1 &b_grid_desc_k0_n_k1, const CGridDescriptor_MBlock_MXdlPerWave_MWaveMPerXdl_NBlock_NXdlPerWave_NWaveNPerXdl &c_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl, const C0GridDescriptor_MBlock_MXdlPerWave_MWaveMPerXdl_NBlock_NXdlPerWave_NWaveNPerXdl &c0_grid_desc_mblock_mxdlperwave_mwavemperxdl_nblock_nxdlperwave_nwavenperxdl, const AElementwiseOperation &a_element_op, const BElementwiseOperation &b_element_op, const CElementwiseOperation &c_element_op, const Block2CTileMap &block_2_ctile_map)
Definition: gridwise_gemm_xdlops_v3r2.hpp:340
static constexpr auto I2
Definition: gridwise_gemm_xdlops_v3r2.hpp:133
ThisThreadBlock< BlockSize > ThisThreadBlock
Definition: gridwise_gemm_xdlops_v3r2.hpp:143
__host__ static constexpr __device__ bool CheckValidity(const AGridDesc_K0_M_K1 &a_grid_desc_k0_m_k1, const BGridDesc_K0_N_K1 &b_grid_desc_k0_n_k1, const CGridDesc_M_N &c_grid_desc_m_n, const Block2CTileMap &block_2_ctile_map)
Definition: gridwise_gemm_xdlops_v3r2.hpp:242
static constexpr auto I5
Definition: gridwise_gemm_xdlops_v3r2.hpp:136
static constexpr auto I6
Definition: gridwise_gemm_xdlops_v3r2.hpp:137
__host__ static constexpr __device__ auto GetCBlockDescriptor_MBlock_NXdlPerWave_MWaveMPerXdl_NBlock_NXdlPerWave_NWaveNPerXdl()
Definition: gridwise_gemm_xdlops_v3r2.hpp:193
static constexpr auto I7
Definition: gridwise_gemm_xdlops_v3r2.hpp:138
remove_cvref_t< decltype(MakeCGridDescriptor_MBlock_MXdlPerWave_MWaveMPerXdl_NBlock_NXdlPerWave_NWaveNPerXdl(CGridDesc_M_N{}))> CGridDescriptor_MBlock_MXdlPerWave_MWaveMPerXdl_NBlock_NXdlPerWave_NWaveNPerXdl
Definition: gridwise_gemm_xdlops_v3r2.hpp:328
remove_cvref_t< decltype(MakeDefaultBlock2CTileMap(CGridDesc_M_N{}, 1, 1))> DefaultBlock2CTileMap
Definition: gridwise_gemm_xdlops_v3r2.hpp:336
Definition: sequence.hpp:43
Blockwise data transfer.
Definition: thread_group_tensor_slice_transfer_v4r1.hpp:46
Definition: thread_group_tensor_slice_transfer_v6r2.hpp:37
Definition: threadwise_tensor_slice_transfer.hpp:39
Definition: integral_constant.hpp:10
Definition: is_known_at_compile_time.hpp:14
Definition: functional2.hpp:31
Definition: unary_element_wise_operation.hpp:241