scaled_mm_entry.cu 16.6 KB
Newer Older
1
2
#include <cudaTypedefs.h>

3
#include <c10/cuda/CUDAGuard.h>
4
#include <torch/all.h>
5

6
7
#include "cutlass_extensions/common.hpp"

8
9
10
void cutlass_scaled_mm_sm75(torch::Tensor& c, torch::Tensor const& a,
                            torch::Tensor const& b,
                            torch::Tensor const& a_scales,
11
                            torch::Tensor const& b_scales,
12
                            std::optional<torch::Tensor> const& bias);
13

14
15
16
void cutlass_scaled_mm_sm80(torch::Tensor& c, torch::Tensor const& a,
                            torch::Tensor const& b,
                            torch::Tensor const& a_scales,
17
                            torch::Tensor const& b_scales,
18
                            std::optional<torch::Tensor> const& bias);
19

20
21
22
void cutlass_scaled_mm_sm89(torch::Tensor& c, torch::Tensor const& a,
                            torch::Tensor const& b,
                            torch::Tensor const& a_scales,
23
                            torch::Tensor const& b_scales,
24
                            std::optional<torch::Tensor> const& bias);
25

26
#if defined ENABLE_SCALED_MM_SM90 && ENABLE_SCALED_MM_SM90
27
28
29
void cutlass_scaled_mm_sm90(torch::Tensor& c, torch::Tensor const& a,
                            torch::Tensor const& b,
                            torch::Tensor const& a_scales,
30
                            torch::Tensor const& b_scales,
31
                            std::optional<torch::Tensor> const& bias);
32
33
#endif
#if defined ENABLE_CUTLASS_MOE_SM90 && ENABLE_CUTLASS_MOE_SM90
34
35
36
37
38
void cutlass_moe_mm_sm90(
    torch::Tensor& out_tensors, torch::Tensor const& a_tensors,
    torch::Tensor const& b_tensors, torch::Tensor const& a_scales,
    torch::Tensor const& b_scales, torch::Tensor const& expert_offsets,
    torch::Tensor const& problem_sizes, torch::Tensor const& a_strides,
39
40
    torch::Tensor const& b_strides, torch::Tensor const& c_strides,
    bool per_act_token, bool per_out_ch);
41

42
43
#endif

44
45
46
47
48
49
50
51
52
53
#if defined ENABLE_CUTLASS_MOE_SM100 && ENABLE_CUTLASS_MOE_SM100
void cutlass_moe_mm_sm100(
    torch::Tensor& out_tensors, torch::Tensor const& a_tensors,
    torch::Tensor const& b_tensors, torch::Tensor const& a_scales,
    torch::Tensor const& b_scales, torch::Tensor const& expert_offsets,
    torch::Tensor const& problem_sizes, torch::Tensor const& a_strides,
    torch::Tensor const& b_strides, torch::Tensor const& c_strides,
    bool per_act_token, bool per_out_ch);
#endif

54
55
56
57
58
59
60
61
#if defined ENABLE_SCALED_MM_SM120 && ENABLE_SCALED_MM_SM120
void cutlass_scaled_mm_sm120(torch::Tensor& c, torch::Tensor const& a,
                             torch::Tensor const& b,
                             torch::Tensor const& a_scales,
                             torch::Tensor const& b_scales,
                             std::optional<torch::Tensor> const& bias);
#endif

62
#if defined ENABLE_SCALED_MM_SM100 && ENABLE_SCALED_MM_SM100
63
64
65
66
67
void cutlass_scaled_mm_sm100(torch::Tensor& c, torch::Tensor const& a,
                             torch::Tensor const& b,
                             torch::Tensor const& a_scales,
                             torch::Tensor const& b_scales,
                             std::optional<torch::Tensor> const& bias);
68
#endif
69

70
71
72
73
74
75
#if defined(ENABLE_SCALED_MM_SM90) && ENABLE_SCALED_MM_SM90 || \
    defined(ENABLE_SCALED_MM_SM100) && ENABLE_SCALED_MM_SM100
void get_cutlass_moe_mm_data_caller(
    const torch::Tensor& topk_ids, torch::Tensor& expert_offsets,
    torch::Tensor& problem_sizes1, torch::Tensor& problem_sizes2,
    torch::Tensor& input_permutation, torch::Tensor& output_permutation,
76
77
    const int64_t num_experts, const int64_t n, const int64_t k,
    const std::optional<torch::Tensor>& blockscale_offsets);
78

79
80
81
82
83
void get_cutlass_moe_mm_problem_sizes_caller(
    const torch::Tensor& topk_ids, torch::Tensor& problem_sizes1,
    torch::Tensor& problem_sizes2, const int64_t num_experts, const int64_t n,
    const int64_t k, const std::optional<torch::Tensor>& blockscale_offsets);

84
85
86
87
88
89
90
void get_cutlass_pplx_moe_mm_data_caller(torch::Tensor& expert_offsets,
                                         torch::Tensor& problem_sizes1,
                                         torch::Tensor& problem_sizes2,
                                         const torch::Tensor& expert_num_tokens,
                                         const int64_t num_local_experts,
                                         const int64_t padded_m,
                                         const int64_t n, const int64_t k);
91
92
#endif

93
94
95
96
97
void cutlass_scaled_mm_azp_sm75(torch::Tensor& c, torch::Tensor const& a,
                                torch::Tensor const& b,
                                torch::Tensor const& a_scales,
                                torch::Tensor const& b_scales,
                                torch::Tensor const& azp_adj,
98
99
                                std::optional<torch::Tensor> const& azp,
                                std::optional<torch::Tensor> const& bias);
100
101
102
103
104
105

void cutlass_scaled_mm_azp_sm80(torch::Tensor& c, torch::Tensor const& a,
                                torch::Tensor const& b,
                                torch::Tensor const& a_scales,
                                torch::Tensor const& b_scales,
                                torch::Tensor const& azp_adj,
106
107
                                std::optional<torch::Tensor> const& azp,
                                std::optional<torch::Tensor> const& bias);
108
109
110
111
112
113

void cutlass_scaled_mm_azp_sm89(torch::Tensor& c, torch::Tensor const& a,
                                torch::Tensor const& b,
                                torch::Tensor const& a_scales,
                                torch::Tensor const& b_scales,
                                torch::Tensor const& azp_adj,
114
115
                                std::optional<torch::Tensor> const& azp,
                                std::optional<torch::Tensor> const& bias);
116

117
#if defined ENABLE_SCALED_MM_SM90 && ENABLE_SCALED_MM_SM90
118
119
120
121
122
void cutlass_scaled_mm_azp_sm90(torch::Tensor& c, torch::Tensor const& a,
                                torch::Tensor const& b,
                                torch::Tensor const& a_scales,
                                torch::Tensor const& b_scales,
                                torch::Tensor const& azp_adj,
123
124
                                std::optional<torch::Tensor> const& azp,
                                std::optional<torch::Tensor> const& bias);
125
126
#endif

127
128
129
130
131
132
133
134
135
bool cutlass_scaled_mm_supports_fp8(int64_t cuda_device_capability) {
  // CUTLASS FP8 kernels need at least
  //   CUDA 12.0 on SM90 systems (Hopper)
  //   CUDA 12.4 on SM89 systems (Lovelace)

#if defined CUDA_VERSION
  if (cuda_device_capability >= 90) {
    return CUDA_VERSION >= 12000;
  } else if (cuda_device_capability >= 89) {
136
    return CUDA_VERSION >= 12040;
137
138
139
140
141
142
  }
#endif

  return false;
}

143
144
145
146
147
bool cutlass_scaled_mm_supports_block_fp8(int64_t cuda_device_capability) {
  // CUTLASS block-quantized FP8 kernels need at least CUDA 12.0
  // and at least SM90 (Hopper)

#if defined CUDA_VERSION
148
  if (cuda_device_capability >= 100) {
149
    return CUDA_VERSION >= 12080;
150
151
  } else if (cuda_device_capability >= 90) {
    return CUDA_VERSION >= 12000;
152
153
154
155
156
157
  }
#endif

  return false;
}

158
bool cutlass_group_gemm_supported(int64_t cuda_device_capability) {
159
160
  // CUTLASS grouped FP8 kernels need at least CUDA 12.3 and SM90 (Hopper)
  // or CUDA 12.8 and SM100 (Blackwell)
161
162

#if defined CUDA_VERSION
163
164
165
166
  if (cuda_device_capability >= 100) {
    return CUDA_VERSION >= 12080;
  }
  if (cuda_device_capability >= 90) {
167
168
169
170
171
172
173
    return CUDA_VERSION >= 12030;
  }
#endif

  return false;
}

174
175
176
void cutlass_scaled_mm(torch::Tensor& c, torch::Tensor const& a,
                       torch::Tensor const& b, torch::Tensor const& a_scales,
                       torch::Tensor const& b_scales,
177
                       std::optional<torch::Tensor> const& bias) {
178
179
180
  // Checks for conformality
  TORCH_CHECK(a.dim() == 2 && b.dim() == 2 && c.dim() == 2);
  TORCH_CHECK(c.size(0) == a.size(0) && a.size(1) == b.size(0) &&
181
              b.size(1) == c.size(1));
182
183

  // Check for strides and alignment
184
185
186
187
  TORCH_CHECK(a.stride(1) == 1 && c.stride(1) == 1);  // Row-major
  TORCH_CHECK(b.stride(0) == 1);                      // Column-major
  TORCH_CHECK(c.stride(0) % 16 == 0 &&
              b.stride(1) % 16 == 0);  // 16 Byte Alignment
188

189
190
191
192
193
  if (bias) {
    TORCH_CHECK(bias->numel() == b.size(1) && bias->is_contiguous() &&
                bias->dim() == 1);
  }

194
  at::cuda::OptionalCUDAGuard const device_guard(device_of(a));
195
  int32_t version_num = get_sm_version_num();
196

197
198
199
200
201
202
203
#if defined ENABLE_SCALED_MM_SM120 && ENABLE_SCALED_MM_SM120
  if (version_num >= 120) {
    cutlass_scaled_mm_sm120(c, a, b, a_scales, b_scales, bias);
    return;
  }
#endif

204
#if defined ENABLE_SCALED_MM_SM100 && ENABLE_SCALED_MM_SM100
205
  if (version_num >= 100 && version_num < 120) {
206
    cutlass_scaled_mm_sm100(c, a, b, a_scales, b_scales, bias);
207
208
    return;
  }
209
210
211
212
#endif

  // Guard against compilation issues for sm90 kernels
#if defined ENABLE_SCALED_MM_SM90 && ENABLE_SCALED_MM_SM90
213
  if (version_num >= 90 && version_num < 100) {
214
    // Hopper
215
216
217
    cutlass_scaled_mm_sm90(c, a, b, a_scales, b_scales, bias);
    return;
  }
218
#endif
219
220
221

#if defined ENABLE_SCALED_MM_C2X && ENABLE_SCALED_MM_C2X
  if (version_num == 89) {
222
    // Ada Lovelace
223
    cutlass_scaled_mm_sm89(c, a, b, a_scales, b_scales, bias);
224
225
226
227
    return;
  }

  if (version_num >= 80) {
228
    // Ampere
229
    cutlass_scaled_mm_sm80(c, a, b, a_scales, b_scales, bias);
230
    return;
231
  }
232

233
234
235
236
237
  if (version_num >= 75) {
    // Turing
    cutlass_scaled_mm_sm75(c, a, b, a_scales, b_scales, bias);
    return;
  }
238
239
240
241
242
243
244
#endif

  TORCH_CHECK_NOT_IMPLEMENTED(
      false,
      "No compiled cutlass_scaled_mm for a compute capability less than "
      "CUDA device capability: ",
      version_num);
245
}
246

247
248
249
250
251
void cutlass_moe_mm(
    torch::Tensor& out_tensors, torch::Tensor const& a_tensors,
    torch::Tensor const& b_tensors, torch::Tensor const& a_scales,
    torch::Tensor const& b_scales, torch::Tensor const& expert_offsets,
    torch::Tensor const& problem_sizes, torch::Tensor const& a_strides,
252
253
    torch::Tensor const& b_strides, torch::Tensor const& c_strides,
    bool per_act_token, bool per_out_ch) {
254
  int32_t version_num = get_sm_version_num();
255
256
257
258
259
260
261
262
#if defined ENABLE_CUTLASS_MOE_SM100 && ENABLE_CUTLASS_MOE_SM100
  if (version_num >= 100) {
    cutlass_moe_mm_sm100(out_tensors, a_tensors, b_tensors, a_scales, b_scales,
                         expert_offsets, problem_sizes, a_strides, b_strides,
                         c_strides, per_act_token, per_out_ch);
    return;
  }
#endif
263
#if defined ENABLE_CUTLASS_MOE_SM90 && ENABLE_CUTLASS_MOE_SM90
264
265
266
267
268
269
  if (version_num >= 90) {
    cutlass_moe_mm_sm90(out_tensors, a_tensors, b_tensors, a_scales, b_scales,
                        expert_offsets, problem_sizes, a_strides, b_strides,
                        c_strides, per_act_token, per_out_ch);
    return;
  }
270
271
272
273
#endif
  TORCH_CHECK_NOT_IMPLEMENTED(
      false,
      "No compiled cutlass_scaled_mm for CUDA device capability: ", version_num,
274
      ". Required capability: 90 or 100");
275
276
277
278
279
280
}

void get_cutlass_moe_mm_data(
    const torch::Tensor& topk_ids, torch::Tensor& expert_offsets,
    torch::Tensor& problem_sizes1, torch::Tensor& problem_sizes2,
    torch::Tensor& input_permutation, torch::Tensor& output_permutation,
281
282
    const int64_t num_experts, const int64_t n, const int64_t k,
    const std::optional<torch::Tensor>& blockscale_offsets) {
283
284
285
  // This function currently gets compiled only if we have a valid cutlass moe
  // mm to run it for.
  int32_t version_num = get_sm_version_num();
286
#if (defined ENABLE_CUTLASS_MOE_SM90 && ENABLE_CUTLASS_MOE_SM90) || \
287
    (defined ENABLE_CUTLASS_MOE_SM100 && ENABLE_CUTLASS_MOE_SM100)
288
289
  get_cutlass_moe_mm_data_caller(topk_ids, expert_offsets, problem_sizes1,
                                 problem_sizes2, input_permutation,
290
291
                                 output_permutation, num_experts, n, k,
                                 blockscale_offsets);
292
293
294
295
296
297
  return;
#endif
  TORCH_CHECK_NOT_IMPLEMENTED(
      false,
      "No compiled get_cutlass_moe_mm_data: no cutlass_scaled_mm kernel for "
      "CUDA device capability: ",
298
      version_num, ". Required capability: 90 or 100");
299
300
}

301
302
303
304
305
306
307
308
309
310
311
312
313
314
315
316
317
318
319
void get_cutlass_moe_mm_problem_sizes(
    const torch::Tensor& topk_ids, torch::Tensor& problem_sizes1,
    torch::Tensor& problem_sizes2, const int64_t num_experts, const int64_t n,
    const int64_t k, const std::optional<torch::Tensor>& blockscale_offsets) {
  int32_t version_num = get_sm_version_num();
#if (defined ENABLE_CUTLASS_MOE_SM90 && ENABLE_CUTLASS_MOE_SM90) || \
    (defined ENABLE_CUTLASS_MOE_SM100 && ENABLE_CUTLASS_MOE_SM100)
  get_cutlass_moe_mm_problem_sizes_caller(topk_ids, problem_sizes1,
                                          problem_sizes2, num_experts, n, k,
                                          blockscale_offsets);
  return;
#endif
  TORCH_CHECK_NOT_IMPLEMENTED(
      false,
      "No compiled get_cutlass_moe_mm_problem_sizes: no cutlass_scaled_mm "
      "kernel for CUDA device capability: ",
      version_num, ". Required capability: 90 or 100");
}

320
321
322
323
324
325
326
327
328
329
void get_cutlass_pplx_moe_mm_data(torch::Tensor& expert_offsets,
                                  torch::Tensor& problem_sizes1,
                                  torch::Tensor& problem_sizes2,
                                  const torch::Tensor& expert_num_tokens,
                                  const int64_t num_local_experts,
                                  const int64_t padded_m, const int64_t n,
                                  const int64_t k) {
  // This function currently gets compiled only if we have a valid cutlass moe
  // mm to run it for.
  int32_t version_num = get_sm_version_num();
330
331
#if (defined ENABLE_CUTLASS_MOE_SM90 && ENABLE_CUTLASS_MOE_SM90) || \
    (defined ENABLE_CUTLASS_MOE_SM100 && ENABLE_CUTLASS_MOE_SM100)
332
333
334
335
336
337
338
339
340
  get_cutlass_pplx_moe_mm_data_caller(expert_offsets, problem_sizes1,
                                      problem_sizes2, expert_num_tokens,
                                      num_local_experts, padded_m, n, k);
  return;
#endif
  TORCH_CHECK_NOT_IMPLEMENTED(
      false,
      "No compiled get_cutlass_pplx_moe_mm_data: no cutlass_scaled_mm kernel "
      "for CUDA device capability: ",
341
      version_num, ". Required capability: 90 or 100");
342
343
}

344
345
346
347
348
void cutlass_scaled_mm_azp(torch::Tensor& c, torch::Tensor const& a,
                           torch::Tensor const& b,
                           torch::Tensor const& a_scales,
                           torch::Tensor const& b_scales,
                           torch::Tensor const& azp_adj,
349
350
                           std::optional<torch::Tensor> const& azp,
                           std::optional<torch::Tensor> const& bias) {
351
352
353
354
355
356
357
358
359
360
361
362
363
364
365
366
367
368
369
370
371
372
373
374
375
376
377
378
379
380
381
  // Checks for conformality
  TORCH_CHECK(a.dim() == 2 && b.dim() == 2 && c.dim() == 2);
  TORCH_CHECK(c.size(0) == a.size(0) && a.size(1) == b.size(0) &&
              b.size(1) == c.size(1));
  TORCH_CHECK(a_scales.numel() == 1 || a_scales.numel() == a.size(0));
  TORCH_CHECK(b_scales.numel() == 1 || b_scales.numel() == b.size(1));

  // Check for strides and alignment
  TORCH_CHECK(a.stride(1) == 1 && c.stride(1) == 1);  // Row-major
  TORCH_CHECK(b.stride(0) == 1);                      // Column-major
  TORCH_CHECK(c.stride(0) % 16 == 0 &&
              b.stride(1) % 16 == 0);  // 16 Byte Alignment
  TORCH_CHECK(a_scales.is_contiguous() && b_scales.is_contiguous());

  // bias, azp, azp_adj are all 1d
  // bias and azp_adj have n elements, azp has m elements
  if (bias) {
    TORCH_CHECK(bias->numel() == b.size(1) && bias->is_contiguous());
  }
  if (azp) {
    TORCH_CHECK(azp->numel() == a.size(0) && azp->is_contiguous());
  }
  TORCH_CHECK(azp_adj.numel() == b.size(1) && azp_adj.is_contiguous());

  // azp & bias types
  TORCH_CHECK(azp_adj.dtype() == torch::kInt32);
  TORCH_CHECK(!azp || azp->dtype() == torch::kInt32);
  TORCH_CHECK(!bias || bias->dtype() == c.dtype(),
              "currently bias dtype must match output dtype ", c.dtype());

  at::cuda::OptionalCUDAGuard const device_guard(device_of(a));
382

383
384
  int32_t version_num = get_sm_version_num();

385
#if defined ENABLE_SCALED_MM_SM90 && ENABLE_SCALED_MM_SM90
386
  if (version_num >= 90) {
387
    cutlass_scaled_mm_azp_sm90(c, a, b, a_scales, b_scales, azp_adj, azp, bias);
388
389
    return;
  }
390
#endif
391
392
393

#if defined ENABLE_SCALED_MM_C2X && ENABLE_SCALED_MM_C2X
  if (version_num == 89) {
394
395
    // Ada Lovelace
    cutlass_scaled_mm_azp_sm89(c, a, b, a_scales, b_scales, azp_adj, azp, bias);
396
397
398
399
    return;
  }

  if (version_num >= 80) {
400
401
    // Ampere
    cutlass_scaled_mm_azp_sm80(c, a, b, a_scales, b_scales, azp_adj, azp, bias);
402
    return;
403
  }
404
405
406
407
408
409
410
411
412
413
414
415

  // Turing
  TORCH_CHECK(version_num >= 75);
  cutlass_scaled_mm_azp_sm75(c, a, b, a_scales, b_scales, azp_adj, azp, bias);
  return;
#endif

  TORCH_CHECK_NOT_IMPLEMENTED(
      false,
      "No compiled cutlass_scaled_mm_azp for a compute capability less than "
      "CUDA device capability: ",
      version_num);
416
}