cast.cu 3.81 KB
Newer Older
1
2
3
4
5
6
7
/*************************************************************************
 * Copyright (c) 2022-2025, NVIDIA CORPORATION & AFFILIATES. All rights reserved.
 *
 * See LICENSE for license information.
 ************************************************************************/

#include <cuda.h>
wenjh's avatar
wenjh committed
8
#ifndef __HIP_PLATFORM_AMD__
9
#include <cudaTypedefs.h>
wenjh's avatar
wenjh committed
10
#endif
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
#include <cuda_runtime.h>
#include <transformer_engine/cast.h>
#include <transformer_engine/multi_stream.h>

#include "../common.h"
#include "../transpose/cast_transpose.h"
#include "../util/multi_stream.h"
#include "../utils.cuh"
#include "dispatch/dequantize.cuh"
#include "dispatch/quantize.cuh"
#include "transformer_engine/transpose.h"

void nvte_quantize(const NVTETensor input, NVTETensor output, cudaStream_t stream) {
  NVTE_API_CALL(nvte_quantize);
  using namespace transformer_engine;

  constexpr bool IS_ACT = false;
  dispatch::quantize_fwd_helper<IS_ACT, Empty, nullptr>(input, output, nullptr, stream);
}

void nvte_quantize_noop(const NVTETensor input, NVTETensor output, NVTETensor noop,
                        cudaStream_t stream) {
  NVTE_API_CALL(nvte_quantize_noop);
  using namespace transformer_engine;

  // Create config with noop tensor
  QuantizationConfig quant_config;
  quant_config.noop_tensor = noop;

  nvte_quantize_v2(input, output, reinterpret_cast<NVTEQuantizationConfig>(&quant_config), stream);
}

void nvte_quantize_v2(const NVTETensor input, NVTETensor output,
                      const NVTEQuantizationConfig quant_config, cudaStream_t stream) {
  NVTE_API_CALL(nvte_quantize_v2);
  using namespace transformer_engine;

  constexpr bool IS_ACT = false;
  dispatch::quantize_fwd_helper<IS_ACT, Empty, nullptr>(input, output, quant_config, stream);
}

void nvte_quantize_dbias(const NVTETensor input, NVTETensor output, NVTETensor dbias,
                         NVTETensor workspace, cudaStream_t stream) {
  NVTE_API_CALL(nvte_quantize_dbias);
  using namespace transformer_engine;

  constexpr bool IS_DBIAS = true;
  constexpr bool IS_DACT = false;
  constexpr const NVTETensor activation_input = nullptr;

  dispatch::quantize_bwd_helper<IS_DBIAS, IS_DACT, Empty, nullptr>(
      input, activation_input, output, dbias, workspace, nullptr, stream);
}

void nvte_dequantize(const NVTETensor input, NVTETensor output, cudaStream_t stream) {
  NVTE_API_CALL(nvte_dequantize);
  using namespace transformer_engine;
  dispatch::dequantize_helper(*convertNVTETensorCheck(input), convertNVTETensorCheck(output),
                              stream);
}

void nvte_multi_tensor_quantize(const NVTETensor *inputs, NVTETensor *outputs,
                                const NVTEQuantizationConfig quant_configs,
                                const size_t num_tensors, cudaStream_t stream) {
  NVTE_API_CALL(nvte_multi_tensor_quantize);
  using namespace transformer_engine;

  constexpr bool IS_ACT = false;

  const size_t num_streams = nvte_get_num_compute_streams();

  int num_stream_used = std::min(num_streams, num_tensors);
  // wait for current stream to finish
  NVTE_CHECK_CUDA(cudaEventRecord(detail::get_compute_stream_event(0), stream));
  for (int s = 0; s < num_stream_used; s++) {
    NVTE_CHECK_CUDA(
        cudaStreamWaitEvent(detail::get_compute_stream(s), detail::get_compute_stream_event(0)));
  }

  for (int i = 0; i < num_tensors; i++) {
    dispatch::quantize_fwd_helper<IS_ACT, Empty, nullptr>(
        inputs[i], outputs[i], quant_configs, detail::get_compute_stream(i % num_streams));
  }

  // record events on compute streams
  for (int s = 0; s < num_stream_used; s++) {
    NVTE_CHECK_CUDA(
        cudaEventRecord(detail::get_compute_stream_event(s), detail::get_compute_stream(s)));
  }
  // wait for all compute streams to finish
  for (int s = 0; s < num_stream_used; s++) {
    NVTE_CHECK_CUDA(cudaStreamWaitEvent(stream, detail::get_compute_stream_event(s)));
  }
}