dense_bin.hpp 6.78 KB
Newer Older
Guolin Ke's avatar
Guolin Ke committed
1
2
3
4
5
6
7
8
9
10
11
#ifndef LIGHTGBM_IO_DENSE_BIN_HPP_
#define LIGHTGBM_IO_DENSE_BIN_HPP_

#include <LightGBM/bin.h>

#include <vector>
#include <cstring>
#include <cstdint>

namespace LightGBM {

Guolin Ke's avatar
Guolin Ke committed
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
template <typename VAL_T>
class DenseBin;

template <typename VAL_T>
class DenseBinIterator : public BinIterator {
public:
  explicit DenseBinIterator(const DenseBin<VAL_T>* bin_data, uint32_t min_bin, uint32_t max_bin, uint32_t default_bin)
    : bin_data_(bin_data), min_bin_(static_cast<VAL_T>(min_bin)),
    max_bin_(static_cast<VAL_T>(max_bin)),
    default_bin_(static_cast<uint8_t>(default_bin)) {
    if (default_bin_ == 0) {
      bias_ = 1;
    } else {
      bias_ = 0;
    }
  }
  inline uint32_t Get(data_size_t idx) override;
  inline void Reset(data_size_t) override { }
private:
  const DenseBin<VAL_T>* bin_data_;
  VAL_T min_bin_;
  VAL_T max_bin_;
  VAL_T default_bin_;
  uint8_t bias_;
};
Guolin Ke's avatar
Guolin Ke committed
37
/*!
Hui Xue's avatar
Hui Xue committed
38
* \brief Used to store bins for dense feature
Guolin Ke's avatar
Guolin Ke committed
39
40
41
* Use template to reduce memory cost
*/
template <typename VAL_T>
Guolin Ke's avatar
Guolin Ke committed
42
class DenseBin : public Bin {
Guolin Ke's avatar
Guolin Ke committed
43
public:
Guolin Ke's avatar
Guolin Ke committed
44
45
46
  friend DenseBinIterator<VAL_T>;
  DenseBin(data_size_t num_data)
    : num_data_(num_data), data_(num_data_, static_cast<VAL_T>(0)) {
Guolin Ke's avatar
Guolin Ke committed
47
48
49
50
51
52
53
54
55
  }

  ~DenseBin() {
  }

  void Push(int, data_size_t idx, uint32_t value) override {
    data_[idx] = static_cast<VAL_T>(value);
  }

Guolin Ke's avatar
Guolin Ke committed
56
57
58
59
60
61
62
  void ReSize(data_size_t num_data) override {
    if (num_data_ != num_data) {
      num_data_ = num_data;
      data_.resize(num_data_);
    }
  }

Guolin Ke's avatar
Guolin Ke committed
63
  BinIterator* GetIterator(uint32_t min_bin, uint32_t max_bin, uint32_t default_bin) const override;
Guolin Ke's avatar
Guolin Ke committed
64

Guolin Ke's avatar
Guolin Ke committed
65
  void ConstructHistogram(const data_size_t* data_indices, data_size_t num_data,
66
67
    const score_t* ordered_gradients, const score_t* ordered_hessians,
    HistogramBinEntry* out) const override {
Guolin Ke's avatar
Guolin Ke committed
68
69
    // use 4-way unrolling, will be faster
    if (data_indices != nullptr) {  // if use part of data
Guolin Ke's avatar
Guolin Ke committed
70
      const data_size_t rest = num_data % 4;
Guolin Ke's avatar
Guolin Ke committed
71
72
      data_size_t i = 0;
      for (; i < num_data - rest; i += 4) {
Guolin Ke's avatar
Guolin Ke committed
73
74
75
76
        const VAL_T bin0 = data_[data_indices[i]];
        const VAL_T bin1 = data_[data_indices[i + 1]];
        const VAL_T bin2 = data_[data_indices[i + 2]];
        const VAL_T bin3 = data_[data_indices[i + 3]];
Guolin Ke's avatar
Guolin Ke committed
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93

        out[bin0].sum_gradients += ordered_gradients[i];
        out[bin1].sum_gradients += ordered_gradients[i + 1];
        out[bin2].sum_gradients += ordered_gradients[i + 2];
        out[bin3].sum_gradients += ordered_gradients[i + 3];

        out[bin0].sum_hessians += ordered_hessians[i];
        out[bin1].sum_hessians += ordered_hessians[i + 1];
        out[bin2].sum_hessians += ordered_hessians[i + 2];
        out[bin3].sum_hessians += ordered_hessians[i + 3];

        ++out[bin0].cnt;
        ++out[bin1].cnt;
        ++out[bin2].cnt;
        ++out[bin3].cnt;
      }
      for (; i < num_data; ++i) {
Guolin Ke's avatar
Guolin Ke committed
94
        const VAL_T bin = data_[data_indices[i]];
Guolin Ke's avatar
Guolin Ke committed
95
96
97
98
        out[bin].sum_gradients += ordered_gradients[i];
        out[bin].sum_hessians += ordered_hessians[i];
        ++out[bin].cnt;
      }
99
    } else {  // use full data
Guolin Ke's avatar
Guolin Ke committed
100
      const data_size_t rest = num_data % 4;
Guolin Ke's avatar
Guolin Ke committed
101
102
      data_size_t i = 0;
      for (; i < num_data - rest; i += 4) {
Guolin Ke's avatar
Guolin Ke committed
103
104
105
106
        const VAL_T bin0 = data_[i];
        const VAL_T bin1 = data_[i + 1];
        const VAL_T bin2 = data_[i + 2];
        const VAL_T bin3 = data_[i + 3];
Guolin Ke's avatar
Guolin Ke committed
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123

        out[bin0].sum_gradients += ordered_gradients[i];
        out[bin1].sum_gradients += ordered_gradients[i + 1];
        out[bin2].sum_gradients += ordered_gradients[i + 2];
        out[bin3].sum_gradients += ordered_gradients[i + 3];

        out[bin0].sum_hessians += ordered_hessians[i];
        out[bin1].sum_hessians += ordered_hessians[i + 1];
        out[bin2].sum_hessians += ordered_hessians[i + 2];
        out[bin3].sum_hessians += ordered_hessians[i + 3];

        ++out[bin0].cnt;
        ++out[bin1].cnt;
        ++out[bin2].cnt;
        ++out[bin3].cnt;
      }
      for (; i < num_data; ++i) {
Guolin Ke's avatar
Guolin Ke committed
124
        const VAL_T bin = data_[i];
Guolin Ke's avatar
Guolin Ke committed
125
126
127
128
129
130
131
        out[bin].sum_gradients += ordered_gradients[i];
        out[bin].sum_hessians += ordered_hessians[i];
        ++out[bin].cnt;
      }
    }
  }

Guolin Ke's avatar
Guolin Ke committed
132
133
134
  virtual data_size_t Split(
    uint32_t min_bin, uint32_t max_bin, uint32_t default_bin,
    uint32_t threshold, data_size_t* data_indices, data_size_t num_data,
135
    data_size_t* lte_indices, data_size_t* gt_indices) const override {
Guolin Ke's avatar
Guolin Ke committed
136
137
138
139
140
141
142
    if (num_data <= 0) { return 0; }
    VAL_T th = static_cast<VAL_T>(threshold + min_bin);
    VAL_T minb = static_cast<VAL_T>(min_bin);
    VAL_T maxb = static_cast<VAL_T>(max_bin);
    if (default_bin == 0) {
      th -= 1;
    }
Guolin Ke's avatar
Guolin Ke committed
143
144
    data_size_t lte_count = 0;
    data_size_t gt_count = 0;
Guolin Ke's avatar
Guolin Ke committed
145
146
147
148
149
150
    data_size_t* default_indices = gt_indices;
    data_size_t* default_count = &gt_count;
    if (default_bin <= threshold) {
      default_indices = lte_indices;
      default_count = &lte_count;
    }
Guolin Ke's avatar
Guolin Ke committed
151
    for (data_size_t i = 0; i < num_data; ++i) {
Guolin Ke's avatar
Guolin Ke committed
152
153
154
155
156
      const data_size_t idx = data_indices[i];
      VAL_T bin = data_[idx];
      if (bin > maxb || bin < minb) {
        default_indices[(*default_count)++] = idx;
      } else if (bin > th) {
Guolin Ke's avatar
Guolin Ke committed
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
        gt_indices[gt_count++] = idx;
      } else {
        lte_indices[lte_count++] = idx;
      }
    }
    return lte_count;
  }
  data_size_t num_data() const override { return num_data_; }

  /*! \brief not ordered bin for dense feature */
  OrderedBin* CreateOrderedBin() const override { return nullptr; }

  void FinishLoad() override {}

  void LoadFromMemory(const void* memory, const std::vector<data_size_t>& local_used_indices) override {
    const VAL_T* mem_data = reinterpret_cast<const VAL_T*>(memory);
Guolin Ke's avatar
Guolin Ke committed
173
    if (!local_used_indices.empty()) {
Guolin Ke's avatar
Guolin Ke committed
174
175
176
177
178
179
180
181
182
183
      for (int i = 0; i < num_data_; ++i) {
        data_[i] = mem_data[local_used_indices[i]];
      }
    } else {
      for (int i = 0; i < num_data_; ++i) {
        data_[i] = mem_data[i];
      }
    }
  }

184
185
186
187
188
189
190
  void CopySubset(const Bin* full_bin, const data_size_t* used_indices, data_size_t num_used_indices) override {
    auto other_bin = reinterpret_cast<const DenseBin<VAL_T>*>(full_bin);
    for (int i = 0; i < num_used_indices; ++i) {
      data_[i] = other_bin->data_[used_indices[i]];
    }
  }

Guolin Ke's avatar
Guolin Ke committed
191
  void SaveBinaryToFile(FILE* file) const override {
Guolin Ke's avatar
Guolin Ke committed
192
    fwrite(data_.data(), sizeof(VAL_T), num_data_, file);
Guolin Ke's avatar
Guolin Ke committed
193
194
195
196
197
198
  }

  size_t SizesInByte() const override {
    return sizeof(VAL_T) * num_data_;
  }

Guolin Ke's avatar
Guolin Ke committed
199
protected:
Guolin Ke's avatar
Guolin Ke committed
200
  data_size_t num_data_;
Guolin Ke's avatar
Guolin Ke committed
201
  std::vector<VAL_T> data_;
Guolin Ke's avatar
Guolin Ke committed
202
203
204
};

template <typename VAL_T>
Guolin Ke's avatar
Guolin Ke committed
205
206
207
208
209
210
uint32_t DenseBinIterator<VAL_T>::Get(data_size_t idx) {
  auto ret = bin_data_->data_[idx];
  if (ret >= min_bin_ && ret <= max_bin_) {
    return ret - min_bin_ + bias_;
  } else {
    return default_bin_;
Guolin Ke's avatar
Guolin Ke committed
211
212
  }
}
213

Guolin Ke's avatar
Guolin Ke committed
214
template <typename VAL_T>
Guolin Ke's avatar
Guolin Ke committed
215
216
217
BinIterator* DenseBin<VAL_T>::GetIterator(uint32_t min_bin, uint32_t max_bin, uint32_t default_bin) const {
  return new DenseBinIterator<VAL_T>(this, min_bin, max_bin, default_bin);
}
Guolin Ke's avatar
Guolin Ke committed
218

Guolin Ke's avatar
Guolin Ke committed
219
}  // namespace LightGBM
Guolin Ke's avatar
Guolin Ke committed
220
#endif   // LightGBM_IO_DENSE_BIN_HPP_