operators.hpp 21.4 KB
Newer Older
Paul's avatar
Paul committed
1
2
#ifndef MIGRAPH_GUARD_OPERATORS_HPP
#define MIGRAPH_GUARD_OPERATORS_HPP
Paul's avatar
Paul committed
3

4
#include <array>
Paul's avatar
Paul committed
5
#include <migraph/operation.hpp>
Paul's avatar
Paul committed
6
#include <migraph/check_shapes.hpp>
Paul's avatar
Paul committed
7
8
#include <migraph/stringutils.hpp>
#include <migraph/streamutils.hpp>
Paul's avatar
Paul committed
9
#include <cmath>
Paul's avatar
Paul committed
10
#include <utility>
Paul's avatar
Paul committed
11

Paul's avatar
Paul committed
12
namespace migraph {
13
namespace op {
Paul's avatar
Paul committed
14

Paul's avatar
Paul committed
15
16
struct not_computable
{
Paul's avatar
Paul committed
17
    argument compute(context&, const shape&, const std::vector<argument>&) const
Paul's avatar
Paul committed
18
19
20
    {
        MIGRAPH_THROW("not computable");
    }
Paul's avatar
Paul committed
21
22
};

23
24
struct batch_norm_inference
{
25
26
    float epsilon  = 1.0e-6f;
    float momentum = 0.9f;
27
28
29

    std::string name() const { return "batch_norm_inference"; }

30
31
32
33
34
35
36
37
    enum bn_infer_mode_t
    {
        per_activation,
        spatial,
    };

    bn_infer_mode_t bn_mode = spatial;

38
39
    bool is_test = false;

40
41
42
43
44
45
46
    shape compute_shape(std::vector<shape> inputs) const
    {
        check_shapes{inputs, *this}.has(5);
        return inputs.front();
    }
};

Paul's avatar
Paul committed
47
struct convolution
Paul's avatar
Paul committed
48
{
Paul's avatar
Paul committed
49
50
51
    std::array<std::size_t, 2> padding  = {{0, 0}};
    std::array<std::size_t, 2> stride   = {{1, 1}};
    std::array<std::size_t, 2> dilation = {{1, 1}};
Paul's avatar
Paul committed
52
53
54
55
56
57
58
    enum padding_mode_t
    {
        default_, // NOLINT
        same,
        valid
    };
    padding_mode_t padding_mode = default_;
Paul's avatar
Paul committed
59
    std::string name() const { return "convolution"; }
Paul's avatar
Paul committed
60
61
    shape compute_shape(std::vector<shape> inputs) const
    {
Paul's avatar
Paul committed
62
        check_shapes{inputs, *this}.has(2).same_type().same_ndims().only_dims(4);
Paul's avatar
Paul committed
63

Paul's avatar
Paul committed
64
        const shape& input   = inputs.at(0);
Paul's avatar
Paul committed
65
        const shape& weights = inputs.at(1);
Paul's avatar
Paul committed
66
        auto t               = input.type();
Paul's avatar
Paul committed
67
68
        if(padding_mode == default_)
        {
Paul's avatar
Paul committed
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
            return {t,
                    {
                        input.lens()[0],
                        weights.lens()[0],
                        std::size_t(std::max<std::ptrdiff_t>(
                            1,
                            (input.lens()[2] - (1 + dilation[0] * (weights.lens()[2] - 1)) +
                             2 * padding[0]) /
                                    stride[0] +
                                1)),
                        std::size_t(std::max<std::ptrdiff_t>(
                            1,
                            (input.lens()[3] - (1 + dilation[1] * (weights.lens()[3] - 1)) +
                             2 * padding[1]) /
                                    stride[1] +
                                1)),
                    }};
Paul's avatar
Paul committed
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
        }
        else if(padding_mode == same)
        {
            return {t,
                    {input.lens()[0],
                     weights.lens()[0],
                     static_cast<std::size_t>(
                         std::ceil(static_cast<double>(input.lens()[2]) / stride[0])),
                     static_cast<std::size_t>(
                         std::ceil(static_cast<double>(input.lens()[3]) / stride[1]))}};
        }
        else if(padding_mode == valid)
        {
            return {
                t,
                {input.lens()[0],
                 weights.lens()[0],
                 static_cast<std::size_t>(std::ceil(
                     static_cast<double>(input.lens()[2] - weights.lens()[2] + 1) / stride[0])),
                 static_cast<std::size_t>(std::ceil(
                     static_cast<double>(input.lens()[3] - weights.lens()[3] + 1) / stride[1]))}};
        }
        else
        {
Paul's avatar
Paul committed
110
            MIGRAPH_THROW("Invalid padding mode");
Paul's avatar
Paul committed
111
        }
Paul's avatar
Paul committed
112
    }
Paul's avatar
Paul committed
113

Paul's avatar
Paul committed
114
    friend std::ostream& operator<<(std::ostream& os, const convolution& op)
Paul's avatar
Paul committed
115
    {
Paul's avatar
Paul committed
116
117
118
119
120
        os << op.name() << "[";
        os << "padding={" << stream_range(op.padding) << "}, ";
        os << "stride={" << stream_range(op.stride) << "}, ";
        os << "dilation={" << stream_range(op.dilation) << "}";
        os << "]";
Paul's avatar
Paul committed
121
122
        return os;
    }
Paul's avatar
Paul committed
123
124
};

Scott Thornton's avatar
Scott Thornton committed
125
126
struct im2col
{
Scott Thornton's avatar
Scott Thornton committed
127
128
129
130
131
132
133
134
135
136
137
138
139
140
    std::array<std::size_t, 2> padding  = {{0, 0}};
    std::array<std::size_t, 2> stride   = {{1, 1}};
    std::array<std::size_t, 2> dilation = {{1, 1}};
    enum padding_mode_t
    {
        default_, // NOLINT
        same,
        valid
    };

    std::string name() const { return "im2col"; }

    shape compute_shape(std::vector<shape> inputs) const
    {
Scott Thornton's avatar
Scott Thornton committed
141
142
143
        auto input          = inputs[0];
        auto weights        = inputs[1];
        auto batch_size     = input.lens()[0];
Scott Thornton's avatar
Scott Thornton committed
144
        auto input_channels = weights.lens()[1];
Scott Thornton's avatar
Scott Thornton committed
145
146
        auto kernel_height  = weights.lens()[2];
        auto kernel_width   = weights.lens()[3];
Scott Thornton's avatar
Scott Thornton committed
147
        check_shapes{inputs, *this}.has(2);
Scott Thornton's avatar
Scott Thornton committed
148
149
        if(batch_size != 1)
            MIGRAPH_THROW("im2col only support batch_size 1");
Scott Thornton's avatar
Scott Thornton committed
150
        auto output_height = std::size_t(std::max<std::ptrdiff_t>(
Scott Thornton's avatar
Scott Thornton committed
151
152
153
            1,
            (input.lens()[2] - (1 + dilation[0] * (kernel_height - 1)) + 2 * padding[0]) /
                    stride[0] +
Scott Thornton's avatar
Scott Thornton committed
154
                1));
Scott Thornton's avatar
Scott Thornton committed
155
156
157
158
        auto output_width  = std::size_t(std::max<std::ptrdiff_t>(
            1,
            (input.lens()[3] - (1 + dilation[1] * (kernel_width - 1)) + 2 * padding[1]) /
                    stride[1] +
Scott Thornton's avatar
Scott Thornton committed
159
                1));
Scott Thornton's avatar
Scott Thornton committed
160
161
        auto channels_col  = kernel_height * kernel_width * input_channels;
        return {input.type(), {output_height * output_width, channels_col}};
Scott Thornton's avatar
Scott Thornton committed
162
163
164
    }
};

Paul's avatar
Paul committed
165
struct pooling
Paul's avatar
Paul committed
166
{
Paul's avatar
Paul committed
167
    std::string mode                   = "average";
Paul's avatar
Paul committed
168
169
170
    std::array<std::size_t, 2> padding = {{0, 0}};
    std::array<std::size_t, 2> stride  = {{1, 1}};
    std::array<std::size_t, 2> lengths = {{1, 1}};
Paul's avatar
Paul committed
171
    std::string name() const { return "pooling"; }
Scott Thornton's avatar
Scott Thornton committed
172

Paul's avatar
Paul committed
173
174
    shape compute_shape(std::vector<shape> inputs) const
    {
Paul's avatar
Paul committed
175
        check_shapes{inputs, *this}.has(1).only_dims(4);
Paul's avatar
Paul committed
176

Paul's avatar
Paul committed
177
        const shape& input = inputs.at(0);
Paul's avatar
Paul committed
178
        auto t             = input.type();
Paul's avatar
Paul committed
179

Paul's avatar
Paul committed
180
181
        assert(lengths[0] <= (input.lens()[2] + 2 * padding[0]));
        assert(lengths[1] <= (input.lens()[3] + 2 * padding[1]));
Paul's avatar
Paul committed
182

Scott Thornton's avatar
Scott Thornton committed
183
184
185
186
187
188
        return {t,
                {
                    input.lens()[0],
                    input.lens()[1],
                    std::size_t(std::max<std::ptrdiff_t>(
                        1,
Paul's avatar
Paul committed
189
                        std::ptrdiff_t(std::floor((input.lens()[2] + 2 * padding[0] - lengths[0]) /
Paul's avatar
Paul committed
190
                                                  static_cast<float>(stride[0]))) +
Scott Thornton's avatar
Scott Thornton committed
191
192
193
                            1)),
                    std::size_t(std::max<std::ptrdiff_t>(
                        1,
Paul's avatar
Paul committed
194
                        std::ptrdiff_t(std::floor((input.lens()[3] + 2 * padding[1] - lengths[1]) /
Paul's avatar
Paul committed
195
                                                  static_cast<float>(stride[1]))) +
Scott Thornton's avatar
Scott Thornton committed
196
197
                            1)),
                }};
Paul's avatar
Paul committed
198
    }
Paul's avatar
Paul committed
199

Paul's avatar
Paul committed
200
    friend std::ostream& operator<<(std::ostream& os, const pooling& op)
Paul's avatar
Paul committed
201
    {
Paul's avatar
Paul committed
202
203
204
205
206
        os << op.name() << "[";
        os << "padding={" << stream_range(op.padding) << "}, ";
        os << "stride={" << stream_range(op.stride) << "}, ";
        os << "lengths={" << stream_range(op.lengths) << "}";
        os << "]";
Paul's avatar
Paul committed
207
208
        return os;
    }
Paul's avatar
Paul committed
209
210
};

Paul's avatar
Paul committed
211
struct activation
Paul's avatar
Paul committed
212
213
{
    std::string mode;
Paul's avatar
Paul committed
214
    std::string name() const { return "activation"; }
Paul's avatar
Paul committed
215
216
    shape compute_shape(std::vector<shape> inputs) const
    {
Paul's avatar
Paul committed
217
        check_shapes{inputs, *this}.has(1);
Paul's avatar
Paul committed
218
219
        return inputs.front();
    }
Paul's avatar
Paul committed
220
    friend std::ostream& operator<<(std::ostream& os, const activation& op)
Paul's avatar
Paul committed
221
    {
Paul's avatar
Paul committed
222
        os << op.name() << ":" << op.mode;
Paul's avatar
Paul committed
223
224
        return os;
    }
Paul's avatar
Paul committed
225
226
};

Khalique's avatar
Khalique committed
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
struct leaky_relu
{
    std::string name() const { return "leaky_relu"; }
    float alpha;
    shape compute_shape(std::vector<shape> inputs) const
    {
        check_shapes{inputs, *this}.has(1);
        return inputs.front();
    }
    friend std::ostream& operator<<(std::ostream& os, const leaky_relu& op)
    {
        os << op.name() << ":" << op.alpha;
        return os;
    }    
};

243
244
245
246
247
248
struct transpose
{
    std::vector<int64_t> dims;
    std::string name() const { return "transpose"; }
    shape compute_shape(std::vector<shape> inputs) const
    {
Paul's avatar
Paul committed
249
        check_shapes{inputs, *this}.has(1);
250
        auto input         = inputs.at(0);
251
        auto input_lens    = input.lens();
252
253
        auto input_strides = input.strides();
        auto t             = input.type();
Paul's avatar
Paul committed
254
255
        if(dims.size() != input_lens.size())
        {
Paul's avatar
Paul committed
256
            MIGRAPH_THROW("Permutation has wrong number of axes");
257
258
259
        }
        std::vector<int64_t> axes(dims.size());
        std::iota(axes.begin(), axes.end(), 0);
Paul's avatar
Paul committed
260
261
        if(!std::is_permutation(axes.begin(), axes.end(), dims.begin()))
        {
Paul's avatar
Paul committed
262
            MIGRAPH_THROW("Invalid permutation");
263
        }
264
265
        std::vector<size_t> output_lens(input_lens.size());
        std::vector<size_t> output_strides(input_lens.size());
Paul's avatar
Paul committed
266
267
268
        for(int i = 0; i < output_lens.size(); i++)
        {
            output_lens[i]    = input_lens[dims[i]];
269
270
            output_strides[i] = input_strides[dims[i]];
        }
271
        return {t, output_lens, output_strides};
272
    }
Paul's avatar
Paul committed
273
    argument compute(context&, shape output_shape, std::vector<argument> args) const
Paul's avatar
Paul committed
274
    {
Paul's avatar
Paul committed
275
        return {std::move(output_shape), std::move(args.front().data)};
Paul's avatar
Paul committed
276
    }
Paul's avatar
Paul committed
277
278
279
280
281
282
283
    friend std::ostream& operator<<(std::ostream& os, const transpose& op)
    {
        os << op.name() << "[";
        os << "dims={" << stream_range(op.dims) << "}";
        os << "]";
        return os;
    }
284
285
};

Paul's avatar
Paul committed
286
struct contiguous
287
288
289
290
{
    std::string name() const { return "contiguous"; }
    shape compute_shape(std::vector<shape> inputs) const
    {
Paul's avatar
Paul committed
291
        check_shapes{inputs, *this}.has(1);
Paul's avatar
Paul committed
292
293
294
295
        auto lens = inputs.at(0).lens();
        auto t    = inputs.at(0).type();
        if(lens.size() < 2)
        {
Paul's avatar
Paul committed
296
            MIGRAPH_THROW("Number of dimensions should exceed 1");
297
298
299
300
301
        }
        return {t, lens};
    }
};

302
303
304
305
306
307
struct slice
{
    std::vector<int64_t> axes;
    std::vector<int64_t> starts;
    std::vector<int64_t> ends;
    std::string name() const { return "slice"; }
Scott Thornton's avatar
Scott Thornton committed
308
309

    auto fix_index(const std::vector<std::size_t>& lens, std::size_t axis, int64_t index) const
310
    {
Scott Thornton's avatar
Scott Thornton committed
311
        int64_t r = std::min(index, static_cast<int64_t>(lens[axis]));
Scott Thornton's avatar
Scott Thornton committed
312
313
        if(r < 0)
            r += lens[axis];
Scott Thornton's avatar
Scott Thornton committed
314
        return std::size_t(r);
Scott Thornton's avatar
Scott Thornton committed
315
316
317
318
319
320
321
    }

    auto compute_offset(const shape& s) const
    {
        const std::vector<std::size_t>& lens    = s.lens();
        const std::vector<std::size_t>& strides = s.strides();
        auto offset                             = 0;
Scott Thornton's avatar
Scott Thornton committed
322
        if(!axes.empty())
Scott Thornton's avatar
Scott Thornton committed
323
        {
Scott Thornton's avatar
Scott Thornton committed
324
325
326
327
328
            for(std::size_t i = 0; i < axes.size(); i++)
            {
                auto axis = axes[i];
                offset += fix_index(lens, axis, starts[i]) * strides[axis];
            }
329
        }
Scott Thornton's avatar
Scott Thornton committed
330
331
        else
        {
Scott Thornton's avatar
Scott Thornton committed
332
333
334
335
            for(std::size_t axis = 0; axis < lens.size(); axis++)
            {
                offset += fix_index(lens, axis, starts[axis]) * strides[axis];
            }
336
        }
Scott Thornton's avatar
Scott Thornton committed
337
338
339
340
341
        return offset;
    }

    shape compute_shape(std::vector<shape> inputs) const
    {
Scott Thornton's avatar
Scott Thornton committed
342
343
344
345
        auto input_shape        = inputs[0];
        auto t                  = input_shape.type();
        const auto& old_lens    = input_shape.lens();
        const auto& old_strides = input_shape.strides();
Scott Thornton's avatar
Scott Thornton committed
346
347
348
349
350
351
352
353
354
355
        // std::vector<int64_t> t_axes(old_lens.size());
        // if(axes.size() == 0)
        // {
        //     std::iota(t_axes.begin(), t_axes.end(), 0);
        // }
        // else
        // {
        //     std::copy(axes.begin(), axes.end(), t_axes.begin());
        // }
        if(starts.size() != axes.size() || axes.size() != ends.size())
Scott Thornton's avatar
Scott Thornton committed
356
        {
357
358
            MIGRAPH_THROW("inconsistent sizes");
        }
Scott Thornton's avatar
Scott Thornton committed
359
360
        std::vector<std::size_t> new_lens = old_lens;
        for(std::size_t i = 0; i < axes.size(); i++)
Scott Thornton's avatar
Scott Thornton committed
361
        {
Scott Thornton's avatar
Scott Thornton committed
362
363
364
            auto axis = axes[i];
            new_lens[axis] =
                fix_index(old_lens, axis, ends[i]) - fix_index(old_lens, axis, starts[i]);
365
366
367
368
369
        }
        return shape{t, new_lens, old_strides};
    }
    argument compute(context&, shape output_shape, std::vector<argument> args) const
    {
Scott Thornton's avatar
Scott Thornton committed
370
371
372
        auto input  = args[0];
        auto offset = compute_offset(input.get_shape()) * output_shape.type_size();
        return {std::move(output_shape), [=] { return input.data() + offset; }};
373
374
375
376
377
378
379
380
381
382
    }
};

struct squeeze
{
    std::vector<int64_t> axes;
    std::string name() const { return "squeeze"; }
    shape compute_shape(std::vector<shape> inputs) const
    {
        auto input_shape = inputs[0];
Scott Thornton's avatar
Scott Thornton committed
383
384
        auto type        = input_shape.type();
        auto old_lens    = input_shape.lens();
wsttiger's avatar
wsttiger committed
385
386
        if(std::any_of(
               axes.begin(), axes.end(), [&](auto axis) { return input_shape.lens()[axis] != 1; }))
Scott Thornton's avatar
Scott Thornton committed
387
        {
wsttiger's avatar
wsttiger committed
388
            MIGRAPH_THROW("squeeze axis dimension should be equal to 1");
389
390
        }
        std::vector<std::size_t> new_lens;
Scott Thornton's avatar
Scott Thornton committed
391
        if(axes.empty())
Scott Thornton's avatar
Scott Thornton committed
392
        {
wsttiger's avatar
wsttiger committed
393
394
395
396
            std::copy_if(old_lens.begin(),
                         old_lens.end(),
                         std::back_inserter(new_lens),
                         [](auto len) { return len != 1; });
397
        }
Scott Thornton's avatar
Scott Thornton committed
398
399
400
401
402
403
        else
        {
            for(std::size_t i = 0; i < old_lens.size(); i++)
            {
                if(std::find(axes.begin(), axes.end(), i) == axes.end())
                {
404
405
406
407
408
409
410
411
412
                    new_lens.push_back(old_lens[i]);
                }
            }
        }
        return shape{type, new_lens};
    }
    argument compute(context&, shape output_shape, std::vector<argument> args) const
    {
        return {std::move(output_shape), std::move(args.front().data)};
Scott Thornton's avatar
Scott Thornton committed
413
    }
414
415
416
417
418
419
420
421
};

struct unsqueeze
{
    std::vector<int64_t> axes;
    std::string name() const { return "unsqueeze"; }
    shape compute_shape(std::vector<shape> inputs) const
    {
Scott Thornton's avatar
Scott Thornton committed
422
423
424
        auto input_shape     = inputs[0];
        auto type            = input_shape.type();
        auto old_lens        = input_shape.lens();
425
426
427
        std::size_t new_size = old_lens.size() + axes.size();
        std::vector<std::size_t> new_lens(new_size);
        std::size_t p = 0;
Scott Thornton's avatar
Scott Thornton committed
428
429
430
431
        for(std::size_t i = 0; i < new_size; i++)
        {
            if(std::find(axes.begin(), axes.end(), i) != axes.end())
            {
432
                new_lens[i] = 1;
Scott Thornton's avatar
Scott Thornton committed
433
434
435
            }
            else
            {
436
437
438
439
440
441
442
443
444
445
446
                new_lens[i] = old_lens[p++];
            }
        }
        return shape{type, new_lens};
    }
    argument compute(context&, shape output_shape, std::vector<argument> args) const
    {
        return {std::move(output_shape), std::move(args.front().data)};
    }
};

Paul's avatar
Paul committed
447
448
449
struct reshape
{
    std::vector<int64_t> dims;
Paul's avatar
Paul committed
450
    std::string name() const { return "reshape"; }
Paul's avatar
Paul committed
451
452
    shape compute_shape(std::vector<shape> inputs) const
    {
Paul's avatar
Paul committed
453
        check_shapes{inputs, *this}.has(1);
Paul's avatar
Paul committed
454
455
        auto&& idims = inputs.front().lens();
        std::vector<std::size_t> rdims(dims.begin(), dims.end());
456
457
458
        auto n_neg_dims = std::count(dims.begin(), dims.end(), -1);
        if(n_neg_dims > 1)
            MIGRAPH_THROW("Dimensions for reshape can only have one -1 dim");
Paul's avatar
Paul committed
459
        for(std::size_t i = 0; i < dims.size(); i++)
Paul's avatar
Paul committed
460
461
462
463
        {
            if(dims[i] == 0)
                rdims[i] = idims[i];
        }
464
465
466
467
468
469
470
471
472
473
474
        if(n_neg_dims > 0)
        {
            size_t missing_dim =
                -inputs.front().elements() /
                std::accumulate(rdims.begin(), rdims.end(), 1, std::multiplies<int64_t>());
            for(std::size_t i = 0; i < rdims.size(); i++)
            {
                if(dims[i] == -1)
                    rdims[i] = missing_dim;
            }
        }
Paul's avatar
Paul committed
475
476
477
        if(dims.back() == -1)
        {
            rdims.pop_back();
Paul's avatar
Paul committed
478
            std::copy(idims.begin() + rdims.size(), idims.end(), std::back_inserter(rdims));
Paul's avatar
Paul committed
479
        }
Scott Thornton's avatar
Scott Thornton committed
480
        shape s{inputs.front().type(), rdims};
Paul's avatar
Paul committed
481
        if(s.elements() != inputs.front().elements())
Paul's avatar
Paul committed
482
            MIGRAPH_THROW("Wrong number of elements for reshape");
Scott Thornton's avatar
Scott Thornton committed
483
        return s;
Paul's avatar
Paul committed
484
    }
Paul's avatar
Paul committed
485
    argument compute(context&, shape output_shape, std::vector<argument> args) const
Paul's avatar
Paul committed
486
    {
Paul's avatar
Paul committed
487
        return {std::move(output_shape), std::move(args.front().data)};
Paul's avatar
Paul committed
488
    }
Paul's avatar
Paul committed
489
    friend std::ostream& operator<<(std::ostream& os, const reshape& op)
Paul's avatar
Paul committed
490
    {
Paul's avatar
Paul committed
491
        os << op.name() << "[";
Paul's avatar
Paul committed
492
        os << "dims={" << stream_range(op.dims) << "}";
Paul's avatar
Paul committed
493
        os << "]";
Paul's avatar
Paul committed
494
495
        return os;
    }
Paul's avatar
Paul committed
496
497
};

498
499
struct gemm
{
Paul's avatar
Paul committed
500
    float alpha = 1.0;
Paul's avatar
Paul committed
501
    float beta  = 0.0;
502
    std::string name() const { return "gemm"; }
503
504
    shape compute_shape(std::vector<shape> inputs) const
    {
Paul's avatar
Paul committed
505
        check_shapes{inputs, *this}.has(2).same_type();
506
507
        const shape& a = inputs.at(0);
        const shape& b = inputs.at(1);
Scott Thornton's avatar
Scott Thornton committed
508
        auto t         = a.type();
509

510
        if(a.lens()[1] != b.lens()[0])
Paul's avatar
Paul committed
511
512
            MIGRAPH_THROW("Inner dimensions do not match: {" + to_string_range(a.lens()) + "} x {" +
                          to_string_range(b.lens()) + "}");
Scott Thornton's avatar
Scott Thornton committed
513
        return {t, {a.lens()[0], b.lens()[1]}};
514
    }
515
516

    friend std::ostream& operator<<(std::ostream& os, const gemm& op)
517
518
    {
        os << op.name() << "[";
519
        os << "]";
Scott Thornton's avatar
Scott Thornton committed
520
        return os;
521
522
523
    }
};

524
struct unary
Scott Thornton's avatar
Scott Thornton committed
525
{
526
527
    shape compute_shape(std::vector<shape> inputs) const
    {
528
529
        check_shapes{inputs}.has(1);
        return inputs.at(0);
530
    }
Scott Thornton's avatar
Scott Thornton committed
531
532
};

533
534
struct identity : unary
{
535
    std::string name() const { return "identity"; }
536
537
538
};

struct abs : unary
Scott Thornton's avatar
Scott Thornton committed
539
{
540
    std::string name() const { return "abs"; }
Scott Thornton's avatar
Scott Thornton committed
541
542
};

543
struct exp : unary
Scott Thornton's avatar
Scott Thornton committed
544
{
545
    std::string name() const { return "exp"; }
Scott Thornton's avatar
Scott Thornton committed
546
547
};

548
struct sin : unary
Scott Thornton's avatar
Scott Thornton committed
549
{
550
    std::string name() const { return "sin"; }
Scott Thornton's avatar
Scott Thornton committed
551
552
};

553
struct cos : unary
Scott Thornton's avatar
Scott Thornton committed
554
{
555
    std::string name() const { return "cos"; }
Scott Thornton's avatar
Scott Thornton committed
556
557
};

558
struct tan : unary
Scott Thornton's avatar
Scott Thornton committed
559
{
560
    std::string name() const { return "tan"; }
Scott Thornton's avatar
Scott Thornton committed
561
562
};

563
struct asin : unary
Scott Thornton's avatar
Scott Thornton committed
564
{
565
    std::string name() const { return "asin"; }
Scott Thornton's avatar
Scott Thornton committed
566
567
};

568
struct acos : unary
Scott Thornton's avatar
Scott Thornton committed
569
{
570
    std::string name() const { return "acos"; }
Scott Thornton's avatar
Scott Thornton committed
571
572
};

573
struct atan : unary
Scott Thornton's avatar
Scott Thornton committed
574
{
575
    std::string name() const { return "atan"; }
Scott Thornton's avatar
Scott Thornton committed
576
577
};

578
struct tanh : unary
Scott Thornton's avatar
Scott Thornton committed
579
{
580
    std::string name() const { return "tanh"; }
Scott Thornton's avatar
Scott Thornton committed
581
582
};

583
struct sigmoid : unary
Scott Thornton's avatar
Scott Thornton committed
584
{
585
    std::string name() const { return "sigmoid"; }
Scott Thornton's avatar
Scott Thornton committed
586
587
};

588
struct neg : unary
Scott Thornton's avatar
Scott Thornton committed
589
{
590
    std::string name() const { return "neg"; }
Scott Thornton's avatar
Scott Thornton committed
591
592
};

Paul's avatar
Paul committed
593
594
595
596
597
598
599
600
601
602
struct softmax
{
    std::string name() const { return "softmax"; }
    shape compute_shape(std::vector<shape> inputs) const
    {
        check_shapes{inputs}.has(1).only_dims(4);
        return inputs.at(0);
    }
};

603
struct flatten
Scott Thornton's avatar
Scott Thornton committed
604
{
Paul's avatar
Paul committed
605
    uint64_t axis = 0;
Scott Thornton's avatar
Scott Thornton committed
606
    std::string name() const { return "flatten"; }
Paul's avatar
Paul committed
607
608
609
    shape compute_shape(std::vector<shape> inputs) const
    {
        check_shapes{inputs}.has(1);
Paul's avatar
Paul committed
610
611
        auto&& lens = inputs.front().lens();

Paul's avatar
Paul committed
612
        if(axis > lens.size())
Paul's avatar
Paul committed
613
        {
Paul's avatar
Paul committed
614
            MIGRAPH_THROW("axis for flatten must be less than tensor rank");
Paul's avatar
Paul committed
615
        }
Paul's avatar
Paul committed
616
617
618
619
        auto x =
            std::accumulate(lens.begin(), lens.begin() + axis, std::size_t{1}, std::multiplies<>{});
        auto y =
            std::accumulate(lens.begin() + axis, lens.end(), std::size_t{1}, std::multiplies<>{});
620
        return {inputs.at(0).type(), {x, y}};
Paul's avatar
Paul committed
621
622
623
    }
    argument compute(context&, shape output_shape, std::vector<argument> args) const
    {
Paul's avatar
Paul committed
624
        return {std::move(output_shape), std::move(args.front().data)};
Paul's avatar
Paul committed
625
    }
Paul's avatar
Paul committed
626
627
628
629
630
631
632
    friend std::ostream& operator<<(std::ostream& os, const flatten& op)
    {
        os << op.name() << "[";
        os << "axis=" << op.axis;
        os << "]";
        return os;
    }
Scott Thornton's avatar
Scott Thornton committed
633
};
634
635
636
struct broadcast
{
    uint64_t axis = 0;
Scott Thornton's avatar
Scott Thornton committed
637
    shape broadcast_shape;
638
639
640
    std::string name() const { return "broadcast"; }
    shape compute_shape(std::vector<shape> inputs) const
    {
Scott Thornton's avatar
Scott Thornton committed
641
642
        auto t     = inputs.at(0).type();
        auto input = inputs.at(0);
Paul's avatar
Paul committed
643

Scott Thornton's avatar
Scott Thornton committed
644
        std::vector<size_t> bcast_strides(broadcast_shape.lens().size(), 0);
645

Scott Thornton's avatar
Scott Thornton committed
646
647
648
        if(std::all_of(broadcast_shape.lens().cbegin(), broadcast_shape.lens().cend(), [&](auto x) {
               return x == 1;
           }))
649
        {
Scott Thornton's avatar
Scott Thornton committed
650
            if(axis != 0)
Paul's avatar
Paul committed
651
                MIGRAPH_THROW("when broadcasting tensor of size 1, axis should be 0");
Scott Thornton's avatar
Scott Thornton committed
652
            return {t, broadcast_shape.lens(), std::move(bcast_strides)};
653
654
655
        }
        else
        {
Scott Thornton's avatar
Scott Thornton committed
656
            assert(broadcast_shape.lens().size() - axis >= input.lens().size());
Scott Thornton's avatar
Scott Thornton committed
657
658
            if(!std::equal(
                   input.lens().begin(), input.lens().end(), broadcast_shape.lens().begin() + axis))
Paul's avatar
Paul committed
659
                MIGRAPH_THROW("when broadcasting success sizes must match");
Paul's avatar
Paul committed
660
            std::copy(input.strides().begin(), input.strides().end(), bcast_strides.begin() + axis);
Scott Thornton's avatar
Scott Thornton committed
661
            return {t, broadcast_shape.lens(), std::move(bcast_strides)};
662
663
        }
    }
Paul's avatar
Paul committed
664
    argument compute(context&, shape output_shape, std::vector<argument> args) const
Scott Thornton's avatar
Scott Thornton committed
665
    {
Scott Thornton's avatar
Scott Thornton committed
666
        return {std::move(output_shape), std::move(args.at(0).data)};
Scott Thornton's avatar
Scott Thornton committed
667
    }
Paul's avatar
Paul committed
668
669
670
671
672
673
674
    friend std::ostream& operator<<(std::ostream& os, const broadcast& op)
    {
        os << op.name() << "[";
        os << "axis=" << op.axis;
        os << "]";
        return os;
    }
675
676
};

677
struct binary
Scott Thornton's avatar
Scott Thornton committed
678
{
679
    uint64_t broadcast = 0;
680
681
    shape compute_shape(std::vector<shape> inputs) const
    {
682
683
        check_shapes{inputs}.has(2).same_type().same_dims();
        return inputs.at(0);
684
    }
Scott Thornton's avatar
Scott Thornton committed
685
686
};

687
688
689
690
691
692
struct add : binary
{
    std::string name() const { return "add"; }
};

struct sub : binary
Scott Thornton's avatar
Scott Thornton committed
693
694
695
696
{
    std::string name() const { return "sub"; }
};

697
struct mul : binary
Scott Thornton's avatar
Scott Thornton committed
698
699
700
701
{
    std::string name() const { return "mul"; }
};

702
struct div : binary
Scott Thornton's avatar
Scott Thornton committed
703
704
705
706
{
    std::string name() const { return "div"; }
};

Paul's avatar
Paul committed
707
708
709
710
711
712
713
714
715
716
717
718
719
720
721
722
struct load
{
    shape s;
    std::size_t offset = 0;
    std::string name() const { return "load"; }
    shape compute_shape(const std::vector<shape>& inputs) const
    {
        check_shapes{inputs}.has(1);
        return s;
    }
    argument compute(context&, const shape&, const std::vector<argument>& args) const
    {
        return {s, args[0].data() + offset};
    }
};

Paul's avatar
Paul committed
723
struct outline
Scott Thornton's avatar
Scott Thornton committed
724
{
Paul's avatar
Paul committed
725
726
    shape s;
    std::string name() const { return "outline"; }
Paul's avatar
Paul committed
727
    shape compute_shape(const std::vector<shape>& inputs) const
Paul's avatar
Paul committed
728
    {
Paul's avatar
Paul committed
729
        check_shapes{inputs, *this}.has(0);
Paul's avatar
Paul committed
730
731
        return s;
    }
Paul's avatar
Paul committed
732
733
734
735
    argument compute(context&, const shape&, const std::vector<argument>&) const
    {
        return {s, nullptr};
    }
Scott Thornton's avatar
Scott Thornton committed
736
737
};

738
} // namespace op
Paul's avatar
Paul committed
739
} // namespace migraph
Paul's avatar
Paul committed
740
741

#endif