operators.hpp 12.5 KB
Newer Older
Paul's avatar
Paul committed
1
2
3
#ifndef RTG_GUARD_OPERATORS_HPP
#define RTG_GUARD_OPERATORS_HPP

4
#include <array>
Paul's avatar
Paul committed
5
#include <rtg/operation.hpp>
Paul's avatar
Paul committed
6
#include <rtg/stringutils.hpp>
Paul's avatar
Paul committed
7
#include <rtg/streamutils.hpp>
Paul's avatar
Paul committed
8
#include <cmath>
Paul's avatar
Paul committed
9

Paul's avatar
Paul committed
10
11
namespace rtg {

Paul's avatar
Paul committed
12
13
14
15
struct check_shapes
{
    const std::vector<shape>* shapes;

Paul's avatar
Paul committed
16
    check_shapes(const std::vector<shape>& s) : shapes(&s) {}
Paul's avatar
Paul committed
17
18
19
20
21

    const check_shapes& has(std::size_t n) const
    {
        assert(shapes != nullptr);
        if(shapes->size() != n)
Paul's avatar
Paul committed
22
23
            RTG_THROW("Wrong number of arguments: expected " + std::to_string(n) + " but given " +
                      std::to_string(shapes->size()));
Paul's avatar
Paul committed
24
25
26
27
28
29
        return *this;
    }

    const check_shapes& only_dims(std::size_t n) const
    {
        assert(shapes != nullptr);
Paul's avatar
Paul committed
30
31
        if(!shapes->empty())
        {
Paul's avatar
Paul committed
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
            if(shapes->front().lens().size() != n)
                RTG_THROW("Only " + std::to_string(n) + "d supported");
        }
        return *this;
    }

    const check_shapes& same_shape() const
    {
        if(!this->same([](const shape& s) { return s; }))
            RTG_THROW("Shapes do not match");
        return *this;
    }

    const check_shapes& same_type() const
    {
        if(!this->same([](const shape& s) { return s.type(); }))
            RTG_THROW("Types do not match");
        return *this;
    }

    const check_shapes& same_dims() const
    {
        if(!this->same([](const shape& s) { return s.lens(); }))
            RTG_THROW("Dimensions do not match");
        return *this;
    }

59
60
61
62
63
64
65
    const check_shapes& same_ndims() const
    {
        if(!this->same([](const shape& s) { return s.lens().size(); }))
            RTG_THROW("Dimensions do not match");
        return *this;
    }

Paul's avatar
Paul committed
66
    template <class F>
Paul's avatar
Paul committed
67
68
69
70
71
72
    bool same(F f) const
    {
        assert(shapes != nullptr);
        if(shapes->empty())
            return true;
        auto&& key = f(shapes->front());
Paul's avatar
Paul committed
73
        return this->all_of([&](const shape& s) { return f(s) == key; });
Paul's avatar
Paul committed
74
75
    }

Paul's avatar
Paul committed
76
    template <class Predicate>
Paul's avatar
Paul committed
77
78
79
80
81
82
83
    bool all_of(Predicate p) const
    {
        assert(shapes != nullptr);
        return std::all_of(shapes->begin(), shapes->end(), p);
    }
};

Paul's avatar
Paul committed
84
85
struct not_computable
{
Paul's avatar
Paul committed
86
    argument compute(shape, std::vector<argument>) const { RTG_THROW("not computable"); }
Paul's avatar
Paul committed
87
88
};

Paul's avatar
Paul committed
89
struct convolution
Paul's avatar
Paul committed
90
{
Paul's avatar
Paul committed
91
92
93
    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
94
95
96
97
98
99
100
    enum padding_mode_t
    {
        default_, // NOLINT
        same,
        valid
    };
    padding_mode_t padding_mode = default_;
Paul's avatar
Paul committed
101
    std::string name() const { return "convolution"; }
Paul's avatar
Paul committed
102
103
    shape compute_shape(std::vector<shape> inputs) const
    {
104
        check_shapes{inputs}.has(2).same_type().same_ndims().only_dims(4);
Paul's avatar
Paul committed
105

Paul's avatar
Paul committed
106
        const shape& input   = inputs.at(0);
Paul's avatar
Paul committed
107
        const shape& weights = inputs.at(1);
Paul's avatar
Paul committed
108
        auto t               = input.type();
Paul's avatar
Paul committed
109
110
        if(padding_mode == default_)
        {
Paul's avatar
Paul committed
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
            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
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
        }
        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
152
153
            RTG_THROW("Invalid padding mode");
        }
Paul's avatar
Paul committed
154
    }
Paul's avatar
Paul committed
155

Paul's avatar
Paul committed
156
    argument compute(shape, std::vector<argument>) const { RTG_THROW("not computable"); }
Paul's avatar
Paul committed
157

Paul's avatar
Paul committed
158
    friend std::ostream& operator<<(std::ostream& os, const convolution& op)
Paul's avatar
Paul committed
159
    {
Paul's avatar
Paul committed
160
161
162
163
164
        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
165
166
        return os;
    }
Paul's avatar
Paul committed
167
168
};

Paul's avatar
Paul committed
169
struct pooling
Paul's avatar
Paul committed
170
171
{
    std::string mode;
Paul's avatar
Paul committed
172
173
174
    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
175
    std::string name() const { return "pooling"; }
Paul's avatar
Paul committed
176
177
    shape compute_shape(std::vector<shape> inputs) const
    {
Paul's avatar
Paul committed
178
        check_shapes{inputs}.has(1).only_dims(4);
Paul's avatar
Paul committed
179

Paul's avatar
Paul committed
180
        const shape& input = inputs.at(0);
Paul's avatar
Paul committed
181
        auto t             = input.type();
Paul's avatar
Paul committed
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
        return {t,
                {
                    input.lens()[0],
                    input.lens()[1],
                    std::size_t(std::max<std::ptrdiff_t>(
                        1,
                        std::ceil((input.lens()[3] + 2 * padding[0] - lengths[0]) /
                                  static_cast<float>(stride[0])) +
                            1)),
                    std::size_t(std::max<std::ptrdiff_t>(
                        1,
                        std::ceil((input.lens()[4] + 2 * padding[1] - lengths[1]) /
                                  static_cast<float>(stride[1])) +
                            1)),
                }};
Paul's avatar
Paul committed
197
    }
Paul's avatar
Paul committed
198

Paul's avatar
Paul committed
199
    argument compute(shape, std::vector<argument>) const { RTG_THROW("not computable"); }
Paul's avatar
Paul committed
200

Paul's avatar
Paul committed
201
    friend std::ostream& operator<<(std::ostream& os, const pooling& op)
Paul's avatar
Paul committed
202
    {
Paul's avatar
Paul committed
203
204
205
206
207
        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
208
209
        return os;
    }
Paul's avatar
Paul committed
210
211
};

Paul's avatar
Paul committed
212
struct activation
Paul's avatar
Paul committed
213
214
{
    std::string mode;
Paul's avatar
Paul committed
215
    std::string name() const { return "activation"; }
Paul's avatar
Paul committed
216
217
    shape compute_shape(std::vector<shape> inputs) const
    {
Paul's avatar
Paul committed
218
        check_shapes{inputs}.has(1);
Paul's avatar
Paul committed
219
220
        return inputs.front();
    }
Paul's avatar
Paul committed
221

Paul's avatar
Paul committed
222
    argument compute(shape, std::vector<argument>) const { RTG_THROW("not computable"); }
Paul's avatar
Paul committed
223
    friend std::ostream& operator<<(std::ostream& os, const activation& op)
Paul's avatar
Paul committed
224
    {
Paul's avatar
Paul committed
225
        os << op.name() << ":" << op.mode;
Paul's avatar
Paul committed
226
227
        return os;
    }
Paul's avatar
Paul committed
228
229
};

Paul's avatar
Paul committed
230
231
232
struct reshape
{
    std::vector<int64_t> dims;
Paul's avatar
Paul committed
233
    std::string name() const { return "reshape"; }
Paul's avatar
Paul committed
234
235
    shape compute_shape(std::vector<shape> inputs) const
    {
Paul's avatar
Paul committed
236
        if(inputs.empty())
Paul's avatar
Paul committed
237
            RTG_THROW("Wrong number of arguments");
Paul's avatar
Paul committed
238
239
        auto&& idims = inputs.front().lens();
        std::vector<std::size_t> rdims(dims.begin(), dims.end());
Paul's avatar
Paul committed
240
        for(std::size_t i = 0; i < dims.size(); i++)
Paul's avatar
Paul committed
241
242
243
244
245
246
247
        {
            if(dims[i] == 0)
                rdims[i] = idims[i];
        }
        if(dims.back() == -1)
        {
            rdims.pop_back();
Paul's avatar
Paul committed
248
            std::copy(idims.begin() + rdims.size(), idims.end(), std::back_inserter(rdims));
Paul's avatar
Paul committed
249
250
251
252
        }
        return {inputs.front().type(), rdims};
    }

Paul's avatar
Paul committed
253
    argument compute(shape, std::vector<argument>) const { RTG_THROW("not computable"); }
Paul's avatar
Paul committed
254

Paul's avatar
Paul committed
255
    friend std::ostream& operator<<(std::ostream& os, const reshape& op)
Paul's avatar
Paul committed
256
    {
Paul's avatar
Paul committed
257
258
259
        os << op.name() << "[";
        os << "dims={" << stream_range(op.dims) << "}, ";
        os << "]";
Paul's avatar
Paul committed
260
261
        return os;
    }
Paul's avatar
Paul committed
262
263
};

264
265
struct gemm
{
266
    std::string name() const { return "gemm"; }
267
268
    shape compute_shape(std::vector<shape> inputs) const
    {
269
        check_shapes{inputs}.has(2).same_type();
270
271
        const shape& a = inputs.at(0);
        const shape& b = inputs.at(1);
Scott Thornton's avatar
Scott Thornton committed
272
        auto t         = a.type();
273

274
        if(a.lens()[1] != b.lens()[0])
275
            RTG_THROW("Inner dimensions do not match");
Scott Thornton's avatar
Scott Thornton committed
276
        return {t, {a.lens()[0], b.lens()[1]}};
277
    }
278

279
    argument compute(shape, std::vector<argument>) const { RTG_THROW("not computable"); }
280
281

    friend std::ostream& operator<<(std::ostream& os, const gemm& op)
282
283
    {
        os << op.name() << "[";
284
        os << "]";
Scott Thornton's avatar
Scott Thornton committed
285
        return os;
286
287
288
    }
};

289
struct unary
Scott Thornton's avatar
Scott Thornton committed
290
{
291
292
    shape compute_shape(std::vector<shape> inputs) const
    {
293
294
        check_shapes{inputs}.has(1);
        return inputs.at(0);
295
296
    }
    argument compute(shape, std::vector<argument>) const { RTG_THROW("not computable"); }
Scott Thornton's avatar
Scott Thornton committed
297
298
};

299
300
struct identity : unary
{
301
    std::string name() const { return "identity"; }
302
303
304
};

struct abs : unary
Scott Thornton's avatar
Scott Thornton committed
305
{
306
    std::string name() const { return "abs"; }
Scott Thornton's avatar
Scott Thornton committed
307
308
};

309
struct exp : unary
Scott Thornton's avatar
Scott Thornton committed
310
{
311
    std::string name() const { return "exp"; }
Scott Thornton's avatar
Scott Thornton committed
312
313
};

314
struct sin : unary
Scott Thornton's avatar
Scott Thornton committed
315
{
316
    std::string name() const { return "sin"; }
Scott Thornton's avatar
Scott Thornton committed
317
318
};

319
struct cos : unary
Scott Thornton's avatar
Scott Thornton committed
320
{
321
    std::string name() const { return "cos"; }
Scott Thornton's avatar
Scott Thornton committed
322
323
};

324
struct tan : unary
Scott Thornton's avatar
Scott Thornton committed
325
{
326
    std::string name() const { return "tan"; }
Scott Thornton's avatar
Scott Thornton committed
327
328
};

329
struct asin : unary
Scott Thornton's avatar
Scott Thornton committed
330
{
331
    std::string name() const { return "asin"; }
Scott Thornton's avatar
Scott Thornton committed
332
333
};

334
struct acos : unary
Scott Thornton's avatar
Scott Thornton committed
335
{
336
    std::string name() const { return "acos"; }
Scott Thornton's avatar
Scott Thornton committed
337
338
};

339
struct atan : unary
Scott Thornton's avatar
Scott Thornton committed
340
{
341
    std::string name() const { return "atan"; }
Scott Thornton's avatar
Scott Thornton committed
342
343
};

344
struct softmax : unary
Scott Thornton's avatar
Scott Thornton committed
345
{
346
    std::string name() const { return "softmax"; }
Scott Thornton's avatar
Scott Thornton committed
347
348
};

349
struct tanh : unary
Scott Thornton's avatar
Scott Thornton committed
350
{
351
    std::string name() const { return "tanh"; }
Scott Thornton's avatar
Scott Thornton committed
352
353
};

354
struct sigmoid : unary
Scott Thornton's avatar
Scott Thornton committed
355
{
356
    std::string name() const { return "sigmoid"; }
Scott Thornton's avatar
Scott Thornton committed
357
358
};

359
struct neg : unary
Scott Thornton's avatar
Scott Thornton committed
360
{
361
    std::string name() const { return "neg"; }
Scott Thornton's avatar
Scott Thornton committed
362
363
};

364
struct flatten
Scott Thornton's avatar
Scott Thornton committed
365
366
367
368
{
    std::string name() const { return "flatten"; }
};

369
370
371
372
373
374
375
376
377
378
379
380
381
struct broadcast
{
    uint64_t axis = 0;
    std::string name() const { return "broadcast"; }
    shape compute_shape(std::vector<shape> inputs) const
    {
        auto t              = inputs.at(0).type();
        auto shape0         = inputs.at(0);
        auto shape1         = inputs.at(1);
        auto shape0_lens    = shape0.lens();
        auto shape1_lens    = shape1.lens();
        auto shape0_strides = shape0.lens();
        auto shape1_strides = shape1.lens();
Scott Thornton's avatar
Scott Thornton committed
382
        if(std::all_of(shape0_lens.cbegin(), shape1_lens.cend(), [&](auto x) { return x == 1; }))
383
        {
Scott Thornton's avatar
Scott Thornton committed
384
385
            if(axis != 0)
                RTG_THROW("when broadcasting tensor of size 1, axis should be 0");
386
387
388
389
390
391
            std::vector<size_t> bcast_shape_lens = shape0_lens;
            std::vector<size_t> bcast_shape_strides(bcast_shape_lens.size(), 0);
            return {t, bcast_shape_lens, bcast_shape_strides};
        }
        else
        {
Scott Thornton's avatar
Scott Thornton committed
392
            for(size_t i = 0; i < shape1_lens.size(); i++)
393
            {
Scott Thornton's avatar
Scott Thornton committed
394
395
                if(shape0_lens[i + axis] != shape1_lens[i])
                    RTG_THROW("when broadcasting success sizes must match");
396
397
398
            }
            std::vector<size_t> bcast_shape_lens = shape0_lens;
            std::vector<size_t> bcast_shape_strides(bcast_shape_lens.size(), 0);
Scott Thornton's avatar
Scott Thornton committed
399
400
401
            for(size_t i = 0; i < shape1_strides.size(); i++)
            {
                bcast_shape_strides[i + axis] = shape1_strides[i];
402
403
404
405
            }
            return {t, bcast_shape_lens, bcast_shape_strides};
        }
    }
Scott Thornton's avatar
Scott Thornton committed
406
407
    argument compute(shape output_shape, std::vector<argument> args) const
    {
408
        return {output_shape, std::move(args.at(1).data)};
Scott Thornton's avatar
Scott Thornton committed
409
    }
410
411
};

412
struct binary
Scott Thornton's avatar
Scott Thornton committed
413
{
414
    uint64_t broadcast = 0;
415
416
    shape compute_shape(std::vector<shape> inputs) const
    {
417
418
        check_shapes{inputs}.has(2).same_type().same_dims();
        return inputs.at(0);
419
    }
420
    argument compute(shape, std::vector<argument>) const { RTG_THROW("not computable"); }
Scott Thornton's avatar
Scott Thornton committed
421
422
};

423
424
425
426
427
428
struct add : binary
{
    std::string name() const { return "add"; }
};

struct sub : binary
Scott Thornton's avatar
Scott Thornton committed
429
430
431
432
{
    std::string name() const { return "sub"; }
};

433
struct mul : binary
Scott Thornton's avatar
Scott Thornton committed
434
435
436
437
{
    std::string name() const { return "mul"; }
};

438
struct div : binary
Scott Thornton's avatar
Scott Thornton committed
439
440
441
442
{
    std::string name() const { return "div"; }
};

Paul's avatar
Paul committed
443
struct outline
Scott Thornton's avatar
Scott Thornton committed
444
{
Paul's avatar
Paul committed
445
446
447
448
449
450
451
    shape s;
    std::string name() const { return "outline"; }
    shape compute_shape(std::vector<shape> inputs) const
    {
        check_shapes{inputs}.has(0);
        return s;
    }
Paul's avatar
Paul committed
452
    argument compute(shape, std::vector<argument>) const { return {s, nullptr}; }
Scott Thornton's avatar
Scott Thornton committed
453
454
};

Paul's avatar
Paul committed
455
456
457
} // namespace rtg

#endif