shape.cpp 15.4 KB
Newer Older
Paul's avatar
Paul committed
1

Paul's avatar
Paul committed
2
3
#include <migraphx/shape.hpp>
#include <migraphx/stringutils.hpp>
4
#include <migraphx/serialize.hpp>
5
#include <migraphx/permutation.hpp>
6
#include <migraphx/ranges.hpp>
Paul's avatar
Paul committed
7
8
9
#include <numeric>
#include <algorithm>
#include <functional>
10
#include <unordered_map>
Paul's avatar
Paul committed
11
#include <iostream>
Paul's avatar
Paul committed
12

Paul's avatar
Paul committed
13
namespace migraphx {
Paul's avatar
Paul committed
14
inline namespace MIGRAPHX_INLINE_NS {
Paul's avatar
Paul committed
15

Paul's avatar
Paul committed
16
17
struct shape_impl
{
Paul's avatar
Paul committed
18
19
    static std::shared_ptr<shape_impl> default_shape()
    {
20
        static const std::shared_ptr<shape_impl> result = std::make_shared<shape_impl>();
Paul's avatar
Paul committed
21
22
23
        return result;
    }

Paul Fultz II's avatar
Paul Fultz II committed
24
    shape_impl() : m_type(shape::float_type) {}
Paul's avatar
Paul committed
25

Paul Fultz II's avatar
Paul Fultz II committed
26
27
28
29
    shape_impl(shape::type_t t) : m_type(t), m_lens({1}), m_strides({0}), m_standard(true)
    {
        assert(t != shape::tuple_type);
    }
Paul's avatar
Paul committed
30
31
32
    shape_impl(shape::type_t t, std::vector<std::size_t> l)
        : m_type(t), m_lens(std::move(l)), m_standard(true)
    {
Paul Fultz II's avatar
Paul Fultz II committed
33
        assert(t != shape::tuple_type);
Paul's avatar
Paul committed
34
35
36
37
38
39
        this->calculate_strides();
        assert(m_lens.size() == m_strides.size());
    }
    shape_impl(shape::type_t t, std::vector<std::size_t> l, std::vector<std::size_t> s)
        : m_type(t), m_lens(std::move(l)), m_strides(std::move(s))
    {
Paul Fultz II's avatar
Paul Fultz II committed
40
        assert(t != shape::tuple_type);
Paul's avatar
Paul committed
41
        assert(m_lens.size() == m_strides.size());
Khalique's avatar
Khalique committed
42
43
        // assert(std::any_of(m_strides.begin(), m_strides.end(), [](auto x) { return x > 0; }) and
        //        "At least one stride must be non-zero");
44
45
        m_standard = this->elements() == this->element_space() and
                     std::is_sorted(m_strides.rbegin(), m_strides.rend());
Paul's avatar
Paul committed
46
    }
Paul Fultz II's avatar
Paul Fultz II committed
47
48

    shape_impl(const std::vector<shape>& subs) : m_type(shape::tuple_type), m_shapes(subs) {}
49

50
51
    explicit shape_impl(shape::dyn_data data)
        : m_type(data.t), m_dynamic(true), m_dyn_dims(data.dims)
52
53
54
    {
    }

Paul's avatar
Paul committed
55
    shape::type_t m_type;
Paul Fultz II's avatar
Paul Fultz II committed
56
57
58
59
    std::vector<std::size_t> m_lens    = {};
    std::vector<std::size_t> m_strides = {};
    std::vector<shape> m_shapes        = {};
    bool m_standard                    = false;
60
61
62
    bool m_dynamic                     = false;

    std::vector<shape::dynamic_dimension> m_dyn_dims = {};
Paul's avatar
Paul committed
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78

    void calculate_strides()
    {
        m_strides.clear();
        m_strides.resize(m_lens.size(), 0);
        if(m_strides.empty())
            return;
        m_strides.back() = 1;
        std::partial_sum(m_lens.rbegin(),
                         m_lens.rend() - 1,
                         m_strides.rbegin() + 1,
                         std::multiplies<std::size_t>());
    }

    std::size_t element_space() const
    {
79
80
81
82
83
        if(m_dynamic)
        {
            MIGRAPHX_THROW("SHAPE: element_space() called on dynamic shape");
        }

Paul's avatar
Paul committed
84
85
86
87
88
89
90
91
92
93
94
95
96
97
        assert(m_lens.size() == m_strides.size());
        if(m_lens.empty())
            return 0;
        return std::inner_product(m_lens.begin(),
                                  m_lens.end(),
                                  m_strides.begin(),
                                  std::size_t{0},
                                  std::plus<std::size_t>{},
                                  [](std::size_t l, std::size_t s) { return (l - 1) * s; }) +
               1;
    }

    std::size_t elements() const
    {
98
99
100
101
102
        if(m_dynamic)
        {
            MIGRAPHX_THROW("SHAPE: elements() called on dynamic shape");
        }

Paul's avatar
Paul committed
103
104
105
106
107
108
        assert(m_lens.size() == m_strides.size());
        if(m_lens.empty())
            return 0;
        return std::accumulate(
            m_lens.begin(), m_lens.end(), std::size_t{1}, std::multiplies<std::size_t>());
    }
109
110

    std::shared_ptr<shape_impl> copy() const { return std::make_shared<shape_impl>(*this); }
Paul's avatar
Paul committed
111
};
Paul's avatar
Paul committed
112

113
114
115
116
const std::vector<shape::type_t>& shape::types()
{
    static const std::vector<shape::type_t> result = {
#define MIGRAPHX_GENERATE_TYPE_VECTOR(x, t) x,
Paul Fultz II's avatar
Paul Fultz II committed
117
        MIGRAPHX_SHAPE_VISIT_TYPES(MIGRAPHX_GENERATE_TYPE_VECTOR) tuple_type};
118
119
120
    return result;
}

121
122
123
124
std::string shape::name(shape::type_t t)
{
    switch(t)
    {
Paul Fultz II's avatar
Paul Fultz II committed
125
    case tuple_type: return "tuple_type";
126
127
128
129
130
131
132
133
134
135
136
#define MIGRAPHX_SHAPE_GENERATE_TYPE_NAME_CASE(x, t) \
    case x: return #x;
        MIGRAPHX_SHAPE_VISIT_TYPES(MIGRAPHX_SHAPE_GENERATE_TYPE_NAME_CASE)
#undef MIGRAPHX_SHAPE_GENERATE_TYPE_NAME_CASE
    }
    MIGRAPHX_THROW("Invalid type");
}
std::string shape::cpp_type(shape::type_t t)
{
    switch(t)
    {
Paul Fultz II's avatar
Paul Fultz II committed
137
    case tuple_type: MIGRAPHX_THROW("No C++ type for tuple");
138
139
140
141
142
143
144
145
#define MIGRAPHX_SHAPE_GENERATE_CPP_TYPE_CASE(x, t) \
    case x: return #t;
        MIGRAPHX_SHAPE_VISIT_TYPES(MIGRAPHX_SHAPE_GENERATE_CPP_TYPE_CASE)
#undef MIGRAPHX_SHAPE_GENERATE_CPP_TYPE_CASE
    }
    MIGRAPHX_THROW("Invalid type");
}

Paul's avatar
Paul committed
146
147
148
shape::shape() : impl(shape_impl::default_shape()) {}

shape::shape(type_t t) : impl(std::make_shared<shape_impl>(t)) {}
Paul's avatar
Paul committed
149
shape::shape(type_t t, std::vector<std::size_t> l)
Paul's avatar
Paul committed
150
    : impl(std::make_shared<shape_impl>(t, std::move(l)))
Paul's avatar
Paul committed
151
152
153
{
}
shape::shape(type_t t, std::vector<std::size_t> l, std::vector<std::size_t> s)
Paul's avatar
Paul committed
154
    : impl(std::make_shared<shape_impl>(t, std::move(l), std::move(s)))
Paul's avatar
Paul committed
155
156
157
{
}

Paul Fultz II's avatar
Paul Fultz II committed
158
159
shape::shape(const std::vector<shape>& subs) : impl(std::make_shared<shape_impl>(subs)) {}

160
shape::shape(dyn_data data) : impl(std::make_shared<shape_impl>(std::move(data))) {}
161

162
163
shape::shape(std::shared_ptr<shape_impl> pimpl) : impl(std::move(pimpl)) {}

164
165
166
167
168
169
170
171
172
173
shape shape::from_permutation(type_t t,
                              const std::vector<std::size_t>& l,
                              const std::vector<int64_t>& perm)
{
    auto new_lens = reorder_dims(l, perm);
    shape result  = reorder_shape({t, new_lens}, invert_permutation(perm));
    assert(result.lens() == l);
    return result;
}

Paul's avatar
Paul committed
174
shape::type_t shape::type() const { return impl->m_type; }
175

Paul's avatar
Paul committed
176
const std::vector<std::size_t>& shape::lens() const { return impl->m_lens; }
177

Paul's avatar
Paul committed
178
const std::vector<std::size_t>& shape::strides() const { return impl->m_strides; }
179

Paul's avatar
Paul committed
180
std::size_t shape::elements() const { return impl->elements(); }
181

Paul's avatar
Paul committed
182
183
std::size_t shape::bytes() const
{
184
185
186
187
    if(this->dynamic())
    {
        MIGRAPHX_THROW("SHAPE: bytes() called on dynamic shape");
    }
Paul Fultz II's avatar
Paul Fultz II committed
188
189
190
191
192
193
194
195
196
197
198
199
200
    if(this->sub_shapes().empty())
    {
        std::size_t n = 0;
        this->visit_type([&](auto as) { n = as.size(); });
        return n * this->element_space();
    }
    else
    {
        return std::accumulate(this->sub_shapes().begin(),
                               this->sub_shapes().end(),
                               std::size_t{0},
                               [&](auto x, auto y) { return x + y.bytes(); });
    }
Paul's avatar
Paul committed
201
}
Scott Thornton's avatar
Scott Thornton committed
202
203
204
std::size_t shape::type_size() const
{
    std::size_t n = 0;
Paul Fultz II's avatar
Paul Fultz II committed
205
206
    if(this->sub_shapes().empty())
        this->visit_type([&](auto as) { n = as.size(); });
Scott Thornton's avatar
Scott Thornton committed
207
208
    return n;
}
209

Paul's avatar
Paul committed
210
211
std::size_t shape::index(std::initializer_list<std::size_t> l) const
{
212
213
214
215
    if(this->dynamic())
    {
        MIGRAPHX_THROW("SHAPE: index() called on dynamic shape");
    }
Paul's avatar
Paul committed
216
217
218
219
    assert(l.size() <= this->lens().size());
    assert(this->lens().size() == this->strides().size());
    return std::inner_product(l.begin(), l.end(), this->strides().begin(), std::size_t{0});
}
charlie's avatar
charlie committed
220

Paul's avatar
Paul committed
221
222
std::size_t shape::index(const std::vector<std::size_t>& l) const
{
223
224
225
226
    if(this->dynamic())
    {
        MIGRAPHX_THROW("SHAPE: index() called on dynamic shape");
    }
Paul's avatar
Paul committed
227
228
229
230
    assert(l.size() <= this->lens().size());
    assert(this->lens().size() == this->strides().size());
    return std::inner_product(l.begin(), l.end(), this->strides().begin(), std::size_t{0});
}
charlie's avatar
charlie committed
231

Paul's avatar
Paul committed
232
233
std::size_t shape::index(std::size_t i) const
{
234
235
236
237
    if(this->dynamic())
    {
        MIGRAPHX_THROW("SHAPE: index() called on dynamic shape");
    }
Paul's avatar
Paul committed
238
    assert(this->lens().size() == this->strides().size());
Paul's avatar
Paul committed
239
    if(this->standard())
Paul's avatar
Paul committed
240
241
        return i;
    else
Paul's avatar
Paul committed
242
    {
Paul's avatar
Paul committed
243
        std::size_t s      = 1;
Paul's avatar
Paul committed
244
        std::size_t result = 0;
Paul's avatar
Paul committed
245
        for(std::size_t j = 0; j < this->lens().size(); j++)
Paul's avatar
Paul committed
246
        {
Paul's avatar
Paul committed
247
            const std::size_t k      = this->lens().size() - j - 1;
Paul's avatar
Paul committed
248
            const std::size_t stride = this->strides()[k];
Paul's avatar
Paul committed
249
250
            const std::size_t len    = this->lens()[k];
            const std::size_t idx    = (i % (s * len)) / s;
Paul's avatar
Paul committed
251
252
253
254
255
            result += stride * idx;
            s *= len;
        }
        return result;
    }
Paul's avatar
Paul committed
256
}
257
258
259
260
261
262

std::vector<std::size_t> shape::multi(std::size_t i) const
{
    assert(this->standard());

    std::vector<std::size_t> indices(lens().size());
263
264
265
266
267
268
269
270
271
272
    multi_copy(i, indices.data(), indices.data() + lens().size());

    return indices;
}

void shape::multi_copy(std::size_t i, std::size_t* start, const std::size_t* end) const
{
    assert(this->standard());
    (void)end;
    assert(lens().size() <= (end - start));
273
    std::transform(strides().begin(),
Shucai Xiao's avatar
Shucai Xiao committed
274
275
                   strides().end(),
                   lens().begin(),
276
                   start,
Shucai Xiao's avatar
Shucai Xiao committed
277
278
279
280
                   [&](std::size_t stride, std::size_t len) {
                       assert(len > 0 and stride > 0);
                       return (i / stride) % len;
                   });
281
282
}

Paul Fultz II's avatar
Paul Fultz II committed
283
284
bool shape::packed() const
{
285
286
287
288
    if(this->dynamic())
    {
        return false;
    }
Paul Fultz II's avatar
Paul Fultz II committed
289
290
    return this->sub_shapes().empty() and this->elements() == this->element_space();
}
Paul's avatar
Paul committed
291

Paul's avatar
Paul committed
292
293
bool shape::transposed() const
{
294
295
296
297
    if(this->dynamic())
    {
        return false;
    }
298
299
300
301
302
303
304
305
306
307
308
309
310
311
312
    if(this->broadcasted())
    {
        // TODO: Use a filter_iterator instead
        std::vector<std::size_t> s;
        s.reserve(this->strides().size());
        std::copy_if(this->strides().begin(),
                     this->strides().end(),
                     std::back_inserter(s),
                     [](std::size_t x) { return x != 0; });
        return not std::is_sorted(s.rbegin(), s.rend());
    }
    else
    {
        return not std::is_sorted(this->strides().rbegin(), this->strides().rend());
    }
Paul's avatar
Paul committed
313
}
Paul's avatar
Paul committed
314
315
316

bool shape::broadcasted() const
{
317
318
319
320
    if(this->dynamic())
    {
        return false;
    }
Paul's avatar
Paul committed
321
    assert(this->lens().size() == this->strides().size());
Paul's avatar
Paul committed
322
323
324
325
    return std::accumulate(this->strides().begin(),
                           this->strides().end(),
                           std::size_t{1},
                           std::multiplies<std::size_t>()) == 0;
Paul's avatar
Paul committed
326
327
}

Khalique's avatar
Khalique committed
328
329
bool shape::scalar() const
{
330
331
332
333
    if(this->dynamic())
    {
        return false;
    }
Khalique's avatar
Khalique committed
334
335
    assert(this->lens().size() == this->strides().size());
    // if any stride > 0, then accumulate will return false
Paul Fultz II's avatar
Paul Fultz II committed
336
337
    return this->sub_shapes().empty() and
           std::accumulate(this->strides().begin(), this->strides().end(), std::size_t(0)) == 0;
Khalique's avatar
Khalique committed
338
339
}

Paul's avatar
Paul committed
340
bool shape::standard() const { return impl->m_standard; }
Paul's avatar
Paul committed
341

342
343
344
345
346
347
348
349
shape shape::normalize_standard() const
{
    if(this->standard())
        return {this->type(), this->lens()};
    else
        return *this;
}

350
351
shape shape::with_lens(type_t t, const std::vector<std::size_t>& l) const
{
352
353
354
355
    if(this->dynamic())
    {
        MIGRAPHX_THROW("SHAPE: with_lens() called on dynamic shape");
    }
356
357
358
359
360
361
362
    assert(l.size() == this->lens().size());
    auto perm = find_permutation(*this);
    return shape::from_permutation(t, l, perm);
}

shape shape::with_lens(const std::vector<std::size_t>& l) const
{
363
364
365
366
    if(this->dynamic())
    {
        MIGRAPHX_THROW("SHAPE: with_lens() called on dynamic shape");
    }
367
368
369
    return this->with_lens(this->type(), l);
}

370
371
372
373
374
375
376
shape shape::with_type(type_t t) const
{
    auto c    = impl->copy();
    c->m_type = t;
    return {c};
}

Paul's avatar
Paul committed
377
std::size_t shape::element_space() const { return impl->element_space(); }
Paul's avatar
Paul committed
378

379
std::string shape::type_string() const { return name(this->type()); }
Paul's avatar
Paul committed
380

charlie's avatar
charlie committed
381
382
383
384
bool shape::dynamic() const { return impl->m_dynamic; }

const std::vector<shape::dynamic_dimension>& shape::dyn_dims() const { return impl->m_dyn_dims; }

charlie's avatar
charlie committed
385
std::vector<std::size_t> shape::min_dyn_dims() const
charlie's avatar
charlie committed
386
387
{
    auto num_dims = dyn_dims().size();
charlie's avatar
charlie committed
388
    std::vector<std::size_t> ret(num_dims);
charlie's avatar
charlie committed
389
390
391
392
393
394
395
    for(int i = 0; i < num_dims; ++i)
    {
        ret.at(i) = dyn_dims().at(i).min;
    }
    return ret;
}

charlie's avatar
charlie committed
396
std::vector<std::size_t> shape::max_dyn_dims() const
charlie's avatar
charlie committed
397
398
{
    auto num_dims = dyn_dims().size();
charlie's avatar
charlie committed
399
    std::vector<std::size_t> ret(num_dims);
charlie's avatar
charlie committed
400
401
402
403
404
405
406
    for(int i = 0; i < num_dims; ++i)
    {
        ret.at(i) = dyn_dims().at(i).max;
    }
    return ret;
}

charlie's avatar
charlie committed
407
std::vector<std::size_t> shape::opt_dyn_dims() const
charlie's avatar
charlie committed
408
409
{
    auto num_dims = dyn_dims().size();
charlie's avatar
charlie committed
410
    std::vector<std::size_t> ret(num_dims);
charlie's avatar
charlie committed
411
412
413
414
415
416
417
    for(int i = 0; i < num_dims; ++i)
    {
        ret.at(i) = dyn_dims().at(i).opt;
    }
    return ret;
}

Paul's avatar
Paul committed
418
419
bool operator==(const shape& x, const shape& y)
{
420
421
422
423
424
425
426
427
    if(x.dynamic() and y.dynamic())
    {
        return x.impl == y.impl or (x.type() == y.type() and x.dyn_dims() == y.dyn_dims() and
                                    x.sub_shapes() == y.sub_shapes());
    }
    return x.impl == y.impl or
           (x.dynamic() == y.dynamic() and x.type() == y.type() and x.lens() == y.lens() and
            x.strides() == y.strides() and x.sub_shapes() == y.sub_shapes());
Paul's avatar
Paul committed
428
}
429

Paul's avatar
Paul committed
430
bool operator!=(const shape& x, const shape& y) { return !(x == y); }
Paul's avatar
Paul committed
431

Paul's avatar
Paul committed
432
433
std::ostream& operator<<(std::ostream& os, const shape& x)
{
Paul Fultz II's avatar
Paul Fultz II committed
434
435
    if(x.sub_shapes().empty())
    {
436
437
438
439
440
441
442
443
444
445
446
447
        if(x.dynamic())
        {
            os << "dynamic, ";
            os << x.type_string() << ", ";
            os << "{" << to_string_range(x.dyn_dims()) << "}";
        }
        else
        {
            os << x.type_string() << ", ";
            os << "{" << to_string_range(x.lens()) << "}, ";
            os << "{" << to_string_range(x.strides()) << "}";
        }
Paul Fultz II's avatar
Paul Fultz II committed
448
449
450
451
452
    }
    else
    {
        os << "[" << to_string_range(x.sub_shapes()) << "]";
    }
Paul's avatar
Paul committed
453
454
455
    return os;
}

456
457
shape::type_t shape::parse_type(const std::string& s)
{
458
    static const std::unordered_map<std::string, shape::type_t> m = {
459
#define MIGRAPHX_SHAPE_GENERATE_TYPE_STRING_MAP(x, t) {#x, x}, {#t, x},
Paul Fultz II's avatar
Paul Fultz II committed
460
461
462
        MIGRAPHX_SHAPE_VISIT_TYPES(MIGRAPHX_SHAPE_GENERATE_TYPE_STRING_MAP){"tuple_type",
                                                                            tuple_type},
        {"tuple", tuple_type}};
463
464
465
    return m.at(s);
}

Paul Fultz II's avatar
Paul Fultz II committed
466
467
const std::vector<shape>& shape::sub_shapes() const { return impl->m_shapes; }

468
469
470
void migraphx_to_value(value& v, const shape& s)
{
    value result;
charlie's avatar
charlie committed
471
    result["type"] = migraphx::to_value(s.type_string());
472
473
474
475
476
477
478
479
480
481
482
483
484
485
486
    if(s.dynamic())
    {
        result["dynamic"]      = migraphx::to_value(s.dynamic());
        result["min_dyn_dims"] = migraphx::to_value(s.min_dyn_dims());
        result["max_dyn_dims"] = migraphx::to_value(s.max_dyn_dims());
        result["opt_dyn_dims"] = migraphx::to_value(s.opt_dyn_dims());
        result["sub_shapes"]   = migraphx::to_value(s.sub_shapes());
    }
    else
    {
        result["lens"]       = migraphx::to_value(s.lens());
        result["strides"]    = migraphx::to_value(s.strides());
        result["sub_shapes"] = migraphx::to_value(s.sub_shapes());
    }
    v = result;
487
}
488

489
490
void migraphx_from_value(const value& v, shape& s)
{
Paul Fultz II's avatar
Paul Fultz II committed
491
492
493
494
495
496
497
    auto t = v.at("type").get_string();
    if(t == "tuple_type")
    {
        s = shape{migraphx::from_value<std::vector<migraphx::shape>>(v.at("sub_shapes"))};
    }
    else
    {
charlie's avatar
charlie committed
498
        if(v.contains("dynamic"))
499
500
501
502
        {
            auto mins  = v.at("min_dyn_dims").to_vector<std::size_t>();
            auto maxes = v.at("max_dyn_dims").to_vector<std::size_t>();
            auto opts  = v.at("opt_dyn_dims").to_vector<std::size_t>();
charlie's avatar
charlie committed
503
504
            assert(mins.size() == maxes.size() and maxes.size() == opts.size());
            std::vector<shape::dynamic_dimension> dyn_dims;
505
506
            for(int i = 0; i < mins.size(); ++i)
            {
charlie's avatar
charlie committed
507
                dyn_dims.emplace_back(mins[i], maxes[i], opts[i]);
508
            }
509
            s = shape{migraphx::shape::dyn_data{shape::parse_type(t), dyn_dims}};
510
511
512
513
514
515
516
        }
        else
        {
            s = shape{shape::parse_type(t),
                      v.at("lens").to_vector<std::size_t>(),
                      v.at("strides").to_vector<std::size_t>()};
        }
Paul Fultz II's avatar
Paul Fultz II committed
517
    }
518
519
}

Paul's avatar
Paul committed
520
} // namespace MIGRAPHX_INLINE_NS
Paul's avatar
Paul committed
521
} // namespace migraphx