operation.hpp 19.9 KB
Newer Older
Paul's avatar
Paul committed
1
2
#ifndef MIGRAPHX_GUARD_MIGRAPHLIB_OPERAND_HPP
#define MIGRAPHX_GUARD_MIGRAPHLIB_OPERAND_HPP
Paul's avatar
Paul committed
3

Paul's avatar
Paul committed
4
#include <cassert>
Paul's avatar
Paul committed
5
6
7
8
9
#include <string>
#include <functional>
#include <memory>
#include <type_traits>
#include <utility>
Shucai Xiao's avatar
Shucai Xiao committed
10
#include <unordered_map>
Paul's avatar
Paul committed
11
12
#include <migraphx/reflect.hpp>
#include <migraphx/streamutils.hpp>
Shucai Xiao's avatar
Shucai Xiao committed
13
#include <migraphx/normalize_attributes.hpp>
Paul's avatar
Paul committed
14
#include <migraphx/argument.hpp>
Shucai Xiao's avatar
Shucai Xiao committed
15
#include <migraphx/module_ref.hpp>
16
#include <migraphx/serialize.hpp>
Paul's avatar
Paul committed
17
#include <migraphx/auto_any_cast.hpp>
Paul's avatar
Paul committed
18
#include <migraphx/config.hpp>
Paul's avatar
Paul committed
19

Paul's avatar
Paul committed
20
namespace migraphx {
Paul's avatar
Paul committed
21
inline namespace MIGRAPHX_INLINE_NS {
Paul's avatar
Paul committed
22

Paul's avatar
Paul committed
23
24
struct context;

Paul's avatar
Paul committed
25
26
27
28
29
30
31
32
#ifdef DOXYGEN

/// The operation interface represents an action an instruction will perform. All
/// operation classes must be CopyConstructible.
struct operation
{
    /// A unique name identifying the operation
    std::string name() const;
Paul's avatar
Paul committed
33
34
    /// An optional method that can be used to finalize the operator before running
    void finalize(context& ctx);
Paul's avatar
Paul committed
35
36
37
    /// This is used to compute the resulting shape from an operation. If an
    /// operation cannot be run with input shapes, then it should throw an
    /// exception.
Paul's avatar
Paul committed
38
    shape compute_shape(const std::vector<shape>& input) const;
Paul's avatar
Paul committed
39
    /**
Paul's avatar
Paul committed
40
41
     * @brief This performs the operation's computation.
     *
Paul's avatar
Paul committed
42
43
     * This method can be optional when the operation is only used as a placeholder to be lowered
     * later on.
Paul's avatar
Paul committed
44
45
46
47
48
     *
     * @param ctx This is the context created by the `target` during compilation. Implementations
     * can use the target's `context` class rather than the `context` interface class.
     * @param output This is the output shape. It is equivalent to running `compute_shape` with each
     * `shape` of the `argument`.
Paul's avatar
Paul committed
49
     * @param input This is the `argument` result from the previous instruction's computation.
Paul's avatar
Paul committed
50
51
     * @return Return an `argument` of the result computation. The `shape` of `argument` should be
     * the same the `output` shape.
Paul's avatar
Paul committed
52
     */
Paul's avatar
Paul committed
53
    argument compute(context& ctx, const shape& output, const std::vector<argument>& input) const;
Paul's avatar
Paul committed
54
55
    /// An optional method to return which argument the output will alias. If
    /// there is no aliased output then -1 can be returned.
Paul's avatar
Paul committed
56
    std::ptrdiff_t output_alias(const std::vector<shape>& input) const;
Paul's avatar
Paul committed
57
58
    /// An optional stream operator to print the operation. When this is not
    /// implemented, it will just print the operation's name.
Paul's avatar
Paul committed
59
    friend std::ostream& operator<<(std::ostream& os, const operation& op);
Paul's avatar
Paul committed
60
61
};

Paul's avatar
Paul committed
62
63
/// Returns true if operation does not require a context to run compute
bool is_context_free(const operation& x);
Shucai Xiao's avatar
Shucai Xiao committed
64
65
/// Returns true if operation needs normalization before running compute
bool need_normalization(const operation& x);
Paul's avatar
Paul committed
66
67
/// Returns true if the operation has a finalize method
bool has_finalize(const operation& x);
Paul's avatar
Paul committed
68

Paul's avatar
Paul committed
69
70
#else

71
72
73
namespace detail {

namespace operation_operators {
Paul's avatar
Paul committed
74

Paul's avatar
Paul committed
75
76
template <class T>
auto operator<<(std::ostream& os, const T& x) -> decltype(os << x.name())
Paul's avatar
Paul committed
77
{
Paul's avatar
Paul committed
78
79
    os << x.name();
    char delim = '[';
Paul's avatar
Paul committed
80
    reflect_each(x, [&](auto&& y, auto name) {
Paul's avatar
Paul committed
81
        os << delim;
Paul's avatar
Paul committed
82
83
        os << name << "=";
        stream_write_value(os, y);
Paul's avatar
Paul committed
84
85
        delim = ',';
    });
Paul's avatar
Paul committed
86
87
    if(delim == ',')
        os << "]";
Paul's avatar
Paul committed
88
    return os;
Paul's avatar
Paul committed
89
90
}

Paul's avatar
Paul committed
91
92
93
template <class T, class U>
auto operator==(const T& x, const U& y) -> decltype(x.name() == y.name())
{
Paul's avatar
Paul committed
94
95
    static_assert(is_reflectable<T>{} or sizeof(T) <= 1,
                  "Missing equality operator or reflect method.");
Paul's avatar
Paul committed
96
97
98
99
100
101
    if(x.name() != y.name())
        return false;
    const auto& yy = any_cast<T>(y);
    return reflect_tie(x) == reflect_tie(yy);
}

102
} // namespace operation_operators
Paul's avatar
Paul committed
103

Shucai Xiao's avatar
Shucai Xiao committed
104
template <class T>
Shucai Xiao's avatar
Shucai Xiao committed
105
106
auto normalize_compute_shape_op(rank<1>, const T& x, const std::vector<shape>& inputs)
    -> decltype(x.normalize_compute_shape(inputs))
Shucai Xiao's avatar
Shucai Xiao committed
107
108
109
110
111
112
{
    dependent_type<operation, T> y = x;
    normalize_attributes(y, inputs[0].lens());
    return any_cast<T>(y).normalize_compute_shape(inputs);
}

Shucai Xiao's avatar
Shucai Xiao committed
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
template <class T>
shape normalize_compute_shape_op(rank<0>, const T& x, const std::vector<shape>&)
{
    std::string name = x.name();
    MIGRAPHX_THROW("Shape not computable: " + name);
}

template <class T>
shape normalize_compute_shape_op(const T& x, const std::vector<shape>& inputs)
{
    return normalize_compute_shape_op(rank<1>{}, x, inputs);
}

template <class T>
auto compute_shape_op(rank<1>,
                      const T& x,
                      const std::vector<shape>& inputs,
                      const std::vector<module_ref>& mod_args)
    -> decltype(x.compute_shape(inputs, mod_args))
{
    return x.compute_shape(inputs, mod_args);
}

template <class T>
shape
    compute_shape_op(rank<0>, const T& x, const std::vector<shape>&, const std::vector<module_ref>&)
{
    std::string name = x.name();
    MIGRAPHX_THROW("Shape not computable: " + name);
}

template <class T>
shape compute_shape_op(const T& x,
                       const std::vector<shape>& inputs,
                       const std::vector<module_ref>& mod_args)
{
    return compute_shape_op(rank<1>{}, x, inputs, mod_args);
}

template <class T>
auto normalize_compute_shape_op(rank<1>,
                                const T& x,
                                const std::vector<shape>& inputs,
                                std::vector<module_ref>& mod_args)
    -> decltype(x.normalize_compute_shape(inputs, mod_args))
{
    return x.normalize_compute_shape(inputs, mod_args);
}

template <class T>
shape normalize_compute_shape_op(rank<0>,
                                 const T& x,
                                 const std::vector<shape>&,
                                 const std::vector<module_ref>&)
{
    std::string name = x.name();
    MIGRAPHX_THROW("Shape not computable: " + name);
}

template <class T>
shape normalize_compute_shape_op(const T& x,
                                 const std::vector<shape>& inputs,
                                 std::vector<module_ref>& mod_args)
{
    return normalize_compute_shape_op(rank<1>{}, x, inputs, mod_args);
}

Paul's avatar
Paul committed
180
template <class T>
Shucai Xiao's avatar
Shucai Xiao committed
181
auto compute_op(rank<1>,
Paul's avatar
Paul committed
182
183
184
185
186
                const T& x,
                context& ctx,
                const shape& output_shape,
                const std::vector<argument>& input)
    -> decltype(x.compute(auto_any_cast(ctx), output_shape, input))
Paul's avatar
Paul committed
187
188
189
190
191
{
    return x.compute(auto_any_cast(ctx), output_shape, input);
}

template <class T>
Paul's avatar
Paul committed
192
argument compute_op(rank<0>, const T& x, context&, const shape&, const std::vector<argument>&)
Paul's avatar
Paul committed
193
{
Paul's avatar
Paul committed
194
    std::string name = x.name();
Paul's avatar
Paul committed
195
    MIGRAPHX_THROW("Not computable: " + name);
Paul's avatar
Paul committed
196
197
}

Paul's avatar
Paul committed
198
template <class T>
Paul's avatar
Paul committed
199
200
argument
compute_op(const T& x, context& ctx, const shape& output_shape, const std::vector<argument>& input)
Paul's avatar
Paul committed
201
{
Shucai Xiao's avatar
Shucai Xiao committed
202
    return compute_op(rank<1>{}, x, ctx, output_shape, input);
Paul's avatar
Paul committed
203
204
205
}

template <class T>
Shucai Xiao's avatar
Shucai Xiao committed
206
auto compute_op(rank<1>, const T& x, const shape& output_shape, const std::vector<argument>& input)
Paul's avatar
Paul committed
207
208
209
210
211
212
    -> decltype(x.compute(output_shape, input))
{
    return x.compute(output_shape, input);
}

template <class T>
Shucai Xiao's avatar
Shucai Xiao committed
213
argument compute_op(rank<0>, const T& x, const shape&, const std::vector<argument>&)
Paul's avatar
Paul committed
214
215
{
    std::string name = x.name();
Shucai Xiao's avatar
Shucai Xiao committed
216
    MIGRAPHX_THROW("Not computable: " + name);
Paul's avatar
Paul committed
217
218
219
}

template <class T>
Shucai Xiao's avatar
Shucai Xiao committed
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
argument compute_op(const T& x, const shape& output_shape, const std::vector<argument>& input)
{
    return compute_op(rank<1>{}, x, output_shape, input);
}

template <class T, class F>
auto compute_op(rank<1>,
                const T& x,
                const shape& output,
                const std::vector<argument>& inputs,
                const std::vector<module_ref>& module_args,
                F f) -> decltype(x.compute(output, inputs, module_args, f))
{
    return x.compute(output, inputs, module_args, f);
}

template <class T, class F>
argument compute_op(rank<0>,
                    const T& x,
                    const shape&,
                    const std::vector<argument>&,
                    const std::vector<module_ref>&,
                    F)
Paul's avatar
Paul committed
243
244
245
246
247
{
    std::string name = x.name();
    MIGRAPHX_THROW("Not computable: " + name);
}

Shucai Xiao's avatar
Shucai Xiao committed
248
249
250
251
252
253
template <class T, class F>
argument compute_op(const T& x,
                    const shape& output,
                    const std::vector<argument>& inputs,
                    const std::vector<module_ref>& module_args,
                    F f)
Paul's avatar
Paul committed
254
{
Shucai Xiao's avatar
Shucai Xiao committed
255
    return compute_op(rank<1>{}, x, output, inputs, module_args, f);
Paul's avatar
Paul committed
256
257
}

Shucai Xiao's avatar
Shucai Xiao committed
258
template <class T, class F>
Shucai Xiao's avatar
Shucai Xiao committed
259
auto compute_op(rank<3>,
Shucai Xiao's avatar
Shucai Xiao committed
260
                const T& x,
Shucai Xiao's avatar
Shucai Xiao committed
261
262
                context&,
                const shape& output,
Shucai Xiao's avatar
Shucai Xiao committed
263
264
                const std::vector<argument>& inputs,
                const std::vector<module_ref>& module_args,
Shucai Xiao's avatar
Shucai Xiao committed
265
                F f) -> decltype(x.compute(output, inputs, module_args, f))
Shucai Xiao's avatar
Shucai Xiao committed
266
{
Shucai Xiao's avatar
Shucai Xiao committed
267
    return x.compute(output, inputs, module_args, f);
Shucai Xiao's avatar
Shucai Xiao committed
268
269
270
}

template <class T, class F>
Shucai Xiao's avatar
Shucai Xiao committed
271
272
273
274
275
276
277
278
279
280
281
282
283
284
285
286
287
288
289
290
291
292
293
294
295
296
297
298
299
300
301
auto compute_op(rank<2>,
                const T& x,
                context&,
                const shape& output,
                const std::vector<argument>& inputs,
                const std::vector<module_ref>&,
                F) -> decltype(x.compute(output, inputs))
{
    return x.compute(output, inputs);
}

template <class T, class F>
auto compute_op(rank<1>,
                const T& x,
                context& ctx,
                const shape& output,
                const std::vector<argument>& inputs,
                const std::vector<module_ref>&,
                F) -> decltype(x.compute(auto_any_cast(ctx), output, inputs))
{
    return x.compute(auto_any_cast(ctx), output, inputs);
}

template <class T, class F>
argument compute_op(rank<0>,
                    const T& x,
                    context&,
                    const shape&,
                    const std::vector<argument>&,
                    const std::vector<module_ref>&,
                    F)
Shucai Xiao's avatar
Shucai Xiao committed
302
303
304
305
306
307
308
{
    std::string name = x.name();
    MIGRAPHX_THROW("Not computable: " + name);
}

template <class T, class F>
argument compute_op(const T& x,
Shucai Xiao's avatar
Shucai Xiao committed
309
310
                    context& ctx,
                    const shape& output,
Shucai Xiao's avatar
Shucai Xiao committed
311
312
313
314
                    const std::vector<argument>& inputs,
                    const std::vector<module_ref>& module_args,
                    F f)
{
Shucai Xiao's avatar
Shucai Xiao committed
315
    return compute_op(rank<3>{}, x, ctx, output, inputs, module_args, f);
Shucai Xiao's avatar
Shucai Xiao committed
316
317
}

Paul's avatar
Paul committed
318
template <class T>
Paul's avatar
Paul committed
319
320
321
322
323
auto is_context_free_op(rank<1>,
                        const T& x,
                        const shape& output_shape,
                        const std::vector<argument>& input)
    -> decltype(x.compute(output_shape, input), std::true_type{});
Paul's avatar
Paul committed
324
325

template <class T>
Paul's avatar
Paul committed
326
327
auto is_context_free_op(rank<0>, const T&, const shape&, const std::vector<argument>&)
    -> std::false_type;
Paul's avatar
Paul committed
328
329

template <class T>
Paul's avatar
Paul committed
330
331
auto is_context_free_op(const T& x) -> decltype(is_context_free_op(
    rank<1>{}, x, std::declval<const shape&>(), std::declval<std::vector<argument>>()))
Paul's avatar
Paul committed
332
333
{
    return {};
Paul's avatar
Paul committed
334
335
}

Shucai Xiao's avatar
Shucai Xiao committed
336
337
338
339
340
341
342
343
344
345
346
347
348
349
template <class T>
auto need_normalization_op(rank<1>, const T& x, const std::vector<shape>& inputs)
    -> decltype(x.normalize_compute_shape(inputs), std::true_type{});

template <class T>
auto need_normalization_op(rank<0>, const T&, const std::vector<shape>&) -> std::false_type;

template <class T>
auto need_normalization_op(const T& x)
    -> decltype(need_normalization_op(rank<1>{}, x, std::declval<std::vector<shape>>()))
{
    return {};
}

Paul's avatar
Paul committed
350
template <class T>
351
std::ptrdiff_t output_alias_op(const T&, const std::vector<shape>&)
Paul's avatar
Paul committed
352
353
354
355
{
    return -1;
}

Paul's avatar
Paul committed
356
template <class T>
Paul's avatar
Paul committed
357
358
auto finalize_op(
    rank<1>, T& x, context& ctx, const shape& output_shape, const std::vector<shape>& input)
Paul's avatar
Paul committed
359
360
361
362
363
364
365
    -> decltype(x.finalize(auto_any_cast(ctx), output_shape, input), void())
{
    x.finalize(auto_any_cast(ctx), output_shape, input);
}

template <class T>
void finalize_op(rank<0>, T&, context&, const shape&, const std::vector<shape>&)
Paul's avatar
Paul committed
366
367
{
}
Paul's avatar
Paul committed
368
369
370
371
372
373
374
375

template <class T>
void finalize_op(T& x, context& ctx, const shape& output_shape, const std::vector<shape>& input)
{
    finalize_op(rank<1>{}, x, ctx, output_shape, input);
}

template <class T>
Paul's avatar
Paul committed
376
377
auto has_finalize_op(
    rank<1>, T& x, context& ctx, const shape& output_shape, const std::vector<shape>& input)
Paul's avatar
Paul committed
378
379
380
381
382
383
384
    -> decltype(x.finalize(auto_any_cast(ctx), output_shape, input), std::true_type{});

template <class T>
auto has_finalize_op(rank<0>, T&, context&, const shape&, const std::vector<shape>&)
    -> std::false_type;

template <class T>
Paul's avatar
Paul committed
385
386
387
388
389
auto has_finalize_op(const T&) -> decltype(has_finalize_op(rank<1>{},
                                                           std::declval<T&>(),
                                                           std::declval<context&>(),
                                                           std::declval<const shape&>(),
                                                           std::declval<std::vector<shape>>()))
Paul's avatar
Paul committed
390
391
392
393
{
    return {};
}

394
395
396
397
398
399
400
401
402
403
404
405
406
407
408
409
410
411
412
413
414
415
416
template <class T>
auto compile_op(
    rank<1>, T& x, context& ctx, const shape& output_shape, const std::vector<shape>& input)
    -> decltype(x.compile(auto_any_cast(ctx), output_shape, input))
{
    return x.compile(auto_any_cast(ctx), output_shape, input);
}

template <class T>
value compile_op(rank<0>, T&, context&, const shape&, const std::vector<shape>&)
{
    return value::object{};
}

template <class T>
value compile_op(const T& x,
                 context& ctx,
                 const shape& output_shape,
                 const std::vector<shape>& input)
{
    return compile_op(rank<1>{}, x, ctx, output_shape, input);
}

417
418
419
420
421
422
template <class T>
value attributes_op(const T&)
{
    return value::object{};
}

423
424
425
426
427
428
429
430
431
template <class T>
value to_value_op(const T& x)
{
    return migraphx::to_value(x);
}

template <class T>
void from_value_op(T& x, const value& v)
{
432
433
    if(not(v.is_object() or (v.empty() and v.is_array())))
        MIGRAPHX_THROW("Value is not an object");
434
435
436
    return migraphx::from_value(v, x);
}

437
438
439
440
441
442
template <class T>
bool is_borrowed_op(const T&)
{
    return false;
}

443
444
} // namespace detail

445
<%
Paul's avatar
Paul committed
446
447
448
 interface(
     'operation',
     virtual('name', returns = 'std::string', const = True),
Paul's avatar
Paul committed
449
450
     virtual(
         'is_context_free', returns = 'bool', const = True, default = 'detail::is_context_free_op'),
Shucai Xiao's avatar
Shucai Xiao committed
451
452
453
454
     virtual('need_normalization',
             returns = 'bool',
             const   = True,
             default = 'detail::need_normalization_op'),
455
     virtual('has_finalize', returns = 'bool', const = True, default = 'detail::has_finalize_op'),
456
     virtual('is_borrowed', returns = 'bool', const = True, default = 'detail::is_borrowed_op'),
Paul's avatar
Paul committed
457
     virtual('output_alias',
Paul's avatar
Paul committed
458
             returns = 'std::ptrdiff_t',
Paul's avatar
Paul committed
459
460
             input   = 'const std::vector<shape>&',
             const   = True,
461
             default = 'detail::output_alias_op'),
462
463
464
465
466
467
     virtual('compile',
             returns = 'value',
             ctx     = 'context&',
             output  = 'const shape&',
             input   = 'const std::vector<shape>&',
             default = 'detail::compile_op'),
Paul's avatar
Paul committed
468
469
470
471
     virtual('finalize',
             ctx     = 'context&',
             output  = 'const shape&',
             input   = 'const std::vector<shape>&',
472
             default = 'detail::finalize_op'),
Shucai Xiao's avatar
Shucai Xiao committed
473
474
475
476
477
     virtual('compute_shape',
             returns = 'shape',
             input   = 'const std::vector<shape>&',
             const   = True,
             default = 'detail::normalize_compute_shape_op'),
Shucai Xiao's avatar
Shucai Xiao committed
478
479
480
481
482
483
     virtual('compute_shape',
             returns  = 'shape',
             inputs   = 'const std::vector<shape>&',
             mod_args = 'const std::vector<module_ref>&',
             const    = True,
             default  = 'detail::compute_shape_op'),
Paul's avatar
Paul committed
484
485
486
487
488
489
     virtual('compute',
             returns = 'argument',
             ctx     = 'context&',
             output  = 'const shape&',
             input   = 'const std::vector<argument>&',
             const   = True,
490
             default = 'detail::compute_op'),
Paul's avatar
Paul committed
491
492
493
494
495
     virtual('compute',
             returns = 'argument',
             output  = 'const shape&',
             input   = 'const std::vector<argument>&',
             const   = True,
496
             default = 'detail::compute_op'),
Shucai Xiao's avatar
Shucai Xiao committed
497
498
499
     virtual(
         'compute',
         returns     = 'argument',
Shucai Xiao's avatar
Shucai Xiao committed
500
501
502
503
504
505
506
507
508
509
510
511
         output      = 'const shape&',
         input       = 'const std::vector<argument>&',
         module_args = 'const std::vector<module_ref>&',
         run =
             'std::function<std::vector<argument>(module_ref&, const std::unordered_map<std::string, argument>&)>',
         const   = True,
         default = 'detail::compute_op'),
     virtual(
         'compute',
         returns     = 'argument',
         ctx         = 'context&',
         output      = 'const shape&',
Shucai Xiao's avatar
Shucai Xiao committed
512
513
514
         input       = 'const std::vector<argument>&',
         module_args = 'const std::vector<module_ref>&',
         run =
Shucai Xiao's avatar
Shucai Xiao committed
515
             'std::function<std::vector<argument>(module_ref&, const std::unordered_map<std::string, argument>&)>',
Shucai Xiao's avatar
Shucai Xiao committed
516
517
         const   = True,
         default = 'detail::compute_op'),
518
519
     virtual('to_value', returns = 'value', const = True, default = 'detail::to_value_op'),
     virtual('from_value', v = 'const value&', default = 'detail::from_value_op'),
520
     virtual('attributes', returns = 'value', const = True, default = 'detail::attributes_op'),
Paul's avatar
Paul committed
521
522
523
524
     friend('operator<<',
            returns = 'std::ostream &',
            os      = 'std::ostream &',
            op      = 'const operation &',
525
            using   = 'migraphx::detail::operation_operators::operator<<'),
Paul's avatar
Paul committed
526
527
528
529
     friend('operator==',
            returns = 'bool',
            x       = 'const operation &',
            y       = 'const operation &',
530
            using   = 'migraphx::detail::operation_operators::operator==')) %>
Paul's avatar
Paul committed
531
532

    inline bool operator!=(const operation& x, const operation& y)
Paul's avatar
Paul committed
533
534
535
536
{
    return !(x == y);
}

537
538
539
540
541
542
543
544
545
546
547
548
549
550
551
552
553
554
inline value
compile(operation& op, context& ctx, const shape& output_shape, const std::vector<shape>& input)
{
    return op.compile(ctx, output_shape, input);
}
template <class Context>
inline value
compile(operation& op, Context& ctx, const shape& output_shape, const std::vector<shape>& input)
{
    dependent_type<context, Context> ctx2 = std::ref(ctx);
    return compile(op, ctx2, output_shape, input);
}
template <class T, class Context>
inline auto compile(T& op, Context& ctx, const shape& output_shape, const std::vector<shape>& input)
    -> decltype(op.compile(ctx, ctx, output_shape, input))
{
    return op.compile(ctx, ctx, output_shape, input);
}
555
556
557
558
559
560
561
562
563
564
565
566
567
568
569
570
571
572
573
inline shape compute_shape(const operation& op, const std::vector<shape>& inputs)
{
    return op.compute_shape(inputs);
}

template <class T>
inline auto compute_shape(const T& op, const std::vector<shape>& inputs)
    -> decltype(op.compute_shape(inputs))
{
    return op.compute_shape(inputs);
}

template <class T>
inline auto compute_shape(const T& op, const std::vector<shape>& inputs)
    -> decltype(op.normalize_compute_shape(inputs))
{
    return detail::normalize_compute_shape_op(op, inputs);
}

Shucai Xiao's avatar
Shucai Xiao committed
574
575
576
577
578
579
580
581
582
583
584
585
586
587
588
589
590
591
592
593
594
595
596
597
598
inline shape compute_shape(const operation& op,
                           const std::vector<shape>& inputs,
                           const std::vector<module_ref>& mod_args)
{
    return op.compute_shape(inputs, mod_args);
}

template <class T>
inline auto compute_shape(const T& op,
                          const std::vector<shape>& inputs,
                          const std::vector<module_ref>& mod_args)
    -> decltype(op.compute_shape(inputs, mod_args))
{
    return op.compute_shape(inputs, mod_args);
}

template <class T>
inline auto compute_shape(const T& op,
                          const std::vector<shape>& inputs,
                          const std::vector<module_ref>& mod_args)
    -> decltype(op.normalize_compute_shape(inputs, mod_args))
{
    return detail::normalize_compute_shape_op(op, inputs, mod_args);
}

Paul's avatar
Paul committed
599
inline bool is_context_free(const operation& op) { return op.is_context_free(); }
Paul's avatar
Paul committed
600

Paul's avatar
Paul committed
601
template <class T>
Paul's avatar
Paul committed
602
603
bool is_context_free(const T& x)
{
604
    return detail::is_context_free_op(x);
Paul's avatar
Paul committed
605
606
}

Shucai Xiao's avatar
Shucai Xiao committed
607
608
609
610
611
612
613
614
inline bool need_normalization(const operation& op) { return op.need_normalization(); }

template <class T>
bool need_normalization(const T& x)
{
    return detail::need_normalization_op(x);
}

Paul's avatar
Paul committed
615
616
617
618
619
inline bool has_finalize(const operation& op) { return op.has_finalize(); }

template <class T>
bool has_finalize(const T& x)
{
620
    return detail::has_finalize_op(x);
Paul's avatar
Paul committed
621
622
}

623
624
625
void migraphx_to_value(value& v, const operation& op);
void migraphx_from_value(const value& v, operation& op);

Paul's avatar
Paul committed
626
627
#endif

Paul's avatar
Paul committed
628
} // namespace MIGRAPHX_INLINE_NS
Paul's avatar
Paul committed
629
} // namespace migraphx
Paul's avatar
Paul committed
630
631

#endif