schedule_test.cpp 31.5 KB
Newer Older
Paul's avatar
Paul committed
1
2
3
4
5
#include <migraphx/schedule.hpp>
#include <migraphx/operators.hpp>
#include <migraphx/generate.hpp>
#include <migraphx/instruction.hpp>
#include <migraphx/iterator_for.hpp>
Paul's avatar
Paul committed
6
#include <migraphx/ranges.hpp>
Paul's avatar
Paul committed
7
#include <migraphx/dfor.hpp>
Paul's avatar
Paul committed
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
#include <basic_ops.hpp>
#include <test.hpp>

struct unary_op
{
    std::string name() const { return "unary"; }
    migraphx::argument
    compute(migraphx::context&, const migraphx::shape&, std::vector<migraphx::argument> args) const
    {
        if(args.empty())
            return {};
        return args.front();
    }

    migraphx::shape compute_shape(std::vector<migraphx::shape> inputs) const
    {
        if(inputs.empty())
            return {};
        return inputs.front();
    }
    int output_alias(const std::vector<migraphx::shape>&) const { return 0; }
};

Paul's avatar
Paul committed
31
struct nary_op
Paul's avatar
Paul committed
32
{
Paul's avatar
Paul committed
33
34
35
36
37
38
    std::string comment = "";
    template <class Self, class F>
    static auto reflect(Self& self, F f)
    {
        return migraphx::pack(f(self.comment, "comment"));
    }
Paul's avatar
Paul committed
39
    std::string name() const { return "nary"; }
Paul's avatar
Paul committed
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
    migraphx::argument
    compute(migraphx::context&, const migraphx::shape&, std::vector<migraphx::argument> args) const
    {
        if(args.empty())
            return {};
        return args.front();
    }

    migraphx::shape compute_shape(std::vector<migraphx::shape> inputs) const
    {
        if(inputs.empty())
            return {};
        return inputs.front();
    }
};

Paul's avatar
Paul committed
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
struct stream_free_op
{
    std::string comment = "";
    template <class Self, class F>
    static auto reflect(Self& self, F f)
    {
        return migraphx::pack(f(self.comment, "comment"));
    }
    std::string name() const { return "stream_free"; }
    migraphx::argument
    compute(migraphx::context&, const migraphx::shape&, std::vector<migraphx::argument> args) const
    {
        if(args.empty())
            return {};
        return args.front();
    }

    migraphx::shape compute_shape(std::vector<migraphx::shape> inputs) const
    {
        if(inputs.empty())
            return {};
        return inputs.front();
    }
};

Paul's avatar
Paul committed
81
82
struct wait_event
{
Paul's avatar
Paul committed
83
84
    std::shared_ptr<std::vector<std::size_t>> wait_for =
        std::make_shared<std::vector<std::size_t>>();
Paul's avatar
Paul committed
85
86
87
    template <class Self, class F>
    static auto reflect(Self& self, F f)
    {
Paul's avatar
Paul committed
88
        return migraphx::pack(f(*self.wait_for, "wait_for"));
Paul's avatar
Paul committed
89
90
91
92
    }
    std::string name() const { return "wait_event"; }
    migraphx::shape compute_shape(const std::vector<migraphx::shape>&) const { return {}; }

Paul's avatar
Paul committed
93
94
95
    migraphx::argument compute(migraphx::context&,
                               const migraphx::shape&,
                               const std::vector<migraphx::argument>&) const
Paul's avatar
Paul committed
96
    {
Paul's avatar
Paul committed
97
98
        assert(wait_for != nullptr);
        assert(not wait_for->empty());
Paul's avatar
Paul committed
99
100
101
102
        return {};
    }
};

Paul's avatar
Paul committed
103
using instruction_map = std::unordered_map<migraphx::instruction_ref, std::size_t>;
Paul's avatar
Paul committed
104
105
using wait_map =
    std::unordered_map<migraphx::instruction_ref, std::shared_ptr<std::vector<std::size_t>>>;
Paul's avatar
Paul committed
106
107
108

struct schedule_model_test
{
Paul's avatar
Paul committed
109
    std::shared_ptr<instruction_map> ins2stream = std::make_shared<instruction_map>();
Paul's avatar
Paul committed
110
111
    std::shared_ptr<std::unordered_map<std::size_t, std::size_t>> wait2stream =
        std::make_shared<std::unordered_map<std::size_t, std::size_t>>();
Paul's avatar
Paul committed
112
    std::shared_ptr<wait_map> ins2wait_for = std::make_shared<wait_map>();
Paul's avatar
Paul committed
113
    std::size_t concurrency() const { return 4; }
Paul's avatar
Paul committed
114
    void sched(migraphx::program&, migraphx::instruction_ref ins, std::size_t n) const
Paul's avatar
Paul committed
115
116
117
    {
        (*ins2stream)[ins] = n;
    }
Paul's avatar
Paul committed
118
    void wait(migraphx::program& p, migraphx::instruction_ref ins, std::size_t wait_id) const
Paul's avatar
Paul committed
119
    {
Paul's avatar
Paul committed
120
        if(ins2wait_for->count(ins) == 0)
Paul's avatar
Paul committed
121
122
123
124
125
126
127
        {
            auto event = wait_event{};
            p.insert_instruction(ins, event);
            (*ins2wait_for)[ins] = event.wait_for;
        }
        (*ins2wait_for)[ins]->push_back(wait2stream->at(wait_id));
    }
Paul's avatar
Paul committed
128
    void record(migraphx::program&, migraphx::instruction_ref ins, std::size_t wait_id) const
Paul's avatar
Paul committed
129
130
    {
        (*wait2stream)[wait_id] = ins2stream->at(ins);
Paul's avatar
Paul committed
131
132
133
    }
    std::size_t weight(const migraphx::operation& op) const
    {
Paul's avatar
Paul committed
134
        if(op.name() == "stream_free")
Paul's avatar
Paul committed
135
136
            return 0;
        else if(op.name() == "binary" or op.name() == "unary")
Paul's avatar
Paul committed
137
138
139
140
141
142
143
144
            return 4;
        else
            return 1;
    }
};

struct schedule_target
{
Paul's avatar
Paul committed
145
    schedule_model_test model{};
Paul's avatar
Paul committed
146
147
148
    std::string name() const { return "schedule"; }
    std::vector<migraphx::pass> get_passes(migraphx::context&) const
    {
Paul's avatar
Paul committed
149
        return {migraphx::schedule{model}};
Paul's avatar
Paul committed
150
151
    }
    migraphx::context get_context() const { return {}; }
Paul's avatar
Paul committed
152

Paul's avatar
Paul committed
153
    std::size_t get_stream(migraphx::instruction_ref ins) { return model.ins2stream->at(ins); }
Paul's avatar
Paul committed
154

Paul's avatar
Paul committed
155
156
157
158
159
160
161
162
163
    std::vector<std::size_t> get_streams(std::vector<migraphx::instruction_ref> inss)
    {
        std::vector<std::size_t> result;
        std::transform(inss.begin(), inss.end(), std::back_inserter(result), [&](auto ins) {
            return this->get_stream(ins);
        });
        return result;
    }

Paul's avatar
Paul committed
164
    bool has_stream(migraphx::instruction_ref ins) { return model.ins2stream->count(ins) > 0; }
Paul's avatar
Paul committed
165
166
167
168
};

bool check_conflicts(migraphx::program& p, migraphx::instruction_ref x, migraphx::instruction_ref y)
{
Paul's avatar
Paul committed
169
    for(auto ins : migraphx::iterator_for(p))
Paul's avatar
Paul committed
170
    {
Paul's avatar
Paul committed
171
        if(ins->name() != "identity")
Paul's avatar
Paul committed
172
            continue;
Paul's avatar
Paul committed
173
        if(not migraphx::contains(ins->inputs(), x))
Paul's avatar
Paul committed
174
            continue;
Paul's avatar
Paul committed
175
        if(not migraphx::contains(ins->inputs(), y))
Paul's avatar
Paul committed
176
177
            continue;
        return true;
Paul's avatar
Paul committed
178
179
180
181
    }
    return false;
}

Paul's avatar
Paul committed
182
void check_conflicts(migraphx::program& p,
Paul's avatar
Paul committed
183
184
                     std::vector<std::vector<migraphx::instruction_ref>> conflicts,
                     bool result = true)
Paul's avatar
Paul committed
185
186
{
    migraphx::dfor(conflicts.size(), conflicts.size())([&](auto i, auto j) {
Paul's avatar
Paul committed
187
        if(i == j)
Paul's avatar
Paul committed
188
            return;
Paul's avatar
Paul committed
189
190
        for(auto ins1 : conflicts[i])
            for(auto ins2 : conflicts[j])
Paul's avatar
Paul committed
191
                CHECK(check_conflicts(p, ins1, ins2) == result);
Paul's avatar
Paul committed
192
193
194
    });
}

Paul's avatar
Paul committed
195
template <class T>
Paul's avatar
Paul committed
196
197
198
199
200
201
std::vector<T> sorted(std::vector<T> x)
{
    std::sort(x.begin(), x.end());
    return x;
}

Paul's avatar
Paul committed
202
template <class T>
Paul's avatar
Paul committed
203
204
205
206
207
208
209
210
211
std::vector<T> unique(std::vector<T> x)
{
    std::sort(x.begin(), x.end());
    x.erase(std::unique(x.begin(), x.end()), x.end());
    return x;
}

std::vector<std::size_t> get_wait_for(std::vector<std::size_t> wait_for)
{
Paul's avatar
Paul committed
212
    return unique(std::move(wait_for));
Paul's avatar
Paul committed
213
214
}

Paul's avatar
Paul committed
215
216
217
std::vector<std::size_t> get_wait_for(std::size_t wait_on, std::vector<std::size_t> wait_for)
{
    wait_for.erase(std::find(wait_for.begin(), wait_for.end(), wait_on));
Paul's avatar
Paul committed
218
    return unique(wait_for);
Paul's avatar
Paul committed
219
220
221
222
223
}

std::vector<std::size_t> get_wait_for(migraphx::instruction_ref ins)
{
    auto wait_ins = std::prev(ins);
Paul's avatar
Paul committed
224
225
226
    // Skip identity operators
    while(wait_ins->name() == "identity")
        wait_ins = std::prev(wait_ins);
Paul's avatar
Paul committed
227
    if(wait_ins->name() != "wait_event")
Paul's avatar
Paul committed
228
        return {};
Paul's avatar
Paul committed
229
    auto wf = *migraphx::any_cast<wait_event>(wait_ins->get_operator()).wait_for;
Paul's avatar
Paul committed
230
231
232
233
    std::sort(wf.begin(), wf.end());
    return wf;
}

Paul's avatar
Paul committed
234
235
236
template <class T>
std::vector<migraphx::instruction_ref>
chain(migraphx::program& p, std::size_t n, T x, migraphx::instruction_ref input)
Paul's avatar
Paul committed
237
238
{
    std::vector<migraphx::instruction_ref> result;
Paul's avatar
Paul committed
239
    for(std::size_t i = 0; i < n; i++)
Paul's avatar
Paul committed
240
241
242
243
244
245
    {
        result.push_back(p.add_instruction(x, input));
        input = result.back();
    }
    return result;
}
Paul's avatar
Paul committed
246
247
TEST_CASE(single_entry)
{
Paul's avatar
Paul committed
248
    schedule_target t{};
Paul's avatar
Paul committed
249
250
    migraphx::program p;
    auto one    = p.add_literal(1);
Paul's avatar
Paul committed
251
252
    auto onep1  = p.add_instruction(unary_op{}, one);
    auto onep2  = p.add_instruction(unary_op{}, one);
Paul's avatar
Paul committed
253
    auto binary = p.add_instruction(nary_op{}, onep1, onep2);
Paul's avatar
Paul committed
254
255
256
257
    p.compile(t);
    EXPECT(not t.has_stream(one));
    EXPECT(t.get_stream(onep1) != t.get_stream(onep2));
    EXPECT(t.get_stream(binary) == 0);
Paul's avatar
Paul committed
258
259
    EXPECT(get_wait_for(binary) ==
           get_wait_for(t.get_stream(binary), {t.get_stream(onep1), t.get_stream(onep2)}));
Paul's avatar
Paul committed
260
261
262
    EXPECT(check_conflicts(p, onep1, onep2));
}

Paul's avatar
Paul committed
263
264
265
266
267
268
269
270
271
272
273
274
275
276
277
TEST_CASE(stream_free)
{
    schedule_target t{};
    migraphx::program p;
    auto one    = p.add_literal(1);
    auto onep1  = p.add_instruction(stream_free_op{}, one);
    auto onep2  = p.add_instruction(stream_free_op{}, one);
    auto binary = p.add_instruction(nary_op{}, onep1, onep2);
    p.compile(t);
    EXPECT(not t.has_stream(one));
    EXPECT(not t.has_stream(onep1));
    EXPECT(not t.has_stream(onep2));
    EXPECT(t.get_stream(binary) == 0);
}

Paul's avatar
Paul committed
278
279
280
281
282
283
284
TEST_CASE(zero_record)
{
    schedule_target t{};
    migraphx::program p;
    auto one    = p.add_literal(1);
    auto onep1  = p.add_instruction(unary_op{}, one);
    auto onep2  = p.add_instruction(unary_op{}, one);
Paul's avatar
Paul committed
285
286
    auto onei1  = p.add_instruction(migraphx::op::identity{}, onep1);
    auto onei2  = p.add_instruction(migraphx::op::identity{}, onep2);
Paul's avatar
Paul committed
287
    auto binary = p.add_instruction(nary_op{}, onei1, onei2);
Paul's avatar
Paul committed
288
289
290
291
292
293
294
    p.compile(t);
    EXPECT(not t.has_stream(one));
    EXPECT(t.get_stream(onep1) != t.get_stream(onep2));
    EXPECT(t.has_stream(binary));
    EXPECT(get_wait_for(binary) ==
           get_wait_for(t.get_stream(binary), {t.get_stream(onep1), t.get_stream(onep2)}));
    EXPECT(check_conflicts(p, onep1, onep2));
Paul's avatar
Paul committed
295
    check_conflicts(p, {{onep1, onei1}, {onep2, onei2}});
Paul's avatar
Paul committed
296
297
}

Paul's avatar
Paul committed
298
299
TEST_CASE(zero_merge1)
{
Paul's avatar
Paul committed
300
    schedule_target t{};
Paul's avatar
Paul committed
301
302
303
304
305
    migraphx::program p;
    auto one    = p.add_literal(1);
    auto onep1  = p.add_instruction(unary_op{}, one);
    auto onep2  = p.add_instruction(unary_op{}, one);
    auto binary = p.add_instruction(migraphx::op::identity{}, onep1, onep2);
Paul's avatar
Paul committed
306
307
308
    p.compile(t);
    EXPECT(not t.has_stream(one));
    EXPECT(t.get_stream(onep1) != t.get_stream(onep2));
Paul's avatar
Paul committed
309
    // No stream assignment
Paul's avatar
Paul committed
310
    EXPECT(not t.has_stream(binary));
Paul's avatar
Paul committed
311
312
313
314
315
316
317
    // There is no wait
    EXPECT(get_wait_for(binary).empty());
    EXPECT(check_conflicts(p, onep1, onep2));
}

TEST_CASE(zero_merge2)
{
Paul's avatar
Paul committed
318
    schedule_target t{};
Paul's avatar
Paul committed
319
320
321
322
    migraphx::program p;
    auto one    = p.add_literal(1);
    auto onep1  = p.add_instruction(unary_op{}, one);
    auto onep2  = p.add_instruction(unary_op{}, one);
Paul's avatar
Paul committed
323
324
325
    auto binary = p.add_instruction(migraphx::op::identity{},
                                    p.add_instruction(migraphx::op::identity{}, onep1),
                                    p.add_instruction(migraphx::op::identity{}, onep2));
Paul's avatar
Paul committed
326
327
328
    p.compile(t);
    EXPECT(not t.has_stream(one));
    EXPECT(t.get_stream(onep1) != t.get_stream(onep2));
Paul's avatar
Paul committed
329
    // No stream assignment
Paul's avatar
Paul committed
330
    EXPECT(not t.has_stream(binary));
Paul's avatar
Paul committed
331
332
333
334
335
    // There is no wait
    EXPECT(get_wait_for(binary).empty());
    EXPECT(check_conflicts(p, onep1, onep2));
}

Paul's avatar
Paul committed
336
337
338
339
TEST_CASE(zero_merge3)
{
    schedule_target t{};
    migraphx::program p;
Paul's avatar
Paul committed
340
341
342
343
    auto one   = p.add_literal(1);
    auto onep1 = p.add_instruction(unary_op{}, one);
    auto onep2 = p.add_instruction(unary_op{}, one);
    auto id    = p.add_instruction(migraphx::op::identity{}, onep1, onep2);
Paul's avatar
Paul committed
344
345
346
347
348
349
350
351
352
353
    auto final = p.add_instruction(unary_op{}, id);
    p.compile(t);
    EXPECT(not t.has_stream(one));
    EXPECT(t.get_stream(onep1) != t.get_stream(onep2));
    // No stream assignment
    EXPECT(not t.has_stream(id));
    // There is no wait
    EXPECT(get_wait_for(id).empty());
    // Stream assignment for final op
    EXPECT(t.get_stream(final) == 0);
Paul's avatar
Paul committed
354
355
    EXPECT(get_wait_for(final) ==
           get_wait_for(t.get_stream(final), {t.get_stream(onep1), t.get_stream(onep2)}));
Paul's avatar
Paul committed
356
357
358
359
360
361
362
    EXPECT(check_conflicts(p, onep1, onep2));
}

TEST_CASE(zero_merge4)
{
    schedule_target t{};
    migraphx::program p;
Paul's avatar
Paul committed
363
364
365
366
367
368
    auto one   = p.add_literal(1);
    auto onep1 = p.add_instruction(unary_op{}, one);
    auto onep2 = p.add_instruction(unary_op{}, one);
    auto id    = p.add_instruction(migraphx::op::identity{},
                                p.add_instruction(migraphx::op::identity{}, onep1),
                                p.add_instruction(migraphx::op::identity{}, onep2));
Paul's avatar
Paul committed
369
370
371
372
373
374
375
376
377
378
    auto final = p.add_instruction(unary_op{}, id);
    p.compile(t);
    EXPECT(not t.has_stream(one));
    EXPECT(t.get_stream(onep1) != t.get_stream(onep2));
    // No stream assignment
    EXPECT(not t.has_stream(id));
    // There is no wait
    EXPECT(get_wait_for(id).empty());
    // Stream assignment for final op
    EXPECT(t.get_stream(final) == 0);
Paul's avatar
Paul committed
379
380
    EXPECT(get_wait_for(final) ==
           get_wait_for(t.get_stream(final), {t.get_stream(onep1), t.get_stream(onep2)}));
Paul's avatar
Paul committed
381
382
383
    EXPECT(check_conflicts(p, onep1, onep2));
}

Paul's avatar
Paul committed
384
TEST_CASE(double_entry)
Paul's avatar
Paul committed
385
{
Paul's avatar
Paul committed
386
    schedule_target t{};
Paul's avatar
Paul committed
387
    migraphx::program p;
Paul's avatar
Paul committed
388
389
    auto one    = p.add_instruction(stream_free_op{}, p.add_literal(1));
    auto two    = p.add_instruction(stream_free_op{}, p.add_literal(2));
Paul's avatar
Paul committed
390
391
    auto onep   = p.add_instruction(unary_op{}, one);
    auto twop   = p.add_instruction(unary_op{}, two);
Paul's avatar
Paul committed
392
    auto binary = p.add_instruction(nary_op{}, onep, twop);
Paul's avatar
Paul committed
393
394
395
396
397
    p.compile(t);
    EXPECT(not t.has_stream(one));
    EXPECT(not t.has_stream(two));
    EXPECT(t.get_stream(onep) != t.get_stream(twop));
    EXPECT(t.get_stream(binary) == 0);
Paul's avatar
Paul committed
398
399
    EXPECT(get_wait_for(binary) ==
           get_wait_for(t.get_stream(binary), {t.get_stream(onep), t.get_stream(twop)}));
Paul's avatar
Paul committed
400
    check_conflicts(p, {{onep, one}, {twop, two}});
Paul's avatar
Paul committed
401
402
}

Paul's avatar
Paul committed
403
TEST_CASE(two_branches)
Paul's avatar
Paul committed
404
{
Paul's avatar
Paul committed
405
    schedule_target t{};
Paul's avatar
Paul committed
406
407
    migraphx::program p;
    auto one    = p.add_literal(1);
Paul's avatar
Paul committed
408
409
    auto c1     = chain(p, 2, unary_op{}, one);
    auto i1     = p.add_instruction(unary_op{}, one);
Paul's avatar
Paul committed
410
    auto binary = p.add_instruction(nary_op{}, i1, c1.back());
Paul's avatar
Paul committed
411
412
413
    p.compile(t);
    EXPECT(not t.has_stream(one));
    EXPECT(t.get_stream(i1) == 1);
Paul's avatar
Paul committed
414
    for(auto ins : c1)
Paul's avatar
Paul committed
415
416
        EXPECT(t.get_stream(ins) == 0);
    EXPECT(t.get_stream(binary) == 0);
Paul's avatar
Paul committed
417
418
    EXPECT(get_wait_for(binary) ==
           get_wait_for(t.get_stream(binary), {t.get_stream(c1.back()), t.get_stream(i1)}));
Paul's avatar
Paul committed
419
420
421
    check_conflicts(p, {c1, {i1}});
}

Paul's avatar
Paul committed
422
TEST_CASE(four_branches)
Paul's avatar
Paul committed
423
{
Paul's avatar
Paul committed
424
    schedule_target t{};
Paul's avatar
Paul committed
425
426
    migraphx::program p;
    auto one    = p.add_literal(1);
Paul's avatar
Paul committed
427
428
429
430
    auto c1     = chain(p, 4, unary_op{}, one);
    auto c2     = chain(p, 3, unary_op{}, one);
    auto c3     = chain(p, 2, unary_op{}, one);
    auto i1     = p.add_instruction(unary_op{}, one);
Paul's avatar
Paul committed
431
    auto binary = p.add_instruction(nary_op{}, i1, c1.back(), c2.back(), c3.back());
Paul's avatar
Paul committed
432
433
434
    p.compile(t);
    EXPECT(not t.has_stream(one));
    EXPECT(t.get_stream(i1) == 3);
Paul's avatar
Paul committed
435
    for(auto ins : c1)
Paul's avatar
Paul committed
436
        EXPECT(t.get_stream(ins) == 0);
Paul's avatar
Paul committed
437
    for(auto ins : c2)
Paul's avatar
Paul committed
438
        EXPECT(t.get_stream(ins) == 1);
Paul's avatar
Paul committed
439
    for(auto ins : c3)
Paul's avatar
Paul committed
440
441
        EXPECT(t.get_stream(ins) == 2);
    EXPECT(t.get_stream(binary) == 0);
Paul's avatar
Paul committed
442
443
444
445
446
    EXPECT(get_wait_for(binary) == get_wait_for(t.get_stream(binary),
                                                {t.get_stream(c1.back()),
                                                 t.get_stream(c2.back()),
                                                 t.get_stream(c3.back()),
                                                 t.get_stream(i1)}));
Paul's avatar
Paul committed
447
    check_conflicts(p, {c1, c2, c3, {i1}});
Paul's avatar
Paul committed
448
449
}

Paul's avatar
Paul committed
450
TEST_CASE(five_branches)
Paul's avatar
Paul committed
451
{
Paul's avatar
Paul committed
452
    schedule_target t{};
Paul's avatar
Paul committed
453
454
455
456
457
458
459
460
    migraphx::program p;
    auto one    = p.add_literal(1);
    auto c1     = chain(p, 5, unary_op{}, one);
    auto c2     = chain(p, 4, unary_op{}, one);
    auto c3     = chain(p, 3, unary_op{}, one);
    auto c4     = chain(p, 2, unary_op{}, one);
    auto i1     = p.add_instruction(unary_op{}, one);
    auto binary = p.add_instruction(nary_op{}, i1, c1.back(), c2.back(), c3.back(), c4.back());
Paul's avatar
Paul committed
461
462
463
    p.compile(t);
    EXPECT(not t.has_stream(one));
    EXPECT(t.get_stream(i1) == 3);
Paul's avatar
Paul committed
464
    for(auto ins : c1)
Paul's avatar
Paul committed
465
        EXPECT(t.get_stream(ins) == 0);
Paul's avatar
Paul committed
466
    for(auto ins : c2)
Paul's avatar
Paul committed
467
        EXPECT(t.get_stream(ins) == 1);
Paul's avatar
Paul committed
468
    for(auto ins : c3)
Paul's avatar
Paul committed
469
        EXPECT(t.get_stream(ins) == 2);
Paul's avatar
Paul committed
470
    for(auto ins : c4)
Paul's avatar
Paul committed
471
472
        EXPECT(t.get_stream(ins) == 3);
    EXPECT(t.get_stream(binary) == 0);
Paul's avatar
Paul committed
473
474
475
476
477
    EXPECT(get_wait_for(binary) == get_wait_for(t.get_stream(binary),
                                                {t.get_stream(c1.back()),
                                                 t.get_stream(c2.back()),
                                                 t.get_stream(c3.back()),
                                                 t.get_stream(i1)}));
Paul's avatar
Paul committed
478
479
480
481
    check_conflicts(p, {c1, c2, c3, c4});
    check_conflicts(p, {c1, c2, c3, {i1}});
}

Paul's avatar
Paul committed
482
483
TEST_CASE(four_branches_eq)
{
Paul's avatar
Paul committed
484
    schedule_target t{};
Paul's avatar
Paul committed
485
486
487
488
489
490
491
    migraphx::program p;
    auto one    = p.add_literal(1);
    auto onep1  = p.add_instruction(unary_op{}, one);
    auto onep2  = p.add_instruction(unary_op{}, one);
    auto onep3  = p.add_instruction(unary_op{}, one);
    auto onep4  = p.add_instruction(unary_op{}, one);
    auto binary = p.add_instruction(nary_op{}, onep1, onep2, onep3, onep4);
Paul's avatar
Paul committed
492
493
    p.compile(t);
    EXPECT(not t.has_stream(one));
Paul's avatar
Paul committed
494
495
496
497
498
    EXPECT(
        sorted<std::size_t>(
            {t.get_stream(onep1), t.get_stream(onep2), t.get_stream(onep3), t.get_stream(onep4)}) ==
        unique<std::size_t>(
            {t.get_stream(onep1), t.get_stream(onep2), t.get_stream(onep3), t.get_stream(onep4)}));
Paul's avatar
Paul committed
499
    EXPECT(t.get_stream(binary) == 0);
Paul's avatar
Paul committed
500
501
    EXPECT(
        get_wait_for(binary) ==
Paul's avatar
Paul committed
502
503
504
        get_wait_for(
            t.get_stream(binary),
            {t.get_stream(onep1), t.get_stream(onep2), t.get_stream(onep3), t.get_stream(onep4)}));
Paul's avatar
Paul committed
505
506
507
    check_conflicts(p, {{onep1}, {onep2}, {onep3}, {onep4}});
}

Paul's avatar
Paul committed
508
509
TEST_CASE(seq_merge)
{
Paul's avatar
Paul committed
510
    schedule_target t{};
Paul's avatar
Paul committed
511
    migraphx::program p;
Paul's avatar
Paul committed
512
513
514
    auto one     = p.add_literal(1);
    auto c1      = chain(p, 2, unary_op{}, one);
    auto i1      = p.add_instruction(unary_op{}, one);
Paul's avatar
Paul committed
515
516
    auto binary1 = p.add_instruction(nary_op{}, i1, c1.back());

Paul's avatar
Paul committed
517
518
    auto c2      = chain(p, 2, unary_op{}, binary1);
    auto i2      = p.add_instruction(unary_op{}, binary1);
Paul's avatar
Paul committed
519
520
    auto binary2 = p.add_instruction(nary_op{}, i2, c2.back());

Paul's avatar
Paul committed
521
522
    p.compile(t);
    EXPECT(not t.has_stream(one));
Paul's avatar
Paul committed
523

Paul's avatar
Paul committed
524
525
    EXPECT(t.get_stream(i1) != t.get_stream(i2));
    EXPECT(t.get_stream(i1) != t.get_stream(c1.back()));
Paul's avatar
Paul committed
526
    for(auto ins : c1)
Paul's avatar
Paul committed
527
528
        EXPECT(t.get_stream(ins) == t.get_stream(c1.back()));
    EXPECT(t.get_stream(binary1) == t.get_stream(c1.back()));
Paul's avatar
Paul committed
529
530
    EXPECT(get_wait_for(binary1) ==
           get_wait_for(t.get_stream(binary1), {t.get_stream(c1.back()), t.get_stream(i1)}));
Paul's avatar
Paul committed
531
532
    check_conflicts(p, {c1, {i1}});

Paul's avatar
Paul committed
533
    EXPECT(t.get_stream(i2) != t.get_stream(c2.back()));
Paul's avatar
Paul committed
534
    for(auto ins : c2)
Paul's avatar
Paul committed
535
536
        EXPECT(t.get_stream(ins) == t.get_stream(c2.back()));
    EXPECT(t.get_stream(c1.back()) != t.get_stream(c2.back()));
Paul's avatar
Paul committed
537
    EXPECT(t.get_stream(binary2) == 0);
Paul's avatar
Paul committed
538
539
    EXPECT(get_wait_for(binary2) ==
           get_wait_for(t.get_stream(binary2), {t.get_stream(c2.back()), t.get_stream(i2)}));
Paul's avatar
Paul committed
540
541
542
543
544
    check_conflicts(p, {c2, {i2}});
}

TEST_CASE(par_merge)
{
Paul's avatar
Paul committed
545
    schedule_target t{};
Paul's avatar
Paul committed
546
    migraphx::program p;
Paul's avatar
Paul committed
547
548
549
550
    auto one     = p.add_literal(1);
    auto start1  = p.add_instruction(unary_op{}, one);
    auto c1      = chain(p, 3, unary_op{}, start1);
    auto i1      = p.add_instruction(unary_op{}, start1);
Paul's avatar
Paul committed
551
552
    auto binary1 = p.add_instruction(nary_op{}, i1, c1.back());

Paul's avatar
Paul committed
553
554
555
    auto start2  = p.add_instruction(unary_op{}, one);
    auto c2      = chain(p, 2, unary_op{}, start2);
    auto i2      = p.add_instruction(unary_op{}, start2);
Paul's avatar
Paul committed
556
557
558
559
    auto binary2 = p.add_instruction(nary_op{}, i2, c2.back());

    auto binary3 = p.add_instruction(nary_op{}, binary1, binary2);

Paul's avatar
Paul committed
560
561
562
    p.compile(t);
    EXPECT(not t.has_stream(one));
    EXPECT(t.get_stream(binary3) == 0);
Paul's avatar
Paul committed
563

Paul's avatar
Paul committed
564
    EXPECT(t.get_stream(i1) != t.get_stream(i2));
Paul's avatar
Paul committed
565
    for(auto ins : c1)
Paul's avatar
Paul committed
566
567
        EXPECT(t.get_stream(ins) == 0);
    EXPECT(t.get_stream(binary1) == 0);
Paul's avatar
Paul committed
568
569
    EXPECT(get_wait_for(binary1) ==
           get_wait_for(t.get_stream(binary1), {t.get_stream(c1.back()), t.get_stream(i1)}));
Paul's avatar
Paul committed
570
571
572
    check_conflicts(p, {c1, {i1}});

    for(auto ins : c2)
Paul's avatar
Paul committed
573
574
        EXPECT(t.get_stream(ins) == 3);
    EXPECT(t.get_stream(binary2) == 3);
Paul's avatar
Paul committed
575
576
    EXPECT(get_wait_for(binary2) ==
           get_wait_for(t.get_stream(binary2), {t.get_stream(c2.back()), t.get_stream(i2)}));
Paul's avatar
Paul committed
577
578
579
    check_conflicts(p, {c2, {i2}});

    EXPECT(check_conflicts(p, binary1, binary2));
Paul's avatar
Paul committed
580
581
582
    check_conflicts(p, {c1, {i1}, c2, {i2}});
}

Paul's avatar
Paul committed
583
584
585
586
587
588
589
590
591
592
593
594
595
596
597
598
599
600
601
602
603
604
605
TEST_CASE(inner_par_merge)
{
    schedule_target t{};
    migraphx::program p;
    auto one     = p.add_literal(1);
    auto start1  = p.add_instruction(unary_op{}, one);
    auto c1      = chain(p, 3, unary_op{}, start1);
    auto i1      = p.add_instruction(unary_op{}, start1);
    auto binary1 = p.add_instruction(nary_op{}, i1, c1.back());

    auto start2  = p.add_instruction(unary_op{}, one);
    auto c2      = chain(p, 2, unary_op{}, start2);
    auto i2      = p.add_instruction(unary_op{}, start2);
    auto binary2 = p.add_instruction(nary_op{}, i2, c2.back());

    auto outer1 = p.add_instruction(unary_op{}, one);
    auto outer2 = p.add_instruction(unary_op{}, one);

    auto output = p.add_instruction(nary_op{}, binary1, binary2, outer1, outer2);

    p.compile(t);
    EXPECT(not t.has_stream(one));
    EXPECT(t.get_stream(output) == 0);
Paul's avatar
Paul committed
606
607
608
609
610
    EXPECT(get_wait_for(output) == get_wait_for(t.get_stream(output),
                                                {t.get_stream(binary1),
                                                 t.get_stream(binary2),
                                                 t.get_stream(outer1),
                                                 t.get_stream(outer2)}));
Paul's avatar
Paul committed
611
612
613
614
615
616
617
618
619
620
621
622
623
624
625
626
627
628
629
630
631
632
633

    EXPECT(t.get_stream(outer1) == 1);
    EXPECT(t.get_stream(outer2) == 2);

    EXPECT(t.get_stream(i1) != t.get_stream(i2));
    for(auto ins : c1)
        EXPECT(t.get_stream(ins) == 0);
    EXPECT(t.get_stream(binary1) == 0);
    EXPECT(get_wait_for(binary1) ==
           get_wait_for(t.get_stream(binary1), {t.get_stream(c1.back()), t.get_stream(i1)}));
    check_conflicts(p, {c1, {i1}});

    for(auto ins : c2)
        EXPECT(t.get_stream(ins) == 3);
    EXPECT(t.get_stream(binary2) == 3);
    EXPECT(get_wait_for(binary2) ==
           get_wait_for(t.get_stream(binary2), {t.get_stream(c2.back()), t.get_stream(i2)}));
    check_conflicts(p, {c2, {i2}});

    EXPECT(check_conflicts(p, binary1, binary2));
    check_conflicts(p, {c1, {i1}, c2, {i2}, {outer1}, {outer2}});
}

Paul's avatar
Paul committed
634
635
636
637
638
639
640
641
642
643
644
645
646
647
648
649
650
651
652
653
654
655
656
TEST_CASE(par_merge_multi_entry)
{
    schedule_target t{};
    migraphx::program p;
    auto one     = p.add_literal(1);
    auto start1  = p.add_instruction(unary_op{}, one);
    auto c1      = chain(p, 3, unary_op{}, start1);
    auto i1      = p.add_instruction(unary_op{}, start1);
    auto binary1 = p.add_instruction(nary_op{}, i1, c1.back());

    auto two     = p.add_literal(1);
    auto start2  = p.add_instruction(unary_op{}, two);
    auto c2      = chain(p, 2, unary_op{}, start2);
    auto i2      = p.add_instruction(unary_op{}, start2);
    auto binary2 = p.add_instruction(nary_op{}, i2, c2.back());

    auto binary3 = p.add_instruction(nary_op{}, binary1, binary2);

    p.compile(t);
    EXPECT(not t.has_stream(one));
    EXPECT(not t.has_stream(two));
    EXPECT(t.get_stream(binary3) == 0);

Paul's avatar
Paul committed
657
    EXPECT(t.get_stream(i1) != t.get_stream(i2));
Paul's avatar
Paul committed
658
659
660
661
662
663
664
665
666
667
668
669
670
671
672
673
    for(auto ins : c1)
        EXPECT(t.get_stream(ins) == 0);
    EXPECT(t.get_stream(binary1) == 0);
    EXPECT(get_wait_for(binary1) ==
           get_wait_for(t.get_stream(binary1), {t.get_stream(c1.back()), t.get_stream(i1)}));
    check_conflicts(p, {c1, {i1}});

    for(auto ins : c2)
        EXPECT(t.get_stream(ins) == 3);
    EXPECT(t.get_stream(binary2) == 3);
    EXPECT(get_wait_for(binary2) ==
           get_wait_for(t.get_stream(binary2), {t.get_stream(c2.back()), t.get_stream(i2)}));
    check_conflicts(p, {c2, {i2}});

    EXPECT(check_conflicts(p, binary1, binary2));
    check_conflicts(p, {c1, {i1}, c2, {i2}});
Paul's avatar
Paul committed
674
}
Paul's avatar
Paul committed
675

Paul's avatar
Paul committed
676
677
678
679
680
681
682
TEST_CASE(inner_split1)
{
    schedule_target t{};
    migraphx::program p;
    auto one    = p.add_literal(1);
    auto c1     = chain(p, 2, unary_op{}, one);
    auto i1     = p.add_instruction(unary_op{}, one);
Paul's avatar
Paul committed
683
684
    auto s1     = p.add_instruction(unary_op{}, c1);
    auto s2     = p.add_instruction(unary_op{}, c1);
Paul's avatar
Paul committed
685
686
687
    auto output = p.add_instruction(nary_op{}, i1, s1, s2);
    p.compile(t);
    EXPECT(not t.has_stream(one));
Paul's avatar
Paul committed
688
689
    EXPECT(t.get_stream(i1) != t.get_stream(s1));
    EXPECT(t.get_stream(i1) != t.get_stream(s2));
Paul's avatar
Paul committed
690
691
692
693
694
695
    for(auto ins : c1)
        EXPECT(t.get_stream(ins) != t.get_stream(i1));
    EXPECT(t.get_stream(s1) != t.get_stream(s2));

    EXPECT(t.get_stream(output) == 0);
    EXPECT(get_wait_for(output) ==
Paul's avatar
Paul committed
696
697
698
           get_wait_for(
               t.get_stream(output),
               {t.get_stream(c1.back()), t.get_stream(i1), t.get_stream(s1), t.get_stream(s2)}));
Paul's avatar
Paul committed
699
700
701
702
703
704
705
706
707
708
    check_conflicts(p, {c1, {i1}, {s1}, {s2}});
}

TEST_CASE(inner_split2)
{
    schedule_target t{};
    migraphx::program p;
    auto one    = p.add_literal(1);
    auto c1     = chain(p, 2, unary_op{}, one);
    auto i1     = p.add_instruction(unary_op{}, one);
Paul's avatar
Paul committed
709
710
    auto s1     = chain(p, 3, unary_op{}, c1.back());
    auto s2     = chain(p, 4, unary_op{}, c1.back());
Paul's avatar
Paul committed
711
712
713
    auto output = p.add_instruction(nary_op{}, i1, s1.back(), s2.back());
    p.compile(t);
    EXPECT(not t.has_stream(one));
Paul's avatar
Paul committed
714
715
    EXPECT(t.get_stream(i1) != t.get_stream(s1.back()));
    EXPECT(t.get_stream(i1) != t.get_stream(s2.back()));
Paul's avatar
Paul committed
716
717
718
719
720
    for(auto ins : c1)
        EXPECT(t.get_stream(ins) != t.get_stream(i1));
    EXPECT(t.get_stream(s1.back()) != t.get_stream(s2.back()));

    EXPECT(t.get_stream(output) == 0);
Paul's avatar
Paul committed
721
722
723
724
725
    EXPECT(get_wait_for(output) == get_wait_for(t.get_stream(output),
                                                {t.get_stream(c1.back()),
                                                 t.get_stream(i1),
                                                 t.get_stream(s1.back()),
                                                 t.get_stream(s2.back())}));
Paul's avatar
Paul committed
726
727
728
    check_conflicts(p, {c1, {i1}, s1, s2});
}

Paul's avatar
Paul committed
729
730
731
732
733
TEST_CASE(inception_resnet)
{
    schedule_target t{};
    migraphx::program p;
    auto one    = p.add_literal(1);
Paul's avatar
Paul committed
734
    auto input  = p.add_instruction(unary_op{}, one);
Paul's avatar
Paul committed
735
736
737
738
739
740
    auto c1     = chain(p, 2, unary_op{}, input);
    auto i1     = p.add_instruction(unary_op{}, input);
    auto binary = p.add_instruction(nary_op{}, i1, c1.back());
    auto output = p.add_instruction(nary_op{}, binary, input);
    p.compile(t);
    EXPECT(not t.has_stream(one));
Paul's avatar
Paul committed
741
    EXPECT(t.get_stream(i1) != 0);
Paul's avatar
Paul committed
742
743
744
745
746
747
748
749
750
751
    for(auto ins : c1)
        EXPECT(t.get_stream(ins) == 0);
    EXPECT(t.get_stream(binary) == 0);
    EXPECT(get_wait_for(binary) ==
           get_wait_for(t.get_stream(binary), {t.get_stream(c1.back()), t.get_stream(i1)}));
    EXPECT(t.get_stream(output) == 0);
    EXPECT(get_wait_for(output).empty());
    check_conflicts(p, {c1, {i1}});
}

Paul's avatar
Paul committed
752
753
754
755
756
TEST_CASE(inception1)
{
    schedule_target t{};
    migraphx::program p;

Paul's avatar
Paul committed
757
758
759
760
761
762
763
764
765
766
767
768
769
770
771
772
773
774
775
776
777
778
779
780
781
782
783
784
785
786
787
788
789
790
791
792
793
794
795
796
797
798
799
800
801
802
803
804
805
806
807
808
809
810
811
812
813
814
815
816
817
818
819
820
821
822
823
824
825
826
827
828
829
830
831
832
833
834
835
836
837
838
839
840
841
842
843
844
845
    auto i1     = p.add_literal(0);
    auto i2     = p.add_literal(1);
    auto i3     = p.add_literal(1);
    auto i4     = p.add_literal(2);
    auto i7     = p.add_instruction(nary_op{"i7"}, i1, i4, i3, i2);
    auto i8     = p.add_literal(2);
    auto i9     = p.add_instruction(migraphx::op::identity{}, i8);
    auto i10    = p.add_literal(1);
    auto i11    = p.add_instruction(nary_op{"i11"}, i7, i9, i10);
    auto i12    = p.add_literal(2);
    auto i13    = p.add_instruction(migraphx::op::identity{}, i12);
    auto i14    = p.add_literal(1);
    auto i15    = p.add_literal(1);
    auto i16    = p.add_literal(2);
    auto i17    = p.add_instruction(nary_op{"i17"}, i11, i16, i15, i13, i14);
    auto i18    = p.add_literal(2);
    auto i19    = p.add_instruction(migraphx::op::identity{}, i18);
    auto i20    = p.add_literal(1);
    auto i21    = p.add_literal(1);
    auto i22    = p.add_literal(2);
    auto i23    = p.add_instruction(nary_op{"i23"}, i17, i22, i21, i19, i20);
    auto i24    = p.add_literal(1);
    auto i25    = p.add_instruction(nary_op{"i25"}, i23, i24);
    auto i26    = p.add_literal(2);
    auto i27    = p.add_instruction(migraphx::op::identity{}, i26);
    auto i28    = p.add_literal(1);
    auto i29    = p.add_literal(1);
    auto i30    = p.add_literal(2);
    auto i31    = p.add_instruction(nary_op{"i31"}, i25, i30, i29, i27, i28);
    auto i32    = p.add_literal(2);
    auto i33    = p.add_instruction(migraphx::op::identity{}, i32);
    auto i34    = p.add_literal(1);
    auto i35    = p.add_literal(1);
    auto i36    = p.add_literal(2);
    auto i37    = p.add_instruction(nary_op{"i37"}, i31, i36, i35, i33, i34);
    auto i38    = p.add_literal(1);
    auto i39    = p.add_instruction(nary_op{"i39"}, i37, i38);
    auto i41    = p.add_literal(2);
    auto i42    = p.add_instruction(migraphx::op::identity{}, i41);
    auto i43    = p.add_literal(1);
    auto i44    = p.add_literal(1);
    auto i45    = p.add_literal(2);
    auto i48    = p.add_instruction(nary_op{"i48"}, i39, i45, i44, i42, i43);
    auto i49    = p.add_literal(2);
    auto i50    = p.add_instruction(migraphx::op::identity{}, i49);
    auto i51    = p.add_literal(1);
    auto i52    = p.add_literal(1);
    auto i53    = p.add_literal(2);
    auto i54    = p.add_instruction(nary_op{"i54"}, i48, i53, i52, i50, i51);
    auto i55    = p.add_literal(1);
    auto i56    = p.add_instruction(migraphx::op::identity{}, i55);
    auto i57    = p.add_literal(2);
    auto i58    = p.add_instruction(migraphx::op::identity{}, i57);
    auto i59    = p.add_literal(1);
    auto i60    = p.add_literal(2);
    auto i61    = p.add_instruction(nary_op{"i61"}, i54, i60, i59, i58, i56);
    auto i62    = p.add_literal(2);
    auto i63    = p.add_instruction(migraphx::op::identity{}, i62);
    auto i64    = p.add_literal(1);
    auto i65    = p.add_literal(1);
    auto i66    = p.add_literal(2);
    auto i69    = p.add_instruction(nary_op{"i69"}, i39, i66, i65, i63, i64);
    auto i70    = p.add_instruction(migraphx::op::identity{}, i55);
    auto i71    = p.add_literal(2);
    auto i72    = p.add_instruction(migraphx::op::identity{}, i71);
    auto i73    = p.add_literal(1);
    auto i74    = p.add_literal(2);
    auto i75    = p.add_instruction(nary_op{"i75"}, i69, i74, i73, i72, i70);
    auto i77    = p.add_literal(1);
    auto i80    = p.add_instruction(nary_op{"i80"}, i39, i77);
    auto i81    = p.add_instruction(migraphx::op::identity{}, i55);
    auto i82    = p.add_literal(2);
    auto i83    = p.add_instruction(migraphx::op::identity{}, i82);
    auto i84    = p.add_literal(1);
    auto i85    = p.add_literal(2);
    auto i86    = p.add_instruction(nary_op{"i86"}, i80, i85, i84, i83, i81);
    auto i88    = p.add_instruction(migraphx::op::identity{}, i55);
    auto i89    = p.add_literal(2);
    auto i90    = p.add_instruction(migraphx::op::identity{}, i89);
    auto i91    = p.add_literal(1);
    auto i92    = p.add_literal(2);
    auto i94    = p.add_instruction(nary_op{"i94"}, i39, i92, i91, i90, i88);
    auto i96    = p.add_instruction(migraphx::op::identity{}, i55, i94, i75, i61, i86);
    auto i97    = p.add_literal(2);
    auto i98    = p.add_instruction(migraphx::op::identity{}, i97);
    auto i99    = p.add_literal(3);
    auto i100   = p.add_literal(1);
    auto i101   = p.add_literal(2);
    auto output = p.add_instruction(nary_op{"output"}, i96, i101, i100, i98, i99);
Paul's avatar
Paul committed
846
847

    p.compile(t);
Paul's avatar
Paul committed
848
849
850
851
852

    EXPECT(t.get_streams({i7, i11, i17, i23, i25, i31, i37, i39, i94}) ==
           t.get_streams({i7, i7, i7, i7, i7, i7, i7, i7, i7}));
    EXPECT(t.get_streams({i48, i54, i61, output}) ==
           t.get_streams({output, output, output, output}));
Paul's avatar
Paul committed
853
854
855
856
857
858
859
860
861
862
863
864
865
866
867
    EXPECT(t.get_streams({i80, i86}) == t.get_streams({i80, i80}));
    EXPECT(t.get_streams({i69, i75}) == t.get_streams({i69, i69}));

    EXPECT(t.get_stream(i7) != t.get_stream(i80));
    EXPECT(t.get_stream(i69) != t.get_stream(i80));
    EXPECT(t.get_stream(i69) != t.get_stream(i7));
    EXPECT(t.get_stream(output) != t.get_stream(i7));
    EXPECT(t.get_stream(output) != t.get_stream(i69));
    EXPECT(t.get_stream(output) != t.get_stream(i80));

    EXPECT(get_wait_for(i48) == get_wait_for({t.get_stream(i39)}));
    EXPECT(get_wait_for(i80) == get_wait_for({t.get_stream(i39)}));
    EXPECT(get_wait_for(i69) == get_wait_for({t.get_stream(i39)}));
    // We dont wait twice
    EXPECT(get_wait_for(i94).empty());
Paul's avatar
Paul committed
868
869
870
871
    EXPECT(
        get_wait_for(output) ==
        get_wait_for(t.get_stream(output),
                     {t.get_stream(i94), t.get_stream(i75), t.get_stream(i61), t.get_stream(i86)}));
Paul's avatar
Paul committed
872

Paul's avatar
Paul committed
873
    check_conflicts(p, {{i80, i86}, {i69, i75}, {i48, i54, i61}, {i94}});
Paul's avatar
Paul committed
874
875
}

Paul's avatar
Paul committed
876
int main(int argc, const char* argv[]) { test::run(argc, argv); }