simplify_reshapes.cpp 19 KB
Newer Older
1
#include <iterator>
Paul's avatar
Paul committed
2
3
4
#include <migraphx/simplify_reshapes.hpp>
#include <migraphx/program.hpp>
#include <migraphx/instruction.hpp>
5
#include <migraphx/op/as_shape.hpp>
6
#include <migraphx/op/transpose.hpp>
Paul's avatar
Paul committed
7
#include <migraphx/op/concat.hpp>
8
#include <migraphx/op/slice.hpp>
Paul's avatar
Paul committed
9
10
#include <migraphx/iterator_for.hpp>
#include <migraphx/ranges.hpp>
Paul's avatar
Paul committed
11
#include <migraphx/matcher.hpp>
12
#include <migraphx/permutation.hpp>
13
#include <migraphx/dead_code_elimination.hpp>
Paul's avatar
Paul committed
14
#include <unordered_set>
15
#include <migraphx/make_op.hpp>
16
#include <migraphx/tune_axis.hpp>
17

18
#include <map>
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
const auto& reshaper_names()
Paul's avatar
Paul committed
24
{
25
26
    // clang-format off
    static const std::unordered_set<std::string> names = {
27
        "flatten",
28
        "reshape",
Shucai Xiao's avatar
Shucai Xiao committed
29
        "contiguous",
30
31
        "squeeze",
        "unsqueeze"
32
33
    };
    // clang-format on
Paul's avatar
Paul committed
34
    return names;
Paul's avatar
Paul committed
35
36
}

Paul's avatar
Paul committed
37
bool is_reshaper(instruction_ref ins) { return contains(reshaper_names(), ins->name()); }
Paul's avatar
Paul committed
38
39
40

instruction_ref find_transpose_input(instruction_ref ins)
{
Paul's avatar
Paul committed
41
    if(ins->inputs().size() != 1)
Paul's avatar
Paul committed
42
        return ins;
Paul's avatar
Paul committed
43
    if(ins->inputs().front()->name() == "contiguous")
Paul's avatar
Paul committed
44
45
46
47
        return find_transpose_input(ins->inputs().front());
    if(ins->inputs().front()->name() == "transpose")
        return ins->inputs().front();
    return ins;
Paul's avatar
Paul committed
48
49
}

50
51
52
53
54
55
56
auto get_transpose_dims(instruction_ref ins)
{
    return any_cast<const op::transpose&>(ins->get_operator()).dims;
}

bool is_no_transpose(const std::vector<int64_t>& dims)
{
Paul's avatar
Paul committed
57
    if(dims.empty())
58
        return true;
Paul's avatar
Paul committed
59
    if(dims.front() != 0)
60
        return false;
Paul's avatar
Paul committed
61
62
    return std::adjacent_find(
               dims.begin(), dims.end(), [](auto x, auto y) { return (y - x) != 1; }) == dims.end();
63
64
}

Paul's avatar
Paul committed
65
struct find_reshaper
Paul's avatar
Paul committed
66
{
Paul's avatar
Paul committed
67
    auto matcher() const
Paul's avatar
Paul committed
68
    {
Paul's avatar
Paul committed
69
70
        return match::name(reshaper_names())(
            match::any_of[match::outputs()](match::name(reshaper_names())));
Paul's avatar
Paul committed
71
72
    }

73
    void apply(module& p, const match::matcher_result& mr) const
Paul's avatar
Paul committed
74
75
76
77
    {
        auto ins = mr.result;
        std::vector<instruction_ref> reshapes{ins};
        while(is_reshaper(reshapes.back()))
Paul's avatar
Paul committed
78
        {
Paul's avatar
Paul committed
79
80
81
82
83
            assert(!reshapes.back()->inputs().empty());
            assert(p.has_instruction(reshapes.back()->inputs().front()));
            auto input = reshapes.back()->inputs().front();
            reshapes.push_back(input);
        }
Paul's avatar
Paul committed
84

Paul's avatar
Paul committed
85
86
87
88
89
90
91
        std::pair<instruction_ref, instruction_ref> r{p.end(), p.end()};
        for(auto start : iterator_for(reshapes))
        {
            auto last = std::find_if(reshapes.rbegin(), reshapes.rend(), [&](auto&& i) {
                return i->get_shape() == (*start)->get_shape() and i != (*start);
            });
            if(last != reshapes.rend())
Paul's avatar
Paul committed
92
            {
Paul's avatar
Paul committed
93
94
                r = std::make_pair(*start, *last);
                break;
Paul's avatar
Paul committed
95
96
            }
        }
Paul's avatar
Paul committed
97
        if(r.first != r.second)
Paul's avatar
Paul committed
98
        {
Paul's avatar
Paul committed
99
            p.replace_instruction(r.first, r.second);
Paul's avatar
Paul committed
100
        }
Paul's avatar
Paul committed
101
102
103
    }
};

Paul's avatar
Paul committed
104
105
106
107
108
struct find_nop_reshapes
{
    auto matcher() const
    {
        auto reshapes = reshaper_names();
109
110
111
        reshapes.insert("as_shape");
        reshapes.insert("broadcast");
        reshapes.insert("concat");
Paul Fultz II's avatar
Paul Fultz II committed
112
        reshapes.insert("convert");
113
114
        reshapes.insert("multibroadcast");
        reshapes.insert("pad");
Paul's avatar
Paul committed
115
        reshapes.insert("slice");
116
        reshapes.insert("transpose");
Paul's avatar
Paul committed
117
        return match::name(reshapes)(match::same_shape(match::arg(0)));
Paul's avatar
Paul committed
118
119
    }

120
    void apply(module& p, const match::matcher_result& mr) const
Paul's avatar
Paul committed
121
122
    {
        auto ins = mr.result;
Shucai Xiao's avatar
Shucai Xiao committed
123
124
125
126
127
128
129
130
131
132
        if (ins->name() == "contiguous")
        {
            auto& outputs = ins->outputs();
            if(std::any_of(outputs.begin(), outputs.end(), [&](auto o) {
                return o->name() == "@return";
            }))
            {
                return;
            }
        }
Paul's avatar
Paul committed
133
134
135
136
        p.replace_instruction(ins, ins->inputs().front());
    }
};

Paul's avatar
Paul committed
137
138
139
140
struct find_transpose
{
    auto matcher() const
    {
Paul's avatar
Paul committed
141
142
        return match::name("transpose")(match::none_of(
            match::skip_output(match::name("contiguous"))(match::name("transpose"))));
Paul's avatar
Paul committed
143
144
    }

145
    void apply(module& p, const match::matcher_result& mr) const
Paul's avatar
Paul committed
146
147
    {
        auto ins = mr.result;
Paul's avatar
Paul committed
148
149
        auto x   = ins;
        auto t   = ins;
Paul's avatar
Paul committed
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
        std::vector<std::int64_t> dims(ins->get_shape().lens().size());
        std::iota(dims.begin(), dims.end(), 0);
        do
        {
            dims = reorder_dims(get_transpose_dims(t), dims);
            x    = t;
            t    = find_transpose_input(x);
        } while(x != t and t->name() == "transpose");
        if(t == ins or t->name() != "transpose")
            return;
        if(is_no_transpose(dims))
        {
            p.replace_instruction(ins, t->inputs().front());
        }
        else
Paul's avatar
Paul committed
165
        {
166
167
            p.replace_instruction(
                ins, make_op("transpose", {{"permutation", dims}}), t->inputs().front());
Paul's avatar
Paul committed
168
        }
Paul's avatar
Paul committed
169
    }
Paul's avatar
Paul committed
170
171
};

172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
struct find_nested_convert
{
    auto matcher() const { return match::name("convert")(match::arg(0)(match::name("convert"))); }

    void apply(module& m, const match::matcher_result& mr) const
    {
        auto ins   = mr.result;
        auto x     = ins->inputs().front();
        auto input = x->inputs().front();

        if(ins->get_shape() != input->get_shape())
            return;

        m.replace_instruction(ins, input);
    }
};

189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
struct find_nested_slice
{
    auto matcher() const { return match::name("slice")(match::arg(0)(match::name("slice"))); }

    using axes_map = std::map<std::size_t, std::pair<std::size_t, std::size_t>>;

    static axes_map get_axes(instruction_ref ins)
    {
        axes_map result;
        auto op = any_cast<op::slice>(ins->get_operator());
        for(std::size_t i = 0; i < op.axes.size(); i++)
        {
            result[op.axes[i]] = std::make_pair(op.starts[i], op.ends[i]);
        }
        return result;
    }

    static axes_map merge(const axes_map& m1, const axes_map& m2)
    {
        axes_map result;
        // Non overlapping
        for(auto&& p : m1)
        {
            if(contains(m2, p.first))
                continue;
            result[p.first] = p.second;
        }
        for(auto&& p : m2)
        {
            if(contains(m1, p.first))
                continue;
            result[p.first] = p.second;
        }
        // Overlapping
        for(auto&& p1 : m1)
        {
            if(not contains(m2, p1.first))
                continue;
            auto&& v1        = p1.second;
            auto&& v2        = m2.at(p1.first);
            auto start       = v1.first + v2.first;
            auto end         = start + (v2.second - v2.first);
            result[p1.first] = std::make_pair(start, end);
        }
        return result;
    }

236
    void apply(module& p, const match::matcher_result& mr) const
237
238
239
240
241
242
243
244
245
246
247
248
249
250
251
252
253
254
255
256
257
    {
        auto ins   = mr.result;
        auto slice = ins->inputs().front();
        auto input = slice->inputs().front();

        auto a1 = get_axes(ins);
        auto a2 = get_axes(slice);

        auto axes = merge(a2, a1);

        auto op = op::slice{};
        for(auto&& pp : axes)
        {
            op.axes.push_back(pp.first);
            op.starts.push_back(pp.second.first);
            op.ends.push_back(pp.second.second);
        }
        p.replace_instruction(ins, op, input);
    }
};

Paul's avatar
Paul committed
258
259
260
261
struct find_concat_transpose
{
    auto matcher() const
    {
262
        return match::name("concat")(match::all_of[match::inputs()](match::transpose_shape()));
Paul's avatar
Paul committed
263
264
    }

265
    void apply(module& p, const match::matcher_result& mr) const
Paul's avatar
Paul committed
266
    {
Shucai Xiao's avatar
Shucai Xiao committed
267
268
269
        auto ins          = mr.result;
        auto trans_inputs = ins->inputs();
        auto s            = trans_inputs.front()->get_shape();
Paul's avatar
Paul committed
270
        assert(s.transposed());
Shucai Xiao's avatar
Shucai Xiao committed
271
272
273
274
275
276
277
278
279
280
281
282
283
        auto op          = any_cast<op::concat>(ins->get_operator());
        auto permutation = find_permutation(s);

        // permutation should be the same for all inputs
        if(!std::all_of(trans_inputs.begin(), trans_inputs.end(), [&](auto in) {
               return (find_permutation(in->get_shape()) == permutation);
           }))
        {
            return;
        }

        // axis could be a negative value
        int64_t n_dim = static_cast<int64_t>(s.lens().size());
284
        op.axis       = tune_axis(n_dim, op.axis, op.name());
Shucai Xiao's avatar
Shucai Xiao committed
285

Paul's avatar
Paul committed
286
        auto ipermutation = invert_permutation(permutation);
Paul's avatar
Paul committed
287
        op.axis           = ipermutation[op.axis];
Paul's avatar
Paul committed
288
289
290

        std::vector<instruction_ref> inputs;
        std::transform(
Paul's avatar
Paul committed
291
            ins->inputs().begin(), ins->inputs().end(), std::back_inserter(inputs), [&](auto i) {
292
293
                return p.insert_instruction(
                    ins, make_op("transpose", {{"permutation", permutation}}), i);
Paul's avatar
Paul committed
294
            });
Paul's avatar
Paul committed
295
        auto concat = p.insert_instruction(ins, op, inputs);
296
297
        auto t      = p.insert_instruction(
            ins, make_op("transpose", {{"permutation", ipermutation}}), concat);
Paul's avatar
Paul committed
298
        assert(ins->get_shape().lens() == t->get_shape().lens());
Paul's avatar
Paul committed
299
300
301
302
        p.replace_instruction(ins, t);
    }
};

Paul Fultz II's avatar
Paul Fultz II committed
303
304
305
306
307
308
309
310
311
312
313
314
315
struct find_nested_concat
{
    auto matcher() const
    {
        return match::name("concat")(match::any_of[match::inputs()](match::name("concat")));
    }

    static std::size_t get_axis(instruction_ref ins)
    {
        auto op = any_cast<op::concat>(ins->get_operator());
        return op.axis;
    }

316
    void apply(module& p, const match::matcher_result& mr) const
Paul Fultz II's avatar
Paul Fultz II committed
317
318
319
320
321
322
323
324
325
326
327
328
329
330
331
332
333
334
    {
        auto ins  = mr.result;
        auto axis = get_axis(ins);
        std::vector<instruction_ref> args;
        fix([&](auto self, auto&& inputs) {
            for(auto&& i : inputs)
            {
                if(i->name() == "concat" and get_axis(i) == axis and i->outputs().size() == 1)
                    self(i->inputs());
                else
                    args.push_back(i);
            }

        })(ins->inputs());
        p.replace_instruction(ins, ins->get_operator(), args);
    }
};

335
336
337
338
339
340
341
342
343
344
345
346
347
348
349
350
351
352
353
354
355
356
357
358
359
360
361
362
363
364
365
366
367
368
369
370
371
372
373
374
375
376
377
378
379
380
381
382
383
384
385
386
387
388
389
390
391
struct find_resize
{
    auto matcher() const
    {
        return match::name("gather")(
            match::args(match::name("reshape").bind("data"), match::is_constant().bind("ind")));
    }

    void apply(module& p, match::matcher_result r) const
    {
        auto ins     = r.result;
        auto ins_rsp = r.instructions["data"];
        auto ins_ind = r.instructions["ind"];

        // resize input shape
        if(ins_rsp->get_shape().lens().size() != 1)
        {
            return;
        }

        // resize output shape
        const auto& in_shape  = ins_rsp->inputs().front()->get_shape();
        const auto& out_shape = ins->get_shape();
        // check if output shape is multiple of input shape
        const auto& in_lens  = in_shape.lens();
        const auto& out_lens = out_shape.lens();
        if(in_lens.size() != out_lens.size())
        {
            return;
        }

        // output shape must be multiple of input shape
        std::vector<bool> is_multi(in_lens.size());
        std::transform(
            in_lens.begin(), in_lens.end(), out_lens.begin(), is_multi.begin(), [](auto x, auto y) {
                return (y % x == 0);
            });
        if(not std::all_of(is_multi.begin(), is_multi.end(), [](auto b) { return b; }))
        {
            return;
        }

        // output must be multiple of inputs
        std::vector<std::size_t> scales(in_lens.size());
        std::transform(
            in_lens.begin(), in_lens.end(), out_lens.begin(), scales.begin(), [](auto x, auto y) {
                return y / x;
            });

        // if ind is not constant, cannot optimize
        std::vector<int> vec_ind;
        auto arg_ind = ins_ind->eval();
        if(arg_ind.empty())
        {
            return;
        }
        arg_ind.visit([&](auto v) { vec_ind.assign(v.begin(), v.end()); });
392
        if(not all_of(range(out_shape.elements()), [&](auto i) {
393
394
395
396
397
398
399
400
401
402
403
404
405
406
407
408
409
410
411
412
413
414
415
416
417
418
419
420
421
422
423
424
425
426
427
428
429
430
431
432
433
               auto out_idx = out_shape.multi(i);
               auto in_idx  = out_idx;
               std::transform(out_idx.begin(),
                              out_idx.end(),
                              scales.begin(),
                              in_idx.begin(),
                              [&](auto io, auto scale) { return io - (io % scale); });
               return vec_ind[i] == vec_ind[out_shape.index(in_idx)];
           }))
        {
            return;
        }

        // wrap up shapes for multibroadcast
        std::vector<std::pair<std::size_t, std::size_t>> dim_scales;
        std::transform(in_lens.begin(),
                       in_lens.end(),
                       out_lens.begin(),
                       std::back_inserter(dim_scales),
                       [](auto x, auto y) { return std::make_pair(x, y / x); });

        std::vector<int64_t> in_dims;
        std::vector<int64_t> out_dims;
        for(auto& isp : dim_scales)
        {
            in_dims.push_back(isp.first);
            out_dims.push_back(isp.first * isp.second);
            if(isp.first == 1 or isp.second == 1)
            {
                continue;
            }

            out_dims.back() = isp.first;
            in_dims.push_back(1);
            out_dims.push_back(isp.second);
        }

        auto in_rsp   = ins_rsp->inputs().front();
        auto rsp_data = p.insert_instruction(
            ins_rsp, migraphx::make_op("reshape", {{"dims", in_dims}}), in_rsp);
        auto mb_rsp = p.insert_instruction(
434
            ins_rsp, migraphx::make_op("multibroadcast", {{"out_lens", out_dims}}), rsp_data);
435
436
437
438
439
440
441
442
443
444
445
446
447
448
449
450
451
452
453
454
455
456
457
458
459
460
461
462
463
464
465
466
467
468
469
470
471
472
473
474
475
476
477
478
479
480
481
482
483
484
485
486
487
488
489
490
491
492
493
494
495
496
497
498
499
500
501
502
503
504
505
506
507
508
509
510
511
512
513
514
515
516
517
518
519
520
521
522
523
524
525
526
527
528
529
530
531
532
533
534
535
536
537
538
539
540
541
542
543
544
545
546
547
548
549
550
551
        auto std_mb = p.insert_instruction(ins, migraphx::make_op("contiguous"), mb_rsp);
        std::vector<int64_t> rsp_dims(out_lens.begin(), out_lens.end());
        p.replace_instruction(ins, migraphx::make_op("reshape", {{"dims", rsp_dims}}), std_mb);
    }
};

struct find_where_op
{
    auto matcher() const
    {
        return match::name("gather")(
            match::args(match::name("reshape")(match::arg(0)(match::name("concat").bind("data"))),
                        match::is_constant().bind("ind")));
    }

    void apply(module& p, match::matcher_result r) const
    {
        auto ins     = r.result;
        auto concat  = r.instructions["data"];
        auto ins_ind = r.instructions["ind"];
        std::vector<bool> vec_ind;
        auto arg_ind = ins_ind->eval();
        arg_ind.visit([&](auto v) { vec_ind.assign(v.begin(), v.end()); });
        // ind has to be the same value
        auto val = vec_ind.front();
        if(not std::all_of(vec_ind.begin(), vec_ind.end(), [&](auto v) { return (v == val); }))
        {
            return;
        }

        // concat axis must be 0
        auto op = any_cast<op::concat>(concat->get_operator());
        if(op.axis != 0)
        {
            return;
        }

        // check concat inputs, it has to be 2 and have the same shape
        const auto& inputs = concat->inputs();
        if(inputs.size() != 2)
        {
            return;
        }
        if(inputs.at(0)->get_shape() != inputs.at(1)->get_shape())
        {
            return;
        }
        if(inputs.at(0)->get_shape().lens() != ins_ind->get_shape().lens())
        {
            return;
        }

        if(val)
        {
            p.replace_instruction(ins, inputs.at(0));
        }
        else
        {
            p.replace_instruction(ins, inputs.at(1));
        }
    }
};

struct find_reshape_cont
{
    auto matcher() const
    {
        return match::pointwise(
            match::nargs(2),
            match::either_arg(0, 1)(
                match::name("reshape")(match::args(match::name("contiguous").bind("cont")))
                    .bind("rsp"),
                match::any()));
    }

    void apply(module& p, match::matcher_result r) const
    {
        auto ins      = r.result;
        auto ins_cont = r.instructions["cont"];
        auto in_ins   = r.instructions["rsp"];

        auto cont_input = ins_cont->inputs().front();
        auto lens       = cont_input->get_shape().lens();
        std::vector<int64_t> dims(lens.begin(), lens.end());

        if(in_ins->get_shape() != ins->get_shape())
        {
            return;
        }

        if(not std::all_of(ins->inputs().begin(), ins->inputs().end(), [](auto i) {
               return i->get_shape().standard();
           }))
        {
            return;
        }

        auto out_lens = ins->get_shape().lens();
        std::vector<int64_t> out_dims(out_lens.begin(), out_lens.end());
        std::vector<instruction_ref> inputs;
        for(const auto& in : ins->inputs())
        {
            if(in == in_ins)
            {
                inputs.push_back(cont_input);
            }
            else
            {
                inputs.push_back(
                    p.insert_instruction(ins, make_op("reshape", {{"dims", dims}}), in));
            }
        }
        auto out = p.insert_instruction(ins, ins->get_operator(), inputs);
        p.replace_instruction(ins, make_op("reshape", {{"dims", out_dims}}), out);
    }
};

552
553
554
555
556
557
558
559
560
561
562
563
564
565
566
567
568
569
570
571
572
// match sequence of transpose --> contiguous --> reshaper_op
auto match_transpose_contiguous_reshaper()
{
    return match::name({"reshape", "squeeze", "unsqueeze"})(
               match::used_once(),
               match::args(
                   match::name("contiguous")(
                       match::used_once(), match::args(match::transpose_shape().bind("trans_ins")))
                       .bind("cont_ins")))
        .bind("reshaper_ins");
};

// finds the pattern of transpose --> contiguous --> reshaper_op --> unary
// application of this matcher moves the unary operation before the contiguous so it becomes
// transpose --> unary --> contiguous --> reshaper_op. later pointwise sub-module can be created out
// of unary --> contiguous --> reshaper_op. Such pattern appears in depthToSpace or spaceToDepth
// operator.
struct find_transpose_contiguous_reshaper_unary
{
    auto matcher() const
    {
573
574
575
        return pointwise(match::used_once(),
                         match::nargs(1),
                         match::args(match_transpose_contiguous_reshaper()));
576
577
578
579
580
581
582
583
584
585
586
587
588
589
590
591
    }

    void apply(module& p, match::matcher_result r) const
    {
        auto ins           = r.result;
        auto reshaper_ins  = r.instructions["reshaper_ins"];
        auto trans_ins     = r.instructions["trans_ins"];
        auto cont_ins      = r.instructions["cont_ins"];
        auto unary_op_name = ins->get_operator().name();
        auto unary_ins     = p.insert_instruction(cont_ins, make_op(unary_op_name), trans_ins);
        auto new_cont_ins  = p.insert_instruction(cont_ins, make_op("contiguous"), unary_ins);
        // older cont and reshape are removed by deadcode elimination
        p.replace_instruction(ins, reshaper_ins->get_operator(), new_cont_ins);
    }
};

592
void simplify_reshapes::apply(module& p) const
Paul's avatar
Paul committed
593
{
594
    for(int i = 0; i < 2; i++)
Paul's avatar
Paul committed
595
    {
596
        match::find_matches(p,
597
598
599
                            find_where_op{},
                            find_resize{},
                            find_reshape_cont{},
600
601
602
603
                            find_nop_reshapes{},
                            find_reshaper{},
                            find_transpose{},
                            find_concat_transpose{},
604
                            find_nested_convert{},
605
                            find_nested_slice{},
606
607
                            find_nested_concat{},
                            find_transpose_contiguous_reshaper_unary{});
608
        dead_code_elimination{}.apply(p);
Paul's avatar
Paul committed
609
    }
Paul's avatar
Paul committed
610
611
}

Paul's avatar
Paul committed
612
} // namespace MIGRAPHX_INLINE_NS
Paul's avatar
Paul committed
613
} // namespace migraphx