fuse_ops.cpp 16.7 KB
Newer Older
Paul's avatar
Paul committed
1
2
3
4
#include <migraphx/gpu/fuse_ops.hpp>
#include <migraphx/matcher.hpp>
#include <migraphx/gpu/miopen.hpp>
#include <migraphx/gpu/convolution.hpp>
Paul's avatar
Paul committed
5
#include <migraphx/gpu/device/mul_add.hpp>
Paul's avatar
Paul committed
6
#include <migraphx/gpu/device/add_relu.hpp>
Paul's avatar
Paul committed
7
#include <migraphx/gpu/device/add.hpp>
Paul's avatar
Paul committed
8
#include <migraphx/instruction.hpp>
Paul's avatar
Paul committed
9
#include <migraphx/array.hpp>
Paul's avatar
Paul committed
10
11

namespace migraphx {
Paul's avatar
Paul committed
12
inline namespace MIGRAPHX_INLINE_NS {
Paul's avatar
Paul committed
13
14
namespace gpu {

Paul's avatar
Paul committed
15
16
17
18
19
20
21
22
struct fusion
{
    using op_t = miopenFusionOpDescriptor_t;
    shared<fusion_plan_descriptor> fp;

    // Used as a temporary hack to keep descriptor references alive
    std::vector<std::shared_ptr<void>> storage;

Paul's avatar
Paul committed
23
    template <class T>
Paul's avatar
Paul committed
24
25
26
27
28
29
30
31
32
33
34
    auto keep_alive(T x)
    {
        auto result = share(std::move(x));
        storage.push_back(result);
        return result;
    }

    fusion(const shape& input)
    // : fp(make_fusion_plan(input))
    {
        auto t = make_tensor(input);
Paul's avatar
Paul committed
35
        fp     = make_fusion_plan(t);
Paul's avatar
Paul committed
36
37
38
39
40
41
42
43
        keep_alive(std::move(t));
    }

    op_t operator[](std::size_t i) const
    {
        op_t result;
        auto status = miopenFusionPlanGetOp(fp.get(), i, &result);
        if(status != miopenStatusSuccess)
Paul's avatar
Paul committed
44
            MIGRAPHX_THROW("Failed retrieving operator at " + std::to_string(i));
Paul's avatar
Paul committed
45
46
47
        return result;
    }

Paul's avatar
Paul committed
48
    auto get() const { return fp.get(); }
Paul's avatar
Paul committed
49
50
51
52

    op_t create_bias(const shape& bias)
    {
        op_t result;
Paul's avatar
Paul committed
53
54
        auto b      = shape{bias.type(), {1, bias.lens().at(1), 1, 1}};
        auto t      = keep_alive(make_tensor(b));
Paul's avatar
Paul committed
55
56
        auto status = miopenCreateOpBiasForward(fp.get(), &result, t.get());
        if(status != miopenStatusSuccess)
Paul's avatar
Paul committed
57
            MIGRAPHX_THROW("Creating operator failed");
Paul's avatar
Paul committed
58
59
60
61
62
63
64
65
        return result;
    }

    op_t create_relu()
    {
        op_t result;
        auto status = miopenCreateOpActivationForward(fp.get(), &result, miopenActivationRELU);
        if(status != miopenStatusSuccess)
Paul's avatar
Paul committed
66
            MIGRAPHX_THROW("Creating operator failed");
Paul's avatar
Paul committed
67
68
69
70
71
72
        return result;
    }

    op_t create_conv(const op::convolution& op, const shape& weights)
    {
        op_t result;
Paul's avatar
Paul committed
73
74
        auto cd     = keep_alive(make_conv(op));
        auto t      = keep_alive(make_tensor(weights));
Paul's avatar
Paul committed
75
76
        auto status = miopenCreateOpConvForward(fp.get(), &result, cd.get(), t.get());
        if(status != miopenStatusSuccess)
Paul's avatar
Paul committed
77
            MIGRAPHX_THROW("Creating operator failed");
Paul's avatar
Paul committed
78
79
        return result;
    }
Paul's avatar
Paul committed
80
81
82
83
84
85
86
87

    shape get_workspace(context&)
    {
        // TODO: Use zero workspace for now
        std::size_t ws_size = 0;
        // int algo_count = 1;
        // miopenConvFwdAlgorithm_t algo;
        // miopenFusionPlanConvolutionGetAlgo(fp.get(), 1, &algo_count, &algo);
Paul's avatar
Paul committed
88
89
        // miopenFusionPlanGetWorkSpaceSize(ctx.get_stream().get_miopen(), fp.get(), &ws_size,
        // algo);
Paul's avatar
Paul committed
90
91
92
93
94
        return shape{shape::int8_type, {ws_size}};
    }

    void compile(context& ctx)
    {
Paul's avatar
Paul committed
95
        auto status = miopenCompileFusionPlan(ctx.get_stream().get_miopen(), fp.get());
Paul's avatar
Paul committed
96
        if(status != miopenStatusSuccess)
Paul's avatar
Paul committed
97
            MIGRAPHX_THROW("Compiling fusion plan failed");
Paul's avatar
Paul committed
98
99
    }

Paul's avatar
Paul committed
100
101
102
103
    argument execute(context& ctx,
                     const fused_operator_args& fargs,
                     const argument& x,
                     const argument& y) const
Paul's avatar
Paul committed
104
    {
Paul's avatar
Paul committed
105
106
        auto x_td   = make_tensor(x.get_shape());
        auto y_td   = make_tensor(y.get_shape());
Paul's avatar
Paul committed
107
        auto status = miopenExecuteFusionPlan(ctx.get_stream().get_miopen(),
Paul's avatar
Paul committed
108
109
110
111
112
113
                                              fp.get(),
                                              x_td.get(),
                                              x.implicit(),
                                              y_td.get(),
                                              y.implicit(),
                                              fargs.get());
Paul's avatar
Paul committed
114
        if(status != miopenStatusSuccess)
Paul's avatar
Paul committed
115
            MIGRAPHX_THROW("Failed to execute fusion plan");
Paul's avatar
Paul committed
116
117
        return y;
    }
Paul's avatar
Paul committed
118
119
};

Paul's avatar
Paul committed
120
MIGRAPHX_PRED_MATCHER(bias_shape, instruction_ref ins)
Paul's avatar
Paul committed
121
122
{
    auto&& s = ins->get_shape();
Paul's avatar
Paul committed
123
124
    return s.broadcasted() and s.strides().size() == 4 and s.strides()[0] == 0 and
           s.strides()[1] != 0 and s.strides()[2] == 0 and s.strides()[3] == 0;
Paul's avatar
Paul committed
125
126
}

Paul's avatar
Paul committed
127
MIGRAPHX_PRED_MATCHER(fusable_conv, instruction_ref ins)
Paul's avatar
Paul committed
128
129
130
{
    if(ins->name() != "gpu::convolution")
        return false;
Paul's avatar
Paul committed
131
132
    if(ins->get_shape().type() != shape::float_type)
        return false;
Paul's avatar
Paul committed
133
134
135
    auto wei = ins->inputs().at(1)->get_shape();
    assert(wei.lens().size() == 4);
    auto conv = any_cast<miopen_convolution>(ins->get_operator());
Khalique's avatar
Khalique committed
136
    if(conv.op.group > 1)
Khalique's avatar
Khalique committed
137
        return false;
138
139
    if(conv.op.padding_mode != op::padding_mode_t::default_)
        return false;
Paul's avatar
Paul committed
140
    if(wei.lens()[1] > 512 and conv.algo != miopenConvolutionFwdAlgoWinograd)
Paul's avatar
Paul committed
141
142
        return false;
    auto op = conv.op;
Paul's avatar
Paul committed
143
144
    return contains({{0, 0}, {1, 1}, {2, 2}}, op.padding) and
           contains({{0, 0}, {1, 1}}, op.stride) and op.dilation == make_array<size_t>(1, 1);
Paul's avatar
Paul committed
145
146
}

Paul's avatar
Paul committed
147
148
149
150
151
152
153
154
struct hip_triadd
{
    std::string name() const { return "hip::triadd"; }
    shape compute_shape(const std::vector<shape>& inputs) const
    {
        check_shapes{inputs, *this}.has(4);
        return inputs.front();
    }
Paul's avatar
Paul committed
155
    argument compute(context& ctx, const shape&, const std::vector<argument>& args) const
Paul's avatar
Paul committed
156
    {
Paul's avatar
Paul committed
157
        device::add(ctx.get_stream().get(), args.at(3), args.at(0), args.at(1), args.at(2));
Paul's avatar
Paul committed
158
159
        return args.at(3);
    }
Paul's avatar
Paul committed
160
161
162
163
    std::ptrdiff_t output_alias(const std::vector<shape>& shapes) const
    {
        return shapes.size() - 1;
    }
Paul's avatar
Paul committed
164
165
166
167
168
169
170
171
172
173
};

struct hip_triadd_relu
{
    std::string name() const { return "hip::triadd_relu"; }
    shape compute_shape(const std::vector<shape>& inputs) const
    {
        check_shapes{inputs, *this}.has(4);
        return inputs.front();
    }
Paul's avatar
Paul committed
174
    argument compute(context& ctx, const shape&, const std::vector<argument>& args) const
Paul's avatar
Paul committed
175
    {
Paul's avatar
Paul committed
176
        device::add_relu(ctx.get_stream().get(), args.at(3), args.at(0), args.at(1), args.at(2));
Paul's avatar
Paul committed
177
178
        return args.at(3);
    }
Paul's avatar
Paul committed
179
180
181
182
    std::ptrdiff_t output_alias(const std::vector<shape>& shapes) const
    {
        return shapes.size() - 1;
    }
Paul's avatar
Paul committed
183
184
};

Paul's avatar
Paul committed
185
186
187
188
189
struct hip_add_relu
{
    std::string name() const { return "hip::add_relu"; }
    shape compute_shape(const std::vector<shape>& inputs) const
    {
Paul's avatar
Paul committed
190
        check_shapes{inputs, *this}.has(3);
Paul's avatar
Paul committed
191
192
        return inputs.front();
    }
Paul's avatar
Paul committed
193
    argument compute(context& ctx, const shape&, const std::vector<argument>& args) const
Paul's avatar
Paul committed
194
    {
Paul's avatar
Paul committed
195
        device::add_relu(ctx.get_stream().get(), args.at(2), args.at(0), args.at(1));
Paul's avatar
Paul committed
196
197
        return args.at(2);
    }
Paul's avatar
Paul committed
198
199
200
201
    std::ptrdiff_t output_alias(const std::vector<shape>& shapes) const
    {
        return shapes.size() - 1;
    }
Paul's avatar
Paul committed
202
203
};

Paul's avatar
Paul committed
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
struct hip_mul_add
{
    std::string name() const { return "hip::mul_add"; }
    shape compute_shape(const std::vector<shape>& inputs) const
    {
        check_shapes{inputs, *this}.has(4);
        return inputs.front();
    }
    argument compute(context& ctx, const shape&, const std::vector<argument>& args) const
    {
        device::mul_add(ctx.get_stream().get(), args.at(3), args.at(0), args.at(1), args.at(2));
        return args.at(3);
    }
    std::ptrdiff_t output_alias(const std::vector<shape>& shapes) const
    {
        return shapes.size() - 1;
    }
};

Paul's avatar
Paul committed
223
224
225
226
227
228
229
230
231
232
struct hip_mul_add_relu
{
    std::string name() const { return "hip::mul_add_relu"; }
    shape compute_shape(const std::vector<shape>& inputs) const
    {
        check_shapes{inputs, *this}.has(4);
        return inputs.front();
    }
    argument compute(context& ctx, const shape&, const std::vector<argument>& args) const
    {
Paul's avatar
Paul committed
233
234
        device::mul_add_relu(
            ctx.get_stream().get(), args.at(3), args.at(0), args.at(1), args.at(2));
Paul's avatar
Paul committed
235
236
237
238
239
240
241
242
        return args.at(3);
    }
    std::ptrdiff_t output_alias(const std::vector<shape>& shapes) const
    {
        return shapes.size() - 1;
    }
};

Paul's avatar
Paul committed
243
244
245
void move_broadcasted_back(std::vector<instruction_ref>& args)
{
    // Ensure the last arguments is the broadcasted one
Paul's avatar
Paul committed
246
    auto last = std::prev(args.end());
Paul's avatar
Paul committed
247
248
    auto it =
        std::find_if(args.begin(), last, [](auto arg) { return arg->get_shape().broadcasted(); });
Paul's avatar
Paul committed
249
250
    if(it != last)
        std::swap(*it, *std::prev(last));
Paul's avatar
Paul committed
251
252
253
254
255
}

void move_standard_front(std::vector<instruction_ref>& args)
{
    // Ensure the first arguments is the standard one
Paul's avatar
Paul committed
256
    auto last = std::prev(args.end());
Paul's avatar
Paul committed
257
258
    auto it =
        std::find_if(args.begin(), last, [](auto arg) { return arg->get_shape().standard(); });
Paul's avatar
Paul committed
259
    if(it != last)
Paul's avatar
Paul committed
260
261
262
        std::swap(*it, args.front());
}

Paul's avatar
Paul committed
263
struct find_add_relu
Paul's avatar
Paul committed
264
{
Paul's avatar
Paul committed
265
266
    auto matcher() const
    {
Paul's avatar
Paul committed
267
        return match::name("gpu::relu")(match::arg(0)(
Paul's avatar
Paul committed
268
            match::used_once(),
Paul's avatar
Paul committed
269
270
271
272
273
            match::any_of(match::name("gpu::add"),
                          match::name("hip::triadd"),
                          match::any_of(match::name("@literal"),
                                        match::any_of[match::inputs()](match::standard_shape())))
                .bind("add")));
Paul's avatar
Paul committed
274
    }
Paul's avatar
Paul committed
275

Paul's avatar
Paul committed
276
277
    void apply(program& p, match::matcher_result r) const
    {
Paul's avatar
Paul committed
278
        auto add_ins = r.instructions["add"];
Paul's avatar
Paul committed
279
280
        auto ins     = r.result;
        auto args    = add_ins->inputs();
Paul's avatar
Paul committed
281
282
283
        move_standard_front(args);
        move_broadcasted_back(args);

Paul's avatar
Paul committed
284
        // Use the allocation from the relu operator
Paul's avatar
Paul committed
285
        args.back() = ins->inputs().back();
Paul's avatar
Paul committed
286
287
288
289
290
291
292
        if(add_ins->name() == "gpu::add")
            p.replace_instruction(ins, hip_add_relu{}, args);
        else if(add_ins->name() == "hip::triadd")
            p.replace_instruction(ins, hip_triadd_relu{}, args);
    }
};

Paul's avatar
Paul committed
293
struct find_triadd
Paul's avatar
Paul committed
294
295
296
{
    auto matcher() const
    {
Paul's avatar
Paul committed
297
        return match::name("gpu::add")(match::either_arg(0, 1)(
Paul's avatar
Paul committed
298
            match::name("gpu::add")(match::used_once()).bind("add"),
Paul's avatar
Paul committed
299
300
301
            match::any(match::any_of(match::name("@literal"),
                                     match::any_of[match::inputs()](match::standard_shape())))
                .bind("input")));
Paul's avatar
Paul committed
302
303
304
305
    }

    void apply(program& p, match::matcher_result r) const
    {
Paul's avatar
Paul committed
306
307
308
309
        auto add_ins   = r.instructions["add"];
        auto input_ins = r.instructions["input"];
        auto ins       = r.result;
        auto args      = add_ins->inputs();
310
311
        assert(add_ins != input_ins);

Paul's avatar
Paul committed
312
313
314
315
        auto is_broadcasted = [](auto arg) { return arg->get_shape().broadcasted(); };
        if(std::count_if(args.begin(), args.end(), is_broadcasted) > 1)
            return;
        args.insert(args.begin(), input_ins);
Paul's avatar
Paul committed
316
317
318
        move_standard_front(args);
        move_broadcasted_back(args);

Paul's avatar
Paul committed
319
320
        args.back() = ins->inputs().back();
        p.replace_instruction(ins, hip_triadd{}, args);
Paul's avatar
Paul committed
321
    }
Paul's avatar
Paul committed
322
323
};

Paul's avatar
Paul committed
324
325
326
327
struct find_mul_add
{
    auto matcher() const
    {
Paul's avatar
Paul committed
328
329
        return match::name("gpu::add")(match::either_arg(0, 1)(
            match::name("gpu::mul")(match::used_once()).bind("mul"), match::any().bind("b")));
Paul's avatar
Paul committed
330
331
332
333
    }

    void apply(program& p, match::matcher_result r) const
    {
Paul's avatar
Paul committed
334
335
336
337
        auto mul_ins = r.instructions["mul"];
        auto b_ins   = r.instructions["b"];
        auto ins     = r.result;
        auto args    = mul_ins->inputs();
Paul's avatar
Paul committed
338
339
340
341
342
343
344
345
346
347
348
        assert(mul_ins != b_ins);

        move_standard_front(args);
        move_broadcasted_back(args);
        args.insert(std::prev(args.end()), b_ins);

        args.back() = ins->inputs().back();
        p.replace_instruction(ins, hip_mul_add{}, args);
    }
};

Paul's avatar
Paul committed
349
350
351
352
struct find_mul_add_relu
{
    auto matcher() const
    {
Paul's avatar
Paul committed
353
354
        return match::name("gpu::relu")(
            match::arg(0)(match::name("hip::mul_add")(match::used_once()).bind("mul_add")));
Paul's avatar
Paul committed
355
356
357
358
359
    }

    void apply(program& p, match::matcher_result r) const
    {
        auto mul_add_ins = r.instructions["mul_add"];
Paul's avatar
Paul committed
360
361
        auto ins         = r.result;
        auto args        = mul_add_ins->inputs();
Paul's avatar
Paul committed
362
363
364
365
366
367
368

        // Use the allocation from the relu operator
        args.back() = ins->inputs().back();
        p.replace_instruction(ins, hip_mul_add_relu{}, args);
    }
};

Paul's avatar
Paul committed
369
370
371
372
373
374
375
struct miopen_conv_bias
{
    op::convolution op;
    fusion f;
    fusion::op_t conv;
    fusion::op_t bias;

Paul's avatar
Paul committed
376
377
378
379
380
381
    template <class Self, class F>
    static auto reflect(Self& self, F f)
    {
        return op::convolution::reflect(self.op, f);
    }

Paul's avatar
Paul committed
382
383
    miopen_conv_bias(op::convolution c, const shape& input, const shape& weights, const shape& b)
        : op(c), f(input)
Paul's avatar
Paul committed
384
    {
Paul's avatar
Paul committed
385
386
        conv = f.create_conv(op, weights);
        bias = f.create_bias(b);
Paul's avatar
Paul committed
387
388
389
390
391
392
393
394
395
    }

    std::string name() const { return "gpu::conv_bias"; }
    shape compute_shape(const std::vector<shape>& inputs) const
    {
        check_shapes{inputs, *this}.has(5);
        // TODO: Check slices
        return op.compute_shape({inputs.at(0), inputs.at(1)});
    }
Paul's avatar
Paul committed
396
    argument compute(context& ctx, const shape&, const std::vector<argument>& args) const
Paul's avatar
Paul committed
397
    {
Paul's avatar
Paul committed
398
        auto fargs  = make_fused_args();
Paul's avatar
Paul committed
399
        float alpha = 1;
Paul's avatar
Paul committed
400
        float beta  = 0;
Paul's avatar
Paul committed
401
402
        miopenSetOpArgsConvForward(fargs.get(), conv, &alpha, &beta, args[1].implicit());
        miopenSetOpArgsBiasForward(fargs.get(), bias, &alpha, &beta, args[3].implicit());
Paul's avatar
Paul committed
403
        return f.execute(ctx, fargs, args[0], args[4]);
Paul's avatar
Paul committed
404
405
    }

Paul's avatar
Paul committed
406
407
    void finalize(context& ctx, const shape&, const std::vector<shape>&) { f.compile(ctx); }
    shape get_workspace(context& ctx) { return f.get_workspace(ctx); }
Paul's avatar
Paul committed
408
409
410
411
    std::ptrdiff_t output_alias(const std::vector<shape>& shapes) const
    {
        return shapes.size() - 1;
    }
Paul's avatar
Paul committed
412
413
};

Paul's avatar
Add cbr  
Paul committed
414
415
416
417
418
419
struct miopen_conv_bias_relu
{
    op::convolution op;
    fusion f;
    fusion::op_t conv;
    fusion::op_t bias;
Paul's avatar
Paul committed
420
    fusion::op_t relu;
Paul's avatar
Add cbr  
Paul committed
421

Paul's avatar
Paul committed
422
423
424
425
426
427
    template <class Self, class F>
    static auto reflect(Self& self, F f)
    {
        return op::convolution::reflect(self.op, f);
    }

Paul's avatar
Paul committed
428
429
430
431
432
    miopen_conv_bias_relu(op::convolution c,
                          const shape& input,
                          const shape& weights,
                          const shape& b)
        : op(c), f(input)
Paul's avatar
Add cbr  
Paul committed
433
    {
Paul's avatar
Paul committed
434
435
436
        conv = f.create_conv(op, weights);
        bias = f.create_bias(b);
        relu = f.create_relu();
Paul's avatar
Add cbr  
Paul committed
437
438
439
440
441
442
443
444
445
    }

    std::string name() const { return "gpu::conv_bias_relu"; }
    shape compute_shape(const std::vector<shape>& inputs) const
    {
        check_shapes{inputs, *this}.has(5);
        // TODO: Check slices
        return op.compute_shape({inputs.at(0), inputs.at(1)});
    }
Paul's avatar
Paul committed
446
    argument compute(context& ctx, const shape&, const std::vector<argument>& args) const
Paul's avatar
Add cbr  
Paul committed
447
448
    {
        auto fargs  = make_fused_args();
Paul's avatar
Paul committed
449
        float alpha = 1;
Paul's avatar
Paul committed
450
        float beta  = 0;
Paul's avatar
Add cbr  
Paul committed
451
452
        miopenSetOpArgsConvForward(fargs.get(), conv, &alpha, &beta, args[1].implicit());
        miopenSetOpArgsBiasForward(fargs.get(), bias, &alpha, &beta, args[3].implicit());
Paul's avatar
Paul committed
453
454
        miopenSetOpArgsActivForward(fargs.get(), relu, &alpha, &beta, 0, 0, 0);
        return f.execute(ctx, fargs, args[0], args[4]);
Paul's avatar
Add cbr  
Paul committed
455
    }
Paul's avatar
Paul committed
456
457
    void finalize(context& ctx, const shape&, const std::vector<shape>&) { f.compile(ctx); }
    shape get_workspace(context& ctx) { return f.get_workspace(ctx); }
Paul's avatar
Paul committed
458
459
460
461
    std::ptrdiff_t output_alias(const std::vector<shape>& shapes) const
    {
        return shapes.size() - 1;
    }
Paul's avatar
Add cbr  
Paul committed
462
463
};

Paul's avatar
Paul committed
464
template <class... Ms>
Paul's avatar
Add cbr  
Paul committed
465
466
auto conv_bias(Ms... ms)
{
Paul's avatar
Paul committed
467
    return match::name("gpu::add")(
Paul's avatar
Paul committed
468
469
        match::either_arg(0, 1)(bias_shape(match::used_once()).bind("bias"),
                                fusable_conv(match::used_once()).bind("conv")),
Paul's avatar
Paul committed
470
        ms...);
Paul's avatar
Paul committed
471
472
}

Paul's avatar
Paul committed
473
template <class Op>
Paul's avatar
Paul committed
474
475
476
477
478
479
480
481
482
483
484
void apply_conv_bias(context& ctx, program& p, match::matcher_result r)
{
    auto conv_ins    = r.instructions["conv"];
    auto bias_ins    = r.instructions["bias"];
    auto ins         = r.result;
    auto input_ins   = conv_ins->inputs().at(0);
    auto weights_ins = conv_ins->inputs().at(1);
    auto conv_op     = any_cast<miopen_convolution>(conv_ins->get_operator()).op;
    auto alloc_ins   = ins->inputs().back();
    auto old_ws_ins  = conv_ins->inputs().at(2);

Paul's avatar
Paul committed
485
    Op cb{conv_op, input_ins->get_shape(), weights_ins->get_shape(), bias_ins->get_shape()};
Paul's avatar
Paul committed
486
    // TODO: Insert ws allocation
Paul's avatar
Paul committed
487
    auto ws = cb.get_workspace(ctx);
Paul's avatar
Paul committed
488
    (void)ws;
Paul's avatar
Paul committed
489
    p.replace_instruction(ins, cb, input_ins, weights_ins, old_ws_ins, bias_ins, alloc_ins);
Paul's avatar
Add cbr  
Paul committed
490
491
}

Paul's avatar
Paul committed
492
struct find_conv_bias
Paul's avatar
Paul committed
493
{
Paul's avatar
Paul committed
494
    context* ctx = nullptr;
Paul's avatar
Paul committed
495
496
    auto matcher() const
    {
Paul's avatar
Add cbr  
Paul committed
497
        return conv_bias(match::none_of(match::output(match::name("gpu::relu"))));
Paul's avatar
Paul committed
498
499
500
501
    }

    void apply(program& p, match::matcher_result r) const
    {
Paul's avatar
Paul committed
502
        apply_conv_bias<miopen_conv_bias>(*ctx, p, std::move(r));
Paul's avatar
Paul committed
503
504
505
    }
};

Paul's avatar
Paul committed
506
struct find_conv_bias_relu
Paul's avatar
Add cbr  
Paul committed
507
508
{
    context* ctx = nullptr;
Paul's avatar
Paul committed
509
    auto matcher() const { return match::name("gpu::relu")(match::arg(0)(conv_bias())); }
Paul's avatar
Add cbr  
Paul committed
510
511
512

    void apply(program& p, match::matcher_result r) const
    {
Paul's avatar
Paul committed
513
        apply_conv_bias<miopen_conv_bias_relu>(*ctx, p, std::move(r));
Paul's avatar
Add cbr  
Paul committed
514
515
516
    }
};

Paul's avatar
Paul committed
517
518
void fuse_ops::apply(program& p) const
{
Paul's avatar
Paul committed
519
    // clang-format off
Paul's avatar
Paul committed
520
    match::find_matches(p, find_triadd{});
Paul's avatar
Paul committed
521
    match::find_matches(p, 
Paul's avatar
Paul committed
522
523
        find_conv_bias_relu{ctx},
        find_conv_bias{ctx},
Paul's avatar
Paul committed
524
525
526
        find_mul_add{},
        find_mul_add_relu{},
        find_add_relu{}
Paul's avatar
Paul committed
527
528
    );
    // clang-format on
Paul's avatar
Paul committed
529
}
Paul's avatar
Paul committed
530
531

} // namespace gpu
Paul's avatar
Paul committed
532
} // namespace MIGRAPHX_INLINE_NS
Paul's avatar
Paul committed
533
} // namespace migraphx