tf_test.cpp 6.44 KB
Newer Older
1
2
3
4
5
6
7
8
9
#include <iostream>
#include <vector>
#include <migraphx/literal.hpp>
#include <migraphx/operators.hpp>
#include <migraphx/program.hpp>
#include <migraphx/instruction.hpp>
#include <migraphx/tf.hpp>
#include "test.hpp"

10
11
12
13
14
15
16
17
18
19
20
21
22
TEST_CASE(add_test)
{
    migraphx::program p;
    auto l0 = p.add_parameter("0", migraphx::shape{migraphx::shape::float_type, {1, 2, 2, 3}});
    auto l1 = p.add_parameter("1", migraphx::shape{migraphx::shape::float_type, {1, 2, 2, 3}});
    p.add_instruction(migraphx::op::add{}, l0, l1);
    auto prog = migraphx::parse_tf("add_test.pb", false);

    EXPECT(p == prog);
}

TEST_CASE(add_bcast_test)
{
Khalique's avatar
Khalique committed
23

24
25
26
27
28
29
30
31
32
33
34
35
    migraphx::program p;
    migraphx::shape s0{migraphx::shape::float_type, {2, 3}};
    auto l0 = p.add_parameter("0", s0);
    auto l1 = p.add_parameter("1", migraphx::shape{migraphx::shape::float_type, {2, 1}});
    auto l2 = p.add_instruction(migraphx::op::multibroadcast{s0.lens()}, l0);
    auto l3 = p.add_instruction(migraphx::op::multibroadcast{s0.lens()}, l1);
    p.add_instruction(migraphx::op::add{}, l2, l3);
    auto prog = migraphx::parse_tf("add_bcast_test.pb", false);

    EXPECT(p == prog);
}

36
37
TEST_CASE(batchnorm_test)
{
Khalique's avatar
Khalique committed
38
39
    float epsilon  = 1.001e-5f;
    float momentum = 0.9f;
40
41

    migraphx::program p;
Khalique's avatar
Khalique committed
42
43
    migraphx::op::batch_norm_inference op{
        epsilon, momentum, migraphx::op::batch_norm_inference::spatial};
44
    migraphx::shape s0{migraphx::shape::float_type, {32}};
45
    auto l0 = p.add_parameter("0", migraphx::shape{migraphx::shape::float_type, {1, 32, 16, 16}});
46
47
    std::vector<float> const_vals(32);
    std::fill(const_vals.begin(), const_vals.end(), 1.0f);
Khalique's avatar
Khalique committed
48

49
50
51
52
53
54
55
56
57
58
    auto l2 = p.add_parameter("2", s0);
    auto l3 = p.add_parameter("3", s0);
    auto l4 = p.add_parameter("4", s0);
    auto l1 = p.add_literal(migraphx::literal{s0, const_vals});
    p.add_instruction(op, l0, l1, l2, l3, l4);
    auto prog = migraphx::parse_tf("batchnorm_test.pb", true);

    EXPECT(p == prog);
}

59
60
61
TEST_CASE(biasadd_test)
{
    migraphx::program p;
62
    migraphx::shape s0{migraphx::shape::float_type, {1, 500, 1, 1}};
63
    uint64_t axis = 1;
Khalique's avatar
Khalique committed
64
    auto l0       = p.add_parameter("0", s0);
65
66
67
    auto l1       = p.add_parameter("1", migraphx::shape{migraphx::shape::float_type, {500}});
    auto l2       = p.add_instruction(migraphx::op::broadcast{axis, l0->get_shape()}, l1);
    p.add_instruction(migraphx::op::add{}, l0, l2);
68
69
70
71
72
    auto prog = migraphx::parse_tf("biasadd_test.pb", true);

    EXPECT(p == prog);
}

73
74
75
TEST_CASE(concat_test)
{
    migraphx::program p;
Khalique's avatar
Khalique committed
76

77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
    auto l0 = p.add_parameter("0", migraphx::shape{migraphx::shape::float_type, {4, 7, 3}});
    auto l1 = p.add_parameter("1", migraphx::shape{migraphx::shape::float_type, {4, 2, 3}});

    int axis = 1;
    // tf uses axis as the third input, and it is in int32 format
    p.add_literal(axis);

    p.add_instruction(migraphx::op::concat{static_cast<std::size_t>(axis)}, l0, l1);
    auto prog = migraphx::parse_tf("concat_test.pb", false);

    EXPECT(p == prog);
}

TEST_CASE(const_test)
{
    migraphx::program p;
    p.add_literal(1.0f);
    auto prog = migraphx::parse_tf("constant_test.pb", false);

    EXPECT(p == prog);
}

TEST_CASE(conv_test)
{
    migraphx::program p;
Khalique's avatar
Khalique committed
102

103
    auto l0 = p.add_parameter("0", migraphx::shape{migraphx::shape::float_type, {1, 3, 16, 16}});
Khalique's avatar
Khalique committed
104
    std::vector<float> weight_data(3 * 3 * 3 * 32);
105
    std::fill(weight_data.begin(), weight_data.end(), 1.0f);
Khalique's avatar
Khalique committed
106
107
    auto l1 =
        p.add_literal(migraphx::shape{migraphx::shape::float_type, {3, 3, 3, 32}}, weight_data);
108
109
110

    migraphx::op::convolution op;
    op.padding_mode = migraphx::op::padding_mode_t::same;
Khalique's avatar
Khalique committed
111
112
    op.stride       = {1, 1};
    op.dilation     = {1, 1};
113
114
115
    auto l2         = p.add_instruction(migraphx::op::transpose{{0, 3, 1, 2}}, l1);
    auto l3         = p.add_instruction(migraphx::op::transpose{{1, 3, 0, 2}}, l2);
    p.add_instruction(op, l0, l3);
116
117
118
119
120
    auto prog = migraphx::parse_tf("conv_test.pb", true);

    EXPECT(p == prog);
}

121
122
123
124
125
126
127
128
129
130
131
132
133
TEST_CASE(identity_test)
{
    migraphx::program p;
    auto l0 = p.add_parameter("0", migraphx::shape{migraphx::shape::float_type, {1, 3, 16, 16}});
    p.add_instruction(migraphx::op::identity{}, l0);
    auto prog = migraphx::parse_tf("identity_test.pb", false);

    EXPECT(p == prog);
}

TEST_CASE(pooling_test)
{
    migraphx::program p;
134
    auto l0 = p.add_parameter("0", migraphx::shape{migraphx::shape::float_type, {1, 3, 16, 16}});
135
136
137
138
    migraphx::op::pooling avg_pool_op{"average"};
    migraphx::op::pooling max_pool_op{"max"};
    avg_pool_op.padding_mode = migraphx::op::padding_mode_t::valid;
    max_pool_op.padding_mode = migraphx::op::padding_mode_t::valid;
Khalique's avatar
Khalique committed
139
140
141
142
    avg_pool_op.stride       = {2, 2};
    max_pool_op.stride       = {2, 2};
    avg_pool_op.lengths      = {2, 2};
    max_pool_op.lengths      = {2, 2};
143
144
    p.add_instruction(max_pool_op, l0);
    p.add_instruction(avg_pool_op, l0);
145
146
147
148
149
    auto prog = migraphx::parse_tf("pooling_test.pb", true);

    EXPECT(p == prog);
}

150
151
152
153
154
155
156
157
158
159
TEST_CASE(relu_test)
{
    migraphx::program p;
    auto l0 = p.add_parameter("0", migraphx::shape{migraphx::shape::float_type, {1, 3, 16, 16}});
    p.add_instruction(migraphx::op::relu{}, l0);
    auto prog = migraphx::parse_tf("relu_test.pb", false);

    EXPECT(p == prog);
}

160
161
162
163
164
165
TEST_CASE(reshape_test)
{
    migraphx::program p;
    auto l0 = p.add_parameter("0", migraphx::shape{migraphx::shape::float_type, {16}});
    migraphx::shape s0{migraphx::shape::int32_type, {4}};
    // in tf, the second arg is a literal that contains new dimensions
Khalique's avatar
Khalique committed
166
167
    p.add_literal(migraphx::literal{s0, {1, 1, 1, 16}});
    p.add_instruction(migraphx::op::reshape{{1, 1, 1, 16}}, l0);
168
169
170
171
172
173
174
175
    auto prog = migraphx::parse_tf("reshape_test.pb", false);

    EXPECT(p == prog);
}

TEST_CASE(softmax_test)
{
    migraphx::program p;
Khalique's avatar
Khalique committed
176
    auto l0   = p.add_parameter("0", migraphx::shape{migraphx::shape::float_type, {1, 3}});
177
    auto dims = l0->get_shape().lens();
Khalique's avatar
Khalique committed
178
179
    auto r    = p.add_instruction(migraphx::op::reshape{{long(dims[0]), long(dims[1]), 1, 1}}, l0);
    auto s    = p.add_instruction(migraphx::op::softmax{}, r);
180
181
182
183
184
185
186
187
188
    p.add_instruction(migraphx::op::reshape{{long(dims[0]), long(dims[1])}}, s);
    auto prog = migraphx::parse_tf("softmax_test.pb", false);

    EXPECT(p == prog);
}

TEST_CASE(squeeze_test)
{
    migraphx::program p;
Khalique's avatar
Khalique committed
189
    auto l0 = p.add_parameter("0", migraphx::shape{migraphx::shape::float_type, {1, 2, 3, 1}});
190
191
192
193
194
    p.add_instruction(migraphx::op::squeeze{{0, 3}}, l0);
    auto prog = migraphx::parse_tf("squeeze_test.pb", false);

    EXPECT(p == prog);
}
195
int main(int argc, const char* argv[]) { test::run(argc, argv); }