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* Better forward methods in C++ API capitalize error message in test_torch.test_flatten Support for operator() * Add operator() to Functional * Get rid of SigmoidLinear * Add BoundFunction to FunctionalImpl * Remove macro from conv because it makes errors more nasty
197 lines
5.5 KiB
C++
197 lines
5.5 KiB
C++
#include <catch.hpp>
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#include <torch/nn/modules.h>
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#include <torch/nn/modules/linear.h>
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#include <torch/nn/modules/sequential.h>
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#include <torch/tensor.h>
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#include <memory>
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#include <vector>
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using namespace torch::nn;
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using Catch::StartsWith;
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TEST_CASE("sequential") {
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SECTION("construction from shared pointer") {
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struct M : torch::nn::Module {
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explicit M(int value_) : value(value_) {}
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int value;
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int forward() {
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return value;
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}
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};
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Sequential sequential(
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std::make_shared<M>(1), std::make_shared<M>(2), std::make_shared<M>(3));
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REQUIRE(sequential.size() == 3);
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}
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SECTION("construction from concrete type") {
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struct M : torch::nn::Module {
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explicit M(int value_) : value(value_) {}
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int value;
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int forward() {
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return value;
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}
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};
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Sequential sequential(M(1), M(2), M(3));
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REQUIRE(sequential.size() == 3);
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}
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SECTION("construction from module holders") {
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struct MImpl : torch::nn::Module {
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explicit MImpl(int value_) : value(value_) {}
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int forward() {
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return value;
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}
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int value;
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};
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struct M : torch::nn::ModuleHolder<MImpl> {
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using torch::nn::ModuleHolder<MImpl>::ModuleHolder;
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using torch::nn::ModuleHolder<MImpl>::get;
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};
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Sequential sequential(M(1), M(2), M(3));
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REQUIRE(sequential.size() == 3);
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}
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SECTION("push_back") {
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struct M : torch::nn::Module {
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explicit M(int value_) : value(value_) {}
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int forward() {
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return value;
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}
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int value;
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};
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Sequential sequential;
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REQUIRE(sequential.size() == 0);
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REQUIRE(sequential.is_empty());
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sequential.push_back(Linear(3, 4));
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REQUIRE(sequential.size() == 1);
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sequential.push_back(std::make_shared<M>(1));
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REQUIRE(sequential.size() == 2);
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sequential.push_back(M(2));
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REQUIRE(sequential.size() == 3);
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}
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SECTION("access") {
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struct M : torch::nn::Module {
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explicit M(int value_) : value(value_) {}
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int forward() {
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return value;
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}
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int value;
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};
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std::vector<std::shared_ptr<M>> modules = {
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std::make_shared<M>(1), std::make_shared<M>(2), std::make_shared<M>(3)};
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Sequential sequential;
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for (auto& module : modules) {
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sequential.push_back(module);
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}
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REQUIRE(sequential.size() == 3);
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SECTION("at()") {
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SECTION("returns the correct module for a given index") {
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for (size_t i = 0; i < modules.size(); ++i) {
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REQUIRE(&sequential.at<M>(i) == modules[i].get());
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}
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}
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SECTION("throws for a bad index") {
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REQUIRE_THROWS_WITH(
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sequential.at<M>(modules.size() + 1),
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StartsWith("Index out of range"));
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REQUIRE_THROWS_WITH(
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sequential.at<M>(modules.size() + 1000000),
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StartsWith("Index out of range"));
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}
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}
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SECTION("ptr()") {
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SECTION("returns the correct module for a given index") {
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for (size_t i = 0; i < modules.size(); ++i) {
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REQUIRE(sequential.ptr(i).get() == modules[i].get());
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REQUIRE(sequential[i].get() == modules[i].get());
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REQUIRE(sequential.ptr<M>(i).get() == modules[i].get());
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}
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}
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SECTION("throws for a bad index") {
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REQUIRE_THROWS_WITH(
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sequential.ptr(modules.size() + 1),
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StartsWith("Index out of range"));
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REQUIRE_THROWS_WITH(
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sequential.ptr(modules.size() + 1000000),
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StartsWith("Index out of range"));
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}
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}
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}
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SECTION("forward") {
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SECTION("calling forward() on an empty sequential is disallowed") {
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Sequential empty;
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REQUIRE_THROWS_WITH(
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empty.forward<int>(),
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StartsWith("Cannot call forward() on an empty Sequential"));
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}
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SECTION("calling forward() on a non-empty sequential chains correctly") {
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struct MockModule : torch::nn::Module {
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explicit MockModule(int value) : expected(value) {}
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int expected;
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int forward(int value) {
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REQUIRE(value == expected);
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return value + 1;
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}
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};
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Sequential sequential(MockModule{1}, MockModule{2}, MockModule{3});
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REQUIRE(sequential.forward<int>(1) == 4);
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}
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SECTION("calling forward() with the wrong return type throws") {
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struct M : public torch::nn::Module {
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int forward() {
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return 5;
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}
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};
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Sequential sequential(M{});
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REQUIRE(sequential.forward<int>() == 5);
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REQUIRE_THROWS_WITH(
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sequential.forward<float>(),
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StartsWith("The type of the return value "
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"is int, but you asked for type float"));
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}
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SECTION("The return type of forward() defaults to Tensor") {
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struct M : public torch::nn::Module {
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torch::Tensor forward(torch::Tensor v) {
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return v;
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}
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};
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Sequential sequential(M{});
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auto variable = torch::ones({3, 3}, at::requires_grad());
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REQUIRE(sequential.forward(variable).equal(variable));
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}
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}
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SECTION("returns the last value") {
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Sequential sequential(Linear(10, 3), Linear(3, 5), Linear(5, 100));
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auto x = torch::randn({1000, 10}, at::requires_grad());
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auto y = sequential.forward(x);
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REQUIRE(y.ndimension() == 2);
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REQUIRE(y.size(0) == 1000);
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REQUIRE(y.size(1) == 100);
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}
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SECTION("can hold other important modules") {
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Sequential sequential(
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Linear(10, 3),
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Conv2d(1, 2, 3),
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Dropout(0.5),
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BatchNorm(5),
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Embedding(4, 10),
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LSTM(4, 5));
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}
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}
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