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mediapipe/mediapipe/framework/tool/sink_test.cc
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MediaPipe Teamandjqtang 61bc4556af Project import generated by Copybara.
GitOrigin-RevId: 1138530ad1578c5d6615b3e3d041775c75d310c4
2019-09-11 14:29:38 -07:00

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4.9 KiB
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// Copyright 2019 The MediaPipe Authors.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
#include "mediapipe/framework/tool/sink.h"
#include <memory>
#include <vector>
#include "absl/strings/string_view.h"
#include "mediapipe/framework/calculator_framework.h"
#include "mediapipe/framework/calculator_runner.h"
#include "mediapipe/framework/port/gmock.h"
#include "mediapipe/framework/port/gtest.h"
#include "mediapipe/framework/port/parse_text_proto.h"
#include "mediapipe/framework/port/status_matchers.h"
#include "mediapipe/framework/tool/validate_type.h"
namespace mediapipe {
namespace {
class CountAndOutputSummarySidePacketInCloseCalculator : public CalculatorBase {
public:
static ::mediapipe::Status GetContract(CalculatorContract* cc) {
cc->Inputs().Index(0).SetAny();
cc->OutputSidePackets().Index(0).Set<int>();
return ::mediapipe::OkStatus();
}
::mediapipe::Status Process(CalculatorContext* cc) final {
++count_;
return ::mediapipe::OkStatus();
}
::mediapipe::Status Close(CalculatorContext* cc) final {
cc->OutputSidePackets().Index(0).Set(
MakePacket<int>(count_).At(Timestamp::Unset()));
return ::mediapipe::OkStatus();
}
int count_ = 0;
};
REGISTER_CALCULATOR(CountAndOutputSummarySidePacketInCloseCalculator);
TEST(CallbackFromGeneratorTest, TestAddVectorSink) {
CalculatorGraphConfig graph_config;
std::vector<Packet> dumped_data;
tool::AddVectorSink("input_packets", &graph_config, &dumped_data);
graph_config.add_input_stream("input_packets");
CalculatorGraph graph(graph_config);
MP_ASSERT_OK(graph.StartRun({}));
for (int i = 0; i < 10; ++i) {
MP_ASSERT_OK(graph.AddPacketToInputStream(
"input_packets", MakePacket<int>(i).At(Timestamp(i))));
MP_ASSERT_OK(graph.WaitUntilIdle());
}
MP_ASSERT_OK(graph.CloseInputStream("input_packets"));
MP_ASSERT_OK(graph.WaitUntilDone());
ASSERT_EQ(10, dumped_data.size());
for (int i = 0; i < 10; ++i) {
EXPECT_EQ(Timestamp(i), dumped_data[i].Timestamp());
EXPECT_EQ(i, dumped_data[i].Get<int>());
}
}
TEST(CalculatorGraph, OutputSummarySidePacketInClose) {
CalculatorGraphConfig config =
::mediapipe::ParseTextProtoOrDie<CalculatorGraphConfig>(R"(
input_stream: "input_packets"
node {
calculator: "CountAndOutputSummarySidePacketInCloseCalculator"
input_stream: "input_packets"
output_side_packet: "num_of_packets"
}
)");
Packet summary_packet;
tool::AddSidePacketSink("num_of_packets", &config, &summary_packet);
CalculatorGraph graph;
MP_ASSERT_OK(graph.Initialize(config));
// Run the graph twice.
int max_count = 100;
for (int run = 0; run < 1; ++run) {
MP_ASSERT_OK(graph.StartRun({}));
for (int i = 0; i < max_count; ++i) {
MP_ASSERT_OK(graph.AddPacketToInputStream(
"input_packets", MakePacket<int>(i).At(Timestamp(i))));
}
MP_ASSERT_OK(graph.CloseInputStream("input_packets"));
MP_ASSERT_OK(graph.WaitUntilDone());
EXPECT_EQ(max_count, summary_packet.Get<int>());
EXPECT_EQ(Timestamp::PostStream(), summary_packet.Timestamp());
}
}
TEST(CallbackTest, TestAddMultiStreamCallback) {
CalculatorGraphConfig graph_config;
graph_config.add_input_stream("foo");
graph_config.add_input_stream("bar");
std::vector<int> sums;
std::pair<std::string, Packet> cb_packet;
tool::AddMultiStreamCallback(
{"foo", "bar"},
[&sums](const std::vector<Packet>& packets) {
Packet foo_p = packets[0];
Packet bar_p = packets[1];
int foo = foo_p.IsEmpty() ? 0 : foo_p.Get<int>();
int bar = bar_p.IsEmpty() ? 0 : bar_p.Get<int>();
sums.push_back(foo + bar);
},
&graph_config, &cb_packet);
CalculatorGraph graph(graph_config);
MP_ASSERT_OK(graph.StartRun({cb_packet}));
MP_ASSERT_OK(graph.AddPacketToInputStream(
"foo", MakePacket<int>(10).At(Timestamp(1))));
MP_ASSERT_OK(
graph.AddPacketToInputStream("bar", MakePacket<int>(5).At(Timestamp(1))));
MP_ASSERT_OK(
graph.AddPacketToInputStream("foo", MakePacket<int>(7).At(Timestamp(2))));
// no bar input at 2
MP_ASSERT_OK(
graph.AddPacketToInputStream("foo", MakePacket<int>(4).At(Timestamp(3))));
MP_ASSERT_OK(
graph.AddPacketToInputStream("bar", MakePacket<int>(5).At(Timestamp(3))));
MP_ASSERT_OK(graph.CloseAllInputStreams());
MP_ASSERT_OK(graph.WaitUntilDone());
EXPECT_THAT(sums, testing::ElementsAre(15, 7, 9));
}
} // namespace
} // namespace mediapipe