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https://gitcode.com/gh_mirrors/es/esp32-opencv.git
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135 lines
3.2 KiB
C++
135 lines
3.2 KiB
C++
// This file is part of OpenCV project.
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// It is subject to the license terms in the LICENSE file found in the top-level directory
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// of this distribution and at http://opencv.org/license.html.
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// This is .hpp file included from test_utils.cpp
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#ifdef CV_CXX11
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#include <thread> // std::thread
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#endif
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#include "opencv2/core/utils/tls.hpp"
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namespace opencv_test { namespace {
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class TLSReporter
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{
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public:
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static int g_last_id;
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static int g_allocated;
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int id;
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TLSReporter()
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{
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id = CV_XADD(&g_last_id, 1);
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CV_XADD(&g_allocated, 1);
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}
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~TLSReporter()
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{
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CV_XADD(&g_allocated, -1);
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}
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};
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int TLSReporter::g_last_id = 0;
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int TLSReporter::g_allocated = 0;
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#ifdef CV_CXX11
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template<typename T>
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static void callNThreadsWithTLS(int N, TLSData<T>& tls)
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{
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std::vector<std::thread> threads(N);
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for (int i = 0; i < N; i++)
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{
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threads[i] = std::thread([&]() {
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TLSReporter* pData = tls.get();
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(void)pData;
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});
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}
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for (int i = 0; i < N; i++)
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{
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threads[i].join();
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}
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threads.clear();
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}
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TEST(Core_TLS, HandleThreadTermination)
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{
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const int init_id = TLSReporter::g_last_id;
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const int init_allocated = TLSReporter::g_allocated;
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const int N = 4;
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TLSData<TLSReporter> tls;
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// use TLS
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ASSERT_NO_THROW(callNThreadsWithTLS(N, tls));
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EXPECT_EQ(init_id + N, TLSReporter::g_last_id);
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EXPECT_EQ(init_allocated + 0, TLSReporter::g_allocated);
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}
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static void testTLSAccumulator(bool detachFirst)
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{
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const int init_id = TLSReporter::g_last_id;
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const int init_allocated = TLSReporter::g_allocated;
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const int N = 4;
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TLSDataAccumulator<TLSReporter> tls;
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{ // empty TLS checks
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std::vector<TLSReporter*>& data0 = tls.detachData();
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EXPECT_EQ((size_t)0, data0.size());
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tls.cleanupDetachedData();
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}
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// use TLS
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ASSERT_NO_THROW(callNThreadsWithTLS(N, tls));
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EXPECT_EQ(init_id + N, TLSReporter::g_last_id);
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EXPECT_EQ(init_allocated + N, TLSReporter::g_allocated);
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if (detachFirst)
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{
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std::vector<TLSReporter*>& data1 = tls.detachData();
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EXPECT_EQ((size_t)N, data1.size());
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// no data through gather after detachData()
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std::vector<TLSReporter*> data2;
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tls.gather(data2);
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EXPECT_EQ((size_t)0, data2.size());
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tls.cleanupDetachedData();
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EXPECT_EQ(init_id + N, TLSReporter::g_last_id);
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EXPECT_EQ(init_allocated + 0, TLSReporter::g_allocated);
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EXPECT_EQ((size_t)0, data1.size());
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}
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else
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{
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std::vector<TLSReporter*> data2;
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tls.gather(data2);
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EXPECT_EQ((size_t)N, data2.size());
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std::vector<TLSReporter*>& data1 = tls.detachData();
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EXPECT_EQ((size_t)N, data1.size());
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tls.cleanupDetachedData();
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EXPECT_EQ((size_t)0, data1.size());
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// data2 is not empty, but it has invalid contents
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EXPECT_EQ((size_t)N, data2.size());
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}
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EXPECT_EQ(init_id + N, TLSReporter::g_last_id);
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EXPECT_EQ(init_allocated + 0, TLSReporter::g_allocated);
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}
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TEST(Core_TLS, AccumulatorHoldData_detachData) { testTLSAccumulator(true); }
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TEST(Core_TLS, AccumulatorHoldData_gather) { testTLSAccumulator(false); }
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#endif
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}} // namespace
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