obu-firmware builds against the vanetza-idf C-ITS library, which until now came from the colleague's microbu-esp32c5 tree beside the repository and was not tracked here, so a clone of this repository could not build the firmware it ships. The library alone is now part of obu-firmware, as obu-firmware/external/vanetza-idf: their external/vanetza-idf at commit cf4b99f, unchanged (9775 files; see its PROVENANCE.md). CMake takes it from there by default; -DVANETZA_IDF_DIR still points the build elsewhere. The rest of the colleague's tree (their own VAM firmware, PKI tooling, station-link Python tools, the V2X2MAP bridge) stays out of this repository and gitignored; nothing is pushed to their repository. NOTES.md, docs/06, TODO.md and the pcap verifier's usage line point at the new location.
62 lines
1.8 KiB
C++
62 lines
1.8 KiB
C++
#include <gtest/gtest.h>
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#include <vanetza/common/clock.hpp>
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#include <vanetza/common/manual_runtime.hpp>
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#include <vanetza/dcc/fully_meshed_state_machine.hpp>
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#include <vanetza/dcc/state_machine_budget.hpp>
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using namespace vanetza::dcc;
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using vanetza::ManualRuntime;
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using std::chrono::milliseconds;
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static const vanetza::Clock::duration immediately = milliseconds(0);
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class StateMachineBudgetTest : public ::testing::Test
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{
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protected:
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StateMachineBudgetTest() :
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runtime(vanetza::Clock::time_point { std::chrono::seconds(4711) }),
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budget(fsm, runtime) {}
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ManualRuntime runtime;
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FullyMeshedStateMachine fsm;
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StateMachineBudget budget;
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};
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TEST_F(StateMachineBudgetTest, relaxed)
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{
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Relaxed relaxed;
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const auto relaxed_tx_interval = relaxed.transmission_interval();
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ASSERT_EQ(relaxed_tx_interval, fsm.transmission_interval());
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EXPECT_EQ(immediately, budget.delay());
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budget.notify();
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EXPECT_EQ(relaxed_tx_interval, budget.delay());
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runtime.trigger(relaxed_tx_interval - milliseconds(10));
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EXPECT_EQ(milliseconds(10), budget.delay());
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runtime.trigger(milliseconds(20));
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EXPECT_EQ(immediately, budget.delay());
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}
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TEST_F(StateMachineBudgetTest, restrictive)
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{
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Restrictive restrictive;
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const auto restrictive_tx_interval = restrictive.transmission_interval();
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// put FSM into restrictive state
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for (unsigned i = 0; i < 10; ++i) {
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fsm.update(ChannelLoad(0.6));
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}
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ASSERT_STREQ("Restrictive", fsm.state().name());
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EXPECT_EQ(immediately, budget.delay());
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budget.notify();
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EXPECT_EQ(restrictive_tx_interval, budget.delay());
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runtime.trigger(restrictive_tx_interval / 2);
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EXPECT_EQ(restrictive_tx_interval / 2, budget.delay());
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runtime.trigger(restrictive_tx_interval / 2);
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EXPECT_EQ(immediately, budget.delay());
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}
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