Main relay shutdown rebase (#3880)
* aggregate * main relay controller handles delayed shutoff * main relay controller handles delayed shutdown Co-authored-by: Matthew Kennedy <matthewkennedy@outlook.com> Co-authored-by: rusefillc <sdfsdfqsf2334234234>
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@ -650,6 +650,7 @@ static void updateIgnition(int rpm) {
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}
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static void updateFlags() {
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engine->outputChannels.isMainRelayOn = enginePins.mainRelay.getLogicValue();
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engine->outputChannels.isFuelPumpOn = enginePins.fuelPumpRelay.getLogicValue();
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engine->outputChannels.isFanOn = enginePins.fanRelay.getLogicValue();
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engine->outputChannels.isFan2On = enginePins.fanRelay2.getLogicValue();
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@ -710,7 +711,7 @@ void updateTunerStudioState() {
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// 104
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tsOutputChannels->rpmAcceleration = engine->rpmCalculator.getRpmAcceleration();
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// Output both the estimated air flow, and measured air flow (if available)
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tsOutputChannels->mafMeasured = Sensor::getOrZero(SensorType::Maf);
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tsOutputChannels->mafEstimate = engine->engineState.airflowEstimate;
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@ -6,7 +6,20 @@ void MainRelayController::onSlowCallback() {
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isBenchTest = engine->isInMainRelayBench();
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#if EFI_MAIN_RELAY_CONTROL
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mainRelayState = isBenchTest | hasIgnitionVoltage;
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hasIgnitionVoltage = Sensor::getOrZero(SensorType::BatteryVoltage) > 5;
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if (hasIgnitionVoltage) {
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m_lastIgnitionTime.reset();
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}
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delayedShutoffRequested = engine->module<MainRelayController>()->needsDelayedShutoff();
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// Query whether any engine modules want to keep the lights on
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// todo: fix this amazing C++ lambda magic
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// delayedShutoffRequested = engine->engineModules.aggregate([](auto& m, bool prev) { return m->needsDelayedShutoff() | prev; }, false);
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// TODO: delayed shutoff timeout?
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mainRelayState = isBenchTest | hasIgnitionVoltage | delayedShutoffRequested;
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#else // not EFI_MAIN_RELAY_CONTROL
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mainRelayState = !isBenchTest;
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#endif
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@ -14,6 +27,9 @@ void MainRelayController::onSlowCallback() {
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enginePins.mainRelay.setValue(mainRelayState);
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}
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void MainRelayController::onIgnitionStateChanged(bool ignitionOn) {
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hasIgnitionVoltage = ignitionOn;
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bool MainRelayController::needsDelayedShutoff() {
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// Prevent main relay from turning off if we had igniton voltage in the past 1 second
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// This avoids accidentally killing the car during a transient, for example
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// right when the starter is engaged.
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return !m_lastIgnitionTime.hasElapsedSec(1);
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}
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@ -3,7 +3,11 @@
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#include "engine_module.h"
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#include "main_relay_generated.h"
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struct MainRelayController : public EngineModule, public main_relay_s {
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class MainRelayController : public EngineModule, public main_relay_s {
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public:
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void onSlowCallback() override;
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void onIgnitionStateChanged(bool ignitionOn) override;
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bool needsDelayedShutoff() override;
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private:
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Timer m_lastIgnitionTime;
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};
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@ -13,4 +13,7 @@ public:
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// Called whenever the ignition switch state changes
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virtual void onIgnitionStateChanged(bool /*ignitionOn*/) { }
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// Queried to determine whether this module needs a delayed shutoff, defaults to false
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virtual bool needsDelayedShutoff() { return false; }
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};
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@ -1274,6 +1274,7 @@ gaugeCategory = DynoView
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; minor info
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indicator = { isFanOn }, "fan off", "fan on", white, black, green, black
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indicator = { isFan2On }, "fan 2 off", "fan 2 on", white, black, green, black
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indicator = { isMainRelayOn }, "main relay off", "main relay on", white, black, green, black
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indicator = { isCylinderCleanupActivated}, "no cyl cleanup", "cyl cleanup", white, black, yellow, black
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indicator = { isFuelPumpOn}, "pump off", "pump on", white, black, green, black
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indicator = { clutchUpState }, "Clutch Up", "clutch Up", white, black, red, black
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@ -1436,7 +1437,7 @@ menuDialog = main
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subMenu = crankingCltCurve, "Fuel CLT multiplier"
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subMenu = crankingCltCurveE100, "Fuel CLT multiplier (Flex Fuel E100)", 0, { flexSensorPin != @@ADC_CHANNEL_NONE@@ }
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subMenu = crankingDurationCurve, "Fuel duration multiplier"
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subMenu = crankingDurationCurve, "Fuel duration multiplier"
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subMenu = crankingTpsCurve, "Fuel TPS multiplier"
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subMenu = std_separator
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@ -2111,7 +2112,7 @@ cmd_set_engine_type_default = "@@TS_IO_TEST_COMMAND_char@@\x00\x31\x00\x00"
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field = "Offset cyl 8", timing_offset_cylinder8, {cylindersCount > 7}
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field = "Offset cyl 9", timing_offset_cylinder9, {cylindersCount > 8}
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field = "Offset cyl 10", timing_offset_cylinder10, {cylindersCount > 9}
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field = "Offset cyl 11", timing_offset_cylinder11, {cylindersCount > 10}
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field = "Offset cyl 11", timing_offset_cylinder11, {cylindersCount > 10}
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field = "Offset cyl 12", timing_offset_cylinder12, {cylindersCount > 11}
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dialog = multisparkDwellParams, "Delay & Dwell"
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@ -45,6 +45,14 @@ struct type_list {
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others.apply_all(f);
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}
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// Applies an accumulator function over the sequence of elements.
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// The specified seed value is used as the initial accumulator value,
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// and the specified function is used to select the result value.
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template<typename return_t, typename func_t>
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auto aggregate(func_t const& accumulator, return_t seed) {
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return others.aggregate(accumulator, first.aggregate(accumulator, seed));
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}
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/*
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* Return the container object for type get_t.
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*
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@ -92,6 +100,11 @@ public:
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f(me);
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}
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template<typename return_t, typename func_t>
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auto aggregate(func_t const& accumulator, return_t seed) {
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return accumulator(me, seed);
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}
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template<typename has_t>
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static constexpr bool has() {
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return std::is_same_v<has_t, base_t>;
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@ -2,18 +2,17 @@
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#include "main_relay.h"
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TEST(MainRelay, mr) {
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TEST(MainRelay, mainRelayLogic) {
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EngineTestHelper eth(TEST_ENGINE);
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MainRelayController dut;
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// Ignition is off, MR is off
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dut.onIgnitionStateChanged(false);
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dut.onSlowCallback();
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EXPECT_EQ(enginePins.mainRelay.getLogicValue(), false);
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// Ignition is now on, MR is on
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dut.onIgnitionStateChanged(true);
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// Battery above threshold - MR is on
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Sensor::setMockValue(SensorType::BatteryVoltage, 13);
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dut.onSlowCallback();
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EXPECT_EQ(enginePins.mainRelay.getLogicValue(), true);
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}
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