295 lines
8.8 KiB
C++
295 lines
8.8 KiB
C++
/**
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* @file injector_central.cpp
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* @brief Utility methods related to fuel injection.
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*
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*
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* @date Sep 8, 2013
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* @author Andrey Belomutskiy, (c) 2012-2018
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*
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* This file is part of rusEfi - see http://rusefi.com
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*
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* rusEfi is free software; you can redistribute it and/or modify it under the terms of
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* the GNU General Public License as published by the Free Software Foundation; either
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* version 3 of the License, or (at your option) any later version.
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*
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* rusEfi is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without
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* even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License along with this program.
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* If not, see <http://www.gnu.org/licenses/>.
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*/
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// todo: rename this file
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#include "main.h"
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#if EFI_ENGINE_CONTROL || defined(__DOXYGEN__)
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#include "injector_central.h"
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#include "io_pins.h"
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#include "signal_executor.h"
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#include "main_trigger_callback.h"
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#include "engine_configuration.h"
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#include "pin_repository.h"
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#include "efiGpio.h"
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#include "settings.h"
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EXTERN_ENGINE
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;
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static Logging * logger;
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static bool isRunningBench = false;
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// todo: move into Engine object?
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// todo: looks like these flags are not currently used? dead functionality? unfinished functionality?
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static int is_injector_enabled[INJECTION_PIN_COUNT];
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bool isRunningBenchTest(void) {
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return isRunningBench;
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}
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static void assertCylinderId(int cylinderId, const char *msg) {
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int isValid = cylinderId >= 1 && cylinderId <= engineConfiguration->specs.cylindersCount;
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if (!isValid) {
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// we are here only in case of a fatal issue - at this point it is fine to make some blocking i-o
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//scheduleSimpleMsg(&logger, "cid=", cylinderId);
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print("ERROR [%s] cid=%d\r\n", msg, cylinderId);
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efiAssertVoid(false, "Cylinder ID");
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}
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}
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/**
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* @param cylinderId - from 1 to NUMBER_OF_CYLINDERS
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*/
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static int isInjectorEnabled(int cylinderId) {
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assertCylinderId(cylinderId, "isInjectorEnabled");
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return is_injector_enabled[cylinderId - 1];
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}
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static void printInjectorsStatus(void) {
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for (int id = 1; id <= engineConfiguration->specs.cylindersCount; id++) {
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scheduleMsg(logger, "injector_%d: %d", id, isInjectorEnabled(id));
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}
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}
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static void setInjectorEnabled(int id, int value) {
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efiAssertVoid(id >= 0 && id < engineConfiguration->specs.cylindersCount, "injector id");
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is_injector_enabled[id] = value;
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printInjectorsStatus();
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}
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static void runBench(brain_pin_e brainPin, OutputPin *output, float delayMs, float onTimeMs, float offTimeMs,
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int count) {
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int delaySt = delayMs < 1 ? 1 : MS2ST(delayMs);
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int onTimeSt = onTimeMs < 1 ? 1 : MS2ST(onTimeMs);
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int offTimeSt = offTimeMs < 1 ? 1 : MS2ST(offTimeMs);
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if (delaySt < 0) {
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scheduleMsg(logger, "Invalid delay %.2f", delayMs);
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return;
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}
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if (onTimeSt <= 0) {
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scheduleMsg(logger, "Invalid onTime %.2f", onTimeMs);
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return;
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}
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if (offTimeSt <= 0) {
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scheduleMsg(logger, "Invalid offTime %.2f", offTimeMs);
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return;
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}
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scheduleMsg(logger, "Running bench: ON_TIME=%.2f ms OFF_TIME=%.2fms Counter=%d", onTimeMs, offTimeMs, count);
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scheduleMsg(logger, "output on %s", hwPortname(brainPin));
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if (delaySt != 0) {
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chThdSleep(delaySt);
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}
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isRunningBench = true;
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for (int i = 0; i < count; i++) {
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output->setValue(true);
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chThdSleep(onTimeSt);
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output->setValue(false);
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chThdSleep(offTimeSt);
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}
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scheduleMsg(logger, "Done!");
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isRunningBench = false;
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}
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static volatile bool isBenchTestPending = false;
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static float onTime;
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static float offTime;
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static float delayMs;
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static int count;
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static brain_pin_e brainPin;
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static OutputPin* pinX;
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static void pinbench(const char *delayStr, const char *onTimeStr, const char *offTimeStr, const char *countStr,
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OutputPin* pinParam, brain_pin_e brainPinParam) {
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delayMs = atoff(delayStr);
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onTime = atoff(onTimeStr);
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offTime = atoff(offTimeStr);
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count = atoi(countStr);
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brainPin = brainPinParam;
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pinX = pinParam;
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isBenchTestPending = true; // let's signal bench thread to wake up
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}
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static void doRunFuel(int humanIndex, const char *delayStr, const char * onTimeStr, const char *offTimeStr,
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const char *countStr) {
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if (humanIndex < 1 || humanIndex > engineConfiguration->specs.cylindersCount) {
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scheduleMsg(logger, "Invalid index: %d", humanIndex);
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return;
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}
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brain_pin_e b = boardConfiguration->injectionPins[humanIndex - 1];
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pinbench(delayStr, onTimeStr, offTimeStr, countStr, &enginePins.injectors[humanIndex - 1], b);
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}
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/**
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* delay 100, cylinder #2, 5ms ON, 1000ms OFF, repeat 2 times
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* fuelbench2 100 2 5 1000 2
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*/
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static void fuelbench2(const char *delayStr, const char *indexStr, const char * onTimeStr, const char *offTimeStr,
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const char *countStr) {
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int index = atoi(indexStr);
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doRunFuel(index, delayStr, onTimeStr, offTimeStr, countStr);
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}
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static void fanBenchExt(const char *durationMs) {
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pinbench("0", durationMs, "100", "1", &enginePins.fanRelay, boardConfiguration->fanPin);
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}
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void fanBench(void) {
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fanBenchExt("3000");
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}
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void milBench(void) {
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pinbench("0", "500", "500", "16", &enginePins.checkEnginePin, boardConfiguration->malfunctionIndicatorPin);
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}
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void fuelPumpBenchExt(const char *durationMs) {
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pinbench("0", durationMs, "100", "1", &enginePins.fuelPumpRelay, boardConfiguration->fuelPumpPin);
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}
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void fuelPumpBench(void) {
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fuelPumpBenchExt("3000");
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}
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// fuelbench 5 1000 2
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static void fuelbench(const char * onTimeStr, const char *offTimeStr, const char *countStr) {
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fuelbench2("0", "1", onTimeStr, offTimeStr, countStr);
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}
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static void doRunSpark(int humanIndex, const char *delayStr, const char * onTimeStr, const char *offTimeStr,
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const char *countStr) {
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if (humanIndex < 1 || humanIndex > engineConfiguration->specs.cylindersCount) {
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scheduleMsg(logger, "Invalid index: %d", humanIndex);
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return;
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}
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brain_pin_e b = boardConfiguration->ignitionPins[humanIndex - 1];
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pinbench(delayStr, onTimeStr, offTimeStr, countStr, &enginePins.coils[humanIndex - 1], b);
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}
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/**
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* sparkbench2 0 1 5 1000 2
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*/
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static void sparkbench2(const char *delayStr, const char *indexStr, const char * onTimeStr, const char *offTimeStr,
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const char *countStr) {
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int index = atoi(indexStr);
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doRunSpark(index, delayStr, onTimeStr, offTimeStr, countStr);
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}
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/**
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* sparkbench 5 400 2
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* 5 ms ON, 400 ms OFF, two times
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*/
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static void sparkbench(const char * onTimeStr, const char *offTimeStr, const char *countStr) {
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sparkbench2("0", "1", onTimeStr, offTimeStr, countStr);
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}
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void dizzyBench(void) {
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pinbench("300", "5", "400", "3", &enginePins.dizzyOutput, engineConfiguration->dizzySparkOutputPin);
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}
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static THD_WORKING_AREA(benchThreadStack, UTILITY_THREAD_STACK_SIZE);
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static msg_t benchThread(int param) {
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(void) param;
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chRegSetThreadName("BenchThread");
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while (true) {
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// naive inter-thread communication - waiting for a flag
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while (!isBenchTestPending) {
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chThdSleepMilliseconds(200);
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}
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isBenchTestPending = false;
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runBench(brainPin, pinX, delayMs, onTime, offTime, count);
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}
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#if defined __GNUC__
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return 0;
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#endif
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}
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void OutputPin::unregisterOutput(brain_pin_e oldPin, brain_pin_e newPin) {
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if (oldPin != GPIO_UNASSIGNED && oldPin != newPin) {
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scheduleMsg(logger, "unregistering %s", hwPortname(oldPin));
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unmarkPin(oldPin);
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#if EFI_GPIO_HARDWARE || defined(__DOXYGEN__)
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port = NULL;
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#endif /* EFI_PROD_CODE */
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}
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}
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void runIoTest(int subsystem, int index) {
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scheduleMsg(logger, "IO test subsystem=%d index=%d", subsystem, index);
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if (subsystem == 0x12) {
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doRunSpark(index, "300", "4", "400", "3");
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} else if (subsystem == 0x13) {
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doRunFuel(index, "300", "4", "400", "3");
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} else if (subsystem == 0x14) {
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fuelPumpBench();
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} else if (subsystem == 0x15) {
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fanBench();
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} else if (subsystem == 0x16) {
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milBench();
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} else if (subsystem == 0x17) {
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} else if (subsystem == 0x20 && index == 0x3456) {
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// call to pit
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setCallFromPitStop(30000);
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} else if (subsystem == 0x99) {
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stopEngine();
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}
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}
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void initInjectorCentral(Logging *sharedLogger) {
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logger = sharedLogger;
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chThdCreateStatic(benchThreadStack, sizeof(benchThreadStack), NORMALPRIO, (tfunc_t) benchThread, NULL);
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for (int i = 0; i < INJECTION_PIN_COUNT; i++) {
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is_injector_enabled[i] = true;
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}
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enginePins.startInjectionPins();
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enginePins.startIgnitionPins();
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enginePins.startAuxValves();
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printInjectorsStatus();
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addConsoleActionII("injector", setInjectorEnabled);
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addConsoleAction("fuelpumpbench", fuelPumpBench);
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addConsoleActionS("fuelpumpbench2", fuelPumpBenchExt);
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addConsoleAction("fanbench", fanBench);
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addConsoleActionS("fanbench2", fanBenchExt);
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addConsoleAction("dizzybench", dizzyBench); // this is useful for tach output testing
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addConsoleAction("milbench", milBench);
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addConsoleActionSSS("fuelbench", fuelbench);
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addConsoleActionSSS("sparkbench", sparkbench);
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addConsoleActionSSSSS("fuelbench2", fuelbench2);
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addConsoleActionSSSSS("sparkbench2", sparkbench2);
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}
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#endif
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